1use crate::LisetteDiagnostic;
2use syntax::ast::{Annotation, BinaryOperator, Span};
3use syntax::types::{SimpleKind, Type};
4
5#[derive(Debug, Clone, Copy, PartialEq, Eq)]
6pub enum MismatchedTailKind {
7 Result,
8 Option,
9 Partial,
10 Value,
11}
12
13impl MismatchedTailKind {
14 pub fn allow_alias(&self) -> &'static str {
15 match self {
16 Self::Result => "unused_result",
17 Self::Option => "unused_option",
18 Self::Partial => "unused_partial",
19 Self::Value => "unused_value",
20 }
21 }
22}
23
24pub fn mismatched_tail_value(
25 actual_span: &Span,
26 actual_ty: &str,
27 expected_span: &Span,
28 expected_ty: &str,
29) -> LisetteDiagnostic {
30 LisetteDiagnostic::error("Mismatch between return type and return value")
31 .with_infer_code("mismatched_return_value")
32 .with_span_primary_label(actual_span, format!("returns `{}`", actual_ty))
33 .with_span_label(
34 expected_span,
35 format!("has `{}` as implicit return type", expected_ty),
36 )
37 .with_help(format!(
38 "If the `{}` return type is intended, discard the return value with `let _ = ...`. If the `{}` return value is intended, add `-> {}` to the function signature.",
39 expected_ty, actual_ty, actual_ty
40 ))
41}
42
43pub fn blank_import_non_go(blank_span: Span) -> LisetteDiagnostic {
44 LisetteDiagnostic::error("Invalid import")
45 .with_resolve_code("blank_import_non_go")
46 .with_span_label(&blank_span, "only allowed for Go modules")
47 .with_help(
48 "Remove the underscore. Blank imports are allowed only for Go imports, \
49 because Lisette modules have no `init()` side effects.",
50 )
51}
52
53pub fn import_conflict(
54 alias: &str,
55 path1: &str,
56 path2: &str,
57 name_span: Span,
58) -> LisetteDiagnostic {
59 LisetteDiagnostic::error("Import conflict")
60 .with_resolve_code("import_conflict")
61 .with_span_label(
62 &name_span,
63 format!("conflicts with prior import `{}`", alias),
64 )
65 .with_help(format!(
66 "`{}` and `{}` resolve to the same name. Add an alias to at least one of them: \
67 `import my_{} \"{}\"`",
68 path1, path2, alias, path2
69 ))
70}
71
72pub fn reserved_import_alias(alias: &str, alias_span: Span) -> LisetteDiagnostic {
73 LisetteDiagnostic::error("Reserved import alias")
74 .with_resolve_code("reserved_import_alias")
75 .with_span_label(&alias_span, "reserved name")
76 .with_help(format!(
77 "`{}` is a reserved name and cannot be used as an import alias. \
78 Choose a different alias, e.g. `import my_{} \"...\"`",
79 alias, alias
80 ))
81}
82
83pub fn duplicate_import_path(path: &str, name_span: Span) -> LisetteDiagnostic {
84 LisetteDiagnostic::error("Duplicate import")
85 .with_resolve_code("duplicate_import")
86 .with_span_label(&name_span, "already imported above")
87 .with_help(format!(
88 "Module `{}` is already imported. Remove the duplicate import.",
89 path
90 ))
91}
92
93pub fn definition_shadows_import(
94 name: &str,
95 import_path: &str,
96 name_span: Span,
97) -> LisetteDiagnostic {
98 LisetteDiagnostic::error("Definition shadows import")
99 .with_resolve_code("definition_shadows_import")
100 .with_span_label(
101 &name_span,
102 format!("conflicts with imported module `{}`", import_path),
103 )
104 .with_help(format!(
105 "`{}` is already used as a module alias for `{}`. \
106 Rename this definition or use a different import alias.",
107 name, import_path
108 ))
109}
110
111pub fn statement_as_tail(span: Span) -> LisetteDiagnostic {
112 LisetteDiagnostic::error("Statement used as value")
113 .with_infer_code("statement_as_tail")
114 .with_span_label(&span, "this is a statement, not an expression")
115 .with_help(
116 "The last item in this block must be an expression that produces a value. \
117 Statements like `let`, `=`, `task`, and `defer` do not produce values.",
118 )
119}
120
121pub fn invalid_map_initialization(key: &Type, value: &Type, span: Span) -> LisetteDiagnostic {
122 LisetteDiagnostic::error("Invalid `Map` initialization")
123 .with_infer_code("invalid_map_initialization")
124 .with_span_label(&span, "invalid syntax")
125 .with_help(format!(
126 "To initialize a `Map`, use `Map.new<{}, {}>()`",
127 key, value
128 ))
129}
130
131pub fn self_type_not_supported(span: Span, impl_receiver: Option<&str>) -> LisetteDiagnostic {
132 let name_span = Span::new(span.file_id, span.byte_offset, 4); let help = match impl_receiver {
134 Some(name) => format!("Replace `Self` with `{}`.", name),
135 None => "Use a type parameter instead, e.g. `interface Comparable<T> { fn compare(self, other: T) -> int }`".to_string(),
136 };
137 LisetteDiagnostic::error("Use of `Self` type")
138 .with_resolve_code("self_type_not_supported")
139 .with_span_label(&name_span, "invalid type")
140 .with_help(help)
141}
142
143pub fn type_not_found(type_name: &str, annotation_span: Span) -> LisetteDiagnostic {
144 let simple_name = type_name.rsplit('.').next().unwrap_or(type_name);
145 let qualifier_offset = (type_name.len() - simple_name.len()) as u32;
146 let name_span = Span::new(
147 annotation_span.file_id,
148 annotation_span.byte_offset + qualifier_offset,
149 simple_name.len() as u32,
150 );
151
152 let looks_like_type_param = simple_name.len() == 1
153 && simple_name.chars().next().is_some_and(|c| c.is_uppercase())
154 || ["Key", "Value", "Item", "Error", "Elem", "In", "Out"].contains(&simple_name);
155
156 if looks_like_type_param {
157 return LisetteDiagnostic::error("Undeclared type parameter")
158 .with_resolve_code("type_not_found")
159 .with_span_label(&name_span, "undeclared")
160 .with_help(format!(
161 "Declare the type parameter, e.g. `impl<{t}>` or `fn foo<{t}>`",
162 t = simple_name
163 ));
164 }
165
166 LisetteDiagnostic::error("Type not found")
167 .with_resolve_code("type_not_found")
168 .with_span_label(&name_span, "type not found in scope")
169 .with_help("Define or import this type")
170}
171
172pub fn undeclared_impl_type_param(
173 type_name: &str,
174 annotation_span: Span,
175 receiver_name: &str,
176) -> LisetteDiagnostic {
177 let name_span = Span::new(
178 annotation_span.file_id,
179 annotation_span.byte_offset,
180 type_name.len() as u32,
181 );
182
183 LisetteDiagnostic::error("Undeclared type parameter")
184 .with_resolve_code("type_not_found")
185 .with_span_label(&name_span, "undeclared")
186 .with_help(format!(
187 "Declare the type parameter: `impl<{t}> {r}<{t}>`",
188 t = type_name,
189 r = receiver_name
190 ))
191}
192
193pub fn type_param_with_args(type_arg_count: usize, span: Span) -> LisetteDiagnostic {
194 let noun = if type_arg_count == 1 {
195 "type argument"
196 } else {
197 "type arguments"
198 };
199
200 LisetteDiagnostic::error("Invalid type argument")
201 .with_infer_code("type_param_with_args")
202 .with_span_label(&span, "type is not parameterized")
203 .with_help(format!("Remove {}", noun))
204}
205
206pub fn type_args_on_non_generic(type_arg_count: usize, span: Span) -> LisetteDiagnostic {
207 let noun = if type_arg_count == 1 {
208 "type argument"
209 } else {
210 "type arguments"
211 };
212
213 LisetteDiagnostic::error("Unexpected type arguments")
214 .with_infer_code("type_arg_on_non_generic")
215 .with_span_label(&span, "accepts no type arguments")
216 .with_help(format!("Remove the {} from this call", noun))
217}
218
219pub fn circular_type_alias(type_name: &str, span: Span) -> LisetteDiagnostic {
220 LisetteDiagnostic::error("Circular type alias")
221 .with_resolve_code("circular_type_alias")
222 .with_span_label(&span, format!("`{}` references itself", type_name))
223 .with_help("Type aliases cannot be recursive")
224}
225
226pub fn const_disallows_composite(span: Span) -> LisetteDiagnostic {
227 LisetteDiagnostic::error("Composite value in `const`")
228 .with_infer_code("const_disallows_composite")
229 .with_span_label(&span, "not allowed")
230 .with_help("`const` only accepts primitive values: `bool`, `int`, `float`, and `string`")
231}
232
233pub fn const_cycle(cycle: &[String], span: Span) -> LisetteDiagnostic {
234 let mut diagnostic = LisetteDiagnostic::error("`const` init cycle")
235 .with_infer_code("const_cycle")
236 .with_help(
237 "`const` initializers cannot refer to themselves, either directly or transitively",
238 );
239 diagnostic = if cycle.len() == 1 {
240 diagnostic.with_span_label(&span, "self-reference")
241 } else {
242 let chain = cycle
243 .iter()
244 .map(|name| format!("`{}`", name))
245 .collect::<Vec<_>>()
246 .join(" → ");
247 diagnostic.with_span_label(&span, format!("cycle: {} → `{}`", chain, cycle[0]))
248 };
249 diagnostic
250}
251
252pub fn name_not_found(
253 variable_name: &str,
254 span: Span,
255 available_names: &[String],
256 expected_ty: Option<&Type>,
257) -> LisetteDiagnostic {
258 if matches!(variable_name, "nil" | "null" | "Nil" | "undefined") {
259 let help = nil_help_for(expected_ty);
260 return LisetteDiagnostic::error(format!("`{}` is not supported", variable_name))
261 .with_resolve_code("nil_not_supported")
262 .with_span_label(&span, "does not exist")
263 .with_help(help);
264 }
265
266 if let Some(hint) = go_builtin_hint(variable_name) {
267 return LisetteDiagnostic::error("Name not found")
268 .with_resolve_code("name_not_found")
269 .with_span_label(&span, "name not found in scope")
270 .with_help(hint);
271 }
272
273 let mut diagnostic = LisetteDiagnostic::error("Name not found")
274 .with_resolve_code("name_not_found")
275 .with_span_label(&span, "name not found in scope");
276
277 let suggestion = available_names
278 .iter()
279 .filter_map(|c| {
280 let d = levenshtein_distance(variable_name, c);
281 (d <= 2).then_some((c, d))
282 })
283 .min_by_key(|(_, d)| *d)
284 .map(|(c, _)| c.clone());
285
286 if let Some(suggestion) = suggestion {
287 diagnostic = diagnostic.with_help(format!("Did you mean `{}`?", suggestion));
288 } else {
289 diagnostic = diagnostic.with_help(format!("Define or import `{}`.", variable_name));
290 }
291
292 diagnostic
293}
294
295fn nil_help_for(expected_ty: Option<&Type>) -> String {
297 match expected_ty {
298 Some(ty) if ty.is_slice() => format!("For an empty `{}`, use `[]`.", ty),
299 Some(ty) if ty.is_map() => format!("For an empty `{}`, use `Map.new()`.", ty),
300 _ => {
301 "Absence is encoded with `Option<T>` in Lisette. Use `None` to represent absent values."
302 .to_string()
303 }
304 }
305}
306
307pub fn self_in_static_method(span: Span) -> LisetteDiagnostic {
308 LisetteDiagnostic::error("Invalid `self`")
309 .with_resolve_code("self_in_static_method")
310 .with_span_label(&span, "`self` is not available here")
311 .with_help("Add a `self` parameter to the method if you need an instance method")
312}
313
314pub fn static_method_called_on_instance(
315 method_name: &str,
316 type_name: &str,
317 span: Span,
318) -> LisetteDiagnostic {
319 LisetteDiagnostic::error("Static method called on instance")
320 .with_infer_code("static_method_on_instance")
321 .with_span_label(&span, format!("`{}` is a static method", method_name))
322 .with_help(format!(
323 "Call it as `{}.{}(...)` on the type, not on an instance",
324 type_name, method_name
325 ))
326}
327
328pub fn function_or_value_not_found_in_module(name: &str, span: Span) -> LisetteDiagnostic {
329 LisetteDiagnostic::error("Name not found")
330 .with_resolve_code("not_found_in_module")
331 .with_span_label(&span, format!("`{}` not found in module", name))
332 .with_help("Ensure the name is exported and spelled correctly")
333}
334
335pub fn receiver_type_mismatch(
336 impl_type: &str,
337 receiver_type: &str,
338 span: Span,
339) -> LisetteDiagnostic {
340 LisetteDiagnostic::error("Type mismatch")
341 .with_infer_code("receiver_type_mismatch")
342 .with_span_label(
343 &span,
344 format!(
345 "expected `{}` or `Ref<{}>`, found `{}`",
346 impl_type, impl_type, receiver_type
347 ),
348 )
349 .with_help(format!(
350 "Change the receiver type to `{}` or `Ref<{}>`",
351 impl_type, impl_type
352 ))
353}
354
355pub fn receiver_must_be_named_self(actual_name: &str, span: Span) -> LisetteDiagnostic {
356 LisetteDiagnostic::error("Invalid receiver name")
357 .with_infer_code("receiver_not_self")
358 .with_span_label(&span, "expected `self`")
359 .with_help(format!(
360 "Rename `{}` to `self`. In an instance method definition, Lisette expects the first parameter to be named `self`",
361 actual_name
362 ))
363}
364
365pub fn stringer_signature_mismatch(method_name: &str, span: Span) -> LisetteDiagnostic {
366 LisetteDiagnostic::error("Reserved method signature")
367 .with_infer_code("stringer_signature_mismatch")
368 .with_span_label(
369 &span,
370 format!("`{}` must have signature `(self) -> string`", method_name),
371 )
372 .with_help(format!(
373 "`{}` is reserved for the Go `fmt.Stringer` (or `fmt.GoStringer`) interface and is auto-emitted by Lisette. Either change the signature to `(self) -> string`, or rename the method",
374 method_name
375 ))
376}
377
378pub fn disallowed_mutation(
379 variable_name: &str,
380 span: Span,
381 self_type_name: Option<&str>,
382 is_match_arm_binding: bool,
383 is_const_binding: bool,
384) -> LisetteDiagnostic {
385 if variable_name == "self" {
386 if let Some(type_name) = self_type_name {
387 LisetteDiagnostic::error("Immutable receiver")
388 .with_infer_code("value_receiver_immutable")
389 .with_span_label(&span, "receiver is immutable")
390 .with_help(format!(
391 "Use `self: Ref<{type_name}>` to make the receiver mutable"
392 ))
393 } else {
394 LisetteDiagnostic::error("Immutable receiver")
395 .with_infer_code("value_receiver_immutable")
396 .with_span_label(&span, "receiver is immutable")
397 .with_help("Use `self: Ref<Self>` to make the receiver mutable")
398 }
399 } else if is_const_binding {
400 LisetteDiagnostic::error("Cannot mutate `const`")
401 .with_infer_code("immutable")
402 .with_span_label(&span, "cannot mutate a `const`")
403 .with_help(format!(
404 "`const` bindings are immutable. Rebind with `let mut {variable_name} = {variable_name}` to mutate a local copy"
405 ))
406 } else if is_match_arm_binding {
407 LisetteDiagnostic::error("Immutable variable")
408 .with_infer_code("immutable")
409 .with_span_label(&span, "cannot mutate an immutable variable")
410 .with_help(format!(
411 "Pattern bindings are immutable; rebind with `let mut {variable_name} = {variable_name}` to mutate"
412 ))
413 } else {
414 LisetteDiagnostic::error("Immutable variable")
415 .with_infer_code("immutable")
416 .with_span_label(&span, "cannot mutate an immutable variable")
417 .with_help(format!(
418 "Declare using `let mut {variable_name}` to make the variable mutable"
419 ))
420 }
421}
422
423pub fn self_reference_in_assignment(span: Span) -> LisetteDiagnostic {
424 LisetteDiagnostic::error("Cannot reassign variable while taking its reference")
425 .with_infer_code("self_reference_in_assignment")
426 .with_span_label(&span, "disallowed")
427 .with_help("Separate the reassignment from reference taking, or use a different variable")
428}
429
430pub fn uppercase_binding(span: Span, name: &str) -> LisetteDiagnostic {
431 LisetteDiagnostic::error("Invalid binding name")
432 .with_infer_code("uppercase_binding")
433 .with_span_label(&span, "binding names must start with a lowercase letter")
434 .with_help(format!("Use a lowercase name instead of `{}`", name))
435}
436
437pub fn enum_variant_constructor_not_found(
438 span: Span,
439 enum_info: Option<(&str, &[String])>,
440 variant_name: &str,
441) -> LisetteDiagnostic {
442 let help = if let Some((enum_name, variants)) = enum_info {
443 if variants.iter().any(|v| v == variant_name) {
444 format!("Use `{}.{}` to match this variant", enum_name, variant_name)
445 } else if let Some(closest) = variants
446 .iter()
447 .filter_map(|v| {
448 let d = levenshtein_distance(variant_name, v);
449 (d <= 2).then_some((v, d))
450 })
451 .min_by_key(|(_, d)| *d)
452 .map(|(v, _)| v)
453 {
454 format!("Did you mean `{}.{}`?", enum_name, closest)
455 } else {
456 let variants_fmt = format_list(variants, |v| format!("`{}.{}`", enum_name, v));
457 format!(
458 "Available variants for `{}` are {}",
459 enum_name, variants_fmt
460 )
461 }
462 } else {
463 "Check that the variant is defined in the enum and spelled correctly".to_string()
464 };
465
466 LisetteDiagnostic::error("Variant not found")
467 .with_resolve_code("variant_not_found")
468 .with_span_label(&span, "not found")
469 .with_help(help)
470}
471
472pub fn value_enum_in_source_file(enum_name: &str, span: Span) -> LisetteDiagnostic {
473 LisetteDiagnostic::error("Invalid value enum")
474 .with_infer_code("value_enum_outside_typedef")
475 .with_span_label(&span, "not allowed in .lis files")
476 .with_help(format!(
477 "Use a regular enum instead: `enum {} {{ A, B, C }}`. Value enums exist only to represent Go's enums in typedefs.",
478 enum_name
479 ))
480}
481
482pub fn arity_mismatch(
483 expected: &[Type],
484 actual: &[Type],
485 generic_params: &[String],
486 is_constructor: bool,
487 span: Span,
488) -> LisetteDiagnostic {
489 let expected_str = if !generic_params.is_empty() {
490 generic_params.join(", ")
491 } else {
492 expected
493 .iter()
494 .map(|t| t.to_string())
495 .collect::<Vec<_>>()
496 .join(", ")
497 };
498
499 let actual_str = actual
500 .iter()
501 .map(|t| t.to_string())
502 .collect::<Vec<_>>()
503 .join(", ");
504
505 let expected_count = expected.len();
506 let actual_count = actual.len();
507 let expected_word = if expected_count == 1 {
508 "argument"
509 } else {
510 "arguments"
511 };
512 let actual_word = if actual_count == 1 {
513 "argument"
514 } else {
515 "arguments"
516 };
517
518 LisetteDiagnostic::error("Wrong argument count")
519 .with_infer_code("arg_count_mismatch")
520 .with_span_label(
521 &span,
522 format!("expected `({})`, found `({})`", expected_str, actual_str),
523 )
524 .with_help(format!(
525 "This {} expects {} {} but received {} {}",
526 if is_constructor {
527 "constructor"
528 } else {
529 "function"
530 },
531 expected_count,
532 expected_word,
533 actual_count,
534 actual_word
535 ))
536}
537
538pub fn generics_arity_mismatch(
539 expected_generic_params: &[String],
540 actual_type_args: &[Annotation],
541 actual_types: &[Type],
542 span: Span,
543) -> LisetteDiagnostic {
544 let expected: Vec<Type> = expected_generic_params
545 .iter()
546 .map(|param| Type::Parameter(param.as_str().into()))
547 .collect();
548
549 let expected_str = expected
550 .iter()
551 .map(|t| t.to_string())
552 .collect::<Vec<_>>()
553 .join(", ");
554
555 let actual_str = actual_types
556 .iter()
557 .map(|t| t.to_string())
558 .collect::<Vec<_>>()
559 .join(", ");
560
561 let expected_count = expected.len();
562 let actual_count = actual_types.len();
563 let expected_word = if expected_count == 1 {
564 "type parameter"
565 } else {
566 "type parameters"
567 };
568 let actual_word = if actual_count == 1 {
569 "type parameter"
570 } else {
571 "type parameters"
572 };
573
574 let generics_span =
575 if let (Some(first), Some(last)) = (actual_type_args.first(), actual_type_args.last()) {
576 let first_span = first.get_span();
577 let last_span = last.get_span();
578 Span::new(
579 first_span.file_id,
580 first_span.byte_offset.saturating_sub(1),
581 (last_span.byte_offset + last_span.byte_length + 1)
582 .saturating_sub(first_span.byte_offset.saturating_sub(1)),
583 )
584 } else {
585 span
586 };
587
588 LisetteDiagnostic::error("Wrong type argument count")
589 .with_infer_code("type_arg_count_mismatch")
590 .with_span_label(
591 &generics_span,
592 format!("expected `<{}>`, found `<{}>`", expected_str, actual_str),
593 )
594 .with_help(format!(
595 "This type expects {} {} but received {} {}",
596 expected_count, expected_word, actual_count, actual_word
597 ))
598}
599
600pub fn tuple_arity_mismatch(
601 pattern_arity: usize,
602 expected_arity: usize,
603 span: Span,
604) -> LisetteDiagnostic {
605 let expected_word = if expected_arity == 1 {
606 "element"
607 } else {
608 "elements"
609 };
610 let actual_word = if pattern_arity == 1 {
611 "element"
612 } else {
613 "elements"
614 };
615 LisetteDiagnostic::error("Tuple arity mismatch")
616 .with_infer_code("tuple_element_count_mismatch")
617 .with_span_label(
618 &span,
619 format!(
620 "expected {} {}, found {} {}",
621 expected_arity, expected_word, pattern_arity, actual_word
622 ),
623 )
624 .with_help("Adjust the pattern to match the number of elements in the tuple.")
625}
626
627pub fn struct_not_found(identifier: &str, span: Span) -> LisetteDiagnostic {
628 let simple_name = identifier.rsplit('.').next().unwrap_or(identifier);
629 let qualifier_offset = (identifier.len() - simple_name.len()) as u32;
630 let name_span = Span::new(
631 span.file_id,
632 span.byte_offset + qualifier_offset,
633 simple_name.len() as u32,
634 );
635
636 LisetteDiagnostic::error("Struct not found")
637 .with_resolve_code("struct_not_found")
638 .with_span_label(&name_span, "struct not found in scope")
639 .with_help("Define or import this struct")
640}
641
642pub fn struct_missing_fields(
643 struct_name: &str,
644 missing: &[String],
645 span: Span,
646) -> LisetteDiagnostic {
647 let fields_list = missing.join(", ");
648
649 let simple_name = struct_name.rsplit('.').next().unwrap_or(struct_name);
650 let qualifier_offset = (struct_name.len() - simple_name.len()) as u32;
651 let name_span = Span::new(
652 span.file_id,
653 span.byte_offset + qualifier_offset,
654 simple_name.len() as u32,
655 );
656
657 LisetteDiagnostic::error(format!("Struct `{}` is missing fields", simple_name))
658 .with_infer_code("missing_struct_fields")
659 .with_span_label(&name_span, format!("missing fields: {}", fields_list))
660 .with_help("Initialize all fields, or add `..` to zero-fill the rest")
661}
662
663pub fn pattern_missing_fields(missing: &[String], span: Span) -> LisetteDiagnostic {
664 let (noun, fields_fmt) = if missing.len() == 1 {
665 ("field", format!("`{}`", missing[0]))
666 } else {
667 let formatted: Vec<String> = missing.iter().map(|f| format!("`{}`", f)).collect();
668 ("fields", formatted.join(", "))
669 };
670
671 let pronoun = if missing.len() == 1 { "it" } else { "them" };
672
673 LisetteDiagnostic::error("Missing pattern fields")
674 .with_infer_code("pattern_missing_fields")
675 .with_span_label(&span, format!("missing {}", fields_fmt))
676 .with_help(format!(
677 "Include the missing {}, or use `..` to ignore {}",
678 noun, pronoun
679 ))
680}
681
682pub fn private_field_access(field_name: &str, struct_name: &str, span: Span) -> LisetteDiagnostic {
683 LisetteDiagnostic::error("Private field")
684 .with_resolve_code("private_field_access")
685 .with_span_label(&span, "private")
686 .with_help(format!(
687 "Cannot access private field `{}` of struct `{}`. Mark the field as `pub`.",
688 field_name, struct_name
689 ))
690}
691
692pub fn private_method_access(method_name: &str, type_name: &str, span: Span) -> LisetteDiagnostic {
693 LisetteDiagnostic::error("Private method")
694 .with_resolve_code("private_method_access")
695 .with_span_label(&span, "private")
696 .with_help(format!(
697 "Cannot access private method `{}` of type `{}`. Mark the method as `pub`.",
698 method_name, type_name
699 ))
700}
701
702pub fn private_field_in_spread(
703 field_name: &str,
704 struct_name: &str,
705 span: Span,
706) -> LisetteDiagnostic {
707 LisetteDiagnostic::error("Private field")
708 .with_resolve_code("private_field_spread")
709 .with_span_label(&span, "private")
710 .with_help(format!(
711 "Cannot spread `{}` because field `{}` is private. Mark the field as `pub`.",
712 struct_name, field_name
713 ))
714}
715
716pub fn private_field_in_zero_fill(
717 field_name: &str,
718 struct_name: &str,
719 owning_module: &str,
720 span: Span,
721) -> LisetteDiagnostic {
722 LisetteDiagnostic::error("Private field")
723 .with_resolve_code("private_field_zero_fill")
724 .with_span_label(&span, "private")
725 .with_help(format!(
726 "`{}` of `{}` cannot be zero-filled because `{}` is private to module `{}`. \
727 Provide an explicit value, or have `{}` expose `{}` as `pub` or offer a \
728 constructor.",
729 field_name, struct_name, field_name, owning_module, owning_module, field_name
730 ))
731}
732
733pub fn field_no_zero(
734 struct_name: &str,
735 field_name: &str,
736 field_ty: &Type,
737 chain: &[&str],
738 private: Option<(&str, &str, &str)>,
739 span: Span,
740) -> LisetteDiagnostic {
741 let main = match private {
742 Some((priv_struct, priv_field, priv_module)) => format!(
743 "`{}` of `{}` cannot be zero-filled because `{}.{}` is private to module `{}`. \
744 Provide an explicit value for `{}`, or have `{}` expose `{}` as `pub`.",
745 field_name,
746 struct_name,
747 priv_struct,
748 priv_field,
749 priv_module,
750 field_name,
751 priv_module,
752 priv_field
753 ),
754 None if chain.is_empty() => format!(
755 "Field `{}` of type `{}` has no zero value. Provide an explicit value, \
756 or wrap the field type in `Option<T>`.",
757 field_name, field_ty
758 ),
759 None => format!(
760 "Field `{}.{}` of type `{}` has no zero value. Provide an explicit value for \
761 `{}`, or wrap the field type in `Option<T>`.",
762 field_name,
763 chain.join("."),
764 field_ty,
765 field_name
766 ),
767 };
768 LisetteDiagnostic::error("Field has no zero value")
769 .with_infer_code("field_no_zero")
770 .with_span_label(&span, "no zero available")
771 .with_help(main)
772}
773
774pub fn unresolved_receiver_type(member: &str, span: Span) -> LisetteDiagnostic {
775 LisetteDiagnostic::error("Cannot infer receiver type")
776 .with_infer_code("unresolved_receiver_type")
777 .with_span_label(
778 &span,
779 format!(
780 "cannot resolve `.{}` because the receiver type is unknown",
781 member
782 ),
783 )
784 .with_help(
785 "Annotate the receiver's binding, e.g. `let x: SomeType = ...` or \
786 `|param: SomeType| ...`.",
787 )
788}
789
790pub fn member_not_found(
791 ty: &Type,
792 field: &str,
793 span: Span,
794 available_fields: Option<&[String]>,
795 unwrap_hint: Option<UnwrapHint>,
796 is_call_target: bool,
797) -> LisetteDiagnostic {
798 let mut diagnostic = LisetteDiagnostic::error("Member not found")
799 .with_infer_code("member_not_found")
800 .with_span_label(&span, format!("no member `{}` on type `{}`", field, ty));
801
802 if matches!(field, "unwrap" | "expect") && (ty.is_option() || ty.is_result() || ty.is_partial())
803 {
804 let help = if ty.is_option() {
805 format!(
806 "Lisette does not provide `{}()`. Use `?` to propagate, `match` to handle both \
807 cases (e.g. `match <expr> {{ Some(x) => x, None => ... }}`), `let else` for \
808 early exit, or `unwrap_or(default)` for a fallback.",
809 field
810 )
811 } else if ty.is_result() {
812 format!(
813 "Lisette does not provide `{}()`. Use `?` to propagate, `match` to handle both \
814 cases (e.g. `match <expr> {{ Ok(x) => x, Err(e) => ... }}`), `let else` for \
815 early exit, or `unwrap_or(default)` for a fallback.",
816 field
817 )
818 } else {
819 format!(
820 "Lisette does not provide `{}()`. The `?` operator is not supported on \
821 `Partial`; use `match` to handle all three cases (e.g. `match <expr> \
822 {{ Ok(x) => ..., Err(e) => ..., Both(x, e) => ... }}`) or `unwrap_or(default)` \
823 for a fallback.",
824 field
825 )
826 };
827 diagnostic = diagnostic.with_help(help);
828 return diagnostic;
829 }
830
831 if let Some(hint) = unwrap_hint {
832 let (wrapper_name, pattern) = match hint.wrapper {
833 UnwrapWrapper::Option => (
834 "Option",
835 format!(
836 "match <expr> {{ Some(x) => x.{}(...), None => ... }}",
837 field
838 ),
839 ),
840 UnwrapWrapper::Result => (
841 "Result",
842 format!(
843 "match <expr> {{ Ok(x) => x.{}(...), Err(e) => ... }}",
844 field
845 ),
846 ),
847 };
848 diagnostic = diagnostic.with_help(format!(
849 "Unwrap the `{}` to extract the `{}` value, then call `{}` on it, e.g. `{}`",
850 wrapper_name, hint.inner_ty, field, pattern
851 ));
852 return diagnostic;
853 }
854
855 let suggestion = available_fields.and_then(|fields| find_similar_name(field, fields));
856
857 if let Some(suggestion) = suggestion {
858 let rendered = if is_call_target {
859 format!("{}()", suggestion)
860 } else {
861 suggestion
862 };
863 diagnostic = diagnostic.with_help(format!("Did you mean `{}`?", rendered));
864 } else {
865 diagnostic = diagnostic.with_help("Ensure the field or method is defined on this type");
866 }
867
868 diagnostic
869}
870
871#[derive(Debug, Clone, Copy)]
872pub enum UnwrapWrapper {
873 Option,
874 Result,
875}
876
877#[derive(Debug, Clone)]
878pub struct UnwrapHint {
879 pub wrapper: UnwrapWrapper,
880 pub inner_ty: Type,
881}
882
883pub fn not_numeric(ty: &Type, span: Span) -> LisetteDiagnostic {
884 LisetteDiagnostic::error("Type mismatch")
885 .with_infer_code("type_mismatch")
886 .with_span_label(&span, format!("expected `int` or `float`, found `{}`", ty))
887 .with_help("The negation operator `-` can only be used with `int` or `float`")
888}
889
890pub fn not_integer(ty: &Type, span: Span) -> LisetteDiagnostic {
891 LisetteDiagnostic::error("Type mismatch")
892 .with_infer_code("type_mismatch")
893 .with_span_label(&span, format!("expected integer type, found `{}`", ty))
894 .with_help("The bitwise complement operator `^` can only be used with integer types")
895}
896
897pub fn not_numeric_for_binary(
898 operator: &BinaryOperator,
899 ty: &Type,
900 span: Span,
901) -> LisetteDiagnostic {
902 LisetteDiagnostic::error("Type mismatch")
903 .with_infer_code("type_mismatch")
904 .with_span_label(&span, format!("expected `int` or `float`, found `{}`", ty))
905 .with_help(format!(
906 "The `{}` operator can only be used with `int` or `float`",
907 operator
908 ))
909}
910
911pub fn not_integer_for_binary(
912 operator: &BinaryOperator,
913 ty: &Type,
914 span: Span,
915) -> LisetteDiagnostic {
916 LisetteDiagnostic::error("Type mismatch")
917 .with_infer_code("type_mismatch")
918 .with_span_label(&span, format!("expected integer type, found `{}`", ty))
919 .with_help(format!(
920 "The `{}` operator can only be used with integer types",
921 operator
922 ))
923}
924
925pub fn binary_operator_type_mismatch(
926 operator: &BinaryOperator,
927 left_ty: &Type,
928 right_ty: &Type,
929 span: Span,
930) -> LisetteDiagnostic {
931 let label_msg = format!(
932 "cannot {} `{}` and `{}`",
933 operator_verb(operator),
934 left_ty,
935 right_ty
936 );
937
938 LisetteDiagnostic::error("Type mismatch")
939 .with_infer_code("type_mismatch")
940 .with_span_label(&span, label_msg)
941 .with_help(format!(
942 "The `{}` operator {}",
943 operator,
944 operator_help(operator)
945 ))
946}
947
948pub fn not_orderable(ty: &Type, span: Span) -> LisetteDiagnostic {
949 LisetteDiagnostic::error("Type mismatch")
950 .with_infer_code("type_mismatch")
951 .with_span_label(&span, format!("expected orderable, found `{}`", ty))
952 .with_help("Use comparison operators only with numeric, string, or boolean types")
953}
954
955pub fn not_comparable(ty: &Type, reason: &str, span: Span) -> LisetteDiagnostic {
956 LisetteDiagnostic::error("Type mismatch")
957 .with_infer_code("type_mismatch")
958 .with_span_label(&span, format!("`{}` cannot be compared with `==`", ty))
959 .with_help(format!(
960 "The `==` and `!=` operators cannot be used on {} because they are not comparable in Go",
961 reason
962 ))
963}
964
965pub fn not_orderable_bound(span: Span) -> LisetteDiagnostic {
966 LisetteDiagnostic::error("Bound not satisfied")
967 .with_infer_code("not_orderable_bound")
968 .with_span_label(&span, "does not satisfy `cmp.Ordered`")
969 .with_help(
970 "The type parameter must be `cmp.Ordered` but the argument is not orderable. \
971 Relax the bound or pass an argument that satisfies it",
972 )
973}
974
975pub fn not_comparable_bound(span: Span) -> LisetteDiagnostic {
976 LisetteDiagnostic::error("Bound not satisfied")
977 .with_infer_code("not_comparable_bound")
978 .with_span_label(&span, "does not satisfy `Comparable`")
979 .with_help(
980 "The parameter must be `Comparable` but the argument is not comparable. \
981 Relax the bound or pass an argument that satisfies it",
982 )
983}
984
985pub fn bound_only_in_value_position(name: &str, span: Span) -> LisetteDiagnostic {
986 LisetteDiagnostic::error(format!("`{}` is a bound, not a value type", name))
987 .with_infer_code("bound_only_in_value_position")
988 .with_span_label(&span, "not allowed here")
989 .with_help(format!(
990 "Use `{}` only as a bound to constrain a generic parameter, e.g. `fn f<T: {}>(x: T)`",
991 name, name
992 ))
993}
994
995pub fn missing_bound_on_param(
996 param_name: &str,
997 required_bound: &str,
998 span: Span,
999) -> LisetteDiagnostic {
1000 let short = required_bound.rsplit('.').next().unwrap_or(required_bound);
1001 LisetteDiagnostic::error("Missing bound on type parameter")
1002 .with_infer_code("missing_bound_on_param")
1003 .with_span_label(&span, format!("does not satisfy `{}`", short))
1004 .with_help(format!(
1005 "The parameter must be `{}` but the argument is unbounded. \
1006 Add this bound to the enclosing function: `<{}: {}>`",
1007 required_bound, param_name, required_bound
1008 ))
1009}
1010
1011pub fn division_by_zero(span: Span) -> LisetteDiagnostic {
1012 LisetteDiagnostic::error("Division by zero")
1013 .with_infer_code("division_by_zero")
1014 .with_span_label(&span, "cannot divide by zero")
1015 .with_help("This operation will panic at runtime")
1016}
1017
1018pub fn incompatible_named_numeric_types(underlying_ty: &Type, span: Span) -> LisetteDiagnostic {
1019 LisetteDiagnostic::error("Type mismatch")
1020 .with_infer_code("incompatible_named_numeric_types")
1021 .with_span_label(&span, "cannot compute")
1022 .with_help(format!(
1023 "Cast one to the other's type, or convert both to `{}`",
1024 underlying_ty
1025 ))
1026}
1027
1028pub fn invalid_division_order(
1029 operator: &BinaryOperator,
1030 left_ty: &Type,
1031 right_ty: &Type,
1032 span: Span,
1033) -> LisetteDiagnostic {
1034 let (op_symbol, help_msg) = match operator {
1035 BinaryOperator::Division => (
1036 "/",
1037 format!(
1038 "To divide by `{}`, the dividend (left operand) must also be `{}`",
1039 right_ty, right_ty
1040 ),
1041 ),
1042 BinaryOperator::Remainder => (
1043 "%",
1044 format!(
1045 "To take the remainder by `{}`, the dividend (left operand) must also be `{}`",
1046 right_ty, right_ty
1047 ),
1048 ),
1049 _ => unreachable!(),
1050 };
1051
1052 LisetteDiagnostic::error("Invalid operation")
1053 .with_infer_code("invalid_division_order")
1054 .with_span_label(
1055 &span,
1056 format!("cannot compute `{}` {} `{}`", left_ty, op_symbol, right_ty),
1057 )
1058 .with_help(help_msg)
1059}
1060
1061pub fn branch_type_mismatch(
1062 consequence_ty: &Type,
1063 consequence_span: Span,
1064 alternative_ty: &Type,
1065 alternative_span: Span,
1066) -> LisetteDiagnostic {
1067 LisetteDiagnostic::error("Type mismatch")
1068 .with_infer_code("type_mismatch")
1069 .with_span_label(
1070 &consequence_span,
1071 format!("this branch returns `{}`", consequence_ty),
1072 )
1073 .with_span_label(
1074 &alternative_span,
1075 format!("this branch returns `{}`", alternative_ty),
1076 )
1077 .with_help("All branches must return the same type")
1078}
1079
1080pub fn let_else_must_diverge(span: Span) -> LisetteDiagnostic {
1081 LisetteDiagnostic::error("Invalid `else` block")
1082 .with_infer_code("let_else_must_diverge")
1083 .with_span_primary_label(&span, "this branch does not diverge")
1084 .with_help("Add `return`, `break`, `continue`, or a diverging call in the `else` block")
1085}
1086
1087pub fn return_outside_function(span: Span) -> LisetteDiagnostic {
1088 LisetteDiagnostic::error("`return` outside function")
1089 .with_infer_code("return_outside_function")
1090 .with_span_label(&span, "`return` outside function")
1091 .with_help("Use `return` only inside a function body")
1092}
1093
1094pub fn disallowed_mut_use(span: Span) -> LisetteDiagnostic {
1095 LisetteDiagnostic::error("Invalid `mut`")
1096 .with_infer_code("mut_not_allowed")
1097 .with_span_label(&span, "not allowed here")
1098 .with_help("`mut` is not allowed with destructuring patterns")
1099}
1100
1101pub fn cannot_match_on_functions(span: Span) -> LisetteDiagnostic {
1102 LisetteDiagnostic::error("Invalid pattern")
1103 .with_infer_code("invalid_pattern")
1104 .with_span_label(&span, "cannot pattern match on functions")
1105 .with_help("Functions cannot be compared for equality")
1106}
1107
1108pub fn cannot_match_on_unknown(span: Span) -> LisetteDiagnostic {
1109 LisetteDiagnostic::error("Cannot match on Unknown")
1110 .with_infer_code("cannot_match_on_unknown")
1111 .with_span_label(&span, "is type `Unknown`")
1112 .with_help("Use `assert_type` to narrow this value into a concrete type before matching. Example: `let value = assert_type<MyType>(x)?`")
1113}
1114
1115pub fn cannot_match_on_unconstrained_type(span: Span) -> LisetteDiagnostic {
1116 LisetteDiagnostic::error("Uninferred type")
1117 .with_infer_code("cannot_match_on_unconstrained_type")
1118 .with_span_label(&span, "type cannot be inferred at this point")
1119 .with_help("Add a type annotation on the value before matching on it")
1120}
1121
1122pub fn duplicate_binding_in_pattern(
1123 name: &str,
1124 first_span: Span,
1125 second_span: Span,
1126) -> LisetteDiagnostic {
1127 LisetteDiagnostic::error("Duplicate binding")
1128 .with_infer_code("duplicate_binding_in_pattern")
1129 .with_span_label(&first_span, format!("first use of `{}`", name))
1130 .with_span_label(&second_span, "used again")
1131 .with_help("Remove the duplicate binding")
1132}
1133
1134pub fn literal_pattern_in_binding(span: Span) -> LisetteDiagnostic {
1135 LisetteDiagnostic::error("Pattern might not match")
1136 .with_infer_code("literal_in_binding")
1137 .with_span_label(&span, "value might not equal this literal")
1138 .with_help("Use `match` or `if` to compare values")
1139}
1140
1141pub fn as_binding_in_irrefutable_context(span: Span) -> LisetteDiagnostic {
1142 LisetteDiagnostic::error("Invalid `as` binding")
1143 .with_infer_code("as_binding_in_irrefutable_context")
1144 .with_span_label(&span, "`as` is disallowed here")
1145 .with_help("Use `as` only in `match`, `if let`, and `while let`")
1146}
1147
1148pub fn select_some_as_binding_not_supported(span: Span) -> LisetteDiagnostic {
1149 LisetteDiagnostic::error("Cannot alias `Some(...)` in select")
1150 .with_infer_code("select_some_as_not_supported")
1151 .with_span_label(&span, "`as` cannot be placed around `Some(...)`")
1152 .with_help(
1153 "Place `as` inside `Some(...)` to bind the received value: `Some(value as alias)`",
1154 )
1155}
1156
1157pub fn redundant_as_identifier(inner: &str, alias: &str, span: Span) -> LisetteDiagnostic {
1158 LisetteDiagnostic::error("Redundant `as` binding")
1159 .with_infer_code("redundant_as_binding")
1160 .with_span_label(&span, format!("`{}` already binds this value", inner))
1161 .with_help(format!(
1162 "Use `{}` directly, or rename `{}` to `{}`",
1163 alias, inner, alias
1164 ))
1165}
1166
1167pub fn redundant_as_wildcard(alias: &str, span: Span) -> LisetteDiagnostic {
1168 LisetteDiagnostic::error("Redundant `as` binding")
1169 .with_infer_code("redundant_as_binding")
1170 .with_span_label(&span, "`_` binds nothing")
1171 .with_help(format!("Replace `_ as {}` with just `{}`", alias, alias))
1172}
1173
1174pub fn redundant_as_literal(literal: &str, alias: &str, span: Span) -> LisetteDiagnostic {
1175 LisetteDiagnostic::error("Redundant `as` binding")
1176 .with_infer_code("redundant_as_binding")
1177 .with_span_label(&span, format!("`{}` is always `{}`", alias, literal))
1178 .with_help(format!(
1179 "Replace `{} as {}` with just `{}`",
1180 literal, alias, literal
1181 ))
1182}
1183
1184pub fn or_pattern_in_irrefutable_context(span: Span) -> LisetteDiagnostic {
1185 LisetteDiagnostic::error("Invalid or-pattern")
1186 .with_infer_code("or_pattern_in_irrefutable")
1187 .with_span_label(&span, "or-patterns are not allowed here")
1188 .with_help("Use a `match` expression instead.")
1189 .with_note("Or-patterns can only be used in `match`, `if let`, and `while let`.")
1190}
1191
1192pub fn or_pattern_binding_mismatch(
1193 span: Span,
1194 missing_in_later: &[&str],
1195 missing_in_first: &[&str],
1196) -> LisetteDiagnostic {
1197 let missing = if !missing_in_later.is_empty() {
1198 missing_in_later.join(", ")
1199 } else {
1200 missing_in_first.join(", ")
1201 };
1202
1203 LisetteDiagnostic::error("Invalid or-pattern")
1204 .with_infer_code("or_pattern_binding_mismatch")
1205 .with_span_label(&span, "only bound here")
1206 .with_help(format!(
1207 "Variable {} is not bound in all alternatives. Use a wildcard `_` instead of a binding, or ensure all alternatives bind the same variable",
1208 missing
1209 ))
1210}
1211
1212pub fn or_pattern_type_mismatch(span: Span, first_ty: &str, alt_ty: &str) -> LisetteDiagnostic {
1213 LisetteDiagnostic::error("Invalid or-pattern")
1214 .with_infer_code("or_pattern_type_mismatch")
1215 .with_span_label(
1216 &span,
1217 format!("expected `{}`, found `{}`", first_ty, alt_ty),
1218 )
1219 .with_help(
1220 "Use a wildcard `_` instead of a binding, or use separate match arms for each variant",
1221 )
1222}
1223
1224pub fn unknown_iterable_type(span: Span) -> LisetteDiagnostic {
1225 LisetteDiagnostic::error("Uninferrable type")
1226 .with_infer_code("type_not_inferred")
1227 .with_span_label(&span, "cannot be inferred")
1228 .with_help("Add a type annotation to the iterable expression")
1229}
1230
1231pub fn not_iterable(ty: &Type, span: Span) -> LisetteDiagnostic {
1232 LisetteDiagnostic::error("Not iterable")
1233 .with_infer_code("not_iterable")
1234 .with_span_label(&span, format!("`{}` is not iterable", ty))
1235 .with_help("Use `Slice`, `Map`, `Range`, `Channel`, or `string`")
1236}
1237
1238pub fn tuple_literal_required_in_loop(span: Span) -> LisetteDiagnostic {
1239 LisetteDiagnostic::error("Invalid loop pattern")
1240 .with_infer_code("invalid_pattern")
1241 .with_span_label(&span, "tuple literal required here")
1242 .with_help("Use `(key, value)` destructuring pattern for map or enumerated iteration")
1243}
1244
1245pub fn propagate_on_partial(span: Span) -> LisetteDiagnostic {
1246 LisetteDiagnostic::error("Cannot use `?` on `Partial`")
1247 .with_infer_code("propagate_on_partial")
1248 .with_span_label(&span, "`Partial` requires explicit `match`")
1249 .with_help(
1250 "The `?` operator is incompatible with `Partial` because it has \
1251 three variants. Use `match` to handle `Ok`, `Err`, and `Both` \
1252 explicitly.",
1253 )
1254}
1255
1256pub fn try_requires_result_or_option(span: Span) -> LisetteDiagnostic {
1257 LisetteDiagnostic::error("Type mismatch")
1258 .with_infer_code("try_requires_result_or_option")
1259 .with_span_label(&span, "expects `Result` or `Option`")
1260 .with_help("Use the `?` operator only on `Result` or `Option`")
1261}
1262
1263pub fn try_outside_function(span: Span) -> LisetteDiagnostic {
1264 LisetteDiagnostic::error("`?` outside function")
1265 .with_infer_code("try_outside_function")
1266 .with_span_label(&span, "`?` outside function")
1267 .with_help("Use `?` only inside a function that returns `Result` or `Option`")
1268}
1269
1270pub fn try_return_type_mismatch(expected: &str, actual_ty: &Type, span: Span) -> LisetteDiagnostic {
1271 LisetteDiagnostic::error("Type mismatch")
1272 .with_infer_code("try_return_type_mismatch")
1273 .with_span_label(
1274 &span,
1275 format!(
1276 "expects `{}`, but function returns `{}`",
1277 expected, actual_ty
1278 ),
1279 )
1280 .with_help(format!(
1281 "Change the function return type to `{}` or remove the `?` operator",
1282 expected
1283 ))
1284}
1285
1286pub fn try_block_empty(span: Span) -> LisetteDiagnostic {
1287 LisetteDiagnostic::error("Empty `try` block")
1288 .with_infer_code("try_block_empty")
1289 .with_span_label(&span, "empty")
1290 .with_help("Ensure the `try` block contains at least one expression")
1291}
1292
1293pub fn try_block_no_question_mark(try_keyword_span: Span) -> LisetteDiagnostic {
1294 LisetteDiagnostic::error("Useless `try` block")
1295 .with_infer_code("try_block_no_question_mark")
1296 .with_span_label(&try_keyword_span, "no `?` operator found")
1297 .with_help("A `try` block must contain at least one `?` for propagation")
1298}
1299
1300pub fn mixed_carriers_in_try_block(span: Span) -> LisetteDiagnostic {
1301 LisetteDiagnostic::error("Mixed `try` block")
1302 .with_infer_code("try_block_mixed_carriers")
1303 .with_span_label(&span, "mixing `Option` and `Result`")
1304 .with_help(
1305 "A `try` block must use either all `Option` operations or all `Result` operations",
1306 )
1307}
1308
1309pub fn break_outside_loop(span: Span) -> LisetteDiagnostic {
1310 LisetteDiagnostic::error("`break` outside loop")
1311 .with_infer_code("break_outside_loop")
1312 .with_span_label(&span, "not inside a loop")
1313 .with_help("`break` can only be used inside `loop`, `for`, or `while`")
1314}
1315
1316pub fn continue_outside_loop(span: Span) -> LisetteDiagnostic {
1317 LisetteDiagnostic::error("`continue` outside loop")
1318 .with_infer_code("continue_outside_loop")
1319 .with_span_label(&span, "not inside a loop")
1320 .with_help("`continue` can only be used inside `loop`, `for`, or `while`")
1321}
1322
1323pub fn nested_function(span: Span) -> LisetteDiagnostic {
1324 LisetteDiagnostic::error("Nested function declaration")
1325 .with_infer_code("nested_function")
1326 .with_span_label(&span, "functions can only be declared at top level")
1327 .with_help("Use a lambda instead: `|x| x + 1` or `|x| { ... }`")
1328}
1329
1330pub fn return_in_try_block(span: Span) -> LisetteDiagnostic {
1331 LisetteDiagnostic::error("`return` in `try` block")
1332 .with_infer_code("try_block_return")
1333 .with_span_label(&span, "not inside a function")
1334 .with_help(
1335 "Use `return` inside a function, or use `Err(...)?` to exit the `try` block early",
1336 )
1337}
1338
1339pub fn break_in_try_block(span: Span) -> LisetteDiagnostic {
1340 LisetteDiagnostic::error("`break` in `try` block")
1341 .with_infer_code("try_block_break")
1342 .with_span_label(&span, "not inside a loop")
1343 .with_help("Use `break` inside a loop, or use `Err(...)?` to exit the `try` block early")
1344}
1345
1346pub fn continue_in_try_block(span: Span) -> LisetteDiagnostic {
1347 LisetteDiagnostic::error("`continue` in `try` block")
1348 .with_infer_code("try_block_continue")
1349 .with_span_label(&span, "not inside a loop")
1350 .with_help("Use `continue` inside a loop, or use `Err(...)?` to exit the `try` block early")
1351}
1352
1353pub fn recover_block_empty(span: Span) -> LisetteDiagnostic {
1354 LisetteDiagnostic::warn("Empty `recover` block")
1355 .with_infer_code("recover_block_empty")
1356 .with_span_label(&span, "empty")
1357 .with_help("Ensure the `recover` block contains at least one expression that may panic")
1358}
1359
1360pub fn recover_cannot_use_question_mark(span: Span) -> LisetteDiagnostic {
1361 LisetteDiagnostic::error("`?` in `recover` block")
1362 .with_infer_code("recover_cannot_use_question_mark")
1363 .with_span_label(&span, "cannot propagate to `recover` block")
1364 .with_help(
1365 "Use a `try` block inside the `recover` block, or handle the `Result` explicitly",
1366 )
1367}
1368
1369pub fn return_in_recover_block(span: Span) -> LisetteDiagnostic {
1370 LisetteDiagnostic::error("`return` in `recover` block")
1371 .with_infer_code("recover_block_return")
1372 .with_span_label(&span, "not allowed inside `recover` block")
1373 .with_help("Remove the `return`, or move it inside a nested function")
1374}
1375
1376pub fn break_in_recover_block(span: Span) -> LisetteDiagnostic {
1377 LisetteDiagnostic::error("`break` in `recover` block")
1378 .with_infer_code("recover_block_break")
1379 .with_span_label(&span, "not allowed inside `recover` block")
1380 .with_help("Remove the `break`, or move it inside a loop within the `recover` block")
1381}
1382
1383pub fn continue_in_recover_block(span: Span) -> LisetteDiagnostic {
1384 LisetteDiagnostic::error("`continue` in `recover` block")
1385 .with_infer_code("recover_block_continue")
1386 .with_span_label(&span, "not allowed inside `recover` block")
1387 .with_help("Remove the `continue`, or move it inside a loop within the `recover` block")
1388}
1389
1390pub fn expected_channel_receive(ty: &Type, span: Span) -> LisetteDiagnostic {
1391 LisetteDiagnostic::error("Expected channel receive")
1392 .with_infer_code("expected_channel_receive")
1393 .with_span_label(&span, format!("`{}` is not a channel receive", ty))
1394 .with_help("Use `ch.receive()` to receive from a channel in select")
1395}
1396
1397pub fn empty_select(span: Span) -> LisetteDiagnostic {
1398 LisetteDiagnostic::error("Empty select")
1399 .with_infer_code("empty_select")
1400 .with_span_label(&span, "select has no arms")
1401 .with_help(
1402 "Add at least one channel operation arm, e.g. `select { ch.receive() => v { ... } }`",
1403 )
1404}
1405
1406pub fn expected_channel_send(span: Span) -> LisetteDiagnostic {
1407 LisetteDiagnostic::error("Expected channel operation")
1408 .with_infer_code("expected_channel_send")
1409 .with_span_label(&span, "not a channel operation")
1410 .with_help("Use `ch.send(value)` or `ch.receive()` in select arms")
1411}
1412
1413pub fn bare_identifier_in_select_receive(span: Span) -> LisetteDiagnostic {
1414 LisetteDiagnostic::error("Invalid select case")
1415 .with_infer_code("bare_identifier_in_select_receive")
1416 .with_span_label(&span, "expected destructuring")
1417 .with_help("`ch.receive()` returns an `Option`, so use `let Some(v) = ch.receive()` to bind the value")
1418}
1419
1420pub fn none_pattern_in_select_receive(span: Span) -> LisetteDiagnostic {
1421 LisetteDiagnostic::error("Invalid select case")
1422 .with_infer_code("none_pattern_in_select_receive")
1423 .with_span_label(&span, "expected match")
1424 .with_help(
1425 "To detect channel close, use `match ch.receive() { Some(v) => ..., None => ... }`",
1426 )
1427}
1428
1429pub fn select_match_missing_some_arm(span: Span) -> LisetteDiagnostic {
1430 LisetteDiagnostic::error("Invalid select match")
1431 .with_infer_code("select_match_missing_some_arm")
1432 .with_span_label(&span, "missing `Some` arm")
1433 .with_help("`None` only handles channel close. Add a `Some(v) => ...` arm to handle received values")
1434}
1435
1436pub fn select_match_missing_none_arm(span: Span) -> LisetteDiagnostic {
1437 LisetteDiagnostic::error("Invalid select match")
1438 .with_infer_code("select_match_missing_none_arm")
1439 .with_span_label(&span, "missing `None` arm")
1440 .with_help("Matching on `ch.receive()` requires handling channel close. Add a `None => ...` arm to handle channel close, or simplify to `let Some(v) = ch.receive() => ...`")
1441}
1442
1443pub fn select_match_duplicate_some_arm(span: Span) -> LisetteDiagnostic {
1444 LisetteDiagnostic::error("Invalid select match")
1445 .with_infer_code("select_match_duplicate_some_arm")
1446 .with_span_label(&span, "duplicate")
1447 .with_help(
1448 "Remove the duplicate `Some` arm. If you need to, use a `match` inside the arm body",
1449 )
1450}
1451
1452pub fn select_match_duplicate_none_arm(span: Span) -> LisetteDiagnostic {
1453 LisetteDiagnostic::error("Invalid select match")
1454 .with_infer_code("select_match_duplicate_none_arm")
1455 .with_span_label(&span, "duplicate")
1456 .with_help(
1457 "Remove the duplicate `None` arm. If you need to, use a `match` inside the arm body",
1458 )
1459}
1460
1461pub fn select_match_guard_not_allowed(span: Span) -> LisetteDiagnostic {
1462 LisetteDiagnostic::error("Invalid select match")
1463 .with_infer_code("select_match_guard_not_allowed")
1464 .with_span_label(&span, "not supported")
1465 .with_help("Match arms inside `select` do not support guards. Move the condition inside the arm body: `Some(v) => { if condition { ... } }`")
1466}
1467
1468pub fn select_match_invalid_pattern(span: Span) -> LisetteDiagnostic {
1469 LisetteDiagnostic::error("Invalid select match")
1470 .with_infer_code("select_match_invalid_pattern")
1471 .with_span_label(&span, "unsupported pattern")
1472 .with_help("Select match arms support only `Some(...)` and `None` patterns")
1473}
1474
1475pub fn select_receive_refutable_pattern(span: Span) -> LisetteDiagnostic {
1476 LisetteDiagnostic::error("Refutable pattern in select receive")
1477 .with_infer_code("select_receive_refutable_pattern")
1478 .with_span_label(&span, "may not match all received values")
1479 .with_help(
1480 "Select receive requires an irrefutable binding like `Some(v)` or `Some(_)`. \
1481 Use a regular `match` inside the arm body to filter values",
1482 )
1483}
1484
1485pub fn multiple_select_receives(first_span: Span, second_span: Span) -> LisetteDiagnostic {
1486 LisetteDiagnostic::error("Invalid select")
1487 .with_infer_code("multiple_select_receives")
1488 .with_span_label(&first_span, "first receive arm")
1489 .with_span_label(&second_span, "second receive arm")
1490 .with_help("Multiple shorthand receive arms can lead to unexpected behavior when a channel closes. Use `match ch.receive() { Some(v) => ..., None => ... }` to handle closes explicitly")
1491}
1492
1493pub fn duplicate_select_default(first_span: Span, second_span: Span) -> LisetteDiagnostic {
1494 LisetteDiagnostic::error("Invalid select")
1495 .with_infer_code("duplicate_select_default")
1496 .with_span_label(&first_span, "first default arm")
1497 .with_span_label(&second_span, "duplicate default arm")
1498 .with_help(
1499 "A select block can have at most one default arm (`_ => ...`). Remove the duplicate.",
1500 )
1501}
1502
1503pub fn non_exhaustive_select_expression(span: Span) -> LisetteDiagnostic {
1504 LisetteDiagnostic::error("Non-exhaustive select expression")
1505 .with_infer_code("non_exhaustive_select_expression")
1506 .with_span_label(&span, "may not produce a value")
1507 .with_help("Add a default arm `_ => ...` to handle closed channels")
1508}
1509
1510pub fn type_must_be_known(span: Span) -> LisetteDiagnostic {
1511 LisetteDiagnostic::error("Uninferrable type")
1512 .with_infer_code("type_not_inferred")
1513 .with_span_label(&span, "cannot be inferred")
1514 .with_help("Add a type annotation to help the compiler infer the type")
1515}
1516
1517pub fn uninferred_binding(name: &str, span: Span) -> LisetteDiagnostic {
1518 LisetteDiagnostic::error("Uninferrable type")
1519 .with_infer_code("type_not_inferred")
1520 .with_span_label(&span, "cannot be inferred")
1521 .with_help(format!(
1522 "Add a type annotation. For example: `let {}: Slice<int> = ...`",
1523 name
1524 ))
1525}
1526
1527pub fn unconstrained_type_param(param_name: &str, span: Span) -> LisetteDiagnostic {
1528 LisetteDiagnostic::error("Unconstrained type parameter")
1529 .with_infer_code("unconstrained_type_param")
1530 .with_span_label(
1531 &span,
1532 format!(
1533 "`{}` is not constrained by parameters or return type",
1534 param_name
1535 ),
1536 )
1537 .with_help(format!(
1538 "Use `{}` in a parameter or return type, or provide an explicit type argument: `func<SomeType>(...)`",
1539 param_name
1540 ))
1541}
1542
1543pub fn slice_index_type_mismatch(index_ty: &Type, span: Span) -> LisetteDiagnostic {
1544 LisetteDiagnostic::error("Type mismatch")
1545 .with_infer_code("slice_index_type_mismatch")
1546 .with_span_label(&span, format!("expected `int`, found `{}`", index_ty))
1547 .with_help(
1548 "Use an integer to index into a `Slice`. For key-value lookup, use a `Map<K, V>`",
1549 )
1550}
1551
1552pub fn only_slices_and_maps_indexable(ty: &Type, span: Span) -> LisetteDiagnostic {
1553 LisetteDiagnostic::error("Not indexable")
1554 .with_infer_code("not_indexable")
1555 .with_span_label(&span, format!("expected `Slice` or `Map`, found `{}`", ty))
1556 .with_help("Only `Slice` and `Map` can be indexed into")
1557}
1558
1559pub fn string_not_indexable(span: Span, receiver: &str) -> LisetteDiagnostic {
1560 LisetteDiagnostic::error("Cannot index into `string`")
1561 .with_infer_code("string_not_indexable")
1562 .with_span_label(&span, "not indexable")
1563 .with_help(format!(
1564 "Use `{receiver}.rune_at(i)` to get a `rune`, or `{receiver}.byte_at(i)` to get a `byte`"
1565 ))
1566}
1567
1568pub fn string_not_sliceable(span: Span, receiver: &str) -> LisetteDiagnostic {
1569 LisetteDiagnostic::error("Cannot slice into `string`")
1570 .with_infer_code("string_not_sliceable")
1571 .with_span_label(&span, "not sliceable")
1572 .with_help(format!(
1573 "Use `{receiver}.substring(a..b)` for a rune-indexed substring, or `{receiver}.bytes()[a..b]` for a range of bytes"
1574 ))
1575}
1576
1577pub fn string_not_iterable(span: Span, receiver: &str) -> LisetteDiagnostic {
1578 LisetteDiagnostic::error("Cannot iterate over `string`")
1579 .with_infer_code("string_not_iterable")
1580 .with_span_label(&span, "not iterable")
1581 .with_help(format!(
1582 "Use `for r in {receiver}.runes()` for code points, or `for b in {receiver}.bytes()` for bytes"
1583 ))
1584}
1585
1586pub fn colon_in_subscript(
1587 span: Span,
1588 receiver: &str,
1589 type_name: Option<&str>,
1590) -> LisetteDiagnostic {
1591 let (message, label, help) = match type_name {
1592 Some("string") => (
1593 "Invalid syntax for string slicing",
1594 "expected a method call",
1595 format!(
1596 "Use `{receiver}.substring(a..b)` for a string, or `{receiver}.bytes()[a..b]` for a range of bytes"
1597 ),
1598 ),
1599 _ => (
1600 "Invalid syntax for subslicing",
1601 "expected `..`",
1602 format!(
1603 "Use `{receiver}[a..b]` or `{receiver}[a..=b]` for an exclusive or inclusive slice, respectively"
1604 ),
1605 ),
1606 };
1607 LisetteDiagnostic::error(message)
1608 .with_parse_code("colon_in_subscript")
1609 .with_span_label(&span, label)
1610 .with_help(help)
1611}
1612
1613pub fn not_callable(
1614 ty: &Type,
1615 callee_name: Option<&str>,
1616 arg_name: Option<&str>,
1617 span: Span,
1618) -> LisetteDiagnostic {
1619 let type_name = ty.get_name();
1620 let is_type_call = matches!((callee_name, type_name), (Some(c), Some(t)) if c == t);
1621 let is_cast_target = ty.get_underlying().is_some()
1622 || type_name.is_some_and(|n| SimpleKind::from_name(n).is_some());
1623
1624 let help = if is_type_call && is_cast_target {
1625 let subject = arg_name.unwrap_or("value");
1626 format!(
1627 "Use `{} as {}` to cast between types",
1628 subject,
1629 type_name.unwrap()
1630 )
1631 } else {
1632 "Only functions can be called with `()`".to_string()
1633 };
1634
1635 LisetteDiagnostic::error("Not callable")
1636 .with_infer_code("not_callable")
1637 .with_span_label(&span, format!("expected function, found `{}`", ty))
1638 .with_help(help)
1639}
1640
1641pub fn type_conversion_arity(
1642 type_name: &str,
1643 actual_count: usize,
1644 span: Span,
1645) -> LisetteDiagnostic {
1646 LisetteDiagnostic::error("Wrong argument count")
1647 .with_infer_code("type_conversion_arity")
1648 .with_span_label(
1649 &span,
1650 format!("expected 1 argument, found {}", actual_count),
1651 )
1652 .with_help(format!(
1653 "Type conversion `{}(value)` takes exactly one argument — the value to convert",
1654 type_name
1655 ))
1656}
1657
1658#[derive(Debug, Clone)]
1659pub struct InterfaceViolation {
1660 pub interface_name: String,
1661 pub parent_of: Option<String>,
1662 pub missing: Vec<(String, Type)>,
1663 pub incompatible: Vec<(String, Type, Type)>,
1664}
1665
1666pub fn interface_not_implemented(
1667 interface_name: &str,
1668 type_name: &str,
1669 violations: &[InterfaceViolation],
1670 span: Span,
1671) -> LisetteDiagnostic {
1672 let mut help_lines = Vec::new();
1673
1674 let mut missing_sections: Vec<(String, Vec<String>)> = Vec::new();
1675 let mut incompatible_sections: Vec<(String, Vec<String>)> = Vec::new();
1676
1677 for violation in violations {
1678 let header = if let Some(ref parent) = violation.parent_of {
1679 format!(
1680 "From `{}` (required by `{}`)",
1681 violation.interface_name, parent
1682 )
1683 } else {
1684 format!("From `{}`", violation.interface_name)
1685 };
1686
1687 if !violation.missing.is_empty() {
1688 let methods: Vec<String> = violation
1689 .missing
1690 .iter()
1691 .map(|(name, sig)| format!(" - {}: {}", name, sig))
1692 .collect();
1693 missing_sections.push((header.clone(), methods));
1694 }
1695
1696 if !violation.incompatible.is_empty() {
1697 let methods: Vec<String> = violation
1698 .incompatible
1699 .iter()
1700 .map(|(name, expected, actual)| {
1701 format!(" - {}: expected `{}`, found `{}`", name, expected, actual)
1702 })
1703 .collect();
1704 incompatible_sections.push((header, methods));
1705 }
1706 }
1707
1708 if !missing_sections.is_empty() {
1709 help_lines.push("Missing methods:".to_string());
1710 for (header, methods) in &missing_sections {
1711 help_lines.push(format!(" {}", header));
1712 for method in methods {
1713 help_lines.push(format!(" {}", method));
1714 }
1715 }
1716 }
1717
1718 if !incompatible_sections.is_empty() {
1719 help_lines.push("Incompatible methods:".to_string());
1720 for (header, methods) in &incompatible_sections {
1721 help_lines.push(format!(" {}", header));
1722 for method in methods {
1723 help_lines.push(format!(" {}", method));
1724 }
1725 }
1726 }
1727
1728 LisetteDiagnostic::error("Interface not implemented")
1729 .with_infer_code("interface_not_implemented")
1730 .with_span_label(
1731 &span,
1732 format!("`{}` does not implement `{}`", type_name, interface_name),
1733 )
1734 .with_help(help_lines.join("\n"))
1735}
1736
1737pub fn pointer_receiver_interface_mismatch(
1738 interface_name: &str,
1739 type_name: &str,
1740 methods: &[String],
1741 span: Span,
1742) -> LisetteDiagnostic {
1743 let methods_str = methods
1744 .iter()
1745 .map(|m| format!("`{}.{}`", type_name, m))
1746 .collect::<Vec<_>>()
1747 .join(", ");
1748 let takes = if methods.len() == 1 {
1749 format!("{} takes `self: Ref<{}>`", methods_str, type_name)
1750 } else {
1751 format!("{} take `self: Ref<{}>`", methods_str, type_name)
1752 };
1753 LisetteDiagnostic::error("Interface not implemented")
1754 .with_infer_code("interface_not_implemented")
1755 .with_span_label(
1756 &span,
1757 format!("`{}` does not implement `{}`", type_name, interface_name),
1758 )
1759 .with_help(format!("{}, so pass a `Ref<{}>`.", takes, type_name))
1760}
1761
1762pub fn unknown_in_bound_position(span: Span) -> LisetteDiagnostic {
1763 LisetteDiagnostic::error("Invalid `Unknown` bound")
1764 .with_infer_code("unknown_in_bound_position")
1765 .with_span_label(&span, "invalid bound")
1766 .with_help("`Unknown` cannot constrain a generic")
1767}
1768
1769pub fn unknown_in_const_annotation(span: Span) -> LisetteDiagnostic {
1770 LisetteDiagnostic::error("Invalid `Unknown` in `const` annotation")
1771 .with_infer_code("unknown_in_const_annotation")
1772 .with_span_label(&span, "invalid annotation")
1773 .with_help("`Unknown` cannot be used to annotate a constant")
1774}
1775
1776pub fn unknown_as_map_key(span: Span) -> LisetteDiagnostic {
1777 LisetteDiagnostic::error("`Unknown` cannot be used as a map key")
1778 .with_infer_code("unknown_as_map_key")
1779 .with_span_label(&span, "key resolves to `any`")
1780 .with_help("Use a concrete comparable key type.")
1781 .with_note("Go's `map[any]V` admits non-comparable runtime values that panic on insertion.")
1782}
1783
1784pub fn opaque_type_outside_typedef(span: Span) -> LisetteDiagnostic {
1785 LisetteDiagnostic::error("Undefined type")
1786 .with_infer_code("undefined_type_outside_typedef")
1787 .with_span_label(&span, "needs a definition")
1788 .with_help("Use `type Point = ...` to define the type.")
1789 .with_note("Opaque declarations are only allowed in `.d.lis` files.")
1790}
1791
1792pub fn bodyless_function_outside_typedef(span: Span) -> LisetteDiagnostic {
1793 LisetteDiagnostic::error("Missing function body")
1794 .with_infer_code("bodyless_function_outside_typedef")
1795 .with_span_label(&span, "needs a body")
1796 .with_help("Add a body: `fn greet() { ... }`.")
1797 .with_note("Bodyless declarations are only allowed in `.d.lis` files.")
1798}
1799
1800pub fn valueless_const_outside_typedef(span: Span) -> LisetteDiagnostic {
1801 LisetteDiagnostic::error("Missing const value")
1802 .with_infer_code("valueless_const_outside_typedef")
1803 .with_span_label(&span, "needs a value")
1804 .with_help("Ensure the constant has a value: `const MAX_SIZE: int = 100`.")
1805 .with_note("Valueless const declarations are only allowed in `.d.lis` files.")
1806}
1807
1808pub fn valueless_const_missing_annotation(span: Span) -> LisetteDiagnostic {
1809 LisetteDiagnostic::error("Missing const annotation")
1810 .with_infer_code("valueless_const_missing_annotation")
1811 .with_span_label(&span, "needs a type annotation")
1812 .with_help("Valueless const declarations require a type annotation: `const MAX_SIZE: int`")
1813}
1814
1815pub fn variable_declaration_outside_typedef(span: Span) -> LisetteDiagnostic {
1816 LisetteDiagnostic::error("Invalid variable declaration")
1817 .with_infer_code("variable_declaration_outside_typedef")
1818 .with_span_label(&span, "`var` is not allowed here")
1819 .with_help("Use `let` to declare a variable: `let x: int = 0`.")
1820 .with_note("`var` declarations are only allowed in `.d.lis` files.")
1821}
1822
1823pub fn range_full_not_valid_expression(span: Span) -> LisetteDiagnostic {
1824 LisetteDiagnostic::error("Invalid expression")
1825 .with_infer_code("range_full_not_expression")
1826 .with_span_label(&span, "`..` can only be used in slice indexing")
1827 .with_help("Use `arr[..]` to get a full slice, or provide bounds like `0..10`")
1828}
1829
1830pub fn range_not_iterable(range_type: &str, span: Span) -> LisetteDiagnostic {
1831 LisetteDiagnostic::error("Not iterable")
1832 .with_infer_code("range_not_iterable")
1833 .with_span_label(&span, format!("`{}` has no start bound", range_type))
1834 .with_help("Use a range with a start bound, e.g. `0..10` instead of `..10`")
1835}
1836
1837pub fn taking_value_of_ufcs_method(span: Span) -> LisetteDiagnostic {
1838 LisetteDiagnostic::error("Invalid method value")
1839 .with_infer_code("taking_value_of_ufcs_method")
1840 .with_span_label(&span, "taking value not allowed")
1841 .with_help(
1842 "This method cannot be taken as a value. Call the method directly: `obj.method(...)`",
1843 )
1844}
1845
1846pub fn duplicate_definition(kind: &str, name: &str, span: Span) -> LisetteDiagnostic {
1847 LisetteDiagnostic::error(format!("Duplicate {}", kind))
1848 .with_infer_code("duplicate_definition")
1849 .with_span_label(&span, "already defined")
1850 .with_help(format!(
1851 "`{}` is already defined in this module. Rename or remove this definition.",
1852 name
1853 ))
1854}
1855
1856pub fn duplicate_impl_item(item_name: &str, type_name: &str, span: Span) -> LisetteDiagnostic {
1857 LisetteDiagnostic::error("Duplicate name in impl")
1858 .with_infer_code("duplicate_impl_item")
1859 .with_span_label(&span, "method name already taken")
1860 .with_help(format!(
1861 "Method `{}` is already defined for type `{}`. Rename one of the methods.",
1862 item_name, type_name
1863 ))
1864}
1865
1866pub fn duplicate_method_across_specialized_impls(
1867 method_name: &str,
1868 type_name: &str,
1869 generics: &[String],
1870 span: Span,
1871) -> LisetteDiagnostic {
1872 let params = generics.join(", ");
1873 LisetteDiagnostic::error("Duplicate method across specialized `impl` blocks")
1874 .with_infer_code("duplicate_method_across_specialized_impls")
1875 .with_span_label(&span, "already defined in another specialization")
1876 .with_help(format!(
1877 "Specialized `impl` blocks for `{type_name}` share a method namespace. \
1878 Use different method names, or move `{method_name}` to a generic `impl<{params}> {type_name}<{params}> {{}}` block."
1879 ))
1880}
1881
1882pub fn method_shadows_field(type_name: &str, field_name: &str, span: Span) -> LisetteDiagnostic {
1883 LisetteDiagnostic::error("Method shadows struct field")
1884 .with_infer_code("method_shadows_field")
1885 .with_span_label(&span, "same as field")
1886 .with_help(format!(
1887 "`{}` has a field `{}` and a method `{}`. Rename either the field or the method",
1888 type_name, field_name, field_name
1889 ))
1890}
1891
1892pub fn non_int_range_not_iterable(element_ty: &Type, span: Span) -> LisetteDiagnostic {
1893 LisetteDiagnostic::error("Not iterable")
1894 .with_infer_code("non_int_range_not_iterable")
1895 .with_span_label(
1896 &span,
1897 format!("cannot iterate over `Range<{}>`", element_ty),
1898 )
1899 .with_help("Range iteration requires integer bounds")
1900}
1901
1902pub fn only_slices_indexable_by_range(ty: &Type, span: Span) -> LisetteDiagnostic {
1903 LisetteDiagnostic::error("Type mismatch")
1904 .with_infer_code("range_index_not_slice")
1905 .with_span_label(
1906 &span,
1907 format!("expected `Slice` or `string`, found `{}`", ty),
1908 )
1909 .with_help("Range indexing only works on `Slice` and `string`")
1910}
1911
1912pub fn empty_body_return_mismatch(expected_ty: &Type, span: Span) -> LisetteDiagnostic {
1913 LisetteDiagnostic::error("Type mismatch")
1914 .with_infer_code("type_mismatch")
1915 .with_span_label(
1916 &span,
1917 format!("promises `{}`, but returns `()`", expected_ty),
1918 )
1919 .with_help("Return a value or change the return type annotation to `()`.")
1920 .with_note("An empty function body implicitly returns `()`.")
1921}
1922
1923fn operator_verb(operator: &BinaryOperator) -> &'static str {
1924 match operator {
1925 BinaryOperator::Addition => "add",
1926 BinaryOperator::Subtraction => "subtract",
1927 BinaryOperator::Multiplication => "multiply",
1928 BinaryOperator::Division => "divide",
1929 BinaryOperator::Remainder => "get remainder of",
1930 BinaryOperator::BitwiseAnd
1931 | BinaryOperator::BitwiseOr
1932 | BinaryOperator::BitwiseXor
1933 | BinaryOperator::BitwiseAndNot => "apply bitwise operator to",
1934 BinaryOperator::ShiftLeft | BinaryOperator::ShiftRight => "shift",
1935 BinaryOperator::Equal | BinaryOperator::NotEqual => "compare",
1936 BinaryOperator::LessThan
1937 | BinaryOperator::LessThanOrEqual
1938 | BinaryOperator::GreaterThan
1939 | BinaryOperator::GreaterThanOrEqual => "compare",
1940 BinaryOperator::And | BinaryOperator::Or => "apply logical operator to",
1941 BinaryOperator::Pipeline => "pipe",
1942 }
1943}
1944
1945fn operator_help(op: &BinaryOperator) -> &'static str {
1946 match op {
1947 BinaryOperator::Addition => "requires both operands to have the same type",
1948 BinaryOperator::Subtraction
1949 | BinaryOperator::Multiplication
1950 | BinaryOperator::Division
1951 | BinaryOperator::Remainder
1952 | BinaryOperator::BitwiseAnd
1953 | BinaryOperator::BitwiseOr
1954 | BinaryOperator::BitwiseXor
1955 | BinaryOperator::BitwiseAndNot => "requires both operands to have the same integer type",
1956 BinaryOperator::ShiftLeft | BinaryOperator::ShiftRight => {
1957 "requires integer operands (the result type comes from the left operand)"
1958 }
1959 BinaryOperator::Equal | BinaryOperator::NotEqual => {
1960 "requires both operands to have the same type"
1961 }
1962 BinaryOperator::LessThan
1963 | BinaryOperator::LessThanOrEqual
1964 | BinaryOperator::GreaterThan
1965 | BinaryOperator::GreaterThanOrEqual => "requires both operands to have the same type",
1966 BinaryOperator::And | BinaryOperator::Or => "requires both operands to be bool",
1967 BinaryOperator::Pipeline => "should have been desugared",
1968 }
1969}
1970
1971pub fn task_in_expression_position(span: Span) -> LisetteDiagnostic {
1972 LisetteDiagnostic::error("Invalid `task`")
1973 .with_infer_code("task_in_expression_position")
1974 .with_span_label(&span, "produces no value")
1975 .with_help("Move `task` to its own statement")
1976}
1977
1978pub fn defer_in_expression_position(span: Span) -> LisetteDiagnostic {
1979 LisetteDiagnostic::error("Invalid `defer`")
1980 .with_infer_code("defer_in_expression_position")
1981 .with_span_label(&span, "produces no value")
1982 .with_help("Move `defer` to its own statement")
1983}
1984
1985pub fn non_addressable_expression(expression_kind: &str, span: Span) -> LisetteDiagnostic {
1986 LisetteDiagnostic::error("Non-addressable expression")
1987 .with_infer_code("non_addressable_expression")
1988 .with_span_label(&span, format!("cannot take address of {}", expression_kind))
1989 .with_help("Assign the value to a variable first, then take its address")
1990}
1991
1992pub fn non_addressable_const(span: Span) -> LisetteDiagnostic {
1993 LisetteDiagnostic::error("Cannot take address of `const`")
1994 .with_infer_code("non_addressable_const")
1995 .with_span_label(&span, "not addressable")
1996 .with_help(
1997 "`const` bindings are not addressable. Copy the value into a local `let` first if you need a reference",
1998 )
1999}
2000
2001pub fn non_addressable_assignment(expression_kind: &str, span: Span) -> LisetteDiagnostic {
2002 LisetteDiagnostic::error("Cannot assign to non-addressable expression")
2003 .with_infer_code("non_addressable_assignment")
2004 .with_span_label(&span, format!("cannot assign to {}", expression_kind))
2005 .with_help("Assign the value to a variable first, then modify it")
2006}
2007
2008pub fn newtype_field_assignment(type_name: &str, span: Span) -> LisetteDiagnostic {
2009 LisetteDiagnostic::error("Cannot assign to newtype field")
2010 .with_infer_code("newtype_field_assignment")
2011 .with_span_label(&span, "newtype fields are read-only")
2012 .with_help(format!(
2013 "Reconstruct the newtype: `variable = {type_name}(new_value)`"
2014 ))
2015}
2016
2017pub fn complex_select_expression(span: Span) -> LisetteDiagnostic {
2018 LisetteDiagnostic::error("Complex expression in `select` arm")
2019 .with_infer_code("complex_select_expression")
2020 .with_span_label(&span, "expected simple expression")
2021 .with_help("Hoist to a `let` binding before the `select`")
2022}
2023
2024pub fn ref_slice_append(span: Span) -> LisetteDiagnostic {
2025 LisetteDiagnostic::error("Cannot call append/extend on `Ref<Slice>`")
2026 .with_infer_code("ref_slice_append")
2027 .with_span_label(&span, "dereference the ref first")
2028 .with_help("Use `r.*.append(x)` to deref, then append")
2029}
2030
2031pub fn map_field_chain_assignment(span: Span) -> LisetteDiagnostic {
2032 LisetteDiagnostic::error("Cannot assign to field of map entry")
2033 .with_infer_code("map_field_chain_assignment")
2034 .with_span_label(&span, "assignment not allowed here")
2035 .with_help(
2036 "Extract, modify, and reinsert: `let mut entry = m[key]; entry.field = value; m[key] = entry`",
2037 )
2038}
2039
2040pub fn enum_field_type_conflict(
2041 loc_a: &str,
2042 type_a: &str,
2043 loc_b: &str,
2044 type_b: &str,
2045 span: Span,
2046) -> LisetteDiagnostic {
2047 LisetteDiagnostic::error("Conflicting field types across enum variants")
2048 .with_infer_code("enum_field_type_conflict")
2049 .with_span_label(&span, "field type mismatch")
2050 .with_help(format!(
2051 "`{loc_a}` is `{type_a}` but `{loc_b}` is `{type_b}`. Rename one of the fields or align their types",
2052 ))
2053}
2054
2055pub fn cannot_auto_address_receiver(
2056 receiver_kind: &str,
2057 method_name: &str,
2058 expected_ty: &Type,
2059 actual_ty: &Type,
2060 span: Span,
2061) -> LisetteDiagnostic {
2062 let readable_kind = match receiver_kind {
2063 "map index expression" => "map lookup",
2064 "function call" => "function result",
2065 "literal" => "literal",
2066 "binary expression" => "expression result",
2067 "conditional expression" => "conditional result",
2068 "match expression" => "match result",
2069 "block expression" => "block result",
2070 "lambda" => "lambda",
2071 "tuple" => "tuple",
2072 "range expression" => "range expression",
2073 _ => "expression",
2074 };
2075
2076 LisetteDiagnostic::error("Expression not modifiable")
2077 .with_infer_code("cannot_auto_address_receiver")
2078 .with_span_label(&span, "modifies its receiver")
2079 .with_help(format!(
2080 "Assign the {} to a variable first, then call the method. The receiver of `{}` is `{}`, not `{}`",
2081 readable_kind, method_name, expected_ty, actual_ty
2082 ))
2083}
2084
2085pub fn break_value_in_non_loop(span: Span) -> LisetteDiagnostic {
2086 LisetteDiagnostic::error("`break` with value in non-`loop` loop")
2087 .with_infer_code("break_value_in_non_loop")
2088 .with_span_label(&span, "`break` with value only allowed in `loop`")
2089 .with_help("`break` with a value is only meaningful in `loop` expressions, which can return the value. In `for` and `while` loops, use `break` without a value.")
2090}
2091
2092pub fn defer_in_loop(span: Span) -> LisetteDiagnostic {
2093 LisetteDiagnostic::error("`defer` inside loop")
2094 .with_infer_code("defer_in_loop")
2095 .with_span_label(&span, "not allowed inside loop")
2096 .with_help("Wrap the loop body in a helper function, e.g. `fn process(file: File) { defer file.close(); ... }` and call it in the loop: `for f in files { process(f); }`")
2097}
2098
2099pub fn propagate_in_condition(span: Span) -> LisetteDiagnostic {
2100 LisetteDiagnostic::error("`?` cannot be used inside a condition")
2101 .with_infer_code("propagate_in_condition")
2102 .with_span_label(&span, "`?` inside condition")
2103 .with_help("Bind the result first: `let val = expression?; if val { ... }`")
2104}
2105
2106pub fn propagate_in_defer(span: Span) -> LisetteDiagnostic {
2107 LisetteDiagnostic::error("Invalid `?` in `defer`")
2108 .with_infer_code("propagate_in_defer")
2109 .with_span_label(&span, "`?` not allowed here")
2110 .with_help("`defer` in combination with `?` is not allowed due to confusing semantics. Handle the error inside a `defer` block: `defer { if let Err(e) = file.close() { log(e); } }`")
2111}
2112
2113pub fn return_in_defer_block(span: Span) -> LisetteDiagnostic {
2114 LisetteDiagnostic::error("`return` in `defer` block")
2115 .with_infer_code("return_in_defer_block")
2116 .with_span_label(&span, "not allowed inside `defer` block")
2117 .with_help("Remove the `return` as it only exits the `defer` block")
2118}
2119
2120pub fn break_in_defer_block(span: Span) -> LisetteDiagnostic {
2121 LisetteDiagnostic::error("`break` in `defer` block")
2122 .with_infer_code("break_in_defer_block")
2123 .with_span_label(&span, "not allowed inside `defer` block")
2124 .with_help("Remove the `break`, or move it inside a loop within the `defer` block")
2125}
2126
2127pub fn continue_in_defer_block(span: Span) -> LisetteDiagnostic {
2128 LisetteDiagnostic::error("`continue` in `defer` block")
2129 .with_infer_code("continue_in_defer_block")
2130 .with_span_label(&span, "not allowed inside `defer` block")
2131 .with_help("Remove the `continue`, or move it inside a loop within the `defer` block")
2132}
2133
2134pub fn invalid_cast(source_ty: &Type, target_ty: &Type, span: Span) -> LisetteDiagnostic {
2135 let same_constructor_with_unresolved = source_ty
2136 .get_qualified_id()
2137 .zip(target_ty.get_qualified_id())
2138 .is_some_and(|(s, t)| s == t)
2139 && source_ty.has_unbound_variables();
2140
2141 let help = if same_constructor_with_unresolved {
2142 format!(
2143 "Use a type annotation instead: `let x: {} = ...`",
2144 target_ty,
2145 )
2146 } else if source_ty.is_string() {
2147 "Strings cannot be cast to numbers and require explicit conversion. Use `strconv.Atoi()` to parse.".into()
2148 } else if source_ty.is_complex() || target_ty.is_complex() {
2149 "Complex numbers cannot be cast directly. Use `real(c)` or `imaginary(c)` to extract components.".into()
2150 } else if source_ty.has_underlying_rune() && target_ty.has_underlying_byte() {
2151 "rune (int32) is wider than byte (uint8) and may not fit. Use an intermediate variable to cast via int first: `let n = r as int; n as byte`".into()
2152 } else if source_ty.has_underlying_byte() && target_ty.is_string() {
2153 "A byte has two readings as a string. Use `[b] as string` to preserve the byte (may be invalid UTF-8), or cast through a rune to encode as a codepoint: `let r = b as rune; r as string`".into()
2154 } else {
2155 "Casts are supported between numeric types, between string and byte/rune slices, from rune to string, and from concrete types to interfaces.".into()
2156 };
2157
2158 LisetteDiagnostic::error("Invalid cast")
2159 .with_infer_code("invalid_cast")
2160 .with_span_label(
2161 &span,
2162 format!("cannot cast `{}` to `{}`", source_ty, target_ty),
2163 )
2164 .with_help(help)
2165}
2166
2167pub fn chained_cast(span: Span) -> LisetteDiagnostic {
2168 LisetteDiagnostic::error("Invalid cast")
2169 .with_infer_code("chained_cast")
2170 .with_span_label(&span, "chained cast not allowed")
2171 .with_help("Use an intermediate variable if you need to cast through multiple types")
2172}
2173
2174pub fn redundant_cast(ty: &Type, span: Span) -> LisetteDiagnostic {
2175 LisetteDiagnostic::warn("Redundant cast")
2176 .with_infer_code("redundant_cast")
2177 .with_span_label(&span, format!("casting `{}` to itself has no effect", ty))
2178 .with_help("Remove the unnecessary cast")
2179}
2180
2181pub fn integer_literal_overflow(
2182 target_ty: &str,
2183 min: i128,
2184 max: i128,
2185 span: Span,
2186) -> LisetteDiagnostic {
2187 LisetteDiagnostic::error("Integer literal overflow")
2188 .with_infer_code("integer_literal_overflow")
2189 .with_span_label(&span, format!("overflows `{}`", target_ty))
2190 .with_help(format!(
2191 "`{}` must be in range `{}` to `{}`",
2192 target_ty, min, max
2193 ))
2194}
2195
2196pub fn float_literal_overflow(target_ty: &str, span: Span) -> LisetteDiagnostic {
2197 LisetteDiagnostic::error("Float literal overflow")
2198 .with_infer_code("float_literal_overflow")
2199 .with_span_label(&span, format!("value overflows `{}`", target_ty))
2200 .with_help(format!(
2201 "Use `float64` for larger values, or ensure the value fits in `{}`",
2202 target_ty
2203 ))
2204}
2205
2206pub fn cannot_negate_unsigned(target_ty: &str, span: Span) -> LisetteDiagnostic {
2207 LisetteDiagnostic::error("Cannot negate unsigned type")
2208 .with_infer_code("cannot_negate_unsigned")
2209 .with_span_label(&span, format!("cannot negate `{}`", target_ty))
2210 .with_help("Unsigned types cannot represent negative values")
2211}
2212
2213fn go_builtin_hint(name: &str) -> Option<&'static str> {
2214 match name {
2215 "len" => Some(
2216 "Lisette has no `len` builtin. Use the `.length()` method instead, e.g. `items.length()`.",
2217 ),
2218 "cap" => Some(
2219 "Lisette has no `cap` builtin. Use the `.capacity()` method instead, e.g. `items.capacity()`.",
2220 ),
2221 "make" => Some(
2222 "Lisette has no `make` builtin. Use constructor methods instead, e.g. `Channel.new<int>()`, `Slice.new<int>()`, `Map.new<K, V>()`.",
2223 ),
2224 "append" => Some(
2225 "Lisette has no `append` builtin. Use the `.append()` method instead, e.g. `items.append(1)`.",
2226 ),
2227 "close" => Some(
2228 "Lisette has no `close` builtin. Use the `.close()` method instead, e.g. `ch.close()`.",
2229 ),
2230 "copy" => Some(
2231 "Lisette has no `copy` builtin. Use the `.copy_from()` method instead, e.g. `dst.copy_from(src)`.",
2232 ),
2233 "delete" => Some(
2234 "Lisette has no `delete` builtin. Use the `.delete()` method instead, e.g. `map.delete(key)`.",
2235 ),
2236 "new" => Some(
2237 "Lisette has no `new` builtin. Use constructor methods instead, e.g. `MyStruct { field: value }` or `MyType.new()`.",
2238 ),
2239 "print" | "println" | "printf" => Some(
2240 "Lisette has no `print` builtin. Use `fmt.Println`, `fmt.Printf`, etc. after `import \"go:fmt\"`.",
2241 ),
2242 _ => None,
2243 }
2244}
2245
2246pub fn levenshtein_distance(a: &str, b: &str) -> usize {
2247 let b_len = b.len();
2248
2249 if a.is_empty() {
2250 return b_len;
2251 }
2252 if b_len == 0 {
2253 return a.len();
2254 }
2255
2256 let mut prev: Vec<usize> = (0..=b_len).collect();
2257 let mut curr = vec![0; b_len + 1];
2258
2259 for (i, a_char) in a.chars().enumerate() {
2260 curr[0] = i + 1;
2261 for (j, b_char) in b.chars().enumerate() {
2262 let cost = if a_char == b_char { 0 } else { 1 };
2263 curr[j + 1] = (prev[j + 1] + 1).min(curr[j] + 1).min(prev[j] + cost);
2264 }
2265 std::mem::swap(&mut prev, &mut curr);
2266 }
2267
2268 prev[b_len]
2269}
2270
2271pub fn find_similar_name(name: &str, candidates: &[String]) -> Option<String> {
2274 let best_distance = candidates
2275 .iter()
2276 .filter_map(|c| {
2277 let d = levenshtein_distance(name, c);
2278 (d <= 2).then_some((c, d))
2279 })
2280 .min_by_key(|(_, d)| *d);
2281
2282 let by_prefix = if name.len() >= 2 {
2283 candidates
2284 .iter()
2285 .filter(|c| c.starts_with(name) || name.starts_with(c.as_str()))
2286 .min_by_key(|c| c.len().abs_diff(name.len()))
2287 } else {
2288 None
2289 };
2290
2291 match (best_distance, by_prefix) {
2292 (Some((d, dist)), Some(p)) => {
2293 if dist <= 1 {
2296 Some(d.clone())
2297 } else {
2298 Some(p.clone())
2299 }
2300 }
2301 (Some((d, _)), None) => Some(d.clone()),
2302 (None, Some(p)) => Some(p.clone()),
2303 (None, None) => None,
2304 }
2305}
2306
2307pub fn cannot_infer_type_argument(span: Span) -> LisetteDiagnostic {
2308 LisetteDiagnostic::error("Missing type argument")
2309 .with_infer_code("missing_type_argument")
2310 .with_span_label(&span, "expected type argument")
2311 .with_help("Supply a type argument for the call, e.g. `Channel.new<int>()`")
2312}
2313
2314fn format_list<T, F>(items: &[T], fmt: F) -> String
2315where
2316 F: Fn(&T) -> String,
2317{
2318 match items.len() {
2319 0 => String::new(),
2320 1 => fmt(&items[0]),
2321 2 => format!("{} and {}", fmt(&items[0]), fmt(&items[1])),
2322 _ => {
2323 let mut result = String::new();
2324 for (i, item) in items.iter().enumerate() {
2325 if i > 0 {
2326 result.push_str(", ");
2327 }
2328 if i == items.len() - 1 {
2329 result.push_str("and ");
2330 }
2331 result.push_str(&fmt(item));
2332 }
2333 result
2334 }
2335 }
2336}
2337
2338pub fn recursive_generic_instantiation(type_name: &str, span: Span) -> LisetteDiagnostic {
2339 LisetteDiagnostic::error("Recursive generic instantiation")
2340 .with_infer_code("recursive_instantiation")
2341 .with_span_label(&span, format!("`{}` is nested within itself", type_name))
2342 .with_help(format!(
2343 "Go does not allow recursive type instantiation (e.g., `{0}<{0}<T>>`). \
2344 Use a wrapper type or a different design.",
2345 type_name
2346 ))
2347}
2348
2349pub fn non_comparable_map_key(key_ty: &Type, reason: &str, span: Span) -> LisetteDiagnostic {
2350 LisetteDiagnostic::error("Invalid map key type")
2351 .with_infer_code("non_comparable_map_key")
2352 .with_span_label(&span, format!("`{}` is not comparable", key_ty))
2353 .with_help(format!(
2354 "Map keys must be comparable in Go. {} cannot be used as map keys.",
2355 reason
2356 ))
2357}
2358
2359pub fn ref_of_interface_type(inner_ty: &Type, span: Span) -> LisetteDiagnostic {
2360 LisetteDiagnostic::error("Invalid use of `Ref` with interface")
2361 .with_infer_code("ref_of_interface")
2362 .with_span_label(&span, "not allowed")
2363 .with_help(format!(
2364 "Use `{}` instead of `Ref<{}>`. Interfaces are already reference types in Go.",
2365 inner_ty, inner_ty
2366 ))
2367}
2368
2369pub fn float_modulo_not_supported(span: Span) -> LisetteDiagnostic {
2370 LisetteDiagnostic::error("Invalid operation")
2371 .with_infer_code("float_modulo")
2372 .with_span_label(&span, "`%` is not supported on floating-point types")
2373 .with_help("Use `math.Mod(x, y)` for floating-point modulo")
2374}
2375
2376pub fn recursive_type(type_name: &str, span: Span) -> LisetteDiagnostic {
2377 LisetteDiagnostic::error("Recursive type has infinite size")
2378 .with_infer_code("recursive_type")
2379 .with_span_label(
2380 &span,
2381 format!("`{}` contains itself without indirection", type_name),
2382 )
2383 .with_help(format!(
2384 "Use `Ref<{}>` for indirection. For example: `next: Option<Ref<{}>>`",
2385 type_name, type_name
2386 ))
2387}
2388
2389pub fn interface_self_embedding(interface_name: &str, span: Span) -> LisetteDiagnostic {
2390 LisetteDiagnostic::error("Recursive interface embedding")
2391 .with_infer_code("interface_cycle")
2392 .with_span_label(&span, format!("`{}` embeds itself", interface_name))
2393 .with_help("An interface cannot embed itself. Remove the self-referencing `impl`.")
2394}
2395
2396pub fn interface_embedding_cycle(cycle: &[String], span: Span) -> LisetteDiagnostic {
2397 let cycle_str = cycle.join(" → ");
2398 LisetteDiagnostic::error("Recursive interface embedding")
2399 .with_infer_code("interface_cycle")
2400 .with_span_label(&span, "creates a cycle")
2401 .with_help(format!(
2402 "Interface embedding cycle detected: {}. Break the cycle by removing one of the embeddings.",
2403 cycle_str
2404 ))
2405}
2406
2407pub fn interface_method_conflict(
2408 interface_name: &str,
2409 method_name: &str,
2410 parent1: &str,
2411 parent2: &str,
2412 span: Span,
2413) -> LisetteDiagnostic {
2414 LisetteDiagnostic::error("Conflicting method signatures")
2415 .with_infer_code("interface_method_conflict")
2416 .with_span_label(&span, format!("duplicate method `{}`", method_name))
2417 .with_help(format!(
2418 "Interface `{}` inherits conflicting definitions of `{}` from `{}` and `{}`. \
2419 Rename one of the methods or remove one of the embeddings.",
2420 interface_name, method_name, parent1, parent2
2421 ))
2422}
2423
2424pub fn impl_on_foreign_type(type_name: &str, module_name: &str, span: Span) -> LisetteDiagnostic {
2425 LisetteDiagnostic::error("Cannot implement methods on foreign type")
2426 .with_infer_code("impl_on_foreign_type")
2427 .with_span_label(
2428 &span,
2429 format!("`{}` is defined in module `{}`", type_name, module_name),
2430 )
2431 .with_help(format!(
2432 "Methods can only be defined on types in the same module. \
2433 Use a standalone function instead: `fn my_method(w: {}) {{ ... }}`",
2434 type_name
2435 ))
2436}
2437
2438pub fn impl_on_type_alias(_type_name: &str, span: Span) -> LisetteDiagnostic {
2439 LisetteDiagnostic::error("Cannot implement methods on type alias")
2440 .with_infer_code("impl_on_type_alias")
2441 .with_span_label(&span, "type alias")
2442 .with_help(
2443 "A type alias cannot carry its own methods. Either add methods to the underlying \
2444 type directly or define a tuple struct instead",
2445 )
2446}
2447
2448pub fn prelude_type_shadowed(name: &str, span: Span) -> LisetteDiagnostic {
2449 LisetteDiagnostic::error("Cannot shadow prelude type")
2450 .with_infer_code("prelude_type_shadowed")
2451 .with_span_label(&span, format!("`{}` is a prelude type", name))
2452 .with_help(format!(
2453 "Choose a different name — `{}` is defined in the prelude and cannot be redefined",
2454 name
2455 ))
2456}
2457
2458pub fn prelude_function_shadowed(name: &str, span: Span) -> LisetteDiagnostic {
2459 LisetteDiagnostic::error("Cannot shadow prelude function")
2460 .with_infer_code("prelude_function_shadowed")
2461 .with_span_label(&span, format!("`{}` is a prelude function", name))
2462 .with_help(format!(
2463 "Choose a different name — `{}` is defined in the prelude and cannot be redefined",
2464 name
2465 ))
2466}
2467
2468pub fn non_pub_interface_with_pub_impl(
2469 interface_name: &str,
2470 struct_name: &str,
2471 span: Span,
2472) -> LisetteDiagnostic {
2473 LisetteDiagnostic::error("Visibility mismatch in interface implementation")
2474 .with_infer_code("non_pub_interface_pub_impl")
2475 .with_span_label(
2476 &span,
2477 "has public methods, but interface is private",
2478 )
2479 .with_help(format!(
2480 "`{}` implements public methods for the private interface `{}`. Either make the interface `pub`, or remove `pub` from the struct methods",
2481 struct_name, interface_name
2482 ))
2483}
2484
2485pub fn missing_constraint_on_generic_return_type(
2486 fn_name: &str,
2487 param_name: &str,
2488 constraint: &Type,
2489 span: Span,
2490) -> LisetteDiagnostic {
2491 LisetteDiagnostic::error("Missing constraint on generic return type")
2492 .with_infer_code("missing_constraint_on_return_type")
2493 .with_span_label(
2494 &span,
2495 format!("expected `{}` to be constrained", param_name),
2496 )
2497 .with_help(
2498 format!(
2499 "Constrain the generic: `{}<{}: {}>()`",
2500 fn_name, param_name, constraint
2501 ) + ". The function returns a type whose methods depend on the constraint",
2502 )
2503}
2504
2505pub fn panic_in_expression_position(span: Span) -> LisetteDiagnostic {
2506 LisetteDiagnostic::error("`panic()` used as a value")
2507 .with_infer_code("panic_in_expression_position")
2508 .with_span_label(&span, "disallowed")
2509 .with_help("`panic()` can only be used in statement position, not assigned to a variable or passed as an argument")
2510}
2511
2512pub fn specialized_impl_cannot_satisfy_interface(
2513 struct_name: &str,
2514 interface_name: &str,
2515 method_name: &str,
2516 generics: &[String],
2517 span: Span,
2518) -> LisetteDiagnostic {
2519 let params = generics.join(", ");
2520 LisetteDiagnostic::error("Specialized impl cannot satisfy interface")
2521 .with_infer_code("specialized_impl_cannot_satisfy_interface")
2522 .with_span_label(
2523 &span,
2524 format!(
2525 "`{}` on `{}` cannot satisfy `{}`",
2526 method_name, struct_name, interface_name
2527 ),
2528 )
2529 .with_help(format!(
2530 "Methods in specialized `impl` blocks cannot satisfy interfaces. \
2531 Move `{}` to a generic `impl` block: `impl<{params}> {}<{params}> {{}}`",
2532 method_name, struct_name
2533 ))
2534}
2535
2536pub enum NativeMethodForm {
2537 Instance,
2538 Static,
2539}
2540
2541pub fn native_method_value(method: &str, form: NativeMethodForm, span: Span) -> LisetteDiagnostic {
2542 let help = match form {
2543 NativeMethodForm::Instance => format!(
2544 "Call it directly: `receiver.{method}()`. To use it as a value, wrap in a closure: `|args| receiver.{method}(args)`"
2545 ),
2546 NativeMethodForm::Static => {
2547 format!("Use a closure instead: `|args| receiver.{method}(args)`")
2548 }
2549 };
2550 LisetteDiagnostic::error("Cannot use native method as a value")
2551 .with_infer_code("native_method_value")
2552 .with_span_label(&span, "native methods must be called directly")
2553 .with_help(help)
2554}
2555
2556pub fn native_constructor_value(name: &str, span: Span) -> LisetteDiagnostic {
2557 LisetteDiagnostic::error("Cannot use native constructor as a value")
2558 .with_infer_code("native_constructor_value")
2559 .with_span_label(&span, "native constructors must be called directly")
2560 .with_help(format!("Use a closure instead: `|args| {name}(args)`"))
2561}
2562
2563pub fn enum_variant_constructor_value(name: &str, span: Span) -> LisetteDiagnostic {
2564 LisetteDiagnostic::error("Cannot use enum variant as value")
2565 .with_infer_code("enum_variant_constructor_value")
2566 .with_span_label(&span, "used as value")
2567 .with_help(format!(
2568 "Instantiate the variant: `{name} {{ field: value, ... }}`"
2569 ))
2570}
2571
2572pub fn record_struct_value(name: &str, span: Span) -> LisetteDiagnostic {
2573 LisetteDiagnostic::error("Cannot use struct type as a value")
2574 .with_infer_code("record_struct_value")
2575 .with_span_label(&span, "struct types cannot be used as expressions")
2576 .with_help(format!(
2577 "Use a struct literal instead: `{name} {{ field: value, ... }}`"
2578 ))
2579}
2580
2581pub fn private_method_expression(span: Span) -> LisetteDiagnostic {
2582 LisetteDiagnostic::error("Cannot use private method as a value")
2583 .with_infer_code("private_method_expression")
2584 .with_span_label(&span, "private methods must be called directly")
2585 .with_help("Use a closure instead: `|self_, args| self_.method(args)`")
2586}
2587
2588pub fn float_literal_int_cast(span: Span) -> LisetteDiagnostic {
2589 LisetteDiagnostic::error("Cannot cast float literal to integer directly")
2590 .with_infer_code("float_literal_int_cast")
2591 .with_span_label(&span, "unsupported cast")
2592 .with_help("Bind to a variable first: `let f = 1.0; f as int`")
2593}
2594
2595pub fn const_requires_simple_expression(span: Span) -> LisetteDiagnostic {
2596 LisetteDiagnostic::error("`const` requires a simple expression")
2597 .with_infer_code("const_requires_simple_expression")
2598 .with_span_label(&span, "expected literal or simple expression")
2599 .with_help("Use `let` for computed values")
2600}
2601
2602pub fn complex_sub_expression(span: Span) -> LisetteDiagnostic {
2603 LisetteDiagnostic::error("Complex expression used as sub-expression")
2604 .with_infer_code("complex_sub_expression")
2605 .with_span_label(&span, "expected simple expression")
2606 .with_help("Hoist to a `let` binding")
2607}
2608
2609pub fn reference_through_newtype(span: Span) -> LisetteDiagnostic {
2610 LisetteDiagnostic::error("Cannot take reference through newtype boundary")
2611 .with_infer_code("reference_through_newtype")
2612 .with_span_label(&span, "newtype `.0` inside `&`")
2613 .with_help("Bind the inner value first: `let inner = val.0; &inner`")
2614}
2615
2616pub fn immutable_argument_to_mut_param(
2617 var_name: &str,
2618 callee_label: &str,
2619 span: Span,
2620) -> LisetteDiagnostic {
2621 let help = format!(
2622 "{callee_label} may mutate `{var_name}`, so declare it mutable using `let mut {var_name} = ...`."
2623 );
2624 LisetteDiagnostic::error("Immutable argument passed to `mut` parameter")
2625 .with_infer_code("immutable_arg_to_mut_param")
2626 .with_span_label(&span, "expected mutable, found immutable")
2627 .with_help(help)
2628}
2629
2630pub fn failure_propagation_in_expression(span: Span) -> LisetteDiagnostic {
2631 LisetteDiagnostic::error("Failure propagation in expression position")
2632 .with_infer_code("failure_propagation_in_expression")
2633 .with_span_label(
2634 &span,
2635 "`Err(..)?` and `None?` always early-return and never produce a value",
2636 )
2637 .with_help("Use `return Err(..)` or `return None` instead")
2638}
2639
2640pub fn never_call_in_expression(span: Span) -> LisetteDiagnostic {
2641 LisetteDiagnostic::error("Never-returning call in expression position")
2642 .with_infer_code("never_call_in_expression")
2643 .with_span_label(&span, "`panic` never returns and cannot produce a value")
2644 .with_help("Use `panic(...)` as a statement instead")
2645}
2646
2647pub fn invalid_main_signature(span: Span) -> LisetteDiagnostic {
2648 LisetteDiagnostic::error("Invalid main signature")
2649 .with_infer_code("invalid_main_signature")
2650 .with_span_label(&span, "`main` must have no parameters and no return type")
2651 .with_help(
2652 "Use `fn main() { ... }`. To handle errors, use `match` or `if let` \
2653 inside main instead of returning `Result`.",
2654 )
2655}
2656
2657pub fn parenthesized_qualifier(path: &str, member: &str, span: Span) -> LisetteDiagnostic {
2658 LisetteDiagnostic::error("Unnecessary parentheses around qualifier")
2659 .with_infer_code("parenthesized_qualifier")
2660 .with_span_label(&span, "parenthesized qualifier")
2661 .with_help(format!("Remove the parentheses: `{}.{}`", path, member))
2662}
2663
2664pub fn type_alias_as_qualifier(
2665 alias: &str,
2666 underlying: &str,
2667 member: &str,
2668 span: Span,
2669) -> LisetteDiagnostic {
2670 LisetteDiagnostic::error("Cannot use generic type alias as qualifier")
2671 .with_infer_code("type_alias_as_qualifier")
2672 .with_span_label(
2673 &span,
2674 format!("`{}` aliases `{}`", alias, underlying),
2675 )
2676 .with_help(format!(
2677 "Aliases for types with generic parameters are not supported as qualifiers. Use the original type directly: `{}.{}`",
2678 underlying, member
2679 ))
2680}
2681
2682pub fn ref_qualifier(member: &str, span: Span) -> LisetteDiagnostic {
2683 LisetteDiagnostic::error("Invalid `Ref` construction")
2684 .with_infer_code("ref_qualifier")
2685 .with_span_label(&span, format!("`Ref` has no `{}`", member))
2686 .with_help("To take a reference, use `&value`")
2687}
2688
2689pub fn control_flow_in_expression(keyword: &str, span: Span) -> LisetteDiagnostic {
2690 LisetteDiagnostic::error(format!(
2691 "`{}` cannot be used in expression position",
2692 keyword
2693 ))
2694 .with_infer_code("control_flow_in_expression")
2695 .with_span_label(
2696 &span,
2697 format!("`{}` is a statement and cannot produce a value", keyword),
2698 )
2699 .with_help(format!(
2700 "Use `{}` as a standalone statement instead",
2701 keyword
2702 ))
2703}
2704
2705pub fn spread_on_non_variadic(span: Span) -> LisetteDiagnostic {
2706 LisetteDiagnostic::error("Invalid spread argument")
2707 .with_infer_code("spread_on_non_variadic")
2708 .with_span_label(&span, "this function does not accept variadic arguments")
2709 .with_help("Only functions with a `VarArgs<T>` parameter accept a `xs...` spread")
2710}
2711
2712pub fn range_to_for_variadic(span: Span, var_name: Option<&str>) -> LisetteDiagnostic {
2713 let suggestion = match var_name {
2714 Some(name) => format!("Use postfix: `{}...`", name),
2715 None => "Use postfix `...` for variadic spread".to_string(),
2716 };
2717 LisetteDiagnostic::error("Invalid range argument")
2718 .with_infer_code("range_to_for_variadic")
2719 .with_span_label(&span, "this is a range, not a spread")
2720 .with_help(suggestion)
2721}
2722
2723pub fn reference_aliases_sibling(ref_span: Span, var_name: &str) -> LisetteDiagnostic {
2724 LisetteDiagnostic::error("Reference aliases sibling expression")
2725 .with_infer_code("reference_aliases_sibling")
2726 .with_span_label(
2727 &ref_span,
2728 format!(
2729 "`&{}` could mutate `{}` used by a sibling",
2730 var_name, var_name
2731 ),
2732 )
2733 .with_help(format!(
2734 "Bind `{}` to a `let` before this expression to make evaluation order explicit",
2735 var_name
2736 ))
2737}