CMake/Source/cmCTest.cxx

2497 lines
73 KiB
C++

/*=========================================================================
Program: CMake - Cross-Platform Makefile Generator
Module: $RCSfile$
Language: C++
Date: $Date$
Version: $Revision$
Copyright (c) 2002 Kitware, Inc., Insight Consortium. All rights reserved.
See Copyright.txt or http://www.cmake.org/HTML/Copyright.html for details.
This software is distributed WITHOUT ANY WARRANTY; without even
the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
PURPOSE. See the above copyright notices for more information.
=========================================================================*/
#include "cmCTest.h"
#include "cmSystemTools.h"
#include "cmListFileCache.h"
#ifdef HAVE_CURL
# include "cmCTestSubmit.h"
# include "curl/curl.h"
#endif
#include <cmsys/RegularExpression.hxx>
#include <cmsys/Process.h>
#include <cmsys/Base64.h>
#include <stdlib.h> // required for atoi
#include <time.h>
#include <math.h>
#include <float.h>
#define SAFEDIV(x,y) (((y)!=0)?((x)/(y)):(0))
#ifdef HAVE_CURL
static struct tm* GetNightlyTime(std::string str)
{
struct tm* lctime;
time_t tctime = time(0);
//Convert the nightly start time to seconds. Since we are
//providing only a time and a timezone, the current date of
//the local machine is assumed. Consequently, nightlySeconds
//is the time at which the nightly dashboard was opened or
//will be opened on the date of the current client machine.
//As such, this time may be in the past or in the future.
time_t ntime = curl_getdate(str.c_str(), &tctime);
tctime = time(0);
//std::cout << "Seconds: " << tctime << std::endl;
if ( ntime > tctime )
{
// If nightlySeconds is in the past, this is the current
// open dashboard, then return nightlySeconds. If
// nightlySeconds is in the future, this is the next
// dashboard to be opened, so subtract 24 hours to get the
// time of the current open dashboard
ntime -= (24 * 60 * 60 );
//std::cout << "Pick yesterday" << std::endl;
}
//std::cout << "nightlySeconds: " << ntime << std::endl;
lctime = gmtime(&ntime);
return lctime;
}
#endif
static std::string CleanString(std::string str)
{
std::string::size_type spos = str.find_first_not_of(" \n\t\r\f\v");
std::string::size_type epos = str.find_last_not_of(" \n\t\r\f\v");
if ( spos == str.npos )
{
return std::string();
}
if ( epos != str.npos )
{
epos = epos - spos + 1;
}
return str.substr(spos, epos);
}
static std::string CurrentTime()
{
time_t currenttime = time(0);
struct tm* t = localtime(&currenttime);
//return ::CleanString(ctime(&currenttime));
char current_time[1024];
strftime(current_time, 1000, "%a %b %d %H:%M:%S %Z %Y", t);
//std::cout << "Current_Time: " << current_time << std::endl;
return ::CleanString(current_time);
}
static const char* cmCTestErrorMatches[] = {
"^[Bb]us [Ee]rror",
"^[Ss]egmentation [Vv]iolation",
"^[Ss]egmentation [Ff]ault",
"([^ :]+):([0-9]+): ([^ \\t])",
"([^:]+): error[ \\t]*[0-9]+[ \\t]*:",
"^Error ([0-9]+):",
"^Fatal",
"^Error: ",
"^Error ",
"[0-9] ERROR: ",
"^\"[^\"]+\", line [0-9]+: [^Ww]",
"^cc[^C]*CC: ERROR File = ([^,]+), Line = ([0-9]+)",
"^ld([^:])*:([ \\t])*ERROR([^:])*:",
"^ild:([ \\t])*\\(undefined symbol\\)",
"([^ :]+) : (error|fatal error|catastrophic error)",
"([^:]+): (Error:|error|undefined reference|multiply defined)",
"([^:]+)\\(([^\\)]+)\\) : (error|fatal error|catastrophic error)",
"^fatal error C[0-9]+:",
": syntax error ",
"^collect2: ld returned 1 exit status",
"Unsatisfied symbols:",
"Undefined symbols:",
"^Undefined[ \\t]+first referenced",
"^CMake Error:",
":[ \\t]cannot find",
":[ \\t]can't find",
": \\*\\*\\* No rule to make target \\`.*\\'. Stop",
": Invalid loader fixup for symbol",
": internal link edit command failed",
": Unrecognized option \\`.*\\'",
"\", line [0-9]+\\.[0-9]+: [0-9]+-[0-9]+ \\([^W]\\)",
0
};
static const char* cmCTestErrorExceptions[] = {
"instantiated from ",
"candidates are:",
": warning",
"makefile:",
"Makefile:",
":[ \\t]+Where:",
0
};
static const char* cmCTestWarningMatches[] = {
"([^ :]+):([0-9]+): warning:",
"^cc[^C]*CC: WARNING File = ([^,]+), Line = ([0-9]+)",
"^ld([^:])*:([ \\t])*WARNING([^:])*:",
"([^:]+): warning ([0-9]+):",
"^\"[^\"]+\", line [0-9]+: [Ww]arning",
"([^:]+): warning[ \\t]*[0-9]+[ \\t]*:",
"^Warning ([0-9]+):",
"^Warning ",
"WARNING: ",
"([^ :]+) : warning",
"([^:]+): warning",
"\", line [0-9]+\\.[0-9]+: [0-9]+-[0-9]+ \\(W\\)",
0
};
static const char* cmCTestWarningExceptions[] = {
"/usr/openwin/include/X11/Xlib\\.h:[0-9]+: warning: ANSI C\\+\\+ forbids declaration",
"/usr/openwin/include/X11/Xutil\\.h:[0-9]+: warning: ANSI C\\+\\+ forbids declaration",
"/usr/openwin/include/X11/XResource\\.h:[0-9]+: warning: ANSI C\\+\\+ forbids declaration",
"WARNING 84 :",
"WARNING 47 :",
"makefile:",
"Makefile:",
"warning: Clock skew detected. Your build may be incomplete.",
"/usr/openwin/include/GL/[^:]+:",
"bind_at_load",
"XrmQGetResource",
"IceFlush",
"warning LNK4089: all references to [^ \\t]+ discarded by .OPT:REF",
"ld32: WARNING 85: definition of dataKey in",
"cc: warning 422: Unknown option \"\\+b\\.\" ignored",
0
};
std::string cmCTest::MakeXMLSafe(const std::string& str)
{
cmOStringStream ost;
char buffer[10];
for (std::string::size_type pos = 0; pos < str.size(); pos ++ )
{
unsigned char ch = str[pos];
if ( (ch > 126 || ch < 32) && ch != 9 && ch != 10 && ch != 13 )
{
sprintf(buffer, "&gt;%d&lt;", (int)ch);
//sprintf(buffer, "&#x%0x;", (unsigned int)ch);
ost << buffer;
}
else
{
switch ( ch )
{
case '&': ost << "&amp;"; break;
case '<': ost << "&lt;"; break;
case '>': ost << "&gt;"; break;
default: ost << ch;
}
}
}
return ost.str();
}
std::string cmCTest::MakeURLSafe(const std::string& str)
{
cmOStringStream ost;
char buffer[10];
for ( std::string::size_type pos = 0; pos < str.size(); pos ++ )
{
unsigned char ch = str[pos];
if ( ( ch > 126 || ch < 32 ||
ch == '&' ||
ch == '%' ||
ch == '+' ||
ch == '=' ||
ch == '@'
) && ch != 9 )
{
sprintf(buffer, "%02x;", (unsigned int)ch);
ost << buffer;
}
else
{
ost << ch;
}
}
return ost.str();
}
bool TryExecutable(const char *dir, const char *file,
std::string *fullPath, const char *subdir)
{
// try current directory
std::string tryPath;
if (dir && strcmp(dir,""))
{
tryPath = dir;
tryPath += "/";
}
if (subdir && strcmp(subdir,""))
{
tryPath += subdir;
tryPath += "/";
}
tryPath += file;
if(cmSystemTools::FileExists(tryPath.c_str()))
{
*fullPath = cmSystemTools::CollapseFullPath(tryPath.c_str());
return true;
}
tryPath += cmSystemTools::GetExecutableExtension();
if(cmSystemTools::FileExists(tryPath.c_str()))
{
*fullPath = cmSystemTools::CollapseFullPath(tryPath.c_str());
return true;
}
return false;
}
cmCTest::cmCTest()
{
m_UseIncludeRegExp = false;
m_UseExcludeRegExp = false;
m_UseExcludeRegExpFirst = false;
m_Verbose = false;
m_DartMode = false;
m_ShowOnly = false;
m_TestModel = cmCTest::EXPERIMENTAL;
m_TimeOut = 0;
int cc;
for ( cc=0; cc < cmCTest::LAST_TEST; cc ++ )
{
m_Tests[cc] = 0;
}
}
void cmCTest::Initialize()
{
m_ToplevelPath = cmSystemTools::GetCurrentWorkingDirectory();
// parse the dart test file
std::ifstream fin("DartConfiguration.tcl");
if(!fin)
{
return;
}
char buffer[1024];
while ( fin )
{
buffer[0] = 0;
fin.getline(buffer, 1023);
buffer[1023] = 0;
std::string line = ::CleanString(buffer);
if(line.size() == 0)
{
continue;
}
while ( fin && (line[line.size()-1] == '\\') )
{
line = line.substr(0, line.size()-1);
buffer[0] = 0;
fin.getline(buffer, 1023);
buffer[1023] = 0;
line += ::CleanString(buffer);
}
if ( line[0] == '#' )
{
continue;
}
std::string::size_type cpos = line.find_first_of(":");
if ( cpos == line.npos )
{
continue;
}
std::string key = line.substr(0, cpos);
std::string value = ::CleanString(line.substr(cpos+1, line.npos));
m_DartConfiguration[key] = value;
}
fin.close();
if ( m_DartMode )
{
m_TimeOut = atoi(m_DartConfiguration["TimeOut"].c_str());
std::string testingDir = m_ToplevelPath + "/Testing";
if ( cmSystemTools::FileExists(testingDir.c_str()) )
{
if ( !cmSystemTools::FileIsDirectory(testingDir.c_str()) )
{
std::cerr << "File " << testingDir << " is in the place of the testing directory"
<< std::endl;
return;
}
}
else
{
if ( !cmSystemTools::MakeDirectory(testingDir.c_str()) )
{
std::cerr << "Cannot create directory " << testingDir
<< std::endl;
return;
}
}
std::string tagfile = testingDir + "/TAG";
std::ifstream tfin(tagfile.c_str());
std::string tag;
time_t tctime = time(0);
struct tm *lctime = gmtime(&tctime);
if ( tfin )
{
tfin >> tag;
tfin.close();
int year = 0;
int mon = 0;
int day = 0;
int hour = 0;
int min = 0;
sscanf(tag.c_str(), "%04d%02d%02d-%02d%02d",
&year, &mon, &day, &hour, &min);
if ( year != lctime->tm_year + 1900 ||
mon != lctime->tm_mon+1 ||
day != lctime->tm_mday )
{
tag = "";
}
}
if ( tag.size() == 0 || m_Tests[cmCTest::START_TEST] || m_Tests[ALL_TEST])
{
#ifdef HAVE_CURL
//std::cout << "TestModel: " << this->GetTestModelString() << std::endl;
//std::cout << "TestModel: " << m_TestModel << std::endl;
if ( m_TestModel == cmCTest::NIGHTLY )
{
lctime = ::GetNightlyTime(m_DartConfiguration["NightlyStartTime"]);
}
#endif
char datestring[100];
sprintf(datestring, "%04d%02d%02d-%02d%02d",
lctime->tm_year + 1900,
lctime->tm_mon+1,
lctime->tm_mday,
lctime->tm_hour,
lctime->tm_min);
tag = datestring;
std::ofstream ofs(tagfile.c_str());
if ( ofs )
{
ofs << tag << std::endl;
}
ofs.close();
std::cout << "Create new tag: " << tag << std::endl;
}
m_CurrentTag = tag;
}
}
bool cmCTest::SetTest(const char* ttype)
{
if ( cmSystemTools::LowerCase(ttype) == "all" )
{
m_Tests[cmCTest::ALL_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "start" )
{
m_Tests[cmCTest::START_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "update" )
{
m_Tests[cmCTest::UPDATE_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "configure" )
{
m_Tests[cmCTest::CONFIGURE_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "build" )
{
m_Tests[cmCTest::BUILD_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "test" )
{
m_Tests[cmCTest::TEST_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "coverage" )
{
m_Tests[cmCTest::COVERAGE_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "purify" )
{
m_Tests[cmCTest::PURIFY_TEST] = 1;
}
else if ( cmSystemTools::LowerCase(ttype) == "submit" )
{
m_Tests[cmCTest::SUBMIT_TEST] = 1;
}
else
{
std::cerr << "Don't know about test \"" << ttype << "\" yet..." << std::endl;
return false;
}
return true;
}
void cmCTest::Finalize()
{
}
std::string cmCTest::FindTheExecutable(const char *exe)
{
std::string fullPath = "";
std::string dir;
std::string file;
cmSystemTools::SplitProgramPath(exe, dir, file);
if(m_ConfigType != "")
{
if(TryExecutable(dir.c_str(), file.c_str(), &fullPath,
m_ConfigType.c_str()))
{
return fullPath;
}
dir += "/";
dir += m_ConfigType;
dir += "/";
dir += file;
cmSystemTools::Error("config type specified on the command line, but test executable not found.",
dir.c_str());
return "";
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,"."))
{
return fullPath;
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,""))
{
return fullPath;
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,"Release"))
{
return fullPath;
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,"Debug"))
{
return fullPath;
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,"MinSizeRel"))
{
return fullPath;
}
if (TryExecutable(dir.c_str(),file.c_str(),&fullPath,"RelWithDebInfo"))
{
return fullPath;
}
// if everything else failed, check the users path
if (dir != "")
{
std::string path = cmSystemTools::FindProgram(file.c_str());
if (path != "")
{
return path;
}
}
return fullPath;
}
int cmCTest::UpdateDirectory()
{
int count = 0;
std::string::size_type cc, kk;
std::string cvsCommand = m_DartConfiguration["CVSCommand"];
if ( cvsCommand.size() == 0 )
{
std::cerr << "Cannot find CVSCommand key in the DartConfiguration.tcl" << std::endl;
return -1;
}
std::string cvsOptions = m_DartConfiguration["CVSUpdateOptions"];
if ( cvsOptions.size() == 0 )
{
std::cerr << "Cannot find CVSUpdateOptions key in the DartConfiguration.tcl" << std::endl;
return -1;
}
std::string sourceDirectory = m_DartConfiguration["SourceDirectory"];
if ( sourceDirectory.size() == 0 )
{
std::cerr << "Cannot find SourceDirectory key in the DartConfiguration.tcl" << std::endl;
return -1;
}
std::string extra_update_opts;
#ifdef HAVE_CURL
if ( m_TestModel == cmCTest::NIGHTLY )
{
struct tm* t = ::GetNightlyTime(m_DartConfiguration["NightlyStartTime"]);
char current_time[1024];
strftime(current_time, 1000, "%Y-%m-%d %H:%M:%S %Z", t);
std::string today_update_date = current_time;
//std::string today_update_date = current_time +
// m_DartConfiguration["NightlyStartTime"];
extra_update_opts += "-D \"" + today_update_date +"\"";
//std::cout << "Update: " << extra_update_opts << std::endl;
}
#endif
std::string command = cvsCommand + " -z3 update " + cvsOptions +
" " + extra_update_opts;
std::ofstream os;
if ( !this->OpenOutputFile(m_CurrentTag, "Update.xml", os) )
{
std::cout << "Cannot open log file" << std::endl;
}
std::string start_time = ::CurrentTime();
std::string goutput;
int retVal = 0;
bool res = true;
std::ofstream ofs;
if ( !m_ShowOnly )
{
res = cmSystemTools::RunSingleCommand(command.c_str(), &goutput,
&retVal, sourceDirectory.c_str(),
m_Verbose, 0 /*m_TimeOut*/);
if ( this->OpenOutputFile("Temporary", "LastUpdate.log", ofs) )
{
ofs << goutput << std::endl;;
}
}
else
{
std::cout << "Update with command: " << command << std::endl;
}
os << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Update mode=\"Client\">\n"
<< "\t<Site>" <<m_DartConfiguration["Site"] << "</Site>\n"
<< "\t<BuildName>" << m_DartConfiguration["BuildName"]
<< "</BuildName>\n"
<< "\t<BuildStamp>" << m_CurrentTag << "-"
<< this->GetTestModelString() << "</BuildStamp>\n"
<< "\t<StartDateTime>" << start_time << "</StartDateTime>\n"
<< "\t<UpdateCommand>" << command << "</UpdateCommand>\n"
<< "\t<UpdateReturnStatus>";
if ( retVal )
{
os << goutput;
}
os << "</UpdateReturnStatus>" << std::endl;
std::vector<cmStdString> lines;
cmSystemTools::Split(goutput.c_str(), lines);
std::cout << "Updated; gathering version information" << std::endl;
cmsys::RegularExpression date_author("^date: +([^;]+); +author: +([^;]+); +state: +[^;]+;");
cmsys::RegularExpression revision("^revision +([^ ]*) *$");
cmsys::RegularExpression end_of_file("^=============================================================================$");
cmsys::RegularExpression end_of_comment("^----------------------------$");
std::string current_path = "";
bool first_file = true;
cmCTest::AuthorsToUpdatesMap authors_files_map;
int num_updated = 0;
int num_modified = 0;
int num_conflicting = 0;
for ( cc= 0 ; cc < lines.size(); cc ++ )
{
const char* line = lines[cc].c_str();
char mod = line[0];
if ( line[1] == ' ' && mod != '?' )
{
count ++;
const char* file = line + 2;
//std::cout << "Line" << cc << ": " << mod << " - " << file << std::endl;
std::string logcommand = cvsCommand + " -z3 log -N " + file;
//std::cout << "Do log: " << logcommand << std::endl;
std::string output;
res = cmSystemTools::RunSingleCommand(logcommand.c_str(), &output,
&retVal, sourceDirectory.c_str(),
m_Verbose, 0 /*m_TimeOut*/);
if ( ofs )
{
ofs << output << std::endl;
}
if ( res && retVal == 0)
{
//std::cout << output << std::endl;
std::vector<cmStdString> ulines;
cmSystemTools::Split(output.c_str(), ulines);
std::string::size_type sline = 0;
std::string srevision1 = "Unknown";
std::string sdate1 = "Unknown";
std::string sauthor1 = "Unknown";
std::string semail1 = "Unknown";
std::string comment1 = "";
std::string srevision2 = "Unknown";
std::string sdate2 = "Unknown";
std::string sauthor2 = "Unknown";
std::string comment2 = "";
std::string semail2 = "Unknown";
bool have_first = false;
bool have_second = false;
for ( kk = 0; kk < ulines.size(); kk ++ )
{
const char* clp = ulines[kk].c_str();
if ( !have_second && !sline && revision.find(clp) )
{
if ( !have_first )
{
srevision1 = revision.match(1);
}
else
{
srevision2 = revision.match(1);
}
}
else if ( !have_second && !sline && date_author.find(clp) )
{
sline = kk + 1;
if ( !have_first )
{
sdate1 = date_author.match(1);
sauthor1 = date_author.match(2);
}
else
{
sdate2 = date_author.match(1);
sauthor2 = date_author.match(2);
}
}
else if ( sline && end_of_comment.find(clp) || end_of_file.find(clp))
{
if ( !have_first )
{
have_first = true;
}
else if ( !have_second )
{
have_second = true;
}
sline = 0;
}
else if ( sline )
{
if ( !have_first )
{
comment1 += clp;
comment1 += "\n";
}
else
{
comment2 += clp;
comment2 += "\n";
}
}
}
if ( mod == 'M' )
{
comment1 = "Locally modified file\n";
}
std::string path = cmSystemTools::GetFilenamePath(file);
std::string fname = cmSystemTools::GetFilenameName(file);
if ( path != current_path )
{
if ( !first_file )
{
os << "\t</Directory>" << std::endl;
}
else
{
first_file = false;
}
os << "\t<Directory>\n"
<< "\t\t<Name>" << path << "</Name>" << std::endl;
}
if ( mod == 'C' )
{
num_conflicting ++;
os << "\t<Conflicting>" << std::endl;
}
else if ( mod == 'M' )
{
num_modified ++;
os << "\t<Modified>" << std::endl;
}
else
{
num_updated ++;
os << "\t<Updated>" << std::endl;
}
if ( srevision2 == "Unknown" )
{
srevision2 = srevision1;
}
os << "\t\t<File Directory=\"" << path << "\">" << fname
<< "</File>\n"
<< "\t\t<Directory>" << path << "</Directory>\n"
<< "\t\t<FullName>" << file << "</FullName>\n"
<< "\t\t<CheckinDate>" << sdate1 << "</CheckinDate>\n"
<< "\t\t<Author>" << sauthor1 << "</Author>\n"
<< "\t\t<Email>" << semail1 << "</Email>\n"
<< "\t\t<Log>" << this->MakeXMLSafe(comment1) << "</Log>\n"
<< "\t\t<Revision>" << srevision1 << "</Revision>\n"
<< "\t\t<PriorRevision>" << srevision2 << "</PriorRevision>"
<< std::endl;
if ( srevision2 != srevision1 )
{
os
<< "\t\t<Revisions>\n"
<< "\t\t\t<Revision>" << srevision1 << "</Revision>\n"
<< "\t\t\t<PreviousRevision>" << srevision2 << "</PreviousRevision>\n"
<< "\t\t\t<Author>" << sauthor1<< "</Author>\n"
<< "\t\t\t<Date>" << sdate1 << "</Date>\n"
<< "\t\t\t<Comment>" << this->MakeXMLSafe(comment1) << "</Comment>\n"
<< "\t\t\t<Email>" << semail1 << "</Email>\n"
<< "\t\t</Revisions>\n"
<< "\t\t<Revisions>\n"
<< "\t\t\t<Revision>" << srevision2 << "</Revision>\n"
<< "\t\t\t<PreviousRevision>" << srevision2 << "</PreviousRevision>\n"
<< "\t\t\t<Author>" << sauthor2<< "</Author>\n"
<< "\t\t\t<Date>" << sdate2 << "</Date>\n"
<< "\t\t\t<Comment>" << this->MakeXMLSafe(comment2) << "</Comment>\n"
<< "\t\t\t<Email>" << semail2 << "</Email>\n"
<< "\t\t</Revisions>" << std::endl;
}
if ( mod == 'C' )
{
os << "\t</Conflicting>" << std::endl;
}
else if ( mod == 'M' )
{
os << "\t</Modified>" << std::endl;
}
else
{
os << "\t</Updated>" << std::endl;
}
cmCTest::UpdateFiles *u = &authors_files_map[sauthor1];
cmCTest::StringPair p;
p.first = path;
p.second = fname;
u->push_back(p);
current_path = path;
}
}
}
if ( num_updated )
{
std::cout << "Found " << num_updated << " updated files" << std::endl;
}
if ( num_modified )
{
std::cout << "Found " << num_modified << " locally modified files"
<< std::endl;
}
if ( num_conflicting )
{
std::cout << "Found " << num_conflicting << " conflicting files"
<< std::endl;
}
if ( !first_file )
{
os << "\t</Directory>" << std::endl;
}
cmCTest::AuthorsToUpdatesMap::iterator it;
for ( it = authors_files_map.begin();
it != authors_files_map.end();
it ++ )
{
os << "\t<Author>\n"
<< "\t\t<Name>" << it->first << "</Name>" << std::endl;
cmCTest::UpdateFiles *u = &(it->second);
for ( cc = 0; cc < u->size(); cc ++ )
{
os << "\t\t<File Directory=\"" << (*u)[cc].first << "\">"
<< (*u)[cc].second << "</File>" << std::endl;
}
os << "\t</Author>" << std::endl;
}
//std::cout << "End" << std::endl;
std::string end_time = ::CurrentTime();
os << "\t<EndDateTime>" << end_time << "</EndDateTime>\n"
<< "</Update>" << std::endl;
if ( ofs )
{
ofs.close();
}
if (! res || retVal )
{
std::cerr << "Error(s) when updating the project" << std::endl;
std::cerr << "Output: " << goutput << std::endl;
return -1;
}
return count;
}
int cmCTest::ConfigureDirectory()
{
std::cout << "Configure project" << std::endl;
std::string cCommand = m_DartConfiguration["ConfigureCommand"];
if ( cCommand.size() == 0 )
{
std::cerr << "Cannot find ConfigureCommand key in the DartConfiguration.tcl"
<< std::endl;
return 1;
}
std::string buildDirectory = m_DartConfiguration["BuildDirectory"];
if ( buildDirectory.size() == 0 )
{
std::cerr << "Cannot find BuildDirectory key in the DartConfiguration.tcl" << std::endl;
return 1;
}
std::string output;
int retVal = 0;
int res = 0;
if ( !m_ShowOnly )
{
std::ofstream os;
if ( !this->OpenOutputFile(m_CurrentTag, "Configure.xml", os) )
{
std::cout << "Cannot open log file" << std::endl;
}
std::string start_time = ::CurrentTime();
std::ofstream ofs;
this->OpenOutputFile("Temporary", "LastConfigure.log", ofs);
res = this->RunMakeCommand(cCommand.c_str(), &output,
&retVal, buildDirectory.c_str(),
m_Verbose, 0, ofs);
if ( ofs )
{
ofs.close();
}
if ( os )
{
os << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Site BuildName=\"" << m_DartConfiguration["BuildName"]
<< "\" BuildStamp=\"" << m_CurrentTag << "-"
<< this->GetTestModelString() << "\" Name=\""
<< m_DartConfiguration["Site"] << "\">\n"
<< "<Configure>\n"
<< "\t<StartDateTime>" << start_time << "</StartDateTime>" << std::endl;
if ( res == cmsysProcess_State_Exited && retVal )
{
os << retVal;
}
os << "<ConfigureCommand>" << cCommand.c_str() << "</ConfigureCommand>" << std::endl;
//std::cout << "End" << std::endl;
os << "<Log>" << this->MakeXMLSafe(output) << "</Log>" << std::endl;
std::string end_time = ::CurrentTime();
os << "\t<ConfigureStatus>" << retVal << "</ConfigureStatus>\n"
<< "\t<EndDateTime>" << end_time << "</EndDateTime>\n"
<< "</Configure>\n"
<< "</Site>" << std::endl;
}
}
else
{
std::cout << "Configure with command: " << cCommand << std::endl;
}
if (! res || retVal )
{
std::cerr << "Error(s) when updating the project" << std::endl;
return 1;
}
return 0;
}
int cmCTest::BuildDirectory()
{
std::cout << "Build project" << std::endl;
std::string makeCommand = m_DartConfiguration["MakeCommand"];
if ( makeCommand.size() == 0 )
{
std::cerr << "Cannot find MakeCommand key in the DartConfiguration.tcl" << std::endl;
return 1;
}
std::string buildDirectory = m_DartConfiguration["BuildDirectory"];
if ( buildDirectory.size() == 0 )
{
std::cerr << "Cannot find BuildDirectory key in the DartConfiguration.tcl" << std::endl;
return 1;
}
std::ofstream ofs;
if ( !this->OpenOutputFile("Temporary", "LastBuild.log", ofs) )
{
std::cerr << "Cannot create LastBuild.log file" << std::endl;
}
m_StartBuild = ::CurrentTime();
std::string output;
int retVal = 0;
int res = cmsysProcess_State_Exited;
if ( !m_ShowOnly )
{
res = this->RunMakeCommand(makeCommand.c_str(), &output,
&retVal, buildDirectory.c_str(),
m_Verbose, 0, ofs);
}
else
{
std::cout << "Build with command: " << makeCommand << std::endl;
}
m_EndBuild = ::CurrentTime();
if (res != cmsysProcess_State_Exited || retVal )
{
std::cerr << "Error(s) when building project" << std::endl;
}
if ( ofs )
{
ofs.close();
}
// Parsing of output for errors and warnings.
std::vector<cmStdString> lines;
cmSystemTools::Split(output.c_str(), lines);
// Lines are marked:
// 0 - nothing
// 1 - error
// > 1 - warning
std::vector<int> markedLines(lines.size(), 0);
int cc;
// Errors
for ( cc = 0; cmCTestErrorMatches[cc]; cc ++ )
{
cmsys::RegularExpression re(cmCTestErrorMatches[cc]);
std::vector<std::string>::size_type kk;
for ( kk = 0; kk < lines.size(); kk ++ )
{
if ( re.find(lines[kk]) )
{
markedLines[kk] = 1;
}
}
}
// Warnings
for ( cc = 0; cmCTestWarningMatches[cc]; cc ++ )
{
cmsys::RegularExpression re(cmCTestWarningMatches[cc]);
std::vector<std::string>::size_type kk;
for ( kk = 0; kk < lines.size(); kk ++ )
{
if ( re.find(lines[kk]) )
{
markedLines[kk] += 2;
}
}
}
// Errors exceptions
for ( cc = 0; cmCTestErrorExceptions[cc]; cc ++ )
{
cmsys::RegularExpression re(cmCTestErrorExceptions[cc]);
std::vector<int>::size_type kk;
for ( kk =0; kk < markedLines.size(); kk ++ )
{
if ( markedLines[kk] == 1 )
{
if ( re.find(lines[kk]) )
{
markedLines[kk] = 0;
}
}
}
}
// Warning exceptions
for ( cc = 0; cmCTestWarningExceptions[cc]; cc ++ )
{
cmsys::RegularExpression re(cmCTestWarningExceptions[cc]);
std::vector<int>::size_type kk;
for ( kk =0; kk < markedLines.size(); kk ++ )
{
if ( markedLines[kk] > 1 )
{
if ( re.find(lines[kk]) )
{
markedLines[kk] = 0;
}
}
}
}
std::vector<cmCTestBuildErrorWarning> errorsWarnings;
int errors = 0;
int warnings = 0;
std::vector<int>::size_type kk;
cmCTestBuildErrorWarning errorwarning;
for ( kk =0; kk < markedLines.size(); kk ++ )
{
errorwarning.m_LineNumber = -1;
bool found = false;
if ( markedLines[kk] == 1 )
{
//std::cout << "Error: " << lines[kk] << std::endl;
errorwarning.m_Error = true;
found = true;
}
else if ( markedLines[kk] > 1 )
{
//std::cout << "Warning: " << lines[kk] << std::endl;
errorwarning.m_Error = false;
found = true;
}
if ( found )
{
errorwarning.m_LogLine = static_cast<int>(kk+1);
errorwarning.m_Text = lines[kk];
errorwarning.m_PreContext = "";
errorwarning.m_PostContext = "";
std::vector<int>::size_type jj;
std::vector<int>::size_type ll = 0;
if ( kk > 6 )
{
ll = kk - 6;
}
for ( jj = kk;
jj > 0 && jj > ll /* && markedLines[jj] == 0 */;
jj -- );
for (; jj < kk; jj ++ )
{
errorwarning.m_PreContext += lines[jj] + "\n";
}
for ( jj = kk+1;
jj < lines.size() && jj < kk + 7 /* && markedLines[jj] == 0*/;
jj ++ )
{
errorwarning.m_PostContext += lines[jj] + "\n";
}
errorsWarnings.push_back(errorwarning);
if ( errorwarning.m_Error )
{
errors ++;
}
else
{
warnings ++;
}
}
}
std::cout << " " << errors << " Compiler errors" << std::endl;
std::cout << " " << warnings << " Compiler warnings" << std::endl;
if( !this->OpenOutputFile(m_CurrentTag, "Build.xml", ofs) )
{
std::cerr << "Cannot create build XML file" << std::endl;
return 1;
}
this->GenerateDartBuildOutput(ofs, errorsWarnings);
return 0;
}
int cmCTest::CoverageDirectory()
{
std::cout << "Performing coverage" << std::endl;
std::vector<std::string> files;
std::vector<std::string> cfiles;
std::vector<std::string> cdirs;
bool done = false;
std::string::size_type cc;
std::string glob;
std::map<std::string, std::string> allsourcefiles;
std::map<std::string, std::string> allbinaryfiles;
std::string start_time = ::CurrentTime();
// Find all source files.
std::string sourceDirectory = m_DartConfiguration["SourceDirectory"];
if ( sourceDirectory.size() == 0 )
{
std::cerr << "Cannot find SourceDirectory key in the DartConfiguration.tcl" << std::endl;
return 1;
}
cdirs.push_back(sourceDirectory);
while ( !done )
{
if ( cdirs.size() <= 0 )
{
break;
}
glob = cdirs[cdirs.size()-1] + "/*";
//std::cout << "Glob: " << glob << std::endl;
cdirs.pop_back();
if ( cmSystemTools::SimpleGlob(glob, cfiles, 1) )
{
for ( cc = 0; cc < cfiles.size(); cc ++ )
{
allsourcefiles[cmSystemTools::GetFilenameName(cfiles[cc])] = cfiles[cc];
}
}
if ( cmSystemTools::SimpleGlob(glob, cfiles, -1) )
{
for ( cc = 0; cc < cfiles.size(); cc ++ )
{
if ( cfiles[cc] != "." && cfiles[cc] != ".." )
{
cdirs.push_back(cfiles[cc]);
}
}
}
}
// find all binary files
cdirs.push_back(cmSystemTools::GetCurrentWorkingDirectory());
while ( !done )
{
if ( cdirs.size() <= 0 )
{
break;
}
glob = cdirs[cdirs.size()-1] + "/*";
//std::cout << "Glob: " << glob << std::endl;
cdirs.pop_back();
if ( cmSystemTools::SimpleGlob(glob, cfiles, 1) )
{
for ( cc = 0; cc < cfiles.size(); cc ++ )
{
allbinaryfiles[cmSystemTools::GetFilenameName(cfiles[cc])] = cfiles[cc];
}
}
if ( cmSystemTools::SimpleGlob(glob, cfiles, -1) )
{
for ( cc = 0; cc < cfiles.size(); cc ++ )
{
if ( cfiles[cc] != "." && cfiles[cc] != ".." )
{
cdirs.push_back(cfiles[cc]);
}
}
}
}
std::map<std::string, std::string>::iterator sit;
for ( sit = allbinaryfiles.begin(); sit != allbinaryfiles.end(); sit ++ )
{
const std::string& fname = sit->second;
//std::cout << "File: " << fname << std::endl;
if ( strcmp(fname.substr(fname.size()-3, 3).c_str(), ".da") == 0 )
{
files.push_back(fname);
}
}
if ( files.size() == 0 )
{
std::cout << "Cannot find any coverage information files (.da)" << std::endl;
return 1;
}
std::ofstream log;
if (!this->OpenOutputFile("Temporary", "Coverage.log", log))
{
std::cout << "Cannot open log file" << std::endl;
return 1;
}
log.close();
if (!this->OpenOutputFile(m_CurrentTag, "Coverage.xml", log))
{
std::cout << "Cannot open log file" << std::endl;
return 1;
}
std::string opath = m_ToplevelPath + "/Testing/Temporary/Coverage";
cmSystemTools::MakeDirectory(opath.c_str());
for ( cc = 0; cc < files.size(); cc ++ )
{
std::string command = "gcov -l \"" + files[cc] + "\"";
std::string output;
int retVal = 0;
//std::cout << "Run gcov on " << files[cc] << std::flush;
//std::cout << " --- Run [" << command << "]" << std::endl;
bool res = true;
if ( !m_ShowOnly )
{
res = cmSystemTools::RunSingleCommand(command.c_str(), &output,
&retVal, opath.c_str(),
m_Verbose, 0 /*m_TimeOut*/);
}
if ( res && retVal == 0 )
{
//std::cout << " - done" << std::endl;
}
else
{
//std::cout << " - fail" << std::endl;
}
}
files.clear();
glob = opath + "/*";
if ( !cmSystemTools::SimpleGlob(glob, cfiles, 1) )
{
std::cout << "Cannot found any coverage files" << std::endl;
return 1;
}
std::map<std::string, std::vector<std::string> > sourcefiles;
for ( cc = 0; cc < cfiles.size(); cc ++ )
{
std::string& fname = cfiles[cc];
//std::cout << "File: " << fname << std::endl;
if ( strcmp(fname.substr(fname.size()-5, 5).c_str(), ".gcov") == 0 )
{
files.push_back(fname);
std::string::size_type pos = fname.find(".da.");
if ( pos != fname.npos )
{
pos += 4;
std::string::size_type epos = fname.size() - pos - strlen(".gcov");
std::string nf = fname.substr(pos, epos);
//std::cout << "Substring: " << nf << std::endl;
if ( allsourcefiles.find(nf) != allsourcefiles.end() ||
allbinaryfiles.find(nf) != allbinaryfiles.end() )
{
std::vector<std::string> &cvec = sourcefiles[nf];
cvec.push_back(fname);
}
}
}
}
for ( cc = 0; cc < files.size(); cc ++ )
{
//std::cout << "File: " << files[cc] << std::endl;
}
std::map<std::string, std::vector<std::string> >::iterator it;
cmCTest::tm_CoverageMap coverageresults;
log << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Site BuildName=\"" << m_DartConfiguration["BuildName"]
<< "\" BuildStamp=\"" << m_CurrentTag << "-"
<< this->GetTestModelString() << "\" Name=\""
<< m_DartConfiguration["Site"] << "\">\n"
<< "<Coverage>\n"
<< "\t<StartDateTime>" << start_time << "</StartDateTime>" << std::endl;
int total_tested = 0;
int total_untested = 0;
for ( it = sourcefiles.begin(); it != sourcefiles.end(); it ++ )
{
//std::cerr << "Source file: " << it->first << std::endl;
std::vector<std::string> &gfiles = it->second;
for ( cc = 0; cc < gfiles.size(); cc ++ )
{
//std::cout << "\t" << gfiles[cc] << std::endl;
std::ifstream ifile(gfiles[cc].c_str());
if ( !ifile )
{
std::cout << "Cannot open file: " << gfiles[cc].c_str() << std::endl;
}
ifile.seekg (0, std::ios::end);
int length = ifile.tellg();
ifile.seekg (0, std::ios::beg);
char *buffer = new char [ length + 1 ];
ifile.read(buffer, length);
buffer [length] = 0;
//std::cout << "Read: " << buffer << std::endl;
std::vector<cmStdString> lines;
cmSystemTools::Split(buffer, lines);
delete [] buffer;
cmCTest::cmCTestCoverage& cov = coverageresults[it->first];
std::vector<int>& covlines = cov.m_Lines;
if ( cov.m_FullPath == "" )
{
covlines.insert(covlines.begin(), lines.size(), -1);
if ( allsourcefiles.find(it->first) != allsourcefiles.end() )
{
cov.m_FullPath = allsourcefiles[it->first];
}
else if ( allbinaryfiles.find(it->first) != allbinaryfiles.end() )
{
cov.m_FullPath = allbinaryfiles[it->first];
}
cov.m_AbsolutePath = cov.m_FullPath;
std::string src_dir = m_DartConfiguration["SourceDirectory"];
if ( src_dir[src_dir.size()-1] != '/' )
{
src_dir = src_dir + "/";
}
std::string::size_type spos = cov.m_FullPath.find(src_dir);
if ( spos == 0 )
{
cov.m_FullPath = std::string("./") + cov.m_FullPath.substr(src_dir.size());
}
else
{
//std::cerr << "Compare -- " << cov.m_FullPath << std::endl;
//std::cerr << " -- " << src_dir << std::endl;
cov.m_Show = false;
continue;
}
cov.m_Show = true;
}
for ( cc = 0; cc < lines.size(); cc ++ )
{
std::string& line = lines[cc];
std::string sub = line.substr(0, strlen(" ######"));
int count = atoi(sub.c_str());
if ( sub.compare(" ######") == 0 )
{
if ( covlines[cc] == -1 )
{
covlines[cc] = 0;
}
cov.m_UnTested ++;
//std::cout << "Untested - ";
}
else if ( count > 0 )
{
if ( covlines[cc] == -1 )
{
covlines[cc] = 0;
}
cov.m_Tested ++;
covlines[cc] += count;
//std::cout << "Tested[" << count << "] - ";
}
//std::cout << line << std::endl;
}
}
}
//std::cerr << "Finalizing" << std::endl;
cmCTest::tm_CoverageMap::iterator cit;
int ccount = 0;
std::ofstream cfileoutput;
int cfileoutputcount = 0;
char cfileoutputname[100];
std::string local_start_time = ::CurrentTime();
std::string local_end_time;
for ( cit = coverageresults.begin(); cit != coverageresults.end(); cit ++ )
{
cmCTest::cmCTestCoverage &cov = cit->second;
if ( !cov.m_Show )
{
continue;
}
if ( ccount == 100 )
{
local_end_time = ::CurrentTime();
cfileoutput << "\t<EndDateTime>" << local_end_time << "</EndDateTime>\n"
<< "</CoverageLog>\n"
<< "</Site>" << std::endl;
cfileoutput.close();
std::cout << "Close file: " << cfileoutputname << std::endl;
ccount = 0;
}
if ( ccount == 0 )
{
sprintf(cfileoutputname, "CoverageLog-%d.xml", cfileoutputcount++);
std::cout << "Open file: " << cfileoutputname << std::endl;
if (!this->OpenOutputFile(m_CurrentTag, cfileoutputname, cfileoutput))
{
std::cout << "Cannot open log file: " << cfileoutputname << std::endl;
return 1;
}
local_start_time = ::CurrentTime();
cfileoutput << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Site BuildName=\"" << m_DartConfiguration["BuildName"]
<< "\" BuildStamp=\"" << m_CurrentTag << "-"
<< this->GetTestModelString() << "\" Site=\""
<< m_DartConfiguration["Site"] << "\">\n"
<< "<CoverageLog>\n"
<< "\t<StartDateTime>" << local_start_time << "</StartDateTime>" << std::endl;
}
//std::cerr << "Final process of Source file: " << cit->first << std::endl;
std::ifstream ifile(cov.m_AbsolutePath.c_str());
if ( !ifile )
{
std::cerr << "Cannot open file: " << cov.m_FullPath.c_str() << std::endl;
}
ifile.seekg (0, std::ios::end);
int length = ifile.tellg();
ifile.seekg (0, std::ios::beg);
char *buffer = new char [ length + 1 ];
ifile.read(buffer, length);
buffer [length] = 0;
//std::cout << "Read: " << buffer << std::endl;
std::vector<cmStdString> lines;
cmSystemTools::Split(buffer, lines);
delete [] buffer;
cfileoutput << "\t<File Name=\"" << cit->first << "\" FullPath=\""
<< cov.m_FullPath << "\">\n"
<< "\t\t<Report>" << std::endl;
for ( cc = 0; cc < lines.size(); cc ++ )
{
cfileoutput << "\t\t<Line Number=\""
<< static_cast<int>(cc) << "\" Count=\""
<< cov.m_Lines[cc] << "\">"
<< cmCTest::MakeXMLSafe(lines[cc]) << "</Line>" << std::endl;
}
cfileoutput << "\t\t</Report>\n"
<< "\t</File>" << std::endl;
total_tested += cov.m_Tested;
total_untested += cov.m_UnTested;
float cper = 0;
float cmet = 0;
if ( total_tested + total_untested > 0 && (cov.m_Tested + cov.m_UnTested) > 0)
{
cper = (100 * SAFEDIV(static_cast<float>(cov.m_Tested),
static_cast<float>(cov.m_Tested + cov.m_UnTested)));
cmet = ( SAFEDIV(static_cast<float>(cov.m_Tested + 10),
static_cast<float>(cov.m_Tested + cov.m_UnTested + 10)));
}
log << "\t<File Name=\"" << cit->first << "\" FullPath=\"" << cov.m_FullPath
<< "\" Covered=\"" << (cmet>0?"true":"false") << "\">\n"
<< "\t\t<LOCTested>" << cov.m_Tested << "</LOCTested>\n"
<< "\t\t<LOCUnTested>" << cov.m_UnTested << "</LOCUnTested>\n"
<< "\t\t<PercentCoverage>";
log.setf(std::ios::fixed, std::ios::floatfield);
log.precision(2);
log << (cper) << "</PercentCoverage>\n"
<< "\t\t<CoverageMetric>";
log.setf(std::ios::fixed, std::ios::floatfield);
log.precision(2);
log << (cmet) << "</CoverageMetric>\n"
<< "\t</File>" << std::endl;
ccount ++;
}
if ( ccount > 0 )
{
local_end_time = ::CurrentTime();
cfileoutput << "\t<EndDateTime>" << local_end_time << "</EndDateTime>\n"
<< "</CoverageLog>\n"
<< "</Site>" << std::endl;
cfileoutput.close();
}
int total_lines = total_tested + total_untested;
float percent_coverage = 100 * SAFEDIV(static_cast<float>(total_tested),
static_cast<float>(total_lines));
if ( total_lines == 0 )
{
percent_coverage = 0;
}
std::string end_time = ::CurrentTime();
log << "\t<LOCTested>" << total_tested << "</LOCTested>\n"
<< "\t<LOCUntested>" << total_untested << "</LOCUntested>\n"
<< "\t<LOC>" << total_lines << "</LOC>\n"
<< "\t<PercentCoverage>";
log.setf(std::ios::fixed, std::ios::floatfield);
log.precision(2);
log << (percent_coverage)<< "</PercentCoverage>\n"
<< "\t<EndDateTime>" << end_time << "</EndDateTime>\n"
<< "</Coverage>\n"
<< "</Site>" << std::endl;
std::cout << "\tCovered LOC: " << total_tested << std::endl
<< "\tNot covered LOC: " << total_untested << std::endl
<< "\tTotal LOC: " << total_lines << std::endl
<< "\tPercentage Coverage: ";
std::cout.setf(std::ios::fixed, std::ios::floatfield);
std::cout.precision(2);
std::cout << (percent_coverage) << "%" << std::endl;
return 1;
}
bool cmCTest::OpenOutputFile(const std::string& path,
const std::string& name, std::ofstream& stream)
{
std::string testingDir = m_ToplevelPath + "/Testing";
if ( path.size() > 0 )
{
testingDir += "/" + path;
}
if ( cmSystemTools::FileExists(testingDir.c_str()) )
{
if ( !cmSystemTools::FileIsDirectory(testingDir.c_str()) )
{
std::cerr << "File " << testingDir
<< " is in the place of the testing directory"
<< std::endl;
return false;
}
}
else
{
if ( !cmSystemTools::MakeDirectory(testingDir.c_str()) )
{
std::cerr << "Cannot create directory " << testingDir
<< std::endl;
return false;
}
}
std::string filename = testingDir + "/" + name;
stream.open(filename.c_str());
if( !stream )
{
std::cout << "Problem opening file: " << filename << std::endl;
return false;
}
return true;
}
void cmCTest::GenerateDartBuildOutput(std::ostream& os,
std::vector<cmCTestBuildErrorWarning> ew)
{
os << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Site BuildName=\"" << m_DartConfiguration["BuildName"]
<< "\" BuildStamp=\"" << m_CurrentTag << "-"
<< this->GetTestModelString() << "\" Name=\""
<< m_DartConfiguration["Site"] << "\">\n"
<< "<Build>\n"
<< "\t<StartDateTime>" << m_StartBuild << "</StartDateTime>\n"
<< "<BuildCommand>"
<< this->MakeXMLSafe(m_DartConfiguration["MakeCommand"])
<< "</BuildCommand>" << std::endl;
std::vector<cmCTestBuildErrorWarning>::iterator it;
for ( it = ew.begin(); it != ew.end(); it++ )
{
cmCTestBuildErrorWarning *cm = &(*it);
os << "\t<" << (cm->m_Error ? "Error" : "Warning") << ">\n"
<< "\t\t<BuildLogLine>" << cm->m_LogLine << "</BuildLogLine>\n"
<< "\t\t<Text>" << this->MakeXMLSafe(cm->m_Text)
<< "\n</Text>" << std::endl;
if ( cm->m_SourceFile.size() > 0 )
{
os << "\t\t<SourceFile>" << cm->m_SourceFile << "</SourceFile>"
<< std::endl;
}
if ( cm->m_SourceFileTail.size() > 0 )
{
os << "\t\t<SourceFileTail>" << cm->m_SourceFileTail
<< "</SourceFileTail>" << std::endl;
}
if ( cm->m_LineNumber >= 0 )
{
os << "\t\t<SourceLineNumber>" << cm->m_LineNumber
<< "</SourceLineNumber>" << std::endl;
}
os << "\t\t<PreContext>" << this->MakeXMLSafe(cm->m_PreContext)
<< "</PreContext>\n"
<< "\t\t<PostContext>" << this->MakeXMLSafe(cm->m_PostContext)
<< "</PostContext>\n"
<< "\t\t<RepeatCount>0</RepeatCount>\n"
<< "</" << (cm->m_Error ? "Error" : "Warning") << ">\n\n"
<< std::endl;
}
os << "\t<Log Encoding=\"base64\" Compression=\"/bin/gzip\">\n\t</Log>\n"
<< "\t<EndDateTime>" << m_EndBuild << "</EndDateTime>\n"
<< "</Build>\n"
<< "</Site>" << std::endl;
}
void cmCTest::ProcessDirectory(std::vector<std::string> &passed,
std::vector<std::string> &failed)
{
// does the DartTestfile.txt exist ?
if(!cmSystemTools::FileExists("DartTestfile.txt"))
{
return;
}
// parse the file
std::ifstream fin("DartTestfile.txt");
if(!fin)
{
return;
}
int firstTest = 1;
long line = 0;
#define SPACE_REGEX "[ \t\r\n]"
cmsys::RegularExpression ireg(this->m_IncludeRegExp.c_str());
cmsys::RegularExpression ereg(this->m_ExcludeRegExp.c_str());
cmsys::RegularExpression dartStuff("(<DartMeasurement.*/DartMeasurement[a-zA-Z]*>)");
bool parseError;
while ( fin )
{
cmListFileFunction lff;
if(cmListFileCache::ParseFunction(fin, lff, "DartTestfile.txt",
parseError, line))
{
const std::string& name = lff.m_Name;
const std::vector<cmListFileArgument>& args = lff.m_Arguments;
if (name == "SUBDIRS")
{
std::string cwd = cmSystemTools::GetCurrentWorkingDirectory();
for(std::vector<cmListFileArgument>::const_iterator j = args.begin();
j != args.end(); ++j)
{
std::string nwd = cwd + "/";
nwd += j->Value;
if (cmSystemTools::FileIsDirectory(nwd.c_str()))
{
cmSystemTools::ChangeDirectory(nwd.c_str());
this->ProcessDirectory(passed, failed);
}
}
// return to the original directory
cmSystemTools::ChangeDirectory(cwd.c_str());
}
if (name == "ADD_TEST")
{
if (this->m_UseExcludeRegExp &&
this->m_UseExcludeRegExpFirst &&
ereg.find(args[0].Value.c_str()))
{
continue;
}
if (this->m_UseIncludeRegExp && !ireg.find(args[0].Value.c_str()))
{
continue;
}
if (this->m_UseExcludeRegExp &&
!this->m_UseExcludeRegExpFirst &&
ereg.find(args[0].Value.c_str()))
{
continue;
}
cmCTestTestResult cres;
cres.m_Status = cmCTest::NOT_RUN;
if (firstTest)
{
std::string nwd = cmSystemTools::GetCurrentWorkingDirectory();
std::cerr << "Changing directory into " << nwd.c_str() << "\n";
firstTest = 0;
}
cres.m_Name = args[0].Value;
if ( m_ShowOnly )
{
std::cout << args[0].Value << std::endl;
}
else
{
fprintf(stderr,"Testing %-30s ",args[0].Value.c_str());
fflush(stderr);
}
//std::cerr << "Testing " << args[0] << " ... ";
// find the test executable
std::string testCommand = this->FindTheExecutable(args[1].Value.c_str());
testCommand = cmSystemTools::ConvertToOutputPath(testCommand.c_str());
// continue if we did not find the executable
if (testCommand == "")
{
std::cerr << "Unable to find executable: " <<
args[1].Value.c_str() << "\n";
m_TestResults.push_back( cres );
continue;
}
// add the arguments
std::vector<cmListFileArgument>::const_iterator j = args.begin();
++j;
++j;
for(;j != args.end(); ++j)
{
testCommand += " ";
testCommand += cmSystemTools::EscapeSpaces(j->Value.c_str());
}
/**
* Run an executable command and put the stdout in output.
*/
std::string output;
int retVal = 0;
double clock_start, clock_finish;
clock_start = cmSystemTools::GetTime();
if ( m_Verbose )
{
std::cout << std::endl << "Test command: " << testCommand << std::endl;
}
int res = 0;
if ( !m_ShowOnly )
{
res = this->RunTest(testCommand.c_str(), &output, &retVal);
}
clock_finish = cmSystemTools::GetTime();
cres.m_ExecutionTime = (double)(clock_finish - clock_start);
cres.m_FullCommandLine = testCommand;
if ( !m_ShowOnly )
{
if (res == cmsysProcess_State_Exited && retVal == 0)
{
fprintf(stderr," Passed\n");
passed.push_back(args[0].Value);
cres.m_Status = cmCTest::COMPLETED;
}
else
{
cres.m_Status = cmCTest::FAILED;
if ( res == cmsysProcess_State_Expired )
{
fprintf(stderr,"***Timeout\n");
cres.m_Status = cmCTest::TIMEOUT;
}
else if ( res == cmsysProcess_State_Exception )
{
fprintf(stderr,"***Exception: ");
switch ( retVal )
{
case cmsysProcess_Exception_Fault:
fprintf(stderr,"SegFault");
cres.m_Status = cmCTest::SEGFAULT;
break;
case cmsysProcess_Exception_Illegal:
fprintf(stderr,"Illegal");
cres.m_Status = cmCTest::ILLEGAL;
break;
case cmsysProcess_Exception_Interrupt:
fprintf(stderr,"Interrupt");
cres.m_Status = cmCTest::INTERRUPT;
break;
case cmsysProcess_Exception_Numerical:
fprintf(stderr,"Numerical");
cres.m_Status = cmCTest::NUMERICAL;
break;
default:
fprintf(stderr,"Other");
cres.m_Status = cmCTest::OTHER_FAULT;
}
fprintf(stderr,"\n");
}
else if ( res == cmsysProcess_State_Error )
{
fprintf(stderr,"***Bad command\n");
cres.m_Status = cmCTest::BAD_COMMAND;
}
else
{
fprintf(stderr,"***Failed\n");
}
failed.push_back(args[0].Value);
}
if (output != "")
{
if (dartStuff.find(output.c_str()))
{
std::string dartString = dartStuff.match(1);
cmSystemTools::ReplaceString(output, dartString.c_str(),"");
cres.m_RegressionImages = this->GenerateRegressionImages(dartString);
}
}
}
cres.m_Output = output;
cres.m_ReturnValue = retVal;
std::string nwd = cmSystemTools::GetCurrentWorkingDirectory();
if ( nwd.size() > m_ToplevelPath.size() )
{
nwd = "." + nwd.substr(m_ToplevelPath.size(), nwd.npos);
}
cmSystemTools::ReplaceString(nwd, "\\", "/");
cres.m_Path = nwd;
cres.m_CompletionStatus = "Completed";
m_TestResults.push_back( cres );
}
}
}
}
int cmCTest::TestDirectory()
{
std::cout << "Test project" << std::endl;
std::vector<std::string> passed;
std::vector<std::string> failed;
int total;
m_StartTest = ::CurrentTime();
this->ProcessDirectory(passed, failed);
m_EndTest = ::CurrentTime();
total = int(passed.size()) + int(failed.size());
if (total == 0)
{
if ( !m_ShowOnly )
{
std::cerr << "No tests were found!!!\n";
}
}
else
{
if (passed.size() && (m_UseIncludeRegExp || m_UseExcludeRegExp))
{
std::cerr << "\nThe following tests passed:\n";
for(std::vector<std::string>::iterator j = passed.begin();
j != passed.end(); ++j)
{
std::cerr << "\t" << *j << "\n";
}
}
float percent = float(passed.size()) * 100.0f / total;
fprintf(stderr,"\n%.0f%% tests passed, %i tests failed out of %i\n",
percent, int(failed.size()), total);
if (failed.size())
{
std::cerr << "\nThe following tests FAILED:\n";
for(std::vector<std::string>::iterator j = failed.begin();
j != failed.end(); ++j)
{
std::cerr << "\t" << *j << "\n";
}
}
}
if ( m_DartMode )
{
std::ofstream ofs;
if( !this->OpenOutputFile(m_CurrentTag, "Test.xml", ofs) )
{
std::cerr << "Cannot create testing XML file" << std::endl;
return 1;
}
this->GenerateDartTestOutput(ofs);
}
return int(failed.size());
}
int cmCTest::SubmitResults()
{
#ifdef HAVE_CURL
std::vector<std::string> files;
std::string prefix = this->GetSubmitResultsPrefix();
// TODO:
// Check if test is enabled
if ( this->CTestFileExists("Update.xml") )
{
files.push_back("Update.xml");
}
if ( this->CTestFileExists("Configure.xml") )
{
files.push_back("Configure.xml");
}
if ( this->CTestFileExists("Build.xml") )
{
files.push_back("Build.xml");
}
if ( this->CTestFileExists("Test.xml") )
{
files.push_back("Test.xml");
}
if ( this->CTestFileExists("Coverage.xml") )
{
files.push_back("Coverage.xml");
std::vector<std::string> gfiles;
std::string gpath = m_ToplevelPath + "/Testing/" + m_CurrentTag;
std::string::size_type glen = gpath.size() + 1;
gpath = gpath + "/CoverageLog*";
//std::cout << "Globbing for: " << gpath.c_str() << std::endl;
if ( cmSystemTools::SimpleGlob(gpath, gfiles, 1) )
{
size_t cc;
for ( cc = 0; cc < gfiles.size(); cc ++ )
{
gfiles[cc] = gfiles[cc].substr(glen);
//std::cout << "Glob file: " << gfiles[cc].c_str() << std::endl;
files.push_back(gfiles[cc]);
}
}
else
{
std::cout << "Problem globbing" << std::endl;
}
}
if ( this->CTestFileExists("Purify.xml") )
{
files.push_back("Purify.xml");
}
cmCTestSubmit submit;
submit.SetVerbose(m_Verbose);
if ( m_DartConfiguration["DropMethod"] == "" ||
m_DartConfiguration["DropMethod"] == "ftp" )
{
std::cout << " Using FTP submit method" << std::endl;
std::string url = "ftp://";
url += cmCTest::MakeURLSafe(m_DartConfiguration["DropSiteUser"]) + ":" +
cmCTest::MakeURLSafe(m_DartConfiguration["DropSitePassword"]) + "@" +
m_DartConfiguration["DropSite"] +
cmCTest::MakeURLSafe(m_DartConfiguration["DropLocation"]);
if ( !submit.SubmitUsingFTP(m_ToplevelPath+"/Testing/"+m_CurrentTag,
files, prefix, url) )
{
std::cout << " Problems when submitting via FTP" << std::endl;
return 0;
}
if ( !submit.TriggerUsingHTTP(files, prefix, m_DartConfiguration["TriggerSite"]) )
{
std::cout << " Problems when triggering via HTTP" << std::endl;
return 0;
}
std::cout << " Submission successfull" << std::endl;
return 1;
}
else if ( m_DartConfiguration["DropMethod"] == "http" )
{
std::cout << " Using HTTP submit method" << std::endl;
std::string url = "http://";
if ( m_DartConfiguration["DropSiteUser"].size() > 0 )
{
url += m_DartConfiguration["DropSiteUser"];
if ( m_DartConfiguration["DropSitePassword"].size() > 0 )
{
url += ":" + m_DartConfiguration["DropSitePassword"];
}
url += "@";
}
url += m_DartConfiguration["DropSite"] + m_DartConfiguration["DropLocation"];
if ( !submit.SubmitUsingHTTP(m_ToplevelPath+"/Testing/"+m_CurrentTag, files, prefix, url) )
{
std::cout << " Problems when submitting via HTTP" << std::endl;
return 0;
}
if ( !submit.TriggerUsingHTTP(files, prefix, m_DartConfiguration["TriggerSite"]) )
{
std::cout << " Problems when triggering via HTTP" << std::endl;
return 0;
}
std::cout << " Submission successfull" << std::endl;
return 1;
}
else
{
std::cout << "SCP submit not yet implemented" << std::endl;
}
#endif
return 0;
}
bool cmCTest::CTestFileExists(const std::string& filename)
{
std::string testingDir = m_ToplevelPath + "/Testing/" + m_CurrentTag + "/" +
filename;
return cmSystemTools::FileExists(testingDir.c_str());
}
std::string cmCTest::GetSubmitResultsPrefix()
{
std::string name = m_DartConfiguration["Site"] +
"___" + m_DartConfiguration["BuildName"] +
"___" + m_CurrentTag + "-" +
this->GetTestModelString() + "___XML___";
return name;
}
void cmCTest::GenerateDartTestOutput(std::ostream& os)
{
if ( !m_DartMode )
{
return;
}
os << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
<< "<Site BuildName=\"" << m_DartConfiguration["BuildName"]
<< "\" BuildStamp=\"" << m_CurrentTag << "-"
<< this->GetTestModelString() << "\" Name=\""
<< m_DartConfiguration["Site"] << "\">\n"
<< "<Testing>\n"
<< "\t<StartDateTime>" << m_StartTest << "</StartDateTime>\n"
<< "\t<TestList>\n";
tm_TestResultsVector::size_type cc;
for ( cc = 0; cc < m_TestResults.size(); cc ++ )
{
cmCTestTestResult *result = &m_TestResults[cc];
os << "\t\t<Test>" << this->MakeXMLSafe(result->m_Path)
<< "/" << this->MakeXMLSafe(result->m_Name)
<< "</Test>" << std::endl;
}
os << "\t</TestList>\n";
for ( cc = 0; cc < m_TestResults.size(); cc ++ )
{
cmCTestTestResult *result = &m_TestResults[cc];
os << "\t<Test Status=\"";
if ( result->m_Status == cmCTest::COMPLETED )
{
os << "passed";
}
else if ( result->m_Status == cmCTest::NOT_RUN )
{
os << "notrun";
}
else
{
os << "failed";
}
os << "\">\n"
<< "\t\t<Name>" << this->MakeXMLSafe(result->m_Name) << "</Name>\n"
<< "\t\t<Path>" << this->MakeXMLSafe(result->m_Path) << "</Path>\n"
<< "\t\t<FullName>" << this->MakeXMLSafe(result->m_Path)
<< "/" << this->MakeXMLSafe(result->m_Name) << "</FullName>\n"
<< "\t\t<FullCommandLine>"
<< this->MakeXMLSafe(result->m_FullCommandLine)
<< "</FullCommandLine>\n"
<< "\t\t<Results>" << std::endl;
if ( result->m_Status != cmCTest::NOT_RUN )
{
if ( result->m_Status != cmCTest::COMPLETED || result->m_ReturnValue )
{
os << "\t\t\t<NamedMeasurement type=\"text/string\" name=\"Exit Code\"><Value>"
<< this->GetTestStatus(result->m_Status) << "</Value></NamedMeasurement>\n"
<< "\t\t\t<NamedMeasurement type=\"text/string\" name=\"Exit Value\"><Value>"
<< result->m_ReturnValue << "</Value></NamedMeasurement>" << std::endl;
}
os << result->m_RegressionImages;
os << "\t\t\t<NamedMeasurement type=\"numeric/double\" "
<< "name=\"Execution Time\"><Value>"
<< result->m_ExecutionTime << "</Value></NamedMeasurement>\n";
os
<< "\t\t\t<NamedMeasurement type=\"text/string\" "
<< "name=\"Completion Status\"><Value>"
<< result->m_CompletionStatus << "</Value></NamedMeasurement>\n";
}
os
<< "\t\t\t<Measurement>\n"
<< "\t\t\t\t<Value>" << this->MakeXMLSafe(result->m_Output)
<< "</Value>\n"
<< "\t\t\t</Measurement>\n"
<< "\t\t</Results>\n"
<< "\t</Test>" << std::endl;
}
os << "\t<EndDateTime>" << m_EndTest << "</EndDateTime>\n"
<< "</Testing>\n"
<< "</Site>" << std::endl;
}
int cmCTest::ProcessTests()
{
int res = 0;
bool notest = true;
int cc;
int update_count = 0;
for ( cc = 0; cc < LAST_TEST; cc ++ )
{
if ( m_Tests[cc] )
{
notest = false;
break;
}
}
if ( m_Tests[UPDATE_TEST] || m_Tests[ALL_TEST] )
{
update_count = this->UpdateDirectory();
if ( update_count < 0 )
{
res += 1;
}
}
if ( m_TestModel == cmCTest::CONTINUOUS && !update_count )
{
return 0;
}
if ( m_Tests[CONFIGURE_TEST] || m_Tests[ALL_TEST] )
{
res += this->ConfigureDirectory();
}
if ( m_Tests[BUILD_TEST] || m_Tests[ALL_TEST] )
{
res += this->BuildDirectory();
}
if ( m_Tests[TEST_TEST] || m_Tests[ALL_TEST] || notest )
{
res += this->TestDirectory();
}
if ( m_Tests[COVERAGE_TEST] || m_Tests[ALL_TEST] )
{
this->CoverageDirectory();
}
if ( m_Tests[PURIFY_TEST] || m_Tests[ALL_TEST] )
{
std::cerr << "Purify test is not yet implemented" << std::endl;
}
if ( m_Tests[SUBMIT_TEST] || m_Tests[ALL_TEST] )
{
#ifdef HAVE_CURL
this->SubmitResults();
#else
std::cerr << "Submit test is not yet implemented" << std::endl;
#endif
}
return res;
}
std::string cmCTest::GetTestModelString()
{
switch ( m_TestModel )
{
case cmCTest::NIGHTLY:
return "Nightly";
case cmCTest::CONTINUOUS:
return "Continuous";
}
return "Experimental";
}
std::string cmCTest::GenerateRegressionImages(const std::string& xml)
{
cmsys::RegularExpression twoattributes(
"<DartMeasurement"
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*>([^<]*)</DartMeasurement>");
cmsys::RegularExpression threeattributes(
"<DartMeasurement"
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*>([^<]*)</DartMeasurement>");
cmsys::RegularExpression fourattributes(
"<DartMeasurement"
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*>([^<]*)</DartMeasurement>");
cmsys::RegularExpression measurementfile(
"<DartMeasurementFile"
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*(name|type|encoding|compression)=\"([^\"]*)\""
SPACE_REGEX "*>([^<]*)</DartMeasurementFile>");
cmOStringStream ostr;
bool done = false;
std::string cxml = xml;
while ( ! done )
{
if ( twoattributes.find(cxml) )
{
ostr
<< "\t\t\t<NamedMeasurement"
<< " " << twoattributes.match(1) << "=\"" << twoattributes.match(2) << "\""
<< " " << twoattributes.match(3) << "=\"" << twoattributes.match(4) << "\""
<< "><Value>" << twoattributes.match(5)
<< "</Value></NamedMeasurement>"
<< std::endl;
cxml.erase(twoattributes.start(), twoattributes.end() - twoattributes.start());
}
else if ( threeattributes.find(cxml) )
{
ostr
<< "\t\t\t<NamedMeasurement"
<< " " << threeattributes.match(1) << "=\"" << threeattributes.match(2) << "\""
<< " " << threeattributes.match(3) << "=\"" << threeattributes.match(4) << "\""
<< " " << threeattributes.match(5) << "=\"" << threeattributes.match(6) << "\""
<< "><Value>" << threeattributes.match(7)
<< "</Value></NamedMeasurement>"
<< std::endl;
cxml.erase(threeattributes.start(), threeattributes.end() - threeattributes.start());
}
else if ( fourattributes.find(cxml) )
{
ostr
<< "\t\t\t<NamedMeasurement"
<< " " << fourattributes.match(1) << "=\"" << fourattributes.match(2) << "\""
<< " " << fourattributes.match(3) << "=\"" << fourattributes.match(4) << "\""
<< " " << fourattributes.match(5) << "=\"" << fourattributes.match(6) << "\""
<< " " << fourattributes.match(7) << "=\"" << fourattributes.match(8) << "\""
<< "><Value>" << fourattributes.match(9)
<< "</Value></NamedMeasurement>"
<< std::endl;
cxml.erase(fourattributes.start(), fourattributes.end() - fourattributes.start());
}
else if ( measurementfile.find(cxml) )
{
const std::string& filename = measurementfile.match(5);
if ( cmSystemTools::FileExists(filename.c_str()) )
{
long len = cmSystemTools::FileLength(filename.c_str());
std::ifstream ifs(filename.c_str(), std::ios::in
#ifdef _WIN32
| std::ios::binary
#endif
);
unsigned char *file_buffer = new unsigned char [ len + 1 ];
ifs.read(reinterpret_cast<char*>(file_buffer), len);
unsigned char *encoded_buffer = new unsigned char [ static_cast<int>(len * 1.5 + 1) ];
unsigned long rlen = cmsysBase64_Encode(file_buffer, len, encoded_buffer, 1);
unsigned long cc;
ostr
<< "\t\t\t<NamedMeasurement"
<< " " << measurementfile.match(1) << "=\"" << measurementfile.match(2) << "\""
<< " " << measurementfile.match(3) << "=\"" << measurementfile.match(4) << "\""
<< " encoding=\"base64\""
<< ">" << std::endl << "\t\t\t\t<Value>";
for ( cc = 0; cc < rlen; cc ++ )
{
ostr << encoded_buffer[cc];
if ( cc % 60 == 0 && cc )
{
ostr << std::endl;
}
}
ostr
<< "</Value>" << std::endl << "\t\t\t</NamedMeasurement>"
<< std::endl;
delete [] file_buffer;
delete [] encoded_buffer;
}
else
{
int idx = 4;
if ( measurementfile.match(1) == "name" )
{
idx = 2;
}
ostr
<< "\t\t\t<NamedMeasurement"
<< " name=\"" << measurementfile.match(idx) << "\""
<< " text=\"text/string\""
<< "><Value>File " << filename << " not found</Value></NamedMeasurement>"
<< std::endl;
}
cxml.erase(measurementfile.start(), measurementfile.end() - measurementfile.start());
}
else
{
done = true;
}
}
return ostr.str();
}
int cmCTest::RunMakeCommand(const char* command, std::string* output,
int* retVal, const char* dir, bool verbose, int timeout, std::ofstream& ofs)
{
std::vector<cmStdString> args = cmSystemTools::ParseArguments(command);
if(args.size() < 1)
{
return false;
}
std::vector<const char*> argv;
for(std::vector<cmStdString>::const_iterator a = args.begin();
a != args.end(); ++a)
{
argv.push_back(a->c_str());
}
argv.push_back(0);
if ( output )
{
*output = "";
}
cmsysProcess* cp = cmsysProcess_New();
cmsysProcess_SetCommand(cp, &*argv.begin());
cmsysProcess_SetWorkingDirectory(cp, dir);
cmsysProcess_SetOption(cp, cmsysProcess_Option_HideWindow, 1);
cmsysProcess_SetTimeout(cp, timeout);
cmsysProcess_Execute(cp);
std::string::size_type tick = 0;
std::string::size_type tick_len = 1024;
std::string::size_type tick_line_len = 50;
char* data;
int length;
if ( !verbose )
{
std::cout << " Each . represents " << tick_len << " bytes of output" << std::endl;
std::cout << " " << std::flush;
}
while(cmsysProcess_WaitForData(cp, (cmsysProcess_Pipe_STDOUT |
cmsysProcess_Pipe_STDERR),
&data, &length, 0))
{
if ( output )
{
output->append(data, length);
if ( !verbose )
{
while ( output->size() > (tick * tick_len) )
{
tick ++;
std::cout << "." << std::flush;
if ( tick % tick_line_len == 0 && tick > 0 )
{
std::cout << " Size: ";
std::cout << int((output->size() / 1024.0) + 1) << "K" << std::endl;
std::cout << " " << std::flush;
}
}
}
}
if(verbose)
{
std::cout.write(data, length);
std::cout.flush();
}
if ( ofs )
{
ofs.write(data, length);
ofs.flush();
}
}
std::cout << " Size of output: ";
std::cout << int(output->size() / 1024.0) << "K" << std::endl;
cmsysProcess_WaitForExit(cp, 0);
int result = cmsysProcess_GetState(cp);
if(result == cmsysProcess_State_Exited)
{
*retVal = cmsysProcess_GetExitValue(cp);
}
else if(result == cmsysProcess_State_Exception)
{
*retVal = cmsysProcess_GetExitException(cp);
std::cout << "There was an exception: " << *retVal << std::endl;
}
else if(result == cmsysProcess_State_Expired)
{
std::cout << "There was a timeout" << std::endl;
}
else if(result == cmsysProcess_State_Error)
{
*output += "\n*** ERROR executing: ";
*output += cmsysProcess_GetErrorString(cp);
}
cmsysProcess_Delete(cp);
return result;
}
int cmCTest::RunTest( const char* command, std::string* output, int *retVal)
{
std::vector<cmStdString> args = cmSystemTools::ParseArguments(command);
if(args.size() < 1)
{
return false;
}
std::vector<const char*> argv;
for(std::vector<cmStdString>::const_iterator a = args.begin();
a != args.end(); ++a)
{
argv.push_back(a->c_str());
}
argv.push_back(0);
if ( output )
{
*output = "";
}
cmsysProcess* cp = cmsysProcess_New();
cmsysProcess_SetCommand(cp, &*argv.begin());
if(cmSystemTools::GetRunCommandHideConsole())
{
cmsysProcess_SetOption(cp, cmsysProcess_Option_HideWindow, 1);
}
cmsysProcess_SetTimeout(cp, m_TimeOut);
cmsysProcess_Execute(cp);
char* data;
int length;
while(cmsysProcess_WaitForData(cp, (cmsysProcess_Pipe_STDOUT |
cmsysProcess_Pipe_STDERR),
&data, &length, 0))
{
if ( output )
{
output->append(data, length);
}
if ( m_Verbose )
{
std::cout.write(data, length);
std::cout.flush();
}
}
cmsysProcess_WaitForExit(cp, 0);
int result = cmsysProcess_GetState(cp);
if(result == cmsysProcess_State_Exited)
{
*retVal = cmsysProcess_GetExitValue(cp);
}
else if(result == cmsysProcess_State_Exception)
{
*retVal = cmsysProcess_GetExitException(cp);
}
else if(result == cmsysProcess_State_Error)
{
*output += "\n*** ERROR executing: ";
*output += cmsysProcess_GetErrorString(cp);
}
cmsysProcess_Delete(cp);
return result;
}
const char* cmCTest::GetTestStatus(int status)
{
static const char statuses[][100] = {
"Not Run",
"Timeout",
"SEGFAULT",
"ILLEGAL",
"INTERRUPT",
"NUMERICAL",
"OTHER_FAULT",
"Failed",
"BAD_COMMAND",
"Completed"
};
if ( status < cmCTest::NOT_RUN || status > cmCTest::COMPLETED )
{
return "No Status";
}
return statuses[status];
}