kerneltest/e32test/active/t_timerduration.cpp
changeset 0 a41df078684a
child 90 947f0dc9f7a8
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-1:000000000000 0:a41df078684a
       
     1 // Copyright (c) 2005-2009 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 // Overview:
       
    15 // The test measures the duration of the user-side timer services.
       
    16 // API Information:
       
    17 // User::After(...)
       
    18 // User::At(...)
       
    19 // User::AfterHighRes(...)
       
    20 // Details:
       
    21 // - Calls time services a number of times with the same input arguments.
       
    22 // - Records and prints the minimum and maximum duration of each test case.
       
    23 // - Tests the duration of User::After and User::AfterHighRes on target.
       
    24 // Platforms/Drives/Compatibility:
       
    25 // Emulator and Hardware (Automatic). 
       
    26 // Assumptions/Requirement/Pre-requisites:
       
    27 // Failures and causes:
       
    28 // The test can fail only on target.
       
    29 // - The duration of Timer::After(aTime) is not within the limits (from <aTime> to <aTime + 1000000/64+2*NanoKarnelTickPeriod>)
       
    30 // - The duration of Timer::AfterHighRes(aTime) is not within the limits (from <aTime> to <aTime+2*NanoKarnelTickPeriod>)
       
    31 // Base Port information:
       
    32 // 
       
    33 //
       
    34 
       
    35 #include <e32std.h>
       
    36 #include <e32std_private.h>
       
    37 #include <e32test.h>
       
    38 #include <e32math.h>
       
    39 #include <e32svr.h>
       
    40 #include <hal.h>
       
    41 
       
    42 LOCAL_D RTest test(_L("T_TIMERDURATION"));
       
    43 
       
    44 // Max number of different time values measured
       
    45 const TInt KMaxTimeValues = 12;
       
    46 
       
    47 // number of times measurement taken to average
       
    48 const TInt KMaxTimeMeasurements = 20;
       
    49 TInt MaxTimeMeasurements;
       
    50 TInt TimeRawMS[KMaxTimeMeasurements];//Holds the ROW time in Kernel ticks
       
    51 
       
    52 TInt* TimeValue;
       
    53 TInt TimeMin[KMaxTimeValues];
       
    54 TInt TimeMax[KMaxTimeValues];
       
    55 	
       
    56 void calcStats(TInt i)
       
    57 	{
       
    58 	TimeMin[i]=TimeRawMS[0];
       
    59 	TimeMax[i]=TimeRawMS[0];
       
    60 	for (TInt j=1; j<MaxTimeMeasurements; ++j)
       
    61 			{
       
    62 			if (TimeMin[i]>TimeRawMS[j]) TimeMin[i]=TimeRawMS[j];
       
    63 			if (TimeMax[i]<TimeRawMS[j]) TimeMax[i]=TimeRawMS[j];
       
    64 			}
       
    65 	}
       
    66 
       
    67 void printStats()
       
    68 	{
       
    69 	test.Printf(_L("Value\tMin\tMax"));
       
    70 	for (TInt i=0;i<KMaxTimeValues;++i)
       
    71 		{
       
    72 		if (TimeValue[i]<0) break;
       
    73 		test.Printf(_L("%d\t%d\t%d"),TimeValue[i],TimeMin[i],TimeMax[i]);
       
    74 		}
       
    75 	}
       
    76 
       
    77 #define __BEFORE_WAIT__ \
       
    78 	test.Printf(_L("Measuring value(%d measurements at each value):"), MaxTimeMeasurements);\
       
    79 	for (i=0;i<KMaxTimeValues;++i)\
       
    80 		{\
       
    81 		if (TimeValue[i]<0) break;\
       
    82 		test.Printf(_L("%d microseconds ..."),TimeValue[i]);\
       
    83 		value = TimeValue[i];\
       
    84 		for (j=0; j<MaxTimeMeasurements; ++j)\
       
    85 			{\
       
    86 			User::AfterHighRes((Math::Random()&0xf)*1000);\
       
    87 	
       
    88 #define __MEASURE1__ tick1 = User::NTickCount();
       
    89 
       
    90 #define __MEASURE2__ tick2 = User::NTickCount();
       
    91 
       
    92 #define __AFTER_WAIT__ \
       
    93 			TimeRawMS[j]=(tick2-tick1)*tickPeriod;\
       
    94 			}\
       
    95 		calcStats(i);\
       
    96 		}\
       
    97 	printStats();\
       
    98 
       
    99 GLDEF_C TInt E32Main()
       
   100     {
       
   101     TInt i,j;
       
   102 	test.Title();
       
   103 	test.Start(_L("Timer resolution test"));
       
   104 	test.SetLogged(ETrue);
       
   105 	RThread This;
       
   106 	This.SetPriority(EPriorityRealTime);
       
   107 	TUint tick1,tick2;
       
   108 	TInt value, tickPeriod;
       
   109 	HAL::Get(HAL::ENanoTickPeriod, tickPeriod);
       
   110 	test.Printf(_L("tickPeriod=%d"),tickPeriod);
       
   111 ///////////////////////////////////////////
       
   112 	test.Next(_L("Calibrate"));
       
   113 	MaxTimeMeasurements = KMaxTimeMeasurements;
       
   114 	TInt TimeValues1[KMaxTimeValues]={0,-1};
       
   115 	TimeValue = &TimeValues1[0];
       
   116 	__BEFORE_WAIT__
       
   117 	__MEASURE1__
       
   118 	__MEASURE2__
       
   119 	__AFTER_WAIT__
       
   120 ///////////////////////////////////////////
       
   121 	test.Next(_L("User::After"));
       
   122 	TInt TimeValues2[KMaxTimeValues]={10000, 40000,80000,160000,320000,-1};
       
   123 	TimeValue = &TimeValues2[0];
       
   124 	__BEFORE_WAIT__
       
   125 	__MEASURE1__
       
   126 			User::After(value);
       
   127 	__MEASURE2__
       
   128 	__AFTER_WAIT__
       
   129 #if defined(__EPOC32__)
       
   130 	//Check that User::After calls completed within boundaries
       
   131     TInt k;
       
   132 	for (k = 0; k<KMaxTimeValues; k++)
       
   133 		{
       
   134 		if (TimeValue[k] == -1) break;
       
   135 		test(TimeValue[k] <= TimeMin[k]);
       
   136 		TInt aTimerResolution = 1000000/64;
       
   137 		test((TimeValue[k] + aTimerResolution +2*tickPeriod) >= TimeMax[k]);
       
   138 		}
       
   139 #endif
       
   140 ///////////////////////////////////////////
       
   141 	test.Next(_L("User::At"));
       
   142 	MaxTimeMeasurements = KMaxTimeMeasurements/2;
       
   143 	TInt TimeValues3[KMaxTimeValues]={950000,1000000,-1};
       
   144 	TimeValue = &TimeValues3[0];
       
   145 	TTime time;
       
   146 	time.Set(_L("20050101:000001.000000"));
       
   147 	User::SetHomeTime(time);
       
   148 	__BEFORE_WAIT__
       
   149 			time.HomeTime();
       
   150 			time += (TTimeIntervalMicroSeconds32)value;
       
   151 	__MEASURE1__
       
   152 			User::At(time);
       
   153 	__MEASURE2__
       
   154 	__AFTER_WAIT__
       
   155 ///////////////////////////////////////////
       
   156 	test.Next(_L("User::AfterHighRes"));
       
   157 	MaxTimeMeasurements = KMaxTimeMeasurements;
       
   158 	TInt TimeValues4[KMaxTimeValues]={1000,2000,4000,8000,16000,32000,64000,128000,-1};
       
   159 	TimeValue = &TimeValues4[0];
       
   160 	__BEFORE_WAIT__
       
   161 	__MEASURE1__
       
   162 			User::AfterHighRes(value);
       
   163 	__MEASURE2__
       
   164 	__AFTER_WAIT__
       
   165 #if defined(__EPOC32__)
       
   166 	//Check that User::AfterHighRes calls completed within boundaries
       
   167 	for (k = 0; k<KMaxTimeValues; k++)
       
   168 		{
       
   169 		if (TimeValue[k] == -1) break;
       
   170 		test(TimeValue[k] <= TimeMin[k]);
       
   171 		test((TimeValue[k] + 2*tickPeriod) >= TimeMax[k]);
       
   172 		}
       
   173 #endif
       
   174 ///////////////////////////////////////////
       
   175 	test.End();
       
   176 	return(KErrNone);
       
   177 	}