44
|
1 |
/*
|
|
2 |
* Copyright (c) 2002-2004 Nokia Corporation and/or its subsidiary(-ies).
|
|
3 |
* All rights reserved.
|
|
4 |
* This component and the accompanying materials are made available
|
|
5 |
* under the terms of "Eclipse Public License v1.0""
|
|
6 |
* which accompanies this distribution, and is available
|
|
7 |
* at the URL "http://www.eclipse.org/legal/epl-v10.html".
|
|
8 |
*
|
|
9 |
* Initial Contributors:
|
|
10 |
* Nokia Corporation - initial contribution.
|
|
11 |
*
|
|
12 |
* Contributors:
|
|
13 |
*
|
|
14 |
* Description: Provides the TAknFepInputStateInitialIndicMultitap methods.
|
|
15 |
*
|
|
16 |
*/
|
|
17 |
|
|
18 |
|
|
19 |
|
|
20 |
|
|
21 |
|
|
22 |
|
|
23 |
|
|
24 |
|
|
25 |
|
|
26 |
|
|
27 |
|
|
28 |
#include "AknFepUIInputStateInitialIndicMultitap.h"
|
|
29 |
#include "AknFepUIManagerStateInterface.h" //MAknFepUIManagerStateInterface
|
|
30 |
#include "AknFepUiManagerWestern.h"
|
|
31 |
#include "AknFepUiIndicEnums.h"
|
|
32 |
#include "AknFepCaseManager.h"
|
|
33 |
#include "AknFepUiIndicInputManager.h"
|
|
34 |
|
|
35 |
#include <uikon.hrh>
|
|
36 |
#include <PtiEngine.h>
|
|
37 |
#include <PtiDefs.h>
|
|
38 |
#include <aknSctDialog.h>
|
|
39 |
#include <avkon.rsg>
|
|
40 |
#include <aknfep.rsg>
|
|
41 |
#include <eikenv.h>
|
|
42 |
|
|
43 |
#define PTI_CLEAR_CURRENTWORD( A, B ) \
|
|
44 |
( A )->ClearCurrentWord(); \
|
|
45 |
( B ) = ETrue; \
|
|
46 |
|
|
47 |
|
|
48 |
// -----------------------------------------------------------------------------
|
|
49 |
// TAknFepInputStateInitialIndicMultitap::TAknFepInputStateInitialIndicMultitap
|
|
50 |
|
|
51 |
// C++ default constructor can NOT contain any code, that
|
|
52 |
// might leave or if it is absolutely necessary then MUST be trapped.
|
|
53 |
// -----------------------------------------------------------------------------
|
|
54 |
|
|
55 |
TAknFepInputStateInitialIndicMultitap::
|
|
56 |
TAknFepInputStateInitialIndicMultitap( MAknFepUIManagerStateInterface* aOwner,
|
|
57 |
TLanguage aLanguage )
|
|
58 |
:TAknFepInputStateInitialMultitapBase( aOwner )
|
|
59 |
{
|
|
60 |
CPtiEngine* ptiengine = iOwner->PtiEngine();
|
|
61 |
iIsStarKeyPressed = EFalse;
|
|
62 |
iIsKeyTimerExpired = ETrue;
|
|
63 |
iIndicLanguage = aLanguage;
|
|
64 |
iIsHalantAllowed = EFalse;
|
|
65 |
iZWSPresent = EFalse;
|
|
66 |
iRephaPresent = EFalse;
|
|
67 |
iRakarPresent = EFalse;
|
|
68 |
iResponseInsertZWS = EFalse;
|
|
69 |
iLigaturePresent = EFalse;
|
|
70 |
#ifdef RD_MARATHI
|
|
71 |
iPreviousCommittedChar = 0;
|
|
72 |
iEyeLashRaPresent = EFalse;
|
|
73 |
iChandraAPresent = EFalse;
|
|
74 |
#endif // RD_MARATHI
|
|
75 |
TRAP_IGNORE( ptiengine->ActivateLanguageL( aLanguage ) )
|
|
76 |
ptiengine->SetCase( EPtiCaseLower );
|
|
77 |
}
|
|
78 |
|
|
79 |
// -----------------------------------------------------------------------------
|
|
80 |
// TAknFepInputStateInitialIndicMultitap::HandleKeyL
|
|
81 |
|
|
82 |
// Handles the logic of Indic multitap input. This function first checks the validity
|
|
83 |
// of the inputed text and then enters it.
|
|
84 |
// -----------------------------------------------------------------------------
|
|
85 |
|
|
86 |
TBool TAknFepInputStateInitialIndicMultitap::HandleKeyL( TInt aKey, TKeyPressLength aLength )
|
|
87 |
{
|
|
88 |
TBool result = ETrue;
|
|
89 |
MAknFepManagerUIInterface* fepMan = iOwner->FepMan();
|
|
90 |
CPtiEngine* ptiengine = iOwner->PtiEngine();
|
|
91 |
|
|
92 |
#ifdef RD_MARATHI
|
|
93 |
if( iIsKeyTimerExpired )
|
|
94 |
{
|
|
95 |
iPreviousCommittedChar = fepMan->PreviousChar( ETrue );
|
|
96 |
|
|
97 |
if( iIndicLanguage == ELangMarathi )
|
|
98 |
{
|
|
99 |
HandleKeyMarathiL();
|
|
100 |
}
|
|
101 |
}
|
|
102 |
#endif // RD_MARATHI
|
|
103 |
|
|
104 |
if(aKey == EPtiKey1)
|
|
105 |
{
|
|
106 |
iKey1Pressed = ETrue;
|
|
107 |
}
|
|
108 |
else
|
|
109 |
{
|
|
110 |
iKey1Pressed = EFalse;
|
|
111 |
}
|
|
112 |
if ( iData && ( iData != aKey ) )
|
|
113 |
{
|
|
114 |
#ifdef RD_MARATHI
|
|
115 |
iPreviousCommittedChar = fepMan->PreviousChar( ETrue );
|
|
116 |
|
|
117 |
if( iPreviousCommittedChar == ZERO_WIDTH_SPACE &&
|
|
118 |
aKey == EPtiKey2 )
|
|
119 |
{
|
|
120 |
// This is a scenario where the timer is forcefully
|
|
121 |
// expired by quickly pressing a different key.
|
|
122 |
// Should remove the ZWS from the editor.
|
|
123 |
fepMan->RemovePreviousCharacterL();
|
|
124 |
iZWSPresent = EFalse;
|
|
125 |
|
|
126 |
// Reset the previous committed character.
|
|
127 |
iPreviousCommittedChar = fepMan->PreviousChar( ETrue );
|
|
128 |
}
|
|
129 |
|
|
130 |
if( iIndicLanguage == ELangMarathi )
|
|
131 |
{
|
|
132 |
HandleKeyMarathiL();
|
|
133 |
}
|
|
134 |
#endif // RD_MARATHI
|
|
135 |
|
|
136 |
fepMan->CommitInlineEditL();
|
|
137 |
PTI_CLEAR_CURRENTWORD( ptiengine, iIsKeyTimerExpired )
|
|
138 |
|
|
139 |
if( iRephaPresent )
|
|
140 |
{
|
|
141 |
fepMan->AlignLogicalAndVisualCursorL( TTmDocPosSpec::ELeading, EFalse );
|
|
142 |
iRephaPresent = EFalse;
|
|
143 |
}
|
|
144 |
if( iRakarPresent )
|
|
145 |
{
|
|
146 |
iRakarPresent = EFalse;
|
|
147 |
}
|
|
148 |
|
|
149 |
#ifdef RD_MARATHI
|
|
150 |
// This check should be done only after the text is committed.
|
|
151 |
if( iEyeLashRaPresent )
|
|
152 |
{
|
|
153 |
// Calls the overloaded method which used find doc pos.
|
|
154 |
// Reason: Unlike Repha, EyeLash Ra can be inserted in
|
|
155 |
// an empty editor. GetNextVisualCursorPosition would
|
|
156 |
// result in incorrect cursor alignment in this case.
|
|
157 |
fepMan->AlignLogicalAndVisualCursorL();
|
|
158 |
iEyeLashRaPresent = EFalse;
|
|
159 |
}
|
|
160 |
#endif
|
|
161 |
|
|
162 |
}
|
|
163 |
|
|
164 |
if ( aLength == EShortKeyPress )
|
|
165 |
{
|
|
166 |
if ( aKey == EPtiKeyStar ) // Overriding Key
|
|
167 |
{
|
|
168 |
iIsStarKeyPressed = ETrue;
|
|
169 |
fepMan->RemoveZWSCharacterL( iKey1Pressed, EFalse, EFalse, iLigaturePresent );
|
|
170 |
}
|
|
171 |
else
|
|
172 |
{
|
|
173 |
TPtiTextCase newCase = ptiengine->Case();
|
|
174 |
|
|
175 |
TIndicInputResponse keyResponse =
|
|
176 |
TAknFepUiIndicInputManager::ValidateInput( aKey,
|
|
177 |
fepMan->PreviousChar( ETrue ),
|
|
178 |
NULL,NULL,
|
|
179 |
iIsHalantAllowed,
|
|
180 |
iIsStarKeyPressed,
|
|
181 |
iIsKeyTimerExpired,
|
|
182 |
newCase,
|
|
183 |
aLength,
|
|
184 |
iIndicLanguage
|
|
185 |
#ifdef RD_MARATHI
|
|
186 |
, EFalse, EFalse, iChandraAPresent
|
|
187 |
|
|
188 |
#endif // RD_MARATHI
|
|
189 |
);
|
|
190 |
|
|
191 |
ptiengine->SetCase( newCase );
|
|
192 |
TPtrC ptiText = ptiengine->AppendKeyPress( ( TPtiKey )aKey );
|
|
193 |
|
|
194 |
if ( ptiText.Length() )
|
|
195 |
{
|
|
196 |
do
|
|
197 |
{
|
|
198 |
TText prChar;
|
|
199 |
// For Repha, use the Previous to Previous character
|
|
200 |
// only if multitap timer hasn't expired. This will
|
|
201 |
// handle cases like Matra attached to the consonant.
|
|
202 |
// Here, repha is not allowed and the character to
|
|
203 |
// to checked is Matra. In cases like a consonant with
|
|
204 |
// Virama, all the characters should be skipped including
|
|
205 |
// repha. In this this case the timer is set to expired.
|
|
206 |
// So the previous character is Virama. And as per the
|
|
207 |
// language rules, repha is not allowed after Virama.
|
|
208 |
if( TAknFepUiIndicInputManager::IsCharRepha(
|
|
209 |
ptiText[0], iIndicLanguage ) && !iIsKeyTimerExpired )
|
|
210 |
{
|
|
211 |
prChar = fepMan->PreviousToPreviousChar( ETrue );
|
|
212 |
#ifdef RD_MARATHI
|
|
213 |
prChar = iPreviousCommittedChar;
|
|
214 |
#endif // RD_MARATHI
|
|
215 |
}
|
|
216 |
else
|
|
217 |
{
|
|
218 |
prChar = fepMan->PreviousChar( ETrue );
|
|
219 |
}
|
|
220 |
|
|
221 |
// When a base consonant is already entered and the
|
|
222 |
// user starts multitapping, the second modifier in the
|
|
223 |
// key map will not be allowed if the previous character
|
|
224 |
// is considered. The base consonant has to be used
|
|
225 |
// instead. This change had to be added after the new
|
|
226 |
// function, IsModifierAllowed was added.
|
|
227 |
if( TAknFepUiIndicInputManager::IsCharModifier(
|
|
228 |
ptiText[0], iIndicLanguage ) && !iIsKeyTimerExpired )
|
|
229 |
{
|
|
230 |
prChar = fepMan->PreviousToPreviousChar( ETrue );
|
|
231 |
}
|
|
232 |
|
|
233 |
if( TAknFepUiIndicInputManager::IsCharLigature(
|
|
234 |
ptiText[0], iIndicLanguage ) && !iIsKeyTimerExpired )
|
|
235 |
{
|
|
236 |
if( fepMan->IsZWSCharacterPresent( ETrue ) )
|
|
237 |
{
|
|
238 |
iZWSPresent = ETrue;
|
|
239 |
}
|
|
240 |
iLigaturePresent = ETrue;
|
|
241 |
prChar = fepMan->PreviousToPreviousChar( ETrue );
|
|
242 |
}
|
|
243 |
else
|
|
244 |
{
|
|
245 |
iLigaturePresent = EFalse;
|
|
246 |
}
|
|
247 |
|
|
248 |
#ifdef RD_MARATHI
|
|
249 |
|
|
250 |
// While multitapping after inserting a base consonant,
|
|
251 |
// modifiers will get inserted first, followed by the
|
|
252 |
// Nukta character. Hence, use Prev to prev char which
|
|
253 |
// will be a base consonant.
|
|
254 |
if( TAknFepUiIndicInputManager::IsCharNukta(
|
|
255 |
ptiText[0], iIndicLanguage ) && !iIsKeyTimerExpired )
|
|
256 |
{
|
|
257 |
prChar = fepMan->PreviousToPreviousChar( ETrue );
|
|
258 |
}
|
|
259 |
#endif // RD_MARATHI
|
|
260 |
|
|
261 |
keyResponse =
|
|
262 |
TAknFepUiIndicInputManager::ValidateInput( aKey,
|
|
263 |
prChar,
|
|
264 |
ptiText[0],
|
|
265 |
NULL,
|
|
266 |
iIsHalantAllowed,
|
|
267 |
iIsStarKeyPressed,
|
|
268 |
iIsKeyTimerExpired,
|
|
269 |
newCase,
|
|
270 |
aLength,
|
|
271 |
iIndicLanguage,
|
|
272 |
iRakarPresent,
|
|
273 |
iZWSPresent
|
|
274 |
#ifdef RD_MARATHI
|
|
275 |
, iChandraAPresent
|
|
276 |
#endif // RD_MARATHI
|
|
277 |
);
|
|
278 |
|
|
279 |
if( !IsFreeSpaceAvailable( keyResponse ) )
|
|
280 |
{
|
|
281 |
keyResponse = EIndicInputResponseInvalid;
|
|
282 |
}
|
|
283 |
|
|
284 |
if( keyResponse == EIndicInputResponseInvalid )
|
|
285 |
{
|
|
286 |
ptiText.Set( ptiengine->AppendKeyPress( ( TPtiKey )aKey ) );
|
|
287 |
}
|
|
288 |
|
|
289 |
if( !ptiText.Length() )
|
|
290 |
{
|
|
291 |
break;
|
|
292 |
}
|
|
293 |
|
|
294 |
}while( keyResponse == EIndicInputResponseInvalid );
|
|
295 |
|
|
296 |
if( iIsStarKeyPressed &&
|
|
297 |
aKey == EPtiKey0 &&
|
|
298 |
TAknFepUiIndicInputManager::IsCharOther(
|
|
299 |
ptiText[0], iIndicLanguage ) )
|
|
300 |
{
|
|
301 |
// Forcefully keep the star key flag to true. Else when
|
|
302 |
// the ligatures are entered, this flag will be false
|
|
303 |
// thus preventing the ligature formation.
|
|
304 |
iIsStarKeyPressed = ETrue;
|
|
305 |
}
|
|
306 |
else
|
|
307 |
{
|
|
308 |
iIsStarKeyPressed = EFalse;
|
|
309 |
}
|
|
310 |
|
|
311 |
result = HandleIndicKeyResponseL( aKey, keyResponse, ptiText );
|
|
312 |
}
|
|
313 |
}
|
|
314 |
}
|
|
315 |
else
|
|
316 |
{
|
|
317 |
/* Long press of a Key */
|
|
318 |
if ( aKey == EPtiKeyStar )
|
|
319 |
{
|
|
320 |
/* Launch the SCT For Indic */
|
|
321 |
if( fepMan->EditorHasFreeSpace() )
|
|
322 |
{
|
|
323 |
if (fepMan->IsAbleToLaunchSCT() && !fepMan->EditSubmenuInUse())
|
|
324 |
{
|
|
325 |
fepMan->LaunchSpecialCharacterTableL();
|
|
326 |
}
|
|
327 |
}
|
|
328 |
}
|
|
329 |
else
|
|
330 |
{
|
|
331 |
TUint prevchar = fepMan->PreviousChar(ETrue);
|
|
332 |
if(!((aKey == EPtiKey1) && ((0x0031 == prevchar) || (0x0967 == prevchar)) ))
|
|
333 |
{
|
|
334 |
TChar ch( aKey );
|
|
335 |
TBuf<1> buf;
|
|
336 |
buf.Append( ch );
|
|
337 |
fepMan->NewCharacterSequenceL( buf, EIndicInputResponseNumber );
|
|
338 |
fepMan->CommitInlineEditL();
|
|
339 |
PTI_CLEAR_CURRENTWORD( ptiengine, iIsKeyTimerExpired )
|
|
340 |
}
|
|
341 |
}
|
|
342 |
}
|
|
343 |
iData = aKey;
|
|
344 |
return( result );
|
|
345 |
}
|
|
346 |
|
|
347 |
// -----------------------------------------------------------------------------
|
|
348 |
// TAknFepInputStateInitialIndicMultitap::KeyTimerExpired
|
|
349 |
|
|
350 |
// Handles the logic of post keytimerexpired event. This function commits
|
|
351 |
// the inline editing text to the editor.
|
|
352 |
// -----------------------------------------------------------------------------
|
|
353 |
|
|
354 |
void TAknFepInputStateInitialIndicMultitap::KeyTimerExpired()
|
|
355 |
{
|
|
356 |
iIsKeyTimerExpired = ETrue;
|
|
357 |
|
|
358 |
if( iRakarPresent )
|
|
359 |
{
|
|
360 |
iRakarPresent = EFalse;
|
|
361 |
}
|
|
362 |
|
|
363 |
if( iRephaPresent
|
|
364 |
#ifdef RD_MARATHI
|
|
365 |
|| ( iEyeLashRaPresent &&
|
|
366 |
TAknFepUiIndicInputManager::
|
|
367 |
IsCharBaseConsonant( iOwner->FepMan()->NextChar(),
|
|
368 |
iIndicLanguage ) )
|
|
369 |
#endif // RD_MARATHI
|
|
370 |
)
|
|
371 |
{
|
|
372 |
TRAP_IGNORE( iOwner->FepMan()->AlignLogicalAndVisualCursorL( TTmDocPosSpec::ELeading, EFalse ) )
|
|
373 |
iRephaPresent = EFalse;
|
|
374 |
}
|
|
375 |
|
|
376 |
#ifdef RD_MARATHI
|
|
377 |
iEyeLashRaPresent = EFalse;
|
|
378 |
#endif // RD_MARATHI
|
|
379 |
|
|
380 |
if( iResponseInsertZWS || iZWSPresent )
|
|
381 |
{
|
|
382 |
iZWSPresent = EFalse;
|
|
383 |
iResponseInsertZWS = EFalse;
|
|
384 |
TRAP_IGNORE( iOwner->FepMan()->RemoveZWSCharacterL( iKey1Pressed, EFalse,
|
|
385 |
EFalse, iLigaturePresent ) )
|
|
386 |
}
|
|
387 |
iLigaturePresent = EFalse;
|
|
388 |
|
|
389 |
#ifdef RD_MARATHI
|
|
390 |
iChandraAPresent = EFalse;
|
|
391 |
#endif // RD_MARATHI
|
|
392 |
|
|
393 |
TAknFepInputStateInitialMultitapBase::KeyTimerExpired();
|
|
394 |
}
|
|
395 |
|
|
396 |
TBool TAknFepInputStateInitialIndicMultitap::
|
|
397 |
HandleIndicKeyResponseL( TInt aKey, TIndicInputResponse aKeyResponse, TPtrC aPtiText )
|
|
398 |
{
|
|
399 |
TBool result = ETrue;
|
|
400 |
MAknFepManagerUIInterface* fepMan = iOwner->FepMan();
|
|
401 |
|
|
402 |
switch( aKeyResponse )
|
|
403 |
{
|
|
404 |
case EIndicInputResponseNone:
|
|
405 |
{
|
|
406 |
if ( aPtiText.Length() && ( !iIsKeyTimerExpired || fepMan->EditorHasFreeSpace() ) )
|
|
407 |
{
|
|
408 |
if ( iIsKeyTimerExpired )
|
|
409 |
{
|
|
410 |
if ( iZWSPresent )
|
|
411 |
{
|
|
412 |
fepMan->RemoveZWSCharacterL( iKey1Pressed,EFalse,
|
|
413 |
TAknFepUiIndicInputManager::IsCharModifier(aPtiText[0], iIndicLanguage));
|
|
414 |
iZWSPresent = EFalse;
|
|
415 |
}
|
|
416 |
|
|
417 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseNone );
|
|
418 |
|
|
419 |
if ( fepMan->IsZWSCharacterPresent() )
|
|
420 |
{
|
|
421 |
iZWSPresent = ETrue;
|
|
422 |
}
|
|
423 |
}
|
|
424 |
else
|
|
425 |
{
|
|
426 |
if ( aKey == EPtiKey1 )
|
|
427 |
{
|
|
428 |
if( iRephaPresent )
|
|
429 |
{
|
|
430 |
fepMan->RemoveRephaCharacterL();
|
|
431 |
iRephaPresent = EFalse;
|
|
432 |
}
|
|
433 |
if( iZWSPresent )
|
|
434 |
{
|
|
435 |
fepMan->RemoveZWSCharacterL( iKey1Pressed, ETrue );
|
|
436 |
iZWSPresent = EFalse;
|
|
437 |
}
|
|
438 |
if( iRakarPresent )
|
|
439 |
{
|
|
440 |
// This is to handle the case when only
|
|
441 |
// two spaces are left in the editor.
|
|
442 |
fepMan->RemoveRakarCharacterL();
|
|
443 |
iRakarPresent = EFalse;
|
|
444 |
}
|
|
445 |
#ifdef RD_MARATHI
|
|
446 |
iEyeLashRaPresent = EFalse;
|
|
447 |
#endif // RD_MARATHI
|
|
448 |
}
|
|
449 |
else if( aKey == EPtiKey2 )
|
|
450 |
{
|
|
451 |
#ifdef RD_MARATHI
|
|
452 |
iChandraAPresent = EFalse;
|
|
453 |
#endif // RD_MARATHI
|
|
454 |
}
|
|
455 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseNone );
|
|
456 |
}
|
|
457 |
}
|
|
458 |
iIsKeyTimerExpired = EFalse;
|
|
459 |
}
|
|
460 |
break;
|
|
461 |
|
|
462 |
case EIndicInputResponseZWSandCharacter:
|
|
463 |
{
|
|
464 |
if( fepMan->EditorHasFreeSpace( 2 ) )
|
|
465 |
{
|
|
466 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseZWSandCharacter );
|
|
467 |
iZWSPresent = ETrue;
|
|
468 |
iIsKeyTimerExpired = EFalse;
|
|
469 |
}
|
|
470 |
}
|
|
471 |
break;
|
|
472 |
case EIndicInputResponseInsertZWS:
|
|
473 |
{
|
|
474 |
//Already in multitapping so we need to check wheather
|
|
475 |
//there is additional single space for ZWS
|
|
476 |
if( !iIsKeyTimerExpired || fepMan->EditorHasFreeSpace( 1 ) )
|
|
477 |
{
|
|
478 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertZWS );
|
|
479 |
|
|
480 |
// Using a seperate flag here. Cannot use the flag
|
|
481 |
// iZWSPresent. Consider the scenario:- User enters
|
|
482 |
// a consonant, then multitaps key-1 to insert halant.
|
|
483 |
// Now consider that we set the flag to ETrue.
|
|
484 |
// But before the key timer expires, key-5 is
|
|
485 |
// multitapped to insert another consonant.
|
|
486 |
// In this case the code flow will go to the case
|
|
487 |
// EIndicInputResponseNone. Here the condition,
|
|
488 |
// if ( iZWSPresent ) succeeds and ZWS is removed.
|
|
489 |
// This causes direct ligature formation. It should
|
|
490 |
// actually show the ligature formation after the timeout.
|
|
491 |
iResponseInsertZWS = ETrue;
|
|
492 |
}
|
|
493 |
else // Remove already entered Modifier "Visarga" if there is no space
|
|
494 |
{
|
|
495 |
fepMan->RemovePreviousCharacterL();
|
|
496 |
}
|
|
497 |
iIsKeyTimerExpired = EFalse;
|
|
498 |
}
|
|
499 |
break;
|
|
500 |
case EIndicInputResponseInsertZWSandLigature:
|
|
501 |
{
|
|
502 |
if( fepMan->EditorHasFreeSpace( 3 ) )
|
|
503 |
{
|
|
504 |
if ( iIsKeyTimerExpired )
|
|
505 |
{
|
|
506 |
fepMan->RemoveZWSCharacterL( iKey1Pressed );
|
|
507 |
}
|
|
508 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertZWSandLigature );
|
|
509 |
}
|
|
510 |
iIsKeyTimerExpired = EFalse;
|
|
511 |
iZWSPresent = ETrue;
|
|
512 |
}
|
|
513 |
break;
|
|
514 |
case EIndicInputResponseIgnore:
|
|
515 |
break;
|
|
516 |
|
|
517 |
case EIndicInputResponseInsertRepha:
|
|
518 |
{
|
|
519 |
if( !iIsKeyTimerExpired )
|
|
520 |
{
|
|
521 |
if( iRakarPresent )
|
|
522 |
{
|
|
523 |
fepMan->RemoveRakarCharacterL();
|
|
524 |
iRakarPresent = EFalse;
|
|
525 |
}
|
|
526 |
#ifdef RD_MARATHI
|
|
527 |
else if( iEyeLashRaPresent )
|
|
528 |
{
|
|
529 |
// Remove eye lash ra
|
|
530 |
TBuf<3>buf;
|
|
531 |
|
|
532 |
// Get the EyeLashRa string.
|
|
533 |
TAknFepUiIndicInputManager::
|
|
534 |
GetEyeLashRa( buf, iIndicLanguage );
|
|
535 |
|
|
536 |
fepMan->RemoveTextFromEditorL( buf.Length(), 0, ETrue );
|
|
537 |
iEyeLashRaPresent = EFalse;
|
|
538 |
}
|
|
539 |
#endif // RD_MARATHI
|
|
540 |
else if( TAknFepUiIndicInputManager::IsCharMatra(
|
|
541 |
fepMan->PreviousToPreviousChar( ETrue ), iIndicLanguage ) )
|
|
542 |
{
|
|
543 |
// Consider that a matra is applied to any base
|
|
544 |
// consonant and two nore spaces are left in the editor.
|
|
545 |
// On multitapping, user will get the first four modifiers.
|
|
546 |
// After that, rakar should be inserted which requires two
|
|
547 |
// spaces. But since the modifier is present, only one
|
|
548 |
// space is available. Here we need to free up the space
|
|
549 |
// by removing the previous character which is a modifier.
|
|
550 |
// For inserting repha, the existing inline text needs to
|
|
551 |
// be first committed and then removed.
|
|
552 |
|
|
553 |
fepMan->RemovePreviousCharacterL();
|
|
554 |
}
|
|
555 |
|
|
556 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertRepha );
|
|
557 |
iRephaPresent = ETrue;
|
|
558 |
}
|
|
559 |
}
|
|
560 |
break;
|
|
561 |
|
|
562 |
case EIndicInputResponseInsertRakar:
|
|
563 |
{
|
|
564 |
if( !iIsKeyTimerExpired )
|
|
565 |
{
|
|
566 |
// RemoveZWS is not invoked here as we are in inline
|
|
567 |
// editing state and we can as well overwrite the previous
|
|
568 |
// characters. Hence directly invoke NewCharacterSequenceL.
|
|
569 |
// Secondly, the flag iZWSPresent is not reset here since
|
|
570 |
// it will happen anyways after timeout.
|
|
571 |
|
|
572 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertRakar );
|
|
573 |
iRakarPresent = ETrue;
|
|
574 |
|
|
575 |
#ifdef RD_MARATHI
|
|
576 |
// This check assumes that Rakar comes after EyelashRa in
|
|
577 |
// Key map order.
|
|
578 |
iEyeLashRaPresent = EFalse;
|
|
579 |
#endif
|
|
580 |
}
|
|
581 |
}
|
|
582 |
break;
|
|
583 |
|
|
584 |
case EIndicInputResponseInsertDirectLigature:
|
|
585 |
{
|
|
586 |
if( !iIsKeyTimerExpired )
|
|
587 |
{
|
|
588 |
TBuf<3> ligature;
|
|
589 |
ligature.Zero();
|
|
590 |
TAknFepUiIndicInputManager::
|
|
591 |
GetLigature( ligature, aPtiText[0],
|
|
592 |
iIndicLanguage );
|
|
593 |
|
|
594 |
fepMan->NewCharacterSequenceL( ligature,
|
|
595 |
EIndicInputResponseInsertDirectLigature );
|
|
596 |
}
|
|
597 |
}
|
|
598 |
break;
|
|
599 |
|
|
600 |
case EIndicInputResponseInsertViramaZWSandDirectLigature:
|
|
601 |
{
|
|
602 |
if( fepMan->EditorHasFreeSpace( 5 ) )
|
|
603 |
{
|
|
604 |
if ( iIsKeyTimerExpired )
|
|
605 |
{
|
|
606 |
fepMan->RemoveZWSCharacterL( iKey1Pressed );
|
|
607 |
}
|
|
608 |
|
|
609 |
TBuf<3> ligature;
|
|
610 |
ligature.Zero();
|
|
611 |
TAknFepUiIndicInputManager::
|
|
612 |
GetLigature( ligature, aPtiText[0],
|
|
613 |
iIndicLanguage );
|
|
614 |
fepMan->NewCharacterSequenceL( ligature,
|
|
615 |
EIndicInputResponseInsertViramaZWSandDirectLigature );
|
|
616 |
}
|
|
617 |
iIsKeyTimerExpired = EFalse;
|
|
618 |
iZWSPresent = ETrue;
|
|
619 |
}
|
|
620 |
break;
|
|
621 |
|
|
622 |
case EIndicInputResponseZWSandDirectLigature:
|
|
623 |
{
|
|
624 |
if( fepMan->EditorHasFreeSpace( 4 ) )
|
|
625 |
{
|
|
626 |
TBuf<3> ligature;
|
|
627 |
ligature.Zero();
|
|
628 |
TAknFepUiIndicInputManager::
|
|
629 |
GetLigature( ligature, aPtiText[0],
|
|
630 |
iIndicLanguage );
|
|
631 |
|
|
632 |
fepMan->NewCharacterSequenceL( ligature,
|
|
633 |
EIndicInputResponseZWSandDirectLigature );
|
|
634 |
iZWSPresent = ETrue;
|
|
635 |
iIsKeyTimerExpired = EFalse;
|
|
636 |
}
|
|
637 |
}
|
|
638 |
break;
|
|
639 |
|
|
640 |
#ifdef RD_MARATHI
|
|
641 |
case EIndicInputResponseInsertEyeLashRa:
|
|
642 |
{
|
|
643 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertEyeLashRa );
|
|
644 |
iIsKeyTimerExpired = EFalse;
|
|
645 |
iEyeLashRaPresent = ETrue;
|
|
646 |
}
|
|
647 |
break;
|
|
648 |
|
|
649 |
case EIndicInputResponseInsertChandraA:
|
|
650 |
{
|
|
651 |
fepMan->NewCharacterSequenceL( aPtiText, EIndicInputResponseInsertChandraA );
|
|
652 |
iChandraAPresent = ETrue;
|
|
653 |
}
|
|
654 |
break;
|
|
655 |
#endif // RD_MARATHI
|
|
656 |
|
|
657 |
case EindicInputResponseLast:
|
|
658 |
break;
|
|
659 |
default:
|
|
660 |
{
|
|
661 |
}
|
|
662 |
break;
|
|
663 |
}
|
|
664 |
return result;
|
|
665 |
}
|
|
666 |
|
|
667 |
TBool TAknFepInputStateInitialIndicMultitap::IsFreeSpaceAvailable(
|
|
668 |
TIndicInputResponse aKeyResponse )
|
|
669 |
{
|
|
670 |
TBool result = ETrue;
|
|
671 |
|
|
672 |
MAknFepManagerUIInterface* fepMan = iOwner->FepMan();
|
|
673 |
|
|
674 |
TBool isUnlimitedSpaceEditor;
|
|
675 |
|
|
676 |
TInt freeSpaceLeft =
|
|
677 |
fepMan->EditorFreeSpace( isUnlimitedSpaceEditor, ETrue );
|
|
678 |
|
|
679 |
// Check if space is available.
|
|
680 |
if( ( !isUnlimitedSpaceEditor ) &&
|
|
681 |
( ( ( aKeyResponse == EIndicInputResponseInsertRepha ||
|
|
682 |
aKeyResponse == EIndicInputResponseInsertRakar ) && ( freeSpaceLeft < 2 ) ) ||
|
|
683 |
( ( aKeyResponse == EIndicInputResponseInsertDirectLigature ) && ( freeSpaceLeft < 3 ) )
|
|
684 |
#ifdef RD_MARATHI
|
|
685 |
|| ( ( aKeyResponse == EIndicInputResponseInsertEyeLashRa ) && ( freeSpaceLeft < 3 ) )
|
|
686 |
|| ( ( aKeyResponse == EIndicInputResponseInsertChandraA ) && ( freeSpaceLeft < 2 ) )
|
|
687 |
#endif // RD_MARATHI
|
|
688 |
) )
|
|
689 |
{
|
|
690 |
result = EFalse;
|
|
691 |
}
|
|
692 |
return result;
|
|
693 |
}
|
|
694 |
|
|
695 |
#ifdef RD_MARATHI
|
|
696 |
|
|
697 |
void TAknFepInputStateInitialIndicMultitap::HandleKeyMarathiL()
|
|
698 |
{
|
|
699 |
MAknFepManagerUIInterface* fepMan = iOwner->FepMan();
|
|
700 |
|
|
701 |
if( fepMan )
|
|
702 |
{
|
|
703 |
if( fepMan->IsChandraAPresentL() )
|
|
704 |
{
|
|
705 |
TBuf<1> buf;
|
|
706 |
TAknFepUiIndicInputManager::GetChandraA( buf, ETrue );
|
|
707 |
iPreviousCommittedChar = buf[0];
|
|
708 |
}
|
|
709 |
}
|
|
710 |
}
|
|
711 |
#endif // RD_MARATHI
|
|
712 |
//End of File
|