Regenerating the x86 HWIntrinsics tests to no longer have a GC hole
[platform/upstream/coreclr.git] / tests / src / JIT / HardwareIntrinsics / X86 / Sse / CompareLessThanOrEqualOrderedScalar.Boolean.cs
1 // Licensed to the .NET Foundation under one or more agreements.
2 // The .NET Foundation licenses this file to you under the MIT license.
3 // See the LICENSE file in the project root for more information.
4
5 /******************************************************************************
6  * This file is auto-generated from a template file by the GenerateTests.csx  *
7  * script in tests\src\JIT\HardwareIntrinsics\X86\Shared. In order to make    *
8  * changes, please update the corresponding template and run according to the *
9  * directions listed in the file.                                             *
10  ******************************************************************************/
11
12 using System;
13 using System.Runtime.CompilerServices;
14 using System.Runtime.InteropServices;
15 using System.Runtime.Intrinsics;
16 using System.Runtime.Intrinsics.X86;
17
18 namespace JIT.HardwareIntrinsics.X86
19 {
20     public static partial class Program
21     {
22         private static void CompareLessThanOrEqualOrderedScalarBoolean()
23         {
24             var test = new BooleanComparisonOpTest__CompareLessThanOrEqualOrderedScalarBoolean();
25
26             if (test.IsSupported)
27             {
28                 // Validates basic functionality works, using Unsafe.Read
29                 test.RunBasicScenario_UnsafeRead();
30
31                 if (Sse.IsSupported)
32                 {
33                     // Validates basic functionality works, using Load
34                     test.RunBasicScenario_Load();
35
36                     // Validates basic functionality works, using LoadAligned
37                     test.RunBasicScenario_LoadAligned();
38                 }
39
40                 // Validates calling via reflection works, using Unsafe.Read
41                 test.RunReflectionScenario_UnsafeRead();
42
43                 if (Sse.IsSupported)
44                 {
45                     // Validates calling via reflection works, using Load
46                     test.RunReflectionScenario_Load();
47
48                     // Validates calling via reflection works, using LoadAligned
49                     test.RunReflectionScenario_LoadAligned();
50                 }
51
52                 // Validates passing a static member works
53                 test.RunClsVarScenario();
54
55                 // Validates passing a local works, using Unsafe.Read
56                 test.RunLclVarScenario_UnsafeRead();
57
58                 if (Sse.IsSupported)
59                 {
60                     // Validates passing a local works, using Load
61                     test.RunLclVarScenario_Load();
62
63                     // Validates passing a local works, using LoadAligned
64                     test.RunLclVarScenario_LoadAligned();
65                 }
66
67                 // Validates passing the field of a local works
68                 test.RunLclFldScenario();
69
70                 // Validates passing an instance member works
71                 test.RunFldScenario();
72             }
73             else
74             {
75                 // Validates we throw on unsupported hardware
76                 test.RunUnsupportedScenario();
77             }
78
79             if (!test.Succeeded)
80             {
81                 throw new Exception("One or more scenarios did not complete as expected.");
82             }
83         }
84     }
85
86     public sealed unsafe class BooleanComparisonOpTest__CompareLessThanOrEqualOrderedScalarBoolean
87     {
88         private const int VectorSize = 16;
89
90         private const int Op1ElementCount = VectorSize / sizeof(Single);
91         private const int Op2ElementCount = VectorSize / sizeof(Single);
92
93         private static Single[] _data1 = new Single[Op1ElementCount];
94         private static Single[] _data2 = new Single[Op2ElementCount];
95
96         private static Vector128<Single> _clsVar1;
97         private static Vector128<Single> _clsVar2;
98
99         private Vector128<Single> _fld1;
100         private Vector128<Single> _fld2;
101
102         private BooleanComparisonOpTest__DataTable<Single, Single> _dataTable;
103
104         static BooleanComparisonOpTest__CompareLessThanOrEqualOrderedScalarBoolean()
105         {
106             var random = new Random();
107
108             for (var i = 0; i < Op1ElementCount; i++) { _data1[i] = (float)(random.NextDouble()); }
109             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Vector128<Single>, byte>(ref _clsVar1), ref Unsafe.As<Single, byte>(ref _data1[0]), VectorSize);
110             for (var i = 0; i < Op2ElementCount; i++) { _data2[i] = (float)(random.NextDouble()); }
111             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Vector128<Single>, byte>(ref _clsVar2), ref Unsafe.As<Single, byte>(ref _data2[0]), VectorSize);
112         }
113
114         public BooleanComparisonOpTest__CompareLessThanOrEqualOrderedScalarBoolean()
115         {
116             Succeeded = true;
117
118             var random = new Random();
119
120             for (var i = 0; i < Op1ElementCount; i++) { _data1[i] = (float)(random.NextDouble()); }
121             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Vector128<Single>, byte>(ref _fld1), ref Unsafe.As<Single, byte>(ref _data1[0]), VectorSize);
122             for (var i = 0; i < Op2ElementCount; i++) { _data2[i] = (float)(random.NextDouble()); }
123             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Vector128<Single>, byte>(ref _fld2), ref Unsafe.As<Single, byte>(ref _data2[0]), VectorSize);
124
125             for (var i = 0; i < Op1ElementCount; i++) { _data1[i] = (float)(random.NextDouble()); }
126             for (var i = 0; i < Op2ElementCount; i++) { _data2[i] = (float)(random.NextDouble()); }
127             _dataTable = new BooleanComparisonOpTest__DataTable<Single, Single>(_data1, _data2, VectorSize);
128         }
129
130         public bool IsSupported => Sse.IsSupported;
131
132         public bool Succeeded { get; set; }
133
134         public void RunBasicScenario_UnsafeRead()
135         {
136             var result = Sse.CompareLessThanOrEqualOrderedScalar(
137                 Unsafe.Read<Vector128<Single>>(_dataTable.inArray1Ptr),
138                 Unsafe.Read<Vector128<Single>>(_dataTable.inArray2Ptr)
139             );
140
141             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, result);
142         }
143
144         public void RunBasicScenario_Load()
145         {
146             var result = Sse.CompareLessThanOrEqualOrderedScalar(
147                 Sse.LoadVector128((Single*)(_dataTable.inArray1Ptr)),
148                 Sse.LoadVector128((Single*)(_dataTable.inArray2Ptr))
149             );
150
151             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, result);
152         }
153
154         public void RunBasicScenario_LoadAligned()
155         {
156             var result = Sse.CompareLessThanOrEqualOrderedScalar(
157                 Sse.LoadAlignedVector128((Single*)(_dataTable.inArray1Ptr)),
158                 Sse.LoadAlignedVector128((Single*)(_dataTable.inArray2Ptr))
159             );
160
161             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, result);
162         }
163
164         public void RunReflectionScenario_UnsafeRead()
165         {
166             var result = typeof(Sse).GetMethod(nameof(Sse.CompareLessThanOrEqualOrderedScalar), new Type[] { typeof(Vector128<Single>), typeof(Vector128<Single>) })
167                                      .Invoke(null, new object[] {
168                                         Unsafe.Read<Vector128<Single>>(_dataTable.inArray1Ptr),
169                                         Unsafe.Read<Vector128<Single>>(_dataTable.inArray2Ptr)
170                                      });
171
172             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, (bool)(result));
173         }
174
175         public void RunReflectionScenario_Load()
176         {
177             var result = typeof(Sse).GetMethod(nameof(Sse.CompareLessThanOrEqualOrderedScalar), new Type[] { typeof(Vector128<Single>), typeof(Vector128<Single>) })
178                                      .Invoke(null, new object[] {
179                                         Sse.LoadVector128((Single*)(_dataTable.inArray1Ptr)),
180                                         Sse.LoadVector128((Single*)(_dataTable.inArray2Ptr))
181                                      });
182
183             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, (bool)(result));
184         }
185
186         public void RunReflectionScenario_LoadAligned()
187         {
188             var result = typeof(Sse).GetMethod(nameof(Sse.CompareLessThanOrEqualOrderedScalar), new Type[] { typeof(Vector128<Single>), typeof(Vector128<Single>) })
189                                      .Invoke(null, new object[] {
190                                         Sse.LoadAlignedVector128((Single*)(_dataTable.inArray1Ptr)),
191                                         Sse.LoadAlignedVector128((Single*)(_dataTable.inArray2Ptr))
192                                      });
193
194             ValidateResult(_dataTable.inArray1Ptr, _dataTable.inArray2Ptr, (bool)(result));
195         }
196
197         public void RunClsVarScenario()
198         {
199             var result = Sse.CompareLessThanOrEqualOrderedScalar(
200                 _clsVar1,
201                 _clsVar2
202             );
203
204             ValidateResult(_clsVar1, _clsVar2, result);
205         }
206
207         public void RunLclVarScenario_UnsafeRead()
208         {
209             var left = Unsafe.Read<Vector128<Single>>(_dataTable.inArray1Ptr);
210             var right = Unsafe.Read<Vector128<Single>>(_dataTable.inArray2Ptr);
211             var result = Sse.CompareLessThanOrEqualOrderedScalar(left, right);
212
213             ValidateResult(left, right, result);
214         }
215
216         public void RunLclVarScenario_Load()
217         {
218             var left = Sse.LoadVector128((Single*)(_dataTable.inArray1Ptr));
219             var right = Sse.LoadVector128((Single*)(_dataTable.inArray2Ptr));
220             var result = Sse.CompareLessThanOrEqualOrderedScalar(left, right);
221
222             ValidateResult(left, right, result);
223         }
224
225         public void RunLclVarScenario_LoadAligned()
226         {
227             var left = Sse.LoadAlignedVector128((Single*)(_dataTable.inArray1Ptr));
228             var right = Sse.LoadAlignedVector128((Single*)(_dataTable.inArray2Ptr));
229             var result = Sse.CompareLessThanOrEqualOrderedScalar(left, right);
230
231             ValidateResult(left, right, result);
232         }
233
234         public void RunLclFldScenario()
235         {
236             var test = new BooleanComparisonOpTest__CompareLessThanOrEqualOrderedScalarBoolean();
237             var result = Sse.CompareLessThanOrEqualOrderedScalar(test._fld1, test._fld2);
238
239             ValidateResult(test._fld1, test._fld2, result);
240         }
241
242         public void RunFldScenario()
243         {
244             var result = Sse.CompareLessThanOrEqualOrderedScalar(_fld1, _fld2);
245
246             ValidateResult(_fld1, _fld2, result);
247         }
248
249         public void RunUnsupportedScenario()
250         {
251             Succeeded = false;
252
253             try
254             {
255                 RunBasicScenario_UnsafeRead();
256             }
257             catch (PlatformNotSupportedException)
258             {
259                 Succeeded = true;
260             }
261         }
262
263         private void ValidateResult(Vector128<Single> left, Vector128<Single> right, bool result, [CallerMemberName] string method = "")
264         {
265             Single[] inArray1 = new Single[Op1ElementCount];
266             Single[] inArray2 = new Single[Op2ElementCount];
267
268             Unsafe.WriteUnaligned(ref Unsafe.As<Single, byte>(ref inArray1[0]), left);
269             Unsafe.WriteUnaligned(ref Unsafe.As<Single, byte>(ref inArray2[0]), right);
270
271             ValidateResult(inArray1, inArray2, result, method);
272         }
273
274         private void ValidateResult(void* left, void* right, bool result, [CallerMemberName] string method = "")
275         {
276             Single[] inArray1 = new Single[Op1ElementCount];
277             Single[] inArray2 = new Single[Op2ElementCount];
278
279             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Single, byte>(ref inArray1[0]), ref Unsafe.AsRef<byte>(left), VectorSize);
280             Unsafe.CopyBlockUnaligned(ref Unsafe.As<Single, byte>(ref inArray2[0]), ref Unsafe.AsRef<byte>(right), VectorSize);
281
282             ValidateResult(inArray1, inArray2, result, method);
283         }
284
285         private void ValidateResult(Single[] left, Single[] right, bool result, [CallerMemberName] string method = "")
286         {
287             if ((left[0] <= right[0]) != result)
288             {
289                 Succeeded = false;
290
291                 Console.WriteLine($"{nameof(Sse)}.{nameof(Sse.CompareLessThanOrEqualOrderedScalar)}<Boolean>(Vector128<Single>, Vector128<Single>): {method} failed:");
292                 Console.WriteLine($"    left: ({string.Join(", ", left)})");
293                 Console.WriteLine($"   right: ({string.Join(", ", right)})");
294                 Console.WriteLine($"  result: ({string.Join(", ", result)})");
295                 Console.WriteLine();
296             }
297         }
298     }
299 }