asmjit_test_unit.cpp 12 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314
  1. // [AsmJit]
  2. // Machine Code Generation for C++.
  3. //
  4. // [License]
  5. // Zlib - See LICENSE.md file in the package.
  6. #include "./asmjit.h"
  7. using namespace asmjit;
  8. // ============================================================================
  9. // [DumpCpu]
  10. // ============================================================================
  11. struct DumpCpuFeature {
  12. uint32_t feature;
  13. const char* name;
  14. };
  15. static const char* hostArch() noexcept {
  16. switch (ArchInfo::kIdHost) {
  17. case ArchInfo::kIdX86: return "X86";
  18. case ArchInfo::kIdX64: return "X64";
  19. case ArchInfo::kIdA32: return "ARM32";
  20. case ArchInfo::kIdA64: return "ARM64";
  21. default: return "Unknown";
  22. }
  23. }
  24. static void dumpFeatures(const CpuInfo& cpu, const DumpCpuFeature* data, size_t count) noexcept {
  25. for (size_t i = 0; i < count; i++)
  26. if (cpu.hasFeature(data[i].feature))
  27. INFO(" %s", data[i].name);
  28. }
  29. static void dumpCpu(void) noexcept {
  30. const CpuInfo& cpu = CpuInfo::host();
  31. INFO("Host CPU:");
  32. INFO(" Vendor : %s", cpu.vendor());
  33. INFO(" Brand : %s", cpu.brand());
  34. INFO(" Model ID : %u", cpu.modelId());
  35. INFO(" Brand ID : %u", cpu.brandId());
  36. INFO(" Family ID : %u", cpu.familyId());
  37. INFO(" Stepping : %u", cpu.stepping());
  38. INFO(" Processor Type : %u", cpu.processorType());
  39. INFO(" Max logical Processors : %u", cpu.maxLogicalProcessors());
  40. INFO(" Cache-Line Size : %u", cpu.cacheLineSize());
  41. INFO(" HW-Thread Count : %u", cpu.hwThreadCount());
  42. INFO("");
  43. // --------------------------------------------------------------------------
  44. // [X86]
  45. // --------------------------------------------------------------------------
  46. #if ASMJIT_ARCH_X86
  47. static const DumpCpuFeature x86FeaturesList[] = {
  48. { x86::Features::kNX , "NX" },
  49. { x86::Features::kMT , "MT" },
  50. { x86::Features::k3DNOW , "3DNOW" },
  51. { x86::Features::k3DNOW2 , "3DNOW2" },
  52. { x86::Features::kADX , "ADX" },
  53. { x86::Features::kAESNI , "AESNI" },
  54. { x86::Features::kALTMOVCR8 , "ALTMOVCR8" },
  55. { x86::Features::kAVX , "AVX" },
  56. { x86::Features::kAVX2 , "AVX2" },
  57. { x86::Features::kAVX512_4FMAPS , "AVX512_4FMAPS" },
  58. { x86::Features::kAVX512_4VNNIW , "AVX512_4VNNIW" },
  59. { x86::Features::kAVX512_BITALG , "AVX512_BITALG" },
  60. { x86::Features::kAVX512_BW , "AVX512_BW" },
  61. { x86::Features::kAVX512_CDI , "AVX512_CDI" },
  62. { x86::Features::kAVX512_DQ , "AVX512_DQ" },
  63. { x86::Features::kAVX512_ERI , "AVX512_ERI" },
  64. { x86::Features::kAVX512_F , "AVX512_F" },
  65. { x86::Features::kAVX512_IFMA , "AVX512_IFMA" },
  66. { x86::Features::kAVX512_PFI , "AVX512_PFI" },
  67. { x86::Features::kAVX512_VBMI , "AVX512_VBMI" },
  68. { x86::Features::kAVX512_VBMI2 , "AVX512_VBMI2" },
  69. { x86::Features::kAVX512_VL , "AVX512_VL" },
  70. { x86::Features::kAVX512_VNNI , "AVX512_VNNI" },
  71. { x86::Features::kAVX512_VPOPCNTDQ, "AVX512_VPOPCNTDQ" },
  72. { x86::Features::kBMI , "BMI" },
  73. { x86::Features::kBMI2 , "BMI2" },
  74. { x86::Features::kCLFLUSH , "CLFLUSH" },
  75. { x86::Features::kCLFLUSHOPT , "CLFLUSHOPT" },
  76. { x86::Features::kCLWB , "CLWB" },
  77. { x86::Features::kCLZERO , "CLZERO" },
  78. { x86::Features::kCMOV , "CMOV" },
  79. { x86::Features::kCMPXCHG16B , "CMPXCHG16B" },
  80. { x86::Features::kCMPXCHG8B , "CMPXCHG8B" },
  81. { x86::Features::kERMS , "ERMS" },
  82. { x86::Features::kF16C , "F16C" },
  83. { x86::Features::kFMA , "FMA" },
  84. { x86::Features::kFMA4 , "FMA4" },
  85. { x86::Features::kFPU , "FPU" },
  86. { x86::Features::kFSGSBASE , "FSGSBASE" },
  87. { x86::Features::kFXSR , "FXSR" },
  88. { x86::Features::kFXSROPT , "FXSROPT" },
  89. { x86::Features::kGEODE , "GEODE" },
  90. { x86::Features::kGFNI , "GFNI" },
  91. { x86::Features::kHLE , "HLE" },
  92. { x86::Features::kI486 , "I486" },
  93. { x86::Features::kLAHFSAHF , "LAHFSAHF" },
  94. { x86::Features::kLWP , "LWP" },
  95. { x86::Features::kLZCNT , "LZCNT" },
  96. { x86::Features::kMMX , "MMX" },
  97. { x86::Features::kMMX2 , "MMX2" },
  98. { x86::Features::kMONITOR , "MONITOR" },
  99. { x86::Features::kMONITORX , "MONITORX" },
  100. { x86::Features::kMOVBE , "MOVBE" },
  101. { x86::Features::kMPX , "MPX" },
  102. { x86::Features::kMSR , "MSR" },
  103. { x86::Features::kMSSE , "MSSE" },
  104. { x86::Features::kOSXSAVE , "OSXSAVE" },
  105. { x86::Features::kPCLMULQDQ , "PCLMULQDQ" },
  106. { x86::Features::kPCOMMIT , "PCOMMIT" },
  107. { x86::Features::kPOPCNT , "POPCNT" },
  108. { x86::Features::kPREFETCHW , "PREFETCHW" },
  109. { x86::Features::kPREFETCHWT1 , "PREFETCHWT1" },
  110. { x86::Features::kRDRAND , "RDRAND" },
  111. { x86::Features::kRDSEED , "RDSEED" },
  112. { x86::Features::kRDTSC , "RDTSC" },
  113. { x86::Features::kRDTSCP , "RDTSCP" },
  114. { x86::Features::kRTM , "RTM" },
  115. { x86::Features::kSHA , "SHA" },
  116. { x86::Features::kSKINIT , "SKINIT" },
  117. { x86::Features::kSMAP , "SMAP" },
  118. { x86::Features::kSMEP , "SMEP" },
  119. { x86::Features::kSMX , "SMX" },
  120. { x86::Features::kSSE , "SSE" },
  121. { x86::Features::kSSE2 , "SSE2" },
  122. { x86::Features::kSSE3 , "SSE3" },
  123. { x86::Features::kSSE4_1 , "SSE4.1" },
  124. { x86::Features::kSSE4_2 , "SSE4.2" },
  125. { x86::Features::kSSE4A , "SSE4A" },
  126. { x86::Features::kSSSE3 , "SSSE3" },
  127. { x86::Features::kSVM , "SVM" },
  128. { x86::Features::kTBM , "TBM" },
  129. { x86::Features::kTSX , "TSX" },
  130. { x86::Features::kVAES , "VAES" },
  131. { x86::Features::kVMX , "VMX" },
  132. { x86::Features::kVPCLMULQDQ , "VPCLMULQDQ" },
  133. { x86::Features::kXOP , "XOP" },
  134. { x86::Features::kXSAVE , "XSAVE" },
  135. { x86::Features::kXSAVEC , "XSAVEC" },
  136. { x86::Features::kXSAVEOPT , "XSAVEOPT" },
  137. { x86::Features::kXSAVES , "XSAVES" }
  138. };
  139. INFO("X86 Features:");
  140. dumpFeatures(cpu, x86FeaturesList, ASMJIT_ARRAY_SIZE(x86FeaturesList));
  141. INFO("");
  142. #endif
  143. // --------------------------------------------------------------------------
  144. // [ARM]
  145. // --------------------------------------------------------------------------
  146. #if ASMJIT_ARCH_ARM
  147. static const DumpCpuFeature armFeaturesList[] = {
  148. { arm::Features::kARMv6 , "ARMv6" },
  149. { arm::Features::kARMv7 , "ARMv7" },
  150. { arm::Features::kARMv8 , "ARMv8" },
  151. { arm::Features::kTHUMB , "THUMB" },
  152. { arm::Features::kTHUMBv2 , "THUMBv2" },
  153. { arm::Features::kVFP2 , "VFPv2" },
  154. { arm::Features::kVFP3 , "VFPv3" },
  155. { arm::Features::kVFP4 , "VFPv4" },
  156. { arm::Features::kVFP_D32 , "VFP D32" },
  157. { arm::Features::kNEON , "NEON" },
  158. { arm::Features::kDSP , "DSP" },
  159. { arm::Features::kIDIV , "IDIV" },
  160. { arm::Features::kAES , "AES" },
  161. { arm::Features::kCRC32 , "CRC32" },
  162. { arm::Features::kSHA1 , "SHA1" },
  163. { arm::Features::kSHA256 , "SHA256" },
  164. { arm::Features::kATOMIC64 , "ATOMIC64" }
  165. };
  166. INFO("ARM Features:");
  167. dumpFeatures(cpu, armFeaturesList, ASMJIT_ARRAY_SIZE(armFeaturesList));
  168. INFO("");
  169. #endif
  170. }
  171. // ============================================================================
  172. // [DumpSizeOf]
  173. // ============================================================================
  174. static void dumpSizeOf(void) noexcept {
  175. #define DUMP_TYPE(...) \
  176. INFO(" %-26s: %u", #__VA_ARGS__, uint32_t(sizeof(__VA_ARGS__)))
  177. INFO("Size of C++ types:");
  178. DUMP_TYPE(int8_t);
  179. DUMP_TYPE(int16_t);
  180. DUMP_TYPE(int32_t);
  181. DUMP_TYPE(int64_t);
  182. DUMP_TYPE(int);
  183. DUMP_TYPE(long);
  184. DUMP_TYPE(size_t);
  185. DUMP_TYPE(intptr_t);
  186. DUMP_TYPE(float);
  187. DUMP_TYPE(double);
  188. DUMP_TYPE(void*);
  189. INFO("");
  190. INFO("Size of base classes:");
  191. DUMP_TYPE(BaseAssembler);
  192. DUMP_TYPE(BaseEmitter);
  193. DUMP_TYPE(CodeBuffer);
  194. DUMP_TYPE(CodeHolder);
  195. DUMP_TYPE(ConstPool);
  196. DUMP_TYPE(LabelEntry);
  197. DUMP_TYPE(RelocEntry);
  198. DUMP_TYPE(Section);
  199. DUMP_TYPE(String);
  200. DUMP_TYPE(Target);
  201. DUMP_TYPE(Zone);
  202. DUMP_TYPE(ZoneAllocator);
  203. DUMP_TYPE(ZoneBitVector);
  204. DUMP_TYPE(ZoneHashNode);
  205. DUMP_TYPE(ZoneHash<ZoneHashNode>);
  206. DUMP_TYPE(ZoneList<int>);
  207. DUMP_TYPE(ZoneVector<int>);
  208. INFO("");
  209. INFO("Size of operand classes:");
  210. DUMP_TYPE(Operand);
  211. DUMP_TYPE(BaseReg);
  212. DUMP_TYPE(BaseMem);
  213. DUMP_TYPE(Imm);
  214. DUMP_TYPE(Label);
  215. INFO("");
  216. INFO("Size of function classes:");
  217. DUMP_TYPE(CallConv);
  218. DUMP_TYPE(FuncFrame);
  219. DUMP_TYPE(FuncValue);
  220. DUMP_TYPE(FuncDetail);
  221. DUMP_TYPE(FuncSignature);
  222. DUMP_TYPE(FuncArgsAssignment);
  223. INFO("");
  224. #ifndef ASMJIT_NO_BUILDER
  225. INFO("Size of builder classes:");
  226. DUMP_TYPE(BaseBuilder);
  227. DUMP_TYPE(BaseNode);
  228. DUMP_TYPE(InstNode);
  229. DUMP_TYPE(InstExNode);
  230. DUMP_TYPE(AlignNode);
  231. DUMP_TYPE(LabelNode);
  232. DUMP_TYPE(EmbedDataNode);
  233. DUMP_TYPE(EmbedLabelNode);
  234. DUMP_TYPE(ConstPoolNode);
  235. DUMP_TYPE(CommentNode);
  236. DUMP_TYPE(SentinelNode);
  237. INFO("");
  238. #endif
  239. #ifndef ASMJIT_NO_COMPILER
  240. INFO("Size of compiler classes:");
  241. DUMP_TYPE(BaseCompiler);
  242. DUMP_TYPE(FuncNode);
  243. DUMP_TYPE(FuncRetNode);
  244. DUMP_TYPE(FuncCallNode);
  245. INFO("");
  246. #endif
  247. #ifdef ASMJIT_BUILD_X86
  248. INFO("Size of x86-specific classes:");
  249. DUMP_TYPE(x86::Assembler);
  250. #ifndef ASMJIT_NO_BUILDER
  251. DUMP_TYPE(x86::Builder);
  252. #endif
  253. #ifndef ASMJIT_NO_COMPILER
  254. DUMP_TYPE(x86::Compiler);
  255. #endif
  256. DUMP_TYPE(x86::InstDB::InstInfo);
  257. DUMP_TYPE(x86::InstDB::CommonInfo);
  258. DUMP_TYPE(x86::InstDB::OpSignature);
  259. DUMP_TYPE(x86::InstDB::InstSignature);
  260. INFO("");
  261. #endif
  262. #undef DUMP_TYPE
  263. }
  264. // ============================================================================
  265. // [Main]
  266. // ============================================================================
  267. static void onBeforeRun(void) noexcept {
  268. dumpCpu();
  269. dumpSizeOf();
  270. }
  271. int main(int argc, const char* argv[]) {
  272. #if defined(ASMJIT_BUILD_DEBUG)
  273. const char buildType[] = "Debug";
  274. #else
  275. const char buildType[] = "Release";
  276. #endif
  277. INFO("AsmJit Unit-Test v%u.%u.%u [Arch=%s] [Mode=%s]\n\n",
  278. unsigned((ASMJIT_LIBRARY_VERSION >> 16) ),
  279. unsigned((ASMJIT_LIBRARY_VERSION >> 8) & 0xFF),
  280. unsigned((ASMJIT_LIBRARY_VERSION ) & 0xFF),
  281. hostArch(),
  282. buildType
  283. );
  284. return BrokenAPI::run(argc, argv, onBeforeRun);
  285. }