Package apple.modelio

Class MDLStereoscopicCamera

    • Constructor Detail

      • MDLStereoscopicCamera

        protected MDLStereoscopicCamera​(org.moe.natj.general.Pointer peer)
    • Method Detail

      • accessInstanceVariablesDirectly

        public static boolean accessInstanceVariablesDirectly()
      • allocWithZone

        public static java.lang.Object allocWithZone​(org.moe.natj.general.ptr.VoidPtr zone)
      • automaticallyNotifiesObserversForKey

        public static boolean automaticallyNotifiesObserversForKey​(java.lang.String key)
      • cancelPreviousPerformRequestsWithTarget

        public static void cancelPreviousPerformRequestsWithTarget​(java.lang.Object aTarget)
      • cancelPreviousPerformRequestsWithTargetSelectorObject

        public static void cancelPreviousPerformRequestsWithTargetSelectorObject​(java.lang.Object aTarget,
                                                                                 org.moe.natj.objc.SEL aSelector,
                                                                                 java.lang.Object anArgument)
      • classFallbacksForKeyedArchiver

        public static NSArray<java.lang.String> classFallbacksForKeyedArchiver()
      • classForKeyedUnarchiver

        public static org.moe.natj.objc.Class classForKeyedUnarchiver()
      • debugDescription_static

        public static java.lang.String debugDescription_static()
      • description_static

        public static java.lang.String description_static()
      • hash_static

        public static long hash_static()
      • instanceMethodSignatureForSelector

        public static NSMethodSignature instanceMethodSignatureForSelector​(org.moe.natj.objc.SEL aSelector)
      • instancesRespondToSelector

        public static boolean instancesRespondToSelector​(org.moe.natj.objc.SEL aSelector)
      • isSubclassOfClass

        public static boolean isSubclassOfClass​(org.moe.natj.objc.Class aClass)
      • keyPathsForValuesAffectingValueForKey

        public static NSSet<java.lang.String> keyPathsForValuesAffectingValueForKey​(java.lang.String key)
      • new_objc

        public static java.lang.Object new_objc()
      • resolveClassMethod

        public static boolean resolveClassMethod​(org.moe.natj.objc.SEL sel)
      • resolveInstanceMethod

        public static boolean resolveInstanceMethod​(org.moe.natj.objc.SEL sel)
      • setVersion_static

        public static void setVersion_static​(long aVersion)
      • superclass_static

        public static org.moe.natj.objc.Class superclass_static()
      • version_static

        public static long version_static()
      • interPupillaryDistance

        public float interPupillaryDistance()
        Inter-pupillary distance in mm. Default is 63mm.
      • leftVergence

        public float leftVergence()
        Vergence in a stereoscopic camera can be controlled in two ways. A toed-in binocular stereoscopic camera rotates the lens and sensor together such that a ray projected from the center of either sensor and lens meets at a point. A parallel binocular stereoscopic camera accomplishes the same thing by shifting the relative centers of the sensor and lens. If a parallel binocular stereoscopic camera is modeled, the sensor should be considered to have shifted by an amount h. If left and right vergence are equal, h = (focal length * interOcularDistance) / distance to vergence point. Vergence is measured in degrees towards center and is usually positive.
      • overlap

        public float overlap()
        The amount, as a percentage of image width to offset an image towards the other camera. This value is used in a stereo grade to enhance or reduce the intensity of the stereoscopic effect
      • rightVergence

        public float rightVergence()
      • setInterPupillaryDistance

        public void setInterPupillaryDistance​(float value)
        Inter-pupillary distance in mm. Default is 63mm.
      • setLeftVergence

        public void setLeftVergence​(float value)
        Vergence in a stereoscopic camera can be controlled in two ways. A toed-in binocular stereoscopic camera rotates the lens and sensor together such that a ray projected from the center of either sensor and lens meets at a point. A parallel binocular stereoscopic camera accomplishes the same thing by shifting the relative centers of the sensor and lens. If a parallel binocular stereoscopic camera is modeled, the sensor should be considered to have shifted by an amount h. If left and right vergence are equal, h = (focal length * interOcularDistance) / distance to vergence point. Vergence is measured in degrees towards center and is usually positive.
      • setOverlap

        public void setOverlap​(float value)
        The amount, as a percentage of image width to offset an image towards the other camera. This value is used in a stereo grade to enhance or reduce the intensity of the stereoscopic effect
      • setRightVergence

        public void setRightVergence​(float value)