crypto/weakcrypto/test/tasymmetric/tdsaprimegen.cpp
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     1 /*
       
     2 * Copyright (c) 1998-2009 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 the License "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 "tdsaprimegen.h"
       
    20 #include "t_input.h"
       
    21 #include <asymmetric.h>
       
    22 #include <random.h>
       
    23 #include <padding.h>
       
    24 #include <bigint.h>
       
    25 #include "tbrokenrandom.h"
       
    26 
       
    27 CTestAction* CDSAPrimeGen::NewL(RFs& aFs, CConsoleBase& aConsole, Output& aOut, 
       
    28 	const TTestActionSpec& aTestActionSpec)
       
    29 	{
       
    30 	CTestAction* self = CDSAPrimeGen::NewLC(aFs, aConsole,
       
    31 		aOut, aTestActionSpec);
       
    32 	CleanupStack::Pop();
       
    33 	return self;
       
    34 	}
       
    35 
       
    36 CTestAction* CDSAPrimeGen::NewLC(RFs& aFs, CConsoleBase& aConsole, Output& aOut, 
       
    37 	const TTestActionSpec& aTestActionSpec)
       
    38 	{
       
    39 	CDSAPrimeGen* self = new(ELeave) CDSAPrimeGen(aFs, aConsole, aOut);
       
    40 	CleanupStack::PushL(self);
       
    41 	self->ConstructL(aTestActionSpec);
       
    42 	return self;
       
    43 	}
       
    44 
       
    45 CDSAPrimeGen::~CDSAPrimeGen()
       
    46 	{
       
    47 	delete iBody;
       
    48 	iP.Close();
       
    49 	iQ.Close();
       
    50 	delete const_cast<CDSAPrimeCertificate*>(iPrimeCert);
       
    51 	}
       
    52 
       
    53 CDSAPrimeGen::CDSAPrimeGen(RFs& aFs, CConsoleBase& aConsole, Output& aOut)
       
    54 	: CTestAction(aConsole, aOut), iFs(aFs)
       
    55 	{
       
    56 	}
       
    57 
       
    58 void CDSAPrimeGen::ConstructL(const TTestActionSpec& aTestActionSpec)
       
    59 	{
       
    60 	CTestAction::ConstructL(aTestActionSpec);
       
    61 	iBody = HBufC8::NewL(aTestActionSpec.iActionBody.Length());
       
    62 	iBody->Des().Copy(aTestActionSpec.iActionBody);
       
    63 	
       
    64 
       
    65 	iKeyBits = Input::ParseIntElement(*iBody, _L8("<keybits>"), _L8("</keybits>"));
       
    66 
       
    67 	HBufC8* p = Input::ParseElementHexL(*iBody, _L8("<p>"));
       
    68 	CleanupStack::PushL(p);
       
    69 	iP = RInteger::NewL(*p);
       
    70 	CleanupStack::PopAndDestroy(p);
       
    71 
       
    72 	HBufC8* q = Input::ParseElementHexL(*iBody, _L8("<q>"));
       
    73 	CleanupStack::PushL(q);
       
    74 	iQ = RInteger::NewL(*q);
       
    75 	CleanupStack::PopAndDestroy(q);
       
    76 
       
    77 	TUint counter = Input::ParseIntElement(*iBody, _L8("<c>"), _L8("</c>"));
       
    78 	HBufC8* seed = Input::ParseElementHexL(*iBody, _L8("<seed>"));
       
    79 	CleanupStack::PushL(seed);
       
    80 	iPrimeCert = CDSAPrimeCertificate::NewL(*seed, counter);
       
    81 	CleanupStack::PopAndDestroy(seed);
       
    82 	}
       
    83 
       
    84 void CDSAPrimeGen::DoPerformPrerequisite(TRequestStatus& aStatus)
       
    85 	{
       
    86 	TRequestStatus* status = &aStatus;
       
    87 	User::RequestComplete(status, KErrNone);
       
    88 	iActionState = CTestAction::EAction;
       
    89 	}
       
    90 
       
    91 void CDSAPrimeGen::DoPerformPostrequisite(TRequestStatus& aStatus)
       
    92 	{
       
    93 	TRequestStatus* status = &aStatus;
       
    94 
       
    95 	iFinished = ETrue;
       
    96 	User::RequestComplete(status, KErrNone);
       
    97 	}
       
    98 
       
    99 void CDSAPrimeGen::DoReportAction(void)
       
   100 	{
       
   101 	}
       
   102 
       
   103 void CDSAPrimeGen::DoCheckResult(TInt)
       
   104 	{
       
   105 	if (iResult)
       
   106 		iConsole.Printf(_L("."));
       
   107 	else
       
   108 		iConsole.Printf(_L("X"));
       
   109 	}
       
   110 
       
   111 void CDSAPrimeGen::PerformAction(TRequestStatus& aStatus)
       
   112 	{
       
   113 	__UHEAP_MARK;
       
   114 	TRequestStatus* status = &aStatus;
       
   115 	iResult = EFalse;
       
   116 
       
   117 	CRandomSetSource* rng = new(ELeave)CRandomSetSource(iPrimeCert->Seed());
       
   118 	SetThreadRandomLC(rng);
       
   119 	CDSAKeyPair* dsaPair = CDSAKeyPair::NewLC(iKeyBits);
       
   120 	
       
   121 	//this is more or less just calling the prime generation routine over again
       
   122 	//but it does test if ValidatePrimesL and the NewLC generate the same primes
       
   123 	iResult = dsaPair->PublicKey().ValidatePrimesL(*iPrimeCert);
       
   124 
       
   125 	//we've already checked that the ValidatePrime + NewLC give same results
       
   126 	//this now checks against the vectors in the test scripts
       
   127 	if(iP != dsaPair->PublicKey().P() ||
       
   128 		iQ != dsaPair->PublicKey().Q() || 
       
   129 		iP != dsaPair->PrivateKey().P() ||
       
   130 		iQ != dsaPair->PrivateKey().Q() )
       
   131 		{
       
   132 		iResult = EFalse;
       
   133 		}
       
   134 
       
   135 	CleanupStack::PopAndDestroy(dsaPair); 
       
   136 	CleanupStack::PopAndDestroy(); //SetThreadRandomLC
       
   137 	User::RequestComplete(status, KErrNone);
       
   138 	iActionState = CTestAction::EPostrequisite;
       
   139 	__UHEAP_MARKEND;
       
   140 	}