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Add support for explicitly-defined compound triggers in GLTF files
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@ -127,6 +127,11 @@ Error GLTFDocumentExtensionPhysics::parse_node_extensions(Ref<GLTFState> p_state
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trigger_body->set_body_type("trigger");
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p_gltf_node->set_additional_data(StringName("GLTFPhysicsBody"), trigger_body);
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}
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// If this node defines explicit member shape nodes, save this information.
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if (node_trigger.has("nodes")) {
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Array node_trigger_nodes = node_trigger["nodes"];
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p_gltf_node->set_additional_data(StringName("GLTFPhysicsCompoundTriggerNodes"), node_trigger_nodes);
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}
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}
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if (physics_body_ext.has("motion") || physics_body_ext.has("type")) {
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p_gltf_node->set_additional_data(StringName("GLTFPhysicsBody"), GLTFPhysicsBody::from_dictionary(physics_body_ext));
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@ -241,6 +246,19 @@ Node3D *_add_physics_node_to_given_node(Node3D *p_current_node, Node3D *p_child,
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return p_current_node;
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}
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Array _get_ancestor_compound_trigger_nodes(Ref<GLTFState> p_state, TypedArray<GLTFNode> p_state_nodes, CollisionObject3D *p_ancestor_col_obj) {
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GLTFNodeIndex ancestor_index = p_state->get_node_index(p_ancestor_col_obj);
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ERR_FAIL_INDEX_V(ancestor_index, p_state_nodes.size(), Array());
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Ref<GLTFNode> ancestor_gltf_node = p_state_nodes[ancestor_index];
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Variant compound_trigger_nodes = ancestor_gltf_node->get_additional_data(StringName("GLTFPhysicsCompoundTriggerNodes"));
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if (compound_trigger_nodes.is_array()) {
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return compound_trigger_nodes;
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}
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Array ret;
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ancestor_gltf_node->set_additional_data(StringName("GLTFPhysicsCompoundTriggerNodes"), ret);
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return ret;
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}
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Node3D *GLTFDocumentExtensionPhysics::generate_scene_node(Ref<GLTFState> p_state, Ref<GLTFNode> p_gltf_node, Node *p_scene_parent) {
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Ref<GLTFPhysicsBody> gltf_physics_body = p_gltf_node->get_additional_data(StringName("GLTFPhysicsBody"));
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#ifndef DISABLE_DEPRECATED
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@ -269,12 +287,27 @@ Node3D *GLTFDocumentExtensionPhysics::generate_scene_node(Ref<GLTFState> p_state
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#endif // DISABLE_DEPRECATED
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Node3D *ret = nullptr;
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CollisionObject3D *ancestor_col_obj = nullptr;
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Ref<GLTFPhysicsShape> gltf_physics_collider_shape = p_gltf_node->get_additional_data(StringName("GLTFPhysicsColliderShape"));
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Ref<GLTFPhysicsShape> gltf_physics_trigger_shape = p_gltf_node->get_additional_data(StringName("GLTFPhysicsTriggerShape"));
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if (gltf_physics_body.is_valid()) {
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ancestor_col_obj = gltf_physics_body->to_node();
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ret = ancestor_col_obj;
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} else {
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ancestor_col_obj = _get_ancestor_collision_object(p_scene_parent);
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if (!Object::cast_to<PhysicsBody3D>(ancestor_col_obj)) {
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if (Object::cast_to<Area3D>(ancestor_col_obj) && gltf_physics_trigger_shape.is_valid()) {
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// At this point, we found an ancestor Area3D node. But do we want to use it for this trigger shape?
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TypedArray<GLTFNode> state_nodes = p_state->get_nodes();
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GLTFNodeIndex self_index = state_nodes.find(p_gltf_node);
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Array compound_trigger_nodes = _get_ancestor_compound_trigger_nodes(p_state, state_nodes, ancestor_col_obj);
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// Check if the ancestor specifies compound trigger nodes, and if this node is in there.
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// Remember that JSON does not have integers, only "number", aka double-precision floats.
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if (compound_trigger_nodes.size() > 0 && !compound_trigger_nodes.has(double(self_index))) {
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// If the compound trigger we found is not the intended user of
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// this shape node, then we need to create a new Area3D node.
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ancestor_col_obj = memnew(Area3D);
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ret = ancestor_col_obj;
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}
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} else if (!Object::cast_to<PhysicsBody3D>(ancestor_col_obj)) {
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if (p_gltf_node->get_additional_data(StringName("GLTFPhysicsCompoundCollider"))) {
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// If the GLTF file wants this node to group solid shapes together,
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// and there is no parent body, we need to create a static body.
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@ -288,8 +321,6 @@ Node3D *GLTFDocumentExtensionPhysics::generate_scene_node(Ref<GLTFState> p_state
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// set above. If there is no ancestor body, we will either generate an
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// Area3D or StaticBody3D implicitly, so prefer an Area3D as the base
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// node for best compatibility with signal connections to this node.
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Ref<GLTFPhysicsShape> gltf_physics_collider_shape = p_gltf_node->get_additional_data(StringName("GLTFPhysicsColliderShape"));
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Ref<GLTFPhysicsShape> gltf_physics_trigger_shape = p_gltf_node->get_additional_data(StringName("GLTFPhysicsTriggerShape"));
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bool is_ancestor_col_obj_solid = Object::cast_to<PhysicsBody3D>(ancestor_col_obj);
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if (is_ancestor_col_obj_solid && gltf_physics_collider_shape.is_valid()) {
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Node3D *child = _generate_shape_node_and_body_if_needed(p_state, p_gltf_node, gltf_physics_collider_shape, ancestor_col_obj, false);
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@ -361,8 +392,14 @@ void GLTFDocumentExtensionPhysics::convert_scene_node(Ref<GLTFState> p_state, Re
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gltf_shape->set_mesh_index(_get_or_insert_mesh_in_state(p_state, importer_mesh));
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}
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}
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if (cast_to<Area3D>(_get_ancestor_collision_object(p_scene_node->get_parent()))) {
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CollisionObject3D *ancestor_col_obj = _get_ancestor_collision_object(p_scene_node->get_parent());
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if (cast_to<Area3D>(ancestor_col_obj)) {
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p_gltf_node->set_additional_data(StringName("GLTFPhysicsTriggerShape"), gltf_shape);
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// Write explicit member shape nodes to the ancestor compound trigger node.
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TypedArray<GLTFNode> state_nodes = p_state->get_nodes();
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GLTFNodeIndex self_index = state_nodes.size(); // The current p_gltf_node will be inserted next.
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Array compound_trigger_nodes = _get_ancestor_compound_trigger_nodes(p_state, p_state->get_nodes(), ancestor_col_obj);
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compound_trigger_nodes.push_back(double(self_index));
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} else {
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p_gltf_node->set_additional_data(StringName("GLTFPhysicsColliderShape"), gltf_shape);
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}
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@ -421,6 +458,11 @@ Error GLTFDocumentExtensionPhysics::export_node(Ref<GLTFState> p_state, Ref<GLTF
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Ref<GLTFPhysicsBody> physics_body = p_gltf_node->get_additional_data(StringName("GLTFPhysicsBody"));
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if (physics_body.is_valid()) {
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physics_body_ext = physics_body->to_dictionary();
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Variant compound_trigger_nodes = p_gltf_node->get_additional_data(StringName("GLTFPhysicsCompoundTriggerNodes"));
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if (compound_trigger_nodes.is_array()) {
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Dictionary trigger_property = physics_body_ext.get_or_add("trigger", {});
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trigger_property["nodes"] = compound_trigger_nodes;
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}
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}
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Ref<GLTFPhysicsShape> collider_shape = p_gltf_node->get_additional_data(StringName("GLTFPhysicsColliderShape"));
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if (collider_shape.is_valid()) {
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