blob: 2decfe93215a2733b9185e9a1f4e97c1e9607b67 [file] [log] [blame]
Jeff Brown6b53e8d2010-11-10 16:03:06 -08001/*
2 * Copyright (C) 2008 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080017#define LOG_TAG "KeyCharacterMap"
18
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080019#include <stdlib.h>
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080020#include <string.h>
Jeff Brown6b53e8d2010-11-10 16:03:06 -080021#include <android/keycodes.h>
22#include <ui/Keyboard.h>
23#include <ui/KeyCharacterMap.h>
24#include <utils/Log.h>
25#include <utils/Errors.h>
26#include <utils/Tokenizer.h>
27#include <utils/Timers.h>
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080028
Jeff Brown6b53e8d2010-11-10 16:03:06 -080029// Enables debug output for the parser.
30#define DEBUG_PARSER 0
31
32// Enables debug output for parser performance.
33#define DEBUG_PARSER_PERFORMANCE 0
34
35// Enables debug output for mapping.
36#define DEBUG_MAPPING 0
37
38
39namespace android {
40
41static const char* WHITESPACE = " \t\r";
42static const char* WHITESPACE_OR_PROPERTY_DELIMITER = " \t\r,:";
43
44struct Modifier {
45 const char* label;
46 int32_t metaState;
47};
48static const Modifier modifiers[] = {
49 { "shift", AMETA_SHIFT_ON },
50 { "lshift", AMETA_SHIFT_LEFT_ON },
51 { "rshift", AMETA_SHIFT_RIGHT_ON },
52 { "alt", AMETA_ALT_ON },
53 { "lalt", AMETA_ALT_LEFT_ON },
54 { "ralt", AMETA_ALT_RIGHT_ON },
55 { "ctrl", AMETA_CTRL_ON },
56 { "lctrl", AMETA_CTRL_LEFT_ON },
57 { "rctrl", AMETA_CTRL_RIGHT_ON },
58 { "meta", AMETA_META_ON },
59 { "lmeta", AMETA_META_LEFT_ON },
60 { "rmeta", AMETA_META_RIGHT_ON },
61 { "sym", AMETA_SYM_ON },
62 { "fn", AMETA_FUNCTION_ON },
63 { "capslock", AMETA_CAPS_LOCK_ON },
64 { "numlock", AMETA_NUM_LOCK_ON },
65 { "scrolllock", AMETA_SCROLL_LOCK_ON },
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080066};
67
Jeff Brown6b53e8d2010-11-10 16:03:06 -080068#if DEBUG_MAPPING
69static String8 toString(const char16_t* chars, size_t numChars) {
70 String8 result;
71 for (size_t i = 0; i < numChars; i++) {
72 result.appendFormat(i == 0 ? "%d" : ", %d", chars[i]);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080073 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -080074 return result;
75}
76#endif
77
78
79// --- KeyCharacterMap ---
80
81KeyCharacterMap::KeyCharacterMap() :
82 mType(KEYBOARD_TYPE_UNKNOWN) {
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080083}
84
Jeff Brown6b53e8d2010-11-10 16:03:06 -080085KeyCharacterMap::~KeyCharacterMap() {
86 for (size_t i = 0; i < mKeys.size(); i++) {
87 Key* key = mKeys.editValueAt(i);
88 delete key;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080089 }
The Android Open Source Project9066cfe2009-03-03 19:31:44 -080090}
91
Jeff Brown6b53e8d2010-11-10 16:03:06 -080092status_t KeyCharacterMap::load(const String8& filename, KeyCharacterMap** outMap) {
93 *outMap = NULL;
94
95 Tokenizer* tokenizer;
96 status_t status = Tokenizer::open(filename, &tokenizer);
97 if (status) {
98 LOGE("Error %d opening key character map file %s.", status, filename.string());
99 } else {
100 KeyCharacterMap* map = new KeyCharacterMap();
101 if (!map) {
102 LOGE("Error allocating key character map.");
103 status = NO_MEMORY;
104 } else {
105#if DEBUG_PARSER_PERFORMANCE
106 nsecs_t startTime = systemTime(SYSTEM_TIME_MONOTONIC);
107#endif
108 Parser parser(map, tokenizer);
109 status = parser.parse();
110#if DEBUG_PARSER_PERFORMANCE
111 nsecs_t elapsedTime = systemTime(SYSTEM_TIME_MONOTONIC) - startTime;
112 LOGD("Parsed key character map file '%s' %d lines in %0.3fms.",
113 tokenizer->getFilename().string(), tokenizer->getLineNumber(),
114 elapsedTime / 1000000.0);
115#endif
116 if (status) {
117 delete map;
118 } else {
119 *outMap = map;
120 }
121 }
122 delete tokenizer;
123 }
124 return status;
125}
126
127status_t KeyCharacterMap::loadByDeviceId(int32_t deviceId, KeyCharacterMap** outMap) {
128 *outMap = NULL;
129
130 String8 filename;
131 status_t result = getKeyCharacterMapFile(deviceId, filename);
132 if (!result) {
133 result = load(filename, outMap);
134 }
135 return result;
136}
137
138int32_t KeyCharacterMap::getKeyboardType() const {
139 return mType;
140}
141
142char16_t KeyCharacterMap::getDisplayLabel(int32_t keyCode) const {
143 char16_t result = 0;
Jeff Brown49ed71d2010-12-06 17:13:33 -0800144 const Key* key;
145 if (getKey(keyCode, &key)) {
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800146 result = key->label;
147 }
148#if DEBUG_MAPPING
149 LOGD("getDisplayLabel: keyCode=%d ~ Result %d.", keyCode, result);
150#endif
151 return result;
152}
153
154char16_t KeyCharacterMap::getNumber(int32_t keyCode) const {
155 char16_t result = 0;
Jeff Brown49ed71d2010-12-06 17:13:33 -0800156 const Key* key;
157 if (getKey(keyCode, &key)) {
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800158 result = key->number;
159 }
160#if DEBUG_MAPPING
161 LOGD("getNumber: keyCode=%d ~ Result %d.", keyCode, result);
162#endif
163 return result;
164}
165
166char16_t KeyCharacterMap::getCharacter(int32_t keyCode, int32_t metaState) const {
167 char16_t result = 0;
Jeff Brown49ed71d2010-12-06 17:13:33 -0800168 const Key* key;
169 const Behavior* behavior;
170 if (getKeyBehavior(keyCode, metaState, &key, &behavior)) {
171 result = behavior->character;
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800172 }
173#if DEBUG_MAPPING
174 LOGD("getCharacter: keyCode=%d, metaState=0x%08x ~ Result %d.", keyCode, metaState, result);
175#endif
176 return result;
177}
178
Jeff Brown49ed71d2010-12-06 17:13:33 -0800179bool KeyCharacterMap::getFallbackAction(int32_t keyCode, int32_t metaState,
180 FallbackAction* outFallbackAction) const {
181 outFallbackAction->keyCode = 0;
182 outFallbackAction->metaState = 0;
183
184 bool result = false;
185 const Key* key;
186 const Behavior* behavior;
187 if (getKeyBehavior(keyCode, metaState, &key, &behavior)) {
Jeff Brownfca66d32011-01-14 17:54:38 -0800188 if (behavior->fallbackKeyCode) {
189 outFallbackAction->keyCode = behavior->fallbackKeyCode;
190 outFallbackAction->metaState = metaState & ~behavior->metaState;
191 result = true;
192 }
Jeff Brown49ed71d2010-12-06 17:13:33 -0800193 }
194#if DEBUG_MAPPING
195 LOGD("getFallbackKeyCode: keyCode=%d, metaState=0x%08x ~ Result %s, "
196 "fallback keyCode=%d, fallback metaState=0x%08x.",
197 keyCode, metaState, result ? "true" : "false",
198 outFallbackAction->keyCode, outFallbackAction->metaState);
199#endif
200 return result;
201}
202
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800203char16_t KeyCharacterMap::getMatch(int32_t keyCode, const char16_t* chars, size_t numChars,
204 int32_t metaState) const {
205 char16_t result = 0;
Jeff Brown49ed71d2010-12-06 17:13:33 -0800206 const Key* key;
207 if (getKey(keyCode, &key)) {
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800208 // Try to find the most general behavior that maps to this character.
209 // For example, the base key behavior will usually be last in the list.
210 // However, if we find a perfect meta state match for one behavior then use that one.
211 for (const Behavior* behavior = key->firstBehavior; behavior; behavior = behavior->next) {
212 if (behavior->character) {
213 for (size_t i = 0; i < numChars; i++) {
214 if (behavior->character == chars[i]) {
215 result = behavior->character;
216 if ((behavior->metaState & metaState) == behavior->metaState) {
217 goto ExactMatch;
218 }
219 break;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800220 }
221 }
222 }
223 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800224 ExactMatch: ;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800225 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800226#if DEBUG_MAPPING
227 LOGD("getMatch: keyCode=%d, chars=[%s], metaState=0x%08x ~ Result %d.",
228 keyCode, toString(chars, numChars).string(), metaState, result);
229#endif
230 return result;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800231}
232
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800233bool KeyCharacterMap::getEvents(int32_t deviceId, const char16_t* chars, size_t numChars,
234 Vector<KeyEvent>& outEvents) const {
235 nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
236
237 for (size_t i = 0; i < numChars; i++) {
238 int32_t keyCode, metaState;
239 char16_t ch = chars[i];
240 if (!findKey(ch, &keyCode, &metaState)) {
241#if DEBUG_MAPPING
242 LOGD("getEvents: deviceId=%d, chars=[%s] ~ Failed to find mapping for character %d.",
243 deviceId, toString(chars, numChars).string(), ch);
244#endif
245 return false;
246 }
247
248 int32_t currentMetaState = 0;
249 addMetaKeys(outEvents, deviceId, metaState, true, now, &currentMetaState);
250 addKey(outEvents, deviceId, keyCode, currentMetaState, true, now);
251 addKey(outEvents, deviceId, keyCode, currentMetaState, false, now);
252 addMetaKeys(outEvents, deviceId, metaState, false, now, &currentMetaState);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800253 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800254#if DEBUG_MAPPING
255 LOGD("getEvents: deviceId=%d, chars=[%s] ~ Generated %d events.",
Jeff Brown49ed71d2010-12-06 17:13:33 -0800256 deviceId, toString(chars, numChars).string(), int32_t(outEvents.size()));
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800257 for (size_t i = 0; i < outEvents.size(); i++) {
258 LOGD(" Key: keyCode=%d, metaState=0x%08x, %s.",
259 outEvents[i].getKeyCode(), outEvents[i].getMetaState(),
260 outEvents[i].getAction() == AKEY_EVENT_ACTION_DOWN ? "down" : "up");
261 }
262#endif
263 return true;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800264}
265
Jeff Brown49ed71d2010-12-06 17:13:33 -0800266bool KeyCharacterMap::getKey(int32_t keyCode, const Key** outKey) const {
267 ssize_t index = mKeys.indexOfKey(keyCode);
268 if (index >= 0) {
269 *outKey = mKeys.valueAt(index);
270 return true;
271 }
272 return false;
273}
274
275bool KeyCharacterMap::getKeyBehavior(int32_t keyCode, int32_t metaState,
276 const Key** outKey, const Behavior** outBehavior) const {
277 const Key* key;
278 if (getKey(keyCode, &key)) {
279 const Behavior* behavior = key->firstBehavior;
280 while (behavior) {
281 if ((behavior->metaState & metaState) == behavior->metaState) {
282 *outKey = key;
283 *outBehavior = behavior;
284 return true;
285 }
286 behavior = behavior->next;
287 }
288 }
289 return false;
290}
291
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800292bool KeyCharacterMap::findKey(char16_t ch, int32_t* outKeyCode, int32_t* outMetaState) const {
293 if (!ch) {
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800294 return false;
295 }
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800296
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800297 for (size_t i = 0; i < mKeys.size(); i++) {
298 const Key* key = mKeys.valueAt(i);
299
300 // Try to find the most general behavior that maps to this character.
301 // For example, the base key behavior will usually be last in the list.
302 const Behavior* found = NULL;
303 for (const Behavior* behavior = key->firstBehavior; behavior; behavior = behavior->next) {
304 if (behavior->character == ch) {
305 found = behavior;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800306 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800307 }
308 if (found) {
309 *outKeyCode = mKeys.keyAt(i);
310 *outMetaState = found->metaState;
311 return true;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800312 }
313 }
314 return false;
315}
316
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800317void KeyCharacterMap::addKey(Vector<KeyEvent>& outEvents,
318 int32_t deviceId, int32_t keyCode, int32_t metaState, bool down, nsecs_t time) {
319 outEvents.push();
320 KeyEvent& event = outEvents.editTop();
321 event.initialize(deviceId, AINPUT_SOURCE_KEYBOARD,
322 down ? AKEY_EVENT_ACTION_DOWN : AKEY_EVENT_ACTION_UP,
323 0, keyCode, 0, metaState, 0, time, time);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800324}
325
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800326void KeyCharacterMap::addMetaKeys(Vector<KeyEvent>& outEvents,
327 int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
328 int32_t* currentMetaState) {
329 // Add and remove meta keys symmetrically.
330 if (down) {
331 addLockedMetaKey(outEvents, deviceId, metaState, time,
332 AKEYCODE_CAPS_LOCK, AMETA_CAPS_LOCK_ON, currentMetaState);
333 addLockedMetaKey(outEvents, deviceId, metaState, time,
334 AKEYCODE_NUM_LOCK, AMETA_NUM_LOCK_ON, currentMetaState);
335 addLockedMetaKey(outEvents, deviceId, metaState, time,
336 AKEYCODE_SCROLL_LOCK, AMETA_SCROLL_LOCK_ON, currentMetaState);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800337
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800338 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
339 AKEYCODE_SHIFT_LEFT, AMETA_SHIFT_LEFT_ON,
340 AKEYCODE_SHIFT_RIGHT, AMETA_SHIFT_RIGHT_ON,
341 AMETA_SHIFT_ON, currentMetaState);
342 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
343 AKEYCODE_ALT_LEFT, AMETA_ALT_LEFT_ON,
344 AKEYCODE_ALT_RIGHT, AMETA_ALT_RIGHT_ON,
345 AMETA_ALT_ON, currentMetaState);
346 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
347 AKEYCODE_CTRL_LEFT, AMETA_CTRL_LEFT_ON,
348 AKEYCODE_CTRL_RIGHT, AMETA_CTRL_RIGHT_ON,
349 AMETA_CTRL_ON, currentMetaState);
350 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
351 AKEYCODE_META_LEFT, AMETA_META_LEFT_ON,
352 AKEYCODE_META_RIGHT, AMETA_META_RIGHT_ON,
353 AMETA_META_ON, currentMetaState);
Jeff Brown497a92c2010-09-12 17:55:08 -0700354
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800355 addSingleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
356 AKEYCODE_SYM, AMETA_SYM_ON, currentMetaState);
357 addSingleEphemeralMetaKey(outEvents, deviceId, metaState, true, time,
358 AKEYCODE_FUNCTION, AMETA_FUNCTION_ON, currentMetaState);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800359 } else {
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800360 addSingleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
361 AKEYCODE_FUNCTION, AMETA_FUNCTION_ON, currentMetaState);
362 addSingleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
363 AKEYCODE_SYM, AMETA_SYM_ON, currentMetaState);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800364
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800365 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
366 AKEYCODE_META_LEFT, AMETA_META_LEFT_ON,
367 AKEYCODE_META_RIGHT, AMETA_META_RIGHT_ON,
368 AMETA_META_ON, currentMetaState);
369 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
370 AKEYCODE_CTRL_LEFT, AMETA_CTRL_LEFT_ON,
371 AKEYCODE_CTRL_RIGHT, AMETA_CTRL_RIGHT_ON,
372 AMETA_CTRL_ON, currentMetaState);
373 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
374 AKEYCODE_ALT_LEFT, AMETA_ALT_LEFT_ON,
375 AKEYCODE_ALT_RIGHT, AMETA_ALT_RIGHT_ON,
376 AMETA_ALT_ON, currentMetaState);
377 addDoubleEphemeralMetaKey(outEvents, deviceId, metaState, false, time,
378 AKEYCODE_SHIFT_LEFT, AMETA_SHIFT_LEFT_ON,
379 AKEYCODE_SHIFT_RIGHT, AMETA_SHIFT_RIGHT_ON,
380 AMETA_SHIFT_ON, currentMetaState);
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800381
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800382 addLockedMetaKey(outEvents, deviceId, metaState, time,
383 AKEYCODE_SCROLL_LOCK, AMETA_SCROLL_LOCK_ON, currentMetaState);
384 addLockedMetaKey(outEvents, deviceId, metaState, time,
385 AKEYCODE_NUM_LOCK, AMETA_NUM_LOCK_ON, currentMetaState);
386 addLockedMetaKey(outEvents, deviceId, metaState, time,
387 AKEYCODE_CAPS_LOCK, AMETA_CAPS_LOCK_ON, currentMetaState);
388 }
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800389}
390
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800391bool KeyCharacterMap::addSingleEphemeralMetaKey(Vector<KeyEvent>& outEvents,
392 int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
393 int32_t keyCode, int32_t keyMetaState,
394 int32_t* currentMetaState) {
395 if ((metaState & keyMetaState) == keyMetaState) {
396 *currentMetaState = updateMetaState(keyCode, down, *currentMetaState);
397 addKey(outEvents, deviceId, keyCode, *currentMetaState, down, time);
398 return true;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800399 }
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800400 return false;
The Android Open Source Project9066cfe2009-03-03 19:31:44 -0800401}
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800402
403void KeyCharacterMap::addDoubleEphemeralMetaKey(Vector<KeyEvent>& outEvents,
404 int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
405 int32_t leftKeyCode, int32_t leftKeyMetaState,
406 int32_t rightKeyCode, int32_t rightKeyMetaState,
407 int32_t eitherKeyMetaState,
408 int32_t* currentMetaState) {
409 bool specific = false;
410 specific |= addSingleEphemeralMetaKey(outEvents, deviceId, metaState, down, time,
411 leftKeyCode, leftKeyMetaState, currentMetaState);
412 specific |= addSingleEphemeralMetaKey(outEvents, deviceId, metaState, down, time,
413 rightKeyCode, rightKeyMetaState, currentMetaState);
414
415 if (!specific) {
416 addSingleEphemeralMetaKey(outEvents, deviceId, metaState, down, time,
417 leftKeyCode, eitherKeyMetaState, currentMetaState);
418 }
419}
420
421void KeyCharacterMap::addLockedMetaKey(Vector<KeyEvent>& outEvents,
422 int32_t deviceId, int32_t metaState, nsecs_t time,
423 int32_t keyCode, int32_t keyMetaState,
424 int32_t* currentMetaState) {
425 if ((metaState & keyMetaState) == keyMetaState) {
426 *currentMetaState = updateMetaState(keyCode, true, *currentMetaState);
427 addKey(outEvents, deviceId, keyCode, *currentMetaState, true, time);
428 *currentMetaState = updateMetaState(keyCode, false, *currentMetaState);
429 addKey(outEvents, deviceId, keyCode, *currentMetaState, false, time);
430 }
431}
432
433
434// --- KeyCharacterMap::Key ---
435
436KeyCharacterMap::Key::Key() :
437 label(0), number(0), firstBehavior(NULL) {
438}
439
440KeyCharacterMap::Key::~Key() {
441 Behavior* behavior = firstBehavior;
442 while (behavior) {
443 Behavior* next = behavior->next;
444 delete behavior;
445 behavior = next;
446 }
447}
448
449
450// --- KeyCharacterMap::Behavior ---
451
452KeyCharacterMap::Behavior::Behavior() :
453 next(NULL), metaState(0), character(0), fallbackKeyCode(0) {
454}
455
456
457// --- KeyCharacterMap::Parser ---
458
459KeyCharacterMap::Parser::Parser(KeyCharacterMap* map, Tokenizer* tokenizer) :
460 mMap(map), mTokenizer(tokenizer), mState(STATE_TOP) {
461}
462
463KeyCharacterMap::Parser::~Parser() {
464}
465
466status_t KeyCharacterMap::Parser::parse() {
467 while (!mTokenizer->isEof()) {
468#if DEBUG_PARSER
469 LOGD("Parsing %s: '%s'.", mTokenizer->getLocation().string(),
470 mTokenizer->peekRemainderOfLine().string());
471#endif
472
473 mTokenizer->skipDelimiters(WHITESPACE);
474
475 if (!mTokenizer->isEol() && mTokenizer->peekChar() != '#') {
476 switch (mState) {
477 case STATE_TOP: {
478 String8 keywordToken = mTokenizer->nextToken(WHITESPACE);
479 if (keywordToken == "type") {
480 mTokenizer->skipDelimiters(WHITESPACE);
481 status_t status = parseType();
482 if (status) return status;
483 } else if (keywordToken == "key") {
484 mTokenizer->skipDelimiters(WHITESPACE);
485 status_t status = parseKey();
486 if (status) return status;
487 } else {
488 LOGE("%s: Expected keyword, got '%s'.", mTokenizer->getLocation().string(),
489 keywordToken.string());
490 return BAD_VALUE;
491 }
492 break;
493 }
494
495 case STATE_KEY: {
496 status_t status = parseKeyProperty();
497 if (status) return status;
498 break;
499 }
500 }
501
502 mTokenizer->skipDelimiters(WHITESPACE);
503 if (!mTokenizer->isEol()) {
504 LOGE("%s: Expected end of line, got '%s'.",
505 mTokenizer->getLocation().string(),
506 mTokenizer->peekRemainderOfLine().string());
507 return BAD_VALUE;
508 }
509 }
510
511 mTokenizer->nextLine();
512 }
513
514 if (mState != STATE_TOP) {
515 LOGE("%s: Unterminated key description at end of file.",
516 mTokenizer->getLocation().string());
517 return BAD_VALUE;
518 }
519
520 if (mMap->mType == KEYBOARD_TYPE_UNKNOWN) {
521 LOGE("%s: Missing required keyboard 'type' declaration.",
522 mTokenizer->getLocation().string());
523 return BAD_VALUE;
524 }
525
526 return NO_ERROR;
527}
528
529status_t KeyCharacterMap::Parser::parseType() {
530 if (mMap->mType != KEYBOARD_TYPE_UNKNOWN) {
531 LOGE("%s: Duplicate keyboard 'type' declaration.",
532 mTokenizer->getLocation().string());
533 return BAD_VALUE;
534 }
535
536 KeyboardType type;
537 String8 typeToken = mTokenizer->nextToken(WHITESPACE);
538 if (typeToken == "NUMERIC") {
539 type = KEYBOARD_TYPE_NUMERIC;
540 } else if (typeToken == "PREDICTIVE") {
541 type = KEYBOARD_TYPE_PREDICTIVE;
542 } else if (typeToken == "ALPHA") {
543 type = KEYBOARD_TYPE_ALPHA;
544 } else if (typeToken == "FULL") {
545 type = KEYBOARD_TYPE_FULL;
546 } else if (typeToken == "SPECIAL_FUNCTION") {
547 type = KEYBOARD_TYPE_SPECIAL_FUNCTION;
548 } else {
549 LOGE("%s: Expected keyboard type label, got '%s'.", mTokenizer->getLocation().string(),
550 typeToken.string());
551 return BAD_VALUE;
552 }
553
554#if DEBUG_PARSER
555 LOGD("Parsed type: type=%d.", type);
556#endif
557 mMap->mType = type;
558 return NO_ERROR;
559}
560
561status_t KeyCharacterMap::Parser::parseKey() {
562 String8 keyCodeToken = mTokenizer->nextToken(WHITESPACE);
563 int32_t keyCode = getKeyCodeByLabel(keyCodeToken.string());
564 if (!keyCode) {
565 LOGE("%s: Expected key code label, got '%s'.", mTokenizer->getLocation().string(),
566 keyCodeToken.string());
567 return BAD_VALUE;
568 }
569 if (mMap->mKeys.indexOfKey(keyCode) >= 0) {
570 LOGE("%s: Duplicate entry for key code '%s'.", mTokenizer->getLocation().string(),
571 keyCodeToken.string());
572 return BAD_VALUE;
573 }
574
575 mTokenizer->skipDelimiters(WHITESPACE);
576 String8 openBraceToken = mTokenizer->nextToken(WHITESPACE);
577 if (openBraceToken != "{") {
578 LOGE("%s: Expected '{' after key code label, got '%s'.",
579 mTokenizer->getLocation().string(), openBraceToken.string());
580 return BAD_VALUE;
581 }
582
583#if DEBUG_PARSER
584 LOGD("Parsed beginning of key: keyCode=%d.", keyCode);
585#endif
586 mKeyCode = keyCode;
587 mMap->mKeys.add(keyCode, new Key());
588 mState = STATE_KEY;
589 return NO_ERROR;
590}
591
592status_t KeyCharacterMap::Parser::parseKeyProperty() {
593 String8 token = mTokenizer->nextToken(WHITESPACE_OR_PROPERTY_DELIMITER);
594 if (token == "}") {
595 mState = STATE_TOP;
596 return NO_ERROR;
597 }
598
599 Vector<Property> properties;
600
601 // Parse all comma-delimited property names up to the first colon.
602 for (;;) {
603 if (token == "label") {
604 properties.add(Property(PROPERTY_LABEL));
605 } else if (token == "number") {
606 properties.add(Property(PROPERTY_NUMBER));
607 } else {
608 int32_t metaState;
609 status_t status = parseModifier(token, &metaState);
610 if (status) {
611 LOGE("%s: Expected a property name or modifier, got '%s'.",
612 mTokenizer->getLocation().string(), token.string());
613 return status;
614 }
615 properties.add(Property(PROPERTY_META, metaState));
616 }
617
618 mTokenizer->skipDelimiters(WHITESPACE);
619 if (!mTokenizer->isEol()) {
620 char ch = mTokenizer->nextChar();
621 if (ch == ':') {
622 break;
623 } else if (ch == ',') {
624 mTokenizer->skipDelimiters(WHITESPACE);
625 token = mTokenizer->nextToken(WHITESPACE_OR_PROPERTY_DELIMITER);
626 continue;
627 }
628 }
629
630 LOGE("%s: Expected ',' or ':' after property name.",
631 mTokenizer->getLocation().string());
632 return BAD_VALUE;
633 }
634
635 // Parse behavior after the colon.
636 mTokenizer->skipDelimiters(WHITESPACE);
637
638 Behavior behavior;
639 bool haveCharacter = false;
640 bool haveFallback = false;
641
642 do {
643 char ch = mTokenizer->peekChar();
644 if (ch == '\'') {
645 char16_t character;
646 status_t status = parseCharacterLiteral(&character);
647 if (status || !character) {
648 LOGE("%s: Invalid character literal for key.",
649 mTokenizer->getLocation().string());
650 return BAD_VALUE;
651 }
652 if (haveCharacter) {
653 LOGE("%s: Cannot combine multiple character literals or 'none'.",
654 mTokenizer->getLocation().string());
655 return BAD_VALUE;
656 }
657 behavior.character = character;
658 haveCharacter = true;
659 } else {
660 token = mTokenizer->nextToken(WHITESPACE);
661 if (token == "none") {
662 if (haveCharacter) {
663 LOGE("%s: Cannot combine multiple character literals or 'none'.",
664 mTokenizer->getLocation().string());
665 return BAD_VALUE;
666 }
667 haveCharacter = true;
668 } else if (token == "fallback") {
669 mTokenizer->skipDelimiters(WHITESPACE);
670 token = mTokenizer->nextToken(WHITESPACE);
671 int32_t keyCode = getKeyCodeByLabel(token.string());
672 if (!keyCode) {
673 LOGE("%s: Invalid key code label for fallback behavior, got '%s'.",
674 mTokenizer->getLocation().string(),
675 token.string());
676 return BAD_VALUE;
677 }
678 if (haveFallback) {
679 LOGE("%s: Cannot combine multiple fallback key codes.",
680 mTokenizer->getLocation().string());
681 return BAD_VALUE;
682 }
683 behavior.fallbackKeyCode = keyCode;
684 haveFallback = true;
685 } else {
686 LOGE("%s: Expected a key behavior after ':'.",
687 mTokenizer->getLocation().string());
688 return BAD_VALUE;
689 }
690 }
691
692 mTokenizer->skipDelimiters(WHITESPACE);
693 } while (!mTokenizer->isEol());
694
695 // Add the behavior.
696 Key* key = mMap->mKeys.valueFor(mKeyCode);
697 for (size_t i = 0; i < properties.size(); i++) {
698 const Property& property = properties.itemAt(i);
699 switch (property.property) {
700 case PROPERTY_LABEL:
701 if (key->label) {
702 LOGE("%s: Duplicate label for key.",
703 mTokenizer->getLocation().string());
704 return BAD_VALUE;
705 }
706 key->label = behavior.character;
707#if DEBUG_PARSER
708 LOGD("Parsed key label: keyCode=%d, label=%d.", mKeyCode, key->label);
709#endif
710 break;
711 case PROPERTY_NUMBER:
712 if (key->number) {
713 LOGE("%s: Duplicate number for key.",
714 mTokenizer->getLocation().string());
715 return BAD_VALUE;
716 }
717 key->number = behavior.character;
718#if DEBUG_PARSER
719 LOGD("Parsed key number: keyCode=%d, number=%d.", mKeyCode, key->number);
720#endif
721 break;
722 case PROPERTY_META: {
723 for (Behavior* b = key->firstBehavior; b; b = b->next) {
724 if (b->metaState == property.metaState) {
725 LOGE("%s: Duplicate key behavior for modifier.",
726 mTokenizer->getLocation().string());
727 return BAD_VALUE;
728 }
729 }
730 Behavior* newBehavior = new Behavior(behavior);
731 newBehavior->metaState = property.metaState;
732 newBehavior->next = key->firstBehavior;
733 key->firstBehavior = newBehavior;
734#if DEBUG_PARSER
735 LOGD("Parsed key meta: keyCode=%d, meta=0x%x, char=%d, fallback=%d.", mKeyCode,
736 newBehavior->metaState, newBehavior->character, newBehavior->fallbackKeyCode);
737#endif
738 break;
739 }
740 }
741 }
742 return NO_ERROR;
743}
744
745status_t KeyCharacterMap::Parser::parseModifier(const String8& token, int32_t* outMetaState) {
746 if (token == "base") {
747 *outMetaState = 0;
748 return NO_ERROR;
749 }
750
751 int32_t combinedMeta = 0;
752
753 const char* str = token.string();
754 const char* start = str;
755 for (const char* cur = str; ; cur++) {
756 char ch = *cur;
757 if (ch == '+' || ch == '\0') {
758 size_t len = cur - start;
759 int32_t metaState = 0;
760 for (size_t i = 0; i < sizeof(modifiers) / sizeof(Modifier); i++) {
761 if (strlen(modifiers[i].label) == len
762 && strncmp(modifiers[i].label, start, len) == 0) {
763 metaState = modifiers[i].metaState;
764 break;
765 }
766 }
767 if (!metaState) {
768 return BAD_VALUE;
769 }
770 if (combinedMeta & metaState) {
771 LOGE("%s: Duplicate modifier combination '%s'.",
772 mTokenizer->getLocation().string(), token.string());
773 return BAD_VALUE;
774 }
775
776 combinedMeta |= metaState;
Jeff Brown061cf752010-11-18 20:52:43 -0800777 start = cur + 1;
Jeff Brown6b53e8d2010-11-10 16:03:06 -0800778
779 if (ch == '\0') {
780 break;
781 }
782 }
783 }
784 *outMetaState = combinedMeta;
785 return NO_ERROR;
786}
787
788status_t KeyCharacterMap::Parser::parseCharacterLiteral(char16_t* outCharacter) {
789 char ch = mTokenizer->nextChar();
790 if (ch != '\'') {
791 goto Error;
792 }
793
794 ch = mTokenizer->nextChar();
795 if (ch == '\\') {
796 // Escape sequence.
797 ch = mTokenizer->nextChar();
798 if (ch == 'n') {
799 *outCharacter = '\n';
800 } else if (ch == 't') {
801 *outCharacter = '\t';
802 } else if (ch == '\\') {
803 *outCharacter = '\\';
804 } else if (ch == '\'') {
805 *outCharacter = '\'';
806 } else if (ch == '"') {
807 *outCharacter = '"';
808 } else if (ch == 'u') {
809 *outCharacter = 0;
810 for (int i = 0; i < 4; i++) {
811 ch = mTokenizer->nextChar();
812 int digit;
813 if (ch >= '0' && ch <= '9') {
814 digit = ch - '0';
815 } else if (ch >= 'A' && ch <= 'F') {
816 digit = ch - 'A' + 10;
817 } else if (ch >= 'a' && ch <= 'f') {
818 digit = ch - 'a' + 10;
819 } else {
820 goto Error;
821 }
822 *outCharacter = (*outCharacter << 4) | digit;
823 }
824 } else {
825 goto Error;
826 }
827 } else if (ch >= 32 && ch <= 126 && ch != '\'') {
828 // ASCII literal character.
829 *outCharacter = ch;
830 } else {
831 goto Error;
832 }
833
834 ch = mTokenizer->nextChar();
835 if (ch != '\'') {
836 goto Error;
837 }
838
839 // Ensure that we consumed the entire token.
840 if (mTokenizer->nextToken(WHITESPACE).isEmpty()) {
841 return NO_ERROR;
842 }
843
844Error:
845 LOGE("%s: Malformed character literal.", mTokenizer->getLocation().string());
846 return BAD_VALUE;
847}
848
849} // namespace android