rue_compiler/compile/expr/
struct_initializer.rs1use std::collections::HashMap;
2
3use log::debug;
4use rue_ast::{AstNode, AstStructInitializerExpr};
5use rue_diagnostic::DiagnosticKind;
6use rue_hir::{Hir, SymbolPath, Value};
7use rue_types::{Pair, Type, Union};
8
9use crate::{
10 Compiler, CompletionContext, PathKind, PathResult, SyntaxField, SyntaxItemKind, compile_expr,
11 compile_path,
12};
13
14pub fn compile_struct_initializer_expr(
15 ctx: &mut Compiler,
16 expr: &AstStructInitializerExpr,
17) -> Value {
18 let ty = if let Some(path) = expr.path()
19 && let PathResult::Type(ty, _) =
20 compile_path(ctx, path.syntax(), path.segments(), PathKind::Type, true)
21 {
22 ty
23 } else {
24 debug!("Unresolved struct initializer path");
25 ctx.builtins().unresolved.ty
26 };
27
28 let semantic = rue_types::unwrap_semantic(ctx.types_mut(), ty, true);
29
30 ctx.add_syntax(
31 SyntaxItemKind::CompletionContext(CompletionContext::StructFields {
32 ty: semantic,
33 specified_fields: Some(
34 expr.fields()
35 .filter_map(|field| field.name())
36 .map(|field| field.text().to_string())
37 .collect(),
38 ),
39 }),
40 expr.syntax().text_range(),
41 );
42
43 let Type::Struct(struct_type) = ctx.ty(semantic).clone() else {
44 debug!("Unresolved struct initializer due to non struct type");
45 let name = ctx.type_name(ty);
46 ctx.diagnostic(expr.syntax(), DiagnosticKind::NonStructInitializer(name));
47 return ctx.builtins().unresolved.clone();
48 };
49
50 let mut expected_field_types = HashMap::new();
51 let mut current = struct_type.inner;
52
53 for (i, field) in struct_type.fields.iter().enumerate() {
54 if i == struct_type.fields.len() - 1 && !struct_type.nil_terminated {
55 expected_field_types.insert(field.clone(), current);
56 continue;
57 }
58
59 let pairs = rue_types::extract_pairs(ctx.types_mut(), current, false);
60
61 if pairs.is_empty() {
62 break;
63 }
64
65 let first = if pairs.len() == 1 {
66 pairs[0].first
67 } else {
68 ctx.alloc_type(Type::Union(Union::new(
69 pairs.iter().map(|pair| pair.first).collect(),
70 )))
71 };
72
73 let rest = if pairs.len() == 1 {
74 pairs[0].rest
75 } else {
76 ctx.alloc_type(Type::Union(Union::new(
77 pairs.iter().map(|pair| pair.rest).collect(),
78 )))
79 };
80
81 expected_field_types.insert(field.clone(), first);
82 current = rest;
83 }
84
85 let mut fields = HashMap::new();
86
87 for field in expr.fields() {
88 let value = if let Some(expr) = field.expr() {
89 compile_expr(
90 ctx,
91 &expr,
92 field
93 .name()
94 .and_then(|name| expected_field_types.get(name.text()).copied()),
95 )
96 } else {
97 let Some(name) = field.name() else {
98 continue;
99 };
100
101 if let PathResult::Symbol(symbol, override_type, _) = compile_path(
102 ctx,
103 field.syntax(),
104 [name].into_iter(),
105 PathKind::Symbol,
106 false,
107 ) {
108 let ty = ctx.symbol_type(symbol);
109
110 let mut value = Value::new(ctx.alloc_hir(Hir::Reference(symbol)), ty)
111 .with_reference(SymbolPath {
112 symbol,
113 path: vec![],
114 });
115
116 if let Some(override_type) = override_type {
117 value = value.with_type(override_type);
118 }
119
120 value
121 } else {
122 debug!("Unresolved field path in struct initializer");
123 ctx.builtins().unresolved.clone()
124 }
125 };
126
127 let Some(name) = field.name() else {
128 continue;
129 };
130
131 ctx.add_syntax(
132 SyntaxItemKind::FieldInitializer(SyntaxField {
133 name: name.text().to_string(),
134 container: semantic,
135 ty: expected_field_types
136 .get(name.text())
137 .copied()
138 .unwrap_or(value.ty),
139 }),
140 name.text_range(),
141 );
142
143 if struct_type.fields.contains(name.text()) {
144 if let Some(expected_type) = expected_field_types.get(name.text()) {
145 ctx.assign_type(field.syntax(), value.ty, *expected_type);
146 }
147 } else {
148 let type_name = ctx.type_name(ty);
149 ctx.diagnostic(
150 &name,
151 DiagnosticKind::UnknownField(name.text().to_string(), type_name),
152 );
153 continue;
154 }
155
156 if fields.insert(name.text().to_string(), value).is_some() {
157 ctx.diagnostic(
158 &name,
159 DiagnosticKind::DuplicateField(name.text().to_string()),
160 );
161 }
162 }
163
164 let mut hir = ctx.builtins().nil.hir;
165 let mut list_type = ctx.builtins().nil.ty;
166
167 let mut missing_fields = vec![];
168
169 for (i, name) in struct_type.fields.into_iter().rev().enumerate() {
170 let value = if let Some(value) = fields.remove(&name) {
171 value
172 } else if let Some(value) = ctx.default_field(struct_type.semantic, &name) {
173 value
174 } else {
175 debug!("Unresolved struct initializer field");
176 missing_fields.push(name);
177 ctx.builtins().unresolved.clone()
178 };
179
180 if !struct_type.nil_terminated && i == 0 {
181 hir = value.hir;
182 list_type = value.ty;
183 } else {
184 hir = ctx.alloc_hir(Hir::Pair(value.hir, hir));
185 list_type = ctx.alloc_type(Type::Pair(Pair::new(value.ty, list_type)));
186 }
187 }
188
189 if !missing_fields.is_empty() {
190 let type_name = ctx.type_name(ty);
191 ctx.diagnostic(
192 expr.syntax(),
193 DiagnosticKind::MissingRequiredFields(type_name, missing_fields.join(", ")),
194 );
195 }
196
197 Value::new(hir, ty)
198}