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// Copyright (c) 1995-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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// template\template_variant\specific\keyboard.cpp
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// Access to Template interruptible keyboard
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// The code here implements a simple interrupt-driven keyboard driver.
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// This is an alternative to the polled driver in keyboard.cpp.
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// This example assumes that we have an intelligent keyboard controller
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// which:
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// scans the keyboard automatically
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// generates an interrupt when a key is pressed or released
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// You can use this code as a starting point and modify it to suit
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// your hardware.
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//
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//
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#include <template_assp.h>
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#include "iolines.h"
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#include "platform.h"
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#include <kernel/kpower.h>
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#include <e32keys.h>
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//
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//
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// TO DO: (optional)
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//
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// Modify this conversion table to suit your keyboard layout
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//
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// This example assumes that the following keyboard layout:
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//
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// <----Row0-----><-----Row1-------><---Row2-----><-----Row3-------><-------Row4-----------><------Row5------><-----Row6-------><---Row7--->
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// LAlt Column0
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// ' \ TAB Z A X Column1
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// LShift Column2
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// LCtrl Column3
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// Fn Column4
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// Esc Del Q CapLk S C 3 Column5
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// 1 W D V 4 Column6
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// 2 T E F B 5 Column7
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// 9 Y R K G N 6 Column8
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// 0 U O L H M 7 Column9
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// - I P ; J , 8 Column10
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// = Enter [ ' / . Prog Column11
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// RShift Column12
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// BkSp DnArrow ] UpArrow LeftArrow Space RightArrow Column13
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// Column14
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// Column15
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// EXAMPLE ONLY
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const TUint8 convertCode[] =
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{
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EStdKeyNull , EStdKeyLeftAlt , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column0
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EStdKeyNull , EStdKeyHash ,EStdKeyBackSlash, EStdKeyTab , 'Z' , 'A' , 'X' ,EStdKeyNull, // Column1
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EStdKeyNull , EStdKeyNull ,EStdKeyLeftShift, EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column2
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EStdKeyNull , EStdKeyLeftCtrl , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column3
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EStdKeyNull , EStdKeyLeftFunc , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column4
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EStdKeyNull , EStdKeyEscape , EStdKeyDelete , 'Q' , EStdKeyCapsLock , 'S' , 'C' , '3' , // Column5
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EStdKeyNull , '1' , EStdKeyNull , 'W' , EStdKeyNull , 'D' , 'V' , '4' , // Column6
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EStdKeyNull , '2' , 'T' , 'E' , EStdKeyNull , 'F' , 'B' , '5' , // Column7
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EStdKeyNull , '9' , 'Y' , 'R' , 'K' , 'G' , 'N' , '6' , // Column8
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EStdKeyNull , '0' , 'U' , 'O' , 'L' , 'H' , 'M' , '7' , // Column9
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EStdKeyNull , EStdKeyMinus , 'I' , 'P' , EStdKeySemiColon , 'J' , EStdKeyComma , '8' , // Column10
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EStdKeyNull , EStdKeyEquals , EStdKeyEnter ,EStdKeySquareBracketLeft,EStdKeySingleQuote,EStdKeyForwardSlash, EStdKeyFullStop ,EStdKeyMenu, // Column11
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EStdKeyNull , EStdKeyNull ,EStdKeyRightShift, EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column12
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EStdKeyNull , EStdKeyBackspace ,EStdKeyDownArrow,EStdKeySquareBracketRight,EStdKeyUpArrow , EStdKeyLeftArrow , EStdKeySpace ,EStdKeyRightArrow, // Column13
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EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull, // Column14
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EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull , EStdKeyNull ,EStdKeyNull // Column15
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};
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// EXAMPLE ONLY
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const TInt KFlagKeyPressed = 0x80; // As an example, we'll assume the top bit indicates pressed/released
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// EXAMPLE ONLY
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const TKeyboard KConfigKeyboardType = EKeyboard_Full;
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const TInt KConfigKeyboardDeviceKeys = 0;
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const TInt KConfigKeyboardAppsKeys = 0;
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//
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//
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_LIT(KLitKeyboard,"Keyboard");
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class DKeyboardTemplate : public DPowerHandler
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{
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public:
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DKeyboardTemplate();
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TInt Create();
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public: // from DPowerHandler
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void PowerUp();
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void PowerDown(TPowerState);
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TInt HalFunction(TInt aFunction, TAny* a1, TAny* a2);
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void KeyboardInfo(TKeyboardInfoV01& aInfo);
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void KeyboardOn();
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void KeyboardOff();
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void HandleMsg(TMessageBase* aMsg);
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private:
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static void Isr(TAny* aPtr);
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static void EventDfcFn(TAny* aPtr);
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void EventDfc();
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void PowerUpDfc();
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static void PowerUpDfcFn(TAny* aPtr);
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void PowerDownDfc();
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static void PowerDownDfcFn(TAny* aPtr);
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private:
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void KeyboardPowerUp();
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TUint GetKeyCode();
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TBool IsKeyReady();
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public:
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TDfcQue* iDfcQ;
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TMessageQue iMsgQ;
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TDfc iPowerUpDfc;
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TDfc iPowerDownDfc;
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private:
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TDfc iEventDfc;
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TBool iKeyboardOn;
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};
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LOCAL_C TInt halFunction(TAny* aPtr, TInt aFunction, TAny* a1, TAny* a2)
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{
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DKeyboardTemplate* pH=(DKeyboardTemplate*)aPtr;
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return pH->HalFunction(aFunction,a1,a2);
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}
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void rxMsg(TAny* aPtr)
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{
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DKeyboardTemplate& h=*(DKeyboardTemplate*)aPtr;
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TMessageBase* pM=h.iMsgQ.iMessage;
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if (pM)
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h.HandleMsg(pM);
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}
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//
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// Keyboard class
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//
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DKeyboardTemplate::DKeyboardTemplate()
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: DPowerHandler(KLitKeyboard),
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iMsgQ(rxMsg,this,NULL,1),
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iPowerUpDfc(PowerUpDfcFn,this,6),
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iPowerDownDfc(PowerDownDfcFn,this,7),
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iEventDfc(EventDfcFn,this,1)
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{
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}
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TInt DKeyboardTemplate::Create()
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//
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// Initialisation. Bind and enable the interrupt.
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//
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{
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iDfcQ=Kern::DfcQue0();
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iKeyboardOn = EFalse;
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// install the HAL function
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TInt r=Kern::AddHalEntry(EHalGroupKeyboard,halFunction,this);
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if (r!=KErrNone)
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return r;
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iEventDfc.SetDfcQ(iDfcQ);
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iPowerUpDfc.SetDfcQ(iDfcQ);
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iPowerDownDfc.SetDfcQ(iDfcQ);
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iMsgQ.SetDfcQ(iDfcQ);
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iMsgQ.Receive();
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// Bind the key event interrupt
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r=Interrupt::Bind(KIntIdKeyboard,Isr,this);
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if (r==KErrNone)
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{
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// install the power handler
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Add();
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KeyboardPowerUp();
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}
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return r;
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}
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void DKeyboardTemplate::Isr(TAny* aPtr)
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{
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DKeyboardTemplate& k=*(DKeyboardTemplate*)aPtr;
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Interrupt::Disable(KIntIdKeyboard);
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k.iEventDfc.Add();
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}
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void DKeyboardTemplate::EventDfcFn(TAny* aPtr)
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{
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((DKeyboardTemplate*)aPtr)->EventDfc();
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}
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void DKeyboardTemplate::EventDfc()
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{
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__KTRACE_OPT(KHARDWARE,Kern::Printf("DKeyboardTemplate::EventDfc"));
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TInt irq=NKern::DisableAllInterrupts();
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while (IsKeyReady()) // while there are keys in the controller's output buffer
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{
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NKern::RestoreInterrupts(irq);
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TRawEvent e;
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TUint keyCode=GetKeyCode(); // Read keycodes from controller
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__KTRACE_OPT(KHARDWARE,Kern::Printf("#%02x",keyCode));
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//
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// TO DO: (mandatory)
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//
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// Convert from hardware scancode to EPOC scancode and send the scancode as an event (key pressed or released)
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// as per below EXAMPLE ONLY:
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//
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TUint bareCode=keyCode&~KFlagKeyPressed;
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TUint8 stdKey=convertCode[bareCode];
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if (keyCode&KFlagKeyPressed)
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e.Set(TRawEvent::EKeyUp,stdKey,0);
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else
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e.Set(TRawEvent::EKeyDown,stdKey,0);
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Kern::AddEvent(e);
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NKern::Sleep(1); // pause before reading more keycodes
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irq=NKern::DisableAllInterrupts();
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}
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Interrupt::Enable(KIntIdKeyboard);
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NKern::RestoreInterrupts(irq);
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}
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TBool DKeyboardTemplate::IsKeyReady()
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{
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//
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// TO DO: (mandatory)
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//
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// Return ETrue if the keyboard controller has a key event waiting to be read
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//
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return EFalse; // EXAMPLE ONLY
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}
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TUint DKeyboardTemplate::GetKeyCode()
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{
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//
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// TO DO: (mandatory)
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//
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// Read and return the next available keycode from the keyboard controller
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//
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return 0; // EXAMPLE ONLY
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}
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void DKeyboardTemplate::PowerUpDfcFn(TAny* aPtr)
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{
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((DKeyboardTemplate*)aPtr)->PowerUpDfc();
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}
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void DKeyboardTemplate::PowerDownDfcFn(TAny* aPtr)
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{
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((DKeyboardTemplate*)aPtr)->PowerDownDfc();
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}
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void DKeyboardTemplate::KeyboardPowerUp()
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{
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__KTRACE_OPT(KPOWER,Kern::Printf("DKeyboardTemplate::KeyboardPowerUp()"));
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iKeyboardOn = ETrue;
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// Send key up events for EStdKeyOff (Fn+Esc) event
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TRawEvent e;
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e.Set(TRawEvent::EKeyUp,EStdKeyEscape,0);
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Kern::AddEvent(e);
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e.Set(TRawEvent::EKeyUp,EStdKeyLeftFunc,0);
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Kern::AddEvent(e);
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}
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void DKeyboardTemplate::PowerUp()
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{
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iPowerUpDfc.Enque(); // schedules DFC to execute on this driver's thread
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}
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void DKeyboardTemplate::PowerUpDfc()
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{
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__KTRACE_OPT(KPOWER, Kern::Printf("DKeyboardTemplate::PowerUpDfc()"));
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KeyboardOn();
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PowerUpDone(); // must be called from a different thread than PowerUp()
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}
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void DKeyboardTemplate::KeyboardOn()
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{
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__KTRACE_OPT(KPOWER,Kern::Printf("DKeyboardTemplate::KeyboardOn() iKeyboardOn=%d", iKeyboardOn));
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if (!iKeyboardOn) // may be powered up from Power Manager or HAL
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{
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KeyboardPowerUp();
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}
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}
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void DKeyboardTemplate::PowerDown(TPowerState)
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{
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iPowerDownDfc.Enque(); // schedules DFC to execute on this driver's thread
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}
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void DKeyboardTemplate::PowerDownDfc()
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{
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__KTRACE_OPT(KPOWER, Kern::Printf("DKeyboardTemplate::PowerDownDfc()"));
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KeyboardOff();
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PowerDownDone(); // must be called from a different thread than PowerDown()
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}
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void DKeyboardTemplate::KeyboardOff()
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{
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__KTRACE_OPT(KPOWER,Kern::Printf("DKeyboardTemplate::KeyboardOff() iKeyboardOn=%d", iKeyboardOn));
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if (iKeyboardOn) // may have already been powered down by the HAL
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{
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iKeyboardOn = EFalse;
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Interrupt::Disable(KIntIdKeyboard);
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}
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iEventDfc.Cancel();
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}
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void DKeyboardTemplate::HandleMsg(TMessageBase* aMsg)
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{
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if (aMsg->iValue)
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KeyboardOn();
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else
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KeyboardOff();
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aMsg->Complete(KErrNone,ETrue);
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}
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void DKeyboardTemplate::KeyboardInfo(TKeyboardInfoV01& aInfo)
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{
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__KTRACE_OPT(KEXTENSION,Kern::Printf("DKeyboardTemplate::KeyboardInfo"));
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aInfo.iKeyboardType=KConfigKeyboardType;
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aInfo.iDeviceKeys=KConfigKeyboardDeviceKeys;
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aInfo.iAppsKeys=KConfigKeyboardAppsKeys;
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}
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TInt DKeyboardTemplate::HalFunction(TInt aFunction, TAny* a1, TAny* a2)
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{
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TInt r=KErrNone;
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__KTRACE_OPT(KEXTENSION,Kern::Printf("DKeyboardTemplate::HalFunction %d", aFunction));
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switch(aFunction)
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{
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case EKeyboardHalKeyboardInfo:
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{
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TPckgBuf<TKeyboardInfoV01> kPckg;
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KeyboardInfo(kPckg());
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Kern::InfoCopy(*(TDes8*)a1,kPckg);
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break;
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}
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case EKeyboardHalSetKeyboardState:
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{
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if(!Kern::CurrentThreadHasCapability(ECapabilityPowerMgmt,__PLATSEC_DIAGNOSTIC_STRING("Checked by Hal function EKeyboardHalSetKeyboardState")))
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return KErrPermissionDenied;
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if ((TBool)a1)
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{
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TThreadMessage& m=Kern::Message();
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m.iValue = ETrue;
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m.SendReceive(&iMsgQ); // send a message and block Client thread until keyboard has been powered up
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}
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else
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{
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TThreadMessage& m=Kern::Message();
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m.iValue = EFalse;
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m.SendReceive(&iMsgQ); // send a message and block Client thread until keyboard has been powered down
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}
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}
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break;
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case EKeyboardHalKeyboardState:
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kumemput32(a1, &iKeyboardOn, sizeof(TBool));
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break;
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default:
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r=KErrNotSupported;
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break;
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}
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return r;
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}
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DECLARE_STANDARD_EXTENSION()
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{
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__KTRACE_OPT(KEXTENSION,Kern::Printf("Starting keyboard driver"));
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// create keyboard driver
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TInt r=KErrNoMemory;
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DKeyboardTemplate* pK=new DKeyboardTemplate;
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if (pK)
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r=pK->Create();
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__KTRACE_OPT(KEXTENSION,Kern::Printf("Returns %d",r));
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return r;
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}
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