CpuTestSimdShImm.cs 37 KB

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  1. #define SimdShImm
  2. using NUnit.Framework;
  3. using System.Collections.Generic;
  4. using System.Runtime.Intrinsics;
  5. namespace Ryujinx.Tests.Cpu
  6. {
  7. [Category("SimdShImm")]
  8. public sealed class CpuTestSimdShImm : CpuTest
  9. {
  10. #if SimdShImm
  11. #region "ValueSource (Types)"
  12. private static ulong[] _1D_()
  13. {
  14. return new ulong[] { 0x0000000000000000ul, 0x7FFFFFFFFFFFFFFFul,
  15. 0x8000000000000000ul, 0xFFFFFFFFFFFFFFFFul };
  16. }
  17. private static ulong[] _1H_()
  18. {
  19. return new ulong[] { 0x0000000000000000ul, 0x0000000000007FFFul,
  20. 0x0000000000008000ul, 0x000000000000FFFFul };
  21. }
  22. private static ulong[] _1S_()
  23. {
  24. return new ulong[] { 0x0000000000000000ul, 0x000000007FFFFFFFul,
  25. 0x0000000080000000ul, 0x00000000FFFFFFFFul };
  26. }
  27. private static ulong[] _2S_()
  28. {
  29. return new ulong[] { 0x0000000000000000ul, 0x7FFFFFFF7FFFFFFFul,
  30. 0x8000000080000000ul, 0xFFFFFFFFFFFFFFFFul };
  31. }
  32. private static ulong[] _4H_()
  33. {
  34. return new ulong[] { 0x0000000000000000ul, 0x7FFF7FFF7FFF7FFFul,
  35. 0x8000800080008000ul, 0xFFFFFFFFFFFFFFFFul };
  36. }
  37. private static ulong[] _8B_()
  38. {
  39. return new ulong[] { 0x0000000000000000ul, 0x7F7F7F7F7F7F7F7Ful,
  40. 0x8080808080808080ul, 0xFFFFFFFFFFFFFFFFul };
  41. }
  42. private static IEnumerable<ulong> _2S_F_Cvt_()
  43. {
  44. // int
  45. yield return 0xCF000001CF000001; // -2.1474839E9f (-2147483904)
  46. yield return 0xCF000000CF000000; // -2.14748365E9f (-2147483648)
  47. yield return 0xCEFFFFFFCEFFFFFF; // -2.14748352E9f (-2147483520)
  48. yield return 0x4F0000014F000001; // 2.1474839E9f (2147483904)
  49. yield return 0x4F0000004F000000; // 2.14748365E9f (2147483648)
  50. yield return 0x4EFFFFFF4EFFFFFF; // 2.14748352E9f (2147483520)
  51. yield return 0xFF7FFFFFFF7FFFFFul; // -Max Normal (float.MinValue)
  52. yield return 0x8080000080800000ul; // -Min Normal
  53. yield return 0x807FFFFF807FFFFFul; // -Max Subnormal
  54. yield return 0x8000000180000001ul; // -Min Subnormal (-float.Epsilon)
  55. yield return 0x7F7FFFFF7F7FFFFFul; // +Max Normal (float.MaxValue)
  56. yield return 0x0080000000800000ul; // +Min Normal
  57. yield return 0x007FFFFF007FFFFFul; // +Max Subnormal
  58. yield return 0x0000000100000001ul; // +Min Subnormal (float.Epsilon)
  59. if (!NoZeros)
  60. {
  61. yield return 0x8000000080000000ul; // -Zero
  62. yield return 0x0000000000000000ul; // +Zero
  63. }
  64. if (!NoInfs)
  65. {
  66. yield return 0xFF800000FF800000ul; // -Infinity
  67. yield return 0x7F8000007F800000ul; // +Infinity
  68. }
  69. if (!NoNaNs)
  70. {
  71. yield return 0xFFC00000FFC00000ul; // -QNaN (all zeros payload) (float.NaN)
  72. yield return 0xFFBFFFFFFFBFFFFFul; // -SNaN (all ones payload)
  73. yield return 0x7FC000007FC00000ul; // +QNaN (all zeros payload) (-float.NaN) (DefaultNaN)
  74. yield return 0x7FBFFFFF7FBFFFFFul; // +SNaN (all ones payload)
  75. }
  76. for (int cnt = 1; cnt <= RndCnt; cnt++)
  77. {
  78. ulong rnd1 = GenNormalS();
  79. ulong rnd2 = GenSubnormalS();
  80. yield return (rnd1 << 32) | rnd1;
  81. yield return (rnd2 << 32) | rnd2;
  82. }
  83. }
  84. private static IEnumerable<ulong> _1D_F_Cvt_()
  85. {
  86. // long
  87. yield return 0xC3E0000000000001ul; // -9.2233720368547780E18d (-9223372036854778000)
  88. yield return 0xC3E0000000000000ul; // -9.2233720368547760E18d (-9223372036854776000)
  89. yield return 0xC3DFFFFFFFFFFFFFul; // -9.2233720368547750E18d (-9223372036854775000)
  90. yield return 0x43E0000000000001ul; // 9.2233720368547780E18d (9223372036854778000)
  91. yield return 0x43E0000000000000ul; // 9.2233720368547760E18d (9223372036854776000)
  92. yield return 0x43DFFFFFFFFFFFFFul; // 9.2233720368547750E18d (9223372036854775000)
  93. yield return 0xFFEFFFFFFFFFFFFFul; // -Max Normal (double.MinValue)
  94. yield return 0x8010000000000000ul; // -Min Normal
  95. yield return 0x800FFFFFFFFFFFFFul; // -Max Subnormal
  96. yield return 0x8000000000000001ul; // -Min Subnormal (-double.Epsilon)
  97. yield return 0x7FEFFFFFFFFFFFFFul; // +Max Normal (double.MaxValue)
  98. yield return 0x0010000000000000ul; // +Min Normal
  99. yield return 0x000FFFFFFFFFFFFFul; // +Max Subnormal
  100. yield return 0x0000000000000001ul; // +Min Subnormal (double.Epsilon)
  101. if (!NoZeros)
  102. {
  103. yield return 0x8000000000000000ul; // -Zero
  104. yield return 0x0000000000000000ul; // +Zero
  105. }
  106. if (!NoInfs)
  107. {
  108. yield return 0xFFF0000000000000ul; // -Infinity
  109. yield return 0x7FF0000000000000ul; // +Infinity
  110. }
  111. if (!NoNaNs)
  112. {
  113. yield return 0xFFF8000000000000ul; // -QNaN (all zeros payload) (double.NaN)
  114. yield return 0xFFF7FFFFFFFFFFFFul; // -SNaN (all ones payload)
  115. yield return 0x7FF8000000000000ul; // +QNaN (all zeros payload) (-double.NaN) (DefaultNaN)
  116. yield return 0x7FF7FFFFFFFFFFFFul; // +SNaN (all ones payload)
  117. }
  118. for (int cnt = 1; cnt <= RndCnt; cnt++)
  119. {
  120. ulong rnd1 = GenNormalD();
  121. ulong rnd2 = GenSubnormalD();
  122. yield return rnd1;
  123. yield return rnd2;
  124. }
  125. }
  126. #endregion
  127. #region "ValueSource (Opcodes)"
  128. private static uint[] _F_Cvt_Z_SU_V_Fixed_2S_4S_()
  129. {
  130. return new uint[]
  131. {
  132. 0x0F20FC00u, // FCVTZS V0.2S, V0.2S, #32
  133. 0x2F20FC00u // FCVTZU V0.2S, V0.2S, #32
  134. };
  135. }
  136. private static uint[] _F_Cvt_Z_SU_V_Fixed_2D_()
  137. {
  138. return new uint[]
  139. {
  140. 0x4F40FC00u, // FCVTZS V0.2D, V0.2D, #64
  141. 0x6F40FC00u // FCVTZU V0.2D, V0.2D, #64
  142. };
  143. }
  144. private static uint[] _SU_Shll_V_8B8H_16B8H_()
  145. {
  146. return new uint[]
  147. {
  148. 0x0F08A400u, // SSHLL V0.8H, V0.8B, #0
  149. 0x2F08A400u // USHLL V0.8H, V0.8B, #0
  150. };
  151. }
  152. private static uint[] _SU_Shll_V_4H4S_8H4S_()
  153. {
  154. return new uint[]
  155. {
  156. 0x0F10A400u, // SSHLL V0.4S, V0.4H, #0
  157. 0x2F10A400u // USHLL V0.4S, V0.4H, #0
  158. };
  159. }
  160. private static uint[] _SU_Shll_V_2S2D_4S2D_()
  161. {
  162. return new uint[]
  163. {
  164. 0x0F20A400u, // SSHLL V0.2D, V0.2S, #0
  165. 0x2F20A400u // USHLL V0.2D, V0.2S, #0
  166. };
  167. }
  168. private static uint[] _ShrImm_S_D_()
  169. {
  170. return new uint[]
  171. {
  172. 0x5F402400u, // SRSHR D0, D0, #64
  173. 0x5F403400u, // SRSRA D0, D0, #64
  174. 0x5F400400u, // SSHR D0, D0, #64
  175. 0x5F401400u, // SSRA D0, D0, #64
  176. 0x7F402400u, // URSHR D0, D0, #64
  177. 0x7F403400u, // URSRA D0, D0, #64
  178. 0x7F400400u, // USHR D0, D0, #64
  179. 0x7F401400u // USRA D0, D0, #64
  180. };
  181. }
  182. private static uint[] _ShrImm_V_8B_16B_()
  183. {
  184. return new uint[]
  185. {
  186. 0x0F082400u, // SRSHR V0.8B, V0.8B, #8
  187. 0x0F083400u, // SRSRA V0.8B, V0.8B, #8
  188. 0x0F080400u, // SSHR V0.8B, V0.8B, #8
  189. 0x0F081400u, // SSRA V0.8B, V0.8B, #8
  190. 0x2F082400u, // URSHR V0.8B, V0.8B, #8
  191. 0x2F083400u, // URSRA V0.8B, V0.8B, #8
  192. 0x2F080400u, // USHR V0.8B, V0.8B, #8
  193. 0x2F081400u // USRA V0.8B, V0.8B, #8
  194. };
  195. }
  196. private static uint[] _ShrImm_V_4H_8H_()
  197. {
  198. return new uint[]
  199. {
  200. 0x0F102400u, // SRSHR V0.4H, V0.4H, #16
  201. 0x0F103400u, // SRSRA V0.4H, V0.4H, #16
  202. 0x0F100400u, // SSHR V0.4H, V0.4H, #16
  203. 0x0F101400u, // SSRA V0.4H, V0.4H, #16
  204. 0x2F102400u, // URSHR V0.4H, V0.4H, #16
  205. 0x2F103400u, // URSRA V0.4H, V0.4H, #16
  206. 0x2F100400u, // USHR V0.4H, V0.4H, #16
  207. 0x2F101400u // USRA V0.4H, V0.4H, #16
  208. };
  209. }
  210. private static uint[] _ShrImm_V_2S_4S_()
  211. {
  212. return new uint[]
  213. {
  214. 0x0F202400u, // SRSHR V0.2S, V0.2S, #32
  215. 0x0F203400u, // SRSRA V0.2S, V0.2S, #32
  216. 0x0F200400u, // SSHR V0.2S, V0.2S, #32
  217. 0x0F201400u, // SSRA V0.2S, V0.2S, #32
  218. 0x2F202400u, // URSHR V0.2S, V0.2S, #32
  219. 0x2F203400u, // URSRA V0.2S, V0.2S, #32
  220. 0x2F200400u, // USHR V0.2S, V0.2S, #32
  221. 0x2F201400u // USRA V0.2S, V0.2S, #32
  222. };
  223. }
  224. private static uint[] _ShrImm_V_2D_()
  225. {
  226. return new uint[]
  227. {
  228. 0x4F402400u, // SRSHR V0.2D, V0.2D, #64
  229. 0x4F403400u, // SRSRA V0.2D, V0.2D, #64
  230. 0x4F400400u, // SSHR V0.2D, V0.2D, #64
  231. 0x4F401400u, // SSRA V0.2D, V0.2D, #64
  232. 0x6F402400u, // URSHR V0.2D, V0.2D, #64
  233. 0x6F403400u, // URSRA V0.2D, V0.2D, #64
  234. 0x6F400400u, // USHR V0.2D, V0.2D, #64
  235. 0x6F401400u // USRA V0.2D, V0.2D, #64
  236. };
  237. }
  238. private static uint[] _ShrImmNarrow_V_8H8B_8H16B_()
  239. {
  240. return new uint[]
  241. {
  242. 0x0F088C00u, // RSHRN V0.8B, V0.8H, #8
  243. 0x0F088400u // SHRN V0.8B, V0.8H, #8
  244. };
  245. }
  246. private static uint[] _ShrImmNarrow_V_4S4H_4S8H_()
  247. {
  248. return new uint[]
  249. {
  250. 0x0F108C00u, // RSHRN V0.4H, V0.4S, #16
  251. 0x0F108400u // SHRN V0.4H, V0.4S, #16
  252. };
  253. }
  254. private static uint[] _ShrImmNarrow_V_2D2S_2D4S_()
  255. {
  256. return new uint[]
  257. {
  258. 0x0F208C00u, // RSHRN V0.2S, V0.2D, #32
  259. 0x0F208400u // SHRN V0.2S, V0.2D, #32
  260. };
  261. }
  262. private static uint[] _ShrImmSaturatingNarrow_S_HB_()
  263. {
  264. return new uint[]
  265. {
  266. 0x5F089C00u, // SQRSHRN B0, H0, #8
  267. 0x7F089C00u, // UQRSHRN B0, H0, #8
  268. 0x7F088C00u, // SQRSHRUN B0, H0, #8
  269. 0x5F089400u, // SQSHRN B0, H0, #8
  270. 0x7F089400u, // UQSHRN B0, H0, #8
  271. 0x7F088400u // SQSHRUN B0, H0, #8
  272. };
  273. }
  274. private static uint[] _ShrImmSaturatingNarrow_S_SH_()
  275. {
  276. return new uint[]
  277. {
  278. 0x5F109C00u, // SQRSHRN H0, S0, #16
  279. 0x7F109C00u, // UQRSHRN H0, S0, #16
  280. 0x7F108C00u, // SQRSHRUN H0, S0, #16
  281. 0x5F109400u, // SQSHRN H0, S0, #16
  282. 0x7F109400u, // UQSHRN H0, S0, #16
  283. 0x7F108400u // SQSHRUN H0, S0, #16
  284. };
  285. }
  286. private static uint[] _ShrImmSaturatingNarrow_S_DS_()
  287. {
  288. return new uint[]
  289. {
  290. 0x5F209C00u, // SQRSHRN S0, D0, #32
  291. 0x7F209C00u, // UQRSHRN S0, D0, #32
  292. 0x7F208C00u, // SQRSHRUN S0, D0, #32
  293. 0x5F209400u, // SQSHRN S0, D0, #32
  294. 0x7F209400u, // UQSHRN S0, D0, #32
  295. 0x7F208400u // SQSHRUN S0, D0, #32
  296. };
  297. }
  298. private static uint[] _ShrImmSaturatingNarrow_V_8H8B_8H16B_()
  299. {
  300. return new uint[]
  301. {
  302. 0x0F089C00u, // SQRSHRN V0.8B, V0.8H, #8
  303. 0x2F089C00u, // UQRSHRN V0.8B, V0.8H, #8
  304. 0x2F088C00u, // SQRSHRUN V0.8B, V0.8H, #8
  305. 0x0F089400u, // SQSHRN V0.8B, V0.8H, #8
  306. 0x2F089400u, // UQSHRN V0.8B, V0.8H, #8
  307. 0x2F088400u // SQSHRUN V0.8B, V0.8H, #8
  308. };
  309. }
  310. private static uint[] _ShrImmSaturatingNarrow_V_4S4H_4S8H_()
  311. {
  312. return new uint[]
  313. {
  314. 0x0F109C00u, // SQRSHRN V0.4H, V0.4S, #16
  315. 0x2F109C00u, // UQRSHRN V0.4H, V0.4S, #16
  316. 0x2F108C00u, // SQRSHRUN V0.4H, V0.4S, #16
  317. 0x0F109400u, // SQSHRN V0.4H, V0.4S, #16
  318. 0x2F109400u, // UQSHRN V0.4H, V0.4S, #16
  319. 0x2F108400u // SQSHRUN V0.4H, V0.4S, #16
  320. };
  321. }
  322. private static uint[] _ShrImmSaturatingNarrow_V_2D2S_2D4S_()
  323. {
  324. return new uint[]
  325. {
  326. 0x0F209C00u, // SQRSHRN V0.2S, V0.2D, #32
  327. 0x2F209C00u, // UQRSHRN V0.2S, V0.2D, #32
  328. 0x2F208C00u, // SQRSHRUN V0.2S, V0.2D, #32
  329. 0x0F209400u, // SQSHRN V0.2S, V0.2D, #32
  330. 0x2F209400u, // UQSHRN V0.2S, V0.2D, #32
  331. 0x2F208400u // SQSHRUN V0.2S, V0.2D, #32
  332. };
  333. }
  334. #endregion
  335. private const int RndCnt = 2;
  336. private const int RndCntFBits = 2;
  337. private const int RndCntShift = 2;
  338. private static readonly bool NoZeros = false;
  339. private static readonly bool NoInfs = false;
  340. private static readonly bool NoNaNs = false;
  341. [Test, Pairwise] [Explicit]
  342. public void F_Cvt_Z_SU_V_Fixed_2S_4S([ValueSource("_F_Cvt_Z_SU_V_Fixed_2S_4S_")] uint opcodes,
  343. [Values(0u)] uint rd,
  344. [Values(1u, 0u)] uint rn,
  345. [ValueSource("_2S_F_Cvt_")] ulong z,
  346. [ValueSource("_2S_F_Cvt_")] ulong a,
  347. [Values(1u, 32u)] [Random(2u, 31u, RndCntFBits)] uint fBits,
  348. [Values(0b0u, 0b1u)] uint q) // <2S, 4S>
  349. {
  350. uint immHb = (64 - fBits) & 0x7F;
  351. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  352. opcodes |= (immHb << 16);
  353. opcodes |= ((q & 1) << 30);
  354. Vector128<float> v0 = MakeVectorE0E1(z, z);
  355. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  356. SingleOpcode(opcodes, v0: v0, v1: v1);
  357. CompareAgainstUnicorn();
  358. }
  359. [Test, Pairwise] [Explicit]
  360. public void F_Cvt_Z_SU_V_Fixed_2D([ValueSource("_F_Cvt_Z_SU_V_Fixed_2D_")] uint opcodes,
  361. [Values(0u)] uint rd,
  362. [Values(1u, 0u)] uint rn,
  363. [ValueSource("_1D_F_Cvt_")] ulong z,
  364. [ValueSource("_1D_F_Cvt_")] ulong a,
  365. [Values(1u, 64u)] [Random(2u, 63u, RndCntFBits)] uint fBits)
  366. {
  367. uint immHb = (128 - fBits) & 0x7F;
  368. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  369. opcodes |= (immHb << 16);
  370. Vector128<float> v0 = MakeVectorE0E1(z, z);
  371. Vector128<float> v1 = MakeVectorE0E1(a, a);
  372. SingleOpcode(opcodes, v0: v0, v1: v1);
  373. CompareAgainstUnicorn();
  374. }
  375. [Test, Pairwise, Description("SHL <V><d>, <V><n>, #<shift>")]
  376. public void Shl_S_D([Values(0u)] uint rd,
  377. [Values(1u, 0u)] uint rn,
  378. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  379. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  380. [Values(0u, 63u)] [Random(1u, 62u, RndCntShift)] uint shift)
  381. {
  382. uint immHb = (64 + shift) & 0x7F;
  383. uint opcode = 0x5F405400; // SHL D0, D0, #0
  384. opcode |= ((rn & 31) << 5) | ((rd & 31) << 0);
  385. opcode |= (immHb << 16);
  386. Vector128<float> v0 = MakeVectorE0E1(z, z);
  387. Vector128<float> v1 = MakeVectorE0(a);
  388. SingleOpcode(opcode, v0: v0, v1: v1);
  389. CompareAgainstUnicorn();
  390. }
  391. [Test, Pairwise, Description("SHL <Vd>.<T>, <Vn>.<T>, #<shift>")]
  392. public void Shl_V_8B_16B([Values(0u)] uint rd,
  393. [Values(1u, 0u)] uint rn,
  394. [ValueSource("_8B_")] [Random(RndCnt)] ulong z,
  395. [ValueSource("_8B_")] [Random(RndCnt)] ulong a,
  396. [Values(0u, 7u)] [Random(1u, 6u, RndCntShift)] uint shift,
  397. [Values(0b0u, 0b1u)] uint q) // <8B, 16B>
  398. {
  399. uint immHb = (8 + shift) & 0x7F;
  400. uint opcode = 0x0F085400; // SHL V0.8B, V0.8B, #0
  401. opcode |= ((rn & 31) << 5) | ((rd & 31) << 0);
  402. opcode |= (immHb << 16);
  403. opcode |= ((q & 1) << 30);
  404. Vector128<float> v0 = MakeVectorE0E1(z, z);
  405. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  406. SingleOpcode(opcode, v0: v0, v1: v1);
  407. CompareAgainstUnicorn();
  408. }
  409. [Test, Pairwise, Description("SHL <Vd>.<T>, <Vn>.<T>, #<shift>")]
  410. public void Shl_V_4H_8H([Values(0u)] uint rd,
  411. [Values(1u, 0u)] uint rn,
  412. [ValueSource("_4H_")] [Random(RndCnt)] ulong z,
  413. [ValueSource("_4H_")] [Random(RndCnt)] ulong a,
  414. [Values(0u, 15u)] [Random(1u, 14u, RndCntShift)] uint shift,
  415. [Values(0b0u, 0b1u)] uint q) // <4H, 8H>
  416. {
  417. uint immHb = (16 + shift) & 0x7F;
  418. uint opcode = 0x0F105400; // SHL V0.4H, V0.4H, #0
  419. opcode |= ((rn & 31) << 5) | ((rd & 31) << 0);
  420. opcode |= (immHb << 16);
  421. opcode |= ((q & 1) << 30);
  422. Vector128<float> v0 = MakeVectorE0E1(z, z);
  423. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  424. SingleOpcode(opcode, v0: v0, v1: v1);
  425. CompareAgainstUnicorn();
  426. }
  427. [Test, Pairwise, Description("SHL <Vd>.<T>, <Vn>.<T>, #<shift>")]
  428. public void Shl_V_2S_4S([Values(0u)] uint rd,
  429. [Values(1u, 0u)] uint rn,
  430. [ValueSource("_2S_")] [Random(RndCnt)] ulong z,
  431. [ValueSource("_2S_")] [Random(RndCnt)] ulong a,
  432. [Values(0u, 31u)] [Random(1u, 30u, RndCntShift)] uint shift,
  433. [Values(0b0u, 0b1u)] uint q) // <2S, 4S>
  434. {
  435. uint immHb = (32 + shift) & 0x7F;
  436. uint opcode = 0x0F205400; // SHL V0.2S, V0.2S, #0
  437. opcode |= ((rn & 31) << 5) | ((rd & 31) << 0);
  438. opcode |= (immHb << 16);
  439. opcode |= ((q & 1) << 30);
  440. Vector128<float> v0 = MakeVectorE0E1(z, z);
  441. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  442. SingleOpcode(opcode, v0: v0, v1: v1);
  443. CompareAgainstUnicorn();
  444. }
  445. [Test, Pairwise, Description("SHL <Vd>.<T>, <Vn>.<T>, #<shift>")]
  446. public void Shl_V_2D([Values(0u)] uint rd,
  447. [Values(1u, 0u)] uint rn,
  448. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  449. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  450. [Values(0u, 63u)] [Random(1u, 62u, RndCntShift)] uint shift)
  451. {
  452. uint immHb = (64 + shift) & 0x7F;
  453. uint opcode = 0x4F405400; // SHL V0.2D, V0.2D, #0
  454. opcode |= ((rn & 31) << 5) | ((rd & 31) << 0);
  455. opcode |= (immHb << 16);
  456. Vector128<float> v0 = MakeVectorE0E1(z, z);
  457. Vector128<float> v1 = MakeVectorE0E1(a, a);
  458. SingleOpcode(opcode, v0: v0, v1: v1);
  459. CompareAgainstUnicorn();
  460. }
  461. [Test, Pairwise]
  462. public void SU_Shll_V_8B8H_16B8H([ValueSource("_SU_Shll_V_8B8H_16B8H_")] uint opcodes,
  463. [Values(0u)] uint rd,
  464. [Values(1u, 0u)] uint rn,
  465. [ValueSource("_8B_")] [Random(RndCnt)] ulong z,
  466. [ValueSource("_8B_")] [Random(RndCnt)] ulong a,
  467. [Values(0u, 7u)] [Random(1u, 6u, RndCntShift)] uint shift,
  468. [Values(0b0u, 0b1u)] uint q) // <8B8H, 16B8H>
  469. {
  470. uint immHb = (8 + shift) & 0x7F;
  471. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  472. opcodes |= (immHb << 16);
  473. opcodes |= ((q & 1) << 30);
  474. Vector128<float> v0 = MakeVectorE0E1(z, z);
  475. Vector128<float> v1 = MakeVectorE0E1(q == 0u ? a : 0ul, q == 1u ? a : 0ul);
  476. SingleOpcode(opcodes, v0: v0, v1: v1);
  477. CompareAgainstUnicorn();
  478. }
  479. [Test, Pairwise]
  480. public void SU_Shll_V_4H4S_8H4S([ValueSource("_SU_Shll_V_4H4S_8H4S_")] uint opcodes,
  481. [Values(0u)] uint rd,
  482. [Values(1u, 0u)] uint rn,
  483. [ValueSource("_4H_")] [Random(RndCnt)] ulong z,
  484. [ValueSource("_4H_")] [Random(RndCnt)] ulong a,
  485. [Values(0u, 15u)] [Random(1u, 14u, RndCntShift)] uint shift,
  486. [Values(0b0u, 0b1u)] uint q) // <4H4S, 8H4S>
  487. {
  488. uint immHb = (16 + shift) & 0x7F;
  489. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  490. opcodes |= (immHb << 16);
  491. opcodes |= ((q & 1) << 30);
  492. Vector128<float> v0 = MakeVectorE0E1(z, z);
  493. Vector128<float> v1 = MakeVectorE0E1(q == 0u ? a : 0ul, q == 1u ? a : 0ul);
  494. SingleOpcode(opcodes, v0: v0, v1: v1);
  495. CompareAgainstUnicorn();
  496. }
  497. [Test, Pairwise]
  498. public void SU_Shll_V_2S2D_4S2D([ValueSource("_SU_Shll_V_2S2D_4S2D_")] uint opcodes,
  499. [Values(0u)] uint rd,
  500. [Values(1u, 0u)] uint rn,
  501. [ValueSource("_2S_")] [Random(RndCnt)] ulong z,
  502. [ValueSource("_2S_")] [Random(RndCnt)] ulong a,
  503. [Values(0u, 31u)] [Random(1u, 30u, RndCntShift)] uint shift,
  504. [Values(0b0u, 0b1u)] uint q) // <2S2D, 4S2D>
  505. {
  506. uint immHb = (32 + shift) & 0x7F;
  507. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  508. opcodes |= (immHb << 16);
  509. opcodes |= ((q & 1) << 30);
  510. Vector128<float> v0 = MakeVectorE0E1(z, z);
  511. Vector128<float> v1 = MakeVectorE0E1(q == 0u ? a : 0ul, q == 1u ? a : 0ul);
  512. SingleOpcode(opcodes, v0: v0, v1: v1);
  513. CompareAgainstUnicorn();
  514. }
  515. [Test, Pairwise]
  516. public void ShrImm_S_D([ValueSource("_ShrImm_S_D_")] uint opcodes,
  517. [Values(0u)] uint rd,
  518. [Values(1u, 0u)] uint rn,
  519. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  520. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  521. [Values(1u, 64u)] [Random(2u, 63u, RndCntShift)] uint shift)
  522. {
  523. uint immHb = (128 - shift) & 0x7F;
  524. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  525. opcodes |= (immHb << 16);
  526. Vector128<float> v0 = MakeVectorE0E1(z, z);
  527. Vector128<float> v1 = MakeVectorE0(a);
  528. SingleOpcode(opcodes, v0: v0, v1: v1);
  529. CompareAgainstUnicorn();
  530. }
  531. [Test, Pairwise]
  532. public void ShrImm_V_8B_16B([ValueSource("_ShrImm_V_8B_16B_")] uint opcodes,
  533. [Values(0u)] uint rd,
  534. [Values(1u, 0u)] uint rn,
  535. [ValueSource("_8B_")] [Random(RndCnt)] ulong z,
  536. [ValueSource("_8B_")] [Random(RndCnt)] ulong a,
  537. [Values(1u, 8u)] [Random(2u, 7u, RndCntShift)] uint shift,
  538. [Values(0b0u, 0b1u)] uint q) // <8B, 16B>
  539. {
  540. uint immHb = (16 - shift) & 0x7F;
  541. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  542. opcodes |= (immHb << 16);
  543. opcodes |= ((q & 1) << 30);
  544. Vector128<float> v0 = MakeVectorE0E1(z, z);
  545. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  546. SingleOpcode(opcodes, v0: v0, v1: v1);
  547. CompareAgainstUnicorn();
  548. }
  549. [Test, Pairwise]
  550. public void ShrImm_V_4H_8H([ValueSource("_ShrImm_V_4H_8H_")] uint opcodes,
  551. [Values(0u)] uint rd,
  552. [Values(1u, 0u)] uint rn,
  553. [ValueSource("_4H_")] [Random(RndCnt)] ulong z,
  554. [ValueSource("_4H_")] [Random(RndCnt)] ulong a,
  555. [Values(1u, 16u)] [Random(2u, 15u, RndCntShift)] uint shift,
  556. [Values(0b0u, 0b1u)] uint q) // <4H, 8H>
  557. {
  558. uint immHb = (32 - shift) & 0x7F;
  559. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  560. opcodes |= (immHb << 16);
  561. opcodes |= ((q & 1) << 30);
  562. Vector128<float> v0 = MakeVectorE0E1(z, z);
  563. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  564. SingleOpcode(opcodes, v0: v0, v1: v1);
  565. CompareAgainstUnicorn();
  566. }
  567. [Test, Pairwise]
  568. public void ShrImm_V_2S_4S([ValueSource("_ShrImm_V_2S_4S_")] uint opcodes,
  569. [Values(0u)] uint rd,
  570. [Values(1u, 0u)] uint rn,
  571. [ValueSource("_2S_")] [Random(RndCnt)] ulong z,
  572. [ValueSource("_2S_")] [Random(RndCnt)] ulong a,
  573. [Values(1u, 32u)] [Random(2u, 31u, RndCntShift)] uint shift,
  574. [Values(0b0u, 0b1u)] uint q) // <2S, 4S>
  575. {
  576. uint immHb = (64 - shift) & 0x7F;
  577. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  578. opcodes |= (immHb << 16);
  579. opcodes |= ((q & 1) << 30);
  580. Vector128<float> v0 = MakeVectorE0E1(z, z);
  581. Vector128<float> v1 = MakeVectorE0E1(a, a * q);
  582. SingleOpcode(opcodes, v0: v0, v1: v1);
  583. CompareAgainstUnicorn();
  584. }
  585. [Test, Pairwise]
  586. public void ShrImm_V_2D([ValueSource("_ShrImm_V_2D_")] uint opcodes,
  587. [Values(0u)] uint rd,
  588. [Values(1u, 0u)] uint rn,
  589. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  590. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  591. [Values(1u, 64u)] [Random(2u, 63u, RndCntShift)] uint shift)
  592. {
  593. uint immHb = (128 - shift) & 0x7F;
  594. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  595. opcodes |= (immHb << 16);
  596. Vector128<float> v0 = MakeVectorE0E1(z, z);
  597. Vector128<float> v1 = MakeVectorE0E1(a, a);
  598. SingleOpcode(opcodes, v0: v0, v1: v1);
  599. CompareAgainstUnicorn();
  600. }
  601. [Test, Pairwise]
  602. public void ShrImmNarrow_V_8H8B_8H16B([ValueSource("_ShrImmNarrow_V_8H8B_8H16B_")] uint opcodes,
  603. [Values(0u)] uint rd,
  604. [Values(1u, 0u)] uint rn,
  605. [ValueSource("_4H_")] [Random(RndCnt)] ulong z,
  606. [ValueSource("_4H_")] [Random(RndCnt)] ulong a,
  607. [Values(1u, 8u)] [Random(2u, 7u, RndCntShift)] uint shift,
  608. [Values(0b0u, 0b1u)] uint q) // <8H8B, 8H16B>
  609. {
  610. uint immHb = (16 - shift) & 0x7F;
  611. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  612. opcodes |= (immHb << 16);
  613. opcodes |= ((q & 1) << 30);
  614. Vector128<float> v0 = MakeVectorE0E1(z, z);
  615. Vector128<float> v1 = MakeVectorE0E1(a, a);
  616. SingleOpcode(opcodes, v0: v0, v1: v1);
  617. CompareAgainstUnicorn();
  618. }
  619. [Test, Pairwise]
  620. public void ShrImmNarrow_V_4S4H_4S8H([ValueSource("_ShrImmNarrow_V_4S4H_4S8H_")] uint opcodes,
  621. [Values(0u)] uint rd,
  622. [Values(1u, 0u)] uint rn,
  623. [ValueSource("_2S_")] [Random(RndCnt)] ulong z,
  624. [ValueSource("_2S_")] [Random(RndCnt)] ulong a,
  625. [Values(1u, 16u)] [Random(2u, 15u, RndCntShift)] uint shift,
  626. [Values(0b0u, 0b1u)] uint q) // <4S4H, 4S8H>
  627. {
  628. uint immHb = (32 - shift) & 0x7F;
  629. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  630. opcodes |= (immHb << 16);
  631. opcodes |= ((q & 1) << 30);
  632. Vector128<float> v0 = MakeVectorE0E1(z, z);
  633. Vector128<float> v1 = MakeVectorE0E1(a, a);
  634. SingleOpcode(opcodes, v0: v0, v1: v1);
  635. CompareAgainstUnicorn();
  636. }
  637. [Test, Pairwise]
  638. public void ShrImmNarrow_V_2D2S_2D4S([ValueSource("_ShrImmNarrow_V_2D2S_2D4S_")] uint opcodes,
  639. [Values(0u)] uint rd,
  640. [Values(1u, 0u)] uint rn,
  641. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  642. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  643. [Values(1u, 32u)] [Random(2u, 31u, RndCntShift)] uint shift,
  644. [Values(0b0u, 0b1u)] uint q) // <2D2S, 2D4S>
  645. {
  646. uint immHb = (64 - shift) & 0x7F;
  647. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  648. opcodes |= (immHb << 16);
  649. opcodes |= ((q & 1) << 30);
  650. Vector128<float> v0 = MakeVectorE0E1(z, z);
  651. Vector128<float> v1 = MakeVectorE0E1(a, a);
  652. SingleOpcode(opcodes, v0: v0, v1: v1);
  653. CompareAgainstUnicorn();
  654. }
  655. [Test, Pairwise]
  656. public void ShrImmSaturatingNarrow_S_HB([ValueSource("_ShrImmSaturatingNarrow_S_HB_")] uint opcodes,
  657. [Values(0u)] uint rd,
  658. [Values(1u, 0u)] uint rn,
  659. [ValueSource("_1H_")] [Random(RndCnt)] ulong z,
  660. [ValueSource("_1H_")] [Random(RndCnt)] ulong a,
  661. [Values(1u, 8u)] [Random(2u, 7u, RndCntShift)] uint shift)
  662. {
  663. uint immHb = (16 - shift) & 0x7F;
  664. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  665. opcodes |= (immHb << 16);
  666. Vector128<float> v0 = MakeVectorE0E1(z, z);
  667. Vector128<float> v1 = MakeVectorE0(a);
  668. SingleOpcode(opcodes, v0: v0, v1: v1);
  669. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  670. }
  671. [Test, Pairwise]
  672. public void ShrImmSaturatingNarrow_S_SH([ValueSource("_ShrImmSaturatingNarrow_S_SH_")] uint opcodes,
  673. [Values(0u)] uint rd,
  674. [Values(1u, 0u)] uint rn,
  675. [ValueSource("_1S_")] [Random(RndCnt)] ulong z,
  676. [ValueSource("_1S_")] [Random(RndCnt)] ulong a,
  677. [Values(1u, 16u)] [Random(2u, 15u, RndCntShift)] uint shift)
  678. {
  679. uint immHb = (32 - shift) & 0x7F;
  680. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  681. opcodes |= (immHb << 16);
  682. Vector128<float> v0 = MakeVectorE0E1(z, z);
  683. Vector128<float> v1 = MakeVectorE0(a);
  684. SingleOpcode(opcodes, v0: v0, v1: v1);
  685. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  686. }
  687. [Test, Pairwise]
  688. public void ShrImmSaturatingNarrow_S_DS([ValueSource("_ShrImmSaturatingNarrow_S_DS_")] uint opcodes,
  689. [Values(0u)] uint rd,
  690. [Values(1u, 0u)] uint rn,
  691. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  692. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  693. [Values(1u, 32u)] [Random(2u, 31u, RndCntShift)] uint shift)
  694. {
  695. uint immHb = (64 - shift) & 0x7F;
  696. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  697. opcodes |= (immHb << 16);
  698. Vector128<float> v0 = MakeVectorE0E1(z, z);
  699. Vector128<float> v1 = MakeVectorE0(a);
  700. SingleOpcode(opcodes, v0: v0, v1: v1);
  701. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  702. }
  703. [Test, Pairwise]
  704. public void ShrImmSaturatingNarrow_V_8H8B_8H16B([ValueSource("_ShrImmSaturatingNarrow_V_8H8B_8H16B_")] uint opcodes,
  705. [Values(0u)] uint rd,
  706. [Values(1u, 0u)] uint rn,
  707. [ValueSource("_4H_")] [Random(RndCnt)] ulong z,
  708. [ValueSource("_4H_")] [Random(RndCnt)] ulong a,
  709. [Values(1u, 8u)] [Random(2u, 7u, RndCntShift)] uint shift,
  710. [Values(0b0u, 0b1u)] uint q) // <8H8B, 8H16B>
  711. {
  712. uint immHb = (16 - shift) & 0x7F;
  713. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  714. opcodes |= (immHb << 16);
  715. opcodes |= ((q & 1) << 30);
  716. Vector128<float> v0 = MakeVectorE0E1(z, z);
  717. Vector128<float> v1 = MakeVectorE0(a);
  718. SingleOpcode(opcodes, v0: v0, v1: v1);
  719. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  720. }
  721. [Test, Pairwise]
  722. public void ShrImmSaturatingNarrow_V_4S4H_4S8H([ValueSource("_ShrImmSaturatingNarrow_V_4S4H_4S8H_")] uint opcodes,
  723. [Values(0u)] uint rd,
  724. [Values(1u, 0u)] uint rn,
  725. [ValueSource("_2S_")] [Random(RndCnt)] ulong z,
  726. [ValueSource("_2S_")] [Random(RndCnt)] ulong a,
  727. [Values(1u, 16u)] [Random(2u, 15u, RndCntShift)] uint shift,
  728. [Values(0b0u, 0b1u)] uint q) // <4S4H, 4S8H>
  729. {
  730. uint immHb = (32 - shift) & 0x7F;
  731. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  732. opcodes |= (immHb << 16);
  733. opcodes |= ((q & 1) << 30);
  734. Vector128<float> v0 = MakeVectorE0E1(z, z);
  735. Vector128<float> v1 = MakeVectorE0(a);
  736. SingleOpcode(opcodes, v0: v0, v1: v1);
  737. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  738. }
  739. [Test, Pairwise]
  740. public void ShrImmSaturatingNarrow_V_2D2S_2D4S([ValueSource("_ShrImmSaturatingNarrow_V_2D2S_2D4S_")] uint opcodes,
  741. [Values(0u)] uint rd,
  742. [Values(1u, 0u)] uint rn,
  743. [ValueSource("_1D_")] [Random(RndCnt)] ulong z,
  744. [ValueSource("_1D_")] [Random(RndCnt)] ulong a,
  745. [Values(1u, 32u)] [Random(2u, 31u, RndCntShift)] uint shift,
  746. [Values(0b0u, 0b1u)] uint q) // <2D2S, 2D4S>
  747. {
  748. uint immHb = (64 - shift) & 0x7F;
  749. opcodes |= ((rn & 31) << 5) | ((rd & 31) << 0);
  750. opcodes |= (immHb << 16);
  751. opcodes |= ((q & 1) << 30);
  752. Vector128<float> v0 = MakeVectorE0E1(z, z);
  753. Vector128<float> v1 = MakeVectorE0(a);
  754. SingleOpcode(opcodes, v0: v0, v1: v1);
  755. CompareAgainstUnicorn(fpsrMask: Fpsr.Qc);
  756. }
  757. #endif
  758. }
  759. }