AlignmentTest.cpp 10 KB

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  1. //=== - llvm/unittest/Support/Alignment.cpp - Alignment utility tests -----===//
  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/Alignment.h"
  9. #include "gtest/gtest.h"
  10. #include <vector>
  11. #ifdef _MSC_VER
  12. // Disable warnings about potential divide by 0.
  13. #pragma warning(push)
  14. #pragma warning(disable : 4723)
  15. #endif
  16. using namespace llvm;
  17. namespace {
  18. TEST(AlignmentTest, AlignOfConstant) {
  19. EXPECT_EQ(Align::Of<uint8_t>(), Align(alignof(uint8_t)));
  20. EXPECT_EQ(Align::Of<uint16_t>(), Align(alignof(uint16_t)));
  21. EXPECT_EQ(Align::Of<uint32_t>(), Align(alignof(uint32_t)));
  22. EXPECT_EQ(Align::Of<uint64_t>(), Align(alignof(uint64_t)));
  23. }
  24. TEST(AlignmentTest, AlignConstant) {
  25. EXPECT_EQ(Align::Constant<1>(), Align(1));
  26. EXPECT_EQ(Align::Constant<2>(), Align(2));
  27. EXPECT_EQ(Align::Constant<4>(), Align(4));
  28. EXPECT_EQ(Align::Constant<8>(), Align(8));
  29. EXPECT_EQ(Align::Constant<16>(), Align(16));
  30. EXPECT_EQ(Align::Constant<32>(), Align(32));
  31. EXPECT_EQ(Align::Constant<64>(), Align(64));
  32. }
  33. TEST(AlignmentTest, AlignConstexprConstant) {
  34. constexpr Align kConstantAlign = Align::Of<uint64_t>();
  35. EXPECT_EQ(Align(8), kConstantAlign);
  36. }
  37. std::vector<uint64_t> getValidAlignments() {
  38. std::vector<uint64_t> Out;
  39. for (size_t Shift = 0; Shift < 64; ++Shift)
  40. Out.push_back(1ULL << Shift);
  41. return Out;
  42. }
  43. TEST(AlignmentTest, AlignDefaultCTor) {
  44. EXPECT_EQ(Align().value(), 1ULL);
  45. EXPECT_EQ(Align::None().value(), 1ULL);
  46. }
  47. TEST(AlignmentTest, MaybeAlignDefaultCTor) {
  48. EXPECT_FALSE(MaybeAlign().hasValue());
  49. }
  50. TEST(AlignmentTest, ValidCTors) {
  51. for (uint64_t Value : getValidAlignments()) {
  52. EXPECT_EQ(Align(Value).value(), Value);
  53. EXPECT_EQ((*MaybeAlign(Value)).value(), Value);
  54. }
  55. }
  56. TEST(AlignmentTest, CheckMaybeAlignHasValue) {
  57. EXPECT_TRUE(MaybeAlign(1));
  58. EXPECT_TRUE(MaybeAlign(1).hasValue());
  59. EXPECT_FALSE(MaybeAlign(0));
  60. EXPECT_FALSE(MaybeAlign(0).hasValue());
  61. EXPECT_FALSE(MaybeAlign());
  62. EXPECT_FALSE(MaybeAlign().hasValue());
  63. }
  64. TEST(AlignmentTest, Division) {
  65. for (uint64_t Value : getValidAlignments()) {
  66. if (Value > 1) {
  67. EXPECT_EQ(Align(Value) / 2, Value / 2);
  68. EXPECT_EQ(MaybeAlign(Value) / 2, Value / 2);
  69. }
  70. }
  71. EXPECT_EQ(MaybeAlign(0) / 2, MaybeAlign(0));
  72. }
  73. TEST(AlignmentTest, AlignTo) {
  74. struct {
  75. uint64_t alignment;
  76. uint64_t offset;
  77. uint64_t rounded;
  78. } kTests[] = {
  79. // MaybeAlign
  80. {0, 0, 0},
  81. {0, 1, 1},
  82. {0, 5, 5},
  83. // MaybeAlign / Align
  84. {1, 0, 0},
  85. {1, 1, 1},
  86. {1, 5, 5},
  87. {2, 0, 0},
  88. {2, 1, 2},
  89. {2, 2, 2},
  90. {2, 7, 8},
  91. {2, 16, 16},
  92. {4, 0, 0},
  93. {4, 1, 4},
  94. {4, 4, 4},
  95. {4, 6, 8},
  96. };
  97. for (const auto &T : kTests) {
  98. MaybeAlign A(T.alignment);
  99. // Test MaybeAlign
  100. EXPECT_EQ(alignTo(T.offset, A), T.rounded);
  101. // Test Align
  102. if (A) {
  103. EXPECT_EQ(alignTo(T.offset, A.getValue()), T.rounded);
  104. }
  105. }
  106. }
  107. TEST(AlignmentTest, Log2) {
  108. for (uint64_t Value : getValidAlignments()) {
  109. EXPECT_EQ(Log2(Align(Value)), Log2_64(Value));
  110. EXPECT_EQ(Log2(MaybeAlign(Value)), Log2_64(Value));
  111. }
  112. }
  113. TEST(AlignmentTest, MinAlign) {
  114. struct {
  115. uint64_t A;
  116. uint64_t B;
  117. uint64_t MinAlign;
  118. } kTests[] = {
  119. // MaybeAlign
  120. {0, 0, 0},
  121. {0, 8, 8},
  122. {2, 0, 2},
  123. // MaybeAlign / Align
  124. {1, 2, 1},
  125. {8, 4, 4},
  126. };
  127. for (const auto &T : kTests) {
  128. EXPECT_EQ(commonAlignment(MaybeAlign(T.A), MaybeAlign(T.B)), T.MinAlign);
  129. EXPECT_EQ(MinAlign(T.A, T.B), T.MinAlign);
  130. if (T.A) {
  131. EXPECT_EQ(commonAlignment(Align(T.A), MaybeAlign(T.B)), T.MinAlign);
  132. }
  133. if (T.B) {
  134. EXPECT_EQ(commonAlignment(MaybeAlign(T.A), Align(T.B)), T.MinAlign);
  135. }
  136. if (T.A && T.B) {
  137. EXPECT_EQ(commonAlignment(Align(T.A), Align(T.B)), T.MinAlign);
  138. }
  139. }
  140. }
  141. TEST(AlignmentTest, Encode_Decode) {
  142. for (uint64_t Value : getValidAlignments()) {
  143. {
  144. Align Actual(Value);
  145. Align Expected = decodeMaybeAlign(encode(Actual)).getValue();
  146. EXPECT_EQ(Expected, Actual);
  147. }
  148. {
  149. MaybeAlign Actual(Value);
  150. MaybeAlign Expected = decodeMaybeAlign(encode(Actual));
  151. EXPECT_EQ(Expected, Actual);
  152. }
  153. }
  154. MaybeAlign Actual(0);
  155. MaybeAlign Expected = decodeMaybeAlign(encode(Actual));
  156. EXPECT_EQ(Expected, Actual);
  157. }
  158. TEST(AlignmentTest, isAligned) {
  159. struct {
  160. uint64_t alignment;
  161. uint64_t offset;
  162. bool isAligned;
  163. } kTests[] = {
  164. // MaybeAlign / Align
  165. {1, 0, true}, {1, 1, true}, {1, 5, true}, {2, 0, true},
  166. {2, 1, false}, {2, 2, true}, {2, 7, false}, {2, 16, true},
  167. {4, 0, true}, {4, 1, false}, {4, 4, true}, {4, 6, false},
  168. };
  169. for (const auto &T : kTests) {
  170. MaybeAlign A(T.alignment);
  171. // Test MaybeAlign
  172. EXPECT_EQ(isAligned(A, T.offset), T.isAligned);
  173. // Test Align
  174. if (A) {
  175. EXPECT_EQ(isAligned(A.getValue(), T.offset), T.isAligned);
  176. }
  177. }
  178. }
  179. TEST(AlignmentTest, AlignComparisons) {
  180. std::vector<uint64_t> ValidAlignments = getValidAlignments();
  181. std::sort(ValidAlignments.begin(), ValidAlignments.end());
  182. for (size_t I = 1; I < ValidAlignments.size(); ++I) {
  183. assert(I >= 1);
  184. const Align A(ValidAlignments[I - 1]);
  185. const Align B(ValidAlignments[I]);
  186. EXPECT_EQ(A, A);
  187. EXPECT_NE(A, B);
  188. EXPECT_LT(A, B);
  189. EXPECT_GT(B, A);
  190. EXPECT_LE(A, B);
  191. EXPECT_GE(B, A);
  192. EXPECT_LE(A, A);
  193. EXPECT_GE(A, A);
  194. EXPECT_EQ(A, A.value());
  195. EXPECT_NE(A, B.value());
  196. EXPECT_LT(A, B.value());
  197. EXPECT_GT(B, A.value());
  198. EXPECT_LE(A, B.value());
  199. EXPECT_GE(B, A.value());
  200. EXPECT_LE(A, A.value());
  201. EXPECT_GE(A, A.value());
  202. EXPECT_EQ(std::max(A, B), B);
  203. EXPECT_EQ(std::min(A, B), A);
  204. const MaybeAlign MA(ValidAlignments[I - 1]);
  205. const MaybeAlign MB(ValidAlignments[I]);
  206. EXPECT_EQ(MA, MA);
  207. EXPECT_NE(MA, MB);
  208. EXPECT_LT(MA, MB);
  209. EXPECT_GT(MB, MA);
  210. EXPECT_LE(MA, MB);
  211. EXPECT_GE(MB, MA);
  212. EXPECT_LE(MA, MA);
  213. EXPECT_GE(MA, MA);
  214. EXPECT_EQ(MA, MA ? (*MA).value() : 0);
  215. EXPECT_NE(MA, MB ? (*MB).value() : 0);
  216. EXPECT_LT(MA, MB ? (*MB).value() : 0);
  217. EXPECT_GT(MB, MA ? (*MA).value() : 0);
  218. EXPECT_LE(MA, MB ? (*MB).value() : 0);
  219. EXPECT_GE(MB, MA ? (*MA).value() : 0);
  220. EXPECT_LE(MA, MA ? (*MA).value() : 0);
  221. EXPECT_GE(MA, MA ? (*MA).value() : 0);
  222. EXPECT_EQ(std::max(A, B), B);
  223. EXPECT_EQ(std::min(A, B), A);
  224. }
  225. }
  226. TEST(AlignmentTest, Max) {
  227. // We introduce std::max here to test ADL.
  228. using std::max;
  229. // Uses llvm::max.
  230. EXPECT_EQ(max(MaybeAlign(), Align(2)), Align(2));
  231. EXPECT_EQ(max(Align(2), MaybeAlign()), Align(2));
  232. EXPECT_EQ(max(MaybeAlign(1), Align(2)), Align(2));
  233. EXPECT_EQ(max(Align(2), MaybeAlign(1)), Align(2));
  234. EXPECT_EQ(max(MaybeAlign(2), Align(2)), Align(2));
  235. EXPECT_EQ(max(Align(2), MaybeAlign(2)), Align(2));
  236. EXPECT_EQ(max(MaybeAlign(4), Align(2)), Align(4));
  237. EXPECT_EQ(max(Align(2), MaybeAlign(4)), Align(4));
  238. // Uses std::max.
  239. EXPECT_EQ(max(Align(2), Align(4)), Align(4));
  240. EXPECT_EQ(max(MaybeAlign(2), MaybeAlign(4)), MaybeAlign(4));
  241. EXPECT_EQ(max(MaybeAlign(), MaybeAlign()), MaybeAlign());
  242. }
  243. TEST(AlignmentTest, AssumeAligned) {
  244. EXPECT_EQ(assumeAligned(0), Align(1));
  245. EXPECT_EQ(assumeAligned(0), Align());
  246. EXPECT_EQ(assumeAligned(1), Align(1));
  247. EXPECT_EQ(assumeAligned(1), Align());
  248. }
  249. // Death tests reply on assert which is disabled in release mode.
  250. #ifndef NDEBUG
  251. // We use a subset of valid alignments for DEATH_TESTs as they are particularly
  252. // slow.
  253. std::vector<uint64_t> getValidAlignmentsForDeathTest() {
  254. return {1, 1ULL << 31, 1ULL << 63};
  255. }
  256. std::vector<uint64_t> getNonPowerOfTwo() { return {3, 10, 15}; }
  257. TEST(AlignmentDeathTest, Log2) {
  258. EXPECT_DEATH(Log2(MaybeAlign(0)), ".* should be defined");
  259. }
  260. TEST(AlignmentDeathTest, CantConvertUnsetMaybe) {
  261. EXPECT_DEATH((MaybeAlign(0).getValue()), ".*");
  262. }
  263. TEST(AlignmentDeathTest, Division) {
  264. EXPECT_DEATH(Align(1) / 2, "Can't halve byte alignment");
  265. EXPECT_DEATH(MaybeAlign(1) / 2, "Can't halve byte alignment");
  266. EXPECT_DEATH(Align(8) / 0, "Divisor must be positive and a power of 2");
  267. EXPECT_DEATH(Align(8) / 3, "Divisor must be positive and a power of 2");
  268. }
  269. TEST(AlignmentDeathTest, InvalidCTors) {
  270. EXPECT_DEATH((Align(0)), "Value must not be 0");
  271. for (uint64_t Value : getNonPowerOfTwo()) {
  272. EXPECT_DEATH((Align(Value)), "Alignment is not a power of 2");
  273. EXPECT_DEATH((MaybeAlign(Value)),
  274. "Alignment is neither 0 nor a power of 2");
  275. }
  276. }
  277. TEST(AlignmentDeathTest, ComparisonsWithZero) {
  278. for (uint64_t Value : getValidAlignmentsForDeathTest()) {
  279. EXPECT_DEATH((void)(Align(Value) == 0), ".* should be defined");
  280. EXPECT_DEATH((void)(Align(Value) != 0), ".* should be defined");
  281. EXPECT_DEATH((void)(Align(Value) >= 0), ".* should be defined");
  282. EXPECT_DEATH((void)(Align(Value) <= 0), ".* should be defined");
  283. EXPECT_DEATH((void)(Align(Value) > 0), ".* should be defined");
  284. EXPECT_DEATH((void)(Align(Value) < 0), ".* should be defined");
  285. }
  286. }
  287. TEST(AlignmentDeathTest, CompareMaybeAlignToZero) {
  288. for (uint64_t Value : getValidAlignmentsForDeathTest()) {
  289. // MaybeAlign is allowed to be == or != 0
  290. (void)(MaybeAlign(Value) == 0);
  291. (void)(MaybeAlign(Value) != 0);
  292. EXPECT_DEATH((void)(MaybeAlign(Value) >= 0), ".* should be defined");
  293. EXPECT_DEATH((void)(MaybeAlign(Value) <= 0), ".* should be defined");
  294. EXPECT_DEATH((void)(MaybeAlign(Value) > 0), ".* should be defined");
  295. EXPECT_DEATH((void)(MaybeAlign(Value) < 0), ".* should be defined");
  296. }
  297. }
  298. TEST(AlignmentDeathTest, CompareAlignToUndefMaybeAlign) {
  299. for (uint64_t Value : getValidAlignmentsForDeathTest()) {
  300. EXPECT_DEATH((void)(Align(Value) == MaybeAlign(0)), ".* should be defined");
  301. EXPECT_DEATH((void)(Align(Value) != MaybeAlign(0)), ".* should be defined");
  302. EXPECT_DEATH((void)(Align(Value) >= MaybeAlign(0)), ".* should be defined");
  303. EXPECT_DEATH((void)(Align(Value) <= MaybeAlign(0)), ".* should be defined");
  304. EXPECT_DEATH((void)(Align(Value) > MaybeAlign(0)), ".* should be defined");
  305. EXPECT_DEATH((void)(Align(Value) < MaybeAlign(0)), ".* should be defined");
  306. }
  307. }
  308. #endif // NDEBUG
  309. } // end anonymous namespace
  310. #ifdef _MSC_VER
  311. #pragma warning(pop)
  312. #endif