1use crate::Value;
11use crate::globals::{GlobalInstance, GlobalStorage};
12use crate::instance::SubComponentInstance;
13use i_slint_compiler::expression_tree::{BuiltinFunction, MinMaxOp};
14use i_slint_compiler::langtype::{ConstantExpression, Type};
15use i_slint_compiler::llr::{self, Expression, LocalMemberIndex, MemberReference};
16use i_slint_core::graphics::{
17 Brush, ConicGradientBrush, GradientStop, LinearGradientBrush, RadialGradientBrush,
18};
19use i_slint_core::model::{Model, ModelExt, ModelRc, SharedVectorModel};
20use i_slint_core::{Color, SharedString, SharedVector};
21use smol_str::SmolStr;
22use std::collections::HashMap;
23use std::pin::Pin;
24use std::rc::{Rc, Weak};
25
26pub struct EvalContext {
28 pub current: Option<Pin<Rc<SubComponentInstance>>>,
31 pub compilation_unit: Rc<llr::CompilationUnit>,
34 pub globals: Weak<GlobalStorage>,
36 pub locals: HashMap<SmolStr, Value>,
38 pub function_arguments: Vec<Value>,
40 pub function_arg_types: Vec<Type>,
43 pub return_value: Option<Value>,
45}
46
47impl EvalContext {
48 pub fn new(current: Pin<Rc<SubComponentInstance>>) -> Self {
51 let globals = current
52 .root
53 .get()
54 .and_then(|w| w.upgrade())
55 .map(|inst| Rc::downgrade(&inst.globals))
56 .unwrap_or_default();
57 Self {
58 compilation_unit: current.compilation_unit.clone(),
59 current: Some(current),
60 globals,
61 locals: HashMap::new(),
62 function_arguments: Vec::new(),
63 function_arg_types: Vec::new(),
64 return_value: None,
65 }
66 }
67
68 pub fn for_global(globals: Weak<GlobalStorage>, cu: Rc<llr::CompilationUnit>) -> Self {
70 Self {
71 current: None,
72 compilation_unit: cu,
73 globals,
74 locals: HashMap::new(),
75 function_arguments: Vec::new(),
76 function_arg_types: Vec::new(),
77 return_value: None,
78 }
79 }
80
81 pub fn with_arguments(current: Pin<Rc<SubComponentInstance>>, args: Vec<Value>) -> Self {
82 let mut ctx = Self::new(current);
83 ctx.function_arguments = args;
84 ctx
85 }
86}
87
88fn root_instance(
91 ctx: &EvalContext,
92) -> Option<vtable::VRc<i_slint_core::item_tree::ItemTreeVTable, crate::instance::Instance>> {
93 match ctx.current.as_ref() {
94 Some(c) => c.root.get()?.upgrade(),
95 None => ctx.globals.upgrade()?.root.get()?.upgrade(),
96 }
97}
98
99pub(crate) fn walk_parent(
101 start: &Pin<Rc<SubComponentInstance>>,
102 level: usize,
103) -> Pin<Rc<SubComponentInstance>> {
104 let mut current = start.clone();
105 for _ in 0..level {
106 let parent = current.parent.upgrade().expect("parent vanished during evaluation");
107 current = Pin::new(parent);
108 }
109 current
110}
111
112impl i_slint_compiler::llr::TypeResolutionContext for EvalContext {
113 fn property_ty(&self, mr: &MemberReference) -> &Type {
114 let cu = &self.compilation_unit;
115 match mr {
116 MemberReference::Global { global_index, member } => {
117 let g = &cu.globals[*global_index];
118 match member {
119 LocalMemberIndex::Property(idx) => &g.properties[*idx].ty,
120 LocalMemberIndex::Function(idx) => &g.functions[*idx].ret_ty,
121 LocalMemberIndex::Callback(idx) => &g.callbacks[*idx].ty,
124 LocalMemberIndex::Native { .. } | LocalMemberIndex::Timer(_) => &Type::Invalid,
125 }
126 }
127 MemberReference::Relative { parent_level, local_reference } => {
128 let current =
129 self.current.as_ref().expect("property_ty needs a sub-component context");
130 let sub = walk_parent(current, *parent_level);
134 let mut sc_idx = sub.sub_component_idx;
135 for i in &local_reference.sub_component_path {
136 sc_idx = cu.sub_components[sc_idx].sub_components[*i].ty;
137 }
138 let sc = &cu.sub_components[sc_idx];
139 match &local_reference.reference {
140 LocalMemberIndex::Property(idx) => &sc.properties[*idx].ty,
141 LocalMemberIndex::Function(idx) => &sc.functions[*idx].ret_ty,
142 LocalMemberIndex::Callback(idx) => &sc.callbacks[*idx].ty,
143 LocalMemberIndex::Timer(_) => &Type::Invalid,
145 LocalMemberIndex::Native { item_index, prop_name, .. } => {
146 if prop_name == "elements" {
147 return &Type::PathData;
149 }
150 sc.items[*item_index]
151 .ty
152 .lookup_property(prop_name)
153 .unwrap_or(&Type::Invalid)
154 }
155 }
156 }
157 }
158 }
159
160 fn arg_type(&self, index: usize) -> &Type {
161 self.function_arg_types.get(index).unwrap_or(&Type::Invalid)
162 }
163}
164
165pub(crate) fn walk_sub_path(
167 mut current: Pin<Rc<SubComponentInstance>>,
168 path: &[llr::SubComponentInstanceIdx],
169) -> Pin<Rc<SubComponentInstance>> {
170 for &idx in path {
171 let next = current.sub_components[idx].clone();
172 current = next;
173 }
174 current
175}
176
177pub(crate) fn walk_to(
181 ctx: &EvalContext,
182 parent_level: usize,
183 path: &[llr::SubComponentInstanceIdx],
184) -> Pin<Rc<SubComponentInstance>> {
185 let start = ctx.current.as_ref().expect("relative member reference without a sub-component");
186 walk_sub_path(walk_parent(start, parent_level), path)
187}
188
189pub(crate) fn find_flat_item_index(
191 item_table: &[Option<(
192 Box<[i_slint_compiler::llr::SubComponentInstanceIdx]>,
193 i_slint_compiler::llr::ItemInstanceIdx,
194 )>],
195 path: &[i_slint_compiler::llr::SubComponentInstanceIdx],
196 item_index: i_slint_compiler::llr::ItemInstanceIdx,
197) -> Option<usize> {
198 item_table.iter().position(|entry| {
199 entry.as_ref().is_some_and(|(p, i)| p.as_ref() == path && *i == item_index)
200 })
201}
202
203fn load_local(instance: &SubComponentInstance, member: &LocalMemberIndex) -> Value {
204 match member {
205 LocalMemberIndex::Property(idx) => Pin::as_ref(&instance.properties[*idx]).get(),
206 LocalMemberIndex::Native { item_index, prop_name, .. } => {
207 Pin::as_ref(&instance.items[*item_index]).get_property(prop_name).unwrap_or(Value::Void)
208 }
209 LocalMemberIndex::Callback(_)
210 | LocalMemberIndex::Function(_)
211 | LocalMemberIndex::Timer(_) => {
212 panic!("load_local called on callback/function/timer reference")
213 }
214 }
215}
216
217fn eval_array_row_predicate(
223 arg_name: &SmolStr,
224 predicate: &Expression,
225 ctx: &mut EvalContext,
226 row_value: Value,
227) -> bool {
228 let previous = ctx.locals.insert(arg_name.clone(), row_value);
229 let result = eval_expression(ctx, predicate).try_into().unwrap();
230 match previous {
231 Some(prev) => {
232 ctx.locals.insert(arg_name.clone(), prev);
233 }
234 None => {
235 ctx.locals.remove(arg_name);
236 }
237 }
238 result
239}
240
241fn set_maybe_animated(
243 prop: Pin<&i_slint_core::Property<Value>>,
244 ty: &Type,
245 value: Value,
246 animation: Option<i_slint_core::items::PropertyAnimation>,
247) {
248 match animation {
249 Some(anim) => match crate::bindings::animated_value_map(ty) {
250 Some(map) => prop.set_animated_value_with_map(value, anim, map),
251 None => prop.set_animated_value(value, anim),
252 },
253 None => prop.set(value),
254 }
255}
256
257fn store_local(
258 instance: &SubComponentInstance,
259 member: &LocalMemberIndex,
260 value: Value,
261 animation: Option<i_slint_core::items::PropertyAnimation>,
262) {
263 match member {
264 LocalMemberIndex::Property(idx) => {
265 let sc = &instance.compilation_unit.sub_components[instance.sub_component_idx];
266 set_maybe_animated(
267 Pin::as_ref(&instance.properties[*idx]),
268 &sc.properties[*idx].ty,
269 value,
270 animation,
271 );
272 }
273 LocalMemberIndex::Native { item_index, prop_name, .. } => {
274 let _ =
275 Pin::as_ref(&instance.items[*item_index]).set_property(prop_name, value, animation);
276 }
277 LocalMemberIndex::Callback(_)
278 | LocalMemberIndex::Function(_)
279 | LocalMemberIndex::Timer(_) => {
280 panic!("store_local called on callback/function/timer reference")
281 }
282 }
283}
284
285fn walk_to_target_with_animation(
292 start: Pin<Rc<SubComponentInstance>>,
293 local_reference: &llr::LocalMemberReference,
294) -> (Pin<Rc<SubComponentInstance>>, Option<i_slint_core::items::PropertyAnimation>) {
295 let cu = start.compilation_unit.clone();
296 let path = &local_reference.sub_component_path;
297 let mut animation = None;
298 let mut owner = start;
299 for depth in 0..=path.len() {
300 if animation.is_none() {
301 let sc = &cu.sub_components[owner.sub_component_idx];
302 if !sc.animations.is_empty() {
303 let key = llr::LocalMemberReference {
304 sub_component_path: path[depth..].to_vec(),
305 reference: local_reference.reference.clone(),
306 };
307 if let Some(expr) = sc.animations.get(&key) {
308 animation = Some((owner.clone(), expr.clone()));
309 }
310 }
311 }
312 if let Some(&idx) = path.get(depth) {
313 let next = owner.sub_components[idx].clone();
314 owner = next;
315 }
316 }
317 let animation = animation.map(|(scope, expr)| {
318 let mut ctx = EvalContext::new(scope);
319 crate::bindings::value_to_property_animation(eval_expression(&mut ctx, &expr))
320 });
321 (owner, animation)
322}
323
324pub fn load_property(ctx: &EvalContext, mr: &MemberReference) -> Value {
325 match mr {
326 MemberReference::Global { global_index, member } => {
327 let Some(storage) = ctx.globals.upgrade() else { return Value::Void };
328 let Some(global) = storage.get(*global_index) else { return Value::Void };
329 load_global(global, member)
330 }
331 MemberReference::Relative { parent_level, local_reference } => {
332 let instance = walk_to(ctx, *parent_level, &local_reference.sub_component_path);
333 load_local(&instance, &local_reference.reference)
334 }
335 }
336}
337
338pub fn store_property(ctx: &EvalContext, mr: &MemberReference, value: Value) {
339 match mr {
340 MemberReference::Global { global_index, member } => {
341 let Some(storage) = ctx.globals.upgrade() else { return };
342 let Some(global) = storage.get(*global_index) else { return };
343 store_global(global, member, value);
344 }
345 MemberReference::Relative { parent_level, local_reference } => {
346 let start =
347 ctx.current.as_ref().expect("relative member reference without a sub-component");
348 let (instance, animation) =
349 walk_to_target_with_animation(walk_parent(start, *parent_level), local_reference);
350 store_local(&instance, &local_reference.reference, value, animation);
351 }
352 }
353}
354
355pub fn invoke_callback(ctx: &EvalContext, mr: &MemberReference, args: &[Value]) -> Value {
356 match mr {
357 MemberReference::Global { global_index, member } => {
358 let Some(storage) = ctx.globals.upgrade() else { return Value::Void };
359 let Some(global) = storage.get(*global_index) else { return Value::Void };
360 let LocalMemberIndex::Callback(idx) = member else {
361 panic!("invoke_callback on non-callback global reference")
362 };
363 let cb = &global.compilation_unit.globals[global.global_idx].callbacks[*idx];
364 if let Some(native) = &global.native {
365 let res = native.as_ref().invoke_callback(&cb.name, args).unwrap_or(Value::Void);
366 return ensure_typed_default(res, &cb.ret_ty);
367 }
368 if let Some(tracker) = global.callback_trackers[*idx].as_ref() {
371 Pin::as_ref(tracker).get();
372 }
373 let res = Pin::as_ref(&global.callbacks[*idx]).call(args);
374 ensure_typed_default(res, &cb.ret_ty)
375 }
376 MemberReference::Relative { parent_level, local_reference } => {
377 let instance = walk_to(ctx, *parent_level, &local_reference.sub_component_path);
378 match &local_reference.reference {
379 LocalMemberIndex::Callback(idx) => {
380 if let Some(tracker) = instance.callback_trackers[*idx].as_ref() {
384 Pin::as_ref(tracker).get();
385 }
386 let res = Pin::as_ref(&instance.callbacks[*idx]).call(args);
387 let ret_ty = instance.compilation_unit.sub_components
388 [instance.sub_component_idx]
389 .callbacks[*idx]
390 .ret_ty
391 .clone();
392 ensure_typed_default(res, &ret_ty)
393 }
394 LocalMemberIndex::Native { item_index, prop_name, .. } => {
395 Pin::as_ref(&instance.items[*item_index])
396 .call_callback(prop_name, args)
397 .unwrap_or(Value::Void)
398 }
399 _ => panic!("invoke_callback on non-callback reference: {mr:?}"),
400 }
401 }
402 }
403}
404
405pub(crate) fn ensure_typed_default(value: Value, ret_ty: &Type) -> Value {
408 if matches!(value, Value::Void) { default_value_for_type(ret_ty) } else { value }
409}
410
411pub fn invoke_function(ctx: &EvalContext, mr: &MemberReference, args: Vec<Value>) -> Value {
412 match mr {
413 MemberReference::Global { global_index, member } => {
414 let Some(storage) = ctx.globals.upgrade() else { return Value::Void };
415 let Some(global) = storage.get(*global_index) else { return Value::Void };
416 let LocalMemberIndex::Function(idx) = member else {
417 panic!("invoke_function on non-function global reference")
418 };
419 let function = &global.compilation_unit.globals[global.global_idx].functions[*idx];
420 let code = function.code.borrow().clone();
421 let mut inner_ctx =
422 EvalContext::for_global(ctx.globals.clone(), global.compilation_unit.clone());
423 inner_ctx.function_arg_types = function.args.clone();
424 inner_ctx.function_arguments = args;
425 eval_expression(&mut inner_ctx, &code)
426 }
427 MemberReference::Relative { parent_level, local_reference } => {
428 let instance = walk_to(ctx, *parent_level, &local_reference.sub_component_path);
429 let LocalMemberIndex::Function(idx) = &local_reference.reference else {
430 panic!("invoke_function on non-function reference")
431 };
432 let sc = &instance.compilation_unit.sub_components[instance.sub_component_idx];
433 let function = &sc.functions[*idx];
434 let code = function.code.borrow().clone();
435 let mut inner_ctx = EvalContext::with_arguments(instance.clone(), args);
436 inner_ctx.function_arg_types = function.args.clone();
437 eval_expression(&mut inner_ctx, &code)
438 }
439 }
440}
441
442fn load_global(global: &Rc<GlobalInstance>, member: &LocalMemberIndex) -> Value {
443 match member {
444 LocalMemberIndex::Property(idx) => {
445 if let Some(native) = &global.native {
446 let g = &global.compilation_unit.globals[global.global_idx];
447 return native
448 .as_ref()
449 .get_property(&g.properties[*idx].name)
450 .unwrap_or(Value::Void);
451 }
452 Pin::as_ref(&global.properties[*idx]).get()
453 }
454 _ => panic!("load_global called on non-property"),
455 }
456}
457
458pub(crate) fn store_global(global: &Rc<GlobalInstance>, member: &LocalMemberIndex, value: Value) {
459 if let LocalMemberIndex::Property(idx) = member {
460 let g = &global.compilation_unit.globals[global.global_idx];
461 if let Some(native) = &global.native {
463 let _ = native.as_ref().set_property(&g.properties[*idx].name, value, None);
464 return;
465 }
466 set_maybe_animated(
467 Pin::as_ref(&global.properties[*idx]),
468 &g.properties[*idx].ty,
469 value,
470 None,
471 );
472 }
473}
474
475fn cast_to_path_data(ctx: &mut EvalContext, from: &Expression) -> Value {
485 use i_slint_core::graphics::PathData;
486 use i_slint_core::items::PathEvent;
487
488 match from {
489 Expression::Array { values, .. } => {
490 let elements: SharedVector<i_slint_core::graphics::PathElement> =
491 values.iter().filter_map(|e| path_element_from_expression(ctx, e)).collect();
492 Value::PathData(PathData::Elements(elements))
493 }
494 Expression::Struct { values, .. }
495 if values.contains_key("events") && values.contains_key("points") =>
496 {
497 let events_value = eval_expression(ctx, &values["events"]);
498 let points_value = eval_expression(ctx, &values["points"]);
499 let events: SharedVector<PathEvent> = match events_value {
504 Value::Model(m) => {
505 (0..m.row_count()).filter_map(|i| m.row_data(i)?.try_into().ok()).collect()
506 }
507 _ => SharedVector::default(),
508 };
509 let points: SharedVector<lyon_path::math::Point> = match points_value {
510 Value::Model(m) => {
511 (0..m.row_count()).filter_map(|i| m.row_data(i)?.try_into().ok()).collect()
512 }
513 _ => SharedVector::default(),
514 };
515 Value::PathData(PathData::Events(events, points))
516 }
517 _ => match eval_expression(ctx, from) {
518 Value::String(s) => Value::PathData(PathData::Commands(s)),
519 _ => Value::PathData(PathData::None),
520 },
521 }
522}
523
524fn path_element_from_expression(
528 ctx: &mut EvalContext,
529 expr: &Expression,
530) -> Option<i_slint_core::graphics::PathElement> {
531 use i_slint_compiler::langtype::{BuiltinStruct, StructName};
532 use i_slint_core::graphics::{
533 PathArcTo, PathCubicTo, PathElement, PathLineTo, PathMoveTo, PathQuadraticTo,
534 };
535 let Expression::Struct { ty, values } = expr else { return None };
536 let StructName::Builtin(bs) = &ty.name else { return None };
537 let get_f32 = |field: &str, ctx: &mut EvalContext| -> f32 {
538 values
539 .get(field)
540 .map(|e| eval_expression(ctx, e))
541 .and_then(|v| f64::try_from(v).ok())
542 .unwrap_or(0.0) as f32
543 };
544 let get_bool = |field: &str, ctx: &mut EvalContext| -> bool {
545 values
546 .get(field)
547 .map(|e| eval_expression(ctx, e))
548 .map(|v| matches!(v, Value::Bool(true)))
549 .unwrap_or(false)
550 };
551 Some(match bs {
552 BuiltinStruct::PathMoveTo => {
553 PathElement::MoveTo(PathMoveTo { x: get_f32("x", ctx), y: get_f32("y", ctx) })
554 }
555 BuiltinStruct::PathLineTo => {
556 PathElement::LineTo(PathLineTo { x: get_f32("x", ctx), y: get_f32("y", ctx) })
557 }
558 BuiltinStruct::PathArcTo => PathElement::ArcTo(PathArcTo {
559 x: get_f32("x", ctx),
560 y: get_f32("y", ctx),
561 radius_x: get_f32("radius-x", ctx),
562 radius_y: get_f32("radius-y", ctx),
563 x_rotation: get_f32("x-rotation", ctx),
564 large_arc: get_bool("large-arc", ctx),
565 sweep: get_bool("sweep", ctx),
566 }),
567 BuiltinStruct::PathCubicTo => PathElement::CubicTo(PathCubicTo {
568 x: get_f32("x", ctx),
569 y: get_f32("y", ctx),
570 control_1_x: get_f32("control-1-x", ctx),
571 control_1_y: get_f32("control-1-y", ctx),
572 control_2_x: get_f32("control-2-x", ctx),
573 control_2_y: get_f32("control-2-y", ctx),
574 }),
575 BuiltinStruct::PathQuadraticTo => PathElement::QuadraticTo(PathQuadraticTo {
576 x: get_f32("x", ctx),
577 y: get_f32("y", ctx),
578 control_x: get_f32("control-x", ctx),
579 control_y: get_f32("control-y", ctx),
580 }),
581 BuiltinStruct::PathClose => PathElement::Close,
582 _ => return None,
583 })
584}
585
586pub fn default_value_for_type(ty: &Type) -> Value {
589 match ty {
590 Type::Float32
591 | Type::Int32
592 | Type::Duration
593 | Type::Angle
594 | Type::PhysicalLength
595 | Type::LogicalLength
596 | Type::Rem
597 | Type::Percent
598 | Type::UnitProduct(_) => Value::Number(0.),
599 Type::String => Value::String(Default::default()),
600 Type::Color | Type::Brush => Value::Brush(Brush::default()),
601 Type::Bool => Value::Bool(false),
602 Type::Image => Value::Image(Default::default()),
603 Type::Struct(s) => Value::Struct(
604 s.fields
605 .keys()
606 .map(|k| (k.to_string(), default_value_for_struct_field(s, k)))
607 .collect(),
608 ),
609 Type::Array(_) | Type::Model => Value::Model(ModelRc::default()),
610 Type::Keys => Value::Keys(Default::default()),
611 Type::DataTransfer => Value::DataTransfer(Default::default()),
612 Type::StyledText => Value::StyledText(Default::default()),
613 Type::Enumeration(en) => {
614 let default = en.clone().default_value();
615 Value::EnumerationValue(en.name.to_string(), default.to_string())
616 }
617 _ => Value::Void,
618 }
619}
620
621pub fn default_value_for_struct_field(
625 s: &i_slint_compiler::langtype::Struct,
626 field_name: &str,
627) -> Value {
628 match s.field_defaults.get(field_name) {
629 Some(expr) => eval_constant_expression(expr),
630 None => default_value_for_type(
631 s.fields.get(field_name).expect("default value requested for unknown struct field"),
632 ),
633 }
634}
635
636fn eval_constant_expression(expr: &ConstantExpression) -> Value {
639 match expr {
640 ConstantExpression::StringLiteral(s) => Value::String(s.as_str().into()),
641 ConstantExpression::NumberLiteral(n, _unit) => Value::Number(*n),
642 ConstantExpression::BoolLiteral(b) => Value::Bool(*b),
643 ConstantExpression::EnumerationValue(value) => {
644 Value::EnumerationValue(value.enumeration.name.to_string(), value.to_string())
645 }
646 ConstantExpression::Cast { from, to } => {
647 cast_constant_value(eval_constant_expression(from), to)
648 }
649 ConstantExpression::UnaryOp { sub, op } => {
650 match (eval_constant_expression(sub), op) {
652 (Value::Number(a), '+') => Value::Number(a),
653 (Value::Number(a), '-') => Value::Number(-a),
654 (Value::Bool(a), '!') => Value::Bool(!a),
655 (sub, _) => panic!("unsupported {op} {sub:?}"),
656 }
657 }
658 ConstantExpression::Struct { values, .. } => Value::Struct(
659 values
660 .iter()
661 .map(|(k, v)| (k.to_string(), eval_constant_expression(v)))
662 .collect::<crate::api::Struct>(),
663 ),
664 ConstantExpression::Array { values, .. } => {
665 Value::Model(ModelRc::new(SharedVectorModel::from(
666 values.iter().map(eval_constant_expression).collect::<SharedVector<_>>(),
667 )))
668 }
669 }
670}
671
672fn cast_constant_value(value: Value, to: &Type) -> Value {
674 match (value, to) {
675 (Value::Number(n), Type::Int32) => Value::Number(n.trunc()),
676 (Value::Number(n), Type::String) => {
677 Value::String(i_slint_core::string::shared_string_from_number(n))
678 }
679 (Value::Number(n), Type::Color) => Color::from_argb_encoded(n as u32).into(),
680 (Value::Brush(brush), Type::Color) => brush.color().into(),
681 (Value::EnumerationValue(_, val), Type::String) => Value::String(val.into()),
682 (v, _) => v,
683 }
684}
685
686pub fn eval_expression(ctx: &mut EvalContext, expression: &Expression) -> Value {
687 if let Some(r) = &ctx.return_value {
688 return r.clone();
689 }
690 match expression {
691 Expression::StringLiteral(s) => Value::String(s.as_str().into()),
692 Expression::NumberLiteral(n) => Value::Number(*n),
693 Expression::BoolLiteral(b) => Value::Bool(*b),
694 Expression::KeysLiteral(ks) => Value::Keys({
695 let mut modifiers = i_slint_core::input::KeyboardModifiers::default();
696 modifiers.alt = ks.modifiers.alt;
697 modifiers.control = ks.modifiers.control;
698 modifiers.shift = ks.modifiers.shift;
699 modifiers.meta = ks.modifiers.meta;
700 i_slint_core::input::make_keys(
701 SharedString::from(&*ks.key),
702 modifiers,
703 ks.ignore_shift,
704 ks.ignore_alt,
705 )
706 }),
707 Expression::PropertyReference(mr) => load_property(ctx, mr),
708 Expression::FunctionParameterReference { index } => ctx.function_arguments[*index].clone(),
709 Expression::StoreLocalVariable { name, value } => {
710 let v = eval_expression(ctx, value);
711 ctx.locals.insert(name.clone(), v);
712 Value::Void
713 }
714 Expression::ReadLocalVariable { name, .. } => {
715 ctx.locals.get(name).cloned().unwrap_or(Value::Void)
716 }
717 Expression::StructFieldAccess { base, name } => {
718 if let Value::Struct(s) = eval_expression(ctx, base) {
719 s.get_field(name).cloned().unwrap_or(Value::Void)
720 } else {
721 Value::Void
722 }
723 }
724 Expression::ArrayIndex { array, index } => {
725 let array_v = eval_expression(ctx, array);
726 let index = eval_expression(ctx, index);
727 match (array_v, index) {
728 (Value::Model(m), Value::Number(i)) => {
729 let idx = i as isize as usize;
730 m.row_data_tracked(idx).unwrap_or_else(|| {
731 default_value_for_type(&expression.ty(&*ctx))
734 })
735 }
736 _ => Value::Void,
737 }
738 }
739 Expression::Cast { from, to } => {
740 if matches!(to, Type::PathData) {
744 return cast_to_path_data(ctx, from);
745 }
746 let v = eval_expression(ctx, from);
747 match (v, to) {
748 (Value::Number(n), Type::Int32) => Value::Number(n.trunc()),
749 (Value::Number(n), Type::String) => {
750 Value::String(i_slint_core::string::shared_string_from_number(n))
751 }
752 (Value::Number(n), Type::Color) => Color::from_argb_encoded(n as u32).into(),
753 (Value::Brush(brush), Type::Color) => brush.color().into(),
754 (Value::EnumerationValue(_, val), Type::String) => Value::String(val.into()),
755 (v, _) => v,
756 }
757 }
758 Expression::CodeBlock(sub) => {
759 let mut v = Value::Void;
760 for e in sub {
761 v = eval_expression(ctx, e);
762 if let Some(r) = &ctx.return_value {
763 return r.clone();
764 }
765 }
766 v
767 }
768 Expression::BuiltinFunctionCall { function, arguments } => {
769 call_builtin_function(ctx, function.clone(), arguments)
770 }
771 Expression::CallBackCall { callback, arguments } => {
772 let args: Vec<Value> = arguments.iter().map(|e| eval_expression(ctx, e)).collect();
773 invoke_callback(ctx, callback, &args)
774 }
775 Expression::FunctionCall { function, arguments } => {
776 let args: Vec<Value> = arguments.iter().map(|e| eval_expression(ctx, e)).collect();
777 invoke_function(ctx, function, args)
778 }
779 Expression::ItemMemberFunctionCall { function } => call_item_member_function(ctx, function),
780 Expression::ExtraBuiltinFunctionCall { function, arguments, .. } => {
781 crate::eval_layout::call_extra_builtin(ctx, function, arguments)
782 }
783 Expression::PropertyAssignment { property, value } => {
784 let v = eval_expression(ctx, value);
785 store_property(ctx, property, v);
786 Value::Void
787 }
788 Expression::ModelDataAssignment { level, value } => {
789 let new_value = eval_expression(ctx, value);
790 if let Some(current) = ctx.current.as_ref() {
791 let mut walker = current.clone();
792 for _ in 0..*level {
793 let parent = walker.parent.upgrade().expect("parent vanished");
794 walker = std::pin::Pin::new(parent);
795 }
796 if let Some((parent_weak, repeater_idx)) = walker.repeated_in.get()
797 && let Some(parent) = parent_weak.upgrade()
798 {
799 let row = walker.compilation_unit.sub_components[walker.sub_component_idx]
802 .properties
803 .iter_enumerated()
804 .find(|(_, p)| p.name.as_str() == "model_index")
805 .map(|(idx, _)| {
806 let v = std::pin::Pin::as_ref(&walker.properties[idx]).get();
807 f64::try_from(v).unwrap_or(0.) as usize
808 })
809 .unwrap_or(0);
810 let parent_pinned = std::pin::Pin::new(parent);
811 let repeater = &parent_pinned.repeaters[*repeater_idx];
812 repeater.model_set_row_data(row, new_value);
813 }
814 }
815 Value::Void
816 }
817 Expression::ArrayIndexAssignment { array, index, value } => {
818 let value = eval_expression(ctx, value);
819 let array = eval_expression(ctx, array);
820 let index = eval_expression(ctx, index);
821 if let (Value::Model(m), Value::Number(i)) = (array, index)
822 && i >= 0.0
823 {
824 let i = i.trunc() as usize;
825 if i < m.row_count() {
826 m.set_row_data(i, value);
827 }
828 }
829 Value::Void
830 }
831 Expression::SliceIndexAssignment { slice_name, index, value } => {
832 let value = eval_expression(ctx, value);
833 match ctx.locals.get_mut(slice_name.as_str()) {
834 Some(Value::ArrayOfU16(vec)) => {
835 if let Value::Number(n) = value
836 && *index < vec.len()
837 {
838 vec.make_mut_slice()[*index] = n as u16;
839 }
840 }
841 Some(Value::Model(m)) if *index < m.row_count() => {
842 m.set_row_data(*index, value);
843 }
844 _ => {}
845 }
846 Value::Void
847 }
848 Expression::BinaryExpression { lhs, rhs, op } => {
849 let lhs = eval_expression(ctx, lhs);
850 match (op, &lhs) {
853 ('&', Value::Bool(false)) => return Value::Bool(false),
854 ('|', Value::Bool(true)) => return Value::Bool(true),
855 _ => {}
856 }
857 let rhs = eval_expression(ctx, rhs);
858 binary_op(*op, lhs, rhs)
859 }
860 Expression::UnaryOp { sub, op } => {
861 let sub = eval_expression(ctx, sub);
862 match (sub, op) {
863 (Value::Number(a), '+') => Value::Number(a),
864 (Value::Number(a), '-') => Value::Number(-a),
865 (Value::Bool(a), '!') => Value::Bool(!a),
866 (Value::Void, '+' | '-') => Value::Number(0.0),
869 (Value::Void, '!') => Value::Bool(true),
870 (s, o) => panic!("unsupported {o} {s:?}"),
871 }
872 }
873 Expression::ImageReference { resource_ref, nine_slice } => {
874 let mut image = load_image_reference(resource_ref);
875 if let Some(n) = nine_slice {
876 image.set_nine_slice_edges(n[0], n[1], n[2], n[3]);
877 }
878 Value::Image(image)
879 }
880 Expression::Condition { condition, true_expr, false_expr } => {
881 match eval_expression(ctx, condition) {
882 Value::Bool(true) => eval_expression(ctx, true_expr),
883 Value::Bool(false) => eval_expression(ctx, false_expr),
884 _ => Value::Void,
885 }
886 }
887 Expression::Array { values, .. } => Value::Model(ModelRc::new(SharedVectorModel::from(
888 values.iter().map(|e| eval_expression(ctx, e)).collect::<SharedVector<_>>(),
889 ))),
890 Expression::Struct { values, .. } => Value::Struct(
891 values.iter().map(|(k, v)| (k.to_string(), eval_expression(ctx, v))).collect(),
892 ),
893 Expression::EasingCurve(curve) => {
894 use i_slint_compiler::expression_tree::EasingCurve as EC;
895 use i_slint_core::animations::EasingCurve as Core;
896 Value::EasingCurve(match curve {
897 EC::Linear => Core::Linear,
898 EC::EaseInElastic => Core::EaseInElastic,
899 EC::EaseOutElastic => Core::EaseOutElastic,
900 EC::EaseInOutElastic => Core::EaseInOutElastic,
901 EC::EaseInBounce => Core::EaseInBounce,
902 EC::EaseOutBounce => Core::EaseOutBounce,
903 EC::EaseInOutBounce => Core::EaseInOutBounce,
904 EC::CubicBezier(a, b, c, d) => Core::CubicBezier([*a, *b, *c, *d]),
905 })
906 }
907 Expression::MouseCursor(cursor) => {
908 use i_slint_compiler::expression_tree::MouseCursorInner as Expr;
909 use i_slint_core::cursor::MouseCursorInner as Core;
910 Value::MouseCursorInner(match cursor {
911 Expr::BuiltIn(cursor) => {
912 Core::BuiltIn(eval_expression(ctx, cursor).try_into().unwrap_or_default())
913 }
914 Expr::CustomMouseCursor { image, hotspot_x, hotspot_y } => {
915 Core::CustomMouseCursor {
916 image: eval_expression(ctx, image).try_into().unwrap_or_default(),
917 hotspot_x: eval_expression(ctx, hotspot_x).try_into().unwrap_or_default(),
918 hotspot_y: eval_expression(ctx, hotspot_y).try_into().unwrap_or_default(),
919 }
920 }
921 })
922 }
923 Expression::LinearGradient { angle, stops } => {
924 let angle: f32 = eval_expression(ctx, angle).try_into().unwrap_or_default();
925 Value::Brush(Brush::LinearGradient(LinearGradientBrush::new(
926 angle,
927 eval_stops(ctx, stops),
928 )))
929 }
930 Expression::RadialGradient { stops, center, radius } => {
931 let mut g = RadialGradientBrush::new_circle(eval_stops(ctx, stops));
932 if let Some((cx, cy)) = center {
933 let cx: f32 = eval_expression(ctx, cx).try_into().unwrap_or_default();
934 let cy: f32 = eval_expression(ctx, cy).try_into().unwrap_or_default();
935 g = g.with_center(cx, cy);
936 }
937 if let Some(r) = radius {
938 let r: f32 = eval_expression(ctx, r).try_into().unwrap_or_default();
939 g = g.with_radius(r);
940 }
941 Value::Brush(Brush::RadialGradient(g))
942 }
943 Expression::ConicGradient { from_angle, stops, center } => {
944 let from_angle: f32 = eval_expression(ctx, from_angle).try_into().unwrap_or_default();
945 let mut g = ConicGradientBrush::new(from_angle, eval_stops(ctx, stops));
946 if let Some((cx, cy)) = center {
947 let cx: f32 = eval_expression(ctx, cx).try_into().unwrap_or_default();
948 let cy: f32 = eval_expression(ctx, cy).try_into().unwrap_or_default();
949 g = g.with_center(cx, cy);
950 }
951 Value::Brush(Brush::ConicGradient(g))
952 }
953 Expression::EnumerationValue(value) => {
954 Value::EnumerationValue(value.enumeration.name.to_string(), value.to_string())
955 }
956 Expression::LayoutCacheAccess {
957 layout_cache_prop,
958 index,
959 repeater_index,
960 entries_per_item,
961 } => {
962 let cache = load_property(ctx, layout_cache_prop);
963 layout_cache_access(ctx, cache, *index, repeater_index.as_deref(), *entries_per_item)
964 }
965 Expression::GridRepeaterCacheAccess {
966 layout_cache_prop,
967 index,
968 repeater_index,
969 stride,
970 child_offset,
971 inner_repeater_index,
972 entries_per_item,
973 } => {
974 let cache = load_property(ctx, layout_cache_prop);
975 let offset: usize = eval_expression(ctx, repeater_index).try_into().unwrap_or_default();
976 let stride_val: usize = eval_expression(ctx, stride).try_into().unwrap_or_default();
977 let inner_offset: usize = inner_repeater_index
978 .as_deref()
979 .map(|e| {
980 let i: usize = eval_expression(ctx, e).try_into().unwrap_or_default();
981 i * *entries_per_item
982 })
983 .unwrap_or(0);
984 grid_repeater_cache_access(
985 cache,
986 *index,
987 offset,
988 stride_val,
989 *child_offset,
990 inner_offset,
991 )
992 }
993 Expression::WithLayoutItemInfo {
994 cells_variable,
995 elements,
996 orientation,
997 sub_expression,
998 ..
999 } => with_layout_item_info(ctx, cells_variable, elements, *orientation, sub_expression),
1000 Expression::WithFlexboxLayoutItemInfo {
1001 cells_h_variable,
1002 cells_v_variable,
1003 flex_props_variable,
1004 elements,
1005 repeated_cross_width,
1006 sub_expression,
1007 ..
1008 } => with_flexbox_layout_item_info(
1009 ctx,
1010 cells_h_variable,
1011 cells_v_variable,
1012 flex_props_variable,
1013 elements,
1014 repeated_cross_width.as_deref(),
1015 sub_expression,
1016 ),
1017 Expression::WithGridInputData { cells_variable, elements, sub_expression, .. } => {
1018 with_grid_input_data(ctx, cells_variable, elements, sub_expression)
1019 }
1020 Expression::MinMax { ty: _, op, lhs, rhs } => {
1021 let Value::Number(lhs) = eval_expression(ctx, lhs) else { return Value::Void };
1022 let Value::Number(rhs) = eval_expression(ctx, rhs) else { return Value::Void };
1023 match op {
1024 MinMaxOp::Min => Value::Number(lhs.min(rhs)),
1025 MinMaxOp::Max => Value::Number(lhs.max(rhs)),
1026 }
1027 }
1028 Expression::EmptyComponentFactory => Value::ComponentFactory(Default::default()),
1029 Expression::EmptyDataTransfer => Value::DataTransfer(Default::default()),
1030 Expression::SolveFlexboxLayoutWithMeasure { .. } => {
1031 crate::eval_layout::solve_flexbox_layout_with_measure(ctx, expression)
1032 }
1033 Expression::TranslationReference { .. } => {
1034 Value::String(Default::default())
1038 }
1039 Expression::Closure { .. } => unreachable!(
1040 "closures are dispatched by their consuming builtin and should not go through eval_expression"
1041 ),
1042 Expression::DebugHook { expression, id } => {
1043 if let Some(hook_value) = crate::debug_hook::trigger_debug_hook(ctx, id) {
1044 return hook_value;
1045 }
1046 eval_expression(ctx, expression)
1047 }
1048 }
1049}
1050
1051fn with_layout_item_info(
1052 ctx: &mut EvalContext,
1053 cells_variable: &str,
1054 elements: &[itertools::Either<Expression, i_slint_compiler::llr::LayoutRepeatedElement>],
1055 orientation: i_slint_compiler::layout::Orientation,
1056 sub_expression: &Expression,
1057) -> Value {
1058 let mut cells: Vec<Value> = Vec::with_capacity(elements.len());
1059 let mut repeated_indices: Vec<u32> = Vec::new();
1060 let mut repeater_steps: Vec<u32> = Vec::new();
1061 for el in elements {
1062 match el {
1063 itertools::Either::Left(expr) => cells.push(eval_expression(ctx, expr)),
1064 itertools::Either::Right(repeater) => {
1065 let offset = cells.len() as u32;
1066 let (instances, step) = push_repeater_layout_items(
1067 ctx,
1068 repeater.repeater_index,
1069 repeater.row_child_templates.as_deref(),
1070 orientation,
1071 &mut cells,
1072 );
1073 repeated_indices.push(offset);
1074 repeated_indices.push(instances);
1075 repeater_steps.push(step);
1076 }
1077 }
1078 }
1079 let prev_cells =
1080 ctx.locals.insert(SmolStr::from(cells_variable), Value::Model(model_from_vec(cells)));
1081 let prev_ri = ctx.locals.insert(
1082 SmolStr::new_static("repeated_indices"),
1083 Value::Model(model_from_vec(
1084 repeated_indices.into_iter().map(|i| Value::Number(i as f64)).collect(),
1085 )),
1086 );
1087 let prev_rs = ctx.locals.insert(
1088 SmolStr::new_static("repeater_steps"),
1089 Value::Model(model_from_vec(
1090 repeater_steps.into_iter().map(|i| Value::Number(i as f64)).collect(),
1091 )),
1092 );
1093 let result = eval_expression(ctx, sub_expression);
1094 restore_local(ctx, cells_variable, prev_cells);
1095 restore_local(ctx, "repeated_indices", prev_ri);
1096 restore_local(ctx, "repeater_steps", prev_rs);
1097 result
1098}
1099
1100fn push_repeater_layout_items(
1101 ctx: &mut EvalContext,
1102 repeater_idx: i_slint_compiler::llr::RepeatedElementIdx,
1103 row_child_templates: Option<&[i_slint_compiler::llr::RowChildTemplateInfo]>,
1104 orientation: i_slint_compiler::layout::Orientation,
1105 cells: &mut Vec<Value>,
1106) -> (u32, u32) {
1107 use i_slint_core::model::RepeatedItemTree;
1108 let Some(current) = ctx.current.as_ref() else { return (0, 0) };
1109 let repeater = ¤t.repeaters[repeater_idx];
1110 repeater.track_instance_changes();
1111 let instances = repeater.instances_vec();
1112 let core_orientation = llr_to_core_orientation(orientation);
1113 let push_cell = |cells: &mut Vec<Value>, info: i_slint_core::layout::LayoutItemInfo| {
1114 let mut struct_value = crate::api::Struct::default();
1115 struct_value.set_field("constraint".to_string(), info.constraint.into());
1116 cells.push(Value::Struct(struct_value));
1117 };
1118 let step = match row_child_templates {
1119 None => {
1120 for instance in &instances {
1123 let info = RepeatedItemTree::layout_item_info(
1124 instance.as_pin_ref(),
1125 core_orientation,
1126 None,
1127 );
1128 push_cell(cells, info);
1129 }
1130 1
1131 }
1132 Some(templates) => {
1133 let max_total = instances
1137 .iter()
1138 .map(|inst| total_row_child_count(&inst.root_sub_component, templates))
1139 .max()
1140 .unwrap_or(i_slint_compiler::llr::static_child_count(templates));
1141 for instance in &instances {
1142 for child_idx in 0..max_total {
1143 let info = RepeatedItemTree::layout_item_info(
1144 instance.as_pin_ref(),
1145 core_orientation,
1146 Some(child_idx),
1147 );
1148 push_cell(cells, info);
1149 }
1150 }
1151 max_total as u32
1152 }
1153 };
1154 (instances.len() as u32, step)
1155}
1156
1157fn total_row_child_count(
1158 sub: &Pin<std::rc::Rc<crate::instance::SubComponentInstance>>,
1159 templates: &[i_slint_compiler::llr::RowChildTemplateInfo],
1160) -> usize {
1161 use i_slint_compiler::llr::{RowChildTemplateInfo, static_child_count};
1162 let mut total = static_child_count(templates);
1163 for entry in templates {
1164 if let RowChildTemplateInfo::Repeated { repeater_index } = entry {
1165 let repeater = &sub.repeaters[*repeater_index];
1166 repeater.track_instance_changes();
1167 total += repeater.range().len();
1168 }
1169 }
1170 total
1171}
1172
1173fn llr_to_core_orientation(
1174 o: i_slint_compiler::layout::Orientation,
1175) -> i_slint_core::items::Orientation {
1176 match o {
1177 i_slint_compiler::layout::Orientation::Horizontal => {
1178 i_slint_core::items::Orientation::Horizontal
1179 }
1180 i_slint_compiler::layout::Orientation::Vertical => {
1181 i_slint_core::items::Orientation::Vertical
1182 }
1183 }
1184}
1185
1186fn with_flexbox_layout_item_info(
1187 ctx: &mut EvalContext,
1188 cells_h_variable: &str,
1189 cells_v_variable: &str,
1190 flex_props_variable: &str,
1191 elements: &[itertools::Either<
1192 (Expression, Expression, Expression),
1193 i_slint_compiler::llr::LayoutRepeatedElement,
1194 >],
1195 repeated_cross_width: Option<&Expression>,
1196 sub_expression: &Expression,
1197) -> Value {
1198 let cross_width =
1201 repeated_cross_width.map(|e| eval_expression(ctx, e).try_into().unwrap_or_default());
1202 let mut cells_h: Vec<Value> = Vec::with_capacity(elements.len());
1203 let mut cells_v: Vec<Value> = Vec::with_capacity(elements.len());
1204 let mut flex_props: Vec<Value> = Vec::with_capacity(elements.len());
1205 let mut repeated_indices: Vec<u32> = Vec::new();
1206 for el in elements {
1207 match el {
1208 itertools::Either::Left((h, v, props)) => {
1209 cells_h.push(eval_expression(ctx, h));
1210 cells_v.push(eval_expression(ctx, v));
1211 flex_props.push(eval_expression(ctx, props));
1212 }
1213 itertools::Either::Right(repeater) => {
1214 let offset = cells_h.len() as u32;
1215 let instances = push_repeater_flexbox_items(
1216 ctx,
1217 repeater.repeater_index,
1218 cross_width,
1219 &mut cells_h,
1220 &mut cells_v,
1221 &mut flex_props,
1222 );
1223 repeated_indices.push(offset);
1224 repeated_indices.push(instances);
1225 }
1226 }
1227 }
1228 let prev_h =
1229 ctx.locals.insert(SmolStr::from(cells_h_variable), Value::Model(model_from_vec(cells_h)));
1230 let prev_v =
1231 ctx.locals.insert(SmolStr::from(cells_v_variable), Value::Model(model_from_vec(cells_v)));
1232 let prev_fp = ctx
1233 .locals
1234 .insert(SmolStr::from(flex_props_variable), Value::Model(model_from_vec(flex_props)));
1235 let prev_ri = ctx.locals.insert(
1236 SmolStr::new_static("repeated_indices"),
1237 Value::Model(model_from_vec(
1238 repeated_indices.into_iter().map(|i| Value::Number(i as f64)).collect(),
1239 )),
1240 );
1241 let result = eval_expression(ctx, sub_expression);
1242 restore_local(ctx, cells_h_variable, prev_h);
1243 restore_local(ctx, cells_v_variable, prev_v);
1244 restore_local(ctx, flex_props_variable, prev_fp);
1245 restore_local(ctx, "repeated_indices", prev_ri);
1246 result
1247}
1248
1249fn push_repeater_flexbox_items(
1250 ctx: &mut EvalContext,
1251 repeater_idx: i_slint_compiler::llr::RepeatedElementIdx,
1252 cross_width: Option<f32>,
1253 cells_h: &mut Vec<Value>,
1254 cells_v: &mut Vec<Value>,
1255 flex_props: &mut Vec<Value>,
1256) -> u32 {
1257 use i_slint_core::items::Orientation;
1258 use i_slint_core::model::RepeatedItemTree;
1259 let Some(current) = ctx.current.as_ref() else { return 0 };
1260 let repeater = ¤t.repeaters[repeater_idx];
1261 repeater.track_instance_changes();
1262 let instances = repeater.instances_vec();
1263 let instance_count = instances.len() as u32;
1264 for instance in instances {
1265 let info_h = RepeatedItemTree::flexbox_layout_item_info(
1269 instance.as_pin_ref(),
1270 Orientation::Horizontal,
1271 None,
1272 );
1273 let info_v = match cross_width {
1276 Some(w) => instance.as_pin_ref().flexbox_layout_item_info_at_cross_width(w),
1277 None => RepeatedItemTree::flexbox_layout_item_info(
1278 instance.as_pin_ref(),
1279 Orientation::Vertical,
1280 None,
1281 ),
1282 };
1283 flex_props.push(flex_props_to_value(info_h.props));
1286 cells_h.push(layout_item_info_to_value(info_h.constraint));
1287 cells_v.push(layout_item_info_to_value(info_v.constraint));
1288 }
1289 instance_count
1290}
1291
1292fn layout_item_info_to_value(constraint: i_slint_core::layout::LayoutInfo) -> Value {
1293 let mut s = crate::api::Struct::default();
1294 s.set_field("constraint".to_string(), constraint.into());
1295 Value::Struct(s)
1296}
1297
1298fn flex_props_to_value(props: i_slint_core::layout::FlexItemProps) -> Value {
1299 let mut s = crate::api::Struct::default();
1300 s.set_field("flex_grow".to_string(), Value::Number(props.flex_grow as f64));
1301 s.set_field("flex_shrink".to_string(), Value::Number(props.flex_shrink as f64));
1302 s.set_field("flex_basis".to_string(), Value::Number(props.flex_basis as f64));
1303 s.set_field(
1304 "cross_axis_self_alignment".to_string(),
1305 Value::EnumerationValue(
1306 "CrossAxisSelfAlignment".to_string(),
1307 format!("{:?}", props.cross_axis_self_alignment).to_lowercase(),
1308 ),
1309 );
1310 s.set_field("flex_order".to_string(), Value::Number(props.flex_order as f64));
1311 Value::Struct(s)
1312}
1313
1314fn with_grid_input_data(
1315 ctx: &mut EvalContext,
1316 cells_variable: &str,
1317 elements: &[itertools::Either<Expression, i_slint_compiler::llr::GridLayoutRepeatedElement>],
1318 sub_expression: &Expression,
1319) -> Value {
1320 let saved_new_row = ctx.locals.remove("new_row");
1327 let mut cells: Vec<Value> = Vec::with_capacity(elements.len());
1328 let mut repeated_indices: Vec<u32> = Vec::new();
1329 let mut repeater_steps: Vec<u32> = Vec::new();
1330
1331 for el in elements {
1332 match el {
1333 itertools::Either::Left(expr) => cells.push(eval_expression(ctx, expr)),
1334 itertools::Either::Right(repeater) => {
1335 ctx.locals.insert(SmolStr::new_static("new_row"), Value::Bool(repeater.new_row));
1336 let offset = cells.len() as u32;
1337 let is_row_repeater = repeater.row_child_templates.is_some();
1338 let (instances, step) = push_repeater_grid_input_data(
1339 ctx,
1340 repeater.repeater_index,
1341 repeater.new_row,
1342 repeater.row_child_templates.as_deref(),
1343 &mut cells,
1344 );
1345 if !is_row_repeater && instances > 0 {
1346 ctx.locals.insert(SmolStr::new_static("new_row"), Value::Bool(false));
1347 }
1348 repeated_indices.push(offset);
1349 repeated_indices.push(instances);
1350 repeater_steps.push(step);
1351 }
1352 }
1353 }
1354 restore_local(ctx, "new_row", saved_new_row);
1355
1356 let prev_cells =
1357 ctx.locals.insert(SmolStr::from(cells_variable), Value::Model(model_from_vec(cells)));
1358 let prev_ri = ctx.locals.insert(
1359 SmolStr::new_static("repeated_indices"),
1360 Value::Model(model_from_vec(
1361 repeated_indices.into_iter().map(|i| Value::Number(i as f64)).collect(),
1362 )),
1363 );
1364 let prev_rs = ctx.locals.insert(
1365 SmolStr::new_static("repeater_steps"),
1366 Value::Model(model_from_vec(
1367 repeater_steps.into_iter().map(|i| Value::Number(i as f64)).collect(),
1368 )),
1369 );
1370
1371 let result = eval_expression(ctx, sub_expression);
1372
1373 restore_local(ctx, cells_variable, prev_cells);
1374 restore_local(ctx, "repeated_indices", prev_ri);
1375 restore_local(ctx, "repeater_steps", prev_rs);
1376 result
1377}
1378
1379fn restore_local(ctx: &mut EvalContext, name: &str, prev: Option<Value>) {
1380 if let Some(prev) = prev {
1381 ctx.locals.insert(SmolStr::from(name), prev);
1382 } else {
1383 ctx.locals.remove(name);
1384 }
1385}
1386
1387fn push_repeater_grid_input_data(
1388 ctx: &mut EvalContext,
1389 repeater_idx: i_slint_compiler::llr::RepeatedElementIdx,
1390 new_row: bool,
1391 row_child_templates: Option<&[i_slint_compiler::llr::RowChildTemplateInfo]>,
1392 cells: &mut Vec<Value>,
1393) -> (u32, u32) {
1394 use i_slint_compiler::llr::RowChildTemplateInfo;
1395 use i_slint_core::model::VecModel;
1396 use std::rc::Rc;
1397 let Some(current) = ctx.current.as_ref() else { return (0, 0) };
1398 let repeater = ¤t.repeaters[repeater_idx];
1399 repeater.track_instance_changes();
1400
1401 let is_row_repeater = row_child_templates.is_some();
1402 let static_count =
1403 row_child_templates.map(i_slint_compiler::llr::static_child_count).unwrap_or(1);
1404
1405 let instances = repeater.instances_vec();
1406 let instance_count = instances.len() as u32;
1407
1408 let step = if let Some(templates) = row_child_templates {
1412 instances
1413 .iter()
1414 .map(|inst| total_row_child_count(&inst.root_sub_component, templates))
1415 .max()
1416 .unwrap_or(static_count)
1417 } else {
1418 1
1419 };
1420
1421 let mut current_new_row = new_row;
1422
1423 for instance in &instances {
1424 let inner_sub = instance.root_sub_component.clone();
1425 let cu = inner_sub.compilation_unit.clone();
1426 let sc = &cu.sub_components[inner_sub.sub_component_idx];
1427
1428 let mut statics: Vec<Value> = vec![Value::Void; static_count];
1432 if let Some(expr) = &sc.grid_layout_input_for_repeated {
1433 let expr = expr.borrow();
1434 let mut inner_ctx = EvalContext::new(inner_sub.clone());
1435 let result_model: Rc<VecModel<Value>> = Rc::new(VecModel::default());
1436 for _ in 0..static_count {
1437 result_model.push(Value::Void);
1438 }
1439 inner_ctx.locals.insert(
1440 SmolStr::new_static("result"),
1441 Value::Model(i_slint_core::model::ModelRc::from(result_model.clone())),
1442 );
1443 inner_ctx.locals.insert(SmolStr::new_static("new_row"), Value::Bool(current_new_row));
1444 eval_expression(&mut inner_ctx, &expr);
1445 for (slot, i) in statics.iter_mut().zip(0..result_model.row_count()) {
1446 if let Some(v) = result_model.row_data(i) {
1447 *slot = v;
1448 }
1449 }
1450 }
1451
1452 if let Some(templates) = row_child_templates {
1453 let mut written = 0usize;
1457 let mut static_idx = 0usize;
1458 for entry in templates {
1459 if written >= step {
1460 break;
1461 }
1462 match entry {
1463 RowChildTemplateInfo::Static { .. } => {
1464 let mut v = statics.get(static_idx).cloned().unwrap_or(Value::Void);
1465 static_idx += 1;
1466 override_new_row(&mut v, written == 0 && current_new_row);
1467 cells.push(v);
1468 written += 1;
1469 }
1470 RowChildTemplateInfo::Repeated { repeater_index } => {
1471 let inner_rep = &inner_sub.repeaters[*repeater_index];
1472 inner_rep.track_instance_changes();
1473 for inner_inst in inner_rep.instances_vec() {
1477 if written >= step {
1478 break;
1479 }
1480 for mut v in eval_grid_input_for_repeated(
1481 &inner_inst.root_sub_component,
1482 written == 0 && current_new_row,
1483 ) {
1484 if written >= step {
1485 break;
1486 }
1487 override_new_row(&mut v, written == 0 && current_new_row);
1488 cells.push(v);
1489 written += 1;
1490 }
1491 }
1492 }
1493 }
1494 }
1495 while written < step {
1496 cells.push(auto_grid_input_data());
1497 written += 1;
1498 }
1499 } else {
1500 cells.push(statics.pop().unwrap_or_else(auto_grid_input_data));
1502 }
1503
1504 if !is_row_repeater {
1505 current_new_row = false;
1506 }
1507 }
1508 (instance_count, step as u32)
1509}
1510
1511fn eval_grid_input_for_repeated(
1516 sub: &Pin<Rc<crate::instance::SubComponentInstance>>,
1517 new_row: bool,
1518) -> Vec<Value> {
1519 use i_slint_core::model::{Model, VecModel};
1520 let cu = sub.compilation_unit.clone();
1521 let sc = &cu.sub_components[sub.sub_component_idx];
1522 let count = sc
1523 .row_child_templates
1524 .as_ref()
1525 .map(|t| i_slint_compiler::llr::static_child_count(t))
1526 .unwrap_or(1)
1527 .max(1);
1528 let Some(expr) = &sc.grid_layout_input_for_repeated else {
1529 return vec![auto_grid_input_data()];
1530 };
1531 let expr = expr.borrow();
1532 let mut ctx = EvalContext::new(sub.clone());
1533 let result_model: Rc<VecModel<Value>> = Rc::new(VecModel::default());
1534 for _ in 0..count {
1535 result_model.push(Value::Void);
1536 }
1537 ctx.locals.insert(
1538 SmolStr::new_static("result"),
1539 Value::Model(i_slint_core::model::ModelRc::from(result_model.clone())),
1540 );
1541 ctx.locals.insert(SmolStr::new_static("new_row"), Value::Bool(new_row));
1542 eval_expression(&mut ctx, &expr);
1543 (0..result_model.row_count())
1544 .map(|i| result_model.row_data(i).unwrap_or_else(auto_grid_input_data))
1545 .collect()
1546}
1547
1548fn auto_grid_input_data() -> Value {
1551 let mut s = crate::api::Struct::default();
1552 s.set_field("new_row".into(), Value::Bool(false));
1553 s.set_field("row".into(), Value::Number(i_slint_common::ROW_COL_AUTO as f64));
1554 s.set_field("col".into(), Value::Number(i_slint_common::ROW_COL_AUTO as f64));
1555 s.set_field("rowspan".into(), Value::Number(1.0));
1556 s.set_field("colspan".into(), Value::Number(1.0));
1557 Value::Struct(s)
1558}
1559
1560fn override_new_row(v: &mut Value, new_row: bool) {
1561 if let Value::Struct(s) = v {
1562 s.set_field("new_row".into(), Value::Bool(new_row));
1563 }
1564}
1565
1566fn model_from_vec(values: Vec<Value>) -> ModelRc<Value> {
1567 ModelRc::new(SharedVectorModel::from(values.into_iter().collect::<SharedVector<_>>()))
1568}
1569
1570fn binary_op(op: char, lhs: Value, rhs: Value) -> Value {
1571 let (lhs, rhs) = match (lhs, rhs) {
1574 (Value::Void, Value::Number(b)) => (Value::Number(0.), Value::Number(b)),
1575 (Value::Number(a), Value::Void) => (Value::Number(a), Value::Number(0.)),
1576 (Value::Void, Value::Bool(b)) => (Value::Bool(false), Value::Bool(b)),
1577 (Value::Bool(a), Value::Void) => (Value::Bool(a), Value::Bool(false)),
1578 (Value::Void, Value::String(b)) => (Value::String(Default::default()), Value::String(b)),
1579 (Value::String(a), Value::Void) => (Value::String(a), Value::String(Default::default())),
1580 (a, b) => (a, b),
1581 };
1582 match (op, lhs, rhs) {
1583 ('+', Value::String(mut a), Value::String(b)) => {
1584 a.push_str(b.as_str());
1585 Value::String(a)
1586 }
1587 ('+', Value::Number(a), Value::Number(b)) => Value::Number(a + b),
1588 ('+', a @ Value::Struct(_), b @ Value::Struct(_)) => {
1589 let la: Option<i_slint_core::layout::LayoutInfo> = a.try_into().ok();
1590 let lb: Option<i_slint_core::layout::LayoutInfo> = b.try_into().ok();
1591 if let (Some(a), Some(b)) = (la, lb) {
1592 a.merge(&b).into()
1593 } else {
1594 panic!("unsupported struct + struct");
1595 }
1596 }
1597 ('-', Value::Number(a), Value::Number(b)) => Value::Number(a - b),
1598 ('/', Value::Number(a), Value::Number(b)) => Value::Number(a / b),
1599 ('*', Value::Number(a), Value::Number(b)) => Value::Number(a * b),
1600 ('<', Value::Number(a), Value::Number(b)) => Value::Bool(a < b),
1601 ('>', Value::Number(a), Value::Number(b)) => Value::Bool(a > b),
1602 ('≤', Value::Number(a), Value::Number(b)) => Value::Bool(a <= b),
1603 ('≥', Value::Number(a), Value::Number(b)) => Value::Bool(a >= b),
1604 ('<', Value::String(a), Value::String(b)) => Value::Bool(a < b),
1605 ('>', Value::String(a), Value::String(b)) => Value::Bool(a > b),
1606 ('≤', Value::String(a), Value::String(b)) => Value::Bool(a <= b),
1607 ('≥', Value::String(a), Value::String(b)) => Value::Bool(a >= b),
1608 ('=', a, b) => Value::Bool(a == b),
1609 ('!', a, b) => Value::Bool(a != b),
1610 ('&', Value::Bool(a), Value::Bool(b)) => Value::Bool(a && b),
1611 ('|', Value::Bool(a), Value::Bool(b)) => Value::Bool(a || b),
1612 (op, a, b) => panic!("unsupported {a:?} {op} {b:?}"),
1613 }
1614}
1615
1616fn eval_stops(ctx: &mut EvalContext, stops: &[(Expression, Expression)]) -> Vec<GradientStop> {
1617 stops
1618 .iter()
1619 .map(|(color, stop)| GradientStop {
1620 color: eval_expression(ctx, color).try_into().unwrap_or_default(),
1621 position: eval_expression(ctx, stop).try_into().unwrap_or_default(),
1622 })
1623 .collect()
1624}
1625
1626fn load_image_reference(
1627 resource_ref: &i_slint_compiler::expression_tree::ImageReference,
1628) -> i_slint_core::graphics::Image {
1629 use i_slint_compiler::expression_tree::ImageReference as Ref;
1630 let image = match resource_ref {
1631 Ref::None => Ok(Default::default()),
1632 Ref::DataUri(data_uri) => i_slint_compiler::data_uri::decode_data_uri(data_uri)
1633 .ok()
1634 .and_then(|(data, extension)| {
1635 i_slint_core::graphics::load_image_from_data_uri(data_uri, &data, &extension).ok()
1636 })
1637 .ok_or_else(Default::default),
1638 Ref::Url(url) if url.scheme() == "builtin" => {
1639 let path = std::path::Path::new(url.as_str());
1643 i_slint_compiler::fileaccess::load_file(path)
1644 .and_then(|virtual_file| virtual_file.builtin_contents)
1645 .map(|contents| {
1646 let extension = path.extension().unwrap().to_str().unwrap();
1647 i_slint_core::graphics::load_image_from_embedded_data(
1648 i_slint_core::slice::Slice::from_slice(contents),
1649 i_slint_core::slice::Slice::from_slice(extension.as_bytes()),
1650 )
1651 })
1652 .ok_or_else(Default::default)
1653 }
1654 Ref::Path(path) => {
1655 i_slint_core::graphics::Image::load_from_path(std::path::Path::new(path.as_str()))
1656 }
1657 Ref::Url(url) => {
1658 #[cfg(target_arch = "wasm32")]
1659 {
1660 i_slint_core::graphics::load_as_html_image(url.as_str())
1661 }
1662 #[cfg(not(target_arch = "wasm32"))]
1664 {
1665 let _ = url;
1666 Err(Default::default())
1667 }
1668 }
1669 Ref::EmbeddedData { .. } | Ref::EmbeddedTexture { .. } => Ok(Default::default()),
1670 };
1671 image.unwrap_or_else(|_| {
1672 eprintln!("Could not load image {resource_ref:?}");
1673 Default::default()
1674 })
1675}
1676
1677fn layout_cache_access(
1678 ctx: &mut EvalContext,
1679 cache: Value,
1680 index: usize,
1681 repeater_index: Option<&Expression>,
1682 entries_per_item: usize,
1683) -> Value {
1684 match cache {
1685 Value::LayoutCache(cache) => {
1686 if let Some(ri) = repeater_index {
1687 let offset: usize = eval_expression(ctx, ri).try_into().unwrap_or_default();
1688 Value::Number(
1689 cache
1690 .get((cache[index] as usize) + offset * entries_per_item)
1691 .copied()
1692 .unwrap_or(0.)
1693 .into(),
1694 )
1695 } else {
1696 Value::Number(cache[index].into())
1697 }
1698 }
1699 Value::ArrayOfU16(cache) => {
1700 if let Some(ri) = repeater_index {
1701 let offset: usize = eval_expression(ctx, ri).try_into().unwrap_or_default();
1702 Value::Number(
1703 cache
1704 .get((cache[index] as usize) + offset * entries_per_item)
1705 .copied()
1706 .unwrap_or(0)
1707 .into(),
1708 )
1709 } else {
1710 Value::Number(cache[index].into())
1711 }
1712 }
1713 _ => Value::Number(0.),
1714 }
1715}
1716
1717fn grid_repeater_cache_access(
1722 cache: Value,
1723 index: usize,
1724 repeater_index: usize,
1725 stride: usize,
1726 child_offset: usize,
1727 inner_offset: usize,
1728) -> Value {
1729 let get = |data_idx: usize, slice_len: usize, read: &dyn Fn(usize) -> f64| {
1730 if data_idx < slice_len { Value::Number(read(data_idx)) } else { Value::Number(0.) }
1731 };
1732 match cache {
1733 Value::LayoutCache(cache) => {
1734 let base = cache.get(index).copied().unwrap_or(0.) as usize;
1735 let data_idx = base + repeater_index * stride + child_offset + inner_offset;
1736 get(data_idx, cache.len(), &|i| cache[i] as f64)
1737 }
1738 Value::ArrayOfU16(cache) => {
1739 let base = cache.get(index).copied().unwrap_or(0) as usize;
1740 let data_idx = base + repeater_index * stride + child_offset + inner_offset;
1741 get(data_idx, cache.len(), &|i| cache[i] as f64)
1742 }
1743 _ => Value::Number(0.),
1744 }
1745}
1746
1747fn call_builtin_function(
1749 ctx: &mut EvalContext,
1750 f: BuiltinFunction,
1751 arguments: &[Expression],
1752) -> Value {
1753 let to_num = |ctx: &mut EvalContext, e: &Expression| -> f64 {
1754 eval_expression(ctx, e).try_into().unwrap_or_default()
1755 };
1756 let to_string = |ctx: &mut EvalContext, e: &Expression| -> SharedString {
1757 eval_expression(ctx, e).try_into().unwrap_or_default()
1758 };
1759
1760 match f {
1761 BuiltinFunction::Mod => {
1762 Value::Number(to_num(ctx, &arguments[0]).rem_euclid(to_num(ctx, &arguments[1])))
1763 }
1764 BuiltinFunction::Round => Value::Number(to_num(ctx, &arguments[0]).round()),
1765 BuiltinFunction::Ceil => Value::Number(to_num(ctx, &arguments[0]).ceil()),
1766 BuiltinFunction::Floor => Value::Number(to_num(ctx, &arguments[0]).floor()),
1767 BuiltinFunction::Sqrt => Value::Number(to_num(ctx, &arguments[0]).sqrt()),
1768 BuiltinFunction::Abs => Value::Number(to_num(ctx, &arguments[0]).abs()),
1769 BuiltinFunction::Sin => Value::Number(to_num(ctx, &arguments[0]).to_radians().sin()),
1770 BuiltinFunction::Cos => Value::Number(to_num(ctx, &arguments[0]).to_radians().cos()),
1771 BuiltinFunction::Tan => Value::Number(to_num(ctx, &arguments[0]).to_radians().tan()),
1772 BuiltinFunction::ASin => Value::Number(to_num(ctx, &arguments[0]).asin().to_degrees()),
1773 BuiltinFunction::ACos => Value::Number(to_num(ctx, &arguments[0]).acos().to_degrees()),
1774 BuiltinFunction::ATan => Value::Number(to_num(ctx, &arguments[0]).atan().to_degrees()),
1775 BuiltinFunction::ATan2 => {
1776 Value::Number(to_num(ctx, &arguments[0]).atan2(to_num(ctx, &arguments[1])).to_degrees())
1777 }
1778 BuiltinFunction::Log => {
1779 Value::Number(to_num(ctx, &arguments[0]).log(to_num(ctx, &arguments[1])))
1780 }
1781 BuiltinFunction::Ln => Value::Number(to_num(ctx, &arguments[0]).ln()),
1782 BuiltinFunction::Pow => {
1783 Value::Number(to_num(ctx, &arguments[0]).powf(to_num(ctx, &arguments[1])))
1784 }
1785 BuiltinFunction::Exp => Value::Number(to_num(ctx, &arguments[0]).exp()),
1786 BuiltinFunction::ToFixed => {
1787 let n = to_num(ctx, &arguments[0]);
1788 let digits: i32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or_default();
1789 Value::String(i_slint_core::string::shared_string_from_number_fixed(
1790 n,
1791 digits.max(0) as usize,
1792 ))
1793 }
1794 BuiltinFunction::ToPrecision => {
1795 let n = to_num(ctx, &arguments[0]);
1796 let p: i32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or_default();
1797 Value::String(i_slint_core::string::shared_string_from_number_precision(
1798 n,
1799 p.max(0) as usize,
1800 ))
1801 }
1802 BuiltinFunction::StringStartsWith => Value::Bool(
1803 to_string(ctx, &arguments[0])
1804 .as_str()
1805 .starts_with(to_string(ctx, &arguments[1]).as_str()),
1806 ),
1807 BuiltinFunction::StringEndsWith => Value::Bool(
1808 to_string(ctx, &arguments[0])
1809 .as_str()
1810 .ends_with(to_string(ctx, &arguments[1]).as_str()),
1811 ),
1812 BuiltinFunction::ToStringUnlocalized => {
1813 let n = to_num(ctx, &arguments[0]);
1814 Value::String(i_slint_core::string::shared_string_from_number_unlocalized(n))
1815 }
1816 BuiltinFunction::DecimalSeparator => Value::String(
1817 find_window_adapter(ctx)
1818 .map(|adapter| {
1819 i_slint_core::window::WindowInner::from_pub(adapter.window())
1820 .context()
1821 .locale_decimal_separator()
1822 })
1823 .unwrap_or_default()
1824 .into(),
1825 ),
1826 BuiltinFunction::MacosBringAllWindowsToFront => {
1827 i_slint_core::macos_bring_all_windows_to_front();
1828 Value::Void
1829 }
1830 BuiltinFunction::ColorToStyledText => {
1831 let color: i_slint_core::Color =
1832 eval_expression(ctx, &arguments[0]).try_into().unwrap_or_default();
1833 Value::StyledText(i_slint_core::styled_text::color_to_styled_text(color))
1834 }
1835 BuiltinFunction::SetupSystemTrayIcon => {
1836 crate::popup::setup_system_tray_icon(ctx, arguments)
1837 }
1838 BuiltinFunction::StringIsFloat => Value::Bool(
1839 <f64 as core::str::FromStr>::from_str(to_string(ctx, &arguments[0]).as_str()).is_ok(),
1840 ),
1841 BuiltinFunction::StringToFloat => Value::Number(
1842 core::str::FromStr::from_str(to_string(ctx, &arguments[0]).as_str()).unwrap_or(0.),
1843 ),
1844 BuiltinFunction::StringIsEmpty => Value::Bool(to_string(ctx, &arguments[0]).is_empty()),
1845 BuiltinFunction::StringCharacterCount => Value::Number(
1846 unicode_segmentation::UnicodeSegmentation::graphemes(
1847 to_string(ctx, &arguments[0]).as_str(),
1848 true,
1849 )
1850 .count() as f64,
1851 ),
1852 BuiltinFunction::StringToLowercase => {
1853 Value::String(to_string(ctx, &arguments[0]).to_lowercase().into())
1854 }
1855 BuiltinFunction::StringToUppercase => {
1856 Value::String(to_string(ctx, &arguments[0]).to_uppercase().into())
1857 }
1858 BuiltinFunction::ColorRgbaStruct => {
1859 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1860 let color = brush.color();
1861 let values = [
1862 ("red".to_string(), Value::Number(color.red().into())),
1863 ("green".to_string(), Value::Number(color.green().into())),
1864 ("blue".to_string(), Value::Number(color.blue().into())),
1865 ("alpha".to_string(), Value::Number(color.alpha().into())),
1866 ]
1867 .into_iter()
1868 .collect();
1869 Value::Struct(values)
1870 } else {
1871 Value::Void
1872 }
1873 }
1874 BuiltinFunction::ColorHsvaStruct => {
1875 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1876 let color = brush.color().to_hsva();
1877 let values = [
1878 ("hue".to_string(), Value::Number(color.hue.into())),
1879 ("saturation".to_string(), Value::Number(color.saturation.into())),
1880 ("value".to_string(), Value::Number(color.value.into())),
1881 ("alpha".to_string(), Value::Number(color.alpha.into())),
1882 ]
1883 .into_iter()
1884 .collect();
1885 Value::Struct(values)
1886 } else {
1887 Value::Void
1888 }
1889 }
1890 BuiltinFunction::ColorOklchStruct => {
1891 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1892 let color = brush.color().to_oklch();
1893 let values = [
1894 ("lightness".to_string(), Value::Number(color.lightness.into())),
1895 ("chroma".to_string(), Value::Number(color.chroma.into())),
1896 ("hue".to_string(), Value::Number(color.hue.into())),
1897 ("alpha".to_string(), Value::Number(color.alpha.into())),
1898 ]
1899 .into_iter()
1900 .collect();
1901 Value::Struct(values)
1902 } else {
1903 Value::Void
1904 }
1905 }
1906 BuiltinFunction::ColorBrighter => {
1907 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1908 brush.brighter(to_num(ctx, &arguments[1]) as f32).into()
1909 } else {
1910 Value::Void
1911 }
1912 }
1913 BuiltinFunction::ColorDarker => {
1914 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1915 brush.darker(to_num(ctx, &arguments[1]) as f32).into()
1916 } else {
1917 Value::Void
1918 }
1919 }
1920 BuiltinFunction::ColorTransparentize => {
1921 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1922 brush.transparentize(to_num(ctx, &arguments[1]) as f32).into()
1923 } else {
1924 Value::Void
1925 }
1926 }
1927 BuiltinFunction::ColorWithAlpha => {
1928 if let Value::Brush(brush) = eval_expression(ctx, &arguments[0]) {
1929 brush.with_alpha(to_num(ctx, &arguments[1]) as f32).into()
1930 } else {
1931 Value::Void
1932 }
1933 }
1934 BuiltinFunction::ColorMix => {
1935 let a = eval_expression(ctx, &arguments[0]);
1936 let b = eval_expression(ctx, &arguments[1]);
1937 let factor = to_num(ctx, &arguments[2]) as f32;
1938 if let (
1939 Value::Brush(i_slint_core::Brush::SolidColor(ca)),
1940 Value::Brush(i_slint_core::Brush::SolidColor(cb)),
1941 ) = (a, b)
1942 {
1943 ca.mix(&cb, factor).into()
1944 } else {
1945 Value::Void
1946 }
1947 }
1948 BuiltinFunction::ArrayPush => {
1949 if arguments.len() != 2 {
1950 panic!("internal error: incorrect argument count to ArrayPush")
1951 }
1952
1953 let model = match eval_expression(ctx, &arguments[0]) {
1954 Value::Model(m) => m,
1955 _ => panic!("First argument not an array: {:?}", arguments[0]),
1956 };
1957 let value = eval_expression(ctx, &arguments[1]);
1958
1959 model.push_row(value);
1960
1961 Value::Void
1962 }
1963 BuiltinFunction::ArrayRemove => {
1964 if arguments.len() != 2 {
1965 panic!("internal error: incorrect argument count to ArrayRemove")
1966 }
1967
1968 let model = match eval_expression(ctx, &arguments[0]) {
1969 Value::Model(m) => m,
1970 _ => panic!("First argument not an array: {:?}", arguments[0]),
1971 };
1972 let index = match eval_expression(ctx, &arguments[1]) {
1973 Value::Number(i) => i,
1974 _ => panic!("Second argument not an integer: {:?}", arguments[1]),
1975 };
1976
1977 model.remove_row(index as isize);
1978
1979 Value::Void
1980 }
1981
1982 BuiltinFunction::ArrayInsert => {
1983 if arguments.len() != 3 {
1984 panic!("internal error: incorrect argument count to ArrayInsert")
1985 }
1986
1987 let model = match eval_expression(ctx, &arguments[0]) {
1988 Value::Model(m) => m,
1989 _ => panic!("First argument not an array: {:?}", arguments[0]),
1990 };
1991 let index = match eval_expression(ctx, &arguments[1]) {
1992 Value::Number(i) => i,
1993 _ => panic!("Second argument not an integer: {:?}", arguments[1]),
1994 };
1995
1996 let value = eval_expression(ctx, &arguments[2]);
1997 model.insert_row(index as isize, value);
1998
1999 Value::Void
2000 }
2001 BuiltinFunction::Rgb => {
2002 let r: i32 = eval_expression(ctx, &arguments[0]).try_into().unwrap_or(0);
2003 let g: i32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0);
2004 let b: i32 = eval_expression(ctx, &arguments[2]).try_into().unwrap_or(0);
2005 let a: f32 = eval_expression(ctx, &arguments[3]).try_into().unwrap_or(1.0);
2006 let r: u8 = r.clamp(0, 255) as u8;
2007 let g: u8 = g.clamp(0, 255) as u8;
2008 let b: u8 = b.clamp(0, 255) as u8;
2009 let a: u8 = (255. * a).clamp(0., 255.) as u8;
2010 Value::Brush(i_slint_core::Brush::SolidColor(i_slint_core::Color::from_argb_u8(
2011 a, r, g, b,
2012 )))
2013 }
2014 BuiltinFunction::Hsv => {
2015 let h: f32 = eval_expression(ctx, &arguments[0]).try_into().unwrap_or(0.0);
2016 let s: f32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0.0);
2017 let v: f32 = eval_expression(ctx, &arguments[2]).try_into().unwrap_or(0.0);
2018 let a: f32 = eval_expression(ctx, &arguments[3]).try_into().unwrap_or(1.0);
2019 let a = a.clamp(0., 1.);
2020 Value::Brush(i_slint_core::Brush::SolidColor(i_slint_core::Color::from_hsva(
2021 h, s, v, a,
2022 )))
2023 }
2024 BuiltinFunction::Oklch => {
2025 let l: f32 = eval_expression(ctx, &arguments[0]).try_into().unwrap_or(0.0);
2026 let c: f32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0.0);
2027 let h: f32 = eval_expression(ctx, &arguments[2]).try_into().unwrap_or(0.0);
2028 let a: f32 = eval_expression(ctx, &arguments[3]).try_into().unwrap_or(1.0);
2029 Value::Brush(i_slint_core::Brush::SolidColor(i_slint_core::Color::from_oklch(
2030 l.clamp(0.0, 1.0),
2031 c,
2032 h,
2033 a.clamp(0.0, 1.0),
2034 )))
2035 }
2036 BuiltinFunction::AnimationTick => {
2037 Value::Number(i_slint_core::animations::animation_tick() as f64)
2038 }
2039 BuiltinFunction::GetWindowScaleFactor => {
2040 let factor = root_instance(ctx)
2041 .and_then(|inst| inst.window_adapter_or_default())
2042 .map(|adapter| {
2043 i_slint_core::window::WindowInner::from_pub(adapter.window()).scale_factor()
2044 as f64
2045 })
2046 .unwrap_or(1.0);
2047 Value::Number(factor)
2048 }
2049 BuiltinFunction::GetWindowDefaultFontSize => {
2050 let size = root_instance(ctx)
2056 .map(|inst| {
2057 i_slint_core::items::WindowItem::resolved_default_font_size(
2058 vtable::VRc::into_dyn(inst),
2059 )
2060 .get() as f64
2061 })
2062 .unwrap_or(12.0);
2063 Value::Number(size)
2064 }
2065 BuiltinFunction::DetectOperatingSystem => i_slint_core::detect_operating_system().into(),
2066 BuiltinFunction::Use24HourFormat => {
2067 Value::Bool(i_slint_core::date_time::use_24_hour_format())
2068 }
2069 BuiltinFunction::ColorScheme => {
2070 let scheme = root_instance(ctx)
2071 .map(vtable::VRc::into_dyn)
2072 .and_then(|root| {
2073 i_slint_core::window::context_for_root(&root)
2074 .map(|ctx| ctx.color_scheme(Some(&root)))
2075 })
2076 .unwrap_or(i_slint_core::items::ColorScheme::Unknown);
2077 scheme.into()
2078 }
2079 BuiltinFunction::AccentColor => {
2080 let color = root_instance(ctx)
2081 .map(vtable::VRc::into_dyn)
2082 .map(|root| i_slint_core::window::accent_color(&root))
2083 .unwrap_or_default();
2084 Value::Brush(i_slint_core::Brush::SolidColor(color))
2085 }
2086 BuiltinFunction::SupportsNativeMenuBar => {
2087 let supports = find_window_adapter(ctx).is_some_and(|a| {
2088 a.internal(i_slint_core::InternalToken)
2089 .is_some_and(|x| x.supports_native_menu_bar())
2090 });
2091 Value::Bool(supports)
2092 }
2093 BuiltinFunction::TextInputFocused => {
2094 let focused = ctx
2095 .current
2096 .as_ref()
2097 .and_then(|c| c.root.get())
2098 .and_then(|w| w.upgrade())
2099 .and_then(|inst| inst.window_adapter_or_default())
2100 .map(|adapter| {
2101 i_slint_core::window::WindowInner::from_pub(adapter.window())
2102 .text_input_focused()
2103 })
2104 .unwrap_or(false);
2105 Value::Bool(focused)
2106 }
2107 BuiltinFunction::SetTextInputFocused => {
2108 let value = arguments
2109 .first()
2110 .map(|e| eval_expression(ctx, e))
2111 .and_then(|v| bool::try_from(v).ok())
2112 .unwrap_or(false);
2113 if let Some(adapter) = ctx
2114 .current
2115 .as_ref()
2116 .and_then(|c| c.root.get())
2117 .and_then(|w| w.upgrade())
2118 .and_then(|inst| inst.window_adapter_or_default())
2119 {
2120 i_slint_core::window::WindowInner::from_pub(adapter.window())
2121 .set_text_input_focused(value);
2122 }
2123 Value::Void
2124 }
2125 BuiltinFunction::UpdateTimers => {
2126 Value::Void
2129 }
2130 BuiltinFunction::RestartTimer => {
2131 if let [
2136 Expression::PropertyReference(MemberReference::Relative {
2137 parent_level,
2138 local_reference,
2139 }),
2140 ] = arguments
2141 && let LocalMemberIndex::Timer(timer_idx) = &local_reference.reference
2142 && ctx.current.is_some()
2143 {
2144 let instance = walk_to(ctx, *parent_level, &local_reference.sub_component_path);
2145 if let Some(timer) = instance.timers.get(usize::from(*timer_idx)) {
2146 timer.restart();
2147 }
2148 }
2149 Value::Void
2150 }
2151 BuiltinFunction::KeysToString => {
2152 let v = arguments.first().map(|e| eval_expression(ctx, e));
2153 if let Some(Value::Keys(keys)) = v {
2154 Value::String(keys.to_string().into())
2155 } else {
2156 Value::String(Default::default())
2157 }
2158 }
2159 BuiltinFunction::SetSelectionOffsets => {
2160 use i_slint_core::items::TextInput;
2162 let [Expression::PropertyReference(mr), start_expr, end_expr] = arguments else {
2163 return Value::Void;
2164 };
2165 let start: i32 = eval_expression(ctx, start_expr).try_into().unwrap_or(0);
2166 let end: i32 = eval_expression(ctx, end_expr).try_into().unwrap_or(0);
2167 let Some((parent_inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr) else {
2168 return Value::Void;
2169 };
2170 let Some(adapter) = parent_inst.window_adapter_or_default() else {
2171 return Value::Void;
2172 };
2173 let parent_dyn = vtable::VRc::into_dyn(parent_inst);
2174 let item_rc = i_slint_core::items::ItemRc::new(parent_dyn, flat_idx as u32);
2175 if let Some(text_input) = vtable::VRef::downcast_pin::<TextInput>(item_rc.borrow()) {
2176 text_input.set_selection_offsets(&adapter, &item_rc, start, end);
2177 }
2178 Value::Void
2179 }
2180 BuiltinFunction::RegisterCustomFontByPath => {
2181 if let Value::String(s) = eval_expression(ctx, &arguments[0])
2182 && let Some(root) = find_root_instance(ctx)
2183 {
2184 let result =
2187 root.try_window_adapter().map_err(|e| e.to_string()).and_then(|adapter| {
2188 adapter
2189 .renderer()
2190 .register_font_from_path(&std::path::PathBuf::from(s.as_str()))
2191 .map_err(|e| format!("Cannot load custom font {}: {e}", s.as_str()))
2192 });
2193 if let Err(err) = result {
2194 i_slint_core::debug_log!("{err}");
2195 }
2196 }
2197 Value::Void
2198 }
2199 BuiltinFunction::SetupMenuBar => crate::popup::setup_menubar(ctx, arguments),
2200 BuiltinFunction::ItemFontMetrics => {
2201 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2202 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2203 && let Some(adapter) = inst.window_adapter_or_default()
2204 {
2205 let item_rc =
2206 i_slint_core::items::ItemRc::new(vtable::VRc::into_dyn(inst), flat_idx as u32);
2207 let metrics = i_slint_core::items::slint_text_item_fontmetrics(
2208 &adapter,
2209 item_rc.borrow(),
2210 &item_rc,
2211 );
2212 return metrics.into();
2213 }
2214 i_slint_core::items::FontMetrics::default().into()
2215 }
2216 BuiltinFunction::ItemAbsolutePosition => {
2217 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2218 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2219 {
2220 let item_rc =
2221 i_slint_core::items::ItemRc::new(vtable::VRc::into_dyn(inst), flat_idx as u32);
2222 return item_rc.map_to_window(item_rc.geometry().origin).to_untyped().into();
2226 }
2227 i_slint_core::api::LogicalPosition::default().into()
2228 }
2229 BuiltinFunction::PathPointAt => {
2230 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2231 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2232 {
2233 let item_rc =
2234 i_slint_core::items::ItemRc::new(vtable::VRc::into_dyn(inst), flat_idx as u32);
2235 let t: f32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or_default();
2236 return item_rc
2237 .downcast::<i_slint_core::items::Path>()
2238 .unwrap()
2239 .as_pin_ref()
2240 .point_at(&item_rc, t)
2241 .to_untyped()
2242 .into();
2243 }
2244 panic!("internal error: argument to PathPointAt must be an element")
2245 }
2246 BuiltinFunction::PathAngleAt => {
2247 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2248 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2249 {
2250 let item_rc =
2251 i_slint_core::items::ItemRc::new(vtable::VRc::into_dyn(inst), flat_idx as u32);
2252 let t: f32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or_default();
2253 return item_rc
2254 .downcast::<i_slint_core::items::Path>()
2255 .unwrap()
2256 .as_pin_ref()
2257 .angle_at(&item_rc, t)
2258 .into();
2259 }
2260 panic!("internal error: argument to PathAngleAt must be an element")
2261 }
2262 BuiltinFunction::ArrayAny | BuiltinFunction::ArrayAll => {
2263 let is_all = matches!(f, BuiltinFunction::ArrayAll);
2264 let model: i_slint_core::model::ModelRc<Value> =
2265 eval_expression(ctx, &arguments[0]).try_into().unwrap();
2266 let Expression::Closure { arg_name, expression } = &arguments[1] else {
2267 panic!("internal error: Array.any/all expects a closure as second argument")
2268 };
2269 let mut predicate =
2270 |row_value| eval_array_row_predicate(arg_name, expression, ctx, row_value);
2271 Value::Bool(if is_all {
2272 i_slint_core::model::model_all(&model, &mut predicate)
2273 } else {
2274 i_slint_core::model::model_any(&model, &mut predicate)
2275 })
2276 }
2277 BuiltinFunction::ArrayFindIndex => {
2278 let model: i_slint_core::model::ModelRc<Value> =
2279 eval_expression(ctx, &arguments[0]).try_into().unwrap();
2280 let Expression::Closure { arg_name, expression } = &arguments[1] else {
2281 panic!("internal error: Array.find-index expects a closure as second argument")
2282 };
2283 Value::Number(i_slint_core::model::model_find_index(&model, |row_value| {
2284 eval_array_row_predicate(arg_name, expression, ctx, row_value)
2285 }) as f64)
2286 }
2287 BuiltinFunction::ImplicitLayoutInfo(orient) => {
2288 let constraint: f32 = arguments
2292 .get(1)
2293 .map(|e| eval_expression(ctx, e).try_into().unwrap_or(-1.))
2294 .unwrap_or(-1.);
2295 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2296 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2297 && let Some(adapter) = inst.window_adapter_or_default()
2298 {
2299 let item_rc =
2300 i_slint_core::items::ItemRc::new(vtable::VRc::into_dyn(inst), flat_idx as u32);
2301 return item_rc
2302 .borrow()
2303 .as_ref()
2304 .layout_info(
2305 llr_to_core_orientation(orient),
2306 constraint as _,
2307 &adapter,
2308 &item_rc,
2309 )
2310 .into();
2311 }
2312 i_slint_core::layout::LayoutInfo::default().into()
2313 }
2314 BuiltinFunction::Debug => {
2315 use i_slint_core::debug_log::*;
2316 let msg = to_string(ctx, &arguments[0]);
2317 let root = ctx
2318 .current
2319 .as_ref()
2320 .and_then(|c| c.root.get())
2321 .and_then(|w| w.upgrade())
2322 .map(vtable::VRc::into_dyn);
2323 if let Some(context) = root.as_ref().and_then(i_slint_core::window::context_for_root) {
2324 context.dispatch_log_message(LogMessage::new(
2325 LogMessageSource::SlintCode,
2326 None,
2327 format_args!("{msg}"),
2328 ));
2329 } else {
2330 log_message(LogMessage::new(
2331 LogMessageSource::SlintCode,
2332 None,
2333 format_args!("{msg}"),
2334 ));
2335 }
2336 Value::Void
2337 }
2338 BuiltinFunction::ArrayLength => match eval_expression(ctx, &arguments[0]) {
2339 Value::Model(m) => {
2342 m.model_tracker().track_row_count_changes();
2343 Value::Number(m.row_count() as f64)
2344 }
2345 _ => Value::Number(0.),
2346 },
2347 BuiltinFunction::ImageSize => {
2348 if let Value::Image(img) = eval_expression(ctx, &arguments[0]) {
2349 let size = img.size();
2350 let mut s = crate::api::Struct::default();
2351 s.set_field("width".to_string(), Value::Number(size.width as f64));
2352 s.set_field("height".to_string(), Value::Number(size.height as f64));
2353 Value::Struct(s)
2354 } else {
2355 Value::Void
2356 }
2357 }
2358 BuiltinFunction::ParseMarkdown => {
2359 let format_string: SharedString =
2360 eval_expression(ctx, &arguments[0]).try_into().unwrap_or_default();
2361 let args = eval_expression(ctx, &arguments[1]);
2362 let args: Vec<i_slint_core::styled_text::StyledText> = if let Value::Model(m) = args {
2363 (0..m.row_count())
2364 .filter_map(|i| match m.row_data(i)? {
2365 Value::StyledText(t) => Some(t),
2366 _ => None,
2367 })
2368 .collect()
2369 } else {
2370 Vec::new()
2371 };
2372 Value::StyledText(i_slint_core::styled_text::parse_markdown(&format_string, &args))
2373 }
2374 BuiltinFunction::StringToStyledText => {
2375 let string: SharedString =
2376 eval_expression(ctx, &arguments[0]).try_into().unwrap_or_default();
2377 Value::StyledText(i_slint_core::styled_text::string_to_styled_text(string.to_string()))
2378 }
2379 BuiltinFunction::Translate => {
2380 let original: SharedString = to_string(ctx, &arguments[0]);
2381 let context: SharedString = to_string(ctx, &arguments[1]);
2382 let domain: SharedString = to_string(ctx, &arguments[2]);
2383 let args = eval_expression(ctx, &arguments[3]);
2384 let Value::Model(args) = args else {
2385 return Value::String(original);
2386 };
2387 struct StringModelWrapper(ModelRc<Value>);
2388 impl i_slint_core::translations::FormatArgs for StringModelWrapper {
2389 type Output<'a> = SharedString;
2390 fn from_index(&self, index: usize) -> Option<SharedString> {
2391 self.0.row_data(index).and_then(|v| v.try_into().ok())
2392 }
2393 }
2394 let n: i32 = eval_expression(ctx, &arguments[4]).try_into().unwrap_or(0);
2395 let plural: SharedString = to_string(ctx, &arguments[5]);
2396 Value::String(i_slint_core::translations::translate(
2397 &original,
2398 &context,
2399 &domain,
2400 &StringModelWrapper(args),
2401 n,
2402 &plural,
2403 ))
2404 }
2405 BuiltinFunction::ShowPopupWindow => crate::popup::show_popup_window(ctx, arguments),
2406 BuiltinFunction::ClosePopupWindow => crate::popup::close_popup_window(ctx, arguments),
2407 BuiltinFunction::SetFocusItem => {
2408 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2409 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2410 && let Some(adapter) = find_window_adapter(ctx)
2411 {
2412 let dyn_rc = vtable::VRc::into_dyn(inst);
2413 let item_rc = i_slint_core::items::ItemRc::new(dyn_rc, flat_idx as u32);
2414 i_slint_core::window::WindowInner::from_pub(adapter.window()).set_focus_item(
2415 &item_rc,
2416 true,
2417 i_slint_core::input::FocusReason::Programmatic,
2418 );
2419 }
2420 Value::Void
2421 }
2422 BuiltinFunction::ClearFocusItem => {
2423 if let Some(Expression::PropertyReference(mr)) = arguments.first()
2424 && let Some((inst, flat_idx)) = resolve_item_rc_from_ref(ctx, mr)
2425 && let Some(adapter) = find_window_adapter(ctx)
2426 {
2427 let dyn_rc = vtable::VRc::into_dyn(inst);
2428 let item_rc = i_slint_core::items::ItemRc::new(dyn_rc, flat_idx as u32);
2429 i_slint_core::window::WindowInner::from_pub(adapter.window()).set_focus_item(
2430 &item_rc,
2431 false,
2432 i_slint_core::input::FocusReason::Programmatic,
2433 );
2434 }
2435 Value::Void
2436 }
2437 BuiltinFunction::MonthDayCount => {
2438 let m: u32 = eval_expression(ctx, &arguments[0]).try_into().unwrap_or(0);
2439 let y: i32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0);
2440 Value::Number(i_slint_core::date_time::month_day_count(m, y).unwrap_or(0) as f64)
2441 }
2442 BuiltinFunction::MonthOffset => {
2443 let m: u32 = eval_expression(ctx, &arguments[0]).try_into().unwrap_or(0);
2444 let y: i32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0);
2445 Value::Number(i_slint_core::date_time::month_offset(m, y) as f64)
2446 }
2447 BuiltinFunction::FormatDate => {
2448 let f: SharedString = to_string(ctx, &arguments[0]);
2449 let d: u32 = eval_expression(ctx, &arguments[1]).try_into().unwrap_or(0);
2450 let m: u32 = eval_expression(ctx, &arguments[2]).try_into().unwrap_or(0);
2451 let y: i32 = eval_expression(ctx, &arguments[3]).try_into().unwrap_or(0);
2452 Value::String(i_slint_core::date_time::format_date(&f, d, m, y))
2453 }
2454 BuiltinFunction::DateNow => {
2455 Value::Model(i_slint_core::model::ModelRc::new(i_slint_core::model::VecModel::from(
2456 i_slint_core::date_time::date_now()
2457 .into_iter()
2458 .map(|x| Value::Number(x as f64))
2459 .collect::<Vec<_>>(),
2460 )))
2461 }
2462 BuiltinFunction::ValidDate => {
2463 let d: SharedString = to_string(ctx, &arguments[0]);
2464 let f: SharedString = to_string(ctx, &arguments[1]);
2465 Value::Bool(i_slint_core::date_time::parse_date(d.as_str(), f.as_str()).is_some())
2466 }
2467 BuiltinFunction::ParseDate => {
2468 let d: SharedString = to_string(ctx, &arguments[0]);
2469 let f: SharedString = to_string(ctx, &arguments[1]);
2470 Value::Model(i_slint_core::model::ModelRc::new(i_slint_core::model::VecModel::from(
2471 i_slint_core::date_time::parse_date(d.as_str(), f.as_str())
2472 .map(|v| v.into_iter().map(|x| Value::Number(x as f64)).collect::<Vec<_>>())
2473 .unwrap_or_default(),
2474 )))
2475 }
2476 BuiltinFunction::ShowPopupMenu | BuiltinFunction::ShowPopupMenuInternal => {
2477 crate::popup::show_popup_menu(ctx, arguments)
2478 }
2479 BuiltinFunction::OpenUrl => {
2480 let url = to_string(ctx, &arguments[0]);
2481 let result = find_window_adapter(ctx)
2482 .map(|adapter| i_slint_core::open_url(&url, adapter.window()).is_ok())
2483 .unwrap_or(false);
2484 Value::Bool(result)
2485 }
2486 BuiltinFunction::RegisterCustomFontByMemory | BuiltinFunction::RegisterBitmapFont => {
2487 Value::Void
2489 }
2490 BuiltinFunction::StartTimer | BuiltinFunction::StopTimer => {
2491 Value::Void
2493 }
2494 }
2495}
2496
2497pub(crate) fn resolve_item_rc_from_ref(
2501 ctx: &EvalContext,
2502 mr: &MemberReference,
2503) -> Option<(vtable::VRc<i_slint_core::item_tree::ItemTreeVTable, crate::instance::Instance>, usize)>
2504{
2505 let MemberReference::Relative { parent_level, local_reference } = mr else { return None };
2506 let LocalMemberIndex::Native { item_index, .. } = &local_reference.reference else {
2507 return None;
2508 };
2509 let owner = walk_to(ctx, *parent_level, &local_reference.sub_component_path);
2510 let parent_inst = owner.root.get().and_then(|w| w.upgrade())?;
2511 let full_path = crate::item_tree_vtable::sub_component_path_of(&owner, &parent_inst);
2512 let flat_idx = find_flat_item_index(&parent_inst.item_table, &full_path, *item_index)?;
2513 Some((parent_inst, flat_idx))
2514}
2515
2516pub(crate) fn find_root_instance(
2520 ctx: &EvalContext,
2521) -> Option<vtable::VRc<i_slint_core::item_tree::ItemTreeVTable, crate::instance::Instance>> {
2522 let current = ctx.current.as_ref()?;
2523 let mut sub = current.clone();
2524 loop {
2525 if let Some(root) = sub.root.get()
2526 && let Some(inst) = root.upgrade()
2527 && inst.public_component_index.is_some()
2528 {
2529 return Some(inst);
2530 }
2531 let parent = sub.parent.upgrade()?;
2532 sub = Pin::new(parent);
2533 }
2534}
2535
2536pub(crate) fn find_window_adapter(
2538 ctx: &EvalContext,
2539) -> Option<i_slint_core::window::WindowAdapterRc> {
2540 find_root_instance(ctx)?.window_adapter_or_default()
2541}
2542
2543fn call_item_member_function(ctx: &EvalContext, function: &MemberReference) -> Value {
2547 use i_slint_core::items::{ContextMenu, SwipeGestureHandler, TextInput, WindowItem};
2548 let MemberReference::Relative { local_reference, .. } = function else {
2549 return Value::Void;
2550 };
2551 let LocalMemberIndex::Native { prop_name, .. } = &local_reference.reference else {
2552 return Value::Void;
2553 };
2554 let Some((parent_inst, flat_idx)) = resolve_item_rc_from_ref(ctx, function) else {
2555 return Value::Void;
2556 };
2557 let Some(adapter) = parent_inst.window_adapter_or_default() else { return Value::Void };
2558 let parent_dyn = vtable::VRc::into_dyn(parent_inst);
2559 let item_rc = i_slint_core::items::ItemRc::new(parent_dyn, flat_idx as u32);
2560 let item_ref = item_rc.borrow();
2561
2562 macro_rules! dispatch {
2565 ($item:expr, $name:expr; $($slint_name:literal => $rust_method:ident $(=> $into:ty)?),* $(,)?) => {
2566 match $name {
2567 $(
2568 $slint_name => {
2569 let res = $item.$rust_method(&adapter, &item_rc);
2570 $(let res: $into = res.into();)?
2571 return res.into();
2572 }
2573 )*
2574 _ => {}
2575 }
2576 };
2577 }
2578
2579 if let Some(text_input) = vtable::VRef::downcast_pin::<TextInput>(item_ref) {
2580 dispatch!(text_input, prop_name.as_str();
2581 "select-all" => select_all => (),
2582 "clear-selection" => clear_selection => (),
2583 "select-word" => select_word => (),
2584 "cut" => cut => (),
2585 "copy" => copy => (),
2586 "paste" => paste => (),
2587 "undo" => undo => (),
2588 "redo" => redo => (),
2589 );
2590 }
2591 if let Some(swipe) = vtable::VRef::downcast_pin::<SwipeGestureHandler>(item_rc.borrow()) {
2592 dispatch!(swipe, prop_name.as_str();
2593 "cancel" => cancel => (),
2594 );
2595 }
2596 if let Some(menu) = vtable::VRef::downcast_pin::<ContextMenu>(item_rc.borrow()) {
2597 dispatch!(menu, prop_name.as_str();
2598 "close" => close => (),
2599 "is-open" => is_open,
2600 );
2601 }
2602 if let Some(window) = vtable::VRef::downcast_pin::<WindowItem>(item_rc.borrow()) {
2603 match prop_name.as_str() {
2604 "hide" => {
2605 window.hide(&adapter, &item_rc);
2606 return Value::Void;
2607 }
2608 "close" => return Value::Bool(window.close(&adapter, &item_rc)),
2609 _ => {}
2610 }
2611 }
2612 unimplemented!("ItemMemberFunctionCall `{prop_name}`")
2613}