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Apply reference frame transform to OpenXRCompositionLayer nodes
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@ -135,6 +135,11 @@
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Emitted when an interface is removed.
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Emitted when an interface is removed.
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</description>
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</description>
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</signal>
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</signal>
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<signal name="reference_frame_changed">
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<description>
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Emitted when the reference frame transform changes.
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</description>
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</signal>
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<signal name="tracker_added">
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<signal name="tracker_added">
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<param index="0" name="tracker_name" type="StringName" />
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<param index="0" name="tracker_name" type="StringName" />
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<param index="1" name="type" type="int" />
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<param index="1" name="type" type="int" />
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@ -151,6 +151,16 @@ void OpenXRCompositionLayer::update_fallback_mesh() {
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should_update_fallback_mesh = true;
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should_update_fallback_mesh = true;
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}
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}
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XrPosef OpenXRCompositionLayer::get_openxr_pose() {
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Transform3D reference_frame = XRServer::get_singleton()->get_reference_frame();
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Transform3D transform = reference_frame.inverse() * get_transform();
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Quaternion quat(transform.basis.orthonormalized());
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return {
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{ (float)quat.x, (float)quat.y, (float)quat.z, (float)quat.w },
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{ (float)transform.origin.x, (float)transform.origin.y, (float)transform.origin.z }
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};
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}
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bool OpenXRCompositionLayer::is_viewport_in_use(SubViewport *p_viewport) {
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bool OpenXRCompositionLayer::is_viewport_in_use(SubViewport *p_viewport) {
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for (const OpenXRCompositionLayer *other_composition_layer : composition_layer_nodes) {
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for (const OpenXRCompositionLayer *other_composition_layer : composition_layer_nodes) {
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if (other_composition_layer != this && other_composition_layer->is_inside_tree() && other_composition_layer->get_layer_viewport() == p_viewport) {
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if (other_composition_layer != this && other_composition_layer->is_inside_tree() && other_composition_layer->get_layer_viewport() == p_viewport) {
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@ -77,6 +77,8 @@ protected:
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void update_fallback_mesh();
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void update_fallback_mesh();
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XrPosef get_openxr_pose();
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static Vector<OpenXRCompositionLayer *> composition_layer_nodes;
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static Vector<OpenXRCompositionLayer *> composition_layer_nodes;
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bool is_viewport_in_use(SubViewport *p_viewport);
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bool is_viewport_in_use(SubViewport *p_viewport);
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@ -52,6 +52,7 @@ OpenXRCompositionLayerCylinder::OpenXRCompositionLayerCylinder() {
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aspect_ratio, // aspectRatio
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aspect_ratio, // aspectRatio
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};
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};
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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XRServer::get_singleton()->connect("reference_frame_changed", callable_mp(this, &OpenXRCompositionLayerCylinder::update_transform));
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}
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}
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OpenXRCompositionLayerCylinder::~OpenXRCompositionLayerCylinder() {
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OpenXRCompositionLayerCylinder::~OpenXRCompositionLayerCylinder() {
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@ -131,14 +132,15 @@ Ref<Mesh> OpenXRCompositionLayerCylinder::_create_fallback_mesh() {
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void OpenXRCompositionLayerCylinder::_notification(int p_what) {
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void OpenXRCompositionLayerCylinder::_notification(int p_what) {
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switch (p_what) {
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switch (p_what) {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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Transform3D transform = get_transform();
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update_transform();
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Quaternion quat(transform.basis.orthonormalized());
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composition_layer.pose.orientation = { (float)quat.x, (float)quat.y, (float)quat.z, (float)quat.w };
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composition_layer.pose.position = { (float)transform.origin.x, (float)transform.origin.y, (float)transform.origin.z };
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} break;
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} break;
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}
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}
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}
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}
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void OpenXRCompositionLayerCylinder::update_transform() {
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composition_layer.pose = get_openxr_pose();
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}
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void OpenXRCompositionLayerCylinder::set_radius(float p_radius) {
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void OpenXRCompositionLayerCylinder::set_radius(float p_radius) {
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ERR_FAIL_COND(p_radius <= 0);
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ERR_FAIL_COND(p_radius <= 0);
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radius = p_radius;
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radius = p_radius;
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@ -50,6 +50,8 @@ protected:
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void _notification(int p_what);
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void _notification(int p_what);
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void update_transform();
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virtual Ref<Mesh> _create_fallback_mesh() override;
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virtual Ref<Mesh> _create_fallback_mesh() override;
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public:
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public:
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@ -53,6 +53,7 @@ OpenXRCompositionLayerEquirect::OpenXRCompositionLayerEquirect() {
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-lower_vertical_angle, // lowerVerticalAngle
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-lower_vertical_angle, // lowerVerticalAngle
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};
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};
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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XRServer::get_singleton()->connect("reference_frame_changed", callable_mp(this, &OpenXRCompositionLayerEquirect::update_transform));
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}
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}
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OpenXRCompositionLayerEquirect::~OpenXRCompositionLayerEquirect() {
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OpenXRCompositionLayerEquirect::~OpenXRCompositionLayerEquirect() {
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@ -139,14 +140,15 @@ Ref<Mesh> OpenXRCompositionLayerEquirect::_create_fallback_mesh() {
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void OpenXRCompositionLayerEquirect::_notification(int p_what) {
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void OpenXRCompositionLayerEquirect::_notification(int p_what) {
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switch (p_what) {
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switch (p_what) {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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Transform3D transform = get_transform();
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update_transform();
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Quaternion quat(transform.basis.orthonormalized());
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composition_layer.pose.orientation = { (float)quat.x, (float)quat.y, (float)quat.z, (float)quat.w };
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composition_layer.pose.position = { (float)transform.origin.x, (float)transform.origin.y, (float)transform.origin.z };
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} break;
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} break;
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}
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}
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}
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}
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void OpenXRCompositionLayerEquirect::update_transform() {
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composition_layer.pose = get_openxr_pose();
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}
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void OpenXRCompositionLayerEquirect::set_radius(float p_radius) {
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void OpenXRCompositionLayerEquirect::set_radius(float p_radius) {
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ERR_FAIL_COND(p_radius <= 0);
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ERR_FAIL_COND(p_radius <= 0);
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radius = p_radius;
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radius = p_radius;
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@ -51,6 +51,8 @@ protected:
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void _notification(int p_what);
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void _notification(int p_what);
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void update_transform();
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virtual Ref<Mesh> _create_fallback_mesh() override;
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virtual Ref<Mesh> _create_fallback_mesh() override;
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public:
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public:
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@ -50,6 +50,7 @@ OpenXRCompositionLayerQuad::OpenXRCompositionLayerQuad() {
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{ (float)quad_size.x, (float)quad_size.y }, // size
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{ (float)quad_size.x, (float)quad_size.y }, // size
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};
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};
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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openxr_layer_provider = memnew(OpenXRViewportCompositionLayerProvider((XrCompositionLayerBaseHeader *)&composition_layer));
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XRServer::get_singleton()->connect("reference_frame_changed", callable_mp(this, &OpenXRCompositionLayerQuad::update_transform));
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}
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}
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OpenXRCompositionLayerQuad::~OpenXRCompositionLayerQuad() {
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OpenXRCompositionLayerQuad::~OpenXRCompositionLayerQuad() {
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@ -72,14 +73,15 @@ Ref<Mesh> OpenXRCompositionLayerQuad::_create_fallback_mesh() {
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void OpenXRCompositionLayerQuad::_notification(int p_what) {
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void OpenXRCompositionLayerQuad::_notification(int p_what) {
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switch (p_what) {
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switch (p_what) {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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case NOTIFICATION_LOCAL_TRANSFORM_CHANGED: {
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Transform3D transform = get_transform();
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update_transform();
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Quaternion quat(transform.basis.orthonormalized());
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composition_layer.pose.orientation = { (float)quat.x, (float)quat.y, (float)quat.z, (float)quat.w };
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composition_layer.pose.position = { (float)transform.origin.x, (float)transform.origin.y, (float)transform.origin.z };
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} break;
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} break;
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}
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}
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}
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}
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void OpenXRCompositionLayerQuad::update_transform() {
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composition_layer.pose = get_openxr_pose();
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}
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void OpenXRCompositionLayerQuad::set_quad_size(const Size2 &p_size) {
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void OpenXRCompositionLayerQuad::set_quad_size(const Size2 &p_size) {
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quad_size = p_size;
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quad_size = p_size;
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composition_layer.size = { (float)quad_size.x, (float)quad_size.y };
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composition_layer.size = { (float)quad_size.x, (float)quad_size.y };
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@ -47,6 +47,8 @@ protected:
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void _notification(int p_what);
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void _notification(int p_what);
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void update_transform();
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virtual Ref<Mesh> _create_fallback_mesh() override;
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virtual Ref<Mesh> _create_fallback_mesh() override;
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public:
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public:
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@ -98,6 +98,8 @@ void XRServer::_bind_methods() {
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BIND_ENUM_CONSTANT(RESET_BUT_KEEP_TILT);
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BIND_ENUM_CONSTANT(RESET_BUT_KEEP_TILT);
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BIND_ENUM_CONSTANT(DONT_RESET_ROTATION);
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BIND_ENUM_CONSTANT(DONT_RESET_ROTATION);
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ADD_SIGNAL(MethodInfo("reference_frame_changed"));
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ADD_SIGNAL(MethodInfo("interface_added", PropertyInfo(Variant::STRING_NAME, "interface_name")));
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ADD_SIGNAL(MethodInfo("interface_added", PropertyInfo(Variant::STRING_NAME, "interface_name")));
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ADD_SIGNAL(MethodInfo("interface_removed", PropertyInfo(Variant::STRING_NAME, "interface_name")));
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ADD_SIGNAL(MethodInfo("interface_removed", PropertyInfo(Variant::STRING_NAME, "interface_name")));
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@ -213,11 +215,13 @@ void XRServer::center_on_hmd(RotationMode p_rotation_mode, bool p_keep_height) {
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reference_frame = new_reference_frame.inverse();
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reference_frame = new_reference_frame.inverse();
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set_render_reference_frame(reference_frame);
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set_render_reference_frame(reference_frame);
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emit_signal(SNAME("reference_frame_changed"));
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}
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}
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void XRServer::clear_reference_frame() {
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void XRServer::clear_reference_frame() {
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reference_frame = Transform3D();
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reference_frame = Transform3D();
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set_render_reference_frame(reference_frame);
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set_render_reference_frame(reference_frame);
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emit_signal(SNAME("reference_frame_changed"));
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}
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}
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void XRServer::_set_render_reference_frame(const Transform3D &p_reference_frame) {
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void XRServer::_set_render_reference_frame(const Transform3D &p_reference_frame) {
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