CMake/Source/cmTarget.cxx

6913 lines
223 KiB
C++

/*============================================================================
CMake - Cross Platform Makefile Generator
Copyright 2000-2009 Kitware, Inc., Insight Software Consortium
Distributed under the OSI-approved BSD License (the "License");
see accompanying file Copyright.txt for details.
This software is distributed WITHOUT ANY WARRANTY; without even the
implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the License for more information.
============================================================================*/
#include "cmTarget.h"
#include "cmake.h"
#include "cmMakefile.h"
#include "cmSourceFile.h"
#include "cmLocalGenerator.h"
#include "cmGlobalGenerator.h"
#include "cmComputeLinkInformation.h"
#include "cmListFileCache.h"
#include "cmGeneratorExpression.h"
#include "cmGeneratorExpressionDAGChecker.h"
#include "cmAlgorithms.h"
#include <cmsys/RegularExpression.hxx>
#include <map>
#include <set>
#include <stdlib.h> // required for atof
#include <assert.h>
#include <errno.h>
#if defined(CMAKE_BUILD_WITH_CMAKE)
#include <cmsys/hash_set.hxx>
#define UNORDERED_SET cmsys::hash_set
#else
#define UNORDERED_SET std::set
#endif
const char* cmTarget::GetTargetTypeName(TargetType targetType)
{
switch( targetType )
{
case cmTarget::STATIC_LIBRARY:
return "STATIC_LIBRARY";
case cmTarget::MODULE_LIBRARY:
return "MODULE_LIBRARY";
case cmTarget::SHARED_LIBRARY:
return "SHARED_LIBRARY";
case cmTarget::OBJECT_LIBRARY:
return "OBJECT_LIBRARY";
case cmTarget::EXECUTABLE:
return "EXECUTABLE";
case cmTarget::UTILITY:
return "UTILITY";
case cmTarget::GLOBAL_TARGET:
return "GLOBAL_TARGET";
case cmTarget::INTERFACE_LIBRARY:
return "INTERFACE_LIBRARY";
case cmTarget::UNKNOWN_LIBRARY:
return "UNKNOWN_LIBRARY";
}
assert(0 && "Unexpected target type");
return 0;
}
//----------------------------------------------------------------------------
struct cmTarget::OutputInfo
{
std::string OutDir;
std::string ImpDir;
std::string PdbDir;
};
//----------------------------------------------------------------------------
struct cmTarget::ImportInfo
{
ImportInfo(): NoSOName(false), Multiplicity(0) {}
bool NoSOName;
int Multiplicity;
std::string Location;
std::string SOName;
std::string ImportLibrary;
std::string Languages;
std::string Libraries;
std::string LibrariesProp;
std::string SharedDeps;
};
//----------------------------------------------------------------------------
struct cmTarget::CompileInfo
{
std::string CompilePdbDir;
};
//----------------------------------------------------------------------------
class cmTargetInternals
{
public:
cmTargetInternals()
: Backtrace(NULL)
{
this->PolicyWarnedCMP0022 = false;
this->UtilityItemsDone = false;
}
cmTargetInternals(cmTargetInternals const&)
: Backtrace(NULL)
{
this->PolicyWarnedCMP0022 = false;
this->UtilityItemsDone = false;
}
~cmTargetInternals();
// The backtrace when the target was created.
cmListFileBacktrace Backtrace;
// Cache link interface computation from each configuration.
struct OptionalLinkInterface: public cmTarget::LinkInterface
{
OptionalLinkInterface():
LibrariesDone(false), AllDone(false),
Exists(false), HadHeadSensitiveCondition(false),
ExplicitLibraries(0) {}
bool LibrariesDone;
bool AllDone;
bool Exists;
bool HadHeadSensitiveCondition;
const char* ExplicitLibraries;
};
void ComputeLinkInterface(cmTarget const* thisTarget,
const std::string& config,
OptionalLinkInterface& iface,
cmTarget const* head) const;
void ComputeLinkInterfaceLibraries(cmTarget const* thisTarget,
const std::string& config,
OptionalLinkInterface& iface,
cmTarget const* head,
bool usage_requirements_only);
struct HeadToLinkInterfaceMap:
public std::map<cmTarget const*, OptionalLinkInterface> {};
typedef std::map<std::string, HeadToLinkInterfaceMap>
LinkInterfaceMapType;
LinkInterfaceMapType LinkInterfaceMap;
LinkInterfaceMapType LinkInterfaceUsageRequirementsOnlyMap;
bool PolicyWarnedCMP0022;
typedef std::map<std::string, cmTarget::OutputInfo> OutputInfoMapType;
OutputInfoMapType OutputInfoMap;
typedef std::map<std::string, cmTarget::ImportInfo> ImportInfoMapType;
ImportInfoMapType ImportInfoMap;
typedef std::map<std::string, cmTarget::CompileInfo> CompileInfoMapType;
CompileInfoMapType CompileInfoMap;
// Cache link implementation computation from each configuration.
struct OptionalLinkImplementation: public cmTarget::LinkImplementation
{
OptionalLinkImplementation():
LibrariesDone(false), LanguagesDone(false),
HadHeadSensitiveCondition(false) {}
bool LibrariesDone;
bool LanguagesDone;
bool HadHeadSensitiveCondition;
};
void ComputeLinkImplementationLibraries(cmTarget const* thisTarget,
const std::string& config,
OptionalLinkImplementation& impl,
cmTarget const* head) const;
void ComputeLinkImplementationLanguages(cmTarget const* thisTarget,
const std::string& config,
OptionalLinkImplementation& impl
) const;
struct HeadToLinkImplementationMap:
public std::map<cmTarget const*, OptionalLinkImplementation> {};
typedef std::map<std::string,
HeadToLinkImplementationMap> LinkImplMapType;
LinkImplMapType LinkImplMap;
typedef std::map<std::string, cmTarget::LinkClosure> LinkClosureMapType;
LinkClosureMapType LinkClosureMap;
struct LinkImplClosure: public std::vector<cmTarget const*>
{
LinkImplClosure(): Done(false) {}
bool Done;
};
std::map<std::string, LinkImplClosure> LinkImplClosureMap;
struct CompatibleInterfaces: public cmTarget::CompatibleInterfaces
{
CompatibleInterfaces(): Done(false) {}
bool Done;
};
std::map<std::string, CompatibleInterfaces> CompatibleInterfacesMap;
typedef std::map<std::string, std::vector<cmSourceFile*> >
SourceFilesMapType;
SourceFilesMapType SourceFilesMap;
std::set<cmLinkItem> UtilityItems;
bool UtilityItemsDone;
class TargetPropertyEntry {
static cmLinkImplItem NoLinkImplItem;
public:
TargetPropertyEntry(cmsys::auto_ptr<cmCompiledGeneratorExpression> cge,
cmLinkImplItem const& item = NoLinkImplItem)
: ge(cge), LinkImplItem(item)
{}
const cmsys::auto_ptr<cmCompiledGeneratorExpression> ge;
cmLinkImplItem const& LinkImplItem;
};
std::vector<TargetPropertyEntry*> IncludeDirectoriesEntries;
std::vector<TargetPropertyEntry*> CompileOptionsEntries;
std::vector<TargetPropertyEntry*> CompileFeaturesEntries;
std::vector<TargetPropertyEntry*> CompileDefinitionsEntries;
std::vector<TargetPropertyEntry*> SourceEntries;
std::vector<cmValueWithOrigin> LinkImplementationPropertyEntries;
void AddInterfaceEntries(
cmTarget const* thisTarget, std::string const& config,
std::string const& prop, std::vector<TargetPropertyEntry*>& entries);
};
cmLinkImplItem cmTargetInternals::TargetPropertyEntry::NoLinkImplItem;
//----------------------------------------------------------------------------
static void deleteAndClear(
std::vector<cmTargetInternals::TargetPropertyEntry*> &entries)
{
cmDeleteAll(entries);
entries.clear();
}
//----------------------------------------------------------------------------
cmTargetInternals::~cmTargetInternals()
{
}
//----------------------------------------------------------------------------
cmTarget::cmTarget()
{
#define INITIALIZE_TARGET_POLICY_MEMBER(POLICY) \
this->PolicyStatus ## POLICY = cmPolicies::WARN;
CM_FOR_EACH_TARGET_POLICY(INITIALIZE_TARGET_POLICY_MEMBER)
#undef INITIALIZE_TARGET_POLICY_MEMBER
this->Makefile = 0;
#if defined(_WIN32) && !defined(__CYGWIN__)
this->LinkLibrariesForVS6Analyzed = false;
#endif
this->HaveInstallRule = false;
this->DLLPlatform = false;
this->IsAndroid = false;
this->IsApple = false;
this->IsImportedTarget = false;
this->BuildInterfaceIncludesAppended = false;
this->DebugIncludesDone = false;
this->DebugCompileOptionsDone = false;
this->DebugCompileFeaturesDone = false;
this->DebugCompileDefinitionsDone = false;
this->DebugSourcesDone = false;
this->LinkImplementationLanguageIsContextDependent = true;
}
//----------------------------------------------------------------------------
void cmTarget::DefineProperties(cmake *cm)
{
cm->DefineProperty
("RULE_LAUNCH_COMPILE", cmProperty::TARGET,
"", "", true);
cm->DefineProperty
("RULE_LAUNCH_LINK", cmProperty::TARGET,
"", "", true);
cm->DefineProperty
("RULE_LAUNCH_CUSTOM", cmProperty::TARGET,
"", "", true);
}
void cmTarget::SetType(TargetType type, const std::string& name)
{
this->Name = name;
// only add dependency information for library targets
this->TargetTypeValue = type;
if(this->TargetTypeValue >= STATIC_LIBRARY
&& this->TargetTypeValue <= MODULE_LIBRARY)
{
this->RecordDependencies = true;
}
else
{
this->RecordDependencies = false;
}
}
//----------------------------------------------------------------------------
void cmTarget::SetMakefile(cmMakefile* mf)
{
// Set our makefile.
this->Makefile = mf;
// set the cmake instance of the properties
this->Properties.SetCMakeInstance(mf->GetCMakeInstance());
// Check whether this is a DLL platform.
this->DLLPlatform = (this->Makefile->IsOn("WIN32") ||
this->Makefile->IsOn("CYGWIN") ||
this->Makefile->IsOn("MINGW"));
// Check whether we are targeting an Android platform.
this->IsAndroid =
strcmp(this->Makefile->GetSafeDefinition("CMAKE_SYSTEM_NAME"),
"Android") == 0;
// Check whether we are targeting an Apple platform.
this->IsApple = this->Makefile->IsOn("APPLE");
// Setup default property values.
if (this->GetType() != INTERFACE_LIBRARY && this->GetType() != UTILITY)
{
this->SetPropertyDefault("ANDROID_API", 0);
this->SetPropertyDefault("ANDROID_API_MIN", 0);
this->SetPropertyDefault("INSTALL_NAME_DIR", 0);
this->SetPropertyDefault("INSTALL_RPATH", "");
this->SetPropertyDefault("INSTALL_RPATH_USE_LINK_PATH", "OFF");
this->SetPropertyDefault("SKIP_BUILD_RPATH", "OFF");
this->SetPropertyDefault("BUILD_WITH_INSTALL_RPATH", "OFF");
this->SetPropertyDefault("ARCHIVE_OUTPUT_DIRECTORY", 0);
this->SetPropertyDefault("LIBRARY_OUTPUT_DIRECTORY", 0);
this->SetPropertyDefault("RUNTIME_OUTPUT_DIRECTORY", 0);
this->SetPropertyDefault("PDB_OUTPUT_DIRECTORY", 0);
this->SetPropertyDefault("COMPILE_PDB_OUTPUT_DIRECTORY", 0);
this->SetPropertyDefault("Fortran_FORMAT", 0);
this->SetPropertyDefault("Fortran_MODULE_DIRECTORY", 0);
this->SetPropertyDefault("GNUtoMS", 0);
this->SetPropertyDefault("OSX_ARCHITECTURES", 0);
this->SetPropertyDefault("AUTOMOC", 0);
this->SetPropertyDefault("AUTOUIC", 0);
this->SetPropertyDefault("AUTORCC", 0);
this->SetPropertyDefault("AUTOMOC_MOC_OPTIONS", 0);
this->SetPropertyDefault("AUTOUIC_OPTIONS", 0);
this->SetPropertyDefault("AUTORCC_OPTIONS", 0);
this->SetPropertyDefault("LINK_DEPENDS_NO_SHARED", 0);
this->SetPropertyDefault("LINK_INTERFACE_LIBRARIES", 0);
this->SetPropertyDefault("WIN32_EXECUTABLE", 0);
this->SetPropertyDefault("MACOSX_BUNDLE", 0);
this->SetPropertyDefault("MACOSX_RPATH", 0);
this->SetPropertyDefault("NO_SYSTEM_FROM_IMPORTED", 0);
this->SetPropertyDefault("C_STANDARD", 0);
this->SetPropertyDefault("C_STANDARD_REQUIRED", 0);
this->SetPropertyDefault("C_EXTENSIONS", 0);
this->SetPropertyDefault("CXX_STANDARD", 0);
this->SetPropertyDefault("CXX_STANDARD_REQUIRED", 0);
this->SetPropertyDefault("CXX_EXTENSIONS", 0);
}
// Collect the set of configuration types.
std::vector<std::string> configNames;
mf->GetConfigurations(configNames);
// Setup per-configuration property default values.
if (this->GetType() != UTILITY)
{
const char* configProps[] = {
"ARCHIVE_OUTPUT_DIRECTORY_",
"LIBRARY_OUTPUT_DIRECTORY_",
"RUNTIME_OUTPUT_DIRECTORY_",
"PDB_OUTPUT_DIRECTORY_",
"COMPILE_PDB_OUTPUT_DIRECTORY_",
"MAP_IMPORTED_CONFIG_",
0};
for(std::vector<std::string>::iterator ci = configNames.begin();
ci != configNames.end(); ++ci)
{
std::string configUpper = cmSystemTools::UpperCase(*ci);
for(const char** p = configProps; *p; ++p)
{
if (this->TargetTypeValue == INTERFACE_LIBRARY
&& strcmp(*p, "MAP_IMPORTED_CONFIG_") != 0)
{
continue;
}
std::string property = *p;
property += configUpper;
this->SetPropertyDefault(property, 0);
}
// Initialize per-configuration name postfix property from the
// variable only for non-executable targets. This preserves
// compatibility with previous CMake versions in which executables
// did not support this variable. Projects may still specify the
// property directly.
if(this->TargetTypeValue != cmTarget::EXECUTABLE
&& this->TargetTypeValue != cmTarget::INTERFACE_LIBRARY)
{
std::string property = cmSystemTools::UpperCase(*ci);
property += "_POSTFIX";
this->SetPropertyDefault(property, 0);
}
}
}
// Save the backtrace of target construction.
this->Internal->Backtrace = this->Makefile->GetBacktrace();
if (!this->IsImported())
{
// Initialize the INCLUDE_DIRECTORIES property based on the current value
// of the same directory property:
const std::vector<cmValueWithOrigin> parentIncludes =
this->Makefile->GetIncludeDirectoriesEntries();
for (std::vector<cmValueWithOrigin>::const_iterator it
= parentIncludes.begin(); it != parentIncludes.end(); ++it)
{
this->InsertInclude(*it);
}
const std::set<std::string> parentSystemIncludes =
this->Makefile->GetSystemIncludeDirectories();
this->SystemIncludeDirectories.insert(parentSystemIncludes.begin(),
parentSystemIncludes.end());
const std::vector<cmValueWithOrigin> parentOptions =
this->Makefile->GetCompileOptionsEntries();
for (std::vector<cmValueWithOrigin>::const_iterator it
= parentOptions.begin(); it != parentOptions.end(); ++it)
{
this->InsertCompileOption(*it);
}
}
if (this->GetType() != INTERFACE_LIBRARY && this->GetType() != UTILITY)
{
this->SetPropertyDefault("C_VISIBILITY_PRESET", 0);
this->SetPropertyDefault("CXX_VISIBILITY_PRESET", 0);
this->SetPropertyDefault("VISIBILITY_INLINES_HIDDEN", 0);
}
if(this->TargetTypeValue == cmTarget::EXECUTABLE)
{
this->SetPropertyDefault("ANDROID_GUI", 0);
}
if(this->TargetTypeValue == cmTarget::SHARED_LIBRARY
|| this->TargetTypeValue == cmTarget::MODULE_LIBRARY)
{
this->SetProperty("POSITION_INDEPENDENT_CODE", "True");
}
if (this->GetType() != INTERFACE_LIBRARY && this->GetType() != UTILITY)
{
this->SetPropertyDefault("POSITION_INDEPENDENT_CODE", 0);
}
// Record current policies for later use.
#define CAPTURE_TARGET_POLICY(POLICY) \
this->PolicyStatus ## POLICY = \
this->Makefile->GetPolicyStatus(cmPolicies::POLICY);
CM_FOR_EACH_TARGET_POLICY(CAPTURE_TARGET_POLICY)
#undef CAPTURE_TARGET_POLICY
if (this->TargetTypeValue == INTERFACE_LIBRARY)
{
// This policy is checked in a few conditions. The properties relevant
// to the policy are always ignored for INTERFACE_LIBRARY targets,
// so ensure that the conditions don't lead to nonsense.
this->PolicyStatusCMP0022 = cmPolicies::NEW;
}
if (this->GetType() != INTERFACE_LIBRARY && this->GetType() != UTILITY)
{
this->SetPropertyDefault("JOB_POOL_COMPILE", 0);
this->SetPropertyDefault("JOB_POOL_LINK", 0);
}
}
//----------------------------------------------------------------------------
void cmTarget::AddUtility(const std::string& u, cmMakefile *makefile)
{
if(this->Utilities.insert(u).second && makefile)
{
UtilityBacktraces.insert(std::make_pair(u, makefile->GetBacktrace()));
}
}
//----------------------------------------------------------------------------
cmListFileBacktrace const* cmTarget::GetUtilityBacktrace(
const std::string& u) const
{
std::map<std::string, cmListFileBacktrace>::const_iterator i =
this->UtilityBacktraces.find(u);
if(i == this->UtilityBacktraces.end()) return 0;
return &i->second;
}
//----------------------------------------------------------------------------
std::set<cmLinkItem> const& cmTarget::GetUtilityItems() const
{
if(!this->Internal->UtilityItemsDone)
{
this->Internal->UtilityItemsDone = true;
for(std::set<std::string>::const_iterator i = this->Utilities.begin();
i != this->Utilities.end(); ++i)
{
this->Internal->UtilityItems.insert(
cmLinkItem(*i, this->Makefile->FindTargetToUse(*i)));
}
}
return this->Internal->UtilityItems;
}
//----------------------------------------------------------------------------
void cmTarget::FinishConfigure()
{
// Erase any cached link information that might have been comptued
// on-demand during the configuration. This ensures that build
// system generation uses up-to-date information even if other cache
// invalidation code in this source file is buggy.
this->ClearLinkMaps();
#if defined(_WIN32) && !defined(__CYGWIN__)
// Do old-style link dependency analysis only for CM_USE_OLD_VS6.
if(this->Makefile->GetLocalGenerator()->GetGlobalGenerator()->IsForVS6())
{
this->AnalyzeLibDependenciesForVS6(*this->Makefile);
}
#endif
}
//----------------------------------------------------------------------------
void cmTarget::ClearLinkMaps()
{
this->LinkImplementationLanguageIsContextDependent = true;
this->Internal->LinkImplMap.clear();
this->Internal->LinkInterfaceMap.clear();
this->Internal->LinkInterfaceUsageRequirementsOnlyMap.clear();
this->Internal->LinkClosureMap.clear();
this->Internal->SourceFilesMap.clear();
cmDeleteAll(this->LinkInformation);
this->LinkInformation.clear();
}
//----------------------------------------------------------------------------
cmListFileBacktrace const& cmTarget::GetBacktrace() const
{
return this->Internal->Backtrace;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetSupportDirectory() const
{
std::string dir = this->Makefile->GetCurrentOutputDirectory();
dir += cmake::GetCMakeFilesDirectory();
dir += "/";
dir += this->Name;
#if defined(__VMS)
dir += "_dir";
#else
dir += ".dir";
#endif
return dir;
}
//----------------------------------------------------------------------------
bool cmTarget::IsExecutableWithExports() const
{
return (this->GetType() == cmTarget::EXECUTABLE &&
this->GetPropertyAsBool("ENABLE_EXPORTS"));
}
//----------------------------------------------------------------------------
bool cmTarget::IsLinkable() const
{
return (this->GetType() == cmTarget::STATIC_LIBRARY ||
this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY ||
this->GetType() == cmTarget::UNKNOWN_LIBRARY ||
this->GetType() == cmTarget::INTERFACE_LIBRARY ||
this->IsExecutableWithExports());
}
//----------------------------------------------------------------------------
bool cmTarget::HasImportLibrary() const
{
return (this->DLLPlatform &&
(this->GetType() == cmTarget::SHARED_LIBRARY ||
this->IsExecutableWithExports()));
}
//----------------------------------------------------------------------------
bool cmTarget::IsFrameworkOnApple() const
{
return (this->GetType() == cmTarget::SHARED_LIBRARY &&
this->Makefile->IsOn("APPLE") &&
this->GetPropertyAsBool("FRAMEWORK"));
}
//----------------------------------------------------------------------------
bool cmTarget::IsAppBundleOnApple() const
{
return (this->GetType() == cmTarget::EXECUTABLE &&
this->Makefile->IsOn("APPLE") &&
this->GetPropertyAsBool("MACOSX_BUNDLE"));
}
//----------------------------------------------------------------------------
bool cmTarget::IsCFBundleOnApple() const
{
return (this->GetType() == cmTarget::MODULE_LIBRARY &&
this->Makefile->IsOn("APPLE") &&
this->GetPropertyAsBool("BUNDLE"));
}
//----------------------------------------------------------------------------
bool cmTarget::IsBundleOnApple() const
{
return this->IsFrameworkOnApple() || this->IsAppBundleOnApple() ||
this->IsCFBundleOnApple();
}
//----------------------------------------------------------------------------
static bool processSources(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &srcs,
UNORDERED_SET<std::string> &uniqueSrcs,
cmGeneratorExpressionDAGChecker *dagChecker,
std::string const& config, bool debugSources)
{
cmMakefile *mf = tgt->GetMakefile();
bool contextDependent = false;
for (std::vector<cmTargetInternals::TargetPropertyEntry*>::const_iterator
it = entries.begin(), end = entries.end(); it != end; ++it)
{
cmLinkImplItem const& item = (*it)->LinkImplItem;
std::string const& targetName = item;
std::vector<std::string> entrySources;
cmSystemTools::ExpandListArgument((*it)->ge->Evaluate(mf,
config,
false,
tgt,
tgt,
dagChecker),
entrySources);
if ((*it)->ge->GetHadContextSensitiveCondition())
{
contextDependent = true;
}
for(std::vector<std::string>::iterator i = entrySources.begin();
i != entrySources.end(); ++i)
{
std::string& src = *i;
cmSourceFile* sf = mf->GetOrCreateSource(src);
std::string e;
std::string fullPath = sf->GetFullPath(&e);
if(fullPath.empty())
{
if(!e.empty())
{
cmake* cm = mf->GetCMakeInstance();
cm->IssueMessage(cmake::FATAL_ERROR, e,
tgt->GetBacktrace());
}
return contextDependent;
}
if (!targetName.empty() && !cmSystemTools::FileIsFullPath(src.c_str()))
{
std::ostringstream err;
if (!targetName.empty())
{
err << "Target \"" << targetName << "\" contains relative "
"path in its INTERFACE_SOURCES:\n"
" \"" << src << "\"";
}
else
{
err << "Found relative path while evaluating sources of "
"\"" << tgt->GetName() << "\":\n \"" << src << "\"\n";
}
tgt->GetMakefile()->IssueMessage(cmake::FATAL_ERROR, err.str());
return contextDependent;
}
src = fullPath;
}
std::string usedSources;
for(std::vector<std::string>::iterator
li = entrySources.begin(); li != entrySources.end(); ++li)
{
std::string src = *li;
if(uniqueSrcs.insert(src).second)
{
srcs.push_back(src);
if (debugSources)
{
usedSources += " * " + src + "\n";
}
}
}
if (!usedSources.empty())
{
mf->GetCMakeInstance()->IssueMessage(cmake::LOG,
std::string("Used sources for target ")
+ tgt->GetName() + ":\n"
+ usedSources, (*it)->ge->GetBacktrace());
}
}
return contextDependent;
}
//----------------------------------------------------------------------------
void cmTarget::GetSourceFiles(std::vector<std::string> &files,
const std::string& config) const
{
assert(this->GetType() != INTERFACE_LIBRARY);
if (this->Makefile->GetGeneratorTargets().empty())
{
// At configure-time, this method can be called as part of getting the
// LOCATION property or to export() a file to be include()d. However
// there is no cmGeneratorTarget at configure-time, so search the SOURCES
// for TARGET_OBJECTS instead for backwards compatibility with OLD
// behavior of CMP0024 and CMP0026 only.
typedef cmTargetInternals::TargetPropertyEntry
TargetPropertyEntry;
for(std::vector<TargetPropertyEntry*>::const_iterator
i = this->Internal->SourceEntries.begin();
i != this->Internal->SourceEntries.end(); ++i)
{
std::string entry = (*i)->ge->GetInput();
std::vector<std::string> items;
cmSystemTools::ExpandListArgument(entry, items);
for (std::vector<std::string>::const_iterator
li = items.begin(); li != items.end(); ++li)
{
if(cmHasLiteralPrefix(*li, "$<TARGET_OBJECTS:") &&
(*li)[li->size() - 1] == '>')
{
continue;
}
files.push_back(*li);
}
}
return;
}
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugSources = !this->DebugSourcesDone
&& std::find(debugProperties.begin(),
debugProperties.end(),
"SOURCES")
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugSourcesDone = true;
}
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(),
"SOURCES", 0, 0);
UNORDERED_SET<std::string> uniqueSrcs;
bool contextDependentDirectSources = processSources(this,
this->Internal->SourceEntries,
files,
uniqueSrcs,
&dagChecker,
config,
debugSources);
std::vector<cmTargetInternals::TargetPropertyEntry*>
linkInterfaceSourcesEntries;
this->Internal->AddInterfaceEntries(
this, config, "INTERFACE_SOURCES",
linkInterfaceSourcesEntries);
std::vector<std::string>::size_type numFilesBefore = files.size();
bool contextDependentInterfaceSources = processSources(this,
linkInterfaceSourcesEntries,
files,
uniqueSrcs,
&dagChecker,
config,
debugSources);
if (!contextDependentDirectSources
&& !(contextDependentInterfaceSources && numFilesBefore < files.size()))
{
this->LinkImplementationLanguageIsContextDependent = false;
}
deleteAndClear(linkInterfaceSourcesEntries);
}
//----------------------------------------------------------------------------
bool
cmTarget::GetConfigCommonSourceFiles(std::vector<cmSourceFile*>& files) const
{
std::vector<std::string> configs;
this->Makefile->GetConfigurations(configs);
if (configs.empty())
{
configs.push_back("");
}
std::vector<std::string>::const_iterator it = configs.begin();
const std::string& firstConfig = *it;
this->GetSourceFiles(files, firstConfig);
for ( ; it != configs.end(); ++it)
{
std::vector<cmSourceFile*> configFiles;
this->GetSourceFiles(configFiles, *it);
if (configFiles != files)
{
std::string firstConfigFiles;
const char* sep = "";
for (std::vector<cmSourceFile*>::const_iterator fi = files.begin();
fi != files.end(); ++fi)
{
firstConfigFiles += sep;
firstConfigFiles += (*fi)->GetFullPath();
sep = "\n ";
}
std::string thisConfigFiles;
sep = "";
for (std::vector<cmSourceFile*>::const_iterator fi = configFiles.begin();
fi != configFiles.end(); ++fi)
{
thisConfigFiles += sep;
thisConfigFiles += (*fi)->GetFullPath();
sep = "\n ";
}
std::ostringstream e;
e << "Target \"" << this->Name << "\" has source files which vary by "
"configuration. This is not supported by the \""
<< this->Makefile->GetLocalGenerator()
->GetGlobalGenerator()->GetName()
<< "\" generator.\n"
"Config \"" << firstConfig << "\":\n"
" " << firstConfigFiles << "\n"
"Config \"" << *it << "\":\n"
" " << thisConfigFiles << "\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return false;
}
}
return true;
}
//----------------------------------------------------------------------------
void cmTarget::GetSourceFiles(std::vector<cmSourceFile*> &files,
const std::string& config) const
{
// Lookup any existing link implementation for this configuration.
std::string key = cmSystemTools::UpperCase(config);
if(!this->LinkImplementationLanguageIsContextDependent)
{
files = this->Internal->SourceFilesMap.begin()->second;
return;
}
cmTargetInternals::SourceFilesMapType::iterator
it = this->Internal->SourceFilesMap.find(key);
if(it != this->Internal->SourceFilesMap.end())
{
files = it->second;
}
else
{
std::vector<std::string> srcs;
this->GetSourceFiles(srcs, config);
std::set<cmSourceFile*> emitted;
for(std::vector<std::string>::const_iterator i = srcs.begin();
i != srcs.end(); ++i)
{
cmSourceFile* sf = this->Makefile->GetOrCreateSource(*i);
if (emitted.insert(sf).second)
{
files.push_back(sf);
}
}
this->Internal->SourceFilesMap[key] = files;
}
}
//----------------------------------------------------------------------------
void cmTarget::AddTracedSources(std::vector<std::string> const& srcs)
{
std::string srcFiles = cmJoin(srcs, ";");
if (!srcFiles.empty())
{
this->Internal->SourceFilesMap.clear();
this->LinkImplementationLanguageIsContextDependent = true;
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(srcFiles);
cge->SetEvaluateForBuildsystem(true);
this->Internal->SourceEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
}
//----------------------------------------------------------------------------
void cmTarget::AddSources(std::vector<std::string> const& srcs)
{
std::string srcFiles;
const char* sep = "";
for(std::vector<std::string>::const_iterator i = srcs.begin();
i != srcs.end(); ++i)
{
std::string filename = *i;
const char* src = filename.c_str();
if(!(src[0] == '$' && src[1] == '<'))
{
if(!filename.empty())
{
filename = this->ProcessSourceItemCMP0049(filename);
if(filename.empty())
{
return;
}
}
this->Makefile->GetOrCreateSource(filename);
}
srcFiles += sep;
srcFiles += filename;
sep = ";";
}
if (!srcFiles.empty())
{
this->Internal->SourceFilesMap.clear();
this->LinkImplementationLanguageIsContextDependent = true;
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(srcFiles);
cge->SetEvaluateForBuildsystem(true);
this->Internal->SourceEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
}
//----------------------------------------------------------------------------
std::string cmTarget::ProcessSourceItemCMP0049(const std::string& s)
{
std::string src = s;
// For backwards compatibility replace varibles in source names.
// This should eventually be removed.
this->Makefile->ExpandVariablesInString(src);
if (src != s)
{
std::ostringstream e;
bool noMessage = false;
cmake::MessageType messageType = cmake::AUTHOR_WARNING;
switch(this->Makefile->GetPolicyStatus(cmPolicies::CMP0049))
{
case cmPolicies::WARN:
e << (this->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0049)) << "\n";
break;
case cmPolicies::OLD:
noMessage = true;
break;
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::NEW:
messageType = cmake::FATAL_ERROR;
}
if (!noMessage)
{
e << "Legacy variable expansion in source file \""
<< s << "\" expanded to \"" << src << "\" in target \""
<< this->GetName() << "\". This behavior will be removed in a "
"future version of CMake.";
this->Makefile->IssueMessage(messageType, e.str());
if (messageType == cmake::FATAL_ERROR)
{
return "";
}
}
}
return src;
}
//----------------------------------------------------------------------------
cmSourceFile* cmTarget::AddSourceCMP0049(const std::string& s)
{
std::string src = this->ProcessSourceItemCMP0049(s);
if(!s.empty() && src.empty())
{
return 0;
}
return this->AddSource(src);
}
//----------------------------------------------------------------------------
struct CreateLocation
{
cmMakefile const* Makefile;
CreateLocation(cmMakefile const* mf)
: Makefile(mf)
{
}
cmSourceFileLocation operator()(const std::string& filename)
{
return cmSourceFileLocation(this->Makefile, filename);
}
};
//----------------------------------------------------------------------------
struct LocationMatcher
{
const cmSourceFileLocation& Needle;
LocationMatcher(const cmSourceFileLocation& needle)
: Needle(needle)
{
}
bool operator()(cmSourceFileLocation &loc)
{
return loc.Matches(this->Needle);
}
};
//----------------------------------------------------------------------------
struct TargetPropertyEntryFinder
{
private:
const cmSourceFileLocation& Needle;
public:
TargetPropertyEntryFinder(const cmSourceFileLocation& needle)
: Needle(needle)
{
}
bool operator()(cmTargetInternals::TargetPropertyEntry* entry)
{
std::vector<std::string> files;
cmSystemTools::ExpandListArgument(entry->ge->GetInput(), files);
std::vector<cmSourceFileLocation> locations(files.size());
std::transform(files.begin(), files.end(), locations.begin(),
CreateLocation(this->Needle.GetMakefile()));
return std::find_if(locations.begin(), locations.end(),
LocationMatcher(this->Needle)) != locations.end();
}
};
//----------------------------------------------------------------------------
cmSourceFile* cmTarget::AddSource(const std::string& src)
{
cmSourceFileLocation sfl(this->Makefile, src);
if (std::find_if(this->Internal->SourceEntries.begin(),
this->Internal->SourceEntries.end(),
TargetPropertyEntryFinder(sfl))
== this->Internal->SourceEntries.end())
{
this->Internal->SourceFilesMap.clear();
this->LinkImplementationLanguageIsContextDependent = true;
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(src);
cge->SetEvaluateForBuildsystem(true);
this->Internal->SourceEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
if (cmGeneratorExpression::Find(src) != std::string::npos)
{
return 0;
}
return this->Makefile->GetOrCreateSource(src);
}
//----------------------------------------------------------------------------
void cmTarget::MergeLinkLibraries( cmMakefile& mf,
const std::string& selfname,
const LinkLibraryVectorType& libs )
{
// Only add on libraries we haven't added on before.
// Assumption: the global link libraries could only grow, never shrink
LinkLibraryVectorType::const_iterator i = libs.begin();
i += this->PrevLinkedLibraries.size();
for( ; i != libs.end(); ++i )
{
// This is equivalent to the target_link_libraries plain signature.
this->AddLinkLibrary( mf, selfname, i->first, i->second );
this->AppendProperty("INTERFACE_LINK_LIBRARIES",
this->GetDebugGeneratorExpressions(i->first, i->second).c_str());
}
this->PrevLinkedLibraries = libs;
}
//----------------------------------------------------------------------------
void cmTarget::AddLinkDirectory(const std::string& d)
{
// Make sure we don't add unnecessary search directories.
if(this->LinkDirectoriesEmmitted.insert(d).second)
{
this->LinkDirectories.push_back(d);
}
}
//----------------------------------------------------------------------------
const std::vector<std::string>& cmTarget::GetLinkDirectories() const
{
return this->LinkDirectories;
}
//----------------------------------------------------------------------------
cmTarget::LinkLibraryType cmTarget::ComputeLinkType(
const std::string& config) const
{
// No configuration is always optimized.
if(config.empty())
{
return cmTarget::OPTIMIZED;
}
// Get the list of configurations considered to be DEBUG.
std::vector<std::string> const& debugConfigs =
this->Makefile->GetCMakeInstance()->GetDebugConfigs();
// Check if any entry in the list matches this configuration.
std::string configUpper = cmSystemTools::UpperCase(config);
if (std::find(debugConfigs.begin(), debugConfigs.end(), configUpper) !=
debugConfigs.end())
{
return cmTarget::DEBUG;
}
// The current configuration is not a debug configuration.
return cmTarget::OPTIMIZED;
}
//----------------------------------------------------------------------------
void cmTarget::ClearDependencyInformation( cmMakefile& mf,
const std::string& target )
{
// Clear the dependencies. The cache variable must exist iff we are
// recording dependency information for this target.
std::string depname = target;
depname += "_LIB_DEPENDS";
if (this->RecordDependencies)
{
mf.AddCacheDefinition(depname, "",
"Dependencies for target", cmCacheManager::STATIC);
}
else
{
if (mf.GetDefinition( depname ))
{
std::string message = "Target ";
message += target;
message += " has dependency information when it shouldn't.\n";
message += "Your cache is probably stale. Please remove the entry\n ";
message += depname;
message += "\nfrom the cache.";
cmSystemTools::Error( message.c_str() );
}
}
}
//----------------------------------------------------------------------------
bool cmTarget::NameResolvesToFramework(const std::string& libname) const
{
return this->Makefile->GetLocalGenerator()->GetGlobalGenerator()->
NameResolvesToFramework(libname);
}
//----------------------------------------------------------------------------
std::string cmTarget::GetDebugGeneratorExpressions(const std::string &value,
cmTarget::LinkLibraryType llt) const
{
if (llt == GENERAL)
{
return value;
}
// Get the list of configurations considered to be DEBUG.
std::vector<std::string> const& debugConfigs =
this->Makefile->GetCMakeInstance()->GetDebugConfigs();
std::string configString = "$<CONFIG:" + debugConfigs[0] + ">";
if (debugConfigs.size() > 1)
{
for(std::vector<std::string>::const_iterator
li = debugConfigs.begin() + 1; li != debugConfigs.end(); ++li)
{
configString += ",$<CONFIG:" + *li + ">";
}
configString = "$<OR:" + configString + ">";
}
if (llt == OPTIMIZED)
{
configString = "$<NOT:" + configString + ">";
}
return "$<" + configString + ":" + value + ">";
}
//----------------------------------------------------------------------------
static std::string targetNameGenex(const std::string& lib)
{
return "$<TARGET_NAME:" + lib + ">";
}
//----------------------------------------------------------------------------
bool cmTarget::PushTLLCommandTrace(TLLSignature signature)
{
bool ret = true;
if (!this->TLLCommands.empty())
{
if (this->TLLCommands.back().first != signature)
{
ret = false;
}
}
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
this->TLLCommands.push_back(std::make_pair(signature, lfbt));
return ret;
}
//----------------------------------------------------------------------------
void cmTarget::GetTllSignatureTraces(std::ostringstream &s,
TLLSignature sig) const
{
std::vector<cmListFileBacktrace> sigs;
typedef std::vector<std::pair<TLLSignature, cmListFileBacktrace> > Container;
for(Container::const_iterator it = this->TLLCommands.begin();
it != this->TLLCommands.end(); ++it)
{
if (it->first == sig)
{
sigs.push_back(it->second);
}
}
if (!sigs.empty())
{
const char *sigString
= (sig == cmTarget::KeywordTLLSignature ? "keyword"
: "plain");
s << "The uses of the " << sigString << " signature are here:\n";
UNORDERED_SET<std::string> emitted;
for(std::vector<cmListFileBacktrace>::iterator it = sigs.begin();
it != sigs.end(); ++it)
{
it->MakeRelative();
cmListFileBacktrace::const_iterator i = it->begin();
if(i != it->end())
{
cmListFileContext const& lfc = *i;
std::ostringstream line;
line << " * " << (lfc.Line? "": " in ") << lfc << std::endl;
if (emitted.insert(line.str()).second)
{
s << line.str();
}
++i;
}
}
}
}
//----------------------------------------------------------------------------
void cmTarget::AddLinkLibrary(cmMakefile& mf,
const std::string& target,
const std::string& lib,
LinkLibraryType llt)
{
cmTarget *tgt = this->Makefile->FindTargetToUse(lib);
{
const bool isNonImportedTarget = tgt && !tgt->IsImported();
const std::string libName = (isNonImportedTarget && llt != GENERAL)
? targetNameGenex(lib)
: lib;
this->AppendProperty("LINK_LIBRARIES",
this->GetDebugGeneratorExpressions(libName,
llt).c_str());
}
if (cmGeneratorExpression::Find(lib) != std::string::npos
|| (tgt && tgt->GetType() == INTERFACE_LIBRARY)
|| (target == lib ))
{
return;
}
cmTarget::LibraryID tmp;
tmp.first = lib;
tmp.second = llt;
#if defined(_WIN32) && !defined(__CYGWIN__)
this->LinkLibrariesForVS6.push_back( tmp );
#endif
this->OriginalLinkLibraries.push_back(tmp);
this->ClearLinkMaps();
// Add the explicit dependency information for this target. This is
// simply a set of libraries separated by ";". There should always
// be a trailing ";". These library names are not canonical, in that
// they may be "-framework x", "-ly", "/path/libz.a", etc.
// We shouldn't remove duplicates here because external libraries
// may be purposefully duplicated to handle recursive dependencies,
// and we removing one instance will break the link line. Duplicates
// will be appropriately eliminated at emit time.
if(this->RecordDependencies)
{
std::string targetEntry = target;
targetEntry += "_LIB_DEPENDS";
std::string dependencies;
const char* old_val = mf.GetDefinition( targetEntry );
if( old_val )
{
dependencies += old_val;
}
switch (llt)
{
case cmTarget::GENERAL:
dependencies += "general";
break;
case cmTarget::DEBUG:
dependencies += "debug";
break;
case cmTarget::OPTIMIZED:
dependencies += "optimized";
break;
}
dependencies += ";";
dependencies += lib;
dependencies += ";";
mf.AddCacheDefinition( targetEntry, dependencies.c_str(),
"Dependencies for the target",
cmCacheManager::STATIC );
}
}
//----------------------------------------------------------------------------
void
cmTarget::AddSystemIncludeDirectories(const std::set<std::string> &incs)
{
this->SystemIncludeDirectories.insert(incs.begin(), incs.end());
}
//----------------------------------------------------------------------------
void
cmTarget::AddSystemIncludeDirectories(const std::vector<std::string> &incs)
{
this->SystemIncludeDirectories.insert(incs.begin(), incs.end());
}
#if defined(_WIN32) && !defined(__CYGWIN__)
//----------------------------------------------------------------------------
void
cmTarget::AnalyzeLibDependenciesForVS6( const cmMakefile& mf )
{
// There are two key parts of the dependency analysis: (1)
// determining the libraries in the link line, and (2) constructing
// the dependency graph for those libraries.
//
// The latter is done using the cache entries that record the
// dependencies of each library.
//
// The former is a more thorny issue, since it is not clear how to
// determine if two libraries listed on the link line refer to the a
// single library or not. For example, consider the link "libraries"
// /usr/lib/libtiff.so -ltiff
// Is this one library or two? The solution implemented here is the
// simplest (and probably the only practical) one: two libraries are
// the same if their "link strings" are identical. Thus, the two
// libraries above are considered distinct. This also means that for
// dependency analysis to be effective, the CMake user must specify
// libraries build by his project without using any linker flags or
// file extensions. That is,
// LINK_LIBRARIES( One Two )
// instead of
// LINK_LIBRARIES( -lOne ${binarypath}/libTwo.a )
// The former is probably what most users would do, but it never
// hurts to document the assumptions. :-) Therefore, in the analysis
// code, the "canonical name" of a library is simply its name as
// given to a LINK_LIBRARIES command.
//
// Also, we will leave the original link line intact; we will just add any
// dependencies that were missing.
//
// There is a problem with recursive external libraries
// (i.e. libraries with no dependency information that are
// recursively dependent). We must make sure that the we emit one of
// the libraries twice to satisfy the recursion, but we shouldn't
// emit it more times than necessary. In particular, we must make
// sure that handling this improbable case doesn't cost us when
// dealing with the common case of non-recursive libraries. The
// solution is to assume that the recursion is satisfied at one node
// of the dependency tree. To illustrate, assume libA and libB are
// extrenal and mutually dependent. Suppose libX depends on
// libA, and libY on libA and libX. Then
// TARGET_LINK_LIBRARIES( Y X A B A )
// TARGET_LINK_LIBRARIES( X A B A )
// TARGET_LINK_LIBRARIES( Exec Y )
// would result in "-lY -lX -lA -lB -lA". This is the correct way to
// specify the dependencies, since the mutual dependency of A and B
// is resolved *every time libA is specified*.
//
// Something like
// TARGET_LINK_LIBRARIES( Y X A B A )
// TARGET_LINK_LIBRARIES( X A B )
// TARGET_LINK_LIBRARIES( Exec Y )
// would result in "-lY -lX -lA -lB", and the mutual dependency
// information is lost. This is because in some case (Y), the mutual
// dependency of A and B is listed, while in another other case (X),
// it is not. Depending on which line actually emits A, the mutual
// dependency may or may not be on the final link line. We can't
// handle this pathalogical case cleanly without emitting extra
// libraries for the normal cases. Besides, the dependency
// information for X is wrong anyway: if we build an executable
// depending on X alone, we would not have the mutual dependency on
// A and B resolved.
//
// IMPROVEMENTS:
// -- The current algorithm will not always pick the "optimal" link line
// when recursive dependencies are present. It will instead break the
// cycles at an aribtrary point. The majority of projects won't have
// cyclic dependencies, so this is probably not a big deal. Note that
// the link line is always correct, just not necessary optimal.
{
// Expand variables in link library names. This is for backwards
// compatibility with very early CMake versions and should
// eventually be removed. This code was moved here from the end of
// old source list processing code which was called just before this
// method.
for(LinkLibraryVectorType::iterator p = this->LinkLibrariesForVS6.begin();
p != this->LinkLibrariesForVS6.end(); ++p)
{
this->Makefile->ExpandVariablesInString(p->first, true, true);
}
}
// The dependency map.
DependencyMap dep_map;
// 1. Build the dependency graph
//
for(LinkLibraryVectorType::reverse_iterator lib
= this->LinkLibrariesForVS6.rbegin();
lib != this->LinkLibrariesForVS6.rend(); ++lib)
{
this->GatherDependenciesForVS6( mf, *lib, dep_map);
}
// 2. Remove any dependencies that are already satisfied in the original
// link line.
//
for(LinkLibraryVectorType::iterator lib = this->LinkLibrariesForVS6.begin();
lib != this->LinkLibrariesForVS6.end(); ++lib)
{
for( LinkLibraryVectorType::iterator lib2 = lib;
lib2 != this->LinkLibrariesForVS6.end(); ++lib2)
{
this->DeleteDependencyForVS6( dep_map, *lib, *lib2);
}
}
// 3. Create the new link line by simply emitting any dependencies that are
// missing. Start from the back and keep adding.
//
std::set<DependencyMap::key_type> done, visited;
std::vector<DependencyMap::key_type> newLinkLibrariesForVS6;
for(LinkLibraryVectorType::reverse_iterator lib =
this->LinkLibrariesForVS6.rbegin();
lib != this->LinkLibrariesForVS6.rend(); ++lib)
{
// skip zero size library entries, this may happen
// if a variable expands to nothing.
if (!lib->first.empty())
{
this->EmitForVS6( *lib, dep_map, done, visited, newLinkLibrariesForVS6 );
}
}
// 4. Add the new libraries to the link line.
//
for( std::vector<DependencyMap::key_type>::reverse_iterator k =
newLinkLibrariesForVS6.rbegin();
k != newLinkLibrariesForVS6.rend(); ++k )
{
// get the llt from the dep_map
this->LinkLibrariesForVS6.push_back( std::make_pair(k->first,k->second) );
}
this->LinkLibrariesForVS6Analyzed = true;
}
//----------------------------------------------------------------------------
void cmTarget::InsertDependencyForVS6( DependencyMap& depMap,
const LibraryID& lib,
const LibraryID& dep)
{
depMap[lib].push_back(dep);
}
//----------------------------------------------------------------------------
void cmTarget::DeleteDependencyForVS6( DependencyMap& depMap,
const LibraryID& lib,
const LibraryID& dep)
{
// Make sure there is an entry in the map for lib. If so, delete all
// dependencies to dep. There may be repeated entries because of
// external libraries that are specified multiple times.
DependencyMap::iterator map_itr = depMap.find( lib );
if( map_itr != depMap.end() )
{
DependencyList& depList = map_itr->second;
DependencyList::iterator begin =
std::remove(depList.begin(), depList.end(), dep);
depList.erase(begin, depList.end());
}
}
//----------------------------------------------------------------------------
void cmTarget::EmitForVS6(const LibraryID lib,
const DependencyMap& dep_map,
std::set<LibraryID>& emitted,
std::set<LibraryID>& visited,
DependencyList& link_line )
{
// It's already been emitted
if( emitted.find(lib) != emitted.end() )
{
return;
}
// Emit the dependencies only if this library node hasn't been
// visited before. If it has, then we have a cycle. The recursion
// that got us here should take care of everything.
if( visited.insert(lib).second )
{
if( dep_map.find(lib) != dep_map.end() ) // does it have dependencies?
{
const DependencyList& dep_on = dep_map.find( lib )->second;
DependencyList::const_reverse_iterator i;
// To cater for recursive external libraries, we must emit
// duplicates on this link line *unless* they were emitted by
// some other node, in which case we assume that the recursion
// was resolved then. We making the simplifying assumption that
// any duplicates on a single link line are on purpose, and must
// be preserved.
// This variable will keep track of the libraries that were
// emitted directly from the current node, and not from a
// recursive call. This way, if we come across a library that
// has already been emitted, we repeat it iff it has been
// emitted here.
std::set<DependencyMap::key_type> emitted_here;
for( i = dep_on.rbegin(); i != dep_on.rend(); ++i )
{
if( emitted_here.find(*i) != emitted_here.end() )
{
// a repeat. Must emit.
emitted.insert(*i);
link_line.push_back( *i );
}
else
{
// Emit only if no-one else has
if( emitted.find(*i) == emitted.end() )
{
// emit dependencies
this->EmitForVS6( *i, dep_map, emitted, visited, link_line );
// emit self
emitted.insert(*i);
emitted_here.insert(*i);
link_line.push_back( *i );
}
}
}
}
}
}
//----------------------------------------------------------------------------
void cmTarget::GatherDependenciesForVS6( const cmMakefile& mf,
const LibraryID& lib,
DependencyMap& dep_map)
{
// If the library is already in the dependency map, then it has
// already been fully processed.
if( dep_map.find(lib) != dep_map.end() )
{
return;
}
const char* deps = mf.GetDefinition( lib.first+"_LIB_DEPENDS" );
if( deps && strcmp(deps,"") != 0 )
{
// Make sure this library is in the map, even if it has an empty
// set of dependencies. This distinguishes the case of explicitly
// no dependencies with that of unspecified dependencies.
dep_map[lib];
// Parse the dependency information, which is a set of
// type, library pairs separated by ";". There is always a trailing ";".
cmTarget::LinkLibraryType llt = cmTarget::GENERAL;
std::string depline = deps;
std::string::size_type start = 0;
std::string::size_type end;
end = depline.find( ";", start );
while( end != std::string::npos )
{
std::string l = depline.substr( start, end-start );
if(!l.empty())
{
if (l == "debug")
{
llt = cmTarget::DEBUG;
}
else if (l == "optimized")
{
llt = cmTarget::OPTIMIZED;
}
else if (l == "general")
{
llt = cmTarget::GENERAL;
}
else
{
LibraryID lib2(l,llt);
this->InsertDependencyForVS6( dep_map, lib, lib2);
this->GatherDependenciesForVS6( mf, lib2, dep_map);
llt = cmTarget::GENERAL;
}
}
start = end+1; // skip the ;
end = depline.find( ";", start );
}
// cannot depend on itself
this->DeleteDependencyForVS6( dep_map, lib, lib);
}
}
#endif
//----------------------------------------------------------------------------
static bool whiteListedInterfaceProperty(const std::string& prop)
{
if(cmHasLiteralPrefix(prop, "INTERFACE_"))
{
return true;
}
static UNORDERED_SET<std::string> builtIns;
if (builtIns.empty())
{
builtIns.insert("COMPATIBLE_INTERFACE_BOOL");
builtIns.insert("COMPATIBLE_INTERFACE_NUMBER_MAX");
builtIns.insert("COMPATIBLE_INTERFACE_NUMBER_MIN");
builtIns.insert("COMPATIBLE_INTERFACE_STRING");
builtIns.insert("EXPORT_NAME");
builtIns.insert("IMPORTED");
builtIns.insert("NAME");
builtIns.insert("TYPE");
}
if (builtIns.count(prop))
{
return true;
}
if (cmHasLiteralPrefix(prop, "MAP_IMPORTED_CONFIG_"))
{
return true;
}
return false;
}
//----------------------------------------------------------------------------
void cmTarget::SetProperty(const std::string& prop, const char* value)
{
if (this->GetType() == INTERFACE_LIBRARY
&& !whiteListedInterfaceProperty(prop))
{
std::ostringstream e;
e << "INTERFACE_LIBRARY targets may only have whitelisted properties. "
"The property \"" << prop << "\" is not allowed.";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
else if (prop == "NAME")
{
std::ostringstream e;
e << "NAME property is read-only\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
else if(prop == "INCLUDE_DIRECTORIES")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
deleteAndClear(this->Internal->IncludeDirectoriesEntries);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->IncludeDirectoriesEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else if(prop == "COMPILE_OPTIONS")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
deleteAndClear(this->Internal->CompileOptionsEntries);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->CompileOptionsEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else if(prop == "COMPILE_FEATURES")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
deleteAndClear(this->Internal->CompileFeaturesEntries);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->CompileFeaturesEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else if(prop == "COMPILE_DEFINITIONS")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
deleteAndClear(this->Internal->CompileDefinitionsEntries);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->CompileDefinitionsEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else if(prop == "EXPORT_NAME" && this->IsImported())
{
std::ostringstream e;
e << "EXPORT_NAME property can't be set on imported targets (\""
<< this->Name << "\")\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
}
else if (prop == "LINK_LIBRARIES")
{
this->Internal->LinkImplementationPropertyEntries.clear();
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmValueWithOrigin entry(value, lfbt);
this->Internal->LinkImplementationPropertyEntries.push_back(entry);
}
else if (prop == "SOURCES")
{
if(this->IsImported())
{
std::ostringstream e;
e << "SOURCES property can't be set on imported targets (\""
<< this->Name << "\")\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
this->Internal->SourceFilesMap.clear();
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
this->Internal->SourceEntries.clear();
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->SourceEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else
{
this->Properties.SetProperty(prop, value, cmProperty::TARGET);
this->MaybeInvalidatePropertyCache(prop);
}
}
//----------------------------------------------------------------------------
void cmTarget::AppendProperty(const std::string& prop, const char* value,
bool asString)
{
if (this->GetType() == INTERFACE_LIBRARY
&& !whiteListedInterfaceProperty(prop))
{
std::ostringstream e;
e << "INTERFACE_LIBRARY targets may only have whitelisted properties. "
"The property \"" << prop << "\" is not allowed.";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
else if (prop == "NAME")
{
std::ostringstream e;
e << "NAME property is read-only\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
else if(prop == "INCLUDE_DIRECTORIES")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
this->Internal->IncludeDirectoriesEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(ge.Parse(value)));
}
else if(prop == "COMPILE_OPTIONS")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
this->Internal->CompileOptionsEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(ge.Parse(value)));
}
else if(prop == "COMPILE_FEATURES")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
this->Internal->CompileFeaturesEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(ge.Parse(value)));
}
else if(prop == "COMPILE_DEFINITIONS")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
this->Internal->CompileDefinitionsEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(ge.Parse(value)));
}
else if(prop == "EXPORT_NAME" && this->IsImported())
{
std::ostringstream e;
e << "EXPORT_NAME property can't be set on imported targets (\""
<< this->Name << "\")\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
}
else if (prop == "LINK_LIBRARIES")
{
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmValueWithOrigin entry(value, lfbt);
this->Internal->LinkImplementationPropertyEntries.push_back(entry);
}
else if (prop == "SOURCES")
{
if(this->IsImported())
{
std::ostringstream e;
e << "SOURCES property can't be set on imported targets (\""
<< this->Name << "\")\n";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
this->Internal->SourceFilesMap.clear();
cmListFileBacktrace lfbt = this->Makefile->GetBacktrace();
cmGeneratorExpression ge(&lfbt);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
this->Internal->SourceEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge));
}
else
{
this->Properties.AppendProperty(prop, value, cmProperty::TARGET, asString);
this->MaybeInvalidatePropertyCache(prop);
}
}
//----------------------------------------------------------------------------
std::string cmTarget::GetExportName() const
{
const char *exportName = this->GetProperty("EXPORT_NAME");
if (exportName && *exportName)
{
if (!cmGeneratorExpression::IsValidTargetName(exportName))
{
std::ostringstream e;
e << "EXPORT_NAME property \"" << exportName << "\" for \""
<< this->GetName() << "\": is not valid.";
cmSystemTools::Error(e.str().c_str());
return "";
}
return exportName;
}
return this->GetName();
}
//----------------------------------------------------------------------------
void cmTarget::AppendBuildInterfaceIncludes()
{
if(this->GetType() != cmTarget::SHARED_LIBRARY &&
this->GetType() != cmTarget::STATIC_LIBRARY &&
this->GetType() != cmTarget::MODULE_LIBRARY &&
this->GetType() != cmTarget::INTERFACE_LIBRARY &&
!this->IsExecutableWithExports())
{
return;
}
if (this->BuildInterfaceIncludesAppended)
{
return;
}
this->BuildInterfaceIncludesAppended = true;
if (this->Makefile->IsOn("CMAKE_INCLUDE_CURRENT_DIR_IN_INTERFACE"))
{
const char *binDir = this->Makefile->GetStartOutputDirectory();
const char *srcDir = this->Makefile->GetStartDirectory();
const std::string dirs = std::string(binDir ? binDir : "")
+ std::string(binDir ? ";" : "")
+ std::string(srcDir ? srcDir : "");
if (!dirs.empty())
{
this->AppendProperty("INTERFACE_INCLUDE_DIRECTORIES",
("$<BUILD_INTERFACE:" + dirs + ">").c_str());
}
}
}
//----------------------------------------------------------------------------
void cmTarget::InsertInclude(const cmValueWithOrigin &entry,
bool before)
{
cmGeneratorExpression ge(&entry.Backtrace);
std::vector<cmTargetInternals::TargetPropertyEntry*>::iterator position
= before ? this->Internal->IncludeDirectoriesEntries.begin()
: this->Internal->IncludeDirectoriesEntries.end();
this->Internal->IncludeDirectoriesEntries.insert(position,
new cmTargetInternals::TargetPropertyEntry(ge.Parse(entry.Value)));
}
//----------------------------------------------------------------------------
void cmTarget::InsertCompileOption(const cmValueWithOrigin &entry,
bool before)
{
cmGeneratorExpression ge(&entry.Backtrace);
std::vector<cmTargetInternals::TargetPropertyEntry*>::iterator position
= before ? this->Internal->CompileOptionsEntries.begin()
: this->Internal->CompileOptionsEntries.end();
this->Internal->CompileOptionsEntries.insert(position,
new cmTargetInternals::TargetPropertyEntry(ge.Parse(entry.Value)));
}
//----------------------------------------------------------------------------
void cmTarget::InsertCompileDefinition(const cmValueWithOrigin &entry)
{
cmGeneratorExpression ge(&entry.Backtrace);
this->Internal->CompileDefinitionsEntries.push_back(
new cmTargetInternals::TargetPropertyEntry(ge.Parse(entry.Value)));
}
//----------------------------------------------------------------------------
static void processIncludeDirectories(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &includes,
UNORDERED_SET<std::string> &uniqueIncludes,
cmGeneratorExpressionDAGChecker *dagChecker,
const std::string& config, bool debugIncludes,
const std::string& language)
{
cmMakefile *mf = tgt->GetMakefile();
for (std::vector<cmTargetInternals::TargetPropertyEntry*>::const_iterator
it = entries.begin(), end = entries.end(); it != end; ++it)
{
cmLinkImplItem const& item = (*it)->LinkImplItem;
std::string const& targetName = item;
bool const fromImported = item.Target && item.Target->IsImported();
bool const checkCMP0027 = item.FromGenex;
std::vector<std::string> entryIncludes;
cmSystemTools::ExpandListArgument((*it)->ge->Evaluate(mf,
config,
false,
tgt,
dagChecker, language),
entryIncludes);
std::string usedIncludes;
for(std::vector<std::string>::iterator
li = entryIncludes.begin(); li != entryIncludes.end(); ++li)
{
if (fromImported
&& !cmSystemTools::FileExists(li->c_str()))
{
std::ostringstream e;
cmake::MessageType messageType = cmake::FATAL_ERROR;
if (checkCMP0027)
{
switch(tgt->GetPolicyStatusCMP0027())
{
case cmPolicies::WARN:
e << (mf->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0027)) << "\n";
case cmPolicies::OLD:
messageType = cmake::AUTHOR_WARNING;
break;
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::NEW:
break;
}
}
e << "Imported target \"" << targetName << "\" includes "
"non-existent path\n \"" << *li << "\"\nin its "
"INTERFACE_INCLUDE_DIRECTORIES. Possible reasons include:\n"
"* The path was deleted, renamed, or moved to another "
"location.\n"
"* An install or uninstall procedure did not complete "
"successfully.\n"
"* The installation package was faulty and references files it "
"does not provide.\n";
tgt->GetMakefile()->IssueMessage(messageType, e.str());
return;
}
if (!cmSystemTools::FileIsFullPath(li->c_str()))
{
std::ostringstream e;
bool noMessage = false;
cmake::MessageType messageType = cmake::FATAL_ERROR;
if (!targetName.empty())
{
e << "Target \"" << targetName << "\" contains relative "
"path in its INTERFACE_INCLUDE_DIRECTORIES:\n"
" \"" << *li << "\"";
}
else
{
switch(tgt->GetPolicyStatusCMP0021())
{
case cmPolicies::WARN:
{
e << (mf->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0021)) << "\n";
messageType = cmake::AUTHOR_WARNING;
}
break;
case cmPolicies::OLD:
noMessage = true;
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::NEW:
// Issue the fatal message.
break;
}
e << "Found relative path while evaluating include directories of "
"\"" << tgt->GetName() << "\":\n \"" << *li << "\"\n";
}
if (!noMessage)
{
tgt->GetMakefile()->IssueMessage(messageType, e.str());
if (messageType == cmake::FATAL_ERROR)
{
return;
}
}
}
if (!cmSystemTools::IsOff(li->c_str()))
{
cmSystemTools::ConvertToUnixSlashes(*li);
}
std::string inc = *li;
if(uniqueIncludes.insert(inc).second)
{
includes.push_back(inc);
if (debugIncludes)
{
usedIncludes += " * " + inc + "\n";
}
}
}
if (!usedIncludes.empty())
{
mf->GetCMakeInstance()->IssueMessage(cmake::LOG,
std::string("Used includes for target ")
+ tgt->GetName() + ":\n"
+ usedIncludes, (*it)->ge->GetBacktrace());
}
}
}
//----------------------------------------------------------------------------
std::vector<std::string>
cmTarget::GetIncludeDirectories(const std::string& config,
const std::string& language) const
{
std::vector<std::string> includes;
UNORDERED_SET<std::string> uniqueIncludes;
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(),
"INCLUDE_DIRECTORIES", 0, 0);
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugIncludes = !this->DebugIncludesDone
&& std::find(debugProperties.begin(),
debugProperties.end(),
"INCLUDE_DIRECTORIES")
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugIncludesDone = true;
}
processIncludeDirectories(this,
this->Internal->IncludeDirectoriesEntries,
includes,
uniqueIncludes,
&dagChecker,
config,
debugIncludes,
language);
std::vector<cmTargetInternals::TargetPropertyEntry*>
linkInterfaceIncludeDirectoriesEntries;
this->Internal->AddInterfaceEntries(
this, config, "INTERFACE_INCLUDE_DIRECTORIES",
linkInterfaceIncludeDirectoriesEntries);
if(this->Makefile->IsOn("APPLE"))
{
LinkImplementation const* impl = this->GetLinkImplementation(config);
for(std::vector<cmLinkImplItem>::const_iterator
it = impl->Libraries.begin();
it != impl->Libraries.end(); ++it)
{
std::string libDir = cmSystemTools::CollapseFullPath(*it);
static cmsys::RegularExpression
frameworkCheck("(.*\\.framework)(/Versions/[^/]+)?/[^/]+$");
if(!frameworkCheck.find(libDir))
{
continue;
}
libDir = frameworkCheck.match(1);
cmGeneratorExpression ge;
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge =
ge.Parse(libDir.c_str());
linkInterfaceIncludeDirectoriesEntries
.push_back(new cmTargetInternals::TargetPropertyEntry(cge));
}
}
processIncludeDirectories(this,
linkInterfaceIncludeDirectoriesEntries,
includes,
uniqueIncludes,
&dagChecker,
config,
debugIncludes,
language);
deleteAndClear(linkInterfaceIncludeDirectoriesEntries);
return includes;
}
//----------------------------------------------------------------------------
static void processCompileOptionsInternal(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &options,
UNORDERED_SET<std::string> &uniqueOptions,
cmGeneratorExpressionDAGChecker *dagChecker,
const std::string& config, bool debugOptions, const char *logName,
std::string const& language)
{
cmMakefile *mf = tgt->GetMakefile();
for (std::vector<cmTargetInternals::TargetPropertyEntry*>::const_iterator
it = entries.begin(), end = entries.end(); it != end; ++it)
{
std::vector<std::string> entryOptions;
cmSystemTools::ExpandListArgument((*it)->ge->Evaluate(mf,
config,
false,
tgt,
dagChecker,
language),
entryOptions);
std::string usedOptions;
for(std::vector<std::string>::iterator
li = entryOptions.begin(); li != entryOptions.end(); ++li)
{
std::string const& opt = *li;
if(uniqueOptions.insert(opt).second)
{
options.push_back(opt);
if (debugOptions)
{
usedOptions += " * " + opt + "\n";
}
}
}
if (!usedOptions.empty())
{
mf->GetCMakeInstance()->IssueMessage(cmake::LOG,
std::string("Used compile ") + logName
+ std::string(" for target ")
+ tgt->GetName() + ":\n"
+ usedOptions, (*it)->ge->GetBacktrace());
}
}
}
//----------------------------------------------------------------------------
static void processCompileOptions(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &options,
UNORDERED_SET<std::string> &uniqueOptions,
cmGeneratorExpressionDAGChecker *dagChecker,
const std::string& config, bool debugOptions,
std::string const& language)
{
processCompileOptionsInternal(tgt, entries, options, uniqueOptions,
dagChecker, config, debugOptions, "options",
language);
}
//----------------------------------------------------------------------------
void cmTarget::GetAutoUicOptions(std::vector<std::string> &result,
const std::string& config) const
{
const char *prop
= this->GetLinkInterfaceDependentStringProperty("AUTOUIC_OPTIONS",
config);
if (!prop)
{
return;
}
cmGeneratorExpression ge;
cmGeneratorExpressionDAGChecker dagChecker(
this->GetName(),
"AUTOUIC_OPTIONS", 0, 0);
cmSystemTools::ExpandListArgument(ge.Parse(prop)
->Evaluate(this->Makefile,
config,
false,
this,
&dagChecker),
result);
}
//----------------------------------------------------------------------------
void cmTarget::GetCompileOptions(std::vector<std::string> &result,
const std::string& config,
const std::string& language) const
{
UNORDERED_SET<std::string> uniqueOptions;
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(),
"COMPILE_OPTIONS", 0, 0);
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugOptions = !this->DebugCompileOptionsDone
&& std::find(debugProperties.begin(),
debugProperties.end(),
"COMPILE_OPTIONS")
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugCompileOptionsDone = true;
}
processCompileOptions(this,
this->Internal->CompileOptionsEntries,
result,
uniqueOptions,
&dagChecker,
config,
debugOptions,
language);
std::vector<cmTargetInternals::TargetPropertyEntry*>
linkInterfaceCompileOptionsEntries;
this->Internal->AddInterfaceEntries(
this, config, "INTERFACE_COMPILE_OPTIONS",
linkInterfaceCompileOptionsEntries);
processCompileOptions(this,
linkInterfaceCompileOptionsEntries,
result,
uniqueOptions,
&dagChecker,
config,
debugOptions,
language);
deleteAndClear(linkInterfaceCompileOptionsEntries);
}
//----------------------------------------------------------------------------
static void processCompileDefinitions(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &options,
UNORDERED_SET<std::string> &uniqueOptions,
cmGeneratorExpressionDAGChecker *dagChecker,
const std::string& config, bool debugOptions,
std::string const& language)
{
processCompileOptionsInternal(tgt, entries, options, uniqueOptions,
dagChecker, config, debugOptions,
"definitions", language);
}
//----------------------------------------------------------------------------
void cmTarget::GetCompileDefinitions(std::vector<std::string> &list,
const std::string& config,
const std::string& language) const
{
UNORDERED_SET<std::string> uniqueOptions;
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(),
"COMPILE_DEFINITIONS", 0, 0);
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugDefines = !this->DebugCompileDefinitionsDone
&& std::find(debugProperties.begin(),
debugProperties.end(),
"COMPILE_DEFINITIONS")
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugCompileDefinitionsDone = true;
}
processCompileDefinitions(this,
this->Internal->CompileDefinitionsEntries,
list,
uniqueOptions,
&dagChecker,
config,
debugDefines,
language);
std::vector<cmTargetInternals::TargetPropertyEntry*>
linkInterfaceCompileDefinitionsEntries;
this->Internal->AddInterfaceEntries(
this, config, "INTERFACE_COMPILE_DEFINITIONS",
linkInterfaceCompileDefinitionsEntries);
if (!config.empty())
{
std::string configPropName = "COMPILE_DEFINITIONS_"
+ cmSystemTools::UpperCase(config);
const char *configProp = this->GetProperty(configPropName);
if (configProp)
{
switch(this->Makefile->GetPolicyStatus(cmPolicies::CMP0043))
{
case cmPolicies::WARN:
{
std::ostringstream e;
e << this->Makefile->GetCMakeInstance()->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0043);
this->Makefile->IssueMessage(cmake::AUTHOR_WARNING,
e.str());
}
case cmPolicies::OLD:
{
cmGeneratorExpression ge;
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge =
ge.Parse(configProp);
linkInterfaceCompileDefinitionsEntries
.push_back(new cmTargetInternals::TargetPropertyEntry(cge));
}
break;
case cmPolicies::NEW:
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::REQUIRED_IF_USED:
break;
}
}
}
processCompileDefinitions(this,
linkInterfaceCompileDefinitionsEntries,
list,
uniqueOptions,
&dagChecker,
config,
debugDefines,
language);
deleteAndClear(linkInterfaceCompileDefinitionsEntries);
}
//----------------------------------------------------------------------------
static void processCompileFeatures(cmTarget const* tgt,
const std::vector<cmTargetInternals::TargetPropertyEntry*> &entries,
std::vector<std::string> &options,
UNORDERED_SET<std::string> &uniqueOptions,
cmGeneratorExpressionDAGChecker *dagChecker,
const std::string& config, bool debugOptions)
{
processCompileOptionsInternal(tgt, entries, options, uniqueOptions,
dagChecker, config, debugOptions, "features",
std::string());
}
//----------------------------------------------------------------------------
void cmTarget::GetCompileFeatures(std::vector<std::string> &result,
const std::string& config) const
{
UNORDERED_SET<std::string> uniqueFeatures;
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(),
"COMPILE_FEATURES",
0, 0);
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugFeatures = !this->DebugCompileFeaturesDone
&& std::find(debugProperties.begin(),
debugProperties.end(),
"COMPILE_FEATURES")
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugCompileFeaturesDone = true;
}
processCompileFeatures(this,
this->Internal->CompileFeaturesEntries,
result,
uniqueFeatures,
&dagChecker,
config,
debugFeatures);
std::vector<cmTargetInternals::TargetPropertyEntry*>
linkInterfaceCompileFeaturesEntries;
this->Internal->AddInterfaceEntries(
this, config, "INTERFACE_COMPILE_FEATURES",
linkInterfaceCompileFeaturesEntries);
processCompileFeatures(this,
linkInterfaceCompileFeaturesEntries,
result,
uniqueFeatures,
&dagChecker,
config,
debugFeatures);
deleteAndClear(linkInterfaceCompileFeaturesEntries);
}
//----------------------------------------------------------------------------
void cmTarget::MaybeInvalidatePropertyCache(const std::string& prop)
{
// Wipe out maps caching information affected by this property.
if(this->IsImported() && cmHasLiteralPrefix(prop, "IMPORTED"))
{
this->Internal->ImportInfoMap.clear();
}
if(!this->IsImported() && cmHasLiteralPrefix(prop, "LINK_INTERFACE_"))
{
this->ClearLinkMaps();
}
}
//----------------------------------------------------------------------------
static void cmTargetCheckLINK_INTERFACE_LIBRARIES(
const std::string& prop, const char* value, cmMakefile* context,
bool imported)
{
// Look for link-type keywords in the value.
static cmsys::RegularExpression
keys("(^|;)(debug|optimized|general)(;|$)");
if(!keys.find(value))
{
return;
}
// Support imported and non-imported versions of the property.
const char* base = (imported?
"IMPORTED_LINK_INTERFACE_LIBRARIES" :
"LINK_INTERFACE_LIBRARIES");
// Report an error.
std::ostringstream e;
e << "Property " << prop << " may not contain link-type keyword \""
<< keys.match(2) << "\". "
<< "The " << base << " property has a per-configuration "
<< "version called " << base << "_<CONFIG> which may be "
<< "used to specify per-configuration rules.";
if(!imported)
{
e << " "
<< "Alternatively, an IMPORTED library may be created, configured "
<< "with a per-configuration location, and then named in the "
<< "property value. "
<< "See the add_library command's IMPORTED mode for details."
<< "\n"
<< "If you have a list of libraries that already contains the "
<< "keyword, use the target_link_libraries command with its "
<< "LINK_INTERFACE_LIBRARIES mode to set the property. "
<< "The command automatically recognizes link-type keywords and sets "
<< "the LINK_INTERFACE_LIBRARIES and LINK_INTERFACE_LIBRARIES_DEBUG "
<< "properties accordingly.";
}
context->IssueMessage(cmake::FATAL_ERROR, e.str());
}
//----------------------------------------------------------------------------
static void cmTargetCheckINTERFACE_LINK_LIBRARIES(const char* value,
cmMakefile* context)
{
// Look for link-type keywords in the value.
static cmsys::RegularExpression
keys("(^|;)(debug|optimized|general)(;|$)");
if(!keys.find(value))
{
return;
}
// Report an error.
std::ostringstream e;
e << "Property INTERFACE_LINK_LIBRARIES may not contain link-type "
"keyword \"" << keys.match(2) << "\". The INTERFACE_LINK_LIBRARIES "
"property may contain configuration-sensitive generator-expressions "
"which may be used to specify per-configuration rules.";
context->IssueMessage(cmake::FATAL_ERROR, e.str());
}
//----------------------------------------------------------------------------
void cmTarget::CheckProperty(const std::string& prop,
cmMakefile* context) const
{
// Certain properties need checking.
if(cmHasLiteralPrefix(prop, "LINK_INTERFACE_LIBRARIES"))
{
if(const char* value = this->GetProperty(prop))
{
cmTargetCheckLINK_INTERFACE_LIBRARIES(prop, value, context, false);
}
}
if(cmHasLiteralPrefix(prop, "IMPORTED_LINK_INTERFACE_LIBRARIES"))
{
if(const char* value = this->GetProperty(prop))
{
cmTargetCheckLINK_INTERFACE_LIBRARIES(prop, value, context, true);
}
}
if(cmHasLiteralPrefix(prop, "INTERFACE_LINK_LIBRARIES"))
{
if(const char* value = this->GetProperty(prop))
{
cmTargetCheckINTERFACE_LINK_LIBRARIES(value, context);
}
}
}
//----------------------------------------------------------------------------
void cmTarget::MarkAsImported()
{
this->IsImportedTarget = true;
}
//----------------------------------------------------------------------------
bool cmTarget::HaveWellDefinedOutputFiles() const
{
return
this->GetType() == cmTarget::STATIC_LIBRARY ||
this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY ||
this->GetType() == cmTarget::EXECUTABLE;
}
//----------------------------------------------------------------------------
cmTarget::OutputInfo const* cmTarget::GetOutputInfo(
const std::string& config) const
{
// There is no output information for imported targets.
if(this->IsImported())
{
return 0;
}
// Only libraries and executables have well-defined output files.
if(!this->HaveWellDefinedOutputFiles())
{
std::string msg = "cmTarget::GetOutputInfo called for ";
msg += this->GetName();
msg += " which has type ";
msg += cmTarget::GetTargetTypeName(this->GetType());
this->GetMakefile()->IssueMessage(cmake::INTERNAL_ERROR, msg);
return 0;
}
// Lookup/compute/cache the output information for this configuration.
std::string config_upper;
if(!config.empty())
{
config_upper = cmSystemTools::UpperCase(config);
}
typedef cmTargetInternals::OutputInfoMapType OutputInfoMapType;
OutputInfoMapType::const_iterator i =
this->Internal->OutputInfoMap.find(config_upper);
if(i == this->Internal->OutputInfoMap.end())
{
OutputInfo info;
this->ComputeOutputDir(config, false, info.OutDir);
this->ComputeOutputDir(config, true, info.ImpDir);
if(!this->ComputePDBOutputDir("PDB", config, info.PdbDir))
{
info.PdbDir = info.OutDir;
}
OutputInfoMapType::value_type entry(config_upper, info);
i = this->Internal->OutputInfoMap.insert(entry).first;
}
return &i->second;
}
//----------------------------------------------------------------------------
cmTarget::CompileInfo const* cmTarget::GetCompileInfo(
const std::string& config) const
{
// There is no compile information for imported targets.
if(this->IsImported())
{
return 0;
}
if(this->GetType() > cmTarget::OBJECT_LIBRARY)
{
std::string msg = "cmTarget::GetCompileInfo called for ";
msg += this->GetName();
msg += " which has type ";
msg += cmTarget::GetTargetTypeName(this->GetType());
this->GetMakefile()->IssueMessage(cmake::INTERNAL_ERROR, msg);
return 0;
}
// Lookup/compute/cache the compile information for this configuration.
std::string config_upper;
if(!config.empty())
{
config_upper = cmSystemTools::UpperCase(config);
}
typedef cmTargetInternals::CompileInfoMapType CompileInfoMapType;
CompileInfoMapType::const_iterator i =
this->Internal->CompileInfoMap.find(config_upper);
if(i == this->Internal->CompileInfoMap.end())
{
CompileInfo info;
this->ComputePDBOutputDir("COMPILE_PDB", config, info.CompilePdbDir);
CompileInfoMapType::value_type entry(config_upper, info);
i = this->Internal->CompileInfoMap.insert(entry).first;
}
return &i->second;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetDirectory(const std::string& config,
bool implib) const
{
if (this->IsImported())
{
// Return the directory from which the target is imported.
return
cmSystemTools::GetFilenamePath(
this->ImportedGetFullPath(config, implib));
}
else if(OutputInfo const* info = this->GetOutputInfo(config))
{
// Return the directory in which the target will be built.
return implib? info->ImpDir : info->OutDir;
}
return "";
}
//----------------------------------------------------------------------------
std::string cmTarget::GetPDBDirectory(const std::string& config) const
{
if(OutputInfo const* info = this->GetOutputInfo(config))
{
// Return the directory in which the target will be built.
return info->PdbDir;
}
return "";
}
//----------------------------------------------------------------------------
std::string cmTarget::GetCompilePDBDirectory(const std::string& config) const
{
if(CompileInfo const* info = this->GetCompileInfo(config))
{
return info->CompilePdbDir;
}
return "";
}
//----------------------------------------------------------------------------
const char* cmTarget::GetLocation(const std::string& config) const
{
static std::string location;
if (this->IsImported())
{
location = this->ImportedGetFullPath(config, false);
}
else
{
location = this->GetFullPath(config, false);
}
return location.c_str();
}
//----------------------------------------------------------------------------
const char* cmTarget::GetLocationForBuild() const
{
static std::string location;
if(this->IsImported())
{
location = this->ImportedGetFullPath("", false);
return location.c_str();
}
// Now handle the deprecated build-time configuration location.
location = this->GetDirectory();
const char* cfgid = this->Makefile->GetDefinition("CMAKE_CFG_INTDIR");
if(cfgid && strcmp(cfgid, ".") != 0)
{
location += "/";
location += cfgid;
}
if(this->IsAppBundleOnApple())
{
std::string macdir = this->BuildMacContentDirectory("", "", false);
if(!macdir.empty())
{
location += "/";
location += macdir;
}
}
location += "/";
location += this->GetFullName("", false);
return location.c_str();
}
//----------------------------------------------------------------------------
void cmTarget::GetTargetVersion(int& major, int& minor) const
{
int patch;
this->GetTargetVersion(false, major, minor, patch);
}
//----------------------------------------------------------------------------
void cmTarget::GetTargetVersion(bool soversion,
int& major, int& minor, int& patch) const
{
// Set the default values.
major = 0;
minor = 0;
patch = 0;
assert(this->GetType() != INTERFACE_LIBRARY);
// Look for a VERSION or SOVERSION property.
const char* prop = soversion? "SOVERSION" : "VERSION";
if(const char* version = this->GetProperty(prop))
{
// Try to parse the version number and store the results that were
// successfully parsed.
int parsed_major;
int parsed_minor;
int parsed_patch;
switch(sscanf(version, "%d.%d.%d",
&parsed_major, &parsed_minor, &parsed_patch))
{
case 3: patch = parsed_patch; // no break!
case 2: minor = parsed_minor; // no break!
case 1: major = parsed_major; // no break!
default: break;
}
}
}
//----------------------------------------------------------------------------
const char* cmTarget::GetFeature(const std::string& feature,
const std::string& config) const
{
if(!config.empty())
{
std::string featureConfig = feature;
featureConfig += "_";
featureConfig += cmSystemTools::UpperCase(config);
if(const char* value = this->GetProperty(featureConfig))
{
return value;
}
}
if(const char* value = this->GetProperty(feature))
{
return value;
}
return this->Makefile->GetFeature(feature, config);
}
//----------------------------------------------------------------------------
bool cmTarget::GetFeatureAsBool(const std::string& feature,
const std::string& config) const
{
return cmSystemTools::IsOn(this->GetFeature(feature, config));
}
//----------------------------------------------------------------------------
bool cmTarget::HandleLocationPropertyPolicy(cmMakefile* context) const
{
if (this->IsImported())
{
return true;
}
std::ostringstream e;
const char *modal = 0;
cmake::MessageType messageType = cmake::AUTHOR_WARNING;
switch (context->GetPolicyStatus(cmPolicies::CMP0026))
{
case cmPolicies::WARN:
e << (this->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0026)) << "\n";
modal = "should";
case cmPolicies::OLD:
break;
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::NEW:
modal = "may";
messageType = cmake::FATAL_ERROR;
}
if (modal)
{
e << "The LOCATION property " << modal << " not be read from target \""
<< this->GetName() << "\". Use the target name directly with "
"add_custom_command, or use the generator expression $<TARGET_FILE>, "
"as appropriate.\n";
context->IssueMessage(messageType, e.str());
}
return messageType != cmake::FATAL_ERROR;
}
//----------------------------------------------------------------------------
static void MakePropertyList(std::string& output,
std::vector<cmTargetInternals::TargetPropertyEntry*> const& values)
{
output = "";
std::string sep;
for (std::vector<cmTargetInternals::TargetPropertyEntry*>::const_iterator
it = values.begin(), end = values.end();
it != end; ++it)
{
output += sep;
output += (*it)->ge->GetInput();
sep = ";";
}
}
//----------------------------------------------------------------------------
const char *cmTarget::GetProperty(const std::string& prop) const
{
return this->GetProperty(prop, this->Makefile);
}
//----------------------------------------------------------------------------
const char *cmTarget::GetProperty(const std::string& prop,
cmMakefile* context) const
{
if (this->GetType() == INTERFACE_LIBRARY
&& !whiteListedInterfaceProperty(prop))
{
std::ostringstream e;
e << "INTERFACE_LIBRARY targets may only have whitelisted properties. "
"The property \"" << prop << "\" is not allowed.";
context->IssueMessage(cmake::FATAL_ERROR, e.str());
return 0;
}
// Watch for special "computed" properties that are dependent on
// other properties or variables. Always recompute them.
if(this->GetType() == cmTarget::EXECUTABLE ||
this->GetType() == cmTarget::STATIC_LIBRARY ||
this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY ||
this->GetType() == cmTarget::UNKNOWN_LIBRARY)
{
static const std::string propLOCATION = "LOCATION";
if(prop == propLOCATION)
{
if (!this->HandleLocationPropertyPolicy(context))
{
return 0;
}
// Set the LOCATION property of the target.
//
// For an imported target this is the location of an arbitrary
// available configuration.
//
// For a non-imported target this is deprecated because it
// cannot take into account the per-configuration name of the
// target because the configuration type may not be known at
// CMake time.
this->Properties.SetProperty(propLOCATION, this->GetLocationForBuild(),
cmProperty::TARGET);
}
// Support "LOCATION_<CONFIG>".
else if(cmHasLiteralPrefix(prop, "LOCATION_"))
{
if (!this->HandleLocationPropertyPolicy(context))
{
return 0;
}
const char* configName = prop.c_str() + 9;
this->Properties.SetProperty(prop,
this->GetLocation(configName),
cmProperty::TARGET);
}
// Support "<CONFIG>_LOCATION".
else if(cmHasLiteralSuffix(prop, "_LOCATION"))
{
std::string configName(prop.c_str(), prop.size() - 9);
if(configName != "IMPORTED")
{
if (!this->HandleLocationPropertyPolicy(context))
{
return 0;
}
this->Properties.SetProperty(prop,
this->GetLocation(configName),
cmProperty::TARGET);
}
}
}
static UNORDERED_SET<std::string> specialProps;
#define MAKE_STATIC_PROP(PROP) \
static const std::string prop##PROP = #PROP
MAKE_STATIC_PROP(LINK_LIBRARIES);
MAKE_STATIC_PROP(TYPE);
MAKE_STATIC_PROP(INCLUDE_DIRECTORIES);
MAKE_STATIC_PROP(COMPILE_FEATURES);
MAKE_STATIC_PROP(COMPILE_OPTIONS);
MAKE_STATIC_PROP(COMPILE_DEFINITIONS);
MAKE_STATIC_PROP(IMPORTED);
MAKE_STATIC_PROP(NAME);
MAKE_STATIC_PROP(SOURCES);
#undef MAKE_STATIC_PROP
if(specialProps.empty())
{
specialProps.insert(propLINK_LIBRARIES);
specialProps.insert(propTYPE);
specialProps.insert(propINCLUDE_DIRECTORIES);
specialProps.insert(propCOMPILE_FEATURES);
specialProps.insert(propCOMPILE_OPTIONS);
specialProps.insert(propCOMPILE_DEFINITIONS);
specialProps.insert(propIMPORTED);
specialProps.insert(propNAME);
specialProps.insert(propSOURCES);
}
if(specialProps.count(prop))
{
if(prop == propLINK_LIBRARIES)
{
if (this->Internal->LinkImplementationPropertyEntries.empty())
{
return 0;
}
static std::string output;
output = "";
std::string sep;
for (std::vector<cmValueWithOrigin>::const_iterator
it = this->Internal->LinkImplementationPropertyEntries.begin(),
end = this->Internal->LinkImplementationPropertyEntries.end();
it != end; ++it)
{
output += sep;
output += it->Value;
sep = ";";
}
return output.c_str();
}
// the type property returns what type the target is
else if (prop == propTYPE)
{
return cmTarget::GetTargetTypeName(this->GetType());
}
else if(prop == propINCLUDE_DIRECTORIES)
{
if (this->Internal->IncludeDirectoriesEntries.empty())
{
return 0;
}
static std::string output;
MakePropertyList(output, this->Internal->IncludeDirectoriesEntries);
return output.c_str();
}
else if(prop == propCOMPILE_FEATURES)
{
if (this->Internal->CompileFeaturesEntries.empty())
{
return 0;
}
static std::string output;
MakePropertyList(output, this->Internal->CompileFeaturesEntries);
return output.c_str();
}
else if(prop == propCOMPILE_OPTIONS)
{
if (this->Internal->CompileOptionsEntries.empty())
{
return 0;
}
static std::string output;
MakePropertyList(output, this->Internal->CompileOptionsEntries);
return output.c_str();
}
else if(prop == propCOMPILE_DEFINITIONS)
{
if (this->Internal->CompileDefinitionsEntries.empty())
{
return 0;
}
static std::string output;
MakePropertyList(output, this->Internal->CompileDefinitionsEntries);
return output.c_str();
}
else if (prop == propIMPORTED)
{
return this->IsImported()?"TRUE":"FALSE";
}
else if (prop == propNAME)
{
return this->GetName().c_str();
}
else if(prop == propSOURCES)
{
if (this->Internal->SourceEntries.empty())
{
return 0;
}
std::ostringstream ss;
const char* sep = "";
typedef cmTargetInternals::TargetPropertyEntry
TargetPropertyEntry;
for(std::vector<TargetPropertyEntry*>::const_iterator
i = this->Internal->SourceEntries.begin();
i != this->Internal->SourceEntries.end(); ++i)
{
std::string entry = (*i)->ge->GetInput();
std::vector<std::string> files;
cmSystemTools::ExpandListArgument(entry, files);
for (std::vector<std::string>::const_iterator
li = files.begin(); li != files.end(); ++li)
{
if(cmHasLiteralPrefix(*li, "$<TARGET_OBJECTS:") &&
(*li)[li->size() - 1] == '>')
{
std::string objLibName = li->substr(17, li->size()-18);
if (cmGeneratorExpression::Find(objLibName) != std::string::npos)
{
ss << sep;
sep = ";";
ss << *li;
continue;
}
bool addContent = false;
bool noMessage = true;
std::ostringstream e;
cmake::MessageType messageType = cmake::AUTHOR_WARNING;
switch(context->GetPolicyStatus(cmPolicies::CMP0051))
{
case cmPolicies::WARN:
e << (this->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0051)) << "\n";
noMessage = false;
case cmPolicies::OLD:
break;
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::NEW:
addContent = true;
}
if (!noMessage)
{
e << "Target \"" << this->Name << "\" contains "
"$<TARGET_OBJECTS> generator expression in its sources list. "
"This content was not previously part of the SOURCES property "
"when that property was read at configure time. Code reading "
"that property needs to be adapted to ignore the generator "
"expression using the string(GENEX_STRIP) command.";
context->IssueMessage(messageType, e.str());
}
if (addContent)
{
ss << sep;
sep = ";";
ss << *li;
}
}
else if (cmGeneratorExpression::Find(*li) == std::string::npos)
{
ss << sep;
sep = ";";
ss << *li;
}
else
{
cmSourceFile *sf = this->Makefile->GetOrCreateSource(*li);
// Construct what is known about this source file location.
cmSourceFileLocation const& location = sf->GetLocation();
std::string sname = location.GetDirectory();
if(!sname.empty())
{
sname += "/";
}
sname += location.GetName();
ss << sep;
sep = ";";
// Append this list entry.
ss << sname;
}
}
}
this->Properties.SetProperty("SOURCES", ss.str().c_str(),
cmProperty::TARGET);
}
}
bool chain = false;
const char *retVal =
this->Properties.GetPropertyValue(prop, cmProperty::TARGET, chain);
if (chain)
{
return this->Makefile->GetProperty(prop, cmProperty::TARGET);
}
return retVal;
}
//----------------------------------------------------------------------------
bool cmTarget::GetPropertyAsBool(const std::string& prop) const
{
return cmSystemTools::IsOn(this->GetProperty(prop));
}
//----------------------------------------------------------------------------
class cmTargetCollectLinkLanguages
{
public:
cmTargetCollectLinkLanguages(cmTarget const* target,
const std::string& config,
UNORDERED_SET<std::string>& languages,
cmTarget const* head):
Config(config), Languages(languages), HeadTarget(head),
Makefile(target->GetMakefile()), Target(target)
{ this->Visited.insert(target); }
void Visit(cmLinkItem const& item)
{
if(!item.Target)
{
if(item.find("::") != std::string::npos)
{
bool noMessage = false;
cmake::MessageType messageType = cmake::FATAL_ERROR;
std::ostringstream e;
switch(this->Makefile->GetPolicyStatus(cmPolicies::CMP0028))
{
case cmPolicies::WARN:
{
e << (this->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0028)) << "\n";
messageType = cmake::AUTHOR_WARNING;
}
break;
case cmPolicies::OLD:
noMessage = true;
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::NEW:
// Issue the fatal message.
break;
}
if(!noMessage)
{
e << "Target \"" << this->Target->GetName()
<< "\" links to target \"" << item
<< "\" but the target was not found. Perhaps a find_package() "
"call is missing for an IMPORTED target, or an ALIAS target is "
"missing?";
this->Makefile->GetCMakeInstance()->IssueMessage(messageType,
e.str(),
this->Target->GetBacktrace());
}
}
return;
}
if(!this->Visited.insert(item.Target).second)
{
return;
}
cmTarget::LinkInterface const* iface =
item.Target->GetLinkInterface(this->Config, this->HeadTarget);
if(!iface) { return; }
for(std::vector<std::string>::const_iterator
li = iface->Languages.begin(); li != iface->Languages.end(); ++li)
{
this->Languages.insert(*li);
}
for(std::vector<cmLinkItem>::const_iterator
li = iface->Libraries.begin(); li != iface->Libraries.end(); ++li)
{
this->Visit(*li);
}
}
private:
std::string Config;
UNORDERED_SET<std::string>& Languages;
cmTarget const* HeadTarget;
cmMakefile* Makefile;
const cmTarget* Target;
std::set<cmTarget const*> Visited;
};
//----------------------------------------------------------------------------
std::string cmTarget::GetLinkerLanguage(const std::string& config) const
{
return this->GetLinkClosure(config)->LinkerLanguage;
}
//----------------------------------------------------------------------------
cmTarget::LinkClosure const*
cmTarget::GetLinkClosure(const std::string& config) const
{
std::string key(cmSystemTools::UpperCase(config));
cmTargetInternals::LinkClosureMapType::iterator
i = this->Internal->LinkClosureMap.find(key);
if(i == this->Internal->LinkClosureMap.end())
{
LinkClosure lc;
this->ComputeLinkClosure(config, lc);
cmTargetInternals::LinkClosureMapType::value_type entry(key, lc);
i = this->Internal->LinkClosureMap.insert(entry).first;
}
return &i->second;
}
//----------------------------------------------------------------------------
class cmTargetSelectLinker
{
int Preference;
cmTarget const* Target;
cmMakefile* Makefile;
cmGlobalGenerator* GG;
UNORDERED_SET<std::string> Preferred;
public:
cmTargetSelectLinker(cmTarget const* target): Preference(0), Target(target)
{
this->Makefile = this->Target->GetMakefile();
this->GG = this->Makefile->GetLocalGenerator()->GetGlobalGenerator();
}
void Consider(const std::string& lang)
{
int preference = this->GG->GetLinkerPreference(lang);
if(preference > this->Preference)
{
this->Preference = preference;
this->Preferred.clear();
}
if(preference == this->Preference)
{
this->Preferred.insert(lang);
}
}
std::string Choose()
{
if(this->Preferred.empty())
{
return "";
}
else if(this->Preferred.size() > 1)
{
std::ostringstream e;
e << "Target " << this->Target->GetName()
<< " contains multiple languages with the highest linker preference"
<< " (" << this->Preference << "):\n";
for(UNORDERED_SET<std::string>::const_iterator
li = this->Preferred.begin(); li != this->Preferred.end(); ++li)
{
e << " " << *li << "\n";
}
e << "Set the LINKER_LANGUAGE property for this target.";
cmake* cm = this->Makefile->GetCMakeInstance();
cm->IssueMessage(cmake::FATAL_ERROR, e.str(),
this->Target->GetBacktrace());
}
return *this->Preferred.begin();
}
};
//----------------------------------------------------------------------------
void cmTarget::ComputeLinkClosure(const std::string& config,
LinkClosure& lc) const
{
// Get languages built in this target.
UNORDERED_SET<std::string> languages;
LinkImplementation const* impl = this->GetLinkImplementation(config);
for(std::vector<std::string>::const_iterator li = impl->Languages.begin();
li != impl->Languages.end(); ++li)
{
languages.insert(*li);
}
// Add interface languages from linked targets.
cmTargetCollectLinkLanguages cll(this, config, languages, this);
for(std::vector<cmLinkImplItem>::const_iterator
li = impl->Libraries.begin();
li != impl->Libraries.end(); ++li)
{
cll.Visit(*li);
}
// Store the transitive closure of languages.
for(UNORDERED_SET<std::string>::const_iterator li = languages.begin();
li != languages.end(); ++li)
{
lc.Languages.push_back(*li);
}
// Choose the language whose linker should be used.
if(this->GetProperty("HAS_CXX"))
{
lc.LinkerLanguage = "CXX";
}
else if(const char* linkerLang = this->GetProperty("LINKER_LANGUAGE"))
{
lc.LinkerLanguage = linkerLang;
}
else
{
// Find the language with the highest preference value.
cmTargetSelectLinker tsl(this);
// First select from the languages compiled directly in this target.
for(std::vector<std::string>::const_iterator li = impl->Languages.begin();
li != impl->Languages.end(); ++li)
{
tsl.Consider(*li);
}
// Now consider languages that propagate from linked targets.
for(UNORDERED_SET<std::string>::const_iterator sit = languages.begin();
sit != languages.end(); ++sit)
{
std::string propagates = "CMAKE_"+*sit+"_LINKER_PREFERENCE_PROPAGATES";
if(this->Makefile->IsOn(propagates))
{
tsl.Consider(*sit);
}
}
lc.LinkerLanguage = tsl.Choose();
}
}
//----------------------------------------------------------------------------
void cmTarget::ExpandLinkItems(std::string const& prop,
std::string const& value,
std::string const& config,
cmTarget const* headTarget,
bool usage_requirements_only,
std::vector<cmLinkItem>& items,
bool& hadHeadSensitiveCondition) const
{
cmGeneratorExpression ge;
cmGeneratorExpressionDAGChecker dagChecker(this->GetName(), prop, 0, 0);
// The $<LINK_ONLY> expression may be in a link interface to specify private
// link dependencies that are otherwise excluded from usage requirements.
if(usage_requirements_only)
{
dagChecker.SetTransitivePropertiesOnly();
}
std::vector<std::string> libs;
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(value);
cmSystemTools::ExpandListArgument(cge->Evaluate(
this->Makefile,
config,
false,
headTarget,
this, &dagChecker), libs);
this->LookupLinkItems(libs, items);
hadHeadSensitiveCondition = cge->GetHadHeadSensitiveCondition();
}
//----------------------------------------------------------------------------
void cmTarget::LookupLinkItems(std::vector<std::string> const& names,
std::vector<cmLinkItem>& items) const
{
for(std::vector<std::string>::const_iterator i = names.begin();
i != names.end(); ++i)
{
std::string name = this->CheckCMP0004(*i);
if(name == this->GetName() || name.empty())
{
continue;
}
items.push_back(cmLinkItem(name, this->FindTargetToLink(name)));
}
}
//----------------------------------------------------------------------------
const char* cmTarget::GetSuffixVariableInternal(bool implib) const
{
switch(this->GetType())
{
case cmTarget::STATIC_LIBRARY:
return "CMAKE_STATIC_LIBRARY_SUFFIX";
case cmTarget::SHARED_LIBRARY:
return (implib
? "CMAKE_IMPORT_LIBRARY_SUFFIX"
: "CMAKE_SHARED_LIBRARY_SUFFIX");
case cmTarget::MODULE_LIBRARY:
return (implib
? "CMAKE_IMPORT_LIBRARY_SUFFIX"
: "CMAKE_SHARED_MODULE_SUFFIX");
case cmTarget::EXECUTABLE:
return (implib
? "CMAKE_IMPORT_LIBRARY_SUFFIX"
// Android GUI application packages store the native
// binary as a shared library.
: (this->IsAndroid && this->GetPropertyAsBool("ANDROID_GUI")?
"CMAKE_SHARED_LIBRARY_SUFFIX" : "CMAKE_EXECUTABLE_SUFFIX"));
default:
break;
}
return "";
}
//----------------------------------------------------------------------------
const char* cmTarget::GetPrefixVariableInternal(bool implib) const
{
switch(this->GetType())
{
case cmTarget::STATIC_LIBRARY:
return "CMAKE_STATIC_LIBRARY_PREFIX";
case cmTarget::SHARED_LIBRARY:
return (implib
? "CMAKE_IMPORT_LIBRARY_PREFIX"
: "CMAKE_SHARED_LIBRARY_PREFIX");
case cmTarget::MODULE_LIBRARY:
return (implib
? "CMAKE_IMPORT_LIBRARY_PREFIX"
: "CMAKE_SHARED_MODULE_PREFIX");
case cmTarget::EXECUTABLE:
return (implib
? "CMAKE_IMPORT_LIBRARY_PREFIX"
// Android GUI application packages store the native
// binary as a shared library.
: (this->IsAndroid && this->GetPropertyAsBool("ANDROID_GUI")?
"CMAKE_SHARED_LIBRARY_PREFIX" : ""));
default:
break;
}
return "";
}
//----------------------------------------------------------------------------
std::string cmTarget::GetPDBName(const std::string& config) const
{
std::string prefix;
std::string base;
std::string suffix;
this->GetFullNameInternal(config, false, prefix, base, suffix);
std::vector<std::string> props;
std::string configUpper = cmSystemTools::UpperCase(config);
if(!configUpper.empty())
{
// PDB_NAME_<CONFIG>
props.push_back("PDB_NAME_" + configUpper);
}
// PDB_NAME
props.push_back("PDB_NAME");
for(std::vector<std::string>::const_iterator i = props.begin();
i != props.end(); ++i)
{
if(const char* outName = this->GetProperty(*i))
{
base = outName;
break;
}
}
return prefix+base+".pdb";
}
//----------------------------------------------------------------------------
std::string cmTarget::GetCompilePDBName(const std::string& config) const
{
std::string prefix;
std::string base;
std::string suffix;
this->GetFullNameInternal(config, false, prefix, base, suffix);
// Check for a per-configuration output directory target property.
std::string configUpper = cmSystemTools::UpperCase(config);
std::string configProp = "COMPILE_PDB_NAME_";
configProp += configUpper;
const char* config_name = this->GetProperty(configProp);
if(config_name && *config_name)
{
return prefix + config_name + ".pdb";
}
const char* name = this->GetProperty("COMPILE_PDB_NAME");
if(name && *name)
{
return prefix + name + ".pdb";
}
return "";
}
//----------------------------------------------------------------------------
std::string cmTarget::GetCompilePDBPath(const std::string& config) const
{
std::string dir = this->GetCompilePDBDirectory(config);
std::string name = this->GetCompilePDBName(config);
if(dir.empty() && !name.empty())
{
dir = this->GetPDBDirectory(config);
}
if(!dir.empty())
{
dir += "/";
}
return dir + name;
}
//----------------------------------------------------------------------------
bool cmTarget::HasSOName(const std::string& config) const
{
// soname is supported only for shared libraries and modules,
// and then only when the platform supports an soname flag.
return ((this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY) &&
!this->GetPropertyAsBool("NO_SONAME") &&
this->Makefile->GetSONameFlag(this->GetLinkerLanguage(config)));
}
//----------------------------------------------------------------------------
std::string cmTarget::GetSOName(const std::string& config) const
{
if(this->IsImported())
{
// Lookup the imported soname.
if(cmTarget::ImportInfo const* info = this->GetImportInfo(config))
{
if(info->NoSOName)
{
// The imported library has no builtin soname so the name
// searched at runtime will be just the filename.
return cmSystemTools::GetFilenameName(info->Location);
}
else
{
// Use the soname given if any.
if(info->SOName.find("@rpath/") == 0)
{
return info->SOName.substr(6);
}
return info->SOName;
}
}
else
{
return "";
}
}
else
{
// Compute the soname that will be built.
std::string name;
std::string soName;
std::string realName;
std::string impName;
std::string pdbName;
this->GetLibraryNames(name, soName, realName, impName, pdbName, config);
return soName;
}
}
//----------------------------------------------------------------------------
bool cmTarget::HasMacOSXRpathInstallNameDir(const std::string& config) const
{
bool install_name_is_rpath = false;
bool macosx_rpath = false;
if(!this->IsImportedTarget)
{
if(this->GetType() != cmTarget::SHARED_LIBRARY)
{
return false;
}
const char* install_name = this->GetProperty("INSTALL_NAME_DIR");
bool use_install_name =
this->GetPropertyAsBool("BUILD_WITH_INSTALL_RPATH");
if(install_name && use_install_name &&
std::string(install_name) == "@rpath")
{
install_name_is_rpath = true;
}
else if(install_name && use_install_name)
{
return false;
}
if(!install_name_is_rpath)
{
macosx_rpath = this->MacOSXRpathInstallNameDirDefault();
}
}
else
{
// Lookup the imported soname.
if(cmTarget::ImportInfo const* info = this->GetImportInfo(config))
{
if(!info->NoSOName && !info->SOName.empty())
{
if(info->SOName.find("@rpath/") == 0)
{
install_name_is_rpath = true;
}
}
else
{
std::string install_name;
cmSystemTools::GuessLibraryInstallName(info->Location, install_name);
if(install_name.find("@rpath") != std::string::npos)
{
install_name_is_rpath = true;
}
}
}
}
if(!install_name_is_rpath && !macosx_rpath)
{
return false;
}
if(!this->Makefile->IsSet("CMAKE_SHARED_LIBRARY_RUNTIME_C_FLAG"))
{
std::ostringstream w;
w << "Attempting to use";
if(macosx_rpath)
{
w << " MACOSX_RPATH";
}
else
{
w << " @rpath";
}
w << " without CMAKE_SHARED_LIBRARY_RUNTIME_C_FLAG being set.";
w << " This could be because you are using a Mac OS X version";
w << " less than 10.5 or because CMake's platform configuration is";
w << " corrupt.";
cmake* cm = this->Makefile->GetCMakeInstance();
cm->IssueMessage(cmake::FATAL_ERROR, w.str(), this->GetBacktrace());
}
return true;
}
//----------------------------------------------------------------------------
bool cmTarget::MacOSXRpathInstallNameDirDefault() const
{
// we can't do rpaths when unsupported
if(!this->Makefile->IsSet("CMAKE_SHARED_LIBRARY_RUNTIME_C_FLAG"))
{
return false;
}
const char* macosx_rpath_str = this->GetProperty("MACOSX_RPATH");
if(macosx_rpath_str)
{
return this->GetPropertyAsBool("MACOSX_RPATH");
}
cmPolicies::PolicyStatus cmp0042 = this->GetPolicyStatusCMP0042();
if(cmp0042 == cmPolicies::WARN)
{
this->Makefile->GetLocalGenerator()->GetGlobalGenerator()->
AddCMP0042WarnTarget(this->GetName());
}
if(cmp0042 == cmPolicies::NEW)
{
return true;
}
return false;
}
//----------------------------------------------------------------------------
bool cmTarget::IsImportedSharedLibWithoutSOName(
const std::string& config) const
{
if(this->IsImported() && this->GetType() == cmTarget::SHARED_LIBRARY)
{
if(cmTarget::ImportInfo const* info = this->GetImportInfo(config))
{
return info->NoSOName;
}
}
return false;
}
//----------------------------------------------------------------------------
std::string cmTarget::NormalGetRealName(const std::string& config) const
{
// This should not be called for imported targets.
// TODO: Split cmTarget into a class hierarchy to get compile-time
// enforcement of the limited imported target API.
if(this->IsImported())
{
std::string msg = "NormalGetRealName called on imported target: ";
msg += this->GetName();
this->GetMakefile()->
IssueMessage(cmake::INTERNAL_ERROR,
msg);
}
if(this->GetType() == cmTarget::EXECUTABLE)
{
// Compute the real name that will be built.
std::string name;
std::string realName;
std::string impName;
std::string pdbName;
this->GetExecutableNames(name, realName, impName, pdbName, config);
return realName;
}
else
{
// Compute the real name that will be built.
std::string name;
std::string soName;
std::string realName;
std::string impName;
std::string pdbName;
this->GetLibraryNames(name, soName, realName, impName, pdbName, config);
return realName;
}
}
//----------------------------------------------------------------------------
std::string cmTarget::GetFullName(const std::string& config,
bool implib) const
{
if(this->IsImported())
{
return this->GetFullNameImported(config, implib);
}
else
{
return this->GetFullNameInternal(config, implib);
}
}
//----------------------------------------------------------------------------
std::string
cmTarget::GetFullNameImported(const std::string& config, bool implib) const
{
return cmSystemTools::GetFilenameName(
this->ImportedGetFullPath(config, implib));
}
//----------------------------------------------------------------------------
void cmTarget::GetFullNameComponents(std::string& prefix, std::string& base,
std::string& suffix,
const std::string& config,
bool implib) const
{
this->GetFullNameInternal(config, implib, prefix, base, suffix);
}
//----------------------------------------------------------------------------
std::string cmTarget::GetFullPath(const std::string& config, bool implib,
bool realname) const
{
if(this->IsImported())
{
return this->ImportedGetFullPath(config, implib);
}
else
{
return this->NormalGetFullPath(config, implib, realname);
}
}
//----------------------------------------------------------------------------
std::string cmTarget::NormalGetFullPath(const std::string& config,
bool implib, bool realname) const
{
std::string fpath = this->GetDirectory(config, implib);
fpath += "/";
if(this->IsAppBundleOnApple())
{
fpath = this->BuildMacContentDirectory(fpath, config, false);
fpath += "/";
}
// Add the full name of the target.
if(implib)
{
fpath += this->GetFullName(config, true);
}
else if(realname)
{
fpath += this->NormalGetRealName(config);
}
else
{
fpath += this->GetFullName(config, false);
}
return fpath;
}
//----------------------------------------------------------------------------
std::string
cmTarget::ImportedGetFullPath(const std::string& config, bool implib) const
{
std::string result;
if(cmTarget::ImportInfo const* info = this->GetImportInfo(config))
{
result = implib? info->ImportLibrary : info->Location;
}
if(result.empty())
{
result = this->GetName();
result += "-NOTFOUND";
}
return result;
}
//----------------------------------------------------------------------------
std::string
cmTarget::GetFullNameInternal(const std::string& config, bool implib) const
{
std::string prefix;
std::string base;
std::string suffix;
this->GetFullNameInternal(config, implib, prefix, base, suffix);
return prefix+base+suffix;
}
//----------------------------------------------------------------------------
void cmTarget::GetFullNameInternal(const std::string& config,
bool implib,
std::string& outPrefix,
std::string& outBase,
std::string& outSuffix) const
{
// Use just the target name for non-main target types.
if(this->GetType() != cmTarget::STATIC_LIBRARY &&
this->GetType() != cmTarget::SHARED_LIBRARY &&
this->GetType() != cmTarget::MODULE_LIBRARY &&
this->GetType() != cmTarget::EXECUTABLE)
{
outPrefix = "";
outBase = this->GetName();
outSuffix = "";
return;
}
// Return an empty name for the import library if this platform
// does not support import libraries.
if(implib &&
!this->Makefile->GetDefinition("CMAKE_IMPORT_LIBRARY_SUFFIX"))
{
outPrefix = "";
outBase = "";
outSuffix = "";
return;
}
// The implib option is only allowed for shared libraries, module
// libraries, and executables.
if(this->GetType() != cmTarget::SHARED_LIBRARY &&
this->GetType() != cmTarget::MODULE_LIBRARY &&
this->GetType() != cmTarget::EXECUTABLE)
{
implib = false;
}
// Compute the full name for main target types.
const char* targetPrefix = (implib
? this->GetProperty("IMPORT_PREFIX")
: this->GetProperty("PREFIX"));
const char* targetSuffix = (implib
? this->GetProperty("IMPORT_SUFFIX")
: this->GetProperty("SUFFIX"));
const char* configPostfix = 0;
if(!config.empty())
{
std::string configProp = cmSystemTools::UpperCase(config);
configProp += "_POSTFIX";
configPostfix = this->GetProperty(configProp);
// Mac application bundles and frameworks have no postfix.
if(configPostfix &&
(this->IsAppBundleOnApple() || this->IsFrameworkOnApple()))
{
configPostfix = 0;
}
}
const char* prefixVar = this->GetPrefixVariableInternal(implib);
const char* suffixVar = this->GetSuffixVariableInternal(implib);
// Check for language-specific default prefix and suffix.
std::string ll = this->GetLinkerLanguage(config);
if(!ll.empty())
{
if(!targetSuffix && suffixVar && *suffixVar)
{
std::string langSuff = suffixVar + std::string("_") + ll;
targetSuffix = this->Makefile->GetDefinition(langSuff);
}
if(!targetPrefix && prefixVar && *prefixVar)
{
std::string langPrefix = prefixVar + std::string("_") + ll;
targetPrefix = this->Makefile->GetDefinition(langPrefix);
}
}
// if there is no prefix on the target use the cmake definition
if(!targetPrefix && prefixVar)
{
targetPrefix = this->Makefile->GetSafeDefinition(prefixVar);
}
// if there is no suffix on the target use the cmake definition
if(!targetSuffix && suffixVar)
{
targetSuffix = this->Makefile->GetSafeDefinition(suffixVar);
}
// frameworks have directory prefix but no suffix
std::string fw_prefix;
if(this->IsFrameworkOnApple())
{
fw_prefix = this->GetOutputName(config, false);
fw_prefix += ".framework/";
targetPrefix = fw_prefix.c_str();
targetSuffix = 0;
}
if(this->IsCFBundleOnApple())
{
fw_prefix = this->GetCFBundleDirectory(config, false);
fw_prefix += "/";
targetPrefix = fw_prefix.c_str();
targetSuffix = 0;
}
// Begin the final name with the prefix.
outPrefix = targetPrefix?targetPrefix:"";
// Append the target name or property-specified name.
outBase += this->GetOutputName(config, implib);
// Append the per-configuration postfix.
outBase += configPostfix?configPostfix:"";
// Name shared libraries with their version number on some platforms.
if(const char* soversion = this->GetProperty("SOVERSION"))
{
if(this->GetType() == cmTarget::SHARED_LIBRARY && !implib &&
this->Makefile->IsOn("CMAKE_SHARED_LIBRARY_NAME_WITH_VERSION"))
{
outBase += "-";
outBase += soversion;
}
}
// Append the suffix.
outSuffix = targetSuffix?targetSuffix:"";
}
//----------------------------------------------------------------------------
void cmTarget::GetLibraryNames(std::string& name,
std::string& soName,
std::string& realName,
std::string& impName,
std::string& pdbName,
const std::string& config) const
{
// This should not be called for imported targets.
// TODO: Split cmTarget into a class hierarchy to get compile-time
// enforcement of the limited imported target API.
if(this->IsImported())
{
std::string msg = "GetLibraryNames called on imported target: ";
msg += this->GetName();
this->Makefile->IssueMessage(cmake::INTERNAL_ERROR,
msg);
return;
}
assert(this->GetType() != INTERFACE_LIBRARY);
// Check for library version properties.
const char* version = this->GetProperty("VERSION");
const char* soversion = this->GetProperty("SOVERSION");
if(!this->HasSOName(config) ||
this->Makefile->IsOn("CMAKE_PLATFORM_NO_VERSIONED_SONAME") ||
this->IsFrameworkOnApple())
{
// Versioning is supported only for shared libraries and modules,
// and then only when the platform supports an soname flag.
version = 0;
soversion = 0;
}
if(version && !soversion)
{
// The soversion must be set if the library version is set. Use
// the library version as the soversion.
soversion = version;
}
if(!version && soversion)
{
// Use the soversion as the library version.
version = soversion;
}
// Get the components of the library name.
std::string prefix;
std::string base;
std::string suffix;
this->GetFullNameInternal(config, false, prefix, base, suffix);
// The library name.
name = prefix+base+suffix;
if(this->IsFrameworkOnApple())
{
realName = prefix;
realName += "Versions/";
realName += this->GetFrameworkVersion();
realName += "/";
realName += base;
soName = realName;
}
else
{
// The library's soname.
this->ComputeVersionedName(soName, prefix, base, suffix,
name, soversion);
// The library's real name on disk.
this->ComputeVersionedName(realName, prefix, base, suffix,
name, version);
}
// The import library name.
if(this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY)
{
impName = this->GetFullNameInternal(config, true);
}
else
{
impName = "";
}
// The program database file name.
pdbName = this->GetPDBName(config);
}
//----------------------------------------------------------------------------
void cmTarget::ComputeVersionedName(std::string& vName,
std::string const& prefix,
std::string const& base,
std::string const& suffix,
std::string const& name,
const char* version) const
{
vName = this->IsApple? (prefix+base) : name;
if(version)
{
vName += ".";
vName += version;
}
vName += this->IsApple? suffix : std::string();
}
//----------------------------------------------------------------------------
void cmTarget::GetExecutableNames(std::string& name,
std::string& realName,
std::string& impName,
std::string& pdbName,
const std::string& config) const
{
// This should not be called for imported targets.
// TODO: Split cmTarget into a class hierarchy to get compile-time
// enforcement of the limited imported target API.
if(this->IsImported())
{
std::string msg =
"GetExecutableNames called on imported target: ";
msg += this->GetName();
this->GetMakefile()->IssueMessage(cmake::INTERNAL_ERROR, msg);
}
// This versioning is supported only for executables and then only
// when the platform supports symbolic links.
#if defined(_WIN32) && !defined(__CYGWIN__)
const char* version = 0;
#else
// Check for executable version properties.
const char* version = this->GetProperty("VERSION");
if(this->GetType() != cmTarget::EXECUTABLE || this->Makefile->IsOn("XCODE"))
{
version = 0;
}
#endif
// Get the components of the executable name.
std::string prefix;
std::string base;
std::string suffix;
this->GetFullNameInternal(config, false, prefix, base, suffix);
// The executable name.
name = prefix+base+suffix;
// The executable's real name on disk.
#if defined(__CYGWIN__)
realName = prefix+base;
#else
realName = name;
#endif
if(version)
{
realName += "-";
realName += version;
}
#if defined(__CYGWIN__)
realName += suffix;
#endif
// The import library name.
impName = this->GetFullNameInternal(config, true);
// The program database file name.
pdbName = this->GetPDBName(config);
}
//----------------------------------------------------------------------------
bool cmTarget::HasImplibGNUtoMS() const
{
return this->HasImportLibrary() && this->GetPropertyAsBool("GNUtoMS");
}
//----------------------------------------------------------------------------
bool cmTarget::GetImplibGNUtoMS(std::string const& gnuName,
std::string& out, const char* newExt) const
{
if(this->HasImplibGNUtoMS() &&
gnuName.size() > 6 && gnuName.substr(gnuName.size()-6) == ".dll.a")
{
out = gnuName.substr(0, gnuName.size()-6);
out += newExt? newExt : ".lib";
return true;
}
return false;
}
//----------------------------------------------------------------------------
void cmTarget::SetPropertyDefault(const std::string& property,
const char* default_value)
{
// Compute the name of the variable holding the default value.
std::string var = "CMAKE_";
var += property;
if(const char* value = this->Makefile->GetDefinition(var))
{
this->SetProperty(property, value);
}
else if(default_value)
{
this->SetProperty(property, default_value);
}
}
//----------------------------------------------------------------------------
bool cmTarget::HaveBuildTreeRPATH(const std::string& config) const
{
if (this->GetPropertyAsBool("SKIP_BUILD_RPATH"))
{
return false;
}
if(LinkImplementationLibraries const* impl =
this->GetLinkImplementationLibraries(config))
{
return !impl->Libraries.empty();
}
return false;
}
//----------------------------------------------------------------------------
bool cmTarget::HaveInstallTreeRPATH() const
{
const char* install_rpath = this->GetProperty("INSTALL_RPATH");
return (install_rpath && *install_rpath) &&
!this->Makefile->IsOn("CMAKE_SKIP_INSTALL_RPATH");
}
//----------------------------------------------------------------------------
bool cmTarget::NeedRelinkBeforeInstall(const std::string& config) const
{
// Only executables and shared libraries can have an rpath and may
// need relinking.
if(this->TargetTypeValue != cmTarget::EXECUTABLE &&
this->TargetTypeValue != cmTarget::SHARED_LIBRARY &&
this->TargetTypeValue != cmTarget::MODULE_LIBRARY)
{
return false;
}
// If there is no install location this target will not be installed
// and therefore does not need relinking.
if(!this->GetHaveInstallRule())
{
return false;
}
// If skipping all rpaths completely then no relinking is needed.
if(this->Makefile->IsOn("CMAKE_SKIP_RPATH"))
{
return false;
}
// If building with the install-tree rpath no relinking is needed.
if(this->GetPropertyAsBool("BUILD_WITH_INSTALL_RPATH"))
{
return false;
}
// If chrpath is going to be used no relinking is needed.
if(this->IsChrpathUsed(config))
{
return false;
}
// Check for rpath support on this platform.
std::string ll = this->GetLinkerLanguage(config);
if(!ll.empty())
{
std::string flagVar = "CMAKE_SHARED_LIBRARY_RUNTIME_";
flagVar += ll;
flagVar += "_FLAG";
if(!this->Makefile->IsSet(flagVar))
{
// There is no rpath support on this platform so nothing needs
// relinking.
return false;
}
}
else
{
// No linker language is known. This error will be reported by
// other code.
return false;
}
// If either a build or install tree rpath is set then the rpath
// will likely change between the build tree and install tree and
// this target must be relinked.
return this->HaveBuildTreeRPATH(config) || this->HaveInstallTreeRPATH();
}
//----------------------------------------------------------------------------
std::string cmTarget::GetInstallNameDirForBuildTree(
const std::string& config) const
{
// If building directly for installation then the build tree install_name
// is the same as the install tree.
if(this->GetPropertyAsBool("BUILD_WITH_INSTALL_RPATH"))
{
return GetInstallNameDirForInstallTree();
}
// Use the build tree directory for the target.
if(this->Makefile->IsOn("CMAKE_PLATFORM_HAS_INSTALLNAME") &&
!this->Makefile->IsOn("CMAKE_SKIP_RPATH") &&
!this->GetPropertyAsBool("SKIP_BUILD_RPATH"))
{
std::string dir;
bool macosx_rpath = this->MacOSXRpathInstallNameDirDefault();
if(macosx_rpath)
{
dir = "@rpath";
}
else
{
dir = this->GetDirectory(config);
}
dir += "/";
return dir;
}
else
{
return "";
}
}
//----------------------------------------------------------------------------
std::string cmTarget::GetInstallNameDirForInstallTree() const
{
if(this->Makefile->IsOn("CMAKE_PLATFORM_HAS_INSTALLNAME"))
{
std::string dir;
const char* install_name_dir = this->GetProperty("INSTALL_NAME_DIR");
if(!this->Makefile->IsOn("CMAKE_SKIP_RPATH") &&
!this->Makefile->IsOn("CMAKE_SKIP_INSTALL_RPATH"))
{
if(install_name_dir && *install_name_dir)
{
dir = install_name_dir;
dir += "/";
}
}
if(!install_name_dir)
{
if(this->MacOSXRpathInstallNameDirDefault())
{
dir = "@rpath/";
}
}
return dir;
}
else
{
return "";
}
}
//----------------------------------------------------------------------------
const char* cmTarget::GetOutputTargetType(bool implib) const
{
switch(this->GetType())
{
case cmTarget::SHARED_LIBRARY:
if(this->DLLPlatform)
{
if(implib)
{
// A DLL import library is treated as an archive target.
return "ARCHIVE";
}
else
{
// A DLL shared library is treated as a runtime target.
return "RUNTIME";
}
}
else
{
// For non-DLL platforms shared libraries are treated as
// library targets.
return "LIBRARY";
}
case cmTarget::STATIC_LIBRARY:
// Static libraries are always treated as archive targets.
return "ARCHIVE";
case cmTarget::MODULE_LIBRARY:
if(implib)
{
// Module libraries are always treated as library targets.
return "ARCHIVE";
}
else
{
// Module import libraries are treated as archive targets.
return "LIBRARY";
}
case cmTarget::EXECUTABLE:
if(implib)
{
// Executable import libraries are treated as archive targets.
return "ARCHIVE";
}
else
{
// Executables are always treated as runtime targets.
return "RUNTIME";
}
default:
break;
}
return "";
}
//----------------------------------------------------------------------------
bool cmTarget::ComputeOutputDir(const std::string& config,
bool implib, std::string& out) const
{
bool usesDefaultOutputDir = false;
std::string conf = config;
// Look for a target property defining the target output directory
// based on the target type.
std::string targetTypeName = this->GetOutputTargetType(implib);
const char* propertyName = 0;
std::string propertyNameStr = targetTypeName;
if(!propertyNameStr.empty())
{
propertyNameStr += "_OUTPUT_DIRECTORY";
propertyName = propertyNameStr.c_str();
}
// Check for a per-configuration output directory target property.
std::string configUpper = cmSystemTools::UpperCase(conf);
const char* configProp = 0;
std::string configPropStr = targetTypeName;
if(!configPropStr.empty())
{
configPropStr += "_OUTPUT_DIRECTORY_";
configPropStr += configUpper;
configProp = configPropStr.c_str();
}
// Select an output directory.
if(const char* config_outdir = this->GetProperty(configProp))
{
// Use the user-specified per-configuration output directory.
out = config_outdir;
// Skip per-configuration subdirectory.
conf = "";
}
else if(const char* outdir = this->GetProperty(propertyName))
{
// Use the user-specified output directory.
out = outdir;
}
else if(this->GetType() == cmTarget::EXECUTABLE)
{
// Lookup the output path for executables.
out = this->Makefile->GetSafeDefinition("EXECUTABLE_OUTPUT_PATH");
}
else if(this->GetType() == cmTarget::STATIC_LIBRARY ||
this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY)
{
// Lookup the output path for libraries.
out = this->Makefile->GetSafeDefinition("LIBRARY_OUTPUT_PATH");
}
if(out.empty())
{
// Default to the current output directory.
usesDefaultOutputDir = true;
out = ".";
}
// Convert the output path to a full path in case it is
// specified as a relative path. Treat a relative path as
// relative to the current output directory for this makefile.
out = (cmSystemTools::CollapseFullPath
(out, this->Makefile->GetStartOutputDirectory()));
// The generator may add the configuration's subdirectory.
if(!conf.empty())
{
const char *platforms = this->Makefile->GetDefinition(
"CMAKE_XCODE_EFFECTIVE_PLATFORMS");
std::string suffix =
usesDefaultOutputDir && platforms ? "$(EFFECTIVE_PLATFORM_NAME)" : "";
this->Makefile->GetLocalGenerator()->GetGlobalGenerator()->
AppendDirectoryForConfig("/", conf, suffix, out);
}
return usesDefaultOutputDir;
}
//----------------------------------------------------------------------------
bool cmTarget::ComputePDBOutputDir(const std::string& kind,
const std::string& config,
std::string& out) const
{
// Look for a target property defining the target output directory
// based on the target type.
const char* propertyName = 0;
std::string propertyNameStr = kind;
if(!propertyNameStr.empty())
{
propertyNameStr += "_OUTPUT_DIRECTORY";
propertyName = propertyNameStr.c_str();
}
std::string conf = config;
// Check for a per-configuration output directory target property.
std::string configUpper = cmSystemTools::UpperCase(conf);
const char* configProp = 0;
std::string configPropStr = kind;
if(!configPropStr.empty())
{
configPropStr += "_OUTPUT_DIRECTORY_";
configPropStr += configUpper;
configProp = configPropStr.c_str();
}
// Select an output directory.
if(const char* config_outdir = this->GetProperty(configProp))
{
// Use the user-specified per-configuration output directory.
out = config_outdir;
// Skip per-configuration subdirectory.
conf = "";
}
else if(const char* outdir = this->GetProperty(propertyName))
{
// Use the user-specified output directory.
out = outdir;
}
if(out.empty())
{
return false;
}
// Convert the output path to a full path in case it is
// specified as a relative path. Treat a relative path as
// relative to the current output directory for this makefile.
out = (cmSystemTools::CollapseFullPath
(out, this->Makefile->GetStartOutputDirectory()));
// The generator may add the configuration's subdirectory.
if(!conf.empty())
{
this->Makefile->GetLocalGenerator()->GetGlobalGenerator()->
AppendDirectoryForConfig("/", conf, "", out);
}
return true;
}
//----------------------------------------------------------------------------
bool cmTarget::UsesDefaultOutputDir(const std::string& config,
bool implib) const
{
std::string dir;
return this->ComputeOutputDir(config, implib, dir);
}
//----------------------------------------------------------------------------
std::string cmTarget::GetOutputName(const std::string& config,
bool implib) const
{
std::vector<std::string> props;
std::string type = this->GetOutputTargetType(implib);
std::string configUpper = cmSystemTools::UpperCase(config);
if(!type.empty() && !configUpper.empty())
{
// <ARCHIVE|LIBRARY|RUNTIME>_OUTPUT_NAME_<CONFIG>
props.push_back(type + "_OUTPUT_NAME_" + configUpper);
}
if(!type.empty())
{
// <ARCHIVE|LIBRARY|RUNTIME>_OUTPUT_NAME
props.push_back(type + "_OUTPUT_NAME");
}
if(!configUpper.empty())
{
// OUTPUT_NAME_<CONFIG>
props.push_back("OUTPUT_NAME_" + configUpper);
// <CONFIG>_OUTPUT_NAME
props.push_back(configUpper + "_OUTPUT_NAME");
}
// OUTPUT_NAME
props.push_back("OUTPUT_NAME");
for(std::vector<std::string>::const_iterator i = props.begin();
i != props.end(); ++i)
{
if(const char* outName = this->GetProperty(*i))
{
return outName;
}
}
return this->GetName();
}
//----------------------------------------------------------------------------
std::string cmTarget::GetFrameworkVersion() const
{
assert(this->GetType() != INTERFACE_LIBRARY);
if(const char* fversion = this->GetProperty("FRAMEWORK_VERSION"))
{
return fversion;
}
else if(const char* tversion = this->GetProperty("VERSION"))
{
return tversion;
}
else
{
return "A";
}
}
//----------------------------------------------------------------------------
const char* cmTarget::GetExportMacro() const
{
// Define the symbol for targets that export symbols.
if(this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY ||
this->IsExecutableWithExports())
{
if(const char* custom_export_name = this->GetProperty("DEFINE_SYMBOL"))
{
this->ExportMacro = custom_export_name;
}
else
{
std::string in = this->GetName();
in += "_EXPORTS";
this->ExportMacro = cmSystemTools::MakeCindentifier(in);
}
return this->ExportMacro.c_str();
}
else
{
return 0;
}
}
//----------------------------------------------------------------------------
bool cmTarget::IsNullImpliedByLinkLibraries(const std::string &p) const
{
return this->LinkImplicitNullProperties.find(p)
!= this->LinkImplicitNullProperties.end();
}
//----------------------------------------------------------------------------
template<typename PropertyType>
PropertyType getTypedProperty(cmTarget const* tgt, const std::string& prop);
//----------------------------------------------------------------------------
template<>
bool getTypedProperty<bool>(cmTarget const* tgt, const std::string& prop)
{
return tgt->GetPropertyAsBool(prop);
}
//----------------------------------------------------------------------------
template<>
const char *getTypedProperty<const char *>(cmTarget const* tgt,
const std::string& prop)
{
return tgt->GetProperty(prop);
}
enum CompatibleType
{
BoolType,
StringType,
NumberMinType,
NumberMaxType
};
//----------------------------------------------------------------------------
template<typename PropertyType>
std::pair<bool, PropertyType> consistentProperty(PropertyType lhs,
PropertyType rhs,
CompatibleType t);
//----------------------------------------------------------------------------
template<>
std::pair<bool, bool> consistentProperty(bool lhs, bool rhs, CompatibleType)
{
return std::make_pair(lhs == rhs, lhs);
}
//----------------------------------------------------------------------------
std::pair<bool, const char*> consistentStringProperty(const char *lhs,
const char *rhs)
{
const bool b = strcmp(lhs, rhs) == 0;
return std::make_pair(b, b ? lhs : 0);
}
//----------------------------------------------------------------------------
std::pair<bool, const char*> consistentNumberProperty(const char *lhs,
const char *rhs,
CompatibleType t)
{
char *pEnd;
const char* const null_ptr = 0;
long lnum = strtol(lhs, &pEnd, 0);
if (pEnd == lhs || *pEnd != '\0' || errno == ERANGE)
{
return std::pair<bool, const char*>(false, null_ptr);
}
long rnum = strtol(rhs, &pEnd, 0);
if (pEnd == rhs || *pEnd != '\0' || errno == ERANGE)
{
return std::pair<bool, const char*>(false, null_ptr);
}
if (t == NumberMaxType)
{
return std::make_pair(true, std::max(lnum, rnum) == lnum ? lhs : rhs);
}
else
{
return std::make_pair(true, std::min(lnum, rnum) == lnum ? lhs : rhs);
}
}
//----------------------------------------------------------------------------
template<>
std::pair<bool, const char*> consistentProperty(const char *lhs,
const char *rhs,
CompatibleType t)
{
if (!lhs && !rhs)
{
return std::make_pair(true, lhs);
}
if (!lhs)
{
return std::make_pair(true, rhs);
}
if (!rhs)
{
return std::make_pair(true, lhs);
}
const char* const null_ptr = 0;
switch(t)
{
case BoolType:
assert(0 && "consistentProperty for strings called with BoolType");
return std::pair<bool, const char*>(false, null_ptr);
case StringType:
return consistentStringProperty(lhs, rhs);
case NumberMinType:
case NumberMaxType:
return consistentNumberProperty(lhs, rhs, t);
}
assert(0 && "Unreachable!");
return std::pair<bool, const char*>(false, null_ptr);
}
template<typename PropertyType>
PropertyType impliedValue(PropertyType);
template<>
bool impliedValue<bool>(bool)
{
return false;
}
template<>
const char* impliedValue<const char*>(const char*)
{
return "";
}
template<typename PropertyType>
std::string valueAsString(PropertyType);
template<>
std::string valueAsString<bool>(bool value)
{
return value ? "TRUE" : "FALSE";
}
template<>
std::string valueAsString<const char*>(const char* value)
{
return value ? value : "(unset)";
}
//----------------------------------------------------------------------------
void
cmTarget::ReportPropertyOrigin(const std::string &p,
const std::string &result,
const std::string &report,
const std::string &compatibilityType) const
{
std::vector<std::string> debugProperties;
const char *debugProp =
this->Makefile->GetDefinition("CMAKE_DEBUG_TARGET_PROPERTIES");
if (debugProp)
{
cmSystemTools::ExpandListArgument(debugProp, debugProperties);
}
bool debugOrigin = !this->DebugCompatiblePropertiesDone[p]
&& std::find(debugProperties.begin(),
debugProperties.end(),
p)
!= debugProperties.end();
if (this->Makefile->IsGeneratingBuildSystem())
{
this->DebugCompatiblePropertiesDone[p] = true;
}
if (!debugOrigin)
{
return;
}
std::string areport = compatibilityType;
areport += std::string(" of property \"") + p + "\" for target \"";
areport += std::string(this->GetName());
areport += "\" (result: \"";
areport += result;
areport += "\"):\n" + report;
this->Makefile->GetCMakeInstance()->IssueMessage(cmake::LOG, areport);
}
//----------------------------------------------------------------------------
std::string compatibilityType(CompatibleType t)
{
switch(t)
{
case BoolType:
return "Boolean compatibility";
case StringType:
return "String compatibility";
case NumberMaxType:
return "Numeric maximum compatibility";
case NumberMinType:
return "Numeric minimum compatibility";
}
assert(0 && "Unreachable!");
return "";
}
//----------------------------------------------------------------------------
std::string compatibilityAgree(CompatibleType t, bool dominant)
{
switch(t)
{
case BoolType:
case StringType:
return dominant ? "(Disagree)\n" : "(Agree)\n";
case NumberMaxType:
case NumberMinType:
return dominant ? "(Dominant)\n" : "(Ignored)\n";
}
assert(0 && "Unreachable!");
return "";
}
//----------------------------------------------------------------------------
template<typename PropertyType>
PropertyType checkInterfacePropertyCompatibility(cmTarget const* tgt,
const std::string &p,
const std::string& config,
const char *defaultValue,
CompatibleType t,
PropertyType *)
{
PropertyType propContent = getTypedProperty<PropertyType>(tgt, p);
const bool explicitlySet = tgt->GetProperties()
.find(p)
!= tgt->GetProperties().end();
const bool impliedByUse =
tgt->IsNullImpliedByLinkLibraries(p);
assert((impliedByUse ^ explicitlySet)
|| (!impliedByUse && !explicitlySet));
std::vector<cmTarget const*> const& deps =
tgt->GetLinkImplementationClosure(config);
if(deps.empty())
{
return propContent;
}
bool propInitialized = explicitlySet;
std::string report = " * Target \"";
report += tgt->GetName();
if (explicitlySet)
{
report += "\" has property content \"";
report += valueAsString<PropertyType>(propContent);
report += "\"\n";
}
else if (impliedByUse)
{
report += "\" property is implied by use.\n";
}
else
{
report += "\" property not set.\n";
}
std::string interfaceProperty = "INTERFACE_" + p;
for(std::vector<cmTarget const*>::const_iterator li =
deps.begin();
li != deps.end(); ++li)
{
// An error should be reported if one dependency
// has INTERFACE_POSITION_INDEPENDENT_CODE ON and the other
// has INTERFACE_POSITION_INDEPENDENT_CODE OFF, or if the
// target itself has a POSITION_INDEPENDENT_CODE which disagrees
// with a dependency.
cmTarget const* theTarget = *li;
const bool ifaceIsSet = theTarget->GetProperties()
.find(interfaceProperty)
!= theTarget->GetProperties().end();
PropertyType ifacePropContent =
getTypedProperty<PropertyType>(theTarget,
interfaceProperty);
std::string reportEntry;
if (ifaceIsSet)
{
reportEntry += " * Target \"";
reportEntry += theTarget->GetName();
reportEntry += "\" property value \"";
reportEntry += valueAsString<PropertyType>(ifacePropContent);
reportEntry += "\" ";
}
if (explicitlySet)
{
if (ifaceIsSet)
{
std::pair<bool, PropertyType> consistent =
consistentProperty(propContent,
ifacePropContent, t);
report += reportEntry;
report += compatibilityAgree(t, propContent != consistent.second);
if (!consistent.first)
{
std::ostringstream e;
e << "Property " << p << " on target \""
<< tgt->GetName() << "\" does\nnot match the "
"INTERFACE_" << p << " property requirement\nof "
"dependency \"" << theTarget->GetName() << "\".\n";
cmSystemTools::Error(e.str().c_str());
break;
}
else
{
propContent = consistent.second;
continue;
}
}
else
{
// Explicitly set on target and not set in iface. Can't disagree.
continue;
}
}
else if (impliedByUse)
{
propContent = impliedValue<PropertyType>(propContent);
if (ifaceIsSet)
{
std::pair<bool, PropertyType> consistent =
consistentProperty(propContent,
ifacePropContent, t);
report += reportEntry;
report += compatibilityAgree(t, propContent != consistent.second);
if (!consistent.first)
{
std::ostringstream e;
e << "Property " << p << " on target \""
<< tgt->GetName() << "\" is\nimplied to be " << defaultValue
<< " because it was used to determine the link libraries\n"
"already. The INTERFACE_" << p << " property on\ndependency \""
<< theTarget->GetName() << "\" is in conflict.\n";
cmSystemTools::Error(e.str().c_str());
break;
}
else
{
propContent = consistent.second;
continue;
}
}
else
{
// Implicitly set on target and not set in iface. Can't disagree.
continue;
}
}
else
{
if (ifaceIsSet)
{
if (propInitialized)
{
std::pair<bool, PropertyType> consistent =
consistentProperty(propContent,
ifacePropContent, t);
report += reportEntry;
report += compatibilityAgree(t, propContent != consistent.second);
if (!consistent.first)
{
std::ostringstream e;
e << "The INTERFACE_" << p << " property of \""
<< theTarget->GetName() << "\" does\nnot agree with the value "
"of " << p << " already determined\nfor \""
<< tgt->GetName() << "\".\n";
cmSystemTools::Error(e.str().c_str());
break;
}
else
{
propContent = consistent.second;
continue;
}
}
else
{
report += reportEntry + "(Interface set)\n";
propContent = ifacePropContent;
propInitialized = true;
}
}
else
{
// Not set. Nothing to agree on.
continue;
}
}
}
tgt->ReportPropertyOrigin(p, valueAsString<PropertyType>(propContent),
report, compatibilityType(t));
return propContent;
}
//----------------------------------------------------------------------------
bool cmTarget::GetLinkInterfaceDependentBoolProperty(const std::string &p,
const std::string& config) const
{
return checkInterfacePropertyCompatibility<bool>(this, p, config, "FALSE",
BoolType, 0);
}
//----------------------------------------------------------------------------
const char * cmTarget::GetLinkInterfaceDependentStringProperty(
const std::string &p,
const std::string& config) const
{
return checkInterfacePropertyCompatibility<const char *>(this,
p,
config,
"empty",
StringType, 0);
}
//----------------------------------------------------------------------------
const char * cmTarget::GetLinkInterfaceDependentNumberMinProperty(
const std::string &p,
const std::string& config) const
{
return checkInterfacePropertyCompatibility<const char *>(this,
p,
config,
"empty",
NumberMinType, 0);
}
//----------------------------------------------------------------------------
const char * cmTarget::GetLinkInterfaceDependentNumberMaxProperty(
const std::string &p,
const std::string& config) const
{
return checkInterfacePropertyCompatibility<const char *>(this,
p,
config,
"empty",
NumberMaxType, 0);
}
//----------------------------------------------------------------------------
bool cmTarget::IsLinkInterfaceDependentBoolProperty(const std::string &p,
const std::string& config) const
{
if (this->TargetTypeValue == OBJECT_LIBRARY
|| this->TargetTypeValue == INTERFACE_LIBRARY)
{
return false;
}
return this->GetCompatibleInterfaces(config).PropsBool.count(p) > 0;
}
//----------------------------------------------------------------------------
bool cmTarget::IsLinkInterfaceDependentStringProperty(const std::string &p,
const std::string& config) const
{
if (this->TargetTypeValue == OBJECT_LIBRARY
|| this->TargetTypeValue == INTERFACE_LIBRARY)
{
return false;
}
return this->GetCompatibleInterfaces(config).PropsString.count(p) > 0;
}
//----------------------------------------------------------------------------
bool cmTarget::IsLinkInterfaceDependentNumberMinProperty(const std::string &p,
const std::string& config) const
{
if (this->TargetTypeValue == OBJECT_LIBRARY
|| this->TargetTypeValue == INTERFACE_LIBRARY)
{
return false;
}
return this->GetCompatibleInterfaces(config).PropsNumberMin.count(p) > 0;
}
//----------------------------------------------------------------------------
bool cmTarget::IsLinkInterfaceDependentNumberMaxProperty(const std::string &p,
const std::string& config) const
{
if (this->TargetTypeValue == OBJECT_LIBRARY
|| this->TargetTypeValue == INTERFACE_LIBRARY)
{
return false;
}
return this->GetCompatibleInterfaces(config).PropsNumberMax.count(p) > 0;
}
//----------------------------------------------------------------------------
void
cmTarget::GetObjectLibrariesCMP0026(std::vector<cmTarget*>& objlibs) const
{
// At configure-time, this method can be called as part of getting the
// LOCATION property or to export() a file to be include()d. However
// there is no cmGeneratorTarget at configure-time, so search the SOURCES
// for TARGET_OBJECTS instead for backwards compatibility with OLD
// behavior of CMP0024 and CMP0026 only.
typedef cmTargetInternals::TargetPropertyEntry
TargetPropertyEntry;
for(std::vector<TargetPropertyEntry*>::const_iterator
i = this->Internal->SourceEntries.begin();
i != this->Internal->SourceEntries.end(); ++i)
{
std::string entry = (*i)->ge->GetInput();
std::vector<std::string> files;
cmSystemTools::ExpandListArgument(entry, files);
for (std::vector<std::string>::const_iterator
li = files.begin(); li != files.end(); ++li)
{
if(cmHasLiteralPrefix(*li, "$<TARGET_OBJECTS:") &&
(*li)[li->size() - 1] == '>')
{
std::string objLibName = li->substr(17, li->size()-18);
if (cmGeneratorExpression::Find(objLibName) != std::string::npos)
{
continue;
}
cmTarget *objLib = this->Makefile->FindTargetToUse(objLibName);
if(objLib)
{
objlibs.push_back(objLib);
}
}
}
}
}
//----------------------------------------------------------------------------
void cmTarget::GetLanguages(std::set<std::string>& languages,
const std::string& config) const
{
std::vector<cmSourceFile*> sourceFiles;
this->GetSourceFiles(sourceFiles, config);
for(std::vector<cmSourceFile*>::const_iterator
i = sourceFiles.begin(); i != sourceFiles.end(); ++i)
{
const std::string& lang = (*i)->GetLanguage();
if(!lang.empty())
{
languages.insert(lang);
}
}
std::vector<cmTarget*> objectLibraries;
std::vector<cmSourceFile const*> externalObjects;
if (this->Makefile->GetGeneratorTargets().empty())
{
this->GetObjectLibrariesCMP0026(objectLibraries);
}
else
{
cmGeneratorTarget* gt = this->Makefile->GetLocalGenerator()
->GetGlobalGenerator()
->GetGeneratorTarget(this);
gt->GetExternalObjects(externalObjects, config);
for(std::vector<cmSourceFile const*>::const_iterator
i = externalObjects.begin(); i != externalObjects.end(); ++i)
{
std::string objLib = (*i)->GetObjectLibrary();
if (cmTarget* tgt = this->Makefile->FindTargetToUse(objLib))
{
objectLibraries.push_back(tgt);
}
}
}
for(std::vector<cmTarget*>::const_iterator
i = objectLibraries.begin(); i != objectLibraries.end(); ++i)
{
(*i)->GetLanguages(languages, config);
}
}
//----------------------------------------------------------------------------
bool cmTarget::IsChrpathUsed(const std::string& config) const
{
// Only certain target types have an rpath.
if(!(this->GetType() == cmTarget::SHARED_LIBRARY ||
this->GetType() == cmTarget::MODULE_LIBRARY ||
this->GetType() == cmTarget::EXECUTABLE))
{
return false;
}
// If the target will not be installed we do not need to change its
// rpath.
if(!this->GetHaveInstallRule())
{
return false;
}
// Skip chrpath if skipping rpath altogether.
if(this->Makefile->IsOn("CMAKE_SKIP_RPATH"))
{
return false;
}
// Skip chrpath if it does not need to be changed at install time.
if(this->GetPropertyAsBool("BUILD_WITH_INSTALL_RPATH"))
{
return false;
}
// Allow the user to disable builtin chrpath explicitly.
if(this->Makefile->IsOn("CMAKE_NO_BUILTIN_CHRPATH"))
{
return false;
}
if(this->Makefile->IsOn("CMAKE_PLATFORM_HAS_INSTALLNAME"))
{
return true;
}
#if defined(CMAKE_USE_ELF_PARSER)
// Enable if the rpath flag uses a separator and the target uses ELF
// binaries.
std::string ll = this->GetLinkerLanguage(config);
if(!ll.empty())
{
std::string sepVar = "CMAKE_SHARED_LIBRARY_RUNTIME_";
sepVar += ll;
sepVar += "_FLAG_SEP";
const char* sep = this->Makefile->GetDefinition(sepVar);
if(sep && *sep)
{
// TODO: Add ELF check to ABI detection and get rid of
// CMAKE_EXECUTABLE_FORMAT.
if(const char* fmt =
this->Makefile->GetDefinition("CMAKE_EXECUTABLE_FORMAT"))
{
return strcmp(fmt, "ELF") == 0;
}
}
}
#endif
static_cast<void>(config);
return false;
}
//----------------------------------------------------------------------------
cmTarget::ImportInfo const*
cmTarget::GetImportInfo(const std::string& config) const
{
// There is no imported information for non-imported targets.
if(!this->IsImported())
{
return 0;
}
// Lookup/compute/cache the import information for this
// configuration.
std::string config_upper;
if(!config.empty())
{
config_upper = cmSystemTools::UpperCase(config);
}
else
{
config_upper = "NOCONFIG";
}
typedef cmTargetInternals::ImportInfoMapType ImportInfoMapType;
ImportInfoMapType::const_iterator i =
this->Internal->ImportInfoMap.find(config_upper);
if(i == this->Internal->ImportInfoMap.end())
{
ImportInfo info;
this->ComputeImportInfo(config_upper, info);
ImportInfoMapType::value_type entry(config_upper, info);
i = this->Internal->ImportInfoMap.insert(entry).first;
}
if(this->GetType() == INTERFACE_LIBRARY)
{
return &i->second;
}
// If the location is empty then the target is not available for
// this configuration.
if(i->second.Location.empty() && i->second.ImportLibrary.empty())
{
return 0;
}
// Return the import information.
return &i->second;
}
bool cmTarget::GetMappedConfig(std::string const& desired_config,
const char** loc,
const char** imp,
std::string& suffix) const
{
if (this->GetType() == INTERFACE_LIBRARY)
{
// This method attempts to find a config-specific LOCATION for the
// IMPORTED library. In the case of INTERFACE_LIBRARY, there is no
// LOCATION at all, so leaving *loc and *imp unchanged is the appropriate
// and valid response.
return true;
}
// Track the configuration-specific property suffix.
suffix = "_";
suffix += desired_config;
std::vector<std::string> mappedConfigs;
{
std::string mapProp = "MAP_IMPORTED_CONFIG_";
mapProp += desired_config;
if(const char* mapValue = this->GetProperty(mapProp))
{
cmSystemTools::ExpandListArgument(mapValue, mappedConfigs);
}
}
// If we needed to find one of the mapped configurations but did not
// On a DLL platform there may be only IMPORTED_IMPLIB for a shared
// library or an executable with exports.
bool allowImp = this->HasImportLibrary();
// If a mapping was found, check its configurations.
for(std::vector<std::string>::const_iterator mci = mappedConfigs.begin();
!*loc && !*imp && mci != mappedConfigs.end(); ++mci)
{
// Look for this configuration.
std::string mcUpper = cmSystemTools::UpperCase(*mci);
std::string locProp = "IMPORTED_LOCATION_";
locProp += mcUpper;
*loc = this->GetProperty(locProp);
if(allowImp)
{
std::string impProp = "IMPORTED_IMPLIB_";
impProp += mcUpper;
*imp = this->GetProperty(impProp);
}
// If it was found, use it for all properties below.
if(*loc || *imp)
{
suffix = "_";
suffix += mcUpper;
}
}
// If we needed to find one of the mapped configurations but did not
// then the target is not found. The project does not want any
// other configuration.
if(!mappedConfigs.empty() && !*loc && !*imp)
{
return false;
}
// If we have not yet found it then there are no mapped
// configurations. Look for an exact-match.
if(!*loc && !*imp)
{
std::string locProp = "IMPORTED_LOCATION";
locProp += suffix;
*loc = this->GetProperty(locProp);
if(allowImp)
{
std::string impProp = "IMPORTED_IMPLIB";
impProp += suffix;
*imp = this->GetProperty(impProp);
}
}
// If we have not yet found it then there are no mapped
// configurations and no exact match.
if(!*loc && !*imp)
{
// The suffix computed above is not useful.
suffix = "";
// Look for a configuration-less location. This may be set by
// manually-written code.
*loc = this->GetProperty("IMPORTED_LOCATION");
if(allowImp)
{
*imp = this->GetProperty("IMPORTED_IMPLIB");
}
}
// If we have not yet found it then the project is willing to try
// any available configuration.
if(!*loc && !*imp)
{
std::vector<std::string> availableConfigs;
if(const char* iconfigs = this->GetProperty("IMPORTED_CONFIGURATIONS"))
{
cmSystemTools::ExpandListArgument(iconfigs, availableConfigs);
}
for(std::vector<std::string>::const_iterator
aci = availableConfigs.begin();
!*loc && !*imp && aci != availableConfigs.end(); ++aci)
{
suffix = "_";
suffix += cmSystemTools::UpperCase(*aci);
std::string locProp = "IMPORTED_LOCATION";
locProp += suffix;
*loc = this->GetProperty(locProp);
if(allowImp)
{
std::string impProp = "IMPORTED_IMPLIB";
impProp += suffix;
*imp = this->GetProperty(impProp);
}
}
}
// If we have not yet found it then the target is not available.
if(!*loc && !*imp)
{
return false;
}
return true;
}
//----------------------------------------------------------------------------
void cmTarget::ComputeImportInfo(std::string const& desired_config,
ImportInfo& info) const
{
// This method finds information about an imported target from its
// properties. The "IMPORTED_" namespace is reserved for properties
// defined by the project exporting the target.
// Initialize members.
info.NoSOName = false;
const char* loc = 0;
const char* imp = 0;
std::string suffix;
if (!this->GetMappedConfig(desired_config, &loc, &imp, suffix))
{
return;
}
// Get the link interface.
{
std::string linkProp = "INTERFACE_LINK_LIBRARIES";
const char *propertyLibs = this->GetProperty(linkProp);
if (this->GetType() != INTERFACE_LIBRARY)
{
if(!propertyLibs)
{
linkProp = "IMPORTED_LINK_INTERFACE_LIBRARIES";
linkProp += suffix;
propertyLibs = this->GetProperty(linkProp);
}
if(!propertyLibs)
{
linkProp = "IMPORTED_LINK_INTERFACE_LIBRARIES";
propertyLibs = this->GetProperty(linkProp);
}
}
if(propertyLibs)
{
info.LibrariesProp = linkProp;
info.Libraries = propertyLibs;
}
}
if(this->GetType() == INTERFACE_LIBRARY)
{
return;
}
// A provided configuration has been chosen. Load the
// configuration's properties.
// Get the location.
if(loc)
{
info.Location = loc;
}
else
{
std::string impProp = "IMPORTED_LOCATION";
impProp += suffix;
if(const char* config_location = this->GetProperty(impProp))
{
info.Location = config_location;
}
else if(const char* location = this->GetProperty("IMPORTED_LOCATION"))
{
info.Location = location;
}
}
// Get the soname.
if(this->GetType() == cmTarget::SHARED_LIBRARY)
{
std::string soProp = "IMPORTED_SONAME";
soProp += suffix;
if(const char* config_soname = this->GetProperty(soProp))
{
info.SOName = config_soname;
}
else if(const char* soname = this->GetProperty("IMPORTED_SONAME"))
{
info.SOName = soname;
}
}
// Get the "no-soname" mark.
if(this->GetType() == cmTarget::SHARED_LIBRARY)
{
std::string soProp = "IMPORTED_NO_SONAME";
soProp += suffix;
if(const char* config_no_soname = this->GetProperty(soProp))
{
info.NoSOName = cmSystemTools::IsOn(config_no_soname);
}
else if(const char* no_soname = this->GetProperty("IMPORTED_NO_SONAME"))
{
info.NoSOName = cmSystemTools::IsOn(no_soname);
}
}
// Get the import library.
if(imp)
{
info.ImportLibrary = imp;
}
else if(this->GetType() == cmTarget::SHARED_LIBRARY ||
this->IsExecutableWithExports())
{
std::string impProp = "IMPORTED_IMPLIB";
impProp += suffix;
if(const char* config_implib = this->GetProperty(impProp))
{
info.ImportLibrary = config_implib;
}
else if(const char* implib = this->GetProperty("IMPORTED_IMPLIB"))
{
info.ImportLibrary = implib;
}
}
// Get the link dependencies.
{
std::string linkProp = "IMPORTED_LINK_DEPENDENT_LIBRARIES";
linkProp += suffix;
if(const char* config_libs = this->GetProperty(linkProp))
{
info.SharedDeps = config_libs;
}
else if(const char* libs =
this->GetProperty("IMPORTED_LINK_DEPENDENT_LIBRARIES"))
{
info.SharedDeps = libs;
}
}
// Get the link languages.
if(this->LinkLanguagePropagatesToDependents())
{
std::string linkProp = "IMPORTED_LINK_INTERFACE_LANGUAGES";
linkProp += suffix;
if(const char* config_libs = this->GetProperty(linkProp))
{
info.Languages = config_libs;
}
else if(const char* libs =
this->GetProperty("IMPORTED_LINK_INTERFACE_LANGUAGES"))
{
info.Languages = libs;
}
}
// Get the cyclic repetition count.
if(this->GetType() == cmTarget::STATIC_LIBRARY)
{
std::string linkProp = "IMPORTED_LINK_INTERFACE_MULTIPLICITY";
linkProp += suffix;
if(const char* config_reps = this->GetProperty(linkProp))
{
sscanf(config_reps, "%u", &info.Multiplicity);
}
else if(const char* reps =
this->GetProperty("IMPORTED_LINK_INTERFACE_MULTIPLICITY"))
{
sscanf(reps, "%u", &info.Multiplicity);
}
}
}
//----------------------------------------------------------------------------
cmTarget::LinkInterface const* cmTarget::GetLinkInterface(
const std::string& config,
cmTarget const* head) const
{
// Imported targets have their own link interface.
if(this->IsImported())
{
return this->GetImportLinkInterface(config, head, false);
}
// Link interfaces are not supported for executables that do not
// export symbols.
if(this->GetType() == cmTarget::EXECUTABLE &&
!this->IsExecutableWithExports())
{
return 0;
}
// Lookup any existing link interface for this configuration.
std::string CONFIG = cmSystemTools::UpperCase(config);
cmTargetInternals::HeadToLinkInterfaceMap& hm =
this->Internal->LinkInterfaceMap[CONFIG];
// If the link interface does not depend on the head target
// then return the one we computed first.
if(!hm.empty() && !hm.begin()->second.HadHeadSensitiveCondition)
{
return &hm.begin()->second;
}
cmTargetInternals::OptionalLinkInterface& iface = hm[head];
if(!iface.LibrariesDone)
{
iface.LibrariesDone = true;
this->Internal->ComputeLinkInterfaceLibraries(
this, config, iface, head, false);
}
if(!iface.AllDone)
{
iface.AllDone = true;
if(iface.Exists)
{
this->Internal->ComputeLinkInterface(this, config, iface, head);
}
}
return iface.Exists? &iface : 0;
}
//----------------------------------------------------------------------------
cmTarget::LinkInterfaceLibraries const*
cmTarget::GetLinkInterfaceLibraries(const std::string& config,
cmTarget const* head,
bool usage_requirements_only) const
{
// Imported targets have their own link interface.
if(this->IsImported())
{
return this->GetImportLinkInterface(config, head, usage_requirements_only);
}
// Link interfaces are not supported for executables that do not
// export symbols.
if(this->GetType() == cmTarget::EXECUTABLE &&
!this->IsExecutableWithExports())
{
return 0;
}
// Lookup any existing link interface for this configuration.
std::string CONFIG = cmSystemTools::UpperCase(config);
cmTargetInternals::HeadToLinkInterfaceMap& hm =
(usage_requirements_only ?
this->Internal->LinkInterfaceUsageRequirementsOnlyMap[CONFIG] :
this->Internal->LinkInterfaceMap[CONFIG]);
// If the link interface does not depend on the head target
// then return the one we computed first.
if(!hm.empty() && !hm.begin()->second.HadHeadSensitiveCondition)
{
return &hm.begin()->second;
}
cmTargetInternals::OptionalLinkInterface& iface = hm[head];
if(!iface.LibrariesDone)
{
iface.LibrariesDone = true;
this->Internal->ComputeLinkInterfaceLibraries(
this, config, iface, head, usage_requirements_only);
}
return iface.Exists? &iface : 0;
}
//----------------------------------------------------------------------------
cmTarget::LinkInterface const*
cmTarget::GetImportLinkInterface(const std::string& config,
cmTarget const* headTarget,
bool usage_requirements_only) const
{
cmTarget::ImportInfo const* info = this->GetImportInfo(config);
if(!info)
{
return 0;
}
std::string CONFIG = cmSystemTools::UpperCase(config);
cmTargetInternals::HeadToLinkInterfaceMap& hm =
(usage_requirements_only ?
this->Internal->LinkInterfaceUsageRequirementsOnlyMap[CONFIG] :
this->Internal->LinkInterfaceMap[CONFIG]);
// If the link interface does not depend on the head target
// then return the one we computed first.
if(!hm.empty() && !hm.begin()->second.HadHeadSensitiveCondition)
{
return &hm.begin()->second;
}
cmTargetInternals::OptionalLinkInterface& iface = hm[headTarget];
if(!iface.AllDone)
{
iface.AllDone = true;
iface.Multiplicity = info->Multiplicity;
cmSystemTools::ExpandListArgument(info->Languages, iface.Languages);
this->ExpandLinkItems(info->LibrariesProp, info->Libraries, config,
headTarget, usage_requirements_only,
iface.Libraries,
iface.HadHeadSensitiveCondition);
std::vector<std::string> deps;
cmSystemTools::ExpandListArgument(info->SharedDeps, deps);
this->LookupLinkItems(deps, iface.SharedDeps);
}
return &iface;
}
//----------------------------------------------------------------------------
void processILibs(const std::string& config,
cmTarget const* headTarget,
cmLinkItem const& item,
std::vector<cmTarget const*>& tgts,
std::set<cmTarget const*>& emitted)
{
if (item.Target && emitted.insert(item.Target).second)
{
tgts.push_back(item.Target);
if(cmTarget::LinkInterfaceLibraries const* iface =
item.Target->GetLinkInterfaceLibraries(config, headTarget, true))
{
for(std::vector<cmLinkItem>::const_iterator
it = iface->Libraries.begin();
it != iface->Libraries.end(); ++it)
{
processILibs(config, headTarget, *it, tgts, emitted);
}
}
}
}
//----------------------------------------------------------------------------
std::vector<cmTarget const*> const&
cmTarget::GetLinkImplementationClosure(const std::string& config) const
{
cmTargetInternals::LinkImplClosure& tgts =
this->Internal->LinkImplClosureMap[config];
if(!tgts.Done)
{
tgts.Done = true;
std::set<cmTarget const*> emitted;
cmTarget::LinkImplementationLibraries const* impl
= this->GetLinkImplementationLibraries(config);
for(std::vector<cmLinkImplItem>::const_iterator
it = impl->Libraries.begin();
it != impl->Libraries.end(); ++it)
{
processILibs(config, this, *it, tgts , emitted);
}
}
return tgts;
}
//----------------------------------------------------------------------------
cmTarget::CompatibleInterfaces const&
cmTarget::GetCompatibleInterfaces(std::string const& config) const
{
cmTargetInternals::CompatibleInterfaces& compat =
this->Internal->CompatibleInterfacesMap[config];
if(!compat.Done)
{
compat.Done = true;
compat.PropsBool.insert("POSITION_INDEPENDENT_CODE");
compat.PropsString.insert("AUTOUIC_OPTIONS");
std::vector<cmTarget const*> const& deps =
this->GetLinkImplementationClosure(config);
for(std::vector<cmTarget const*>::const_iterator li = deps.begin();
li != deps.end(); ++li)
{
#define CM_READ_COMPATIBLE_INTERFACE(X, x) \
if(const char* prop = (*li)->GetProperty("COMPATIBLE_INTERFACE_" #X)) \
{ \
std::vector<std::string> props; \
cmSystemTools::ExpandListArgument(prop, props); \
compat.Props##x.insert(props.begin(), props.end()); \
}
CM_READ_COMPATIBLE_INTERFACE(BOOL, Bool)
CM_READ_COMPATIBLE_INTERFACE(STRING, String)
CM_READ_COMPATIBLE_INTERFACE(NUMBER_MIN, NumberMin)
CM_READ_COMPATIBLE_INTERFACE(NUMBER_MAX, NumberMax)
#undef CM_READ_COMPATIBLE_INTERFACE
}
}
return compat;
}
//----------------------------------------------------------------------------
void
cmTargetInternals::ComputeLinkInterfaceLibraries(
cmTarget const* thisTarget,
const std::string& config,
OptionalLinkInterface& iface,
cmTarget const* headTarget,
bool usage_requirements_only)
{
// Construct the property name suffix for this configuration.
std::string suffix = "_";
if(!config.empty())
{
suffix += cmSystemTools::UpperCase(config);
}
else
{
suffix += "NOCONFIG";
}
// An explicit list of interface libraries may be set for shared
// libraries and executables that export symbols.
const char* explicitLibraries = 0;
std::string linkIfaceProp;
if(thisTarget->PolicyStatusCMP0022 != cmPolicies::OLD &&
thisTarget->PolicyStatusCMP0022 != cmPolicies::WARN)
{
// CMP0022 NEW behavior is to use INTERFACE_LINK_LIBRARIES.
linkIfaceProp = "INTERFACE_LINK_LIBRARIES";
explicitLibraries = thisTarget->GetProperty(linkIfaceProp);
}
else if(thisTarget->GetType() == cmTarget::SHARED_LIBRARY ||
thisTarget->IsExecutableWithExports())
{
// CMP0022 OLD behavior is to use LINK_INTERFACE_LIBRARIES if set on a
// shared lib or executable.
// Lookup the per-configuration property.
linkIfaceProp = "LINK_INTERFACE_LIBRARIES";
linkIfaceProp += suffix;
explicitLibraries = thisTarget->GetProperty(linkIfaceProp);
// If not set, try the generic property.
if(!explicitLibraries)
{
linkIfaceProp = "LINK_INTERFACE_LIBRARIES";
explicitLibraries = thisTarget->GetProperty(linkIfaceProp);
}
}
if(explicitLibraries &&
thisTarget->PolicyStatusCMP0022 == cmPolicies::WARN &&
!this->PolicyWarnedCMP0022)
{
// Compare the explicitly set old link interface properties to the
// preferred new link interface property one and warn if different.
const char* newExplicitLibraries =
thisTarget->GetProperty("INTERFACE_LINK_LIBRARIES");
if (newExplicitLibraries
&& strcmp(newExplicitLibraries, explicitLibraries) != 0)
{
std::ostringstream w;
w <<
(thisTarget->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0022)) << "\n"
"Target \"" << thisTarget->GetName() << "\" has an "
"INTERFACE_LINK_LIBRARIES property which differs from its " <<
linkIfaceProp << " properties."
"\n"
"INTERFACE_LINK_LIBRARIES:\n"
" " << newExplicitLibraries << "\n" <<
linkIfaceProp << ":\n"
" " << (explicitLibraries ? explicitLibraries : "(empty)") << "\n";
thisTarget->Makefile->IssueMessage(cmake::AUTHOR_WARNING, w.str());
this->PolicyWarnedCMP0022 = true;
}
}
// There is no implicit link interface for executables or modules
// so if none was explicitly set then there is no link interface.
if(!explicitLibraries &&
(thisTarget->GetType() == cmTarget::EXECUTABLE ||
(thisTarget->GetType() == cmTarget::MODULE_LIBRARY)))
{
return;
}
iface.Exists = true;
iface.ExplicitLibraries = explicitLibraries;
if(explicitLibraries)
{
// The interface libraries have been explicitly set.
thisTarget->ExpandLinkItems(linkIfaceProp, explicitLibraries, config,
headTarget, usage_requirements_only,
iface.Libraries,
iface.HadHeadSensitiveCondition);
}
else if (thisTarget->PolicyStatusCMP0022 == cmPolicies::WARN
|| thisTarget->PolicyStatusCMP0022 == cmPolicies::OLD)
// If CMP0022 is NEW then the plain tll signature sets the
// INTERFACE_LINK_LIBRARIES, so if we get here then the project
// cleared the property explicitly and we should not fall back
// to the link implementation.
{
// The link implementation is the default link interface.
cmTarget::LinkImplementationLibraries const* impl =
thisTarget->GetLinkImplementationLibrariesInternal(config, headTarget);
iface.Libraries.insert(iface.Libraries.end(),
impl->Libraries.begin(), impl->Libraries.end());
if(thisTarget->PolicyStatusCMP0022 == cmPolicies::WARN &&
!this->PolicyWarnedCMP0022 && !usage_requirements_only)
{
// Compare the link implementation fallback link interface to the
// preferred new link interface property and warn if different.
std::vector<cmLinkItem> ifaceLibs;
static const std::string newProp = "INTERFACE_LINK_LIBRARIES";
if(const char* newExplicitLibraries = thisTarget->GetProperty(newProp))
{
bool hadHeadSensitiveConditionDummy = false;
thisTarget->ExpandLinkItems(newProp, newExplicitLibraries, config,
headTarget, usage_requirements_only,
ifaceLibs, hadHeadSensitiveConditionDummy);
}
if (ifaceLibs != iface.Libraries)
{
std::string oldLibraries = cmJoin(impl->Libraries, ";");
std::string newLibraries = cmJoin(ifaceLibs, ";");
if(oldLibraries.empty())
{ oldLibraries = "(empty)"; }
if(newLibraries.empty())
{ newLibraries = "(empty)"; }
std::ostringstream w;
w <<
(thisTarget->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0022)) << "\n"
"Target \"" << thisTarget->GetName() << "\" has an "
"INTERFACE_LINK_LIBRARIES property. "
"This should be preferred as the source of the link interface "
"for this library but because CMP0022 is not set CMake is "
"ignoring the property and using the link implementation "
"as the link interface instead."
"\n"
"INTERFACE_LINK_LIBRARIES:\n"
" " << newLibraries << "\n"
"Link implementation:\n"
" " << oldLibraries << "\n";
thisTarget->Makefile->IssueMessage(cmake::AUTHOR_WARNING, w.str());
this->PolicyWarnedCMP0022 = true;
}
}
}
}
//----------------------------------------------------------------------------
void cmTargetInternals::ComputeLinkInterface(cmTarget const* thisTarget,
const std::string& config,
OptionalLinkInterface& iface,
cmTarget const* headTarget) const
{
if(iface.ExplicitLibraries)
{
if(thisTarget->GetType() == cmTarget::SHARED_LIBRARY
|| thisTarget->GetType() == cmTarget::STATIC_LIBRARY
|| thisTarget->GetType() == cmTarget::INTERFACE_LIBRARY)
{
// Shared libraries may have runtime implementation dependencies
// on other shared libraries that are not in the interface.
UNORDERED_SET<std::string> emitted;
for(std::vector<cmLinkItem>::const_iterator
li = iface.Libraries.begin(); li != iface.Libraries.end(); ++li)
{
emitted.insert(*li);
}
if (thisTarget->GetType() != cmTarget::INTERFACE_LIBRARY)
{
cmTarget::LinkImplementation const* impl =
thisTarget->GetLinkImplementation(config);
for(std::vector<cmLinkImplItem>::const_iterator
li = impl->Libraries.begin(); li != impl->Libraries.end(); ++li)
{
if(emitted.insert(*li).second)
{
if(li->Target)
{
// This is a runtime dependency on another shared library.
if(li->Target->GetType() == cmTarget::SHARED_LIBRARY)
{
iface.SharedDeps.push_back(*li);
}
}
else
{
// TODO: Recognize shared library file names. Perhaps this
// should be moved to cmComputeLinkInformation, but that creates
// a chicken-and-egg problem since this list is needed for its
// construction.
}
}
}
}
}
}
else if (thisTarget->PolicyStatusCMP0022 == cmPolicies::WARN
|| thisTarget->PolicyStatusCMP0022 == cmPolicies::OLD)
{
// The link implementation is the default link interface.
cmTarget::LinkImplementationLibraries const*
impl = thisTarget->GetLinkImplementationLibrariesInternal(config,
headTarget);
iface.ImplementationIsInterface = true;
iface.WrongConfigLibraries = impl->WrongConfigLibraries;
}
if(thisTarget->LinkLanguagePropagatesToDependents())
{
// Targets using this archive need its language runtime libraries.
if(cmTarget::LinkImplementation const* impl =
thisTarget->GetLinkImplementation(config))
{
iface.Languages = impl->Languages;
}
}
if(thisTarget->GetType() == cmTarget::STATIC_LIBRARY)
{
// Construct the property name suffix for this configuration.
std::string suffix = "_";
if(!config.empty())
{
suffix += cmSystemTools::UpperCase(config);
}
else
{
suffix += "NOCONFIG";
}
// How many repetitions are needed if this library has cyclic
// dependencies?
std::string propName = "LINK_INTERFACE_MULTIPLICITY";
propName += suffix;
if(const char* config_reps = thisTarget->GetProperty(propName))
{
sscanf(config_reps, "%u", &iface.Multiplicity);
}
else if(const char* reps =
thisTarget->GetProperty("LINK_INTERFACE_MULTIPLICITY"))
{
sscanf(reps, "%u", &iface.Multiplicity);
}
}
}
//----------------------------------------------------------------------------
void cmTargetInternals::AddInterfaceEntries(
cmTarget const* thisTarget, std::string const& config,
std::string const& prop, std::vector<TargetPropertyEntry*>& entries)
{
if(cmTarget::LinkImplementationLibraries const* impl =
thisTarget->GetLinkImplementationLibraries(config))
{
for (std::vector<cmLinkImplItem>::const_iterator
it = impl->Libraries.begin(), end = impl->Libraries.end();
it != end; ++it)
{
if(it->Target)
{
std::string genex =
"$<TARGET_PROPERTY:" + *it + "," + prop + ">";
cmGeneratorExpression ge(&it->Backtrace);
cmsys::auto_ptr<cmCompiledGeneratorExpression> cge = ge.Parse(genex);
cge->SetEvaluateForBuildsystem(true);
entries.push_back(
new cmTargetInternals::TargetPropertyEntry(cge, *it));
}
}
}
}
//----------------------------------------------------------------------------
cmTarget::LinkImplementation const*
cmTarget::GetLinkImplementation(const std::string& config) const
{
// There is no link implementation for imported targets.
if(this->IsImported())
{
return 0;
}
// Populate the link implementation for this configuration.
std::string CONFIG = cmSystemTools::UpperCase(config);
cmTargetInternals::OptionalLinkImplementation&
impl = this->Internal->LinkImplMap[CONFIG][this];
if(!impl.LibrariesDone)
{
impl.LibrariesDone = true;
this->Internal
->ComputeLinkImplementationLibraries(this, config, impl, this);
}
if(!impl.LanguagesDone)
{
impl.LanguagesDone = true;
this->Internal->ComputeLinkImplementationLanguages(this, config, impl);
}
return &impl;
}
//----------------------------------------------------------------------------
cmTarget::LinkImplementationLibraries const*
cmTarget::GetLinkImplementationLibraries(const std::string& config) const
{
return this->GetLinkImplementationLibrariesInternal(config, this);
}
//----------------------------------------------------------------------------
cmTarget::LinkImplementationLibraries const*
cmTarget::GetLinkImplementationLibrariesInternal(const std::string& config,
cmTarget const* head) const
{
// There is no link implementation for imported targets.
if(this->IsImported())
{
return 0;
}
// Populate the link implementation libraries for this configuration.
std::string CONFIG = cmSystemTools::UpperCase(config);
cmTargetInternals::HeadToLinkImplementationMap& hm =
this->Internal->LinkImplMap[CONFIG];
// If the link implementation does not depend on the head target
// then return the one we computed first.
if(!hm.empty() && !hm.begin()->second.HadHeadSensitiveCondition)
{
return &hm.begin()->second;
}
cmTargetInternals::OptionalLinkImplementation& impl = hm[head];
if(!impl.LibrariesDone)
{
impl.LibrariesDone = true;
this->Internal
->ComputeLinkImplementationLibraries(this, config, impl, head);
}
return &impl;
}
//----------------------------------------------------------------------------
void
cmTargetInternals::ComputeLinkImplementationLibraries(
cmTarget const* thisTarget,
const std::string& config,
OptionalLinkImplementation& impl,
cmTarget const* head) const
{
// Collect libraries directly linked in this configuration.
for (std::vector<cmValueWithOrigin>::const_iterator
le = this->LinkImplementationPropertyEntries.begin(),
end = this->LinkImplementationPropertyEntries.end();
le != end; ++le)
{
std::vector<std::string> llibs;
cmGeneratorExpressionDAGChecker dagChecker(
thisTarget->GetName(),
"LINK_LIBRARIES", 0, 0);
cmGeneratorExpression ge(&le->Backtrace);
cmsys::auto_ptr<cmCompiledGeneratorExpression> const cge =
ge.Parse(le->Value);
std::string const evaluated =
cge->Evaluate(thisTarget->Makefile, config, false, head, &dagChecker);
cmSystemTools::ExpandListArgument(evaluated, llibs);
if(cge->GetHadHeadSensitiveCondition())
{
impl.HadHeadSensitiveCondition = true;
}
for(std::vector<std::string>::const_iterator li = llibs.begin();
li != llibs.end(); ++li)
{
// Skip entries that resolve to the target itself or are empty.
std::string name = thisTarget->CheckCMP0004(*li);
if(name == thisTarget->GetName() || name.empty())
{
if(name == thisTarget->GetName())
{
bool noMessage = false;
cmake::MessageType messageType = cmake::FATAL_ERROR;
std::ostringstream e;
switch(thisTarget->GetPolicyStatusCMP0038())
{
case cmPolicies::WARN:
{
e << (thisTarget->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0038)) << "\n";
messageType = cmake::AUTHOR_WARNING;
}
break;
case cmPolicies::OLD:
noMessage = true;
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::REQUIRED_ALWAYS:
case cmPolicies::NEW:
// Issue the fatal message.
break;
}
if(!noMessage)
{
e << "Target \"" << thisTarget->GetName() << "\" links to itself.";
thisTarget->Makefile->GetCMakeInstance()->IssueMessage(
messageType, e.str(), thisTarget->GetBacktrace());
if (messageType == cmake::FATAL_ERROR)
{
return;
}
}
}
continue;
}
// The entry is meant for this configuration.
impl.Libraries.push_back(
cmLinkImplItem(name, thisTarget->FindTargetToLink(name),
le->Backtrace, evaluated != le->Value));
}
std::set<std::string> const& seenProps = cge->GetSeenTargetProperties();
for (std::set<std::string>::const_iterator it = seenProps.begin();
it != seenProps.end(); ++it)
{
if (!thisTarget->GetProperty(*it))
{
thisTarget->LinkImplicitNullProperties.insert(*it);
}
}
cge->GetMaxLanguageStandard(thisTarget, thisTarget->MaxLanguageStandards);
}
cmTarget::LinkLibraryType linkType = thisTarget->ComputeLinkType(config);
cmTarget::LinkLibraryVectorType const& oldllibs =
thisTarget->GetOriginalLinkLibraries();
for(cmTarget::LinkLibraryVectorType::const_iterator li = oldllibs.begin();
li != oldllibs.end(); ++li)
{
if(li->second != cmTarget::GENERAL && li->second != linkType)
{
std::string name = thisTarget->CheckCMP0004(li->first);
if(name == thisTarget->GetName() || name.empty())
{
continue;
}
// Support OLD behavior for CMP0003.
impl.WrongConfigLibraries.push_back(
cmLinkItem(name, thisTarget->FindTargetToLink(name)));
}
}
}
//----------------------------------------------------------------------------
void
cmTargetInternals::ComputeLinkImplementationLanguages(
cmTarget const* thisTarget,
const std::string& config,
OptionalLinkImplementation& impl) const
{
// This target needs runtime libraries for its source languages.
std::set<std::string> languages;
// Get languages used in our source files.
thisTarget->GetLanguages(languages, config);
// Copy the set of langauges to the link implementation.
impl.Languages.insert(impl.Languages.begin(),
languages.begin(), languages.end());
}
//----------------------------------------------------------------------------
cmTarget const* cmTarget::FindTargetToLink(std::string const& name) const
{
cmTarget const* tgt = this->Makefile->FindTargetToUse(name);
// Skip targets that will not really be linked. This is probably a
// name conflict between an external library and an executable
// within the project.
if(tgt && tgt->GetType() == cmTarget::EXECUTABLE &&
!tgt->IsExecutableWithExports())
{
tgt = 0;
}
if(tgt && tgt->GetType() == cmTarget::OBJECT_LIBRARY)
{
std::ostringstream e;
e << "Target \"" << this->GetName() << "\" links to "
"OBJECT library \"" << tgt->GetName() << "\" but this is not "
"allowed. "
"One may link only to STATIC or SHARED libraries, or to executables "
"with the ENABLE_EXPORTS property set.";
cmake* cm = this->Makefile->GetCMakeInstance();
cm->IssueMessage(cmake::FATAL_ERROR, e.str(), this->GetBacktrace());
tgt = 0;
}
// Return the target found, if any.
return tgt;
}
//----------------------------------------------------------------------------
std::string cmTarget::CheckCMP0004(std::string const& item) const
{
// Strip whitespace off the library names because we used to do this
// in case variables were expanded at generate time. We no longer
// do the expansion but users link to libraries like " ${VAR} ".
std::string lib = item;
std::string::size_type pos = lib.find_first_not_of(" \t\r\n");
if(pos != lib.npos)
{
lib = lib.substr(pos, lib.npos);
}
pos = lib.find_last_not_of(" \t\r\n");
if(pos != lib.npos)
{
lib = lib.substr(0, pos+1);
}
if(lib != item)
{
cmake* cm = this->Makefile->GetCMakeInstance();
switch(this->PolicyStatusCMP0004)
{
case cmPolicies::WARN:
{
std::ostringstream w;
w << (this->Makefile->GetPolicies()
->GetPolicyWarning(cmPolicies::CMP0004)) << "\n"
<< "Target \"" << this->GetName() << "\" links to item \""
<< item << "\" which has leading or trailing whitespace.";
cm->IssueMessage(cmake::AUTHOR_WARNING, w.str(),
this->GetBacktrace());
}
case cmPolicies::OLD:
break;
case cmPolicies::NEW:
{
std::ostringstream e;
e << "Target \"" << this->GetName() << "\" links to item \""
<< item << "\" which has leading or trailing whitespace. "
<< "This is now an error according to policy CMP0004.";
cm->IssueMessage(cmake::FATAL_ERROR, e.str(), this->GetBacktrace());
}
break;
case cmPolicies::REQUIRED_IF_USED:
case cmPolicies::REQUIRED_ALWAYS:
{
std::ostringstream e;
e << (this->Makefile->GetPolicies()
->GetRequiredPolicyError(cmPolicies::CMP0004)) << "\n"
<< "Target \"" << this->GetName() << "\" links to item \""
<< item << "\" which has leading or trailing whitespace.";
cm->IssueMessage(cmake::FATAL_ERROR, e.str(), this->GetBacktrace());
}
break;
}
}
return lib;
}
template<typename PropertyType>
PropertyType getLinkInterfaceDependentProperty(cmTarget const* tgt,
const std::string& prop,
const std::string& config,
CompatibleType,
PropertyType *);
template<>
bool getLinkInterfaceDependentProperty(cmTarget const* tgt,
const std::string& prop,
const std::string& config,
CompatibleType, bool *)
{
return tgt->GetLinkInterfaceDependentBoolProperty(prop, config);
}
template<>
const char * getLinkInterfaceDependentProperty(cmTarget const* tgt,
const std::string& prop,
const std::string& config,
CompatibleType t,
const char **)
{
switch(t)
{
case BoolType:
assert(0 && "String compatibility check function called for boolean");
return 0;
case StringType:
return tgt->GetLinkInterfaceDependentStringProperty(prop, config);
case NumberMinType:
return tgt->GetLinkInterfaceDependentNumberMinProperty(prop, config);
case NumberMaxType:
return tgt->GetLinkInterfaceDependentNumberMaxProperty(prop, config);
}
assert(0 && "Unreachable!");
return 0;
}
//----------------------------------------------------------------------------
template<typename PropertyType>
void checkPropertyConsistency(cmTarget const* depender,
cmTarget const* dependee,
const std::string& propName,
std::set<std::string> &emitted,
const std::string& config,
CompatibleType t,
PropertyType *)
{
const char *prop = dependee->GetProperty(propName);
if (!prop)
{
return;
}
std::vector<std::string> props;
cmSystemTools::ExpandListArgument(prop, props);
std::string pdir =
dependee->GetMakefile()->GetRequiredDefinition("CMAKE_ROOT");
pdir += "/Help/prop_tgt/";
for(std::vector<std::string>::iterator pi = props.begin();
pi != props.end(); ++pi)
{
std::string pname = cmSystemTools::HelpFileName(*pi);
std::string pfile = pdir + pname + ".rst";
if(cmSystemTools::FileExists(pfile.c_str(), true))
{
std::ostringstream e;
e << "Target \"" << dependee->GetName() << "\" has property \""
<< *pi << "\" listed in its " << propName << " property. "
"This is not allowed. Only user-defined properties may appear "
"listed in the " << propName << " property.";
depender->GetMakefile()->IssueMessage(cmake::FATAL_ERROR, e.str());
return;
}
if(emitted.insert(*pi).second)
{
getLinkInterfaceDependentProperty<PropertyType>(depender, *pi, config,
t, 0);
if (cmSystemTools::GetErrorOccuredFlag())
{
return;
}
}
}
}
static std::string intersect(const std::set<std::string> &s1,
const std::set<std::string> &s2)
{
std::set<std::string> intersect;
std::set_intersection(s1.begin(),s1.end(),
s2.begin(),s2.end(),
std::inserter(intersect,intersect.begin()));
if (!intersect.empty())
{
return *intersect.begin();
}
return "";
}
static std::string intersect(const std::set<std::string> &s1,
const std::set<std::string> &s2,
const std::set<std::string> &s3)
{
std::string result;
result = intersect(s1, s2);
if (!result.empty())
return result;
result = intersect(s1, s3);
if (!result.empty())
return result;
return intersect(s2, s3);
}
static std::string intersect(const std::set<std::string> &s1,
const std::set<std::string> &s2,
const std::set<std::string> &s3,
const std::set<std::string> &s4)
{
std::string result;
result = intersect(s1, s2);
if (!result.empty())
return result;
result = intersect(s1, s3);
if (!result.empty())
return result;
result = intersect(s1, s4);
if (!result.empty())
return result;
return intersect(s2, s3, s4);
}
//----------------------------------------------------------------------------
void cmTarget::CheckPropertyCompatibility(cmComputeLinkInformation *info,
const std::string& config) const
{
const cmComputeLinkInformation::ItemVector &deps = info->GetItems();
std::set<std::string> emittedBools;
static std::string strBool = "COMPATIBLE_INTERFACE_BOOL";
std::set<std::string> emittedStrings;
static std::string strString = "COMPATIBLE_INTERFACE_STRING";
std::set<std::string> emittedMinNumbers;
static std::string strNumMin = "COMPATIBLE_INTERFACE_NUMBER_MIN";
std::set<std::string> emittedMaxNumbers;
static std::string strNumMax = "COMPATIBLE_INTERFACE_NUMBER_MAX";
for(cmComputeLinkInformation::ItemVector::const_iterator li =
deps.begin();
li != deps.end(); ++li)
{
if (!li->Target)
{
continue;
}
checkPropertyConsistency<bool>(this, li->Target,
strBool,
emittedBools, config, BoolType, 0);
if (cmSystemTools::GetErrorOccuredFlag())
{
return;
}
checkPropertyConsistency<const char *>(this, li->Target,
strString,
emittedStrings, config,
StringType, 0);
if (cmSystemTools::GetErrorOccuredFlag())
{
return;
}
checkPropertyConsistency<const char *>(this, li->Target,
strNumMin,
emittedMinNumbers, config,
NumberMinType, 0);
if (cmSystemTools::GetErrorOccuredFlag())
{
return;
}
checkPropertyConsistency<const char *>(this, li->Target,
strNumMax,
emittedMaxNumbers, config,
NumberMaxType, 0);
if (cmSystemTools::GetErrorOccuredFlag())
{
return;
}
}
std::string prop = intersect(emittedBools,
emittedStrings,
emittedMinNumbers,
emittedMaxNumbers);
if (!prop.empty())
{
// Use a sorted std::vector to keep the error message sorted.
std::vector<std::string> props;
std::set<std::string>::const_iterator i = emittedBools.find(prop);
if (i != emittedBools.end())
{
props.push_back(strBool);
}
i = emittedStrings.find(prop);
if (i != emittedStrings.end())
{
props.push_back(strString);
}
i = emittedMinNumbers.find(prop);
if (i != emittedMinNumbers.end())
{
props.push_back(strNumMin);
}
i = emittedMaxNumbers.find(prop);
if (i != emittedMaxNumbers.end())
{
props.push_back(strNumMax);
}
std::sort(props.begin(), props.end());
std::string propsString = cmJoin(cmRange(props).retreat(1), ", ");
propsString += " and the " + props.back();
std::ostringstream e;
e << "Property \"" << prop << "\" appears in both the "
<< propsString <<
" property in the dependencies of target \"" << this->GetName() <<
"\". This is not allowed. A property may only require compatibility "
"in a boolean interpretation, a numeric minimum, a numeric maximum or a "
"string interpretation, but not a mixture.";
this->Makefile->IssueMessage(cmake::FATAL_ERROR, e.str());
}
}
//----------------------------------------------------------------------------
cmComputeLinkInformation*
cmTarget::GetLinkInformation(const std::string& config) const
{
// Lookup any existing information for this configuration.
std::string key(cmSystemTools::UpperCase(config));
cmTargetLinkInformationMap::iterator
i = this->LinkInformation.find(key);
if(i == this->LinkInformation.end())
{
// Compute information for this configuration.
cmComputeLinkInformation* info =
new cmComputeLinkInformation(this, config);
if(!info || !info->Compute())
{
delete info;
info = 0;
}
// Store the information for this configuration.
cmTargetLinkInformationMap::value_type entry(key, info);
i = this->LinkInformation.insert(entry).first;
if (info)
{
this->CheckPropertyCompatibility(info, config);
}
}
return i->second;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetFrameworkDirectory(const std::string& config,
bool rootDir) const
{
std::string fpath;
fpath += this->GetOutputName(config, false);
fpath += ".framework";
if(!rootDir)
{
fpath += "/Versions/";
fpath += this->GetFrameworkVersion();
}
return fpath;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetCFBundleDirectory(const std::string& config,
bool contentOnly) const
{
std::string fpath;
fpath += this->GetOutputName(config, false);
fpath += ".";
const char *ext = this->GetProperty("BUNDLE_EXTENSION");
if (!ext)
{
ext = "bundle";
}
fpath += ext;
fpath += "/Contents";
if(!contentOnly)
fpath += "/MacOS";
return fpath;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetAppBundleDirectory(const std::string& config,
bool contentOnly) const
{
std::string fpath = this->GetFullName(config, false);
fpath += ".app/Contents";
if(!contentOnly)
fpath += "/MacOS";
return fpath;
}
//----------------------------------------------------------------------------
std::string cmTarget::BuildMacContentDirectory(const std::string& base,
const std::string& config,
bool contentOnly) const
{
std::string fpath = base;
if(this->IsAppBundleOnApple())
{
fpath += this->GetAppBundleDirectory(config, contentOnly);
}
if(this->IsFrameworkOnApple())
{
fpath += this->GetFrameworkDirectory(config, contentOnly);
}
if(this->IsCFBundleOnApple())
{
fpath += this->GetCFBundleDirectory(config, contentOnly);
}
return fpath;
}
//----------------------------------------------------------------------------
std::string cmTarget::GetMacContentDirectory(const std::string& config,
bool implib) const
{
// Start with the output directory for the target.
std::string fpath = this->GetDirectory(config, implib);
fpath += "/";
bool contentOnly = true;
if(this->IsFrameworkOnApple())
{
// additional files with a framework go into the version specific
// directory
contentOnly = false;
}
fpath = this->BuildMacContentDirectory(fpath, config, contentOnly);
return fpath;
}
//----------------------------------------------------------------------------
cmTargetLinkInformationMap
::cmTargetLinkInformationMap(cmTargetLinkInformationMap const& r): derived()
{
// Ideally cmTarget instances should never be copied. However until
// we can make a sweep to remove that, this copy constructor avoids
// allowing the resources (LinkInformation) from getting copied. In
// the worst case this will lead to extra cmComputeLinkInformation
// instances. We also enforce in debug mode that the map be emptied
// when copied.
static_cast<void>(r);
assert(r.empty());
}
//----------------------------------------------------------------------------
cmTargetLinkInformationMap::~cmTargetLinkInformationMap()
{
cmDeleteAll(*this);
}
//----------------------------------------------------------------------------
cmTargetInternalPointer::cmTargetInternalPointer()
{
this->Pointer = new cmTargetInternals;
}
//----------------------------------------------------------------------------
cmTargetInternalPointer
::cmTargetInternalPointer(cmTargetInternalPointer const& r)
{
// Ideally cmTarget instances should never be copied. However until
// we can make a sweep to remove that, this copy constructor avoids
// allowing the resources (Internals) to be copied.
this->Pointer = new cmTargetInternals(*r.Pointer);
}
//----------------------------------------------------------------------------
cmTargetInternalPointer::~cmTargetInternalPointer()
{
cmDeleteAll(this->Pointer->IncludeDirectoriesEntries);
cmDeleteAll(this->Pointer->CompileOptionsEntries);
cmDeleteAll(this->Pointer->CompileFeaturesEntries);
cmDeleteAll(this->Pointer->CompileDefinitionsEntries);
cmDeleteAll(this->Pointer->SourceEntries);
delete this->Pointer;
}
//----------------------------------------------------------------------------
cmTargetInternalPointer&
cmTargetInternalPointer::operator=(cmTargetInternalPointer const& r)
{
if(this == &r) { return *this; } // avoid warning on HP about self check
// Ideally cmTarget instances should never be copied. However until
// we can make a sweep to remove that, this copy constructor avoids
// allowing the resources (Internals) to be copied.
cmTargetInternals* oldPointer = this->Pointer;
this->Pointer = new cmTargetInternals(*r.Pointer);
delete oldPointer;
return *this;
}