1 ;;;; tests related to the Lisp reader
3 ;;;; This file is impure because we want to modify the readtable and stuff.
5 ;;;; This software is part of the SBCL system. See the README file for
8 ;;;; While most of SBCL is derived from the CMU CL system, the test
9 ;;;; files (like this one) were written from scratch after the fork
12 ;;;; This software is in the public domain and is provided with
13 ;;;; absolutely no warranty. See the COPYING and CREDITS files for
14 ;;;; more information.
16 (load "assertoid.lisp")
17 (use-package "ASSERTOID")
19 ;;; Bug 30, involving mistakes in binding the read table, made this
21 (defun read-vector (stream char
)
22 (declare (ignorable char
))
23 (coerce (read-delimited-list #\
] stream t
) 'vector
))
24 (set-macro-character #\
[ #'read-vector nil
)
25 (set-macro-character #\
] (get-macro-character #\
)) nil
)
26 (multiple-value-bind (res pos
)
27 (read-from-string "[1 2 3]") ; ==> #(1 2 3), 7
28 (assert (equalp res
#(1 2 3)))
30 (multiple-value-bind (res pos
)
31 (read-from-string "#\\x") ; ==> #\x, 3
32 (assert (equalp res
#\x
))
34 (multiple-value-bind (res pos
)
35 (read-from-string "[#\\x]")
36 (assert (equalp res
#(#\x
)))
39 ;;; Bug 51b. (try to throw READER-ERRORs when the reader encounters
41 (assert (raises-error?
(read-from-string "1e1000") reader-error
))
42 (assert (raises-error?
(read-from-string "1/0") reader-error
))
44 ;;; Bug reported by Antonio Martinez on comp.lang.lisp 2003-02-03 in
45 ;;; message <b32da960.0302030640.7d6fc610@posting.google.com>: reading
46 ;;; circular instances of CLOS classes didn't work:
48 ((value :initarg
:value
:reader value
)))
49 (defun read-box (stream char
)
50 (declare (ignore char
))
51 (let ((objects (read-delimited-list #\
] stream t
)))
52 (unless (= 1 (length objects
))
53 (error "Unknown box reader syntax"))
54 (make-instance 'box
:value
(first objects
))))
55 (set-macro-character #\
[ 'read-box
)
56 (assert (eq (get-macro-character #\
[) 'read-box
)) ; not #'READ-BOX
57 (set-syntax-from-char #\
] #\
))
58 (multiple-value-bind (res pos
)
59 (read-from-string "#1=[#1#]")
60 (assert (eq (value res
) res
))
62 ;;; much, much, later (in Feb 2007), CSR noticed that the problem
63 ;;; still exists for funcallable instances.
64 (defclass funcallable-box
(box sb-mop
:funcallable-standard-object
) ()
65 (:metaclass sb-mop
:funcallable-standard-class
))
66 (defun read-funcallable-box (stream char
)
67 (declare (ignore char
))
68 (let ((objects (read-delimited-list #\
} stream t
)))
69 (unless (= 1 (length objects
))
70 (error "Unknown box reader syntax"))
71 (make-instance 'funcallable-box
:value
(first objects
))))
72 (set-macro-character #\
{ 'read-funcallable-box
)
73 (set-syntax-from-char #\
} #\
))
74 (multiple-value-bind (res pos
)
75 (read-from-string "#1={#1#}")
76 (assert (eq (value res
) res
))
79 ;;; CSR managed to break the #S reader macro in the process of merging
80 ;;; SB-PCL:CLASS and CL:CLASS -- make sure it works
81 (defstruct readable-struct a
)
84 `(assert (eq (readable-struct-a (read-from-string ,string
)) t
))))
85 (frob "#S(READABLE-STRUCT :A T)")
86 (frob "#S(READABLE-STRUCT A T)")
87 (frob "#S(READABLE-STRUCT \"A\" T)")
88 (frob "#S(READABLE-STRUCT #\\A T)")
89 (frob "#S(READABLE-STRUCT #\\A T :A NIL)"))
92 `(assert (raises-error?
(read-from-string ,string
) reader-error
))))
93 (frob "#S(READABLE-STRUCT . :A)")
94 (frob "#S(READABLE-STRUCT :A . T)")
95 (frob "#S(READABLE-STRUCT :A T . :A)")
96 (frob "#S(READABLE-STRUCT :A T :A . T)"))
98 ;;; reported by Henrik Motakef
100 (assert (eq (symbol-package (read-from-string "||::FOO"))
103 ;;; test nested reads, test case by Helmut Eller for cmucl
104 (defclass my-in-stream
(sb-gray:fundamental-character-input-stream
)
105 ((last-char :initarg
:last-char
)))
109 (defmethod sb-gray:stream-read-char
((s my-in-stream
))
110 (with-input-from-string (s "b") (read s
))
111 (with-slots (last-char) s
112 (cond (last-char (prog1 last-char
(setf last-char nil
)))
113 (t (prog1 (aref string i
)
114 (setq i
(mod (1+ i
) (length string
)))))))))
116 (defmethod sb-gray:stream-unread-char
((s my-in-stream
) char
)
117 (setf (slot-value s
'last-char
) char
)
120 (assert (eq 'a
(read (make-instance 'my-in-stream
:last-char nil
))))
122 ;;; NIL as the last argument to SET-SYNTAX-FROM-CHAR in compiled code,
123 ;;; reported by Levente Mészáros
124 (let ((fun (compile nil
'(lambda ()
125 (set-syntax-from-char #\
{ #\
( *readtable
* nil
)))))
127 (assert (equal '(:ok
) (read-from-string "{:ok)"))))
129 (with-test (:name
:bad-recursive-read
)
130 ;; This use to signal an unbound-variable error instead.
133 (with-input-from-string (s "42")
138 (with-test (:name
:standard-readtable-modified
)
139 (macrolet ((test (form &optional op
)
144 (sb-int:standard-readtable-modified-error
(e)
145 (declare (ignorable e
))
148 (equal ,op
(sb-kernel::standard-readtable-modified-operation e
)))))
150 (let ((rt *readtable
*))
151 (with-standard-io-syntax
152 (let ((srt *readtable
*))
153 (test (setf (readtable-case srt
) :preserve
) '(setf readtable-case
))
154 (test (copy-readtable rt srt
) 'copy-readtable
)
155 (test (set-syntax-from-char #\a #\a srt rt
) 'set-syntax-from-char
)
156 (test (set-macro-character #\a (constantly t
) t srt
) 'set-macro-character
)
157 (test (make-dispatch-macro-character #\
! t srt
))
158 (test (set-dispatch-macro-character #\
# #\a (constantly t
) srt
) 'set-dispatch-macro-character
))))))
160 (with-test (:name
:reader-package-errors
)
161 (flet ((test (string)
163 (progn (read-from-string string
) :feh
)
165 (when (and (typep e
'reader-error
) (typep e
'package-error
))
166 (package-error-package e
))))))
167 (assert (equal "NO-SUCH-PKG" (test "no-such-pkg::foo")))
168 (assert (eq (find-package :cl
) (test "cl:no-such-sym")))))
170 ;; lp# 1012335 - also tested by 'READ-BOX above
171 (handler-bind ((condition #'continue
))
172 (defun nil (stream char
) (declare (ignore stream char
)) 'foo
!))
173 (with-test (:name
:set-macro-char-lazy-coerce-to-fun
)
174 (set-macro-character #\$
#'nil
) ; #'NIL is a function
175 (assert (eq (read-from-string "$") 'foo
!))
177 (make-dispatch-macro-character #\$
)
178 (assert (set-dispatch-macro-character #\$
#\
( 'read-metavar
))
179 (assert (eq (get-dispatch-macro-character #\$
#\
() 'read-metavar
))
180 (assert (eq (handler-case (read-from-string "$(x)")
181 (undefined-function (c)
182 (if (eq (cell-error-name c
) 'read-metavar
) :win
)))
184 (defun read-metavar (stream subchar arg
)
185 (declare (ignore subchar arg
))
186 (list :metavar
(read stream t nil t
)))
187 (assert (equal (read-from-string "$(x)") '(:metavar x
)))
189 (set-macro-character #\$ nil
) ; 'NIL never designates a function
190 (assert (eq (read-from-string "$") '$
))
192 ;; Do not accept extended-function-designators.
193 ;; (circumlocute to prevent a compile-time error)
194 (let ((designator (eval ''(setf no-no-no
))))
195 (assert (eq (handler-case (set-macro-character #\$ designator
)
198 (assert (eq (handler-case
199 (set-dispatch-macro-character #\
# #\$ designator
)
203 (defun cl-user::esoteric-load-thing
()
204 ;; This LOAD-AS-SOURCE will fail if PRINT1 reads as the keyword :PRIN1
205 (let ((s (make-string-input-stream
206 "(cl:in-package :cl-user) (prin1 'okey-dokey)")))
207 (let ((*package
* *package
*))
208 (sb-impl::load-as-source s
:print t
:verbose t
))))
210 (with-test (:name
:reader-package-in-conditional
)
211 ;; Sharp-plus binds *package* but not *reader-package* so that if,
212 ;; while reading the conditional expression itself, a read-time eval occurs
213 ;; expressly changing *package*, it should do whan you mean,
214 ;; though such usage is a little insane.
217 "(#+#.(cl:progn (cl-user::esoteric-load-thing) 'sbcl) hiyya hoho)")))
218 (assert (equal value
'(hiyya hoho
)))))
221 (with-test (:name
:unicode-dispatch-macros
)
222 (let ((*readtable
* (copy-readtable)))
223 (make-dispatch-macro-character (code-char #x266F
)) ; musical sharp
224 (set-dispatch-macro-character
225 (code-char #x266F
) (code-char #x221E
) ; #\Infinity
226 (lambda (stream char arg
)
227 (declare (ignore stream char arg
))
229 (let ((x (read-from-string
230 (map 'string
#'code-char
'(#x266F
#x221E
)))))
231 (assert (eq x
:infinity
))
232 (set-dispatch-macro-character (code-char #x266F
) (code-char #x221E
) nil
)
233 (assert (zerop (hash-table-count
234 (car (sb-impl::%dispatch-macro-char-table
235 (get-macro-character (code-char #x266F
)))))))))
237 (let ((*readtable
* (copy-readtable)))
238 (make-dispatch-macro-character (code-char #xbeef
))
239 (set-dispatch-macro-character (code-char #xbeef
) (code-char #xf00d
)
241 (set-dispatch-macro-character (code-char #xbeef
) (code-char #xd00d
)
243 (set-syntax-from-char (code-char #xfeed
) (code-char #xbeef
)
244 *readtable
* *readtable
*)
245 (assert (eq (get-dispatch-macro-character (code-char #xfeed
)
248 (set-dispatch-macro-character (code-char #xfeed
) (code-char #xf00d
)
250 (assert (eq (get-dispatch-macro-character (code-char #xbeef
)
253 (set-dispatch-macro-character (code-char #xbeef
) #\W
'read-beef-w
)
254 (assert (null (get-dispatch-macro-character (code-char #xfeed
) #\W
)))
255 (set-syntax-from-char (code-char #xbeef
) #\a)
256 (set-syntax-from-char (code-char #xfeed
) #\b)
257 (set-syntax-from-char (code-char 35) #\a) ; sharp is dead
258 (assert (null (sb-impl::dispatch-tables
*readtable
*))))
260 ;; Ensure the interface provided for named-readtables remains somewhat intact.
261 (let ((*readtable
* (copy-readtable)))
262 (make-dispatch-macro-character #\
@)
263 (set-dispatch-macro-character #\
@ #\a 'read-at-a
)
264 (set-dispatch-macro-character #\
@ #\$
'read-at-dollar
)
265 (set-dispatch-macro-character #\
@ #\
* #'sb-impl
::sharp-star
)
266 ;; Enter exactly one character in the Unicode range because
267 ;; iteratation order is arbitrary and assert would be fragile.
268 ;; ASCII characters are naturally ordered by code.
269 (set-dispatch-macro-character #\
@ (code-char #x2010
) 'read-blah
)
270 (let ((rt (copy-readtable *readtable
*)))
271 ;; Don't want to assert about all the standard noise,
272 ;; and also don't want to kill the ability to write #\char
273 (set-syntax-from-char #\
# #\a rt
)
274 (assert (equal (sb-impl::dispatch-tables rt nil
)
275 `((#\
@ (#\A . read-at-a
)
276 (#\
* .
,#'sb-impl
::sharp-star
)
277 (#\$ . read-at-dollar
)
278 (#\hyphen . read-blah
))))))
279 ;; this removes one entry rather than entering NIL in the hashtable
280 (set-dispatch-macro-character #\
@ (code-char #x2010
) nil
)
281 (let ((rt (copy-readtable *readtable
*)))
282 (set-syntax-from-char #\
# #\a rt
)
283 (assert (equal (sb-impl::dispatch-tables rt nil
)
284 `((#\
@ (#\A . read-at-a
)
285 (#\
* .
,#'sb-impl
::sharp-star
)
286 (#\$ . read-at-dollar
))))))))
288 (with-test (:name
:copy-dispatching-macro
)
289 (let ((*readtable
* (copy-readtable)))
290 (set-macro-character #\$
(get-macro-character #\
#) t
)
291 (let ((foo (read-from-string "$(a b c)")))
292 (assert (equalp foo
#(a b c
))))
293 (set-dispatch-macro-character #\$
#\
[
294 (lambda (stream char arg
)
295 (declare (ignore char arg
))
296 (append '(:start
) (read-delimited-list #\
] stream t
) '(:end
))))
297 (set-syntax-from-char #\
] #\
))
298 (let ((foo (read-from-string "$[a b c]")))
299 (assert (equal foo
'(:start a b c
:end
))))
300 ;; dispatch tables get shared. This behavior is SBCL-specific.
301 (let ((foo (read-from-string "#[a b c]")))
302 (assert (equal foo
'(:start a b c
:end
))))))
304 ;;; THIS SHOULD BE LAST as it frobs the standard readtable
305 (with-test (:name
:set-macro-character-nil
)
306 (handler-bind ((sb-int:standard-readtable-modified-error
#'continue
))
308 (let ((fun (lambda (&rest args
) (declare (ignore args
)) 'ok
)))
309 ;; NIL means the standard readtable.
310 (assert (eq t
(set-macro-character #\~ fun nil nil
)))
311 (assert (eq fun
(get-macro-character #\~ nil
)))
312 (assert (eq t
(set-dispatch-macro-character #\
# #\~ fun nil
)))
313 (assert (eq fun
(get-dispatch-macro-character #\
# #\~ nil
))))))