ToolChainTest.cpp 9.8 KB

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  1. //===- unittests/Driver/ToolChainTest.cpp --- ToolChain tests -------------===//
  2. //
  3. // The LLVM Compiler Infrastructure
  4. //
  5. // This file is distributed under the University of Illinois Open Source
  6. // License. See LICENSE.TXT for details.
  7. //
  8. //===----------------------------------------------------------------------===//
  9. //
  10. // Unit tests for ToolChains.
  11. //
  12. //===----------------------------------------------------------------------===//
  13. #include "clang/Driver/ToolChain.h"
  14. #include "clang/Basic/DiagnosticIDs.h"
  15. #include "clang/Basic/DiagnosticOptions.h"
  16. #include "clang/Basic/LLVM.h"
  17. #include "clang/Basic/VirtualFileSystem.h"
  18. #include "clang/Driver/Compilation.h"
  19. #include "clang/Driver/Driver.h"
  20. #include "llvm/Support/TargetRegistry.h"
  21. #include "llvm/Support/TargetSelect.h"
  22. #include "llvm/Support/raw_ostream.h"
  23. #include "gtest/gtest.h"
  24. using namespace clang;
  25. using namespace clang::driver;
  26. namespace {
  27. TEST(ToolChainTest, VFSGCCInstallation) {
  28. IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = new DiagnosticOptions();
  29. IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
  30. struct TestDiagnosticConsumer : public DiagnosticConsumer {};
  31. DiagnosticsEngine Diags(DiagID, &*DiagOpts, new TestDiagnosticConsumer);
  32. IntrusiveRefCntPtr<vfs::InMemoryFileSystem> InMemoryFileSystem(
  33. new vfs::InMemoryFileSystem);
  34. Driver TheDriver("/bin/clang", "arm-linux-gnueabihf", Diags,
  35. InMemoryFileSystem);
  36. const char *EmptyFiles[] = {
  37. "foo.cpp",
  38. "/bin/clang",
  39. "/usr/lib/gcc/arm-linux-gnueabi/4.6.1/crtbegin.o",
  40. "/usr/lib/gcc/arm-linux-gnueabi/4.6.1/crtend.o",
  41. "/usr/lib/gcc/arm-linux-gnueabihf/4.6.3/crtbegin.o",
  42. "/usr/lib/gcc/arm-linux-gnueabihf/4.6.3/crtend.o",
  43. "/usr/lib/arm-linux-gnueabi/crt1.o",
  44. "/usr/lib/arm-linux-gnueabi/crti.o",
  45. "/usr/lib/arm-linux-gnueabi/crtn.o",
  46. "/usr/lib/arm-linux-gnueabihf/crt1.o",
  47. "/usr/lib/arm-linux-gnueabihf/crti.o",
  48. "/usr/lib/arm-linux-gnueabihf/crtn.o",
  49. "/usr/include/arm-linux-gnueabi/.keep",
  50. "/usr/include/arm-linux-gnueabihf/.keep",
  51. "/lib/arm-linux-gnueabi/.keep",
  52. "/lib/arm-linux-gnueabihf/.keep"};
  53. for (const char *Path : EmptyFiles)
  54. InMemoryFileSystem->addFile(Path, 0,
  55. llvm::MemoryBuffer::getMemBuffer("\n"));
  56. std::unique_ptr<Compilation> C(TheDriver.BuildCompilation(
  57. {"-fsyntax-only", "--gcc-toolchain=", "foo.cpp"}));
  58. EXPECT_TRUE(C);
  59. std::string S;
  60. {
  61. llvm::raw_string_ostream OS(S);
  62. C->getDefaultToolChain().printVerboseInfo(OS);
  63. }
  64. #if _WIN32
  65. std::replace(S.begin(), S.end(), '\\', '/');
  66. #endif
  67. EXPECT_EQ(
  68. "Found candidate GCC installation: "
  69. "/usr/lib/gcc/arm-linux-gnueabihf/4.6.3\n"
  70. "Selected GCC installation: /usr/lib/gcc/arm-linux-gnueabihf/4.6.3\n"
  71. "Candidate multilib: .;@m32\n"
  72. "Selected multilib: .;@m32\n",
  73. S);
  74. }
  75. TEST(ToolChainTest, VFSGCCInstallationRelativeDir) {
  76. IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = new DiagnosticOptions();
  77. IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
  78. struct TestDiagnosticConsumer : public DiagnosticConsumer {};
  79. DiagnosticsEngine Diags(DiagID, &*DiagOpts, new TestDiagnosticConsumer);
  80. IntrusiveRefCntPtr<vfs::InMemoryFileSystem> InMemoryFileSystem(
  81. new vfs::InMemoryFileSystem);
  82. Driver TheDriver("/home/test/bin/clang", "arm-linux-gnueabi", Diags,
  83. InMemoryFileSystem);
  84. const char *EmptyFiles[] = {
  85. "foo.cpp", "/home/test/lib/gcc/arm-linux-gnueabi/4.6.1/crtbegin.o",
  86. "/home/test/include/arm-linux-gnueabi/.keep"};
  87. for (const char *Path : EmptyFiles)
  88. InMemoryFileSystem->addFile(Path, 0,
  89. llvm::MemoryBuffer::getMemBuffer("\n"));
  90. std::unique_ptr<Compilation> C(TheDriver.BuildCompilation(
  91. {"-fsyntax-only", "--gcc-toolchain=", "foo.cpp"}));
  92. EXPECT_TRUE(C);
  93. std::string S;
  94. {
  95. llvm::raw_string_ostream OS(S);
  96. C->getDefaultToolChain().printVerboseInfo(OS);
  97. }
  98. #if _WIN32
  99. std::replace(S.begin(), S.end(), '\\', '/');
  100. #endif
  101. EXPECT_EQ("Found candidate GCC installation: "
  102. "/home/test/lib/gcc/arm-linux-gnueabi/4.6.1\n"
  103. "Selected GCC installation: "
  104. "/home/test/bin/../lib/gcc/arm-linux-gnueabi/4.6.1\n"
  105. "Candidate multilib: .;@m32\n"
  106. "Selected multilib: .;@m32\n",
  107. S);
  108. }
  109. TEST(ToolChainTest, DefaultDriverMode) {
  110. IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = new DiagnosticOptions();
  111. IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
  112. struct TestDiagnosticConsumer : public DiagnosticConsumer {};
  113. DiagnosticsEngine Diags(DiagID, &*DiagOpts, new TestDiagnosticConsumer);
  114. IntrusiveRefCntPtr<vfs::InMemoryFileSystem> InMemoryFileSystem(
  115. new vfs::InMemoryFileSystem);
  116. Driver CCDriver("/home/test/bin/clang", "arm-linux-gnueabi", Diags,
  117. InMemoryFileSystem);
  118. CCDriver.setCheckInputsExist(false);
  119. Driver CXXDriver("/home/test/bin/clang++", "arm-linux-gnueabi", Diags,
  120. InMemoryFileSystem);
  121. CXXDriver.setCheckInputsExist(false);
  122. Driver CLDriver("/home/test/bin/clang-cl", "arm-linux-gnueabi", Diags,
  123. InMemoryFileSystem);
  124. CLDriver.setCheckInputsExist(false);
  125. std::unique_ptr<Compilation> CC(CCDriver.BuildCompilation(
  126. { "/home/test/bin/clang", "foo.cpp"}));
  127. std::unique_ptr<Compilation> CXX(CXXDriver.BuildCompilation(
  128. { "/home/test/bin/clang++", "foo.cpp"}));
  129. std::unique_ptr<Compilation> CL(CLDriver.BuildCompilation(
  130. { "/home/test/bin/clang-cl", "foo.cpp"}));
  131. EXPECT_TRUE(CC);
  132. EXPECT_TRUE(CXX);
  133. EXPECT_TRUE(CL);
  134. EXPECT_TRUE(CCDriver.CCCIsCC());
  135. EXPECT_TRUE(CXXDriver.CCCIsCXX());
  136. EXPECT_TRUE(CLDriver.IsCLMode());
  137. }
  138. TEST(ToolChainTest, InvalidArgument) {
  139. IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
  140. struct TestDiagnosticConsumer : public DiagnosticConsumer {};
  141. IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = new DiagnosticOptions();
  142. DiagnosticsEngine Diags(DiagID, &*DiagOpts, new TestDiagnosticConsumer);
  143. Driver TheDriver("/bin/clang", "arm-linux-gnueabihf", Diags);
  144. std::unique_ptr<Compilation> C(TheDriver.BuildCompilation(
  145. {"-fsyntax-only", "-fan-unknown-option", "foo.cpp"}));
  146. EXPECT_TRUE(C);
  147. EXPECT_TRUE(C->containsError());
  148. }
  149. TEST(ToolChainTest, ParsedClangName) {
  150. ParsedClangName Empty;
  151. EXPECT_TRUE(Empty.TargetPrefix.empty());
  152. EXPECT_TRUE(Empty.ModeSuffix.empty());
  153. EXPECT_TRUE(Empty.DriverMode == nullptr);
  154. EXPECT_FALSE(Empty.TargetIsValid);
  155. ParsedClangName DriverOnly("clang", nullptr);
  156. EXPECT_TRUE(DriverOnly.TargetPrefix.empty());
  157. EXPECT_TRUE(DriverOnly.ModeSuffix == "clang");
  158. EXPECT_TRUE(DriverOnly.DriverMode == nullptr);
  159. EXPECT_FALSE(DriverOnly.TargetIsValid);
  160. ParsedClangName DriverOnly2("clang++", "--driver-mode=g++");
  161. EXPECT_TRUE(DriverOnly2.TargetPrefix.empty());
  162. EXPECT_TRUE(DriverOnly2.ModeSuffix == "clang++");
  163. EXPECT_STREQ(DriverOnly2.DriverMode, "--driver-mode=g++");
  164. EXPECT_FALSE(DriverOnly2.TargetIsValid);
  165. ParsedClangName TargetAndMode("i386", "clang-g++", "--driver-mode=g++", true);
  166. EXPECT_TRUE(TargetAndMode.TargetPrefix == "i386");
  167. EXPECT_TRUE(TargetAndMode.ModeSuffix == "clang-g++");
  168. EXPECT_STREQ(TargetAndMode.DriverMode, "--driver-mode=g++");
  169. EXPECT_TRUE(TargetAndMode.TargetIsValid);
  170. }
  171. TEST(ToolChainTest, GetTargetAndMode) {
  172. llvm::InitializeAllTargets();
  173. std::string IgnoredError;
  174. if (!llvm::TargetRegistry::lookupTarget("x86_64", IgnoredError))
  175. return;
  176. ParsedClangName Res = ToolChain::getTargetAndModeFromProgramName("clang");
  177. EXPECT_TRUE(Res.TargetPrefix.empty());
  178. EXPECT_TRUE(Res.ModeSuffix == "clang");
  179. EXPECT_TRUE(Res.DriverMode == nullptr);
  180. EXPECT_FALSE(Res.TargetIsValid);
  181. Res = ToolChain::getTargetAndModeFromProgramName("clang++");
  182. EXPECT_TRUE(Res.TargetPrefix.empty());
  183. EXPECT_TRUE(Res.ModeSuffix == "clang++");
  184. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  185. EXPECT_FALSE(Res.TargetIsValid);
  186. Res = ToolChain::getTargetAndModeFromProgramName("clang++6.0");
  187. EXPECT_TRUE(Res.TargetPrefix.empty());
  188. EXPECT_TRUE(Res.ModeSuffix == "clang++");
  189. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  190. EXPECT_FALSE(Res.TargetIsValid);
  191. Res = ToolChain::getTargetAndModeFromProgramName("clang++-release");
  192. EXPECT_TRUE(Res.TargetPrefix.empty());
  193. EXPECT_TRUE(Res.ModeSuffix == "clang++");
  194. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  195. EXPECT_FALSE(Res.TargetIsValid);
  196. Res = ToolChain::getTargetAndModeFromProgramName("x86_64-clang++");
  197. EXPECT_TRUE(Res.TargetPrefix == "x86_64");
  198. EXPECT_TRUE(Res.ModeSuffix == "clang++");
  199. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  200. EXPECT_TRUE(Res.TargetIsValid);
  201. Res = ToolChain::getTargetAndModeFromProgramName(
  202. "x86_64-linux-gnu-clang-c++");
  203. EXPECT_TRUE(Res.TargetPrefix == "x86_64-linux-gnu");
  204. EXPECT_TRUE(Res.ModeSuffix == "clang-c++");
  205. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  206. EXPECT_TRUE(Res.TargetIsValid);
  207. Res = ToolChain::getTargetAndModeFromProgramName(
  208. "x86_64-linux-gnu-clang-c++-tot");
  209. EXPECT_TRUE(Res.TargetPrefix == "x86_64-linux-gnu");
  210. EXPECT_TRUE(Res.ModeSuffix == "clang-c++");
  211. EXPECT_STREQ(Res.DriverMode, "--driver-mode=g++");
  212. EXPECT_TRUE(Res.TargetIsValid);
  213. Res = ToolChain::getTargetAndModeFromProgramName("qqq");
  214. EXPECT_TRUE(Res.TargetPrefix.empty());
  215. EXPECT_TRUE(Res.ModeSuffix.empty());
  216. EXPECT_TRUE(Res.DriverMode == nullptr);
  217. EXPECT_FALSE(Res.TargetIsValid);
  218. Res = ToolChain::getTargetAndModeFromProgramName("x86_64-qqq");
  219. EXPECT_TRUE(Res.TargetPrefix.empty());
  220. EXPECT_TRUE(Res.ModeSuffix.empty());
  221. EXPECT_TRUE(Res.DriverMode == nullptr);
  222. EXPECT_FALSE(Res.TargetIsValid);
  223. Res = ToolChain::getTargetAndModeFromProgramName("qqq-clang-cl");
  224. EXPECT_TRUE(Res.TargetPrefix == "qqq");
  225. EXPECT_TRUE(Res.ModeSuffix == "clang-cl");
  226. EXPECT_STREQ(Res.DriverMode, "--driver-mode=cl");
  227. EXPECT_FALSE(Res.TargetIsValid);
  228. }
  229. } // end anonymous namespace.