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// Copyright (c) 2008-2009 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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// e32test/iic/iic_client.cpp
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// Simulated (kernel-side) client of IIC Platform Independent Layer (PIL)
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//
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#include <kernel/kern_priv.h> // for DThread, TDfc
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#ifdef STANDALONE_CHANNEL
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#include <drivers/iic_transaction.h>
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#else
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#include <drivers/iic.h>
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#endif
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#include "../t_iic.h"
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#ifdef STANDALONE_CHANNEL
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#include <drivers/iic_channel.h>
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#include "i2c.h"
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#include "spi.h"
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#endif
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#ifdef LOG_CLIENT
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#define CLIENT_PRINT(str) Kern::Printf str
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#else
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#define CLIENT_PRINT(str)
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#endif
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const TInt KIicClientThreadPriority = 24;
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const TInt KIicSlaveClientDfcPriority = 3; // 0 to 7, 7 is highest ... for MasterSlave functionality
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const TInt KMaxNumChannels = 3; // 1 SPI and 2 I2C
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// Define an array of channel that the client is going to create.
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// For iic_client, it needs SPI channels for Master tests, and I2c channels for MasterSlave tests.
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#ifdef STANDALONE_CHANNEL
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const TUint NUM_CHANNELS_SPI = 4; // Arbitrary
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const TInt KChannelTypeArraySpi[NUM_CHANNELS_SPI] = {DIicBusChannel::EMaster, DIicBusChannel::EMaster, DIicBusChannel::ESlave, DIicBusChannel::EMaster};
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#define CHANNEL_TYPE_SPI(n) (KChannelTypeArraySpi[n])
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const DIicBusChannel::TChannelDuplex KChannelDuplexArraySpi[NUM_CHANNELS_SPI] = {DIicBusChannel::EHalfDuplex, DIicBusChannel::EHalfDuplex, DIicBusChannel::EHalfDuplex, DIicBusChannel::EFullDuplex};
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#define CHANNEL_DUPLEX_SPI(n) (KChannelDuplexArraySpi[n])
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#define BUS_TYPE_SPI (DIicBusChannel::ESpi)
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#define NUM_CHANNELS_I2C 3
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#if defined(MASTER_MODE) && !defined(SLAVE_MODE)
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const TInt KChannelTypeArrayI2c[NUM_CHANNELS_I2C] = {DIicBusChannel::EMaster, DIicBusChannel::EMaster, DIicBusChannel::EMaster};
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#elif defined(MASTER_MODE) && defined(SLAVE_MODE)
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const TInt KChannelTypeArrayI2c[NUM_CHANNELS_I2C] = {DIicBusChannel::EMaster, DIicBusChannel::ESlave, DIicBusChannel::EMasterSlave};
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#else
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const TInt KChannelTypeArrayI2c[NUM_CHANNELS_I2C] = {DIicBusChannel::ESlave, DIicBusChannel::ESlave, DIicBusChannel::ESlave};
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#endif
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#define CHANNEL_TYPE_I2C(n) (KChannelTypeArrayI2c[n])
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#define CHANNEL_DUPLEX_I2C(n) (DIicBusChannel::EHalfDuplex)
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#define BUS_TYPE_I2C (DIicBusChannel::EI2c)
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const TInt8 KSpiChannelNumBase = 1; // Arbitrary, real platform may consult the Configuration Repository
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// Note limit of 5 bit representation (0-31)
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LOCAL_C TInt8 AssignChanNumSpi()
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{
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static TInt8 iBaseChanNumSpi = KSpiChannelNumBase;
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CLIENT_PRINT(("SPI AssignChanNum - on entry, iBaseCanNum = 0x%x\n",iBaseChanNumSpi));
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return iBaseChanNumSpi++; // Arbitrary, for illustration
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}
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#if defined(MASTER_MODE)
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const TInt8 KI2cChannelNumBase = 10; // Arbitrary, real platform may consult the Configuration Repository
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// Note limit of 5 bit representation (0-31)
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#else
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const TInt8 KI2cChannelNumBase = 10 + NUM_CHANNELS; // For Slave mode, want to provide different response
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// If client assumes Master mode, should be informed not available
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#endif
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LOCAL_C TInt8 AssignChanNumI2c()
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{
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static TInt8 iBaseChanNumI2c = KI2cChannelNumBase;
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CLIENT_PRINT(("I2C AssignChanNum - on entry, iBaseChanNum = 0x%x\n",iBaseChanNumI2c));
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return iBaseChanNumI2c++; // Arbitrary, for illustration
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}
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class DIicClientChan : public DBase
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{
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public:
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DIicClientChan(DIicBusChannel* aChan, TInt8 aChanNum, TUint8 aChanType):iChan(aChan),iChanNumber(aChanNum),iChanType(aChanType){};
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~DIicClientChan();
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TInt GetChanNum()const {return iChanNumber;};
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TUint8 GetChanType()const {return iChanType;};
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DIicBusChannel* GetChannelPtr(){return iChan;};
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inline DIicClientChan& operator=(DIicClientChan& aChan) {iChanNumber=aChan.iChanNumber; iChanType=aChan.iChanType; iChan=aChan.iChan; return *this;};
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inline TInt operator==(DIicClientChan& aChan) {if((iChanNumber == aChan.iChanNumber)&&(iChanType == aChan.iChanType)&&(iChan == aChan.iChan)) return 1;return 0;};
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private:
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TInt iChanNumber;
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TUint8 iChanType;
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DIicBusChannel* iChan;
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};
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DIicClientChan::~DIicClientChan()
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{
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delete iChan;
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}
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#endif /*STANDALONE_CHANNEL*/
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#ifdef STANDALONE_CHANNEL
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_LIT(KLddRootName,"iic_client_ctrless");
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#else
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_LIT(KLddRootName,"iic_client");
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#endif
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_LIT(KIicClientThreadName,"IicClientLddThread");
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struct TCapsIicClient
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{
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TVersion version;
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};
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struct TTransStatusPair
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{
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TRequestStatus* iReq;
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TIicBusTransaction* iTrans;
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};
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struct TTransCbPair
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{
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TIicBusTransaction* iTrans;
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TIicBusCallback* iCb;
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};
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struct TExtractInfo
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{
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TExtractInfo(){iBufPtr = NULL; iTfer = NULL;}
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~TExtractInfo(){delete iBufPtr; delete iTfer;}
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TDes8* iBufPtr;
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TIicBusTransfer* iTfer;
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TIicBusTransaction* iTrans;
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};
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struct TTransBufReuseData
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{
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// Convenience for testing, only - retain pointers to private data
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// so that it can be re-used from a callback.
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TIicBusTransaction* iTransaction;
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TIicBusTransfer* iHdTfer;
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TIicBusTransfer* iFdTfer;
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TDes8* iHdr;
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// Pointer to callback object (for cleanup)
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TIicBusCallback* iCallback;
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};
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class DDeviceIicClient : public DLogicalDevice
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{
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public:
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/**
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* The constructor
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*/
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DDeviceIicClient();
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/**
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* The destructor
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*/
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~DDeviceIicClient();
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/**
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* Second stage constructor - install the device
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*/
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virtual TInt Install();
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/**
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* Get the Capabilites of the device
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* @param aDes descriptor that will contain the returned capibilites
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*/
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virtual void GetCaps(TDes8 &aDes) const;
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/**
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* Create a logical channel to the device
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*/
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virtual TInt Create(DLogicalChannelBase*& aChannel);
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public:
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};
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#ifdef STANDALONE_CHANNEL
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/*This class is used to test the set and get inline functions
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* of DIicBusChannel Interface.
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* */
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class TTestIicChannelInterface: public DIicBusChannel
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{
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public:
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TTestIicChannelInterface(TChannelType aChannelType, TBusType aBusType, TChannelDuplex aChanDuplex);
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~TTestIicChannelInterface(){};
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TInt DoCreate(){return 0;};
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TInt CheckHdr(TDes8* /*aHdr*/){return 0;};
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TInt TestInterface();
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private:
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TBool TestChannelType(DIicBusChannel::TChannelType aType );
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TBool TestBusType(DIicBusChannel::TBusType aType );
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TBool TestDuplexType(DIicBusChannel::TChannelDuplex aType );
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};
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TTestIicChannelInterface::TTestIicChannelInterface(TChannelType aChannelType, TBusType aBusType, TChannelDuplex aChanDuplex)
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: DIicBusChannel(aChannelType, aBusType, aChanDuplex)
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{}
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TBool TTestIicChannelInterface::TestChannelType(DIicBusChannel::TChannelType aType)
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{
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CLIENT_PRINT(("Setting channel type 0x%x\n", aType));
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SetChannelType(aType);
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if(aType != ChannelType())
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{
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CLIENT_PRINT(("ERROR: Mismatch, looking for channel 0x%x but found 0x%x\n", aType, ChannelType()));
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return EFalse;
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}
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else
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{
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CLIENT_PRINT(("Looking for channel 0x%x and found 0x%x\n", aType, ChannelType()));
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}
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return ETrue;
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}
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TBool TTestIicChannelInterface::TestBusType(DIicBusChannel::TBusType aType)
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{
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CLIENT_PRINT(("Setting Bus type 0x%x\n", aType));
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SetBusType(aType);
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if(aType != BusType())
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{
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CLIENT_PRINT(("ERROR: Mismatch, looking for Bus 0x%x but found 0x%x\n", aType, BusType()));
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return EFalse;
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}
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else
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{
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CLIENT_PRINT(("Looking for Bus 0x%x and found 0x%x\n", aType, BusType()));
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}
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return ETrue;
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}
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TBool TTestIicChannelInterface::TestDuplexType(DIicBusChannel::TChannelDuplex aType)
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{
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CLIENT_PRINT(("Setting duplex channel type 0x%x\n", aType));
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SetChannelType(aType);
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if(aType != ChannelDuplex())
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{
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CLIENT_PRINT(("ERROR: Mismatch, looking for duplex channel 0x%x but found 0x%x\n", aType, ChannelDuplex()));
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return EFalse;
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}
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else
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{
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CLIENT_PRINT(("Looking for Duplex Channel 0x%x and found 0x%x\n", aType, ChannelDuplex()));
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}
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return ETrue;
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}
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TInt TTestIicChannelInterface::TestInterface()
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{
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RArray <DIicBusChannel::TChannelType> chtype;
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RArray <DIicBusChannel::TBusType> bustype;
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RArray <DIicBusChannel::TChannelDuplex> dutype;
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chtype.Append(DIicBusChannel::EMaster);
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chtype.Append(DIicBusChannel::ESlave);
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chtype.Append(DIicBusChannel::EMasterSlave);
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bustype.Append(DIicBusChannel::EI2c);
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bustype.Append(DIicBusChannel::ESpi);
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bustype.Append(DIicBusChannel::EMicrowire);
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bustype.Append(DIicBusChannel::ECci);
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bustype.Append(DIicBusChannel::ESccb);
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dutype.Append(DIicBusChannel::EHalfDuplex);
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dutype.Append(DIicBusChannel::EFullDuplex);
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int result = KErrNone;
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int count = chtype.Count();
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int i=0;
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CLIENT_PRINT(("\nCheck Master/Slave channel setting\n"));
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CLIENT_PRINT(("\nChannel MASK = 0x%x\n", KChannelTypeMask));
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for(i=0; i< count; ++i)
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{
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if(!TestChannelType(chtype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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CLIENT_PRINT(("\nCheck Master/Slave channel setting from higher bit number to lower, reverse enum.\n"));
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for(i=count-1; i >= 0; --i)
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{
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if(!TestChannelType(chtype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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CLIENT_PRINT(("\nCheck Channel Bus type settings\n"));
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CLIENT_PRINT(("\nBus MASK = 0x%x\n", KBusTypeMask));
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count = bustype.Count();
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for(i=0; i< count; ++i)
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{
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if(!TestBusType(bustype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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CLIENT_PRINT(("\nCheck Channel Bus type settings from higher bit number to lower, reverse enum.\n"));
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for(i = count-1; i >= 0; --i)
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{
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if(!TestBusType(bustype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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CLIENT_PRINT(("\nCheck Channel Duplex settings\n"));
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CLIENT_PRINT(("\nDuplex MASK = 0x%x\n", KChannelDuplexMask));
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count = dutype.Count();
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for(i=0; i < count; ++i)
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{
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if(!TestDuplexType(dutype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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CLIENT_PRINT(("\nCheck Channel Duplex setting from higher bit number to lower, reverse enum.\n"));
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for(i = count-1; i >= 0; --i)
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{
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if(!TestDuplexType(dutype[i]))
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{
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result = KErrGeneral;
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break;
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}
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}
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chtype.Close();
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dutype.Close();
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bustype.Close();
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return result;
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}
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#endif //STANDALONE_CHANNEL
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class DChannelIicClient : public DLogicalChannel
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{
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public:
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DChannelIicClient();
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~DChannelIicClient();
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TInt CleanupExtractTrans(TIicBusTransaction *aTrans);
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TInt InitIicClient();
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virtual TInt DoCreate(TInt aUnit, const TDesC8* aInfo, const TVersion& aVer);
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protected:
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virtual void HandleMsg(TMessageBase* aMsg); // Note: this is a pure virtual in DLogicalChannel
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void DoCancel(TInt aMask); // Name for convenience!
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TInt DoControl(TInt aId, TAny* a1, TAny* a2); // Name for convenience!
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TInt DoRequest(TInt aId, TRequestStatus* aStatus, TAny* a1, TAny* a2); // Name for convenience!
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void TestTransModification(TIicBusTransaction* aTransaction, // public to be accessed by callback
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TIicBusTransfer* aHdTfer,
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TIicBusTransfer* aFdTfer,
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TDes8* aHdr);
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#ifdef STANDALONE_CHANNEL
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public:
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static TInt OrderEntries(const DIicClientChan& aMatch, const DIicClientChan& aEntry);
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#endif
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private:
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TInt ExtractTransData(TUsideTracnDesc* aUsideTrancnDesc, TIicBusTransaction*& aTrans);
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TInt CreateTransferListHalfDuplex(
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TIicBusTransfer::TReqType aNodeDir1, TInt aNodeLength1,
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TIicBusTransfer::TReqType aNodeDir2, TInt aNodeLength2,
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TIicBusTransfer::TReqType aNodeDir3, TInt aNodeLength3);
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TInt CreateTransferListFullDuplex(
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TIicBusTransfer::TReqType aNodeDir1, TInt aNodeLength1,
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TIicBusTransfer::TReqType aNodeDir2, TInt aNodeLength2,
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TIicBusTransfer::TReqType aNodeDir3, TInt aNodeLength3);
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TInt DeleteFullDuplexTest(TIicBusTransaction *aTrans);
|
|
388 |
|
|
389 |
TInt DoCreateFullDuplexTransTest(TInt aTestType);
|
|
390 |
|
|
391 |
TInt DoPriorityTest(TInt aBusId);
|
|
392 |
TInt ConstructTransactionOne(TIicBusTransaction*& aTrans);
|
|
393 |
void CleanupTransactionOne(TIicBusTransaction*& aTrans);
|
|
394 |
|
|
395 |
|
|
396 |
TInt InsertPairs(TTransStatusPair* aPair, TTransCbPair* aCbPair);
|
|
397 |
|
|
398 |
TInt CreateDefaultSpiBuf(TConfigSpiBufV01*& aBuf);
|
|
399 |
|
|
400 |
//Add new functions for controller-less mode
|
|
401 |
TInt QueueTransaction(TInt aBusId, TIicBusTransaction* aTransaction, TIicBusCallback *aCallback=NULL);
|
|
402 |
TInt CancelTransaction(TInt aBusId, TIicBusTransaction* aTransaction);
|
|
403 |
TInt StaticExtension(TUint aId, TUint aFunction, TAny* aParam1, TAny* aParam2);
|
|
404 |
TInt CaptureChannel(TInt aBusId, TDes8* aConfigHdr, TIicBusSlaveCallback* aCallback, TInt& aChannelId, TBool aAsynch=NULL);
|
|
405 |
TInt ReleaseChannel(TInt aChannelId);
|
|
406 |
public:
|
|
407 |
inline void Lock() {Kern::MutexWait(*iArrayMutex);}
|
|
408 |
inline void Unlock() {Kern::MutexSignal(*iArrayMutex);}
|
|
409 |
inline void GetWriteAccess() {Kern::SemaphoreWait(*iChanArrWrtSem);} // aNTicks not specified = wait forever
|
|
410 |
inline void FreeWriteAccess() {Kern::SemaphoreSignal(*iChanArrWrtSem);}
|
|
411 |
|
|
412 |
void CleanupTransaction(TIicBusTransaction*& aTrans); // public for access by callback
|
|
413 |
|
|
414 |
static TIicBusTransaction* MultiTranscCallbackFunc(TIicBusTransaction* aTrans, TAny* aParam);
|
|
415 |
|
|
416 |
static void TransModifCallback(TIicBusTransaction* aTrans, TInt aBusId, TInt aResult, TAny* aParam);
|
|
417 |
|
|
418 |
private:
|
|
419 |
TDynamicDfcQue* iDfcQue;
|
|
420 |
|
|
421 |
DMutex* iArrayMutex; // used to protect array of channels
|
|
422 |
DSemaphore* iChanArrWrtSem; // used to synchronise write access to iChannelArray
|
|
423 |
|
|
424 |
// Used for Transaction One
|
|
425 |
HBuf8* buf1;
|
|
426 |
HBuf8* buf2;
|
|
427 |
HBuf8* buf3;
|
|
428 |
HBuf8* buf4;
|
|
429 |
HBuf8* buf5;
|
|
430 |
HBuf8* buf6;
|
|
431 |
TIicBusTransfer* tfer1;
|
|
432 |
TIicBusTransfer* tfer2;
|
|
433 |
TIicBusTransfer* tfer3;
|
|
434 |
TIicBusTransfer* tfer4;
|
|
435 |
TIicBusTransfer* tfer5;
|
|
436 |
TIicBusTransfer* tfer6;
|
|
437 |
TIicBusTransfer* tfer7;
|
|
438 |
HBuf8* header;
|
|
439 |
HBuf8* header2;
|
|
440 |
HBuf8* header3;
|
|
441 |
HBuf8* header4;
|
|
442 |
HBuf8* header5;
|
|
443 |
HBuf8* headerBlock;
|
|
444 |
TConfigSpiBufV01* spiHeader;
|
|
445 |
|
|
446 |
|
|
447 |
static TIicBusTransaction* iMultiTransac;
|
|
448 |
|
|
449 |
// Used for simple transactions
|
|
450 |
TIicBusTransaction* iTrans;
|
|
451 |
TConfigSpiBufV01* iSpiBuf;
|
|
452 |
TConfigI2cBufV01* iI2cBuf;
|
|
453 |
TIicBusTransfer* iTfer;
|
|
454 |
TIicBusTransactionPreamble* iTransPreamble;
|
|
455 |
TIicBusTransfer* iFdTfer;
|
|
456 |
|
|
457 |
public:
|
|
458 |
DThread* iClient;
|
|
459 |
RPointerArray<TTransStatusPair> iTransStatArrayByTrans;
|
|
460 |
RPointerArray<TTransStatusPair> iTransStatArrayByStatus;
|
|
461 |
RPointerArray<TTransCbPair> iTransCbArrayByTrans;
|
|
462 |
RPointerArray<TExtractInfo> iExtractInfoArray;
|
|
463 |
|
|
464 |
// Support for Preamble testing
|
|
465 |
TRequestStatus* iPreambleStatus;
|
|
466 |
TRequestStatus* iMultiTranscStatus;
|
|
467 |
|
|
468 |
// Support for buffer re-use testing
|
|
469 |
TTransBufReuseData iTransBufReuseData;
|
|
470 |
|
|
471 |
// Support for MasterSlave processing
|
|
472 |
private:
|
|
473 |
TInt InitSlaveClient();
|
|
474 |
|
|
475 |
private:
|
|
476 |
HBuf8* iConfigHdr;
|
|
477 |
TRequestStatus* iStatus;
|
|
478 |
|
|
479 |
public:
|
|
480 |
void RequestComplete(TInt r);
|
|
481 |
|
|
482 |
public:
|
|
483 |
TIicBusSlaveCallback* iNotif; // public to be accessible by callback
|
|
484 |
TInt iChannelId; // public to be accessible by callback
|
|
485 |
TInt* iClientChanId;
|
|
486 |
|
|
487 |
#ifdef STANDALONE_CHANNEL
|
|
488 |
//Used to store the captured channel
|
|
489 |
struct TCapturedChannel
|
|
490 |
{
|
|
491 |
DIicClientChan* iChanPtr;
|
|
492 |
TInt iChannelId;
|
|
493 |
};
|
|
494 |
TCapturedChannel iCapturedChannel;
|
|
495 |
#endif
|
|
496 |
};
|
|
497 |
|
|
498 |
DDeviceIicClient::DDeviceIicClient()
|
|
499 |
// Constructor
|
|
500 |
{
|
|
501 |
CLIENT_PRINT(("> DDeviceIicClient::DDeviceIicClient()"));
|
|
502 |
__KTRACE_OPT(KRESMANAGER, Kern::Printf("> DDeviceIicClient::DDeviceIicClient()"));
|
|
503 |
iParseMask=0; // No info, no PDD, no Units
|
|
504 |
iUnitsMask=0;
|
|
505 |
iVersion=TVersion(KIicClientMajorVersionNumber,
|
|
506 |
KIicClientMinorVersionNumber,
|
|
507 |
KIicClientBuildVersionNumber);
|
|
508 |
}
|
|
509 |
#ifdef STANDALONE_CHANNEL
|
|
510 |
// auxiliary function for ordering entries in the array of channels
|
|
511 |
TInt DChannelIicClient::OrderEntries(const DIicClientChan& aMatch, const DIicClientChan& aEntry)
|
|
512 |
{
|
|
513 |
TUint8 l=(TUint8)aMatch.GetChanNum();
|
|
514 |
TUint8 r=(TUint8)aEntry.GetChanNum();
|
|
515 |
if(l<r)
|
|
516 |
return -1;
|
|
517 |
else if(l>r)
|
|
518 |
return 1;
|
|
519 |
else
|
|
520 |
return 0;
|
|
521 |
}
|
|
522 |
// global ordering object to be passed to RPointerArray InsertInOrderXXX and FindInOrder
|
|
523 |
TLinearOrder<DIicClientChan> EntryOrder(DChannelIicClient::OrderEntries);
|
|
524 |
|
|
525 |
// Store all the channels created by the client
|
|
526 |
RPointerArray<DIicClientChan> ChannelArray;
|
|
527 |
#endif /*STANDALONE_CHANNEL*/
|
|
528 |
|
|
529 |
DDeviceIicClient::~DDeviceIicClient()
|
|
530 |
{
|
|
531 |
CLIENT_PRINT(("> DDeviceIicClient::~DDeviceIicClient()"));
|
|
532 |
__KTRACE_OPT(KRESMANAGER, Kern::Printf("> DDeviceIicClient::~DDeviceIicClient()"));
|
|
533 |
#ifdef STANDALONE_CHANNEL
|
|
534 |
//For Standalone Channel, the client is responsible for channel destroy
|
|
535 |
ChannelArray.ResetAndDestroy();
|
|
536 |
#endif
|
|
537 |
}
|
|
538 |
|
|
539 |
TInt DDeviceIicClient::Install()
|
|
540 |
// Install the device driver.
|
|
541 |
{
|
|
542 |
CLIENT_PRINT(("> DDeviceIicClient::Install()"));
|
|
543 |
__KTRACE_OPT(KRESMANAGER, Kern::Printf("> DDeviceIicClient::Install()"));
|
|
544 |
return(SetName(&KLddRootName));
|
|
545 |
}
|
|
546 |
|
|
547 |
// Auxiliary functions for ordering entries in the array of TTransStatusPair pointers
|
|
548 |
// The first is to enable searching by Transaction (used by the callback)
|
|
549 |
// The second is to enable searching by the TRequestStatus (used by cancel calls)
|
|
550 |
TInt OrderEntriesByTrans(const TTransStatusPair& aMatch, const TTransStatusPair& aEntry)
|
|
551 |
{
|
|
552 |
TUint l=(TUint)(aMatch.iTrans);
|
|
553 |
TUint r=(TUint)(aEntry.iTrans);
|
|
554 |
if(l>r)
|
|
555 |
return -1;
|
|
556 |
else if(l<r)
|
|
557 |
return 1;
|
|
558 |
else
|
|
559 |
return 0;
|
|
560 |
}
|
|
561 |
TLinearOrder<TTransStatusPair> TransStatusOrderByTrans(OrderEntriesByTrans);
|
|
562 |
|
|
563 |
TInt OrderEntriesByStatus(const TTransStatusPair& aMatch, const TTransStatusPair& aEntry)
|
|
564 |
{
|
|
565 |
TUint l=(TUint)(aMatch.iReq);
|
|
566 |
TUint r=(TUint)(aEntry.iReq);
|
|
567 |
if(l>r)
|
|
568 |
return -1;
|
|
569 |
else if(l<r)
|
|
570 |
return 1;
|
|
571 |
else
|
|
572 |
return 0;
|
|
573 |
}
|
|
574 |
TLinearOrder<TTransStatusPair> TransStatusOrderByStatus(OrderEntriesByStatus);
|
|
575 |
|
|
576 |
// Auxilliary function to track callback objects assigned to asynchronous transactions
|
|
577 |
TInt OrderCbEntriesByTrans(const TTransCbPair& aMatch, const TTransCbPair& aEntry)
|
|
578 |
{
|
|
579 |
TUint l=(TUint)(aMatch.iTrans);
|
|
580 |
TUint r=(TUint)(aEntry.iTrans);
|
|
581 |
if(l>r)
|
|
582 |
return -1;
|
|
583 |
else if(l<r)
|
|
584 |
return 1;
|
|
585 |
else
|
|
586 |
return 0;
|
|
587 |
}
|
|
588 |
TLinearOrder<TTransCbPair> TransCbOrderByTrans(OrderCbEntriesByTrans);
|
|
589 |
|
|
590 |
TInt OrderExtractInfoByTrans(const TExtractInfo& aMatch, const TExtractInfo& aEntry)
|
|
591 |
{
|
|
592 |
TUint l=(TUint)(aMatch.iTrans);
|
|
593 |
TUint r=(TUint)(aEntry.iTrans);
|
|
594 |
if(l>r)
|
|
595 |
return -1;
|
|
596 |
else if(l<r)
|
|
597 |
return 1;
|
|
598 |
else
|
|
599 |
return 0;
|
|
600 |
}
|
|
601 |
TLinearOrder<TExtractInfo> ExtractInfoOrderByTrans(OrderExtractInfoByTrans);
|
|
602 |
|
|
603 |
|
|
604 |
_LIT(KLitArrayMutexName,"IIC_CLIENT_ARRAY_MUTEX");
|
|
605 |
_LIT(KLitArraySemName,"IIC_CLIENT_ARRAY_SEM");
|
|
606 |
#define IIC_CLIENT_MUTEX_ORDER KMutexOrdGeneral4 // Semi-arbitrary - middle of general purpose range, allow higher and lower priorities
|
|
607 |
|
|
608 |
TInt DChannelIicClient::InitIicClient()
|
|
609 |
{
|
|
610 |
TInt r = Kern::MutexCreate(iArrayMutex,KLitArrayMutexName,IIC_CLIENT_MUTEX_ORDER);
|
|
611 |
if(r!=KErrNone)
|
|
612 |
return r;
|
|
613 |
r = Kern::SemaphoreCreate(iChanArrWrtSem,KLitArraySemName,1); // Initial count of one allows first wait to be non-blocking
|
|
614 |
if(r!=KErrNone)
|
|
615 |
iArrayMutex->Close(NULL);
|
|
616 |
|
|
617 |
return r;
|
|
618 |
}
|
|
619 |
|
|
620 |
TInt DChannelIicClient::InsertPairs(TTransStatusPair* aPair, TTransCbPair* aCbPair)
|
|
621 |
{
|
|
622 |
CLIENT_PRINT(("DChannelIicClient::InsertPairs invoked with aPair=0x%x, aPair->iReq=0x%x, aPair-iTrans=0x%x\n",aPair,aPair->iReq,aPair->iTrans ));
|
|
623 |
CLIENT_PRINT(("DChannelIicClient::InsertPairs ... and aCbPair=0x%x, aCbPair->iCb=0x%x, aCbPair-iTrans=0x%x\n",aCbPair,aCbPair->iCb,aCbPair->iTrans ));
|
|
624 |
TInt r = KErrNone;
|
|
625 |
|
|
626 |
GetWriteAccess();
|
|
627 |
Lock();
|
|
628 |
|
|
629 |
if((r = iTransStatArrayByTrans.InsertInOrder(aPair,TransStatusOrderByTrans)) == KErrNone)
|
|
630 |
{
|
|
631 |
if((r = iTransStatArrayByStatus.InsertInOrder(aPair,TransStatusOrderByStatus)) == KErrNone)
|
|
632 |
{
|
|
633 |
if((r = iTransCbArrayByTrans.InsertInOrder(aCbPair,TransCbOrderByTrans))!=KErrNone)
|
|
634 |
{
|
|
635 |
CLIENT_PRINT(("DChannelIicClient::InsertPairs, aCbPair=0x%x InsertInOrder(status) returned %d\n",aCbPair,r));
|
|
636 |
}
|
|
637 |
}
|
|
638 |
else
|
|
639 |
{
|
|
640 |
CLIENT_PRINT(("DChannelIicClient::InsertPairs, aPair=0x%x InsertInOrder(status) returned %d\n",aPair,r));
|
|
641 |
}
|
|
642 |
}
|
|
643 |
else
|
|
644 |
{
|
|
645 |
CLIENT_PRINT(("DChannelIicClient::InsertPairs, aPair=0x%x InsertInOrder(trans) returned %d\n",aPair,r));
|
|
646 |
}
|
|
647 |
FreeWriteAccess();
|
|
648 |
Unlock();
|
|
649 |
return r;
|
|
650 |
}
|
|
651 |
|
|
652 |
//dummy call back func is provided for asyn call in priority test
|
|
653 |
static void DummyCallbackFunc(TIicBusTransaction* /*aTrans*/, TInt /*aBusId*/, TInt /*aResult*/, TAny* /*aParam*/)
|
|
654 |
{
|
|
655 |
//do nothing
|
|
656 |
}
|
|
657 |
|
|
658 |
static void AsyncCallbackFunc(TIicBusTransaction* aTrans, TInt aBusId, TInt aResult, TAny* aParam)
|
|
659 |
{
|
|
660 |
(void)aBusId; // aBusId is not used if CLIENT_PRINT is disabled
|
|
661 |
CLIENT_PRINT(("> AsyncCallbackFunc() - aTrans=0x%x, aBusId=0x%x, aResult=%d, aParam=0x%x\n",aTrans,aBusId,aResult,aParam));
|
|
662 |
DChannelIicClient* channel = (DChannelIicClient*)aParam;
|
|
663 |
CLIENT_PRINT(("AsyncCallbackFunc() - channel=0x%x\n",channel));
|
|
664 |
|
|
665 |
// Use the channel to get the user-side client's TRequestStatus and complete it with aResult
|
|
666 |
TTransStatusPair* searchPair = new TTransStatusPair();
|
|
667 |
searchPair->iTrans = aTrans;
|
|
668 |
channel->GetWriteAccess();
|
|
669 |
channel->Lock();
|
|
670 |
TInt pairIndex = (channel->iTransStatArrayByTrans).FindInOrder(searchPair,TransStatusOrderByTrans);
|
|
671 |
delete searchPair;
|
|
672 |
if(pairIndex<0)
|
|
673 |
{
|
|
674 |
CLIENT_PRINT(("AsyncCallbackFunc() - (trans) FindInOrder returned %d (aTrans=0x%x)\n",pairIndex,aTrans));
|
|
675 |
return;
|
|
676 |
}
|
|
677 |
TTransStatusPair* pairPtr = (channel->iTransStatArrayByTrans)[pairIndex];
|
|
678 |
TRequestStatus* status = pairPtr->iReq;
|
|
679 |
|
|
680 |
// Now remove the TTransStatusPair objects in iTransStatArrayByTrans, iTransStatArrayByStatus
|
|
681 |
(channel->iTransStatArrayByTrans).Remove(pairIndex);
|
|
682 |
pairIndex = (channel->iTransStatArrayByStatus).FindInOrder(pairPtr,TransStatusOrderByStatus);
|
|
683 |
if(pairIndex<0)
|
|
684 |
{
|
|
685 |
CLIENT_PRINT(("AsyncCallbackFunc() - (status) FindInOrder returned %d (status=0x%x)\n",pairIndex,status));
|
|
686 |
return;
|
|
687 |
}
|
|
688 |
(channel->iTransStatArrayByStatus).Remove(pairIndex);
|
|
689 |
|
|
690 |
// Now remove the TTransCbPair object in iTransCbArrayByTrans
|
|
691 |
TTransCbPair* SearchCbPair = new TTransCbPair();
|
|
692 |
SearchCbPair->iTrans = aTrans;
|
|
693 |
pairIndex = (channel->iTransCbArrayByTrans).FindInOrder(SearchCbPair,TransCbOrderByTrans);
|
|
694 |
delete SearchCbPair;
|
|
695 |
if(pairIndex<0)
|
|
696 |
{
|
|
697 |
CLIENT_PRINT(("AsyncCallbackFunc() - (cb) FindInOrder returned %d (aTrans=0x%x)\n",pairIndex,aTrans));
|
|
698 |
return;
|
|
699 |
}
|
|
700 |
TTransCbPair* cbPair = (channel->iTransCbArrayByTrans)[pairIndex];
|
|
701 |
(channel->iTransCbArrayByTrans).Remove(pairIndex);
|
|
702 |
delete cbPair->iCb;
|
|
703 |
delete cbPair;
|
|
704 |
channel->FreeWriteAccess();
|
|
705 |
channel->Unlock();
|
|
706 |
Kern::RequestComplete(channel->iClient, status, aResult);
|
|
707 |
// We should call CleanupExtractTrans() to delete all the objects created in ExtractTransData()
|
|
708 |
channel->CleanupExtractTrans(pairPtr->iTrans);
|
|
709 |
// The object referred to be pairPtr is finished with and can be deleted
|
|
710 |
channel->CleanupTransaction(pairPtr->iTrans);
|
|
711 |
delete pairPtr;
|
|
712 |
}
|
|
713 |
|
|
714 |
|
|
715 |
void DDeviceIicClient::GetCaps(TDes8& aDes) const
|
|
716 |
// Return the IicClient capabilities.
|
|
717 |
{
|
|
718 |
CLIENT_PRINT(("> DDeviceIicClient::GetCaps(TDes8& aDes) const"));
|
|
719 |
TPckgBuf<TCapsIicClient> b;
|
|
720 |
b().version=TVersion(KIicClientMajorVersionNumber,
|
|
721 |
KIicClientMinorVersionNumber,
|
|
722 |
KIicClientBuildVersionNumber);
|
|
723 |
Kern::InfoCopy(aDes,b);
|
|
724 |
}
|
|
725 |
|
|
726 |
|
|
727 |
TInt DDeviceIicClient::Create(DLogicalChannelBase*& aChannel)
|
|
728 |
// Create a channel on the device.
|
|
729 |
{
|
|
730 |
CLIENT_PRINT(("> DDeviceIicClient::Create(DLogicalChannelBase*& aChannel)"));
|
|
731 |
if(iOpenChannels>=KMaxNumChannels)
|
|
732 |
return KErrOverflow;
|
|
733 |
aChannel=new DChannelIicClient;
|
|
734 |
return aChannel?KErrNone:KErrNoMemory;
|
|
735 |
}
|
|
736 |
|
|
737 |
#ifdef STANDALONE_CHANNEL
|
|
738 |
|
|
739 |
TInt GetChanPtr(const TInt aBusId, TInt &aIndex, DIicClientChan*& aChan)
|
|
740 |
{
|
|
741 |
__KTRACE_OPT(KIIC, Kern::Printf("GetChanPtr, aBusId=0x%x\n",aBusId));
|
|
742 |
TInt32 chanId;
|
|
743 |
chanId = GET_CHAN_NUM(aBusId);
|
|
744 |
__KTRACE_OPT(KIIC, Kern::Printf("GetChanPtr, chanId=0x%x\n",chanId));
|
|
745 |
DIicClientChan chanEntry(NULL,(TInt8)chanId, DIicBusChannel::EMasterSlave);
|
|
746 |
TInt r = KErrNotFound;
|
|
747 |
aIndex = ChannelArray.FindInOrder(&chanEntry, EntryOrder);
|
|
748 |
if(aIndex >= 0)
|
|
749 |
{
|
|
750 |
aChan = ChannelArray[aIndex];
|
|
751 |
r = KErrNone;
|
|
752 |
}
|
|
753 |
|
|
754 |
__KTRACE_OPT(KIIC, Kern::Printf("GetChanPtr, chanPtr=0x%x, index=%d\n",aChan,aIndex));
|
|
755 |
return r;
|
|
756 |
}
|
|
757 |
#endif
|
|
758 |
|
|
759 |
DECLARE_STANDARD_LDD()
|
|
760 |
{
|
|
761 |
//If in STANDALONE_CHANNEL mode, the client creates a list of channels
|
|
762 |
#ifdef STANDALONE_CHANNEL
|
|
763 |
DIicClientChan* aClientChan;
|
|
764 |
TInt r = KErrNone;
|
|
765 |
DIicBusChannel *chan = NULL, *chanM = NULL, *chanS = NULL;
|
|
766 |
TInt i;
|
|
767 |
for(i=0; i<NUM_CHANNELS_SPI; i++)
|
|
768 |
{
|
|
769 |
CLIENT_PRINT(("\n"));
|
|
770 |
#if defined(MASTER_MODE)
|
|
771 |
if(CHANNEL_TYPE_SPI(i) == (DIicBusChannel::EMaster))
|
|
772 |
{
|
|
773 |
chan=new DSimulatedIicBusChannelMasterSpi(BUS_TYPE_SPI,CHANNEL_DUPLEX_SPI(i));
|
|
774 |
if(!chan)
|
|
775 |
{
|
|
776 |
CLIENT_PRINT(("\n\nSpi: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_SPI(i),i));
|
|
777 |
return NULL;
|
|
778 |
}
|
|
779 |
CLIENT_PRINT(("SPI chan created at 0x%x\n",chan));
|
|
780 |
if(((DSimulatedIicBusChannelMasterSpi*)chan)->Create()!=KErrNone)
|
|
781 |
{
|
|
782 |
delete chan;
|
|
783 |
return NULL;
|
|
784 |
}
|
|
785 |
aClientChan = new DIicClientChan(chan,AssignChanNumSpi(),DIicBusChannel::EMaster);
|
|
786 |
if(!aClientChan)
|
|
787 |
{
|
|
788 |
delete chan;
|
|
789 |
return NULL;
|
|
790 |
}
|
|
791 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
792 |
if(r!=KErrNone)
|
|
793 |
{
|
|
794 |
delete chan;
|
|
795 |
delete aClientChan;
|
|
796 |
break;
|
|
797 |
}
|
|
798 |
}
|
|
799 |
#endif
|
|
800 |
#if defined(MASTER_MODE) && defined(SLAVE_MODE)
|
|
801 |
if(CHANNEL_TYPE_SPI(i) == DIicBusChannel::EMasterSlave)
|
|
802 |
{
|
|
803 |
//For MasterSlave channel, the client creates a Master channel, a Slave
|
|
804 |
//channel and a MasterSlave Channel, then store all of them in ChannelArray.
|
|
805 |
chanM=new DSimulatedIicBusChannelMasterSpi(BUS_TYPE_SPI,CHANNEL_DUPLEX_SPI(i));
|
|
806 |
if(!chanM)
|
|
807 |
return NULL;
|
|
808 |
|
|
809 |
chanS=new DSimulatedIicBusChannelSlaveSpi(BUS_TYPE_SPI,CHANNEL_DUPLEX_SPI(i));
|
|
810 |
if(!chanS)
|
|
811 |
{
|
|
812 |
delete chanM;
|
|
813 |
return NULL;
|
|
814 |
}
|
|
815 |
chan=new DIicBusChannelMasterSlave(BUS_TYPE_SPI,CHANNEL_DUPLEX_SPI(i),(DSimulatedIicBusChannelMasterSpi*)chanM,(DSimulatedIicBusChannelSlaveSpi*)chanS); // Generic implementation
|
|
816 |
if(!chan)
|
|
817 |
{
|
|
818 |
CLIENT_PRINT(("\n\nSpi: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_SPI(i),i));
|
|
819 |
delete chanM;
|
|
820 |
delete chanS;
|
|
821 |
return NULL;
|
|
822 |
}
|
|
823 |
CLIENT_PRINT(("SPI chan created at 0x%x\n",chan));
|
|
824 |
if(((DIicBusChannelMasterSlave*)chan)->DoCreate()!=KErrNone)
|
|
825 |
{
|
|
826 |
delete chanM;
|
|
827 |
delete chanS;
|
|
828 |
delete chan;
|
|
829 |
return NULL;
|
|
830 |
}
|
|
831 |
aClientChan = new DIicClientChan(chan,AssignChanNumSpi(),DIicBusChannel::EMasterSlave);
|
|
832 |
if(!aClientChan)
|
|
833 |
{
|
|
834 |
delete chanM;
|
|
835 |
delete chanS;
|
|
836 |
delete chan;
|
|
837 |
return NULL;
|
|
838 |
}
|
|
839 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
840 |
if(r!=KErrNone)
|
|
841 |
{
|
|
842 |
delete chanM;
|
|
843 |
delete chanS;
|
|
844 |
delete chan;
|
|
845 |
delete aClientChan;
|
|
846 |
break;
|
|
847 |
}
|
|
848 |
}
|
|
849 |
#endif
|
|
850 |
#if defined(SLAVE_MODE)
|
|
851 |
if(CHANNEL_TYPE_SPI(i) == (DIicBusChannel::ESlave))
|
|
852 |
{
|
|
853 |
chan=new DSimulatedIicBusChannelSlaveSpi(BUS_TYPE_SPI,CHANNEL_DUPLEX_SPI(i));
|
|
854 |
if(!chan)
|
|
855 |
{
|
|
856 |
CLIENT_PRINT(("\n\nSpi: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_SPI(i),i));
|
|
857 |
return NULL;
|
|
858 |
}
|
|
859 |
CLIENT_PRINT(("SPI chan created at 0x%x\n",chan));
|
|
860 |
if(((DSimulatedIicBusChannelSlaveSpi*)chan)->Create()!=KErrNone)
|
|
861 |
{
|
|
862 |
delete chan;
|
|
863 |
return NULL;
|
|
864 |
}
|
|
865 |
aClientChan = new DIicClientChan(chan,AssignChanNumSpi(),DIicBusChannel::ESlave);
|
|
866 |
if(!aClientChan)
|
|
867 |
{
|
|
868 |
delete chan;
|
|
869 |
return NULL;
|
|
870 |
}
|
|
871 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
872 |
if(r!=KErrNone)
|
|
873 |
{
|
|
874 |
delete chan;
|
|
875 |
delete aClientChan;
|
|
876 |
break;
|
|
877 |
}
|
|
878 |
}
|
|
879 |
#endif
|
|
880 |
#if !defined(MASTER_MODE) && !defined(SLAVE_MODE)
|
|
881 |
#error I2C mode not defined as Master, Slave nor Master-Slave
|
|
882 |
#endif
|
|
883 |
}
|
|
884 |
|
|
885 |
for(i=0; i<NUM_CHANNELS_I2C; i++)
|
|
886 |
{
|
|
887 |
CLIENT_PRINT(("\n"));
|
|
888 |
#if defined(MASTER_MODE)
|
|
889 |
if(CHANNEL_TYPE_I2C(i) == (DIicBusChannel::EMaster))
|
|
890 |
{
|
|
891 |
chan=new DSimulatedIicBusChannelMasterI2c(BUS_TYPE_I2C,CHANNEL_DUPLEX_I2C(i));
|
|
892 |
if(!chan)
|
|
893 |
{
|
|
894 |
CLIENT_PRINT(("\n\nI2C: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_I2C(i),i));
|
|
895 |
return NULL;
|
|
896 |
}
|
|
897 |
CLIENT_PRINT(("I2C chan created at 0x%x\n",chan));
|
|
898 |
if(((DSimulatedIicBusChannelMasterI2c*)chan)->Create()!=KErrNone)
|
|
899 |
{
|
|
900 |
delete chan;
|
|
901 |
return NULL;
|
|
902 |
}
|
|
903 |
aClientChan = new DIicClientChan(chan,AssignChanNumI2c(),DIicBusChannel::EMaster);
|
|
904 |
if(!aClientChan)
|
|
905 |
{
|
|
906 |
delete chan;
|
|
907 |
return NULL;
|
|
908 |
}
|
|
909 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
910 |
if(r!=KErrNone)
|
|
911 |
{
|
|
912 |
delete chan;
|
|
913 |
delete aClientChan;
|
|
914 |
break;
|
|
915 |
}
|
|
916 |
}
|
|
917 |
#endif
|
|
918 |
#if defined(MASTER_MODE) && defined(SLAVE_MODE)
|
|
919 |
if(CHANNEL_TYPE_I2C(i) == DIicBusChannel::EMasterSlave)
|
|
920 |
{
|
|
921 |
chanM=new DSimulatedIicBusChannelMasterI2c(BUS_TYPE_I2C,CHANNEL_DUPLEX_I2C(i));
|
|
922 |
if(!chanM)
|
|
923 |
return NULL;
|
|
924 |
|
|
925 |
chanS=new DSimulatedIicBusChannelSlaveI2c(BUS_TYPE_I2C,CHANNEL_DUPLEX_I2C(i));
|
|
926 |
if(!chanS)
|
|
927 |
{
|
|
928 |
delete chanM;
|
|
929 |
return NULL;
|
|
930 |
}
|
|
931 |
//The client doesn't create the Master and Slave channels, as they should be created
|
|
932 |
//in MasterSlave channel's DoCreate().
|
|
933 |
chan=new DSimulatedIicBusChannelMasterSlaveI2c(BUS_TYPE_I2C,CHANNEL_DUPLEX_I2C(i),(DSimulatedIicBusChannelMasterI2c*)chanM,(DSimulatedIicBusChannelSlaveI2c*)chanS); // Generic implementation
|
|
934 |
if(!chan)
|
|
935 |
{
|
|
936 |
CLIENT_PRINT(("\n\nI2C: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_I2C(i),i));
|
|
937 |
delete chanM;
|
|
938 |
delete chanS;
|
|
939 |
return NULL;
|
|
940 |
}
|
|
941 |
CLIENT_PRINT(("I2C chan created at 0x%x\n",chan));
|
|
942 |
if(((DIicBusChannelMasterSlave*)chan)->DoCreate()!=KErrNone)
|
|
943 |
{
|
|
944 |
delete chanM;
|
|
945 |
delete chanS;
|
|
946 |
delete chan;
|
|
947 |
return NULL;
|
|
948 |
}
|
|
949 |
aClientChan = new DIicClientChan(chan,AssignChanNumI2c(),DIicBusChannel::EMasterSlave);
|
|
950 |
if(!aClientChan)
|
|
951 |
{
|
|
952 |
delete chanM;
|
|
953 |
delete chanS;
|
|
954 |
delete chan;
|
|
955 |
return NULL;
|
|
956 |
}
|
|
957 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
958 |
if(r!=KErrNone)
|
|
959 |
{
|
|
960 |
delete chanM;
|
|
961 |
delete chanS;
|
|
962 |
delete chan;
|
|
963 |
delete aClientChan;
|
|
964 |
break;
|
|
965 |
}
|
|
966 |
}
|
|
967 |
#endif
|
|
968 |
#if defined(SLAVE_MODE)
|
|
969 |
if(CHANNEL_TYPE_I2C(i) == (DIicBusChannel::ESlave))
|
|
970 |
{
|
|
971 |
chan=new DSimulatedIicBusChannelSlaveI2c(BUS_TYPE_I2C,CHANNEL_DUPLEX_I2C(i));
|
|
972 |
if(!chan)
|
|
973 |
{
|
|
974 |
CLIENT_PRINT(("\n\nI2C: Channel of type (%d) not created for index %d\n\n",CHANNEL_TYPE_I2C(i),i));
|
|
975 |
return NULL;
|
|
976 |
}
|
|
977 |
CLIENT_PRINT(("I2C chan created at 0x%x\n",chan));
|
|
978 |
if(((DSimulatedIicBusChannelSlaveI2c*)chan)->Create()!=KErrNone)
|
|
979 |
{
|
|
980 |
delete chan;
|
|
981 |
return NULL;
|
|
982 |
}
|
|
983 |
aClientChan = new DIicClientChan(chan,AssignChanNumI2c(),DIicBusChannel::ESlave);
|
|
984 |
if(!aClientChan)
|
|
985 |
{
|
|
986 |
delete chan;
|
|
987 |
return NULL;
|
|
988 |
}
|
|
989 |
r = ChannelArray.InsertInOrder(aClientChan,EntryOrder);
|
|
990 |
if(r!=KErrNone)
|
|
991 |
{
|
|
992 |
delete chan;
|
|
993 |
delete aClientChan;
|
|
994 |
break;
|
|
995 |
}
|
|
996 |
}
|
|
997 |
#endif
|
|
998 |
#if !defined(MASTER_MODE) && !defined(SLAVE_MODE)
|
|
999 |
#error I2C mode not defined as Master, Slave nor Master-Slave
|
|
1000 |
#endif
|
|
1001 |
}
|
|
1002 |
|
|
1003 |
#endif
|
|
1004 |
return new DDeviceIicClient;
|
|
1005 |
}
|
|
1006 |
|
|
1007 |
|
|
1008 |
|
|
1009 |
DChannelIicClient::DChannelIicClient()
|
|
1010 |
// Constructor
|
|
1011 |
{
|
|
1012 |
CLIENT_PRINT(("> DChannelIicClient::DChannelIicClient()"));
|
|
1013 |
iClient=&Kern::CurrentThread();
|
|
1014 |
// Increase the DThread's ref count so that it does not close without us
|
|
1015 |
iClient->Open();
|
|
1016 |
}
|
|
1017 |
|
|
1018 |
DChannelIicClient::~DChannelIicClient()
|
|
1019 |
// Destructor
|
|
1020 |
{
|
|
1021 |
CLIENT_PRINT(("> DChannelIicClient::~DChannelIicClient()"));
|
|
1022 |
__KTRACE_OPT(KRESMANAGER, Kern::Printf("> DChannelIicClient::~DChannelIicClient()"));
|
|
1023 |
delete iNotif;
|
|
1024 |
iArrayMutex->Close(NULL);
|
|
1025 |
iChanArrWrtSem->Close(NULL);
|
|
1026 |
iDfcQue->Destroy();
|
|
1027 |
// decrement the DThread's reference count
|
|
1028 |
Kern::SafeClose((DObject*&)iClient, NULL);
|
|
1029 |
|
|
1030 |
iTransStatArrayByTrans.Reset();
|
|
1031 |
iTransStatArrayByStatus.Reset();
|
|
1032 |
iTransCbArrayByTrans.Reset();
|
|
1033 |
iExtractInfoArray.Reset();
|
|
1034 |
}
|
|
1035 |
|
|
1036 |
|
|
1037 |
TInt DChannelIicClient::DoCreate(TInt /*aUnit*/, const TDesC8* /*aInfo*/, const TVersion& /*aVer*/)
|
|
1038 |
{
|
|
1039 |
CLIENT_PRINT(("> DChannelIicClient::DoCreate(TInt aUnit, const TDesC8* anInfo, const TVersion &aVer)"));
|
|
1040 |
TInt r = Kern::DynamicDfcQCreate(iDfcQue,KIicClientThreadPriority,KIicClientThreadName);
|
|
1041 |
if(r!=KErrNone)
|
|
1042 |
return r;
|
|
1043 |
SetDfcQ(iDfcQue);
|
|
1044 |
iMsgQ.Receive();
|
|
1045 |
|
|
1046 |
r = InitIicClient();
|
|
1047 |
return r;
|
|
1048 |
}
|
|
1049 |
|
|
1050 |
void DChannelIicClient::HandleMsg(TMessageBase* aMsg)
|
|
1051 |
{
|
|
1052 |
TThreadMessage& m=*(TThreadMessage*)aMsg;
|
|
1053 |
TInt id=m.iValue;
|
|
1054 |
|
|
1055 |
CLIENT_PRINT((" >ldd: DChannelIicClient::HandleMsg(TMessageBase* aMsg) id=%d\n", id));
|
|
1056 |
|
|
1057 |
if (id == (TInt)ECloseMsg)
|
|
1058 |
{
|
|
1059 |
iMsgQ.iMessage->Complete(KErrNone,EFalse);
|
|
1060 |
return;
|
|
1061 |
}
|
|
1062 |
else if (id == KMaxTInt)
|
|
1063 |
{
|
|
1064 |
DoCancel(m.Int0());
|
|
1065 |
m.Complete(KErrNone,ETrue);
|
|
1066 |
return;
|
|
1067 |
}
|
|
1068 |
|
|
1069 |
if (id<0)
|
|
1070 |
{
|
|
1071 |
TRequestStatus* pS=(TRequestStatus*)m.Ptr0();
|
|
1072 |
TInt r=DoRequest(~id, pS, m.Ptr1(), m.Ptr2());
|
|
1073 |
if (r!=KErrNone)
|
|
1074 |
{
|
|
1075 |
Kern::RequestComplete(iClient, pS, r);
|
|
1076 |
}
|
|
1077 |
m.Complete(KErrNone,ETrue);
|
|
1078 |
}
|
|
1079 |
else
|
|
1080 |
{
|
|
1081 |
TInt r=DoControl(id,m.Ptr0(),m.Ptr1());
|
|
1082 |
m.Complete(r,ETrue);
|
|
1083 |
}
|
|
1084 |
}
|
|
1085 |
|
|
1086 |
TInt DChannelIicClient::QueueTransaction(TInt aBusId, TIicBusTransaction* aTransaction, TIicBusCallback *aCallback/*NULL*/)
|
|
1087 |
{
|
|
1088 |
TInt r = KErrNone;
|
|
1089 |
#ifndef STANDALONE_CHANNEL
|
|
1090 |
if(!aCallback)
|
|
1091 |
r = IicBus::QueueTransaction(aBusId, aTransaction);
|
|
1092 |
else
|
|
1093 |
r = IicBus::QueueTransaction(aBusId, aTransaction, aCallback);
|
|
1094 |
#else
|
|
1095 |
__KTRACE_OPT(KIIC, Kern::Printf("DChannelIicClient::QueueTransaction, aBusId=0x%x,aTransaction=0x%x\n", aBusId, aTransaction));
|
|
1096 |
if(!aTransaction)
|
|
1097 |
{
|
|
1098 |
return KErrArgument;
|
|
1099 |
}
|
|
1100 |
|
|
1101 |
// Get a pointer to the channel
|
|
1102 |
TInt dumInt = 0;
|
|
1103 |
DIicClientChan* chanPtr = NULL;
|
|
1104 |
r = GetChanPtr(aBusId, dumInt, chanPtr);
|
|
1105 |
if(r == KErrNone)
|
|
1106 |
{
|
|
1107 |
if(!chanPtr)
|
|
1108 |
{
|
|
1109 |
r = KErrArgument;
|
|
1110 |
}
|
|
1111 |
else
|
|
1112 |
{
|
|
1113 |
switch(chanPtr->GetChanType())
|
|
1114 |
{
|
|
1115 |
// QueueTransaction requests are only supported by channels in Master mode.
|
|
1116 |
case DIicBusChannel::ESlave:
|
|
1117 |
{
|
|
1118 |
r = KErrNotSupported;
|
|
1119 |
break;
|
|
1120 |
}
|
|
1121 |
// If the request is supported by the Master channel, send it to the channel for processing in its thread
|
|
1122 |
case DIicBusChannel::EMasterSlave:
|
|
1123 |
{
|
|
1124 |
|
|
1125 |
aTransaction->iBusId = aBusId;
|
|
1126 |
if(!aCallback)
|
|
1127 |
r = (((DIicBusChannelMasterSlave*) (chanPtr->GetChannelPtr()))->QueueTransaction(aTransaction));
|
|
1128 |
else
|
|
1129 |
r = (((DIicBusChannelMasterSlave*) (chanPtr->GetChannelPtr()))->QueueTransaction(aTransaction, aCallback));
|
|
1130 |
break;
|
|
1131 |
}
|
|
1132 |
case DIicBusChannel::EMaster:
|
|
1133 |
{
|
|
1134 |
aTransaction->iBusId = aBusId;
|
|
1135 |
if(!aCallback)
|
|
1136 |
r = (((DIicBusChannelMaster*) (chanPtr->GetChannelPtr()))->QueueTransaction(aTransaction));
|
|
1137 |
else
|
|
1138 |
r = (((DIicBusChannelMaster*) (chanPtr->GetChannelPtr()))->QueueTransaction(aTransaction, aCallback));
|
|
1139 |
break;
|
|
1140 |
}
|
|
1141 |
default:
|
|
1142 |
{
|
|
1143 |
r = KErrGeneral;
|
|
1144 |
}
|
|
1145 |
}
|
|
1146 |
}
|
|
1147 |
}
|
|
1148 |
#endif
|
|
1149 |
return r;
|
|
1150 |
}
|
|
1151 |
|
|
1152 |
TInt DChannelIicClient::CancelTransaction(TInt aBusId, TIicBusTransaction* aTransaction)
|
|
1153 |
{
|
|
1154 |
TInt r = KErrNone;
|
|
1155 |
#ifndef STANDALONE_CHANNEL
|
|
1156 |
r = IicBus::CancelTransaction(aBusId, aTransaction);
|
|
1157 |
#else
|
|
1158 |
__KTRACE_OPT(KIIC, Kern::Printf("DChannelIicClient::CancelTransaction, aBusId=0x%x,aTransaction=0x%x\n", aBusId, aTransaction));
|
|
1159 |
if(!aTransaction)
|
|
1160 |
{
|
|
1161 |
return KErrArgument;
|
|
1162 |
}
|
|
1163 |
|
|
1164 |
// Get the channel
|
|
1165 |
TInt dumInt = 0;
|
|
1166 |
DIicClientChan* chanPtr = NULL;
|
|
1167 |
if(r == KErrNone)
|
|
1168 |
{
|
|
1169 |
r = GetChanPtr(aBusId, dumInt, chanPtr);
|
|
1170 |
if(r == KErrNone)
|
|
1171 |
{
|
|
1172 |
if(!chanPtr)
|
|
1173 |
{
|
|
1174 |
r = KErrArgument;
|
|
1175 |
}
|
|
1176 |
else
|
|
1177 |
{
|
|
1178 |
// QueueTransaction requests are only supported by channels in Master mode.
|
|
1179 |
switch(chanPtr->GetChanType())
|
|
1180 |
{
|
|
1181 |
case DIicBusChannel::ESlave:
|
|
1182 |
{
|
|
1183 |
r = KErrNotSupported;
|
|
1184 |
break;
|
|
1185 |
}
|
|
1186 |
case DIicBusChannel::EMasterSlave:
|
|
1187 |
{
|
|
1188 |
r = (((DIicBusChannelMasterSlave*) (chanPtr->GetChannelPtr()))->CancelTransaction(aTransaction));
|
|
1189 |
break;
|
|
1190 |
}
|
|
1191 |
case DIicBusChannel::EMaster:
|
|
1192 |
{
|
|
1193 |
r = (((DIicBusChannelMaster*) (chanPtr->GetChannelPtr()))->CancelTransaction(aTransaction));
|
|
1194 |
break;
|
|
1195 |
}
|
|
1196 |
default:
|
|
1197 |
{
|
|
1198 |
r = KErrGeneral;
|
|
1199 |
}
|
|
1200 |
}
|
|
1201 |
}
|
|
1202 |
}
|
|
1203 |
}
|
|
1204 |
#endif
|
|
1205 |
return r;
|
|
1206 |
}
|
|
1207 |
|
|
1208 |
|
|
1209 |
TInt DChannelIicClient::StaticExtension(TUint aId, TUint aFunction, TAny* aParam1, TAny* aParam2)
|
|
1210 |
{
|
|
1211 |
TInt r = KErrNone;
|
|
1212 |
#ifndef STANDALONE_CHANNEL
|
|
1213 |
r = IicBus::StaticExtension(aId, aFunction, aParam1, aParam2);
|
|
1214 |
#else
|
|
1215 |
// Get the channel
|
|
1216 |
TInt dumInt = 0;
|
|
1217 |
DIicClientChan* chanPtr = NULL;
|
|
1218 |
if(r == KErrNone)
|
|
1219 |
{
|
|
1220 |
r = GetChanPtr(aId, dumInt, chanPtr);
|
|
1221 |
if(r == KErrNone)
|
|
1222 |
{
|
|
1223 |
if(!chanPtr)
|
|
1224 |
{
|
|
1225 |
r = KErrArgument;
|
|
1226 |
}
|
|
1227 |
else
|
|
1228 |
{
|
|
1229 |
r = (chanPtr->GetChannelPtr())->StaticExtension(aFunction, aParam1, aParam2);
|
|
1230 |
}
|
|
1231 |
}
|
|
1232 |
}
|
|
1233 |
#endif
|
|
1234 |
return r;
|
|
1235 |
}
|
|
1236 |
|
|
1237 |
TInt DChannelIicClient::CaptureChannel(TInt aBusId, TDes8* aConfigHdr, TIicBusSlaveCallback* aCallback, TInt& aChannelId, TBool aAsynch)
|
|
1238 |
{
|
|
1239 |
TInt r = KErrNone;
|
|
1240 |
#ifndef STANDALONE_CHANNEL
|
|
1241 |
r = IicBus::CaptureChannel(aBusId, aConfigHdr, aCallback, aChannelId, aAsynch);
|
|
1242 |
#else
|
|
1243 |
// Check that that aCallback!=NULL and aConfigHdr!=NULL - if not, return KErrArgument
|
|
1244 |
if(!aCallback || !aConfigHdr)
|
|
1245 |
{
|
|
1246 |
return KErrArgument;
|
|
1247 |
}
|
|
1248 |
|
|
1249 |
// Get the channel
|
|
1250 |
TInt chanIndex = 0;
|
|
1251 |
DIicClientChan* chanPtr = NULL;
|
|
1252 |
if(r == KErrNone)
|
|
1253 |
{
|
|
1254 |
r = GetChanPtr(aBusId, chanIndex, chanPtr);
|
|
1255 |
if(r == KErrNone)
|
|
1256 |
{
|
|
1257 |
if(!chanPtr)
|
|
1258 |
{
|
|
1259 |
r = KErrArgument;
|
|
1260 |
}
|
|
1261 |
else
|
|
1262 |
{
|
|
1263 |
switch(chanPtr->GetChanType())
|
|
1264 |
{
|
|
1265 |
// CaptureChannel requests are only supported by channels in Slave mode.
|
|
1266 |
case DIicBusChannel::EMaster:
|
|
1267 |
{
|
|
1268 |
r = KErrNotSupported;
|
|
1269 |
break;
|
|
1270 |
}
|
|
1271 |
case DIicBusChannel::EMasterSlave:
|
|
1272 |
{
|
|
1273 |
r = ((DIicBusChannelMasterSlave*) (chanPtr->GetChannelPtr()))->CaptureChannel(aConfigHdr, aCallback, aChannelId, aAsynch);
|
|
1274 |
break;
|
|
1275 |
}
|
|
1276 |
case DIicBusChannel::ESlave:
|
|
1277 |
{
|
|
1278 |
r = ((DIicBusChannelSlave*)(chanPtr->GetChannelPtr()))->CaptureChannel(aConfigHdr, aCallback, aChannelId, aAsynch);
|
|
1279 |
break;
|
|
1280 |
}
|
|
1281 |
default:
|
|
1282 |
{
|
|
1283 |
r = KErrArgument;
|
|
1284 |
}
|
|
1285 |
}
|
|
1286 |
// For synchronous capture, if successful then install the channel
|
|
1287 |
if(r == KErrNone)
|
|
1288 |
{
|
|
1289 |
if(!aAsynch)
|
|
1290 |
{
|
|
1291 |
iCapturedChannel.iChanPtr = chanPtr;
|
|
1292 |
iCapturedChannel.iChannelId = iChannelId;
|
|
1293 |
}
|
|
1294 |
else
|
|
1295 |
//For asynchronous capture, record chanPtr, if later failed capture,
|
|
1296 |
//clean iCapturedChannel in client's callback.
|
|
1297 |
iCapturedChannel.iChanPtr = chanPtr;
|
|
1298 |
}
|
|
1299 |
}
|
|
1300 |
}
|
|
1301 |
}
|
|
1302 |
#endif
|
|
1303 |
return r;
|
|
1304 |
}
|
|
1305 |
|
|
1306 |
TInt DChannelIicClient::ReleaseChannel(TInt aChannelId)
|
|
1307 |
{
|
|
1308 |
TInt r = KErrNone;
|
|
1309 |
#ifndef STANDALONE_CHANNEL
|
|
1310 |
r = IicBus::ReleaseChannel(aChannelId);
|
|
1311 |
#else
|
|
1312 |
__KTRACE_OPT(KIIC, Kern::Printf("DChannelIicClient::ReleaseChannel, channelID = 0x%x \n",aChannelId));
|
|
1313 |
if(iCapturedChannel.iChannelId != aChannelId)
|
|
1314 |
return KErrNotFound;
|
|
1315 |
|
|
1316 |
if((iCapturedChannel.iChanPtr)->GetChanType() == DIicBusChannel::EMasterSlave)
|
|
1317 |
r = ((DIicBusChannelMasterSlave*)((iCapturedChannel.iChanPtr)->GetChannelPtr()))->ReleaseChannel();
|
|
1318 |
else if((iCapturedChannel.iChanPtr)->GetChanType() == DIicBusChannel::ESlave)
|
|
1319 |
r = ((DIicBusChannelSlave*)((iCapturedChannel.iChanPtr)->GetChannelPtr()))->ReleaseChannel();
|
|
1320 |
//After release channel, reset iCapturedChan
|
|
1321 |
iCapturedChannel.iChanPtr = NULL;
|
|
1322 |
iCapturedChannel.iChannelId = 0;
|
|
1323 |
#endif
|
|
1324 |
return r;
|
|
1325 |
}
|
|
1326 |
|
|
1327 |
void DChannelIicClient::DoCancel(TInt aMask)
|
|
1328 |
{
|
|
1329 |
// Cancel an outstanding request.
|
|
1330 |
CLIENT_PRINT(("DChannelIicClient::DoCancel invoked with aMask=0x%x\n", aMask));
|
|
1331 |
|
|
1332 |
// inline void CancelAsyncOperation(TRequestStatus* aStatus, TInt aBusId) {TInt* parms[2]; parms[0]=(TInt*)aStatus; parms[1]=(TInt*)aBusId;DoCancel((TInt)&parms[0]);}
|
|
1333 |
// aMask has the address on TInt* parms[2]
|
|
1334 |
// parms[0] = TRequestStatus pointer
|
|
1335 |
// parms[1] = Bus Identifier
|
|
1336 |
TInt* parms[2];
|
|
1337 |
TInt r=Kern::ThreadRawRead(iClient,(TAny*)aMask,&(parms[0]),2*sizeof(TInt*));
|
|
1338 |
if(r!=KErrNone)
|
|
1339 |
{
|
|
1340 |
CLIENT_PRINT(("DChannelIicClient::DoCancel ERROR - Can't read parms[]\n"));
|
|
1341 |
return; // Can't proceed if can't access request parameters
|
|
1342 |
}
|
|
1343 |
CLIENT_PRINT(("DChannelIicClient::DoCancel - TRequestStatus 0x%x, BusID = 0x%x\n",parms[0],parms[1]));
|
|
1344 |
|
|
1345 |
TTransStatusPair* searchPair = new TTransStatusPair();
|
|
1346 |
TTransCbPair* cbPair = new TTransCbPair();
|
|
1347 |
searchPair->iReq = (TRequestStatus*)(parms[0]);
|
|
1348 |
|
|
1349 |
GetWriteAccess();
|
|
1350 |
Lock();
|
|
1351 |
|
|
1352 |
TInt pairIndexByStatus = iTransStatArrayByStatus.FindInOrder(searchPair,TransStatusOrderByStatus);
|
|
1353 |
CLIENT_PRINT(("DChannelIicClient::DoCancel - pairIndexByStatus=0x%x\n",pairIndexByStatus));
|
|
1354 |
TInt pairIndexByTrans = KErrNotFound;
|
|
1355 |
|
|
1356 |
if(pairIndexByStatus<0)
|
|
1357 |
{
|
|
1358 |
// If the TRequestStatus object is not found then either the value was invalid or
|
|
1359 |
// the object may already have been completed.
|
|
1360 |
FreeWriteAccess();
|
|
1361 |
Unlock();
|
|
1362 |
CLIENT_PRINT(("DChannelIicClient::DoCancel() - (status) FindInOrder returned %d (status=0x%x)\n",pairIndexByStatus,parms[0]));
|
|
1363 |
}
|
|
1364 |
else
|
|
1365 |
{
|
|
1366 |
// The status-transaction pair exists in the status-index array - so remove it
|
|
1367 |
TTransStatusPair* pairPtrStatus = iTransStatArrayByStatus[pairIndexByStatus];
|
|
1368 |
iTransStatArrayByStatus.Remove(pairIndexByStatus);
|
|
1369 |
|
|
1370 |
pairIndexByTrans = iTransStatArrayByTrans.FindInOrder(pairPtrStatus,TransStatusOrderByTrans);
|
|
1371 |
CLIENT_PRINT(("DChannelIicClient::DoCancel - pairIndexByTrans=0x%x\n",pairIndexByTrans));
|
|
1372 |
if(pairIndexByTrans>=0)
|
|
1373 |
{
|
|
1374 |
iTransStatArrayByTrans.Remove(pairIndexByTrans);
|
|
1375 |
}
|
|
1376 |
FreeWriteAccess();
|
|
1377 |
Unlock();
|
|
1378 |
|
|
1379 |
CLIENT_PRINT(("DChannelIicClient::DoCancel pairPtrStatus=0x%x\n", pairPtrStatus));
|
|
1380 |
|
|
1381 |
// Allow the bus to perform any required processing
|
|
1382 |
TIicBusTransaction* trans = pairPtrStatus->iTrans;
|
|
1383 |
CLIENT_PRINT(("DChannelIicClient::CancelTransaction - invoking with busId=0x%x, trans=0x%x\n",(TInt)(parms[1]),trans));
|
|
1384 |
r = CancelTransaction((TInt)(parms[1]), trans);
|
|
1385 |
cbPair->iTrans=trans;
|
|
1386 |
TInt cbIndex = iTransCbArrayByTrans.FindInOrder(cbPair,TransCbOrderByTrans);
|
|
1387 |
TTransCbPair* theCbPair = iTransCbArrayByTrans[cbIndex];
|
|
1388 |
TIicBusCallback* cb= (iTransCbArrayByTrans[cbIndex])->iCb;
|
|
1389 |
iTransCbArrayByTrans.Remove(cbIndex);
|
|
1390 |
|
|
1391 |
// Complete the TRequestStatus object according to the returned value
|
|
1392 |
TRequestStatus* status= (TRequestStatus*)(parms[0]);
|
|
1393 |
Kern::RequestComplete(iClient, status, r);
|
|
1394 |
|
|
1395 |
// Clean up
|
|
1396 |
delete cb;
|
|
1397 |
delete theCbPair;
|
|
1398 |
// We should call CleanupExtractTrans() to delete all the objects we created in ExtractTransData()
|
|
1399 |
CleanupExtractTrans(trans);
|
|
1400 |
CleanupTransaction(trans);
|
|
1401 |
delete pairPtrStatus;
|
|
1402 |
}
|
|
1403 |
|
|
1404 |
delete cbPair;
|
|
1405 |
delete searchPair;
|
|
1406 |
|
|
1407 |
return;
|
|
1408 |
}
|
|
1409 |
|
|
1410 |
|
|
1411 |
// Function to support preamble testing
|
|
1412 |
void PreambleCallbackFunc(TIicBusTransaction* /*aTrans*/, TAny* aParam)
|
|
1413 |
{
|
|
1414 |
CLIENT_PRINT(("IIC Client: PreambleCallbackFunc invoked\n"));
|
|
1415 |
// aParam is the address of the client that created the transaction object
|
|
1416 |
__ASSERT_ALWAYS(aParam!=NULL,Kern::Fault("PreambleCallbackFunc, client address ==NULL",__LINE__));
|
|
1417 |
DChannelIicClient *client = (DChannelIicClient*)aParam;
|
|
1418 |
__ASSERT_ALWAYS(client->iClient!=NULL,Kern::Fault("PreambleCallbackFunc, iClient==NULL",__LINE__));
|
|
1419 |
__ASSERT_ALWAYS(client->iPreambleStatus!=NULL,Kern::Fault("PreambleCallbackFunc, iPreambleStatus==NULL",__LINE__));
|
|
1420 |
Kern::RequestComplete(client->iClient, client->iPreambleStatus, KErrNone);
|
|
1421 |
}
|
|
1422 |
|
|
1423 |
TIicBusTransaction* DChannelIicClient::iMultiTransac;
|
|
1424 |
|
|
1425 |
// Function to support multi transc testing
|
|
1426 |
TIicBusTransaction* DChannelIicClient::MultiTranscCallbackFunc(TIicBusTransaction* /*aTrans*/, TAny* aParam)
|
|
1427 |
{
|
|
1428 |
CLIENT_PRINT(("IIC Client: MultiTranscCallbackFunc invoked\n"));
|
|
1429 |
// aParam is the address of the client that created the transaction object
|
|
1430 |
__ASSERT_ALWAYS(aParam!=NULL,Kern::Fault("MultiTranscCallbackFunc, client address ==NULL",__LINE__));
|
|
1431 |
DChannelIicClient *client = (DChannelIicClient*)aParam;
|
|
1432 |
__ASSERT_ALWAYS(client->iClient!=NULL,Kern::Fault("MultiTranscCallbackFunc, iClient==NULL",__LINE__));
|
|
1433 |
__ASSERT_ALWAYS(client->iMultiTranscStatus!=NULL,Kern::Fault("MultiTranscCallbackFunc, iMultiTranscStatus==NULL",__LINE__));
|
|
1434 |
Kern::RequestComplete(client->iClient, client->iMultiTranscStatus, KErrNone);
|
|
1435 |
return iMultiTransac;
|
|
1436 |
}
|
|
1437 |
|
|
1438 |
TInt DChannelIicClient::CleanupExtractTrans(TIicBusTransaction* aTrans)
|
|
1439 |
{
|
|
1440 |
// Clean up the data created in ExtractTransData()
|
|
1441 |
TExtractInfo *extractInfo = new TExtractInfo();
|
|
1442 |
extractInfo->iTrans = aTrans;
|
|
1443 |
TInt index = iExtractInfoArray.FindInOrder(extractInfo, ExtractInfoOrderByTrans);
|
|
1444 |
if(index >= 0)
|
|
1445 |
{
|
|
1446 |
delete iExtractInfoArray[index];
|
|
1447 |
iExtractInfoArray.Remove(index);
|
|
1448 |
}
|
|
1449 |
delete extractInfo;
|
|
1450 |
return KErrNone;
|
|
1451 |
}
|
|
1452 |
|
|
1453 |
TInt DChannelIicClient::ExtractTransData(TUsideTracnDesc* aUsideTrancnDesc, TIicBusTransaction*& aTrans)
|
|
1454 |
{
|
|
1455 |
// Utility function to create a TIicBusTransaction object from the parameters passed by the user-side TUsideTracnDesc object
|
|
1456 |
|
|
1457 |
TInt r = KErrNone;
|
|
1458 |
TUsideTracnDesc usTrans;
|
|
1459 |
r=Kern::ThreadRawRead(iClient,aUsideTrancnDesc,&usTrans,sizeof(TUsideTracnDesc));
|
|
1460 |
if(r!=KErrNone)
|
|
1461 |
{
|
|
1462 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read usTrans\n"));
|
|
1463 |
return KErrGeneral; // Can't proceed if can't access request parameters
|
|
1464 |
}
|
|
1465 |
// Ensure pointers potentially used for allocation are NULL, to facilitate cleanup
|
|
1466 |
iSpiBuf=NULL;
|
|
1467 |
iI2cBuf=NULL;
|
|
1468 |
iTfer=NULL;
|
|
1469 |
iTransPreamble=NULL;
|
|
1470 |
iFdTfer=NULL;
|
|
1471 |
|
|
1472 |
// Get the header (depends on the bus type)
|
|
1473 |
TBusType busType = usTrans.iType;
|
|
1474 |
TConfigSpiBufV01 *spiBuf = NULL;
|
|
1475 |
TConfigI2cBufV01 *i2cBuf = NULL;
|
|
1476 |
// extractInfo is used to keep the bufPtr and tfer of the transaction,
|
|
1477 |
// and will later be stored in iExtractInfoArray, sorting by transaction.
|
|
1478 |
// The extractInfo object will be freed in CleanupExtractTrans.
|
|
1479 |
TExtractInfo *extractInfo = new TExtractInfo();
|
|
1480 |
TDes8* bufPtr=NULL;
|
|
1481 |
if(busType == ESpi)
|
|
1482 |
{
|
|
1483 |
if((spiBuf = new TConfigSpiBufV01()) == NULL)
|
|
1484 |
{
|
|
1485 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - unable to allocate spiBuf\n"));
|
|
1486 |
return KErrNoMemory;
|
|
1487 |
}
|
|
1488 |
if((r=Kern::ThreadDesRead(iClient, usTrans.iHeader, *spiBuf, 0, KChunkShiftBy0 ))!=KErrNone)
|
|
1489 |
{
|
|
1490 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read usTrans.iHeader to spiBuf\n"));
|
|
1491 |
return KErrGeneral;
|
|
1492 |
}
|
|
1493 |
bufPtr=(TDes8*)spiBuf;
|
|
1494 |
}
|
|
1495 |
else if(busType == EI2c)
|
|
1496 |
{
|
|
1497 |
if((i2cBuf = new TConfigI2cBufV01()) == NULL)
|
|
1498 |
{
|
|
1499 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - unable to allocate i2cBuf\n"));
|
|
1500 |
return KErrNoMemory;
|
|
1501 |
}
|
|
1502 |
if((r=Kern::ThreadDesRead(iClient, usTrans.iHeader, *i2cBuf, 0, KChunkShiftBy0 ))!=KErrNone)
|
|
1503 |
{
|
|
1504 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read usTrans.iHeader to i2cBuf\n"));
|
|
1505 |
return KErrGeneral;
|
|
1506 |
}
|
|
1507 |
bufPtr=(TDes8*)i2cBuf;
|
|
1508 |
}
|
|
1509 |
else
|
|
1510 |
{
|
|
1511 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - unrecognised bus type\n"));
|
|
1512 |
return KErrGeneral;
|
|
1513 |
}
|
|
1514 |
extractInfo->iBufPtr = bufPtr;
|
|
1515 |
// Get the half-duplex transfer information
|
|
1516 |
TUsideTferDesc* usTferPtr = usTrans.iHalfDuplexTrans;
|
|
1517 |
TUsideTferDesc usTfer;
|
|
1518 |
r=Kern::ThreadRawRead(iClient,usTferPtr,&usTfer,sizeof(TUsideTferDesc));
|
|
1519 |
if(r!=KErrNone)
|
|
1520 |
{
|
|
1521 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read half-duplex usTfer\n"));
|
|
1522 |
return KErrGeneral; // Can't proceed if can't access request parameters
|
|
1523 |
}
|
|
1524 |
// Need to access the descriptor holding the information to be transferred
|
|
1525 |
TBuf8 <MAX_TRANS_LENGTH> tferData;
|
|
1526 |
r=Kern::ThreadDesRead(iClient,usTfer.iBuffer,tferData,0,KChunkShiftBy0);
|
|
1527 |
if(r!=KErrNone)
|
|
1528 |
{
|
|
1529 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read half-duplex tferData\n"));
|
|
1530 |
return KErrGeneral; // Can't proceed if can't access request parameters
|
|
1531 |
}
|
|
1532 |
|
|
1533 |
TIicBusTransfer::TReqType type=(usTfer.iType == EMasterWrite)?TIicBusTransfer::EMasterWrite:TIicBusTransfer::EMasterRead;
|
|
1534 |
tfer7 = new TIicBusTransfer(type, usTfer.iBufGranularity, &tferData);
|
|
1535 |
extractInfo->iTfer = tfer7;
|
|
1536 |
// Construct the appropriate transaction object with the half-duplex information
|
|
1537 |
TUint8 transFlags = usTrans.iFlags;
|
|
1538 |
|
|
1539 |
if((transFlags&KTransactionWithPreamble)&&(transFlags&KTransactionWithMultiTransc))
|
|
1540 |
{
|
|
1541 |
if(usTrans.iPreambleArg == NULL)
|
|
1542 |
{
|
|
1543 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - ExtTrans TRequestStatus==NULL\n"));
|
|
1544 |
return KErrArgument;
|
|
1545 |
}
|
|
1546 |
if(usTrans.iMultiTranscArg == NULL)
|
|
1547 |
{
|
|
1548 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - ExtTrans TRequestStatus==NULL\n"));
|
|
1549 |
return KErrArgument;
|
|
1550 |
}
|
|
1551 |
iPreambleStatus = (TRequestStatus*)(usTrans.iPreambleArg);
|
|
1552 |
iMultiTranscStatus = (TRequestStatus*)(usTrans.iMultiTranscArg);
|
|
1553 |
TIicBusTransactionPreambleExt* transExt;
|
|
1554 |
|
|
1555 |
transExt = new TIicBusTransactionPreambleExt(bufPtr, tfer7, (TIicBusPreamble)(&PreambleCallbackFunc), this,
|
|
1556 |
(TIicBusMultiTranscCbFn)(&MultiTranscCallbackFunc), this);
|
|
1557 |
if(transExt == NULL)
|
|
1558 |
{
|
|
1559 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't create trans\n"));
|
|
1560 |
return KErrNoMemory; // Can't proceed if can't access request parameters
|
|
1561 |
}
|
|
1562 |
aTrans = transExt;
|
|
1563 |
|
|
1564 |
}
|
|
1565 |
else if(transFlags & KTransactionWithPreamble)
|
|
1566 |
{
|
|
1567 |
// Preamble required - construct the derived-class transaction object
|
|
1568 |
if(usTrans.iPreambleArg == NULL)
|
|
1569 |
{
|
|
1570 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - preamble TRequestStatus==NULL\n"));
|
|
1571 |
return KErrArgument;
|
|
1572 |
}
|
|
1573 |
iPreambleStatus = (TRequestStatus*)(usTrans.iPreambleArg);
|
|
1574 |
TIicBusTransactionPreamble* TransPreamble;
|
|
1575 |
TransPreamble = new TIicBusTransactionPreamble(bufPtr, tfer7, (TIicBusPreamble)(&PreambleCallbackFunc), this);
|
|
1576 |
if(TransPreamble == NULL)
|
|
1577 |
{
|
|
1578 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't create trans\n"));
|
|
1579 |
return KErrNoMemory; // Can't proceed if can't access request parameters
|
|
1580 |
}
|
|
1581 |
aTrans = TransPreamble;
|
|
1582 |
}
|
|
1583 |
else if(transFlags & KTransactionWithMultiTransc)
|
|
1584 |
{
|
|
1585 |
// Preamble required - construct the derived-class transaction object
|
|
1586 |
if(usTrans.iMultiTranscArg == NULL)
|
|
1587 |
{
|
|
1588 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Multi Transc TRequestStatus==NULL\n"));
|
|
1589 |
return KErrArgument;
|
|
1590 |
}
|
|
1591 |
iMultiTranscStatus = (TRequestStatus*)(usTrans.iMultiTranscArg);
|
|
1592 |
TIicBusTransactionMultiTransc* transMultiTransc;
|
|
1593 |
transMultiTransc = new TIicBusTransactionMultiTransc(bufPtr, tfer7, (TIicBusMultiTranscCbFn)(&MultiTranscCallbackFunc), this);
|
|
1594 |
if(transMultiTransc == NULL)
|
|
1595 |
{
|
|
1596 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't create trans\n"));
|
|
1597 |
return KErrNoMemory; // Can't proceed if can't access request parameters
|
|
1598 |
}
|
|
1599 |
aTrans = transMultiTransc;
|
|
1600 |
}
|
|
1601 |
else
|
|
1602 |
{
|
|
1603 |
// Preamble not required
|
|
1604 |
aTrans = new TIicBusTransaction(bufPtr, tfer7);
|
|
1605 |
if(aTrans == NULL)
|
|
1606 |
{
|
|
1607 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't create trans\n"));
|
|
1608 |
return KErrNoMemory; // Can't proceed if can't access request parameters
|
|
1609 |
}
|
|
1610 |
}
|
|
1611 |
|
|
1612 |
// If full duplex transaction is required get that information, too
|
|
1613 |
usTferPtr = usTrans.iFullDuplexTrans;
|
|
1614 |
if(usTferPtr!=NULL)
|
|
1615 |
{
|
|
1616 |
r=Kern::ThreadRawRead(iClient,usTferPtr,&usTfer,sizeof(TUsideTferDesc));
|
|
1617 |
if(r!=KErrNone)
|
|
1618 |
{
|
|
1619 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read full-duplex usTfer\n"));
|
|
1620 |
return KErrGeneral; // Can't proceed if can't access request parameters
|
|
1621 |
}
|
|
1622 |
// Need to access the descriptor holding the information to be transferred
|
|
1623 |
TBuf8 <MAX_TRANS_LENGTH> fdTferData;
|
|
1624 |
r=Kern::ThreadDesRead(iClient,usTfer.iBuffer,fdTferData,0,KChunkShiftBy0);
|
|
1625 |
if(r!=KErrNone)
|
|
1626 |
{
|
|
1627 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - Can't read full-duplex tferData\n"));
|
|
1628 |
return KErrGeneral; // Can't proceed if can't access request parameters
|
|
1629 |
}
|
|
1630 |
|
|
1631 |
type=(usTfer.iType == EMasterWrite)?TIicBusTransfer::EMasterWrite:TIicBusTransfer::EMasterRead;
|
|
1632 |
r=aTrans->SetFullDuplexTrans(iFdTfer);
|
|
1633 |
if(r!=KErrNone)
|
|
1634 |
{
|
|
1635 |
CLIENT_PRINT(("DChannelIicClient::ExtractTransData ERROR - SetFullDuplexTrans returned %d\n",r));
|
|
1636 |
return r;
|
|
1637 |
}
|
|
1638 |
}
|
|
1639 |
extractInfo->iTrans = aTrans;
|
|
1640 |
iExtractInfoArray.InsertInOrder(extractInfo, ExtractInfoOrderByTrans);
|
|
1641 |
return r;
|
|
1642 |
}
|
|
1643 |
|
|
1644 |
#define KMaxTferTextLength 20
|
|
1645 |
#define KLongNodeTestLength 15
|
|
1646 |
#define KShortNodeTestLength 5
|
|
1647 |
_LIT(KFullTracnHdrText,"Full duplex test"); // length = 22
|
|
1648 |
#define KFullTracnHdrTextLength 16
|
|
1649 |
|
|
1650 |
|
|
1651 |
// Create transfer list with three nodes
|
|
1652 |
// All memories are allocated from the kernel heap and referenced by class members
|
|
1653 |
// DeleteFullDuplexTest should be called to release memory after use.
|
|
1654 |
// List created here will be assigned to iHalfDuplexTrans in TIicBusTransaction
|
|
1655 |
// If aNodeLength3 = 0, only return a 2 nodes transfer
|
|
1656 |
TInt DChannelIicClient::CreateTransferListHalfDuplex(
|
|
1657 |
TIicBusTransfer::TReqType aNodeDir1, TInt aNodeLength1,
|
|
1658 |
TIicBusTransfer::TReqType aNodeDir2, TInt aNodeLength2,
|
|
1659 |
TIicBusTransfer::TReqType aNodeDir3, TInt aNodeLength3)
|
|
1660 |
{
|
|
1661 |
buf1 = HBuf8::New(KMaxTferTextLength);
|
|
1662 |
buf2 = HBuf8::New(KMaxTferTextLength);
|
|
1663 |
buf3 = HBuf8::New(KMaxTferTextLength);
|
|
1664 |
tfer1 = new TIicBusTransfer(aNodeDir1,8,buf1);
|
|
1665 |
tfer2 = new TIicBusTransfer(aNodeDir2,8,buf2);
|
|
1666 |
tfer3 = new TIicBusTransfer(aNodeDir3,8,buf3);
|
|
1667 |
|
|
1668 |
if(buf1 == NULL||buf2 == NULL||buf3 == NULL||
|
|
1669 |
tfer1 == NULL||tfer2 == NULL||tfer3 == NULL)
|
|
1670 |
{
|
|
1671 |
delete buf1; delete buf2; delete buf3;
|
|
1672 |
delete tfer1; delete tfer2; delete tfer3;
|
|
1673 |
return KErrNoMemory;
|
|
1674 |
}
|
|
1675 |
|
|
1676 |
TInt i;
|
|
1677 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength1); i++) buf1->Append('*');
|
|
1678 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength2); i++) buf2->Append('*');
|
|
1679 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength3); i++) buf3->Append('*');
|
|
1680 |
|
|
1681 |
tfer1->LinkAfter(tfer2);
|
|
1682 |
|
|
1683 |
//allow two nodes
|
|
1684 |
if(aNodeLength3>0)
|
|
1685 |
{
|
|
1686 |
tfer2->LinkAfter(tfer3);
|
|
1687 |
}
|
|
1688 |
|
|
1689 |
return KErrNone;
|
|
1690 |
|
|
1691 |
}
|
|
1692 |
|
|
1693 |
// Create transfer list with three nodes
|
|
1694 |
// All memories are allocated from the kernel heap and referenced by class members
|
|
1695 |
// DeleteFullDuplexTest should be called to release memory after use.
|
|
1696 |
// List created here will be assigned to iFullDuplexTrans in TIicBusTransaction
|
|
1697 |
// If aNodeLength3 = 0, only return a 2 nodes transfer
|
|
1698 |
TInt DChannelIicClient::CreateTransferListFullDuplex(
|
|
1699 |
TIicBusTransfer::TReqType aNodeDir1, TInt aNodeLength1,
|
|
1700 |
TIicBusTransfer::TReqType aNodeDir2, TInt aNodeLength2,
|
|
1701 |
TIicBusTransfer::TReqType aNodeDir3, TInt aNodeLength3)
|
|
1702 |
{
|
|
1703 |
buf4 = HBuf8::New(KMaxTferTextLength);
|
|
1704 |
buf5 = HBuf8::New(KMaxTferTextLength);
|
|
1705 |
buf6 = HBuf8::New(KMaxTferTextLength);
|
|
1706 |
tfer4 = new TIicBusTransfer(aNodeDir1,8,buf4);
|
|
1707 |
tfer5 = new TIicBusTransfer(aNodeDir2,8,buf5);
|
|
1708 |
tfer6 = new TIicBusTransfer(aNodeDir3,8,buf6);
|
|
1709 |
|
|
1710 |
if(buf4 == NULL||buf5 == NULL||buf6 == NULL||
|
|
1711 |
tfer4 == NULL||tfer5 == NULL||tfer6 == NULL)
|
|
1712 |
{
|
|
1713 |
delete buf4; delete buf5; delete buf6;
|
|
1714 |
delete tfer4; delete tfer5; delete tfer6;
|
|
1715 |
return KErrNoMemory;
|
|
1716 |
}
|
|
1717 |
|
|
1718 |
TInt i;
|
|
1719 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength1); i++) buf4->Append('*');
|
|
1720 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength2); i++) buf5->Append('*');
|
|
1721 |
for(i=0; (i<KMaxTferTextLength)&&(i<aNodeLength3); i++) buf6->Append('*');
|
|
1722 |
|
|
1723 |
tfer4->LinkAfter(tfer5);
|
|
1724 |
|
|
1725 |
//allow two nodes
|
|
1726 |
if(aNodeLength3>0)
|
|
1727 |
{
|
|
1728 |
tfer5->LinkAfter(tfer6);
|
|
1729 |
}
|
|
1730 |
|
|
1731 |
return KErrNone;
|
|
1732 |
|
|
1733 |
}
|
|
1734 |
|
|
1735 |
// Delete transaction and all allocated transfers and buffers
|
|
1736 |
TInt DChannelIicClient::DeleteFullDuplexTest(TIicBusTransaction *aTrans)
|
|
1737 |
{
|
|
1738 |
delete buf1; delete buf2; delete buf3;
|
|
1739 |
delete tfer1; delete tfer2; delete tfer3;
|
|
1740 |
|
|
1741 |
delete buf4; delete buf5; delete buf6;
|
|
1742 |
delete tfer4; delete tfer5; delete tfer6;
|
|
1743 |
|
|
1744 |
delete header;
|
|
1745 |
delete aTrans;
|
|
1746 |
|
|
1747 |
return KErrNone;
|
|
1748 |
}
|
|
1749 |
|
|
1750 |
// Do full duplex creation test
|
|
1751 |
TInt DChannelIicClient::DoCreateFullDuplexTransTest(TInt aTestType)
|
|
1752 |
{
|
|
1753 |
CLIENT_PRINT(("DChannelIicClient::DoCreateFullDuplexTransTest starts\n"));
|
|
1754 |
|
|
1755 |
TInt r=KErrNone;
|
|
1756 |
switch(aTestType)
|
|
1757 |
{
|
|
1758 |
case RBusDevIicClient::ETestValidFullDuplexTrans:
|
|
1759 |
{
|
|
1760 |
// equal length, opposite transfer direction
|
|
1761 |
r = CreateTransferListHalfDuplex(
|
|
1762 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1763 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1764 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength);
|
|
1765 |
if(r!=KErrNone) break;
|
|
1766 |
r = CreateTransferListFullDuplex(
|
|
1767 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1768 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1769 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength);
|
|
1770 |
if(r!=KErrNone) break;
|
|
1771 |
break;
|
|
1772 |
}
|
|
1773 |
case RBusDevIicClient::ETestInvalidFullDuplexTrans1:
|
|
1774 |
{
|
|
1775 |
// equal length, same transfer direction
|
|
1776 |
r = CreateTransferListHalfDuplex(
|
|
1777 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1778 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1779 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength);
|
|
1780 |
if(r!=KErrNone) break;
|
|
1781 |
r = CreateTransferListFullDuplex(
|
|
1782 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1783 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1784 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength);
|
|
1785 |
if(r!=KErrNone) break;
|
|
1786 |
break;
|
|
1787 |
}
|
|
1788 |
case RBusDevIicClient::ETestInvalidFullDuplexTrans2:
|
|
1789 |
{
|
|
1790 |
// different, opposite transfer direction
|
|
1791 |
r = CreateTransferListHalfDuplex(
|
|
1792 |
TIicBusTransfer::EMasterWrite, KShortNodeTestLength,
|
|
1793 |
TIicBusTransfer::EMasterRead, KShortNodeTestLength,
|
|
1794 |
TIicBusTransfer::EMasterWrite, KShortNodeTestLength);
|
|
1795 |
if(r!=KErrNone) break;
|
|
1796 |
r = CreateTransferListFullDuplex(
|
|
1797 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1798 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1799 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength);
|
|
1800 |
if(r!=KErrNone) break;
|
|
1801 |
break;
|
|
1802 |
}
|
|
1803 |
case RBusDevIicClient::ETestLastNodeFullDuplexTrans:
|
|
1804 |
{
|
|
1805 |
// different length for the last node
|
|
1806 |
r = CreateTransferListHalfDuplex(
|
|
1807 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1808 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1809 |
TIicBusTransfer::EMasterWrite, KShortNodeTestLength);
|
|
1810 |
if(r!=KErrNone) break;
|
|
1811 |
r = CreateTransferListFullDuplex(
|
|
1812 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1813 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1814 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength);
|
|
1815 |
if(r!=KErrNone) break;
|
|
1816 |
break;
|
|
1817 |
}
|
|
1818 |
case RBusDevIicClient::ETestDiffNodeNoFullDuplexTrans:
|
|
1819 |
{
|
|
1820 |
// equal length, opposite transfer direction
|
|
1821 |
r = CreateTransferListHalfDuplex(
|
|
1822 |
TIicBusTransfer::EMasterWrite, KLongNodeTestLength,
|
|
1823 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1824 |
TIicBusTransfer::EMasterWrite, KShortNodeTestLength);
|
|
1825 |
if(r!=KErrNone) break;
|
|
1826 |
r = CreateTransferListFullDuplex(
|
|
1827 |
TIicBusTransfer::EMasterRead, KLongNodeTestLength,
|
|
1828 |
TIicBusTransfer::EMasterWrite, KShortNodeTestLength,
|
|
1829 |
TIicBusTransfer::EMasterRead, 0);
|
|
1830 |
if(r!=KErrNone) break;
|
|
1831 |
break;
|
|
1832 |
}
|
|
1833 |
|
|
1834 |
|
|
1835 |
default:
|
|
1836 |
break;
|
|
1837 |
}
|
|
1838 |
|
|
1839 |
header = HBuf8::New(KFullTracnHdrTextLength);
|
|
1840 |
TIicBusTransaction *Trans = new TIicBusTransaction(header,tfer1);
|
|
1841 |
|
|
1842 |
if((r!=KErrNone) || (header == NULL) || (Trans == NULL))
|
|
1843 |
{
|
|
1844 |
CLIENT_PRINT(("DChannelIicClient::DoCreateFullDuplexTransTest ERROR - failed to allocate the necessary memory\n"));
|
|
1845 |
DeleteFullDuplexTest(Trans);
|
|
1846 |
return KErrNoMemory;
|
|
1847 |
}
|
|
1848 |
|
|
1849 |
header->Copy(KFullTracnHdrText);
|
|
1850 |
|
|
1851 |
TInt TestResult = Trans->SetFullDuplexTrans(tfer4);
|
|
1852 |
|
|
1853 |
CLIENT_PRINT(("DChannelIicClient::DoCreateFullDuplexTransTest IIC after SetFullDuplexTrans TestResult =%d\n", TestResult));
|
|
1854 |
|
|
1855 |
r = DeleteFullDuplexTest(Trans);
|
|
1856 |
|
|
1857 |
return TestResult;
|
|
1858 |
|
|
1859 |
}
|
|
1860 |
|
|
1861 |
|
|
1862 |
TInt DChannelIicClient::CreateDefaultSpiBuf(TConfigSpiBufV01*& aBuf)
|
|
1863 |
// Utility function to create a buffer for the SPI bus
|
|
1864 |
{
|
|
1865 |
TInt r=CreateSpiBuf(aBuf, ESpiWordWidth_8, 100000, ESpiPolarityLowRisingEdge, 100 ,ELittleEndian, EMsbFirst, 10, ESpiCSPinActiveLow);
|
|
1866 |
return r;
|
|
1867 |
}
|
|
1868 |
|
|
1869 |
// DoPriorityTest does the following actions:
|
|
1870 |
// 1. switch the bus (only use SPI test PSL) to priority test mode
|
|
1871 |
// 2. create 5 test transactions with different priorities and 1 blocking transaction
|
|
1872 |
// 3. enable blocking in test channel
|
|
1873 |
// we can only block the test channel, we cannot suspend the bus controller
|
|
1874 |
// 3. send blocking transaction to the test channel
|
|
1875 |
// the blocking transaction is just normal transaction.
|
|
1876 |
// the test channel will be blocked once the first transaction is arrived
|
|
1877 |
// 4. send test transactions in opposite order to their priority
|
|
1878 |
// 5. unblock test channel
|
|
1879 |
// 6. read test result from channel
|
|
1880 |
// 7. switch the bus to normal mode
|
|
1881 |
TInt DChannelIicClient::DoPriorityTest(TInt aBusId)
|
|
1882 |
{
|
|
1883 |
TInt TestResult=KErrNone;
|
|
1884 |
// Use the IIC StaticExtension interface to pass the request to the bus implementation
|
|
1885 |
// To support testing, any values of aId for StaticExtension must be shifted left one place
|
|
1886 |
TUint testId = ((TUint)(RBusDevIicClient::ECtlIoPriorityTest))<<1;
|
|
1887 |
TInt r = KErrNone;
|
|
1888 |
|
|
1889 |
r = StaticExtension(aBusId, testId, NULL, NULL);
|
|
1890 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1891 |
if(r == KErrNone)
|
|
1892 |
{
|
|
1893 |
buf1 = HBuf8::New(1);
|
|
1894 |
buf2 = HBuf8::New(1);
|
|
1895 |
buf3 = HBuf8::New(1);
|
|
1896 |
buf4 = HBuf8::New(1);
|
|
1897 |
buf5 = HBuf8::New(1);
|
|
1898 |
//buffer for blocking transaction
|
|
1899 |
buf6 = HBuf8::New(1);
|
|
1900 |
|
|
1901 |
if(buf1 == NULL||buf2 == NULL||buf3 == NULL||buf4 == NULL||buf5 == NULL||buf6 == NULL)
|
|
1902 |
{
|
|
1903 |
delete buf1; delete buf2; delete buf3; delete buf4; delete buf5; delete buf6;
|
|
1904 |
r = StaticExtension(aBusId, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
1905 |
return KErrNoMemory;
|
|
1906 |
}
|
|
1907 |
tfer1 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf1);
|
|
1908 |
tfer2 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf2);
|
|
1909 |
tfer3 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf3);
|
|
1910 |
tfer4 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf4);
|
|
1911 |
tfer5 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf5);
|
|
1912 |
//transfer for blocking transaction
|
|
1913 |
tfer6 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf6);
|
|
1914 |
|
|
1915 |
if(tfer1 == NULL||tfer2 == NULL||tfer3 == NULL||tfer4 == NULL||tfer5 == NULL||tfer6 == NULL)
|
|
1916 |
{
|
|
1917 |
delete buf1; delete buf2; delete buf3; delete buf4; delete buf5; delete buf6;
|
|
1918 |
delete tfer1; delete tfer2; delete tfer3; delete tfer4; delete tfer5; delete tfer6;
|
|
1919 |
r = StaticExtension(aBusId, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
1920 |
return KErrNoMemory;
|
|
1921 |
}
|
|
1922 |
|
|
1923 |
TConfigSpiBufV01* spiHeader1 = NULL;
|
|
1924 |
TConfigSpiBufV01* spiHeader2 = NULL;
|
|
1925 |
TConfigSpiBufV01* spiHeader3 = NULL;
|
|
1926 |
TConfigSpiBufV01* spiHeader4 = NULL;
|
|
1927 |
TConfigSpiBufV01* spiHeader5 = NULL;
|
|
1928 |
TConfigSpiBufV01* spiHeaderBlock = NULL; //header for blocking transaction
|
|
1929 |
|
|
1930 |
|
|
1931 |
TInt r = CreateDefaultSpiBuf(spiHeader1);
|
|
1932 |
if(r == KErrNone) r = CreateDefaultSpiBuf(spiHeader2);
|
|
1933 |
if(r == KErrNone) r = CreateDefaultSpiBuf(spiHeader3);
|
|
1934 |
if(r == KErrNone) r = CreateDefaultSpiBuf(spiHeader4);
|
|
1935 |
if(r == KErrNone) r = CreateDefaultSpiBuf(spiHeader5);
|
|
1936 |
//header for blocking transaction
|
|
1937 |
if(r == KErrNone) r = CreateDefaultSpiBuf(spiHeaderBlock);
|
|
1938 |
|
|
1939 |
if(r != KErrNone||spiHeader1 == NULL||spiHeader2 == NULL||spiHeader3 == NULL||spiHeader4 == NULL||spiHeader5 == NULL||spiHeaderBlock == NULL)
|
|
1940 |
{
|
|
1941 |
delete buf1; delete buf2; delete buf3; delete buf4; delete buf5; delete buf6;
|
|
1942 |
delete tfer1; delete tfer2; delete tfer3; delete tfer4; delete tfer5; delete tfer6;
|
|
1943 |
delete spiHeader1; delete spiHeader2; delete spiHeader3; delete spiHeader4; delete spiHeader5; delete spiHeaderBlock;
|
|
1944 |
r = StaticExtension(aBusId, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
1945 |
return KErrNoMemory;
|
|
1946 |
}
|
|
1947 |
|
|
1948 |
TIicBusTransaction* Transc1; Transc1 = new TIicBusTransaction(spiHeader1,tfer1, KPriorityTestPrio[0]);
|
|
1949 |
TIicBusTransaction* Transc2; Transc2 = new TIicBusTransaction(spiHeader2,tfer2, KPriorityTestPrio[1]);
|
|
1950 |
TIicBusTransaction* Transc3; Transc3 = new TIicBusTransaction(spiHeader3,tfer3, KPriorityTestPrio[2]);
|
|
1951 |
TIicBusTransaction* Transc4; Transc4 = new TIicBusTransaction(spiHeader4,tfer4, KPriorityTestPrio[3]);
|
|
1952 |
TIicBusTransaction* Transc5; Transc5 = new TIicBusTransaction(spiHeader5,tfer5, KPriorityTestPrio[4]);
|
|
1953 |
//blocking transaction
|
|
1954 |
TIicBusTransaction* TranscBlock; TranscBlock = new TIicBusTransaction(spiHeaderBlock,tfer6, KPriorityTestPrio[5]);
|
|
1955 |
|
|
1956 |
if(Transc1 == NULL||Transc2 == NULL||Transc3 == NULL||Transc4 == NULL||Transc5 == NULL||TranscBlock == NULL)
|
|
1957 |
{
|
|
1958 |
delete buf1; delete buf2; delete buf3; delete buf4; delete buf5; delete buf6;
|
|
1959 |
delete tfer1; delete tfer2; delete tfer3; delete tfer4; delete tfer5; delete tfer6;
|
|
1960 |
delete spiHeader1; delete spiHeader2; delete spiHeader3; delete spiHeader4; delete spiHeader5; delete spiHeaderBlock;
|
|
1961 |
delete Transc1; delete Transc2; delete Transc3; delete Transc4; delete Transc5; delete TranscBlock;
|
|
1962 |
r = StaticExtension(aBusId, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
1963 |
return KErrNoMemory;
|
|
1964 |
}
|
|
1965 |
|
|
1966 |
//dummy call back func is provided for asyn call
|
|
1967 |
TIicBusCallback* cb = new TIicBusCallback(DummyCallbackFunc, this, iDfcQue, 5); // 5 arbitrary
|
|
1968 |
|
|
1969 |
// block the device channel. the channel will not be blocked until the first transaction arrive the channel
|
|
1970 |
// To support testing, any values of aId for StaticExtension must be shifted left one place
|
|
1971 |
TUint testId=((TUint)RBusDevIicClient::ECtlIoBlockReqCompletion)<<1;
|
|
1972 |
r = StaticExtension(aBusId, testId, NULL, NULL);
|
|
1973 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1974 |
|
|
1975 |
r = QueueTransaction(aBusId, TranscBlock, cb); //send TranscBlock to block the channel
|
|
1976 |
// send ordered transactions
|
|
1977 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1978 |
|
|
1979 |
r = QueueTransaction(aBusId, Transc1, cb);
|
|
1980 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1981 |
r = QueueTransaction(aBusId, Transc2, cb);
|
|
1982 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1983 |
r = QueueTransaction(aBusId, Transc3, cb);
|
|
1984 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1985 |
r = QueueTransaction(aBusId, Transc4, cb);
|
|
1986 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1987 |
r = QueueTransaction(aBusId, Transc5, cb);
|
|
1988 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1989 |
|
|
1990 |
// unblock device channel
|
|
1991 |
testId=((TUint)RBusDevIicClient::ECtlIoUnblockReqCompletion)<<1;
|
|
1992 |
r = StaticExtension(aBusId, testId, NULL, NULL);
|
|
1993 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
1994 |
|
|
1995 |
#define KPriorityTestGetResultRetry 3
|
|
1996 |
for(TInt i=0; i<KPriorityTestGetResultRetry ; i++)
|
|
1997 |
{
|
|
1998 |
NKern::Sleep(500);
|
|
1999 |
testId=((TUint)RBusDevIicClient::EGetTestResult)<<1;
|
|
2000 |
TestResult = StaticExtension(aBusId, testId, NULL, NULL);
|
|
2001 |
if(TestResult!=KErrNotReady) break;
|
|
2002 |
}
|
|
2003 |
|
|
2004 |
cb->Cancel();
|
|
2005 |
delete cb;
|
|
2006 |
delete buf1; delete buf2; delete buf3; delete buf4; delete buf5; delete buf6;
|
|
2007 |
delete tfer1; delete tfer2; delete tfer3; delete tfer4; delete tfer5; delete tfer6;
|
|
2008 |
delete spiHeader1; delete spiHeader2; delete spiHeader3; delete spiHeader4; delete spiHeader5; delete spiHeaderBlock;
|
|
2009 |
delete Transc1; delete Transc2; delete Transc3; delete Transc4; delete Transc5; delete TranscBlock;
|
|
2010 |
|
|
2011 |
}
|
|
2012 |
r = StaticExtension(aBusId, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
2013 |
return TestResult;
|
|
2014 |
}
|
|
2015 |
|
|
2016 |
TInt DChannelIicClient::ConstructTransactionOne(TIicBusTransaction*& aTrans)
|
|
2017 |
{
|
|
2018 |
// Transaction is to contain three transfers, with data defined by
|
|
2019 |
// KTransOneTferOne[], KTransOneTferTwo[], KTransOneTferThree[]
|
|
2020 |
buf1 = HBuf8::New(21);
|
|
2021 |
buf2 = HBuf8::New(8);
|
|
2022 |
buf3 = HBuf8::New(6);
|
|
2023 |
tfer1 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf1);
|
|
2024 |
tfer2 = new TIicBusTransfer(TIicBusTransfer::EMasterRead,8,buf2);
|
|
2025 |
tfer3 = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf3);
|
|
2026 |
TInt r = CreateDefaultSpiBuf(spiHeader);
|
|
2027 |
if((r != KErrNone)||(spiHeader == NULL)||(buf1 == NULL)||(buf2 == NULL)||(buf3 == NULL)||(tfer1 == NULL)||(tfer2 == NULL)||(tfer3 == NULL))
|
|
2028 |
{
|
|
2029 |
CLIENT_PRINT(("DChannelIicClient::ConstructTransactionOne ERROR - failed to allocate the necessary memory\n"));
|
|
2030 |
delete buf1;
|
|
2031 |
delete buf2;
|
|
2032 |
delete buf3;
|
|
2033 |
delete tfer1;
|
|
2034 |
delete tfer2;
|
|
2035 |
delete tfer3;
|
|
2036 |
delete spiHeader;
|
|
2037 |
delete aTrans;
|
|
2038 |
return KErrNoMemory;
|
|
2039 |
}
|
|
2040 |
aTrans = new TIicBusTransaction(spiHeader,tfer1);
|
|
2041 |
buf1->Copy(&(KTransOneTferOne[0]),21);
|
|
2042 |
buf2->Copy(&(KTransOneTferTwo[0]),8);
|
|
2043 |
buf3->Copy(&(KTransOneTferThree[0]),6);
|
|
2044 |
tfer1->LinkAfter(tfer2);
|
|
2045 |
tfer2->LinkAfter(tfer3);
|
|
2046 |
return KErrNone;
|
|
2047 |
}
|
|
2048 |
|
|
2049 |
void DChannelIicClient::CleanupTransactionOne(TIicBusTransaction*& aTrans)
|
|
2050 |
{
|
|
2051 |
// Release the allocated memory
|
|
2052 |
delete buf1;
|
|
2053 |
buf1=NULL;
|
|
2054 |
delete buf2;
|
|
2055 |
buf2=NULL;
|
|
2056 |
delete buf3;
|
|
2057 |
buf3=NULL;
|
|
2058 |
delete tfer1;
|
|
2059 |
tfer1=NULL;
|
|
2060 |
delete tfer2;
|
|
2061 |
tfer2=NULL;
|
|
2062 |
delete tfer3;
|
|
2063 |
tfer3=NULL;
|
|
2064 |
delete spiHeader;
|
|
2065 |
spiHeader=NULL;
|
|
2066 |
delete aTrans;
|
|
2067 |
aTrans=NULL;
|
|
2068 |
}
|
|
2069 |
|
|
2070 |
|
|
2071 |
void DChannelIicClient::CleanupTransaction(TIicBusTransaction*& aTrans)
|
|
2072 |
{
|
|
2073 |
delete iSpiBuf;
|
|
2074 |
iSpiBuf=NULL;
|
|
2075 |
delete iI2cBuf;
|
|
2076 |
iI2cBuf=NULL;
|
|
2077 |
TIicBusTransfer* currTfer = iTfer;
|
|
2078 |
TIicBusTransfer* nextTfer = NULL;
|
|
2079 |
while(currTfer)
|
|
2080 |
{
|
|
2081 |
TIicBusTransfer* nextTfer = (TIicBusTransfer*)(currTfer->Next());
|
|
2082 |
delete currTfer;
|
|
2083 |
if(nextTfer)
|
|
2084 |
currTfer = nextTfer;
|
|
2085 |
else
|
|
2086 |
currTfer = NULL;
|
|
2087 |
};
|
|
2088 |
iTfer=NULL;
|
|
2089 |
currTfer = iFdTfer;
|
|
2090 |
nextTfer = NULL;
|
|
2091 |
while(currTfer)
|
|
2092 |
{
|
|
2093 |
TIicBusTransfer* nextTfer = (TIicBusTransfer*)(currTfer->Next());
|
|
2094 |
delete currTfer;
|
|
2095 |
if(nextTfer)
|
|
2096 |
currTfer = nextTfer;
|
|
2097 |
else
|
|
2098 |
currTfer = NULL;
|
|
2099 |
};
|
|
2100 |
iFdTfer=NULL;
|
|
2101 |
if(aTrans!=NULL)
|
|
2102 |
{
|
|
2103 |
delete aTrans;
|
|
2104 |
aTrans=NULL;
|
|
2105 |
}
|
|
2106 |
if(iTransPreamble!=NULL)
|
|
2107 |
{
|
|
2108 |
delete iTransPreamble;
|
|
2109 |
iTransPreamble=NULL;
|
|
2110 |
}
|
|
2111 |
}
|
|
2112 |
|
|
2113 |
void DChannelIicClient::TransModifCallback(TIicBusTransaction* /*aTrans*/, TInt /*aBusId*/, TInt aResult, TAny* aParam)
|
|
2114 |
{
|
|
2115 |
// Callback function used to test re-use of transaction and transfer buffers
|
|
2116 |
// aParam is the address of the simulated client driver
|
|
2117 |
DChannelIicClient* channel = (DChannelIicClient*)aParam;
|
|
2118 |
TTransBufReuseData* reuseData = &(channel->iTransBufReuseData);
|
|
2119 |
|
|
2120 |
// Since the transaction is no longer queued, should be able to modify the transfer and transaction content
|
|
2121 |
channel->TestTransModification(reuseData->iTransaction, reuseData->iHdTfer, reuseData->iFdTfer, reuseData->iHdr);
|
|
2122 |
|
|
2123 |
// Complete the user's request, delete objects allocated for this test and return
|
|
2124 |
Kern::RequestComplete(channel->iClient, channel->iStatus, aResult);
|
|
2125 |
delete reuseData->iCallback; // Must do this before deleting the Transaction, in CleanupTransaction
|
|
2126 |
channel->CleanupTransaction(channel->iTrans);
|
|
2127 |
return;
|
|
2128 |
}
|
|
2129 |
|
|
2130 |
|
|
2131 |
void DChannelIicClient::TestTransModification(TIicBusTransaction* aTransaction,
|
|
2132 |
TIicBusTransfer* aHdTfer,
|
|
2133 |
TIicBusTransfer* aFdTfer,
|
|
2134 |
TDes8* aHdr)
|
|
2135 |
{
|
|
2136 |
// Function to test that the content of Transaction and Transfer objects can be modified
|
|
2137 |
// This assumes that the Transaction is in the appropriate state (EFree) - otherwise, the code will assert
|
|
2138 |
// This function also assumes that transaction has aleady added the half-duplex and full-duplex transfers
|
|
2139 |
// that are passed in as arguments, and that the transfers lists are non-NULL
|
|
2140 |
// The original type of the transfers (read, write) are ignored, since it is not of interest in this test -
|
|
2141 |
// instead, what is important is to ensure that the half-duplex and full-duplex transfer types are in opposing
|
|
2142 |
// directions - so the types are explicitly set in this test.
|
|
2143 |
//
|
|
2144 |
TDes8* origBuf = NULL;
|
|
2145 |
TInt8 origGranularity = 0;
|
|
2146 |
|
|
2147 |
// Create a buffer for use in this function
|
|
2148 |
_LIT(temporaryText,"Temporary Text");
|
|
2149 |
TBuf8<15> tempBuf_8;
|
|
2150 |
tempBuf_8.Copy(temporaryText);
|
|
2151 |
|
|
2152 |
// Test modification of the two transfer lists while still part of the transaction
|
|
2153 |
origBuf = (TDes8*)(aHdTfer->GetBuffer());
|
|
2154 |
origGranularity = aHdTfer->WordWidth();
|
|
2155 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, &tempBuf_8);
|
|
2156 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, origBuf);
|
|
2157 |
|
|
2158 |
origBuf = (TDes8*)(aFdTfer->GetBuffer());
|
|
2159 |
origGranularity = aFdTfer->WordWidth();
|
|
2160 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, &tempBuf_8);
|
|
2161 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, origBuf);
|
|
2162 |
|
|
2163 |
// Test transfers can be removed from the transaction
|
|
2164 |
aTransaction->RemoveHalfDuplexTrans();
|
|
2165 |
aTransaction->RemoveFullDuplexTrans();
|
|
2166 |
|
|
2167 |
// Test modification of the two transfer lists while not part of a transaction
|
|
2168 |
origBuf = (TDes8*)(aHdTfer->GetBuffer());
|
|
2169 |
origGranularity = aHdTfer->WordWidth();
|
|
2170 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, &tempBuf_8);
|
|
2171 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, origBuf);
|
|
2172 |
|
|
2173 |
origBuf = (TDes8*)(aFdTfer->GetBuffer());
|
|
2174 |
origGranularity = aFdTfer->WordWidth();
|
|
2175 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, &tempBuf_8);
|
|
2176 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, origBuf);
|
|
2177 |
|
|
2178 |
// Test transfers can be re-added to the transaction
|
|
2179 |
aTransaction->SetHalfDuplexTrans(aHdr,aHdTfer);
|
|
2180 |
aTransaction->SetFullDuplexTrans(aFdTfer);
|
|
2181 |
|
|
2182 |
// Test modification of the two transfer lists now re-added to the transaction
|
|
2183 |
origBuf = (TDes8*)(aHdTfer->GetBuffer());
|
|
2184 |
origGranularity = aHdTfer->WordWidth();
|
|
2185 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, &tempBuf_8);
|
|
2186 |
aHdTfer->SetTransferData(TIicBusTransfer::EMasterRead, origGranularity, origBuf);
|
|
2187 |
|
|
2188 |
origBuf = (TDes8*)(aFdTfer->GetBuffer());
|
|
2189 |
origGranularity = aFdTfer->WordWidth();
|
|
2190 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, &tempBuf_8);
|
|
2191 |
aFdTfer->SetTransferData(TIicBusTransfer::EMasterWrite, origGranularity, origBuf);
|
|
2192 |
|
|
2193 |
return;
|
|
2194 |
}
|
|
2195 |
|
|
2196 |
TInt DChannelIicClient::DoControl(TInt aId, TAny* a1, TAny* a2)
|
|
2197 |
{
|
|
2198 |
CLIENT_PRINT(("DChannelIicClient::DoControl invoked with aId=0x%x, a1=0x%x, a2=0x%x\n", aId,a1,a2));
|
|
2199 |
TInt r=KErrNone;
|
|
2200 |
// To support testing, any values of aId for StaticExtension must be shifted left one place
|
|
2201 |
// and for a Slave tests, the two msbs must be zero
|
|
2202 |
TInt ctrlIoVal = 0;
|
|
2203 |
if((aId & KTestMasterControlIo) == KTestMasterControlIo)
|
|
2204 |
ctrlIoVal = (aId << 1);
|
|
2205 |
if((aId & KTestSlaveControlIo) == KTestSlaveControlIo)
|
|
2206 |
ctrlIoVal = (aId << 1) & 0x3FFFFFFF;
|
|
2207 |
switch(aId)
|
|
2208 |
{
|
|
2209 |
case(RBusDevIicClient::EQTransSync):
|
|
2210 |
{
|
|
2211 |
// a1 specifies Bus Realisation Config to use
|
|
2212 |
// a2 is a pointer to TUsideTracnDesc
|
|
2213 |
TIicBusTransaction* trans = NULL;
|
|
2214 |
TIicBusTransfer* tfer = NULL;
|
|
2215 |
TConfigSpiBufV01 *spiBuf = NULL;
|
|
2216 |
|
|
2217 |
//Read the transaction header to determin if it is a multi-transaction type
|
|
2218 |
TUsideTracnDesc usTrans;
|
|
2219 |
|
|
2220 |
if((Kern::ThreadRawRead(iClient,a2,&usTrans,sizeof(TUsideTracnDesc)))!=KErrNone)
|
|
2221 |
{
|
|
2222 |
CLIENT_PRINT(("DChannelIicClient::DoControl ERROR - Can't read iHeader to spiBuf\n"));
|
|
2223 |
return KErrGeneral;
|
|
2224 |
}
|
|
2225 |
|
|
2226 |
if((usTrans.iFlags)&KTransactionWithMultiTransc)
|
|
2227 |
{
|
|
2228 |
// Since we are testing a multi-transaction, create another transaction object iMultiTransac,
|
|
2229 |
// to represent the delayed part of the multi-transaction. After the preliminary
|
|
2230 |
// transaction(passed from t_iic, with one read transfer) has been performed,
|
|
2231 |
// the IIC code will find that it is part of a
|
|
2232 |
// multi-transaction; it will call the callback for the transaction(set as MultiTranscCallbackFunc,
|
|
2233 |
// in ExtractTransData) and this will return a pointer to the next part of the multi-transaction
|
|
2234 |
// to be performed(iMultiTransac). It will then immediately pass this transaction object
|
|
2235 |
// to the PSL for processing - before considering any other transactions that have been
|
|
2236 |
// requested, and without completing the multi-transaction request(this is done once
|
|
2237 |
// iMultiTransac has been processed)
|
|
2238 |
buf1 = HBuf8::New(1);
|
|
2239 |
spiBuf = new TConfigSpiBufV01();
|
|
2240 |
if(buf1 == NULL||spiBuf == NULL) {delete buf1;delete spiBuf; return KErrNoMemory;}
|
|
2241 |
|
|
2242 |
|
|
2243 |
if((r=Kern::ThreadDesRead(iClient, usTrans.iHeader, *spiBuf, 0, KChunkShiftBy0 ))!=KErrNone)
|
|
2244 |
{
|
|
2245 |
CLIENT_PRINT(("DChannelIicClient::DoControl ERROR - Can't read iHeader to spiBuf\n"));
|
|
2246 |
return KErrGeneral;
|
|
2247 |
}
|
|
2248 |
|
|
2249 |
tfer = new TIicBusTransfer(TIicBusTransfer::EMasterWrite,8,buf1);
|
|
2250 |
if(tfer == NULL) {delete buf1; delete spiBuf; return KErrNoMemory;}
|
|
2251 |
|
|
2252 |
iMultiTransac = new TIicBusTransaction((TDes8*)spiBuf, tfer);
|
|
2253 |
if(iMultiTransac == NULL) {delete buf1; delete spiBuf; delete tfer; return KErrNoMemory;}
|
|
2254 |
}
|
|
2255 |
r = ExtractTransData((TUsideTracnDesc*)a2, trans);
|
|
2256 |
if(r!=KErrNone)
|
|
2257 |
{
|
|
2258 |
CLIENT_PRINT(("DChannelIicClient::DoControl ERROR - ExtractTransData returned %d\n",r));
|
|
2259 |
return r;
|
|
2260 |
}
|
|
2261 |
CLIENT_PRINT(("DChannelIicClient::DoControl invoking (synchronous) QueueTransaction with busId=0x%x, trans=0x%x\n",(TUint32)a1,trans));
|
|
2262 |
|
|
2263 |
r = QueueTransaction((TUint32)a1, trans);
|
|
2264 |
CleanupExtractTrans(trans);
|
|
2265 |
CleanupTransaction(trans);
|
|
2266 |
if((usTrans.iFlags)&KTransactionWithMultiTransc)
|
|
2267 |
{
|
|
2268 |
delete buf1;
|
|
2269 |
delete spiBuf;
|
|
2270 |
delete tfer;
|
|
2271 |
delete iMultiTransac;
|
|
2272 |
}
|
|
2273 |
break;
|
|
2274 |
}
|
|
2275 |
case(RBusDevIicClient::ECtlIoBlockReqCompletion):
|
|
2276 |
case(RBusDevIicClient::ECtlIoUnblockReqCompletion):
|
|
2277 |
case(RBusDevIicClient::ECtlIoDeRegChan):
|
|
2278 |
{
|
|
2279 |
// a1 specifies Bus Realisation Config to use
|
|
2280 |
CLIENT_PRINT(("DChannelIicClient::DoControl invoking StaticExtension with aId=%d, busId=0x%x\n",aId,(TUint32)a1));
|
|
2281 |
// Use the IIC StaticExtension interface to pass the request to the bus implementation
|
|
2282 |
r = StaticExtension((TUint32)a1, (TUint)ctrlIoVal, NULL, NULL);
|
|
2283 |
break;
|
|
2284 |
}
|
|
2285 |
case(RBusDevIicClient::ECtlIoTestFullDuplexTrans):
|
|
2286 |
{
|
|
2287 |
// a1 specifies Bus Realisation Config to use
|
|
2288 |
CLIENT_PRINT(("DChannelIicClient::DoControl invoking StaticExtension with aId=%d, busId=0x%x\n",aId,(TUint32)a1));
|
|
2289 |
r = DoCreateFullDuplexTransTest((TInt)a2);
|
|
2290 |
break;
|
|
2291 |
}
|
|
2292 |
case(RBusDevIicClient::ECtlIoPriorityTest):
|
|
2293 |
{
|
|
2294 |
// a1 specifies Bus Realisation Config to use
|
|
2295 |
CLIENT_PRINT(("DChannelIicClient::DoControl invoking StaticExtension with aId=%d, busId=0x%x\n",aId,(TUint32)a1));
|
|
2296 |
r = DoPriorityTest((TUint32)a1);
|
|
2297 |
break;
|
|
2298 |
}
|
|
2299 |
|
|
2300 |
case(RBusDevIicClient::ECtlIoTracnOne):
|
|
2301 |
{
|
|
2302 |
// a1 specifies Bus Realisation Config to use
|
|
2303 |
CLIENT_PRINT(("DChannelIicClient::StaticExtension invoking StaticExtension with ctrlIoVal=%d, busId=0x%x\n",aId,(TUint32)a1));
|
|
2304 |
// Use the IIC StaticExtension interface to pass the request to the bus implementation
|
|
2305 |
r = StaticExtension((TUint32)a1, (TUint)ctrlIoVal, NULL, NULL);
|
|
2306 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("StaticExtension",__LINE__));
|
|
2307 |
if(r == KErrNone)
|
|
2308 |
{
|
|
2309 |
// Create then send (synchronously) Transaction One
|
|
2310 |
r = ConstructTransactionOne(iTrans);
|
|
2311 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
2312 |
r = QueueTransaction((TUint32)a1, iTrans);
|
|
2313 |
__ASSERT_ALWAYS(r == KErrNone,Kern::Fault("DoControl",__LINE__));
|
|
2314 |
CleanupTransactionOne(iTrans);
|
|
2315 |
}
|
|
2316 |
r = StaticExtension((TUint32)a1, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
2317 |
break;
|
|
2318 |
}
|
|
2319 |
case(RBusDevIicClient::ECtlIoSetTimeOutFlag):
|
|
2320 |
{
|
|
2321 |
CLIENT_PRINT(("DChannelIicClient::DoControl instruct the bus that it is to simulate a slave timeout"));
|
|
2322 |
// To support testing, function index passed to StaticExtension must be shifted one place to the left
|
|
2323 |
TUint testIndex = ((TUint)RBusDevIicClient::ECtlIoSetTimeOutFlag)<<1;;
|
|
2324 |
r = StaticExtension((TUint32)a1, testIndex, NULL, NULL);
|
|
2325 |
break;
|
|
2326 |
}
|
|
2327 |
case(RBusDevIicClient::ECtlIoNone):
|
|
2328 |
{
|
|
2329 |
CLIENT_PRINT(("DChannelIicClient::DoControl Return the bus to its default test state"));
|
|
2330 |
r = StaticExtension((TUint32)a1, (TUint)RBusDevIicClient::ECtlIoNone, NULL, NULL);
|
|
2331 |
break;
|
|
2332 |
}
|
|
2333 |
|
|
2334 |
// Support for MasterSlave processing
|
|
2335 |
|
|
2336 |
case(RBusDevIicClient::ECaptureChanSync):
|
|
2337 |
{
|
|
2338 |
// a1 is a pointer to the TDes8* aConfigHdr
|
|
2339 |
// a2 is a pointer to TInt* parms[2], where:
|
|
2340 |
// parms[0]=(TInt*)aBusId;
|
|
2341 |
// parms[1]=&aChannelId;
|
|
2342 |
//
|
|
2343 |
TInt* parms[2];
|
|
2344 |
r=Kern::ThreadRawRead(iClient,a2,&(parms[0]),2*sizeof(TInt*));
|
|
2345 |
if(r!=KErrNone)
|
|
2346 |
break; // Can't proceed if can't access request parameters
|
|
2347 |
//
|
|
2348 |
TInt hdrSize = Kern::ThreadGetDesLength(iClient,a1);
|
|
2349 |
CLIENT_PRINT(("DChannelIicSlaveClient::DoControl hdrSize = 0x%x\n",hdrSize));
|
|
2350 |
if (hdrSize<=0)
|
|
2351 |
{
|
|
2352 |
CLIENT_PRINT(("DChannelIicSlaveClient::DoControl ERROR, hdrSize is invalid\n"));
|
|
2353 |
return KErrArgument;
|
|
2354 |
}
|
|
2355 |
if((iConfigHdr = HBuf8::New(hdrSize)) == NULL)
|
|
2356 |
return KErrNoMemory;
|
|
2357 |
r = Kern::ThreadDesRead(iClient,a1,*iConfigHdr,0);
|
|
2358 |
if(r!=KErrNone)
|
|
2359 |
{
|
|
2360 |
delete iConfigHdr;
|
|
2361 |
return r;
|
|
2362 |
}
|
|
2363 |
// Store the address of the user-side variable to update with the ChannelId
|
|
2364 |
iClientChanId=parms[1];
|
|
2365 |
|
|
2366 |
CLIENT_PRINT(("DChannelIicSlaveClient::DoControl invoking (synchronous) CaptureChannel\n"));
|
|
2367 |
r = CaptureChannel((TInt)(parms[0]), iConfigHdr, iNotif, iChannelId);
|
|
2368 |
if(r != KErrNone)
|
|
2369 |
delete iConfigHdr;
|
|
2370 |
CLIENT_PRINT(("DChannelIicSlaveClient::DoControl CaptureChannelgave iChannelId=0x%x\n",iChannelId));
|
|
2371 |
|
|
2372 |
TInt r=Kern::ThreadRawWrite(iClient,iClientChanId,&iChannelId,sizeof(TInt));
|
|
2373 |
(void)r; // Silence the compiler
|
|
2374 |
|
|
2375 |
break;
|
|
2376 |
}
|
|
2377 |
|
|
2378 |
case(RBusDevIicClient::EReleaseChan):
|
|
2379 |
{
|
|
2380 |
// a1 represents TInt aChannelId
|
|
2381 |
CLIENT_PRINT(("DChannelIicSlaveClient::DoControl invoking ReleaseChannel\n"));
|
|
2382 |
r = ReleaseChannel((TInt)a1);
|
|
2383 |
delete iConfigHdr;
|
|
2384 |
break;
|
|
2385 |
}
|
|
2386 |
|
|
2387 |
case(RBusDevIicClient::EInitSlaveClient):
|
|
2388 |
{
|
|
2389 |
r=InitSlaveClient();
|
|
2390 |
break;
|
|
2391 |
}
|
|
2392 |
|
|
2393 |
#ifdef STANDALONE_CHANNEL
|
|
2394 |
case(RBusDevIicClient::ETestIicChannelInlineFunc):
|
|
2395 |
{
|
|
2396 |
TTestIicChannelInterface channelInterface(DIicBusChannel::EMaster, DIicBusChannel::EI2c, DIicBusChannel::EHalfDuplex);
|
|
2397 |
r = channelInterface.TestInterface();
|
|
2398 |
break;
|
|
2399 |
}
|
|
2400 |
#endif
|
|
2401 |
|
|
2402 |
default:
|
|
2403 |
{
|
|
2404 |
CLIENT_PRINT(("DChannelIicClient::DoControl - unrecognised value for aId=0x%x\n",aId));
|
|
2405 |
r=KErrArgument;
|
|
2406 |
break;
|
|
2407 |
}
|
|
2408 |
}
|
|
2409 |
return r;
|
|
2410 |
}
|
|
2411 |
|
|
2412 |
TInt DChannelIicClient::DoRequest(TInt aId, TRequestStatus* aStatus, TAny* a1, TAny* a2)
|
|
2413 |
{
|
|
2414 |
CLIENT_PRINT(("DChannelIicClient::DoRequest invoked with aId=0x%x, aStatus=0x%x, a1=0x%x, a2=0x%x\n", aId,aStatus,a1,a2));
|
|
2415 |
|
|
2416 |
TInt r=KErrNone;
|
|
2417 |
switch(aId)
|
|
2418 |
{
|
|
2419 |
case(RBusDevIicClient::EQTransAsync):
|
|
2420 |
{
|
|
2421 |
// a1 specifies Bus Realisation Config to use
|
|
2422 |
// a2 is a pointer to TIicBusTransaction
|
|
2423 |
TIicBusTransaction* trans = NULL;
|
|
2424 |
r = ExtractTransData((TUsideTracnDesc*)a2, trans);
|
|
2425 |
if(r!=KErrNone)
|
|
2426 |
{
|
|
2427 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ERROR - ExtractTransData returned %d\n",r));
|
|
2428 |
return r;
|
|
2429 |
}
|
|
2430 |
// Create TIicBusCallback object
|
|
2431 |
TIicBusCallback* cb = new TIicBusCallback(AsyncCallbackFunc, this, iDfcQue, 5); // 5 arbitrary
|
|
2432 |
TTransCbPair* cbPair = new TTransCbPair();
|
|
2433 |
cbPair->iCb=cb;
|
|
2434 |
cbPair->iTrans=trans;
|
|
2435 |
// Create an entry in the RPointerArray for TRequestStatus - TIicBusTransaction pairs
|
|
2436 |
TTransStatusPair* pair = new TTransStatusPair();
|
|
2437 |
pair->iReq=aStatus;
|
|
2438 |
pair->iTrans=trans;
|
|
2439 |
r=InsertPairs(pair,cbPair);
|
|
2440 |
if(r!=KErrNone)
|
|
2441 |
{
|
|
2442 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ERROR - InsertInOrder returned %d\n",r));
|
|
2443 |
return r;
|
|
2444 |
}
|
|
2445 |
CLIENT_PRINT(("DChannelIicClient::DoRequest invoking (asynchronous) QueueTransaction with busId=0x%x, trans=0x%x, cb=0x%x\n",(TUint32)a1,trans,cb));
|
|
2446 |
r = QueueTransaction((TUint32)a1, trans, cb);
|
|
2447 |
if(r!=KErrNone)
|
|
2448 |
{
|
|
2449 |
// The transaction was not queued - since it will not be completed asynchronously, need to remove it here
|
|
2450 |
GetWriteAccess();
|
|
2451 |
Lock();
|
|
2452 |
TInt pairIndex=iTransStatArrayByTrans.FindInOrder(pair,TransStatusOrderByTrans);
|
|
2453 |
__ASSERT_ALWAYS(pairIndex>=0,Kern::Fault("IIC Client, DoRequest, EQTransAsync ByTrans pairIndex<0",__LINE__));
|
|
2454 |
iTransStatArrayByTrans.Remove(pairIndex);
|
|
2455 |
pairIndex = iTransStatArrayByStatus.FindInOrder(pair,TransStatusOrderByStatus);
|
|
2456 |
__ASSERT_ALWAYS(pairIndex>=0,Kern::Fault("IIC Client, DoRequest, EQTransAsync ByStatus pairIndex<0",__LINE__));
|
|
2457 |
iTransStatArrayByStatus.Remove(pairIndex);
|
|
2458 |
pairIndex = iTransCbArrayByTrans.FindInOrder(cbPair,TransCbOrderByTrans);
|
|
2459 |
__ASSERT_ALWAYS(pairIndex>=0,Kern::Fault("IIC Client, DoRequest, EQTransAsync Cb by Trans pairIndex<0",__LINE__));
|
|
2460 |
iTransCbArrayByTrans.Remove(pairIndex);
|
|
2461 |
FreeWriteAccess();
|
|
2462 |
Unlock();
|
|
2463 |
Kern::RequestComplete(iClient, aStatus, r);
|
|
2464 |
delete cb;
|
|
2465 |
delete cbPair;
|
|
2466 |
CleanupExtractTrans(pair->iTrans);
|
|
2467 |
CleanupTransaction(pair->iTrans);
|
|
2468 |
delete pair;
|
|
2469 |
}
|
|
2470 |
break;
|
|
2471 |
}
|
|
2472 |
|
|
2473 |
case(RBusDevIicClient::ECtrlIoTestBufReUse):
|
|
2474 |
{
|
|
2475 |
iStatus = aStatus;
|
|
2476 |
// a1 specifies Bus Realisation Config to use
|
|
2477 |
|
|
2478 |
// Ensure object pointers are made available
|
|
2479 |
CleanupTransaction(iTrans);
|
|
2480 |
|
|
2481 |
TInt r = KErrNone;
|
|
2482 |
TIicBusCallback* cb = NULL;
|
|
2483 |
|
|
2484 |
// Use default constructor to create an empty transaction
|
|
2485 |
iTrans = new TIicBusTransaction();
|
|
2486 |
if(iTrans == NULL)
|
|
2487 |
{
|
|
2488 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - iTrans=NULL\n"));
|
|
2489 |
r = KErrNoMemory;
|
|
2490 |
}
|
|
2491 |
|
|
2492 |
// Create a header for the transaction
|
|
2493 |
if(r == KErrNone)
|
|
2494 |
{
|
|
2495 |
r = CreateDefaultSpiBuf(iSpiBuf);
|
|
2496 |
if(r != KErrNone)
|
|
2497 |
{
|
|
2498 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - CreateDefaultSpiBuf returned %d\n",r));
|
|
2499 |
}
|
|
2500 |
}
|
|
2501 |
|
|
2502 |
// Create and add transfer lists for half-duplex and full-duplex entries in the transaction
|
|
2503 |
if(r == KErrNone)
|
|
2504 |
{
|
|
2505 |
// Use simple text as payload, 8bit granularity, half-duplex write, full-duplex read (ie payload ignored)
|
|
2506 |
_LIT(halfDuplexText1,"Half Duplex Text 1");
|
|
2507 |
TBuf8<19> halfDuplexBuf_8;
|
|
2508 |
halfDuplexBuf_8.Copy(halfDuplexText1);
|
|
2509 |
iTfer = new TIicBusTransfer(TIicBusTransfer::EMasterWrite, 8, &halfDuplexBuf_8);
|
|
2510 |
if(iTfer == NULL)
|
|
2511 |
{
|
|
2512 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - iTfer=NULL\n"));
|
|
2513 |
r = KErrNoMemory;
|
|
2514 |
}
|
|
2515 |
else
|
|
2516 |
{
|
|
2517 |
_LIT(halfDuplexText2,"Half Duplex Text 2");
|
|
2518 |
TBuf8<19> halfDuplexBuf2_8;
|
|
2519 |
halfDuplexBuf2_8.Copy(halfDuplexText2);
|
|
2520 |
TIicBusTransfer* tempHdTfer = new TIicBusTransfer(TIicBusTransfer::EMasterWrite, 8, &halfDuplexBuf2_8);
|
|
2521 |
if(tempHdTfer == NULL)
|
|
2522 |
{
|
|
2523 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - tempHdTfer=NULL\n"));
|
|
2524 |
r = KErrNoMemory;
|
|
2525 |
}
|
|
2526 |
else
|
|
2527 |
{
|
|
2528 |
iTfer->LinkAfter(tempHdTfer);
|
|
2529 |
}
|
|
2530 |
}
|
|
2531 |
if(r == KErrNone)
|
|
2532 |
{
|
|
2533 |
_LIT(fullDuplexText1,"Full Duplex Text 1");
|
|
2534 |
TBuf8<19> fullDuplexBuf1_8;
|
|
2535 |
fullDuplexBuf1_8.Copy(fullDuplexText1);
|
|
2536 |
iFdTfer = new TIicBusTransfer(TIicBusTransfer::EMasterRead, 8, &fullDuplexBuf1_8);
|
|
2537 |
if(iFdTfer == NULL)
|
|
2538 |
{
|
|
2539 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - iFdTfer=NULL\n"));
|
|
2540 |
r = KErrNoMemory;
|
|
2541 |
}
|
|
2542 |
else
|
|
2543 |
{
|
|
2544 |
_LIT(fullDuplexText2,"Full Duplex Text 2");
|
|
2545 |
TBuf8<19> fullDuplexBuf2_8;
|
|
2546 |
fullDuplexBuf2_8.Copy(fullDuplexText2);
|
|
2547 |
TIicBusTransfer* tempFdTfer = new TIicBusTransfer(TIicBusTransfer::EMasterRead, 8, &fullDuplexBuf2_8);
|
|
2548 |
if(tempFdTfer == NULL)
|
|
2549 |
{
|
|
2550 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - tempFdTfer=NULL\n"));
|
|
2551 |
r = KErrNoMemory;
|
|
2552 |
}
|
|
2553 |
else
|
|
2554 |
{
|
|
2555 |
iFdTfer->LinkAfter(tempFdTfer);
|
|
2556 |
}
|
|
2557 |
}
|
|
2558 |
}
|
|
2559 |
}
|
|
2560 |
|
|
2561 |
// Add the Header and Transfers to the Transaction
|
|
2562 |
if(r == KErrNone)
|
|
2563 |
r = iTrans->SetHalfDuplexTrans(iSpiBuf, iTfer);
|
|
2564 |
if(r != KErrNone)
|
|
2565 |
{
|
|
2566 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - SetHalfDuplexTrans returned %d\n",r));
|
|
2567 |
}
|
|
2568 |
|
|
2569 |
if(r == KErrNone)
|
|
2570 |
r = iTrans->SetFullDuplexTrans(iFdTfer);
|
|
2571 |
if(r != KErrNone)
|
|
2572 |
{
|
|
2573 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - SetFullDuplexTrans returned %d\n",r));
|
|
2574 |
}
|
|
2575 |
|
|
2576 |
// Specify the callback object to use
|
|
2577 |
if(r == KErrNone)
|
|
2578 |
{
|
|
2579 |
cb = new TIicBusCallback(TransModifCallback, this, iDfcQue, 5); // 5 arbitrary
|
|
2580 |
if(cb == NULL)
|
|
2581 |
{
|
|
2582 |
CLIENT_PRINT(("DChannelIicClient::DoRequest ECtrlIoTestBufReUse ERROR - cb=NULL\n"));
|
|
2583 |
r = KErrNoMemory;
|
|
2584 |
}
|
|
2585 |
}
|
|
2586 |
|
|
2587 |
// Since the transaction is not yet queued, should be able to modify the transfer and transaction content
|
|
2588 |
TestTransModification(iTrans, iTfer, iFdTfer, iSpiBuf);
|
|
2589 |
|
|
2590 |
// Store the relevant data in this object's iTransBufReuseData member
|
|
2591 |
iTransBufReuseData.iTransaction = iTrans;
|
|
2592 |
iTransBufReuseData.iHdTfer = iTfer;
|
|
2593 |
iTransBufReuseData.iFdTfer = iFdTfer;
|
|
2594 |
iTransBufReuseData.iHdr = iSpiBuf;
|
|
2595 |
iTransBufReuseData.iCallback = cb;
|
|
2596 |
|
|
2597 |
// Now queue the transaction. The callback function will re-apply the modification tests and delete the
|
|
2598 |
// objects created here
|
|
2599 |
// If the queueing fails, complete the test here and clean up
|
|
2600 |
r = QueueTransaction((TInt)a1, iTrans, cb);
|
|
2601 |
if(r != KErrNone)
|
|
2602 |
{
|
|
2603 |
Kern::RequestComplete(iClient, iStatus, r);
|
|
2604 |
delete iTransBufReuseData.iCallback; // Must do this before deleting the Transaction in CleanupTransaction
|
|
2605 |
CleanupTransaction(iTrans);
|
|
2606 |
}
|
|
2607 |
break;
|
|
2608 |
}
|
|
2609 |
default:
|
|
2610 |
{
|
|
2611 |
CLIENT_PRINT(("DChannelIicClient::DoRequest - unrecognised value for aId=0x%x\n",aId));
|
|
2612 |
r=KErrArgument;
|
|
2613 |
break;
|
|
2614 |
}
|
|
2615 |
}
|
|
2616 |
return r;
|
|
2617 |
}
|
|
2618 |
|
|
2619 |
|
|
2620 |
// Support for MasterSlave processing
|
|
2621 |
static void MsSlaveClientCallbackFunc(TInt aChannelId, TInt aReturn, TInt aTrigger, TInt16 aRxWords, TInt16 aTxWords, TAny* aParam)
|
|
2622 |
{
|
|
2623 |
CLIENT_PRINT(("> MsSlaveClientCallbackFunc() - aChannelId=0x%x,aReturn=%d,aTrigger=0x%x,aRxWords=0x%x,aTxWords=0x%x,aParam=0x%x\n",aChannelId,aReturn,aTrigger,aRxWords,aTxWords,aParam));
|
|
2624 |
(void)aTxWords; // Unused if CLIENT_PRINT is disabled
|
|
2625 |
(void)aRxWords; // Unused if CLIENT_PRINT is disabled
|
|
2626 |
DChannelIicClient* channel = (DChannelIicClient*)aParam;
|
|
2627 |
CLIENT_PRINT(("MsSlaveClientCallbackFunc() - channel=0x%x\n",channel));
|
|
2628 |
if(aTrigger == EAsyncCaptChan)
|
|
2629 |
{
|
|
2630 |
CLIENT_PRINT(("MsSlaveClientCallbackFunc: capture channel completed\n"));
|
|
2631 |
// Set iChannelId, and write to user-side variable.
|
|
2632 |
channel->iChannelId=aChannelId;
|
|
2633 |
TInt r=Kern::ThreadRawWrite(channel->iClient,channel->iClientChanId,&aChannelId,sizeof(TInt));
|
|
2634 |
if(r == KErrNone)
|
|
2635 |
r=aReturn;
|
|
2636 |
channel->RequestComplete(r); // Inform user of error
|
|
2637 |
return;
|
|
2638 |
}
|
|
2639 |
else
|
|
2640 |
{
|
|
2641 |
CLIENT_PRINT(("\nMsSlaveClientCallbackFunc: trigger condition 0x%x is not recognised \n\n",aTrigger));
|
|
2642 |
channel->RequestComplete(aReturn); // Inform user of error
|
|
2643 |
}
|
|
2644 |
}
|
|
2645 |
|
|
2646 |
void DChannelIicClient::RequestComplete(TInt r)
|
|
2647 |
{
|
|
2648 |
Kern::RequestComplete(iClient, iStatus, r);
|
|
2649 |
}
|
|
2650 |
|
|
2651 |
|
|
2652 |
TInt DChannelIicClient::InitSlaveClient()
|
|
2653 |
{
|
|
2654 |
iNotif = new TIicBusSlaveCallback(MsSlaveClientCallbackFunc, (TAny*)this, iDfcQue, KIicSlaveClientDfcPriority);
|
|
2655 |
if(iNotif == NULL)
|
|
2656 |
{
|
|
2657 |
CLIENT_PRINT(("> DChannelIicClient::InitSlaveClient ERROR unable to allocate space TIicBusSlaveCallback* iNotif \n"));
|
|
2658 |
return KErrNoMemory;
|
|
2659 |
}
|
|
2660 |
return KErrNone;
|
|
2661 |
}
|
|
2662 |
|