mirror of
https://github.com/godotengine/godot
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331 lines
12 KiB
C++
331 lines
12 KiB
C++
/**************************************************************************/
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/* xr_interface_extension.cpp */
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/**************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* https://godotengine.org */
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/**************************************************************************/
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/* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
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/* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. */
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/**************************************************************************/
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#include "xr_interface_extension.h"
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#include "servers/rendering/renderer_rd/storage_rd/texture_storage.h"
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#include "servers/rendering/rendering_server_globals.h"
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void XRInterfaceExtension::_bind_methods() {
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GDVIRTUAL_BIND(_get_name);
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GDVIRTUAL_BIND(_get_capabilities);
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GDVIRTUAL_BIND(_is_initialized);
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GDVIRTUAL_BIND(_initialize);
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GDVIRTUAL_BIND(_uninitialize);
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GDVIRTUAL_BIND(_get_system_info);
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GDVIRTUAL_BIND(_supports_play_area_mode, "mode");
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GDVIRTUAL_BIND(_get_play_area_mode);
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GDVIRTUAL_BIND(_set_play_area_mode, "mode");
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GDVIRTUAL_BIND(_get_play_area);
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GDVIRTUAL_BIND(_get_render_target_size);
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GDVIRTUAL_BIND(_get_view_count);
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GDVIRTUAL_BIND(_get_camera_transform);
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GDVIRTUAL_BIND(_get_transform_for_view, "view", "cam_transform");
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GDVIRTUAL_BIND(_get_projection_for_view, "view", "aspect", "z_near", "z_far");
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GDVIRTUAL_BIND(_get_vrs_texture);
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GDVIRTUAL_BIND(_process);
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GDVIRTUAL_BIND(_pre_render);
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GDVIRTUAL_BIND(_pre_draw_viewport, "render_target");
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GDVIRTUAL_BIND(_post_draw_viewport, "render_target", "screen_rect");
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GDVIRTUAL_BIND(_end_frame);
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/** input and output **/
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GDVIRTUAL_BIND(_get_suggested_tracker_names);
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GDVIRTUAL_BIND(_get_suggested_pose_names, "tracker_name");
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GDVIRTUAL_BIND(_get_tracking_status);
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GDVIRTUAL_BIND(_trigger_haptic_pulse, "action_name", "tracker_name", "frequency", "amplitude", "duration_sec", "delay_sec");
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// we don't have any properties specific to VR yet....
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// but we do have properties specific to AR....
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GDVIRTUAL_BIND(_get_anchor_detection_is_enabled);
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GDVIRTUAL_BIND(_set_anchor_detection_is_enabled, "enabled");
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GDVIRTUAL_BIND(_get_camera_feed_id);
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// override output methods
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GDVIRTUAL_BIND(_get_color_texture);
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GDVIRTUAL_BIND(_get_depth_texture);
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GDVIRTUAL_BIND(_get_velocity_texture);
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ClassDB::bind_method(D_METHOD("get_color_texture"), &XRInterfaceExtension::get_color_texture);
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ClassDB::bind_method(D_METHOD("get_depth_texture"), &XRInterfaceExtension::get_depth_texture);
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ClassDB::bind_method(D_METHOD("get_velocity_texture"), &XRInterfaceExtension::get_velocity_texture);
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// helper methods
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ClassDB::bind_method(D_METHOD("add_blit", "render_target", "src_rect", "dst_rect", "use_layer", "layer", "apply_lens_distortion", "eye_center", "k1", "k2", "upscale", "aspect_ratio"), &XRInterfaceExtension::add_blit);
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ClassDB::bind_method(D_METHOD("get_render_target_texture", "render_target"), &XRInterfaceExtension::get_render_target_texture);
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// ClassDB::bind_method(D_METHOD("get_render_target_depth", "render_target"), &XRInterfaceExtension::get_render_target_depth);
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}
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StringName XRInterfaceExtension::get_name() const {
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StringName name;
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if (GDVIRTUAL_CALL(_get_name, name)) {
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return name;
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}
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return "Unknown";
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}
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uint32_t XRInterfaceExtension::get_capabilities() const {
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uint32_t capabilities = 0;
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GDVIRTUAL_CALL(_get_capabilities, capabilities);
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return capabilities;
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}
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bool XRInterfaceExtension::is_initialized() const {
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bool initialized = false;
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GDVIRTUAL_CALL(_is_initialized, initialized);
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return initialized;
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}
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bool XRInterfaceExtension::initialize() {
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bool initialized = false;
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GDVIRTUAL_CALL(_initialize, initialized);
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return initialized;
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}
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void XRInterfaceExtension::uninitialize() {
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GDVIRTUAL_CALL(_uninitialize);
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}
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Dictionary XRInterfaceExtension::get_system_info() {
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Dictionary dict;
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GDVIRTUAL_CALL(_get_system_info, dict);
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return dict;
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}
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PackedStringArray XRInterfaceExtension::get_suggested_tracker_names() const {
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PackedStringArray arr;
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GDVIRTUAL_CALL(_get_suggested_tracker_names, arr);
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return arr;
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}
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PackedStringArray XRInterfaceExtension::get_suggested_pose_names(const StringName &p_tracker_name) const {
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PackedStringArray arr;
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GDVIRTUAL_CALL(_get_suggested_pose_names, p_tracker_name, arr);
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return arr;
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}
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XRInterface::TrackingStatus XRInterfaceExtension::get_tracking_status() const {
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XRInterface::TrackingStatus status = XR_UNKNOWN_TRACKING;
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GDVIRTUAL_CALL(_get_tracking_status, status);
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return status;
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}
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void XRInterfaceExtension::trigger_haptic_pulse(const String &p_action_name, const StringName &p_tracker_name, double p_frequency, double p_amplitude, double p_duration_sec, double p_delay_sec) {
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GDVIRTUAL_CALL(_trigger_haptic_pulse, p_action_name, p_tracker_name, p_frequency, p_amplitude, p_duration_sec, p_delay_sec);
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}
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bool XRInterfaceExtension::supports_play_area_mode(XRInterface::PlayAreaMode p_mode) {
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bool is_supported = false;
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GDVIRTUAL_CALL(_supports_play_area_mode, p_mode, is_supported);
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return is_supported;
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}
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XRInterface::PlayAreaMode XRInterfaceExtension::get_play_area_mode() const {
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XRInterface::PlayAreaMode mode = XR_PLAY_AREA_UNKNOWN;
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GDVIRTUAL_CALL(_get_play_area_mode, mode);
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return mode;
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}
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bool XRInterfaceExtension::set_play_area_mode(XRInterface::PlayAreaMode p_mode) {
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bool success = false;
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GDVIRTUAL_CALL(_set_play_area_mode, p_mode, success);
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return success;
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}
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PackedVector3Array XRInterfaceExtension::get_play_area() const {
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PackedVector3Array arr;
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GDVIRTUAL_CALL(_get_play_area, arr);
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return arr;
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}
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/** these will only be implemented on AR interfaces, so we want dummies for VR **/
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bool XRInterfaceExtension::get_anchor_detection_is_enabled() const {
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bool enabled = false;
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GDVIRTUAL_CALL(_get_anchor_detection_is_enabled, enabled);
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return enabled;
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}
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void XRInterfaceExtension::set_anchor_detection_is_enabled(bool p_enable) {
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// don't do anything here, this needs to be implemented on AR interface to enable/disable things like plane detection etc.
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GDVIRTUAL_CALL(_set_anchor_detection_is_enabled, p_enable);
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}
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int XRInterfaceExtension::get_camera_feed_id() {
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int feed_id = 0;
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GDVIRTUAL_CALL(_get_camera_feed_id, feed_id);
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return feed_id;
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}
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Size2 XRInterfaceExtension::get_render_target_size() {
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Size2 size;
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GDVIRTUAL_CALL(_get_render_target_size, size);
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return size;
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}
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uint32_t XRInterfaceExtension::get_view_count() {
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uint32_t view_count = 1;
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GDVIRTUAL_CALL(_get_view_count, view_count);
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return view_count;
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}
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Transform3D XRInterfaceExtension::get_camera_transform() {
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Transform3D transform;
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GDVIRTUAL_CALL(_get_camera_transform, transform);
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return transform;
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}
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Transform3D XRInterfaceExtension::get_transform_for_view(uint32_t p_view, const Transform3D &p_cam_transform) {
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Transform3D transform;
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GDVIRTUAL_CALL(_get_transform_for_view, p_view, p_cam_transform, transform);
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return transform;
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}
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Projection XRInterfaceExtension::get_projection_for_view(uint32_t p_view, double p_aspect, double p_z_near, double p_z_far) {
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Projection cm;
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PackedFloat64Array arr;
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if (GDVIRTUAL_CALL(_get_projection_for_view, p_view, p_aspect, p_z_near, p_z_far, arr)) {
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ERR_FAIL_COND_V_MSG(arr.size() != 16, Projection(), "Projection matrix must contain 16 floats");
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real_t *m = (real_t *)cm.columns;
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for (int i = 0; i < 16; i++) {
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m[i] = arr[i];
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}
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return cm;
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}
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return Projection();
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}
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RID XRInterfaceExtension::get_vrs_texture() {
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RID vrs_texture;
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if (GDVIRTUAL_CALL(_get_vrs_texture, vrs_texture)) {
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return vrs_texture;
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} else {
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return XRInterface::get_vrs_texture();
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}
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}
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RID XRInterfaceExtension::get_color_texture() {
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RID texture;
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GDVIRTUAL_CALL(_get_color_texture, texture);
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return texture;
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}
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RID XRInterfaceExtension::get_depth_texture() {
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RID texture;
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GDVIRTUAL_CALL(_get_depth_texture, texture);
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return texture;
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}
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RID XRInterfaceExtension::get_velocity_texture() {
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RID texture;
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GDVIRTUAL_CALL(_get_velocity_texture, texture);
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return texture;
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}
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void XRInterfaceExtension::add_blit(RID p_render_target, Rect2 p_src_rect, Rect2i p_dst_rect, bool p_use_layer, uint32_t p_layer, bool p_apply_lens_distortion, Vector2 p_eye_center, double p_k1, double p_k2, double p_upscale, double p_aspect_ratio) {
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BlitToScreen blit;
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ERR_FAIL_COND_MSG(!can_add_blits, "add_blit can only be called from an XR plugin from within _post_draw_viewport!");
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blit.render_target = p_render_target;
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blit.src_rect = p_src_rect;
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blit.dst_rect = p_dst_rect;
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blit.multi_view.use_layer = p_use_layer;
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blit.multi_view.layer = p_layer;
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blit.lens_distortion.apply = p_apply_lens_distortion;
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blit.lens_distortion.eye_center = p_eye_center;
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blit.lens_distortion.k1 = p_k1;
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blit.lens_distortion.k2 = p_k2;
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blit.lens_distortion.upscale = p_upscale;
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blit.lens_distortion.aspect_ratio = p_aspect_ratio;
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blits.push_back(blit);
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}
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void XRInterfaceExtension::process() {
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GDVIRTUAL_CALL(_process);
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}
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void XRInterfaceExtension::pre_render() {
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GDVIRTUAL_CALL(_pre_render);
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}
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bool XRInterfaceExtension::pre_draw_viewport(RID p_render_target) {
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bool do_render = true;
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GDVIRTUAL_CALL(_pre_draw_viewport, p_render_target, do_render);
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return do_render; // If not implemented we're returning true.
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}
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Vector<BlitToScreen> XRInterfaceExtension::post_draw_viewport(RID p_render_target, const Rect2 &p_screen_rect) {
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// This is just so our XR plugin can add blits...
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blits.clear();
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can_add_blits = true;
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if (GDVIRTUAL_CALL(_post_draw_viewport, p_render_target, p_screen_rect)) {
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return blits;
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}
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can_add_blits = false;
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return blits;
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}
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void XRInterfaceExtension::end_frame() {
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GDVIRTUAL_CALL(_end_frame);
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}
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RID XRInterfaceExtension::get_render_target_texture(RID p_render_target) {
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// In due time this will need to be enhance to return the correct INTERNAL RID for the chosen rendering engine.
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// So once a GLES driver is implemented we'll return that and the implemented plugin needs to handle this correctly too.
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RendererRD::TextureStorage *texture_storage = RendererRD::TextureStorage::get_singleton();
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ERR_FAIL_NULL_V_MSG(texture_storage, RID(), "Texture storage not setup");
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return texture_storage->render_target_get_rd_texture(p_render_target);
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}
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/*
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RID XRInterfaceExtension::get_render_target_depth(RID p_render_target) {
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// TODO implement this, the problem is that our depth texture isn't part of our render target as it is used for 3D rendering only
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// but we don't have access to our render buffers from here....
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}
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*/
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