cmTarget.cxx 15 KB

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  1. /*=========================================================================
  2. Program: Insight Segmentation & Registration Toolkit
  3. Module: $RCSfile$
  4. Language: C++
  5. Date: $Date$
  6. Version: $Revision$
  7. Copyright (c) 2002 Insight Consortium. All rights reserved.
  8. See ITKCopyright.txt or http://www.itk.org/HTML/Copyright.htm for details.
  9. This software is distributed WITHOUT ANY WARRANTY; without even
  10. the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
  11. PURPOSE. See the above copyright notices for more information.
  12. =========================================================================*/
  13. #include "cmTarget.h"
  14. #include "cmMakefile.h"
  15. #include <map>
  16. #include <set>
  17. void cmTarget::GenerateSourceFilesFromSourceLists( cmMakefile &mf)
  18. {
  19. // this is only done for non install targets
  20. if ((this->m_TargetType == cmTarget::INSTALL_FILES)
  21. || (this->m_TargetType == cmTarget::INSTALL_PROGRAMS))
  22. {
  23. return;
  24. }
  25. // for each src lists add the classes
  26. for (std::vector<std::string>::const_iterator s = m_SourceLists.begin();
  27. s != m_SourceLists.end(); ++s)
  28. {
  29. int done = 0;
  30. // replace any variables
  31. std::string temps = *s;
  32. mf.ExpandVariablesInString(temps);
  33. // Next if one wasn't found then assume it is a single class
  34. if (!done && mf.GetSource(temps.c_str()))
  35. {
  36. m_SourceFiles.push_back(mf.GetSource(temps.c_str()));
  37. done = 1;
  38. }
  39. // if it wasn't a source file listed with the makefile
  40. // see if it is a variable. This is for old CMake 1.2 compatability
  41. // where a source list would be passed into here, by making it
  42. // a vector we need to possibly lookup the variable to maintain
  43. // CMake 1.2 compatability.
  44. const char* versionValue
  45. = mf.GetDefinition("CMAKE_MINIMUM_REQUIRED_VERSION");
  46. if (!done)
  47. {
  48. if (!versionValue || atof(versionValue) <= 1.2)
  49. {
  50. const char* varValue =
  51. mf.GetDefinition(temps.c_str());
  52. // if the definition exists
  53. if (varValue)
  54. {
  55. std::vector<std::string> tval;
  56. tval.push_back(varValue);
  57. std::vector<std::string> args;
  58. cmSystemTools::ExpandListArguments(tval, args);
  59. unsigned int i;
  60. for (i = 0; i < args.size(); ++i)
  61. {
  62. if (mf.GetSource(args[i].c_str()))
  63. {
  64. m_SourceFiles.push_back(mf.GetSource(args[i].c_str()));
  65. }
  66. else
  67. {
  68. cmSourceFile file;
  69. file.SetProperty("ABSTRACT","0");
  70. file.SetName(args[i].c_str(), mf.GetCurrentDirectory(),
  71. mf.GetSourceExtensions(),
  72. mf.GetHeaderExtensions());
  73. m_SourceFiles.push_back(mf.AddSource(file));
  74. }
  75. }
  76. done = 1;
  77. }
  78. }
  79. }
  80. // if we still are not done, try to create the SourceFile structure
  81. if (!done)
  82. {
  83. cmSourceFile file;
  84. file.SetProperty("ABSTRACT","0");
  85. file.SetName(temps.c_str(), mf.GetCurrentDirectory(),
  86. mf.GetSourceExtensions(),
  87. mf.GetHeaderExtensions());
  88. m_SourceFiles.push_back(mf.AddSource(file));
  89. done = 1;
  90. }
  91. }
  92. // expand any link library variables whle we are at it
  93. LinkLibraries::iterator p = m_LinkLibraries.begin();
  94. for (;p != m_LinkLibraries.end(); ++p)
  95. {
  96. mf.ExpandVariablesInString(p->first);
  97. }
  98. }
  99. void cmTarget::MergeLinkLibraries( cmMakefile& mf,
  100. const char *selfname,
  101. const LinkLibraries& libs )
  102. {
  103. // Only add on libraries we haven't added on before.
  104. // Assumption: the global link libraries could only grow, never shrink
  105. LinkLibraries::const_iterator i = libs.begin();
  106. i += m_PrevLinkedLibraries.size();
  107. for( ; i != libs.end(); ++i )
  108. {
  109. // We call this so that the dependencies get written to the cache
  110. this->AddLinkLibrary( mf, selfname, i->first.c_str(), i->second );
  111. }
  112. m_PrevLinkedLibraries = libs;
  113. }
  114. void cmTarget::AddLinkDirectory(const char* d)
  115. {
  116. // Make sure we don't add unnecessary search directories.
  117. if( std::find( m_LinkDirectories.begin(), m_LinkDirectories.end(), d )
  118. == m_LinkDirectories.end() )
  119. m_LinkDirectories.push_back( d );
  120. }
  121. void cmTarget::AddLinkLibrary(const std::string& lib,
  122. LinkLibraryType llt)
  123. {
  124. m_LinkLibraries.push_back( std::pair<std::string, cmTarget::LinkLibraryType>(lib,llt) );
  125. }
  126. void cmTarget::AddLinkLibrary(cmMakefile& mf,
  127. const char *target, const char* lib,
  128. LinkLibraryType llt)
  129. {
  130. // Never add a self dependency, even if the user asks for it.
  131. if(strcmp( target, lib ) == 0)
  132. {
  133. return;
  134. }
  135. m_LinkLibraries.push_back( std::pair<std::string, cmTarget::LinkLibraryType>(lib,llt) );
  136. if(llt != cmTarget::GENERAL)
  137. {
  138. std::string linkTypeName = lib;
  139. linkTypeName += "_LINK_TYPE";
  140. switch(llt)
  141. {
  142. case cmTarget::DEBUG:
  143. mf.AddCacheDefinition(linkTypeName.c_str(),
  144. "debug", "Library is used for debug links only",
  145. cmCacheManager::STATIC);
  146. break;
  147. case cmTarget::OPTIMIZED:
  148. mf.AddCacheDefinition(linkTypeName.c_str(),
  149. "optimized", "Library is used for debug links only",
  150. cmCacheManager::STATIC);
  151. break;
  152. case cmTarget::GENERAL: break;
  153. }
  154. }
  155. // Add the explicit dependency information for this target. This is
  156. // simply a set of libraries separated by ";". There should always
  157. // be a trailing ";". These library names are not canonical, in that
  158. // they may be "-framework x", "-ly", "/path/libz.a", etc.
  159. // only add depend information for library targets
  160. if(m_TargetType >= STATIC_LIBRARY && m_TargetType <= MODULE_LIBRARY)
  161. {
  162. std::string targetEntry = target;
  163. targetEntry += "_LIB_DEPENDS";
  164. std::string dependencies;
  165. const char* old_val = mf.GetDefinition( targetEntry.c_str() );
  166. if( old_val )
  167. {
  168. dependencies += old_val;
  169. }
  170. if( dependencies.find( lib ) == std::string::npos )
  171. {
  172. dependencies += lib;
  173. dependencies += ";";
  174. }
  175. mf.AddCacheDefinition( targetEntry.c_str(), dependencies.c_str(),
  176. "Dependencies for the target",
  177. cmCacheManager::STATIC );
  178. }
  179. }
  180. bool cmTarget::HasCxx() const
  181. {
  182. for(std::vector<cmSourceFile*>::const_iterator i = m_SourceFiles.begin();
  183. i != m_SourceFiles.end(); ++i)
  184. {
  185. if((*i)->GetSourceExtension() != "c")
  186. {
  187. return true;
  188. }
  189. }
  190. return false;
  191. }
  192. void
  193. cmTarget::AnalyzeLibDependencies( const cmMakefile& mf )
  194. {
  195. // There are two key parts of the dependency analysis: (1)
  196. // determining the libraries in the link line, and (2) constructing
  197. // the dependency graph for those libraries.
  198. //
  199. // The latter is done using the cache entries that record the
  200. // dependencies of each library.
  201. //
  202. // The former is a more thorny issue, since it is not clear how to
  203. // determine if two libraries listed on the link line refer to the a
  204. // single library or not. For example, consider the link "libraries"
  205. // /usr/lib/libtiff.so -ltiff
  206. // Is this one library or two? The solution implemented here is the
  207. // simplest (and probably the only practical) one: two libraries are
  208. // the same if their "link strings" are identical. Thus, the two
  209. // libraries above are considered distinct. This also means that for
  210. // dependency analysis to be effective, the CMake user must specify
  211. // libraries build by his project without using any linker flags or
  212. // file extensions. That is,
  213. // LINK_LIBRARIES( One Two )
  214. // instead of
  215. // LINK_LIBRARIES( -lOne ${binarypath}/libTwo.a )
  216. // The former is probably what most users would do, but it never
  217. // hurts to document the assumptions. :-) Therefore, in the analysis
  218. // code, the "canonical name" of a library is simply its name as
  219. // given to a LINK_LIBRARIES command.
  220. //
  221. // Also, we will leave the original link line intact; we will just add any
  222. // dependencies that were missing.
  223. typedef std::vector< std::string > LinkLine;
  224. // The dependency map.
  225. DependencyMap dep_map;
  226. // Keeps track of which dependencies have already been emitted for a given
  227. // target. This could be via this function, or because they were already
  228. // satisfied on the original link line.
  229. DependencyMap satisfied;
  230. // If LIBRARY_OUTPUT_PATH is not set, then we must add search paths
  231. // for all the new libraries added by the dependency analysis.
  232. const char* libOutPath = mf.GetDefinition("LIBRARY_OUTPUT_PATH");
  233. bool addLibDirs = (libOutPath==0 || strcmp(libOutPath,"")==0);
  234. // 1. Determine the dependencies already satisfied by the original link
  235. // line.
  236. for(LinkLibraries::iterator lib = m_LinkLibraries.begin();
  237. lib != m_LinkLibraries.end(); ++lib)
  238. {
  239. for( LinkLibraries::iterator lib2 = lib;
  240. lib2 != m_LinkLibraries.end(); ++lib2)
  241. {
  242. satisfied[ lib->first ].insert( lib2->first );
  243. }
  244. }
  245. // 2. Build the explicit dependency map
  246. for(LinkLibraries::reverse_iterator lib = m_LinkLibraries.rbegin();
  247. lib != m_LinkLibraries.rend(); ++lib)
  248. {
  249. this->GatherDependencies( mf, lib->first, dep_map );
  250. }
  251. // 3. Create the new link line by simply emitting any dependencies that are
  252. // missing. Start from the back and keep adding.
  253. std::set<cmStdString> done, visited;
  254. std::vector<std::string> newLinkLibraries;
  255. for(LinkLibraries::reverse_iterator lib = m_LinkLibraries.rbegin();
  256. lib != m_LinkLibraries.rend(); ++lib)
  257. {
  258. // skip zero size library entries, this may happen
  259. // if a variable expands to nothing.
  260. if (lib->first.size() == 0) continue;
  261. // Emit all the dependencies that are not already satisfied on the
  262. // original link line.
  263. if( dep_map.find(lib->first) != dep_map.end() ) // does it have dependencies?
  264. {
  265. const std::set<cmStdString>& dep_on = dep_map.find( lib->first )->second;
  266. std::set<cmStdString>::const_iterator i;
  267. for( i = dep_on.begin(); i != dep_on.end(); ++i )
  268. {
  269. if( satisfied[lib->first].end() == satisfied[lib->first].find( *i ) )
  270. {
  271. Emit( *i, dep_map, done, visited, newLinkLibraries );
  272. }
  273. }
  274. }
  275. }
  276. // 4. Add the new libraries to the link line.
  277. for( std::vector<std::string>::reverse_iterator k = newLinkLibraries.rbegin();
  278. k != newLinkLibraries.rend(); ++k )
  279. {
  280. if( addLibDirs )
  281. {
  282. // who the hell knows what this is, I think that K contains the
  283. // name of a library but ... Ken
  284. std::string libPathStr = *k + "_CMAKE_PATH";
  285. const char* libpath = mf.GetDefinition( libPathStr.c_str() );
  286. if( libpath )
  287. {
  288. // Don't add a link directory that is already present.
  289. if(std::find(m_LinkDirectories.begin(),
  290. m_LinkDirectories.end(), libpath) == m_LinkDirectories.end())
  291. {
  292. m_LinkDirectories.push_back(libpath);
  293. }
  294. }
  295. }
  296. std::string linkType = *k;
  297. linkType += "_LINK_TYPE";
  298. cmTarget::LinkLibraryType llt = cmTarget::GENERAL;
  299. const char* linkTypeString = mf.GetDefinition( linkType.c_str() );
  300. if(linkTypeString)
  301. {
  302. if(strcmp(linkTypeString, "debug") == 0)
  303. {
  304. llt = cmTarget::DEBUG;
  305. }
  306. if(strcmp(linkTypeString, "optimized") == 0)
  307. {
  308. llt = cmTarget::OPTIMIZED;
  309. }
  310. }
  311. m_LinkLibraries.push_back( std::make_pair(*k,llt) );
  312. }
  313. }
  314. void cmTarget::Emit( const std::string& lib,
  315. const DependencyMap& dep_map,
  316. std::set<cmStdString>& emitted,
  317. std::set<cmStdString>& visited,
  318. std::vector<std::string>& link_line ) const
  319. {
  320. // It's already been emitted
  321. if( emitted.find(lib) != emitted.end() )
  322. {
  323. return;
  324. }
  325. // If this library hasn't been visited before, then emit all its
  326. // dependencies before emitting the library itself. If it has been
  327. // visited before, then there is a dependency cycle. Just emit the
  328. // library itself, and let the recursion that got us here deal with
  329. // emitting the dependencies for the library.
  330. if( visited.insert(lib).second )
  331. {
  332. if( dep_map.find(lib) != dep_map.end() ) // does it have dependencies?
  333. {
  334. const std::set<cmStdString>& dep_on = dep_map.find( lib )->second;
  335. std::set<cmStdString>::const_iterator i;
  336. for( i = dep_on.begin(); i != dep_on.end(); ++i )
  337. {
  338. Emit( *i, dep_map, emitted, visited, link_line );
  339. }
  340. }
  341. }
  342. link_line.push_back( lib );
  343. emitted.insert(lib);
  344. }
  345. void cmTarget::GatherDependencies( const cmMakefile& mf,
  346. const std::string& lib,
  347. DependencyMap& dep_map )
  348. {
  349. // If the library is already in the dependency map, then it has
  350. // already been fully processed.
  351. if( dep_map.find(lib) != dep_map.end() )
  352. return;
  353. const char* deps = mf.GetDefinition( (lib+"_LIB_DEPENDS").c_str() );
  354. if( deps && strcmp(deps,"") != 0 )
  355. {
  356. // Make sure this library is in the map, even if it has an empty
  357. // set of dependencies. This distinguishes the case of explicitly
  358. // no dependencies with that of unspecified dependencies.
  359. dep_map[lib];
  360. // Parse the dependency information, which is simply a set of
  361. // libraries separated by ";". There is always a trailing ";".
  362. std::string depline = deps;
  363. std::string::size_type start = 0;
  364. std::string::size_type end;
  365. end = depline.find( ";", start );
  366. while( end != std::string::npos )
  367. {
  368. std::string l = depline.substr( start, end-start );
  369. if( l.size() != 0 )
  370. {
  371. dep_map[ lib ].insert( l );
  372. GatherDependencies( mf, l, dep_map );
  373. }
  374. start = end+1; // skip the ;
  375. end = depline.find( ";", start );
  376. }
  377. dep_map[lib].erase(lib); // cannot depend on itself
  378. }
  379. }
  380. // return true if lib1 depends on lib2
  381. bool cmTarget::DependsOn( const std::string& lib1, const std::string& lib2,
  382. const DependencyMap& dep_map,
  383. std::set<cmStdString>& visited ) const
  384. {
  385. if( !visited.insert( lib1 ).second )
  386. {
  387. return false; // already visited here
  388. }
  389. if( lib1 == lib2 )
  390. {
  391. return false;
  392. }
  393. if( dep_map.find(lib1) == dep_map.end() )
  394. {
  395. return false; // lib1 doesn't have any dependencies
  396. }
  397. const std::set<cmStdString>& dep_set = dep_map.find(lib1)->second;
  398. if( dep_set.end() != dep_set.find( lib2 ) )
  399. {
  400. return true; // lib1 doesn't directly depend on lib2.
  401. }
  402. // Do a recursive check: does lib1 depend on x which depends on lib2?
  403. for( std::set<cmStdString>::const_iterator itr = dep_set.begin();
  404. itr != dep_set.end(); ++itr )
  405. {
  406. if( this->DependsOn( *itr, lib2, dep_map, visited ) )
  407. {
  408. return true;
  409. }
  410. }
  411. return false;
  412. }