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158 lines
4.0 KiB
C
158 lines
4.0 KiB
C
//
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// test_vec3f.c
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// tests
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//
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// Created by Loïc GUEZO on 21/06/2025.
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//
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#include <assert.h>
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#include <stdio.h>
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#include "../src/math/vec4.h"
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#define EPSILON 1e-6f
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void test_vec4f_creation() {
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Vec4f_t v = vec4f(1.f, 2.f, 3.f, 4.f);
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assert(fabsf(v.x - 1.f) < EPSILON);
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assert(fabsf(v.y - 2.f) < EPSILON);
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assert(fabsf(v.z - 3.f) < EPSILON);
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assert(fabsf(v.w - 4.f) < EPSILON);
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}
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// a -> [1, 2, 3, 4]
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// b -> [5, 6, 7, 8]
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// r -> [6, 8, 10, 12]
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void test_vec4f_add() {
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Vec4f_t a = vec4f(1.f, 2.f, 3.f, 4.f);
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Vec4f_t b = vec4f(5.f, 6.f, 7.f, 8.f);
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Vec4f_t r = vec4f_add(a, b);
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assert(fabsf(r.x - 6.f) < EPSILON);
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assert(fabsf(r.y - 8.f) < EPSILON);
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assert(fabsf(r.z - 10.f) < EPSILON);
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assert(fabsf(r.w - 12.f) < EPSILON);
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}
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// a -> [5, 6, 7, 8]
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// b -> [1, 2, 3, 4]
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// r -> [4, 4, 4, 4]
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void test_vec4f_sub() {
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Vec4f_t a = vec4f(5.f, 6.f, 7.f, 8.f);
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Vec4f_t b = vec4f(1.f, 2.f, 3.f, 4.f);
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Vec4f_t r = vec4f_sub(a, b);
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assert(fabsf(r.x - 4.f) < EPSILON);
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assert(fabsf(r.y - 4.f) < EPSILON);
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assert(fabsf(r.z - 4.f) < EPSILON);
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assert(fabsf(r.w - 4.f) < EPSILON);
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}
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// a -> [1, 2, 3, 4]
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// r -> [2, 4, 6, 8]
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void test_vec4f_scale() {
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Vec4f_t a = vec4f(1.f, 2.f, 3.f, 4.f);
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Vec4f_t r = vec4f_scale(a, 2.f);
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assert(fabsf(r.x - 2.f) < EPSILON);
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assert(fabsf(r.y - 4.f) < EPSILON);
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assert(fabsf(r.z - 6.f) < EPSILON);
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assert(fabsf(r.w - 8.f) < EPSILON);
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}
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// dot product:
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// + : same direction
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// 0 : orthgonal
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// - : opposite direction
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void test_vec4f_dot() {
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Vec4f_t a = vec4f(1.f, 2.f, 3.f, 4.f);
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Vec4f_t b = vec4f(5.f, 6.f, 7.f, 8.f);
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float d = vec4f_dot(a, b);
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assert(fabsf(d - (1*5 + 2*6 + 3*7 + 4*8)) < EPSILON);
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}
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// normalize:
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// [4, 0, 0, 0] -> [1, 0, 0, 0]
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void test_vec4f_norm() {
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Vec4f_t v = vec4f(3.f, 0.f, 0.f, 0.f);
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Vec4f_t n = vec4f_norm(v);
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assert(fabsf(n.x - 1.f) < EPSILON);
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assert(fabsf(n.y) < EPSILON);
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assert(fabsf(n.z) < EPSILON);
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assert(fabsf(n.w) < EPSILON);
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}
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// lerp:
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// return vector between a and b
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// if t = 0.5
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// a = [0, 0, 0, 0]
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// b = [3, 3, 3, 3]
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// r = [1.5, 1.5, 1.5, 1.5] (t = 0.5) is middle
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void test_vec4f_lerp() {
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Vec4f_t a = vec4f(0.f, 0.f, 0.f, 0.f);
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Vec4f_t b = vec4f(1.f, 1.f, 1.f, 1.f);
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Vec4f_t r = vec4f_lerp(a, b, 0.5f);
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assert(fabsf(r.x - 0.5f) < EPSILON);
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assert(fabsf(r.y - 0.5f) < EPSILON);
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assert(fabsf(r.z - 0.5f) < EPSILON);
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assert(fabsf(r.w - 0.5f) < EPSILON);
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}
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// angle:
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// return angle of two vectors
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void test_vec4f_angle() {
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Vec4f_t a = vec4f(1.f, 0.f, 0.f, 0.f);
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Vec4f_t b = vec4f(0.f, 1.f, 0.f, 0.f);
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float angle = vec4f_angle(a, b);
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assert(fabsf(angle - (float)(M_PI / 2)) < EPSILON);
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}
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// proj:
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// return size of a on b
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void test_vec4f_proj() {
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Vec4f_t a = vec4f(2.f, 0.f, 0.f, 0.f);
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Vec4f_t b = vec4f(1.f, 0.f, 0.f, 0.f);
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Vec4f_t r = vec4f_proj(a, b);
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assert(fabsf(r.x - 2.f) < EPSILON);
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assert(fabsf(r.y) < EPSILON);
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assert(fabsf(r.z) < EPSILON);
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assert(fabsf(r.w) < EPSILON);
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}
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// refl:
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// return a bounce vector
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// raytracing
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void test_vec4f_refl() {
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Vec4f_t v = vec4f(1.f, -1.f, 0.f, 0.f);
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Vec4f_t normal = vec4f(0.f, 1.f, 0.f, 0.f);
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Vec4f_t r = vec4f_refl(v, normal);
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assert(fabsf(r.x - 1.f) < EPSILON);
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assert(fabsf(r.y - 1.f) < EPSILON);
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assert(fabsf(r.z) < EPSILON);
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assert(fabsf(r.w) < EPSILON);
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}
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// dist:
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// return distance between two vectors
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void test_vec4f_dist() {
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Vec4f_t a = vec4f(1.f, 0.f, 0.f, 0.f);
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Vec4f_t b = vec4f(0.f, 0.f, 0.f, 0.f);
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float d = vec4f_dist(a, b);
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assert(fabsf(d - 1.f) < EPSILON);
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}
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void run_all_tests() {
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test_vec4f_creation();
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test_vec4f_add();
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test_vec4f_sub();
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test_vec4f_scale();
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test_vec4f_dot();
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test_vec4f_norm();
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test_vec4f_lerp();
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test_vec4f_angle();
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test_vec4f_proj();
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test_vec4f_refl();
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test_vec4f_dist();
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}
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int main(void) {
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run_all_tests();
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return 0; // success
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}
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