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1 /*
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 
17 #define LOG_TAG "KeyCharacterMap"
18 
19 #include <stdlib.h>
20 #include <string.h>
21 #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>
28 
29 // 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 
39 namespace android {
40 
41 static const char* WHITESPACE = " \t\r";
42 static const char* WHITESPACE_OR_PROPERTY_DELIMITER = " \t\r,:";
43 
44 struct Modifier {
45     const char* label;
46     int32_t metaState;
47 };
48 static 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 },
66 };
67 
68 #if DEBUG_MAPPING
toString(const char16_t * chars,size_t numChars)69 static 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]);
73     }
74     return result;
75 }
76 #endif
77 
78 
79 // --- KeyCharacterMap ---
80 
KeyCharacterMap()81 KeyCharacterMap::KeyCharacterMap() :
82     mType(KEYBOARD_TYPE_UNKNOWN) {
83 }
84 
~KeyCharacterMap()85 KeyCharacterMap::~KeyCharacterMap() {
86     for (size_t i = 0; i < mKeys.size(); i++) {
87         Key* key = mKeys.editValueAt(i);
88         delete key;
89     }
90 }
91 
load(const String8 & filename,KeyCharacterMap ** outMap)92 status_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 
loadByDeviceId(int32_t deviceId,KeyCharacterMap ** outMap)127 status_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 
getKeyboardType() const138 int32_t KeyCharacterMap::getKeyboardType() const {
139     return mType;
140 }
141 
getDisplayLabel(int32_t keyCode) const142 char16_t KeyCharacterMap::getDisplayLabel(int32_t keyCode) const {
143     char16_t result = 0;
144     const Key* key;
145     if (getKey(keyCode, &key)) {
146         result = key->label;
147     }
148 #if DEBUG_MAPPING
149     LOGD("getDisplayLabel: keyCode=%d ~ Result %d.", keyCode, result);
150 #endif
151     return result;
152 }
153 
getNumber(int32_t keyCode) const154 char16_t KeyCharacterMap::getNumber(int32_t keyCode) const {
155     char16_t result = 0;
156     const Key* key;
157     if (getKey(keyCode, &key)) {
158         result = key->number;
159     }
160 #if DEBUG_MAPPING
161     LOGD("getNumber: keyCode=%d ~ Result %d.", keyCode, result);
162 #endif
163     return result;
164 }
165 
getCharacter(int32_t keyCode,int32_t metaState) const166 char16_t KeyCharacterMap::getCharacter(int32_t keyCode, int32_t metaState) const {
167     char16_t result = 0;
168     const Key* key;
169     const Behavior* behavior;
170     if (getKeyBehavior(keyCode, metaState, &key, &behavior)) {
171         result = behavior->character;
172     }
173 #if DEBUG_MAPPING
174     LOGD("getCharacter: keyCode=%d, metaState=0x%08x ~ Result %d.", keyCode, metaState, result);
175 #endif
176     return result;
177 }
178 
getFallbackAction(int32_t keyCode,int32_t metaState,FallbackAction * outFallbackAction) const179 bool 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)) {
188         if (behavior->fallbackKeyCode) {
189             outFallbackAction->keyCode = behavior->fallbackKeyCode;
190             outFallbackAction->metaState = metaState & ~behavior->metaState;
191             result = true;
192         }
193     }
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 
getMatch(int32_t keyCode,const char16_t * chars,size_t numChars,int32_t metaState) const203 char16_t KeyCharacterMap::getMatch(int32_t keyCode, const char16_t* chars, size_t numChars,
204         int32_t metaState) const {
205     char16_t result = 0;
206     const Key* key;
207     if (getKey(keyCode, &key)) {
208         // 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;
220                     }
221                 }
222             }
223         }
224     ExactMatch: ;
225     }
226 #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;
231 }
232 
getEvents(int32_t deviceId,const char16_t * chars,size_t numChars,Vector<KeyEvent> & outEvents) const233 bool 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);
253     }
254 #if DEBUG_MAPPING
255     LOGD("getEvents: deviceId=%d, chars=[%s] ~ Generated %d events.",
256             deviceId, toString(chars, numChars).string(), int32_t(outEvents.size()));
257     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;
264 }
265 
getKey(int32_t keyCode,const Key ** outKey) const266 bool 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 
getKeyBehavior(int32_t keyCode,int32_t metaState,const Key ** outKey,const Behavior ** outBehavior) const275 bool 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 
findKey(char16_t ch,int32_t * outKeyCode,int32_t * outMetaState) const292 bool KeyCharacterMap::findKey(char16_t ch, int32_t* outKeyCode, int32_t* outMetaState) const {
293     if (!ch) {
294         return false;
295     }
296 
297     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;
306             }
307         }
308         if (found) {
309             *outKeyCode = mKeys.keyAt(i);
310             *outMetaState = found->metaState;
311             return true;
312         }
313     }
314     return false;
315 }
316 
addKey(Vector<KeyEvent> & outEvents,int32_t deviceId,int32_t keyCode,int32_t metaState,bool down,nsecs_t time)317 void 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);
324 }
325 
addMetaKeys(Vector<KeyEvent> & outEvents,int32_t deviceId,int32_t metaState,bool down,nsecs_t time,int32_t * currentMetaState)326 void 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);
337 
338         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);
354 
355         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);
359     } else {
360         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);
364 
365         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);
381 
382         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     }
389 }
390 
addSingleEphemeralMetaKey(Vector<KeyEvent> & outEvents,int32_t deviceId,int32_t metaState,bool down,nsecs_t time,int32_t keyCode,int32_t keyMetaState,int32_t * currentMetaState)391 bool 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;
399     }
400     return false;
401 }
402 
addDoubleEphemeralMetaKey(Vector<KeyEvent> & outEvents,int32_t deviceId,int32_t metaState,bool down,nsecs_t time,int32_t leftKeyCode,int32_t leftKeyMetaState,int32_t rightKeyCode,int32_t rightKeyMetaState,int32_t eitherKeyMetaState,int32_t * currentMetaState)403 void 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 
addLockedMetaKey(Vector<KeyEvent> & outEvents,int32_t deviceId,int32_t metaState,nsecs_t time,int32_t keyCode,int32_t keyMetaState,int32_t * currentMetaState)421 void 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 
Key()436 KeyCharacterMap::Key::Key() :
437         label(0), number(0), firstBehavior(NULL) {
438 }
439 
~Key()440 KeyCharacterMap::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 
Behavior()452 KeyCharacterMap::Behavior::Behavior() :
453         next(NULL), metaState(0), character(0), fallbackKeyCode(0) {
454 }
455 
456 
457 // --- KeyCharacterMap::Parser ---
458 
Parser(KeyCharacterMap * map,Tokenizer * tokenizer)459 KeyCharacterMap::Parser::Parser(KeyCharacterMap* map, Tokenizer* tokenizer) :
460         mMap(map), mTokenizer(tokenizer), mState(STATE_TOP) {
461 }
462 
~Parser()463 KeyCharacterMap::Parser::~Parser() {
464 }
465 
parse()466 status_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 
parseType()529 status_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 
parseKey()561 status_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 
parseKeyProperty()592 status_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 
parseModifier(const String8 & token,int32_t * outMetaState)745 status_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;
777             start = cur + 1;
778 
779             if (ch == '\0') {
780                 break;
781             }
782         }
783     }
784     *outMetaState = combinedMeta;
785     return NO_ERROR;
786 }
787 
parseCharacterLiteral(char16_t * outCharacter)788 status_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 
844 Error:
845     LOGE("%s: Malformed character literal.", mTokenizer->getLocation().string());
846     return BAD_VALUE;
847 }
848 
849 } // namespace android
850