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https://git.in.rschanz.org/ryan77627/guix.git
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6c20d1d0c3
* guix/serialization.scm (write-string-pairs): New procedure. * guix/store.scm (write-arg): Add 'string-pairs' case. (set-build-options): Add 'timeout' keyword parameter. Honor it. * tests/derivations.scm ("build-expression->derivation and timeout"): New test.
124 lines
3.7 KiB
Scheme
124 lines
3.7 KiB
Scheme
;;; GNU Guix --- Functional package management for GNU
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;;; Copyright © 2012, 2013, 2014 Ludovic Courtès <ludo@gnu.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 serialization)
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#:use-module (guix utils)
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#:use-module (rnrs bytevectors)
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#:use-module (rnrs io ports)
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#:use-module (srfi srfi-1)
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#:use-module (srfi srfi-26)
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#:use-module (ice-9 match)
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#:export (write-int read-int
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write-long-long read-long-long
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write-padding
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write-string read-string read-latin1-string
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write-string-list read-string-list
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write-string-pairs
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write-store-path read-store-path
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write-store-path-list read-store-path-list))
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;;; Comment:
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;;;
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;;; Serialization procedures used by the RPCs and the Nar format. This module
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;;; is for internal consumption.
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;;;
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;;; Code:
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;; Similar to serialize.cc in Nix.
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(define (write-int n p)
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(let ((b (make-bytevector 8 0)))
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(bytevector-u32-set! b 0 n (endianness little))
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(put-bytevector p b)))
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(define (read-int p)
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(let ((b (get-bytevector-n p 8)))
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(bytevector-u32-ref b 0 (endianness little))))
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(define (write-long-long n p)
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(let ((b (make-bytevector 8 0)))
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(bytevector-u64-set! b 0 n (endianness little))
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(put-bytevector p b)))
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(define (read-long-long p)
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(let ((b (get-bytevector-n p 8)))
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(bytevector-u64-ref b 0 (endianness little))))
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(define write-padding
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(let ((zero (make-bytevector 8 0)))
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(lambda (n p)
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(let ((m (modulo n 8)))
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(or (zero? m)
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(put-bytevector p zero 0 (- 8 m)))))))
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(define (write-string s p)
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(let* ((s (string->utf8 s))
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(l (bytevector-length s))
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(m (modulo l 8))
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(b (make-bytevector (+ 8 l (if (zero? m) 0 (- 8 m))))))
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(bytevector-u32-set! b 0 l (endianness little))
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(bytevector-copy! s 0 b 8 l)
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(put-bytevector p b)))
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(define (read-string p)
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(let* ((len (read-int p))
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(m (modulo len 8))
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(bv (get-bytevector-n p len))
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(str (utf8->string bv)))
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(or (zero? m)
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(get-bytevector-n p (- 8 m)))
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str))
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(define (read-latin1-string p)
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(let* ((len (read-int p))
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(m (modulo len 8))
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(str (get-string-n p len)))
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(or (zero? m)
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(get-bytevector-n p (- 8 m)))
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str))
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(define (write-string-list l p)
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(write-int (length l) p)
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(for-each (cut write-string <> p) l))
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(define (write-string-pairs l p)
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(write-int (length l) p)
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(for-each (match-lambda
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((first . second)
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(write-string first p)
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(write-string second p)))
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l))
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(define (read-string-list p)
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(let ((len (read-int p)))
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(unfold (cut >= <> len)
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(lambda (i)
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(read-string p))
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1+
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0)))
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(define (write-store-path f p)
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(write-string f p)) ; TODO: assert path
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(define (read-store-path p)
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(read-string p)) ; TODO: assert path
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(define write-store-path-list write-string-list)
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(define read-store-path-list read-string-list)
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;;; serialization.scm ends here
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