view tests/automated/byte-compiler-tests.el @ 4570:e6a7054a9c30

Add check-coding-systems-region, test it and others, fix some bugs. tests/ChangeLog addition: 2008-12-28 Aidan Kehoe <kehoea@parhasard.net> * automated/query-coding-tests.el: Add tests for #'unencodable-char-position, #'check-coding-systems-region, #'encode-coding-char. Remove some debugging statements. lisp/ChangeLog addition: 2008-12-28 Aidan Kehoe <kehoea@parhasard.net> * coding.el (query-coding-region): (query-coding-string): Make these defsubsts, they're short enough and they're called explicitly rarely enough that it make some sense. The alternative would be compiler macros that avoid the binding of the arguments. (unencodable-char-position): Document where the docstring and API are from. Correct a special case for zero--check-argument-type returns nil when it succeeds, we can't usefully chain its result in an and here. (check-coding-systems-region): New. API taken from GNU; docstring and implementation are independent. (encode-coding-char): Add an optional third argument, as used by recent GNU. Document the origen of the docstring. (default-query-coding-region): Add a short docstring to the non-Mule implementation of this function. * unicode.el: Don't set the query-coding-function property for unicode coding systems if we're on non-mule. Unintern unicode-query-coding-region, unicode-query-coding-skip-chars-arg in the same context.
author Aidan Kehoe <kehoea@parhasard.net>
date Sun, 28 Dec 2008 22:51:14 +0000
parents 3d3049ae1304
children 189fb67ca31a
line wrap: on
line source

;; Copyright (C) 1998 Free Software Foundation, Inc.

;; Author: Martin Buchholz <martin@xemacs.org>
;; Maintainer: Martin Buchholz <martin@xemacs.org>
;; Created: 1998
;; Keywords: tests

;; This file is part of XEmacs.

;; XEmacs is free software; you can redistribute it and/or modify it
;; under the terms of the GNU General Public License as published by
;; the Free Software Foundation; either version 2, or (at your option)
;; any later version.

;; XEmacs 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
;; General Public License for more details.

;; You should have received a copy of the GNU General Public License
;; along with XEmacs; see the file COPYING.  If not, write to the Free
;; Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
;; 02111-1307, USA.

;;; Synched up with: Not in FSF.

;;; Commentary:

;;; Test byte-compiler functionality
;;; See test-harness.el

(condition-case err
    (require 'test-harness)
  (file-error
   (when (and (boundp 'load-file-name) (stringp load-file-name))
     (push (file-name-directory load-file-name) load-path)
     (require 'test-harness))))

(require 'bytecomp)

;; test constant symbol warnings
(defmacro check-byte-compiler-message (message-regexp &rest body)
  `(Check-Message ,message-regexp (byte-compile '(lambda () ,@body))))

(check-byte-compiler-message "Attempt to set non-symbol" (setq 1 1))
(check-byte-compiler-message "Attempt to set constant symbol" (setq t 1))
(check-byte-compiler-message "Attempt to set constant symbol" (setq nil 1))
(check-byte-compiler-message "^$" (defconst :foo 1))

(check-byte-compiler-message "Attempt to let-bind non-symbol" (let ((1 'x)) 1))
(check-byte-compiler-message "Attempt to let-bind constant symbol" (let ((t 'x)) (foo)))
(check-byte-compiler-message "Attempt to let-bind constant symbol" (let ((nil 'x)) (foo)))
(check-byte-compiler-message "Attempt to let-bind constant symbol" (let ((:foo 'x)) (foo)))


(check-byte-compiler-message "bound but not referenced" (let ((foo 'x)) 1))
(Assert (not (boundp 'free-variable)))
(Assert (boundp 'byte-compile-warnings))
(check-byte-compiler-message "assignment to free variable" (setq free-variable 1))
(check-byte-compiler-message "reference to free variable" (car free-variable))
(check-byte-compiler-message "called with 2 args, but requires 1" (car 'x 'y))

(check-byte-compiler-message "^$" (setq :foo 1))
(let ((fun '(lambda () (setq :foo 1))))
  (fset 'test-byte-compiler-fun fun))
(Check-Error setting-constant (test-byte-compiler-fun))
(byte-compile 'test-byte-compiler-fun)
(Check-Error setting-constant (test-byte-compiler-fun))

(eval-when-compile (defvar setq-test-foo nil) (defvar setq-test-bar nil))
(progn
  (check-byte-compiler-message "set called with 1 arg, but requires 2" (setq setq-test-foo))
  (check-byte-compiler-message "set called with 1 arg, but requires 2" (setq setq-test-foo 1 setq-test-bar))
  (check-byte-compiler-message "set-default called with 1 arg, but requires 2" (setq-default setq-test-foo))
  (check-byte-compiler-message "set-default called with 1 arg, but requires 2" (setq-default setq-test-foo 1 setq-test-bar))
  )

;;-----------------------------------------------------
;; let, let*
;;-----------------------------------------------------

;; Test interpreted and compiled lisp separately here
(check-byte-compiler-message "malformed let binding" (let  ((x 1 2)) 3))
(check-byte-compiler-message "malformed let binding" (let* ((x 1 2)) 3))

(Check-Error-Message
 error "`let' bindings can have only one value-form"
 (eval '(let ((x 1 2)) 3)))

(Check-Error-Message
 error "`let' bindings can have only one value-form"
 (eval '(let* ((x 1 2)) 3)))

(defmacro before-and-after-compile-equal (&rest form)
  `(Assert (equal (funcall (quote (lambda () ,@form)))
		 (funcall (byte-compile (quote (lambda () ,@form)))))))

(defvar simplyamarker (point-min-marker))

;; The byte optimizer must be careful with +/- with a single argument.

(before-and-after-compile-equal (+))
(before-and-after-compile-equal (+ 2 2))
(before-and-after-compile-equal (+ 2 1))
(before-and-after-compile-equal (+ 1 2))
;; (+ 1) is OK. but (+1) signals an error.
(before-and-after-compile-equal (+ 1))
(before-and-after-compile-equal (+ 3))
(before-and-after-compile-equal (+ simplyamarker 1))
;; The optimization (+ m) --> m is invalid when m is a marker.
;; Currently the following test fails - controversial.
;; (before-and-after-compile-equal (+ simplyamarker))
;; Same tests for minus.
(before-and-after-compile-equal (- 2 2))
(before-and-after-compile-equal (- 2 1))
(before-and-after-compile-equal (- 1 2))
(before-and-after-compile-equal (- 1))
(before-and-after-compile-equal (- 3))
(before-and-after-compile-equal (- simplyamarker 1))
(before-and-after-compile-equal (- simplyamarker))

(before-and-after-compile-equal (let ((z 1)) (or (setq z 42)) z))

;; byte-after-unbind-ops

;; byte-constant
;; byte-dup

;; byte-symbolp
(before-and-after-compile-equal
 (let ((x 's))
   (unwind-protect
       (symbolp x)
     (setq x 1))))

;; byte-consp
(before-and-after-compile-equal
 (let ((x '(a b)))
   (unwind-protect
       (consp x)
     (setq x 1))))

;; byte-stringp
(before-and-after-compile-equal
 (let ((x "a"))
   (unwind-protect
       (stringp x)
     (setq x 1))))

;; byte-listp
(before-and-after-compile-equal
 (let ((x '(a b c)))
   (unwind-protect
       (listp x)
     (setq x 1))))

;; byte-numberp
(before-and-after-compile-equal
 (let ((x 1))
   (unwind-protect
       (numberp x)
     (setq x nil))))

;; byte-integerp
(before-and-after-compile-equal
 (let ((x 1))
   (unwind-protect
       (integerp x)
     (setq x nil))))

;; byte-equal
(before-and-after-compile-equal
 (let ((x 'a)
       (y 'a))
   (unwind-protect
       (eq x y)
     (setq x 'c))))

;; byte-not
(before-and-after-compile-equal
 (let (x)
   (unwind-protect
       (not x)
     (setq x t))))

;; byte-cons
(before-and-after-compile-equal
 (equal '(1 . 2)
	(let ((x 1)
	      (y 2))
	  (unwind-protect
	      (cons x y)
	    (setq x t)))))

;; byte-list1
(before-and-after-compile-equal
 (equal '(1)
	(let ((x 1))
	  (unwind-protect
	      (list x)
	    (setq x t)))))

;; byte-list2
(before-and-after-compile-equal
 (equal '(1 . 2)
	(let ((x 1)
	      (y 2))
	  (unwind-protect
	      (list x y)
	    (setq x t)))))

;; byte-interactive-p

;; byte-equal
(before-and-after-compile-equal
 (let (x y)
   (setq x '(1 . 2))
   (setq y '(1 . 2))
   (unwind-protect
       (equal x y)
     (setq y '(1 . 3)))))