charconvfw/charconvplugins/test/rtest/tsrc/main/thz.cpp
changeset 53 11e2bb0d14ba
parent 46 6124ff6478cc
child 59 7d891bb52a7d
equal deleted inserted replaced
46:6124ff6478cc 53:11e2bb0d14ba
     1 /*
       
     2 * Copyright (c) 2000-2009 Nokia Corporation and/or its subsidiary(-ies).
       
     3 * All rights reserved.
       
     4 * This component and the accompanying materials are made available
       
     5 * under the terms of "Eclipse Public License v1.0"
       
     6 * which accompanies this distribution, and is available
       
     7 * at the URL "http://www.eclipse.org/legal/epl-v10.html".
       
     8 *
       
     9 * Initial Contributors:
       
    10 * Nokia Corporation - initial contribution.
       
    11 *
       
    12 * Contributors:
       
    13 *
       
    14 * Description: 
       
    15 *
       
    16 */
       
    17 
       
    18 
       
    19 #include <e32std.h>
       
    20 #include <e32base.h>
       
    21 #include <e32test.h>
       
    22 #include <f32file.h>
       
    23 #include <charconv.h>
       
    24 
       
    25 ///////////////////////////////////////////////////////////////////////////////////////
       
    26 
       
    27 RTest TheTest(_L("THZ"));
       
    28 
       
    29 ///////////////////////////////////////////////////////////////////////////////////////
       
    30 ///////////////////////////////////////////////////////////////////////////////////////
       
    31 //Tests macroses and functions.
       
    32 //If (!aValue) then the test will be panicked, the test data files will be deleted.
       
    33 static void Check(TInt aValue, TInt aLine)
       
    34 	{
       
    35 	if(!aValue)
       
    36 		{
       
    37 		TheTest(EFalse, aLine);
       
    38 		}
       
    39 	}
       
    40 //If (aValue != aExpected) then the test will be panicked, the test data files will be deleted.
       
    41 static void Check(TInt aValue, TInt aExpected, TInt aLine)
       
    42 	{
       
    43 	if(aValue != aExpected)
       
    44 		{
       
    45 		RDebug::Print(_L("*** Expected error: %d, got: %d\r\n"), aExpected, aValue);
       
    46 		TheTest(EFalse, aLine);
       
    47 		}
       
    48 	}
       
    49 //Use these to test conditions.
       
    50 #define TEST(arg) ::Check((arg), __LINE__)
       
    51 #define TEST2(aValue, aExpected) ::Check(aValue, aExpected, __LINE__)
       
    52 
       
    53 ///////////////////////////////////////////////////////////////////////////////////////
       
    54 ///////////////////////////////////////////////////////////////////////////////////////
       
    55 
       
    56 const TInt KBufferLength=100;
       
    57 /**
       
    58 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0503
       
    59 @SYMTestCaseDesc        Tests for truncated conversion from Unicode to HZ character set
       
    60 @SYMTestPriority        Medium
       
    61 @SYMTestActions         Tests for generated Unicode with the original Unicode
       
    62 @SYMTestExpectedResults Test must not fail
       
    63 @SYMREQ                 REQ0000
       
    64 */
       
    65 LOCAL_C void TestTruncatedConversionFromUnicodeToHz(CCnvCharacterSetConverter& aCharacterSetConverter, const TDesC16& aOriginalUnicode)
       
    66 	{
       
    67 	TheTest.Next(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0503 "));
       
    68 	for (TInt i=aOriginalUnicode.Length(); i>=0; --i)
       
    69 		{
       
    70 		TBuf8<KBufferLength> generatedHz;
       
    71 		const TInt returnValue=aCharacterSetConverter.ConvertFromUnicode(generatedHz, aOriginalUnicode.Left(i));
       
    72 		TEST(returnValue>=0);
       
    73 		TBuf8<KBufferLength> generatedsecondPartOfHz;
       
    74 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedsecondPartOfHz, aOriginalUnicode.Mid(i-returnValue))==0);
       
    75 		generatedHz.Append(generatedsecondPartOfHz);
       
    76 		TInt state=CCnvCharacterSetConverter::KStateDefault;
       
    77 		TBuf16<KBufferLength> generatedUnicode;
       
    78 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedUnicode, generatedHz, state)==0);
       
    79 		TEST(generatedUnicode==aOriginalUnicode);
       
    80 		}
       
    81 	}
       
    82 /**
       
    83 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0504
       
    84 @SYMTestCaseDesc        Splitting and converting from Unicode to HZ test
       
    85 @SYMTestPriority        Medium
       
    86 @SYMTestActions         Tests for conversion after splitting from Unicode to Hz and back to Unicode
       
    87 @SYMTestExpectedResults Test must not fail
       
    88 @SYMREQ                 REQ0000
       
    89 */
       
    90 LOCAL_C void TestSplittingConvertingFromUnicodeToHz(CCnvCharacterSetConverter& aCharacterSetConverter, TInt aMaximumLengthLowerLimit, TInt aMaximumLengthUpperLimit, TInt aExpectedNumberOfUnicodeCharactersNotConvertedAtSplit, const TDesC8& aExpectedFirstPartOfHz, const TDesC8& aExpectedSecondPartOfHz, const TDesC16& aOriginalUnicode)
       
    91 	{
       
    92 	TheTest.Next(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0504 "));
       
    93 	TEST(aMaximumLengthLowerLimit<=aMaximumLengthUpperLimit);
       
    94 	TEST(aMaximumLengthUpperLimit<=KBufferLength);
       
    95 	TUint8 hzBuffer[KBufferLength];
       
    96 	for (TInt i=aMaximumLengthLowerLimit; i<=aMaximumLengthUpperLimit; ++i)
       
    97 		{
       
    98 		TPtr8 generatedFirstPartOfHz(hzBuffer, i);
       
    99 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedFirstPartOfHz, aOriginalUnicode)==aExpectedNumberOfUnicodeCharactersNotConvertedAtSplit);
       
   100 		TEST(generatedFirstPartOfHz==aExpectedFirstPartOfHz);
       
   101 		TBuf8<KBufferLength> generatedSecondPartOfHz;
       
   102 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedSecondPartOfHz, aOriginalUnicode.Right(aExpectedNumberOfUnicodeCharactersNotConvertedAtSplit))==0);
       
   103 		TEST(generatedSecondPartOfHz==aExpectedSecondPartOfHz);
       
   104 		TInt state=CCnvCharacterSetConverter::KStateDefault;
       
   105 		TBuf16<KBufferLength> generatedUnicode;
       
   106 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedUnicode, generatedFirstPartOfHz, state)==0);
       
   107 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   108 		TBuf16<KBufferLength> generatedSecondPartOfUnicode;
       
   109 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedSecondPartOfUnicode, generatedSecondPartOfHz, state)==0);
       
   110 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   111 		generatedUnicode.Append(generatedSecondPartOfUnicode);
       
   112 		TEST(generatedUnicode==aOriginalUnicode);
       
   113 		}
       
   114 	}
       
   115 /**
       
   116 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0505
       
   117 @SYMTestCaseDesc        Tests for truncated conversion from HZ to Unicode
       
   118 @SYMTestPriority        Medium
       
   119 @SYMTestActions         Tests for conversion after truncation from HZ to Unicode and back to HZ
       
   120 @SYMTestExpectedResults Test must not fail
       
   121 @SYMREQ                 REQ0000
       
   122 */
       
   123 LOCAL_C void TestTruncatedConversionToUnicodeFromHz(CCnvCharacterSetConverter& aCharacterSetConverter, const TDesC16& aExpectedUnicode, const TDesC8& aOriginalHz)
       
   124 	{
       
   125 	TheTest.Next(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0505 "));
       
   126 	for (TInt i=aOriginalHz.Length(); i>=2; --i) // 2 is the length of HZ's "tilde" sequences
       
   127 		{
       
   128 		TInt state=CCnvCharacterSetConverter::KStateDefault;
       
   129 		TBuf16<KBufferLength> generatedUnicode;
       
   130 		const TInt returnValue=aCharacterSetConverter.ConvertToUnicode(generatedUnicode, aOriginalHz.Left(i), state);
       
   131 		TEST(returnValue>=0);
       
   132 		TBuf16<KBufferLength> generatedsecondPartOfUnicode;
       
   133 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedsecondPartOfUnicode, aOriginalHz.Mid(i-returnValue), state)==0);
       
   134 		generatedUnicode.Append(generatedsecondPartOfUnicode);
       
   135 		TEST(generatedUnicode==aExpectedUnicode);
       
   136 		}
       
   137 	}
       
   138 /**
       
   139 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0506
       
   140 @SYMTestCaseDesc        Splitting and converting to Unicode from HZ test
       
   141 @SYMTestPriority        Medium
       
   142 @SYMTestActions         Tests for conversion after splitting from Hz to Unicode and back to Hz
       
   143 @SYMTestExpectedResults Test must not fail
       
   144 @SYMREQ                 REQ0000
       
   145 */
       
   146 LOCAL_C void TestSplittingConvertingToUnicodeFromHz(CCnvCharacterSetConverter& aCharacterSetConverter, TInt aMaximumLengthLowerLimit, TInt aMaximumLengthUpperLimit, TInt aExpectedNumberOfHzBytesNotConvertedAtSplit, TInt aExpectedStateAtSplit, TInt aExpectedLengthOfFirstPartOfUnicode, const TDesC16& aExpectedUnicode, const TDesC8& aOriginalHz)
       
   147 	{
       
   148 	TheTest.Next(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0506 "));
       
   149 	TEST(aMaximumLengthLowerLimit<=aMaximumLengthUpperLimit);
       
   150 	TEST(aMaximumLengthUpperLimit<=KBufferLength);
       
   151 	TUint16 unicodeBuffer[KBufferLength];
       
   152 	for (TInt i=aMaximumLengthLowerLimit; i<=aMaximumLengthUpperLimit; ++i)
       
   153 		{
       
   154 		TPtr16 generatedFirstPartOfUnicode(unicodeBuffer, i);
       
   155 		TInt state=CCnvCharacterSetConverter::KStateDefault;
       
   156 		const TInt returnValue=aCharacterSetConverter.ConvertToUnicode(generatedFirstPartOfUnicode, aOriginalHz, state);
       
   157 		TEST(generatedFirstPartOfUnicode==aExpectedUnicode.Left(aExpectedLengthOfFirstPartOfUnicode));
       
   158 		TEST((returnValue==aExpectedNumberOfHzBytesNotConvertedAtSplit) && (state==aExpectedStateAtSplit));
       
   159 		{
       
   160 		TBuf16<KBufferLength> generatedSecondPartOfUnicode;
       
   161 		state=aExpectedStateAtSplit;
       
   162 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedSecondPartOfUnicode, aOriginalHz.Right(aExpectedNumberOfHzBytesNotConvertedAtSplit), state)==0);
       
   163 		TEST(generatedSecondPartOfUnicode==aExpectedUnicode.Mid(aExpectedLengthOfFirstPartOfUnicode));
       
   164 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   165 		TBuf8<KBufferLength> generatedHz;
       
   166 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedHz, generatedFirstPartOfUnicode)==0);
       
   167 		TBuf8<KBufferLength> generatedSecondPartOfHz;
       
   168 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedSecondPartOfHz, generatedSecondPartOfUnicode)==0);
       
   169 		generatedHz.Append(generatedSecondPartOfHz);
       
   170 		TBuf16<KBufferLength> regeneratedUnicode;
       
   171 		state=CCnvCharacterSetConverter::KStateDefault;
       
   172 		TEST(aCharacterSetConverter.ConvertToUnicode(regeneratedUnicode, generatedHz, state)==0);
       
   173 		TEST(regeneratedUnicode==aExpectedUnicode);
       
   174 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   175 		TEST(aCharacterSetConverter.ConvertToUnicode(regeneratedUnicode, aOriginalHz, state)==0);
       
   176 		TEST(regeneratedUnicode==aExpectedUnicode);
       
   177 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   178 		}
       
   179 		{
       
   180 		TBuf16<KBufferLength> generatedSecondPartOfUnicode;
       
   181 		state=aExpectedStateAtSplit;
       
   182 		TEST(aCharacterSetConverter.ConvertToUnicode(generatedSecondPartOfUnicode, aOriginalHz.Right(aExpectedNumberOfHzBytesNotConvertedAtSplit), state)==0);
       
   183 		TEST(generatedSecondPartOfUnicode==aExpectedUnicode.Mid(aExpectedLengthOfFirstPartOfUnicode));
       
   184 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   185 		TBuf8<KBufferLength> generatedHz;
       
   186 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedHz, generatedFirstPartOfUnicode)==0);
       
   187 		TBuf8<KBufferLength> generatedSecondPartOfHz;
       
   188 		TEST(aCharacterSetConverter.ConvertFromUnicode(generatedSecondPartOfHz, generatedSecondPartOfUnicode)==0);
       
   189 		generatedHz.Append(generatedSecondPartOfHz);
       
   190 		TBuf16<KBufferLength> regeneratedUnicode;
       
   191 		state=CCnvCharacterSetConverter::KStateDefault;
       
   192 		TEST(aCharacterSetConverter.ConvertToUnicode(regeneratedUnicode, generatedHz, state)==0);
       
   193 		TEST(regeneratedUnicode==aExpectedUnicode);
       
   194 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   195 		TEST(aCharacterSetConverter.ConvertToUnicode(regeneratedUnicode, aOriginalHz, state)==0);
       
   196 		TEST(regeneratedUnicode==aExpectedUnicode);
       
   197 		TEST(state==CCnvCharacterSetConverter::KStateDefault);
       
   198 		}
       
   199 		}
       
   200 	}
       
   201 /**
       
   202 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0507
       
   203 @SYMTestCaseDesc        Conversion of bad HZ format to Unicode test
       
   204 @SYMTestPriority        Medium
       
   205 @SYMTestActions         Tests to convert bad Hz format to Unicode.
       
   206                         Check the status of CCnvCharacterSetConverter::EErrorIllFormedInput error flag
       
   207 @SYMTestExpectedResults Test must not fail
       
   208 @SYMREQ                 REQ0000
       
   209 */
       
   210 LOCAL_C void TestIsIllFormedHz(CCnvCharacterSetConverter& aCharacterSetConverter, const TDesC8& aHz)
       
   211 	{
       
   212 	TheTest.Next(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0507 "));
       
   213 	TBuf16<50> generatedUnicode;
       
   214 	TInt state=CCnvCharacterSetConverter::KStateDefault;
       
   215 	TPtrC8 remainderOfHz(aHz);
       
   216 	TInt lastReturnValue=KMaxTInt;
       
   217 	FOREVER
       
   218 		{
       
   219 		const TInt returnValue=aCharacterSetConverter.ConvertToUnicode(generatedUnicode, remainderOfHz, state);
       
   220 		if (returnValue==CCnvCharacterSetConverter::EErrorIllFormedInput)
       
   221 			{
       
   222 			break;
       
   223 			}
       
   224 		TEST(returnValue>0);
       
   225 		TEST(returnValue<lastReturnValue);
       
   226 		lastReturnValue=returnValue;
       
   227 		remainderOfHz.Set(remainderOfHz.Right(returnValue));
       
   228 		}
       
   229 	}
       
   230 /**
       
   231 @SYMTestCaseID          SYSLIB-CHARCONV-CT-0508
       
   232 @SYMTestCaseDesc        HZ to Unicode and Unicode to HZ conversion tests
       
   233 @SYMTestPriority        Medium
       
   234 @SYMTestActions         Wrapper function to call HZ conversion test functions
       
   235 @SYMTestExpectedResults Test must not fail
       
   236 @SYMREQ                 REQ0000
       
   237 */
       
   238 LOCAL_C void DoE32MainL()
       
   239 	{
       
   240 	TheTest.Start(_L(" @SYMTestCaseID:SYSLIB-CHARCONV-CT-0508 "));
       
   241 	RFs fileServerSession;
       
   242 	CleanupClosePushL(fileServerSession);
       
   243 	User::LeaveIfError(fileServerSession.Connect());
       
   244 	CCnvCharacterSetConverter* characterSetConverter=CCnvCharacterSetConverter::NewLC();
       
   245 	CArrayFix<CCnvCharacterSetConverter::SCharacterSet>* arrayOfCharacterSetsAvailable=CCnvCharacterSetConverter::CreateArrayOfCharacterSetsAvailableLC(fileServerSession);
       
   246 	TheTest.Printf(_L("Available:\n"));
       
   247 	for (TInt i=arrayOfCharacterSetsAvailable->Count()-1; i>=0; --i)
       
   248 		{
       
   249 		const CCnvCharacterSetConverter::SCharacterSet& charactersSet=(*arrayOfCharacterSetsAvailable)[i];
       
   250 		characterSetConverter->PrepareToConvertToOrFromL(charactersSet.Identifier(), *arrayOfCharacterSetsAvailable, fileServerSession);
       
   251 		TPtrC charactersSetName(charactersSet.Name());
       
   252 		if (charactersSet.NameIsFileName())
       
   253 			{
       
   254 			charactersSetName.Set(TParsePtrC(charactersSetName).Name());
       
   255 			}
       
   256 		TheTest.Printf(_L("    %S\n"), &charactersSetName);
       
   257 		}
       
   258 	TheTest.Next(_L("Testing HZ conversions"));
       
   259 	characterSetConverter->PrepareToConvertToOrFromL(KCharacterSetIdentifierHz, *arrayOfCharacterSetsAvailable, fileServerSession);
       
   260 	//
       
   261 	TheTest.Next(_L("Empty descriptor"));
       
   262 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 0, 10, 0, KNullDesC8, KNullDesC8, KNullDesC16);
       
   263 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 0, 10, 0, CCnvCharacterSetConverter::KStateDefault, 0, KNullDesC16, KNullDesC8);
       
   264 	TheTest.Next(_L("Testing converting to HZ"));
       
   265 	TBuf16<50> originalUnicode;
       
   266 	originalUnicode.Format(_L16("%c%cxyz%c%c~%c~~%ce~a%c"), 0x4e2d, 0x56fd, 0x5979, 0x4ed6, 0x4eba, 0x4e09, 0x7259);
       
   267 	TestTruncatedConversionFromUnicodeToHz(*characterSetConverter, originalUnicode);
       
   268 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 0, 5, 16, KNullDesC8, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   269 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 6, 7, 15, _L8("~{VP~}"), _L8("~{9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   270 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 8, 8, 14, _L8("~{VP9z~}"), _L8("xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   271 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 9, 9, 13, _L8("~{VP9z~}x"), _L8("yz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   272 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 10, 10, 12, _L8("~{VP9z~}xy"), _L8("z~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   273 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 11, 16, 11, _L8("~{VP9z~}xyz"), _L8("~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   274 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 17, 18, 10, _L8("~{VP9z~}xyz~{K}~}"), _L8("~{K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   275 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 19, 20, 9, _L8("~{VP9z~}xyz~{K}K{~}"), _L8("~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   276 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 21, 26, 8, _L8("~{VP9z~}xyz~{K}K{~}~~"), _L8("~{HK~}~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   277 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 27, 28, 7, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}"), _L8("~~~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   278 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 29, 30, 6, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~"), _L8("~~~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   279 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 31, 36, 5, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~"), _L8("~{H}~}e~~a~{Q@~}"), originalUnicode);
       
   280 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 37, 37, 4, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}"), _L8("e~~a~{Q@~}"), originalUnicode);
       
   281 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 38, 39, 3, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e"), _L8("~~a~{Q@~}"), originalUnicode);
       
   282 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 40, 40, 2, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~"), _L8("a~{Q@~}"), originalUnicode);
       
   283 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 41, 46, 1, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a"), _L8("~{Q@~}"), originalUnicode);
       
   284 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 47, 50, 0, _L8("~{VP9z~}xyz~{K}K{~}~~~{HK~}~~~~~{H}~}e~~a~{Q@~}"), KNullDesC8, originalUnicode);
       
   285 	TheTest.Next(_L("Testing converting to Unicode"));
       
   286 	const TPtrC8 originalHz(_S8("My name is ~{3W~} ~~~~{~~I ~{'X'Z'S'e~} in ~{11>)~}~~~~}~~~~"));
       
   287 	TBuf16<50> expectedUnicode;
       
   288 	expectedUnicode.Format(_L16("My name is %c ~~{~I %c%c%c%c in %c%c~~}~~"), 0x5319, 0x0436, 0x0438, 0x0432, 0x0443, 0x5317, 0x4eac);
       
   289 	TestTruncatedConversionToUnicodeFromHz(*characterSetConverter, expectedUnicode, originalHz);
       
   290 	TestTruncatedConversionToUnicodeFromHz(*characterSetConverter, _L16("Hello"), _L8("~{~}~{~}~{~}Hello"));
       
   291 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 0, 0, 60, CCnvCharacterSetConverter::KStateDefault, 0, expectedUnicode, originalHz);
       
   292 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 1, 1, 59, CCnvCharacterSetConverter::KStateDefault, 1, expectedUnicode, originalHz);
       
   293 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 2, 2, 58, CCnvCharacterSetConverter::KStateDefault, 2, expectedUnicode, originalHz);
       
   294 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 3, 3, 57, CCnvCharacterSetConverter::KStateDefault, 3, expectedUnicode, originalHz);
       
   295 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 4, 4, 56, CCnvCharacterSetConverter::KStateDefault, 4, expectedUnicode, originalHz);
       
   296 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 5, 5, 55, CCnvCharacterSetConverter::KStateDefault, 5, expectedUnicode, originalHz);
       
   297 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 6, 6, 54, CCnvCharacterSetConverter::KStateDefault, 6, expectedUnicode, originalHz);
       
   298 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 7, 7, 53, CCnvCharacterSetConverter::KStateDefault, 7, expectedUnicode, originalHz);
       
   299 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 8, 8, 52, CCnvCharacterSetConverter::KStateDefault, 8, expectedUnicode, originalHz);
       
   300 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 9, 9, 51, CCnvCharacterSetConverter::KStateDefault, 9, expectedUnicode, originalHz);
       
   301 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 10, 10, 50, CCnvCharacterSetConverter::KStateDefault, 10, expectedUnicode, originalHz);
       
   302 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 11, 11, 47, CCnvCharacterSetConverter::KStateDefault+1, 11, expectedUnicode, originalHz);
       
   303 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 12, 12, 43, CCnvCharacterSetConverter::KStateDefault, 12, expectedUnicode, originalHz);
       
   304 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 13, 13, 42, CCnvCharacterSetConverter::KStateDefault, 13, expectedUnicode, originalHz);
       
   305 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 14, 14, 40, CCnvCharacterSetConverter::KStateDefault, 14, expectedUnicode, originalHz);
       
   306 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 15, 15, 38, CCnvCharacterSetConverter::KStateDefault, 15, expectedUnicode, originalHz);
       
   307 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 16, 16, 37, CCnvCharacterSetConverter::KStateDefault, 16, expectedUnicode, originalHz);
       
   308 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 17, 17, 35, CCnvCharacterSetConverter::KStateDefault, 17, expectedUnicode, originalHz);
       
   309 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 18, 18, 34, CCnvCharacterSetConverter::KStateDefault, 18, expectedUnicode, originalHz);
       
   310 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 19, 19, 31, CCnvCharacterSetConverter::KStateDefault+1, 19, expectedUnicode, originalHz);
       
   311 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 20, 20, 29, CCnvCharacterSetConverter::KStateDefault+1, 20, expectedUnicode, originalHz);
       
   312 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 21, 21, 27, CCnvCharacterSetConverter::KStateDefault+1, 21, expectedUnicode, originalHz);
       
   313 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 22, 22, 25, CCnvCharacterSetConverter::KStateDefault+1, 22, expectedUnicode, originalHz);
       
   314 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 23, 23, 21, CCnvCharacterSetConverter::KStateDefault, 23, expectedUnicode, originalHz);
       
   315 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 24, 24, 20, CCnvCharacterSetConverter::KStateDefault, 24, expectedUnicode, originalHz);
       
   316 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 25, 25, 19, CCnvCharacterSetConverter::KStateDefault, 25, expectedUnicode, originalHz);
       
   317 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 26, 26, 18, CCnvCharacterSetConverter::KStateDefault, 26, expectedUnicode, originalHz);
       
   318 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 27, 27, 15, CCnvCharacterSetConverter::KStateDefault+1, 27, expectedUnicode, originalHz);
       
   319 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 28, 28, 13, CCnvCharacterSetConverter::KStateDefault+1, 28, expectedUnicode, originalHz);
       
   320 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 29, 29, 9, CCnvCharacterSetConverter::KStateDefault, 29, expectedUnicode, originalHz);
       
   321 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 30, 30, 7, CCnvCharacterSetConverter::KStateDefault, 30, expectedUnicode, originalHz);
       
   322 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 31, 31, 5, CCnvCharacterSetConverter::KStateDefault, 31, expectedUnicode, originalHz);
       
   323 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 32, 32, 4, CCnvCharacterSetConverter::KStateDefault, 32, expectedUnicode, originalHz);
       
   324 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 33, 33, 2, CCnvCharacterSetConverter::KStateDefault, 33, expectedUnicode, originalHz);
       
   325 	TestSplittingConvertingToUnicodeFromHz(*characterSetConverter, 34, 40, 0, CCnvCharacterSetConverter::KStateDefault, 34, expectedUnicode, originalHz);
       
   326 	TheTest.Next(_L("Having '~' as the second byte of a Chinese character"));
       
   327 	originalUnicode.Format(_L16("1%c2"), 0x4e8c);
       
   328 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 0, 0, 3, KNullDesC8, _L8("1~{6~~}2"), originalUnicode);
       
   329 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 1, 6, 2, _L8("1"), _L8("~{6~~}2"), originalUnicode);
       
   330 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 7, 7, 1, _L8("1~{6~~}"), _L8("2"), originalUnicode);
       
   331 	TestSplittingConvertingFromUnicodeToHz(*characterSetConverter, 8, 20, 0, _L8("1~{6~~}2"), KNullDesC8, originalUnicode);
       
   332 	TheTest.Next(_L("Testing ill-formed HZ"));
       
   333 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{C~} def"));
       
   334 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{C;C~} def"));
       
   335 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{C;C;C~} def"));
       
   336 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~"));
       
   337 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{~"));
       
   338 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{C"));
       
   339 	// note that...................................._L8("abc ~{C~") is actually well-formed
       
   340 	TestIsIllFormedHz(*characterSetConverter, _L8("abc ~{C;~"));
       
   341 	CleanupStack::PopAndDestroy(3); // arrayOfCharacterSetsAvailable and characterSetConverter and fileServerSession
       
   342 	}
       
   343 
       
   344 GLDEF_C TInt E32Main()
       
   345 	{
       
   346 	__UHEAP_MARK;
       
   347 
       
   348 	TheTest.Title();
       
   349 
       
   350 	CTrapCleanup* trapCleanup=CTrapCleanup::New();
       
   351 	TEST(trapCleanup != NULL);
       
   352 
       
   353 	TRAPD(error, DoE32MainL());
       
   354 	TEST2(error, KErrNone);
       
   355 
       
   356 	delete trapCleanup;
       
   357 
       
   358 	TheTest.End();
       
   359 	TheTest.Close();
       
   360 
       
   361 	__UHEAP_MARKEND;
       
   362 	return KErrNone;
       
   363 	}
       
   364