Mercurial > hg > xemacs-beta
annotate lisp/byte-optimize.el @ 5798:b94d6e89ea5b
Correct a couple of small things with my last change.
src/ChangeLog addition:
2014-06-18 Aidan Kehoe <kehoea@parhasard.net>
Correct a couple of things in my last change.
* extents.h:
Make #'delete-extent available.
* window.c:
* window.c (delete_saved_point): New.
* window.c (Fdelete_window): Delete the saved point extents on
deletion of the window, since otherwise they will only be
garbage-collected when the buffer is.
* window.c (Fset_window_buffer): Correct a thinko here, use a
saved point when it *hasn't* been detached.
author | Aidan Kehoe <kehoea@parhasard.net> |
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date | Wed, 18 Jun 2014 09:26:54 +0100 |
parents | b4715fcbe001 |
children | 236e4afc565d |
rev | line source |
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428 | 1 ;;; byte-optimize.el --- the optimization passes of the emacs-lisp byte compiler. |
2 | |
3 ;;; Copyright (c) 1991, 1994 Free Software Foundation, Inc. | |
4 | |
446 | 5 ;; Authors: Jamie Zawinski <jwz@jwz.org> |
6 ;; Hallvard Furuseth <hbf@ulrik.uio.no> | |
7 ;; Martin Buchholz <martin@xemacs.org> | |
428 | 8 ;; Keywords: internal |
9 | |
10 ;; This file is part of XEmacs. | |
11 | |
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12 ;; XEmacs is free software: you can redistribute it and/or modify it |
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13 ;; under the terms of the GNU General Public License as published by the |
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14 ;; Free Software Foundation, either version 3 of the License, or (at your |
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15 ;; option) any later version. |
428 | 16 |
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17 ;; XEmacs is distributed in the hope that it will be useful, but WITHOUT |
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18 ;; ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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19 ;; FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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20 ;; for more details. |
428 | 21 |
22 ;; You should have received a copy of the GNU General Public License | |
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23 ;; along with XEmacs. If not, see <http://www.gnu.org/licenses/>. |
428 | 24 |
1297 | 25 ;;; Synched up with: FSF 20.7 except where marked. |
26 ;;; [[ Synched up with: FSF 20.7. ]] | |
27 ;;; DO NOT PUT IN AN INVALID SYNC MESSAGE WHEN YOU DO A PARTIAL SYNC. --ben | |
28 | |
29 ;; BEGIN SYNC WITH 20.7. | |
428 | 30 |
31 ;;; Commentary: | |
32 | |
33 ;; ======================================================================== | |
34 ;; "No matter how hard you try, you can't make a racehorse out of a pig. | |
35 ;; You can, however, make a faster pig." | |
36 ;; | |
37 ;; Or, to put it another way, the emacs byte compiler is a VW Bug. This code | |
440 | 38 ;; makes it be a VW Bug with fuel injection and a turbocharger... You're |
428 | 39 ;; still not going to make it go faster than 70 mph, but it might be easier |
40 ;; to get it there. | |
41 ;; | |
42 | |
43 ;; TO DO: | |
44 ;; | |
45 ;; (apply #'(lambda (x &rest y) ...) 1 (foo)) | |
46 ;; | |
47 ;; maintain a list of functions known not to access any global variables | |
48 ;; (actually, give them a 'dynamically-safe property) and then | |
49 ;; (let ( v1 v2 ... vM vN ) <...dynamically-safe...> ) ==> | |
50 ;; (let ( v1 v2 ... vM ) vN <...dynamically-safe...> ) | |
51 ;; by recursing on this, we might be able to eliminate the entire let. | |
52 ;; However certain variables should never have their bindings optimized | |
53 ;; away, because they affect everything. | |
54 ;; (put 'debug-on-error 'binding-is-magic t) | |
55 ;; (put 'debug-on-abort 'binding-is-magic t) | |
56 ;; (put 'debug-on-next-call 'binding-is-magic t) | |
57 ;; (put 'inhibit-quit 'binding-is-magic t) | |
58 ;; (put 'quit-flag 'binding-is-magic t) | |
59 ;; (put 't 'binding-is-magic t) | |
60 ;; (put 'nil 'binding-is-magic t) | |
61 ;; possibly also | |
62 ;; (put 'gc-cons-threshold 'binding-is-magic t) | |
63 ;; (put 'track-mouse 'binding-is-magic t) | |
64 ;; others? | |
65 ;; | |
66 ;; Simple defsubsts often produce forms like | |
67 ;; (let ((v1 (f1)) (v2 (f2)) ...) | |
68 ;; (FN v1 v2 ...)) | |
440 | 69 ;; It would be nice if we could optimize this to |
428 | 70 ;; (FN (f1) (f2) ...) |
71 ;; but we can't unless FN is dynamically-safe (it might be dynamically | |
72 ;; referring to the bindings that the lambda arglist established.) | |
73 ;; One of the uncountable lossages introduced by dynamic scope... | |
74 ;; | |
440 | 75 ;; Maybe there should be a control-structure that says "turn on |
428 | 76 ;; fast-and-loose type-assumptive optimizations here." Then when |
77 ;; we see a form like (car foo) we can from then on assume that | |
78 ;; the variable foo is of type cons, and optimize based on that. | |
440 | 79 ;; But, this won't win much because of (you guessed it) dynamic |
428 | 80 ;; scope. Anything down the stack could change the value. |
81 ;; (Another reason it doesn't work is that it is perfectly valid | |
82 ;; to call car with a null argument.) A better approach might | |
83 ;; be to allow type-specification of the form | |
84 ;; (put 'foo 'arg-types '(float (list integer) dynamic)) | |
85 ;; (put 'foo 'result-type 'bool) | |
86 ;; It should be possible to have these types checked to a certain | |
87 ;; degree. | |
88 ;; | |
89 ;; collapse common subexpressions | |
90 ;; | |
91 ;; It would be nice if redundant sequences could be factored out as well, | |
92 ;; when they are known to have no side-effects: | |
93 ;; (list (+ a b c) (+ a b c)) --> a b add c add dup list-2 | |
94 ;; but beware of traps like | |
95 ;; (cons (list x y) (list x y)) | |
96 ;; | |
97 ;; Tail-recursion elimination is not really possible in Emacs Lisp. | |
98 ;; Tail-recursion elimination is almost always impossible when all variables | |
99 ;; have dynamic scope, but given that the "return" byteop requires the | |
100 ;; binding stack to be empty (rather than emptying it itself), there can be | |
101 ;; no truly tail-recursive Emacs Lisp functions that take any arguments or | |
102 ;; make any bindings. | |
103 ;; | |
104 ;; Here is an example of an Emacs Lisp function which could safely be | |
105 ;; byte-compiled tail-recursively: | |
106 ;; | |
107 ;; (defun tail-map (fn list) | |
108 ;; (cond (list | |
109 ;; (funcall fn (car list)) | |
110 ;; (tail-map fn (cdr list))))) | |
111 ;; | |
112 ;; However, if there was even a single let-binding around the COND, | |
113 ;; it could not be byte-compiled, because there would be an "unbind" | |
440 | 114 ;; byte-op between the final "call" and "return." Adding a |
428 | 115 ;; Bunbind_all byteop would fix this. |
116 ;; | |
117 ;; (defun foo (x y z) ... (foo a b c)) | |
118 ;; ... (const foo) (varref a) (varref b) (varref c) (call 3) END: (return) | |
119 ;; ... (varref a) (varbind x) (varref b) (varbind y) (varref c) (varbind z) (goto 0) END: (unbind-all) (return) | |
120 ;; ... (varref a) (varset x) (varref b) (varset y) (varref c) (varset z) (goto 0) END: (return) | |
121 ;; | |
122 ;; this also can be considered tail recursion: | |
123 ;; | |
124 ;; ... (const foo) (varref a) (call 1) (goto X) ... X: (return) | |
125 ;; could generalize this by doing the optimization | |
126 ;; (goto X) ... X: (return) --> (return) | |
127 ;; | |
128 ;; But this doesn't solve all of the problems: although by doing tail- | |
129 ;; recursion elimination in this way, the call-stack does not grow, the | |
130 ;; binding-stack would grow with each recursive step, and would eventually | |
131 ;; overflow. I don't believe there is any way around this without lexical | |
132 ;; scope. | |
133 ;; | |
134 ;; Wouldn't it be nice if Emacs Lisp had lexical scope. | |
135 ;; | |
440 | 136 ;; Idea: the form (lexical-scope) in a file means that the file may be |
137 ;; compiled lexically. This proclamation is file-local. Then, within | |
428 | 138 ;; that file, "let" would establish lexical bindings, and "let-dynamic" |
139 ;; would do things the old way. (Or we could use CL "declare" forms.) | |
140 ;; We'd have to notice defvars and defconsts, since those variables should | |
141 ;; always be dynamic, and attempting to do a lexical binding of them | |
142 ;; should simply do a dynamic binding instead. | |
143 ;; But! We need to know about variables that were not necessarily defvarred | |
144 ;; in the file being compiled (doing a boundp check isn't good enough.) | |
145 ;; Fdefvar() would have to be modified to add something to the plist. | |
146 ;; | |
440 | 147 ;; A major disadvantage of this scheme is that the interpreter and compiler |
148 ;; would have different semantics for files compiled with (dynamic-scope). | |
428 | 149 ;; Since this would be a file-local optimization, there would be no way to |
440 | 150 ;; modify the interpreter to obey this (unless the loader was hacked |
428 | 151 ;; in some grody way, but that's a really bad idea.) |
152 ;; | |
153 ;; HA! RMS removed the following paragraph from his version of | |
154 ;; byte-optimize.el. | |
155 ;; | |
156 ;; Really the Right Thing is to make lexical scope the default across | |
440 | 157 ;; the board, in the interpreter and compiler, and just FIX all of |
428 | 158 ;; the code that relies on dynamic scope of non-defvarred variables. |
159 | |
160 ;; Other things to consider: | |
161 | |
162 ;; Associative math should recognize subcalls to identical function: | |
163 ;;(disassemble #'(lambda (x) (+ (+ (foo) 1) (+ (bar) 2)))) | |
164 ;; This should generate the same as (1+ x) and (1- x) | |
165 | |
166 ;;(disassemble #'(lambda (x) (cons (+ x 1) (- x 1)))) | |
167 ;; An awful lot of functions always return a non-nil value. If they're | |
168 ;; error free also they may act as true-constants. | |
169 | |
170 ;;(disassemble #'(lambda (x) (and (point) (foo)))) | |
440 | 171 ;; When |
428 | 172 ;; - all but one arguments to a function are constant |
173 ;; - the non-constant argument is an if-expression (cond-expression?) | |
174 ;; then the outer function can be distributed. If the guarding | |
175 ;; condition is side-effect-free [assignment-free] then the other | |
176 ;; arguments may be any expressions. Since, however, the code size | |
177 ;; can increase this way they should be "simple". Compare: | |
178 | |
179 ;;(disassemble #'(lambda (x) (eq (if (point) 'a 'b) 'c))) | |
180 ;;(disassemble #'(lambda (x) (if (point) (eq 'a 'c) (eq 'b 'c)))) | |
181 | |
444 | 182 ;; (car (cons A B)) -> (prog1 A B) |
428 | 183 ;;(disassemble #'(lambda (x) (car (cons (foo) 42)))) |
184 | |
185 ;; (cdr (cons A B)) -> (progn A B) | |
186 ;;(disassemble #'(lambda (x) (cdr (cons 42 (foo))))) | |
187 | |
444 | 188 ;; (car (list A B ...)) -> (prog1 A ... B) |
428 | 189 ;;(disassemble #'(lambda (x) (car (list (foo) 42 (bar))))) |
190 | |
191 ;; (cdr (list A B ...)) -> (progn A (list B ...)) | |
192 ;;(disassemble #'(lambda (x) (cdr (list 42 (foo) (bar))))) | |
193 | |
194 | |
195 ;;; Code: | |
196 | |
197 (require 'byte-compile "bytecomp") | |
198 | |
199 (defun byte-compile-log-lap-1 (format &rest args) | |
200 (if (aref byte-code-vector 0) | |
201 (error "The old version of the disassembler is loaded. Reload new-bytecomp as well.")) | |
202 (byte-compile-log-1 | |
203 (apply 'format format | |
204 (let (c a) | |
205 (mapcar | |
206 #'(lambda (arg) | |
207 (if (not (consp arg)) | |
208 (if (and (symbolp arg) | |
209 (string-match "^byte-" (symbol-name arg))) | |
210 (intern (substring (symbol-name arg) 5)) | |
211 arg) | |
212 (if (integerp (setq c (car arg))) | |
213 (error "non-symbolic byte-op %s" c)) | |
214 (if (eq c 'TAG) | |
215 (setq c arg) | |
216 (setq a (cond ((memq c byte-goto-ops) | |
217 (car (cdr (cdr arg)))) | |
218 ((memq c byte-constref-ops) | |
219 (car (cdr arg))) | |
220 (t (cdr arg)))) | |
221 (setq c (symbol-name c)) | |
222 (if (string-match "^byte-." c) | |
223 (setq c (intern (substring c 5))))) | |
224 (if (eq c 'constant) (setq c 'const)) | |
225 (if (and (eq (cdr arg) 0) | |
226 (not (memq c '(unbind call const)))) | |
227 c | |
228 (format "(%s %s)" c a)))) | |
229 args))))) | |
230 | |
231 (defmacro byte-compile-log-lap (format-string &rest args) | |
232 (list 'and | |
233 '(memq byte-optimize-log '(t byte)) | |
234 (cons 'byte-compile-log-lap-1 | |
235 (cons format-string args)))) | |
236 | |
237 | |
238 ;;; byte-compile optimizers to support inlining | |
239 | |
240 (put 'inline 'byte-optimizer 'byte-optimize-inline-handler) | |
241 | |
242 (defun byte-optimize-inline-handler (form) | |
243 "byte-optimize-handler for the `inline' special-form." | |
244 (cons | |
245 'progn | |
246 (mapcar | |
247 #'(lambda (sexp) | |
248 (let ((fn (car-safe sexp))) | |
249 (if (and (symbolp fn) | |
250 (or (cdr (assq fn byte-compile-function-environment)) | |
251 (and (fboundp fn) | |
252 (not (or (cdr (assq fn byte-compile-macro-environment)) | |
253 (and (consp (setq fn (symbol-function fn))) | |
254 (eq (car fn) 'macro)) | |
255 (subrp fn)))))) | |
256 (byte-compile-inline-expand sexp) | |
257 sexp))) | |
258 (cdr form)))) | |
259 | |
260 | |
261 ;; Splice the given lap code into the current instruction stream. | |
262 ;; If it has any labels in it, you're responsible for making sure there | |
263 ;; are no collisions, and that byte-compile-tag-number is reasonable | |
264 ;; after this is spliced in. The provided list is destroyed. | |
265 (defun byte-inline-lapcode (lap) | |
266 (setq byte-compile-output (nconc (nreverse lap) byte-compile-output))) | |
267 | |
268 | |
269 (defun byte-compile-inline-expand (form) | |
270 (let* ((name (car form)) | |
271 (fn (or (cdr (assq name byte-compile-function-environment)) | |
272 (and (fboundp name) (symbol-function name))))) | |
273 (if (null fn) | |
274 (progn | |
275 (byte-compile-warn "attempt to inline %s before it was defined" name) | |
276 form) | |
277 ;; else | |
278 (if (and (consp fn) (eq (car fn) 'autoload)) | |
279 (progn | |
280 (load (nth 1 fn)) | |
281 (setq fn (or (cdr (assq name byte-compile-function-environment)) | |
282 (and (fboundp name) (symbol-function name)))))) | |
283 (if (and (consp fn) (eq (car fn) 'autoload)) | |
284 (error "file \"%s\" didn't define \"%s\"" (nth 1 fn) name)) | |
285 (if (symbolp fn) | |
286 (byte-compile-inline-expand (cons fn (cdr form))) | |
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287 (if (or (eq (car-safe fn) 'lambda) (compiled-function-p fn)) |
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288 (byte-compile-unfold-lambda (cons fn (cdr form))) |
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289 ;; Give up on inlining. |
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290 form))))) |
428 | 291 |
292 ;;; ((lambda ...) ...) | |
440 | 293 ;;; |
428 | 294 (defun byte-compile-unfold-lambda (form &optional name) |
295 (or name (setq name "anonymous lambda")) | |
296 (let ((lambda (car form)) | |
297 (values (cdr form))) | |
298 (if (compiled-function-p lambda) | |
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299 (setq lambda (fetch-bytecode lambda) |
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300 lambda (list 'lambda (compiled-function-arglist lambda) |
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301 (list 'byte-code |
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302 (compiled-function-instructions lambda) |
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303 (compiled-function-constants lambda) |
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304 (compiled-function-stack-depth lambda))))) |
428 | 305 (let ((arglist (nth 1 lambda)) |
306 (body (cdr (cdr lambda))) | |
307 optionalp restp | |
308 bindings) | |
309 (if (and (stringp (car body)) (cdr body)) | |
310 (setq body (cdr body))) | |
311 (if (and (consp (car body)) (eq 'interactive (car (car body)))) | |
312 (setq body (cdr body))) | |
313 (while arglist | |
314 (cond ((eq (car arglist) '&optional) | |
315 ;; ok, I'll let this slide because funcall_lambda() does... | |
316 ;; (if optionalp (error "multiple &optional keywords in %s" name)) | |
317 (if restp (error "&optional found after &rest in %s" name)) | |
318 (if (null (cdr arglist)) | |
319 (error "nothing after &optional in %s" name)) | |
320 (setq optionalp t)) | |
321 ((eq (car arglist) '&rest) | |
322 ;; ...but it is by no stretch of the imagination a reasonable | |
323 ;; thing that funcall_lambda() allows (&rest x y) and | |
324 ;; (&rest x &optional y) in arglists. | |
325 (if (null (cdr arglist)) | |
326 (error "nothing after &rest in %s" name)) | |
327 (if (cdr (cdr arglist)) | |
328 (error "multiple vars after &rest in %s" name)) | |
329 (setq restp t)) | |
330 (restp | |
331 (setq bindings (cons (list (car arglist) | |
332 (and values (cons 'list values))) | |
333 bindings) | |
334 values nil)) | |
335 ((and (not optionalp) (null values)) | |
336 (byte-compile-warn "attempt to open-code %s with too few arguments" name) | |
337 (setq arglist nil values 'too-few)) | |
338 (t | |
339 (setq bindings (cons (list (car arglist) (car values)) | |
340 bindings) | |
341 values (cdr values)))) | |
342 (setq arglist (cdr arglist))) | |
343 (if values | |
344 (progn | |
345 (or (eq values 'too-few) | |
346 (byte-compile-warn | |
347 "attempt to open-code %s with too many arguments" name)) | |
348 form) | |
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349 (setq body (byte-optimize-body body nil)) |
440 | 350 (let ((newform |
428 | 351 (if bindings |
352 (cons 'let (cons (nreverse bindings) body)) | |
353 (cons 'progn body)))) | |
354 (byte-compile-log " %s\t==>\t%s" form newform) | |
355 newform))))) | |
356 | |
357 | |
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358 (defun byte-optimize-lambda (form) |
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359 (let* ((offset 2) (body (nthcdr offset form))) |
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360 (if (stringp (car body)) (setq body (nthcdr (incf offset) form))) |
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361 (if (eq 'interactive (car-safe (car body))) |
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362 (setq body (nthcdr (incf offset) form))) |
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363 (if (eq body (setq body (byte-optimize-body body nil))) |
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364 form |
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365 (nconc (subseq form 0 offset) body)))) |
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366 |
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367 ;; Setting this to the byte-optimizer property of condition-case gives an |
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368 ;; infinite loop, as of So 6 Mai 2012 05:10:44 IST |
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369 (defun byte-optimize-condition-case (form &optional for-effect) |
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370 (let ((modified nil) |
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371 (result nil) |
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372 (new nil)) |
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373 (setq result |
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374 (list* (car form) (nth 1 form) |
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375 (prog1 |
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376 (setq new (byte-optimize-form (nth 2 form) for-effect)) |
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377 (setq modified (or modified (eq new (nth 2 form))))) |
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378 (mapcar #'(lambda (handler) |
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379 (if (eq (cdr handler) |
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380 (setq new |
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381 (byte-optimize-body (cdr handler) |
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382 for-effect))) |
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383 handler |
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384 (setq modified t) |
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385 (cons (car handler) new))) |
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386 (cdddr form)))) |
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387 (if modified result form))) |
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388 |
428 | 389 ;;; implementing source-level optimizers |
390 | |
391 (defun byte-optimize-form-code-walker (form for-effect) | |
392 ;; | |
393 ;; For normal function calls, We can just mapcar the optimizer the cdr. But | |
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394 ;; we need to have special knowledge of the syntax of the special operators |
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395 ;; like let and defun (that's why they're special operators :-). (Actually, |
428 | 396 ;; the important aspect is that they are subrs that don't evaluate all of |
397 ;; their args.) | |
398 ;; | |
399 (let ((fn (car-safe form)) | |
400 tmp) | |
401 (cond ((not (consp form)) | |
402 (if (not (and for-effect | |
403 (or byte-compile-delete-errors | |
404 (not (symbolp form)) | |
405 (eq form t)))) | |
406 form)) | |
407 ((eq fn 'quote) | |
408 (if (cdr (cdr form)) | |
409 (byte-compile-warn "malformed quote form: %s" | |
410 (prin1-to-string form))) | |
411 ;; map (quote nil) to nil to simplify optimizer logic. | |
412 ;; map quoted constants to nil if for-effect (just because). | |
413 (and (nth 1 form) | |
414 (not for-effect) | |
415 form)) | |
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416 ((eq fn 'function) |
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417 (when (cddr form) |
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418 (byte-compile-warn "malformed function form: %S" form)) |
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419 (cond |
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420 (for-effect nil) |
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421 ((and (eq (car-safe (cadr form)) 'lambda) |
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422 (not (eq (cadr form) (setq tmp (byte-optimize-lambda |
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423 (cadr form)))))) |
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424 (list fn tmp)) |
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425 (t form))) |
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426 ((and (eq 'lambda (car-safe fn)) |
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427 (not (eq form (setq form (byte-compile-unfold-lambda form))))) |
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428 form) |
428 | 429 ((memq fn '(let let*)) |
430 ;; recursively enter the optimizer for the bindings and body | |
431 ;; of a let or let*. This for depth-firstness: forms that | |
432 ;; are more deeply nested are optimized first. | |
433 (cons fn | |
434 (cons | |
435 (mapcar | |
436 #'(lambda (binding) | |
437 (if (symbolp binding) | |
438 binding | |
439 (if (cdr (cdr binding)) | |
440 (byte-compile-warn "malformed let binding: %s" | |
441 (prin1-to-string binding))) | |
442 (list (car binding) | |
443 (byte-optimize-form (nth 1 binding) nil)))) | |
444 (nth 1 form)) | |
445 (byte-optimize-body (cdr (cdr form)) for-effect)))) | |
446 ((eq fn 'cond) | |
447 (cons fn | |
448 (mapcar | |
449 #'(lambda (clause) | |
450 (if (consp clause) | |
451 (cons | |
452 (byte-optimize-form (car clause) nil) | |
453 (byte-optimize-body (cdr clause) for-effect)) | |
454 (byte-compile-warn "malformed cond form: %s" | |
455 (prin1-to-string clause)) | |
456 clause)) | |
457 (cdr form)))) | |
458 ((eq fn 'progn) | |
459 ;; as an extra added bonus, this simplifies (progn <x>) --> <x> | |
460 (if (cdr (cdr form)) | |
461 (progn | |
462 (setq tmp (byte-optimize-body (cdr form) for-effect)) | |
463 (if (cdr tmp) (cons 'progn tmp) (car tmp))) | |
464 (byte-optimize-form (nth 1 form) for-effect))) | |
465 ((eq fn 'prog1) | |
466 (if (cdr (cdr form)) | |
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467 (cons (if for-effect 'progn 'prog1) |
428 | 468 (cons (byte-optimize-form (nth 1 form) for-effect) |
469 (byte-optimize-body (cdr (cdr form)) t))) | |
4686
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470 (byte-optimize-form `(or ,(nth 1 form) nil) for-effect))) |
428 | 471 ((eq fn 'prog2) |
472 (cons 'prog2 | |
473 (cons (byte-optimize-form (nth 1 form) t) | |
474 (cons (byte-optimize-form (nth 2 form) for-effect) | |
475 (byte-optimize-body (cdr (cdr (cdr form))) t))))) | |
440 | 476 |
428 | 477 ((memq fn '(save-excursion save-restriction save-current-buffer)) |
478 ;; those subrs which have an implicit progn; it's not quite good | |
479 ;; enough to treat these like normal function calls. | |
480 ;; This can turn (save-excursion ...) into (save-excursion) which | |
481 ;; will be optimized away in the lap-optimize pass. | |
482 (cons fn (byte-optimize-body (cdr form) for-effect))) | |
440 | 483 |
428 | 484 ((eq fn 'with-output-to-temp-buffer) |
485 ;; this is just like the above, except for the first argument. | |
486 (cons fn | |
487 (cons | |
488 (byte-optimize-form (nth 1 form) nil) | |
489 (byte-optimize-body (cdr (cdr form)) for-effect)))) | |
440 | 490 |
428 | 491 ((eq fn 'if) |
492 (cons fn | |
493 (cons (byte-optimize-form (nth 1 form) nil) | |
494 (cons | |
495 (byte-optimize-form (nth 2 form) for-effect) | |
496 (byte-optimize-body (nthcdr 3 form) for-effect))))) | |
440 | 497 |
428 | 498 ((memq fn '(and or)) ; remember, and/or are control structures. |
499 ;; take forms off the back until we can't any more. | |
500 ;; In the future it could conceivably be a problem that the | |
501 ;; subexpressions of these forms are optimized in the reverse | |
502 ;; order, but it's ok for now. | |
503 (if for-effect | |
504 (let ((backwards (reverse (cdr form)))) | |
505 (while (and backwards | |
506 (null (setcar backwards | |
507 (byte-optimize-form (car backwards) | |
508 for-effect)))) | |
509 (setq backwards (cdr backwards))) | |
510 (if (and (cdr form) (null backwards)) | |
511 (byte-compile-log | |
512 " all subforms of %s called for effect; deleted" form)) | |
452 | 513 (when backwards |
514 ;; Now optimize the rest of the forms. We need the return | |
515 ;; values. We already did the car. | |
516 (setcdr backwards | |
517 (mapcar 'byte-optimize-form (cdr backwards)))) | |
518 (cons fn (nreverse backwards))) | |
428 | 519 (cons fn (mapcar 'byte-optimize-form (cdr form))))) |
520 | |
521 ((eq fn 'interactive) | |
522 (byte-compile-warn "misplaced interactive spec: %s" | |
523 (prin1-to-string form)) | |
524 nil) | |
440 | 525 |
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526 ((memq fn '(defun defmacro)) |
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527 (if (eq (setq tmp (cons 'lambda (cddr form))) |
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528 (setq tmp (byte-optimize-lambda tmp))) |
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529 form |
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530 (nconc (subseq form 0 2) (cdr tmp)))) |
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531 |
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532 ((eq fn 'condition-case) |
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533 (if (eq (setq tmp (byte-optimize-condition-case form for-effect)) |
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534 form) |
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535 form |
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536 tmp)) |
428 | 537 |
538 ((eq fn 'unwind-protect) | |
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539 ;; the "protected" part of an unwind-protect is compiled (and |
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540 ;; thus optimized) as a top-level form, but do it here too for |
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541 ;; the sake of lexically-oriented code (labels, and so on). The |
428 | 542 ;; non-protected part has the same for-effect status as the |
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543 ;; unwind-protect itself. |
428 | 544 (cons fn |
545 (cons (byte-optimize-form (nth 1 form) for-effect) | |
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546 (byte-optimize-body (cddr form) t)))) |
440 | 547 |
428 | 548 ((eq fn 'catch) |
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549 ;; The body of a catch is compiled (and thus optimized) as a |
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550 ;; top-level form, but do it here too for the sake of |
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551 ;; lexically-oriented code. The tag is never for-effect. |
428 | 552 (cons fn |
553 (cons (byte-optimize-form (nth 1 form) nil) | |
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554 (byte-optimize-body (cddr form) for-effect)))) |
428 | 555 |
556 ;; If optimization is on, this is the only place that macros are | |
557 ;; expanded. If optimization is off, then macroexpansion happens | |
558 ;; in byte-compile-form. Otherwise, the macros are already expanded | |
559 ;; by the time that is reached. | |
560 ((not (eq form | |
561 (setq form (macroexpand form | |
562 byte-compile-macro-environment)))) | |
563 (byte-optimize-form form for-effect)) | |
440 | 564 |
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565 ((compiled-function-p fn) |
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566 (cons fn (mapcar #'byte-optimize-form (cdr form)))) |
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567 |
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568 ((not (symbolp fn)) |
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569 (byte-compile-warn "%S is a malformed function" fn) |
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570 form) |
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571 |
1297 | 572 ;; Support compiler macros as in cl.el. |
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573 ((and (get fn 'cl-compiler-macro) |
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574 (not (eq form (setq form (compiler-macroexpand form))))) |
1297 | 575 (byte-optimize-form form for-effect)) |
576 | |
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577 ((and for-effect |
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578 (setq tmp (byte-optimize-side-effect-free-p form)) |
428 | 579 (or byte-compile-delete-errors |
580 (eq tmp 'error-free) | |
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581 ;; XEmacs; GNU handles the expansion of (pop foo) specially |
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582 ;; here. We changed the macro to expand to (prog1 (car-safe |
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583 ;; PLACE) (setq PLACE (cdr PLACE))) , which has the same |
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584 ;; effect. (This only matters when |
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585 ;; byte-compile-delete-errors is nil, which is usually true |
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586 ;; for GNU and usually false for XEmacs.) |
428 | 587 (progn |
588 (byte-compile-warn "%s called for effect" | |
589 (prin1-to-string form)) | |
590 nil))) | |
591 (byte-compile-log " %s called for effect; deleted" fn) | |
592 ;; appending a nil here might not be necessary, but it can't hurt. | |
593 (byte-optimize-form | |
594 (cons 'progn (append (cdr form) '(nil))) t)) | |
440 | 595 |
428 | 596 (t |
597 ;; Otherwise, no args can be considered to be for-effect, | |
598 ;; even if the called function is for-effect, because we | |
599 ;; don't know anything about that function. | |
600 (cons fn (mapcar 'byte-optimize-form (cdr form))))))) | |
601 | |
602 | |
603 (defun byte-optimize-form (form &optional for-effect) | |
604 "The source-level pass of the optimizer." | |
605 ;; | |
606 ;; First, optimize all sub-forms of this one. | |
607 (setq form (byte-optimize-form-code-walker form for-effect)) | |
608 ;; | |
609 ;; After optimizing all subforms, optimize this form until it doesn't | |
610 ;; optimize any further. This means that some forms will be passed through | |
611 ;; the optimizer many times, but that's necessary to make the for-effect | |
612 ;; processing do as much as possible. | |
613 ;; | |
614 (let (opt new) | |
615 (if (and (consp form) | |
616 (symbolp (car form)) | |
617 (or (and for-effect | |
618 ;; we don't have any of these yet, but we might. | |
619 (setq opt (get (car form) 'byte-for-effect-optimizer))) | |
620 (setq opt (get (car form) 'byte-optimizer))) | |
621 (not (eq form (setq new (funcall opt form))))) | |
622 (progn | |
623 ;; (if (equal form new) (error "bogus optimizer -- %s" opt)) | |
624 (byte-compile-log " %s\t==>\t%s" form new) | |
1297 | 625 (setq new (byte-optimize-form new for-effect)) |
626 new) | |
428 | 627 form))) |
628 | |
629 | |
630 (defun byte-optimize-body (forms all-for-effect) | |
631 ;; Optimize the cdr of a progn or implicit progn; `forms' is a list of | |
632 ;; forms, all but the last of which are optimized with the assumption that | |
633 ;; they are being called for effect. The last is for-effect as well if | |
634 ;; all-for-effect is true. Returns a new list of forms. | |
635 (let ((rest forms) | |
636 (result nil) | |
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637 (modified nil) |
428 | 638 fe new) |
639 (while rest | |
640 (setq fe (or all-for-effect (cdr rest))) | |
641 (setq new (and (car rest) (byte-optimize-form (car rest) fe))) | |
642 (if (or new (not fe)) | |
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643 (setq result (cons new result) |
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644 modified (or modified (not (eq new (car rest))))) |
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645 (setq modified t)) |
428 | 646 (setq rest (cdr rest))) |
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647 (if modified (nreverse result) forms))) |
428 | 648 |
649 | |
650 ;;; some source-level optimizers | |
651 ;;; | |
652 ;;; when writing optimizers, be VERY careful that the optimizer returns | |
653 ;;; something not EQ to its argument if and ONLY if it has made a change. | |
654 ;;; This implies that you cannot simply destructively modify the list; | |
655 ;;; you must return something not EQ to it if you make an optimization. | |
656 ;;; | |
657 ;;; It is now safe to optimize code such that it introduces new bindings. | |
658 | |
659 ;; I'd like this to be a defsubst, but let's not be self-referential... | |
660 (defmacro byte-compile-trueconstp (form) | |
661 ;; Returns non-nil if FORM is a non-nil constant. | |
662 `(cond ((consp ,form) (eq (car ,form) 'quote)) | |
663 ((not (symbolp ,form))) | |
664 ((eq ,form t)) | |
665 ((keywordp ,form)))) | |
666 | |
667 ;; If the function is being called with constant numeric args, | |
440 | 668 ;; evaluate as much as possible at compile-time. This optimizer |
428 | 669 ;; assumes that the function is associative, like + or *. |
670 (defun byte-optimize-associative-math (form) | |
671 (let ((args nil) | |
672 (constants nil) | |
673 (rest (cdr form))) | |
674 (while rest | |
675 (if (numberp (car rest)) | |
676 (setq constants (cons (car rest) constants)) | |
677 (setq args (cons (car rest) args))) | |
678 (setq rest (cdr rest))) | |
679 (if (cdr constants) | |
680 (if args | |
681 (list (car form) | |
682 (apply (car form) constants) | |
683 (if (cdr args) | |
684 (cons (car form) (nreverse args)) | |
685 (car args))) | |
686 (apply (car form) constants)) | |
687 form))) | |
688 | |
689 ;; If the function is being called with constant numeric args, | |
690 ;; evaluate as much as possible at compile-time. This optimizer | |
691 ;; assumes that the function satisfies | |
692 ;; (op x1 x2 ... xn) == (op ...(op (op x1 x2) x3) ...xn) | |
693 ;; like - and /. | |
694 (defun byte-optimize-nonassociative-math (form) | |
695 (if (or (not (numberp (car (cdr form)))) | |
696 (not (numberp (car (cdr (cdr form)))))) | |
697 form | |
698 (let ((constant (car (cdr form))) | |
699 (rest (cdr (cdr form)))) | |
700 (while (numberp (car rest)) | |
701 (setq constant (funcall (car form) constant (car rest)) | |
702 rest (cdr rest))) | |
703 (if rest | |
704 (cons (car form) (cons constant rest)) | |
705 constant)))) | |
706 | |
707 ;;(defun byte-optimize-associative-two-args-math (form) | |
708 ;; (setq form (byte-optimize-associative-math form)) | |
709 ;; (if (consp form) | |
710 ;; (byte-optimize-two-args-left form) | |
711 ;; form)) | |
712 | |
713 ;;(defun byte-optimize-nonassociative-two-args-math (form) | |
714 ;; (setq form (byte-optimize-nonassociative-math form)) | |
715 ;; (if (consp form) | |
716 ;; (byte-optimize-two-args-right form) | |
717 ;; form)) | |
718 | |
719 ;; jwz: (byte-optimize-approx-equal 0.0 0.0) was returning nil | |
720 ;; in xemacs 19.15 because it used < instead of <=. | |
721 (defun byte-optimize-approx-equal (x y) | |
722 (<= (* (abs (- x y)) 100) (abs (+ x y)))) | |
723 | |
724 ;; Collect all the constants from FORM, after the STARTth arg, | |
725 ;; and apply FUN to them to make one argument at the end. | |
726 ;; For functions that can handle floats, that optimization | |
727 ;; can be incorrect because reordering can cause an overflow | |
728 ;; that would otherwise be avoided by encountering an arg that is a float. | |
729 ;; We avoid this problem by (1) not moving float constants and | |
730 ;; (2) not moving anything if it would cause an overflow. | |
731 (defun byte-optimize-delay-constants-math (form start fun) | |
732 ;; Merge all FORM's constants from number START, call FUN on them | |
733 ;; and put the result at the end. | |
734 (let ((rest (nthcdr (1- start) form)) | |
735 (orig form) | |
736 ;; t means we must check for overflow. | |
737 (overflow (memq fun '(+ *)))) | |
738 (while (cdr (setq rest (cdr rest))) | |
739 (if (integerp (car rest)) | |
740 (let (constants) | |
741 (setq form (copy-sequence form) | |
742 rest (nthcdr (1- start) form)) | |
743 (while (setq rest (cdr rest)) | |
744 (cond ((integerp (car rest)) | |
745 (setq constants (cons (car rest) constants)) | |
746 (setcar rest nil)))) | |
747 ;; If necessary, check now for overflow | |
748 ;; that might be caused by reordering. | |
749 (if (and overflow | |
750 ;; We have overflow if the result of doing the arithmetic | |
751 ;; on floats is not even close to the result | |
752 ;; of doing it on integers. | |
753 (not (byte-optimize-approx-equal | |
754 (apply fun (mapcar 'float constants)) | |
755 (float (apply fun constants))))) | |
756 (setq form orig) | |
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757 (setq form (nconc (delete* nil form) |
428 | 758 (list (apply fun (nreverse constants))))))))) |
759 form)) | |
760 | |
1297 | 761 ;; END SYNC WITH 20.7. |
762 | |
446 | 763 ;;; It is not safe to optimize calls to arithmetic ops with one arg |
764 ;;; away entirely (actually, it would be safe if we know the sole arg | |
765 ;;; is not a marker or if it appears in other arithmetic). | |
428 | 766 |
446 | 767 ;;; But this degree of paranoia is normally unjustified, so optimize unless |
547 | 768 ;;; the user has done (declaim (optimize (safety 3))). See bytecomp.el. |
442 | 769 |
446 | 770 (defun byte-optimize-plus (form) |
771 (byte-optimize-predicate (byte-optimize-delay-constants-math form 1 '+))) | |
428 | 772 |
773 (defun byte-optimize-multiply (form) | |
774 (setq form (byte-optimize-delay-constants-math form 1 '*)) | |
442 | 775 ;; If there is a constant integer in FORM, it is now the last element. |
446 | 776 |
777 (case (car (last form)) | |
778 ;; (* x y 0) --> (progn x y 0) | |
779 (0 (cons 'progn (cdr form))) | |
780 (t (byte-optimize-predicate form)))) | |
781 | |
782 (defun byte-optimize-minus (form) | |
783 ;; Put constants at the end, except the first arg. | |
784 (setq form (byte-optimize-delay-constants-math form 2 '+)) | |
785 ;; Now only the first and last args can be integers. | |
786 (let ((last (car (last (nthcdr 3 form))))) | |
787 (cond | |
788 ;; If form is (- CONST foo... CONST), merge first and last. | |
789 ((and (numberp (nth 1 form)) (numberp last)) | |
790 (decf (nth 1 form) last) | |
791 (butlast form)) | |
792 | |
464 | 793 ;; (- 0 ...) --> |
794 ((eq 0 (nth 1 form)) | |
795 (case (length form) | |
796 ;; (- 0) --> 0 | |
797 (2 0) | |
798 ;; (- 0 x) --> (- x) | |
799 (3 `(- ,(nth 2 form))) | |
800 ;; (- 0 x y ...) --> (- (- x) y ...) | |
801 (t `(- (- ,(nth 2 form)) ,@(nthcdr 3 form))))) | |
446 | 802 |
803 (t (byte-optimize-predicate form))))) | |
428 | 804 |
805 (defun byte-optimize-divide (form) | |
446 | 806 ;; Put constants at the end, except the first arg. |
428 | 807 (setq form (byte-optimize-delay-constants-math form 2 '*)) |
446 | 808 ;; Now only the first and last args can be integers. |
809 (let ((last (car (last (nthcdr 3 form))))) | |
440 | 810 (cond |
446 | 811 ;; If form is (/ CONST foo... CONST), merge first and last. |
812 ((and (numberp (nth 1 form)) (numberp last)) | |
813 (condition-case nil | |
814 (cons (nth 0 form) | |
815 (cons (/ (nth 1 form) last) | |
816 (butlast (cdr (cdr form))))) | |
817 (error form))) | |
818 | |
819 ;; (/ 0 x y) --> (progn x y 0) | |
442 | 820 ((eq (nth 1 form) 0) |
821 (append '(progn) (cdr (cdr form)) '(0))) | |
446 | 822 |
823 ;; We don't have to check for divide-by-zero because `/' does. | |
824 (t (byte-optimize-predicate form))))) | |
428 | 825 |
1297 | 826 ;; BEGIN SYNC WITH 20.7. |
827 | |
428 | 828 (defun byte-optimize-logmumble (form) |
829 (setq form (byte-optimize-delay-constants-math form 1 (car form))) | |
830 (byte-optimize-predicate | |
831 (cond ((memq 0 form) | |
832 (setq form (if (eq (car form) 'logand) | |
833 (cons 'progn (cdr form)) | |
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834 (remove* 0 form)))) |
428 | 835 ((and (eq (car-safe form) 'logior) |
836 (memq -1 form)) | |
837 (cons 'progn (cdr form))) | |
838 (form)))) | |
839 | |
840 | |
841 (defun byte-optimize-binary-predicate (form) | |
842 (if (byte-compile-constp (nth 1 form)) | |
843 (if (byte-compile-constp (nth 2 form)) | |
844 (condition-case () | |
845 (list 'quote (eval form)) | |
846 (error form)) | |
847 ;; This can enable some lapcode optimizations. | |
848 (list (car form) (nth 2 form) (nth 1 form))) | |
849 form)) | |
850 | |
851 (defun byte-optimize-predicate (form) | |
852 (let ((ok t) | |
853 (rest (cdr form))) | |
854 (while (and rest ok) | |
855 (setq ok (byte-compile-constp (car rest)) | |
856 rest (cdr rest))) | |
857 (if ok | |
446 | 858 (condition-case err |
428 | 859 (list 'quote (eval form)) |
446 | 860 (error |
861 (byte-compile-warn "evaluating %s: %s" form err) | |
862 form)) | |
428 | 863 form))) |
864 | |
865 (defun byte-optimize-identity (form) | |
866 (if (and (cdr form) (null (cdr (cdr form)))) | |
867 (nth 1 form) | |
868 (byte-compile-warn "identity called with %d arg%s, but requires 1" | |
869 (length (cdr form)) | |
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870 (if (eql 1 (length (cdr form))) "" "s")) |
428 | 871 form)) |
872 | |
444 | 873 (defun byte-optimize-car (form) |
874 (let ((arg (cadr form))) | |
875 (cond | |
876 ((and (byte-compile-trueconstp arg) | |
877 (not (and (consp arg) | |
878 (eq (car arg) 'quote) | |
879 (listp (cadr arg))))) | |
880 (byte-compile-warn | |
881 "taking car of a constant: %s" arg) | |
882 form) | |
883 ((and (eq (car-safe arg) 'cons) | |
884 (eq (length arg) 3)) | |
885 `(prog1 ,(nth 1 arg) ,(nth 2 arg))) | |
886 ((eq (car-safe arg) 'list) | |
887 `(prog1 ,@(cdr arg))) | |
888 (t | |
889 (byte-optimize-predicate form))))) | |
890 | |
891 (defun byte-optimize-cdr (form) | |
892 (let ((arg (cadr form))) | |
893 (cond | |
894 ((and (byte-compile-trueconstp arg) | |
895 (not (and (consp arg) | |
896 (eq (car arg) 'quote) | |
897 (listp (cadr arg))))) | |
898 (byte-compile-warn | |
899 "taking cdr of a constant: %s" arg) | |
900 form) | |
901 ((and (eq (car-safe arg) 'cons) | |
902 (eq (length arg) 3)) | |
903 `(progn ,(nth 1 arg) ,(nth 2 arg))) | |
904 ((eq (car-safe arg) 'list) | |
905 (if (> (length arg) 2) | |
906 `(progn ,(cadr arg) (list ,@(cddr arg))) | |
907 (cadr arg))) | |
908 (t | |
909 (byte-optimize-predicate form))))) | |
910 | |
428 | 911 (put 'identity 'byte-optimizer 'byte-optimize-identity) |
912 | |
913 (put '+ 'byte-optimizer 'byte-optimize-plus) | |
914 (put '* 'byte-optimizer 'byte-optimize-multiply) | |
915 (put '- 'byte-optimizer 'byte-optimize-minus) | |
916 (put '/ 'byte-optimizer 'byte-optimize-divide) | |
446 | 917 (put '% 'byte-optimizer 'byte-optimize-predicate) |
428 | 918 (put 'max 'byte-optimizer 'byte-optimize-associative-math) |
919 (put 'min 'byte-optimizer 'byte-optimize-associative-math) | |
920 | |
921 (put 'eq 'byte-optimizer 'byte-optimize-binary-predicate) | |
922 (put 'eql 'byte-optimizer 'byte-optimize-binary-predicate) | |
923 (put 'equal 'byte-optimizer 'byte-optimize-binary-predicate) | |
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924 (put 'equalp 'byte-optimizer 'byte-optimize-binary-predicate) |
428 | 925 (put 'string= 'byte-optimizer 'byte-optimize-binary-predicate) |
926 (put 'string-equal 'byte-optimizer 'byte-optimize-binary-predicate) | |
927 | |
550 | 928 (put '= 'byte-optimizer 'byte-optimize-predicate) |
428 | 929 (put '< 'byte-optimizer 'byte-optimize-predicate) |
930 (put '> 'byte-optimizer 'byte-optimize-predicate) | |
931 (put '<= 'byte-optimizer 'byte-optimize-predicate) | |
932 (put '>= 'byte-optimizer 'byte-optimize-predicate) | |
933 (put '1+ 'byte-optimizer 'byte-optimize-predicate) | |
934 (put '1- 'byte-optimizer 'byte-optimize-predicate) | |
935 (put 'not 'byte-optimizer 'byte-optimize-predicate) | |
936 (put 'null 'byte-optimizer 'byte-optimize-predicate) | |
937 (put 'memq 'byte-optimizer 'byte-optimize-predicate) | |
938 (put 'consp 'byte-optimizer 'byte-optimize-predicate) | |
939 (put 'listp 'byte-optimizer 'byte-optimize-predicate) | |
940 (put 'symbolp 'byte-optimizer 'byte-optimize-predicate) | |
941 (put 'stringp 'byte-optimizer 'byte-optimize-predicate) | |
942 (put 'string< 'byte-optimizer 'byte-optimize-predicate) | |
943 (put 'string-lessp 'byte-optimizer 'byte-optimize-predicate) | |
440 | 944 (put 'length 'byte-optimizer 'byte-optimize-predicate) |
428 | 945 |
946 (put 'logand 'byte-optimizer 'byte-optimize-logmumble) | |
947 (put 'logior 'byte-optimizer 'byte-optimize-logmumble) | |
948 (put 'logxor 'byte-optimizer 'byte-optimize-logmumble) | |
949 (put 'lognot 'byte-optimizer 'byte-optimize-predicate) | |
950 | |
444 | 951 (put 'car 'byte-optimizer 'byte-optimize-car) |
952 (put 'cdr 'byte-optimizer 'byte-optimize-cdr) | |
428 | 953 (put 'car-safe 'byte-optimizer 'byte-optimize-predicate) |
954 (put 'cdr-safe 'byte-optimizer 'byte-optimize-predicate) | |
955 | |
956 | |
440 | 957 ;; I'm not convinced that this is necessary. Doesn't the optimizer loop |
428 | 958 ;; take care of this? - Jamie |
959 ;; I think this may some times be necessary to reduce eg. (quote 5) to 5, | |
960 ;; so arithmetic optimizers recognize the numeric constant. - Hallvard | |
961 (put 'quote 'byte-optimizer 'byte-optimize-quote) | |
962 (defun byte-optimize-quote (form) | |
963 (if (or (consp (nth 1 form)) | |
964 (and (symbolp (nth 1 form)) | |
965 ;; XEmacs addition: | |
966 (not (keywordp (nth 1 form))) | |
967 (not (memq (nth 1 form) '(nil t))))) | |
968 form | |
969 (nth 1 form))) | |
970 | |
971 (defun byte-optimize-zerop (form) | |
972 (cond ((numberp (nth 1 form)) | |
973 (eval form)) | |
974 (byte-compile-delete-errors | |
975 (list '= (nth 1 form) 0)) | |
976 (form))) | |
977 | |
978 (put 'zerop 'byte-optimizer 'byte-optimize-zerop) | |
979 | |
980 (defun byte-optimize-and (form) | |
981 ;; Simplify if less than 2 args. | |
982 ;; if there is a literal nil in the args to `and', throw it and following | |
983 ;; forms away, and surround the `and' with (progn ... nil). | |
984 (cond ((null (cdr form))) | |
985 ((memq nil form) | |
986 (list 'progn | |
987 (byte-optimize-and | |
988 (prog1 (setq form (copy-sequence form)) | |
989 (while (nth 1 form) | |
990 (setq form (cdr form))) | |
991 (setcdr form nil))) | |
992 nil)) | |
993 ((null (cdr (cdr form))) | |
994 (nth 1 form)) | |
995 ((byte-optimize-predicate form)))) | |
996 | |
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997 (defun byte-optimize-or (form &optional for-effect) |
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998 ;; Throw away unneeded nils, and simplify if less than 2 args. |
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999 ;; XEmacs; change to be more careful about discarding multiple values. |
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1000 (if (memq nil form) |
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1001 (setq form (remove* nil form |
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1002 ;; A trailing nil indicates to discard multiple |
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1003 ;; values, and we need to respect that. No need if |
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1004 ;; this is for-effect, though, multiple values |
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1005 ;; will be discarded anyway. |
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1006 :end (if (not for-effect) (1- (length form)))))) |
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1007 ;; If there is a literal non-nil constant in the args to `or', throw |
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1008 ;; away all following forms. We can do this because a literal non-nil |
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1009 ;; constant cannot be multiple. |
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|
1010 (let ((rest form)) |
428 | 1011 (while (cdr (setq rest (cdr rest))) |
1012 (if (byte-compile-trueconstp (car rest)) | |
1013 (setq form (copy-sequence form) | |
1014 rest (setcdr (memq (car rest) form) nil)))) | |
1015 (if (cdr (cdr form)) | |
1016 (byte-optimize-predicate form) | |
1017 (nth 1 form)))) | |
1018 | |
1297 | 1019 ;; END SYNC WITH 20.7. |
1020 | |
448 | 1021 ;;; For the byte optimizer, `cond' is just overly sweet syntactic sugar. |
1022 ;;; So we rewrite (cond ...) in terms of `if' and `or', | |
1023 ;;; which are easier to optimize. | |
428 | 1024 (defun byte-optimize-cond (form) |
448 | 1025 (byte-optimize-cond-1 (cdr form))) |
1026 | |
1027 (defun byte-optimize-cond-1 (clauses) | |
1028 (cond | |
1029 ((null clauses) nil) | |
1030 ((consp (car clauses)) | |
1031 (nconc | |
1032 (case (length (car clauses)) | |
4686
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Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
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|
1033 (1 (if (cdr clauses) |
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4677
diff
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|
1034 `(or ,(nth 0 (car clauses))) |
cdabd56ce1b5
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|
1035 ;; XEmacs: don't pass any multiple values back: |
cdabd56ce1b5
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|
1036 `(or ,(nth 0 (car clauses)) nil))) |
448 | 1037 (2 `(if ,(nth 0 (car clauses)) ,(nth 1 (car clauses)))) |
1038 (t `(if ,(nth 0 (car clauses)) (progn ,@(cdr (car clauses)))))) | |
1039 (when (cdr clauses) (list (byte-optimize-cond-1 (cdr clauses)))))) | |
1040 (t (error "malformed cond clause %s" (car clauses))))) | |
428 | 1041 |
1297 | 1042 ;; BEGIN SYNC WITH 20.7. |
1043 | |
428 | 1044 (defun byte-optimize-if (form) |
1045 ;; (if <true-constant> <then> <else...>) ==> <then> | |
1046 ;; (if <false-constant> <then> <else...>) ==> (progn <else...>) | |
1047 ;; (if <test> nil <else...>) ==> (if (not <test>) (progn <else...>)) | |
1048 ;; (if <test> <then> nil) ==> (if <test> <then>) | |
1049 (let ((clause (nth 1 form))) | |
1050 (cond ((byte-compile-trueconstp clause) | |
1051 (nth 2 form)) | |
1052 ((null clause) | |
1053 (if (nthcdr 4 form) | |
1054 (cons 'progn (nthcdr 3 form)) | |
1055 (nth 3 form))) | |
1056 ((nth 2 form) | |
1057 (if (equal '(nil) (nthcdr 3 form)) | |
1058 (list 'if clause (nth 2 form)) | |
1059 form)) | |
1060 ((or (nth 3 form) (nthcdr 4 form)) | |
1061 (list 'if | |
1062 ;; Don't make a double negative; | |
1063 ;; instead, take away the one that is there. | |
1064 (if (and (consp clause) (memq (car clause) '(not null)) | |
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diff
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|
1065 (eql (length clause) 2)) ; (not xxxx) or (not (xxxx)) |
428 | 1066 (nth 1 clause) |
1067 (list 'not clause)) | |
1068 (if (nthcdr 4 form) | |
1069 (cons 'progn (nthcdr 3 form)) | |
1070 (nth 3 form)))) | |
1071 (t | |
1072 (list 'progn clause nil))))) | |
1073 | |
1074 (defun byte-optimize-while (form) | |
1075 (if (nth 1 form) | |
1076 form)) | |
1077 | |
1078 (put 'and 'byte-optimizer 'byte-optimize-and) | |
1079 (put 'or 'byte-optimizer 'byte-optimize-or) | |
5657
2a870a7b86bd
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1080 (put 'or 'byte-for-effect-optimizer |
2a870a7b86bd
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1081 #'(lambda (form) (byte-optimize-or form t))) |
428 | 1082 (put 'cond 'byte-optimizer 'byte-optimize-cond) |
1083 (put 'if 'byte-optimizer 'byte-optimize-if) | |
1084 (put 'while 'byte-optimizer 'byte-optimize-while) | |
1085 | |
446 | 1086 ;; The supply of bytecodes is small and constrained by backward compatibility. |
1087 ;; Several functions have byte-coded versions and hence are very efficient. | |
1088 ;; Related functions which can be expressed in terms of the byte-coded | |
1089 ;; ones should be transformed into bytecoded calls for efficiency. | |
1090 ;; This is especially the case for functions with a backward- and | |
1091 ;; forward- version, but with a bytecode only for the forward one. | |
1092 | |
1093 ;; Some programmers have hand-optimized calls like (backward-char) | |
1094 ;; into the call (forward-char -1). | |
1095 ;; But it's so much nicer for the byte-compiler to do this automatically! | |
1096 | |
1097 ;; (char-before) ==> (char-after (1- (point))) | |
1098 (put 'char-before 'byte-optimizer 'byte-optimize-char-before) | |
434 | 1099 (defun byte-optimize-char-before (form) |
446 | 1100 `(char-after |
1101 ,(cond | |
1102 ((null (nth 1 form)) | |
1103 '(1- (point))) | |
1104 ((equal '(point) (nth 1 form)) | |
1105 '(1- (point))) | |
1106 (t `(1- (or ,(nth 1 form) (point))))) | |
1107 ,@(cdr (cdr form)))) | |
1108 | |
1109 ;; (backward-char n) ==> (forward-char (- n)) | |
1110 (put 'backward-char 'byte-optimizer 'byte-optimize-backward-char) | |
1111 (defun byte-optimize-backward-char (form) | |
1112 `(forward-char | |
1113 ,(typecase (nth 1 form) | |
1114 (null -1) | |
1115 (integer (- (nth 1 form))) | |
1116 (t `(- (or ,(nth 1 form) 1)))) | |
1117 ,@(cdr (cdr form)))) | |
440 | 1118 |
446 | 1119 ;; (backward-word n) ==> (forward-word (- n)) |
1120 (put 'backward-word 'byte-optimizer 'byte-optimize-backward-word) | |
1121 (defun byte-optimize-backward-word (form) | |
1122 `(forward-word | |
1123 ,(typecase (nth 1 form) | |
1124 (null -1) | |
1125 (integer (- (nth 1 form))) | |
1126 (t `(- (or ,(nth 1 form) 1)))) | |
1127 ,@(cdr (cdr form)))) | |
1128 | |
1129 ;; The following would be a valid optimization of the above kind, but | |
1130 ;; the gain in performance is very small, since the saved funcall is | |
1131 ;; counterbalanced by the necessity of adding a bytecode for (point). | |
1132 ;; | |
1133 ;; Also, users are more likely to have modified the behavior of | |
1134 ;; delete-char via advice or some similar mechanism. This is much | |
1135 ;; less of a problem for the previous functions because it wouldn't | |
1136 ;; make sense to modify the behaviour of `backward-char' without also | |
1137 ;; modifying `forward-char', for example. | |
1138 | |
1139 ;; (delete-char n) ==> (delete-region (point) (+ (point) n)) | |
1140 ;; (put 'delete-char 'byte-optimizer 'byte-optimize-delete-char) | |
1141 ;; (defun byte-optimize-delete-char (form) | |
1142 ;; (case (length (cdr form)) | |
1143 ;; (0 `(delete-region (point) (1+ (point)))) | |
1144 ;; (1 `(delete-region (point) (+ (point) ,(nth 1 form)))) | |
1145 ;; (t form))) | |
434 | 1146 |
428 | 1147 ;; byte-compile-negation-optimizer lives in bytecomp.el |
1148 ;(put '/= 'byte-optimizer 'byte-compile-negation-optimizer) | |
1149 (put 'atom 'byte-optimizer 'byte-compile-negation-optimizer) | |
1150 (put 'nlistp 'byte-optimizer 'byte-compile-negation-optimizer) | |
1151 | |
1152 (defun byte-optimize-funcall (form) | |
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1153 ;; (funcall #'(lambda ...) ...) ==> ((lambda ...) ...) |
428 | 1154 ;; (funcall 'foo ...) ==> (foo ...) |
1155 (let ((fn (nth 1 form))) | |
1156 (if (memq (car-safe fn) '(quote function)) | |
1157 (cons (nth 1 fn) (cdr (cdr form))) | |
1158 form))) | |
1159 | |
1160 (defun byte-optimize-apply (form) | |
1161 ;; If the last arg is a literal constant, turn this into a funcall. | |
1162 ;; The funcall optimizer can then transform (funcall 'foo ...) -> (foo ...). | |
1163 (let ((fn (nth 1 form)) | |
1164 (last (nth (1- (length form)) form))) ; I think this really is fastest | |
5264
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1165 (if (and (eq last (third form)) |
0d43872986b6
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1166 (consp last) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1167 (eq 'mapcar (car last)) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1168 (equal fn ''nconc)) |
0d43872986b6
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1169 (progn |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1170 (byte-compile-warn |
0d43872986b6
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1171 "(apply 'nconc (mapcar ..)), use #'mapcan instead: %s" last) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1172 (cons 'mapcan (cdr last))) |
0d43872986b6
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1173 (or (if (or (null last) |
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Aidan Kehoe <kehoea@parhasard.net>
parents:
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|
1174 (eq (car-safe last) 'quote)) |
0d43872986b6
Change (apply 'nconc (mapcar ...)) to (mapcan ...); warn about first form.
Aidan Kehoe <kehoea@parhasard.net>
parents:
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1175 (if (listp (nth 1 last)) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1176 (let ((butlast (nreverse (cdr (reverse (cdr (cdr form))))))) |
0d43872986b6
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1177 (nconc (list 'funcall fn) butlast |
0d43872986b6
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1178 (mapcar #'(lambda (x) (list 'quote x)) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1179 (nth 1 last)))) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1180 (byte-compile-warn |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
parents:
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1181 "last arg to apply can't be a literal atom: %s" |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1182 (prin1-to-string last)) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1183 nil)) |
0d43872986b6
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Aidan Kehoe <kehoea@parhasard.net>
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1184 form)))) |
428 | 1185 |
1186 (put 'funcall 'byte-optimizer 'byte-optimize-funcall) | |
1187 (put 'apply 'byte-optimizer 'byte-optimize-apply) | |
1188 | |
1189 | |
1190 (put 'let 'byte-optimizer 'byte-optimize-letX) | |
1191 (put 'let* 'byte-optimizer 'byte-optimize-letX) | |
1192 (defun byte-optimize-letX (form) | |
1193 (cond ((null (nth 1 form)) | |
1194 ;; No bindings | |
1195 (cons 'progn (cdr (cdr form)))) | |
1196 ((or (nth 2 form) (nthcdr 3 form)) | |
5667
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#'byte-optimize-letX; group constant initialisations together in let forms
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parents:
5663
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|
1197 (if (and (eq 'let (car form)) (> (length (nth 1 form)) 2)) |
b4715fcbe001
#'byte-optimize-letX; group constant initialisations together in let forms
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1198 ;; Group constant initialisations together, so we can |
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|
1199 ;; just dup in the lap code. Can't group other |
b4715fcbe001
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5663
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|
1200 ;; initialisations together if they have side-effects, |
b4715fcbe001
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|
1201 ;; that would re-order them. |
b4715fcbe001
#'byte-optimize-letX; group constant initialisations together in let forms
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|
1202 (let ((sort (stable-sort |
b4715fcbe001
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parents:
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|
1203 (copy-list (nth 1 form)) |
b4715fcbe001
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Aidan Kehoe <kehoea@parhasard.net>
parents:
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|
1204 #'< :key #'(lambda (object) |
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#'byte-optimize-letX; group constant initialisations together in let forms
Aidan Kehoe <kehoea@parhasard.net>
parents:
5663
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|
1205 (cond ((atom object) |
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#'byte-optimize-letX; group constant initialisations together in let forms
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|
1206 most-positive-fixnum) |
b4715fcbe001
#'byte-optimize-letX; group constant initialisations together in let forms
Aidan Kehoe <kehoea@parhasard.net>
parents:
5663
diff
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|
1207 ((null (cadr object)) |
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|
1208 most-positive-fixnum) |
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|
1209 ((byte-compile-trueconstp |
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5663
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|
1210 (cadr object)) |
b4715fcbe001
#'byte-optimize-letX; group constant initialisations together in let forms
Aidan Kehoe <kehoea@parhasard.net>
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|
1211 (mod (sxhash (cadr object)) |
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|
1212 most-positive-fixnum)) |
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|
1213 (t 0)))))) |
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Aidan Kehoe <kehoea@parhasard.net>
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|
1214 (if (equal sort (nth 1 form)) |
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Aidan Kehoe <kehoea@parhasard.net>
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5663
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|
1215 form |
b4715fcbe001
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|
1216 `(let ,sort ,@(cddr form)))) |
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|
1217 form)) |
428 | 1218 ;; The body is nil |
1219 ((eq (car form) 'let) | |
1220 (append '(progn) (mapcar 'car-safe (mapcar 'cdr-safe (nth 1 form))) | |
1221 '(nil))) | |
1222 (t | |
1223 (let ((binds (reverse (nth 1 form)))) | |
1224 (list 'let* (reverse (cdr binds)) (nth 1 (car binds)) nil))))) | |
1225 | |
1226 | |
1227 (put 'nth 'byte-optimizer 'byte-optimize-nth) | |
1228 (defun byte-optimize-nth (form) | |
5366
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Aidan Kehoe <kehoea@parhasard.net>
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5311
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|
1229 (if (and (eql (safe-length form) 3) (memq (nth 1 form) '(0 1))) |
428 | 1230 (list 'car (if (zerop (nth 1 form)) |
1231 (nth 2 form) | |
1232 (list 'cdr (nth 2 form)))) | |
1233 (byte-optimize-predicate form))) | |
1234 | |
1235 (put 'nthcdr 'byte-optimizer 'byte-optimize-nthcdr) | |
1236 (defun byte-optimize-nthcdr (form) | |
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|
1237 (if (and (eql (safe-length form) 3) (not (memq (nth 1 form) '(0 1 2)))) |
428 | 1238 (byte-optimize-predicate form) |
1239 (let ((count (nth 1 form))) | |
1240 (setq form (nth 2 form)) | |
1241 (while (>= (setq count (1- count)) 0) | |
1242 (setq form (list 'cdr form))) | |
1243 form))) | |
444 | 1244 |
1245 (put 'concat 'byte-optimizer 'byte-optimize-concat) | |
1246 (defun byte-optimize-concat (form) | |
1247 (let ((args (cdr form)) | |
1248 (constant t)) | |
1249 (while (and args constant) | |
1250 (or (byte-compile-constp (car args)) | |
1251 (setq constant nil)) | |
1252 (setq args (cdr args))) | |
1253 (if constant | |
1254 (eval form) | |
1255 form))) | |
4160 | 1256 |
4228 | 1257 (defvar byte-optimize-ever-present-features |
1258 '(xemacs cl cl-extra cl-19 backquote)) | |
1259 | |
1260 (put 'featurep 'byte-optimizer 'byte-optimize-featurep) | |
1261 (defun byte-optimize-featurep (form) | |
4288 | 1262 (if (memq (car-safe |
1263 (cdr-safe | |
1264 (car-safe | |
1265 (cdr-safe | |
1266 form)))) | |
1267 byte-optimize-ever-present-features) | |
1268 t | |
1269 form)) | |
4228 | 1270 |
428 | 1271 |
440 | 1272 ;;; enumerating those functions which need not be called if the returned |
428 | 1273 ;;; value is not used. That is, something like |
1274 ;;; (progn (list (something-with-side-effects) (yow)) | |
1275 ;;; (foo)) | |
1276 ;;; may safely be turned into | |
1277 ;;; (progn (progn (something-with-side-effects) (yow)) | |
1278 ;;; (foo)) | |
1279 ;;; Further optimizations will turn (progn (list 1 2 3) 'foo) into 'foo. | |
1280 | |
1281 ;;; I wonder if I missed any :-\) | |
1282 (let ((side-effect-free-fns | |
1283 '(% * + - / /= 1+ 1- < <= = > >= abs acos append aref ash asin atan | |
1284 assoc assq | |
4885
6772ce4d982b
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|
1285 bigfloat-get-precision boundp buffer-file-name buffer-local-variables |
6772ce4d982b
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Aidan Kehoe <kehoea@parhasard.net>
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4686
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|
1286 buffer-modified-p buffer-substring |
428 | 1287 capitalize car-less-than-car car cdr ceiling concat |
1288 ;; coordinates-in-window-p not in XEmacs | |
1289 copy-marker cos count-lines | |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1290 default-boundp default-value denominator documentation downcase |
5285
99de5fd48e87
Tighten up Common Lisp compatibility, #'butlast, #'nbutlast, #'tailp, #'ldiff
Aidan Kehoe <kehoea@parhasard.net>
parents:
5264
diff
changeset
|
1291 elt endp exp expt fboundp featurep |
428 | 1292 file-directory-p file-exists-p file-locked-p file-name-absolute-p |
1293 file-newer-than-file-p file-readable-p file-symlink-p file-writable-p | |
1294 float floor format | |
1295 get get-buffer get-buffer-window getenv get-file-buffer | |
1296 ;; hash-table functions | |
1297 make-hash-table copy-hash-table | |
1298 gethash | |
1299 hash-table-count | |
1300 hash-table-rehash-size | |
1301 hash-table-rehash-threshold | |
1302 hash-table-size | |
1303 hash-table-test | |
1304 hash-table-type | |
1305 ;; | |
1306 int-to-string | |
1307 length log log10 logand logb logior lognot logxor lsh | |
1308 marker-buffer max member memq min mod | |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1309 next-window nth nthcdr number-to-string numerator |
440 | 1310 parse-colon-path plist-get previous-window |
5311
07d24b1f27a7
Mark #'remove, #'remq as free of side-effects.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5294
diff
changeset
|
1311 radians-to-degrees rassq rassoc remove remq regexp-quote reverse round |
428 | 1312 sin sqrt string< string= string-equal string-lessp string-to-char |
5294
bbff29a01820
Add compiler macros and compilation sanity-checks for functions with keywords.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5285
diff
changeset
|
1313 string-to-int string-to-number substring symbol-plist symbol-value |
bbff29a01820
Add compiler macros and compilation sanity-checks for functions with keywords.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5285
diff
changeset
|
1314 symbol-name symbol-function symbol |
428 | 1315 tan upcase user-variable-p vconcat |
1316 ;; XEmacs change: window-edges -> window-pixel-edges | |
1317 window-buffer window-dedicated-p window-pixel-edges window-height | |
1318 window-hscroll window-minibuffer-p window-width | |
1319 zerop | |
1320 ;; functions defined by cl | |
1321 oddp evenp plusp minusp | |
1322 abs expt signum last butlast ldiff | |
1323 pairlis gcd lcm | |
1324 isqrt floor* ceiling* truncate* round* mod* rem* subseq | |
440 | 1325 list-length getf |
428 | 1326 )) |
1327 (side-effect-and-error-free-fns | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1328 '(acons arrayp atom |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1329 bigfloatp bignump bobp bolp buffer-end buffer-list buffer-size |
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1330 buffer-string bufferp |
428 | 1331 car-safe case-table-p cdr-safe char-or-string-p char-table-p |
1332 characterp commandp cons | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1333 consolep console-live-p consp copy-tree |
428 | 1334 current-buffer |
1335 ;; XEmacs: extent functions, frame-live-p, various other stuff | |
1336 devicep device-live-p | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1337 eobp eolp eq eql equal equalp eventp extentp |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1338 extent-live-p fixnump floatingp floatp framep frame-live-p |
428 | 1339 get-largest-window get-lru-window |
1340 hash-table-p | |
1341 identity ignore integerp integer-or-marker-p interactive-p | |
1342 invocation-directory invocation-name | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1343 keymapp list list* listp |
428 | 1344 make-marker mark mark-marker markerp memory-limit minibuffer-window |
1345 ;; mouse-movement-p not in XEmacs | |
1346 natnump nlistp not null number-or-marker-p numberp | |
1347 one-window-p ;; overlayp not in XEmacs | |
1348 point point-marker point-min point-max processp | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1349 random-state-p rationalp ratiop range-table-p realp |
428 | 1350 selected-window sequencep stringp subrp symbolp syntax-table-p |
1351 user-full-name user-login-name user-original-login-name | |
1352 user-real-login-name user-real-uid user-uid | |
1353 vector vectorp | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1354 window-configuration-p window-live-p windowp))) |
428 | 1355 (dolist (fn side-effect-free-fns) |
1356 (put fn 'side-effect-free t)) | |
1357 (dolist (fn side-effect-and-error-free-fns) | |
1358 (put fn 'side-effect-free 'error-free))) | |
1359 | |
5502
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1360 (dolist (function |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1361 '(adjoin assoc* count find intersection member* mismatch position |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1362 rassoc* remove* remove-duplicates search set-difference |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1363 set-exclusive-or stable-intersection stable-sort stable-union |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1364 sublis subsetp subst substitute tree-equal union)) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1365 ;; These all throw errors, there's no point implementing an error-free |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1366 ;; version of the list. |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1367 (put function 'side-effect-free-if-keywords-are t)) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1368 |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1369 (defun byte-optimize-side-effect-free-p (form) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1370 (or (get (car-safe form) 'side-effect-free) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1371 (and (get (car-safe form) 'side-effect-free-if-keywords-are) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1372 (loop |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1373 for (key value) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1374 on (nthcdr (get (car form) 'byte-compile-keyword-start) form) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1375 by #'cddr |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1376 never (or (and (member* key |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1377 '(:test :test-not :key :if :if-not)) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1378 (or (not (byte-compile-constp value)) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1379 (not (and (consp value) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1380 (symbolp (cadr value)) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1381 (get (cadr value) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1382 'side-effect-free))))) |
5b08be74bb53
Be better about recognising side-effect-free forms, byte-optimize.el.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5473
diff
changeset
|
1383 (not (keywordp key))))))) |
428 | 1384 |
1385 (defun byte-compile-splice-in-already-compiled-code (form) | |
1386 ;; form is (byte-code "..." [...] n) | |
446 | 1387 (if (not (memq byte-optimize '(t byte))) |
428 | 1388 (byte-compile-normal-call form) |
1389 (byte-inline-lapcode | |
1390 (byte-decompile-bytecode-1 (nth 1 form) (nth 2 form) t)) | |
1391 (setq byte-compile-maxdepth (max (+ byte-compile-depth (nth 3 form)) | |
1392 byte-compile-maxdepth)) | |
1393 (setq byte-compile-depth (1+ byte-compile-depth)))) | |
1394 | |
1395 (put 'byte-code 'byte-compile 'byte-compile-splice-in-already-compiled-code) | |
1396 | |
1397 | |
1398 (defconst byte-constref-ops | |
1399 '(byte-constant byte-constant2 byte-varref byte-varset byte-varbind)) | |
1400 | |
1401 ;;; This function extracts the bitfields from variable-length opcodes. | |
1402 ;;; Originally defined in disass.el (which no longer uses it.) | |
1403 | |
1404 (defun disassemble-offset () | |
1405 "Don't call this!" | |
1406 ;; fetch and return the offset for the current opcode. | |
1407 ;; return NIL if this opcode has no offset | |
1408 ;; OP, PTR and BYTES are used and set dynamically | |
442 | 1409 (declare (special op ptr bytes)) |
428 | 1410 (cond ((< op byte-nth) |
1411 (let ((tem (logand op 7))) | |
1412 (setq op (logand op 248)) | |
1413 (cond ((eq tem 6) | |
1414 (setq ptr (1+ ptr)) ;offset in next byte | |
1415 ;; char-to-int to avoid downstream problems | |
1416 ;; caused by chars appearing where ints are | |
1417 ;; expected. In bytecode the bytes in the | |
1418 ;; opcode string are always interpreted as ints. | |
1419 (char-to-int (aref bytes ptr))) | |
1420 ((eq tem 7) | |
1421 (setq ptr (1+ ptr)) ;offset in next 2 bytes | |
1422 (+ (aref bytes ptr) | |
1423 (progn (setq ptr (1+ ptr)) | |
1424 (lsh (aref bytes ptr) 8)))) | |
1425 (t tem)))) ;offset was in opcode | |
1426 ((>= op byte-constant) | |
1427 (prog1 (- op byte-constant) ;offset in opcode | |
1428 (setq op byte-constant))) | |
1429 ((and (>= op byte-constant2) | |
1430 (<= op byte-goto-if-not-nil-else-pop)) | |
1431 (setq ptr (1+ ptr)) ;offset in next 2 bytes | |
1432 (+ (aref bytes ptr) | |
1433 (progn (setq ptr (1+ ptr)) | |
1434 (lsh (aref bytes ptr) 8)))) | |
1435 ;; XEmacs: this code was here before. FSF's first comparison | |
1436 ;; is (>= op byte-listN). It appears that the rel-goto stuff | |
1437 ;; does not exist in FSF 19.30. It doesn't exist in 19.28 | |
1438 ;; either, so I'm going to assume that this is an improvement | |
1439 ;; on our part and leave it in. --ben | |
1440 ((and (>= op byte-rel-goto) | |
1441 (<= op byte-insertN)) | |
1442 (setq ptr (1+ ptr)) ;offset in next byte | |
1443 ;; Use char-to-int to avoid downstream problems caused by | |
1444 ;; chars appearing where ints are expected. In bytecode | |
1445 ;; the bytes in the opcode string are always interpreted as | |
1446 ;; ints. | |
1447 (char-to-int (aref bytes ptr))))) | |
1448 | |
1449 | |
1450 ;;; This de-compiler is used for inline expansion of compiled functions, | |
1451 ;;; and by the disassembler. | |
1452 ;;; | |
1453 ;;; This list contains numbers, which are pc values, | |
1454 ;;; before each instruction. | |
1455 (defun byte-decompile-bytecode (bytes constvec) | |
1456 "Turns BYTECODE into lapcode, referring to CONSTVEC." | |
1457 (let ((byte-compile-constants nil) | |
1458 (byte-compile-variables nil) | |
1459 (byte-compile-tag-number 0)) | |
1460 (byte-decompile-bytecode-1 bytes constvec))) | |
1461 | |
1462 ;; As byte-decompile-bytecode, but updates | |
1463 ;; byte-compile-{constants, variables, tag-number}. | |
1464 ;; If MAKE-SPLICEABLE is true, then `return' opcodes are replaced | |
1465 ;; with `goto's destined for the end of the code. | |
1466 ;; That is for use by the compiler. | |
1467 ;; If MAKE-SPLICEABLE is nil, we are being called for the disassembler. | |
1468 ;; In that case, we put a pc value into the list | |
1469 ;; before each insn (or its label). | |
1470 (defun byte-decompile-bytecode-1 (bytes constvec &optional make-spliceable) | |
1471 (let ((length (length bytes)) | |
1472 (ptr 0) optr tags op offset | |
1473 ;; tag unused | |
1474 lap tmp | |
1475 endtag | |
1476 ;; (retcount 0) unused | |
1477 ) | |
1478 (while (not (= ptr length)) | |
1479 (or make-spliceable | |
1480 (setq lap (cons ptr lap))) | |
1481 (setq op (aref bytes ptr) | |
1482 optr ptr | |
1483 offset (disassemble-offset)) ; this does dynamic-scope magic | |
1484 (setq op (aref byte-code-vector op)) | |
1485 ;; XEmacs: the next line in FSF 19.30 reads | |
1486 ;; (cond ((memq op byte-goto-ops) | |
1487 ;; see the comment above about byte-rel-goto in XEmacs. | |
1488 (cond ((or (memq op byte-goto-ops) | |
1489 (cond ((memq op byte-rel-goto-ops) | |
1490 (setq op (aref byte-code-vector | |
1491 (- (symbol-value op) | |
1492 (- byte-rel-goto byte-goto)))) | |
1493 (setq offset (+ ptr (- offset 127))) | |
1494 t))) | |
1495 ;; it's a pc | |
1496 (setq offset | |
1497 (cdr (or (assq offset tags) | |
1498 (car (setq tags | |
1499 (cons (cons offset | |
1500 (byte-compile-make-tag)) | |
1501 tags))))))) | |
1502 ((cond ((eq op 'byte-constant2) (setq op 'byte-constant) t) | |
1503 ((memq op byte-constref-ops))) | |
1297 | 1504 (setq tmp (if (>= offset (length constvec)) |
1505 (list 'out-of-range offset) | |
1506 (aref constvec offset)) | |
428 | 1507 offset (if (eq op 'byte-constant) |
1508 (byte-compile-get-constant tmp) | |
1509 (or (assq tmp byte-compile-variables) | |
1510 (car (setq byte-compile-variables | |
1511 (cons (list tmp) | |
1512 byte-compile-variables))))))) | |
1513 ((and make-spliceable | |
1514 (eq op 'byte-return)) | |
1515 (if (= ptr (1- length)) | |
1516 (setq op nil) | |
1517 (setq offset (or endtag (setq endtag (byte-compile-make-tag))) | |
1518 op 'byte-goto)))) | |
1519 ;; lap = ( [ (pc . (op . arg)) ]* ) | |
1520 (setq lap (cons (cons optr (cons op (or offset 0))) | |
1521 lap)) | |
1522 (setq ptr (1+ ptr))) | |
1523 ;; take off the dummy nil op that we replaced a trailing "return" with. | |
1524 (let ((rest lap)) | |
1525 (while rest | |
1526 (cond ((numberp (car rest))) | |
1527 ((setq tmp (assq (car (car rest)) tags)) | |
1528 ;; this addr is jumped to | |
1529 (setcdr rest (cons (cons nil (cdr tmp)) | |
1530 (cdr rest))) | |
5652
cc6f0266bc36
Avoid #'delq in core Lisp, for the sake of style, a very slightly smaller binary
Aidan Kehoe <kehoea@parhasard.net>
parents:
5651
diff
changeset
|
1531 (setq tags (delete* tmp tags)) |
428 | 1532 (setq rest (cdr rest)))) |
1533 (setq rest (cdr rest)))) | |
1534 (if tags (error "optimizer error: missed tags %s" tags)) | |
1535 (if (null (car (cdr (car lap)))) | |
1536 (setq lap (cdr lap))) | |
1537 (if endtag | |
1538 (setq lap (cons (cons nil endtag) lap))) | |
1539 ;; remove addrs, lap = ( [ (op . arg) | (TAG tagno) ]* ) | |
1540 (mapcar #'(lambda (elt) (if (numberp elt) elt (cdr elt))) | |
1541 (nreverse lap)))) | |
1542 | |
1543 | |
1544 ;;; peephole optimizer | |
1545 | |
1546 (defconst byte-tagref-ops (cons 'TAG byte-goto-ops)) | |
1547 | |
1548 (defconst byte-conditional-ops | |
1549 '(byte-goto-if-nil byte-goto-if-not-nil byte-goto-if-nil-else-pop | |
1550 byte-goto-if-not-nil-else-pop)) | |
1551 | |
1552 (defconst byte-after-unbind-ops | |
1553 '(byte-constant byte-dup | |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1554 byte-symbolp byte-consp byte-stringp byte-listp byte-numberp byte-fixnump |
444 | 1555 byte-eq byte-not |
428 | 1556 byte-cons byte-list1 byte-list2 ; byte-list3 byte-list4 |
1557 byte-interactive-p) | |
1558 ;; How about other side-effect-free-ops? Is it safe to move an | |
1559 ;; error invocation (such as from nth) out of an unwind-protect? | |
444 | 1560 ;; No, it is not, because the unwind-protect forms can alter |
1561 ;; the inside of the object to which nth would apply. | |
1562 ;; For the same reason, byte-equal was deleted from this list. | |
428 | 1563 "Byte-codes that can be moved past an unbind.") |
1564 | |
1565 (defconst byte-compile-side-effect-and-error-free-ops | |
1566 '(byte-constant byte-dup byte-symbolp byte-consp byte-stringp byte-listp | |
4885
6772ce4d982b
Fix hash tables, #'member*, #'assoc*, #'eql compiler macros if bignums
Aidan Kehoe <kehoea@parhasard.net>
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4686
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changeset
|
1567 byte-fixnump byte-numberp byte-eq byte-equal byte-not byte-car-safe |
428 | 1568 byte-cdr-safe byte-cons byte-list1 byte-list2 byte-point byte-point-max |
1569 byte-point-min byte-following-char byte-preceding-char | |
1570 byte-current-column byte-eolp byte-eobp byte-bolp byte-bobp | |
1571 byte-current-buffer byte-interactive-p)) | |
1572 | |
1573 (defconst byte-compile-side-effect-free-ops | |
440 | 1574 (nconc |
428 | 1575 '(byte-varref byte-nth byte-memq byte-car byte-cdr byte-length byte-aref |
1576 byte-symbol-value byte-get byte-concat2 byte-concat3 byte-sub1 byte-add1 | |
1577 byte-eqlsign byte-gtr byte-lss byte-leq byte-geq byte-diff byte-negate | |
1578 byte-plus byte-max byte-min byte-mult byte-char-after byte-char-syntax | |
1579 byte-buffer-substring byte-string= byte-string< byte-nthcdr byte-elt | |
1580 byte-member byte-assq byte-quo byte-rem) | |
1581 byte-compile-side-effect-and-error-free-ops)) | |
1582 | |
1583 ;;; This piece of shit is because of the way DEFVAR_BOOL() variables work. | |
1584 ;;; Consider the code | |
1585 ;;; | |
1586 ;;; (defun foo (flag) | |
1587 ;;; (let ((old-pop-ups pop-up-windows) | |
1588 ;;; (pop-up-windows flag)) | |
1589 ;;; (cond ((not (eq pop-up-windows old-pop-ups)) | |
1590 ;;; (setq old-pop-ups pop-up-windows) | |
1591 ;;; ...)))) | |
1592 ;;; | |
1593 ;;; Uncompiled, old-pop-ups will always be set to nil or t, even if FLAG is | |
1594 ;;; something else. But if we optimize | |
1595 ;;; | |
1596 ;;; varref flag | |
1597 ;;; varbind pop-up-windows | |
1598 ;;; varref pop-up-windows | |
1599 ;;; not | |
1600 ;;; to | |
1601 ;;; varref flag | |
1602 ;;; dup | |
1603 ;;; varbind pop-up-windows | |
1604 ;;; not | |
1605 ;;; | |
440 | 1606 ;;; we break the program, because it will appear that pop-up-windows and |
428 | 1607 ;;; old-pop-ups are not EQ when really they are. So we have to know what |
1608 ;;; the BOOL variables are, and not perform this optimization on them. | |
1609 ;;; | |
1610 | |
1611 ;;; This used to hold a large list of boolean variables, which had to | |
1612 ;;; be updated every time a new DEFVAR_BOOL is added, making it very | |
1613 ;;; hard to maintain. Such a list is not necessary under XEmacs, | |
1614 ;;; where we can use `built-in-variable-type' to query for boolean | |
1615 ;;; variables. | |
1616 | |
1617 ;(defconst byte-boolean-vars | |
1297 | 1618 ; ...) |
428 | 1619 |
1620 (defun byte-optimize-lapcode (lap &optional for-effect) | |
1621 "Simple peephole optimizer. LAP is both modified and returned." | |
442 | 1622 (let (lap0 |
1623 lap1 | |
1624 lap2 | |
1625 variable-frequency | |
428 | 1626 (keep-going 'first-time) |
1627 (add-depth 0) | |
1628 rest tmp tmp2 tmp3 | |
1629 (side-effect-free (if byte-compile-delete-errors | |
1630 byte-compile-side-effect-free-ops | |
1631 byte-compile-side-effect-and-error-free-ops))) | |
1632 (while keep-going | |
1633 (or (eq keep-going 'first-time) | |
1634 (byte-compile-log-lap " ---- next pass")) | |
1635 (setq rest lap | |
1636 keep-going nil) | |
1637 (while rest | |
1638 (setq lap0 (car rest) | |
1639 lap1 (nth 1 rest) | |
1640 lap2 (nth 2 rest)) | |
1641 | |
1642 ;; You may notice that sequences like "dup varset discard" are | |
1643 ;; optimized but sequences like "dup varset TAG1: discard" are not. | |
1644 ;; You may be tempted to change this; resist that temptation. | |
1645 (cond ;; | |
1646 ;; <side-effect-free> pop --> <deleted> | |
1647 ;; ...including: | |
1648 ;; const-X pop --> <deleted> | |
1649 ;; varref-X pop --> <deleted> | |
1650 ;; dup pop --> <deleted> | |
1651 ;; | |
1652 ((and (eq 'byte-discard (car lap1)) | |
1653 (memq (car lap0) side-effect-free)) | |
1654 (setq keep-going t) | |
1655 (setq tmp (aref byte-stack+-info (symbol-value (car lap0)))) | |
1656 (setq rest (cdr rest)) | |
1657 (cond ((= tmp 1) | |
1658 (byte-compile-log-lap | |
1659 " %s discard\t-->\t<deleted>" lap0) | |
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1660 (setq lap (delete* lap0 (delete* lap1 lap)))) |
428 | 1661 ((= tmp 0) |
1662 (byte-compile-log-lap | |
1663 " %s discard\t-->\t<deleted> discard" lap0) | |
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1664 (setq lap (delete* lap0 lap))) |
428 | 1665 ((= tmp -1) |
1666 (byte-compile-log-lap | |
1667 " %s discard\t-->\tdiscard discard" lap0) | |
1668 (setcar lap0 'byte-discard) | |
1669 (setcdr lap0 0)) | |
1670 ((error "Optimizer error: too much on the stack")))) | |
1671 ;; | |
1672 ;; goto*-X X: --> X: | |
1673 ;; | |
1674 ((and (memq (car lap0) byte-goto-ops) | |
1675 (eq (cdr lap0) lap1)) | |
1676 (cond ((eq (car lap0) 'byte-goto) | |
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1677 (setq lap (delete* lap0 lap)) |
428 | 1678 (setq tmp "<deleted>")) |
1679 ((memq (car lap0) byte-goto-always-pop-ops) | |
1680 (setcar lap0 (setq tmp 'byte-discard)) | |
1681 (setcdr lap0 0)) | |
1682 ((error "Depth conflict at tag %d" (nth 2 lap0)))) | |
1683 (and (memq byte-optimize-log '(t byte)) | |
1684 (byte-compile-log " (goto %s) %s:\t-->\t%s %s:" | |
1685 (nth 1 lap1) (nth 1 lap1) | |
1686 tmp (nth 1 lap1))) | |
1687 (setq keep-going t)) | |
1688 ;; | |
1689 ;; varset-X varref-X --> dup varset-X | |
1690 ;; varbind-X varref-X --> dup varbind-X | |
1691 ;; const/dup varset-X varref-X --> const/dup varset-X const/dup | |
1692 ;; const/dup varbind-X varref-X --> const/dup varbind-X const/dup | |
1693 ;; The latter two can enable other optimizations. | |
1694 ;; | |
1695 ((and (eq 'byte-varref (car lap2)) | |
1696 (eq (cdr lap1) (cdr lap2)) | |
1697 (memq (car lap1) '(byte-varset byte-varbind))) | |
1698 (if (and (setq tmp (eq (built-in-variable-type (car (cdr lap2))) | |
1699 'boolean)) | |
1700 (not (eq (car lap0) 'byte-constant))) | |
1701 nil | |
1702 (setq keep-going t) | |
1703 (if (memq (car lap0) '(byte-constant byte-dup)) | |
1704 (progn | |
1705 (setq tmp (if (or (not tmp) | |
1706 (memq (car (cdr lap0)) '(nil t))) | |
1707 (cdr lap0) | |
1708 (byte-compile-get-constant t))) | |
1709 (byte-compile-log-lap " %s %s %s\t-->\t%s %s %s" | |
1710 lap0 lap1 lap2 lap0 lap1 | |
1711 (cons (car lap0) tmp)) | |
1712 (setcar lap2 (car lap0)) | |
1713 (setcdr lap2 tmp)) | |
1714 (byte-compile-log-lap " %s %s\t-->\tdup %s" lap1 lap2 lap1) | |
1715 (setcar lap2 (car lap1)) | |
1716 (setcar lap1 'byte-dup) | |
1717 (setcdr lap1 0) | |
1718 ;; The stack depth gets locally increased, so we will | |
1719 ;; increase maxdepth in case depth = maxdepth here. | |
1720 ;; This can cause the third argument to byte-code to | |
1721 ;; be larger than necessary. | |
1722 (setq add-depth 1)))) | |
1723 ;; | |
1724 ;; dup varset-X discard --> varset-X | |
1725 ;; dup varbind-X discard --> varbind-X | |
1726 ;; (the varbind variant can emerge from other optimizations) | |
1727 ;; | |
1728 ((and (eq 'byte-dup (car lap0)) | |
1729 (eq 'byte-discard (car lap2)) | |
1730 (memq (car lap1) '(byte-varset byte-varbind))) | |
1731 (byte-compile-log-lap " dup %s discard\t-->\t%s" lap1 lap1) | |
1732 (setq keep-going t | |
1733 rest (cdr rest)) | |
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1734 (setq lap (delete* lap0 (delete* lap2 lap)))) |
428 | 1735 ;; |
1736 ;; not goto-X-if-nil --> goto-X-if-non-nil | |
1737 ;; not goto-X-if-non-nil --> goto-X-if-nil | |
1738 ;; | |
1739 ;; it is wrong to do the same thing for the -else-pop variants. | |
1740 ;; | |
1741 ((and (eq 'byte-not (car lap0)) | |
1742 (or (eq 'byte-goto-if-nil (car lap1)) | |
1743 (eq 'byte-goto-if-not-nil (car lap1)))) | |
1744 (byte-compile-log-lap " not %s\t-->\t%s" | |
1745 lap1 | |
1746 (cons | |
1747 (if (eq (car lap1) 'byte-goto-if-nil) | |
1748 'byte-goto-if-not-nil | |
1749 'byte-goto-if-nil) | |
1750 (cdr lap1))) | |
1751 (setcar lap1 (if (eq (car lap1) 'byte-goto-if-nil) | |
1752 'byte-goto-if-not-nil | |
1753 'byte-goto-if-nil)) | |
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1754 (setq lap (delete* lap0 lap)) |
428 | 1755 (setq keep-going t)) |
1756 ;; | |
1757 ;; goto-X-if-nil goto-Y X: --> goto-Y-if-non-nil X: | |
1758 ;; goto-X-if-non-nil goto-Y X: --> goto-Y-if-nil X: | |
1759 ;; | |
1760 ;; it is wrong to do the same thing for the -else-pop variants. | |
440 | 1761 ;; |
428 | 1762 ((and (or (eq 'byte-goto-if-nil (car lap0)) |
1763 (eq 'byte-goto-if-not-nil (car lap0))) ; gotoX | |
1764 (eq 'byte-goto (car lap1)) ; gotoY | |
1765 (eq (cdr lap0) lap2)) ; TAG X | |
1766 (let ((inverse (if (eq 'byte-goto-if-nil (car lap0)) | |
1767 'byte-goto-if-not-nil 'byte-goto-if-nil))) | |
1768 (byte-compile-log-lap " %s %s %s:\t-->\t%s %s:" | |
1769 lap0 lap1 lap2 | |
1770 (cons inverse (cdr lap1)) lap2) | |
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1771 (setq lap (delete* lap0 lap)) |
428 | 1772 (setcar lap1 inverse) |
1773 (setq keep-going t))) | |
1774 ;; | |
1775 ;; const goto-if-* --> whatever | |
1776 ;; | |
1777 ((and (eq 'byte-constant (car lap0)) | |
1778 (memq (car lap1) byte-conditional-ops)) | |
1779 (cond ((if (or (eq (car lap1) 'byte-goto-if-nil) | |
1780 (eq (car lap1) 'byte-goto-if-nil-else-pop)) | |
1781 (car (cdr lap0)) | |
1782 (not (car (cdr lap0)))) | |
1783 (byte-compile-log-lap " %s %s\t-->\t<deleted>" | |
1784 lap0 lap1) | |
1785 (setq rest (cdr rest) | |
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1786 lap (delete* lap0 (delete* lap1 lap)))) |
428 | 1787 (t |
1788 (if (memq (car lap1) byte-goto-always-pop-ops) | |
1789 (progn | |
1790 (byte-compile-log-lap " %s %s\t-->\t%s" | |
1791 lap0 lap1 (cons 'byte-goto (cdr lap1))) | |
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1792 (setq lap (delete* lap0 lap))) |
428 | 1793 (byte-compile-log-lap " %s %s\t-->\t%s" lap0 lap1 |
1794 (cons 'byte-goto (cdr lap1)))) | |
1795 (setcar lap1 'byte-goto))) | |
1796 (setq keep-going t)) | |
1797 ;; | |
1798 ;; varref-X varref-X --> varref-X dup | |
1799 ;; varref-X [dup ...] varref-X --> varref-X [dup ...] dup | |
1800 ;; We don't optimize the const-X variations on this here, | |
1801 ;; because that would inhibit some goto optimizations; we | |
1802 ;; optimize the const-X case after all other optimizations. | |
1803 ;; | |
1804 ((and (eq 'byte-varref (car lap0)) | |
1805 (progn | |
1806 (setq tmp (cdr rest)) | |
1807 (while (eq (car (car tmp)) 'byte-dup) | |
1808 (setq tmp (cdr tmp))) | |
1809 t) | |
1810 (eq (cdr lap0) (cdr (car tmp))) | |
1811 (eq 'byte-varref (car (car tmp)))) | |
1812 (if (memq byte-optimize-log '(t byte)) | |
1813 (let ((str "")) | |
1814 (setq tmp2 (cdr rest)) | |
1815 (while (not (eq tmp tmp2)) | |
1816 (setq tmp2 (cdr tmp2) | |
1817 str (concat str " dup"))) | |
1818 (byte-compile-log-lap " %s%s %s\t-->\t%s%s dup" | |
1819 lap0 str lap0 lap0 str))) | |
1820 (setq keep-going t) | |
1821 (setcar (car tmp) 'byte-dup) | |
1822 (setcdr (car tmp) 0) | |
1823 (setq rest tmp)) | |
1824 ;; | |
1825 ;; TAG1: TAG2: --> TAG1: <deleted> | |
1826 ;; (and other references to TAG2 are replaced with TAG1) | |
1827 ;; | |
1828 ((and (eq (car lap0) 'TAG) | |
1829 (eq (car lap1) 'TAG)) | |
1830 (and (memq byte-optimize-log '(t byte)) | |
1831 (byte-compile-log " adjacent tags %d and %d merged" | |
1832 (nth 1 lap1) (nth 1 lap0))) | |
1833 (setq tmp3 lap) | |
1834 (while (setq tmp2 (rassq lap0 tmp3)) | |
1835 (setcdr tmp2 lap1) | |
1836 (setq tmp3 (cdr (memq tmp2 tmp3)))) | |
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1837 (setq lap (delete* lap0 lap) |
428 | 1838 keep-going t)) |
1839 ;; | |
1840 ;; unused-TAG: --> <deleted> | |
1841 ;; | |
1842 ((and (eq 'TAG (car lap0)) | |
1843 (not (rassq lap0 lap))) | |
1844 (and (memq byte-optimize-log '(t byte)) | |
1845 (byte-compile-log " unused tag %d removed" (nth 1 lap0))) | |
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1846 (setq lap (delete* lap0 lap) |
428 | 1847 keep-going t)) |
1848 ;; | |
1849 ;; goto ... --> goto <delete until TAG or end> | |
1850 ;; return ... --> return <delete until TAG or end> | |
1851 ;; | |
1852 ((and (memq (car lap0) '(byte-goto byte-return)) | |
1853 (not (memq (car lap1) '(TAG nil)))) | |
1854 (setq tmp rest) | |
1855 (let ((i 0) | |
1856 (opt-p (memq byte-optimize-log '(t lap))) | |
1857 str deleted) | |
1858 (while (and (setq tmp (cdr tmp)) | |
1859 (not (eq 'TAG (car (car tmp))))) | |
1860 (if opt-p (setq deleted (cons (car tmp) deleted) | |
1861 str (concat str " %s") | |
1862 i (1+ i)))) | |
1863 (if opt-p | |
440 | 1864 (let ((tagstr |
428 | 1865 (if (eq 'TAG (car (car tmp))) |
1866 (format "%d:" (car (cdr (car tmp)))) | |
1867 (or (car tmp) "")))) | |
1868 (if (< i 6) | |
1869 (apply 'byte-compile-log-lap-1 | |
1870 (concat " %s" str | |
1871 " %s\t-->\t%s <deleted> %s") | |
1872 lap0 | |
1873 (nconc (nreverse deleted) | |
1874 (list tagstr lap0 tagstr))) | |
1875 (byte-compile-log-lap | |
1876 " %s <%d unreachable op%s> %s\t-->\t%s <deleted> %s" | |
1877 lap0 i (if (= i 1) "" "s") | |
1878 tagstr lap0 tagstr)))) | |
1879 (rplacd rest tmp)) | |
1880 (setq keep-going t)) | |
1881 ;; | |
1882 ;; <safe-op> unbind --> unbind <safe-op> | |
1883 ;; (this may enable other optimizations.) | |
1884 ;; | |
1885 ((and (eq 'byte-unbind (car lap1)) | |
1886 (memq (car lap0) byte-after-unbind-ops)) | |
1887 (byte-compile-log-lap " %s %s\t-->\t%s %s" lap0 lap1 lap1 lap0) | |
1888 (setcar rest lap1) | |
1889 (setcar (cdr rest) lap0) | |
1890 (setq keep-going t)) | |
1891 ;; | |
1892 ;; varbind-X unbind-N --> discard unbind-(N-1) | |
1893 ;; save-excursion unbind-N --> unbind-(N-1) | |
1894 ;; save-restriction unbind-N --> unbind-(N-1) | |
1895 ;; | |
1896 ((and (eq 'byte-unbind (car lap1)) | |
1897 (memq (car lap0) '(byte-varbind byte-save-excursion | |
1898 byte-save-restriction)) | |
1899 (< 0 (cdr lap1))) | |
1900 (if (zerop (setcdr lap1 (1- (cdr lap1)))) | |
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1901 (delete* lap1 rest)) |
428 | 1902 (if (eq (car lap0) 'byte-varbind) |
1903 (setcar rest (cons 'byte-discard 0)) | |
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1904 (setq lap (delete* lap0 lap))) |
428 | 1905 (byte-compile-log-lap " %s %s\t-->\t%s %s" |
1906 lap0 (cons (car lap1) (1+ (cdr lap1))) | |
1907 (if (eq (car lap0) 'byte-varbind) | |
1908 (car rest) | |
1909 (car (cdr rest))) | |
1910 (if (and (/= 0 (cdr lap1)) | |
1911 (eq (car lap0) 'byte-varbind)) | |
1912 (car (cdr rest)) | |
1913 "")) | |
1914 (setq keep-going t)) | |
1915 ;; | |
1916 ;; goto*-X ... X: goto-Y --> goto*-Y | |
1917 ;; goto-X ... X: return --> return | |
1918 ;; | |
1919 ((and (memq (car lap0) byte-goto-ops) | |
1920 (memq (car (setq tmp (nth 1 (memq (cdr lap0) lap)))) | |
1921 '(byte-goto byte-return))) | |
1922 (cond ((and (not (eq tmp lap0)) | |
1923 (or (eq (car lap0) 'byte-goto) | |
1924 (eq (car tmp) 'byte-goto))) | |
1925 (byte-compile-log-lap " %s [%s]\t-->\t%s" | |
1926 (car lap0) tmp tmp) | |
1927 (if (eq (car tmp) 'byte-return) | |
1928 (setcar lap0 'byte-return)) | |
1929 (setcdr lap0 (cdr tmp)) | |
1930 (setq keep-going t)))) | |
1931 ;; | |
1932 ;; goto-*-else-pop X ... X: goto-if-* --> whatever | |
1933 ;; goto-*-else-pop X ... X: discard --> whatever | |
1934 ;; | |
1935 ((and (memq (car lap0) '(byte-goto-if-nil-else-pop | |
1936 byte-goto-if-not-nil-else-pop)) | |
1937 (memq (car (car (setq tmp (cdr (memq (cdr lap0) lap))))) | |
1938 (eval-when-compile | |
1939 (cons 'byte-discard byte-conditional-ops))) | |
1940 (not (eq lap0 (car tmp)))) | |
1941 (setq tmp2 (car tmp)) | |
1942 (setq tmp3 (assq (car lap0) '((byte-goto-if-nil-else-pop | |
1943 byte-goto-if-nil) | |
1944 (byte-goto-if-not-nil-else-pop | |
1945 byte-goto-if-not-nil)))) | |
1946 (if (memq (car tmp2) tmp3) | |
1947 (progn (setcar lap0 (car tmp2)) | |
1948 (setcdr lap0 (cdr tmp2)) | |
1949 (byte-compile-log-lap " %s-else-pop [%s]\t-->\t%s" | |
1950 (car lap0) tmp2 lap0)) | |
1951 ;; Get rid of the -else-pop's and jump one step further. | |
1952 (or (eq 'TAG (car (nth 1 tmp))) | |
1953 (setcdr tmp (cons (byte-compile-make-tag) | |
1954 (cdr tmp)))) | |
1955 (byte-compile-log-lap " %s [%s]\t-->\t%s <skip>" | |
1956 (car lap0) tmp2 (nth 1 tmp3)) | |
1957 (setcar lap0 (nth 1 tmp3)) | |
1958 (setcdr lap0 (nth 1 tmp))) | |
1959 (setq keep-going t)) | |
1960 ;; | |
1961 ;; const goto-X ... X: goto-if-* --> whatever | |
1962 ;; const goto-X ... X: discard --> whatever | |
1963 ;; | |
1964 ((and (eq (car lap0) 'byte-constant) | |
1965 (eq (car lap1) 'byte-goto) | |
1966 (memq (car (car (setq tmp (cdr (memq (cdr lap1) lap))))) | |
1967 (eval-when-compile | |
1968 (cons 'byte-discard byte-conditional-ops))) | |
1969 (not (eq lap1 (car tmp)))) | |
1970 (setq tmp2 (car tmp)) | |
1971 (cond ((memq (car tmp2) | |
1972 (if (null (car (cdr lap0))) | |
1973 '(byte-goto-if-nil byte-goto-if-nil-else-pop) | |
1974 '(byte-goto-if-not-nil | |
1975 byte-goto-if-not-nil-else-pop))) | |
1976 (byte-compile-log-lap " %s goto [%s]\t-->\t%s %s" | |
1977 lap0 tmp2 lap0 tmp2) | |
1978 (setcar lap1 (car tmp2)) | |
1979 (setcdr lap1 (cdr tmp2)) | |
1980 ;; Let next step fix the (const,goto-if*) sequence. | |
1981 (setq rest (cons nil rest))) | |
1982 (t | |
1983 ;; Jump one step further | |
1984 (byte-compile-log-lap | |
1985 " %s goto [%s]\t-->\t<deleted> goto <skip>" | |
1986 lap0 tmp2) | |
1987 (or (eq 'TAG (car (nth 1 tmp))) | |
1988 (setcdr tmp (cons (byte-compile-make-tag) | |
1989 (cdr tmp)))) | |
1990 (setcdr lap1 (car (cdr tmp))) | |
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1991 (setq lap (delete* lap0 lap)))) |
428 | 1992 (setq keep-going t)) |
1993 ;; | |
1994 ;; X: varref-Y ... varset-Y goto-X --> | |
1995 ;; X: varref-Y Z: ... dup varset-Y goto-Z | |
1996 ;; (varset-X goto-BACK, BACK: varref-X --> copy the varref down.) | |
1997 ;; (This is so usual for while loops that it is worth handling). | |
1998 ;; | |
1999 ((and (eq (car lap1) 'byte-varset) | |
2000 (eq (car lap2) 'byte-goto) | |
2001 (not (memq (cdr lap2) rest)) ;Backwards jump | |
2002 (eq (car (car (setq tmp (cdr (memq (cdr lap2) lap))))) | |
2003 'byte-varref) | |
2004 (eq (cdr (car tmp)) (cdr lap1)) | |
2005 (not (eq (built-in-variable-type (car (cdr lap1))) | |
2006 'boolean))) | |
2007 ;;(byte-compile-log-lap " Pulled %s to end of loop" (car tmp)) | |
2008 (let ((newtag (byte-compile-make-tag))) | |
2009 (byte-compile-log-lap | |
2010 " %s: %s ... %s %s\t-->\t%s: %s %s: ... %s %s %s" | |
2011 (nth 1 (cdr lap2)) (car tmp) | |
2012 lap1 lap2 | |
2013 (nth 1 (cdr lap2)) (car tmp) | |
2014 (nth 1 newtag) 'byte-dup lap1 | |
2015 (cons 'byte-goto newtag) | |
2016 ) | |
2017 (setcdr rest (cons (cons 'byte-dup 0) (cdr rest))) | |
2018 (setcdr tmp (cons (setcdr lap2 newtag) (cdr tmp)))) | |
2019 (setq add-depth 1) | |
2020 (setq keep-going t)) | |
2021 ;; | |
2022 ;; goto-X Y: ... X: goto-if*-Y --> goto-if-not-*-X+1 Y: | |
2023 ;; (This can pull the loop test to the end of the loop) | |
2024 ;; | |
2025 ((and (eq (car lap0) 'byte-goto) | |
2026 (eq (car lap1) 'TAG) | |
2027 (eq lap1 | |
2028 (cdr (car (setq tmp (cdr (memq (cdr lap0) lap)))))) | |
2029 (memq (car (car tmp)) | |
2030 '(byte-goto byte-goto-if-nil byte-goto-if-not-nil | |
2031 byte-goto-if-nil-else-pop))) | |
2032 ;; (byte-compile-log-lap " %s %s, %s %s --> moved conditional" | |
2033 ;; lap0 lap1 (cdr lap0) (car tmp)) | |
2034 (let ((newtag (byte-compile-make-tag))) | |
2035 (byte-compile-log-lap | |
2036 "%s %s: ... %s: %s\t-->\t%s ... %s:" | |
2037 lap0 (nth 1 lap1) (nth 1 (cdr lap0)) (car tmp) | |
2038 (cons (cdr (assq (car (car tmp)) | |
2039 '((byte-goto-if-nil . byte-goto-if-not-nil) | |
2040 (byte-goto-if-not-nil . byte-goto-if-nil) | |
2041 (byte-goto-if-nil-else-pop . | |
2042 byte-goto-if-not-nil-else-pop) | |
2043 (byte-goto-if-not-nil-else-pop . | |
2044 byte-goto-if-nil-else-pop)))) | |
2045 newtag) | |
440 | 2046 |
428 | 2047 (nth 1 newtag) |
2048 ) | |
2049 (setcdr tmp (cons (setcdr lap0 newtag) (cdr tmp))) | |
2050 (if (eq (car (car tmp)) 'byte-goto-if-nil-else-pop) | |
2051 ;; We can handle this case but not the -if-not-nil case, | |
2052 ;; because we won't know which non-nil constant to push. | |
2053 (setcdr rest (cons (cons 'byte-constant | |
2054 (byte-compile-get-constant nil)) | |
2055 (cdr rest)))) | |
2056 (setcar lap0 (nth 1 (memq (car (car tmp)) | |
2057 '(byte-goto-if-nil-else-pop | |
2058 byte-goto-if-not-nil | |
2059 byte-goto-if-nil | |
2060 byte-goto-if-not-nil | |
2061 byte-goto byte-goto)))) | |
2062 ) | |
2063 (setq keep-going t)) | |
2064 ) | |
2065 (setq rest (cdr rest))) | |
2066 ) | |
2067 ;; Cleanup stage: | |
2068 ;; Rebuild byte-compile-constants / byte-compile-variables. | |
2069 ;; Simple optimizations that would inhibit other optimizations if they | |
2070 ;; were done in the optimizing loop, and optimizations which there is no | |
442 | 2071 ;; need to do more than once. |
428 | 2072 (setq byte-compile-constants nil |
442 | 2073 byte-compile-variables nil |
2074 variable-frequency (make-hash-table :test 'eq)) | |
428 | 2075 (setq rest lap) |
2076 (while rest | |
2077 (setq lap0 (car rest) | |
2078 lap1 (nth 1 rest)) | |
1297 | 2079 (if (memq (car lap0) byte-constref-ops) |
2080 (if (not (eq (car lap0) 'byte-constant)) | |
2081 (progn | |
2082 (incf (gethash (cdr lap0) variable-frequency 0)) | |
2083 (or (memq (cdr lap0) byte-compile-variables) | |
2084 (setq byte-compile-variables | |
2085 (cons (cdr lap0) byte-compile-variables)))) | |
2086 (or (memq (cdr lap0) byte-compile-constants) | |
2087 (setq byte-compile-constants (cons (cdr lap0) | |
2088 byte-compile-constants))))) | |
428 | 2089 (cond (;; |
442 | 2090 ;; const-C varset-X const-C --> const-C dup varset-X |
428 | 2091 ;; const-C varbind-X const-C --> const-C dup varbind-X |
2092 ;; | |
2093 (and (eq (car lap0) 'byte-constant) | |
2094 (eq (car (nth 2 rest)) 'byte-constant) | |
442 | 2095 (eq (cdr lap0) (cdr (nth 2 rest))) |
428 | 2096 (memq (car lap1) '(byte-varbind byte-varset))) |
2097 (byte-compile-log-lap " %s %s %s\t-->\t%s dup %s" | |
2098 lap0 lap1 lap0 lap0 lap1) | |
2099 (setcar (cdr (cdr rest)) (cons (car lap1) (cdr lap1))) | |
2100 (setcar (cdr rest) (cons 'byte-dup 0)) | |
2101 (setq add-depth 1)) | |
2102 ;; | |
2103 ;; const-X [dup/const-X ...] --> const-X [dup ...] dup | |
2104 ;; varref-X [dup/varref-X ...] --> varref-X [dup ...] dup | |
2105 ;; | |
2106 ((memq (car lap0) '(byte-constant byte-varref)) | |
2107 (setq tmp rest | |
2108 tmp2 nil) | |
2109 (while (progn | |
2110 (while (eq 'byte-dup (car (car (setq tmp (cdr tmp)))))) | |
2111 (and (eq (cdr lap0) (cdr (car tmp))) | |
2112 (eq (car lap0) (car (car tmp))))) | |
2113 (setcar tmp (cons 'byte-dup 0)) | |
2114 (setq tmp2 t)) | |
2115 (if tmp2 | |
2116 (byte-compile-log-lap | |
2117 " %s [dup/%s]...\t-->\t%s dup..." lap0 lap0 lap0))) | |
2118 ;; | |
2119 ;; unbind-N unbind-M --> unbind-(N+M) | |
2120 ;; | |
2121 ((and (eq 'byte-unbind (car lap0)) | |
2122 (eq 'byte-unbind (car lap1))) | |
2123 (byte-compile-log-lap " %s %s\t-->\t%s" lap0 lap1 | |
2124 (cons 'byte-unbind | |
2125 (+ (cdr lap0) (cdr lap1)))) | |
2126 (setq keep-going t) | |
5652
cc6f0266bc36
Avoid #'delq in core Lisp, for the sake of style, a very slightly smaller binary
Aidan Kehoe <kehoea@parhasard.net>
parents:
5651
diff
changeset
|
2127 (setq lap (delete* lap0 lap)) |
428 | 2128 (setcdr lap1 (+ (cdr lap1) (cdr lap0)))) |
2129 ) | |
2130 (setq rest (cdr rest))) | |
442 | 2131 ;; Since the first 6 entries of the compiled-function constants |
2132 ;; vector are most efficient for varref/set/bind ops, we sort by | |
2133 ;; reference count. This generates maximally space efficient and | |
2134 ;; pretty time-efficient byte-code. See `byte-compile-constants-vector'. | |
2135 (setq byte-compile-variables | |
2136 (sort byte-compile-variables | |
2137 #'(lambda (v1 v2) | |
2138 (< (gethash v1 variable-frequency) | |
2139 (gethash v2 variable-frequency))))) | |
2140 ;; Another hack - put the most used variable in position 6, for | |
2141 ;; better locality of reference with adjoining constants. | |
2142 (let ((tail (last byte-compile-variables 6))) | |
2143 (setq byte-compile-variables | |
2144 (append (nbutlast byte-compile-variables 6) | |
2145 (nreverse tail)))) | |
428 | 2146 (setq byte-compile-maxdepth (+ byte-compile-maxdepth add-depth))) |
2147 lap) | |
2148 | |
2149 (provide 'byte-optimize) | |
2150 | |
2151 | |
2152 ;; To avoid "lisp nesting exceeds max-lisp-eval-depth" when this file compiles | |
2153 ;; itself, compile some of its most used recursive functions (at load time). | |
2154 ;; | |
2155 (eval-when-compile | |
2156 (or (compiled-function-p (symbol-function 'byte-optimize-form)) | |
2157 (assq 'byte-code (symbol-function 'byte-optimize-form)) | |
2158 (let ((byte-optimize nil) | |
2159 (byte-compile-warnings nil)) | |
2160 (mapcar | |
2161 #'(lambda (x) | |
2162 (or noninteractive (message "compiling %s..." x)) | |
2163 (byte-compile x) | |
2164 (or noninteractive (message "compiling %s...done" x))) | |
2165 '(byte-optimize-form | |
2166 byte-optimize-body | |
2167 byte-optimize-predicate | |
2168 byte-optimize-binary-predicate | |
2169 ;; Inserted some more than necessary, to speed it up. | |
2170 byte-optimize-form-code-walker | |
2171 byte-optimize-lapcode)))) | |
2172 nil) | |
2173 | |
1297 | 2174 ;; END SYNC WITH 20.7. |
2175 | |
428 | 2176 ;;; byte-optimize.el ends here |