MathExtrasTest.cpp 7.4 KB

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  1. //===- unittests/Support/MathExtrasTest.cpp - math utils 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. #include "gtest/gtest.h"
  10. #include "llvm/Support/MathExtras.h"
  11. using namespace llvm;
  12. namespace {
  13. TEST(MathExtras, countTrailingZeros) {
  14. uint8_t Z8 = 0;
  15. uint16_t Z16 = 0;
  16. uint32_t Z32 = 0;
  17. uint64_t Z64 = 0;
  18. EXPECT_EQ(8u, countTrailingZeros(Z8));
  19. EXPECT_EQ(16u, countTrailingZeros(Z16));
  20. EXPECT_EQ(32u, countTrailingZeros(Z32));
  21. EXPECT_EQ(64u, countTrailingZeros(Z64));
  22. uint8_t NZ8 = 42;
  23. uint16_t NZ16 = 42;
  24. uint32_t NZ32 = 42;
  25. uint64_t NZ64 = 42;
  26. EXPECT_EQ(1u, countTrailingZeros(NZ8));
  27. EXPECT_EQ(1u, countTrailingZeros(NZ16));
  28. EXPECT_EQ(1u, countTrailingZeros(NZ32));
  29. EXPECT_EQ(1u, countTrailingZeros(NZ64));
  30. }
  31. TEST(MathExtras, countLeadingZeros) {
  32. uint8_t Z8 = 0;
  33. uint16_t Z16 = 0;
  34. uint32_t Z32 = 0;
  35. uint64_t Z64 = 0;
  36. EXPECT_EQ(8u, countLeadingZeros(Z8));
  37. EXPECT_EQ(16u, countLeadingZeros(Z16));
  38. EXPECT_EQ(32u, countLeadingZeros(Z32));
  39. EXPECT_EQ(64u, countLeadingZeros(Z64));
  40. uint8_t NZ8 = 42;
  41. uint16_t NZ16 = 42;
  42. uint32_t NZ32 = 42;
  43. uint64_t NZ64 = 42;
  44. EXPECT_EQ(2u, countLeadingZeros(NZ8));
  45. EXPECT_EQ(10u, countLeadingZeros(NZ16));
  46. EXPECT_EQ(26u, countLeadingZeros(NZ32));
  47. EXPECT_EQ(58u, countLeadingZeros(NZ64));
  48. EXPECT_EQ(8u, countLeadingZeros(0x00F000FFu));
  49. EXPECT_EQ(8u, countLeadingZeros(0x00F12345u));
  50. for (unsigned i = 0; i <= 30; ++i) {
  51. EXPECT_EQ(31 - i, countLeadingZeros(1u << i));
  52. }
  53. EXPECT_EQ(8u, countLeadingZeros(0x00F1234500F12345ULL));
  54. EXPECT_EQ(1u, countLeadingZeros(1ULL << 62));
  55. for (unsigned i = 0; i <= 62; ++i) {
  56. EXPECT_EQ(63 - i, countLeadingZeros(1ULL << i));
  57. }
  58. }
  59. TEST(MathExtras, findFirstSet) {
  60. uint8_t Z8 = 0;
  61. uint16_t Z16 = 0;
  62. uint32_t Z32 = 0;
  63. uint64_t Z64 = 0;
  64. EXPECT_EQ(0xFFULL, findFirstSet(Z8));
  65. EXPECT_EQ(0xFFFFULL, findFirstSet(Z16));
  66. EXPECT_EQ(0xFFFFFFFFULL, findFirstSet(Z32));
  67. EXPECT_EQ(0xFFFFFFFFFFFFFFFFULL, findFirstSet(Z64));
  68. uint8_t NZ8 = 42;
  69. uint16_t NZ16 = 42;
  70. uint32_t NZ32 = 42;
  71. uint64_t NZ64 = 42;
  72. EXPECT_EQ(1u, findFirstSet(NZ8));
  73. EXPECT_EQ(1u, findFirstSet(NZ16));
  74. EXPECT_EQ(1u, findFirstSet(NZ32));
  75. EXPECT_EQ(1u, findFirstSet(NZ64));
  76. }
  77. TEST(MathExtras, findLastSet) {
  78. uint8_t Z8 = 0;
  79. uint16_t Z16 = 0;
  80. uint32_t Z32 = 0;
  81. uint64_t Z64 = 0;
  82. EXPECT_EQ(0xFFULL, findLastSet(Z8));
  83. EXPECT_EQ(0xFFFFULL, findLastSet(Z16));
  84. EXPECT_EQ(0xFFFFFFFFULL, findLastSet(Z32));
  85. EXPECT_EQ(0xFFFFFFFFFFFFFFFFULL, findLastSet(Z64));
  86. uint8_t NZ8 = 42;
  87. uint16_t NZ16 = 42;
  88. uint32_t NZ32 = 42;
  89. uint64_t NZ64 = 42;
  90. EXPECT_EQ(5u, findLastSet(NZ8));
  91. EXPECT_EQ(5u, findLastSet(NZ16));
  92. EXPECT_EQ(5u, findLastSet(NZ32));
  93. EXPECT_EQ(5u, findLastSet(NZ64));
  94. }
  95. TEST(MathExtras, reverseBits) {
  96. uint8_t NZ8 = 42;
  97. uint16_t NZ16 = 42;
  98. uint32_t NZ32 = 42;
  99. uint64_t NZ64 = 42;
  100. EXPECT_EQ(0x54ULL, reverseBits(NZ8));
  101. EXPECT_EQ(0x5400ULL, reverseBits(NZ16));
  102. EXPECT_EQ(0x54000000ULL, reverseBits(NZ32));
  103. EXPECT_EQ(0x5400000000000000ULL, reverseBits(NZ64));
  104. }
  105. TEST(MathExtras, isPowerOf2_32) {
  106. EXPECT_TRUE(isPowerOf2_32(1 << 6));
  107. EXPECT_TRUE(isPowerOf2_32(1 << 12));
  108. EXPECT_FALSE(isPowerOf2_32((1 << 19) + 3));
  109. EXPECT_FALSE(isPowerOf2_32(0xABCDEF0));
  110. }
  111. TEST(MathExtras, isPowerOf2_64) {
  112. EXPECT_TRUE(isPowerOf2_64(1LL << 46));
  113. EXPECT_TRUE(isPowerOf2_64(1LL << 12));
  114. EXPECT_FALSE(isPowerOf2_64((1LL << 53) + 3));
  115. EXPECT_FALSE(isPowerOf2_64(0xABCDEF0ABCDEF0LL));
  116. }
  117. TEST(MathExtras, ByteSwap_32) {
  118. EXPECT_EQ(0x44332211u, ByteSwap_32(0x11223344));
  119. EXPECT_EQ(0xDDCCBBAAu, ByteSwap_32(0xAABBCCDD));
  120. }
  121. TEST(MathExtras, ByteSwap_64) {
  122. EXPECT_EQ(0x8877665544332211ULL, ByteSwap_64(0x1122334455667788LL));
  123. EXPECT_EQ(0x1100FFEEDDCCBBAAULL, ByteSwap_64(0xAABBCCDDEEFF0011LL));
  124. }
  125. TEST(MathExtras, countLeadingOnes) {
  126. for (int i = 30; i >= 0; --i) {
  127. // Start with all ones and unset some bit.
  128. EXPECT_EQ(31u - i, countLeadingOnes(0xFFFFFFFF ^ (1 << i)));
  129. }
  130. for (int i = 62; i >= 0; --i) {
  131. // Start with all ones and unset some bit.
  132. EXPECT_EQ(63u - i, countLeadingOnes(0xFFFFFFFFFFFFFFFFULL ^ (1LL << i)));
  133. }
  134. for (int i = 30; i >= 0; --i) {
  135. // Start with all ones and unset some bit.
  136. EXPECT_EQ(31u - i, countLeadingOnes(0xFFFFFFFF ^ (1 << i)));
  137. }
  138. }
  139. TEST(MathExtras, FloatBits) {
  140. static const float kValue = 5632.34f;
  141. EXPECT_FLOAT_EQ(kValue, BitsToFloat(FloatToBits(kValue)));
  142. }
  143. TEST(MathExtras, DoubleBits) {
  144. static const double kValue = 87987234.983498;
  145. EXPECT_FLOAT_EQ(kValue, BitsToDouble(DoubleToBits(kValue)));
  146. }
  147. TEST(MathExtras, MinAlign) {
  148. EXPECT_EQ(1u, MinAlign(2, 3));
  149. EXPECT_EQ(2u, MinAlign(2, 4));
  150. EXPECT_EQ(1u, MinAlign(17, 64));
  151. EXPECT_EQ(256u, MinAlign(256, 512));
  152. }
  153. TEST(MathExtras, NextPowerOf2) {
  154. EXPECT_EQ(4u, NextPowerOf2(3));
  155. EXPECT_EQ(16u, NextPowerOf2(15));
  156. EXPECT_EQ(256u, NextPowerOf2(128));
  157. }
  158. TEST(MathExtras, RoundUpToAlignment) {
  159. EXPECT_EQ(8u, RoundUpToAlignment(5, 8));
  160. EXPECT_EQ(24u, RoundUpToAlignment(17, 8));
  161. EXPECT_EQ(0u, RoundUpToAlignment(~0LL, 8));
  162. EXPECT_EQ(7u, RoundUpToAlignment(5, 8, 7));
  163. EXPECT_EQ(17u, RoundUpToAlignment(17, 8, 1));
  164. EXPECT_EQ(3u, RoundUpToAlignment(~0LL, 8, 3));
  165. EXPECT_EQ(552u, RoundUpToAlignment(321, 255, 42));
  166. }
  167. template<typename T>
  168. void SaturatingAddTestHelper()
  169. {
  170. const T Max = std::numeric_limits<T>::max();
  171. EXPECT_EQ(T(3), SaturatingAdd(T(1), T(2)));
  172. EXPECT_EQ(Max, SaturatingAdd(Max, T(1)));
  173. EXPECT_EQ(Max, SaturatingAdd(T(1), Max));
  174. EXPECT_EQ(Max, SaturatingAdd(Max, Max));
  175. }
  176. TEST(MathExtras, SaturatingAdd) {
  177. SaturatingAddTestHelper<uint8_t>();
  178. SaturatingAddTestHelper<uint16_t>();
  179. SaturatingAddTestHelper<uint32_t>();
  180. SaturatingAddTestHelper<uint64_t>();
  181. }
  182. template<typename T>
  183. void SaturatingMultiplyTestHelper()
  184. {
  185. const T Max = std::numeric_limits<T>::max();
  186. // Test basic multiplication.
  187. EXPECT_EQ(T(6), SaturatingMultiply(T(2), T(3)));
  188. EXPECT_EQ(T(6), SaturatingMultiply(T(3), T(2)));
  189. // Test multiplication by zero.
  190. EXPECT_EQ(T(0), SaturatingMultiply(T(0), T(0)));
  191. EXPECT_EQ(T(0), SaturatingMultiply(T(1), T(0)));
  192. EXPECT_EQ(T(0), SaturatingMultiply(T(0), T(1)));
  193. EXPECT_EQ(T(0), SaturatingMultiply(Max, T(0)));
  194. EXPECT_EQ(T(0), SaturatingMultiply(T(0), Max));
  195. // Test multiplication by maximum value.
  196. EXPECT_EQ(Max, SaturatingMultiply(Max, T(2)));
  197. EXPECT_EQ(Max, SaturatingMultiply(T(2),Max));
  198. EXPECT_EQ(Max, SaturatingMultiply(Max, Max));
  199. // Test interesting boundary conditions for algorithm -
  200. // ((1 << A) - 1) * ((1 << B) + K) for K in [-1, 0, 1]
  201. // and A + B == std::numeric_limits<T>::digits.
  202. // We expect overflow iff A > B and K = 1.
  203. const int Digits = std::numeric_limits<T>::digits;
  204. for (int A = 1, B = Digits - 1; B >= 1; ++A, --B) {
  205. for (int K = -1; K <= 1; ++K) {
  206. T X = (T(1) << A) - T(1);
  207. T Y = (T(1) << B) + K;
  208. bool OverflowExpected = A > B && K == 1;
  209. if(OverflowExpected) {
  210. EXPECT_EQ(Max, SaturatingMultiply(X, Y));
  211. } else {
  212. EXPECT_EQ(X * Y, SaturatingMultiply(X, Y));
  213. }
  214. }
  215. }
  216. }
  217. TEST(MathExtras, SaturatingMultiply) {
  218. SaturatingMultiplyTestHelper<uint8_t>();
  219. SaturatingMultiplyTestHelper<uint16_t>();
  220. SaturatingMultiplyTestHelper<uint32_t>();
  221. SaturatingMultiplyTestHelper<uint64_t>();
  222. }
  223. }