kerneltest/e32test/system/t_atomicu.cpp
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     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 // e32test\system\t_atomicu.cpp
       
    15 // Overview:
       
    16 // Simple test for class User atomic operations
       
    17 // API Information:
       
    18 // User::SafeInc(), User::SafeDec(), User::LockedInc(),
       
    19 // User::LockedDec()
       
    20 // Details:
       
    21 // - Tests SafeInc, SafeDec, LockedInc and LockedDec
       
    22 // functions in single thread and determines that counts
       
    23 // match after finished
       
    24 // - Tests SafeInc, SafeDec, LockedInc and LockedDec
       
    25 // functions in multithreaded configuration and determines
       
    26 // that counts match after finished
       
    27 // Platforms/Drives/Compatibility:
       
    28 // All.
       
    29 // Assumptions/Requirement/Pre-requisites:
       
    30 // Failures and causes:
       
    31 // Base Port information:
       
    32 // 
       
    33 //
       
    34 
       
    35 #define __E32TEST_EXTENSION__
       
    36 #include <e32test.h>
       
    37 #include <e32svr.h>
       
    38 #include <e32def.h>
       
    39 
       
    40 LOCAL_D RTest test(_L("T_ATOMICU"));
       
    41 
       
    42 const TInt KMaxOps=20000;
       
    43 #define KNumThreads 20
       
    44 TInt gValue=0;
       
    45 
       
    46 void TestSafeIncAndSafeDec()
       
    47 	{
       
    48 	gValue=0;
       
    49 	// increasing when 0, should return 0
       
    50 	test(User::SafeInc(gValue)==0);
       
    51 	// value also should be 0
       
    52 	test(gValue==0);
       
    53 	
       
    54 	gValue=1;
       
    55 	TInt expected=0;
       
    56 	// gValue should vary only between 1 and 2
       
    57 	for (TInt i=0; i<KMaxOps; i++)
       
    58 		{
       
    59 		expected=User::SafeInc(gValue)+1;
       
    60 		test(expected==User::SafeDec(gValue));
       
    61 		}
       
    62 
       
    63 	// after running these, it should be 1
       
    64 	test(gValue==1);
       
    65 	
       
    66 	// should stay zero after decreasing from 1 multiple times
       
    67 	test(User::SafeDec(gValue)==1);
       
    68 	test(User::SafeDec(gValue)==0);
       
    69 	test(User::SafeDec(gValue)==0);
       
    70 	test(gValue==0);
       
    71 	}
       
    72 
       
    73 void TestLockedIncAndLockedDec()
       
    74 	{
       
    75 	gValue=0;
       
    76 	// increasing when 0, should return 0 as old value
       
    77 	test(User::LockedInc(gValue)==0);
       
    78 	// new value should be 1
       
    79 	test(gValue==1);
       
    80 
       
    81 	gValue=-1;
       
    82 
       
    83 	// gValue should vary only between 1 and 2
       
    84 	for (TInt i=0; i<KMaxOps; i++)
       
    85 		{
       
    86 		test((User::LockedInc(gValue)+1)==User::LockedDec(gValue));
       
    87 		}
       
    88 
       
    89 	// after running these, it should be back in -1
       
    90 	test(gValue==-1);
       
    91 	}
       
    92 
       
    93 TInt MultiThreadSafeIncAndSafeDec_FUNC(TAny*)
       
    94 	{
       
    95 	for (TInt i=0; i<KMaxOps; i++)
       
    96 		{
       
    97 		User::SafeInc(gValue);
       
    98 		User::SafeDec(gValue);
       
    99 		}
       
   100 	return KErrNone;
       
   101 	}
       
   102 
       
   103 TInt MultiThreadLockedIncAndLockedDec_FUNC(TAny*)
       
   104 	{
       
   105 	for (TInt i=0; i<KMaxOps; i++)
       
   106 		{
       
   107 		User::LockedInc(gValue);
       
   108 		User::LockedDec(gValue);
       
   109 		}
       
   110 	return KErrNone;
       
   111 	}
       
   112 
       
   113 void MultiThreadSafeIncAndSafeDec()
       
   114 	{
       
   115 	gValue=1; // start value 1
       
   116 	RThread threads[KNumThreads];
       
   117 	TRequestStatus stats[KNumThreads];
       
   118 	TInt i;
       
   119 
       
   120 	for (i=0;i<KNumThreads;i++)
       
   121 		{
       
   122 		test_KErrNone(threads[i].Create(KNullDesC,MultiThreadSafeIncAndSafeDec_FUNC,KDefaultStackSize,NULL,NULL));
       
   123 		threads[i].Logon(stats[i]);
       
   124 		}
       
   125 	
       
   126 	//lets increase our priority first, so that all the threads start
       
   127 	RThread().SetPriority(EPriorityMore);
       
   128 
       
   129 	test.Printf(_L("Resuming threads...\n"));
       
   130 	for(i=0; i<KNumThreads; i++)
       
   131 		threads[i].Resume();
       
   132 
       
   133 	for(i=0; i<KNumThreads; i++)
       
   134 		{
       
   135 		User::WaitForRequest(stats[i]);
       
   136 		test_KErrNone(stats[i].Int());
       
   137 		CLOSE_AND_WAIT(threads[i]);
       
   138 		}
       
   139 
       
   140 	test.Printf(_L("...Threads finished\n"));
       
   141 	
       
   142 	// back to normal
       
   143 	RThread().SetPriority(EPriorityNormal);
       
   144 
       
   145 	// test that we returned to the startvalue
       
   146 	test(gValue==1);
       
   147 	}
       
   148 
       
   149 void MultiThreadLockedIncAndLockedDec()
       
   150 	{
       
   151 	gValue=-1; // set start value to -1
       
   152 	RThread threads[KNumThreads];
       
   153 	TRequestStatus stats[KNumThreads];
       
   154 	TInt i;
       
   155 
       
   156 	for (i=0;i<KNumThreads;i++)
       
   157 		{
       
   158 		test_KErrNone(threads[i].Create(KNullDesC,MultiThreadLockedIncAndLockedDec_FUNC,KDefaultStackSize,NULL,NULL));
       
   159 		threads[i].Logon(stats[i]);
       
   160 		}
       
   161 	
       
   162 	//lets increase our priority first, so that all the threads start
       
   163 	RThread().SetPriority(EPriorityMore);
       
   164 
       
   165 	test.Printf(_L("Resuming threads...\n"));
       
   166 	for(i=0; i<KNumThreads; i++)
       
   167 		threads[i].Resume();
       
   168 
       
   169 	for(i=0; i<KNumThreads; i++)
       
   170 		{
       
   171 		User::WaitForRequest(stats[i]);
       
   172 		test_KErrNone(stats[i].Int());
       
   173 		CLOSE_AND_WAIT(threads[i]);
       
   174 		}
       
   175 
       
   176 	test.Printf(_L("...Threads finished\n"));
       
   177 	
       
   178 	// back to normal
       
   179 	RThread().SetPriority(EPriorityNormal);
       
   180 
       
   181 	// test that we returned to the startvalue
       
   182 	test(gValue==-1);
       
   183 	}
       
   184 
       
   185 
       
   186 TInt E32Main()
       
   187 	{
       
   188 	test.Title();
       
   189 	
       
   190 	test.Start(_L("Test single thread User::SafeInc and User::SafeDec"));
       
   191 	TestSafeIncAndSafeDec();
       
   192 	
       
   193 	test.Next(_L("Test single thread User::LockedInc and User::LockedDec"));
       
   194 	TestLockedIncAndLockedDec();
       
   195 
       
   196 	test.Next(_L("Test multiple thread User::SafeInc and User::SafeDec"));
       
   197 	MultiThreadSafeIncAndSafeDec();
       
   198 	
       
   199 	test.Next(_L("Test multiple thread User::LockedInc and User::LockedDec"));
       
   200 	MultiThreadLockedIncAndLockedDec();
       
   201 
       
   202 	test.End();
       
   203 
       
   204 	return KErrNone;
       
   205 	}