549 lines
18 KiB
C++
549 lines
18 KiB
C++
/*=========================================================================
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Program: CMake - Cross-Platform Makefile Generator
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Module: $RCSfile$
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Language: C++
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Date: $Date$
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Version: $Revision$
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Copyright (c) 2002 Kitware, Inc., Insight Consortium. All rights reserved.
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See Copyright.txt or http://www.cmake.org/HTML/Copyright.html for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notices for more information.
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=========================================================================*/
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#include "cmCTestMemCheckHandler.h"
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#include "cmCTest.h"
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#include "cmake.h"
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#include "cmGeneratedFileStream.h"
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#include <cmsys/Process.h>
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#include <cmsys/RegularExpression.hxx>
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#include <cmsys/Base64.h>
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#include "cmMakefile.h"
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#include <stdlib.h>
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#include <math.h>
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#include <float.h>
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//----------------------------------------------------------------------
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static const char* cmCTestMemCheckResultStrings[] = {
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"ABR",
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"ABW",
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"ABWL",
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"COR",
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"EXU",
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"FFM",
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"FIM",
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"FMM",
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"FMR",
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"FMW",
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"FUM",
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"IPR",
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"IPW",
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"MAF",
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"MLK",
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"MPK",
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"NPR",
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"ODS",
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"PAR",
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"PLK",
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"UMC",
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"UMR",
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0
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};
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//----------------------------------------------------------------------
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static const char* cmCTestMemCheckResultLongStrings[] = {
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"Threading Problem",
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"ABW",
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"ABWL",
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"COR",
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"EXU",
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"FFM",
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"FIM",
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"Mismatched deallocation",
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"FMR",
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"FMW",
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"FUM",
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"IPR",
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"IPW",
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"MAF",
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"Memory Leak",
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"Potential Memory Leak",
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"NPR",
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"ODS",
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"Invalid syscall param",
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"PLK",
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"Uninitialized Memory Conditional",
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"Uninitialized Memory Read",
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0
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};
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//----------------------------------------------------------------------
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cmCTestMemCheckHandler::cmCTestMemCheckHandler()
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{
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m_MemCheck = true;
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}
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//----------------------------------------------------------------------
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int cmCTestMemCheckHandler::PreProcessHandler()
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{
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if ( !this->InitializeMemoryChecking() )
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{
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return 0;
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}
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if ( !this->ExecuteCommands(m_CustomPreMemCheck) )
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Problem executing pre-memcheck command(s)." << std::endl);
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return 0;
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}
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return 1;
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}
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//----------------------------------------------------------------------
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int cmCTestMemCheckHandler::PostProcessHandler()
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{
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if ( !this->ExecuteCommands(m_CustomPostMemCheck) )
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Problem executing post-memcheck command(s)." << std::endl);
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return 0;
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}
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return 1;
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}
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//----------------------------------------------------------------------
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void cmCTestMemCheckHandler::GenerateTestCommand(std::vector<const char*>& args)
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{
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std::vector<cmStdString>::size_type pp;
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args.push_back(m_MemoryTester.c_str());
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std::string memcheckcommand = "";
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memcheckcommand = m_MemoryTester;
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for ( pp = 0; pp < m_MemoryTesterOptionsParsed.size(); pp ++ )
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{
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args.push_back(m_MemoryTesterOptionsParsed[pp].c_str());
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memcheckcommand += " ";
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memcheckcommand += cmSystemTools::EscapeSpaces(m_MemoryTesterOptionsParsed[pp].c_str());
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}
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cmCTestLog(m_CTest, HANDLER_VERBOSE_OUTPUT, "Memory check command: " << memcheckcommand << std::endl);
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}
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//----------------------------------------------------------------------
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void cmCTestMemCheckHandler::PopulateCustomVectors(cmMakefile *mf)
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{
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this->cmCTestTestHandler::PopulateCustomVectors(mf);
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cmCTest::PopulateCustomVector(mf, "CTEST_CUSTOM_PRE_MEMCHECK",
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m_CustomPreMemCheck);
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cmCTest::PopulateCustomVector(mf, "CTEST_CUSTOM_POST_MEMCHECK",
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m_CustomPostMemCheck);
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cmCTest::PopulateCustomVector(mf,
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"CTEST_CUSTOM_MEMCHECK_IGNORE",
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m_CustomTestsIgnore);
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}
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//----------------------------------------------------------------------
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void cmCTestMemCheckHandler::GenerateDartOutput(std::ostream& os)
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{
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if ( !m_CTest->GetProduceXML() )
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{
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return;
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}
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m_CTest->StartXML(os);
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os << "<DynamicAnalysis Checker=\"";
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switch ( m_MemoryTesterStyle )
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{
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case cmCTestMemCheckHandler::VALGRIND:
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os << "Valgrind";
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break;
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case cmCTestMemCheckHandler::PURIFY:
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os << "Purify";
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break;
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case cmCTestMemCheckHandler::BOUNDS_CHECKER:
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os << "BoundsChecker";
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break;
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default:
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os << "Unknown";
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}
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os << "\">" << std::endl;
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os << "\t<StartDateTime>" << m_StartTest << "</StartDateTime>\n"
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<< "\t<TestList>\n";
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tm_TestResultsVector::size_type cc;
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for ( cc = 0; cc < m_TestResults.size(); cc ++ )
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{
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cmCTestTestResult *result = &m_TestResults[cc];
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std::string testPath = result->m_Path + "/" + result->m_Name;
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os << "\t\t<Test>" << cmCTest::MakeXMLSafe(
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m_CTest->GetShortPathToFile(testPath.c_str()))
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<< "</Test>" << std::endl;
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}
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os << "\t</TestList>\n";
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cmCTestLog(m_CTest, HANDLER_OUTPUT, "-- Processing memory checking output: ");
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unsigned int total = m_TestResults.size();
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unsigned int step = total / 10;
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unsigned int current = 0;
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for ( cc = 0; cc < m_TestResults.size(); cc ++ )
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{
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cmCTestTestResult *result = &m_TestResults[cc];
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std::string memcheckstr;
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int memcheckresults[cmCTestMemCheckHandler::NO_MEMORY_FAULT];
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int kk;
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bool res = this->ProcessMemCheckOutput(result->m_Output, memcheckstr, memcheckresults);
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if ( res && result->m_Status == cmCTestMemCheckHandler::COMPLETED )
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{
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continue;
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}
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os << "\t<Test Status=\"";
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if ( result->m_Status == cmCTestMemCheckHandler::COMPLETED )
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{
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os << "passed";
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}
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else if ( result->m_Status == cmCTestMemCheckHandler::NOT_RUN )
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{
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os << "notrun";
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}
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else
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{
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os << "failed";
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}
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std::string testPath = result->m_Path + "/" + result->m_Name;
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os << "\">\n"
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<< "\t\t<Name>" << cmCTest::MakeXMLSafe(result->m_Name) << "</Name>\n"
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<< "\t\t<Path>" << cmCTest::MakeXMLSafe(
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m_CTest->GetShortPathToFile(result->m_Path.c_str())) << "</Path>\n"
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<< "\t\t<FullName>" << cmCTest::MakeXMLSafe(
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m_CTest->GetShortPathToFile(testPath.c_str())) << "</FullName>\n"
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<< "\t\t<FullCommandLine>"
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<< cmCTest::MakeXMLSafe(result->m_FullCommandLine)
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<< "</FullCommandLine>\n"
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<< "\t\t<Results>" << std::endl;
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for ( kk = 0; cmCTestMemCheckResultLongStrings[kk]; kk ++ )
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{
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if ( memcheckresults[kk] )
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{
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os << "\t\t\t<Defect type=\"" << cmCTestMemCheckResultLongStrings[kk] << "\">"
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<< memcheckresults[kk]
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<< "</Defect>" << std::endl;
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}
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m_MemoryTesterGlobalResults[kk] += memcheckresults[kk];
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}
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os
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<< "\t\t</Results>\n"
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<< "\t<Log>\n" << memcheckstr << std::endl
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<< "\t</Log>\n"
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<< "\t</Test>" << std::endl;
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if ( current < cc )
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{
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cmCTestLog(m_CTest, HANDLER_OUTPUT, "#" << std::flush);
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current += step;
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}
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}
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cmCTestLog(m_CTest, HANDLER_OUTPUT, std::endl);
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cmCTestLog(m_CTest, HANDLER_OUTPUT, "Memory checking results:" << std::endl);
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os << "\t<DefectList>" << std::endl;
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for ( cc = 0; cmCTestMemCheckResultStrings[cc]; cc ++ )
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{
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if ( m_MemoryTesterGlobalResults[cc] )
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{
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#ifdef cerr
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# undef cerr
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#endif
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std::cerr.width(35);
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#define cerr no_cerr
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cmCTestLog(m_CTest, HANDLER_OUTPUT, cmCTestMemCheckResultLongStrings[cc] << " - "
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<< m_MemoryTesterGlobalResults[cc] << std::endl);
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os << "\t\t<Defect Type=\"" << cmCTestMemCheckResultLongStrings[cc] << "\"/>" << std::endl;
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}
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}
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os << "\t</DefectList>" << std::endl;
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os << "\t<EndDateTime>" << m_EndTest << "</EndDateTime>" << std::endl;
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os << "<ElapsedMinutes>"
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<< static_cast<int>(m_ElapsedTestingTime/6)/10.0
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<< "</ElapsedMinutes>\n";
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os << "</DynamicAnalysis>" << std::endl;
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m_CTest->EndXML(os);
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}
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//----------------------------------------------------------------------
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bool cmCTestMemCheckHandler::InitializeMemoryChecking()
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{
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// Setup the command
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if ( cmSystemTools::FileExists(m_CTest->GetCTestConfiguration("MemoryCheckCommand").c_str()) )
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{
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m_MemoryTester
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= cmSystemTools::ConvertToOutputPath(m_CTest->GetCTestConfiguration("MemoryCheckCommand").c_str());
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}
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else if ( cmSystemTools::FileExists(m_CTest->GetCTestConfiguration("PurifyCommand").c_str()) )
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{
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m_MemoryTester
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= cmSystemTools::ConvertToOutputPath(m_CTest->GetCTestConfiguration("PurifyCommand").c_str());
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}
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else if ( cmSystemTools::FileExists(m_CTest->GetCTestConfiguration("ValgrindCommand").c_str()) )
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{
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m_MemoryTester
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= cmSystemTools::ConvertToOutputPath(m_CTest->GetCTestConfiguration("ValgrindCommand").c_str());
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}
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else
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Memory checker (MemoryCheckCommand) not set, or cannot find the specified program."
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<< std::endl);
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return false;
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}
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if ( m_MemoryTester[0] == '\"' && m_MemoryTester[m_MemoryTester.size()-1] == '\"' )
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{
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m_MemoryTester = m_MemoryTester.substr(1, m_MemoryTester.size()-2);
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}
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// Setup the options
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if ( m_CTest->GetCTestConfiguration("MemoryCheckCommandOptions").size() )
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{
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m_MemoryTesterOptions = m_CTest->GetCTestConfiguration("MemoryCheckCommandOptions");
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}
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else if ( m_CTest->GetCTestConfiguration("ValgrindCommandOptions").size() )
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{
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m_MemoryTesterOptions = m_CTest->GetCTestConfiguration("ValgrindCommandOptions");
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}
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m_MemoryTesterOutputFile = m_CTest->GetBinaryDir() + "/Testing/Temporary/MemoryChecker.log";
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m_MemoryTesterOutputFile = cmSystemTools::EscapeSpaces(m_MemoryTesterOutputFile.c_str());
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if ( m_MemoryTester.find("valgrind") != std::string::npos )
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{
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m_MemoryTesterStyle = cmCTestMemCheckHandler::VALGRIND;
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if ( !m_MemoryTesterOptions.size() )
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{
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m_MemoryTesterOptions = "-q --skin=memcheck --leak-check=yes --show-reachable=yes --workaround-gcc296-bugs=yes --num-callers=100";
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}
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if ( m_CTest->GetCTestConfiguration("MemoryCheckSuppressionFile").size() )
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{
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if ( !cmSystemTools::FileExists(m_CTest->GetCTestConfiguration("MemoryCheckSuppressionFile").c_str()) )
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Cannot find memory checker suppression file: "
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<< m_CTest->GetCTestConfiguration("MemoryCheckSuppressionFile").c_str() << std::endl);
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return false;
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}
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m_MemoryTesterOptions += " --suppressions=" + cmSystemTools::EscapeSpaces(m_CTest->GetCTestConfiguration("MemoryCheckSuppressionFile").c_str()) + "";
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}
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}
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else if ( m_MemoryTester.find("purify") != std::string::npos )
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{
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m_MemoryTesterStyle = cmCTestMemCheckHandler::PURIFY;
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#ifdef _WIN32
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m_MemoryTesterOptions += " /SAVETEXTDATA=" + m_MemoryTesterOutputFile;
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#else
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m_MemoryTesterOptions += " -log-file=" + m_MemoryTesterOutputFile;
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#endif
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}
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else if ( m_MemoryTester.find("boundschecker") != std::string::npos )
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{
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m_MemoryTesterStyle = cmCTestMemCheckHandler::BOUNDS_CHECKER;
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Bounds checker not yet implemented" << std::endl);
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return false;
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}
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else
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Do not understand memory checker: " << m_MemoryTester.c_str() << std::endl);
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return false;
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}
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m_MemoryTesterOptionsParsed = cmSystemTools::ParseArguments(m_MemoryTesterOptions.c_str());
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std::vector<cmStdString>::size_type cc;
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for ( cc = 0; cmCTestMemCheckResultStrings[cc]; cc ++ )
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{
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m_MemoryTesterGlobalResults[cc] = 0;
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}
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return true;
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}
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//----------------------------------------------------------------------
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bool cmCTestMemCheckHandler::ProcessMemCheckOutput(const std::string& str,
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std::string& log, int* results)
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{
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std::string::size_type cc;
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for ( cc = 0; cc < cmCTestMemCheckHandler::NO_MEMORY_FAULT; cc ++ )
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{
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results[cc] = 0;
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}
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if ( m_MemoryTesterStyle == cmCTestMemCheckHandler::VALGRIND )
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{
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return this->ProcessMemCheckValgrindOutput(str, log, results);
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}
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else if ( m_MemoryTesterStyle == cmCTestMemCheckHandler::PURIFY )
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{
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return this->ProcessMemCheckPurifyOutput(str, log, results);
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}
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else if ( m_MemoryTesterStyle == cmCTestMemCheckHandler::BOUNDS_CHECKER )
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{
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log.append("\nMemory checking style used was: ");
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log.append("Bounds Checker");
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}
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else
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{
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log.append("\nMemory checking style used was: ");
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log.append("None that I know");
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log = str;
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}
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return true;
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}
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//----------------------------------------------------------------------
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bool cmCTestMemCheckHandler::ProcessMemCheckPurifyOutput(
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const std::string&, std::string& log,
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int* results)
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{
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if ( !cmSystemTools::FileExists(m_MemoryTesterOutputFile.c_str()) )
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{
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log = "Cannot find Purify output file: " + m_MemoryTesterOutputFile;
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cmCTestLog(m_CTest, ERROR_MESSAGE, log.c_str() << std::endl);
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return false;
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}
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std::ifstream ifs(m_MemoryTesterOutputFile.c_str());
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if ( !ifs )
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{
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log = "Cannot read Purify output file: " + m_MemoryTesterOutputFile;
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cmCTestLog(m_CTest, ERROR_MESSAGE, log.c_str() << std::endl);
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return false;
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}
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cmOStringStream ostr;
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log = "";
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cmsys::RegularExpression pfW("^\\[[WEI]\\] ([A-Z][A-Z][A-Z][A-Z]*): ");
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int defects = 0;
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std::string line;
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while ( cmSystemTools::GetLineFromStream(ifs, line) )
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{
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int failure = cmCTestMemCheckHandler::NO_MEMORY_FAULT;
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if ( pfW.find(line) )
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{
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int cc;
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for ( cc = 0; cc < cmCTestMemCheckHandler::NO_MEMORY_FAULT; cc ++ )
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{
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if ( pfW.match(1) == cmCTestMemCheckResultStrings[cc] )
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{
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failure = cc;
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break;
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}
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}
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if ( cc == cmCTestMemCheckHandler::NO_MEMORY_FAULT )
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{
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cmCTestLog(m_CTest, ERROR_MESSAGE, "Unknown Purify memory fault: " << pfW.match(1) << std::endl);
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ostr << "*** Unknown Purify memory fault: " << pfW.match(1) << std::endl;
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}
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}
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if ( failure != NO_MEMORY_FAULT )
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{
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ostr << "<b>" << cmCTestMemCheckResultStrings[failure] << "</b> ";
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results[failure] ++;
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defects ++;
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}
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ostr << cmCTest::MakeXMLSafe(line) << std::endl;
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}
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log = ostr.str();
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if ( defects )
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{
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return false;
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}
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return true;
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}
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//----------------------------------------------------------------------
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bool cmCTestMemCheckHandler::ProcessMemCheckValgrindOutput(
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const std::string& str, std::string& log,
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int* results)
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{
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std::vector<cmStdString> lines;
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cmSystemTools::Split(str.c_str(), lines);
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std::string::size_type cc;
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cmOStringStream ostr;
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log = "";
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int defects = 0;
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cmsys::RegularExpression valgrindLine("^==[0-9][0-9]*==");
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cmsys::RegularExpression vgFIM(
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"== .*Invalid free\\(\\) / delete / delete\\[\\]");
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cmsys::RegularExpression vgFMM(
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"== .*Mismatched free\\(\\) / delete / delete \\[\\]");
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cmsys::RegularExpression vgMLK(
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"== .*[0-9][0-9]* bytes in [0-9][0-9]* blocks are definitely lost"
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" in loss record [0-9][0-9]* of [0-9]");
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cmsys::RegularExpression vgPAR(
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"== .*Syscall param .* contains unaddressable byte\\(s\\)");
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cmsys::RegularExpression vgMPK1(
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"== .*[0-9][0-9]* bytes in [0-9][0-9]* blocks are possibly lost in"
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" loss record [0-9][0-9]* of [0-9]");
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cmsys::RegularExpression vgMPK2(
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"== .*[0-9][0-9]* bytes in [0-9][0-9]* blocks are still reachable"
|
|
" in loss record [0-9][0-9]* of [0-9]");
|
|
cmsys::RegularExpression vgUMC(
|
|
"== .*Conditional jump or move depends on uninitialised value\\(s\\)");
|
|
cmsys::RegularExpression vgUMR1("== .*Use of uninitialised value of size [0-9][0-9]*");
|
|
cmsys::RegularExpression vgUMR2("== .*Invalid read of size [0-9][0-9]*");
|
|
cmsys::RegularExpression vgUMR3("== .*Jump to the invalid address ");
|
|
cmsys::RegularExpression vgUMR4(
|
|
"== .*Syscall param .* contains uninitialised or unaddressable byte\\(s\\)");
|
|
cmsys::RegularExpression vgIPW("== .*Invalid write of size [0-9]");
|
|
cmsys::RegularExpression vgABR("== .*pthread_mutex_unlock: mutex is locked by a different thread");
|
|
|
|
double sttime = cmSystemTools::GetTime();
|
|
cmCTestLog(m_CTest, DEBUG, "Start test: " << lines.size() << std::endl);
|
|
for ( cc = 0; cc < lines.size(); cc ++ )
|
|
{
|
|
if ( valgrindLine.find(lines[cc]) )
|
|
{
|
|
int failure = cmCTestMemCheckHandler::NO_MEMORY_FAULT;
|
|
if ( vgFIM.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::FIM; }
|
|
else if ( vgFMM.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::FMM; }
|
|
else if ( vgMLK.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::MLK; }
|
|
else if ( vgPAR.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::PAR; }
|
|
else if ( vgMPK1.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::MPK; }
|
|
else if ( vgMPK2.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::MPK; }
|
|
else if ( vgUMC.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::UMC; }
|
|
else if ( vgUMR1.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::UMR; }
|
|
else if ( vgUMR2.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::UMR; }
|
|
else if ( vgUMR3.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::UMR; }
|
|
else if ( vgUMR4.find(lines[cc]) ){ failure = cmCTestMemCheckHandler::UMR; }
|
|
else if ( vgIPW.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::IPW; }
|
|
else if ( vgABR.find(lines[cc]) ) { failure = cmCTestMemCheckHandler::ABR; }
|
|
|
|
if ( failure != cmCTestMemCheckHandler::NO_MEMORY_FAULT )
|
|
{
|
|
ostr << "<b>" << cmCTestMemCheckResultStrings[failure] << "</b> ";
|
|
results[failure] ++;
|
|
defects ++;
|
|
}
|
|
ostr << cmCTest::MakeXMLSafe(lines[cc]) << std::endl;
|
|
}
|
|
}
|
|
cmCTestLog(m_CTest, DEBUG, "End test (elapsed: " << (cmSystemTools::GetTime() - sttime) << std::endl);
|
|
log = ostr.str();
|
|
if ( defects )
|
|
{
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|