kerneltest/e32test/multimedia/t_camera_gen.cpp
changeset 247 d8d70de2bd36
parent 201 43365a9b78a3
child 250 ac18961ed598
child 259 57b9594f5772
equal deleted inserted replaced
201:43365a9b78a3 247:d8d70de2bd36
     1 // Copyright (c) 2004-2009 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 // e32test\multimedia\t_camera_gen.cpp
       
    15 // 
       
    16 //
       
    17 
       
    18 #include <e32test.h>
       
    19 #include <d32camerasc.h>
       
    20 #include <e32def.h>
       
    21 #include <e32def_private.h>
       
    22 #include "t_camera_display.h"
       
    23 #include "d_mmcsc.h"
       
    24 
       
    25 _LIT(KTstLddFileName,"D_MMCSC.LDD");
       
    26 _LIT(KCamLddFileName,"ECAMERASC.LDD");
       
    27 
       
    28 #ifdef __WINSCW__
       
    29 _LIT(KCamPddFileName,"_TEMPLATE_CAMERASC.PDD");
       
    30 #else
       
    31 _LIT(KCamPddFileName,"CAMERASC.PDD");
       
    32 #endif
       
    33 
       
    34 _LIT(KCamFreePddExtension,".*");
       
    35 
       
    36 const TInt KUnit0=0;
       
    37 const TInt KFrameRate=30;		// Run the test at 30fps
       
    38 
       
    39 class CCameraHandler;
       
    40 
       
    41 RTest test(_L("T_CAMERA_GEN"));
       
    42 CCameraHandler* camera;
       
    43 
       
    44 /**
       
    45 Wait for a key press, but timeout so automated tests
       
    46 are unaffected
       
    47 */
       
    48 void util_getch_withtimeout(TUint aSecs)
       
    49 	{
       
    50 	TRequestStatus keyStat;
       
    51 	test.Console()->Read(keyStat);
       
    52 	RTimer timer;
       
    53 	test(timer.CreateLocal()==KErrNone);
       
    54 	TRequestStatus timerStat;
       
    55 	timer.After(timerStat,aSecs*1000000);
       
    56 	User::WaitForRequest(timerStat,keyStat);
       
    57 	if(keyStat!=KRequestPending)
       
    58 		(void)test.Console()->KeyCode();
       
    59 	timer.Cancel();
       
    60 	timer.Close();
       
    61 	test.Console()->ReadCancel();
       
    62 	User::WaitForAnyRequest();
       
    63 	}
       
    64 
       
    65 // Define the frame number to capture
       
    66 // For image capture this should be zero.
       
    67 const TInt64 KFrameNumberToCapture= 50;
       
    68 
       
    69 /// Defines camera handler
       
    70 class CCameraHandler : public CActive
       
    71 	{
       
    72 public:
       
    73 	static CCameraHandler* NewL();
       
    74 	~CCameraHandler();
       
    75 	TInt SetConfig(TDevCamCaptureMode aCaptureMode, SDevCamFrameSize aSize,SDevCamPixelFormat aPixelFormat,TBool aCreateChunk,TInt aNumBuffers);
       
    76 	void GetConfig(TDevCamCaptureMode aCaptureMode);
       
    77 	TInt GetCaps();
       
    78 	TInt SetFirstConfig(TUint aOffset);
       
    79 	TInt Start(TDevCamCaptureMode aCaptureMode);
       
    80 	TInt Stop();
       
    81 	void SetCaptureMode(TDevCamCaptureMode aCaptureMode);
       
    82 private:
       
    83 	CCameraHandler();
       
    84 	virtual void RunL();
       
    85 	virtual void DoCancel();
       
    86 	TInt Init();
       
    87 private:
       
    88 	TCamDisplayHandler iDispHandler[ECamCaptureModeMax];
       
    89 	RDevCameraSc iCamera;
       
    90 	RChunk iChunk[ECamCaptureModeMax];
       
    91 	TInt iFrameCount;
       
    92 	TDevCamCaptureMode iCaptureMode;
       
    93 	TInt iCapsSize;
       
    94 	TAny* iCapsBufPtr;
       
    95 	TCameraCapsV02* iCameraCaps;
       
    96 	};
       
    97 
       
    98 CCameraHandler::CCameraHandler() : CActive(EPriorityStandard)
       
    99 //
       
   100 // Constructor for the camera handler
       
   101 //
       
   102 	{
       
   103 	// Active object priority is set to normal
       
   104 	}
       
   105 
       
   106 CCameraHandler::~CCameraHandler()
       
   107 //
       
   108 // Destructor for the camera handler
       
   109 //
       
   110 	{
       
   111 	for (TInt captureMode=0; captureMode < ECamCaptureModeMax; captureMode++)
       
   112 		iChunk[captureMode].Close();
       
   113 	if(iCapsBufPtr)
       
   114 		User::Free(iCapsBufPtr);
       
   115 	iCamera.Close();
       
   116 	// Cancel any active request
       
   117 	CActive::Cancel();
       
   118 	}
       
   119 
       
   120 void CCameraHandler::DoCancel()
       
   121 	{
       
   122 
       
   123 	}
       
   124 
       
   125 CCameraHandler* CCameraHandler::NewL()
       
   126 //
       
   127 // Create active camera
       
   128 //
       
   129 	{
       
   130 	test.Printf(_L("NewL\r\n"));
       
   131 	CCameraHandler *cc = new (ELeave) CCameraHandler;
       
   132 	TInt r=cc->Init();
       
   133 	if (r!=KErrNone)
       
   134 		User::Leave(r);
       
   135 	CActiveScheduler::Add(cc);
       
   136 	return(cc);
       
   137 	}
       
   138 
       
   139 TInt CCameraHandler::Init()
       
   140 //
       
   141 // Initialise hardware
       
   142 //
       
   143 	{
       
   144 	test.Printf(_L("Init\r\n"));
       
   145 	TInt r;
       
   146 	for (TInt captureMode=0; captureMode < ECamCaptureModeMax; captureMode++)
       
   147 		{
       
   148 		r=iDispHandler[captureMode].Init();
       
   149 		if (r!=KErrNone)
       
   150 			return(r);
       
   151 		}
       
   152 
       
   153 	// Open camera driver channel
       
   154 	r=iCamera.Open(KUnit0);
       
   155 	return(r);
       
   156 	}
       
   157 
       
   158 void CCameraHandler::SetCaptureMode(TDevCamCaptureMode aCaptureMode)
       
   159 	{
       
   160 	iCaptureMode=aCaptureMode;
       
   161 	}
       
   162 
       
   163 TInt CCameraHandler::GetCaps()
       
   164 	{
       
   165 	test.Printf(_L("GetCaps\r\n"));
       
   166 	iCapsSize=iCamera.CapsSize();
       
   167 	iCapsBufPtr = User::Alloc(iCapsSize);
       
   168 	TPtr8 capsPtr( (TUint8*)iCapsBufPtr, iCapsSize, iCapsSize );
       
   169 	TInt r = iCamera.Caps(capsPtr);
       
   170 	if(r!=KErrNone)
       
   171 		return r;
       
   172 	iCameraCaps = (TCameraCapsV02*) capsPtr.Ptr();
       
   173 
       
   174 	test.Printf(_L("Number of supported pixel formats:%d\r\n"),iCameraCaps->iNumVideoPixelFormats);
       
   175 	return r;
       
   176 	}
       
   177 
       
   178 void CCameraHandler::GetConfig(TDevCamCaptureMode aCaptureMode)
       
   179 	{
       
   180 	test.Printf(_L("GetConfig\r\n"));
       
   181 	// Config camera
       
   182 	TCameraConfigV02Buf configBuf;
       
   183 	TCameraConfigV02 &config=configBuf();
       
   184 
       
   185 	iCamera.GetCamConfig(aCaptureMode, configBuf);
       
   186 
       
   187 	test.Printf(_L("Pixel Format:%d\r\n"),config.iPixelFormat);
       
   188 	test.Printf(_L("Frame Size  :%d\r\n"),config.iFrameSize);
       
   189 	test.Printf(_L("Frame rate  :%dfps\r\n"),config.iFrameRate);
       
   190 	}
       
   191 
       
   192 TInt CCameraHandler::SetFirstConfig(TUint aOffset)
       
   193 	{
       
   194 	test.Printf(_L("SetFirstConfig\r\n"));
       
   195 	TInt ret;
       
   196 	TAny* frameSizeCapsBuf=0;
       
   197 	SDevCamPixelFormat* pixelFormat;
       
   198 	SDevCamFrameSize* frameSize;
       
   199 	TPtr8 frameSizeCapsPtr(0,0,0);
       
   200 	pixelFormat = (SDevCamPixelFormat*) (iCameraCaps + 1);
       
   201 
       
   202 	if(camera->iCameraCaps->iNumVideoPixelFormats)
       
   203 		{
       
   204 		pixelFormat = pixelFormat + iCameraCaps->iNumImagePixelFormats + iCameraCaps->iNumVideoPixelFormats;
       
   205 		frameSizeCapsBuf = User::Alloc(pixelFormat->iNumFrameSizes*sizeof(SDevCamFrameSize));
       
   206 		new (&frameSizeCapsPtr) TPtr8((TUint8*)frameSizeCapsBuf, pixelFormat->iNumFrameSizes*sizeof(SDevCamFrameSize), pixelFormat->iNumFrameSizes*sizeof(SDevCamFrameSize));
       
   207 		ret=iCamera.FrameSizeCaps(ECamCaptureModeImage, pixelFormat->iPixelFormat, frameSizeCapsPtr);
       
   208 		test(ret==KErrNone);
       
   209 		frameSize = (SDevCamFrameSize*) frameSizeCapsPtr.Ptr();
       
   210 		if((pixelFormat->iNumFrameSizes>aOffset) && aOffset)
       
   211 			frameSize += aOffset;
       
   212 		ret=camera->SetConfig(ECamCaptureModeVideo,*frameSize,*pixelFormat,ETrue,3);
       
   213 		test(ret==KErrNone);
       
   214 		User::Free(frameSizeCapsBuf);
       
   215 		return(KErrNone);
       
   216 		}
       
   217 	else
       
   218 		return(KErrNotSupported);
       
   219 	}
       
   220 
       
   221 TInt CCameraHandler::SetConfig(TDevCamCaptureMode aCaptureMode, SDevCamFrameSize aSize,SDevCamPixelFormat aPixelFormat,TBool aCreateChunk,TInt aNumBuffers)
       
   222 	{
       
   223 	test.Printf(_L("SetConfig\r\n"));
       
   224 	TInt r=iDispHandler[aCaptureMode].SetConfig(aSize,aPixelFormat);
       
   225 	if (r!=KErrNone)
       
   226 		return(r);
       
   227 
       
   228 	// Config camera
       
   229 	TCameraConfigV02Buf configBuf;
       
   230 	TCameraConfigV02 &config=configBuf();
       
   231 	iCamera.GetCamConfig(aCaptureMode, configBuf);		// Load defaults
       
   232 
       
   233 	config.iFrameSize=aSize;
       
   234 	config.iPixelFormat=aPixelFormat;
       
   235 	config.iFrameRate=KFrameRate;
       
   236 
       
   237 	TMmSharedChunkBufConfig bufferConfig;
       
   238 	TPckg<TMmSharedChunkBufConfig> bufferConfigBuf(bufferConfig);
       
   239 
       
   240 	r=iCamera.SetCamConfig(aCaptureMode,configBuf);
       
   241 	if (r!=KErrNone)
       
   242 		return(r);
       
   243 
       
   244 	if (aCreateChunk)
       
   245 		{
       
   246 		r=iCamera.SetBufConfigChunkCreate(aCaptureMode,aNumBuffers,iChunk[aCaptureMode]);
       
   247 		if (r!=KErrNone)
       
   248 			return(r);
       
   249 		}
       
   250 	else
       
   251 		{
       
   252 		// 'aNumBuffers' is ignored here, D_MMCSC.LDD currently uses 2 buffers
       
   253 
       
   254 		RMmCreateSc tstDrv;
       
   255 		r=tstDrv.Open();
       
   256 		if (r!=KErrNone)
       
   257 			return(r);
       
   258 		r=tstDrv.GetChunkHandle(iChunk[aCaptureMode]);	// Get a handle on the shared chunk created by the test driver
       
   259 		if (r!=KErrNone)
       
   260 			return(r);
       
   261 		r=tstDrv.GetBufInfo(bufferConfigBuf);
       
   262 		if (r!=KErrNone)
       
   263 			return(r);
       
   264 		r=iCamera.SetBufConfigChunkOpen(aCaptureMode,bufferConfigBuf,iChunk[aCaptureMode]);
       
   265 		if (r!=KErrNone)
       
   266 			return(r);
       
   267 
       
   268 		tstDrv.Close();
       
   269 		}
       
   270 
       
   271 	iCamera.GetBufferConfig(aCaptureMode, bufferConfigBuf);
       
   272 	PrintBufferConf(bufferConfig,test);
       
   273 
       
   274 	return(r);
       
   275 	}
       
   276 
       
   277 TInt CCameraHandler::Start(TDevCamCaptureMode aCaptureMode)
       
   278 //
       
   279 // Set object active, start getting images from the camera
       
   280 //
       
   281 	{
       
   282 	test.Printf(_L("Start\r\n"));
       
   283 	// Set object active
       
   284 	iFrameCount=0;
       
   285 	SetActive();
       
   286 	iCamera.SetCaptureMode(aCaptureMode);
       
   287 	// Add request for a new image
       
   288 	TInt r=iCamera.Start();
       
   289 	if (r==KErrNone)
       
   290 		iCamera.NotifyNewImage(iStatus);
       
   291 	return(r);
       
   292 	}
       
   293 
       
   294 void CCameraHandler::RunL()
       
   295 //
       
   296 // Handles a new request
       
   297 //
       
   298 	{
       
   299 	TInt retId=iStatus.Int();
       
   300 	TInt retOffset=-1;
       
   301 	iCamera.BufferIdToOffset(iCaptureMode,retId,retOffset);
       
   302 	if (retId>=0)
       
   303 		{
       
   304 		TUint8* imgBase=iChunk[iCaptureMode].Base()+retOffset;
       
   305 		TInt r=iDispHandler[iCaptureMode].Process(imgBase);
       
   306 		
       
   307 #ifdef __WINSCW__
       
   308 		test(r==KErrNotSupported);
       
   309 #else
       
   310 		test(r==KErrNone);
       
   311 #endif
       
   312 		
       
   313 		// Release the buffer
       
   314 		test(iCamera.ReleaseBuffer(retId)==KErrNone);
       
   315 		iFrameCount++;
       
   316 		}
       
   317 	else
       
   318 		test.Printf(_L("Capture error (%d)\r\n"),retId);
       
   319 
       
   320 	if (iFrameCount<KFrameNumberToCapture)
       
   321 		{
       
   322 		// Add request for a new image
       
   323 		iCamera.NotifyNewImage(iStatus);
       
   324 		// re-set active
       
   325 		SetActive();
       
   326 		}
       
   327 
       
   328 	else
       
   329 		{
       
   330 		CActiveScheduler::Stop();
       
   331 		}
       
   332 	}
       
   333 
       
   334 TInt CCameraHandler::Stop()
       
   335 //
       
   336 // Stops camera
       
   337 //
       
   338 	{
       
   339 	test.Printf(_L("Stop\r\n"));
       
   340 	CActive::Cancel();
       
   341 	TInt r=iCamera.Stop();
       
   342 	return(r);
       
   343 	}
       
   344 
       
   345 //
       
   346 // Test for recording a certain number of frames in a particular configuration and displaying
       
   347 // the results.
       
   348 //
       
   349 void TestRecording()
       
   350 	{
       
   351 	TInt ret;
       
   352 
       
   353 	camera->GetConfig(ECamCaptureModeVideo);
       
   354 	camera->SetCaptureMode(ECamCaptureModeVideo);
       
   355 	test.Next(_L("Starting camera"));
       
   356 	ret=camera->Start(ECamCaptureModeVideo);
       
   357 	test.Printf(_L("Start returned %d\r\n"),ret);
       
   358 	test(ret==KErrNone);
       
   359 
       
   360 	// Calculate frame rate.
       
   361 	// We store cuurent time before receiving data from the camera and
       
   362 	// after to have received KFrameNumberToCapture pictures, we calculate
       
   363 	// time elapsed during the reception.
       
   364 	TTimeIntervalMicroSeconds microseconds ;
       
   365 	TTime now;
       
   366 	TTime iTime;
       
   367 	now.HomeTime();
       
   368 
       
   369 	test.Next(_L("Starting active scheduler"));
       
   370 	// Start active scheduler
       
   371 	CActiveScheduler::Start();
       
   372 
       
   373 	// We have received all pictures, so we store the new current time
       
   374 	iTime.HomeTime();
       
   375 
       
   376 	// We keep this time in microseconds to be more precise
       
   377 	microseconds = iTime.MicroSecondsFrom(now) ;
       
   378 
       
   379 	TInt64 timeElapsed = microseconds.Int64();
       
   380 
       
   381 	// We store in this variable, integer value of the frame rate
       
   382 	TInt64 intFrameRate = (TInt64)((KFrameNumberToCapture *1000000)/timeElapsed);
       
   383 
       
   384 	// We store in this variable, decimal value of the frame rate
       
   385 	TInt64 milliFrameRate = (TInt64)((KFrameNumberToCapture *1000000)%timeElapsed);
       
   386 	milliFrameRate = (milliFrameRate*1000) / timeElapsed;
       
   387 
       
   388 	test.Printf(_L("   Frame rate for frames received : %d.%03d frames per second\r\n"), static_cast<TInt>(intFrameRate), static_cast<TInt>(milliFrameRate));
       
   389 	test.Printf(_L("   Frame rate expected            : %d.000 frames per second\r\n"),KFrameRate);
       
   390 	test.Next(_L("Stopping camera"));
       
   391 	// Stop Camera
       
   392 	ret=camera->Stop();
       
   393 	test(ret==KErrNone);
       
   394 	}
       
   395 
       
   396 //
       
   397 // Test program main part
       
   398 //
       
   399 TInt E32Main()
       
   400 	{
       
   401 	__UHEAP_MARK;
       
   402 
       
   403 	test.Title();
       
   404 	test.Start(_L("Camera module GEN test"));
       
   405 
       
   406 	test.Next(_L("Loading CAMERA PDD"));
       
   407 	TInt ret=User::LoadPhysicalDevice(KCamPddFileName);
       
   408 	test.Printf(_L("Returned %d\r\n"),ret);
       
   409 
       
   410 	if (ret==KErrNotFound)
       
   411 		{
       
   412 		test.Printf(_L("Shared chunk camera driver not supported - test skipped\r\n"));
       
   413 		test.End();
       
   414 		test.Close();
       
   415 		__UHEAP_MARKEND;
       
   416 		return(KErrNone);
       
   417 		}
       
   418 
       
   419 	test(ret==KErrNone || ret==KErrAlreadyExists);
       
   420 
       
   421 	test.Next(_L("Loading CAMERA LDD"));
       
   422 	ret=User::LoadLogicalDevice(KCamLddFileName);
       
   423 	test.Printf(_L("Returned %d\r\n"),ret);
       
   424 	test(ret==KErrNone || ret==KErrAlreadyExists);
       
   425 
       
   426 	test.Next(_L("Loading D_MMCSC LDD"));
       
   427 	ret=User::LoadLogicalDevice(KTstLddFileName);
       
   428 	test.Printf(_L("Returned %d\r\n"),ret);
       
   429 	test(ret==KErrNone||ret==KErrAlreadyExists);
       
   430 
       
   431 	__KHEAP_MARK;
       
   432 
       
   433 	// Construct and install the active scheduler
       
   434 	test.Next(_L("Initialising active scheduler"));
       
   435 	CActiveScheduler *exampleScheduler = new (ELeave) CActiveScheduler();
       
   436 	// Install as the active scheduler
       
   437 	CActiveScheduler::Install(exampleScheduler);
       
   438 
       
   439 	// Create camera handler
       
   440 	test.Next(_L("Creating camera handler"));
       
   441 	camera = CCameraHandler::NewL();
       
   442 
       
   443 	test.Next(_L("+ Getting Camera Capabilities"));
       
   444 	ret=camera->GetCaps();
       
   445 	test(ret==KErrNone);
       
   446 
       
   447 	// SetConfig
       
   448 	test.Next(_L("Setting Camera Configuration"));
       
   449 	ret=camera->SetFirstConfig(0);
       
   450 	test(ret==KErrNone);
       
   451 	TestRecording();
       
   452 
       
   453 	// Repeat with a different configuration
       
   454 	test.Next(_L("Resetting Camera Configuration"));
       
   455 	ret=camera->SetFirstConfig(1);
       
   456 	test(ret==KErrNone);
       
   457 	TestRecording();
       
   458 
       
   459 	delete camera;
       
   460 	delete exampleScheduler;
       
   461 
       
   462 	__KHEAP_MARKEND;
       
   463 
       
   464 	// Free the PDDs and LDDs
       
   465 	test.Next(_L("Freeing ECAMERASC LDD"));
       
   466 	ret=User::FreeLogicalDevice(KDevCameraScName);
       
   467 	test(ret==KErrNone);
       
   468 
       
   469 	test.Next(_L("Freeing CAMERASC PDD")) ;
       
   470 	TFindPhysicalDevice fDr;
       
   471 	TFullName drivName;
       
   472 	TName searchName;
       
   473 	searchName.Append(KDevCameraScName);
       
   474 	searchName.Append(KCamFreePddExtension);
       
   475 	fDr.Find(searchName);
       
   476 	ret=fDr.Next(drivName);
       
   477 	test(ret==KErrNone);
       
   478 	ret=User::FreePhysicalDevice(drivName);
       
   479 	test(ret==KErrNone);
       
   480 
       
   481 	test.Next(_L("Freeing D_MMCSC LDD"));
       
   482 	ret=User::FreeLogicalDevice(KDevMmCScName);
       
   483 	test(ret==KErrNone);
       
   484 
       
   485 	test.Printf(_L("Hit any key to continue\r\n"));
       
   486 	util_getch_withtimeout(5);
       
   487 
       
   488 	test.End();
       
   489 	test.Close();
       
   490 
       
   491 	__UHEAP_MARKEND;
       
   492 
       
   493 	return KErrNone;
       
   494 	}