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			279 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			279 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
// Copyright © SixtyFPS GmbH <info@slint-ui.com>
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// SPDX-License-Identifier: GPL-3.0-only OR LicenseRef-Slint-commercial
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/*!
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    Parse the contents of builtins.slint and fill the builtin type registry
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*/
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use std::cell::RefCell;
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use std::collections::HashMap;
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use std::rc::Rc;
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use crate::expression_tree::Expression;
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use crate::langtype::{
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    BuiltinElement, BuiltinPropertyInfo, DefaultSizeBinding, ElementType, NativeClass, Type,
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};
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use crate::object_tree::{self, *};
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use crate::parser::{identifier_text, syntax_nodes, SyntaxKind, SyntaxNode};
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use crate::typeregister::TypeRegister;
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/// Parse the contents of builtins.slint and fill the builtin type registry
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/// `register` is the register to fill with the builtin types.
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/// At this point, it really should already contain the basic Types (string, int, ...)
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pub fn load_builtins(register: &mut TypeRegister) {
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    let mut diag = crate::diagnostics::BuildDiagnostics::default();
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    let node = crate::parser::parse(include_str!("builtins.slint").into(), None, &mut diag);
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    if !diag.is_empty() {
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        let vec = diag.to_string_vec();
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        #[cfg(feature = "display-diagnostics")]
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        diag.print();
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        panic!("Error parsing the builtin elements: {:?}", vec);
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    }
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    assert_eq!(node.kind(), crate::parser::SyntaxKind::Document);
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    let doc: syntax_nodes::Document = node.into();
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    // parse structs
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    for s in doc.StructDeclaration().chain(doc.ExportsList().flat_map(|e| e.StructDeclaration())) {
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        let external_name = identifier_text(&s.DeclaredIdentifier()).unwrap();
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        let mut ty = object_tree::type_struct_from_node(s.ObjectType(), &mut diag, register);
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        if let Type::Struct { name, .. } = &mut ty {
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            *name = Some(
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                parse_annotation("name", &s.ObjectType())
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                    .map_or_else(|| external_name.clone(), |s| s.unwrap())
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                    .to_owned(),
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            );
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        } else {
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            unreachable!()
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        }
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        register.insert_type_with_name(ty, external_name);
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    }
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    let mut natives = HashMap::<String, Rc<BuiltinElement>>::new();
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    let exports = doc
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        .ExportsList()
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        .flat_map(|e| {
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            e.Component()
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                .map(|x| {
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                    let x = identifier_text(&x.DeclaredIdentifier()).unwrap();
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                    (x.clone(), x)
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                })
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                .into_iter()
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                .chain(e.ExportSpecifier().map(|e| {
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                    (
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                        identifier_text(&e.ExportIdentifier()).unwrap(),
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                        identifier_text(&e.ExportName().unwrap()).unwrap(),
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                    )
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                }))
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        })
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        .collect::<HashMap<_, _>>();
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    for c in doc.Component().chain(doc.ExportsList().filter_map(|e| e.Component())) {
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        let id = identifier_text(&c.DeclaredIdentifier()).unwrap();
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        let e = c.Element();
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        let diag = RefCell::new(&mut diag);
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        let mut n = NativeClass::new_with_properties(
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            &id,
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            e.PropertyDeclaration()
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                .filter(|p| p.TwoWayBinding().is_none()) // aliases are handled further down
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                .map(|p| {
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                    let prop_name = identifier_text(&p.DeclaredIdentifier()).unwrap();
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                    let mut info = BuiltinPropertyInfo::new(object_tree::type_from_node(
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                        p.Type().unwrap(),
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                        *diag.borrow_mut(),
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                        register,
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                    ));
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                    info.property_visibility = PropertyVisibility::Private;
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                    for token in p.children_with_tokens() {
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                        if token.kind() != SyntaxKind::Identifier {
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                            continue;
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                        }
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                        match (token.as_token().unwrap().text(), info.property_visibility) {
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                            ("in", PropertyVisibility::Private) => {
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                                info.property_visibility = PropertyVisibility::Input
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                            }
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                            ("out", PropertyVisibility::Private) => {
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                                info.property_visibility = PropertyVisibility::Output
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                            }
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                            ("in-out", PropertyVisibility::Private) => {
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                                info.property_visibility = PropertyVisibility::InOut
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                            }
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                            ("property", _) => (),
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                            _ => unreachable!("invalid property keyword when parsing builtin file for property {id}::{prop_name}"),
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                        }
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                    }
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                    if let Some(e) = p.BindingExpression() {
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                        let ty = info.ty.clone();
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                        info.default_value = Some(compiled(e, register, ty));
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                    }
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                    (prop_name, info)
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                })
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                .chain(e.CallbackDeclaration().map(|s| {
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                    (
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                        identifier_text(&s.DeclaredIdentifier()).unwrap(),
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                        BuiltinPropertyInfo::new(Type::Callback {
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                            args: s
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                                .Type()
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                                .map(|a| {
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                                    object_tree::type_from_node(a, *diag.borrow_mut(), register)
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                                })
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                                .collect(),
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                            return_type: s.ReturnType().map(|a| {
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                                Box::new(object_tree::type_from_node(
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                                    a.Type(),
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                                    *diag.borrow_mut(),
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                                    register,
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                                ))
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                            }),
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                        }),
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                    )
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                })),
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        );
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        n.deprecated_aliases = e
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            .PropertyDeclaration()
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            .flat_map(|p| {
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                if let Some(twb) = p.TwoWayBinding() {
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                    let alias_name = identifier_text(&p.DeclaredIdentifier()).unwrap();
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                    let alias_target = identifier_text(&twb.Expression().QualifiedName().expect(
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                        "internal error: built-in aliases can only be declared within the type",
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                    ))
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                    .unwrap();
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                    Some((alias_name, alias_target))
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                } else {
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                    None
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                }
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            })
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            .collect();
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        n.cpp_type = parse_annotation("cpp_type", &e).map(|x| x.unwrap());
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        n.rust_type_constructor = parse_annotation("rust_type_constructor", &e).map(|x| x.unwrap());
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        enum Base {
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            None,
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            Global,
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            NativeParent(Rc<BuiltinElement>),
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        }
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        let base = if c.child_text(SyntaxKind::Identifier).map_or(false, |t| t == "global") {
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            Base::Global
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        } else if let Some(base) = e.QualifiedName() {
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            let base = QualifiedTypeName::from_node(base).to_string();
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            let base = natives.get(&base).unwrap().clone();
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            n.parent = Some(base.native_class.clone());
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            Base::NativeParent(base)
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        } else {
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            Base::None
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        };
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        let mut builtin = BuiltinElement::new(Rc::new(n));
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        builtin.is_global = matches!(base, Base::Global);
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        let properties = &mut builtin.properties;
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        if let Base::NativeParent(parent) = &base {
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            properties.extend(parent.properties.iter().map(|(k, v)| (k.clone(), v.clone())));
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        }
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        properties
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            .extend(builtin.native_class.properties.iter().map(|(k, v)| (k.clone(), v.clone())));
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        builtin.disallow_global_types_as_child_elements =
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            parse_annotation("disallow_global_types_as_child_elements", &e).is_some();
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        builtin.is_non_item_type = parse_annotation("is_non_item_type", &e).is_some();
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        builtin.is_internal = parse_annotation("is_internal", &e).is_some();
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        builtin.accepts_focus = parse_annotation("accepts_focus", &e).is_some();
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        builtin.default_size_binding = parse_annotation("default_size_binding", &e)
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            .map(|size_type| match size_type.as_deref() {
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                Some("expands_to_parent_geometry") => DefaultSizeBinding::ExpandsToParentGeometry,
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                Some("implicit_size") => DefaultSizeBinding::ImplicitSize,
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                other => panic!("invalid default size binding {:?}", other),
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            })
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            .unwrap_or(DefaultSizeBinding::None);
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        builtin.additional_accepted_child_types = e
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            .SubElement()
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            .map(|s| {
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                let a = identifier_text(&s.Element().QualifiedName().unwrap()).unwrap();
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                let t = natives[&a].clone();
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                (a, ElementType::Builtin(t))
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            })
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            .collect();
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        if let Some(builtin_name) = exports.get(&id) {
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            if !matches!(&base, Base::Global) {
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                builtin.name = builtin_name.clone();
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                register.add_builtin(Rc::new(builtin));
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            } else {
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                let glob = Rc::new(Component {
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                    id: builtin_name.clone(),
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                    root_element: Rc::new(RefCell::new(Element {
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                        base_type: ElementType::Builtin(Rc::new(builtin)),
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                        ..Default::default()
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                    })),
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                    ..Default::default()
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                });
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                glob.root_element.borrow_mut().enclosing_component = Rc::downgrade(&glob);
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                register.add(glob);
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            }
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        } else {
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            // because they are not taken from if we inherit from it
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            assert!(builtin.additional_accepted_child_types.is_empty());
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            natives.insert(id, Rc::new(builtin));
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        }
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    }
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    register.property_animation_type =
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        ElementType::Builtin(natives.remove("PropertyAnimation").unwrap());
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    register.empty_type = ElementType::Builtin(natives.remove("Empty").unwrap());
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    if !diag.is_empty() {
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        let vec = diag.to_string_vec();
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        #[cfg(feature = "display-diagnostics")]
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        diag.print();
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        panic!("Error loading the builtin elements: {:?}", vec);
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    }
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}
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/// Compile an expression, knowing that the expression is basic (does not have lookup to other things)
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fn compiled(
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    node: syntax_nodes::BindingExpression,
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    type_register: &TypeRegister,
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    ty: Type,
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) -> Expression {
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    let mut diag = crate::diagnostics::BuildDiagnostics::default();
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    let e = Expression::from_binding_expression_node(
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        node.clone().into(),
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        &mut crate::lookup::LookupCtx::empty_context(type_register, &mut diag),
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    )
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    .maybe_convert_to(ty, &node, &mut diag);
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    if diag.has_error() {
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        let vec = diag.to_string_vec();
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        #[cfg(feature = "display-diagnostics")]
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        diag.print();
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        panic!("Error parsing the builtin elements: {:?}", vec);
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    }
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    e
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}
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/// Find out if there are comments that starts with `//-key` and returns `None`
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/// if no annotation with this key is found, or `Some(None)` if it is found without a value
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/// or `Some(Some(value))` if there is a `//-key:value`  match
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fn parse_annotation(key: &str, node: &SyntaxNode) -> Option<Option<String>> {
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    for x in node.children_with_tokens() {
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        if x.kind() == SyntaxKind::Comment {
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            if let Some(comment) = x
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                .as_token()
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                .unwrap()
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                .text()
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                .strip_prefix("//-")
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                .and_then(|x| x.trim_end().strip_prefix(key))
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            {
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                if comment.is_empty() {
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                    return Some(None);
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                }
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                if let Some(comment) = comment.strip_prefix(':') {
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                    return Some(Some(comment.to_owned()));
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                }
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            }
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        }
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    }
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    None
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}
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