testRcpSqrt.js 6.4 KB

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  1. //-------------------------------------------------------------------------------------------------------
  2. // Copyright (C) Microsoft Corporation and contributors. All rights reserved.
  3. // Licensed under the MIT license. See LICENSE.txt file in the project root for full license information.
  4. //-------------------------------------------------------------------------------------------------------
  5. WScript.LoadScriptFile("..\\UnitTestFramework\\SimdJsHelpers.js");
  6. function asmModule(stdlib, imports) {
  7. "use asm";
  8. var i4 = stdlib.SIMD.Int32x4;
  9. var i4check = i4.check;
  10. var i4splat = i4.splat;
  11. var i4fromFloat32x4 = i4.fromFloat32x4;
  12. var i4fromFloat32x4Bits = i4.fromFloat32x4Bits;
  13. //var i4abs = i4.abs;
  14. var i4neg = i4.neg;
  15. var i4add = i4.add;
  16. var i4sub = i4.sub;
  17. var i4mul = i4.mul;
  18. //var i4swizzle = i4.swizzle;
  19. //var i4shuffle = i4.shuffle;
  20. var i4lessThan = i4.lessThan;
  21. var i4equal = i4.equal;
  22. var i4greaterThan = i4.greaterThan;
  23. var i4select = i4.select;
  24. var i4and = i4.and;
  25. var i4or = i4.or;
  26. var i4xor = i4.xor;
  27. var i4not = i4.not;
  28. //var i4shiftLeftByScalar = i4.shiftLeftByScalar;
  29. //var i4shiftRightByScalar = i4.shiftRightByScalar;
  30. //var i4shiftRightArithmeticByScalar = i4.shiftRightArithmeticByScalar;
  31. var f4 = stdlib.SIMD.Float32x4;
  32. var f4check = f4.check;
  33. var f4splat = f4.splat;
  34. var f4fromInt32x4 = f4.fromInt32x4;
  35. var f4fromInt32x4Bits = f4.fromInt32x4Bits;
  36. var f4abs = f4.abs;
  37. var f4neg = f4.neg;
  38. var f4add = f4.add;
  39. var f4sub = f4.sub;
  40. var f4mul = f4.mul;
  41. var f4div = f4.div;
  42. var f4min = f4.min;
  43. var f4max = f4.max;
  44. var f4sqrt = f4.sqrt;
  45. //var f4swizzle = f4.swizzle;
  46. //var f4shuffle = f4.shuffle;
  47. var f4lessThan = f4.lessThan;
  48. var f4lessThanOrEqual = f4.lessThanOrEqual;
  49. var f4equal = f4.equal;
  50. var f4notEqual = f4.notEqual;
  51. var f4greaterThan = f4.greaterThan;
  52. var f4greaterThanOrEqual = f4.greaterThanOrEqual;
  53. var f4select = f4.select;
  54. var f4reciprocal = f4.reciprocalApproximation;
  55. var f4reciprocalSqrt = f4.reciprocalSqrtApproximation;
  56. var fround = stdlib.Math.fround;
  57. var globImportF4 = f4check(imports.g1); // global var import
  58. var globImportI4 = i4check(imports.g2); // global var import
  59. var g1 = f4(-5033.2,-3401.0,665.34,32234.1); // global var initialized
  60. var g2 = i4(1065353216, -1073741824, -1077936128, 1082130432); // global var initialized
  61. var gval = 1234;
  62. var gval2 = 1234.0;
  63. var loopCOUNT = 3;
  64. function func1()
  65. {
  66. var x = f4(0.0,0.0,0.0,0.0);
  67. var y = f4(0.0,0.0,0.0,0.0);
  68. var loopIndex = 0;
  69. while ( (loopIndex|0) < (loopCOUNT|0)) {
  70. y = f4(5.0,-3.0,6.34,-2.0);
  71. x = f4reciprocal(y)
  72. loopIndex = (loopIndex + 1) | 0;
  73. }
  74. return f4check(x);
  75. }
  76. function func2()
  77. {
  78. var x = f4(0.0,0.0,0.0,0.0);
  79. var y = f4(0.0,0.0,0.0,0.0);
  80. var loopIndex = 0;
  81. for (loopIndex = 0; (loopIndex | 0) < (loopCOUNT | 0) ; loopIndex = (loopIndex + 1) | 0)
  82. {
  83. y = globImportF4;
  84. x = f4reciprocal(y);
  85. }
  86. return f4check(x);
  87. }
  88. function func3()
  89. {
  90. var x = f4(0.0,0.0,0.0,0.0);
  91. var y = f4(0.0,0.0,0.0,0.0);
  92. var loopIndex = 0;
  93. loopIndex = loopCOUNT | 0;
  94. do {
  95. y = g1;
  96. x = f4reciprocal(y);
  97. loopIndex = (loopIndex - 1) | 0;
  98. }
  99. while ( (loopIndex | 0) > 0);
  100. return f4check(x);
  101. }
  102. function func4()
  103. {
  104. var x = f4(0.0,0.0,0.0,0.0);
  105. var y = f4(0.0,0.0,0.0,0.0);
  106. var loopIndex = 0;
  107. while ( (loopIndex|0) < (loopCOUNT|0)) {
  108. y = f4(5.0,-3.0,6.34,-2.0);
  109. x = f4abs(y)
  110. x = f4reciprocalSqrt(x);
  111. loopIndex = (loopIndex + 1) | 0;
  112. }
  113. return f4check(x);
  114. }
  115. function func5()
  116. {
  117. var x = f4(0.0,0.0,0.0,0.0);
  118. var y = f4(0.0,0.0,0.0,0.0);
  119. var loopIndex = 0;
  120. for (loopIndex = 0; (loopIndex | 0) < (loopCOUNT | 0) ; loopIndex = (loopIndex + 1) | 0)
  121. {
  122. y = globImportF4;
  123. x = f4abs(y);
  124. x = f4reciprocalSqrt(x);
  125. }
  126. return f4check(x);
  127. }
  128. function func6()
  129. {
  130. var x = f4(0.0,0.0,0.0,0.0);
  131. var y = f4(0.0,0.0,0.0,0.0);
  132. var loopIndex = 0;
  133. loopIndex = loopCOUNT | 0;
  134. do {
  135. y = g1;
  136. x = f4abs(y);
  137. x = f4reciprocalSqrt(x);
  138. loopIndex = (loopIndex - 1) | 0;
  139. }
  140. while ( (loopIndex | 0) > 0);
  141. return f4check(x);
  142. }
  143. // TODO: Test conversion of returned value
  144. function value()
  145. {
  146. var ret = 1.0;
  147. var i = 1.0;
  148. var loopIndex = 0;
  149. while ( (loopIndex|0) < (loopCOUNT|0)) {
  150. ret = ret + i;
  151. loopIndex = (loopIndex + 1) | 0;
  152. }
  153. return +ret;
  154. }
  155. return {func1:func1, func2:func2, func3:func2, func4:func4, func5:func5, func6:func6};
  156. }
  157. var m = asmModule(this, {g1:SIMD.Float32x4(90934.2,123.9,419.39,449.0), g2:SIMD.Int32x4(-1065353216, -1073741824,-1077936128, -1082130432)});
  158. var ret1 = m.func1();
  159. var ret2 = m.func2();
  160. var ret3 = m.func3();
  161. var ret4 = m.func4();
  162. var ret5 = m.func5();
  163. var ret6 = m.func6();
  164. equalSimd([0.20000000298023224, -0.3333333432674408, 0.15772870182991028, -0.5], ret1, SIMD.Float32x4, "func1");
  165. equalSimd([0.000010996962373610586, 0.008071024902164936, 0.0023844153620302677, 0.0022271715570241213], ret2, SIMD.Float32x4, "func2");
  166. equalSimd([0.000010996962373610586, 0.008071024902164936, 0.0023844153620302677, 0.0022271715570241213], ret3, SIMD.Float32x4, "func3");
  167. equalSimd([0.4472135901451111, 0.5773502588272095, 0.3971507251262665, 0.7071067690849304], ret4, SIMD.Float32x4, "func4")
  168. equalSimd([0.0033161668106913566, 0.08983888477087021, 0.04883047565817833, 0.04719291999936104], ret5, SIMD.Float32x4, "func5");
  169. equalSimd([0.01409541629254818, 0.017147336155176162, 0.038768425583839416, 0.005569833796471357], ret6, SIMD.Float32x4, "func6");
  170. print("PASS");