CpuTestSimdCvt.cs 26 KB

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  1. #define SimdCvt
  2. using NUnit.Framework;
  3. using System;
  4. using System.Collections.Generic;
  5. using System.Runtime.Intrinsics;
  6. namespace Ryujinx.Tests.Cpu
  7. {
  8. [Category("SimdCvt")]
  9. public sealed class CpuTestSimdCvt : CpuTest
  10. {
  11. #if SimdCvt
  12. #region "ValueSource (Types)"
  13. private static IEnumerable<ulong> _1S_F_WX_()
  14. {
  15. // int
  16. yield return 0x00000000CF000001ul; // -2.1474839E9f (-2147483904)
  17. yield return 0x00000000CF000000ul; // -2.14748365E9f (-2147483648)
  18. yield return 0x00000000CEFFFFFFul; // -2.14748352E9f (-2147483520)
  19. yield return 0x000000004F000001ul; // 2.1474839E9f (2147483904)
  20. yield return 0x000000004F000000ul; // 2.14748365E9f (2147483648)
  21. yield return 0x000000004EFFFFFFul; // 2.14748352E9f (2147483520)
  22. // long
  23. yield return 0x00000000DF000001ul; // -9.223373E18f (-9223373136366403584)
  24. yield return 0x00000000DF000000ul; // -9.223372E18f (-9223372036854775808)
  25. yield return 0x00000000DEFFFFFFul; // -9.2233715E18f (-9223371487098961920)
  26. yield return 0x000000005F000001ul; // 9.223373E18f (9223373136366403584)
  27. yield return 0x000000005F000000ul; // 9.223372E18f (9223372036854775808)
  28. yield return 0x000000005EFFFFFFul; // 9.2233715E18f (9223371487098961920)
  29. // uint
  30. yield return 0x000000004F800001ul; // 4.2949678E9f (4294967808)
  31. yield return 0x000000004F800000ul; // 4.2949673E9f (4294967296)
  32. yield return 0x000000004F7FFFFFul; // 4.29496704E9f (4294967040)
  33. // ulong
  34. yield return 0x000000005F800001ul; // 1.8446746E19f (18446746272732807168)
  35. yield return 0x000000005F800000ul; // 1.8446744E19f (18446744073709551616)
  36. yield return 0x000000005F7FFFFFul; // 1.8446743E19f (18446742974197923840)
  37. yield return 0x00000000FF7FFFFFul; // -Max Normal (float.MinValue)
  38. yield return 0x0000000080800000ul; // -Min Normal
  39. yield return 0x00000000807FFFFFul; // -Max Subnormal
  40. yield return 0x0000000080000001ul; // -Min Subnormal (-float.Epsilon)
  41. yield return 0x000000007F7FFFFFul; // +Max Normal (float.MaxValue)
  42. yield return 0x0000000000800000ul; // +Min Normal
  43. yield return 0x00000000007FFFFFul; // +Max Subnormal
  44. yield return 0x0000000000000001ul; // +Min Subnormal (float.Epsilon)
  45. if (!NoZeros)
  46. {
  47. yield return 0x0000000080000000ul; // -Zero
  48. yield return 0x0000000000000000ul; // +Zero
  49. }
  50. if (!NoInfs)
  51. {
  52. yield return 0x00000000FF800000ul; // -Infinity
  53. yield return 0x000000007F800000ul; // +Infinity
  54. }
  55. if (!NoNaNs)
  56. {
  57. yield return 0x00000000FFC00000ul; // -QNaN (all zeros payload) (float.NaN)
  58. yield return 0x00000000FFBFFFFFul; // -SNaN (all ones payload)
  59. yield return 0x000000007FC00000ul; // +QNaN (all zeros payload) (-float.NaN) (DefaultNaN)
  60. yield return 0x000000007FBFFFFFul; // +SNaN (all ones payload)
  61. }
  62. for (int cnt = 1; cnt <= RndCnt; cnt++)
  63. {
  64. ulong grbg = TestContext.CurrentContext.Random.NextUInt();
  65. ulong rnd1 = (uint)BitConverter.SingleToInt32Bits(
  66. (float)((int)TestContext.CurrentContext.Random.NextUInt()));
  67. ulong rnd2 = (uint)BitConverter.SingleToInt32Bits(
  68. (float)((long)TestContext.CurrentContext.Random.NextULong()));
  69. ulong rnd3 = (uint)BitConverter.SingleToInt32Bits(
  70. (float)((uint)TestContext.CurrentContext.Random.NextUInt()));
  71. ulong rnd4 = (uint)BitConverter.SingleToInt32Bits(
  72. (float)((ulong)TestContext.CurrentContext.Random.NextULong()));
  73. ulong rnd5 = GenNormalS();
  74. ulong rnd6 = GenSubnormalS();
  75. yield return (grbg << 32) | rnd1;
  76. yield return (grbg << 32) | rnd2;
  77. yield return (grbg << 32) | rnd3;
  78. yield return (grbg << 32) | rnd4;
  79. yield return (grbg << 32) | rnd5;
  80. yield return (grbg << 32) | rnd6;
  81. }
  82. }
  83. private static IEnumerable<ulong> _1D_F_WX_()
  84. {
  85. // int
  86. yield return 0xC1E0000000200000ul; // -2147483649.0000000d (-2147483649)
  87. yield return 0xC1E0000000000000ul; // -2147483648.0000000d (-2147483648)
  88. yield return 0xC1DFFFFFFFC00000ul; // -2147483647.0000000d (-2147483647)
  89. yield return 0x41E0000000200000ul; // 2147483649.0000000d (2147483649)
  90. yield return 0x41E0000000000000ul; // 2147483648.0000000d (2147483648)
  91. yield return 0x41DFFFFFFFC00000ul; // 2147483647.0000000d (2147483647)
  92. // long
  93. yield return 0xC3E0000000000001ul; // -9.2233720368547780E18d (-9223372036854778000)
  94. yield return 0xC3E0000000000000ul; // -9.2233720368547760E18d (-9223372036854776000)
  95. yield return 0xC3DFFFFFFFFFFFFFul; // -9.2233720368547750E18d (-9223372036854775000)
  96. yield return 0x43E0000000000001ul; // 9.2233720368547780E18d (9223372036854778000)
  97. yield return 0x43E0000000000000ul; // 9.2233720368547760E18d (9223372036854776000)
  98. yield return 0x43DFFFFFFFFFFFFFul; // 9.2233720368547750E18d (9223372036854775000)
  99. // uint
  100. yield return 0x41F0000000100000ul; // 4294967297.0000000d (4294967297)
  101. yield return 0x41F0000000000000ul; // 4294967296.0000000d (4294967296)
  102. yield return 0x41EFFFFFFFE00000ul; // 4294967295.0000000d (4294967295)
  103. // ulong
  104. yield return 0x43F0000000000001ul; // 1.8446744073709556e19d (18446744073709556000)
  105. yield return 0x43F0000000000000ul; // 1.8446744073709552E19d (18446744073709552000)
  106. yield return 0x43EFFFFFFFFFFFFFul; // 1.8446744073709550e19d (18446744073709550000)
  107. yield return 0xFFEFFFFFFFFFFFFFul; // -Max Normal (double.MinValue)
  108. yield return 0x8010000000000000ul; // -Min Normal
  109. yield return 0x800FFFFFFFFFFFFFul; // -Max Subnormal
  110. yield return 0x8000000000000001ul; // -Min Subnormal (-double.Epsilon)
  111. yield return 0x7FEFFFFFFFFFFFFFul; // +Max Normal (double.MaxValue)
  112. yield return 0x0010000000000000ul; // +Min Normal
  113. yield return 0x000FFFFFFFFFFFFFul; // +Max Subnormal
  114. yield return 0x0000000000000001ul; // +Min Subnormal (double.Epsilon)
  115. if (!NoZeros)
  116. {
  117. yield return 0x8000000000000000ul; // -Zero
  118. yield return 0x0000000000000000ul; // +Zero
  119. }
  120. if (!NoInfs)
  121. {
  122. yield return 0xFFF0000000000000ul; // -Infinity
  123. yield return 0x7FF0000000000000ul; // +Infinity
  124. }
  125. if (!NoNaNs)
  126. {
  127. yield return 0xFFF8000000000000ul; // -QNaN (all zeros payload) (double.NaN)
  128. yield return 0xFFF7FFFFFFFFFFFFul; // -SNaN (all ones payload)
  129. yield return 0x7FF8000000000000ul; // +QNaN (all zeros payload) (-double.NaN) (DefaultNaN)
  130. yield return 0x7FF7FFFFFFFFFFFFul; // +SNaN (all ones payload)
  131. }
  132. for (int cnt = 1; cnt <= RndCnt; cnt++)
  133. {
  134. ulong rnd1 = (ulong)BitConverter.DoubleToInt64Bits(
  135. (double)((int)TestContext.CurrentContext.Random.NextUInt()));
  136. ulong rnd2 = (ulong)BitConverter.DoubleToInt64Bits(
  137. (double)((long)TestContext.CurrentContext.Random.NextULong()));
  138. ulong rnd3 = (ulong)BitConverter.DoubleToInt64Bits(
  139. (double)((uint)TestContext.CurrentContext.Random.NextUInt()));
  140. ulong rnd4 = (ulong)BitConverter.DoubleToInt64Bits(
  141. (double)((ulong)TestContext.CurrentContext.Random.NextULong()));
  142. ulong rnd5 = GenNormalD();
  143. ulong rnd6 = GenSubnormalD();
  144. yield return rnd1;
  145. yield return rnd2;
  146. yield return rnd3;
  147. yield return rnd4;
  148. yield return rnd5;
  149. yield return rnd6;
  150. }
  151. }
  152. private static uint[] _W_()
  153. {
  154. return new uint[] { 0x00000000u, 0x7FFFFFFFu,
  155. 0x80000000u, 0xFFFFFFFFu };
  156. }
  157. private static ulong[] _X_()
  158. {
  159. return new ulong[] { 0x0000000000000000ul, 0x7FFFFFFFFFFFFFFFul,
  160. 0x8000000000000000ul, 0xFFFFFFFFFFFFFFFFul };
  161. }
  162. #endregion
  163. #region "ValueSource (Opcodes)"
  164. private static uint[] _F_Cvt_AMPZ_SU_Gp_SW_()
  165. {
  166. return new uint[]
  167. {
  168. 0x1E240000u, // FCVTAS W0, S0
  169. 0x1E250000u, // FCVTAU W0, S0
  170. 0x1E300000u, // FCVTMS W0, S0
  171. 0x1E310000u, // FCVTMU W0, S0
  172. 0x1E280000u, // FCVTPS W0, S0
  173. 0x1E290000u, // FCVTPU W0, S0
  174. 0x1E380000u, // FCVTZS W0, S0
  175. 0x1E390000u // FCVTZU W0, S0
  176. };
  177. }
  178. private static uint[] _F_Cvt_AMPZ_SU_Gp_SX_()
  179. {
  180. return new uint[]
  181. {
  182. 0x9E240000u, // FCVTAS X0, S0
  183. 0x9E250000u, // FCVTAU X0, S0
  184. 0x9E300000u, // FCVTMS X0, S0
  185. 0x9E310000u, // FCVTMU X0, S0
  186. 0x9E280000u, // FCVTPS X0, S0
  187. 0x9E290000u, // FCVTPU X0, S0
  188. 0x9E380000u, // FCVTZS X0, S0
  189. 0x9E390000u // FCVTZU X0, S0
  190. };
  191. }
  192. private static uint[] _F_Cvt_AMPZ_SU_Gp_DW_()
  193. {
  194. return new uint[]
  195. {
  196. 0x1E640000u, // FCVTAS W0, D0
  197. 0x1E650000u, // FCVTAU W0, D0
  198. 0x1E700000u, // FCVTMS W0, D0
  199. 0x1E710000u, // FCVTMU W0, D0
  200. 0x1E680000u, // FCVTPS W0, D0
  201. 0x1E690000u, // FCVTPU W0, D0
  202. 0x1E780000u, // FCVTZS W0, D0
  203. 0x1E790000u // FCVTZU W0, D0
  204. };
  205. }
  206. private static uint[] _F_Cvt_AMPZ_SU_Gp_DX_()
  207. {
  208. return new uint[]
  209. {
  210. 0x9E640000u, // FCVTAS X0, D0
  211. 0x9E650000u, // FCVTAU X0, D0
  212. 0x9E700000u, // FCVTMS X0, D0
  213. 0x9E710000u, // FCVTMU X0, D0
  214. 0x9E680000u, // FCVTPS X0, D0
  215. 0x9E690000u, // FCVTPU X0, D0
  216. 0x9E780000u, // FCVTZS X0, D0
  217. 0x9E790000u // FCVTZU X0, D0
  218. };
  219. }
  220. private static uint[] _F_Cvt_Z_SU_Gp_Fixed_SW_()
  221. {
  222. return new uint[]
  223. {
  224. 0x1E188000u, // FCVTZS W0, S0, #32
  225. 0x1E198000u // FCVTZU W0, S0, #32
  226. };
  227. }
  228. private static uint[] _F_Cvt_Z_SU_Gp_Fixed_SX_()
  229. {
  230. return new uint[]
  231. {
  232. 0x9E180000u, // FCVTZS X0, S0, #64
  233. 0x9E190000u // FCVTZU X0, S0, #64
  234. };
  235. }
  236. private static uint[] _F_Cvt_Z_SU_Gp_Fixed_DW_()
  237. {
  238. return new uint[]
  239. {
  240. 0x1E588000u, // FCVTZS W0, D0, #32
  241. 0x1E598000u // FCVTZU W0, D0, #32
  242. };
  243. }
  244. private static uint[] _F_Cvt_Z_SU_Gp_Fixed_DX_()
  245. {
  246. return new uint[]
  247. {
  248. 0x9E580000u, // FCVTZS X0, D0, #64
  249. 0x9E590000u // FCVTZU X0, D0, #64
  250. };
  251. }
  252. private static uint[] _SU_Cvt_F_Gp_WS_()
  253. {
  254. return new uint[]
  255. {
  256. 0x1E220000u, // SCVTF S0, W0
  257. 0x1E230000u // UCVTF S0, W0
  258. };
  259. }
  260. private static uint[] _SU_Cvt_F_Gp_WD_()
  261. {
  262. return new uint[]
  263. {
  264. 0x1E620000u, // SCVTF D0, W0
  265. 0x1E630000u // UCVTF D0, W0
  266. };
  267. }
  268. private static uint[] _SU_Cvt_F_Gp_XS_()
  269. {
  270. return new uint[]
  271. {
  272. 0x9E220000u, // SCVTF S0, X0
  273. 0x9E230000u // UCVTF S0, X0
  274. };
  275. }
  276. private static uint[] _SU_Cvt_F_Gp_XD_()
  277. {
  278. return new uint[]
  279. {
  280. 0x9E620000u, // SCVTF D0, X0
  281. 0x9E630000u // UCVTF D0, X0
  282. };
  283. }
  284. private static uint[] _SU_Cvt_F_Gp_Fixed_WS_()
  285. {
  286. return new uint[]
  287. {
  288. 0x1E028000u, // SCVTF S0, W0, #32
  289. 0x1E038000u // UCVTF S0, W0, #32
  290. };
  291. }
  292. private static uint[] _SU_Cvt_F_Gp_Fixed_WD_()
  293. {
  294. return new uint[]
  295. {
  296. 0x1E428000u, // SCVTF D0, W0, #32
  297. 0x1E438000u // UCVTF D0, W0, #32
  298. };
  299. }
  300. private static uint[] _SU_Cvt_F_Gp_Fixed_XS_()
  301. {
  302. return new uint[]
  303. {
  304. 0x9E020000u, // SCVTF S0, X0, #64
  305. 0x9E030000u // UCVTF S0, X0, #64
  306. };
  307. }
  308. private static uint[] _SU_Cvt_F_Gp_Fixed_XD_()
  309. {
  310. return new uint[]
  311. {
  312. 0x9E420000u, // SCVTF D0, X0, #64
  313. 0x9E430000u // UCVTF D0, X0, #64
  314. };
  315. }
  316. #endregion
  317. private const int RndCnt = 2;
  318. private const int RndCntFBits = 2;
  319. private static readonly bool NoZeros = false;
  320. private static readonly bool NoInfs = false;
  321. private static readonly bool NoNaNs = false;
  322. [Test, Pairwise] [Explicit]
  323. public void F_Cvt_AMPZ_SU_Gp_SW([ValueSource("_F_Cvt_AMPZ_SU_Gp_SW_")] uint opcodes,
  324. [Values(0u, 31u)] uint rd,
  325. [Values(1u)] uint rn,
  326. [ValueSource("_1S_F_WX_")] ulong a)
  327. {
  328. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  329. ulong x0 = (ulong)TestContext.CurrentContext.Random.NextUInt() << 32;
  330. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  331. Vector128<float> v1 = MakeVectorE0(a);
  332. SingleOpcode(opcodes, x0: x0, x31: w31, v1: v1);
  333. CompareAgainstUnicorn();
  334. }
  335. [Test, Pairwise] [Explicit]
  336. public void F_Cvt_AMPZ_SU_Gp_SX([ValueSource("_F_Cvt_AMPZ_SU_Gp_SX_")] uint opcodes,
  337. [Values(0u, 31u)] uint rd,
  338. [Values(1u)] uint rn,
  339. [ValueSource("_1S_F_WX_")] ulong a)
  340. {
  341. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  342. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  343. Vector128<float> v1 = MakeVectorE0(a);
  344. SingleOpcode(opcodes, x31: x31, v1: v1);
  345. CompareAgainstUnicorn();
  346. }
  347. [Test, Pairwise] [Explicit]
  348. public void F_Cvt_AMPZ_SU_Gp_DW([ValueSource("_F_Cvt_AMPZ_SU_Gp_DW_")] uint opcodes,
  349. [Values(0u, 31u)] uint rd,
  350. [Values(1u)] uint rn,
  351. [ValueSource("_1D_F_WX_")] ulong a)
  352. {
  353. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  354. ulong x0 = (ulong)TestContext.CurrentContext.Random.NextUInt() << 32;
  355. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  356. Vector128<float> v1 = MakeVectorE0(a);
  357. SingleOpcode(opcodes, x0: x0, x31: w31, v1: v1);
  358. CompareAgainstUnicorn();
  359. }
  360. [Test, Pairwise] [Explicit]
  361. public void F_Cvt_AMPZ_SU_Gp_DX([ValueSource("_F_Cvt_AMPZ_SU_Gp_DX_")] uint opcodes,
  362. [Values(0u, 31u)] uint rd,
  363. [Values(1u)] uint rn,
  364. [ValueSource("_1D_F_WX_")] ulong a)
  365. {
  366. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  367. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  368. Vector128<float> v1 = MakeVectorE0(a);
  369. SingleOpcode(opcodes, x31: x31, v1: v1);
  370. CompareAgainstUnicorn();
  371. }
  372. [Test, Pairwise] [Explicit]
  373. public void F_Cvt_Z_SU_Gp_Fixed_SW([ValueSource("_F_Cvt_Z_SU_Gp_Fixed_SW_")] uint opcodes,
  374. [Values(0u, 31u)] uint rd,
  375. [Values(1u)] uint rn,
  376. [ValueSource("_1S_F_WX_")] ulong a,
  377. [Values(1u, 32u)] [Random(2u, 31u, RndCntFBits)] uint fBits)
  378. {
  379. uint scale = (64u - fBits) & 0x3Fu;
  380. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  381. opcodes |= (scale << 10);
  382. ulong x0 = (ulong)TestContext.CurrentContext.Random.NextUInt() << 32;
  383. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  384. Vector128<float> v1 = MakeVectorE0(a);
  385. SingleOpcode(opcodes, x0: x0, x31: w31, v1: v1);
  386. CompareAgainstUnicorn();
  387. }
  388. [Test, Pairwise] [Explicit]
  389. public void F_Cvt_Z_SU_Gp_Fixed_SX([ValueSource("_F_Cvt_Z_SU_Gp_Fixed_SX_")] uint opcodes,
  390. [Values(0u, 31u)] uint rd,
  391. [Values(1u)] uint rn,
  392. [ValueSource("_1S_F_WX_")] ulong a,
  393. [Values(1u, 64u)] [Random(2u, 63u, RndCntFBits)] uint fBits)
  394. {
  395. uint scale = (64u - fBits) & 0x3Fu;
  396. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  397. opcodes |= (scale << 10);
  398. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  399. Vector128<float> v1 = MakeVectorE0(a);
  400. SingleOpcode(opcodes, x31: x31, v1: v1);
  401. CompareAgainstUnicorn();
  402. }
  403. [Test, Pairwise] [Explicit]
  404. public void F_Cvt_Z_SU_Gp_Fixed_DW([ValueSource("_F_Cvt_Z_SU_Gp_Fixed_DW_")] uint opcodes,
  405. [Values(0u, 31u)] uint rd,
  406. [Values(1u)] uint rn,
  407. [ValueSource("_1D_F_WX_")] ulong a,
  408. [Values(1u, 32u)] [Random(2u, 31u, RndCntFBits)] uint fBits)
  409. {
  410. uint scale = (64u - fBits) & 0x3Fu;
  411. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  412. opcodes |= (scale << 10);
  413. ulong x0 = (ulong)TestContext.CurrentContext.Random.NextUInt() << 32;
  414. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  415. Vector128<float> v1 = MakeVectorE0(a);
  416. SingleOpcode(opcodes, x0: x0, x31: w31, v1: v1);
  417. CompareAgainstUnicorn();
  418. }
  419. [Test, Pairwise] [Explicit]
  420. public void F_Cvt_Z_SU_Gp_Fixed_DX([ValueSource("_F_Cvt_Z_SU_Gp_Fixed_DX_")] uint opcodes,
  421. [Values(0u, 31u)] uint rd,
  422. [Values(1u)] uint rn,
  423. [ValueSource("_1D_F_WX_")] ulong a,
  424. [Values(1u, 64u)] [Random(2u, 63u, RndCntFBits)] uint fBits)
  425. {
  426. uint scale = (64u - fBits) & 0x3Fu;
  427. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  428. opcodes |= (scale << 10);
  429. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  430. Vector128<float> v1 = MakeVectorE0(a);
  431. SingleOpcode(opcodes, x31: x31, v1: v1);
  432. CompareAgainstUnicorn();
  433. }
  434. [Test, Pairwise] [Explicit]
  435. public void SU_Cvt_F_Gp_WS([ValueSource("_SU_Cvt_F_Gp_WS_")] uint opcodes,
  436. [Values(0u)] uint rd,
  437. [Values(1u, 31u)] uint rn,
  438. [ValueSource("_W_")] [Random(RndCnt)] uint wn)
  439. {
  440. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  441. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  442. ulong z = TestContext.CurrentContext.Random.NextULong();
  443. Vector128<float> v0 = MakeVectorE0E1(z, z);
  444. SingleOpcode(opcodes, x1: wn, x31: w31, v0: v0);
  445. CompareAgainstUnicorn();
  446. }
  447. [Test, Pairwise] [Explicit]
  448. public void SU_Cvt_F_Gp_WD([ValueSource("_SU_Cvt_F_Gp_WD_")] uint opcodes,
  449. [Values(0u)] uint rd,
  450. [Values(1u, 31u)] uint rn,
  451. [ValueSource("_W_")] [Random(RndCnt)] uint wn)
  452. {
  453. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  454. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  455. ulong z = TestContext.CurrentContext.Random.NextULong();
  456. Vector128<float> v0 = MakeVectorE1(z);
  457. SingleOpcode(opcodes, x1: wn, x31: w31, v0: v0);
  458. CompareAgainstUnicorn();
  459. }
  460. [Test, Pairwise] [Explicit]
  461. public void SU_Cvt_F_Gp_XS([ValueSource("_SU_Cvt_F_Gp_XS_")] uint opcodes,
  462. [Values(0u)] uint rd,
  463. [Values(1u, 31u)] uint rn,
  464. [ValueSource("_X_")] [Random(RndCnt)] ulong xn)
  465. {
  466. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  467. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  468. ulong z = TestContext.CurrentContext.Random.NextULong();
  469. Vector128<float> v0 = MakeVectorE0E1(z, z);
  470. SingleOpcode(opcodes, x1: xn, x31: x31, v0: v0);
  471. CompareAgainstUnicorn();
  472. }
  473. [Test, Pairwise] [Explicit]
  474. public void SU_Cvt_F_Gp_XD([ValueSource("_SU_Cvt_F_Gp_XD_")] uint opcodes,
  475. [Values(0u)] uint rd,
  476. [Values(1u, 31u)] uint rn,
  477. [ValueSource("_X_")] [Random(RndCnt)] ulong xn)
  478. {
  479. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  480. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  481. ulong z = TestContext.CurrentContext.Random.NextULong();
  482. Vector128<float> v0 = MakeVectorE1(z);
  483. SingleOpcode(opcodes, x1: xn, x31: x31, v0: v0);
  484. CompareAgainstUnicorn(fpTolerances: FpTolerances.UpToOneUlpsD); // unsigned
  485. }
  486. [Test, Pairwise] [Explicit]
  487. public void SU_Cvt_F_Gp_Fixed_WS([ValueSource("_SU_Cvt_F_Gp_Fixed_WS_")] uint opcodes,
  488. [Values(0u)] uint rd,
  489. [Values(1u, 31u)] uint rn,
  490. [ValueSource("_W_")] [Random(RndCnt)] uint wn,
  491. [Values(1u, 32u)] [Random(2u, 31u, RndCntFBits)] uint fBits)
  492. {
  493. uint scale = (64u - fBits) & 0x3Fu;
  494. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  495. opcodes |= (scale << 10);
  496. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  497. ulong z = TestContext.CurrentContext.Random.NextULong();
  498. Vector128<float> v0 = MakeVectorE0E1(z, z);
  499. SingleOpcode(opcodes, x1: wn, x31: w31, v0: v0);
  500. CompareAgainstUnicorn();
  501. }
  502. [Test, Pairwise] [Explicit]
  503. public void SU_Cvt_F_Gp_Fixed_WD([ValueSource("_SU_Cvt_F_Gp_Fixed_WD_")] uint opcodes,
  504. [Values(0u)] uint rd,
  505. [Values(1u, 31u)] uint rn,
  506. [ValueSource("_W_")] [Random(RndCnt)] uint wn,
  507. [Values(1u, 32u)] [Random(2u, 31u, RndCntFBits)] uint fBits)
  508. {
  509. uint scale = (64u - fBits) & 0x3Fu;
  510. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  511. opcodes |= (scale << 10);
  512. uint w31 = TestContext.CurrentContext.Random.NextUInt();
  513. ulong z = TestContext.CurrentContext.Random.NextULong();
  514. Vector128<float> v0 = MakeVectorE1(z);
  515. SingleOpcode(opcodes, x1: wn, x31: w31, v0: v0);
  516. CompareAgainstUnicorn();
  517. }
  518. [Test, Pairwise] [Explicit]
  519. public void SU_Cvt_F_Gp_Fixed_XS([ValueSource("_SU_Cvt_F_Gp_Fixed_XS_")] uint opcodes,
  520. [Values(0u)] uint rd,
  521. [Values(1u, 31u)] uint rn,
  522. [ValueSource("_X_")] [Random(RndCnt)] ulong xn,
  523. [Values(1u, 64u)] [Random(2u, 63u, RndCntFBits)] uint fBits)
  524. {
  525. uint scale = (64u - fBits) & 0x3Fu;
  526. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  527. opcodes |= (scale << 10);
  528. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  529. ulong z = TestContext.CurrentContext.Random.NextULong();
  530. Vector128<float> v0 = MakeVectorE0E1(z, z);
  531. SingleOpcode(opcodes, x1: xn, x31: x31, v0: v0);
  532. CompareAgainstUnicorn();
  533. }
  534. [Test, Pairwise] [Explicit]
  535. public void SU_Cvt_F_Gp_Fixed_XD([ValueSource("_SU_Cvt_F_Gp_Fixed_XD_")] uint opcodes,
  536. [Values(0u)] uint rd,
  537. [Values(1u, 31u)] uint rn,
  538. [ValueSource("_X_")] [Random(RndCnt)] ulong xn,
  539. [Values(1u, 64u)] [Random(2u, 63u, RndCntFBits)] uint fBits)
  540. {
  541. uint scale = (64u - fBits) & 0x3Fu;
  542. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  543. opcodes |= (scale << 10);
  544. ulong x31 = TestContext.CurrentContext.Random.NextULong();
  545. ulong z = TestContext.CurrentContext.Random.NextULong();
  546. Vector128<float> v0 = MakeVectorE1(z);
  547. SingleOpcode(opcodes, x1: xn, x31: x31, v0: v0);
  548. CompareAgainstUnicorn(fpTolerances: FpTolerances.UpToOneUlpsD); // unsigned
  549. }
  550. #endif
  551. }
  552. }