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/cvs/rxvt-unicode/src/keyboard.C
Revision: 1.59
Committed: Fri May 18 00:10:47 2012 UTC (12 years ago) by root
Content type: text/plain
Branch: MAIN
CVS Tags: rxvt-unicode-rel-9_16
Changes since 1.58: +1 -2 lines
Log Message:
µopt

File Contents

# Content
1 /*----------------------------------------------------------------------*
2 * File: keyboard.C
3 *----------------------------------------------------------------------*
4 *
5 * All portions of code are copyright by their respective author/s.
6 * Copyright (c) 2005 WU Fengguang
7 * Copyright (c) 2005-2006 Marc Lehmann <schmorp@schmorp.de>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 *----------------------------------------------------------------------*/
23
24 #include "../config.h"
25 #include "rxvt.h"
26
27 #ifdef KEYSYM_RESOURCE
28
29 #include <string.h>
30
31 #include "rxvtperl.h"
32 #include "keyboard.h"
33
34 /* an intro to the data structure:
35 *
36 * vector keymap[] is grouped.
37 *
38 * inside each group, elements are sorted by the criteria given by compare_priority().
39 * the lookup of keysym is done in two steps:
40 * 1) locate the group corresponds to the keysym;
41 * 2) do a linear search inside the group.
42 *
43 * array hash[] effectively defines a map from a keysym to a group in keymap[].
44 *
45 * each group has its address(the index of first group element in keymap[]),
46 * which is computed and stored in hash[].
47 * hash[] stores the addresses in the form of:
48 * index: 0 I1 I2 I3 In
49 * value: 0...0, A1...A1, A2...A2, A3...A3, ..., An...An
50 * where
51 * A1 = 0;
52 * Ai+1 = N1 + N2 + ... + Ni.
53 * it is computed from hash_bucket_size[]:
54 * index: 0 I1 I2 I3 In
55 * value: 0...0, N1, 0...0, N2, 0...0, N3, ..., Nn, 0...0
56 * 0...0, 0.......0, N1.....N1, N1+N2...N1+N2, ... (the computation of hash[])
57 * or we can say
58 * hash_bucket_size[Ii] = Ni; hash_bucket_size[elsewhere] = 0,
59 * where
60 * set {I1, I2, ..., In} = { hashkey of keymap[0]->keysym, ..., keymap[keymap.size-1]->keysym }
61 * where hashkey of keymap[i]->keysym = keymap[i]->keysym & KEYSYM_HASH_MASK
62 * n(the number of groups) = the number of non-zero member of hash_bucket_size[];
63 * Ni(the size of group i) = hash_bucket_size[Ii].
64 */
65
66 static void
67 output_string (rxvt_term *term, const char *str)
68 {
69 if (strncmp (str, "command:", 8) == 0)
70 term->cmdbuf_append (str + 8, strlen (str) - 8);
71 else if (strncmp (str, "perl:", 5) == 0)
72 HOOK_INVOKE((term, HOOK_USER_COMMAND, DT_STR, str + 5, DT_END));
73 else
74 term->tt_write (str, strlen (str));
75 }
76
77 // return: priority_of_a - priority_of_b
78 static int
79 compare_priority (keysym_t *a, keysym_t *b)
80 {
81 // (the more '1's in state; the less range): the greater priority
82 int ca = ecb_popcount32 (a->state /* & OtherModMask */);
83 int cb = ecb_popcount32 (b->state /* & OtherModMask */);
84
85 if (ca != cb)
86 return ca - cb;
87 //else if (a->state != b->state) // this behavior is to be discussed
88 // return b->state - a->state;
89 else
90 return 0;
91 }
92
93 ////////////////////////////////////////////////////////////////////////////////
94 keyboard_manager::keyboard_manager ()
95 {
96 keymap.reserve (256);
97 hash [0] = 1; // hash[0] != 0 indicates uninitialized data
98 }
99
100 keyboard_manager::~keyboard_manager ()
101 {
102 for (unsigned int i = 0; i < keymap.size (); ++i)
103 {
104 free (keymap [i]->str);
105 delete keymap [i];
106 }
107 }
108
109 void
110 keyboard_manager::register_user_translation (KeySym keysym, unsigned int state, const wchar_t *ws)
111 {
112 char *translation = rxvt_wcstoutf8 (ws);
113
114 keysym_t *key = new keysym_t;
115
116 key->keysym = keysym;
117 key->state = state;
118 key->str = translation;
119 key->type = keysym_t::STRING;
120
121 if (strncmp (translation, "builtin:", 8) == 0)
122 key->type = keysym_t::BUILTIN;
123
124 if (keymap.size () == keymap.capacity ())
125 keymap.reserve (keymap.size () * 2);
126
127 keymap.push_back (key);
128 hash[0] = 3;
129 }
130
131 bool
132 keyboard_manager::dispatch (rxvt_term *term, KeySym keysym, unsigned int state)
133 {
134 assert (("register_done() need to be called", hash[0] == 0));
135
136 state &= OtherModMask; // mask out uninteresting modifiers
137
138 if (state & term->ModMetaMask) state |= MetaMask;
139 if (state & term->ModNumLockMask) state |= NumLockMask;
140 if (state & term->ModLevel3Mask) state |= Level3Mask;
141
142 if (!!(term->priv_modes & PrivMode_aplKP) != !!(state & ShiftMask))
143 state |= AppKeypadMask;
144
145 int index = find_keysym (keysym, state);
146
147 if (index >= 0)
148 {
149 keysym_t *key = keymap [index];
150
151 if (key->type != keysym_t::BUILTIN)
152 {
153 wchar_t *ws = rxvt_utf8towcs (key->str);
154 char *str = rxvt_wcstombs (ws);
155 // TODO: do (some) translations, unescaping etc, here (allow \u escape etc.)
156 free (ws);
157
158 output_string (term, str);
159
160 free (str);
161
162 return true;
163 }
164 }
165
166 return false;
167 }
168
169 void
170 keyboard_manager::register_done ()
171 {
172 unsigned int i, index, hashkey;
173 uint16_t hash_bucket_size[KEYSYM_HASH_BUCKETS]; // size of each bucket
174
175 memset (hash_bucket_size, 0, sizeof (hash_bucket_size));
176
177 // determine hash bucket size
178 for (i = 0; i < keymap.size (); ++i)
179 {
180 hashkey = keymap [i]->keysym & KEYSYM_HASH_MASK;
181 ++hash_bucket_size [hashkey];
182 }
183
184 // now we know the size of each bucket
185 // compute the index of each bucket
186 hash [0] = 0;
187 for (index = 0, i = 1; i < KEYSYM_HASH_BUCKETS; ++i)
188 {
189 index += hash_bucket_size [i - 1];
190 hash [i] = index;
191 }
192
193 // and allocate just enough space
194 simplevec <keysym_t *> sorted_keymap (index + hash_bucket_size [i - 1], 0);
195
196 memset (hash_bucket_size, 0, sizeof (hash_bucket_size));
197
198 // fill in sorted_keymap
199 // it is sorted in each bucket
200 for (i = 0; i < keymap.size (); ++i)
201 {
202 hashkey = keymap [i]->keysym & KEYSYM_HASH_MASK;
203
204 index = hash [hashkey] + hash_bucket_size [hashkey];
205
206 while (index > hash [hashkey]
207 && compare_priority (keymap [i], sorted_keymap [index - 1]) > 0)
208 {
209 sorted_keymap [index] = sorted_keymap [index - 1];
210 --index;
211 }
212
213 sorted_keymap [index] = keymap [i];
214 ++hash_bucket_size [hashkey];
215 }
216
217 keymap.swap (sorted_keymap);
218
219 #ifndef NDEBUG
220 // check for invariants
221 for (i = 0; i < KEYSYM_HASH_BUCKETS; ++i)
222 {
223 index = hash[i];
224 for (int j = 0; j < hash_bucket_size [i]; ++j)
225 {
226 assert (i == (keymap [index + j]->keysym & KEYSYM_HASH_MASK));
227
228 if (j)
229 assert (compare_priority (keymap [index + j - 1],
230 keymap [index + j]) >= 0);
231 }
232 }
233
234 // this should be able to detect most possible bugs
235 for (i = 0; i < sorted_keymap.size (); ++i)
236 {
237 keysym_t *a = sorted_keymap[i];
238 int index = find_keysym (a->keysym, a->state);
239
240 assert (index >= 0);
241 keysym_t *b = keymap [index];
242 assert (i == index // the normally expected result
243 || a->keysym == b->keysym
244 && compare_priority (a, b) <= 0); // is effectively the same or a closer match
245 }
246 #endif
247 }
248
249 int
250 keyboard_manager::find_keysym (KeySym keysym, unsigned int state)
251 {
252 int hashkey = keysym & KEYSYM_HASH_MASK;
253 unsigned int index = hash [hashkey];
254 unsigned int end = hashkey < KEYSYM_HASH_BUCKETS - 1
255 ? hash [hashkey + 1]
256 : keymap.size ();
257
258 for (; index < end; ++index)
259 {
260 keysym_t *key = keymap [index];
261
262 if (key->keysym == keysym
263 // match only the specified bits in state and ignore others
264 && (key->state & state) == key->state)
265 return index;
266 }
267
268 return -1;
269 }
270
271 #endif /* KEYSYM_RESOURCE */
272 // vim:et:ts=2:sw=2