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guile/module/srfi/srfi-4/gnu.scm
Andy Wingo 07d22c0259 rename (rnrs bytevector) to (rnrs bytevectors)
* module/rnrs/bytevectors.scm: Rename to (rnrs bytevectors), from (rnrs
  bytevector), to match the name from the R6RS.

* benchmark-suite/benchmarks/bytevectors.bm:
* doc/ref/api-data.texi:
* doc/ref/api-foreign.texi:
* libguile/bytevectors.c:
* module/6/rnrs.scm:
* module/language/assembly.scm:
* module/language/assembly/compile-bytecode.scm:
* module/language/assembly/decompile-bytecode.scm:
* module/language/glil/compile-assembly.scm:
* module/language/tree-il/primitives.scm:
* module/srfi/srfi-4.scm:
* module/srfi/srfi-4/gnu.scm:
* module/system/foreign.scm:
* test-suite/standalone/test-ffi:
* test-suite/tests/asm-to-bytecode.test:
* test-suite/tests/bytevectors.test:
* test-suite/tests/foreign.test:
* test-suite/tests/r6rs-ports.test: Update all referrers.
2010-06-01 13:26:11 +02:00

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5.1 KiB
Scheme

;;; Extensions to SRFI-4
;; Copyright (C) 2009, 2010 Free Software Foundation, Inc.
;;
;; This library is free software; you can redistribute it and/or
;; modify it under the terms of the GNU Lesser General Public
;; License as published by the Free Software Foundation; either
;; version 3 of the License, or (at your option) any later version.
;;
;; This library is distributed in the hope that it will be useful,
;; but WITHOUT ANY WARRANTY; without even the implied warranty of
;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
;; Lesser General Public License for more details.
;;
;; You should have received a copy of the GNU Lesser General Public
;; License along with this library; if not, write to the Free Software
;; Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
;;; Commentary:
;; Extensions to SRFI-4. Fully documented in the Guile Reference Manual.
;;; Code:
(define-module (srfi srfi-4 gnu)
#:use-module (rnrs bytevectors)
#:use-module (srfi srfi-4)
#:export (;; Complex numbers with 32- and 64-bit components.
c32vector? make-c32vector c32vector c32vector-length c32vector-ref
c32vector-set! c32vector->list list->c32vector
c64vector? make-c64vector c64vector c64vector-length c64vector-ref
c64vector-set! c64vector->list list->c64vector
make-srfi-4-vector
;; Somewhat polymorphic conversions.
any->u8vector any->s8vector any->u16vector any->s16vector
any->u32vector any->s32vector any->u64vector any->s64vector
any->f32vector any->f64vector any->c32vector any->c64vector))
(define make-srfi-4-vector (@@ (srfi srfi-4) make-srfi-4-vector))
;; Need quasisyntax to do this effectively using syntax-case
(define-macro (define-bytevector-type tag infix size)
`(begin
(define (,(symbol-append tag 'vector?) obj)
(and (uniform-vector? obj)
(eq? (uniform-vector-element-type obj) ',tag)))
(define (,(symbol-append 'make- tag 'vector) len . fill)
(apply make-srfi-4-vector ',tag len fill))
(define (,(symbol-append tag 'vector-length) v)
(let ((len (* (uniform-vector-length v)
(/ ,size (uniform-vector-element-size v)))))
(if (integer? len)
len
(error "fractional length" v ',tag ,size))))
(define (,(symbol-append tag 'vector) . elts)
(,(symbol-append 'list-> tag 'vector) elts))
(define (,(symbol-append 'list-> tag 'vector) elts)
(let* ((len (length elts))
(v (,(symbol-append 'make- tag 'vector) len)))
(let lp ((i 0) (elts elts))
(if (and (< i len) (pair? elts))
(begin
(,(symbol-append tag 'vector-set!) v i (car elts))
(lp (1+ i) (cdr elts)))
v))))
(define (,(symbol-append tag 'vector->list) v)
(let lp ((i (1- (,(symbol-append tag 'vector-length) v))) (elts '()))
(if (< i 0)
elts
(lp (1- i) (cons (,(symbol-append tag 'vector-ref) v i) elts)))))
(define (,(symbol-append tag 'vector-ref) v i)
(,(symbol-append 'bytevector- infix '-ref) v (* i ,size)))
(define (,(symbol-append tag 'vector-set!) v i x)
(,(symbol-append 'bytevector- infix '-set!) v (* i ,size) x))
(define (,(symbol-append tag 'vector-set!) v i x)
(,(symbol-append 'bytevector- infix '-set!) v (* i ,size) x))))
(define (bytevector-c32-native-ref v i)
(make-rectangular (bytevector-ieee-single-native-ref v i)
(bytevector-ieee-single-native-ref v (+ i 4))))
(define (bytevector-c32-native-set! v i x)
(bytevector-ieee-single-native-set! v i x)
(bytevector-ieee-single-native-set! v (+ i 4) x))
(define (bytevector-c64-native-ref v i)
(make-rectangular (bytevector-ieee-double-native-ref v i)
(bytevector-ieee-double-native-ref v (+ i 8))))
(define (bytevector-c64-native-set! v i x)
(bytevector-ieee-double-native-set! v i x)
(bytevector-ieee-double-native-set! v (+ i 8) x))
(define-bytevector-type c32 c32-native 8)
(define-bytevector-type c64 c64-native 16)
(define-macro (define-any->vector . tags)
`(begin
,@(map (lambda (tag)
`(define (,(symbol-append 'any-> tag 'vector) obj)
(cond ((,(symbol-append tag 'vector?) obj) obj)
((pair? obj) (,(symbol-append 'list-> tag 'vector) obj))
((generalized-vector? obj)
(let* ((len (generalized-vector-length obj))
(v (,(symbol-append 'make- tag 'vector) len)))
(let lp ((i 0))
(if (< i len)
(begin
(,(symbol-append tag 'vector-set!)
v i (generalized-vector-ref obj i))
(lp (1+ i)))
v))))
(else (scm-error 'wrong-type-arg #f "" '() (list obj))))))
tags)))
(define-any->vector u8 s8 u16 s16 u32 s32 u64 s64 f32 f64 c32 c64)