NETHostWindows.cpp 15 KB

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  1. #include <Atomic/IO/Log.h>
  2. #include <Atomic/IO/FileSystem.h>
  3. #include "NETHostWindows.h"
  4. // https://github.com/dotnet/coreclr/blob/master/Documentation/project-docs/clr-configuration-knobs.md
  5. // set COMPLUS_LogEnable=1
  6. // set COMPLUS_LogToConsole=1
  7. // set COMPLUS_LogLevel=9
  8. // set COMPLUS_ManagedLogFacility=0x00001000
  9. namespace Atomic
  10. {
  11. NETHostWindows::NETHostWindows(Context* context) :
  12. NETHost(context),
  13. clrRuntimeHost_(0),
  14. clrModule_(0),
  15. appDomainID_(0)
  16. {
  17. }
  18. NETHostWindows::~NETHostWindows()
  19. {
  20. }
  21. bool NETHostWindows::CreateDelegate(const String& assemblyName, const String& qualifiedClassName, const String& methodName, void** funcOut)
  22. {
  23. if (!clrRuntimeHost_)
  24. return false;
  25. HRESULT hr = clrRuntimeHost_->CreateDelegate(appDomainID_, WString(assemblyName).CString(), WString(qualifiedClassName).CString(), WString(methodName).CString(), (INT_PTR *)funcOut);
  26. if (FAILED(hr))
  27. {
  28. return false;
  29. }
  30. return true;
  31. }
  32. bool NETHostWindows::Initialize()
  33. {
  34. // It is very important that this is the native path "\\" vs "/" as find files will return "/" or "\" depending
  35. // on what you give it, which will result in the domain failing to initialize as coreclr can't handle "/" on init
  36. if (!coreCLRFilesAbsPath_.Length())
  37. return false;
  38. if (!coreCLRTPAPaths_.Length())
  39. return false;
  40. if (!coreCLRAssemblyLoadPaths_.Length())
  41. return false;
  42. if (!LoadCLRDLL())
  43. return false;
  44. if (!InitCLRRuntimeHost())
  45. return false;
  46. if (!CreateAppDomain())
  47. return false;
  48. // MOVE THIS!
  49. typedef void (*StartupFunction)(const char* assemblyLoadPaths);
  50. StartupFunction startup;
  51. // The coreclr binding model will become locked upon loading the first assembly that is not on the TPA list, or
  52. // upon initializing the default context for the first time. For this test, test assemblies are located alongside
  53. // corerun, and hence will be on the TPA list. So, we should be able to set the default context once successfully,
  54. // and fail on the second try.
  55. // AssemblyLoadContext
  56. // https://github.com/dotnet/corefx/issues/3054
  57. // dnx loader
  58. // https://github.com/aspnet/dnx/tree/dev/src/Microsoft.Dnx.Loader
  59. bool result = CreateDelegate(
  60. "AtomicNETBootstrap",
  61. "Atomic.Bootstrap.AtomicLoadContext",
  62. "Startup",
  63. (void**) &startup);
  64. if (result)
  65. {
  66. startup(coreCLRAssemblyLoadPaths_.CString());
  67. }
  68. // MOVE THIS!
  69. typedef void (*InitializeFunction)();
  70. InitializeFunction init;
  71. result = CreateDelegate(
  72. "AtomicNETEngine",
  73. "AtomicEngine.Atomic",
  74. "Initialize",
  75. (void**) &init);
  76. if (result)
  77. {
  78. init();
  79. }
  80. return true;
  81. }
  82. void NETHostWindows::WaitForDebuggerConnect()
  83. {
  84. while (!IsDebuggerPresent())
  85. {
  86. Sleep(100);
  87. }
  88. }
  89. bool NETHostWindows::LoadCLRDLL()
  90. {
  91. WString wcoreCLRDLLPath(coreCLRFilesAbsPath_ + "coreclr.dll");
  92. HMODULE result = ::LoadLibraryExW(wcoreCLRDLLPath.CString(), NULL, 0);
  93. if (!result)
  94. {
  95. LOGERRORF("Unable to load CoreCLR from %s", (coreCLRFilesAbsPath_ + "coreclr.dll").CString() );
  96. return false;
  97. }
  98. // Pin the module - CoreCLR.dll does not support being unloaded.
  99. HMODULE dummy_coreCLRModule;
  100. if (!::GetModuleHandleExW(GET_MODULE_HANDLE_EX_FLAG_PIN, wcoreCLRDLLPath.CString(), &dummy_coreCLRModule))
  101. {
  102. LOGERRORF("Unable to pin CoreCLR module: %s", (coreCLRFilesAbsPath_ + "coreclr.dll").CString() );
  103. return false;
  104. }
  105. clrModule_ = result;
  106. return true;
  107. }
  108. bool NETHostWindows::CreateAppDomain()
  109. {
  110. wchar_t appPath[MAX_LONGPATH] = W("");
  111. wchar_t appNiPath[MAX_LONGPATH * 2] = W("");
  112. //wcscpy_s(appPath, WString(coreCLRFilesAbsPath_).CString());
  113. wcscpy_s(appNiPath, appPath);
  114. wcscat_s(appNiPath, MAX_LONGPATH * 2, W(";"));
  115. wcscat_s(appNiPath, MAX_LONGPATH * 2, appPath);
  116. // Construct native search directory paths
  117. wchar_t nativeDllSearchDirs[MAX_LONGPATH * 3];
  118. wcscpy_s(nativeDllSearchDirs, appPath);
  119. wcscat_s(nativeDllSearchDirs, MAX_LONGPATH * 3, W(";"));
  120. wcscat_s(nativeDllSearchDirs, MAX_LONGPATH * 3, WString(coreCLRFilesAbsPath_).CString());
  121. //-------------------------------------------------------------
  122. // Create an AppDomain
  123. // Allowed property names:
  124. // APPBASE
  125. // - The base path of the application from which the exe and other assemblies will be loaded
  126. //
  127. // TRUSTED_PLATFORM_ASSEMBLIES
  128. // - The list of complete paths to each of the fully trusted assemblies
  129. //
  130. // APP_PATHS
  131. // - The list of paths which will be probed by the assembly loader
  132. //
  133. // APP_NI_PATHS
  134. // - The list of additional paths that the assembly loader will probe for ngen images
  135. //
  136. // NATIVE_DLL_SEARCH_DIRECTORIES
  137. // - The list of paths that will be probed for native DLLs called by PInvoke
  138. //
  139. // IMPORTANT: ALL PATHS MUST USE "\" and not "/"
  140. const wchar_t *property_keys[] = {
  141. W("TRUSTED_PLATFORM_ASSEMBLIES"),
  142. W("APP_PATHS"),
  143. W("APP_NI_PATHS"),
  144. W("NATIVE_DLL_SEARCH_DIRECTORIES"),
  145. W("AppDomainCompatSwitch")
  146. };
  147. const wchar_t *property_values[] = {
  148. // TRUSTED_PLATFORM_ASSEMBLIES
  149. tpaList_.CStr(),
  150. // APP_PATHS
  151. appPath,
  152. // APP_NI_PATHS
  153. appNiPath,
  154. // NATIVE_DLL_SEARCH_DIRECTORIES
  155. nativeDllSearchDirs,
  156. // AppDomainCompatSwitch
  157. W("UseLatestBehaviorWhenTFMNotSpecified")
  158. };
  159. HRESULT hr = clrRuntimeHost_->CreateAppDomainWithManager(
  160. W("AtomicNETDomain"), // The friendly name of the AppDomain
  161. // Flags:
  162. // APPDOMAIN_ENABLE_PLATFORM_SPECIFIC_APPS
  163. // - By default CoreCLR only allows platform neutral assembly to be run. To allow
  164. // assemblies marked as platform specific, include this flag
  165. //
  166. // APPDOMAIN_ENABLE_PINVOKE_AND_CLASSIC_COMINTEROP
  167. // - Allows sandboxed applications to make P/Invoke calls and use COM interop
  168. //
  169. // APPDOMAIN_SECURITY_SANDBOXED
  170. // - Enables sandboxing. If not set, the app is considered full trust
  171. //
  172. // APPDOMAIN_IGNORE_UNHANDLED_EXCEPTION
  173. // - Prevents the application from being torn down if a managed exception is unhandled
  174. //
  175. APPDOMAIN_ENABLE_PLATFORM_SPECIFIC_APPS |
  176. APPDOMAIN_ENABLE_PINVOKE_AND_CLASSIC_COMINTEROP |
  177. APPDOMAIN_DISABLE_TRANSPARENCY_ENFORCEMENT,
  178. NULL, // Name of the assembly that contains the AppDomainManager implementation
  179. NULL, // The AppDomainManager implementation type name
  180. sizeof(property_keys)/sizeof(wchar_t*), // The number of properties
  181. property_keys,
  182. property_values,
  183. &appDomainID_);
  184. if (FAILED(hr)) {
  185. LOGERRORF("Failed call to CreateAppDomainWithManager. ERRORCODE:%u ", hr);
  186. return false;
  187. }
  188. return true;
  189. }
  190. bool NETHostWindows::InitCLRRuntimeHost()
  191. {
  192. if (!clrModule_)
  193. return false;
  194. FnGetCLRRuntimeHost pfnGetCLRRuntimeHost =
  195. (FnGetCLRRuntimeHost)::GetProcAddress(clrModule_, "GetCLRRuntimeHost");
  196. if (!pfnGetCLRRuntimeHost)
  197. {
  198. LOGERRORF("Unable to get GetCLRRuntimeHost function from module: %s", (coreCLRFilesAbsPath_ + "coreclr.dll").CString() );
  199. return false;
  200. }
  201. HRESULT hr = pfnGetCLRRuntimeHost(IID_ICLRRuntimeHost2, (IUnknown**)&clrRuntimeHost_);
  202. if (FAILED(hr))
  203. {
  204. LOGERRORF("Failed to get ICLRRuntimeHost2 interface. ERRORCODE: %u", hr);
  205. return false;
  206. }
  207. // Set up the startup flags for the clr runtime
  208. STARTUP_FLAGS dwStartupFlags = (STARTUP_FLAGS)(
  209. STARTUP_FLAGS::STARTUP_LOADER_OPTIMIZATION_SINGLE_DOMAIN |
  210. STARTUP_FLAGS::STARTUP_SINGLE_APPDOMAIN /* |
  211. STARTUP_FLAGS::STARTUP_SERVER_GC*/
  212. );
  213. // Default startup flags
  214. hr = clrRuntimeHost_->SetStartupFlags(dwStartupFlags);
  215. if (FAILED(hr))
  216. {
  217. LOGERRORF("Failed to set startup flags. ERRORCODE: %u", hr);
  218. return false;
  219. }
  220. /*
  221. // Authenticate with either CORECLR_HOST_AUTHENTICATION_KEY or CORECLR_HOST_AUTHENTICATION_KEY_NONGEN
  222. hr = clrRuntimeHost_->Authenticate(CORECLR_HOST_AUTHENTICATION_KEY);
  223. if (FAILED(hr))
  224. {
  225. LOGERRORF("CoreCLR failed to authenticate. ERRORCODE: %u", hr);
  226. return false;
  227. }
  228. */
  229. hr = clrRuntimeHost_->Start();
  230. if (FAILED(hr))
  231. {
  232. LOGERRORF("Failed to start CoreCLR. ERRORCODE: %u", hr);
  233. return false;
  234. }
  235. if (!GenerateTPAList())
  236. {
  237. LOGERRORF("Failed to generate TPA List");
  238. return false;
  239. }
  240. return true;
  241. }
  242. bool NETHostWindows::TPAListContainsFile(wchar_t* fileNameWithoutExtension, wchar_t** rgTPAExtensions, int countExtensions)
  243. {
  244. if (!tpaList_.CStr()) return false;
  245. for (int iExtension = 0; iExtension < countExtensions; iExtension++)
  246. {
  247. wchar_t fileName[MAX_LONGPATH];
  248. wcscpy_s(fileName, MAX_LONGPATH, W("\\")); // So that we don't match other files that end with the current file name
  249. wcscat_s(fileName, MAX_LONGPATH, fileNameWithoutExtension);
  250. wcscat_s(fileName, MAX_LONGPATH, rgTPAExtensions[iExtension] + 1);
  251. wcscat_s(fileName, MAX_LONGPATH, W(";")); // So that we don't match other files that begin with the current file name
  252. if (wcsstr(tpaList_.CStr(), fileName))
  253. {
  254. return true;
  255. }
  256. }
  257. return false;
  258. }
  259. void NETHostWindows::RemoveExtensionAndNi(wchar_t* fileName)
  260. {
  261. // Remove extension, if it exists
  262. wchar_t* extension = wcsrchr(fileName, W('.'));
  263. if (extension != NULL)
  264. {
  265. extension[0] = W('\0');
  266. // Check for .ni
  267. size_t len = wcslen(fileName);
  268. if (len > 3 &&
  269. fileName[len - 1] == W('i') &&
  270. fileName[len - 2] == W('n') &&
  271. fileName[len - 3] == W('.') )
  272. {
  273. fileName[len - 3] = W('\0');
  274. }
  275. }
  276. }
  277. void NETHostWindows::AddFilesFromDirectoryToTPAList(const wchar_t* targetPath, wchar_t** rgTPAExtensions, int countExtensions)
  278. {
  279. wchar_t assemblyPath[MAX_LONGPATH];
  280. for (int iExtension = 0; iExtension < countExtensions; iExtension++)
  281. {
  282. wcscpy_s(assemblyPath, MAX_LONGPATH, targetPath);
  283. const size_t dirLength = wcslen(targetPath);
  284. wchar_t* const fileNameBuffer = assemblyPath + dirLength;
  285. const size_t fileNameBufferSize = MAX_LONGPATH - dirLength;
  286. wcscat_s(assemblyPath, rgTPAExtensions[iExtension]);
  287. WIN32_FIND_DATA data;
  288. HANDLE findHandle = FindFirstFile(assemblyPath, &data);
  289. if (findHandle != INVALID_HANDLE_VALUE)
  290. {
  291. do
  292. {
  293. if (!(data.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY))
  294. {
  295. // It seems that CoreCLR doesn't always use the first instance of an assembly on the TPA list (ni's may be preferred
  296. // over il, even if they appear later). So, only include the first instance of a simple assembly name to allow
  297. // users the opportunity to override Framework assemblies by placing dlls in %CORE_LIBRARIES%
  298. // ToLower for case-insensitive comparisons
  299. wchar_t* fileNameChar = data.cFileName;
  300. while (*fileNameChar)
  301. {
  302. *fileNameChar = towlower(*fileNameChar);
  303. fileNameChar++;
  304. }
  305. // Remove extension
  306. wchar_t fileNameWithoutExtension[MAX_LONGPATH];
  307. wcscpy_s(fileNameWithoutExtension, MAX_LONGPATH, data.cFileName);
  308. RemoveExtensionAndNi(fileNameWithoutExtension);
  309. // Add to the list if not already on it
  310. if (!TPAListContainsFile(fileNameWithoutExtension, rgTPAExtensions, countExtensions))
  311. {
  312. const size_t fileLength = wcslen(data.cFileName);
  313. const size_t assemblyPathLength = dirLength + fileLength;
  314. wcsncpy_s(fileNameBuffer, fileNameBufferSize, data.cFileName, fileLength);
  315. tpaList_.Append(assemblyPath, assemblyPathLength);
  316. tpaList_.Append(W(";"), 1);
  317. }
  318. else
  319. {
  320. LOGINFOF("NETHostWindows skipping assembly");
  321. }
  322. }
  323. } while (0 != FindNextFile(findHandle, &data));
  324. FindClose(findHandle);
  325. }
  326. }
  327. }
  328. bool NETHostWindows::GenerateTPAList()
  329. {
  330. wchar_t *rgTPAExtensions[] = {
  331. W("*.ni.dll"), // Probe for .ni.dll first so that it's preferred if ni and il coexist in the same dir
  332. W("*.dll"),
  333. W("*.ni.exe"),
  334. W("*.exe"),
  335. };
  336. AddFilesFromDirectoryToTPAList(WString(coreCLRFilesAbsPath_).CString(), rgTPAExtensions, _countof(rgTPAExtensions));
  337. Vector<String> paths = coreCLRTPAPaths_.Split(';');
  338. for (unsigned i = 0; i < paths.Size(); i++)
  339. {
  340. AddFilesFromDirectoryToTPAList(WString(GetNativePath(paths[i])).CString(), rgTPAExtensions, _countof(rgTPAExtensions));
  341. }
  342. return true;
  343. }
  344. }
  345. /*
  346. RETAIL_CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogEnable, W("LogEnable"), "Turns on the traditional CLR log.")
  347. RETAIL_CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogFacility, W("LogFacility"), "Specifies a facility mask for CLR log. (See 'loglf.h'; VM interprets string value as hex number.) Also used by stresslog.")
  348. RETAIL_CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogFacility2, W("LogFacility2"), "Specifies a facility mask for CLR log. (See 'loglf.h'; VM interprets string value as hex number.) Also used by stresslog.")
  349. RETAIL_CONFIG_DWORD_INFO(EXTERNAL_logFatalError, W("logFatalError"), 1, "Specifies whether EventReporter logs fatal errors in the Windows event log.")
  350. CONFIG_STRING_INFO_EX(INTERNAL_LogFile, W("LogFile"), "Specifies a file name for the CLR log.", CLRConfig::REGUTIL_default)
  351. CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogFileAppend, W("LogFileAppend"), "Specifies whether to append to or replace the CLR log file.")
  352. CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogFlushFile, W("LogFlushFile"), "Specifies whether to flush the CLR log file file on each write.")
  353. RETAIL_CONFIG_DWORD_INFO_DIRECT_ACCESS(EXTERNAL_LogLevel, W("LogLevel"), "4=10 msgs, 9=1000000, 10=everything")
  354. RETAIL_CONFIG_STRING_INFO_DIRECT_ACCESS(INTERNAL_LogPath, W("LogPath"), "?Fusion debug log path.")
  355. RETAIL_CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogToConsole, W("LogToConsole"), "Writes the CLR log to console.")
  356. CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogToDebugger, W("LogToDebugger"), "Writes the CLR log to debugger (OutputDebugStringA).")
  357. CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogToFile, W("LogToFile"), "Writes the CLR log to a file.")
  358. CONFIG_DWORD_INFO_DIRECT_ACCESS(INTERNAL_LogWithPid, W("LogWithPid"), "Appends pid to filename for the CLR log.")
  359. RETAIL_CONFIG_DWORD_INFO_EX(EXTERNAL_FusionLogFileNamesIncludePid, W("FusionLogFileNamesIncludePid"), 0, "Fusion logging will append process id to log filenames.", CLRConfig::REGUTIL_default)
  360. */