Mercurial > hg > xemacs-beta
annotate src/event-xlike-inc.c @ 5673:900a0a8796c3 r21-5-32
XEmacs 21.5.32 "habanero" is released.
author | Stephen J. Turnbull <stephen@xemacs.org> |
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date | Fri, 03 Aug 2012 02:43:45 +0900 |
parents | 56144c8593a8 |
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rev | line source |
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various fixes related to gtk, redisplay-xlike-inc.c
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1 /* Common code between X and GTK -- event-related. |
1268 | 2 Copyright (C) 1991-5, 1997 Free Software Foundation, Inc. |
3 Copyright (C) 1995 Sun Microsystems, Inc. | |
4 Copyright (C) 1996, 2001, 2002, 2003 Ben Wing. | |
5 | |
6 This file is part of XEmacs. | |
7 | |
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8 XEmacs is free software: you can redistribute it and/or modify it |
1268 | 9 under the terms of the GNU General Public License as published by the |
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10 Free Software Foundation, either version 3 of the License, or (at your |
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11 option) any later version. |
1268 | 12 |
13 XEmacs is distributed in the hope that it will be useful, but WITHOUT | |
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
16 for more details. | |
17 | |
18 You should have received a copy of the GNU General Public License | |
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19 along with XEmacs. If not, see <http://www.gnu.org/licenses/>. */ |
1268 | 20 |
21 /* Synched up with: Not in FSF. */ | |
22 | |
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23 /* Before including this file, you need to define either THIS_IS_X or |
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various fixes related to gtk, redisplay-xlike-inc.c
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24 THIS_IS_GTK. */ |
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25 |
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26 /* See comment at top of redisplay-xlike-inc.c for an explanation of |
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27 how this file works. */ |
1268 | 28 |
29 static int | |
30 #ifdef THIS_IS_GTK | |
31 emacs_gtk_event_pending_p (int how_many) | |
32 #else | |
33 emacs_Xt_event_pending_p (int how_many) | |
34 #endif | |
35 { | |
36 Lisp_Object event; | |
37 int tick_count_val; | |
38 | |
39 /* If `how_many' is 0, then this function returns whether there are any | |
40 X, timeout, or fd events pending (that is, whether | |
41 emacs_Xt_next_event() would return immediately without blocking). | |
42 | |
43 If `how_many' is > 0, then this function returns whether there are | |
44 that many *user generated* events available (keyboard, mouse click, | |
45 etc.). This also implies that emacs_Xt_next_event() would not block. | |
46 */ | |
47 | |
48 /* This function used to simply check whether there were any X events (or | |
49 if user_p was 1, it iterated over all the pending X events using | |
50 XCheckIfEvent(), looking for keystrokes and button events). That | |
51 worked in the old cheesoid event loop, which didn't go through | |
52 XtAppDispatchEvent(), but it doesn't work any more -- X events may not | |
53 result in anything. For example, a button press in a blank part of | |
54 the menubar appears as an X event but will not result in any Emacs | |
55 events (a button press that activates the menubar results in an Emacs | |
56 event through the stop_next_event mechanism). | |
57 | |
58 The only accurate way of determining whether these X events translate | |
59 into Emacs events is to go ahead and dispatch them until there's | |
60 something on the dispatch queue. */ | |
61 | |
62 if (!how_many) | |
63 { | |
64 /* We're being asked for *ALL* events, not just user events. */ | |
65 | |
66 /* (1) Any pending events in the dispatch queue? */ | |
67 if (!NILP (dispatch_event_queue)) | |
68 return 1; | |
69 | |
70 /* (2) Any TTY or process input available? | |
71 | |
72 Note that formerly we just checked the value of XtAppPending() to | |
73 determine if there was file-desc input. This doesn't work any | |
74 more with the signal_event_pipe; XtAppPending() will says "yes" in | |
75 this case but there isn't really any input. So instead we keep | |
76 track of the file descriptors, and call select() ourselves. | |
77 Another way of fixing this problem is for the signal_event_pipe to | |
78 generate actual input in the form of an identity eval event or | |
79 something. (#### maybe this actually happens?) */ | |
80 | |
81 if (poll_fds_for_input (non_fake_input_wait_mask)) | |
82 return 1; | |
83 | |
84 #ifndef THIS_IS_GTK | |
85 /* (3) Any timeout input available? */ | |
86 if (XtAppPending (Xt_app_con) & XtIMTimer) | |
87 return 1; | |
88 #else | |
89 /* #### Is there any way to do this in Gtk? I don't think there | |
90 is a 'peek' for events */ | |
91 #endif | |
92 } | |
93 else | |
94 { | |
95 /* HOW_MANY > 0 */ | |
96 EVENT_CHAIN_LOOP (event, dispatch_event_queue) | |
97 { | |
98 if (command_event_p (event)) | |
99 { | |
100 how_many--; | |
101 if (how_many <= 0) | |
102 return 1; | |
103 } | |
104 } | |
105 } | |
106 | |
107 /* XtAppPending() can be super-slow, esp. over a network connection. | |
108 Quantify results have indicated that in some cases the call to | |
109 detect_input_pending() completely dominates the running time of | |
110 redisplay(). Fortunately, in a SIGIO world we can more quickly | |
111 determine whether there are any X events: if an event has happened | |
112 since the last time we checked, then a SIGIO will have happened. On a | |
113 machine with broken SIGIO, we'll still be in an OK state -- | |
114 quit_check_signal_tick_count will get ticked at least every 1/4 | |
115 second, so we'll be no more than that much behind reality. (In general | |
116 it's OK if we erroneously report no input pending when input is | |
117 actually pending() -- preemption is just a bit less efficient, that's | |
118 all. It's bad bad bad if you err the other way -- you've promised | |
119 that `next-event' won't block but it actually will, and some action | |
120 might get delayed until the next time you hit a key.) | |
121 */ | |
122 | |
123 if (!in_modal_loop) | |
124 { | |
125 /* quit_check_signal_tick_count is volatile so try to avoid race | |
126 conditions by using a temporary variable */ | |
127 tick_count_val = quit_check_signal_tick_count; | |
128 if (last_quit_check_signal_tick_count != tick_count_val | |
129 #if !defined (THIS_IS_GTK) && (!defined (SIGIO) || defined (CYGWIN)) | |
130 || (XtIMXEvent & XtAppPending (Xt_app_con)) | |
131 #endif | |
132 ) | |
133 { | |
134 last_quit_check_signal_tick_count = tick_count_val; | |
135 | |
136 /* We need to drain the entire queue now -- if we only drain part of | |
137 it, we may later on end up with events actually pending but | |
138 detect_input_pending() returning false because there wasn't | |
139 another SIGIO. */ | |
140 event_stream_drain_queue (); | |
141 | |
142 if (!how_many) | |
143 return !NILP (dispatch_event_queue); | |
144 | |
145 EVENT_CHAIN_LOOP (event, dispatch_event_queue) | |
146 { | |
147 if (command_event_p (event)) | |
148 { | |
149 how_many--; | |
150 if (how_many <= 0) | |
151 return 1; | |
152 } | |
153 } | |
154 | |
155 return 0; | |
156 } | |
157 } | |
158 | |
159 return 0; | |
160 } | |
2828 | 161 |
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162 #if defined (THIS_IS_X) || !defined (__GDK_KEYS_H__) |
2828 | 163 |
164 /* Use an appropriate map to Unicode within x_keysym_to_character. Arguments | |
165 are evaluated multiple times. | |
166 | |
167 Breaks if an X11 keysym maps to zero in Unicode. */ | |
168 | |
169 #define USE_UNICODE_MAP(keysym, map) \ | |
170 if (keysym >= FIRST_KNOWN_##map \ | |
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171 && (keysym < (FIRST_KNOWN_##map + countof (map))) \ |
2828 | 172 && map[keysym - FIRST_KNOWN_##map ]) do \ |
173 { \ | |
174 keysym -= FIRST_KNOWN_##map ; \ | |
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175 return Funicode_to_char (make_fixnum (map[keysym]), Qnil); \ |
2828 | 176 } while (0) |
177 | |
178 /* Maps to Unicode for X11 KeySyms, where we don't have a direct internal | |
179 mapping based on a Mule character set, or whatever. Taken from Markus | |
180 Kuhn's X11.keysyms--if you're ever comparing with that file, note the | |
181 sequences of KeySyms often leave out entries, so you'll have to fill them | |
182 in. Doesn't include support for Hangul, which it should, if the X11 | |
183 Hangul keysyms have ever been used anywhere. | |
184 | |
185 I'm not #ifdef'ing this based on wheter MULE is defined, because it's a | |
186 matter of 324 bytes in a stripped executable, and I want the | |
187 testing. :-P */ | |
188 | |
189 static UINT_16_BIT const TECHNICAL[] = | |
190 { | |
191 0x23B7, /* #x08A1 LEFT RADICAL Technical */ | |
192 | |
193 #define FIRST_KNOWN_TECHNICAL 0x8A1 | |
194 | |
195 0x0, /* #x08A2 TOP LEFT RADICAL Technical */ | |
196 0x0, /* #x08A3 HORIZONTAL CONNECTOR Technical */ | |
197 0x2320, /* #x08A4 TOP INTEGRAL Technical */ | |
198 0x2321, /* #x08A5 BOTTOM INTEGRAL Technical */ | |
199 0x0, /* #x08A6 VERTICAL CONNECTOR Technical */ | |
200 0x23A1, /* #x08A7 TOP LEFT SQUARE BRACKET Technical */ | |
201 0x23A3, /* #x08A8 BOTTOM LEFT SQUARE BRACKET Technical */ | |
202 0x23A4, /* #x08A9 TOP RIGHT SQUARE BRACKET Technical */ | |
203 0x23A6, /* #x08AA BOTTOM RIGHT SQUARE BRACKET Technical */ | |
204 0x239B, /* #x08AB TOP LEFT PARENTHESIS Technical */ | |
205 0x239D, /* #x08AC BOTTOM LEFT PARENTHESIS Technical */ | |
206 0x239E, /* #x08AD TOP RIGHT PARENTHESIS Technical */ | |
207 0x23A0, /* #x08AE BOTTOM RIGHT PARENTHESIS Technical */ | |
208 0x23A8, /* #x08AF LEFT MIDDLE CURLY BRACE Technical */ | |
209 0x23AC, /* #x08B0 RIGHT MIDDLE CURLY BRACE Technical */ | |
210 0x0, /* #x08B1 TOP LEFT SUMMATION Technical */ | |
211 0x0, /* #x08B2 BOTTOM LEFT SUMMATION Technical */ | |
212 0x0, /* #x08B3 TOP VERTICAL SUMMATION CONNECTOR Technical */ | |
213 0x0, /* #x08B4 BOTTOM VERTICAL SUMMATION CONNECTOR Technical */ | |
214 0x0, /* #x08B5 TOP RIGHT SUMMATION Technical */ | |
215 0x0, /* #x08B6 BOTTOM RIGHT SUMMATION Technical */ | |
216 0x0, /* #x08B7 RIGHT MIDDLE SUMMATION Technical */ | |
217 0x0, /* #x08B8 */ | |
218 0x0, /* #x08B9 */ | |
219 0x0, /* #x08BA */ | |
220 0x0, /* #x08BB */ | |
221 0x2264, /* #x08BC LESS THAN OR EQUAL SIGN Technical */ | |
222 0x2260, /* #x08BD NOT EQUAL SIGN Technical */ | |
223 0x2265, /* #x08BE GREATER THAN OR EQUAL SIGN Technical */ | |
224 0x222B, /* #x08BF INTEGRAL Technical */ | |
225 0x2234, /* #x08C0 THEREFORE Technical */ | |
226 0x221D, /* #x08C1 VARIATION, PROPORTIONAL TO Technical */ | |
227 0x221E, /* #x08C2 INFINITY Technical */ | |
228 0x0, /* #x08C3 */ | |
229 0x0, /* #x08C4 */ | |
230 0x2207, /* #x08C5 NABLA, DEL Technical */ | |
231 0x0, /* #x08C6 */ | |
232 0x0, /* #x08C7 */ | |
233 0x223C, /* #x08C8 IS APPROXIMATE TO Technical */ | |
234 0x2243, /* #x08C9 SIMILAR OR EQUAL TO Technical */ | |
235 0x0, /* #x08CA */ | |
236 0x0, /* #x08CB */ | |
237 0x0, /* #x08CC */ | |
238 0x21D4, /* #x08CD IF AND ONLY IF Technical */ | |
239 0x21D2, /* #x08CE IMPLIES Technical */ | |
240 0x2261, /* #x08CF IDENTICAL TO Technical */ | |
241 0x0, /* #x08D0 */ | |
242 0x0, /* #x08D1 */ | |
243 0x0, /* #x08D2 */ | |
244 0x0, /* #x08D3 */ | |
245 0x0, /* #x08D4 */ | |
246 0x0, /* #x08D5 */ | |
247 0x221A, /* #x08D6 RADICAL Technical */ | |
248 0x0, /* #x08D7 */ | |
249 0x0, /* #x08D8 */ | |
250 0x0, /* #x08D9 */ | |
251 0x2282, /* #x08DA IS INCLUDED IN Technical */ | |
252 0x2283, /* #x08DB INCLUDES Technical */ | |
253 0x2229, /* #x08DC INTERSECTION Technical */ | |
254 0x222A, /* #x08DD UNION Technical */ | |
255 0x2227, /* #x08DE LOGICAL AND Technical */ | |
256 0x2228, /* #x08DF LOGICAL OR Technical */ | |
257 0x0, /* #x08E0 */ | |
258 0x0, /* #x08E1 */ | |
259 0x0, /* #x08E2 */ | |
260 0x0, /* #x08E3 */ | |
261 0x0, /* #x08E4 */ | |
262 0x0, /* #x08E5 */ | |
263 0x0, /* #x08E6 */ | |
264 0x0, /* #x08E7 */ | |
265 0x0, /* #x08E8 */ | |
266 0x0, /* #x08E9 */ | |
267 0x0, /* #x08Ea */ | |
268 0x0, /* #x08Eb */ | |
269 0x0, /* #x08Ec */ | |
270 0x0, /* #x08Ed */ | |
271 0x0, /* #x08Ee */ | |
272 0x2202, /* #x08EF PARTIAL DERIVATIVE Technical */ | |
273 0x0, /* #x08F0 */ | |
274 0x0, /* #x08F1 */ | |
275 0x0, /* #x08F2 */ | |
276 0x0, /* #x08F3 */ | |
277 0x0, /* #x08F4 */ | |
278 0x0, /* #x08F5 */ | |
279 0x0192, /* #x08F6 FUNCTION Technical */ | |
280 0x0, /* #x08F7 */ | |
281 0x0, /* #x08F8 */ | |
282 0x0, /* #x08F9 */ | |
283 0x0, /* #x08FA */ | |
284 0x2190, /* #x08FB LEFT ARROW Technical */ | |
285 0x2191, /* #x08FC UPWARD ARROW Technical */ | |
286 0x2192, /* #x08FD RIGHT ARROW Technical */ | |
287 0x2193, /* #x08FE DOWNWARD ARROW Technical */ | |
288 }; | |
289 | |
290 static UINT_16_BIT const SPECIAL[] = | |
291 { | |
292 0x25C6, /* #x09E0 SOLID DIAMOND Special */ | |
293 | |
294 #define FIRST_KNOWN_SPECIAL 0x9E0 | |
295 | |
296 0x2592, /* #x09E1 CHECKERBOARD Special */ | |
297 0x2409, /* #x09E2 ``HT'' Special */ | |
298 0x240C, /* #x09E3 ``FF'' Special */ | |
299 0x240D, /* #x09E4 ``CR'' Special */ | |
300 0x240A, /* #x09E5 ``LF'' Special */ | |
301 0x0, /* #x09E6 */ | |
302 0x0, /* #x09E7 */ | |
303 0x2424, /* #x09E8 ``NL'' Special */ | |
304 0x240B, /* #x09E9 ``VT'' Special */ | |
305 0x2518, /* #x09EA LOWER-RIGHT CORNER Special */ | |
306 0x2510, /* #x09EB UPPER-RIGHT CORNER Special */ | |
307 0x250C, /* #x09EC UPPER-LEFT CORNER Special */ | |
308 0x2514, /* #x09ED LOWER-LEFT CORNER Special */ | |
309 0x253C, /* #x09EE CROSSING-LINES Special */ | |
310 0x23BA, /* #x09EF HORIZONTAL LINE, SCAN 1 Special */ | |
311 0x23BB, /* #x09F0 HORIZONTAL LINE, SCAN 3 Special */ | |
312 0x2500, /* #x09F1 HORIZONTAL LINE, SCAN 5 Special */ | |
313 0x23BC, /* #x09F2 HORIZONTAL LINE, SCAN 7 Special */ | |
314 0x23BD, /* #x09F3 HORIZONTAL LINE, SCAN 9 Special */ | |
315 0x251C, /* #x09F4 LEFT ``T'' Special */ | |
316 0x2524, /* #x09F5 RIGHT ``T'' Special */ | |
317 0x2534, /* #x09F6 BOTTOM ``T'' Special */ | |
318 0x252C, /* #x09F7 TOP ``T'' Special */ | |
319 0x2502 /* #x09F8 VERTICAL BAR Special */ | |
320 }; | |
321 | |
322 static UINT_16_BIT const PUBLISHING[] = | |
323 { | |
324 0x2003, /* #x0AA1 EM SPACE Publish */ | |
325 | |
326 #define FIRST_KNOWN_PUBLISHING 0xAA1 | |
327 | |
328 0x2002, /* #x0AA2 EN SPACE Publish */ | |
329 0x2004, /* #x0AA3 3/EM SPACE Publish */ | |
330 0x2005, /* #x0AA4 4/EM SPACE Publish */ | |
331 0x2007, /* #x0AA5 DIGIT SPACE Publish */ | |
332 0x2008, /* #x0AA6 PUNCTUATION SPACE Publish */ | |
333 0x2009, /* #x0AA7 THIN SPACE Publish */ | |
334 0x200A, /* #x0AA8 HAIR SPACE Publish */ | |
335 0x2014, /* #x0AA9 EM DASH Publish */ | |
336 0x2013, /* #x0AAA EN DASH Publish */ | |
337 0x0, /* #x0AAB */ | |
338 0x0, /* #x0AAC SIGNIFICANT BLANK SYMBOL Publish */ | |
339 0x0, /* #x0AAD */ | |
340 0x2026, /* #x0AAE ELLIPSIS Publish */ | |
341 0x2025, /* #x0AAF DOUBLE BASELINE DOT Publish */ | |
342 0x2153, /* #x0AB0 VULGAR FRACTION ONE THIRD Publish */ | |
343 0x2154, /* #x0AB1 VULGAR FRACTION TWO THIRDS Publish */ | |
344 0x2155, /* #x0AB2 VULGAR FRACTION ONE FIFTH Publish */ | |
345 0x2156, /* #x0AB3 VULGAR FRACTION TWO FIFTHS Publish */ | |
346 0x2157, /* #x0AB4 VULGAR FRACTION THREE FIFTHS Publish */ | |
347 0x2158, /* #x0AB5 VULGAR FRACTION FOUR FIFTHS Publish */ | |
348 0x2159, /* #x0AB6 VULGAR FRACTION ONE SIXTH Publish */ | |
349 0x215A, /* #x0AB7 VULGAR FRACTION FIVE SIXTHS Publish */ | |
350 0x2105, /* #x0AB8 CARE OF Publish */ | |
351 0x0, /* #x0AB9 */ | |
352 0x0, /* #x0ABA */ | |
353 0x2012, /* #x0ABB FIGURE DASH Publish */ | |
3458 | 354 0x3008, /* #x0ABC LEFT ANGLE BRACKET Publish */ |
355 0x002E, /* #x0ABD DECIMAL POINT Publish */ | |
356 0x3009, /* #x0ABE RIGHT ANGLE BRACKET Publish */ | |
2828 | 357 0x0, /* #x0ABF MARKER Publish */ |
358 0x0, /* #x0AC0 */ | |
359 0x0, /* #x0AC1 */ | |
360 0x0, /* #x0AC2 */ | |
361 0x215B, /* #x0AC3 VULGAR FRACTION ONE EIGHTH Publish */ | |
362 0x215C, /* #x0AC4 VULGAR FRACTION THREE EIGHTHS Publish */ | |
363 0x215D, /* #x0AC5 VULGAR FRACTION FIVE EIGHTHS Publish */ | |
364 0x215E, /* #x0AC6 VULGAR FRACTION SEVEN EIGHTHS Publish */ | |
365 0x0, /* #x0AC7 */ | |
366 0x0, /* #x0AC8 */ | |
367 0x2122, /* #x0AC9 TRADEMARK SIGN Publish */ | |
368 0x0, /* #x0ACA SIGNATURE MARK Publish */ | |
369 0x0, /* #x0ACB TRADEMARK SIGN IN CIRCLE Publish */ | |
370 0x0, /* #x0ACC LEFT OPEN TRIANGLE Publish */ | |
371 0x0, /* #x0ACD RIGHT OPEN TRIANGLE Publish */ | |
372 0x0, /* #x0ACE EM OPEN CIRCLE Publish */ | |
373 0x0, /* #x0ACF EM OPEN RECTANGLE Publish */ | |
374 0x2018, /* #x0AD0 LEFT SINGLE QUOTATION MARK Publish */ | |
375 0x2019, /* #x0AD1 RIGHT SINGLE QUOTATION MARK Publish */ | |
376 0x201C, /* #x0AD2 LEFT DOUBLE QUOTATION MARK Publish */ | |
377 0x201D, /* #x0AD3 RIGHT DOUBLE QUOTATION MARK Publish */ | |
378 0x211E, /* #x0AD4 PRESCRIPTION, TAKE, RECIPE Publish */ | |
379 0x0, /* #x0AD5 */ | |
380 0x2032, /* #x0AD6 MINUTES Publish */ | |
381 0x2033, /* #x0AD7 SECONDS Publish */ | |
382 0x0, /* #x0AD8 */ | |
383 0x271D, /* #x0AD9 LATIN CROSS Publish */ | |
384 0x0, /* #x0ADA HEXAGRAM Publish */ | |
385 0x0, /* #x0ADB FILLED RECTANGLE BULLET Publish */ | |
386 0x0, /* #x0ADC FILLED LEFT TRIANGLE BULLET Publish */ | |
387 0x0, /* #x0ADD FILLED RIGHT TRIANGLE BULLET Publish */ | |
388 0x0, /* #x0ADE EM FILLED CIRCLE Publish */ | |
389 0x0, /* #x0ADF EM FILLED RECTANGLE Publish */ | |
390 0x0, /* #x0AE0 EN OPEN CIRCLE BULLET Publish */ | |
391 0x0, /* #x0AE1 EN OPEN SQUARE BULLET Publish */ | |
392 0x0, /* #x0AE2 OPEN RECTANGULAR BULLET Publish */ | |
393 0x0, /* #x0AE3 OPEN TRIANGULAR BULLET UP Publish */ | |
394 0x0, /* #x0AE4 OPEN TRIANGULAR BULLET DOWN Publish */ | |
395 0x0, /* #x0AE5 OPEN STAR Publish */ | |
396 0x0, /* #x0AE6 EN FILLED CIRCLE BULLET Publish */ | |
397 0x0, /* #x0AE7 EN FILLED SQUARE BULLET Publish */ | |
398 0x0, /* #x0AE8 FILLED TRIANGULAR BULLET UP Publish */ | |
399 0x0, /* #x0AE9 FILLED TRIANGULAR BULLET DOWN Publish */ | |
400 0x0, /* #x0AEA LEFT POINTER Publish */ | |
401 0x0, /* #x0AEB RIGHT POINTER Publish */ | |
402 0x2663, /* #x0AEC CLUB Publish */ | |
403 0x2666, /* #x0AED DIAMOND Publish */ | |
404 0x2665, /* #x0AEE HEART Publish */ | |
405 0x0, /* #x0AEF */ | |
406 0x2720, /* #x0AF0 MALTESE CROSS Publish */ | |
407 0x2020, /* #x0AF1 DAGGER Publish */ | |
408 0x2021, /* #x0AF2 DOUBLE DAGGER Publish */ | |
409 0x2713, /* #x0AF3 CHECK MARK, TICK Publish */ | |
410 0x2717, /* #x0AF4 BALLOT CROSS Publish */ | |
411 0x266F, /* #x0AF5 MUSICAL SHARP Publish */ | |
412 0x266D, /* #x0AF6 MUSICAL FLAT Publish */ | |
413 0x2642, /* #x0AF7 MALE SYMBOL Publish */ | |
414 0x2640, /* #x0AF8 FEMALE SYMBOL Publish */ | |
415 0x260E, /* #x0AF9 TELEPHONE SYMBOL Publish */ | |
416 0x2315, /* #x0AFA TELEPHONE RECORDER SYMBOL Publish */ | |
417 0x2117, /* #x0AFB PHONOGRAPH COPYRIGHT SIGN Publish */ | |
418 0x2038, /* #x0AFC CARET Publish */ | |
419 0x201A, /* #x0AFD SINGLE LOW QUOTATION MARK Publish */ | |
420 0x201E, /* #x0AFE DOUBLE LOW QUOTATION MARK Publish */ | |
421 }; | |
422 | |
423 static UINT_16_BIT const APL[] = | |
424 { | |
425 0x22A5, /* #x0BC2 DOWN TACK APL */ | |
426 #define FIRST_KNOWN_APL 0xBC2 | |
427 0x0, /* #x0BC3 UP SHOE (CAP) APL */ | |
428 0x230A, /* #x0BC4 DOWN STILE APL */ | |
429 0x0, /* #x0BC5 */ | |
430 0x0, /* #x0BC6 UNDERBAR APL */ | |
431 0x0, /* #x0BC7 */ | |
432 0x0, /* #x0BC8 */ | |
433 0x0, /* #x0BC9 */ | |
434 0x2218, /* #x0BCA JOT APL */ | |
435 0x0, /* #x0BCB */ | |
436 0x2395, /* #x0BCC QUAD APL */ | |
437 0x0, /* #x0BCD */ | |
438 0x22A4, /* #x0BCE UP TACK APL */ | |
439 0x25CB, /* #x0BCF CIRCLE APL */ | |
440 0x0, /* #x0BD0 */ | |
441 0x0, /* #x0BD1 */ | |
442 0x0, /* #x0BD2 */ | |
443 0x2308, /* #x0BD3 UP STILE APL */ | |
444 0x0, /* #x0BD4 */ | |
445 0x0, /* #x0BD5 */ | |
446 0x0, /* #x0BD6 DOWN SHOE (CUP) APL */ | |
447 0x0, /* #x0BD7 */ | |
448 0x0, /* #x0BD8 RIGHT SHOE APL */ | |
449 0x0, /* #x0BD9 */ | |
450 0x0, /* #x0BDA LEFT SHOE APL */ | |
451 0x0, /* #x0BDB */ | |
452 0x0, /* #x0BDC */ | |
453 0x22A2, /* #x0BDC LEFT TACK APL */ | |
454 0x0, /* #x0BDE */ | |
455 0x0, /* #x0BDF */ | |
456 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, /* 0x0BB0--0x0BBB */ | |
457 0x0, 0x0, 0x0, 0x0, | |
458 0x22A3, /* #x0BFC RIGHT TACK APL */ | |
459 }; | |
460 | |
3640 | 461 static UINT_16_BIT const CYRILLIC[] = |
462 { | |
463 0x0452, /* #x06A1 CYRILLIC SMALL LETTER DJE */ | |
464 #define FIRST_KNOWN_CYRILLIC 0x6A1 | |
465 0x0453, /* #x06A2 CYRILLIC SMALL LETTER GJE */ | |
466 0x0451, /* #x06A3 CYRILLIC SMALL LETTER IO */ | |
467 0x0454, /* #x06A4 CYRILLIC SMALL LETTER UKRAINIAN IE */ | |
468 0x0455, /* #x06A5 CYRILLIC SMALL LETTER DZE */ | |
469 0x0456, /* #x06A6 CYRILLIC SMALL LETTER BYELORUSSIAN-UKRAINIAN I */ | |
470 0x0457, /* #x06A7 CYRILLIC SMALL LETTER YI */ | |
471 0x0458, /* #x06A8 CYRILLIC SMALL LETTER JE */ | |
472 0x0459, /* #x06A9 CYRILLIC SMALL LETTER LJE */ | |
473 0x045A, /* #x06AA CYRILLIC SMALL LETTER NJE */ | |
474 0x045B, /* #x06AB CYRILLIC SMALL LETTER TSHE */ | |
475 0x045C, /* #x06AC CYRILLIC SMALL LETTER KJE */ | |
476 0x0491, /* #x06AD CYRILLIC SMALL LETTER GHE WITH UPTURN */ | |
477 0x045E, /* #x06AE CYRILLIC SMALL LETTER SHORT U */ | |
478 0x045F, /* #x06AF CYRILLIC SMALL LETTER DZHE */ | |
479 0x2116, /* #x06B0 NUMERO SIGN */ | |
480 0x0402, /* #x06B1 CYRILLIC CAPITAL LETTER DJE */ | |
481 0x0403, /* #x06B2 CYRILLIC CAPITAL LETTER GJE */ | |
482 0x0401, /* #x06B3 CYRILLIC CAPITAL LETTER IO */ | |
483 0x0404, /* #x06B4 CYRILLIC CAPITAL LETTER UKRAINIAN IE */ | |
484 0x0405, /* #x06B5 CYRILLIC CAPITAL LETTER DZE */ | |
485 0x0406, /* #x06B6 CYRILLIC CAPITAL LETTER BYELORUSSIAN-UKRAINIAN I */ | |
486 0x0407, /* #x06B7 CYRILLIC CAPITAL LETTER YI */ | |
487 0x0408, /* #x06B8 CYRILLIC CAPITAL LETTER JE */ | |
488 0x0409, /* #x06B9 CYRILLIC CAPITAL LETTER LJE */ | |
489 0x040A, /* #x06BA CYRILLIC CAPITAL LETTER NJE */ | |
490 0x040B, /* #x06BB CYRILLIC CAPITAL LETTER TSHE */ | |
491 0x040C, /* #x06BC CYRILLIC CAPITAL LETTER KJE */ | |
492 0x0490, /* #x06BD CYRILLIC CAPITAL LETTER GHE WITH UPTURN */ | |
493 0x040E, /* #x06BE CYRILLIC CAPITAL LETTER SHORT U */ | |
494 0x040F, /* #x06BF CYRILLIC CAPITAL LETTER DZHE */ | |
495 0x044E, /* #x06C0 CYRILLIC SMALL LETTER YU */ | |
496 0x0430, /* #x06C1 CYRILLIC SMALL LETTER A */ | |
497 0x0431, /* #x06C2 CYRILLIC SMALL LETTER BE */ | |
498 0x0446, /* #x06C3 CYRILLIC SMALL LETTER TSE */ | |
499 0x0434, /* #x06C4 CYRILLIC SMALL LETTER DE */ | |
500 0x0435, /* #x06C5 CYRILLIC SMALL LETTER IE */ | |
501 0x0444, /* #x06C6 CYRILLIC SMALL LETTER EF */ | |
502 0x0433, /* #x06C7 CYRILLIC SMALL LETTER GHE */ | |
503 0x0445, /* #x06C8 CYRILLIC SMALL LETTER HA */ | |
504 0x0438, /* #x06C9 CYRILLIC SMALL LETTER I */ | |
505 0x0439, /* #x06CA CYRILLIC SMALL LETTER SHORT I */ | |
506 0x043A, /* #x06CB CYRILLIC SMALL LETTER KA */ | |
507 0x043B, /* #x06CC CYRILLIC SMALL LETTER EL */ | |
508 0x043C, /* #x06CD CYRILLIC SMALL LETTER EM */ | |
509 0x043D, /* #x06CE CYRILLIC SMALL LETTER EN */ | |
510 0x043E, /* #x06CF CYRILLIC SMALL LETTER O */ | |
511 0x043F, /* #x06D0 CYRILLIC SMALL LETTER PE */ | |
512 0x044F, /* #x06D1 CYRILLIC SMALL LETTER YA */ | |
513 0x0440, /* #x06D2 CYRILLIC SMALL LETTER ER */ | |
514 0x0441, /* #x06D3 CYRILLIC SMALL LETTER ES */ | |
515 0x0442, /* #x06D4 CYRILLIC SMALL LETTER TE */ | |
516 0x0443, /* #x06D5 CYRILLIC SMALL LETTER U */ | |
517 0x0436, /* #x06D6 CYRILLIC SMALL LETTER ZHE */ | |
518 0x0432, /* #x06D7 CYRILLIC SMALL LETTER VE */ | |
519 0x044C, /* #x06D8 CYRILLIC SMALL LETTER SOFT SIGN */ | |
520 0x044B, /* #x06D9 CYRILLIC SMALL LETTER YERU */ | |
521 0x0437, /* #x06DA CYRILLIC SMALL LETTER ZE */ | |
522 0x0448, /* #x06DB CYRILLIC SMALL LETTER SHA */ | |
523 0x044D, /* #x06DC CYRILLIC SMALL LETTER E */ | |
524 0x0449, /* #x06DD CYRILLIC SMALL LETTER SHCHA */ | |
525 0x0447, /* #x06DE CYRILLIC SMALL LETTER CHE */ | |
526 0x044A, /* #x06DF CYRILLIC SMALL LETTER HARD SIGN */ | |
527 0x042E, /* #x06E0 CYRILLIC CAPITAL LETTER YU */ | |
528 0x0410, /* #x06E1 CYRILLIC CAPITAL LETTER A */ | |
529 0x0411, /* #x06E2 CYRILLIC CAPITAL LETTER BE */ | |
530 0x0426, /* #x06E3 CYRILLIC CAPITAL LETTER TSE */ | |
531 0x0414, /* #x06E4 CYRILLIC CAPITAL LETTER DE */ | |
532 0x0415, /* #x06E5 CYRILLIC CAPITAL LETTER IE */ | |
533 0x0424, /* #x06E6 CYRILLIC CAPITAL LETTER EF */ | |
534 0x0413, /* #x06E7 CYRILLIC CAPITAL LETTER GHE */ | |
535 0x0425, /* #x06E8 CYRILLIC CAPITAL LETTER HA */ | |
536 0x0418, /* #x06E9 CYRILLIC CAPITAL LETTER I */ | |
537 0x0419, /* #x06EA CYRILLIC CAPITAL LETTER SHORT I */ | |
538 0x041A, /* #x06EB CYRILLIC CAPITAL LETTER KA */ | |
539 0x041B, /* #x06EC CYRILLIC CAPITAL LETTER EL */ | |
540 0x041C, /* #x06ED CYRILLIC CAPITAL LETTER EM */ | |
541 0x041D, /* #x06EE CYRILLIC CAPITAL LETTER EN */ | |
542 0x041E, /* #x06EF CYRILLIC CAPITAL LETTER O */ | |
543 0x041F, /* #x06F0 CYRILLIC CAPITAL LETTER PE */ | |
544 0x042F, /* #x06F1 CYRILLIC CAPITAL LETTER YA */ | |
545 0x0420, /* #x06F2 CYRILLIC CAPITAL LETTER ER */ | |
546 0x0421, /* #x06F3 CYRILLIC CAPITAL LETTER ES */ | |
547 0x0422, /* #x06F4 CYRILLIC CAPITAL LETTER TE */ | |
548 0x0423, /* #x06F5 CYRILLIC CAPITAL LETTER U */ | |
549 0x0416, /* #x06F6 CYRILLIC CAPITAL LETTER ZHE */ | |
550 0x0412, /* #x06F7 CYRILLIC CAPITAL LETTER VE */ | |
551 0x042C, /* #x06F8 CYRILLIC CAPITAL LETTER SOFT SIGN */ | |
552 0x042B, /* #x06F9 CYRILLIC CAPITAL LETTER YERU */ | |
553 0x0417, /* #x06FA CYRILLIC CAPITAL LETTER ZE */ | |
554 0x0428, /* #x06FB CYRILLIC CAPITAL LETTER SHA */ | |
555 0x042D, /* #x06FC CYRILLIC CAPITAL LETTER E */ | |
556 0x0429, /* #x06FD CYRILLIC CAPITAL LETTER SHCHA */ | |
557 0x0427, /* #x06FE CYRILLIC CAPITAL LETTER CHE */ | |
558 0x042A, /* #x06FF CYRILLIC CAPITAL LETTER HARD SIGN */ | |
559 }; | |
560 | |
2828 | 561 /* For every key on the keyboard that has a known character correspondence, |
562 we define the character-of-keysym property of its XEmacs keysym, and make | |
563 the default binding for the key be self-insert-command. | |
564 | |
565 The following magic is based on intimate knowledge of some of | |
566 X11/keysymdef.h. The keysym mappings defined by X11 are based on the | |
567 iso8859 standards, except for Cyrillic and Greek. | |
568 | |
569 In a non-Mule world, a user can still have a multi-lingual editor, by | |
570 doing (set-face-font "...-iso8859-2" (current-buffer)) for all their | |
571 Latin-2 buffers, etc. and the X11 keysyms corresponding to characters in | |
572 those character sets will still do the right thing (because of the | |
573 make_char (code + 0x80) non-Mule case below.) Of course, X11 keysyms in | |
574 other character sets will not do the right thing, because XEmacs won't | |
575 support the right thing. | |
576 | |
577 This code is also called when a command lookup is about to fail, and the | |
578 X11 platform code has worked out that it previously wasn't aware the | |
579 keysym of that command could be generated by the user's keyboard; in that | |
580 case, we bind its XEmacs keysym to self-insert-command if it has a | |
581 character correspondence we know about, and tell the general event code | |
582 that we've done so, so it can try the lookup again. | |
583 | |
584 Called from the GTK code because GTK 1 has no defined way of doing the | |
585 same thing, and this works for it on X11. It should be moved back into | |
586 event-Xt.c when and if the GTK port moves to GTK 2. */ | |
587 | |
588 #ifndef THIS_IS_GTK | |
589 static Lisp_Object | |
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590 x_keysym_to_character (KeySym keysym) |
2828 | 591 #else |
592 Lisp_Object | |
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593 gtk_keysym_to_character (guint keysym) |
2828 | 594 #endif |
595 { | |
596 Lisp_Object charset = Qzero; | |
597 int code = 0; | |
598 | |
599 /* Markus Kuhn's spec says keysyms in the range #x01000100 to #x0110FFFF | |
600 and only those should correspond directly to Unicode code points, in | |
601 the range #x100-#x10FFFF; actual implementations can have the Latin 1 | |
602 code points do the same thing with keysyms | |
3439 | 603 #x01000000-#x01000100. */ |
2828 | 604 |
3439 | 605 if (keysym >= 0x01000000 && keysym <= 0x0110FFFF) |
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606 return Funicode_to_char (make_fixnum (keysym & 0xffffff), Qnil); |
2828 | 607 |
608 if ((keysym & 0xff) < 0xa0) | |
609 return Qnil; | |
610 | |
611 switch (keysym >> 8) | |
612 { | |
613 | |
614 #define USE_CHARSET(var,cs) \ | |
615 ((var) = charset_by_leading_byte (LEADING_BYTE_##cs)) | |
616 | |
617 case 0: /* ASCII + Latin1 */ | |
618 USE_CHARSET (charset, LATIN_ISO8859_1); | |
619 code = keysym & 0x7f; | |
620 break; | |
621 case 1: /* Latin2 */ | |
622 USE_CHARSET (charset, LATIN_ISO8859_2); | |
623 code = keysym & 0x7f; | |
624 break; | |
625 case 2: /* Latin3 */ | |
626 USE_CHARSET (charset, LATIN_ISO8859_3); | |
627 code = keysym & 0x7f; | |
628 break; | |
629 case 3: /* Latin4 */ | |
630 USE_CHARSET (charset, LATIN_ISO8859_4); | |
631 code = keysym & 0x7f; | |
632 break; | |
633 case 4: /* Katakana */ | |
634 USE_CHARSET (charset, KATAKANA_JISX0201); | |
635 if ((keysym & 0xff) > 0xa0) | |
636 code = keysym & 0x7f; | |
637 break; | |
638 case 5: /* Arabic */ | |
639 USE_CHARSET (charset, ARABIC_ISO8859_6); | |
640 code = keysym & 0x7f; | |
641 break; | |
642 case 6: /* Cyrillic */ | |
643 { | |
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644 USE_UNICODE_MAP (keysym, CYRILLIC); |
2828 | 645 break; |
646 } | |
647 case 7: /* Greek */ | |
648 { | |
649 static UExtbyte const greek[] = /* 0x20 - 0x7f */ | |
650 {0x00, 0x36, 0x38, 0x39, 0x3a, 0x5a, 0x00, 0x3c, | |
651 0x3e, 0x5b, 0x00, 0x3f, 0x00, 0x00, 0x35, 0x2f, | |
652 0x00, 0x5c, 0x5d, 0x5e, 0x5f, 0x7a, 0x40, 0x7c, | |
653 0x7d, 0x7b, 0x60, 0x7e, 0x00, 0x00, 0x00, 0x00, | |
654 0x00, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47, | |
655 0x48, 0x49, 0x4a, 0x4b, 0x4c, 0x4d, 0x4e, 0x4f, | |
656 0x50, 0x51, 0x53, 0x00, 0x54, 0x55, 0x56, 0x57, | |
657 0x58, 0x59, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, | |
658 0x00, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, | |
659 0x68, 0x69, 0x6a, 0x6b, 0x6c, 0x6d, 0x6e, 0x6f, | |
660 0x70, 0x71, 0x73, 0x72, 0x74, 0x75, 0x76, 0x77, | |
661 0x78, 0x79, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00}; | |
662 USE_CHARSET (charset, GREEK_ISO8859_7); | |
663 code = greek[(keysym & 0x7f) - 0x20]; | |
664 break; | |
665 } | |
666 case 8: | |
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667 USE_UNICODE_MAP (keysym, TECHNICAL); |
2828 | 668 break; |
669 case 9: | |
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670 USE_UNICODE_MAP (keysym, SPECIAL); |
2828 | 671 break; |
672 case 10: | |
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673 USE_UNICODE_MAP (keysym, PUBLISHING); |
2828 | 674 break; |
675 case 11: | |
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676 USE_UNICODE_MAP (keysym, APL); |
2828 | 677 break; |
678 case 12: /* Hebrew */ | |
679 USE_CHARSET (charset, HEBREW_ISO8859_8); | |
680 code = keysym & 0x7f; | |
681 break; | |
682 case 13: /* Thai */ | |
683 /* #### This needs to deal with character composition. | |
684 Are you sure we can't leave it to the X server? */ | |
685 USE_CHARSET (charset, THAI_TIS620); | |
686 code = keysym & 0x7f; | |
687 break; | |
688 case 14: /* Korean Hangul. Would like some information on whether this | |
689 is worth doing--there don't appear to be any Korean keyboard | |
690 layouts in the XKB data files. */ | |
691 break; | |
692 | |
693 case 19: /* Latin 9 - ISO8859-15. */ | |
694 USE_CHARSET (charset, LATIN_ISO8859_15); | |
695 code = keysym & 0x7f; | |
696 break; | |
697 case 32: /* Currency. The lower sixteen bits of these keysyms happily | |
698 correspond exactly to the Unicode code points of the | |
699 associated characters */ | |
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700 return Funicode_to_char (make_fixnum (keysym & 0xffff), Qnil); |
2828 | 701 break; |
702 default: | |
703 break; | |
704 } | |
705 | |
706 if (code == 0) | |
707 return Qnil; | |
708 | |
709 #ifdef MULE | |
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710 { |
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711 Lisp_Object unified = Funicode_to_char |
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712 (Fchar_to_unicode (make_char (make_ichar (charset, code, 0))), Qnil); |
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713 if (!NILP (unified)) |
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714 { |
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715 return unified; |
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716 } |
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717 return make_char (make_ichar (charset, code, 0)); |
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718 } |
2828 | 719 #else |
720 return make_char (code + 0x80); | |
721 #endif | |
722 } | |
723 | |
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724 #endif /* defined (THIS_IS_X) || !defined (__GDK_KEYS_H__) */ |