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1 ;;; cc-bytecomp.el --- compile time setup for proper compilation
2
3 ;; Copyright (C) 2000-2013 Free Software Foundation, Inc.
4
5 ;; Author: Martin Stjernholm
6 ;; Maintainer: bug-cc-mode@gnu.org
7 ;; Created: 15-Jul-2000
8 ;; Keywords: c languages
9 ;; Package: cc-mode
10
11 ;; This file is part of GNU Emacs.
12
13 ;; GNU Emacs is free software: you can redistribute it and/or modify
14 ;; it under the terms of the GNU General Public License as published by
15 ;; the Free Software Foundation, either version 3 of the License, or
16 ;; (at your option) any later version.
17
18 ;; GNU Emacs is distributed in the hope that it will be useful,
19 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
20 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 ;; GNU General Public License for more details.
22
23 ;; You should have received a copy of the GNU General Public License
24 ;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
25
26 ;;; Commentary:
27
28 ;; This file is used to ensure that the CC Mode files are correctly
29 ;; compiled regardless the environment (e.g. if an older CC Mode with
30 ;; outdated macros are loaded during compilation). It also provides
31 ;; features to defeat the compiler warnings for selected symbols.
32 ;;
33 ;; There's really nothing CC Mode specific here; this functionality
34 ;; ought to be provided by the byte compilers or some accompanying
35 ;; library. To use it from some package "foo.el", begin by putting
36 ;; the following blurb at the top of the file:
37 ;;
38 ;; (eval-when-compile
39 ;; (let ((load-path
40 ;; (if (and (boundp 'byte-compile-dest-file)
41 ;; (stringp byte-compile-dest-file))
42 ;; (cons (file-name-directory byte-compile-dest-file) load-path)
43 ;; load-path)))
44 ;; (load "cc-bytecomp" nil t))
45 ;;
46 ;; This (unfortunately rather clumsy) form will ensure that the
47 ;; cc-bytecomp.el in the same directory as foo.el is loaded during
48 ;; byte compilation of the latter.
49 ;;
50 ;; At the end of foo.el there should normally be a "(provide 'foo)".
51 ;; Replace it with "(cc-provide 'foo)"; that is necessary to restore
52 ;; the environment after the byte compilation. If you don't have a
53 ;; `provide' at the end, you have to add the following as the very
54 ;; last form in the file:
55 ;;
56 ;; (eval-when-compile (cc-bytecomp-restore-environment))
57 ;;
58 ;; Now everything is set to use the various functions and macros in
59 ;; this package.
60 ;;
61 ;; If your package is split into several files, you should use
62 ;; `cc-require', `cc-require-when-compile' or `cc-load' to load them.
63 ;; That ensures that the files in the same directory always are
64 ;; loaded, to avoid mixup with other versions of them that might exist
65 ;; elsewhere in the load path.
66 ;;
67 ;; To suppress byte compiler warnings, use the macros
68 ;; `cc-bytecomp-defun', `cc-bytecomp-defvar',
69 ;; `cc-bytecomp-obsolete-fun', and `cc-bytecomp-obsolete-var'.
70 ;;
71 ;; This file is not used at all after the package has been byte
72 ;; compiled. It is however necessary when running uncompiled.
73
74 \f
75 ;;; Code:
76
77 (defvar cc-bytecomp-unbound-variables nil)
78 (defvar cc-bytecomp-original-functions nil)
79 (defvar cc-bytecomp-original-properties nil)
80 (defvar cc-bytecomp-loaded-files nil)
81 (defvar cc-bytecomp-environment-set nil)
82
83 (defmacro cc-bytecomp-debug-msg (&rest args)
84 ;;`(message ,@args)
85 )
86
87 (defun cc-bytecomp-setup-environment ()
88 ;; Eval'ed during compilation to setup variables, functions etc
89 ;; declared with `cc-bytecomp-defvar' et al.
90 (if (not load-in-progress)
91 ;; Look at `load-in-progress' to tell whether we're called
92 ;; directly in the file being compiled or just from some file
93 ;; being loaded during compilation.
94 (let (p)
95 (if cc-bytecomp-environment-set
96 (error "Byte compilation environment already set - \
97 perhaps a `cc-bytecomp-restore-environment' is forgotten somewhere"))
98 (setq p cc-bytecomp-unbound-variables)
99 (while p
100 (if (not (boundp (car p)))
101 (progn
102 (eval `(defvar ,(car p)))
103 (set (car p) (intern (concat "cc-bytecomp-ignore-var:"
104 (symbol-name (car p)))))
105 (cc-bytecomp-debug-msg
106 "cc-bytecomp-setup-environment: Covered variable %s"
107 (car p))))
108 (setq p (cdr p)))
109 (setq p cc-bytecomp-original-functions)
110 (while p
111 (let ((fun (car (car p)))
112 (temp-macro (car (cdr (car p)))))
113 (if (not (fboundp fun))
114 (if temp-macro
115 (progn
116 (eval `(defmacro ,fun ,@temp-macro))
117 (cc-bytecomp-debug-msg
118 "cc-bytecomp-setup-environment: Bound macro %s" fun))
119 (fset fun (intern (concat "cc-bytecomp-ignore-fun:"
120 (symbol-name fun))))
121 (cc-bytecomp-debug-msg
122 "cc-bytecomp-setup-environment: Covered function %s" fun))))
123 (setq p (cdr p)))
124 (setq p cc-bytecomp-original-properties)
125 (while p
126 (let ((sym (car (car (car p))))
127 (prop (cdr (car (car p))))
128 (tempdef (car (cdr (car p)))))
129 (put sym prop tempdef)
130 (cc-bytecomp-debug-msg
131 "cc-bytecomp-setup-environment: Bound property %s for %s to %s"
132 prop sym tempdef))
133 (setq p (cdr p)))
134 (setq cc-bytecomp-environment-set t)
135 (cc-bytecomp-debug-msg
136 "cc-bytecomp-setup-environment: Done"))))
137
138 (defun cc-bytecomp-restore-environment ()
139 ;; Eval'ed during compilation to restore variables, functions etc
140 ;; declared with `cc-bytecomp-defvar' et al.
141 (if (not load-in-progress)
142 (let (p)
143 (setq p cc-bytecomp-unbound-variables)
144 (while p
145 (let ((var (car p)))
146 (if (boundp var)
147 (if (eq (intern (concat "cc-bytecomp-ignore-var:"
148 (symbol-name var)))
149 (symbol-value var))
150 (progn
151 (makunbound var)
152 (cc-bytecomp-debug-msg
153 "cc-bytecomp-restore-environment: Unbound variable %s"
154 var))
155 (cc-bytecomp-debug-msg
156 "cc-bytecomp-restore-environment: Not restoring variable %s"
157 var))))
158 (setq p (cdr p)))
159 (setq p cc-bytecomp-original-functions)
160 (while p
161 (let ((fun (car (car p)))
162 (temp-macro (car (cdr (car p))))
163 (def (car (cdr (cdr (car p))))))
164 (if (fboundp fun)
165 (if (eq (or temp-macro
166 (intern (concat "cc-bytecomp-ignore-fun:"
167 (symbol-name fun))))
168 (symbol-function fun))
169 (if (eq def 'unbound)
170 (progn
171 (fmakunbound fun)
172 (cc-bytecomp-debug-msg
173 "cc-bytecomp-restore-environment: Unbound function %s"
174 fun))
175 (fset fun def)
176 (cc-bytecomp-debug-msg
177 "cc-bytecomp-restore-environment: Restored function %s"
178 fun))
179 (cc-bytecomp-debug-msg
180 "cc-bytecomp-restore-environment: Not restoring function %s"
181 fun))))
182 (setq p (cdr p)))
183 (setq p cc-bytecomp-original-properties)
184 (while p
185 (let ((sym (car (car (car p))))
186 (prop (cdr (car (car p))))
187 (tempdef (car (cdr (car p))))
188 (origdef (cdr (cdr (car p)))))
189 (if (eq (get sym prop) tempdef)
190 (progn
191 (put sym prop origdef)
192 (cc-bytecomp-debug-msg
193 "cc-bytecomp-restore-environment: Restored property %s for %s to %s"
194 prop sym origdef))
195 (cc-bytecomp-debug-msg
196 "cc-bytecomp-restore-environment: Not restoring property %s for %s"
197 prop sym)))
198 (setq p (cdr p)))
199 (setq cc-bytecomp-environment-set nil)
200 (cc-bytecomp-debug-msg
201 "cc-bytecomp-restore-environment: Done"))))
202
203 (eval
204 ;; This eval is to avoid byte compilation of the function below.
205 ;; There's some bug in XEmacs 21.4.6 that can cause it to dump core
206 ;; here otherwise. My theory is that `cc-bytecomp-load' might be
207 ;; redefined recursively during the `load' inside it, and if it in
208 ;; that case is byte compiled then the byte interpreter gets
209 ;; confused. I haven't succeeded in isolating the bug, though. /mast
210
211 '(defun cc-bytecomp-load (cc-part)
212 ;; Eval'ed during compilation to load a CC Mode file from the source
213 ;; directory (assuming it's the same as the compiled file
214 ;; destination dir).
215 (if (and (boundp 'byte-compile-dest-file)
216 (stringp byte-compile-dest-file))
217 (progn
218 (cc-bytecomp-restore-environment)
219 (let ((load-path
220 (cons (file-name-directory byte-compile-dest-file)
221 load-path))
222 (cc-file (concat cc-part ".el")))
223 (if (member cc-file cc-bytecomp-loaded-files)
224 ()
225 (setq cc-bytecomp-loaded-files
226 (cons cc-file cc-bytecomp-loaded-files))
227 (cc-bytecomp-debug-msg
228 "cc-bytecomp-load: Loading %S" cc-file)
229 (load cc-file nil t t)
230 (cc-bytecomp-debug-msg
231 "cc-bytecomp-load: Loaded %S" cc-file)))
232 (cc-bytecomp-setup-environment)
233 t))))
234
235 (defvar cc-bytecomp-noruntime-functions nil
236 "Saved value of `byte-compile-noruntime-functions'.")
237
238 (defmacro cc-require (cc-part)
239 "Force loading of the corresponding .el file in the current directory
240 during compilation, but compile in a `require'. Don't use within
241 `eval-when-compile'.
242
243 Having cyclic cc-require's will result in infinite recursion. That's
244 somewhat intentional."
245 `(progn
246 (eval-when-compile
247 (setq cc-bytecomp-noruntime-functions byte-compile-noruntime-functions)
248 (cc-bytecomp-load (symbol-name ,cc-part)))
249 ;; Hack to suppress spurious "might not be defined at runtime" warnings.
250 ;; The basic issue is that
251 ;; (eval-when-compile (require 'foo))
252 ;; (require 'foo)
253 ;; produces bogus noruntime warnings about functions from foo.
254 (eval-when-compile
255 (setq byte-compile-noruntime-functions cc-bytecomp-noruntime-functions))
256 (require ,cc-part)))
257
258 (defmacro cc-provide (feature)
259 "A replacement for the `provide' form that restores the environment
260 after the compilation. Don't use within `eval-when-compile'."
261 `(progn
262 (eval-when-compile (cc-bytecomp-restore-environment))
263 (provide ,feature)))
264
265 (defmacro cc-load (cc-part)
266 "Force loading of the corresponding .el file in the current directory
267 during compilation. Don't use outside `eval-when-compile' or
268 `eval-and-compile'.
269
270 Having cyclic cc-load's will result in infinite recursion. That's
271 somewhat intentional."
272 `(or (and (featurep 'cc-bytecomp)
273 (cc-bytecomp-load ,cc-part))
274 (load ,cc-part nil t nil)))
275
276 (defmacro cc-require-when-compile (cc-part)
277 "Force loading of the corresponding .el file in the current directory
278 during compilation, but do a compile time `require' otherwise. Don't
279 use within `eval-when-compile'."
280 `(eval-when-compile
281 (if (and (fboundp 'cc-bytecomp-is-compiling)
282 (cc-bytecomp-is-compiling))
283 (if (or (not load-in-progress)
284 (not (featurep ,cc-part)))
285 (cc-bytecomp-load (symbol-name ,cc-part)))
286 (require ,cc-part))))
287
288 (defmacro cc-external-require (feature)
289 "Do a `require' of an external package.
290 This restores and sets up the compilation environment before and
291 afterwards. Don't use within `eval-when-compile'."
292 `(progn
293 (eval-when-compile (cc-bytecomp-restore-environment))
294 (require ,feature)
295 (eval-when-compile (cc-bytecomp-setup-environment))))
296
297 (defun cc-bytecomp-is-compiling ()
298 "Return non-nil if eval'ed during compilation. Don't use outside
299 `eval-when-compile'."
300 (and (boundp 'byte-compile-dest-file)
301 (stringp byte-compile-dest-file)))
302
303 (defmacro cc-bytecomp-defvar (var)
304 "Binds the symbol as a variable during compilation of the file,
305 to silence the byte compiler. Don't use within `eval-when-compile'."
306 `(eval-when-compile
307 (if (boundp ',var)
308 (cc-bytecomp-debug-msg
309 "cc-bytecomp-defvar: %s bound already as variable" ',var)
310 (if (not (memq ',var cc-bytecomp-unbound-variables))
311 (progn
312 (cc-bytecomp-debug-msg
313 "cc-bytecomp-defvar: Saving %s (as unbound)" ',var)
314 (setq cc-bytecomp-unbound-variables
315 (cons ',var cc-bytecomp-unbound-variables))))
316 (if (and (cc-bytecomp-is-compiling)
317 (not load-in-progress))
318 (progn
319 (defvar ,var)
320 (set ',var (intern (concat "cc-bytecomp-ignore-var:"
321 (symbol-name ',var))))
322 (cc-bytecomp-debug-msg
323 "cc-bytecomp-defvar: Covered variable %s" ',var))))))
324
325 (defmacro cc-bytecomp-defun (fun)
326 "Bind the symbol as a function during compilation of the file,
327 to silence the byte compiler. Don't use within `eval-when-compile'.
328
329 If the symbol already is bound as a function, it will keep that
330 definition. That means that this macro will not shut up warnings
331 about incorrect number of arguments. It's dangerous to try to replace
332 existing functions since the byte compiler might need the definition
333 at compile time, e.g. for macros and inline functions."
334 `(eval-when-compile
335 (if (fboundp ',fun)
336 (cc-bytecomp-debug-msg
337 "cc-bytecomp-defun: %s bound already as function" ',fun)
338 (if (not (assq ',fun cc-bytecomp-original-functions))
339 (progn
340 (cc-bytecomp-debug-msg
341 "cc-bytecomp-defun: Saving %s (as unbound)" ',fun)
342 (setq cc-bytecomp-original-functions
343 (cons (list ',fun nil 'unbound)
344 cc-bytecomp-original-functions))))
345 (if (and (cc-bytecomp-is-compiling)
346 (not load-in-progress))
347 (progn
348 (fset ',fun (intern (concat "cc-bytecomp-ignore-fun:"
349 (symbol-name ',fun))))
350 (cc-bytecomp-debug-msg
351 "cc-bytecomp-defun: Covered function %s" ',fun))))))
352
353 (defmacro cc-bytecomp-put (symbol propname value)
354 "Set a property on a symbol during compilation (and evaluation) of
355 the file. Don't use outside `eval-when-compile'."
356 `(eval-when-compile
357 (if (not (assoc (cons ,symbol ,propname) cc-bytecomp-original-properties))
358 (progn
359 (cc-bytecomp-debug-msg
360 "cc-bytecomp-put: Saving property %s for %s with value %s"
361 ,propname ,symbol (get ,symbol ,propname))
362 (setq cc-bytecomp-original-properties
363 (cons (cons (cons ,symbol ,propname)
364 (cons ,value (get ,symbol ,propname)))
365 cc-bytecomp-original-properties))))
366 (put ,symbol ,propname ,value)
367 (cc-bytecomp-debug-msg
368 "cc-bytecomp-put: Bound property %s for %s to %s"
369 ,propname ,symbol ,value)))
370
371 (defmacro cc-bytecomp-obsolete-var (symbol)
372 "Suppress warnings that the given symbol is an obsolete variable.
373 Don't use within `eval-when-compile'."
374 `(eval-when-compile
375 (if (get ',symbol 'byte-obsolete-variable)
376 (cc-bytecomp-put ',symbol 'byte-obsolete-variable nil)
377 ;; This avoids a superfluous compiler warning
378 ;; about calling `get' for effect.
379 t)))
380
381 (defun cc-bytecomp-ignore-obsolete (form)
382 ;; Wraps a call to `byte-compile-obsolete' that suppresses the warning.
383 (let ((byte-compile-warnings byte-compile-warnings))
384 (byte-compile-disable-warning 'obsolete)
385 (byte-compile-obsolete form)))
386
387 (defmacro cc-bytecomp-obsolete-fun (symbol)
388 "Suppress warnings that the given symbol is an obsolete function.
389 Don't use within `eval-when-compile'."
390 `(eval-when-compile
391 (if (eq (get ',symbol 'byte-compile) 'byte-compile-obsolete)
392 (cc-bytecomp-put ',symbol 'byte-compile
393 'cc-bytecomp-ignore-obsolete)
394 ;; This avoids a superfluous compiler warning
395 ;; about calling `get' for effect.
396 t)))
397
398 (defmacro cc-bytecomp-boundp (symbol)
399 "Return non-nil if the given symbol is bound as a variable outside
400 the compilation. This is the same as using `boundp' but additionally
401 exclude any variables that have been bound during compilation with
402 `cc-bytecomp-defvar'."
403 (if (and (cc-bytecomp-is-compiling)
404 (memq (car (cdr symbol)) cc-bytecomp-unbound-variables))
405 nil
406 `(boundp ,symbol)))
407
408 (defmacro cc-bytecomp-fboundp (symbol)
409 "Return non-nil if the given symbol is bound as a function outside
410 the compilation. This is the same as using `fboundp' but additionally
411 exclude any functions that have been bound during compilation with
412 `cc-bytecomp-defun'."
413 (let (fun-elem)
414 (if (and (cc-bytecomp-is-compiling)
415 (setq fun-elem (assq (car (cdr symbol))
416 cc-bytecomp-original-functions))
417 (eq (elt fun-elem 2) 'unbound))
418 nil
419 `(fboundp ,symbol))))
420
421 \f
422 (provide 'cc-bytecomp)
423
424 ;;; cc-bytecomp.el ends here