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/*************************************************************************/
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/* scene_tree.cpp */
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/*************************************************************************/
/* This file is part of: */
/* GODOT ENGINE */
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/* https://godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
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/* */
/* Permission is hereby granted, free of charge, to any person obtaining */
/* a copy of this software and associated documentation files (the */
/* "Software"), to deal in the Software without restriction, including */
/* without limitation the rights to use, copy, modify, merge, publish, */
/* distribute, sublicense, and/or sell copies of the Software, and to */
/* permit persons to whom the Software is furnished to do so, subject to */
/* the following conditions: */
/* */
/* The above copyright notice and this permission notice shall be */
/* included in all copies or substantial portions of the Software. */
/* */
/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
/*************************************************************************/
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# include "scene_tree.h"
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# include "core/config/project_settings.h"
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# include "core/debugger/engine_debugger.h"
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# include "core/input/input.h"
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# include "core/io/dir_access.h"
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# include "core/io/marshalls.h"
# include "core/io/resource_loader.h"
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# include "core/object/message_queue.h"
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# include "core/os/keyboard.h"
# include "core/os/os.h"
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# include "core/string/print_string.h"
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# include "node.h"
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# include "scene/animation/tween.h"
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# include "scene/debugger/scene_debugger.h"
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# include "scene/resources/font.h"
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# include "scene/resources/material.h"
# include "scene/resources/mesh.h"
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# include "scene/resources/packed_scene.h"
# include "scene/scene_string_names.h"
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# include "servers/display_server.h"
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# include "servers/navigation_server_3d.h"
# include "servers/physics_server_2d.h"
# include "servers/physics_server_3d.h"
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# include "window.h"
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# include <stdio.h>
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# include <stdlib.h>
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void SceneTreeTimer : : _bind_methods ( ) {
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ClassDB : : bind_method ( D_METHOD ( " set_time_left " , " time " ) , & SceneTreeTimer : : set_time_left ) ;
ClassDB : : bind_method ( D_METHOD ( " get_time_left " ) , & SceneTreeTimer : : get_time_left ) ;
2016-08-07 02:39:50 +02:00
Variant: Added 64-bit packed arrays, renamed Variant::REAL to FLOAT.
- Renames PackedIntArray to PackedInt32Array.
- Renames PackedFloatArray to PackedFloat32Array.
- Adds PackedInt64Array and PackedFloat64Array.
- Renames Variant::REAL to Variant::FLOAT for consistency.
Packed arrays are for storing large amount of data and creating stuff like
meshes, buffers. textures, etc. Forcing them to be 64 is a huge waste of
memory. That said, many users requested the ability to have 64 bits packed
arrays for their games, so this is just an optional added type.
For Variant, the float datatype is always 64 bits, and exposed as `float`.
We still have `real_t` which is the datatype that can change from 32 to 64
bits depending on a compile flag (not entirely working right now, but that's
the idea). It affects math related datatypes and code only.
Neither Variant nor PackedArray make use of real_t, which is only intended
for math precision, so the term is removed from there to keep only float.
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ADD_PROPERTY ( PropertyInfo ( Variant : : FLOAT , " time_left " ) , " set_time_left " , " get_time_left " ) ;
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ADD_SIGNAL ( MethodInfo ( " timeout " ) ) ;
}
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void SceneTreeTimer : : set_time_left ( double p_time ) {
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time_left = p_time ;
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}
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double SceneTreeTimer : : get_time_left ( ) const {
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return time_left ;
}
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void SceneTreeTimer : : set_process_always ( bool p_process_always ) {
process_always = p_process_always ;
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}
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bool SceneTreeTimer : : is_process_always ( ) {
return process_always ;
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}
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void SceneTreeTimer : : set_ignore_time_scale ( bool p_ignore ) {
ignore_time_scale = p_ignore ;
}
bool SceneTreeTimer : : is_ignore_time_scale ( ) {
return ignore_time_scale ;
}
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void SceneTreeTimer : : release_connections ( ) {
List < Connection > connections ;
get_all_signal_connections ( & connections ) ;
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for ( const Connection & connection : connections ) {
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disconnect ( connection . signal . get_name ( ) , connection . callable ) ;
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}
}
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SceneTreeTimer : : SceneTreeTimer ( ) { }
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void SceneTree : : tree_changed ( ) {
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tree_version + + ;
emit_signal ( tree_changed_name ) ;
}
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void SceneTree : : node_added ( Node * p_node ) {
emit_signal ( node_added_name , p_node ) ;
}
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void SceneTree : : node_removed ( Node * p_node ) {
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if ( current_scene = = p_node ) {
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current_scene = nullptr ;
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}
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emit_signal ( node_removed_name , p_node ) ;
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if ( call_lock > 0 ) {
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call_skip . insert ( p_node ) ;
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}
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}
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void SceneTree : : node_renamed ( Node * p_node ) {
emit_signal ( node_renamed_name , p_node ) ;
}
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SceneTree : : Group * SceneTree : : add_to_group ( const StringName & p_group , Node * p_node ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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E = group_map . insert ( p_group , Group ( ) ) ;
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}
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ERR_FAIL_COND_V_MSG ( E - > get ( ) . nodes . find ( p_node ) ! = - 1 , & E - > get ( ) , " Already in group: " + p_group + " . " ) ;
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E - > get ( ) . nodes . push_back ( p_node ) ;
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//E->get().last_tree_version=0;
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E - > get ( ) . changed = true ;
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return & E - > get ( ) ;
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}
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void SceneTree : : remove_from_group ( const StringName & p_group , Node * p_node ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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ERR_FAIL_COND ( ! E ) ;
E - > get ( ) . nodes . erase ( p_node ) ;
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if ( E - > get ( ) . nodes . is_empty ( ) ) {
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group_map . erase ( E ) ;
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}
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}
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void SceneTree : : make_group_changed ( const StringName & p_group ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( E ) {
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E - > get ( ) . changed = true ;
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}
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}
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void SceneTree : : flush_transform_notifications ( ) {
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SelfList < Node > * n = xform_change_list . first ( ) ;
while ( n ) {
Node * node = n - > self ( ) ;
SelfList < Node > * nx = n - > next ( ) ;
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xform_change_list . remove ( n ) ;
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n = nx ;
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node - > notification ( NOTIFICATION_TRANSFORM_CHANGED ) ;
}
}
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void SceneTree : : _flush_ugc ( ) {
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ugc_locked = true ;
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while ( unique_group_calls . size ( ) ) {
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Map < UGCall , Vector < Variant > > : : Element * E = unique_group_calls . front ( ) ;
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Variant v [ VARIANT_ARG_MAX ] ;
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for ( int i = 0 ; i < E - > get ( ) . size ( ) ; i + + ) {
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v [ i ] = E - > get ( ) [ i ] ;
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}
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static_assert ( VARIANT_ARG_MAX = = 8 , " This code needs to be updated if VARIANT_ARG_MAX != 8 " ) ;
call_group_flags ( GROUP_CALL_REALTIME , E - > key ( ) . group , E - > key ( ) . call , v [ 0 ] , v [ 1 ] , v [ 2 ] , v [ 3 ] , v [ 4 ] , v [ 5 ] , v [ 6 ] , v [ 7 ] ) ;
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unique_group_calls . erase ( E ) ;
}
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ugc_locked = false ;
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}
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void SceneTree : : _update_group_order ( Group & g , bool p_use_priority ) {
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if ( ! g . changed ) {
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return ;
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}
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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Node * * nodes = g . nodes . ptrw ( ) ;
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int node_count = g . nodes . size ( ) ;
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if ( p_use_priority ) {
SortArray < Node * , Node : : ComparatorWithPriority > node_sort ;
node_sort . sort ( nodes , node_count ) ;
} else {
SortArray < Node * , Node : : Comparator > node_sort ;
node_sort . sort ( nodes , node_count ) ;
}
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g . changed = false ;
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}
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void SceneTree : : call_group_flags ( uint32_t p_call_flags , const StringName & p_group , const StringName & p_function , VARIANT_ARG_DECLARE ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ;
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}
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Group & g = E - > get ( ) ;
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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if ( p_call_flags & GROUP_CALL_UNIQUE & & ! ( p_call_flags & GROUP_CALL_REALTIME ) ) {
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ERR_FAIL_COND ( ugc_locked ) ;
UGCall ug ;
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ug . call = p_function ;
ug . group = p_group ;
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if ( unique_group_calls . has ( ug ) ) {
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return ;
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}
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VARIANT_ARGPTRS ;
Vector < Variant > args ;
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for ( int i = 0 ; i < VARIANT_ARG_MAX ; i + + ) {
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if ( argptr [ i ] - > get_type ( ) = = Variant : : NIL ) {
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break ;
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}
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args . push_back ( * argptr [ i ] ) ;
}
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unique_group_calls [ ug ] = args ;
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return ;
}
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_update_group_order ( g ) ;
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Vector < Node * > nodes_copy = g . nodes ;
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Node * * nodes = nodes_copy . ptrw ( ) ;
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int node_count = nodes_copy . size ( ) ;
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call_lock + + ;
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if ( p_call_flags & GROUP_CALL_REVERSE ) {
for ( int i = node_count - 1 ; i > = 0 ; i - - ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > call ( p_function , VARIANT_ARG_PASS ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_call ( nodes [ i ] , p_function , VARIANT_ARG_PASS ) ;
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}
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}
} else {
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for ( int i = 0 ; i < node_count ; i + + ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > call ( p_function , VARIANT_ARG_PASS ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_call ( nodes [ i ] , p_function , VARIANT_ARG_PASS ) ;
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}
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}
}
call_lock - - ;
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if ( call_lock = = 0 ) {
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call_skip . clear ( ) ;
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}
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}
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void SceneTree : : notify_group_flags ( uint32_t p_call_flags , const StringName & p_group , int p_notification ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ;
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}
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Group & g = E - > get ( ) ;
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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_update_group_order ( g ) ;
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Vector < Node * > nodes_copy = g . nodes ;
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Node * * nodes = nodes_copy . ptrw ( ) ;
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int node_count = nodes_copy . size ( ) ;
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call_lock + + ;
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if ( p_call_flags & GROUP_CALL_REVERSE ) {
for ( int i = node_count - 1 ; i > = 0 ; i - - ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > notification ( p_notification ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_notification ( nodes [ i ] , p_notification ) ;
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}
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}
} else {
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for ( int i = 0 ; i < node_count ; i + + ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > notification ( p_notification ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_notification ( nodes [ i ] , p_notification ) ;
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}
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}
}
call_lock - - ;
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if ( call_lock = = 0 ) {
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call_skip . clear ( ) ;
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}
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}
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void SceneTree : : set_group_flags ( uint32_t p_call_flags , const StringName & p_group , const String & p_name , const Variant & p_value ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ;
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}
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Group & g = E - > get ( ) ;
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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_update_group_order ( g ) ;
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Vector < Node * > nodes_copy = g . nodes ;
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Node * * nodes = nodes_copy . ptrw ( ) ;
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int node_count = nodes_copy . size ( ) ;
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call_lock + + ;
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if ( p_call_flags & GROUP_CALL_REVERSE ) {
for ( int i = node_count - 1 ; i > = 0 ; i - - ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > set ( p_name , p_value ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_set ( nodes [ i ] , p_name , p_value ) ;
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}
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}
} else {
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for ( int i = 0 ; i < node_count ; i + + ) {
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if ( call_lock & & call_skip . has ( nodes [ i ] ) ) {
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continue ;
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}
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if ( p_call_flags & GROUP_CALL_REALTIME ) {
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nodes [ i ] - > set ( p_name , p_value ) ;
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} else {
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MessageQueue : : get_singleton ( ) - > push_set ( nodes [ i ] , p_name , p_value ) ;
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}
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}
}
call_lock - - ;
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if ( call_lock = = 0 ) {
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call_skip . clear ( ) ;
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}
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}
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void SceneTree : : call_group ( const StringName & p_group , const StringName & p_function , VARIANT_ARG_DECLARE ) {
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call_group_flags ( 0 , p_group , p_function , VARIANT_ARG_PASS ) ;
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}
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void SceneTree : : notify_group ( const StringName & p_group , int p_notification ) {
notify_group_flags ( 0 , p_group , p_notification ) ;
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}
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void SceneTree : : set_group ( const StringName & p_group , const String & p_name , const Variant & p_value ) {
set_group_flags ( 0 , p_group , p_name , p_value ) ;
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}
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void SceneTree : : initialize ( ) {
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ERR_FAIL_COND ( ! root ) ;
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initialized = true ;
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root - > _set_tree ( this ) ;
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MainLoop : : initialize ( ) ;
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}
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bool SceneTree : : physics_process ( double p_time ) {
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root_lock + + ;
current_frame + + ;
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flush_transform_notifications ( ) ;
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MainLoop : : physics_process ( p_time ) ;
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physics_process_time = p_time ;
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emit_signal ( SNAME ( " physics_frame " ) ) ;
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_notify_group_pause ( SNAME ( " physics_process_internal " ) , Node : : NOTIFICATION_INTERNAL_PHYSICS_PROCESS ) ;
call_group_flags ( GROUP_CALL_REALTIME , SNAME ( " _picking_viewports " ) , SNAME ( " _process_picking " ) ) ;
_notify_group_pause ( SNAME ( " physics_process " ) , Node : : NOTIFICATION_PHYSICS_PROCESS ) ;
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_flush_ugc ( ) ;
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MessageQueue : : get_singleton ( ) - > flush ( ) ; //small little hack
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process_tweens ( p_time , true ) ;
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flush_transform_notifications ( ) ;
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root_lock - - ;
_flush_delete_queue ( ) ;
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_call_idle_callbacks ( ) ;
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return _quit ;
}
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bool SceneTree : : process ( double p_time ) {
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root_lock + + ;
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MainLoop : : process ( p_time ) ;
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process_time = p_time ;
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if ( multiplayer_poll ) {
multiplayer - > poll ( ) ;
}
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emit_signal ( SNAME ( " process_frame " ) ) ;
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MessageQueue : : get_singleton ( ) - > flush ( ) ; //small little hack
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flush_transform_notifications ( ) ;
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_notify_group_pause ( SNAME ( " process_internal " ) , Node : : NOTIFICATION_INTERNAL_PROCESS ) ;
_notify_group_pause ( SNAME ( " process " ) , Node : : NOTIFICATION_PROCESS ) ;
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_flush_ugc ( ) ;
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MessageQueue : : get_singleton ( ) - > flush ( ) ; //small little hack
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flush_transform_notifications ( ) ; //transforms after world update, to avoid unnecessary enter/exit notifications
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root_lock - - ;
_flush_delete_queue ( ) ;
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//go through timers
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List < Ref < SceneTreeTimer > > : : Element * L = timers . back ( ) ; //last element
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for ( List < Ref < SceneTreeTimer > > : : Element * E = timers . front ( ) ; E ; ) {
List < Ref < SceneTreeTimer > > : : Element * N = E - > next ( ) ;
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if ( paused & & ! E - > get ( ) - > is_process_always ( ) ) {
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if ( E = = L ) {
break ; //break on last, so if new timers were added during list traversal, ignore them.
}
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E = N ;
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continue ;
}
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double time_left = E - > get ( ) - > get_time_left ( ) ;
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if ( E - > get ( ) - > is_ignore_time_scale ( ) ) {
time_left - = Engine : : get_singleton ( ) - > get_process_step ( ) ;
} else {
time_left - = p_time ;
}
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E - > get ( ) - > set_time_left ( time_left ) ;
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if ( time_left < 0 ) {
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E - > get ( ) - > emit_signal ( SNAME ( " timeout " ) ) ;
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timers . erase ( E ) ;
}
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if ( E = = L ) {
break ; //break on last, so if new timers were added during list traversal, ignore them.
}
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E = N ;
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}
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process_tweens ( p_time , false ) ;
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flush_transform_notifications ( ) ; //additional transforms after timers update
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_call_idle_callbacks ( ) ;
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# ifdef TOOLS_ENABLED
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# ifndef _3D_DISABLED
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if ( Engine : : get_singleton ( ) - > is_editor_hint ( ) ) {
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//simple hack to reload fallback environment if it changed from editor
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String env_path = ProjectSettings : : get_singleton ( ) - > get ( SNAME ( " rendering/environment/defaults/default_environment " ) ) ;
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env_path = env_path . strip_edges ( ) ; //user may have added a space or two
String cpath ;
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Ref < Environment > fallback = get_root ( ) - > get_world_3d ( ) - > get_fallback_environment ( ) ;
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if ( fallback . is_valid ( ) ) {
cpath = fallback - > get_path ( ) ;
}
if ( cpath ! = env_path ) {
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if ( ! env_path . is_empty ( ) ) {
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fallback = ResourceLoader : : load ( env_path ) ;
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if ( fallback . is_null ( ) ) {
//could not load fallback, set as empty
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ProjectSettings : : get_singleton ( ) - > set ( " rendering/environment/defaults/default_environment " , " " ) ;
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}
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} else {
fallback . unref ( ) ;
}
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get_root ( ) - > get_world_3d ( ) - > set_fallback_environment ( fallback ) ;
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}
}
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# endif // _3D_DISABLED
# endif // TOOLS_ENABLED
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return _quit ;
}
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void SceneTree : : process_tweens ( float p_delta , bool p_physics ) {
// This methods works similarly to how SceneTreeTimers are handled.
List < Ref < Tween > > : : Element * L = tweens . back ( ) ;
for ( List < Ref < Tween > > : : Element * E = tweens . front ( ) ; E ; ) {
List < Ref < Tween > > : : Element * N = E - > next ( ) ;
// Don't process if paused or process mode doesn't match.
2022-01-09 18:23:53 +01:00
if ( ! E - > get ( ) - > can_process ( paused ) | | ( p_physics = = ( E - > get ( ) - > get_process_mode ( ) = = Tween : : TWEEN_PROCESS_IDLE ) ) ) {
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if ( E = = L ) {
break ;
}
E = N ;
continue ;
}
if ( ! E - > get ( ) - > step ( p_delta ) ) {
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E - > get ( ) - > clear ( ) ;
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tweens . erase ( E ) ;
}
if ( E = = L ) {
break ;
}
E = N ;
}
}
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void SceneTree : : finalize ( ) {
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_flush_delete_queue ( ) ;
_flush_ugc ( ) ;
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initialized = false ;
2014-02-10 02:10:30 +01:00
2020-12-22 10:50:29 +01:00
MainLoop : : finalize ( ) ;
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if ( root ) {
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root - > _set_tree ( nullptr ) ;
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root - > _propagate_after_exit_tree ( ) ;
2014-02-10 02:10:30 +01:00
memdelete ( root ) ; //delete root
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root = nullptr ;
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}
2019-10-19 18:45:17 +02:00
2021-10-08 16:37:03 +02:00
// In case deletion of some objects was queued when destructing the `root`.
// E.g. if `queue_free()` was called for some node outside the tree when handling NOTIFICATION_PREDELETE for some node in the tree.
_flush_delete_queue ( ) ;
// Cleanup timers.
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for ( Ref < SceneTreeTimer > & timer : timers ) {
timer - > release_connections ( ) ;
2019-10-19 18:45:17 +02:00
}
timers . clear ( ) ;
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}
2019-12-29 16:39:24 +01:00
void SceneTree : : quit ( int p_exit_code ) {
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OS : : get_singleton ( ) - > set_exit_code ( p_exit_code ) ;
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_quit = true ;
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}
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void SceneTree : : _main_window_close ( ) {
if ( accept_quit ) {
_quit = true ;
}
}
2020-05-14 14:29:06 +02:00
2020-03-04 17:36:09 +01:00
void SceneTree : : _main_window_go_back ( ) {
if ( quit_on_go_back ) {
_quit = true ;
}
}
2014-02-10 02:10:30 +01:00
2020-03-04 17:36:09 +01:00
void SceneTree : : _main_window_focus_in ( ) {
2020-04-28 15:19:37 +02:00
Input * id = Input : : get_singleton ( ) ;
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if ( id ) {
id - > ensure_touch_mouse_raised ( ) ;
}
}
2019-09-09 23:42:17 +02:00
2020-03-04 17:36:09 +01:00
void SceneTree : : _notification ( int p_notification ) {
switch ( p_notification ) {
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case NOTIFICATION_TRANSLATION_CHANGED : {
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if ( ! Engine : : get_singleton ( ) - > is_editor_hint ( ) ) {
2019-04-04 15:34:03 +02:00
get_root ( ) - > propagate_notification ( p_notification ) ;
2017-06-28 22:00:18 +02:00
}
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} break ;
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case NOTIFICATION_OS_MEMORY_WARNING :
case NOTIFICATION_OS_IME_UPDATE :
case NOTIFICATION_WM_ABOUT :
case NOTIFICATION_CRASH :
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case NOTIFICATION_APPLICATION_RESUMED :
case NOTIFICATION_APPLICATION_PAUSED :
case NOTIFICATION_APPLICATION_FOCUS_IN :
case NOTIFICATION_APPLICATION_FOCUS_OUT : {
get_root ( ) - > propagate_notification ( p_notification ) ; //pass these to nodes, since they are mirrored
2018-07-02 21:18:58 +02:00
} break ;
2014-02-10 02:10:30 +01:00
default :
break ;
} ;
} ;
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void SceneTree : : set_auto_accept_quit ( bool p_enable ) {
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accept_quit = p_enable ;
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}
2017-01-11 20:34:32 +01:00
void SceneTree : : set_quit_on_go_back ( bool p_enable ) {
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quit_on_go_back = p_enable ;
2017-01-11 20:34:32 +01:00
}
2017-04-07 16:17:16 +02:00
# ifdef TOOLS_ENABLED
2014-02-10 02:10:30 +01:00
2017-03-05 16:44:50 +01:00
bool SceneTree : : is_node_being_edited ( const Node * p_node ) const {
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return Engine : : get_singleton ( ) - > is_editor_hint ( ) & & edited_scene_root & & ( edited_scene_root - > is_ancestor_of ( p_node ) | | edited_scene_root = = p_node ) ;
2014-02-10 02:10:30 +01:00
}
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# endif
2014-02-10 02:10:30 +01:00
2017-04-07 16:17:16 +02:00
# ifdef DEBUG_ENABLED
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void SceneTree : : set_debug_collisions_hint ( bool p_enabled ) {
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debug_collisions_hint = p_enabled ;
2015-09-19 04:10:58 +02:00
}
bool SceneTree : : is_debugging_collisions_hint ( ) const {
return debug_collisions_hint ;
}
2015-09-20 18:03:46 +02:00
void SceneTree : : set_debug_navigation_hint ( bool p_enabled ) {
2017-03-05 16:44:50 +01:00
debug_navigation_hint = p_enabled ;
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}
bool SceneTree : : is_debugging_navigation_hint ( ) const {
return debug_navigation_hint ;
}
2017-04-07 16:17:16 +02:00
# endif
2015-09-20 18:03:46 +02:00
2017-03-05 16:44:50 +01:00
void SceneTree : : set_debug_collisions_color ( const Color & p_color ) {
debug_collisions_color = p_color ;
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}
Color SceneTree : : get_debug_collisions_color ( ) const {
return debug_collisions_color ;
}
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void SceneTree : : set_debug_collision_contact_color ( const Color & p_color ) {
debug_collision_contact_color = p_color ;
2015-09-20 18:03:46 +02:00
}
Color SceneTree : : get_debug_collision_contact_color ( ) const {
return debug_collision_contact_color ;
}
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void SceneTree : : set_debug_navigation_color ( const Color & p_color ) {
debug_navigation_color = p_color ;
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}
Color SceneTree : : get_debug_navigation_color ( ) const {
return debug_navigation_color ;
}
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void SceneTree : : set_debug_navigation_disabled_color ( const Color & p_color ) {
debug_navigation_disabled_color = p_color ;
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}
Color SceneTree : : get_debug_navigation_disabled_color ( ) const {
return debug_navigation_disabled_color ;
}
Ref < Material > SceneTree : : get_debug_navigation_material ( ) {
2020-05-14 16:41:43 +02:00
if ( navigation_material . is_valid ( ) ) {
2015-09-20 18:03:46 +02:00
return navigation_material ;
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}
2015-09-20 18:03:46 +02:00
2019-09-15 06:01:52 +02:00
Ref < StandardMaterial3D > line_material = Ref < StandardMaterial3D > ( memnew ( StandardMaterial3D ) ) ;
line_material - > set_shading_mode ( StandardMaterial3D : : SHADING_MODE_UNSHADED ) ;
line_material - > set_transparency ( StandardMaterial3D : : TRANSPARENCY_ALPHA ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_SRGB_VERTEX_COLOR , true ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_ALBEDO_FROM_VERTEX_COLOR , true ) ;
2017-08-15 22:21:05 +02:00
line_material - > set_albedo ( get_debug_navigation_color ( ) ) ;
2015-09-20 18:03:46 +02:00
2017-03-05 16:44:50 +01:00
navigation_material = line_material ;
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return navigation_material ;
}
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Ref < Material > SceneTree : : get_debug_navigation_disabled_material ( ) {
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if ( navigation_disabled_material . is_valid ( ) ) {
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return navigation_disabled_material ;
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}
2015-09-20 18:03:46 +02:00
2019-09-15 06:01:52 +02:00
Ref < StandardMaterial3D > line_material = Ref < StandardMaterial3D > ( memnew ( StandardMaterial3D ) ) ;
line_material - > set_shading_mode ( StandardMaterial3D : : SHADING_MODE_UNSHADED ) ;
line_material - > set_transparency ( StandardMaterial3D : : TRANSPARENCY_ALPHA ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_SRGB_VERTEX_COLOR , true ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_ALBEDO_FROM_VERTEX_COLOR , true ) ;
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line_material - > set_albedo ( get_debug_navigation_disabled_color ( ) ) ;
2015-09-20 18:03:46 +02:00
2017-03-05 16:44:50 +01:00
navigation_disabled_material = line_material ;
2015-09-20 18:03:46 +02:00
return navigation_disabled_material ;
}
2020-05-14 14:29:06 +02:00
2015-09-20 18:03:46 +02:00
Ref < Material > SceneTree : : get_debug_collision_material ( ) {
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if ( collision_material . is_valid ( ) ) {
2015-09-20 18:03:46 +02:00
return collision_material ;
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}
2015-09-20 18:03:46 +02:00
2019-09-15 06:01:52 +02:00
Ref < StandardMaterial3D > line_material = Ref < StandardMaterial3D > ( memnew ( StandardMaterial3D ) ) ;
line_material - > set_shading_mode ( StandardMaterial3D : : SHADING_MODE_UNSHADED ) ;
line_material - > set_transparency ( StandardMaterial3D : : TRANSPARENCY_ALPHA ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_SRGB_VERTEX_COLOR , true ) ;
line_material - > set_flag ( StandardMaterial3D : : FLAG_ALBEDO_FROM_VERTEX_COLOR , true ) ;
2017-08-15 22:21:05 +02:00
line_material - > set_albedo ( get_debug_collisions_color ( ) ) ;
2015-09-20 18:03:46 +02:00
2017-03-05 16:44:50 +01:00
collision_material = line_material ;
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return collision_material ;
}
2017-06-07 23:18:55 +02:00
Ref < ArrayMesh > SceneTree : : get_debug_contact_mesh ( ) {
2020-05-14 16:41:43 +02:00
if ( debug_contact_mesh . is_valid ( ) ) {
2015-09-20 18:03:46 +02:00
return debug_contact_mesh ;
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}
2015-09-20 18:03:46 +02:00
2017-06-07 23:18:55 +02:00
debug_contact_mesh = Ref < ArrayMesh > ( memnew ( ArrayMesh ) ) ;
2015-09-20 18:03:46 +02:00
2019-09-15 06:01:52 +02:00
Ref < StandardMaterial3D > mat = Ref < StandardMaterial3D > ( memnew ( StandardMaterial3D ) ) ;
mat - > set_shading_mode ( StandardMaterial3D : : SHADING_MODE_UNSHADED ) ;
mat - > set_transparency ( StandardMaterial3D : : TRANSPARENCY_ALPHA ) ;
mat - > set_flag ( StandardMaterial3D : : FLAG_SRGB_VERTEX_COLOR , true ) ;
mat - > set_flag ( StandardMaterial3D : : FLAG_ALBEDO_FROM_VERTEX_COLOR , true ) ;
2017-08-15 22:21:05 +02:00
mat - > set_albedo ( get_debug_collision_contact_color ( ) ) ;
2015-09-20 18:03:46 +02:00
2017-03-05 16:44:50 +01:00
Vector3 diamond [ 6 ] = {
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Vector3 ( - 1 , 0 , 0 ) ,
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Vector3 ( 1 , 0 , 0 ) ,
Vector3 ( 0 , - 1 , 0 ) ,
Vector3 ( 0 , 1 , 0 ) ,
Vector3 ( 0 , 0 , - 1 ) ,
Vector3 ( 0 , 0 , 1 )
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} ;
2017-12-06 21:36:34 +01:00
/* clang-format off */
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int diamond_faces [ 8 * 3 ] = {
0 , 2 , 4 ,
0 , 3 , 4 ,
1 , 2 , 4 ,
1 , 3 , 4 ,
0 , 2 , 5 ,
0 , 3 , 5 ,
1 , 2 , 5 ,
1 , 3 , 5 ,
2015-09-20 18:03:46 +02:00
} ;
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/* clang-format on */
2015-09-20 18:03:46 +02:00
2020-02-17 22:06:54 +01:00
Vector < int > indices ;
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for ( int i = 0 ; i < 8 * 3 ; i + + ) {
2015-09-20 18:03:46 +02:00
indices . push_back ( diamond_faces [ i ] ) ;
2020-05-14 16:41:43 +02:00
}
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Vector < Vector3 > vertices ;
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for ( int i = 0 ; i < 6 ; i + + ) {
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vertices . push_back ( diamond [ i ] * 0.1 ) ;
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}
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Array arr ;
arr . resize ( Mesh : : ARRAY_MAX ) ;
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arr [ Mesh : : ARRAY_VERTEX ] = vertices ;
arr [ Mesh : : ARRAY_INDEX ] = indices ;
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debug_contact_mesh - > add_surface_from_arrays ( Mesh : : PRIMITIVE_TRIANGLES , arr ) ;
debug_contact_mesh - > surface_set_material ( 0 , mat ) ;
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return debug_contact_mesh ;
}
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void SceneTree : : set_pause ( bool p_enabled ) {
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if ( p_enabled = = paused ) {
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return ;
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}
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paused = p_enabled ;
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NavigationServer3D : : get_singleton ( ) - > set_active ( ! p_enabled ) ;
PhysicsServer3D : : get_singleton ( ) - > set_active ( ! p_enabled ) ;
PhysicsServer2D : : get_singleton ( ) - > set_active ( ! p_enabled ) ;
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if ( get_root ( ) ) {
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get_root ( ) - > _propagate_pause_notification ( p_enabled ) ;
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}
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}
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bool SceneTree : : is_paused ( ) const {
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return paused ;
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}
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void SceneTree : : _notify_group_pause ( const StringName & p_group , int p_notification ) {
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Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ;
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}
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Group & g = E - > get ( ) ;
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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_update_group_order ( g , p_notification = = Node : : NOTIFICATION_PROCESS | | p_notification = = Node : : NOTIFICATION_INTERNAL_PROCESS | | p_notification = = Node : : NOTIFICATION_PHYSICS_PROCESS | | p_notification = = Node : : NOTIFICATION_INTERNAL_PHYSICS_PROCESS ) ;
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//copy, so copy on write happens in case something is removed from process while being called
//performance is not lost because only if something is added/removed the vector is copied.
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Vector < Node * > nodes_copy = g . nodes ;
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int node_count = nodes_copy . size ( ) ;
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Node * * nodes = nodes_copy . ptrw ( ) ;
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call_lock + + ;
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for ( int i = 0 ; i < node_count ; i + + ) {
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Node * n = nodes [ i ] ;
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if ( call_lock & & call_skip . has ( n ) ) {
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continue ;
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}
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if ( ! n - > can_process ( ) ) {
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continue ;
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}
if ( ! n - > can_process_notification ( p_notification ) ) {
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continue ;
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}
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n - > notification ( p_notification ) ;
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//ERR_FAIL_COND(node_count != g.nodes.size());
}
call_lock - - ;
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if ( call_lock = = 0 ) {
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call_skip . clear ( ) ;
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}
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}
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void SceneTree : : _call_input_pause ( const StringName & p_group , CallInputType p_call_type , const Ref < InputEvent > & p_input , Viewport * p_viewport ) {
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Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ;
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}
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Group & g = E - > get ( ) ;
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if ( g . nodes . is_empty ( ) ) {
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return ;
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}
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_update_group_order ( g ) ;
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//copy, so copy on write happens in case something is removed from process while being called
//performance is not lost because only if something is added/removed the vector is copied.
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Vector < Node * > nodes_copy = g . nodes ;
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int node_count = nodes_copy . size ( ) ;
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Node * * nodes = nodes_copy . ptrw ( ) ;
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call_lock + + ;
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for ( int i = node_count - 1 ; i > = 0 ; i - - ) {
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if ( p_viewport - > is_input_handled ( ) ) {
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break ;
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}
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Node * n = nodes [ i ] ;
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if ( call_lock & & call_skip . has ( n ) ) {
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continue ;
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}
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2020-05-14 16:41:43 +02:00
if ( ! n - > can_process ( ) ) {
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continue ;
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}
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switch ( p_call_type ) {
case CALL_INPUT_TYPE_INPUT :
n - > _call_input ( p_input ) ;
break ;
case CALL_INPUT_TYPE_UNHANDLED_INPUT :
n - > _call_unhandled_input ( p_input ) ;
break ;
case CALL_INPUT_TYPE_UNHANDLED_KEY_INPUT :
n - > _call_unhandled_key_input ( p_input ) ;
break ;
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}
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}
call_lock - - ;
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if ( call_lock = = 0 ) {
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call_skip . clear ( ) ;
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}
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}
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Variant SceneTree : : _call_group_flags ( const Variant * * p_args , int p_argcount , Callable : : CallError & r_error ) {
r_error . error = Callable : : CallError : : CALL_OK ;
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ERR_FAIL_COND_V ( p_argcount < 3 , Variant ( ) ) ;
ERR_FAIL_COND_V ( ! p_args [ 0 ] - > is_num ( ) , Variant ( ) ) ;
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ERR_FAIL_COND_V ( p_args [ 1 ] - > get_type ( ) ! = Variant : : STRING_NAME & & p_args [ 1 ] - > get_type ( ) ! = Variant : : STRING , Variant ( ) ) ;
ERR_FAIL_COND_V ( p_args [ 2 ] - > get_type ( ) ! = Variant : : STRING_NAME & & p_args [ 2 ] - > get_type ( ) ! = Variant : : STRING , Variant ( ) ) ;
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int flags = * p_args [ 0 ] ;
StringName group = * p_args [ 1 ] ;
StringName method = * p_args [ 2 ] ;
Variant v [ VARIANT_ARG_MAX ] ;
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for ( int i = 0 ; i < MIN ( p_argcount - 3 , 5 ) ; i + + ) {
v [ i ] = * p_args [ i + 3 ] ;
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}
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static_assert ( VARIANT_ARG_MAX = = 8 , " This code needs to be updated if VARIANT_ARG_MAX != 8 " ) ;
call_group_flags ( flags , group , method , v [ 0 ] , v [ 1 ] , v [ 2 ] , v [ 3 ] , v [ 4 ] , v [ 5 ] , v [ 6 ] , v [ 7 ] ) ;
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return Variant ( ) ;
}
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Variant SceneTree : : _call_group ( const Variant * * p_args , int p_argcount , Callable : : CallError & r_error ) {
r_error . error = Callable : : CallError : : CALL_OK ;
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ERR_FAIL_COND_V ( p_argcount < 2 , Variant ( ) ) ;
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ERR_FAIL_COND_V ( p_args [ 0 ] - > get_type ( ) ! = Variant : : STRING_NAME & & p_args [ 0 ] - > get_type ( ) ! = Variant : : STRING , Variant ( ) ) ;
ERR_FAIL_COND_V ( p_args [ 1 ] - > get_type ( ) ! = Variant : : STRING_NAME & & p_args [ 1 ] - > get_type ( ) ! = Variant : : STRING , Variant ( ) ) ;
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StringName group = * p_args [ 0 ] ;
StringName method = * p_args [ 1 ] ;
Variant v [ VARIANT_ARG_MAX ] ;
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for ( int i = 0 ; i < MIN ( p_argcount - 2 , 5 ) ; i + + ) {
v [ i ] = * p_args [ i + 2 ] ;
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}
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static_assert ( VARIANT_ARG_MAX = = 8 , " This code needs to be updated if VARIANT_ARG_MAX != 8 " ) ;
call_group_flags ( 0 , group , method , v [ 0 ] , v [ 1 ] , v [ 2 ] , v [ 3 ] , v [ 4 ] , v [ 5 ] , v [ 6 ] , v [ 7 ] ) ;
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return Variant ( ) ;
}
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int64_t SceneTree : : get_frame ( ) const {
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return current_frame ;
}
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2017-03-05 16:44:50 +01:00
Array SceneTree : : _get_nodes_in_group ( const StringName & p_group ) {
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Array ret ;
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Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
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if ( ! E ) {
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return ret ;
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}
2014-02-10 02:10:30 +01:00
_update_group_order ( E - > get ( ) ) ; //update order just in case
int nc = E - > get ( ) . nodes . size ( ) ;
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if ( nc = = 0 ) {
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return ret ;
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}
2014-02-10 02:10:30 +01:00
ret . resize ( nc ) ;
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Node * * ptr = E - > get ( ) . nodes . ptrw ( ) ;
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for ( int i = 0 ; i < nc ; i + + ) {
ret [ i ] = ptr [ i ] ;
2014-02-10 02:10:30 +01:00
}
return ret ;
}
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bool SceneTree : : has_group ( const StringName & p_identifier ) const {
2016-01-02 21:18:45 +01:00
return group_map . has ( p_identifier ) ;
}
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2021-02-22 14:54:12 +01:00
Node * SceneTree : : get_first_node_in_group ( const StringName & p_group ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
if ( ! E ) {
return nullptr ; //no group
}
_update_group_order ( E - > get ( ) ) ; //update order just in case
if ( E - > get ( ) . nodes . size ( ) = = 0 ) {
return nullptr ;
}
return E - > get ( ) . nodes [ 0 ] ;
}
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void SceneTree : : get_nodes_in_group ( const StringName & p_group , List < Node * > * p_list ) {
Map < StringName , Group > : : Element * E = group_map . find ( p_group ) ;
2020-05-14 16:41:43 +02:00
if ( ! E ) {
2014-02-10 02:10:30 +01:00
return ;
2020-05-14 16:41:43 +02:00
}
2014-02-10 02:10:30 +01:00
_update_group_order ( E - > get ( ) ) ; //update order just in case
int nc = E - > get ( ) . nodes . size ( ) ;
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if ( nc = = 0 ) {
2014-02-10 02:10:30 +01:00
return ;
2020-05-14 16:41:43 +02:00
}
2017-11-25 04:07:54 +01:00
Node * * ptr = E - > get ( ) . nodes . ptrw ( ) ;
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for ( int i = 0 ; i < nc ; i + + ) {
2014-02-10 02:10:30 +01:00
p_list - > push_back ( ptr [ i ] ) ;
}
}
2014-11-06 01:20:42 +01:00
void SceneTree : : _flush_delete_queue ( ) {
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_THREAD_SAFE_METHOD_
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while ( delete_queue . size ( ) ) {
Object * obj = ObjectDB : : get_instance ( delete_queue . front ( ) - > get ( ) ) ;
2014-02-10 02:10:30 +01:00
if ( obj ) {
2017-03-05 16:44:50 +01:00
memdelete ( obj ) ;
2014-02-10 02:10:30 +01:00
}
delete_queue . pop_front ( ) ;
}
}
2014-11-06 01:20:42 +01:00
void SceneTree : : queue_delete ( Object * p_object ) {
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_THREAD_SAFE_METHOD_
ERR_FAIL_NULL ( p_object ) ;
2015-03-28 18:34:28 +01:00
p_object - > _is_queued_for_deletion = true ;
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delete_queue . push_back ( p_object - > get_instance_id ( ) ) ;
2014-02-10 02:10:30 +01:00
}
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int SceneTree : : get_node_count ( ) const {
2014-02-10 02:10:30 +01:00
return node_count ;
}
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void SceneTree : : set_edited_scene_root ( Node * p_node ) {
2018-04-29 19:49:26 +02:00
# ifdef TOOLS_ENABLED
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edited_scene_root = p_node ;
2018-04-29 19:49:26 +02:00
# endif
2014-10-12 07:13:22 +02:00
}
2014-11-06 01:20:42 +01:00
Node * SceneTree : : get_edited_scene_root ( ) const {
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# ifdef TOOLS_ENABLED
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return edited_scene_root ;
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# else
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return nullptr ;
2014-10-12 07:13:22 +02:00
# endif
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}
2014-10-12 07:13:22 +02:00
2017-03-05 16:44:50 +01:00
void SceneTree : : set_current_scene ( Node * p_scene ) {
ERR_FAIL_COND ( p_scene & & p_scene - > get_parent ( ) ! = root ) ;
current_scene = p_scene ;
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}
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Node * SceneTree : : get_current_scene ( ) const {
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return current_scene ;
}
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void SceneTree : : _change_scene ( Node * p_to ) {
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if ( current_scene ) {
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memdelete ( current_scene ) ;
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current_scene = nullptr ;
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}
2020-01-19 22:06:26 +01:00
// If we're quitting, abort.
if ( unlikely ( _quit ) ) {
if ( p_to ) { // Prevent memory leak.
memdelete ( p_to ) ;
}
return ;
}
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if ( p_to ) {
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current_scene = p_to ;
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root - > add_child ( p_to ) ;
}
}
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Error SceneTree : : change_scene ( const String & p_path ) {
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Ref < PackedScene > new_scene = ResourceLoader : : load ( p_path ) ;
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if ( new_scene . is_null ( ) ) {
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return ERR_CANT_OPEN ;
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}
2015-05-17 21:33:35 +02:00
return change_scene_to ( new_scene ) ;
}
2020-01-19 22:06:26 +01:00
Error SceneTree : : change_scene_to ( const Ref < PackedScene > & p_scene ) {
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Node * new_scene = nullptr ;
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if ( p_scene . is_valid ( ) ) {
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new_scene = p_scene - > instantiate ( ) ;
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ERR_FAIL_COND_V ( ! new_scene , ERR_CANT_CREATE ) ;
2015-05-17 21:33:35 +02:00
}
2021-07-17 23:22:52 +02:00
call_deferred ( SNAME ( " _change_scene " ) , new_scene ) ;
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return OK ;
}
2020-01-19 22:06:26 +01:00
Error SceneTree : : reload_current_scene ( ) {
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ERR_FAIL_COND_V ( ! current_scene , ERR_UNCONFIGURED ) ;
2021-09-30 16:30:55 +02:00
String fname = current_scene - > get_scene_file_path ( ) ;
2015-05-17 21:33:35 +02:00
return change_scene ( fname ) ;
}
2017-03-05 16:44:50 +01:00
void SceneTree : : add_current_scene ( Node * p_current ) {
current_scene = p_current ;
2015-05-17 21:33:35 +02:00
root - > add_child ( p_current ) ;
}
2020-01-19 22:06:26 +01:00
2021-05-21 07:23:35 +02:00
Ref < SceneTreeTimer > SceneTree : : create_timer ( double p_delay_sec , bool p_process_always ) {
2016-08-07 02:39:50 +02:00
Ref < SceneTreeTimer > stt ;
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stt . instantiate ( ) ;
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stt - > set_process_always ( p_process_always ) ;
2016-08-07 02:39:50 +02:00
stt - > set_time_left ( p_delay_sec ) ;
timers . push_back ( stt ) ;
return stt ;
}
2020-09-05 03:05:30 +02:00
Ref < Tween > SceneTree : : create_tween ( ) {
Ref < Tween > tween ;
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tween . instantiate ( ) ;
2020-09-05 03:05:30 +02:00
tween - > set_valid ( true ) ;
tweens . push_back ( tween ) ;
return tween ;
}
Array SceneTree : : get_processed_tweens ( ) {
Array ret ;
ret . resize ( tweens . size ( ) ) ;
int i = 0 ;
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for ( const Ref < Tween > & tween : tweens ) {
ret [ i ] = tween ;
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i + + ;
}
return ret ;
}
2018-05-08 10:51:04 +02:00
Ref < MultiplayerAPI > SceneTree : : get_multiplayer ( ) const {
return multiplayer ;
2018-03-03 18:30:11 +01:00
}
2018-06-02 14:32:30 +02:00
void SceneTree : : set_multiplayer_poll_enabled ( bool p_enabled ) {
multiplayer_poll = p_enabled ;
}
bool SceneTree : : is_multiplayer_poll_enabled ( ) const {
return multiplayer_poll ;
}
2018-05-08 10:51:04 +02:00
void SceneTree : : set_multiplayer ( Ref < MultiplayerAPI > p_multiplayer ) {
ERR_FAIL_COND ( ! p_multiplayer . is_valid ( ) ) ;
2018-03-03 18:30:11 +01:00
2018-05-08 10:51:04 +02:00
multiplayer = p_multiplayer ;
multiplayer - > set_root_node ( root ) ;
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}
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void SceneTree : : _bind_methods ( ) {
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ClassDB : : bind_method ( D_METHOD ( " get_root " ) , & SceneTree : : get_root ) ;
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ClassDB : : bind_method ( D_METHOD ( " has_group " , " name " ) , & SceneTree : : has_group ) ;
2014-02-10 02:10:30 +01:00
2017-03-05 16:44:50 +01:00
ClassDB : : bind_method ( D_METHOD ( " set_auto_accept_quit " , " enabled " ) , & SceneTree : : set_auto_accept_quit ) ;
2017-12-30 13:15:17 +01:00
ClassDB : : bind_method ( D_METHOD ( " set_quit_on_go_back " , " enabled " ) , & SceneTree : : set_quit_on_go_back ) ;
2014-02-10 02:10:30 +01:00
2017-03-05 16:44:50 +01:00
ClassDB : : bind_method ( D_METHOD ( " set_debug_collisions_hint " , " enable " ) , & SceneTree : : set_debug_collisions_hint ) ;
ClassDB : : bind_method ( D_METHOD ( " is_debugging_collisions_hint " ) , & SceneTree : : is_debugging_collisions_hint ) ;
ClassDB : : bind_method ( D_METHOD ( " set_debug_navigation_hint " , " enable " ) , & SceneTree : : set_debug_navigation_hint ) ;
ClassDB : : bind_method ( D_METHOD ( " is_debugging_navigation_hint " ) , & SceneTree : : is_debugging_navigation_hint ) ;
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ClassDB : : bind_method ( D_METHOD ( " set_edited_scene_root " , " scene " ) , & SceneTree : : set_edited_scene_root ) ;
ClassDB : : bind_method ( D_METHOD ( " get_edited_scene_root " ) , & SceneTree : : get_edited_scene_root ) ;
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ClassDB : : bind_method ( D_METHOD ( " set_pause " , " enable " ) , & SceneTree : : set_pause ) ;
ClassDB : : bind_method ( D_METHOD ( " is_paused " ) , & SceneTree : : is_paused ) ;
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ClassDB : : bind_method ( D_METHOD ( " create_timer " , " time_sec " , " process_always " ) , & SceneTree : : create_timer , DEFVAL ( true ) ) ;
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ClassDB : : bind_method ( D_METHOD ( " create_tween " ) , & SceneTree : : create_tween ) ;
ClassDB : : bind_method ( D_METHOD ( " get_processed_tweens " ) , & SceneTree : : get_processed_tweens ) ;
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ClassDB : : bind_method ( D_METHOD ( " get_node_count " ) , & SceneTree : : get_node_count ) ;
ClassDB : : bind_method ( D_METHOD ( " get_frame " ) , & SceneTree : : get_frame ) ;
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ClassDB : : bind_method ( D_METHOD ( " quit " , " exit_code " ) , & SceneTree : : quit , DEFVAL ( EXIT_SUCCESS ) ) ;
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ClassDB : : bind_method ( D_METHOD ( " queue_delete " , " obj " ) , & SceneTree : : queue_delete ) ;
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MethodInfo mi ;
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mi . name = " call_group_flags " ;
mi . arguments . push_back ( PropertyInfo ( Variant : : INT , " flags " ) ) ;
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mi . arguments . push_back ( PropertyInfo ( Variant : : STRING_NAME , " group " ) ) ;
mi . arguments . push_back ( PropertyInfo ( Variant : : STRING_NAME , " method " ) ) ;
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ClassDB : : bind_vararg_method ( METHOD_FLAGS_DEFAULT , " call_group_flags " , & SceneTree : : _call_group_flags , mi ) ;
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ClassDB : : bind_method ( D_METHOD ( " notify_group_flags " , " call_flags " , " group " , " notification " ) , & SceneTree : : notify_group_flags ) ;
ClassDB : : bind_method ( D_METHOD ( " set_group_flags " , " call_flags " , " group " , " property " , " value " ) , & SceneTree : : set_group_flags ) ;
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MethodInfo mi2 ;
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mi2 . name = " call_group " ;
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mi2 . arguments . push_back ( PropertyInfo ( Variant : : STRING_NAME , " group " ) ) ;
mi2 . arguments . push_back ( PropertyInfo ( Variant : : STRING_NAME , " method " ) ) ;
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ClassDB : : bind_vararg_method ( METHOD_FLAGS_DEFAULT , " call_group " , & SceneTree : : _call_group , mi2 ) ;
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ClassDB : : bind_method ( D_METHOD ( " notify_group " , " group " , " notification " ) , & SceneTree : : notify_group ) ;
ClassDB : : bind_method ( D_METHOD ( " set_group " , " group " , " property " , " value " ) , & SceneTree : : set_group ) ;
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ClassDB : : bind_method ( D_METHOD ( " get_nodes_in_group " , " group " ) , & SceneTree : : _get_nodes_in_group ) ;
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ClassDB : : bind_method ( D_METHOD ( " get_first_node_in_group " , " group " ) , & SceneTree : : get_first_node_in_group ) ;
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ClassDB : : bind_method ( D_METHOD ( " set_current_scene " , " child_node " ) , & SceneTree : : set_current_scene ) ;
ClassDB : : bind_method ( D_METHOD ( " get_current_scene " ) , & SceneTree : : get_current_scene ) ;
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ClassDB : : bind_method ( D_METHOD ( " change_scene " , " path " ) , & SceneTree : : change_scene ) ;
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ClassDB : : bind_method ( D_METHOD ( " change_scene_to " , " packed_scene " ) , & SceneTree : : change_scene_to ) ;
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ClassDB : : bind_method ( D_METHOD ( " reload_current_scene " ) , & SceneTree : : reload_current_scene ) ;
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ClassDB : : bind_method ( D_METHOD ( " _change_scene " ) , & SceneTree : : _change_scene ) ;
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ClassDB : : bind_method ( D_METHOD ( " set_multiplayer " , " multiplayer " ) , & SceneTree : : set_multiplayer ) ;
ClassDB : : bind_method ( D_METHOD ( " get_multiplayer " ) , & SceneTree : : get_multiplayer ) ;
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ClassDB : : bind_method ( D_METHOD ( " set_multiplayer_poll_enabled " , " enabled " ) , & SceneTree : : set_multiplayer_poll_enabled ) ;
ClassDB : : bind_method ( D_METHOD ( " is_multiplayer_poll_enabled " ) , & SceneTree : : is_multiplayer_poll_enabled ) ;
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ADD_PROPERTY ( PropertyInfo ( Variant : : BOOL , " debug_collisions_hint " ) , " set_debug_collisions_hint " , " is_debugging_collisions_hint " ) ;
ADD_PROPERTY ( PropertyInfo ( Variant : : BOOL , " debug_navigation_hint " ) , " set_debug_navigation_hint " , " is_debugging_navigation_hint " ) ;
ADD_PROPERTY ( PropertyInfo ( Variant : : BOOL , " paused " ) , " set_pause " , " is_paused " ) ;
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ADD_PROPERTY ( PropertyInfo ( Variant : : OBJECT , " edited_scene_root " , PROPERTY_HINT_RESOURCE_TYPE , " Node " , PROPERTY_USAGE_NONE ) , " set_edited_scene_root " , " get_edited_scene_root " ) ;
ADD_PROPERTY ( PropertyInfo ( Variant : : OBJECT , " current_scene " , PROPERTY_HINT_RESOURCE_TYPE , " Node " , PROPERTY_USAGE_NONE ) , " set_current_scene " , " get_current_scene " ) ;
ADD_PROPERTY ( PropertyInfo ( Variant : : OBJECT , " root " , PROPERTY_HINT_RESOURCE_TYPE , " Node " , PROPERTY_USAGE_NONE ) , " " , " get_root " ) ;
ADD_PROPERTY ( PropertyInfo ( Variant : : OBJECT , " multiplayer " , PROPERTY_HINT_RESOURCE_TYPE , " MultiplayerAPI " , PROPERTY_USAGE_NONE ) , " set_multiplayer " , " get_multiplayer " ) ;
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ADD_PROPERTY ( PropertyInfo ( Variant : : BOOL , " multiplayer_poll " ) , " set_multiplayer_poll_enabled " , " is_multiplayer_poll_enabled " ) ;
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ADD_SIGNAL ( MethodInfo ( " tree_changed " ) ) ;
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ADD_SIGNAL ( MethodInfo ( " tree_process_mode_changed " ) ) ; //editor only signal, but due to API hash it can't be removed in run-time
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ADD_SIGNAL ( MethodInfo ( " node_added " , PropertyInfo ( Variant : : OBJECT , " node " , PROPERTY_HINT_RESOURCE_TYPE , " Node " ) ) ) ;
ADD_SIGNAL ( MethodInfo ( " node_removed " , PropertyInfo ( Variant : : OBJECT , " node " , PROPERTY_HINT_RESOURCE_TYPE , " Node " ) ) ) ;
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ADD_SIGNAL ( MethodInfo ( " node_renamed " , PropertyInfo ( Variant : : OBJECT , " node " , PROPERTY_HINT_RESOURCE_TYPE , " Node " ) ) ) ;
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ADD_SIGNAL ( MethodInfo ( " node_configuration_warning_changed " , PropertyInfo ( Variant : : OBJECT , " node " , PROPERTY_HINT_RESOURCE_TYPE , " Node " ) ) ) ;
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ADD_SIGNAL ( MethodInfo ( " process_frame " ) ) ;
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ADD_SIGNAL ( MethodInfo ( " physics_frame " ) ) ;
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ADD_SIGNAL ( MethodInfo ( " files_dropped " , PropertyInfo ( Variant : : PACKED_STRING_ARRAY , " files " ) , PropertyInfo ( Variant : : INT , " screen " ) ) ) ;
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BIND_ENUM_CONSTANT ( GROUP_CALL_DEFAULT ) ;
BIND_ENUM_CONSTANT ( GROUP_CALL_REVERSE ) ;
BIND_ENUM_CONSTANT ( GROUP_CALL_REALTIME ) ;
BIND_ENUM_CONSTANT ( GROUP_CALL_UNIQUE ) ;
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}
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SceneTree * SceneTree : : singleton = nullptr ;
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SceneTree : : IdleCallback SceneTree : : idle_callbacks [ SceneTree : : MAX_IDLE_CALLBACKS ] ;
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int SceneTree : : idle_callback_count = 0 ;
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void SceneTree : : _call_idle_callbacks ( ) {
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for ( int i = 0 ; i < idle_callback_count ; i + + ) {
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idle_callbacks [ i ] ( ) ;
}
}
void SceneTree : : add_idle_callback ( IdleCallback p_callback ) {
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ERR_FAIL_COND ( idle_callback_count > = MAX_IDLE_CALLBACKS ) ;
idle_callbacks [ idle_callback_count + + ] = p_callback ;
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}
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void SceneTree : : get_argument_options ( const StringName & p_function , int p_idx , List < String > * r_options ) const {
if ( p_function = = " change_scene " ) {
DirAccessRef dir_access = DirAccess : : create ( DirAccess : : ACCESS_RESOURCES ) ;
List < String > directories ;
directories . push_back ( dir_access - > get_current_dir ( ) ) ;
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while ( ! directories . is_empty ( ) ) {
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dir_access - > change_dir ( directories . back ( ) - > get ( ) ) ;
directories . pop_back ( ) ;
dir_access - > list_dir_begin ( ) ;
String filename = dir_access - > get_next ( ) ;
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while ( ! filename . is_empty ( ) ) {
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if ( filename = = " . " | | filename = = " .. " ) {
filename = dir_access - > get_next ( ) ;
continue ;
}
if ( dir_access - > dir_exists ( filename ) ) {
directories . push_back ( dir_access - > get_current_dir ( ) . plus_file ( filename ) ) ;
} else if ( filename . ends_with ( " .tscn " ) | | filename . ends_with ( " .scn " ) ) {
r_options - > push_back ( " \" " + dir_access - > get_current_dir ( ) . plus_file ( filename ) + " \" " ) ;
}
filename = dir_access - > get_next ( ) ;
}
}
}
}
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SceneTree : : SceneTree ( ) {
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if ( singleton = = nullptr ) {
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singleton = this ;
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}
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debug_collisions_color = GLOBAL_DEF ( " debug/shapes/collision/shape_color " , Color ( 0.0 , 0.6 , 0.7 , 0.42 ) ) ;
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debug_collision_contact_color = GLOBAL_DEF ( " debug/shapes/collision/contact_color " , Color ( 1.0 , 0.2 , 0.1 , 0.8 ) ) ;
debug_navigation_color = GLOBAL_DEF ( " debug/shapes/navigation/geometry_color " , Color ( 0.1 , 1.0 , 0.7 , 0.4 ) ) ;
debug_navigation_disabled_color = GLOBAL_DEF ( " debug/shapes/navigation/disabled_geometry_color " , Color ( 1.0 , 0.7 , 0.1 , 0.4 ) ) ;
collision_debug_contacts = GLOBAL_DEF ( " debug/shapes/collision/max_contacts_displayed " , 10000 ) ;
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ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " debug/shapes/collision/max_contacts_displayed " , PropertyInfo ( Variant : : INT , " debug/shapes/collision/max_contacts_displayed " , PROPERTY_HINT_RANGE , " 0,20000,1 " ) ) ; // No negative
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GLOBAL_DEF ( " debug/shapes/collision/draw_2d_outlines " , true ) ;
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Math : : randomize ( ) ;
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// Create with mainloop.
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root = memnew ( Window ) ;
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root - > set_process_mode ( Node : : PROCESS_MODE_PAUSABLE ) ;
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root - > set_name ( " root " ) ;
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# ifndef _3D_DISABLED
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if ( ! root - > get_world_3d ( ) . is_valid ( ) ) {
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root - > set_world_3d ( Ref < World3D > ( memnew ( World3D ) ) ) ;
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}
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root - > set_as_audio_listener_3d ( true ) ;
# endif // _3D_DISABLED
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// Initialize network state.
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set_multiplayer ( Ref < MultiplayerAPI > ( memnew ( MultiplayerAPI ) ) ) ;
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root - > set_as_audio_listener_2d ( true ) ;
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current_scene = nullptr ;
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const int msaa_mode = GLOBAL_DEF ( " rendering/anti_aliasing/quality/msaa " , 0 ) ;
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ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/anti_aliasing/quality/msaa " , PropertyInfo ( Variant : : INT , " rendering/anti_aliasing/quality/msaa " , PROPERTY_HINT_ENUM , String : : utf8 ( " Disabled (Fastest),2× (Average),4× (Slow),8× (Slowest) " ) ) ) ;
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root - > set_msaa ( Viewport : : MSAA ( msaa_mode ) ) ;
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const int ssaa_mode = GLOBAL_DEF ( " rendering/anti_aliasing/quality/screen_space_aa " , 0 ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/anti_aliasing/quality/screen_space_aa " , PropertyInfo ( Variant : : INT , " rendering/anti_aliasing/quality/screen_space_aa " , PROPERTY_HINT_ENUM , " Disabled (Fastest),FXAA (Fast) " ) ) ;
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root - > set_screen_space_aa ( Viewport : : ScreenSpaceAA ( ssaa_mode ) ) ;
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const bool use_debanding = GLOBAL_DEF ( " rendering/anti_aliasing/quality/use_debanding " , false ) ;
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root - > set_use_debanding ( use_debanding ) ;
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const bool use_occlusion_culling = GLOBAL_DEF ( " rendering/occlusion_culling/use_occlusion_culling " , false ) ;
root - > set_use_occlusion_culling ( use_occlusion_culling ) ;
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float mesh_lod_threshold = GLOBAL_DEF ( " rendering/mesh_lod/lod_change/threshold_pixels " , 1.0 ) ;
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ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/mesh_lod/lod_change/threshold_pixels " , PropertyInfo ( Variant : : FLOAT , " rendering/mesh_lod/lod_change/threshold_pixels " , PROPERTY_HINT_RANGE , " 0,1024,0.1 " ) ) ;
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root - > set_mesh_lod_threshold ( mesh_lod_threshold ) ;
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bool snap_2d_transforms = GLOBAL_DEF ( " rendering/2d/snap/snap_2d_transforms_to_pixel " , false ) ;
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root - > set_snap_2d_transforms_to_pixel ( snap_2d_transforms ) ;
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bool snap_2d_vertices = GLOBAL_DEF ( " rendering/2d/snap/snap_2d_vertices_to_pixel " , false ) ;
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root - > set_snap_2d_vertices_to_pixel ( snap_2d_vertices ) ;
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int shadowmap_size = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/size " , 4096 ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/shadows/shadow_atlas/size " , PropertyInfo ( Variant : : INT , " rendering/shadows/shadow_atlas/size " , PROPERTY_HINT_RANGE , " 256,16384 " ) ) ;
GLOBAL_DEF ( " rendering/shadows/shadow_atlas/size.mobile " , 2048 ) ;
bool shadowmap_16_bits = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/16_bits " , true ) ;
int atlas_q0 = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/quadrant_0_subdiv " , 2 ) ;
int atlas_q1 = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/quadrant_1_subdiv " , 2 ) ;
int atlas_q2 = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/quadrant_2_subdiv " , 3 ) ;
int atlas_q3 = GLOBAL_DEF ( " rendering/shadows/shadow_atlas/quadrant_3_subdiv " , 4 ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/shadows/shadow_atlas/quadrant_0_subdiv " , PropertyInfo ( Variant : : INT , " rendering/shadows/shadow_atlas/quadrant_0_subdiv " , PROPERTY_HINT_ENUM , " Disabled,1 Shadow,4 Shadows,16 Shadows,64 Shadows,256 Shadows,1024 Shadows " ) ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/shadows/shadow_atlas/quadrant_1_subdiv " , PropertyInfo ( Variant : : INT , " rendering/shadows/shadow_atlas/quadrant_1_subdiv " , PROPERTY_HINT_ENUM , " Disabled,1 Shadow,4 Shadows,16 Shadows,64 Shadows,256 Shadows,1024 Shadows " ) ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/shadows/shadow_atlas/quadrant_2_subdiv " , PropertyInfo ( Variant : : INT , " rendering/shadows/shadow_atlas/quadrant_2_subdiv " , PROPERTY_HINT_ENUM , " Disabled,1 Shadow,4 Shadows,16 Shadows,64 Shadows,256 Shadows,1024 Shadows " ) ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/shadows/shadow_atlas/quadrant_3_subdiv " , PropertyInfo ( Variant : : INT , " rendering/shadows/shadow_atlas/quadrant_3_subdiv " , PROPERTY_HINT_ENUM , " Disabled,1 Shadow,4 Shadows,16 Shadows,64 Shadows,256 Shadows,1024 Shadows " ) ) ;
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root - > set_shadow_atlas_size ( shadowmap_size ) ;
root - > set_shadow_atlas_16_bits ( shadowmap_16_bits ) ;
root - > set_shadow_atlas_quadrant_subdiv ( 0 , Viewport : : ShadowAtlasQuadrantSubdiv ( atlas_q0 ) ) ;
root - > set_shadow_atlas_quadrant_subdiv ( 1 , Viewport : : ShadowAtlasQuadrantSubdiv ( atlas_q1 ) ) ;
root - > set_shadow_atlas_quadrant_subdiv ( 2 , Viewport : : ShadowAtlasQuadrantSubdiv ( atlas_q2 ) ) ;
root - > set_shadow_atlas_quadrant_subdiv ( 3 , Viewport : : ShadowAtlasQuadrantSubdiv ( atlas_q3 ) ) ;
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Viewport : : SDFOversize sdf_oversize = Viewport : : SDFOversize ( int ( GLOBAL_DEF ( " rendering/2d/sdf/oversize " , 1 ) ) ) ;
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root - > set_sdf_oversize ( sdf_oversize ) ;
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Viewport : : SDFScale sdf_scale = Viewport : : SDFScale ( int ( GLOBAL_DEF ( " rendering/2d/sdf/scale " , 1 ) ) ) ;
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root - > set_sdf_scale ( sdf_scale ) ;
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ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/2d/sdf/oversize " , PropertyInfo ( Variant : : INT , " rendering/2d/sdf/oversize " , PROPERTY_HINT_ENUM , " 100%,120%,150%,200% " ) ) ;
ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/2d/sdf/scale " , PropertyInfo ( Variant : : INT , " rendering/2d/sdf/scale " , PROPERTY_HINT_ENUM , " 100%,50%,25% " ) ) ;
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# ifndef _3D_DISABLED
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{ // Load default fallback environment.
// Get possible extensions.
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List < String > exts ;
ResourceLoader : : get_recognized_extensions_for_type ( " Environment " , & exts ) ;
String ext_hint ;
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for ( const String & E : exts ) {
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if ( ! ext_hint . is_empty ( ) ) {
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ext_hint + = " , " ;
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}
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ext_hint + = " *. " + E ;
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}
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// Get path.
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String env_path = GLOBAL_DEF ( " rendering/environment/defaults/default_environment " , " " ) ;
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// Setup property.
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ProjectSettings : : get_singleton ( ) - > set_custom_property_info ( " rendering/environment/defaults/default_environment " , PropertyInfo ( Variant : : STRING , " rendering/viewport/default_environment " , PROPERTY_HINT_FILE , ext_hint ) ) ;
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env_path = env_path . strip_edges ( ) ;
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if ( ! env_path . is_empty ( ) ) {
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Ref < Environment > env = ResourceLoader : : load ( env_path ) ;
if ( env . is_valid ( ) ) {
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root - > get_world_3d ( ) - > set_fallback_environment ( env ) ;
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} else {
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if ( Engine : : get_singleton ( ) - > is_editor_hint ( ) ) {
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// File was erased, clear the field.
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ProjectSettings : : get_singleton ( ) - > set ( " rendering/environment/defaults/default_environment " , " " ) ;
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} else {
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// File was erased, notify user.
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ERR_PRINT ( RTR ( " Default Environment as specified in Project Settings (Rendering -> Environment -> Default Environment) could not be loaded. " ) ) ;
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}
}
}
}
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# endif // _3D_DISABLED
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root - > set_physics_object_picking ( GLOBAL_DEF ( " physics/common/enable_object_picking " , true ) ) ;
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root - > connect ( " close_requested " , callable_mp ( this , & SceneTree : : _main_window_close ) ) ;
root - > connect ( " go_back_requested " , callable_mp ( this , & SceneTree : : _main_window_go_back ) ) ;
root - > connect ( " focus_entered " , callable_mp ( this , & SceneTree : : _main_window_focus_in ) ) ;
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# ifdef TOOLS_ENABLED
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edited_scene_root = nullptr ;
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# endif
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}
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SceneTree : : ~ SceneTree ( ) {
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if ( root ) {
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root - > _set_tree ( nullptr ) ;
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root - > _propagate_after_exit_tree ( ) ;
memdelete ( root ) ;
}
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if ( singleton = = this ) {
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singleton = nullptr ;
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}
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}