NoiseTools.cs 4.5 KB

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  1. namespace VolumetricFogAndMist2 {
  2. public static class NoiseTools {
  3. static float FADE(float t) {
  4. return t * t * t * (t * (t * 6 - 15) + 10);
  5. }
  6. static int FASTFLOOR(float x) {
  7. return (x > 0) ? (int)x : (int)x - 1;
  8. }
  9. static float LERP(float t, float a, float b) {
  10. return a + t * (b - a);
  11. }
  12. static byte[] perm = {151, 160, 137, 91, 90, 15,
  13. 131, 13, 201, 95, 96, 53, 194, 233, 7, 225, 140, 36, 103, 30, 69, 142, 8, 99, 37, 240, 21, 10, 23,
  14. 190, 6, 148, 247, 120, 234, 75, 0, 26, 197, 62, 94, 252, 219, 203, 117, 35, 11, 32, 57, 177, 33,
  15. 88, 237, 149, 56, 87, 174, 20, 125, 136, 171, 168, 68, 175, 74, 165, 71, 134, 139, 48, 27, 166,
  16. 77, 146, 158, 231, 83, 111, 229, 122, 60, 211, 133, 230, 220, 105, 92, 41, 55, 46, 245, 40, 244,
  17. 102, 143, 54, 65, 25, 63, 161, 1, 216, 80, 73, 209, 76, 132, 187, 208, 89, 18, 169, 200, 196,
  18. 135, 130, 116, 188, 159, 86, 164, 100, 109, 198, 173, 186, 3, 64, 52, 217, 226, 250, 124, 123,
  19. 5, 202, 38, 147, 118, 126, 255, 82, 85, 212, 207, 206, 59, 227, 47, 16, 58, 17, 182, 189, 28, 42,
  20. 223, 183, 170, 213, 119, 248, 152, 2, 44, 154, 163, 70, 221, 153, 101, 155, 167, 43, 172, 9,
  21. 129, 22, 39, 253, 19, 98, 108, 110, 79, 113, 224, 232, 178, 185, 112, 104, 218, 246, 97, 228,
  22. 251, 34, 242, 193, 238, 210, 144, 12, 191, 179, 162, 241, 81, 51, 145, 235, 249, 14, 239, 107,
  23. 49, 192, 214, 31, 181, 199, 106, 157, 184, 84, 204, 176, 115, 121, 50, 45, 127, 4, 150, 254,
  24. 138, 236, 205, 93, 222, 114, 67, 29, 24, 72, 243, 141, 128, 195, 78, 66, 215, 61, 156, 180,
  25. 151, 160, 137, 91, 90, 15,
  26. 131, 13, 201, 95, 96, 53, 194, 233, 7, 225, 140, 36, 103, 30, 69, 142, 8, 99, 37, 240, 21, 10, 23,
  27. 190, 6, 148, 247, 120, 234, 75, 0, 26, 197, 62, 94, 252, 219, 203, 117, 35, 11, 32, 57, 177, 33,
  28. 88, 237, 149, 56, 87, 174, 20, 125, 136, 171, 168, 68, 175, 74, 165, 71, 134, 139, 48, 27, 166,
  29. 77, 146, 158, 231, 83, 111, 229, 122, 60, 211, 133, 230, 220, 105, 92, 41, 55, 46, 245, 40, 244,
  30. 102, 143, 54, 65, 25, 63, 161, 1, 216, 80, 73, 209, 76, 132, 187, 208, 89, 18, 169, 200, 196,
  31. 135, 130, 116, 188, 159, 86, 164, 100, 109, 198, 173, 186, 3, 64, 52, 217, 226, 250, 124, 123,
  32. 5, 202, 38, 147, 118, 126, 255, 82, 85, 212, 207, 206, 59, 227, 47, 16, 58, 17, 182, 189, 28, 42,
  33. 223, 183, 170, 213, 119, 248, 152, 2, 44, 154, 163, 70, 221, 153, 101, 155, 167, 43, 172, 9,
  34. 129, 22, 39, 253, 19, 98, 108, 110, 79, 113, 224, 232, 178, 185, 112, 104, 218, 246, 97, 228,
  35. 251, 34, 242, 193, 238, 210, 144, 12, 191, 179, 162, 241, 81, 51, 145, 235, 249, 14, 239, 107,
  36. 49, 192, 214, 31, 181, 199, 106, 157, 184, 84, 204, 176, 115, 121, 50, 45, 127, 4, 150, 254,
  37. 138, 236, 205, 93, 222, 114, 67, 29, 24, 72, 243, 141, 128, 195, 78, 66, 215, 61, 156, 180
  38. };
  39. static float Grad(int hash, float x, float y) {
  40. int h = hash & 7; // Convert low 3 bits of hash code
  41. float u = h < 4 ? x : y; // into 8 simple gradient directions,
  42. float v = h < 4 ? y : x; // and compute the dot product with (x,y).
  43. return (((h & 1) != 0) ? -u : u) + (((h & 2) != 0) ? -2.0f * v : 2.0f * v);
  44. }
  45. public static float GetTilablePerlinValue(float x, float y, int px, int py) {
  46. int ix0, iy0, ix1, iy1;
  47. float fx0, fy0, fx1, fy1;
  48. float s, t, nx0, nx1, n0, n1;
  49. ix0 = FASTFLOOR(x); // Integer part of x
  50. iy0 = FASTFLOOR(y); // Integer part of y
  51. fx0 = x - ix0; // Fractional part of x
  52. fy0 = y - iy0; // Fractional part of y
  53. fx1 = fx0 - 1.0f;
  54. fy1 = fy0 - 1.0f;
  55. ix1 = ((ix0 + 1) % px) & 0xff; // Wrap to 0..px-1 and wrap to 0..255
  56. iy1 = ((iy0 + 1) % py) & 0xff; // Wrap to 0..py-1 and wrap to 0..255
  57. ix0 = (ix0 % px) & 0xff;
  58. iy0 = (iy0 % py) & 0xff;
  59. t = FADE(fy0);
  60. s = FADE(fx0);
  61. nx0 = Grad(perm[ix0 + perm[iy0]], fx0, fy0);
  62. nx1 = Grad(perm[ix0 + perm[iy1]], fx0, fy1);
  63. n0 = LERP(t, nx0, nx1);
  64. nx0 = Grad(perm[ix1 + perm[iy0]], fx1, fy0);
  65. nx1 = Grad(perm[ix1 + perm[iy1]], fx1, fy1);
  66. n1 = LERP(t, nx0, nx1);
  67. return 0.507f * (LERP(s, n0, n1));
  68. }
  69. }
  70. }