cmGlobalVisualStudioGenerator.cxx 33 KB

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  1. /* Distributed under the OSI-approved BSD 3-Clause License. See accompanying
  2. file Copyright.txt or https://cmake.org/licensing for details. */
  3. #include "cmGlobalVisualStudioGenerator.h"
  4. #include "cmsys/Encoding.hxx"
  5. #include <future>
  6. #include <iostream>
  7. #include <objbase.h>
  8. #include <shellapi.h>
  9. #include <windows.h>
  10. #include "cmAlgorithms.h"
  11. #include "cmCallVisualStudioMacro.h"
  12. #include "cmCustomCommand.h"
  13. #include "cmGeneratedFileStream.h"
  14. #include "cmGeneratorTarget.h"
  15. #include "cmLocalVisualStudioGenerator.h"
  16. #include "cmMakefile.h"
  17. #include "cmSourceFile.h"
  18. #include "cmState.h"
  19. #include "cmTarget.h"
  20. #include "cmake.h"
  21. cmGlobalVisualStudioGenerator::cmGlobalVisualStudioGenerator(
  22. cmake* cm, std::string const& platformInGeneratorName)
  23. : cmGlobalGenerator(cm)
  24. {
  25. cm->GetState()->SetIsGeneratorMultiConfig(true);
  26. cm->GetState()->SetWindowsShell(true);
  27. cm->GetState()->SetWindowsVSIDE(true);
  28. if (platformInGeneratorName.empty()) {
  29. this->DefaultPlatformName = "Win32";
  30. } else {
  31. this->DefaultPlatformName = platformInGeneratorName;
  32. this->PlatformInGeneratorName = true;
  33. }
  34. }
  35. cmGlobalVisualStudioGenerator::~cmGlobalVisualStudioGenerator()
  36. {
  37. }
  38. cmGlobalVisualStudioGenerator::VSVersion
  39. cmGlobalVisualStudioGenerator::GetVersion() const
  40. {
  41. return this->Version;
  42. }
  43. void cmGlobalVisualStudioGenerator::SetVersion(VSVersion v)
  44. {
  45. this->Version = v;
  46. }
  47. void cmGlobalVisualStudioGenerator::EnableLanguage(
  48. std::vector<std::string> const& lang, cmMakefile* mf, bool optional)
  49. {
  50. mf->AddDefinition("CMAKE_VS_PLATFORM_NAME_DEFAULT",
  51. this->DefaultPlatformName);
  52. this->cmGlobalGenerator::EnableLanguage(lang, mf, optional);
  53. }
  54. bool cmGlobalVisualStudioGenerator::SetGeneratorPlatform(std::string const& p,
  55. cmMakefile* mf)
  56. {
  57. if (this->GetPlatformName() == "x64") {
  58. mf->AddDefinition("CMAKE_FORCE_WIN64", "TRUE");
  59. } else if (this->GetPlatformName() == "Itanium") {
  60. mf->AddDefinition("CMAKE_FORCE_IA64", "TRUE");
  61. }
  62. mf->AddDefinition("CMAKE_VS_PLATFORM_NAME", this->GetPlatformName());
  63. return this->cmGlobalGenerator::SetGeneratorPlatform(p, mf);
  64. }
  65. std::string const& cmGlobalVisualStudioGenerator::GetPlatformName() const
  66. {
  67. if (!this->GeneratorPlatform.empty()) {
  68. return this->GeneratorPlatform;
  69. }
  70. return this->DefaultPlatformName;
  71. }
  72. const char* cmGlobalVisualStudioGenerator::GetIDEVersion() const
  73. {
  74. switch (this->Version) {
  75. case cmGlobalVisualStudioGenerator::VS9:
  76. return "9.0";
  77. case cmGlobalVisualStudioGenerator::VS10:
  78. return "10.0";
  79. case cmGlobalVisualStudioGenerator::VS11:
  80. return "11.0";
  81. case cmGlobalVisualStudioGenerator::VS12:
  82. return "12.0";
  83. case cmGlobalVisualStudioGenerator::VS14:
  84. return "14.0";
  85. case cmGlobalVisualStudioGenerator::VS15:
  86. return "15.0";
  87. case cmGlobalVisualStudioGenerator::VS16:
  88. return "16.0";
  89. }
  90. return "";
  91. }
  92. void cmGlobalVisualStudioGenerator::WriteSLNHeader(std::ostream& fout)
  93. {
  94. char utf8bom[] = { char(0xEF), char(0xBB), char(0xBF) };
  95. fout.write(utf8bom, 3);
  96. switch (this->Version) {
  97. case cmGlobalVisualStudioGenerator::VS9:
  98. fout << "Microsoft Visual Studio Solution File, Format Version 10.00\n";
  99. fout << "# Visual Studio 2008\n";
  100. break;
  101. case cmGlobalVisualStudioGenerator::VS10:
  102. fout << "Microsoft Visual Studio Solution File, Format Version 11.00\n";
  103. if (this->ExpressEdition) {
  104. fout << "# Visual C++ Express 2010\n";
  105. } else {
  106. fout << "# Visual Studio 2010\n";
  107. }
  108. break;
  109. case cmGlobalVisualStudioGenerator::VS11:
  110. fout << "Microsoft Visual Studio Solution File, Format Version 12.00\n";
  111. if (this->ExpressEdition) {
  112. fout << "# Visual Studio Express 2012 for Windows Desktop\n";
  113. } else {
  114. fout << "# Visual Studio 2012\n";
  115. }
  116. break;
  117. case cmGlobalVisualStudioGenerator::VS12:
  118. fout << "Microsoft Visual Studio Solution File, Format Version 12.00\n";
  119. if (this->ExpressEdition) {
  120. fout << "# Visual Studio Express 2013 for Windows Desktop\n";
  121. } else {
  122. fout << "# Visual Studio 2013\n";
  123. }
  124. break;
  125. case cmGlobalVisualStudioGenerator::VS14:
  126. // Visual Studio 14 writes .sln format 12.00
  127. fout << "Microsoft Visual Studio Solution File, Format Version 12.00\n";
  128. if (this->ExpressEdition) {
  129. fout << "# Visual Studio Express 14 for Windows Desktop\n";
  130. } else {
  131. fout << "# Visual Studio 14\n";
  132. }
  133. break;
  134. case cmGlobalVisualStudioGenerator::VS15:
  135. // Visual Studio 15 writes .sln format 12.00
  136. fout << "Microsoft Visual Studio Solution File, Format Version 12.00\n";
  137. if (this->ExpressEdition) {
  138. fout << "# Visual Studio Express 15 for Windows Desktop\n";
  139. } else {
  140. fout << "# Visual Studio 15\n";
  141. }
  142. break;
  143. case cmGlobalVisualStudioGenerator::VS16:
  144. // Visual Studio 16 writes .sln format 12.00
  145. fout << "Microsoft Visual Studio Solution File, Format Version 12.00\n";
  146. if (this->ExpressEdition) {
  147. fout << "# Visual Studio Express 16 for Windows Desktop\n";
  148. } else {
  149. fout << "# Visual Studio 16\n";
  150. }
  151. break;
  152. }
  153. }
  154. std::string cmGlobalVisualStudioGenerator::GetRegistryBase()
  155. {
  156. return cmGlobalVisualStudioGenerator::GetRegistryBase(this->GetIDEVersion());
  157. }
  158. std::string cmGlobalVisualStudioGenerator::GetRegistryBase(const char* version)
  159. {
  160. std::string key = "HKEY_LOCAL_MACHINE\\SOFTWARE\\Microsoft\\VisualStudio\\";
  161. return key + version;
  162. }
  163. void cmGlobalVisualStudioGenerator::AddExtraIDETargets()
  164. {
  165. // Add a special target that depends on ALL projects for easy build
  166. // of one configuration only.
  167. const char* no_working_dir = 0;
  168. std::vector<std::string> no_depends;
  169. cmCustomCommandLines no_commands;
  170. for (auto const& it : this->ProjectMap) {
  171. std::vector<cmLocalGenerator*> const& gen = it.second;
  172. // add the ALL_BUILD to the first local generator of each project
  173. if (!gen.empty()) {
  174. // Use no actual command lines so that the target itself is not
  175. // considered always out of date.
  176. cmTarget* allBuild = gen[0]->GetMakefile()->AddUtilityCommand(
  177. "ALL_BUILD", cmMakefile::TargetOrigin::Generator, true, no_working_dir,
  178. no_depends, no_commands, false, "Build all projects");
  179. cmGeneratorTarget* gt = new cmGeneratorTarget(allBuild, gen[0]);
  180. gen[0]->AddGeneratorTarget(gt);
  181. //
  182. // Organize in the "predefined targets" folder:
  183. //
  184. if (this->UseFolderProperty()) {
  185. allBuild->SetProperty("FOLDER", this->GetPredefinedTargetsFolder());
  186. }
  187. // Now make all targets depend on the ALL_BUILD target
  188. for (cmLocalGenerator const* i : gen) {
  189. for (cmGeneratorTarget* tgt : i->GetGeneratorTargets()) {
  190. if (tgt->GetType() == cmStateEnums::GLOBAL_TARGET ||
  191. tgt->IsImported()) {
  192. continue;
  193. }
  194. if (!this->IsExcluded(tgt)) {
  195. allBuild->AddUtility(tgt->GetName());
  196. }
  197. }
  198. }
  199. }
  200. }
  201. // Configure CMake Visual Studio macros, for this user on this version
  202. // of Visual Studio.
  203. this->ConfigureCMakeVisualStudioMacros();
  204. }
  205. void cmGlobalVisualStudioGenerator::ComputeTargetObjectDirectory(
  206. cmGeneratorTarget* gt) const
  207. {
  208. std::string dir =
  209. cmStrCat(gt->LocalGenerator->GetCurrentBinaryDirectory(), '/');
  210. std::string tgtDir = gt->LocalGenerator->GetTargetDirectory(gt);
  211. if (!tgtDir.empty()) {
  212. dir += tgtDir;
  213. dir += "/";
  214. }
  215. const char* cd = this->GetCMakeCFGIntDir();
  216. if (cd && *cd) {
  217. dir += cd;
  218. dir += "/";
  219. }
  220. gt->ObjectDirectory = dir;
  221. }
  222. bool IsVisualStudioMacrosFileRegistered(const std::string& macrosFile,
  223. const std::string& regKeyBase,
  224. std::string& nextAvailableSubKeyName);
  225. void RegisterVisualStudioMacros(const std::string& macrosFile,
  226. const std::string& regKeyBase);
  227. #define CMAKE_VSMACROS_FILENAME "CMakeVSMacros2.vsmacros"
  228. #define CMAKE_VSMACROS_RELOAD_MACRONAME \
  229. "Macros.CMakeVSMacros2.Macros.ReloadProjects"
  230. #define CMAKE_VSMACROS_STOP_MACRONAME "Macros.CMakeVSMacros2.Macros.StopBuild"
  231. void cmGlobalVisualStudioGenerator::ConfigureCMakeVisualStudioMacros()
  232. {
  233. std::string dir = this->GetUserMacrosDirectory();
  234. if (!dir.empty()) {
  235. std::string src = cmStrCat(cmSystemTools::GetCMakeRoot(),
  236. "/Templates/" CMAKE_VSMACROS_FILENAME);
  237. std::string dst = dir + "/CMakeMacros/" CMAKE_VSMACROS_FILENAME;
  238. // Copy the macros file to the user directory only if the
  239. // destination does not exist or the source location is newer.
  240. // This will allow the user to edit the macros for development
  241. // purposes but newer versions distributed with CMake will replace
  242. // older versions in user directories.
  243. int res;
  244. if (!cmSystemTools::FileTimeCompare(src, dst, &res) || res > 0) {
  245. if (!cmSystemTools::CopyFileAlways(src, dst)) {
  246. std::ostringstream oss;
  247. oss << "Could not copy from: " << src << std::endl;
  248. oss << " to: " << dst << std::endl;
  249. cmSystemTools::Message(oss.str(), "Warning");
  250. }
  251. }
  252. RegisterVisualStudioMacros(dst, this->GetUserMacrosRegKeyBase());
  253. }
  254. }
  255. void cmGlobalVisualStudioGenerator::CallVisualStudioMacro(
  256. MacroName m, const char* vsSolutionFile)
  257. {
  258. // If any solution or project files changed during the generation,
  259. // tell Visual Studio to reload them...
  260. cmMakefile* mf = this->LocalGenerators[0]->GetMakefile();
  261. std::string dir = this->GetUserMacrosDirectory();
  262. // Only really try to call the macro if:
  263. // - there is a UserMacrosDirectory
  264. // - the CMake vsmacros file exists
  265. // - the CMake vsmacros file is registered
  266. // - there were .sln/.vcproj files changed during generation
  267. //
  268. if (!dir.empty()) {
  269. std::string macrosFile = dir + "/CMakeMacros/" CMAKE_VSMACROS_FILENAME;
  270. std::string nextSubkeyName;
  271. if (cmSystemTools::FileExists(macrosFile.c_str()) &&
  272. IsVisualStudioMacrosFileRegistered(
  273. macrosFile, this->GetUserMacrosRegKeyBase(), nextSubkeyName)) {
  274. std::string topLevelSlnName;
  275. if (vsSolutionFile) {
  276. topLevelSlnName = vsSolutionFile;
  277. } else {
  278. topLevelSlnName =
  279. cmStrCat(mf->GetCurrentBinaryDirectory(), '/',
  280. this->LocalGenerators[0]->GetProjectName(), ".sln");
  281. }
  282. if (m == MacroReload) {
  283. std::vector<std::string> filenames;
  284. this->GetFilesReplacedDuringGenerate(filenames);
  285. if (!filenames.empty()) {
  286. std::string projects = cmJoin(filenames, ";");
  287. cmCallVisualStudioMacro::CallMacro(
  288. topLevelSlnName, CMAKE_VSMACROS_RELOAD_MACRONAME, projects,
  289. this->GetCMakeInstance()->GetDebugOutput());
  290. }
  291. } else if (m == MacroStop) {
  292. cmCallVisualStudioMacro::CallMacro(
  293. topLevelSlnName, CMAKE_VSMACROS_STOP_MACRONAME, "",
  294. this->GetCMakeInstance()->GetDebugOutput());
  295. }
  296. }
  297. }
  298. }
  299. std::string cmGlobalVisualStudioGenerator::GetUserMacrosDirectory()
  300. {
  301. return "";
  302. }
  303. std::string cmGlobalVisualStudioGenerator::GetUserMacrosRegKeyBase()
  304. {
  305. return "";
  306. }
  307. void cmGlobalVisualStudioGenerator::FillLinkClosure(
  308. const cmGeneratorTarget* target, TargetSet& linked)
  309. {
  310. if (linked.insert(target).second) {
  311. TargetDependSet const& depends = this->GetTargetDirectDepends(target);
  312. for (cmTargetDepend const& di : depends) {
  313. if (di.IsLink()) {
  314. this->FillLinkClosure(di, linked);
  315. }
  316. }
  317. }
  318. }
  319. cmGlobalVisualStudioGenerator::TargetSet const&
  320. cmGlobalVisualStudioGenerator::GetTargetLinkClosure(cmGeneratorTarget* target)
  321. {
  322. auto i = this->TargetLinkClosure.find(target);
  323. if (i == this->TargetLinkClosure.end()) {
  324. TargetSetMap::value_type entry(target, TargetSet());
  325. i = this->TargetLinkClosure.insert(entry).first;
  326. this->FillLinkClosure(target, i->second);
  327. }
  328. return i->second;
  329. }
  330. void cmGlobalVisualStudioGenerator::FollowLinkDepends(
  331. const cmGeneratorTarget* target, std::set<const cmGeneratorTarget*>& linked)
  332. {
  333. if (target->GetType() == cmStateEnums::INTERFACE_LIBRARY) {
  334. return;
  335. }
  336. if (linked.insert(target).second &&
  337. target->GetType() == cmStateEnums::STATIC_LIBRARY) {
  338. // Static library targets do not list their link dependencies so
  339. // we must follow them transitively now.
  340. TargetDependSet const& depends = this->GetTargetDirectDepends(target);
  341. for (cmTargetDepend const& di : depends) {
  342. if (di.IsLink()) {
  343. this->FollowLinkDepends(di, linked);
  344. }
  345. }
  346. }
  347. }
  348. bool cmGlobalVisualStudioGenerator::ComputeTargetDepends()
  349. {
  350. if (!this->cmGlobalGenerator::ComputeTargetDepends()) {
  351. return false;
  352. }
  353. for (auto const& it : this->ProjectMap) {
  354. for (const cmLocalGenerator* i : it.second) {
  355. for (cmGeneratorTarget* ti : i->GetGeneratorTargets()) {
  356. this->ComputeVSTargetDepends(ti);
  357. }
  358. }
  359. }
  360. return true;
  361. }
  362. static bool VSLinkable(cmGeneratorTarget const* t)
  363. {
  364. return t->IsLinkable() || t->GetType() == cmStateEnums::OBJECT_LIBRARY;
  365. }
  366. void cmGlobalVisualStudioGenerator::ComputeVSTargetDepends(
  367. cmGeneratorTarget* target)
  368. {
  369. if (this->VSTargetDepends.find(target) != this->VSTargetDepends.end()) {
  370. return;
  371. }
  372. VSDependSet& vsTargetDepend = this->VSTargetDepends[target];
  373. // VS <= 7.1 has two behaviors that affect solution dependencies.
  374. //
  375. // (1) Solution-level dependencies between a linkable target and a
  376. // library cause that library to be linked. We use an intermedite
  377. // empty utility target to express the dependency. (VS 8 and above
  378. // provide a project file "LinkLibraryDependencies" setting to
  379. // choose whether to activate this behavior. We disable it except
  380. // when linking external project files.)
  381. //
  382. // (2) We cannot let static libraries depend directly on targets to
  383. // which they "link" because the librarian tool will copy the
  384. // targets into the static library. While the work-around for
  385. // behavior (1) would also avoid this, it would create a large
  386. // number of extra utility targets for little gain. Instead, use
  387. // the above work-around only for dependencies explicitly added by
  388. // the add_dependencies() command. Approximate link dependencies by
  389. // leaving them out for the static library itself but following them
  390. // transitively for other targets.
  391. bool allowLinkable = (target->GetType() != cmStateEnums::STATIC_LIBRARY &&
  392. target->GetType() != cmStateEnums::SHARED_LIBRARY &&
  393. target->GetType() != cmStateEnums::MODULE_LIBRARY &&
  394. target->GetType() != cmStateEnums::EXECUTABLE);
  395. TargetDependSet const& depends = this->GetTargetDirectDepends(target);
  396. // Collect implicit link dependencies (target_link_libraries).
  397. // Static libraries cannot depend on their link implementation
  398. // due to behavior (2), but they do not really need to.
  399. std::set<cmGeneratorTarget const*> linkDepends;
  400. if (target->GetType() != cmStateEnums::STATIC_LIBRARY) {
  401. for (cmTargetDepend const& di : depends) {
  402. if (di.IsLink()) {
  403. this->FollowLinkDepends(di, linkDepends);
  404. }
  405. }
  406. }
  407. // Collect explicit util dependencies (add_dependencies).
  408. std::set<cmGeneratorTarget const*> utilDepends;
  409. for (cmTargetDepend const& di : depends) {
  410. if (di.IsUtil()) {
  411. this->FollowLinkDepends(di, utilDepends);
  412. }
  413. }
  414. // Collect all targets linked by this target so we can avoid
  415. // intermediate targets below.
  416. TargetSet linked;
  417. if (target->GetType() != cmStateEnums::STATIC_LIBRARY) {
  418. linked = this->GetTargetLinkClosure(target);
  419. }
  420. // Emit link dependencies.
  421. for (cmGeneratorTarget const* dep : linkDepends) {
  422. vsTargetDepend.insert(dep->GetName());
  423. }
  424. // Emit util dependencies. Possibly use intermediate targets.
  425. for (cmGeneratorTarget const* dgt : utilDepends) {
  426. if (allowLinkable || !VSLinkable(dgt) || linked.count(dgt)) {
  427. // Direct dependency allowed.
  428. vsTargetDepend.insert(dgt->GetName());
  429. } else {
  430. // Direct dependency on linkable target not allowed.
  431. // Use an intermediate utility target.
  432. vsTargetDepend.insert(this->GetUtilityDepend(dgt));
  433. }
  434. }
  435. }
  436. bool cmGlobalVisualStudioGenerator::FindMakeProgram(cmMakefile* mf)
  437. {
  438. // Visual Studio generators know how to lookup their build tool
  439. // directly instead of needing a helper module to do it, so we
  440. // do not actually need to put CMAKE_MAKE_PROGRAM into the cache.
  441. if (cmIsOff(mf->GetDefinition("CMAKE_MAKE_PROGRAM"))) {
  442. mf->AddDefinition("CMAKE_MAKE_PROGRAM", this->GetVSMakeProgram());
  443. }
  444. return true;
  445. }
  446. std::string cmGlobalVisualStudioGenerator::GetUtilityDepend(
  447. cmGeneratorTarget const* target)
  448. {
  449. auto i = this->UtilityDepends.find(target);
  450. if (i == this->UtilityDepends.end()) {
  451. std::string name = this->WriteUtilityDepend(target);
  452. UtilityDependsMap::value_type entry(target, name);
  453. i = this->UtilityDepends.insert(entry).first;
  454. }
  455. return i->second;
  456. }
  457. std::string cmGlobalVisualStudioGenerator::GetStartupProjectName(
  458. cmLocalGenerator const* root) const
  459. {
  460. const char* n = root->GetMakefile()->GetProperty("VS_STARTUP_PROJECT");
  461. if (n && *n) {
  462. std::string startup = n;
  463. if (this->FindTarget(startup)) {
  464. return startup;
  465. } else {
  466. root->GetMakefile()->IssueMessage(
  467. MessageType::AUTHOR_WARNING,
  468. "Directory property VS_STARTUP_PROJECT specifies target "
  469. "'" +
  470. startup + "' that does not exist. Ignoring.");
  471. }
  472. }
  473. // default, if not specified
  474. return this->GetAllTargetName();
  475. }
  476. bool IsVisualStudioMacrosFileRegistered(const std::string& macrosFile,
  477. const std::string& regKeyBase,
  478. std::string& nextAvailableSubKeyName)
  479. {
  480. bool macrosRegistered = false;
  481. std::string s1;
  482. std::string s2;
  483. // Make lowercase local copies, convert to Unix slashes, and
  484. // see if the resulting strings are the same:
  485. s1 = cmSystemTools::LowerCase(macrosFile);
  486. cmSystemTools::ConvertToUnixSlashes(s1);
  487. std::string keyname;
  488. HKEY hkey = NULL;
  489. LONG result = ERROR_SUCCESS;
  490. DWORD index = 0;
  491. keyname = regKeyBase + "\\OtherProjects7";
  492. hkey = NULL;
  493. result =
  494. RegOpenKeyExW(HKEY_CURRENT_USER, cmsys::Encoding::ToWide(keyname).c_str(),
  495. 0, KEY_READ, &hkey);
  496. if (ERROR_SUCCESS == result) {
  497. // Iterate the subkeys and look for the values of interest in each subkey:
  498. wchar_t subkeyname[256];
  499. DWORD cch_subkeyname = sizeof(subkeyname) * sizeof(subkeyname[0]);
  500. wchar_t keyclass[256];
  501. DWORD cch_keyclass = sizeof(keyclass) * sizeof(keyclass[0]);
  502. FILETIME lastWriteTime;
  503. lastWriteTime.dwHighDateTime = 0;
  504. lastWriteTime.dwLowDateTime = 0;
  505. while (ERROR_SUCCESS ==
  506. RegEnumKeyExW(hkey, index, subkeyname, &cch_subkeyname, 0, keyclass,
  507. &cch_keyclass, &lastWriteTime)) {
  508. // Open the subkey and query the values of interest:
  509. HKEY hsubkey = NULL;
  510. result = RegOpenKeyExW(hkey, subkeyname, 0, KEY_READ, &hsubkey);
  511. if (ERROR_SUCCESS == result) {
  512. DWORD valueType = REG_SZ;
  513. wchar_t data1[256];
  514. DWORD cch_data1 = sizeof(data1) * sizeof(data1[0]);
  515. RegQueryValueExW(hsubkey, L"Path", 0, &valueType, (LPBYTE)&data1[0],
  516. &cch_data1);
  517. DWORD data2 = 0;
  518. DWORD cch_data2 = sizeof(data2);
  519. RegQueryValueExW(hsubkey, L"Security", 0, &valueType, (LPBYTE)&data2,
  520. &cch_data2);
  521. DWORD data3 = 0;
  522. DWORD cch_data3 = sizeof(data3);
  523. RegQueryValueExW(hsubkey, L"StorageFormat", 0, &valueType,
  524. (LPBYTE)&data3, &cch_data3);
  525. s2 = cmSystemTools::LowerCase(cmsys::Encoding::ToNarrow(data1));
  526. cmSystemTools::ConvertToUnixSlashes(s2);
  527. if (s2 == s1) {
  528. macrosRegistered = true;
  529. }
  530. std::string fullname = cmsys::Encoding::ToNarrow(data1);
  531. std::string filename;
  532. std::string filepath;
  533. std::string filepathname;
  534. std::string filepathpath;
  535. if (cmSystemTools::FileExists(fullname.c_str())) {
  536. filename = cmSystemTools::GetFilenameName(fullname);
  537. filepath = cmSystemTools::GetFilenamePath(fullname);
  538. filepathname = cmSystemTools::GetFilenameName(filepath);
  539. filepathpath = cmSystemTools::GetFilenamePath(filepath);
  540. }
  541. // std::cout << keyname << "\\" << subkeyname << ":" << std::endl;
  542. // std::cout << " Path: " << data1 << std::endl;
  543. // std::cout << " Security: " << data2 << std::endl;
  544. // std::cout << " StorageFormat: " << data3 << std::endl;
  545. // std::cout << " filename: " << filename << std::endl;
  546. // std::cout << " filepath: " << filepath << std::endl;
  547. // std::cout << " filepathname: " << filepathname << std::endl;
  548. // std::cout << " filepathpath: " << filepathpath << std::endl;
  549. // std::cout << std::endl;
  550. RegCloseKey(hsubkey);
  551. } else {
  552. std::cout << "error opening subkey: " << subkeyname << std::endl;
  553. std::cout << std::endl;
  554. }
  555. ++index;
  556. cch_subkeyname = sizeof(subkeyname) * sizeof(subkeyname[0]);
  557. cch_keyclass = sizeof(keyclass) * sizeof(keyclass[0]);
  558. lastWriteTime.dwHighDateTime = 0;
  559. lastWriteTime.dwLowDateTime = 0;
  560. }
  561. RegCloseKey(hkey);
  562. } else {
  563. std::cout << "error opening key: " << keyname << std::endl;
  564. std::cout << std::endl;
  565. }
  566. // Pass back next available sub key name, assuming sub keys always
  567. // follow the expected naming scheme. Expected naming scheme is that
  568. // the subkeys of OtherProjects7 is 0 to n-1, so it's ok to use "n"
  569. // as the name of the next subkey.
  570. nextAvailableSubKeyName = std::to_string(index);
  571. keyname = regKeyBase + "\\RecordingProject7";
  572. hkey = NULL;
  573. result =
  574. RegOpenKeyExW(HKEY_CURRENT_USER, cmsys::Encoding::ToWide(keyname).c_str(),
  575. 0, KEY_READ, &hkey);
  576. if (ERROR_SUCCESS == result) {
  577. DWORD valueType = REG_SZ;
  578. wchar_t data1[256];
  579. DWORD cch_data1 = sizeof(data1) * sizeof(data1[0]);
  580. RegQueryValueExW(hkey, L"Path", 0, &valueType, (LPBYTE)&data1[0],
  581. &cch_data1);
  582. DWORD data2 = 0;
  583. DWORD cch_data2 = sizeof(data2);
  584. RegQueryValueExW(hkey, L"Security", 0, &valueType, (LPBYTE)&data2,
  585. &cch_data2);
  586. DWORD data3 = 0;
  587. DWORD cch_data3 = sizeof(data3);
  588. RegQueryValueExW(hkey, L"StorageFormat", 0, &valueType, (LPBYTE)&data3,
  589. &cch_data3);
  590. s2 = cmSystemTools::LowerCase(cmsys::Encoding::ToNarrow(data1));
  591. cmSystemTools::ConvertToUnixSlashes(s2);
  592. if (s2 == s1) {
  593. macrosRegistered = true;
  594. }
  595. // std::cout << keyname << ":" << std::endl;
  596. // std::cout << " Path: " << data1 << std::endl;
  597. // std::cout << " Security: " << data2 << std::endl;
  598. // std::cout << " StorageFormat: " << data3 << std::endl;
  599. // std::cout << std::endl;
  600. RegCloseKey(hkey);
  601. } else {
  602. std::cout << "error opening key: " << keyname << std::endl;
  603. std::cout << std::endl;
  604. }
  605. return macrosRegistered;
  606. }
  607. void WriteVSMacrosFileRegistryEntry(const std::string& nextAvailableSubKeyName,
  608. const std::string& macrosFile,
  609. const std::string& regKeyBase)
  610. {
  611. std::string keyname = regKeyBase + "\\OtherProjects7";
  612. HKEY hkey = NULL;
  613. LONG result =
  614. RegOpenKeyExW(HKEY_CURRENT_USER, cmsys::Encoding::ToWide(keyname).c_str(),
  615. 0, KEY_READ | KEY_WRITE, &hkey);
  616. if (ERROR_SUCCESS == result) {
  617. // Create the subkey and set the values of interest:
  618. HKEY hsubkey = NULL;
  619. wchar_t lpClass[] = L"";
  620. result = RegCreateKeyExW(
  621. hkey, cmsys::Encoding::ToWide(nextAvailableSubKeyName).c_str(), 0,
  622. lpClass, 0, KEY_READ | KEY_WRITE, 0, &hsubkey, 0);
  623. if (ERROR_SUCCESS == result) {
  624. DWORD dw = 0;
  625. std::string s(macrosFile);
  626. std::replace(s.begin(), s.end(), '/', '\\');
  627. std::wstring ws = cmsys::Encoding::ToWide(s);
  628. result =
  629. RegSetValueExW(hsubkey, L"Path", 0, REG_SZ, (LPBYTE)ws.c_str(),
  630. static_cast<DWORD>(ws.size() + 1) * sizeof(wchar_t));
  631. if (ERROR_SUCCESS != result) {
  632. std::cout << "error result 1: " << result << std::endl;
  633. std::cout << std::endl;
  634. }
  635. // Security value is always "1" for sample macros files (seems to be "2"
  636. // if you put the file somewhere outside the standard VSMacros folder)
  637. dw = 1;
  638. result = RegSetValueExW(hsubkey, L"Security", 0, REG_DWORD, (LPBYTE)&dw,
  639. sizeof(DWORD));
  640. if (ERROR_SUCCESS != result) {
  641. std::cout << "error result 2: " << result << std::endl;
  642. std::cout << std::endl;
  643. }
  644. // StorageFormat value is always "0" for sample macros files
  645. dw = 0;
  646. result = RegSetValueExW(hsubkey, L"StorageFormat", 0, REG_DWORD,
  647. (LPBYTE)&dw, sizeof(DWORD));
  648. if (ERROR_SUCCESS != result) {
  649. std::cout << "error result 3: " << result << std::endl;
  650. std::cout << std::endl;
  651. }
  652. RegCloseKey(hsubkey);
  653. } else {
  654. std::cout << "error creating subkey: " << nextAvailableSubKeyName
  655. << std::endl;
  656. std::cout << std::endl;
  657. }
  658. RegCloseKey(hkey);
  659. } else {
  660. std::cout << "error opening key: " << keyname << std::endl;
  661. std::cout << std::endl;
  662. }
  663. }
  664. void RegisterVisualStudioMacros(const std::string& macrosFile,
  665. const std::string& regKeyBase)
  666. {
  667. bool macrosRegistered;
  668. std::string nextAvailableSubKeyName;
  669. macrosRegistered = IsVisualStudioMacrosFileRegistered(
  670. macrosFile, regKeyBase, nextAvailableSubKeyName);
  671. if (!macrosRegistered) {
  672. int count =
  673. cmCallVisualStudioMacro::GetNumberOfRunningVisualStudioInstances("ALL");
  674. // Only register the macros file if there are *no* instances of Visual
  675. // Studio running. If we register it while one is running, first, it has
  676. // no effect on the running instance; second, and worse, Visual Studio
  677. // removes our newly added registration entry when it quits. Instead,
  678. // emit a warning asking the user to exit all running Visual Studio
  679. // instances...
  680. //
  681. if (0 != count) {
  682. std::ostringstream oss;
  683. oss << "Could not register CMake's Visual Studio macros file '"
  684. << CMAKE_VSMACROS_FILENAME "' while Visual Studio is running."
  685. << " Please exit all running instances of Visual Studio before"
  686. << " continuing." << std::endl
  687. << std::endl
  688. << "CMake needs to register Visual Studio macros when its macros"
  689. << " file is updated or when it detects that its current macros file"
  690. << " is no longer registered with Visual Studio." << std::endl;
  691. cmSystemTools::Message(oss.str(), "Warning");
  692. // Count them again now that the warning is over. In the case of a GUI
  693. // warning, the user may have gone to close Visual Studio and then come
  694. // back to the CMake GUI and clicked ok on the above warning. If so,
  695. // then register the macros *now* if the count is *now* 0...
  696. //
  697. count = cmCallVisualStudioMacro::GetNumberOfRunningVisualStudioInstances(
  698. "ALL");
  699. // Also re-get the nextAvailableSubKeyName in case Visual Studio
  700. // wrote out new registered macros information as it was exiting:
  701. //
  702. if (0 == count) {
  703. IsVisualStudioMacrosFileRegistered(macrosFile, regKeyBase,
  704. nextAvailableSubKeyName);
  705. }
  706. }
  707. // Do another if check - 'count' may have changed inside the above if:
  708. //
  709. if (0 == count) {
  710. WriteVSMacrosFileRegistryEntry(nextAvailableSubKeyName, macrosFile,
  711. regKeyBase);
  712. }
  713. }
  714. }
  715. bool cmGlobalVisualStudioGenerator::TargetIsFortranOnly(
  716. cmGeneratorTarget const* gt)
  717. {
  718. // check to see if this is a fortran build
  719. {
  720. // Issue diagnostic if the source files depend on the config.
  721. std::vector<cmSourceFile*> sources;
  722. if (!gt->GetConfigCommonSourceFiles(sources)) {
  723. return false;
  724. }
  725. }
  726. // If there's only one source language, Fortran has to be used
  727. // in order for the sources to compile.
  728. std::set<std::string> languages;
  729. gt->GetLanguages(languages, "");
  730. // Consider an explicit linker language property, but *not* the
  731. // computed linker language that may depend on linked targets.
  732. // This allows the project to control the language choice in
  733. // a target with none of its own sources, e.g. when also using
  734. // object libraries.
  735. const char* linkLang = gt->GetProperty("LINKER_LANGUAGE");
  736. if (linkLang && *linkLang) {
  737. languages.insert(linkLang);
  738. }
  739. // Intel Fortran .vfproj files do support the resource compiler.
  740. languages.erase("RC");
  741. return languages.size() == 1 && *languages.begin() == "Fortran";
  742. }
  743. bool cmGlobalVisualStudioGenerator::TargetCompare::operator()(
  744. cmGeneratorTarget const* l, cmGeneratorTarget const* r) const
  745. {
  746. // Make sure a given named target is ordered first,
  747. // e.g. to set ALL_BUILD as the default active project.
  748. // When the empty string is named this is a no-op.
  749. if (r->GetName() == this->First) {
  750. return false;
  751. }
  752. if (l->GetName() == this->First) {
  753. return true;
  754. }
  755. return l->GetName() < r->GetName();
  756. }
  757. cmGlobalVisualStudioGenerator::OrderedTargetDependSet::OrderedTargetDependSet(
  758. TargetDependSet const& targets, std::string const& first)
  759. : derived(TargetCompare(first))
  760. {
  761. this->insert(targets.begin(), targets.end());
  762. }
  763. cmGlobalVisualStudioGenerator::OrderedTargetDependSet::OrderedTargetDependSet(
  764. TargetSet const& targets, std::string const& first)
  765. : derived(TargetCompare(first))
  766. {
  767. for (cmGeneratorTarget const* it : targets) {
  768. this->insert(it);
  769. }
  770. }
  771. std::string cmGlobalVisualStudioGenerator::ExpandCFGIntDir(
  772. const std::string& str, const std::string& config) const
  773. {
  774. std::string replace = GetCMakeCFGIntDir();
  775. std::string tmp = str;
  776. for (std::string::size_type i = tmp.find(replace); i != std::string::npos;
  777. i = tmp.find(replace, i)) {
  778. tmp.replace(i, replace.size(), config);
  779. i += config.size();
  780. }
  781. return tmp;
  782. }
  783. void cmGlobalVisualStudioGenerator::AddSymbolExportCommand(
  784. cmGeneratorTarget* gt, std::vector<cmCustomCommand>& commands,
  785. std::string const& configName)
  786. {
  787. cmGeneratorTarget::ModuleDefinitionInfo const* mdi =
  788. gt->GetModuleDefinitionInfo(configName);
  789. if (!mdi || !mdi->DefFileGenerated) {
  790. return;
  791. }
  792. std::vector<std::string> outputs;
  793. outputs.push_back(mdi->DefFile);
  794. std::vector<std::string> empty;
  795. std::vector<cmSourceFile const*> objectSources;
  796. gt->GetObjectSources(objectSources, configName);
  797. std::map<cmSourceFile const*, std::string> mapping;
  798. for (cmSourceFile const* it : objectSources) {
  799. mapping[it];
  800. }
  801. gt->LocalGenerator->ComputeObjectFilenames(mapping, gt);
  802. std::string obj_dir = gt->ObjectDirectory;
  803. std::string cmakeCommand = cmSystemTools::GetCMakeCommand();
  804. cmSystemTools::ConvertToWindowsExtendedPath(cmakeCommand);
  805. cmCustomCommandLine cmdl;
  806. cmdl.push_back(cmakeCommand);
  807. cmdl.push_back("-E");
  808. cmdl.push_back("__create_def");
  809. cmdl.push_back(mdi->DefFile);
  810. std::string obj_dir_expanded = obj_dir;
  811. cmSystemTools::ReplaceString(obj_dir_expanded, this->GetCMakeCFGIntDir(),
  812. configName.c_str());
  813. cmSystemTools::MakeDirectory(obj_dir_expanded);
  814. std::string const objs_file = obj_dir_expanded + "/objects.txt";
  815. cmdl.push_back(objs_file);
  816. cmGeneratedFileStream fout(objs_file.c_str());
  817. if (!fout) {
  818. cmSystemTools::Error("could not open " + objs_file);
  819. return;
  820. }
  821. if (mdi->WindowsExportAllSymbols) {
  822. std::vector<std::string> objs;
  823. for (cmSourceFile const* it : objectSources) {
  824. // Find the object file name corresponding to this source file.
  825. // It must exist because we populated the mapping just above.
  826. const auto& v = mapping[it];
  827. assert(!v.empty());
  828. std::string objFile = obj_dir + v;
  829. objs.push_back(objFile);
  830. }
  831. std::vector<cmSourceFile const*> externalObjectSources;
  832. gt->GetExternalObjects(externalObjectSources, configName);
  833. for (cmSourceFile const* it : externalObjectSources) {
  834. objs.push_back(it->GetFullPath());
  835. }
  836. for (std::string const& it : objs) {
  837. std::string objFile = it;
  838. // replace $(ConfigurationName) in the object names
  839. cmSystemTools::ReplaceString(objFile, this->GetCMakeCFGIntDir(),
  840. configName.c_str());
  841. if (cmHasLiteralSuffix(objFile, ".obj")) {
  842. fout << objFile << "\n";
  843. }
  844. }
  845. }
  846. for (cmSourceFile const* i : mdi->Sources) {
  847. fout << i->GetFullPath() << "\n";
  848. }
  849. cmCustomCommandLines commandLines;
  850. commandLines.push_back(cmdl);
  851. cmCustomCommand command(gt->Target->GetMakefile(), outputs, empty, empty,
  852. commandLines, "Auto build dll exports", ".");
  853. commands.push_back(command);
  854. }
  855. static bool OpenSolution(std::string sln)
  856. {
  857. HRESULT comInitialized =
  858. CoInitializeEx(NULL, COINIT_APARTMENTTHREADED | COINIT_DISABLE_OLE1DDE);
  859. if (FAILED(comInitialized)) {
  860. return false;
  861. }
  862. HINSTANCE hi =
  863. ShellExecuteA(NULL, "open", sln.c_str(), NULL, NULL, SW_SHOWNORMAL);
  864. CoUninitialize();
  865. return reinterpret_cast<intptr_t>(hi) > 32;
  866. }
  867. bool cmGlobalVisualStudioGenerator::Open(const std::string& bindir,
  868. const std::string& projectName,
  869. bool dryRun)
  870. {
  871. std::string sln = bindir + "/" + projectName + ".sln";
  872. if (dryRun) {
  873. return cmSystemTools::FileExists(sln, true);
  874. }
  875. sln = cmSystemTools::ConvertToOutputPath(sln);
  876. return std::async(std::launch::async, OpenSolution, sln).get();
  877. }