Fix barycentric coordinates calculation #2
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output.png
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output.png
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24
src/main.c
24
src/main.c
@ -32,23 +32,23 @@ int main(void) {
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return TINY_EXIT_RENDER_INIT_FAILED;
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return TINY_EXIT_RENDER_INIT_FAILED;
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}
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}
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// Model obj = load_obj_file(arena, RESOURCE("head.obj"),
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Model obj = load_obj_file(arena, RESOURCE("head.obj"), RESOURCE("head.pnm"),
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// RESOURCE("head.pnm"),
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RESOURCE("head_nm.pnm"));
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// RESOURCE("head_nm.pnm"));
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/* Model obj = */
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Model obj =
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/* load_obj_file(arena, RESOURCE("polygon.obj"), RESOURCE("grid.pnm"),
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load_obj_file(arena, RESOURCE("polygon.obj"), RESOURCE("grid.pnm"), NULL);
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* NULL); */
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if (IS_INVALID_MODEL(obj)) {
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if (IS_INVALID_MODEL(obj)) {
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return TINY_EXIT_MODEL_LOAD_FAILED;
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return TINY_EXIT_MODEL_LOAD_FAILED;
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}
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}
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PhongMaterial material = {
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PhongMaterial material = {
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// .ambient = 0.3f,
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.ambient = 0.3f,
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// .diffuse = 1.5f,
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.diffuse = 1.5f,
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// .specular = 0.5f,
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.specular = 2.0f,
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.ambient = 2.0f,
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/* .ambient = 0.0f, */
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.diffuse = 0.0f,
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/* .diffuse = 0.0f, */
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.specular = 0.0f,
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/* .specular = 2.0f, */
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.shininess = 0.1f,
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.shininess = 1.5f,
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};
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};
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obj.material = material;
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obj.material = material;
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@ -25,9 +25,7 @@ internal void fill_triangle(Render *render, ShaderID shader,
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const Model *model, RenderType type);
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const Model *model, RenderType type);
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internal TriangleBBox get_triangle_bbox(const Image *img,
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internal TriangleBBox get_triangle_bbox(const Image *img,
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V3f vertices[TRIANGLE_VERTICES]);
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V3f vertices[TRIANGLE_VERTICES]);
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internal V3f get_barycentric_coords(f32 d00, f32 d01, f32 d11, f32 denom,
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internal V3f get_barycentric_coords(V3f a, V3f b, V3f c, V3f p);
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const V2f *v0, const V2f *v1,
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const V2f *v2);
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internal V3f get_viewport_vertex(const V3f *vertex, const Image *img);
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internal V3f get_viewport_vertex(const V3f *vertex, const Image *img);
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bool init_render(Arena *arena, Render *render, u64 width, u64 height) {
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bool init_render(Arena *arena, Render *render, u64 width, u64 height) {
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@ -109,14 +107,8 @@ internal void fill_triangle(Render *render, ShaderID shader,
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V3f vert0 = vertices[0];
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V3f vert0 = vertices[0];
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V3f vert1 = vertices[1];
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V3f vert1 = vertices[1];
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V3f vert2 = vertices[2];
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V3f vert2 = vertices[2];
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V3f point;
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V2f v0 = V2(V2f, f32, vert0.x, vert0.y, vert1.x, vert1.y);
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V2f v1 = V2(V2f, f32, vert0.x, vert0.y, vert2.x, vert2.y);
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f32 d00 = dot_v2(v0, v0);
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f32 d01 = dot_v2(v0, v1);
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f32 d11 = dot_v2(v1, v1);
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f32 denom = d00 * d11 - d01 * d01;
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V2f v2;
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V3f coords;
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V3f coords;
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f32 z;
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f32 z;
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f32 zbuf;
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f32 zbuf;
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@ -134,9 +126,9 @@ internal void fill_triangle(Render *render, ShaderID shader,
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for (u64 y = bbox.y0; y <= bbox.y1; ++y) {
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for (u64 y = bbox.y0; y <= bbox.y1; ++y) {
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for (u64 x = bbox.x0; x <= bbox.x1; ++x) {
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for (u64 x = bbox.x0; x <= bbox.x1; ++x) {
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v2 = V2(V2f, f32, vert0.x, vert0.y, x, y);
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point = (V3f){x, y, 1.0f};
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coords = get_barycentric_coords(d00, d01, d11, denom, &v0, &v1, &v2);
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coords = get_barycentric_coords(vert0, vert1, vert2, point);
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if (coords.x < 0.0f || coords.y < 0.0f || coords.x + coords.y > 1.0f) {
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if (coords.x < 0.0f || coords.y < 0.0f || coords.z < 0.0f) {
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continue;
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continue;
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}
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}
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@ -200,21 +192,21 @@ internal TriangleBBox get_triangle_bbox(const Image *img,
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};
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};
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}
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}
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internal V3f get_barycentric_coords(f32 d00, f32 d01, f32 d11, f32 denom,
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internal V3f get_barycentric_coords(V3f a, V3f b, V3f c, V3f p) {
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const V2f *v0, const V2f *v1,
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V3f s[2];
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const V2f *v2) {
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if (denom == 0.0f) {
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for (int i = 2; i--;) {
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return (V3f){-INFINITY, -INFINITY, -INFINITY};
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s[i].x = c.elements[i] - a.elements[i];
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s[i].y = b.elements[i] - a.elements[i];
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s[i].z = a.elements[i] - p.elements[i];
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}
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}
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f32 d20 = dot_v2((*v2), (*v0));
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V3f u = cross_product(s[0], s[1]);
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f32 d21 = dot_v2((*v2), (*v1));
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if (fabsf(u.z) < 1e-2) {
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return (V3f){-1.0f, 1.0f, 1.0f};
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}
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f32 v = (d11 * d20 - d01 * d21) / denom;
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return (V3f){1.f - (u.x + u.y) / u.z, u.y / u.z, u.x / u.z};
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f32 w = (d00 * d21 - d01 * d20) / denom;
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f32 u = 1.0f - v - w;
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return (V3f){v, w, u};
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}
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}
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internal V3f get_viewport_vertex(const V3f *vertex, const Image *img) {
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internal V3f get_viewport_vertex(const V3f *vertex, const Image *img) {
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@ -46,14 +46,14 @@ internal M4x4f get_projection_matrix(ProjectionType projection_type);
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internal f32 get_intensity(const V3f *normal);
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internal f32 get_intensity(const V3f *normal);
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void load_shaders(void) {
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void load_shaders(void) {
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// M4x4f model_view = lookat(g_eye, g_target, g_up);
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M4x4f model_view = lookat(g_eye, g_target, g_up);
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// M4x4f orthographic_projection =
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M4x4f orthographic_projection =
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// get_projection_matrix(PROJECTION_TYPE_ORTHOGRAPHIC);
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get_projection_matrix(PROJECTION_TYPE_ORTHOGRAPHIC);
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// M4x4f perspective_projection =
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M4x4f perspective_projection =
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// get_projection_matrix(PROJECTION_TYPE_PERSPECTIVE);
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get_projection_matrix(PROJECTION_TYPE_PERSPECTIVE);
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M4x4f model_view = mat4x4_identity;
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/* M4x4f model_view = mat4x4_identity; */
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M4x4f orthographic_projection = mat4x4_identity;
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/* M4x4f orthographic_projection = mat4x4_identity; */
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M4x4f perspective_projection = mat4x4_identity;
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/* M4x4f perspective_projection = mat4x4_identity; */
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perspective.model_view = orthographic.model_view = model_view;
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perspective.model_view = orthographic.model_view = model_view;
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perspective.projection = perspective_projection;
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perspective.projection = perspective_projection;
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@ -1,4 +1,5 @@
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#include "vec.h"
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#include "vec.h"
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#include <assert.h>
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#define DEPTH_MAX 255
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#define DEPTH_MAX 255
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@ -31,6 +31,9 @@ struct f32x2 {
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typedef struct f32x3 V3f;
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typedef struct f32x3 V3f;
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struct f32x3 {
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struct f32x3 {
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union {
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f32 elements[3];
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struct {
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union {
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union {
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f32 x;
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f32 x;
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f32 r;
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f32 r;
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@ -43,6 +46,8 @@ struct f32x3 {
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f32 z;
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f32 z;
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f32 b;
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f32 b;
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};
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};
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};
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};
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};
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};
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typedef struct f32x4 V4f;
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typedef struct f32x4 V4f;
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