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305 行
9.4 KiB
305 行
9.4 KiB
using System;
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using System.Collections;
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using System.Collections.Generic;
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using UnityEngine;
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using UnityEngine.UI;
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using UnityEngine.XR.ARSubsystems;
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#if UNITY_IOS
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using UnityEngine.XR.ARKit;
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#endif
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public class CheckAvailableFeatures : MonoBehaviour
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{
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[SerializeField]
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Button m_SimpleAR;
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public Button simpleAR
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{
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get { return m_SimpleAR; }
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set { m_SimpleAR = value; }
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}
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[SerializeField]
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Button m_ImageTracking;
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public Button imageTracking
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{
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get { return m_ImageTracking; }
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set { m_ImageTracking = value; }
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}
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[SerializeField]
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Button m_Anchors;
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public Button anchors
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{
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get { return m_Anchors; }
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set { m_Anchors = value; }
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}
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[SerializeField]
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Button m_ARWorldMap;
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public Button ARWorldMap
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{
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get { return m_ARWorldMap; }
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set { m_ARWorldMap = value; }
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}
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[SerializeField]
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Button m_CameraImage;
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public Button cameraImage
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{
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get { return m_CameraImage; }
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set { m_CameraImage = value; }
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}
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[SerializeField]
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Button m_EnvironmentProbes;
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public Button environmentProbes
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{
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get { return m_EnvironmentProbes; }
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set { m_EnvironmentProbes = value; }
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}
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[SerializeField]
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Button m_ARCollaborationData;
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public Button ARCollaborationData
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{
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get { return m_ARCollaborationData; }
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set { m_ARCollaborationData = value; }
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}
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[SerializeField]
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Button m_ARKitCoachingOverlay;
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public Button ARKitCoachingOverlay
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{
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get { return m_ARKitCoachingOverlay; }
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set { m_ARKitCoachingOverlay = value; }
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}
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[SerializeField]
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Button m_Scale;
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public Button scale
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{
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get { return m_Scale; }
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set { m_Scale = value; }
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}
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[SerializeField]
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Button m_ObjectTracking;
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public Button objectTracking
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{
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get { return m_ObjectTracking; }
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set { m_ObjectTracking = value; }
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}
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[SerializeField]
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Button m_PlaneOcclusion;
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public Button planeOcclusion
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{
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get { return m_PlaneOcclusion; }
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set { m_PlaneOcclusion = value; }
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}
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[SerializeField]
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Button m_PointCloud;
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public Button pointCloud
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{
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get { return m_PointCloud; }
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set { m_PointCloud = value; }
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}
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[SerializeField]
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Button m_FaceTracking;
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public Button faceTracking
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{
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get { return m_FaceTracking; }
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set { m_FaceTracking = value; }
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}
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[SerializeField]
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Button m_FaceBlendShapes;
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public Button faceBlendShapes
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{
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get { return m_FaceBlendShapes; }
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set { m_FaceBlendShapes = value; }
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}
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[SerializeField]
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Button m_HumanSegmentation;
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public Button humanSegmentation
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{
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get { return m_HumanSegmentation; }
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set { m_HumanSegmentation = value; }
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}
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[SerializeField]
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Button m_LightEstimation;
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public Button lightEstimation
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{
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get { return m_LightEstimation; }
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set { m_LightEstimation = value; }
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}
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[SerializeField]
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Button m_PlaneDetection;
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public Button planeDetection
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{
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get { return m_PlaneDetection; }
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set { m_PlaneDetection = value; }
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}
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[SerializeField]
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Button m_PlaneClassification;
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public Button planeClassification
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{
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get { return m_PlaneClassification; }
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set { m_PlaneClassification = value; }
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}
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// Start is called before the first frame update
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void Start()
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{
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List<XRPlaneSubsystemDescriptor> planeDescriptors = new List<XRPlaneSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRPlaneSubsystemDescriptor>(planeDescriptors);
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List<XRRaycastSubsystemDescriptor> rayCastDescriptors = new List<XRRaycastSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRRaycastSubsystemDescriptor>(rayCastDescriptors);
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List<XRFaceSubsystemDescriptor> faceDescriptors = new List<XRFaceSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRFaceSubsystemDescriptor>(faceDescriptors);
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List<XRImageTrackingSubsystemDescriptor> imageDescriptors = new List<XRImageTrackingSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRImageTrackingSubsystemDescriptor>(imageDescriptors);
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List<XREnvironmentProbeSubsystemDescriptor> envDescriptors = new List<XREnvironmentProbeSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XREnvironmentProbeSubsystemDescriptor>(envDescriptors);
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List<XRAnchorSubsystemDescriptor> anchorDescriptors = new List<XRAnchorSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRAnchorSubsystemDescriptor>(anchorDescriptors);
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List<XRObjectTrackingSubsystemDescriptor> objectDescriptors = new List<XRObjectTrackingSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRObjectTrackingSubsystemDescriptor>(objectDescriptors);
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List<XRParticipantSubsystemDescriptor> participantDescriptors = new List<XRParticipantSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRParticipantSubsystemDescriptor>(participantDescriptors);
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List<XRDepthSubsystemDescriptor> depthDescriptors = new List<XRDepthSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRDepthSubsystemDescriptor>(depthDescriptors);
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List<XROcclusionSubsystemDescriptor> occlusionDescriptors = new List<XROcclusionSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XROcclusionSubsystemDescriptor>(occlusionDescriptors);
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List<XRCameraSubsystemDescriptor> cameraDescriptors = new List<XRCameraSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRCameraSubsystemDescriptor>(cameraDescriptors);
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List<XRSessionSubsystemDescriptor> sessionDescriptors = new List<XRSessionSubsystemDescriptor>();
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SubsystemManager.GetSubsystemDescriptors<XRSessionSubsystemDescriptor>(sessionDescriptors);
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if(planeDescriptors.Count > 0 && rayCastDescriptors.Count > 0)
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{
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m_SimpleAR.interactable = true;
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m_Scale.interactable = true;
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}
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if(faceDescriptors.Count > 0)
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{
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m_FaceTracking.interactable = true;
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#if UNITY_IOS
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m_FaceBlendShapes.interactable = true;
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#endif
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}
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if(occlusionDescriptors.Count > 0)
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{
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foreach(XROcclusionSubsystemDescriptor occlusionDescriptor in occlusionDescriptors)
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{
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if(occlusionDescriptor.supportsHumanSegmentationDepthImage && occlusionDescriptor.supportsHumanSegmentationStencilImage)
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{
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m_HumanSegmentation.interactable = true;
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break;
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}
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}
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}
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if(cameraDescriptors.Count > 0)
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{
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foreach(var cameraDescriptor in cameraDescriptors)
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{
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if((cameraDescriptor.supportsAverageBrightness || cameraDescriptor.supportsAverageIntensityInLumens) &&
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cameraDescriptor.supportsAverageColorTemperature && cameraDescriptor.supportsCameraConfigurations &&
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cameraDescriptor.supportsCameraImage)
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{
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m_LightEstimation.interactable = true;
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}
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}
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}
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if(imageDescriptors.Count > 0)
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{
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m_ImageTracking.interactable = true;
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}
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if(envDescriptors.Count > 0)
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{
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m_EnvironmentProbes.interactable = true;
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}
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if(planeDescriptors.Count > 0)
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{
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m_PlaneDetection.interactable = true;
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foreach(var planeDescriptor in planeDescriptors)
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{
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if(planeDescriptor.supportsClassification)
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{
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m_PlaneClassification.interactable = true;
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break;
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}
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}
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}
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if(anchorDescriptors.Count > 0)
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{
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m_Anchors.interactable = true;
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}
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if(objectDescriptors.Count > 0)
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{
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m_ObjectTracking.interactable = true;
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}
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if(cameraDescriptors.Count > 0)
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{
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foreach(var cameraDescriptor in cameraDescriptors)
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{
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if(cameraDescriptor.supportsCameraImage)
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{
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m_CameraImage.interactable = true;
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break;
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}
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}
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}
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#if UNITY_IOS
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if(sessionDescriptors.Count > 0 && ARKitSessionSubsystem.worldMapSupported)
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{
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m_ARWorldMap.interactable = true;
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}
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if(planeDescriptors.Count > 0 && rayCastDescriptors.Count > 0 && participantDescriptors.Count > 0 && ARKitSessionSubsystem.supportsCollaboration)
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{
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m_ARCollaborationData.interactable = true;
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}
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if(sessionDescriptors.Count > 0 && ARKitSessionSubsystem.coachingOverlaySupported)
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{
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m_ARKitCoachingOverlay.interactable = true;
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}
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#endif
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if(depthDescriptors.Count > 0)
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{
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m_PointCloud.interactable = true;
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}
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if(planeDescriptors.Count > 0)
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{
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m_PlaneOcclusion.interactable = true;
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}
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}
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}
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