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synced 2025-06-19 02:00:26 +02:00
Rewrite.
Touch up docstrings. Augment commentary.
This commit is contained in:
parent
24bf1e2f6b
commit
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1 changed files with 212 additions and 530 deletions
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@ -1,6 +1,3 @@
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;;; Author: Russ McManus
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;;; $Id: getopt-long.scm,v 1.4.2.1 2001-08-02 10:52:37 ttn Exp $
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;;;
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;;; Copyright (C) 1998, 2001 Free Software Foundation, Inc.
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;;;
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;;; This program is free software; you can redistribute it and/or modify
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@ -41,19 +38,21 @@
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;;; whether to permit this exception to apply to your modifications.
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;;; If you do not wish that, delete this exception notice.
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;;; Author: Russ McManus (rewritten by Thien-Thi Nguyen)
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;;; Commentary:
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;;; This module implements some complex command line option parsing, in
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;;; the spirit of the GNU C library function 'getopt_long'. Both long
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;;; the spirit of the GNU C library function `getopt_long'. Both long
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;;; and short options are supported.
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;;;
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;;; The theory is that people should be able to constrain the set of
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;;; options they want to process using a grammar, rather than some arbitrary
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;;; structure. The grammar makes the option descriptions easy to read.
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;;;
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;;; getopt-long is a function for parsing command-line arguments in a
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;;; manner consistent with other GNU programs.
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;;; `getopt-long' is a procedure for parsing command-line arguments in a
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;;; manner consistent with other GNU programs. `option-ref' is a procedure
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;;; that facilitates processing of the `getopt-long' return value.
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;;; (getopt-long ARGS GRAMMAR)
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;;; Parse the arguments ARGS according to the argument list grammar GRAMMAR.
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@ -109,8 +108,8 @@
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;;;
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;;; If an option's value is optional, then `getopt-long' decides
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;;; whether it has a value by looking at what follows it in ARGS. If
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;;; the next element is a string, and it does not appear to be an
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;;; option itself, then that string is the option's value.
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;;; the next element is does not appear to be an option itself, then
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;;; that element is the option's value.
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;;;
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;;; The value of a long option can appear as the next element in ARGS,
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;;; or it can follow the option name, separated by an `=' character.
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@ -138,6 +137,8 @@
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;;; as a list, associated with the empty list.
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;;;
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;;; `getopt-long' throws an exception if:
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;;; - it finds an unrecognized property in GRAMMAR
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;;; - the value of the `single-char' property is not a character
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;;; - it finds an unrecognized option in ARGS
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;;; - a required option is omitted
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;;; - an option that requires an argument doesn't get one
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@ -168,515 +169,200 @@
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;;; (lockfile-dir . "/tmp")
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;;; (verbose . #t))
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;;; (option-ref OPTIONS KEY DEFAULT)
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;;; Return value in alist OPTIONS using KEY, a symbol; or DEFAULT if not
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;;; found. The value is either a string or `#t'.
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;;;
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;;; For example, using the `getopt-long' return value from above:
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;;;
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;;; (option-ref (getopt-long ...) 'x-includes 42) => "/usr/include"
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;;; (option-ref (getopt-long ...) 'not-a-key! 31) => 31
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;;; Code:
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(define-module (ice-9 getopt-long)
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:use-module (ice-9 common-list))
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:use-module ((ice-9 common-list) :select (some remove-if-not))
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:export (getopt-long option-ref))
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;;; The code on this page was expanded by hand using the following code:
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;;; (pretty-print
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;;; (macroexpand
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;;; '(define-record option-spec
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;;; (name
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;;; value
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;;; value-required?
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;;; single-char
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;;; predicate-ls
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;;; parse-ls))))
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;;;
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;;; This avoids the need to load slib for records.
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(define slib:error error)
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(begin (define
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option-spec->name
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 1)
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(slib:error
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(quote option-spec->name)
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": bad record"
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obj))))
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(define
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option-spec->value
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 2)
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(slib:error
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(quote option-spec->value)
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": bad record"
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obj))))
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(define
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option-spec->value-required?
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 3)
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(slib:error
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(quote option-spec->value-required?)
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": bad record"
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obj))))
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(define
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option-spec->single-char
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 4)
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(slib:error
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(quote option-spec->single-char)
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": bad record"
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obj))))
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(define
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option-spec->predicate-ls
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 5)
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(slib:error
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(quote option-spec->predicate-ls)
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": bad record"
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obj))))
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(define
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option-spec->parse-ls
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(lambda
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(obj)
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(if (option-spec? obj)
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(vector-ref obj 6)
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(slib:error
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(quote option-spec->parse-ls)
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": bad record"
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obj))))
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(define
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set-option-spec-name!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 1 val)
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(slib:error
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(quote set-option-spec-name!)
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": bad record"
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obj))))
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(define
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set-option-spec-value!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 2 val)
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(slib:error
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(quote set-option-spec-value!)
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": bad record"
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obj))))
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(define
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set-option-spec-value-required?!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 3 val)
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(slib:error
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(quote set-option-spec-value-required?!)
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": bad record"
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obj))))
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(define
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set-option-spec-single-char!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 4 val)
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(slib:error
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(quote set-option-spec-single-char!)
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": bad record"
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obj))))
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(define
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set-option-spec-predicate-ls!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 5 val)
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(slib:error
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(quote set-option-spec-predicate-ls!)
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": bad record"
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obj))))
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(define
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set-option-spec-parse-ls!
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(lambda
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(obj val)
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(if (option-spec? obj)
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(vector-set! obj 6 val)
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(slib:error
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(quote set-option-spec-parse-ls!)
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": bad record"
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obj))))
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(define
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option-spec?
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(lambda
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(obj)
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(and (vector? obj)
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(= (vector-length obj) 7)
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(eq? (vector-ref obj 0) (quote option-spec)))))
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(define
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make-option-spec
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(lambda
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(option-spec->name
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option-spec->value
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option-spec->value-required?
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option-spec->single-char
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option-spec->predicate-ls
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option-spec->parse-ls)
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(vector
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(quote option-spec)
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option-spec->name
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option-spec->value
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option-spec->value-required?
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option-spec->single-char
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option-spec->predicate-ls
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option-spec->parse-ls))))
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(define option-spec-fields '(name
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value
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required?
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single-char
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predicate
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value-policy))
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;;;
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;;; parse functions go on this page.
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;;;
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(define make-user-predicate
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(lambda (pred)
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(lambda (spec)
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(let ((val (option-spec->value spec)))
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(if (and val
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(pred val)) #t
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(error "option predicate failed:" (option-spec->name spec)))))))
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(define option-spec (make-record-type 'option-spec option-spec-fields))
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(define make-option-spec (record-constructor option-spec option-spec-fields))
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(define make-not-allowed-value-fn
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(lambda ()
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(lambda (spec)
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(let ((val (option-spec->value spec)))
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(if (not (or (eq? val #t)
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(eq? val #f)))
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(let ((name (option-spec->name spec)))
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(error "option does not support argument:" name)))))))
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(define (define-one-option-spec-field-accessor field)
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`(define ,(symbol-append 'option-spec-> field) ;;; name slib-compat
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(record-accessor option-spec ',field)))
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(define make-option-required-predicate
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(lambda ()
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(lambda (spec)
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(let ((val (option-spec->value spec)))
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(if (not val)
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(let ((name (option-spec->name spec)))
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(error "option must be specified:" name)))))))
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(define (define-one-option-spec-field-modifier field)
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`(define ,(symbol-append 'set-option-spec- field '!) ;;; name slib-compat
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(record-modifier option-spec ',field)))
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(define make-option-value-predicate
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(lambda (predicate)
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(lambda (spec)
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(let ((val (option-spec->value spec)))
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(if (not (predicate val))
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(let ((name (option-spec->name spec)))
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(error "Bad option value:" name val)))))))
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(defmacro define-all-option-spec-accessors/modifiers ()
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`(begin
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,@(map define-one-option-spec-field-accessor option-spec-fields)
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,@(map define-one-option-spec-field-modifier option-spec-fields)))
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(define make-required-value-fn
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(lambda ()
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(lambda (spec)
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(let ((val (option-spec->value spec)))
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(if (eq? val #t)
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(let ((name (option-spec->name spec)))
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(error "option must be specified with argument:" name)))))))
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(define-all-option-spec-accessors/modifiers)
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(define single-char-value?
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(lambda (val)
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(char? val)))
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(define make-option-spec
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(let ((ctor (record-constructor option-spec '(name))))
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(lambda (name)
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(ctor name))))
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(define (parse-option-spec desc)
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(letrec ((parse-iter
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(lambda (spec)
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(let ((parse-ls (option-spec->parse-ls spec)))
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(if (null? parse-ls)
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spec
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(let ((ls (car parse-ls)))
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(if (or (not (list? ls))
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(not (= (length ls) 2)))
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(error "Bad option specification:" ls))
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(let ((key (car ls))
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(val (cadr ls)))
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(cond ((and (eq? key 'required?) val)
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;; required values implemented as a predicate
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(parse-iter
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(make-option-spec
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(option-spec->name spec)
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(option-spec->value spec)
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(option-spec->value-required? spec)
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(option-spec->single-char spec)
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(cons (make-option-required-predicate)
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(option-spec->predicate-ls spec))
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(cdr parse-ls))))
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;; if value not required, don't add predicate,
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((eq? key 'required?)
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(parse-iter
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(make-option-spec
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(option-spec->name spec)
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(option-spec->value spec)
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(option-spec->value-required? spec)
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(option-spec->single-char spec)
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(option-spec->predicate-ls spec)
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(cdr parse-ls))))
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;; handle value specification
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((eq? key 'value)
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(cond ((eq? val #t)
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;; when value is required, add a
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;; predicate to that effect and record
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;; the fact in value-required? field.
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(parse-iter
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(make-option-spec
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(option-spec->name spec)
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(option-spec->value spec)
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#t
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(option-spec->single-char spec)
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(cons (make-required-value-fn)
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(option-spec->predicate-ls spec))
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(cdr parse-ls))))
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((eq? val #f)
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;; when the value is not allowed, add a
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;; predicate to that effect. one can
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;; detect that a value is not supplied
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;; by checking the option value against
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;; #f.
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(parse-iter
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(make-option-spec
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(option-spec->name spec)
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(option-spec->value spec)
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#f
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(option-spec->single-char spec)
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(cons (make-not-allowed-value-fn)
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(option-spec->predicate-ls spec))
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(cdr parse-ls))))
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((eq? val 'optional)
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;; for optional values, don't add a
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;; predicate. do, however put the value
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;; 'optional in the value-required?
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;; field. this setting checks whether
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;; optional values are 'greedy'. set to
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;; #f to make optional value clauses
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;; 'non-greedy'.
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(parse-iter
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(make-option-spec
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(option-spec->name spec)
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(option-spec->value spec)
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'optional
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(option-spec->single-char spec)
|
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(option-spec->predicate-ls spec)
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(cdr parse-ls))))
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(#t
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;; error case
|
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(error "Bad value specification for option:"
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(cons key val)))))
|
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;; specify single char defined for this option.
|
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((eq? key 'single-char)
|
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(if (not (single-char-value? val))
|
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(error "Not a single-char-value:"
|
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val " for option:" key)
|
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(parse-iter
|
||||
(make-option-spec
|
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(option-spec->name spec)
|
||||
(option-spec->value spec)
|
||||
(option-spec->value-required? spec)
|
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val
|
||||
(option-spec->predicate-ls spec)
|
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(cdr parse-ls)))))
|
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((eq? key 'predicate)
|
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(if (procedure? val)
|
||||
(parse-iter
|
||||
(make-option-spec
|
||||
(option-spec->name spec)
|
||||
(option-spec->value spec)
|
||||
(option-spec->value-required? spec)
|
||||
(option-spec->single-char spec)
|
||||
(cons (make-user-predicate val)
|
||||
(option-spec->predicate-ls spec))
|
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(cdr parse-ls)))
|
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(error "Bad predicate specified for option:"
|
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(cons key val))))))))))))
|
||||
(if (or (not (pair? desc))
|
||||
(string? (car desc)))
|
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(error "Bad option specification:" desc))
|
||||
(parse-iter (make-option-spec (car desc)
|
||||
#f
|
||||
#f
|
||||
#f
|
||||
'()
|
||||
(cdr desc)))))
|
||||
(let ((spec (make-option-spec (symbol->string (car desc)))))
|
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(for-each (lambda (desc-elem)
|
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(let ((given (lambda () (cadr desc-elem))))
|
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(case (car desc-elem)
|
||||
((required?)
|
||||
(set-option-spec-required?! spec (given)))
|
||||
((value)
|
||||
(set-option-spec-value-policy! spec (given)))
|
||||
((single-char)
|
||||
(or (char? (given))
|
||||
(error "`single-char' value must be a char!"))
|
||||
(set-option-spec-single-char! spec (given)))
|
||||
((predicate)
|
||||
(set-option-spec-predicate!
|
||||
spec ((lambda (pred)
|
||||
(lambda (name val)
|
||||
(or (not val)
|
||||
(pred val)
|
||||
(error "option predicate failed:" name))))
|
||||
(given))))
|
||||
(else
|
||||
(error "invalid getopt-long option property:"
|
||||
(car desc-elem))))))
|
||||
(cdr desc))
|
||||
spec))
|
||||
|
||||
|
||||
;;;
|
||||
;;;
|
||||
;;;
|
||||
(define (split-arg-list argument-list)
|
||||
"Given an ARGUMENT-LIST, decide which part to process for options.
|
||||
Everything before an arg of \"--\" is fair game, everything after it
|
||||
should not be processed. The \"--\" is discarded. A cons pair is
|
||||
returned whose car is the list to process for options, and whose cdr
|
||||
is the list to not process."
|
||||
(let loop ((process-ls '())
|
||||
(not-process-ls argument-list))
|
||||
(cond ((null? not-process-ls)
|
||||
(cons (reverse process-ls) '()))
|
||||
((string=? "--" (car not-process-ls))
|
||||
(cons (reverse process-ls) (cdr not-process-ls)))
|
||||
(#t
|
||||
(loop (cons (car not-process-ls) process-ls)
|
||||
(cdr not-process-ls))))))
|
||||
;; Scan ARGUMENT-LIST for "--" and return (BEFORE-LS . AFTER-LS).
|
||||
;; Discard the "--". If no "--" is found, AFTER-LS is empty.
|
||||
(let loop ((yes '()) (no argument-list))
|
||||
(cond ((null? no) (cons (reverse yes) no))
|
||||
((string=? "--" (car no)) (cons (reverse yes) (cdr no)))
|
||||
(else (loop (cons (car no) yes) (cdr no))))))
|
||||
|
||||
(define short-opt-rx (make-regexp "^-([a-zA-Z]+)"))
|
||||
(define short-opt-rx (make-regexp "^-([a-zA-Z]+)(.*)"))
|
||||
(define long-opt-no-value-rx (make-regexp "^--([^=]+)$"))
|
||||
(define long-opt-with-value-rx (make-regexp "^--([^=]+)=(.*)"))
|
||||
|
||||
(define (single-char-expander specifications opt-ls)
|
||||
"Expand single letter options that are mushed together."
|
||||
(let ((response #f))
|
||||
(define (is-short-opt? str)
|
||||
(set! response (regexp-exec short-opt-rx str))
|
||||
response)
|
||||
(define (iter opt-ls ret-ls)
|
||||
(define (match-substring match which)
|
||||
;; condensed from (ice-9 regex) `match:{substring,start,end}'
|
||||
(let ((sel (vector-ref match (1+ which))))
|
||||
(substring (vector-ref match 0) (car sel) (cdr sel))))
|
||||
|
||||
(define (expand-clumped-singles opt-ls)
|
||||
;; example: ("--xyz" "-abc5d") => ("--xyz" "-a" "-b" "-c" "5d")
|
||||
(let loop ((opt-ls opt-ls) (ret-ls '()))
|
||||
(cond ((null? opt-ls)
|
||||
(reverse ret-ls))
|
||||
((is-short-opt? (car opt-ls))
|
||||
(let* ((orig-str (car opt-ls))
|
||||
(match-pair (vector-ref response 2))
|
||||
(match-str (substring orig-str (car match-pair)
|
||||
(cdr match-pair))))
|
||||
(if (= (string-length match-str) 1)
|
||||
(iter (cdr opt-ls)
|
||||
(cons (string-append "-" match-str) ret-ls))
|
||||
(iter (cons (string-append "-" (substring match-str 1))
|
||||
(cdr opt-ls))
|
||||
(cons (string-append "-" (substring match-str 0 1))
|
||||
(reverse ret-ls)) ;;; retval
|
||||
((regexp-exec short-opt-rx (car opt-ls))
|
||||
=> (lambda (match)
|
||||
(let ((singles (reverse
|
||||
(map (lambda (c)
|
||||
(string-append "-" (make-string 1 c)))
|
||||
(string->list
|
||||
(match-substring match 1)))))
|
||||
(extra (match-substring match 2)))
|
||||
(loop (cdr opt-ls)
|
||||
(append (if (string=? "" extra)
|
||||
singles
|
||||
(cons extra singles))
|
||||
ret-ls)))))
|
||||
(#t (iter (cdr opt-ls)
|
||||
(cons (car opt-ls) ret-ls)))))
|
||||
(iter opt-ls '())))
|
||||
(else (loop (cdr opt-ls)
|
||||
(cons (car opt-ls) ret-ls))))))
|
||||
|
||||
(define (process-short-option specifications argument-ls alist)
|
||||
"Process a single short option that appears at the front of the ARGUMENT-LS,
|
||||
according to SPECIFICATIONS. Returns #f is there is no such argument.
|
||||
Otherwise returns a pair whose car is the list of remaining arguments, and
|
||||
whose cdr is a new association list, constructed by adding a pair to the
|
||||
supplied ALIST. The pair on the front of the returned association list
|
||||
describes the option found at the head of ARGUMENT-LS. The way this routine
|
||||
currently works, an option that never takes a value that is followed by a non
|
||||
option will cause an error, which is probably a bug. To fix the bug the
|
||||
option specification needs to record whether the option ever can take a
|
||||
value."
|
||||
(define (short-option->char option)
|
||||
(string-ref option 1))
|
||||
(define (is-short-option? option)
|
||||
(regexp-exec short-opt-rx option))
|
||||
(define (is-long-option? option)
|
||||
(or (regexp-exec long-opt-with-value-rx option)
|
||||
(regexp-exec long-opt-no-value-rx option)))
|
||||
(define (find-matching-spec option)
|
||||
(let ((key (short-option->char option)))
|
||||
(find-if (lambda (spec)
|
||||
(eq? key (option-spec->single-char spec))) specifications)))
|
||||
(let ((option (car argument-ls)))
|
||||
(if (is-short-option? option)
|
||||
(let ((spec (find-matching-spec option)))
|
||||
(if spec
|
||||
(let* ((next-value (if (null? (cdr argument-ls))
|
||||
#f
|
||||
(cadr argument-ls)))
|
||||
(option-value (if (and next-value
|
||||
(not (is-short-option? next-value))
|
||||
(not (is-long-option? next-value))
|
||||
(option-spec->value-required? spec))
|
||||
next-value
|
||||
#t))
|
||||
(new-alist (cons (cons (option-spec->name spec)
|
||||
option-value)
|
||||
alist)))
|
||||
(cons (if (eq? option-value #t)
|
||||
(cdr argument-ls) ; one value, skip just one
|
||||
(cddr argument-ls)) ; must be a value, skip two
|
||||
new-alist))
|
||||
(error "No such option:" option)))
|
||||
#f)))
|
||||
(define (looks-like-an-option string)
|
||||
(some (lambda (rx)
|
||||
(regexp-exec rx string))
|
||||
`(,short-opt-rx
|
||||
,long-opt-with-value-rx
|
||||
,long-opt-no-value-rx)))
|
||||
|
||||
(define (process-long-option specifications argument-ls alist)
|
||||
(define (find-matching-spec key)
|
||||
(find-if (lambda (spec)
|
||||
(eq? key (option-spec->name spec)))
|
||||
specifications))
|
||||
(define (split-long-option option)
|
||||
;; returns a pair whose car is a symbol naming the option, cdr is
|
||||
;; the option value. as a special case, if the option value is
|
||||
;; #f, then the caller should use the next item in argument-ls as
|
||||
;; the option value.
|
||||
(let ((resp (regexp-exec long-opt-no-value-rx option)))
|
||||
(if resp
|
||||
;; Aha, we've found a long option without an equal sign.
|
||||
;; Maybe we need to grab a value from argument-ls. To find
|
||||
;; out we need to refer to the option-spec.
|
||||
(let* ((key-pair (vector-ref resp 2))
|
||||
(key (string->symbol
|
||||
(substring option (car key-pair) (cdr key-pair))))
|
||||
(spec (find-matching-spec key)))
|
||||
(let* ((req (option-spec->value-required? spec))
|
||||
(retval (cons key (if req #f #t))))
|
||||
;; this is a fucking kludge, i hate it. it's necessary because
|
||||
;; the protocol (return #f to indicate next element is an option
|
||||
;; arg) is insufficient. needs redesign. why am i checking in
|
||||
;; such ugliness? read moby dick! -ttn
|
||||
(and (eq? 'optional req)
|
||||
(set-object-property! retval 'optional #t))
|
||||
retval))
|
||||
(let ((resp (regexp-exec long-opt-with-value-rx option)))
|
||||
;; Aha, we've found a long option with an equal sign. The
|
||||
;; option value is simply the value to the right of the
|
||||
;; equal sign.
|
||||
(if resp
|
||||
(let* ((key-pair (vector-ref resp 2))
|
||||
(key (string->symbol
|
||||
(substring option
|
||||
(car key-pair) (cdr key-pair))))
|
||||
(value-pair (vector-ref resp 3))
|
||||
(value (substring option
|
||||
(car value-pair) (cdr value-pair))))
|
||||
(cons key value))
|
||||
#f)))))
|
||||
(let* ((option (car argument-ls))
|
||||
(pair (split-long-option option)))
|
||||
(cond ((and pair (eq? (cdr pair) #f))
|
||||
(cond ((and (null? (cdr argument-ls))
|
||||
(not (object-property pair 'optional)))
|
||||
(error "Not enough options."))
|
||||
((null? (cdr argument-ls))
|
||||
(cons '() (cons (cons (car pair) #t) alist)))
|
||||
((let* ((next (cadr argument-ls))
|
||||
(m (or (regexp-exec short-opt-rx next)
|
||||
(regexp-exec long-opt-with-value-rx next)
|
||||
(regexp-exec long-opt-no-value-rx next))))
|
||||
(and m (object-property pair 'optional)))
|
||||
(cons (cdr argument-ls)
|
||||
(cons (cons (car pair) #t) alist)))
|
||||
(define (process-options specs argument-ls)
|
||||
;; Use SPECS to scan ARGUMENT-LS; return (FOUND . ETC).
|
||||
;; FOUND is an unordered list of option specs for found options, while ETC
|
||||
;; is an order-maintained list of elements in ARGUMENT-LS that are neither
|
||||
;; options nor their values.
|
||||
(let ((idx (map (lambda (spec)
|
||||
(cons (option-spec->name spec) spec))
|
||||
specs))
|
||||
(sc-idx (map (lambda (spec)
|
||||
(cons (make-string 1 (option-spec->single-char spec))
|
||||
spec))
|
||||
(remove-if-not option-spec->single-char specs))))
|
||||
(let loop ((argument-ls argument-ls) (found '()) (etc '()))
|
||||
(let ((eat! (lambda (spec ls)
|
||||
(let ((val!loop (lambda (val n-ls n-found n-etc)
|
||||
(set-option-spec-value! spec val)
|
||||
(loop n-ls n-found n-etc)))
|
||||
(ERR:no-arg (lambda ()
|
||||
(error (string-append
|
||||
"option must be specified"
|
||||
" with argument:")
|
||||
(option-spec->name spec)))))
|
||||
(cond
|
||||
((eq? 'optional (option-spec->value-policy spec))
|
||||
(if (or (null? (cdr ls))
|
||||
(looks-like-an-option (cadr ls)))
|
||||
(val!loop #t
|
||||
(cdr ls)
|
||||
(cons spec found)
|
||||
etc)
|
||||
(val!loop (cadr ls)
|
||||
(cddr ls)
|
||||
(cons spec found)
|
||||
etc)))
|
||||
((eq? #t (option-spec->value-policy spec))
|
||||
(if (or (null? (cdr ls))
|
||||
(looks-like-an-option (cadr ls)))
|
||||
(ERR:no-arg)
|
||||
(val!loop (cadr ls)
|
||||
(cddr ls)
|
||||
(cons spec found)
|
||||
etc)))
|
||||
(else
|
||||
(cons (cddr argument-ls)
|
||||
(cons (cons (car pair) (cadr argument-ls)) alist)))))
|
||||
(pair
|
||||
(cons (cdr argument-ls) (cons pair alist)))
|
||||
(else #f))))
|
||||
|
||||
(define (process-options specifications argument-ls)
|
||||
(define (iter argument-ls alist rest-ls)
|
||||
(val!loop #t
|
||||
(cdr ls)
|
||||
(cons spec found)
|
||||
etc)))))))
|
||||
(if (null? argument-ls)
|
||||
(cons alist (reverse rest-ls))
|
||||
(let ((pair (process-short-option specifications argument-ls alist)))
|
||||
(if pair
|
||||
(let ((argument-ls (car pair))
|
||||
(alist (cdr pair)))
|
||||
(iter argument-ls alist rest-ls))
|
||||
(let ((pair (process-long-option
|
||||
specifications argument-ls alist)))
|
||||
(if pair
|
||||
(let ((argument-ls (car pair))
|
||||
(alist (cdr pair)))
|
||||
(iter argument-ls alist rest-ls))
|
||||
(iter (cdr argument-ls)
|
||||
alist
|
||||
(cons (car argument-ls) rest-ls))))))))
|
||||
(iter argument-ls '() '()))
|
||||
(cons found (reverse etc)) ;;; retval
|
||||
(cond ((regexp-exec short-opt-rx (car argument-ls))
|
||||
=> (lambda (match)
|
||||
(let* ((c (match-substring match 1))
|
||||
(spec (or (assoc-ref sc-idx c)
|
||||
(error "no such option:" c))))
|
||||
(eat! spec argument-ls))))
|
||||
((regexp-exec long-opt-no-value-rx (car argument-ls))
|
||||
=> (lambda (match)
|
||||
(let* ((opt (match-substring match 1))
|
||||
(spec (or (assoc-ref idx opt)
|
||||
(error "no such option:" opt))))
|
||||
(eat! spec argument-ls))))
|
||||
((regexp-exec long-opt-with-value-rx (car argument-ls))
|
||||
=> (lambda (match)
|
||||
(let* ((opt (match-substring match 1))
|
||||
(spec (or (assoc-ref idx opt)
|
||||
(error "no such option:" opt))))
|
||||
(if (option-spec->value-policy spec)
|
||||
(eat! spec (append
|
||||
(list 'ignored
|
||||
(match-substring match 2))
|
||||
(cdr argument-ls)))
|
||||
(error "option does not support argument:"
|
||||
opt)))))
|
||||
(else
|
||||
(loop (cdr argument-ls)
|
||||
found
|
||||
(cons (car argument-ls) etc)))))))))
|
||||
|
||||
(define (getopt-long program-arguments option-desc-list)
|
||||
"Process options, handling both long and short options, similar to
|
||||
|
@ -708,41 +394,37 @@ or option values.
|
|||
By default, options are not required, and option values are not
|
||||
required. By default, single character equivalents are not supported;
|
||||
if you want to allow the user to use single character options, you need
|
||||
to add a 'single-char' clause to the option description."
|
||||
to add a `single-char' clause to the option description."
|
||||
(let* ((specifications (map parse-option-spec option-desc-list))
|
||||
(pair (split-arg-list (cdr program-arguments)))
|
||||
(split-ls (single-char-expander specifications (car pair)))
|
||||
(non-split-ls (cdr pair)))
|
||||
(let* ((opt-pair (process-options specifications split-ls))
|
||||
(alist (car opt-pair))
|
||||
(rest-ls (append (cdr opt-pair) non-split-ls)))
|
||||
;; loop through returned alist, set values into specifications
|
||||
(for-each (lambda (pair)
|
||||
(let* ((key (car pair))
|
||||
(val (cdr pair))
|
||||
(spec (find-if (lambda (spec)
|
||||
(eq? key (option-spec->name spec)))
|
||||
specifications)))
|
||||
(if spec (set-option-spec-value! spec val))))
|
||||
alist)
|
||||
;; now fire all the predicates
|
||||
(split-ls (expand-clumped-singles (car pair)))
|
||||
(non-split-ls (cdr pair))
|
||||
(found/etc (process-options specifications split-ls))
|
||||
(found (car found/etc))
|
||||
(rest-ls (append (cdr found/etc) non-split-ls)))
|
||||
(for-each (lambda (spec)
|
||||
(let ((predicate-ls (option-spec->predicate-ls spec)))
|
||||
(for-each (lambda (predicate)
|
||||
(predicate spec))
|
||||
predicate-ls)))
|
||||
(let ((name (option-spec->name spec))
|
||||
(val (option-spec->value spec)))
|
||||
(and (option-spec->required? spec)
|
||||
(or (memq spec found)
|
||||
(error "option must be specified:" name)))
|
||||
(and (memq spec found)
|
||||
(eq? #t (option-spec->value-policy spec))
|
||||
(or val
|
||||
(error "option must be specified with argument:"
|
||||
name)))
|
||||
(let ((pred (option-spec->predicate spec)))
|
||||
(and pred (pred name val)))))
|
||||
specifications)
|
||||
(cons (cons '() rest-ls) alist))))
|
||||
(cons (cons '() rest-ls)
|
||||
(map (lambda (spec)
|
||||
(cons (string->symbol (option-spec->name spec))
|
||||
(option-spec->value spec)))
|
||||
found))))
|
||||
|
||||
(define (option-ref options key default)
|
||||
"Look for an option value in OPTIONS using KEY. If no such value is
|
||||
found, return DEFAULT."
|
||||
(let ((pair (assq key options)))
|
||||
(if pair
|
||||
(cdr pair)
|
||||
default)))
|
||||
|
||||
(export option-ref)
|
||||
(export getopt-long)
|
||||
"Return value in alist OPTIONS using KEY, a symbol; or DEFAULT if not found.
|
||||
The value is either a string or `#t'."
|
||||
(or (assq-ref options key) default))
|
||||
|
||||
;;; getopt-long.scm ends here
|
||||
|
|
Loading…
Add table
Add a link
Reference in a new issue