TargetParserTest.cpp 53 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080
  1. //===----------- TargetParser.cpp - Target Parser -------------------------===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. #include "llvm/Support/TargetParser.h"
  9. #include "llvm/ADT/STLExtras.h"
  10. #include "llvm/Support/ARMBuildAttributes.h"
  11. #include "gtest/gtest.h"
  12. #include <string>
  13. using namespace llvm;
  14. namespace {
  15. const char *ARMArch[] = {
  16. "armv2", "armv2a", "armv3", "armv3m", "armv4",
  17. "armv4t", "armv5", "armv5t", "armv5e", "armv5te",
  18. "armv5tej", "armv6", "armv6j", "armv6k", "armv6hl",
  19. "armv6t2", "armv6kz", "armv6z", "armv6zk", "armv6-m",
  20. "armv6m", "armv6sm", "armv6s-m", "armv7-a", "armv7",
  21. "armv7a", "armv7ve", "armv7hl", "armv7l", "armv7-r",
  22. "armv7r", "armv7-m", "armv7m", "armv7k", "armv7s",
  23. "armv7e-m", "armv7em", "armv8-a", "armv8", "armv8a",
  24. "armv8l", "armv8.1-a", "armv8.1a", "armv8.2-a", "armv8.2a",
  25. "armv8.3-a", "armv8.3a", "armv8.4-a", "armv8.4a", "armv8.5-a",
  26. "armv8.5a", "armv8-r", "armv8r", "armv8-m.base", "armv8m.base",
  27. "armv8-m.main", "armv8m.main", "iwmmxt", "iwmmxt2", "xscale",
  28. "armv8.1-m.main",
  29. };
  30. bool testARMCPU(StringRef CPUName, StringRef ExpectedArch,
  31. StringRef ExpectedFPU, unsigned ExpectedFlags,
  32. StringRef CPUAttr) {
  33. ARM::ArchKind AK = ARM::parseCPUArch(CPUName);
  34. bool pass = ARM::getArchName(AK).equals(ExpectedArch);
  35. unsigned FPUKind = ARM::getDefaultFPU(CPUName, AK);
  36. pass &= ARM::getFPUName(FPUKind).equals(ExpectedFPU);
  37. unsigned ExtKind = ARM::getDefaultExtensions(CPUName, AK);
  38. if (ExtKind > 1 && (ExtKind & ARM::AEK_NONE))
  39. pass &= ((ExtKind ^ ARM::AEK_NONE) == ExpectedFlags);
  40. else
  41. pass &= (ExtKind == ExpectedFlags);
  42. pass &= ARM::getCPUAttr(AK).equals(CPUAttr);
  43. return pass;
  44. }
  45. TEST(TargetParserTest, testARMCPU) {
  46. EXPECT_TRUE(testARMCPU("invalid", "invalid", "invalid",
  47. ARM::AEK_NONE, ""));
  48. EXPECT_TRUE(testARMCPU("generic", "invalid", "none",
  49. ARM::AEK_NONE, ""));
  50. EXPECT_TRUE(testARMCPU("arm2", "armv2", "none",
  51. ARM::AEK_NONE, "2"));
  52. EXPECT_TRUE(testARMCPU("arm3", "armv2a", "none",
  53. ARM::AEK_NONE, "2A"));
  54. EXPECT_TRUE(testARMCPU("arm6", "armv3", "none",
  55. ARM::AEK_NONE, "3"));
  56. EXPECT_TRUE(testARMCPU("arm7m", "armv3m", "none",
  57. ARM::AEK_NONE, "3M"));
  58. EXPECT_TRUE(testARMCPU("arm8", "armv4", "none",
  59. ARM::AEK_NONE, "4"));
  60. EXPECT_TRUE(testARMCPU("arm810", "armv4", "none",
  61. ARM::AEK_NONE, "4"));
  62. EXPECT_TRUE(testARMCPU("strongarm", "armv4", "none",
  63. ARM::AEK_NONE, "4"));
  64. EXPECT_TRUE(testARMCPU("strongarm110", "armv4", "none",
  65. ARM::AEK_NONE, "4"));
  66. EXPECT_TRUE(testARMCPU("strongarm1100", "armv4", "none",
  67. ARM::AEK_NONE, "4"));
  68. EXPECT_TRUE(testARMCPU("strongarm1110", "armv4", "none",
  69. ARM::AEK_NONE, "4"));
  70. EXPECT_TRUE(testARMCPU("arm7tdmi", "armv4t", "none",
  71. ARM::AEK_NONE, "4T"));
  72. EXPECT_TRUE(testARMCPU("arm7tdmi-s", "armv4t", "none",
  73. ARM::AEK_NONE, "4T"));
  74. EXPECT_TRUE(testARMCPU("arm710t", "armv4t", "none",
  75. ARM::AEK_NONE, "4T"));
  76. EXPECT_TRUE(testARMCPU("arm720t", "armv4t", "none",
  77. ARM::AEK_NONE, "4T"));
  78. EXPECT_TRUE(testARMCPU("arm9", "armv4t", "none",
  79. ARM::AEK_NONE, "4T"));
  80. EXPECT_TRUE(testARMCPU("arm9tdmi", "armv4t", "none",
  81. ARM::AEK_NONE, "4T"));
  82. EXPECT_TRUE(testARMCPU("arm920", "armv4t", "none",
  83. ARM::AEK_NONE, "4T"));
  84. EXPECT_TRUE(testARMCPU("arm920t", "armv4t", "none",
  85. ARM::AEK_NONE, "4T"));
  86. EXPECT_TRUE(testARMCPU("arm922t", "armv4t", "none",
  87. ARM::AEK_NONE, "4T"));
  88. EXPECT_TRUE(testARMCPU("arm9312", "armv4t", "none",
  89. ARM::AEK_NONE, "4T"));
  90. EXPECT_TRUE(testARMCPU("arm940t", "armv4t", "none",
  91. ARM::AEK_NONE, "4T"));
  92. EXPECT_TRUE(testARMCPU("ep9312", "armv4t", "none",
  93. ARM::AEK_NONE, "4T"));
  94. EXPECT_TRUE(testARMCPU("arm10tdmi", "armv5t", "none",
  95. ARM::AEK_NONE, "5T"));
  96. EXPECT_TRUE(testARMCPU("arm1020t", "armv5t", "none",
  97. ARM::AEK_NONE, "5T"));
  98. EXPECT_TRUE(testARMCPU("arm9e", "armv5te", "none",
  99. ARM::AEK_DSP, "5TE"));
  100. EXPECT_TRUE(testARMCPU("arm946e-s", "armv5te", "none",
  101. ARM::AEK_DSP, "5TE"));
  102. EXPECT_TRUE(testARMCPU("arm966e-s", "armv5te", "none",
  103. ARM::AEK_DSP, "5TE"));
  104. EXPECT_TRUE(testARMCPU("arm968e-s", "armv5te", "none",
  105. ARM::AEK_DSP, "5TE"));
  106. EXPECT_TRUE(testARMCPU("arm10e", "armv5te", "none",
  107. ARM::AEK_DSP, "5TE"));
  108. EXPECT_TRUE(testARMCPU("arm1020e", "armv5te", "none",
  109. ARM::AEK_DSP, "5TE"));
  110. EXPECT_TRUE(testARMCPU("arm1022e", "armv5te", "none",
  111. ARM::AEK_DSP, "5TE"));
  112. EXPECT_TRUE(testARMCPU("arm926ej-s", "armv5tej", "none",
  113. ARM::AEK_DSP, "5TEJ"));
  114. EXPECT_TRUE(testARMCPU("arm1136j-s", "armv6", "none",
  115. ARM::AEK_DSP, "6"));
  116. EXPECT_TRUE(testARMCPU("arm1136jf-s", "armv6", "vfpv2",
  117. ARM::AEK_DSP, "6"));
  118. EXPECT_TRUE(testARMCPU("arm1136jz-s", "armv6", "none",
  119. ARM::AEK_DSP, "6"));
  120. EXPECT_TRUE(testARMCPU("arm1176jz-s", "armv6kz", "none",
  121. ARM::AEK_SEC | ARM::AEK_DSP, "6KZ"));
  122. EXPECT_TRUE(testARMCPU("mpcore", "armv6k", "vfpv2",
  123. ARM::AEK_DSP, "6K"));
  124. EXPECT_TRUE(testARMCPU("mpcorenovfp", "armv6k", "none",
  125. ARM::AEK_DSP, "6K"));
  126. EXPECT_TRUE(testARMCPU("arm1176jzf-s", "armv6kz", "vfpv2",
  127. ARM::AEK_SEC | ARM::AEK_DSP, "6KZ"));
  128. EXPECT_TRUE(testARMCPU("arm1156t2-s", "armv6t2", "none",
  129. ARM::AEK_DSP, "6T2"));
  130. EXPECT_TRUE(testARMCPU("arm1156t2f-s", "armv6t2", "vfpv2",
  131. ARM::AEK_DSP, "6T2"));
  132. EXPECT_TRUE(testARMCPU("cortex-m0", "armv6-m", "none",
  133. ARM::AEK_NONE, "6-M"));
  134. EXPECT_TRUE(testARMCPU("cortex-m0plus", "armv6-m", "none",
  135. ARM::AEK_NONE, "6-M"));
  136. EXPECT_TRUE(testARMCPU("cortex-m1", "armv6-m", "none",
  137. ARM::AEK_NONE, "6-M"));
  138. EXPECT_TRUE(testARMCPU("sc000", "armv6-m", "none",
  139. ARM::AEK_NONE, "6-M"));
  140. EXPECT_TRUE(testARMCPU("cortex-a5", "armv7-a", "neon-vfpv4",
  141. ARM::AEK_MP | ARM::AEK_SEC | ARM::AEK_DSP, "7-A"));
  142. EXPECT_TRUE(testARMCPU("cortex-a7", "armv7-a", "neon-vfpv4",
  143. ARM::AEK_HWDIVTHUMB | ARM::AEK_HWDIVARM | ARM::AEK_MP |
  144. ARM::AEK_SEC | ARM::AEK_VIRT | ARM::AEK_DSP,
  145. "7-A"));
  146. EXPECT_TRUE(testARMCPU("cortex-a8", "armv7-a", "neon",
  147. ARM::AEK_SEC | ARM::AEK_DSP, "7-A"));
  148. EXPECT_TRUE(testARMCPU("cortex-a9", "armv7-a", "neon-fp16",
  149. ARM::AEK_MP | ARM::AEK_SEC | ARM::AEK_DSP, "7-A"));
  150. EXPECT_TRUE(testARMCPU("cortex-a12", "armv7-a", "neon-vfpv4",
  151. ARM::AEK_SEC | ARM::AEK_MP | ARM::AEK_VIRT |
  152. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  153. ARM::AEK_DSP,
  154. "7-A"));
  155. EXPECT_TRUE(testARMCPU("cortex-a15", "armv7-a", "neon-vfpv4",
  156. ARM::AEK_SEC | ARM::AEK_MP | ARM::AEK_VIRT |
  157. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  158. ARM::AEK_DSP,
  159. "7-A"));
  160. EXPECT_TRUE(testARMCPU("cortex-a17", "armv7-a", "neon-vfpv4",
  161. ARM::AEK_SEC | ARM::AEK_MP | ARM::AEK_VIRT |
  162. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  163. ARM::AEK_DSP,
  164. "7-A"));
  165. EXPECT_TRUE(testARMCPU("krait", "armv7-a", "neon-vfpv4",
  166. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  167. "7-A"));
  168. EXPECT_TRUE(testARMCPU("cortex-r4", "armv7-r", "none",
  169. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "7-R"));
  170. EXPECT_TRUE(testARMCPU("cortex-r4f", "armv7-r", "vfpv3-d16",
  171. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "7-R"));
  172. EXPECT_TRUE(testARMCPU("cortex-r5", "armv7-r", "vfpv3-d16",
  173. ARM::AEK_MP | ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  174. ARM::AEK_DSP,
  175. "7-R"));
  176. EXPECT_TRUE(testARMCPU("cortex-r7", "armv7-r", "vfpv3-d16-fp16",
  177. ARM::AEK_MP | ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  178. ARM::AEK_DSP,
  179. "7-R"));
  180. EXPECT_TRUE(testARMCPU("cortex-r8", "armv7-r", "vfpv3-d16-fp16",
  181. ARM::AEK_MP | ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  182. ARM::AEK_DSP,
  183. "7-R"));
  184. EXPECT_TRUE(testARMCPU("cortex-r52", "armv8-r", "neon-fp-armv8",
  185. ARM::AEK_CRC | ARM::AEK_MP | ARM::AEK_VIRT |
  186. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB |
  187. ARM::AEK_DSP,
  188. "8-R"));
  189. EXPECT_TRUE(
  190. testARMCPU("sc300", "armv7-m", "none", ARM::AEK_HWDIVTHUMB, "7-M"));
  191. EXPECT_TRUE(
  192. testARMCPU("cortex-m3", "armv7-m", "none", ARM::AEK_HWDIVTHUMB, "7-M"));
  193. EXPECT_TRUE(testARMCPU("cortex-m4", "armv7e-m", "fpv4-sp-d16",
  194. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "7E-M"));
  195. EXPECT_TRUE(testARMCPU("cortex-m7", "armv7e-m", "fpv5-d16",
  196. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "7E-M"));
  197. EXPECT_TRUE(testARMCPU("cortex-a32", "armv8-a", "crypto-neon-fp-armv8",
  198. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  199. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  200. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  201. "8-A"));
  202. EXPECT_TRUE(testARMCPU("cortex-a35", "armv8-a", "crypto-neon-fp-armv8",
  203. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  204. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  205. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  206. "8-A"));
  207. EXPECT_TRUE(testARMCPU("cortex-a53", "armv8-a", "crypto-neon-fp-armv8",
  208. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  209. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  210. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  211. "8-A"));
  212. EXPECT_TRUE(testARMCPU("cortex-a55", "armv8.2-a", "crypto-neon-fp-armv8",
  213. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  214. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  215. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_FP16 |
  216. ARM::AEK_RAS | ARM::AEK_DOTPROD,
  217. "8.2-A"));
  218. EXPECT_TRUE(testARMCPU("cortex-a57", "armv8-a", "crypto-neon-fp-armv8",
  219. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  220. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  221. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  222. "8-A"));
  223. EXPECT_TRUE(testARMCPU("cortex-a72", "armv8-a", "crypto-neon-fp-armv8",
  224. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  225. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  226. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  227. "8-A"));
  228. EXPECT_TRUE(testARMCPU("cortex-a73", "armv8-a", "crypto-neon-fp-armv8",
  229. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  230. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  231. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  232. "8-A"));
  233. EXPECT_TRUE(testARMCPU("cortex-a75", "armv8.2-a", "crypto-neon-fp-armv8",
  234. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  235. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  236. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_FP16 |
  237. ARM::AEK_RAS | ARM::AEK_DOTPROD,
  238. "8.2-A"));
  239. EXPECT_TRUE(testARMCPU("cortex-a76", "armv8.2-a", "crypto-neon-fp-armv8",
  240. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  241. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  242. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_FP16 |
  243. ARM::AEK_RAS | ARM::AEK_DOTPROD,
  244. "8.2-A"));
  245. EXPECT_TRUE(testARMCPU("cortex-a76ae", "armv8.2-a", "crypto-neon-fp-armv8",
  246. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  247. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  248. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_FP16 |
  249. ARM::AEK_RAS | ARM::AEK_DOTPROD,
  250. "8.2-A"));
  251. EXPECT_TRUE(testARMCPU("cyclone", "armv8-a", "crypto-neon-fp-armv8",
  252. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  253. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  254. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  255. "8-A"));
  256. EXPECT_TRUE(testARMCPU("exynos-m1", "armv8-a", "crypto-neon-fp-armv8",
  257. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  258. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  259. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  260. "8-A"));
  261. EXPECT_TRUE(testARMCPU("exynos-m2", "armv8-a", "crypto-neon-fp-armv8",
  262. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  263. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  264. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  265. "8-A"));
  266. EXPECT_TRUE(testARMCPU("exynos-m3", "armv8-a", "crypto-neon-fp-armv8",
  267. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  268. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  269. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  270. "8-A"));
  271. EXPECT_TRUE(testARMCPU("exynos-m4", "armv8.2-a", "crypto-neon-fp-armv8",
  272. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  273. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  274. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_DOTPROD |
  275. ARM::AEK_FP16 | ARM::AEK_RAS,
  276. "8.2-A"));
  277. EXPECT_TRUE(testARMCPU("exynos-m5", "armv8.2-a", "crypto-neon-fp-armv8",
  278. ARM::AEK_CRC | ARM::AEK_SEC | ARM::AEK_MP |
  279. ARM::AEK_VIRT | ARM::AEK_HWDIVARM |
  280. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP | ARM::AEK_DOTPROD |
  281. ARM::AEK_FP16 | ARM::AEK_RAS,
  282. "8.2-A"));
  283. EXPECT_TRUE(testARMCPU("cortex-m23", "armv8-m.base", "none",
  284. ARM::AEK_HWDIVTHUMB, "8-M.Baseline"));
  285. EXPECT_TRUE(testARMCPU("cortex-m33", "armv8-m.main", "fpv5-sp-d16",
  286. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "8-M.Mainline"));
  287. EXPECT_TRUE(testARMCPU("cortex-m35p", "armv8-m.main", "fpv5-sp-d16",
  288. ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP, "8-M.Mainline"));
  289. EXPECT_TRUE(testARMCPU("iwmmxt", "iwmmxt", "none",
  290. ARM::AEK_NONE, "iwmmxt"));
  291. EXPECT_TRUE(testARMCPU("xscale", "xscale", "none",
  292. ARM::AEK_NONE, "xscale"));
  293. EXPECT_TRUE(testARMCPU("swift", "armv7s", "neon-vfpv4",
  294. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB | ARM::AEK_DSP,
  295. "7-S"));
  296. }
  297. static constexpr unsigned NumARMCPUArchs = 86;
  298. TEST(TargetParserTest, testARMCPUArchList) {
  299. SmallVector<StringRef, NumARMCPUArchs> List;
  300. ARM::fillValidCPUArchList(List);
  301. // No list exists for these in this test suite, so ensure all are
  302. // valid, and match the expected 'magic' count.
  303. EXPECT_EQ(List.size(), NumARMCPUArchs);
  304. for(StringRef CPU : List) {
  305. EXPECT_NE(ARM::parseCPUArch(CPU), ARM::ArchKind::INVALID);
  306. }
  307. }
  308. TEST(TargetParserTest, testInvalidARMArch) {
  309. auto InvalidArchStrings = {"armv", "armv99", "noarm"};
  310. for (const char* InvalidArch : InvalidArchStrings)
  311. EXPECT_EQ(ARM::parseArch(InvalidArch), ARM::ArchKind::INVALID);
  312. }
  313. bool testARMArch(StringRef Arch, StringRef DefaultCPU, StringRef SubArch,
  314. unsigned ArchAttr) {
  315. ARM::ArchKind AK = ARM::parseArch(Arch);
  316. return (AK!= ARM::ArchKind::INVALID) &
  317. ARM::getDefaultCPU(Arch).equals(DefaultCPU) &
  318. ARM::getSubArch(AK).equals(SubArch) &
  319. (ARM::getArchAttr(AK) == ArchAttr);
  320. }
  321. TEST(TargetParserTest, testARMArch) {
  322. EXPECT_TRUE(
  323. testARMArch("armv2", "arm2", "v2",
  324. ARMBuildAttrs::CPUArch::Pre_v4));
  325. EXPECT_TRUE(
  326. testARMArch("armv2a", "arm3", "v2a",
  327. ARMBuildAttrs::CPUArch::Pre_v4));
  328. EXPECT_TRUE(
  329. testARMArch("armv3", "arm6", "v3",
  330. ARMBuildAttrs::CPUArch::Pre_v4));
  331. EXPECT_TRUE(
  332. testARMArch("armv3m", "arm7m", "v3m",
  333. ARMBuildAttrs::CPUArch::Pre_v4));
  334. EXPECT_TRUE(
  335. testARMArch("armv4", "strongarm", "v4",
  336. ARMBuildAttrs::CPUArch::v4));
  337. EXPECT_TRUE(
  338. testARMArch("armv4t", "arm7tdmi", "v4t",
  339. ARMBuildAttrs::CPUArch::v4T));
  340. EXPECT_TRUE(
  341. testARMArch("armv5t", "arm10tdmi", "v5",
  342. ARMBuildAttrs::CPUArch::v5T));
  343. EXPECT_TRUE(
  344. testARMArch("armv5te", "arm1022e", "v5e",
  345. ARMBuildAttrs::CPUArch::v5TE));
  346. EXPECT_TRUE(
  347. testARMArch("armv5tej", "arm926ej-s", "v5e",
  348. ARMBuildAttrs::CPUArch::v5TEJ));
  349. EXPECT_TRUE(
  350. testARMArch("armv6", "arm1136jf-s", "v6",
  351. ARMBuildAttrs::CPUArch::v6));
  352. EXPECT_TRUE(
  353. testARMArch("armv6k", "mpcore", "v6k",
  354. ARMBuildAttrs::CPUArch::v6K));
  355. EXPECT_TRUE(
  356. testARMArch("armv6t2", "arm1156t2-s", "v6t2",
  357. ARMBuildAttrs::CPUArch::v6T2));
  358. EXPECT_TRUE(
  359. testARMArch("armv6kz", "arm1176jzf-s", "v6kz",
  360. ARMBuildAttrs::CPUArch::v6KZ));
  361. EXPECT_TRUE(
  362. testARMArch("armv6-m", "cortex-m0", "v6m",
  363. ARMBuildAttrs::CPUArch::v6_M));
  364. EXPECT_TRUE(
  365. testARMArch("armv7-a", "generic", "v7",
  366. ARMBuildAttrs::CPUArch::v7));
  367. EXPECT_TRUE(
  368. testARMArch("armv7ve", "generic", "v7ve",
  369. ARMBuildAttrs::CPUArch::v7));
  370. EXPECT_TRUE(
  371. testARMArch("armv7-r", "cortex-r4", "v7r",
  372. ARMBuildAttrs::CPUArch::v7));
  373. EXPECT_TRUE(
  374. testARMArch("armv7-m", "cortex-m3", "v7m",
  375. ARMBuildAttrs::CPUArch::v7));
  376. EXPECT_TRUE(
  377. testARMArch("armv7e-m", "cortex-m4", "v7em",
  378. ARMBuildAttrs::CPUArch::v7E_M));
  379. EXPECT_TRUE(
  380. testARMArch("armv8-a", "generic", "v8",
  381. ARMBuildAttrs::CPUArch::v8_A));
  382. EXPECT_TRUE(
  383. testARMArch("armv8.1-a", "generic", "v8.1a",
  384. ARMBuildAttrs::CPUArch::v8_A));
  385. EXPECT_TRUE(
  386. testARMArch("armv8.2-a", "generic", "v8.2a",
  387. ARMBuildAttrs::CPUArch::v8_A));
  388. EXPECT_TRUE(
  389. testARMArch("armv8.3-a", "generic", "v8.3a",
  390. ARMBuildAttrs::CPUArch::v8_A));
  391. EXPECT_TRUE(
  392. testARMArch("armv8.4-a", "generic", "v8.4a",
  393. ARMBuildAttrs::CPUArch::v8_A));
  394. EXPECT_TRUE(
  395. testARMArch("armv8.5-a", "generic", "v8.5a",
  396. ARMBuildAttrs::CPUArch::v8_A));
  397. EXPECT_TRUE(
  398. testARMArch("armv8-r", "cortex-r52", "v8r",
  399. ARMBuildAttrs::CPUArch::v8_R));
  400. EXPECT_TRUE(
  401. testARMArch("armv8-m.base", "generic", "v8m.base",
  402. ARMBuildAttrs::CPUArch::v8_M_Base));
  403. EXPECT_TRUE(
  404. testARMArch("armv8-m.main", "generic", "v8m.main",
  405. ARMBuildAttrs::CPUArch::v8_M_Main));
  406. EXPECT_TRUE(
  407. testARMArch("armv8.1-m.main", "generic", "v8.1m.main",
  408. ARMBuildAttrs::CPUArch::v8_1_M_Main));
  409. EXPECT_TRUE(
  410. testARMArch("iwmmxt", "iwmmxt", "",
  411. ARMBuildAttrs::CPUArch::v5TE));
  412. EXPECT_TRUE(
  413. testARMArch("iwmmxt2", "generic", "",
  414. ARMBuildAttrs::CPUArch::v5TE));
  415. EXPECT_TRUE(
  416. testARMArch("xscale", "xscale", "v5e",
  417. ARMBuildAttrs::CPUArch::v5TE));
  418. EXPECT_TRUE(
  419. testARMArch("armv7s", "swift", "v7s",
  420. ARMBuildAttrs::CPUArch::v7));
  421. EXPECT_TRUE(
  422. testARMArch("armv7k", "generic", "v7k",
  423. ARMBuildAttrs::CPUArch::v7));
  424. }
  425. bool testARMExtension(StringRef CPUName,ARM::ArchKind ArchKind, StringRef ArchExt) {
  426. return ARM::getDefaultExtensions(CPUName, ArchKind) &
  427. ARM::parseArchExt(ArchExt);
  428. }
  429. TEST(TargetParserTest, testARMExtension) {
  430. EXPECT_FALSE(testARMExtension("arm2", ARM::ArchKind::INVALID, "thumb"));
  431. EXPECT_FALSE(testARMExtension("arm3", ARM::ArchKind::INVALID, "thumb"));
  432. EXPECT_FALSE(testARMExtension("arm6", ARM::ArchKind::INVALID, "thumb"));
  433. EXPECT_FALSE(testARMExtension("arm7m", ARM::ArchKind::INVALID, "thumb"));
  434. EXPECT_FALSE(testARMExtension("strongarm", ARM::ArchKind::INVALID, "dsp"));
  435. EXPECT_FALSE(testARMExtension("arm7tdmi", ARM::ArchKind::INVALID, "dsp"));
  436. EXPECT_FALSE(testARMExtension("arm10tdmi",
  437. ARM::ArchKind::INVALID, "simd"));
  438. EXPECT_FALSE(testARMExtension("arm1022e", ARM::ArchKind::INVALID, "simd"));
  439. EXPECT_FALSE(testARMExtension("arm926ej-s",
  440. ARM::ArchKind::INVALID, "simd"));
  441. EXPECT_FALSE(testARMExtension("arm1136jf-s",
  442. ARM::ArchKind::INVALID, "crypto"));
  443. EXPECT_FALSE(testARMExtension("arm1176j-s",
  444. ARM::ArchKind::INVALID, "crypto"));
  445. EXPECT_FALSE(testARMExtension("arm1156t2-s",
  446. ARM::ArchKind::INVALID, "crypto"));
  447. EXPECT_FALSE(testARMExtension("arm1176jzf-s",
  448. ARM::ArchKind::INVALID, "crypto"));
  449. EXPECT_FALSE(testARMExtension("cortex-m0",
  450. ARM::ArchKind::INVALID, "crypto"));
  451. EXPECT_FALSE(testARMExtension("cortex-a8",
  452. ARM::ArchKind::INVALID, "crypto"));
  453. EXPECT_FALSE(testARMExtension("cortex-r4",
  454. ARM::ArchKind::INVALID, "crypto"));
  455. EXPECT_FALSE(testARMExtension("cortex-m3",
  456. ARM::ArchKind::INVALID, "crypto"));
  457. EXPECT_FALSE(testARMExtension("cortex-a53",
  458. ARM::ArchKind::INVALID, "ras"));
  459. EXPECT_FALSE(testARMExtension("cortex-a53",
  460. ARM::ArchKind::INVALID, "fp16"));
  461. EXPECT_TRUE(testARMExtension("cortex-a55",
  462. ARM::ArchKind::INVALID, "fp16"));
  463. EXPECT_FALSE(testARMExtension("cortex-a55",
  464. ARM::ArchKind::INVALID, "fp16fml"));
  465. EXPECT_TRUE(testARMExtension("cortex-a75",
  466. ARM::ArchKind::INVALID, "fp16"));
  467. EXPECT_FALSE(testARMExtension("cortex-a75",
  468. ARM::ArchKind::INVALID, "fp16fml"));
  469. EXPECT_FALSE(testARMExtension("cortex-r52",
  470. ARM::ArchKind::INVALID, "ras"));
  471. EXPECT_FALSE(testARMExtension("iwmmxt", ARM::ArchKind::INVALID, "crc"));
  472. EXPECT_FALSE(testARMExtension("xscale", ARM::ArchKind::INVALID, "crc"));
  473. EXPECT_FALSE(testARMExtension("swift", ARM::ArchKind::INVALID, "crc"));
  474. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV2, "thumb"));
  475. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV2A, "thumb"));
  476. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV3, "thumb"));
  477. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV3M, "thumb"));
  478. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV4, "dsp"));
  479. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV4T, "dsp"));
  480. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV5T, "simd"));
  481. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV5TE, "simd"));
  482. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV5TEJ, "simd"));
  483. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV6, "crypto"));
  484. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV6K, "crypto"));
  485. EXPECT_FALSE(testARMExtension("generic",
  486. ARM::ArchKind::ARMV6T2, "crypto"));
  487. EXPECT_FALSE(testARMExtension("generic",
  488. ARM::ArchKind::ARMV6KZ, "crypto"));
  489. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV6M, "crypto"));
  490. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV7A, "crypto"));
  491. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV7R, "crypto"));
  492. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV7M, "crypto"));
  493. EXPECT_FALSE(testARMExtension("generic",
  494. ARM::ArchKind::ARMV7EM, "crypto"));
  495. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8A, "ras"));
  496. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_1A, "ras"));
  497. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_2A, "profile"));
  498. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_2A, "fp16"));
  499. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_2A, "fp16fml"));
  500. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_3A, "fp16"));
  501. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_3A, "fp16fml"));
  502. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_4A, "fp16"));
  503. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8_4A, "fp16fml"));
  504. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV8R, "ras"));
  505. EXPECT_FALSE(testARMExtension("generic",
  506. ARM::ArchKind::ARMV8MBaseline, "crc"));
  507. EXPECT_FALSE(testARMExtension("generic",
  508. ARM::ArchKind::ARMV8MMainline, "crc"));
  509. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::IWMMXT, "crc"));
  510. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::IWMMXT2, "crc"));
  511. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::XSCALE, "crc"));
  512. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV7S, "crypto"));
  513. EXPECT_FALSE(testARMExtension("generic", ARM::ArchKind::ARMV7K, "crypto"));
  514. }
  515. TEST(TargetParserTest, ARMFPUVersion) {
  516. for (ARM::FPUKind FK = static_cast<ARM::FPUKind>(0);
  517. FK <= ARM::FPUKind::FK_LAST;
  518. FK = static_cast<ARM::FPUKind>(static_cast<unsigned>(FK) + 1))
  519. if (FK == ARM::FK_LAST || ARM::getFPUName(FK) == "invalid" ||
  520. ARM::getFPUName(FK) == "none" || ARM::getFPUName(FK) == "softvfp")
  521. EXPECT_EQ(ARM::FPUVersion::NONE, ARM::getFPUVersion(FK));
  522. else
  523. EXPECT_NE(ARM::FPUVersion::NONE, ARM::getFPUVersion(FK));
  524. }
  525. TEST(TargetParserTest, ARMFPUNeonSupportLevel) {
  526. for (ARM::FPUKind FK = static_cast<ARM::FPUKind>(0);
  527. FK <= ARM::FPUKind::FK_LAST;
  528. FK = static_cast<ARM::FPUKind>(static_cast<unsigned>(FK) + 1))
  529. if (FK == ARM::FK_LAST ||
  530. ARM::getFPUName(FK).find("neon") == std::string::npos)
  531. EXPECT_EQ(ARM::NeonSupportLevel::None,
  532. ARM::getFPUNeonSupportLevel(FK));
  533. else
  534. EXPECT_NE(ARM::NeonSupportLevel::None,
  535. ARM::getFPUNeonSupportLevel(FK));
  536. }
  537. TEST(TargetParserTest, ARMFPURestriction) {
  538. for (ARM::FPUKind FK = static_cast<ARM::FPUKind>(0);
  539. FK <= ARM::FPUKind::FK_LAST;
  540. FK = static_cast<ARM::FPUKind>(static_cast<unsigned>(FK) + 1)) {
  541. if (FK == ARM::FK_LAST ||
  542. (ARM::getFPUName(FK).find("d16") == std::string::npos &&
  543. ARM::getFPUName(FK).find("vfpv3xd") == std::string::npos))
  544. EXPECT_EQ(ARM::FPURestriction::None, ARM::getFPURestriction(FK));
  545. else
  546. EXPECT_NE(ARM::FPURestriction::None, ARM::getFPURestriction(FK));
  547. }
  548. }
  549. TEST(TargetParserTest, ARMExtensionFeatures) {
  550. std::vector<StringRef> Features;
  551. unsigned Extensions = ARM::AEK_CRC | ARM::AEK_CRYPTO | ARM::AEK_DSP |
  552. ARM::AEK_HWDIVARM | ARM::AEK_HWDIVTHUMB | ARM::AEK_MP |
  553. ARM::AEK_SEC | ARM::AEK_VIRT | ARM::AEK_RAS | ARM::AEK_FP16 |
  554. ARM::AEK_FP16FML | ARM::AEK_FP_DP;
  555. for (unsigned i = 0; i <= Extensions; i++)
  556. EXPECT_TRUE(i == 0 ? !ARM::getExtensionFeatures(i, Features)
  557. : ARM::getExtensionFeatures(i, Features));
  558. }
  559. TEST(TargetParserTest, ARMFPUFeatures) {
  560. std::vector<StringRef> Features;
  561. for (ARM::FPUKind FK = static_cast<ARM::FPUKind>(0);
  562. FK <= ARM::FPUKind::FK_LAST;
  563. FK = static_cast<ARM::FPUKind>(static_cast<unsigned>(FK) + 1))
  564. EXPECT_TRUE((FK == ARM::FK_INVALID || FK >= ARM::FK_LAST)
  565. ? !ARM::getFPUFeatures(FK, Features)
  566. : ARM::getFPUFeatures(FK, Features));
  567. }
  568. TEST(TargetParserTest, ARMArchExtFeature) {
  569. const char *ArchExt[][4] = {{"crc", "nocrc", "+crc", "-crc"},
  570. {"crypto", "nocrypto", "+crypto", "-crypto"},
  571. {"dsp", "nodsp", "+dsp", "-dsp"},
  572. {"fp", "nofp", nullptr, nullptr},
  573. {"idiv", "noidiv", nullptr, nullptr},
  574. {"mp", "nomp", nullptr, nullptr},
  575. {"simd", "nosimd", nullptr, nullptr},
  576. {"sec", "nosec", nullptr, nullptr},
  577. {"virt", "novirt", nullptr, nullptr},
  578. {"fp16", "nofp16", "+fullfp16", "-fullfp16"},
  579. {"fp16fml", "nofp16fml", "+fp16fml", "-fp16fml"},
  580. {"ras", "noras", "+ras", "-ras"},
  581. {"dotprod", "nodotprod", "+dotprod", "-dotprod"},
  582. {"os", "noos", nullptr, nullptr},
  583. {"iwmmxt", "noiwmmxt", nullptr, nullptr},
  584. {"iwmmxt2", "noiwmmxt2", nullptr, nullptr},
  585. {"maverick", "maverick", nullptr, nullptr},
  586. {"xscale", "noxscale", nullptr, nullptr},
  587. {"sb", "nosb", "+sb", "-sb"},
  588. {"mve", "nomve", "+mve", "-mve"},
  589. {"mve.fp", "nomve.fp", "+mve.fp", "-mve.fp"}};
  590. for (unsigned i = 0; i < array_lengthof(ArchExt); i++) {
  591. EXPECT_EQ(StringRef(ArchExt[i][2]), ARM::getArchExtFeature(ArchExt[i][0]));
  592. EXPECT_EQ(StringRef(ArchExt[i][3]), ARM::getArchExtFeature(ArchExt[i][1]));
  593. }
  594. }
  595. TEST(TargetParserTest, ARMparseHWDiv) {
  596. const char *hwdiv[] = {"thumb", "arm", "arm,thumb", "thumb,arm"};
  597. for (unsigned i = 0; i < array_lengthof(hwdiv); i++)
  598. EXPECT_NE(ARM::AEK_INVALID, ARM::parseHWDiv((StringRef)hwdiv[i]));
  599. }
  600. TEST(TargetParserTest, ARMparseArchEndianAndISA) {
  601. const char *Arch[] = {
  602. "v2", "v2a", "v3", "v3m", "v4", "v4t", "v5", "v5t",
  603. "v5e", "v5te", "v5tej", "v6", "v6j", "v6k", "v6hl", "v6t2",
  604. "v6kz", "v6z", "v6zk", "v6-m", "v6m", "v6sm", "v6s-m", "v7-a",
  605. "v7", "v7a", "v7ve", "v7hl", "v7l", "v7-r", "v7r", "v7-m",
  606. "v7m", "v7k", "v7s", "v7e-m", "v7em", "v8-a", "v8", "v8a",
  607. "v8l", "v8.1-a", "v8.1a", "v8.2-a", "v8.2a", "v8.3-a", "v8.3a", "v8.4-a",
  608. "v8.4a", "v8.5-a","v8.5a", "v8-r", "v8m.base", "v8m.main", "v8.1m.main"
  609. };
  610. for (unsigned i = 0; i < array_lengthof(Arch); i++) {
  611. std::string arm_1 = "armeb" + (std::string)(Arch[i]);
  612. std::string arm_2 = "arm" + (std::string)(Arch[i]) + "eb";
  613. std::string arm_3 = "arm" + (std::string)(Arch[i]);
  614. std::string thumb_1 = "thumbeb" + (std::string)(Arch[i]);
  615. std::string thumb_2 = "thumb" + (std::string)(Arch[i]) + "eb";
  616. std::string thumb_3 = "thumb" + (std::string)(Arch[i]);
  617. EXPECT_EQ(ARM::EndianKind::BIG, ARM::parseArchEndian(arm_1));
  618. EXPECT_EQ(ARM::EndianKind::BIG, ARM::parseArchEndian(arm_2));
  619. EXPECT_EQ(ARM::EndianKind::LITTLE, ARM::parseArchEndian(arm_3));
  620. EXPECT_EQ(ARM::ISAKind::ARM, ARM::parseArchISA(arm_1));
  621. EXPECT_EQ(ARM::ISAKind::ARM, ARM::parseArchISA(arm_2));
  622. EXPECT_EQ(ARM::ISAKind::ARM, ARM::parseArchISA(arm_3));
  623. if (i >= 4) {
  624. EXPECT_EQ(ARM::EndianKind::BIG, ARM::parseArchEndian(thumb_1));
  625. EXPECT_EQ(ARM::EndianKind::BIG, ARM::parseArchEndian(thumb_2));
  626. EXPECT_EQ(ARM::EndianKind::LITTLE, ARM::parseArchEndian(thumb_3));
  627. EXPECT_EQ(ARM::ISAKind::THUMB, ARM::parseArchISA(thumb_1));
  628. EXPECT_EQ(ARM::ISAKind::THUMB, ARM::parseArchISA(thumb_2));
  629. EXPECT_EQ(ARM::ISAKind::THUMB, ARM::parseArchISA(thumb_3));
  630. }
  631. }
  632. EXPECT_EQ(ARM::EndianKind::LITTLE, ARM::parseArchEndian("aarch64"));
  633. EXPECT_EQ(ARM::EndianKind::LITTLE, ARM::parseArchEndian("arm64_32"));
  634. EXPECT_EQ(ARM::EndianKind::BIG, ARM::parseArchEndian("aarch64_be"));
  635. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("aarch64"));
  636. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("aarch64_be"));
  637. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("arm64"));
  638. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("arm64_be"));
  639. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("arm64_32"));
  640. EXPECT_EQ(ARM::ISAKind::AARCH64, ARM::parseArchISA("aarch64_32"));
  641. }
  642. TEST(TargetParserTest, ARMparseArchProfile) {
  643. for (unsigned i = 0; i < array_lengthof(ARMArch); i++) {
  644. switch (ARM::parseArch(ARMArch[i])) {
  645. case ARM::ArchKind::ARMV6M:
  646. case ARM::ArchKind::ARMV7M:
  647. case ARM::ArchKind::ARMV7EM:
  648. case ARM::ArchKind::ARMV8MMainline:
  649. case ARM::ArchKind::ARMV8MBaseline:
  650. case ARM::ArchKind::ARMV8_1MMainline:
  651. EXPECT_EQ(ARM::ProfileKind::M, ARM::parseArchProfile(ARMArch[i]));
  652. break;
  653. case ARM::ArchKind::ARMV7R:
  654. case ARM::ArchKind::ARMV8R:
  655. EXPECT_EQ(ARM::ProfileKind::R, ARM::parseArchProfile(ARMArch[i]));
  656. break;
  657. case ARM::ArchKind::ARMV7A:
  658. case ARM::ArchKind::ARMV7VE:
  659. case ARM::ArchKind::ARMV7K:
  660. case ARM::ArchKind::ARMV8A:
  661. case ARM::ArchKind::ARMV8_1A:
  662. case ARM::ArchKind::ARMV8_2A:
  663. case ARM::ArchKind::ARMV8_3A:
  664. case ARM::ArchKind::ARMV8_4A:
  665. case ARM::ArchKind::ARMV8_5A:
  666. EXPECT_EQ(ARM::ProfileKind::A, ARM::parseArchProfile(ARMArch[i]));
  667. break;
  668. default:
  669. EXPECT_EQ(ARM::ProfileKind::INVALID, ARM::parseArchProfile(ARMArch[i]));
  670. break;
  671. }
  672. }
  673. }
  674. TEST(TargetParserTest, ARMparseArchVersion) {
  675. for (unsigned i = 0; i < array_lengthof(ARMArch); i++)
  676. if (((std::string)ARMArch[i]).substr(0, 4) == "armv")
  677. EXPECT_EQ((ARMArch[i][4] - 48u), ARM::parseArchVersion(ARMArch[i]));
  678. else
  679. EXPECT_EQ(5u, ARM::parseArchVersion(ARMArch[i]));
  680. }
  681. bool testAArch64CPU(StringRef CPUName, StringRef ExpectedArch,
  682. StringRef ExpectedFPU, unsigned ExpectedFlags,
  683. StringRef CPUAttr) {
  684. AArch64::ArchKind AK = AArch64::parseCPUArch(CPUName);
  685. bool pass = AArch64::getArchName(AK).equals(ExpectedArch);
  686. unsigned ExtKind = AArch64::getDefaultExtensions(CPUName, AK);
  687. if (ExtKind > 1 && (ExtKind & AArch64::AEK_NONE))
  688. pass &= ((ExtKind ^ AArch64::AEK_NONE) == ExpectedFlags);
  689. else
  690. pass &= (ExtKind == ExpectedFlags);
  691. pass &= AArch64::getCPUAttr(AK).equals(CPUAttr);
  692. return pass;
  693. }
  694. TEST(TargetParserTest, testAArch64CPU) {
  695. EXPECT_TRUE(testAArch64CPU(
  696. "invalid", "invalid", "invalid",
  697. AArch64::AEK_NONE, ""));
  698. EXPECT_TRUE(testAArch64CPU(
  699. "generic", "invalid", "none",
  700. AArch64::AEK_NONE, ""));
  701. EXPECT_TRUE(testAArch64CPU(
  702. "cortex-a35", "armv8-a", "crypto-neon-fp-armv8",
  703. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  704. AArch64::AEK_SIMD, "8-A"));
  705. EXPECT_TRUE(testAArch64CPU(
  706. "cortex-a53", "armv8-a", "crypto-neon-fp-armv8",
  707. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  708. AArch64::AEK_SIMD, "8-A"));
  709. EXPECT_TRUE(testAArch64CPU(
  710. "cortex-a55", "armv8.2-a", "crypto-neon-fp-armv8",
  711. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  712. AArch64::AEK_SIMD | AArch64::AEK_RAS | AArch64::AEK_LSE |
  713. AArch64::AEK_RDM | AArch64::AEK_FP16 | AArch64::AEK_DOTPROD |
  714. AArch64::AEK_RCPC, "8.2-A"));
  715. EXPECT_TRUE(testAArch64CPU(
  716. "cortex-a57", "armv8-a", "crypto-neon-fp-armv8",
  717. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  718. AArch64::AEK_SIMD, "8-A"));
  719. EXPECT_TRUE(testAArch64CPU(
  720. "cortex-a72", "armv8-a", "crypto-neon-fp-armv8",
  721. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  722. AArch64::AEK_SIMD, "8-A"));
  723. EXPECT_TRUE(testAArch64CPU(
  724. "cortex-a73", "armv8-a", "crypto-neon-fp-armv8",
  725. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  726. AArch64::AEK_SIMD, "8-A"));
  727. EXPECT_TRUE(testAArch64CPU(
  728. "cortex-a75", "armv8.2-a", "crypto-neon-fp-armv8",
  729. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  730. AArch64::AEK_SIMD | AArch64::AEK_RAS | AArch64::AEK_LSE |
  731. AArch64::AEK_RDM | AArch64::AEK_FP16 | AArch64::AEK_DOTPROD |
  732. AArch64::AEK_RCPC, "8.2-A"));
  733. EXPECT_TRUE(testAArch64CPU(
  734. "cortex-a76", "armv8.2-a", "crypto-neon-fp-armv8",
  735. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  736. AArch64::AEK_RDM | AArch64::AEK_SIMD | AArch64::AEK_RAS |
  737. AArch64::AEK_LSE | AArch64::AEK_FP16 | AArch64::AEK_DOTPROD |
  738. AArch64::AEK_RCPC| AArch64::AEK_SSBS, "8.2-A"));
  739. EXPECT_TRUE(testAArch64CPU(
  740. "cortex-a76ae", "armv8.2-a", "crypto-neon-fp-armv8",
  741. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  742. AArch64::AEK_RDM | AArch64::AEK_SIMD | AArch64::AEK_RAS |
  743. AArch64::AEK_LSE | AArch64::AEK_FP16 | AArch64::AEK_DOTPROD |
  744. AArch64::AEK_RCPC| AArch64::AEK_SSBS, "8.2-A"));
  745. EXPECT_TRUE(testAArch64CPU(
  746. "cyclone", "armv8-a", "crypto-neon-fp-armv8",
  747. AArch64::AEK_CRYPTO | AArch64::AEK_FP | AArch64::AEK_SIMD, "8-A"));
  748. EXPECT_TRUE(testAArch64CPU(
  749. "exynos-m1", "armv8-a", "crypto-neon-fp-armv8",
  750. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  751. AArch64::AEK_SIMD, "8-A"));
  752. EXPECT_TRUE(testAArch64CPU(
  753. "exynos-m2", "armv8-a", "crypto-neon-fp-armv8",
  754. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  755. AArch64::AEK_SIMD, "8-A"));
  756. EXPECT_TRUE(testAArch64CPU(
  757. "exynos-m3", "armv8-a", "crypto-neon-fp-armv8",
  758. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  759. AArch64::AEK_SIMD, "8-A"));
  760. EXPECT_TRUE(testAArch64CPU(
  761. "exynos-m4", "armv8.2-a", "crypto-neon-fp-armv8",
  762. AArch64::AEK_CRC | AArch64::AEK_CRYPTO |
  763. AArch64::AEK_DOTPROD | AArch64::AEK_FP | AArch64::AEK_FP16 |
  764. AArch64::AEK_LSE | AArch64::AEK_RAS | AArch64::AEK_RDM |
  765. AArch64::AEK_SIMD, "8.2-A"));
  766. EXPECT_TRUE(testAArch64CPU(
  767. "exynos-m5", "armv8.2-a", "crypto-neon-fp-armv8",
  768. AArch64::AEK_CRC | AArch64::AEK_CRYPTO |
  769. AArch64::AEK_DOTPROD | AArch64::AEK_FP | AArch64::AEK_FP16 |
  770. AArch64::AEK_LSE | AArch64::AEK_RAS | AArch64::AEK_RDM |
  771. AArch64::AEK_SIMD, "8.2-A"));
  772. EXPECT_TRUE(testAArch64CPU(
  773. "falkor", "armv8-a", "crypto-neon-fp-armv8",
  774. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  775. AArch64::AEK_SIMD | AArch64::AEK_RDM, "8-A"));
  776. EXPECT_TRUE(testAArch64CPU(
  777. "kryo", "armv8-a", "crypto-neon-fp-armv8",
  778. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  779. AArch64::AEK_SIMD, "8-A"));
  780. EXPECT_TRUE(testAArch64CPU(
  781. "thunderx2t99", "armv8.1-a", "crypto-neon-fp-armv8",
  782. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_LSE |
  783. AArch64::AEK_RDM | AArch64::AEK_FP | AArch64::AEK_SIMD, "8.1-A"));
  784. EXPECT_TRUE(testAArch64CPU(
  785. "thunderx", "armv8-a", "crypto-neon-fp-armv8",
  786. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_SIMD |
  787. AArch64::AEK_FP | AArch64::AEK_PROFILE,
  788. "8-A"));
  789. EXPECT_TRUE(testAArch64CPU(
  790. "thunderxt81", "armv8-a", "crypto-neon-fp-armv8",
  791. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_SIMD |
  792. AArch64::AEK_FP | AArch64::AEK_PROFILE,
  793. "8-A"));
  794. EXPECT_TRUE(testAArch64CPU(
  795. "thunderxt83", "armv8-a", "crypto-neon-fp-armv8",
  796. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_SIMD |
  797. AArch64::AEK_FP | AArch64::AEK_PROFILE,
  798. "8-A"));
  799. EXPECT_TRUE(testAArch64CPU(
  800. "thunderxt88", "armv8-a", "crypto-neon-fp-armv8",
  801. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_SIMD |
  802. AArch64::AEK_FP | AArch64::AEK_PROFILE,
  803. "8-A"));
  804. EXPECT_TRUE(testAArch64CPU(
  805. "tsv110", "armv8.2-a", "crypto-neon-fp-armv8",
  806. AArch64::AEK_CRC | AArch64::AEK_CRYPTO | AArch64::AEK_FP |
  807. AArch64::AEK_SIMD | AArch64::AEK_RAS | AArch64::AEK_LSE |
  808. AArch64::AEK_RDM | AArch64::AEK_PROFILE | AArch64::AEK_FP16 |
  809. AArch64::AEK_FP16FML | AArch64::AEK_DOTPROD,
  810. "8.2-A"));
  811. }
  812. static constexpr unsigned NumAArch64CPUArchs = 24;
  813. TEST(TargetParserTest, testAArch64CPUArchList) {
  814. SmallVector<StringRef, NumAArch64CPUArchs> List;
  815. AArch64::fillValidCPUArchList(List);
  816. // No list exists for these in this test suite, so ensure all are
  817. // valid, and match the expected 'magic' count.
  818. EXPECT_EQ(List.size(), NumAArch64CPUArchs);
  819. for(StringRef CPU : List) {
  820. EXPECT_NE(AArch64::parseCPUArch(CPU), AArch64::ArchKind::INVALID);
  821. }
  822. }
  823. bool testAArch64Arch(StringRef Arch, StringRef DefaultCPU, StringRef SubArch,
  824. unsigned ArchAttr) {
  825. AArch64::ArchKind AK = AArch64::parseArch(Arch);
  826. return (AK != AArch64::ArchKind::INVALID) &
  827. AArch64::getDefaultCPU(Arch).equals(DefaultCPU) &
  828. AArch64::getSubArch(AK).equals(SubArch) &
  829. (AArch64::getArchAttr(AK) == ArchAttr);
  830. }
  831. TEST(TargetParserTest, testAArch64Arch) {
  832. EXPECT_TRUE(testAArch64Arch("armv8-a", "cortex-a53", "v8",
  833. ARMBuildAttrs::CPUArch::v8_A));
  834. EXPECT_TRUE(testAArch64Arch("armv8.1-a", "generic", "v8.1a",
  835. ARMBuildAttrs::CPUArch::v8_A));
  836. EXPECT_TRUE(testAArch64Arch("armv8.2-a", "generic", "v8.2a",
  837. ARMBuildAttrs::CPUArch::v8_A));
  838. EXPECT_TRUE(testAArch64Arch("armv8.3-a", "generic", "v8.3a",
  839. ARMBuildAttrs::CPUArch::v8_A));
  840. EXPECT_TRUE(testAArch64Arch("armv8.4-a", "generic", "v8.4a",
  841. ARMBuildAttrs::CPUArch::v8_A));
  842. EXPECT_TRUE(testAArch64Arch("armv8.5-a", "generic", "v8.5a",
  843. ARMBuildAttrs::CPUArch::v8_A));
  844. }
  845. bool testAArch64Extension(StringRef CPUName, AArch64::ArchKind AK,
  846. StringRef ArchExt) {
  847. return AArch64::getDefaultExtensions(CPUName, AK) &
  848. AArch64::parseArchExt(ArchExt);
  849. }
  850. TEST(TargetParserTest, testAArch64Extension) {
  851. EXPECT_FALSE(testAArch64Extension("cortex-a35",
  852. AArch64::ArchKind::INVALID, "ras"));
  853. EXPECT_FALSE(testAArch64Extension("cortex-a53",
  854. AArch64::ArchKind::INVALID, "ras"));
  855. EXPECT_TRUE(testAArch64Extension("cortex-a55",
  856. AArch64::ArchKind::INVALID, "ras"));
  857. EXPECT_FALSE(testAArch64Extension("cortex-a57",
  858. AArch64::ArchKind::INVALID, "ras"));
  859. EXPECT_FALSE(testAArch64Extension("cortex-a72",
  860. AArch64::ArchKind::INVALID, "ras"));
  861. EXPECT_FALSE(testAArch64Extension("cortex-a73",
  862. AArch64::ArchKind::INVALID, "ras"));
  863. EXPECT_TRUE(testAArch64Extension("cortex-a75",
  864. AArch64::ArchKind::INVALID, "ras"));
  865. EXPECT_FALSE(testAArch64Extension("cyclone",
  866. AArch64::ArchKind::INVALID, "ras"));
  867. EXPECT_FALSE(testAArch64Extension("exynos-m1",
  868. AArch64::ArchKind::INVALID, "ras"));
  869. EXPECT_FALSE(testAArch64Extension("exynos-m2",
  870. AArch64::ArchKind::INVALID, "ras"));
  871. EXPECT_FALSE(testAArch64Extension("exynos-m3",
  872. AArch64::ArchKind::INVALID, "ras"));
  873. EXPECT_TRUE(testAArch64Extension("exynos-m4",
  874. AArch64::ArchKind::INVALID, "dotprod"));
  875. EXPECT_TRUE(testAArch64Extension("exynos-m4",
  876. AArch64::ArchKind::INVALID, "fp16"));
  877. EXPECT_TRUE(testAArch64Extension("exynos-m4",
  878. AArch64::ArchKind::INVALID, "lse"));
  879. EXPECT_TRUE(testAArch64Extension("exynos-m4",
  880. AArch64::ArchKind::INVALID, "ras"));
  881. EXPECT_TRUE(testAArch64Extension("exynos-m4",
  882. AArch64::ArchKind::INVALID, "rdm"));
  883. EXPECT_TRUE(testAArch64Extension("exynos-m5",
  884. AArch64::ArchKind::INVALID, "dotprod"));
  885. EXPECT_TRUE(testAArch64Extension("exynos-m5",
  886. AArch64::ArchKind::INVALID, "fp16"));
  887. EXPECT_TRUE(testAArch64Extension("exynos-m5",
  888. AArch64::ArchKind::INVALID, "lse"));
  889. EXPECT_TRUE(testAArch64Extension("exynos-m5",
  890. AArch64::ArchKind::INVALID, "ras"));
  891. EXPECT_TRUE(testAArch64Extension("exynos-m5",
  892. AArch64::ArchKind::INVALID, "rdm"));
  893. EXPECT_TRUE(testAArch64Extension("falkor",
  894. AArch64::ArchKind::INVALID, "rdm"));
  895. EXPECT_FALSE(testAArch64Extension("kryo",
  896. AArch64::ArchKind::INVALID, "ras"));
  897. EXPECT_TRUE(testAArch64Extension("saphira",
  898. AArch64::ArchKind::INVALID, "crc"));
  899. EXPECT_TRUE(testAArch64Extension("saphira",
  900. AArch64::ArchKind::INVALID, "lse"));
  901. EXPECT_TRUE(testAArch64Extension("saphira",
  902. AArch64::ArchKind::INVALID, "rdm"));
  903. EXPECT_TRUE(testAArch64Extension("saphira",
  904. AArch64::ArchKind::INVALID, "ras"));
  905. EXPECT_TRUE(testAArch64Extension("saphira",
  906. AArch64::ArchKind::INVALID, "rcpc"));
  907. EXPECT_TRUE(testAArch64Extension("saphira",
  908. AArch64::ArchKind::INVALID, "profile"));
  909. EXPECT_FALSE(testAArch64Extension("saphira",
  910. AArch64::ArchKind::INVALID, "fp16"));
  911. EXPECT_TRUE(testAArch64Extension("cortex-a55",
  912. AArch64::ArchKind::INVALID, "fp16"));
  913. EXPECT_FALSE(testAArch64Extension("cortex-a55",
  914. AArch64::ArchKind::INVALID, "fp16fml"));
  915. EXPECT_TRUE(testAArch64Extension("cortex-a55",
  916. AArch64::ArchKind::INVALID, "dotprod"));
  917. EXPECT_TRUE(testAArch64Extension("cortex-a75",
  918. AArch64::ArchKind::INVALID, "fp16"));
  919. EXPECT_FALSE(testAArch64Extension("cortex-a75",
  920. AArch64::ArchKind::INVALID, "fp16fml"));
  921. EXPECT_TRUE(testAArch64Extension("cortex-a75",
  922. AArch64::ArchKind::INVALID, "dotprod"));
  923. EXPECT_FALSE(testAArch64Extension("thunderx2t99",
  924. AArch64::ArchKind::INVALID, "ras"));
  925. EXPECT_FALSE(testAArch64Extension("thunderx",
  926. AArch64::ArchKind::INVALID, "lse"));
  927. EXPECT_FALSE(testAArch64Extension("thunderxt81",
  928. AArch64::ArchKind::INVALID, "lse"));
  929. EXPECT_FALSE(testAArch64Extension("thunderxt83",
  930. AArch64::ArchKind::INVALID, "lse"));
  931. EXPECT_FALSE(testAArch64Extension("thunderxt88",
  932. AArch64::ArchKind::INVALID, "lse"));
  933. EXPECT_TRUE(testAArch64Extension("tsv110",
  934. AArch64::ArchKind::INVALID, "crypto"));
  935. EXPECT_FALSE(testAArch64Extension("tsv110",
  936. AArch64::ArchKind::INVALID, "sha3"));
  937. EXPECT_FALSE(testAArch64Extension("tsv110",
  938. AArch64::ArchKind::INVALID, "sm4"));
  939. EXPECT_TRUE(testAArch64Extension("tsv110",
  940. AArch64::ArchKind::INVALID, "ras"));
  941. EXPECT_TRUE(testAArch64Extension("tsv110",
  942. AArch64::ArchKind::INVALID, "profile"));
  943. EXPECT_TRUE(testAArch64Extension("tsv110",
  944. AArch64::ArchKind::INVALID, "fp16"));
  945. EXPECT_TRUE(testAArch64Extension("tsv110",
  946. AArch64::ArchKind::INVALID, "fp16fml"));
  947. EXPECT_TRUE(testAArch64Extension("tsv110",
  948. AArch64::ArchKind::INVALID, "dotprod"));
  949. EXPECT_FALSE(testAArch64Extension(
  950. "generic", AArch64::ArchKind::ARMV8A, "ras"));
  951. EXPECT_FALSE(testAArch64Extension(
  952. "generic", AArch64::ArchKind::ARMV8_1A, "ras"));
  953. EXPECT_FALSE(testAArch64Extension(
  954. "generic", AArch64::ArchKind::ARMV8_2A, "profile"));
  955. EXPECT_FALSE(testAArch64Extension(
  956. "generic", AArch64::ArchKind::ARMV8_2A, "fp16"));
  957. EXPECT_FALSE(testAArch64Extension(
  958. "generic", AArch64::ArchKind::ARMV8_2A, "fp16fml"));
  959. EXPECT_FALSE(testAArch64Extension(
  960. "generic", AArch64::ArchKind::ARMV8_3A, "fp16"));
  961. EXPECT_FALSE(testAArch64Extension(
  962. "generic", AArch64::ArchKind::ARMV8_3A, "fp16fml"));
  963. EXPECT_FALSE(testAArch64Extension(
  964. "generic", AArch64::ArchKind::ARMV8_4A, "fp16"));
  965. EXPECT_FALSE(testAArch64Extension(
  966. "generic", AArch64::ArchKind::ARMV8_4A, "fp16fml"));
  967. }
  968. TEST(TargetParserTest, AArch64ExtensionFeatures) {
  969. std::vector<StringRef> Features;
  970. unsigned Extensions = AArch64::AEK_CRC | AArch64::AEK_CRYPTO |
  971. AArch64::AEK_FP | AArch64::AEK_SIMD |
  972. AArch64::AEK_FP16 | AArch64::AEK_PROFILE |
  973. AArch64::AEK_RAS | AArch64::AEK_LSE |
  974. AArch64::AEK_RDM | AArch64::AEK_SVE |
  975. AArch64::AEK_SVE2 | AArch64::AEK_DOTPROD |
  976. AArch64::AEK_RCPC | AArch64::AEK_FP16FML;
  977. for (unsigned i = 0; i <= Extensions; i++)
  978. EXPECT_TRUE(i == 0 ? !AArch64::getExtensionFeatures(i, Features)
  979. : AArch64::getExtensionFeatures(i, Features));
  980. }
  981. TEST(TargetParserTest, AArch64ArchFeatures) {
  982. std::vector<StringRef> Features;
  983. for (auto AK : AArch64::ArchKinds)
  984. EXPECT_TRUE((AK == AArch64::ArchKind::INVALID)
  985. ? !AArch64::getArchFeatures(AK, Features)
  986. : AArch64::getArchFeatures(AK, Features));
  987. }
  988. TEST(TargetParserTest, AArch64ArchExtFeature) {
  989. const char *ArchExt[][4] = {{"crc", "nocrc", "+crc", "-crc"},
  990. {"crypto", "nocrypto", "+crypto", "-crypto"},
  991. {"fp", "nofp", "+fp-armv8", "-fp-armv8"},
  992. {"simd", "nosimd", "+neon", "-neon"},
  993. {"fp16", "nofp16", "+fullfp16", "-fullfp16"},
  994. {"fp16fml", "nofp16fml", "+fp16fml", "-fp16fml"},
  995. {"profile", "noprofile", "+spe", "-spe"},
  996. {"ras", "noras", "+ras", "-ras"},
  997. {"lse", "nolse", "+lse", "-lse"},
  998. {"rdm", "nordm", "+rdm", "-rdm"},
  999. {"sve", "nosve", "+sve", "-sve"},
  1000. {"sve2", "nosve2", "+sve2", "-sve2"},
  1001. {"sve2-aes", "nosve2-aes", "+sve2-aes",
  1002. "-sve2-aes"},
  1003. {"sve2-sm4", "nosve2-sm4", "+sve2-sm4",
  1004. "-sve2-sm4"},
  1005. {"sve2-sha3", "nosve2-sha3", "+sve2-sha3",
  1006. "-sve2-sha3"},
  1007. {"bitperm", "nobitperm", "+bitperm", "-bitperm"},
  1008. {"dotprod", "nodotprod", "+dotprod", "-dotprod"},
  1009. {"rcpc", "norcpc", "+rcpc", "-rcpc" },
  1010. {"rng", "norng", "+rand", "-rand"},
  1011. {"memtag", "nomemtag", "+mte", "-mte"},
  1012. {"ssbs", "nossbs", "+ssbs", "-ssbs"},
  1013. {"sb", "nosb", "+sb", "-sb"},
  1014. {"predres", "nopredres", "+predres", "-predres"}
  1015. };
  1016. for (unsigned i = 0; i < array_lengthof(ArchExt); i++) {
  1017. EXPECT_EQ(StringRef(ArchExt[i][2]),
  1018. AArch64::getArchExtFeature(ArchExt[i][0]));
  1019. EXPECT_EQ(StringRef(ArchExt[i][3]),
  1020. AArch64::getArchExtFeature(ArchExt[i][1]));
  1021. }
  1022. }
  1023. }