* Updated target to Raylib 6 + synced invoke called with the changes in C. [WARNING: Breaking changes!] * Added severial examples. Corrected towards the correct return type and add utilities to prevent working with pointers * Additional resources from the Raylib repo. * Fixed additional pinvokes to match with the new raylib bindings. [Warning breaking changes!] * Fixing the QOL utils * Fixing the Mesh struct * Applying changes after review. Merged resources.LICENSE + raylib-cs.Native.csproj only targets dotnet8 * Updated README to reflect .NET 10 and Raylib 6 compatibility changes. * Updated shader colors, adjusted car model scale, disabled HDR in SkyboxDemo, and fixed camera mode assignment. Removed unused `Capacity` field in FilePathList struct. * Improved XML comments for consistency, fixed spacing and formatting across examples, added new resources to `resources.LICENSE`. * Updated XML comment for `GetDirectoryFileCountEx` to clarify behavior and filtering options. * Updated and clarified XML comments for methods and parameters, improved naming consistency, and refined shader-related functions. Renamed enums in `Shader.cs` for so it is inline with the upstream. * Improved XML comments for clarity and consistency in `Model.cs` and `Mesh.cs`, updated method and variable names for better readability, and adjusted logic in span creation methods. * Corrected XML comment capitalization in `Model.cs`. --------- Co-authored-by: Meatcorps <info@meatcorps.nl>
46 lines
1.4 KiB
GLSL
46 lines
1.4 KiB
GLSL
#version 330
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// Input vertex attributes
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in vec3 vertexPosition;
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in vec2 vertexTexCoord;
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in vec3 vertexNormal;
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in vec4 vertexColor;
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// Input uniform values
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uniform mat4 mvp;
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uniform mat4 matModel;
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uniform mat4 matNormal;
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uniform float time;
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uniform sampler2D perlinNoiseMap;
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// Output vertex attributes (to fragment shader)
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out vec3 fragPosition;
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out vec2 fragTexCoord;
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out vec3 fragNormal;
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out float height;
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void main()
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{
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// Calculate animated texture coordinates based on time and vertex position
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vec2 animatedTexCoord = sin(vertexTexCoord + vec2(sin(time + vertexPosition.x*0.1), cos(time + vertexPosition.z*0.1))*0.3);
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// Normalize animated texture coordinates to range [0, 1]
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animatedTexCoord = animatedTexCoord*0.5 + 0.5;
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// Fetch displacement from the perlin noise map
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float displacement = texture(perlinNoiseMap, animatedTexCoord).r*7; // Amplified displacement
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// Displace vertex position
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vec3 displacedPosition = vertexPosition + vec3(0.0, displacement, 0.0);
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// Send vertex attributes to fragment shader
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fragPosition = vec3(matModel*vec4(displacedPosition, 1.0));
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fragTexCoord = vertexTexCoord;
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fragNormal = normalize(vec3(matNormal*vec4(vertexNormal, 1.0)));
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height = displacedPosition.y*0.2; // send height to fragment shader for coloring
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// Calculate final vertex position
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gl_Position = mvp*vec4(displacedPosition , 1.0);
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}
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