math_test.cpp 11 KB

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  1. /*
  2. * Copyright 2010-2022 Branimir Karadzic. All rights reserved.
  3. * License: https://github.com/bkaradzic/bx/blob/master/LICENSE
  4. */
  5. #include "test.h"
  6. #include <bx/math.h>
  7. #include <bx/file.h>
  8. #include <math.h>
  9. #include <stdint.h> // intXX_t
  10. #include <limits.h> // UCHAR_*
  11. #if !BX_COMPILER_MSVC || BX_COMPILER_MSVC >= 1800
  12. TEST_CASE("isFinite, isInfinite, isNan", "")
  13. {
  14. for (uint64_t ii = 0; ii < UINT32_MAX; ii += rand()%(1<<13)+1)
  15. {
  16. union { uint32_t ui; float f; } u = { uint32_t(ii) };
  17. REQUIRE(std::isnan(u.f) == bx::isNan(u.f) );
  18. REQUIRE(std::isfinite(u.f) == bx::isFinite(u.f) );
  19. REQUIRE(std::isinf(u.f) == bx::isInfinite(u.f) );
  20. }
  21. }
  22. #endif // !BX_COMPILER_MSVC || BX_COMPILER_MSVC >= 1800
  23. bool log2_test(float _a)
  24. {
  25. return bx::log2(_a) == bx::log(_a) * (1.0f / bx::log(2.0f) );
  26. }
  27. TEST_CASE("log2", "")
  28. {
  29. log2_test(0.0f);
  30. log2_test(256.0f);
  31. REQUIRE(0.0f == bx::log2(1.0f) );
  32. REQUIRE(0 == bx::log2(1) );
  33. REQUIRE(1.0f == bx::log2(2.0f) );
  34. REQUIRE(1 == bx::log2(2) );
  35. REQUIRE(2.0f == bx::log2(4.0f) );
  36. REQUIRE(2 == bx::log2(4) );
  37. REQUIRE(3.0f == bx::log2(8.0f) );
  38. REQUIRE(3 == bx::log2(8) );
  39. REQUIRE(4.0f == bx::log2(16.0f) );
  40. REQUIRE(4 == bx::log2(16) );
  41. REQUIRE(5.0f == bx::log2(32.0f) );
  42. REQUIRE(5 == bx::log2(32) );
  43. REQUIRE(6.0f == bx::log2(64.0f) );
  44. REQUIRE(6 == bx::log2(64) );
  45. REQUIRE(7.0f == bx::log2(128.0f) );
  46. REQUIRE(7 == bx::log2(128) );
  47. REQUIRE(8.0f == bx::log2(256.0f) );
  48. REQUIRE(8 == bx::log2(256) );
  49. }
  50. TEST_CASE("libm", "")
  51. {
  52. bx::WriterI* writer = bx::getNullOut();
  53. bx::Error err;
  54. REQUIRE(1389.0f == bx::abs(-1389.0f) );
  55. REQUIRE(1389.0f == bx::abs( 1389.0f) );
  56. REQUIRE( 0.0f == bx::abs(-0.0f) );
  57. REQUIRE( 0.0f == bx::abs( 0.0f) );
  58. REQUIRE(389.0f == bx::mod(1389.0f, 1000.0f) );
  59. REQUIRE( 13.0f == bx::floor( 13.89f) );
  60. REQUIRE(-14.0f == bx::floor(-13.89f) );
  61. REQUIRE( 14.0f == bx::ceil( 13.89f) );
  62. REQUIRE(-13.0f == bx::ceil( -13.89f) );
  63. REQUIRE( 13.0f == bx::trunc( 13.89f) );
  64. REQUIRE(-13.0f == bx::trunc(-13.89f) );
  65. REQUIRE(bx::isEqual( 0.89f, bx::fract( 13.89f), 0.000001f) );
  66. REQUIRE(bx::isEqual(-0.89f, bx::fract(-13.89f), 0.000001f) );
  67. for (int32_t yy = -10; yy < 10; ++yy)
  68. {
  69. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  70. {
  71. bx::write(writer, &err, "ldexp(%f, %d) == %f (expected: %f)\n", xx, yy, bx::ldexp(xx, yy), ::ldexpf(xx, yy) );
  72. REQUIRE(bx::isEqual(bx::ldexp(xx, yy), ::ldexpf(xx, yy), 0.00001f) );
  73. }
  74. }
  75. for (float xx = -80.0f; xx < 80.0f; xx += 0.1f)
  76. {
  77. bx::write(writer, &err, "exp(%f) == %f (expected: %f)\n", xx, bx::exp(xx), ::expf(xx) );
  78. REQUIRE(err.isOk() );
  79. REQUIRE(bx::isEqual(bx::exp(xx), ::expf(xx), 0.00001f) );
  80. }
  81. for (float xx = 0.0f; xx < 100.0f; xx += 0.1f)
  82. {
  83. bx::write(writer, &err, "rsqrt(%f) == %f (expected: %f)\n", xx, bx::rsqrt(xx), 1.0f/::sqrtf(xx) );
  84. REQUIRE(err.isOk() );
  85. REQUIRE(bx::isEqual(bx::rsqrt(xx), 1.0f/::sqrtf(xx), 0.00001f) );
  86. }
  87. for (float xx = 0.0f; xx < 1000000.0f; xx += 1000.f)
  88. {
  89. bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx) );
  90. REQUIRE(err.isOk() );
  91. REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f) );
  92. }
  93. for (float xx = 0.0f; xx < 100.0f; xx += 0.1f)
  94. {
  95. bx::write(writer, &err, "sqrt(%f) == %f (expected: %f)\n", xx, bx::sqrt(xx), ::sqrtf(xx) );
  96. REQUIRE(err.isOk() );
  97. REQUIRE(bx::isEqual(bx::sqrt(xx), ::sqrtf(xx), 0.00001f) );
  98. }
  99. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  100. {
  101. bx::write(writer, &err, "pow(1.389f, %f) == %f (expected: %f)\n", xx, bx::pow(1.389f, xx), ::powf(1.389f, xx) );
  102. REQUIRE(err.isOk() );
  103. REQUIRE(bx::isEqual(bx::pow(1.389f, xx), ::powf(1.389f, xx), 0.00001f) );
  104. }
  105. for (float xx = -1.0f; xx < 1.0f; xx += 0.001f)
  106. {
  107. bx::write(writer, &err, "asin(%f) == %f (expected: %f)\n", xx, bx::asin(xx), ::asinf(xx) );
  108. REQUIRE(err.isOk() );
  109. REQUIRE(bx::isEqual(bx::asin(xx), ::asinf(xx), 0.0001f) );
  110. }
  111. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  112. {
  113. bx::write(writer, &err, "sin(%f) == %f (expected: %f)\n", xx, bx::sin(xx), ::sinf(xx) );
  114. REQUIRE(err.isOk() );
  115. REQUIRE(bx::isEqual(bx::sin(xx), ::sinf(xx), 0.00001f) );
  116. }
  117. for (float xx = -bx::kPi2; xx < bx::kPi2; xx += 0.0001f)
  118. {
  119. bx::write(writer, &err, "sin(%f) == %f (expected: %f)\n", xx, bx::sin(xx), ::sinf(xx) );
  120. REQUIRE(err.isOk() );
  121. REQUIRE(bx::isEqual(bx::sin(xx), ::sinf(xx), 0.00001f) );
  122. }
  123. for (float xx = -1.0f; xx < 1.0f; xx += 0.1f)
  124. {
  125. bx::write(writer, &err, "sinh(%f) == %f (expected: %f)\n", xx, bx::sinh(xx), ::sinhf(xx) );
  126. REQUIRE(err.isOk() );
  127. REQUIRE(bx::isEqual(bx::sinh(xx), ::sinhf(xx), 0.00001f) );
  128. }
  129. for (float xx = -1.0f; xx < 1.0f; xx += 0.001f)
  130. {
  131. bx::write(writer, &err, "acos(%f) == %f (expected: %f\n)", xx, bx::acos(xx), ::acosf(xx) );
  132. REQUIRE(err.isOk() );
  133. REQUIRE(bx::isEqual(bx::acos(xx), ::acosf(xx), 0.0001f) );
  134. }
  135. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  136. {
  137. bx::write(writer, &err, "cos(%f) == %f (expected: %f)\n", xx, bx::cos(xx), ::cosf(xx) );
  138. REQUIRE(err.isOk() );
  139. REQUIRE(bx::isEqual(bx::cos(xx), ::cosf(xx), 0.00001f) );
  140. }
  141. for (float xx = -bx::kPi2; xx < bx::kPi2; xx += 0.0001f)
  142. {
  143. bx::write(writer, &err, "cos(%f) == %f (expected: %f)\n", xx, bx::cos(xx), ::cosf(xx) );
  144. REQUIRE(err.isOk() );
  145. REQUIRE(bx::isEqual(bx::cos(xx), ::cosf(xx), 0.00001f) );
  146. }
  147. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  148. {
  149. bx::write(writer, &err, "tan(%f) == %f (expected: %f)\n", xx, bx::tan(xx), ::tanf(xx) );
  150. REQUIRE(err.isOk() );
  151. REQUIRE(bx::isEqual(bx::tan(xx), ::tanf(xx), 0.001f) );
  152. }
  153. for (float xx = -1.0f; xx < 1.0f; xx += 0.1f)
  154. {
  155. bx::write(writer, &err, "tanh(%f) == %f (expected: %f\n", xx, bx::tanh(xx), ::tanhf(xx) );
  156. REQUIRE(err.isOk() );
  157. REQUIRE(bx::isEqual(bx::tanh(xx), ::tanhf(xx), 0.00001f) );
  158. }
  159. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  160. {
  161. bx::write(writer, &err, "atan(%f) == %f (expected: %f)\n", xx, bx::atan(xx), ::atanf(xx) );
  162. REQUIRE(err.isOk() );
  163. REQUIRE(bx::isEqual(bx::atan(xx), ::atanf(xx), 0.00001f) );
  164. }
  165. }
  166. TEST_CASE("atan2", "")
  167. {
  168. bx::WriterI* writer = bx::getNullOut();
  169. bx::Error err;
  170. REQUIRE(bx::isEqual(bx::atan2(0.0f, 0.0f), ::atan2f(0.0f, 0.0f), 0.00001f) );
  171. REQUIRE(bx::isEqual(bx::atan2(0.0f, 1.0f), ::atan2f(0.0f, 1.0f), 0.00001f) );
  172. REQUIRE(bx::isEqual(bx::atan2(0.0f, -1.0f), ::atan2f(0.0f, -1.0f), 0.00001f) );
  173. for (float yy = -100.0f; yy < 100.0f; yy += 0.1f)
  174. {
  175. for (float xx = -100.0f; xx < 100.0f; xx += 0.1f)
  176. {
  177. bx::write(writer, &err, "atan2(%f, %f) == %f (expected: %f)\n", yy, xx, bx::atan2(yy, xx), ::atan2f(yy, xx) );
  178. REQUIRE(err.isOk() );
  179. REQUIRE(bx::isEqual(bx::atan2(yy, xx), ::atan2f(yy, xx), 0.00001f) );
  180. }
  181. }
  182. }
  183. TEST_CASE("sign", "")
  184. {
  185. REQUIRE(-1 == bx::sign(-0.1389f) );
  186. REQUIRE( 0 == bx::sign( 0.0000f) );
  187. REQUIRE( 1 == bx::sign( 0.1389f) );
  188. }
  189. TEST_CASE("ToBits", "")
  190. {
  191. REQUIRE(UINT32_C(0x12345678) == bx::floatToBits( bx::bitsToFloat( UINT32_C(0x12345678) ) ) );
  192. REQUIRE(UINT64_C(0x123456789abcdef0) == bx::doubleToBits(bx::bitsToDouble(UINT32_C(0x123456789abcdef0) ) ) );
  193. }
  194. TEST_CASE("lerp", "")
  195. {
  196. REQUIRE(1389.0f == bx::lerp(1389.0f, 1453.0f, 0.0f) );
  197. REQUIRE(1453.0f == bx::lerp(1389.0f, 1453.0f, 1.0f) );
  198. REQUIRE(0.5f == bx::lerp(0.0f, 1.0f, 0.5f) );
  199. }
  200. void mtxCheck(const float* _a, const float* _b)
  201. {
  202. if (!bx::isEqual(_a, _b, 16, 0.01f) )
  203. {
  204. DBG("\n"
  205. "A:\n"
  206. "%10.4f %10.4f %10.4f %10.4f\n"
  207. "%10.4f %10.4f %10.4f %10.4f\n"
  208. "%10.4f %10.4f %10.4f %10.4f\n"
  209. "%10.4f %10.4f %10.4f %10.4f\n"
  210. "B:\n"
  211. "%10.4f %10.4f %10.4f %10.4f\n"
  212. "%10.4f %10.4f %10.4f %10.4f\n"
  213. "%10.4f %10.4f %10.4f %10.4f\n"
  214. "%10.4f %10.4f %10.4f %10.4f\n"
  215. , _a[ 0], _a[ 1], _a[ 2], _a[ 3]
  216. , _a[ 4], _a[ 5], _a[ 6], _a[ 7]
  217. , _a[ 8], _a[ 9], _a[10], _a[11]
  218. , _a[12], _a[13], _a[14], _a[15]
  219. , _b[ 0], _b[ 1], _b[ 2], _b[ 3]
  220. , _b[ 4], _b[ 5], _b[ 6], _b[ 7]
  221. , _b[ 8], _b[ 9], _b[10], _b[11]
  222. , _b[12], _b[13], _b[14], _b[15]
  223. );
  224. REQUIRE(false);
  225. }
  226. }
  227. TEST_CASE("quaternion", "")
  228. {
  229. float mtxQ[16];
  230. float mtx[16];
  231. bx::Quaternion quat = bx::init::Identity;
  232. bx::Quaternion q2 = bx::init::None;
  233. bx::Vec3 axis = bx::init::None;
  234. bx::Vec3 euler = bx::init::None;
  235. float angle;
  236. bx::mtxFromQuaternion(mtxQ, quat);
  237. bx::mtxIdentity(mtx);
  238. mtxCheck(mtxQ, mtx);
  239. float ax = bx::kPi/27.0f;
  240. float ay = bx::kPi/13.0f;
  241. float az = bx::kPi/7.0f;
  242. { // x
  243. quat = bx::rotateX(ax);
  244. bx::mtxFromQuaternion(mtxQ, quat);
  245. bx::mtxRotateX(mtx, ax);
  246. mtxCheck(mtxQ, mtx);
  247. bx::toAxisAngle(axis, angle, quat);
  248. REQUIRE(bx::isEqual(axis, bx::Vec3{1.0f, 0.0f, 0.0f}, 0.01f) );
  249. REQUIRE(bx::isEqual(angle, ax, 0.01f) );
  250. euler = bx::toEuler(quat);
  251. REQUIRE(bx::isEqual(euler.x, ax, 0.001f) );
  252. q2 = bx::fromEuler(euler);
  253. REQUIRE(bx::isEqual(quat, q2, 0.001f) );
  254. }
  255. { // y
  256. quat = bx::rotateY(ay);
  257. bx::mtxFromQuaternion(mtxQ, quat);
  258. bx::mtxRotateY(mtx, ay);
  259. mtxCheck(mtxQ, mtx);
  260. bx::toAxisAngle(axis, angle, quat);
  261. REQUIRE(bx::isEqual(axis, bx::Vec3{0.0f, 1.0f, 0.0f}, 0.01f) );
  262. REQUIRE(bx::isEqual(angle, ay, 0.01f) );
  263. euler = bx::toEuler(quat);
  264. REQUIRE(bx::isEqual(euler.y, ay, 0.001f) );
  265. q2 = bx::fromEuler(euler);
  266. REQUIRE(bx::isEqual(quat, q2, 0.001f) );
  267. }
  268. { // z
  269. quat = bx::rotateZ(az);
  270. bx::mtxFromQuaternion(mtxQ, quat);
  271. bx::mtxRotateZ(mtx, az);
  272. mtxCheck(mtxQ, mtx);
  273. bx::toAxisAngle(axis, angle, quat);
  274. REQUIRE(bx::isEqual(axis, bx::Vec3{0.0f, 0.0f, 1.0f}, 0.01f) );
  275. REQUIRE(bx::isEqual(angle, az, 0.01f) );
  276. euler = bx::toEuler(quat);
  277. REQUIRE(bx::isEqual(euler.z, az, 0.001f) );
  278. q2 = bx::fromEuler(euler);
  279. REQUIRE(bx::isEqual(quat, q2, 0.001f) );
  280. }
  281. }
  282. TEST_CASE("limits", "")
  283. {
  284. STATIC_REQUIRE(bx::Limits<int8_t>::min == INT8_MIN);
  285. STATIC_REQUIRE(bx::Limits<int8_t>::max == INT8_MAX);
  286. STATIC_REQUIRE(bx::Limits<signed char>::min == CHAR_MIN);
  287. STATIC_REQUIRE(bx::Limits<signed char>::max == CHAR_MAX);
  288. STATIC_REQUIRE(bx::Limits<unsigned char>::min == 0);
  289. STATIC_REQUIRE(bx::Limits<unsigned char>::max == UCHAR_MAX);
  290. STATIC_REQUIRE(bx::Limits<int16_t>::min == INT16_MIN);
  291. STATIC_REQUIRE(bx::Limits<int16_t>::max == INT16_MAX);
  292. STATIC_REQUIRE(bx::Limits<uint16_t>::min == 0);
  293. STATIC_REQUIRE(bx::Limits<uint16_t>::max == UINT16_MAX);
  294. STATIC_REQUIRE(bx::Limits<int32_t>::min == INT32_MIN);
  295. STATIC_REQUIRE(bx::Limits<int32_t>::max == INT32_MAX);
  296. STATIC_REQUIRE(bx::Limits<uint32_t>::min == 0);
  297. STATIC_REQUIRE(bx::Limits<uint32_t>::max == UINT32_MAX);
  298. STATIC_REQUIRE(bx::Limits<int64_t>::min == INT64_MIN);
  299. STATIC_REQUIRE(bx::Limits<int64_t>::max == INT64_MAX);
  300. STATIC_REQUIRE(bx::Limits<uint64_t>::min == 0);
  301. STATIC_REQUIRE(bx::Limits<uint64_t>::max == UINT64_MAX);
  302. STATIC_REQUIRE(bx::Limits<float>::min == std::numeric_limits<float>::lowest() );
  303. STATIC_REQUIRE(bx::Limits<float>::max == std::numeric_limits<float>::max() );
  304. STATIC_REQUIRE(bx::Limits<double>::min == std::numeric_limits<double>::lowest() );
  305. STATIC_REQUIRE(bx::Limits<double>::max == std::numeric_limits<double>::max() );
  306. }