os/kernelhwsrv/kerneltest/e32test/lffs/tf_suspend.cpp
author sl
Tue, 10 Jun 2014 14:32:02 +0200
changeset 1 260cb5ec6c19
permissions -rw-r--r--
Update contrib.
     1 // Copyright (c) 2003-2009 Nokia Corporation and/or its subsidiary(-ies).
     2 // All rights reserved.
     3 // This component and the accompanying materials are made available
     4 // under the terms of the License "Eclipse Public License v1.0"
     5 // which accompanies this distribution, and is available
     6 // at the URL "http://www.eclipse.org/legal/epl-v10.html".
     7 //
     8 // Initial Contributors:
     9 // Nokia Corporation - initial contribution.
    10 //
    11 // Contributors:
    12 //
    13 // Description:
    14 // Tests erasing of Flash while forcing suspend-resume cycles
    15 // 
    16 //
    17 
    18 #include <e32std.h>
    19 #include <e32std_private.h>
    20 #include <e32svr.h>
    21 #include <e32test.h>
    22 #include "user_config.h"
    23 
    24 RTest test( _L("TF_SUSPEND") );
    25 
    26 
    27 
    28 class CEraser
    29 	{
    30 	public:
    31 		enum TFunction
    32 			{
    33 			EEraseBlock
    34 			};
    35 
    36 	public:
    37 		~CEraser();
    38 		void CreateL();
    39 		void Stop();
    40 		void WaitForReady();
    41 
    42 		inline void WaitForDone()
    43 			{
    44 			WaitForReady();
    45 			iWaitingSignal.Signal();	// resignal, ready for next Start()
    46 			};
    47 
    48 		void EraseBlock( TUint32 aOffset, TUint aLength );
    49 
    50 	private:
    51 		void Panic( TInt aPanicNum );
    52 		void Start( TFunction aFunction );
    53 
    54 		static TInt EraserThread( TAny* aParam );
    55 
    56 		void DoEraseBlock();
    57 
    58 	private:
    59 		RThread		iThread;
    60 
    61 		//
    62 		// Shared between main & eraser thread
    63 		//
    64 		TFunction	iRequestedFunction;
    65 		RSemaphore	iGoSignal;
    66 		RSemaphore	iWaitingSignal;
    67 		TBool		iStop;
    68 
    69 		//
    70 		// These are local to the eraser thread
    71 		//
    72 		TUint		iOffset;
    73 		TUint		iLength;
    74 		TBusLocalDrive	iDrive;
    75 	};
    76 
    77 
    78 
    79 CEraser::~CEraser()
    80 	{
    81 	iThread.Terminate( KErrNone );
    82 	iThread.Close();
    83 	iGoSignal.Close();
    84 	iWaitingSignal.Close();
    85 	}
    86 
    87 void CEraser::Panic( TInt aPanicNum )
    88 	{
    89 	_LIT( KPanicCat, "ERASE-T" );
    90 	User::Panic( KPanicCat, aPanicNum );
    91 	RProcess().Panic( KPanicCat, aPanicNum );
    92 	}
    93 
    94 
    95 void CEraser::CreateL()
    96 	//
    97 	// Create new thread and wait for it to become ready
    98 	//
    99 	{
   100 	iGoSignal.CreateLocal( 0 );	// initially blocked
   101 	iWaitingSignal.CreateLocal( 0 );	// initially blocked
   102 	iStop = EFalse;
   103 	User::LeaveIfError( iThread.Create( _L("ERASER"), EraserThread, 2048, 2048, 65536, this ) );
   104 	test.Printf( _L("Eraser thread created\n") );
   105 	
   106 	iThread.Resume();
   107 	
   108 	test.Printf( _L("Waiting for thread to become ready\n") );
   109 	WaitForReady();
   110 	iWaitingSignal.Signal();
   111 	}
   112 
   113 void CEraser::Start( TFunction aFunction )
   114 	//
   115 	// Start the suspender thread executing function aFunction
   116 	//
   117 	{
   118 	iStop = EFalse;
   119 	WaitForReady();
   120 	iRequestedFunction = aFunction;
   121 	iGoSignal.Signal();
   122 	}
   123 
   124 void CEraser::Stop()
   125 	//
   126 	// Stop the thread
   127 	//
   128 	{
   129 	iStop = ETrue;
   130 	}
   131 
   132 void CEraser::WaitForReady()
   133 	{
   134 	iWaitingSignal.Wait();
   135 	}
   136 
   137 void CEraser::EraseBlock( TUint32 aOffset, TUint aLength )
   138 	//
   139 	// Execute a block erase
   140 	//
   141 	{
   142 	iOffset = aOffset;
   143 	iLength = aLength;
   144 	Start( EEraseBlock );
   145 	}
   146 
   147 
   148 TInt CEraser::EraserThread( TAny* aParam )
   149 	//
   150 	// The thread which executes suspend functions
   151 	//
   152 	{
   153 	RDebug::Print( _L("Eraser thread starts") );
   154 
   155 	CEraser& self = *reinterpret_cast<CEraser*>(aParam);
   156 
   157 	//
   158 	// Open our own TBusLogicalDevice channel
   159 	//
   160 	TBool changedFlag;
   161 	if( KErrNone != self.iDrive.Connect( KDriveNumber, changedFlag ) )
   162 		{
   163 		self.Panic( 1 );
   164 		}
   165 
   166 	RDebug::Print( _L("Eraser thread connected to drive") );
   167 	
   168 	while( !self.iStop )
   169 		{
   170 		//
   171 		// Signal that we are ready for a request
   172 		//
   173 		RDebug::Print( _L("Eraser thread waiting...") );
   174 		self.iWaitingSignal.Signal();
   175 
   176 		//
   177 		// Wait for a request
   178 		//
   179 		self.iGoSignal.Wait();
   180 		RDebug::Print( _L("Eraser thread go (%d)"), self.iRequestedFunction );
   181 
   182 		switch( self.iRequestedFunction )
   183 			{
   184 			case EEraseBlock:
   185 				self.DoEraseBlock();
   186 				break;
   187 
   188 			default:
   189 				self.Panic( 0 );
   190 			}
   191 
   192 		}
   193 
   194 	self.iDrive.Disconnect();
   195 	return KErrNone;
   196 	}
   197 
   198 void CEraser::DoEraseBlock()
   199 	//
   200 	// Issue an erase
   201 	//
   202 	{
   203 	RDebug::Print( _L("Eraser starting erase...") );
   204 	
   205 	TInt64 offs( iOffset );
   206 	TInt r = iDrive.Format( offs, iLength );
   207 	
   208 	if( KErrNone != r )
   209 		{
   210 		RDebug::Print( _L("Eraser: FAIL: erase request returns %d"), r );
   211 		Panic( 2 );
   212 		}
   213 	}
   214 
   215 
   216 
   217 class CSuspendTest : public CBase
   218 	{
   219 	public:
   220 		~CSuspendTest();
   221 
   222 		void CreateL();
   223 
   224 		void DoTest();
   225 
   226 	private:
   227 
   228 		TInt EraseOneBlock( TInt aBlockNumber );
   229 		TInt ZeroFillBlock( TInt aBlockNumber );
   230 		TBool ValidateBlock( TInt aBlockNumber, TUint32 aFillWord );
   231 		TInt ZeroAllBlocks();
   232 		TBool ValidateAllBlocks( TUint32 aFillWord );
   233 
   234 		void DoImmediateSuspendTest();
   235 
   236 	private:
   237 		TBusLocalDrive	iDrive;
   238 		TBool			iDriveOpened;
   239 
   240 		CEraser*		iEraser;
   241 
   242 		TInt			iFlashSize;
   243 		TInt			iBlockSize;
   244 		TInt			iBlockCount;
   245 
   246 		TBuf8<512>		iReadBuffer;
   247 	};
   248 
   249 
   250 CSuspendTest::~CSuspendTest()
   251 	{
   252 	if( iDriveOpened )
   253 		{
   254 		iDrive.Disconnect();
   255 		}
   256 
   257 	delete iEraser;
   258 	}
   259 
   260 
   261 
   262 void CSuspendTest::CreateL()
   263 	{
   264 	//
   265 	// Create the eraser thread
   266 	//
   267 	iEraser = new(ELeave) CEraser;
   268 	iEraser->CreateL();
   269 
   270 	//
   271 	// Load the device drivers
   272 	//
   273 	TInt r;
   274 #ifndef SKIP_PDD_LOAD
   275 	test.Printf( _L("Loading %S\n"), &KLfsDriverName );
   276 	r = User::LoadPhysicalDevice( KLfsDriverName );
   277 	test( KErrNone == r || KErrAlreadyExists == r );
   278 #endif
   279 
   280 #ifdef UNMOUNT_DRIVE
   281 	RFs fs;
   282 	test( KErrNone == fs.Connect() );
   283 #if 0
   284 	// XXX - not EKA2
   285 	test( KErrNone == fs.SetDefaultPath( _L("Z:\\") ) );
   286 #endif
   287 	TFullName name;
   288 	fs.FileSystemName( name, KLffsLogicalDriveNumber );
   289 	if( name.Length() > 0 )
   290 		{
   291 		test.Printf( _L("Unmounting drive") );
   292 		test( KErrNone == fs.DismountFileSystem( _L("Lffs"), KLffsLogicalDriveNumber) );
   293 		User::After( 2000000 );
   294 		test.Printf( _L("Drive unmounted") );
   295 		}
   296 	fs.Close();
   297 #endif
   298 
   299 	//
   300 	// Open a TBusLogicalDevice to the driver
   301 	//
   302 	test.Printf( _L("Opening media channel\n") );
   303 	TBool changedFlag = EFalse;
   304 	r = iDrive.Connect( KDriveNumber, changedFlag );
   305 	User::LeaveIfError( r );
   306 	iDriveOpened = ETrue;
   307 
   308 	//
   309 	// Get size of Flash drive, block size, block count
   310 	//
   311 	TLocalDriveCapsV2Buf info;
   312     iDrive.Caps(info);
   313 	iFlashSize = I64LOW(info().iSize);
   314 	iBlockSize = info().iEraseBlockSize;
   315 	iBlockCount = iFlashSize / iBlockSize;
   316 
   317 	test.Printf( _L("Flash size is 0x%x bytes\n"), iFlashSize );
   318 	test.Printf( _L("Block size is 0x%x bytes\n"), iBlockSize );
   319 	test.Printf( _L("Block count is %d\n"), iBlockCount );
   320 
   321 	test.Printf( _L("CreateL complete\n") );
   322 	}
   323 
   324 
   325 void CSuspendTest::DoTest()
   326 	//
   327 	// Main test dispatcher
   328 	//
   329 	{
   330 	DoImmediateSuspendTest();
   331 	}
   332 
   333 
   334 TInt CSuspendTest::EraseOneBlock( TInt aBlockNumber )
   335 	//
   336 	// Erases block aBlockNumber on Flash
   337 	//
   338 	{
   339 	TInt blockBaseOffset = aBlockNumber * iBlockSize;
   340 
   341 	test.Printf( _L("Erasing block %d (offs=0x%x)\n"), aBlockNumber, blockBaseOffset );
   342 	
   343 	TInt r = iDrive.Format( blockBaseOffset, iBlockSize );
   344 
   345 	test.Printf( _L("... block erased, rv=%d\n"), r );
   346 	return r;
   347 	}
   348 
   349 
   350 TBool CSuspendTest::ValidateBlock( TInt aBlockNumber, TUint32 aFillWord )
   351 	//
   352 	// Checks that every word in block aBlockNumber has the value aFillWord
   353 	//
   354 	{
   355 	TUint offset = aBlockNumber * iBlockSize;
   356 	test.Printf( _L("Validating block %d (offs=0x%x)\n"), aBlockNumber, offset );
   357 	
   358 	TBool failed = EFalse;
   359 	const TInt readBufLen = iReadBuffer.MaxLength();
   360 
   361 	for( TInt len = iBlockSize; len > 0 && !failed ;)
   362 		{
   363 		TInt r = iDrive.Read( offset, readBufLen, iReadBuffer );
   364 		if( r != KErrNone )
   365 			{
   366 			test.Printf( _L("... FAIL: read failed (%d) at offset 0x%x\n"), r, offset );
   367 			test( KErrNone == r );
   368 			}
   369 		test( iReadBuffer.Length() == readBufLen );
   370 
   371 		TUint32* p = (TUint32*)iReadBuffer.Ptr();
   372 		for( TInt i = 0; i < readBufLen; i += 4 )
   373 			{
   374 			if( aFillWord != *p )
   375 				{
   376 				failed = ETrue;
   377 				test.Printf( _L("... FAILED: word @ offs=0x%x, read=0x%x, expected=0x%x\n"), 
   378 								offset+i, p[0], aFillWord );
   379 				break;
   380 				}
   381 			++p;
   382 			}
   383 		offset += readBufLen;
   384 		len -= readBufLen;
   385 		}
   386 	
   387 	return !failed;
   388 	}
   389 
   390 
   391 TInt CSuspendTest::ZeroFillBlock( TInt aBlockNumber )
   392 	//
   393 	// Zero-fills and entire block
   394 	// The requires that writing works
   395 	//
   396 	{
   397 	test.Printf( _L("Zero-filling block %d\n"), aBlockNumber );
   398 
   399 	//
   400 	// Create a buffer full of zeros
   401 	//
   402 	const TInt KZeroBufSize = 512;
   403 
   404 	TBuf8<KZeroBufSize> buf;
   405 	buf.FillZ( buf.MaxLength() );
   406 
   407 	//
   408 	// Write the data out to the Flash
   409 	//
   410 	TInt writeCount = iBlockSize / KZeroBufSize;
   411 	TInt r = KErrNone;
   412 	TInt blockBaseOffset = aBlockNumber * iBlockSize;
   413 	for( ; (writeCount > 0) && (KErrNone == r); writeCount-- )
   414 		{
   415 		r = iDrive.Write( blockBaseOffset, buf );
   416 		if( r != KErrNone )
   417 			{
   418 			test.Printf( _L("... FAIL: write failed (%d) at offset 0x%x\n"), blockBaseOffset );
   419 			}
   420 		blockBaseOffset += KZeroBufSize;
   421 		}
   422 
   423 	return r;
   424 	}
   425 
   426 
   427 TInt CSuspendTest::ZeroAllBlocks()
   428 	//
   429 	// Writes zeros to all blocks
   430 	//
   431 	{
   432 	test.Printf( _L("Zeroing all blocks\n") );
   433 
   434 	TInt r = KErrNone;
   435 	for( TInt i = 0; (i < iBlockCount) && (KErrNone == r); i++ )
   436 		{
   437 		r = ZeroFillBlock( i );
   438 		}
   439 
   440 	return r;
   441 	}
   442 
   443 TBool CSuspendTest::ValidateAllBlocks( TUint32 aFillWord )
   444 	//
   445 	// Checks that all blocks contain aFillWord
   446 	//
   447 	{
   448 	test.Printf( _L("Validating all blocks\n") );
   449 
   450 	TBool failed = EFalse;
   451 	for( TInt i = 0; (i < iBlockCount) && (!failed); i++ )
   452 		{
   453 		failed = !ValidateBlock( i, aFillWord );
   454 		}
   455 
   456 	return !failed;
   457 	}
   458 
   459 
   460 void CSuspendTest::DoImmediateSuspendTest()
   461 	//
   462 	// For each block issues an erase and then immediately
   463 	// requests a read on another block. Waits for erase to
   464 	// finish and validates it
   465 	//
   466 	{
   467 	test.Next( _L("Immediate suspend test") );
   468 	test( KErrNone == ZeroAllBlocks() );
   469 	test( ValidateAllBlocks( 0 ) );
   470 
   471 	//
   472 	// We repeat the test for each block, erasing block n and reading from
   473 	// block (n+1) modulo iBlockCount
   474 	//
   475 	for( TInt eraseBlock = 0; eraseBlock < iBlockCount; eraseBlock++ )
   476 		{
   477 		TUint32 readBlock = (eraseBlock + 1) % iBlockCount;
   478 		TUint32 erasePos = eraseBlock * iBlockSize;
   479 		TInt readPos = readBlock * iBlockSize;
   480 
   481 		TBuf8<32> buf;
   482 
   483 		//
   484 		// Start the erase
   485 		//
   486 		iEraser->EraseBlock( erasePos, iBlockSize );
   487 
   488 		//
   489 		// Do a read immediately
   490 		//
   491 		test.Printf( _L("main thread requesting read") );
   492 		test( KErrNone == iDrive.Read( readPos, buf.MaxLength(), buf ) );
   493 
   494 		//
   495 		// Wait for erase to finish
   496 		//
   497 		test.Printf( _L("main thread waiting for erase to finish...") );
   498 		iEraser->WaitForDone();
   499 
   500 		//
   501 		// Now check that the block was erased
   502 		//
   503 		test( ValidateBlock( eraseBlock, 0xFFFFFFFF ) );
   504 		
   505 		}
   506 
   507 	}
   508 
   509 
   510 
   511 
   512 TInt E32Main()
   513 	{
   514 	test.Title();
   515 	test.Start(_L("Testing media erase+suspend operations"));
   516 
   517 	CSuspendTest suspendTest;
   518 	TRAPD( ret, suspendTest.CreateL() );
   519 	if( KErrNone == ret )
   520 		{
   521 		suspendTest.DoTest();
   522 		}
   523 
   524 	test.End();
   525 	return KErrNone;
   526 	}