1100 lines
42 KiB
Scheme
1100 lines
42 KiB
Scheme
;;; GNU Guix --- Functional package management for GNU
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;;; Copyright © 2012, 2013, 2014, 2015, 2016, 2017 Ludovic Courtès <ludo@gnu.org>
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;;; Copyright © 2013 Andreas Enge <andreas@enge.fr>
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;;; Copyright © 2013 Nikita Karetnikov <nikita@karetnikov.org>
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;;; Copyright © 2015 Mark H Weaver <mhw@netris.org>
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;;;
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;;; This file is part of GNU Guix.
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;;;
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;;; GNU Guix is free software; you can redistribute it and/or modify it
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;;; under the terms of the GNU General Public License as published by
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;;; the Free Software Foundation; either version 3 of the License, or (at
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;;; your option) any later version.
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;;;
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;;; GNU Guix is distributed in the hope that it will be useful, but
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;;; WITHOUT ANY WARRANTY; without even the implied warranty of
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;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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;;; GNU General Public License for more details.
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;;;
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;;; You should have received a copy of the GNU General Public License
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;;; along with GNU Guix. If not, see <http://www.gnu.org/licenses/>.
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(define-module (guix build utils)
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#:use-module (srfi srfi-1)
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#:use-module (srfi srfi-11)
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#:use-module (srfi srfi-26)
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#:use-module (srfi srfi-60)
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#:use-module (ice-9 ftw)
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#:use-module (ice-9 match)
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#:use-module (ice-9 regex)
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#:use-module (ice-9 rdelim)
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#:use-module (ice-9 format)
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#:use-module (ice-9 threads)
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#:use-module (rnrs bytevectors)
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#:use-module (rnrs io ports)
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#:re-export (alist-cons
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alist-delete
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;; Note: Re-export 'delete' to allow for proper syntax matching
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;; in 'modify-phases' forms. See
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;; <https://debbugs.gnu.org/cgi/bugreport.cgi?bug=26805#16>.
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delete)
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#:export (%store-directory
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store-file-name?
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strip-store-file-name
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package-name->name+version
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parallel-job-count
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directory-exists?
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executable-file?
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symbolic-link?
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call-with-ascii-input-file
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elf-file?
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ar-file?
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gzip-file?
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reset-gzip-timestamp
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with-directory-excursion
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mkdir-p
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install-file
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make-file-writable
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copy-recursively
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delete-file-recursively
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file-name-predicate
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find-files
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search-path-as-list
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set-path-environment-variable
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search-path-as-string->list
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list->search-path-as-string
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which
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every*
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alist-cons-before
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alist-cons-after
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alist-replace
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modify-phases
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with-atomic-file-replacement
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substitute
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substitute*
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dump-port
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set-file-time
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patch-shebang
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patch-makefile-SHELL
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patch-/usr/bin/file
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fold-port-matches
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remove-store-references
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wrap-program
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invoke
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locale-category->string))
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;;;
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;;; Directories.
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;;;
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(define (%store-directory)
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"Return the directory name of the store."
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(or (getenv "NIX_STORE")
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"/gnu/store"))
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(define (store-file-name? file)
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"Return true if FILE is in the store."
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(string-prefix? (%store-directory) file))
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(define (strip-store-file-name file)
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"Strip the '/gnu/store' and hash from FILE, a store file name. The result
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is typically a \"PACKAGE-VERSION\" string."
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(string-drop file
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(+ 34 (string-length (%store-directory)))))
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(define (package-name->name+version name)
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"Given NAME, a package name like \"foo-0.9.1b\", return two values:
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\"foo\" and \"0.9.1b\". When the version part is unavailable, NAME and
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#f are returned. The first hyphen followed by a digit is considered to
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introduce the version part."
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;; See also `DrvName' in Nix.
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(define number?
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(cut char-set-contains? char-set:digit <>))
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(let loop ((chars (string->list name))
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(prefix '()))
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(match chars
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(()
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(values name #f))
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((#\- (? number? n) rest ...)
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(values (list->string (reverse prefix))
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(list->string (cons n rest))))
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((head tail ...)
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(loop tail (cons head prefix))))))
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(define parallel-job-count
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;; Number of processes to be passed next to GNU Make's `-j' argument.
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(make-parameter
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(match (getenv "NIX_BUILD_CORES") ;set by the daemon
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(#f 1)
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("0" (current-processor-count))
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(x (or (string->number x) 1)))))
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(define (directory-exists? dir)
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"Return #t if DIR exists and is a directory."
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(let ((s (stat dir #f)))
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(and s
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(eq? 'directory (stat:type s)))))
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(define (executable-file? file)
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"Return #t if FILE exists and is executable."
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(let ((s (stat file #f)))
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(and s
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(not (zero? (logand (stat:mode s) #o100))))))
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(define (symbolic-link? file)
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"Return #t if FILE is a symbolic link (aka. \"symlink\".)"
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(eq? (stat:type (lstat file)) 'symlink))
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(define (call-with-ascii-input-file file proc)
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"Open FILE as an ASCII or binary file, and pass the resulting port to
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PROC. FILE is closed when PROC's dynamic extent is left. Return the
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return values of applying PROC to the port."
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(let ((port (with-fluids ((%default-port-encoding #f))
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;; Use "b" so that `open-file' ignores `coding:' cookies.
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(open-file file "rb"))))
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(dynamic-wind
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(lambda ()
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#t)
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(lambda ()
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(proc port))
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(lambda ()
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(close-input-port port)))))
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(define (file-header-match header)
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"Return a procedure that returns true when its argument is a file starting
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with the bytes in HEADER, a bytevector."
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(define len
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(bytevector-length header))
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(lambda (file)
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"Return true if FILE starts with the right magic bytes."
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(define (get-header)
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(call-with-input-file file
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(lambda (port)
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(get-bytevector-n port len))
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#:binary #t #:guess-encoding #f))
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(catch 'system-error
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(lambda ()
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(equal? (get-header) header))
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(lambda args
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(if (= EISDIR (system-error-errno args))
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#f ;FILE is a directory
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(apply throw args))))))
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(define %elf-magic-bytes
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;; Magic bytes of ELF files. See <elf.h>.
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(u8-list->bytevector (map char->integer (string->list "\x7FELF"))))
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(define elf-file?
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(file-header-match %elf-magic-bytes))
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(define %ar-magic-bytes
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;; Magic bytes of archives created by 'ar'. See <ar.h>.
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(u8-list->bytevector (map char->integer (string->list "!<arch>\n"))))
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(define ar-file?
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(file-header-match %ar-magic-bytes))
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(define %gzip-magic-bytes
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;; Magic bytes of gzip file. Beware, it's a small header so there could be
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;; false positives.
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#vu8(#x1f #x8b))
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(define gzip-file?
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(file-header-match %gzip-magic-bytes))
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(define* (reset-gzip-timestamp file #:key (keep-mtime? #t))
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"If FILE is a gzip file, reset its embedded timestamp (as with 'gzip
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--no-name') and return true. Otherwise return #f. When KEEP-MTIME? is true,
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preserve FILE's modification time."
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(let ((stat (stat file))
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(port (open file O_RDWR)))
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(dynamic-wind
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(const #t)
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(lambda ()
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(and (= 4 (seek port 4 SEEK_SET))
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(put-bytevector port #vu8(0 0 0 0))))
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(lambda ()
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(close-port port)
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(set-file-time file stat)))))
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(define-syntax-rule (with-directory-excursion dir body ...)
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"Run BODY with DIR as the process's current directory."
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(let ((init (getcwd)))
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(dynamic-wind
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(lambda ()
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(chdir dir))
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(lambda ()
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body ...)
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(lambda ()
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(chdir init)))))
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(define (mkdir-p dir)
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"Create directory DIR and all its ancestors."
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(define absolute?
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(string-prefix? "/" dir))
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(define not-slash
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(char-set-complement (char-set #\/)))
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(let loop ((components (string-tokenize dir not-slash))
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(root (if absolute?
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""
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".")))
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(match components
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((head tail ...)
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(let ((path (string-append root "/" head)))
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(catch 'system-error
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(lambda ()
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(mkdir path)
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(loop tail path))
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(lambda args
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(if (= EEXIST (system-error-errno args))
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(loop tail path)
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(apply throw args))))))
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(() #t))))
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(define (install-file file directory)
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"Create DIRECTORY if it does not exist and copy FILE in there under the same
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name."
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(mkdir-p directory)
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(copy-file file (string-append directory "/" (basename file))))
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(define (make-file-writable file)
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"Make FILE writable for its owner."
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(let ((stat (lstat file))) ;XXX: symlinks
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(chmod file (logior #o600 (stat:perms stat)))))
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(define* (copy-recursively source destination
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#:key
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(log (current-output-port))
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(follow-symlinks? #f)
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keep-mtime?)
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"Copy SOURCE directory to DESTINATION. Follow symlinks if FOLLOW-SYMLINKS?
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is true; otherwise, just preserve them. When KEEP-MTIME? is true, keep the
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modification time of the files in SOURCE on those of DESTINATION. Write
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verbose output to the LOG port."
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(define strip-source
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(let ((len (string-length source)))
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(lambda (file)
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(substring file len))))
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(file-system-fold (const #t) ; enter?
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(lambda (file stat result) ; leaf
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(let ((dest (string-append destination
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(strip-source file))))
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(format log "`~a' -> `~a'~%" file dest)
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(case (stat:type stat)
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((symlink)
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(let ((target (readlink file)))
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(symlink target dest)))
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(else
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(copy-file file dest)
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(when keep-mtime?
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(set-file-time dest stat))))))
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(lambda (dir stat result) ; down
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(let ((target (string-append destination
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(strip-source dir))))
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(mkdir-p target)
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(when keep-mtime?
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(set-file-time target stat))))
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(lambda (dir stat result) ; up
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result)
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(const #t) ; skip
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(lambda (file stat errno result)
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(format (current-error-port) "i/o error: ~a: ~a~%"
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file (strerror errno))
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#f)
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#t
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source
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(if follow-symlinks?
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stat
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lstat)))
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(define* (delete-file-recursively dir
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#:key follow-mounts?)
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"Delete DIR recursively, like `rm -rf', without following symlinks. Don't
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follow mount points either, unless FOLLOW-MOUNTS? is true. Report but ignore
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errors."
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(let ((dev (stat:dev (lstat dir))))
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(file-system-fold (lambda (dir stat result) ; enter?
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(or follow-mounts?
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(= dev (stat:dev stat))))
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(lambda (file stat result) ; leaf
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(delete-file file))
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(const #t) ; down
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(lambda (dir stat result) ; up
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(rmdir dir))
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(const #t) ; skip
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(lambda (file stat errno result)
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(format (current-error-port)
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"warning: failed to delete ~a: ~a~%"
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file (strerror errno)))
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#t
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dir
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;; Don't follow symlinks.
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lstat)))
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(define (file-name-predicate regexp)
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"Return a predicate that returns true when passed a file name whose base
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name matches REGEXP."
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(let ((file-rx (if (regexp? regexp)
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regexp
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(make-regexp regexp))))
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(lambda (file stat)
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(regexp-exec file-rx (basename file)))))
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(define* (find-files dir #:optional (pred (const #t))
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#:key (stat lstat)
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directories?
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fail-on-error?)
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"Return the lexicographically sorted list of files under DIR for which PRED
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returns true. PRED is passed two arguments: the absolute file name, and its
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stat buffer; the default predicate always returns true. PRED can also be a
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regular expression, in which case it is equivalent to (file-name-predicate
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PRED). STAT is used to obtain file information; using 'lstat' means that
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symlinks are not followed. If DIRECTORIES? is true, then directories will
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also be included. If FAIL-ON-ERROR? is true, raise an exception upon error."
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(let ((pred (if (procedure? pred)
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pred
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(file-name-predicate pred))))
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;; Sort the result to get deterministic results.
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(sort (file-system-fold (const #t)
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(lambda (file stat result) ; leaf
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(if (pred file stat)
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(cons file result)
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result))
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(lambda (dir stat result) ; down
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(if (and directories?
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(pred dir stat))
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(cons dir result)
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result))
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(lambda (dir stat result) ; up
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result)
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(lambda (file stat result) ; skip
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result)
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(lambda (file stat errno result)
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(format (current-error-port) "find-files: ~a: ~a~%"
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file (strerror errno))
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(when fail-on-error?
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(error "find-files failed"))
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result)
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'()
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dir
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stat)
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string<?)))
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;;;
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;;; Search paths.
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;;;
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(define* (search-path-as-list files input-dirs
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#:key (type 'directory) pattern)
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"Return the list of directories among FILES of the given TYPE (a symbol as
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returned by 'stat:type') that exist in INPUT-DIRS. Example:
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(search-path-as-list '(\"share/emacs/site-lisp\" \"share/emacs/24.1\")
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(list \"/package1\" \"/package2\" \"/package3\"))
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=> (\"/package1/share/emacs/site-lisp\"
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\"/package3/share/emacs/site-lisp\")
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When PATTERN is true, it is a regular expression denoting file names to look
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for under the directories designated by FILES. For example:
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(search-path-as-list '(\"xml\") (list docbook-xml docbook-xsl)
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#:type 'regular
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#:pattern \"^catalog\\\\.xml$\")
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=> (\"/…/xml/dtd/docbook/catalog.xml\"
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\"/…/xml/xsl/docbook-xsl-1.78.1/catalog.xml\")
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"
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(append-map (lambda (input)
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(append-map (lambda (file)
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(let ((file (string-append input "/" file)))
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(if pattern
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(find-files file (lambda (file stat)
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(and stat
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(eq? type (stat:type stat))
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((file-name-predicate pattern) file stat)))
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#:stat stat
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#:directories? #t)
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(let ((stat (stat file #f)))
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(if (and stat (eq? type (stat:type stat)))
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(list file)
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'())))))
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files))
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(delete-duplicates input-dirs)))
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(define (list->search-path-as-string lst separator)
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(if separator
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(string-join lst separator)
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(match lst
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((head rest ...) head)
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(() ""))))
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(define* (search-path-as-string->list path #:optional (separator #\:))
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(if separator
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(string-tokenize path
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(char-set-complement (char-set separator)))
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(list path)))
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(define* (set-path-environment-variable env-var files input-dirs
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#:key
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(separator ":")
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(type 'directory)
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pattern)
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"Look for each of FILES of the given TYPE (a symbol as returned by
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'stat:type') in INPUT-DIRS. Set ENV-VAR to a SEPARATOR-separated path
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accordingly. Example:
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(set-path-environment-variable \"PKG_CONFIG\"
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'(\"lib/pkgconfig\")
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(list package1 package2))
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When PATTERN is not #f, it must be a regular expression (really a string)
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denoting file names to look for under the directories designated by FILES:
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(set-path-environment-variable \"XML_CATALOG_FILES\"
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'(\"xml\")
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(list docbook-xml docbook-xsl)
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#:type 'regular
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#:pattern \"^catalog\\\\.xml$\")
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"
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(let* ((path (search-path-as-list files input-dirs
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#:type type
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#:pattern pattern))
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(value (list->search-path-as-string path separator)))
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(if (string-null? value)
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(begin
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;; Never set ENV-VAR to an empty string because often, the empty
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;; string is equivalent to ".". This is the case for
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;; GUILE_LOAD_PATH in Guile 2.0, for instance.
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(unsetenv env-var)
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(format #t "environment variable `~a' unset~%" env-var))
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(begin
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(setenv env-var value)
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(format #t "environment variable `~a' set to `~a'~%"
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env-var value)))))
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(define (which program)
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"Return the complete file name for PROGRAM as found in $PATH, or #f if
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PROGRAM could not be found."
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(search-path (search-path-as-string->list (getenv "PATH"))
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program))
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;;;
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;;; Phases.
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;;;
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;;; In (guix build gnu-build-system), there are separate phases (configure,
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;;; build, test, install). They are represented as a list of name/procedure
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;;; pairs. The following procedures make it easy to change the list of
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;;; phases.
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;;;
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(define (every* pred lst)
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"This is like 'every', but process all the elements of LST instead of
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stopping as soon as PRED returns false. This is useful when PRED has side
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effects, such as displaying warnings or error messages."
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(let loop ((lst lst)
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(result #t))
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(match lst
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(()
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result)
|
||
((head . tail)
|
||
(loop tail (and (pred head) result))))))
|
||
|
||
(define* (alist-cons-before reference key value alist
|
||
#:optional (key=? equal?))
|
||
"Insert the KEY/VALUE pair before the first occurrence of a pair whose key
|
||
is REFERENCE in ALIST. Use KEY=? to compare keys."
|
||
(let-values (((before after)
|
||
(break (match-lambda
|
||
((k . _)
|
||
(key=? k reference)))
|
||
alist)))
|
||
(append before (alist-cons key value after))))
|
||
|
||
(define* (alist-cons-after reference key value alist
|
||
#:optional (key=? equal?))
|
||
"Insert the KEY/VALUE pair after the first occurrence of a pair whose key
|
||
is REFERENCE in ALIST. Use KEY=? to compare keys."
|
||
(let-values (((before after)
|
||
(break (match-lambda
|
||
((k . _)
|
||
(key=? k reference)))
|
||
alist)))
|
||
(match after
|
||
((reference after ...)
|
||
(append before (cons* reference `(,key . ,value) after)))
|
||
(()
|
||
(append before `((,key . ,value)))))))
|
||
|
||
(define* (alist-replace key value alist #:optional (key=? equal?))
|
||
"Replace the first pair in ALIST whose car is KEY with the KEY/VALUE pair.
|
||
An error is raised when no such pair exists."
|
||
(let-values (((before after)
|
||
(break (match-lambda
|
||
((k . _)
|
||
(key=? k key)))
|
||
alist)))
|
||
(match after
|
||
((_ after ...)
|
||
(append before (alist-cons key value after))))))
|
||
|
||
(define-syntax-rule (modify-phases phases mod-spec ...)
|
||
"Modify PHASES sequentially as per each MOD-SPEC, which may have one of the
|
||
following forms:
|
||
|
||
(delete <old-phase-name>)
|
||
(replace <old-phase-name> <new-phase>)
|
||
(add-before <old-phase-name> <new-phase-name> <new-phase>)
|
||
(add-after <old-phase-name> <new-phase-name> <new-phase>)
|
||
|
||
Where every <*-phase-name> is an expression evaluating to a symbol, and
|
||
<new-phase> an expression evaluating to a procedure."
|
||
(let* ((phases* phases)
|
||
(phases* (%modify-phases phases* mod-spec))
|
||
...)
|
||
phases*))
|
||
|
||
(define-syntax %modify-phases
|
||
(syntax-rules (delete replace add-before add-after)
|
||
((_ phases (delete old-phase-name))
|
||
(alist-delete old-phase-name phases))
|
||
((_ phases (replace old-phase-name new-phase))
|
||
(alist-replace old-phase-name new-phase phases))
|
||
((_ phases (add-before old-phase-name new-phase-name new-phase))
|
||
(alist-cons-before old-phase-name new-phase-name new-phase phases))
|
||
((_ phases (add-after old-phase-name new-phase-name new-phase))
|
||
(alist-cons-after old-phase-name new-phase-name new-phase phases))))
|
||
|
||
(define (invoke program . args)
|
||
"Invoke PROGRAM with the given ARGS. Raise an error if the exit
|
||
code is non-zero; otherwise return #t."
|
||
(let ((status (apply system* program args)))
|
||
(unless (zero? status)
|
||
(error (format #f "program ~s exited with non-zero code" program)
|
||
status))
|
||
#t))
|
||
|
||
|
||
;;;
|
||
;;; Text substitution (aka. sed).
|
||
;;;
|
||
|
||
(define (with-atomic-file-replacement file proc)
|
||
"Call PROC with two arguments: an input port for FILE, and an output
|
||
port for the file that is going to replace FILE. Upon success, FILE is
|
||
atomically replaced by what has been written to the output port, and
|
||
PROC's result is returned."
|
||
(let* ((template (string-append file ".XXXXXX"))
|
||
(out (mkstemp! template))
|
||
(mode (stat:mode (stat file))))
|
||
(with-throw-handler #t
|
||
(lambda ()
|
||
(call-with-input-file file
|
||
(lambda (in)
|
||
(let ((result (proc in out)))
|
||
(close out)
|
||
(chmod template mode)
|
||
(rename-file template file)
|
||
result))))
|
||
(lambda (key . args)
|
||
(false-if-exception (delete-file template))))))
|
||
|
||
(define (substitute file pattern+procs)
|
||
"PATTERN+PROCS is a list of regexp/two-argument-procedure pairs. For each
|
||
line of FILE, and for each PATTERN that it matches, call the corresponding
|
||
PROC as (PROC LINE MATCHES); PROC must return the line that will be written as
|
||
a substitution of the original line. Be careful about using '$' to match the
|
||
end of a line; by itself it won't match the terminating newline of a line."
|
||
(let ((rx+proc (map (match-lambda
|
||
(((? regexp? pattern) . proc)
|
||
(cons pattern proc))
|
||
((pattern . proc)
|
||
(cons (make-regexp pattern regexp/extended)
|
||
proc)))
|
||
pattern+procs)))
|
||
(with-atomic-file-replacement file
|
||
(lambda (in out)
|
||
(let loop ((line (read-line in 'concat)))
|
||
(if (eof-object? line)
|
||
#t
|
||
(let ((line (fold (lambda (r+p line)
|
||
(match r+p
|
||
((regexp . proc)
|
||
(match (list-matches regexp line)
|
||
((and m+ (_ _ ...))
|
||
(proc line m+))
|
||
(_ line)))))
|
||
line
|
||
rx+proc)))
|
||
(display line out)
|
||
(loop (read-line in 'concat)))))))))
|
||
|
||
|
||
(define-syntax let-matches
|
||
;; Helper macro for `substitute*'.
|
||
(syntax-rules (_)
|
||
((let-matches index match (_ vars ...) body ...)
|
||
(let-matches (+ 1 index) match (vars ...)
|
||
body ...))
|
||
((let-matches index match (var vars ...) body ...)
|
||
(let ((var (match:substring match index)))
|
||
(let-matches (+ 1 index) match (vars ...)
|
||
body ...)))
|
||
((let-matches index match () body ...)
|
||
(begin body ...))))
|
||
|
||
(define-syntax substitute*
|
||
(syntax-rules ()
|
||
"Substitute REGEXP in FILE by the string returned by BODY. BODY is
|
||
evaluated with each MATCH-VAR bound to the corresponding positional regexp
|
||
sub-expression. For example:
|
||
|
||
(substitute* file
|
||
((\"hello\")
|
||
\"good morning\\n\")
|
||
((\"foo([a-z]+)bar(.*)$\" all letters end)
|
||
(string-append \"baz\" letter end)))
|
||
|
||
Here, anytime a line of FILE contains \"hello\", it is replaced by \"good
|
||
morning\". Anytime a line of FILE matches the second regexp, ALL is bound to
|
||
the complete match, LETTERS is bound to the first sub-expression, and END is
|
||
bound to the last one.
|
||
|
||
When one of the MATCH-VAR is `_', no variable is bound to the corresponding
|
||
match substring.
|
||
|
||
Alternatively, FILE may be a list of file names, in which case they are
|
||
all subject to the substitutions.
|
||
|
||
Be careful about using '$' to match the end of a line; by itself it won't
|
||
match the terminating newline of a line."
|
||
((substitute* file ((regexp match-var ...) body ...) ...)
|
||
(let ()
|
||
(define (substitute-one-file file-name)
|
||
(substitute
|
||
file-name
|
||
(list (cons regexp
|
||
(lambda (l m+)
|
||
;; Iterate over matches M+ and return the
|
||
;; modified line based on L.
|
||
(let loop ((m* m+) ; matches
|
||
(o 0) ; offset in L
|
||
(r '())) ; result
|
||
(match m*
|
||
(()
|
||
(let ((r (cons (substring l o) r)))
|
||
(string-concatenate-reverse r)))
|
||
((m . rest)
|
||
(let-matches 0 m (match-var ...)
|
||
(loop rest
|
||
(match:end m)
|
||
(cons*
|
||
(begin body ...)
|
||
(substring l o (match:start m))
|
||
r))))))))
|
||
...)))
|
||
|
||
(match file
|
||
((files (... ...))
|
||
(for-each substitute-one-file files))
|
||
((? string? f)
|
||
(substitute-one-file f)))))))
|
||
|
||
|
||
;;;
|
||
;;; Patching shebangs---e.g., /bin/sh -> /gnu/store/xyz...-bash/bin/sh.
|
||
;;;
|
||
|
||
(define* (dump-port in out
|
||
#:key (buffer-size 16384)
|
||
(progress (lambda (t k) (k))))
|
||
"Read as much data as possible from IN and write it to OUT, using chunks of
|
||
BUFFER-SIZE bytes. Call PROGRESS at the beginning and after each successful
|
||
transfer of BUFFER-SIZE bytes or less, passing it the total number of bytes
|
||
transferred and the continuation of the transfer as a thunk."
|
||
(define buffer
|
||
(make-bytevector buffer-size))
|
||
|
||
(define (loop total bytes)
|
||
(or (eof-object? bytes)
|
||
(let ((total (+ total bytes)))
|
||
(put-bytevector out buffer 0 bytes)
|
||
(progress total
|
||
(lambda ()
|
||
(loop total
|
||
(get-bytevector-n! in buffer 0 buffer-size)))))))
|
||
|
||
;; Make sure PROGRESS is called when we start so that it can measure
|
||
;; throughput.
|
||
(progress 0
|
||
(lambda ()
|
||
(loop 0 (get-bytevector-n! in buffer 0 buffer-size)))))
|
||
|
||
(define (set-file-time file stat)
|
||
"Set the atime/mtime of FILE to that specified by STAT."
|
||
(utime file
|
||
(stat:atime stat)
|
||
(stat:mtime stat)
|
||
(stat:atimensec stat)
|
||
(stat:mtimensec stat)))
|
||
|
||
(define (get-char* p)
|
||
;; We call it `get-char', but that's really a binary version
|
||
;; thereof. (The real `get-char' cannot be used here because our
|
||
;; bootstrap Guile is hacked to always use UTF-8.)
|
||
(match (get-u8 p)
|
||
((? integer? x) (integer->char x))
|
||
(x x)))
|
||
|
||
(define patch-shebang
|
||
(let ((shebang-rx (make-regexp "^[[:blank:]]*([[:graph:]]+)[[:blank:]]*([[:graph:]]*)(.*)$")))
|
||
(lambda* (file
|
||
#:optional
|
||
(path (search-path-as-string->list (getenv "PATH")))
|
||
#:key (keep-mtime? #t))
|
||
"Replace the #! interpreter file name in FILE by a valid one found in
|
||
PATH, when FILE actually starts with a shebang. Return #t when FILE was
|
||
patched, #f otherwise. When KEEP-MTIME? is true, the atime/mtime of
|
||
FILE are kept unchanged."
|
||
(define (patch p interpreter rest-of-line)
|
||
(let* ((template (string-append file ".XXXXXX"))
|
||
(out (mkstemp! template))
|
||
(st (stat file))
|
||
(mode (stat:mode st)))
|
||
(with-throw-handler #t
|
||
(lambda ()
|
||
(format out "#!~a~a~%"
|
||
interpreter rest-of-line)
|
||
(dump-port p out)
|
||
(close out)
|
||
(chmod template mode)
|
||
(rename-file template file)
|
||
(when keep-mtime?
|
||
(set-file-time file st))
|
||
#t)
|
||
(lambda (key . args)
|
||
(format (current-error-port)
|
||
"patch-shebang: ~a: error: ~a ~s~%"
|
||
file key args)
|
||
(false-if-exception (delete-file template))
|
||
#f))))
|
||
|
||
(call-with-ascii-input-file file
|
||
(lambda (p)
|
||
(and (eq? #\# (get-char* p))
|
||
(eq? #\! (get-char* p))
|
||
(let ((line (false-if-exception (read-line p))))
|
||
(and=> (and line (regexp-exec shebang-rx line))
|
||
(lambda (m)
|
||
(let* ((interp (match:substring m 1))
|
||
(arg1 (match:substring m 2))
|
||
(rest (match:substring m 3))
|
||
(has-env (string-suffix? "/env" interp))
|
||
(cmd (if has-env arg1 (basename interp)))
|
||
(bin (search-path path cmd)))
|
||
(if bin
|
||
(if (string=? bin interp)
|
||
#f ; nothing to do
|
||
(if has-env
|
||
(begin
|
||
(format (current-error-port)
|
||
"patch-shebang: ~a: changing `~a' to `~a'~%"
|
||
file (string-append interp " " arg1) bin)
|
||
(patch p bin rest))
|
||
(begin
|
||
(format (current-error-port)
|
||
"patch-shebang: ~a: changing `~a' to `~a'~%"
|
||
file interp bin)
|
||
(patch p bin
|
||
(if (string-null? arg1)
|
||
""
|
||
(string-append " " arg1 rest))))))
|
||
(begin
|
||
(format (current-error-port)
|
||
"patch-shebang: ~a: warning: no binary for interpreter `~a' found in $PATH~%"
|
||
file (basename cmd))
|
||
#f))))))))))))
|
||
|
||
(define* (patch-makefile-SHELL file #:key (keep-mtime? #t))
|
||
"Patch the `SHELL' variable in FILE, which is supposedly a makefile.
|
||
When KEEP-MTIME? is true, the atime/mtime of FILE are kept unchanged."
|
||
|
||
;; For instance, Gettext-generated po/Makefile.in.in do not honor $SHELL.
|
||
|
||
;; XXX: Unlike with `patch-shebang', FILE is always touched.
|
||
|
||
(define (find-shell name)
|
||
(let ((shell (which name)))
|
||
(unless shell
|
||
(format (current-error-port)
|
||
"patch-makefile-SHELL: warning: no binary for shell `~a' found in $PATH~%"
|
||
name))
|
||
shell))
|
||
|
||
(let ((st (stat file)))
|
||
;; Consider FILE is using an 8-bit encoding to avoid errors.
|
||
(with-fluids ((%default-port-encoding #f))
|
||
(substitute* file
|
||
(("^ *SHELL[[:blank:]]*:?=[[:blank:]]*([[:graph:]]*/)([[:graph:]]+)(.*)$"
|
||
_ dir shell args)
|
||
(let* ((old (string-append dir shell))
|
||
(new (or (find-shell shell) old)))
|
||
(unless (string=? new old)
|
||
(format (current-error-port)
|
||
"patch-makefile-SHELL: ~a: changing `SHELL' from `~a' to `~a'~%"
|
||
file old new))
|
||
(string-append "SHELL = " new args)))))
|
||
|
||
(when keep-mtime?
|
||
(set-file-time file st))))
|
||
|
||
(define* (patch-/usr/bin/file file
|
||
#:key
|
||
(file-command (which "file"))
|
||
(keep-mtime? #t))
|
||
"Patch occurrences of \"/usr/bin/file\" in FILE, replacing them with
|
||
FILE-COMMAND. When KEEP-MTIME? is true, keep FILE's modification time
|
||
unchanged."
|
||
(if (not file-command)
|
||
(format (current-error-port)
|
||
"patch-/usr/bin/file: warning: \
|
||
no replacement 'file' command, doing nothing~%")
|
||
(let ((st (stat file)))
|
||
;; Consider FILE is using an 8-bit encoding to avoid errors.
|
||
(with-fluids ((%default-port-encoding #f))
|
||
(substitute* file
|
||
(("/usr/bin/file")
|
||
(begin
|
||
(format (current-error-port)
|
||
"patch-/usr/bin/file: ~a: changing `~a' to `~a'~%"
|
||
file "/usr/bin/file" file-command)
|
||
file-command))))
|
||
|
||
(when keep-mtime?
|
||
(set-file-time file st)))))
|
||
|
||
(define* (fold-port-matches proc init pattern port
|
||
#:optional (unmatched (lambda (_ r) r)))
|
||
"Read from PORT character-by-character; for each match against
|
||
PATTERN, call (PROC MATCH RESULT), where RESULT is seeded with INIT.
|
||
PATTERN is a list of SRFI-14 char-sets. Call (UNMATCHED CHAR RESULT)
|
||
for each unmatched character."
|
||
(define initial-pattern
|
||
;; The poor developer's regexp.
|
||
(if (string? pattern)
|
||
(map char-set (string->list pattern))
|
||
pattern))
|
||
|
||
;; Note: we're not really striving for performance here...
|
||
(let loop ((chars '())
|
||
(pattern initial-pattern)
|
||
(matched '())
|
||
(result init))
|
||
(cond ((null? chars)
|
||
(loop (list (get-char* port))
|
||
pattern
|
||
matched
|
||
result))
|
||
((null? pattern)
|
||
(loop chars
|
||
initial-pattern
|
||
'()
|
||
(proc (list->string (reverse matched)) result)))
|
||
((eof-object? (car chars))
|
||
(fold-right unmatched result matched))
|
||
((char-set-contains? (car pattern) (car chars))
|
||
(loop (cdr chars)
|
||
(cdr pattern)
|
||
(cons (car chars) matched)
|
||
result))
|
||
((null? matched) ; common case
|
||
(loop (cdr chars)
|
||
pattern
|
||
matched
|
||
(unmatched (car chars) result)))
|
||
(else
|
||
(let ((matched (reverse matched)))
|
||
(loop (append (cdr matched) chars)
|
||
initial-pattern
|
||
'()
|
||
(unmatched (car matched) result)))))))
|
||
|
||
(define* (remove-store-references file
|
||
#:optional (store (%store-directory)))
|
||
"Remove from FILE occurrences of file names in STORE; return #t when
|
||
store paths were encountered in FILE, #f otherwise. This procedure is
|
||
known as `nuke-refs' in Nixpkgs."
|
||
(define pattern
|
||
(let ((nix-base32-chars
|
||
'(#\0 #\1 #\2 #\3 #\4 #\5 #\6 #\7 #\8 #\9
|
||
#\a #\b #\c #\d #\f #\g #\h #\i #\j #\k #\l #\m #\n
|
||
#\p #\q #\r #\s #\v #\w #\x #\y #\z)))
|
||
`(,@(map char-set (string->list store))
|
||
,(char-set #\/)
|
||
,@(make-list 32 (list->char-set nix-base32-chars))
|
||
,(char-set #\-))))
|
||
|
||
(with-fluids ((%default-port-encoding #f))
|
||
(with-atomic-file-replacement file
|
||
(lambda (in out)
|
||
;; We cannot use `regexp-exec' here because it cannot deal with
|
||
;; strings containing NUL characters.
|
||
(format #t "removing store references from `~a'...~%" file)
|
||
(setvbuf in _IOFBF 65536)
|
||
(setvbuf out _IOFBF 65536)
|
||
(fold-port-matches (lambda (match result)
|
||
(put-bytevector out (string->utf8 store))
|
||
(put-u8 out (char->integer #\/))
|
||
(put-bytevector out
|
||
(string->utf8
|
||
"eeeeeeeeeeeeeeeeeeeeeeeeeeeeeeee-"))
|
||
#t)
|
||
#f
|
||
pattern
|
||
in
|
||
(lambda (char result)
|
||
(put-u8 out (char->integer char))
|
||
result))))))
|
||
|
||
(define* (wrap-program prog #:rest vars)
|
||
"Make a wrapper for PROG. VARS should look like this:
|
||
|
||
'(VARIABLE DELIMITER POSITION LIST-OF-DIRECTORIES)
|
||
|
||
where DELIMITER is optional. ':' will be used if DELIMITER is not given.
|
||
|
||
For example, this command:
|
||
|
||
(wrap-program \"foo\"
|
||
'(\"PATH\" \":\" = (\"/gnu/.../bar/bin\"))
|
||
'(\"CERT_PATH\" suffix (\"/gnu/.../baz/certs\"
|
||
\"/qux/certs\")))
|
||
|
||
will copy 'foo' to '.foo-real' and create the file 'foo' with the following
|
||
contents:
|
||
|
||
#!location/of/bin/bash
|
||
export PATH=\"/gnu/.../bar/bin\"
|
||
export CERT_PATH=\"$CERT_PATH${CERT_PATH:+:}/gnu/.../baz/certs:/qux/certs\"
|
||
exec -a $0 location/of/.foo-real \"$@\"
|
||
|
||
This is useful for scripts that expect particular programs to be in $PATH, for
|
||
programs that expect particular shared libraries to be in $LD_LIBRARY_PATH, or
|
||
modules in $GUILE_LOAD_PATH, etc.
|
||
|
||
If PROG has previously been wrapped by 'wrap-program', the wrapper is extended
|
||
with definitions for VARS."
|
||
(define wrapped-file
|
||
(string-append (dirname prog) "/." (basename prog) "-real"))
|
||
|
||
(define already-wrapped?
|
||
(file-exists? wrapped-file))
|
||
|
||
(define (last-line port)
|
||
;; Return the last line read from PORT and leave PORT's cursor right
|
||
;; before it.
|
||
(let loop ((previous-line-offset 0)
|
||
(previous-line "")
|
||
(position (seek port 0 SEEK_CUR)))
|
||
(match (read-line port 'concat)
|
||
((? eof-object?)
|
||
(seek port previous-line-offset SEEK_SET)
|
||
previous-line)
|
||
((? string? line)
|
||
(loop position line (+ (string-length line) position))))))
|
||
|
||
(define (export-variable lst)
|
||
;; Return a string that exports an environment variable.
|
||
(match lst
|
||
((var sep '= rest)
|
||
(format #f "export ~a=\"~a\""
|
||
var (string-join rest sep)))
|
||
((var sep 'prefix rest)
|
||
(format #f "export ~a=\"~a${~a~a+~a}$~a\""
|
||
var (string-join rest sep) var sep sep var))
|
||
((var sep 'suffix rest)
|
||
(format #f "export ~a=\"$~a${~a~a+~a}~a\""
|
||
var var var sep sep (string-join rest sep)))
|
||
((var '= rest)
|
||
(format #f "export ~a=\"~a\""
|
||
var (string-join rest ":")))
|
||
((var 'prefix rest)
|
||
(format #f "export ~a=\"~a${~a:+:}$~a\""
|
||
var (string-join rest ":") var var))
|
||
((var 'suffix rest)
|
||
(format #f "export ~a=\"$~a${~a:+:}~a\""
|
||
var var var (string-join rest ":")))))
|
||
|
||
(if already-wrapped?
|
||
|
||
;; PROG is already a wrapper: add the new "export VAR=VALUE" lines just
|
||
;; before the last line.
|
||
(let* ((port (open-file prog "r+"))
|
||
(last (last-line port)))
|
||
(for-each (lambda (var)
|
||
(display (export-variable var) port)
|
||
(newline port))
|
||
vars)
|
||
(display last port)
|
||
(close-port port))
|
||
|
||
;; PROG is not wrapped yet: create a shell script that sets VARS.
|
||
(let ((prog-tmp (string-append wrapped-file "-tmp")))
|
||
(link prog wrapped-file)
|
||
|
||
(call-with-output-file prog-tmp
|
||
(lambda (port)
|
||
(format port
|
||
"#!~a~%~a~%exec -a \"$0\" \"~a\" \"$@\"~%"
|
||
(which "bash")
|
||
(string-join (map export-variable vars) "\n")
|
||
(canonicalize-path wrapped-file))))
|
||
|
||
(chmod prog-tmp #o755)
|
||
(rename-file prog-tmp prog))))
|
||
|
||
|
||
;;;
|
||
;;; Locales.
|
||
;;;
|
||
|
||
(define (locale-category->string category)
|
||
"Return the name of locale category CATEGORY, one of the 'LC_' constants.
|
||
If CATEGORY is a bitwise or of several 'LC_' constants, an approximation is
|
||
returned."
|
||
(letrec-syntax ((convert (syntax-rules ()
|
||
((_)
|
||
(number->string category))
|
||
((_ first rest ...)
|
||
(if (= first category)
|
||
(symbol->string 'first)
|
||
(convert rest ...))))))
|
||
(convert LC_ADDRESS LC_ALL LC_COLLATE LC_CTYPE
|
||
LC_IDENTIFICATION LC_MEASUREMENT LC_MESSAGES LC_MONETARY
|
||
LC_NAME LC_NUMERIC LC_PAPER LC_TELEPHONE
|
||
LC_TIME)))
|
||
|
||
;;; Local Variables:
|
||
;;; eval: (put 'call-with-output-file/atomic 'scheme-indent-function 1)
|
||
;;; eval: (put 'call-with-ascii-input-file 'scheme-indent-function 1)
|
||
;;; eval: (put 'with-throw-handler 'scheme-indent-function 1)
|
||
;;; eval: (put 'let-matches 'scheme-indent-function 3)
|
||
;;; eval: (put 'with-atomic-file-replacement 'scheme-indent-function 1)
|
||
;;; End:
|