mirror of
https://github.com/KillzXGaming/Switch-Toolbox
synced 2024-12-26 04:43:09 +00:00
157ff75b79
Models can be cycled in the same editor. The active one now gets properly set. You can adjust the combo box to preview multiple models in the scene. Fixed a bug where some models would project on the top of the screen as duplicates.
576 lines
22 KiB
C#
576 lines
22 KiB
C#
using System;
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using System.Collections.Generic;
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using System.ComponentModel;
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using System.Drawing;
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using System.IO;
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using Switch_Toolbox.Library.Forms;
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using Switch_Toolbox.Library;
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using System.Windows.Forms;
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using FirstPlugin.Turbo.CourseMuuntStructs;
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using GL_EditorFramework.EditorDrawables;
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using OpenTK;
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using OpenTK.Graphics.OpenGL;
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using aampv1 = AampV1Library;
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using aampv2 = AampV2Library;
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using Switch_Toolbox.Library.Rendering;
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using Switch_Toolbox.Library.IO;
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using FirstPlugin.Turbo;
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namespace FirstPlugin.Forms
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{
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public partial class TurboMunntEditor : UserControl, IViewportContainer
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{
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Viewport viewport;
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GLControl2D viewport2D;
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bool IsLoaded = false;
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public TurboMunntEditor()
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{
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InitializeComponent();
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stTabControl1.myBackColor = FormThemes.BaseTheme.FormBackColor;
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treeView1.BackColor = FormThemes.BaseTheme.FormBackColor;
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treeView1.ForeColor = FormThemes.BaseTheme.FormForeColor;
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viewport = new Viewport(ObjectEditor.GetDrawableContainers());
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viewport.Dock = DockStyle.Fill;
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viewport.scene.SelectionChanged += Scene_SelectionChanged;
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stPanel4.Controls.Add(viewport);
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viewport2D = new GLControl2D();
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viewport2D.Dock = DockStyle.Fill;
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stPanel3.Controls.Add(viewport2D);
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}
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public Viewport GetViewport() => viewport;
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public void UpdateViewport()
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{
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if (viewport != null)
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viewport.UpdateViewport();
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}
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public AnimationPanel GetAnimationPanel() => null;
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CourseMuuntScene scene;
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string CourseFolder;
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public void LoadCourseInfo(System.Collections.IEnumerable by, string FilePath)
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{
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CourseFolder = System.IO.Path.GetDirectoryName(FilePath);
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scene = new CourseMuuntScene(by);
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//Add collsion (switch)
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if (File.Exists($"{CourseFolder}/course_kcl.szs"))
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scene.AddRenderableKcl($"{CourseFolder}/course_kcl.szs");
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//Add collsion (wii u)
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if (File.Exists($"{CourseFolder}/course.kcl"))
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scene.AddRenderableKcl($"{CourseFolder}/course.kcl");
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//Add probe lighting config (wii u)
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if (File.Exists($"{CourseFolder}/course.bglpbd"))
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scene.AddParameterArchive($"{CourseFolder}/course.bglpbd");
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//Add probe lighting config (switch)
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if (File.Exists($"{CourseFolder}/course_bglpbd.szs"))
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scene.AddParameterArchive($"{CourseFolder}/course_bglpbd.szs");
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//Add course model
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if (File.Exists($"{CourseFolder}/course_model.szs"))
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scene.AddRenderableBfres($"{CourseFolder}/course_model.szs");
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//Add camera mini map parameters
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if (File.Exists($"{CourseFolder}/course_mapcamera.bin"))
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scene.MapCamera = STFileLoader.OpenFileFormat($"{CourseFolder}/course_mapcamera.bin");
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if (scene.MapCamera != null)
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{
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var cam = (Course_MapCamera_bin)scene.MapCamera;
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var wrapper = new MapCameraWrapper();
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wrapper.Text = "course_mapcamera.bin";
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wrapper.CameraFile = cam;
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var pointConnection = new RenderableConnectedMapPoints(Color.Blue);
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Vector4 PositionColor = new Vector4(1, 0, 0, 1);
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Vector4 TargetColor = new Vector4(0, 1, 0, 1);
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Vector3 BoundingScale = new Vector3(cam.cameraData.BoundingWidth, 1, cam.cameraData.BoundingHeight);
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Vector3 CamTranslate = new Vector3(cam.cameraData.PositionX, cam.cameraData.PositionY, cam.cameraData.PositionZ);
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Vector3 CamTargetTranslate = new Vector3(cam.cameraData.TargetX, cam.cameraData.TargetY, cam.cameraData.TargetZ);
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wrapper.MapCameraPosition = new RenderablePathPoint(PositionColor, CamTranslate, new Vector3(0), new Vector3(100), cam);
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wrapper.MapCameraTarget = new RenderablePathPoint(TargetColor, CamTargetTranslate, new Vector3(0), BoundingScale, cam);
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pointConnection.AddRenderable(wrapper.MapCameraPosition);
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pointConnection.AddRenderable(wrapper.MapCameraTarget);
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viewport.AddDrawable(pointConnection);
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viewport.AddDrawable(wrapper.MapCameraPosition);
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viewport.AddDrawable(wrapper.MapCameraTarget);
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treeView1.Nodes.Add(wrapper);
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}
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foreach (AAMP aamp in scene.ParameterArchives)
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{
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if (aamp.aampFileV1 != null)
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LoadParameters(aamp.aampFileV1);
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else if (aamp.aampFileV2 != null)
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LoadParameters(aamp.aampFileV2);
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else
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throw new Exception("Failed to load parameter file " + aamp.FileName);
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}
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viewport.AddDrawable(new GL_EditorFramework.EditorDrawables.SingleObject(new OpenTK.Vector3(0)));
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viewport.LoadObjects();
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treeView1.Nodes.Add("Scene");
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foreach (var bfres in scene.BfresObjects)
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{
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viewport.AddDrawable(bfres.BFRESRender);
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treeView1.Nodes.Add(bfres);
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bfres.Checked = true;
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}
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if (scene.LapPaths.Count > 0) {
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AddPathDrawable("Lap Path", scene.LapPaths, Color.Blue);
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}
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if (scene.GravityPaths.Count > 0) {
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AddPathDrawable("Gravity Path", scene.GravityPaths, Color.Purple);
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}
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if (scene.EnemyPaths.Count > 0) {
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AddPathDrawable("Enemy Path", scene.EnemyPaths, Color.Red);
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}
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if (scene.GlidePaths.Count > 0) {
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AddPathDrawable("Glide Path", scene.GlidePaths, Color.Orange);
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}
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if (scene.ItemPaths.Count > 0) {
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AddPathDrawable("Item Path", scene.ItemPaths, Color.Yellow);
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}
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if (scene.PullPaths.Count > 0) {
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AddPathDrawable("Pull Path", scene.PullPaths, Color.GreenYellow);
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}
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if (scene.SteerAssistPaths.Count > 0) {
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AddPathDrawable("Steer Assist Path", scene.SteerAssistPaths, Color.Green);
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}
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if (scene.Paths.Count > 0) {
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AddPathDrawable("Path", scene.Paths, Color.Black);
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}
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if (scene.ObjPaths.Count > 0) {
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// AddPathDrawable("Object Path", scene.ObjPaths, Color.DarkSeaGreen);
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}
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if (scene.JugemPaths.Count > 0) {
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AddPathDrawable("Jugem Path", scene.JugemPaths, Color.DarkSeaGreen);
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}
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if (scene.IntroCameras.Count > 0) {
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AddPathDrawable("IntroCamera", scene.IntroCameras, Color.Pink);
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}
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foreach (var kcl in scene.KclObjects)
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{
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// viewport.AddDrawable(kcl.Renderer);
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// treeView1.Nodes.Add(kcl);
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// kcl.Checked = true;
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}
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IsLoaded = true;
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}
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public class MapCameraWrapper : TreeNodeCustom
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{
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public RenderablePathPoint MapCameraPosition;
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public RenderablePathPoint MapCameraTarget;
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public Course_MapCamera_bin CameraFile;
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public MapCameraWrapper()
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{
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ContextMenuStrip = new STContextMenuStrip();
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ContextMenuStrip.Items.Add(new STToolStipMenuItem("Save", null, Save, Keys.Control | Keys.S));
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}
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private void Save(object sender, EventArgs args)
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{
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SaveFileDialog sfd = new SaveFileDialog();
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if (sfd.ShowDialog() == DialogResult.OK)
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{
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File.WriteAllBytes(sfd.FileName, CameraFile.Save());
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}
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}
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}
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private void UpdateCameraMapCoordinates(MapCameraWrapper wrapper)
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{
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if (scene.MapCamera != null)
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{
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var cam = wrapper.CameraFile;
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Vector3 BoundingScale = new Vector3(cam.cameraData.BoundingWidth, 1, cam.cameraData.BoundingHeight);
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Vector3 CamTranslate = new Vector3(cam.cameraData.PositionX, cam.cameraData.PositionY, cam.cameraData.PositionZ);
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Vector3 CamTargetTranslate = new Vector3(cam.cameraData.TargetX, cam.cameraData.TargetY, cam.cameraData.TargetZ);
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wrapper.MapCameraPosition.Position = CamTranslate;
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wrapper.MapCameraPosition.Scale = BoundingScale;
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wrapper.MapCameraTarget.Position = CamTargetTranslate;
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}
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}
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ProbeLighting probeLightingConfig;
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private void LoadParameters(aampv1.AampFile aamp)
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{
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if (aamp.EffectType == "Probe Data")
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{
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probeLightingConfig = new ProbeLighting();
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viewport.AddDrawable(probeLightingConfig);
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var probeRoot = new ProbeLightingWrapper(probeLightingConfig);
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treeView1.Nodes.Add(probeRoot);
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uint index = 0;
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foreach (var val in aamp.RootNode.childParams)
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{
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var entry = new ProbeLighting.Entry();
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entry.Index = index++;
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probeLightingConfig.Entries.Add(entry);
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probeRoot.Nodes.Add(new ProbeLightingEntryWrapper(entry));
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foreach (var param in val.paramObjects)
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{
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switch (param.HashString)
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{
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case "param_obj":
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foreach (var data in param.paramEntries) {
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if (data.HashString == "index") entry.Index = (uint)data.Value;
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if (data.HashString == "type") entry.Type = (uint)data.Value;
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}
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break;
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case "grid":
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entry.Grid = LoadGridData(param.paramEntries);
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break;
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case "sh_index_buffer":
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LoadIndexBuffer(param.paramEntries, entry);
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break;
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case "sh_data_buffer":
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LoadDataBuffer(param.paramEntries, entry);
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break;
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}
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}
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}
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aamp.Save($"{CourseFolder}/DEBUG_PROBE.aamp");
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foreach (var entry in probeLightingConfig.Entries)
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{
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Console.WriteLine(entry.Name);
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Console.WriteLine($"IndexType {entry.IndexType}");
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Console.WriteLine($"DataType {entry.DataType}");
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Console.WriteLine($"MaxIndexNum {entry.MaxIndexNum}");
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Console.WriteLine($"UsedIndexNum {entry.UsedIndexNum}");
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Console.WriteLine($"MaxShDataNum {entry.MaxShDataNum}");
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Console.WriteLine($"UsedShDataNum {entry.UsedShDataNum}");
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Console.WriteLine($"AABB_Max_Position {entry.Grid.AABB_Max_Position}");
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Console.WriteLine($"AABB_Min_Position {entry.Grid.AABB_Min_Position}");
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Console.WriteLine($"Voxel_Step_Position {entry.Grid.Voxel_Step_Position}");
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Console.WriteLine($"DataBuffer {entry.DataBuffer.Length}");
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Console.WriteLine($"IndexBuffer {entry.IndexBuffer.Length}");
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}
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}
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}
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private void LoadDataBuffer(aampv1.ParamEntry[] paramEntries, ProbeLighting.Entry probeEntry)
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{
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foreach (var entry in paramEntries)
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{
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if (entry.HashString == "type")
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probeEntry.DataType = (uint)entry.Value;
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if (entry.HashString == "used_data_num")
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probeEntry.UsedShDataNum = (uint)entry.Value;
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if (entry.HashString == "max_sh_data_num")
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probeEntry.MaxShDataNum = (uint)entry.Value;
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if (entry.HashString == "data_buffer")
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{
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if (entry.ParamType == aampv1.ParamType.BufferFloat)
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probeEntry.DataBuffer = (float[])entry.Value;
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}
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}
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}
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private void LoadIndexBuffer(aampv1.ParamEntry[] paramEntries, ProbeLighting.Entry probeEntry)
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{
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foreach (var entry in paramEntries)
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{
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if (entry.HashString == "type")
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probeEntry.IndexType = (uint)entry.Value;
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if (entry.HashString == "used_index_num")
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probeEntry.UsedIndexNum = (uint)entry.Value;
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if (entry.HashString == "max_index_num")
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probeEntry.MaxIndexNum = (uint)entry.Value;
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if (entry.HashString == "index_buffer")
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{
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if (entry.ParamType == aampv1.ParamType.BufferUint)
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probeEntry.IndexBuffer = (uint[])entry.Value;
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//Experimental, just fill in indices
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uint[] values = (uint[])entry.Value;
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for (int i = 0; i < values.Length; i++)
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{
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values[i] = 0;
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}
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entry.Value = values;
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}
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}
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}
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private ProbeLighting.Grid LoadGridData(aampv1.ParamEntry[] paramEntries)
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{
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ProbeLighting.Grid grid = new ProbeLighting.Grid();
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var mainBfres = scene.BfresObjects[0];
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/* var boundings = mainBfres.BFRESRender.GetSelectionBox();
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foreach (var entry in paramEntries)
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{
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if (entry.HashString == "aabb_min_pos") {
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grid.AABB_Max_Position = Utils.ToVec3((Syroot.Maths.Vector3F)entry.Value);
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entry.Value = new Syroot.Maths.Vector3F(boundings.minX, boundings.minY, boundings.minZ);
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}
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if (entry.HashString == "aabb_max_pos") {
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grid.AABB_Min_Position = Utils.ToVec3((Syroot.Maths.Vector3F)entry.Value);
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entry.Value = new Syroot.Maths.Vector3F(boundings.maxX, boundings.maxY, boundings.maxZ);
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}
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if (entry.HashString == "voxel_step_pos")
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grid.Voxel_Step_Position = Utils.ToVec3((Syroot.Maths.Vector3F)entry.Value);
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}*/
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return grid;
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}
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private void LoadParameters(aampv2.AampFile aamp)
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{
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}
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private void AddPathDrawable(string Name, IEnumerable<BasePathPoint> Groups, Color color, bool CanConnect = true)
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{
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}
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private void AddPathDrawable(string Name, IEnumerable<BasePathGroup> Groups, Color color, bool CanConnect = true)
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{
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//Create a connectable object to connect each point
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var renderablePathConnected = new RenderableConnectedPaths(color);
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if (Name == "Lap Path" || Name == "Gravity Path")
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renderablePathConnected.Use4PointConnection = true;
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if (CanConnect) {
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viewport.AddDrawable(renderablePathConnected);
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}
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//Load a node wrapper to the tree
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var pathNode = new PathCollectionNode(Name);
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treeView1.Nodes.Add(pathNode);
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int groupIndex = 0;
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foreach (var group in Groups)
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{
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if (CanConnect)
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renderablePathConnected.AddGroup(group);
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var groupNode = new PathGroupNode($"{Name} Group{groupIndex++}");
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pathNode.Nodes.Add(groupNode);
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int pointIndex = 0;
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foreach (var path in group.PathPoints)
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{
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var pontNode = new PathPointNode($"{Name} Point{pointIndex++}");
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pontNode.PathPoint = path;
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groupNode.Nodes.Add(pontNode);
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path.OnPathMoved = OnPathMoved;
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viewport.AddDrawable(path.RenderablePoint);
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}
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}
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}
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private void OnPathMoved() {
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stPropertyGrid1.Refresh();
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}
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private void Scene_SelectionChanged(object sender, EventArgs e)
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{
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foreach (EditableObject o in viewport.scene.objects)
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{
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if (o.IsSelected() && o is RenderablePathPoint)
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{
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stPropertyGrid1.LoadProperty(((RenderablePathPoint)o).NodeObject, OnPropertyChanged);
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}
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}
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}
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private void OnPropertyChanged()
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{
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var node = treeView1.SelectedNode;
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if (node is MapCameraWrapper)
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{
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UpdateCameraMapCoordinates((MapCameraWrapper)node);
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}
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}
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private void viewIntroCameraToolStripMenuItem_Click(object sender, EventArgs e)
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{
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//Sort list by camera number/id
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scene.IntroCameras.Sort((x, y) => x.CameraNum.CompareTo(y.CameraNum));
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foreach (var camera in scene.IntroCameras)
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{
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var pathMove = scene.Paths[camera.Camera_Path];
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var pathLookAt = scene.Paths[camera.Camera_AtPath];
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//The time elapsed for each point
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int PathTime = camera.CameraTime / pathMove.PathPoints.Count;
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//Go through each point
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for (int p = 0; p < pathMove.PathPoints.Count; p++)
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{
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//If lookat path is higher than the move path, break
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if (pathLookAt.PathPoints.Count >= p)
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break;
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//Set our points
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var pathMovePoint = pathMove.PathPoints[p];
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var pathLookAtPoint = pathLookAt.PathPoints[p];
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for (int frame = 0; frame < PathTime; frame++)
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{
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if (viewport.GL_ControlModern != null)
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{
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// viewport.GL_ControlModern.CameraEye = pathLookAtPoint.Translate;
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viewport.GL_ControlModern.CameraTarget = pathMovePoint.Translate;
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viewport.UpdateViewport();
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}
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}
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}
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}
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}
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private void treeView1_AfterSelect(object sender, TreeViewEventArgs e)
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{
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List<EditableObject> newSelection = new List<EditableObject>();
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TreeNode node = treeView1.SelectedNode;
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if (node == null)
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return;
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if (node.Text == "Scene")
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{
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stPropertyGrid1.LoadProperty(scene, OnPropertyChanged);
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}
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else if (node is MapCameraWrapper)
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{
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stPropertyGrid1.LoadProperty( ((MapCameraWrapper)node).CameraFile.cameraData, OnPropertyChanged);
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}
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else if (node is ProbeLightingWrapper)
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{
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}
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else if (node is ProbeLightingEntryWrapper)
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{
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var parent = (ProbeLightingWrapper)node.Parent;
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foreach (var child in parent.Nodes)
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{
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( (ProbeLightingEntryWrapper)child).entry.Grid.GridColor = new Vector3(9, 0, 0);
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}
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var probeEntry = (ProbeLightingEntryWrapper)node;
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probeEntry.entry.Grid.GridColor = new Vector3(1,0,0);
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stPropertyGrid1.LoadProperty(probeEntry.entry, OnPropertyChanged);
|
|
}
|
|
else if (node is PathCollectionNode)
|
|
{
|
|
foreach (var group in ((PathCollectionNode)node).Nodes)
|
|
{
|
|
foreach (var point in ((PathGroupNode)group).Nodes)
|
|
{
|
|
newSelection.Add(((PathPointNode)point).PathPoint.RenderablePoint);
|
|
}
|
|
}
|
|
}
|
|
else if (node is PathGroupNode)
|
|
{
|
|
foreach (var point in ((PathGroupNode)node).Nodes)
|
|
{
|
|
newSelection.Add(((PathPointNode)point).PathPoint.RenderablePoint);
|
|
}
|
|
}
|
|
else if (node is PathPointNode)
|
|
{
|
|
newSelection.Add(((PathPointNode)node).PathPoint.RenderablePoint);
|
|
}
|
|
|
|
if (newSelection.Count > 0)
|
|
{
|
|
viewport.scene.SelectedObjects = newSelection;
|
|
viewport.UpdateViewport();
|
|
}
|
|
}
|
|
|
|
bool IsParentChecked = false;
|
|
private void treeView1_AfterCheck(object sender, TreeViewEventArgs e) {
|
|
if (!IsLoaded || IsParentChecked)
|
|
return;
|
|
|
|
IsParentChecked = true;
|
|
CheckChildNodes(e.Node, e.Node.Checked);
|
|
IsParentChecked = false; //Update viewport on the last node checked
|
|
|
|
viewport.UpdateViewport();
|
|
}
|
|
|
|
private void CheckChildNodes(TreeNode node, bool IsChecked)
|
|
{
|
|
OnNodeChecked(node, IsChecked);
|
|
foreach (TreeNode n in node.Nodes)
|
|
{
|
|
n.Checked = IsChecked;
|
|
OnNodeChecked(n, IsChecked);
|
|
if (n.Nodes.Count > 0)
|
|
{
|
|
CheckChildNodes(n, IsChecked);
|
|
}
|
|
}
|
|
}
|
|
|
|
private void OnNodeChecked(TreeNode node, bool IsChecked)
|
|
{
|
|
if (node is PathPointNode)
|
|
((PathPointNode)node).OnChecked(IsChecked);
|
|
if (node is ProbeLightingEntryWrapper)
|
|
((ProbeLightingEntryWrapper)node).OnChecked(IsChecked);
|
|
}
|
|
}
|
|
}
|