| 1 | #include <glm/glm.hpp> | 
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| 2 | #include <iostream> | 
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| 3 | #include <ostream> | 
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| 4 |  | 
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| 5 | using namespace glm; | 
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| 6 |  | 
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| 7 | std::ostream& operator<<(std::ostream& os, glm::tvec3<float>& v) { | 
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| 8 | os << "<" << v.x << "," << v.y << "," << v.z << ">"; | 
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| 9 | return os; | 
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| 10 | } | 
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| 11 | std::ostream& operator<<(std::ostream& os, glm::tvec3<float>&& v) { | 
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| 12 | os << "<" << v.x << "," << v.y << "," << v.z << ">"; | 
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| 13 | return os; | 
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| 14 | } | 
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| 15 |  | 
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| 16 | float length_squared(glm::tvec3<float> v) { | 
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| 17 | return glm::length(v) * glm::length(v); | 
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| 18 | } | 
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| 19 |  | 
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| 20 | tvec3<float> project(glm::tvec3<float> u, glm::tvec3<float> v) { | 
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| 21 | return normalize(v) * dot(u, normalize(v)); | 
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| 22 | } | 
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| 23 |  | 
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| 24 | int main(void) { | 
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| 25 | tvec3<float> v1 = {1.f,2.f,3.f}; | 
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| 26 | std::cout << "ctor(x,y):" << v1 << std::endl; | 
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| 27 |  | 
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| 28 | tvec3<float> v2 = v1; | 
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| 29 | std::cout << "copy ctor:" << v2 << std::endl; | 
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| 30 |  | 
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| 31 | v2 = (tvec3<float>){3.f, 4.2f, -2.f}; | 
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| 32 | std::cout << "assignment:" << v2 << std::endl; | 
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| 33 |  | 
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| 34 | v2 = v1; | 
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| 35 | std::cout << "move assignment:" << v2 << std::endl; | 
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| 36 |  | 
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| 37 | // tvec3<float> v3 = 0; | 
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| 38 | // std::cout << "zero-init:" << v3 << std::endl; | 
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| 39 |  | 
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| 40 | // v1 = 0; | 
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| 41 | // std::cout << "zero-assign:" << v1 << std::endl; | 
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| 42 | // | 
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| 43 | // tvec3<float> v4 = {1.23f}; | 
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| 44 | // std::cout << "fill-ctor:" << v4 << std::endl; | 
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| 45 | // | 
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| 46 | v1 = (tvec3<float>){1.23f, 3.43f, 0.000002f}; | 
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| 47 | std::cout << "?-?:" << (v1 - (tvec3<float>){1.21f,3,1}) << std::endl; | 
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| 48 |  | 
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| 49 | v1 -= (tvec3<float>){1.23f, 3.43f, 0.000002f}; | 
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| 50 | std::cout << "?-=?:" << v1 << std::endl; | 
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| 51 |  | 
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| 52 | v1 = -v1; | 
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| 53 | std::cout << "-?:" << v1 << std::endl; | 
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| 54 |  | 
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| 55 |  | 
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| 56 |  | 
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| 57 |  | 
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| 58 |  | 
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| 59 | v1 = (tvec3<float>){1.5f, 2.75f, -14.2f}; | 
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| 60 | std::cout << "?+?:" << (v1 + (tvec3<float>){0.8f, -0.3f, 5}) << std::endl; | 
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| 61 |  | 
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| 62 | v1 += (tvec3<float>){0.8f, -0.3f, 5}; | 
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| 63 | std::cout << "?+=?:" << v1 << std::endl; | 
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| 64 |  | 
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| 65 | v1 = (tvec3<float>){1.5f, 2.75f, 100.3f}; | 
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| 66 | std::cout << "v*s:" << v1 * 3.f << std::endl; | 
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| 67 |  | 
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| 68 | std::cout << "s*v:" << 3.f * v1 << std::endl; | 
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| 69 |  | 
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| 70 | v1 *= 3; | 
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| 71 | std::cout << "?*=?:" << v1 << std::endl; | 
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| 72 |  | 
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| 73 | v1 = (tvec3<float>){2, -0.1f, 45}; | 
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| 74 | std::cout << "?/?:" << (v1 / 3.f) << std::endl; | 
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| 75 |  | 
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| 76 | v1 /= 3.f; | 
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| 77 | std::cout << "?/=?:" << v1 << std::endl; | 
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| 78 |  | 
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| 79 |  | 
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| 80 | v1 = (tvec3<float>){4,2,3}; | 
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| 81 | v2 = (tvec3<float>){0,-3,2}; | 
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| 82 | std::cout << "dot_1:" << dot(v1, v2) << std::endl; | 
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| 83 |  | 
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| 84 | v2 = (tvec3<float>){1.3f, -2, 12.2}; | 
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| 85 | std::cout << "dot_2:" << dot(v1, v2) << std::endl; | 
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| 86 |  | 
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| 87 |  | 
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| 88 | v1 = (tvec3<float>){1,2,3}; | 
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| 89 | std::cout << "length:" << length(v1) << std::endl; | 
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| 90 |  | 
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| 91 | std::cout << "length_squared:" << length_squared(v1) << std::endl; | 
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| 92 |  | 
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| 93 | v2 = (tvec3<float>){6, -3.2f, 1}; | 
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| 94 | std::cout << "distance:" << distance(v1, v2) << std::endl; | 
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| 95 |  | 
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| 96 | std::cout << "normalize:" << normalize(v2) << std::endl; | 
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| 97 |  | 
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| 98 | std::cout << "project:" << project((tvec3<float>){5,6,0}, (tvec3<float>){0, 0, 1}) << std::endl; | 
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| 99 | std::cout << "project_2:" << project((tvec3<float>){5,6,3.2f}, (tvec3<float>){10, 1, 4}) << std::endl; | 
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| 100 |  | 
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| 101 | v1 = (tvec3<float>){5,6,2.333f}; | 
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| 102 | v2 = (tvec3<float>){1,0,-13.5f}; | 
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| 103 | std::cout << "reflect:" << reflect(v1,normalize(v2)) << std::endl; | 
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| 104 |  | 
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| 105 | v2 = (tvec3<float>){0,-1,2}; | 
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| 106 | std::cout << "refract:" << refract(normalize(v1),normalize(v2),1.f) << std::endl; | 
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| 107 | std::cout << "refract:" << refract(normalize(v1),normalize(v2),1.f/1.33f) << std::endl; | 
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| 108 |  | 
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| 109 | tvec3<float> geometric_normal = {5,6,1}; | 
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| 110 | tvec3<float> perturbed_normal = {4,5.5f,2}; | 
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| 111 | tvec3<float> eyeline = {-1,0.002f,-1.0345f}; | 
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| 112 | std::cout << "faceforward_nochange:" << faceforward(perturbed_normal, eyeline, geometric_normal) << std::endl; | 
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| 113 |  | 
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| 114 | eyeline = (tvec3<float>){1,0.002f,-1.0345f}; | 
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| 115 | std::cout << "faceforward_flip:" << faceforward(perturbed_normal, eyeline, geometric_normal) << std::endl; | 
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| 116 | } | 
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| 117 |  | 
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