1use ahash::{AHashMap, AHashSet};
2use alef_core::ir::{ApiSurface, EnumDef, FieldDef, PrimitiveType, TypeDef, TypeRef};
3
4use crate::conversions::ConversionConfig;
5
6pub fn input_type_names(surface: &ApiSurface) -> AHashSet<String> {
19 let mut names = AHashSet::new();
20
21 for func in &surface.functions {
23 for param in &func.params {
24 collect_named_types(¶m.ty, &mut names);
25 }
26 }
27 for typ in surface.types.iter().filter(|typ| !typ.is_trait) {
29 for method in &typ.methods {
30 for param in &method.params {
31 collect_named_types(¶m.ty, &mut names);
32 }
33 }
34 }
35 for func in &surface.functions {
39 collect_named_types(&func.return_type, &mut names);
40 }
41 for typ in surface.types.iter().filter(|typ| !typ.is_trait) {
43 for method in &typ.methods {
44 collect_named_types(&method.return_type, &mut names);
45 }
46 }
47 for typ in surface.types.iter().filter(|typ| !typ.is_trait) {
52 if !typ.is_opaque && !typ.methods.is_empty() {
53 for field in &typ.fields {
54 if !field.sanitized {
55 collect_named_types(&field.ty, &mut names);
56 }
57 }
58 }
59 }
60
61 for e in &surface.enums {
64 if names.contains(&e.name) {
65 for variant in &e.variants {
66 for field in &variant.fields {
67 collect_named_types(&field.ty, &mut names);
68 }
69 }
70 }
71 }
72
73 let mut changed = true;
75 while changed {
76 changed = false;
77 let snapshot: Vec<String> = names.iter().cloned().collect();
78 for name in &snapshot {
79 if let Some(typ) = surface.types.iter().find(|t| t.name == *name) {
80 for field in &typ.fields {
81 let mut field_names = AHashSet::new();
82 collect_named_types(&field.ty, &mut field_names);
83 for n in field_names {
84 if names.insert(n) {
85 changed = true;
86 }
87 }
88 }
89 }
90 if let Some(e) = surface.enums.iter().find(|e| e.name == *name) {
92 for variant in &e.variants {
93 for field in &variant.fields {
94 let mut field_names = AHashSet::new();
95 collect_named_types(&field.ty, &mut field_names);
96 for n in field_names {
97 if names.insert(n) {
98 changed = true;
99 }
100 }
101 }
102 }
103 }
104 }
105 }
106
107 names
108}
109
110fn collect_named_types(ty: &TypeRef, out: &mut AHashSet<String>) {
112 match ty {
113 TypeRef::Named(name) => {
114 out.insert(name.clone());
115 }
116 TypeRef::Optional(inner) | TypeRef::Vec(inner) => collect_named_types(inner, out),
117 TypeRef::Map(k, v) => {
118 collect_named_types(k, out);
119 collect_named_types(v, out);
120 }
121 _ => {}
122 }
123}
124
125pub fn field_references_excluded_type(ty: &TypeRef, exclude_types: &[String]) -> bool {
129 match ty {
130 TypeRef::Named(name) => exclude_types.iter().any(|e| e == name),
131 TypeRef::Optional(inner) | TypeRef::Vec(inner) => field_references_excluded_type(inner, exclude_types),
132 TypeRef::Map(k, v) => {
133 field_references_excluded_type(k, exclude_types) || field_references_excluded_type(v, exclude_types)
134 }
135 _ => false,
136 }
137}
138
139pub(crate) fn needs_i64_cast(p: &PrimitiveType) -> bool {
141 matches!(p, PrimitiveType::U64 | PrimitiveType::Usize | PrimitiveType::Isize)
142}
143
144pub(crate) fn core_prim_str(p: &PrimitiveType) -> &'static str {
146 match p {
147 PrimitiveType::U64 => "u64",
148 PrimitiveType::Usize => "usize",
149 PrimitiveType::Isize => "isize",
150 PrimitiveType::F32 => "f32",
151 PrimitiveType::Bool => "bool",
152 PrimitiveType::U8 => "u8",
153 PrimitiveType::U16 => "u16",
154 PrimitiveType::U32 => "u32",
155 PrimitiveType::I8 => "i8",
156 PrimitiveType::I16 => "i16",
157 PrimitiveType::I32 => "i32",
158 PrimitiveType::I64 => "i64",
159 PrimitiveType::F64 => "f64",
160 }
161}
162
163pub(crate) fn binding_prim_str(p: &PrimitiveType) -> &'static str {
165 match p {
166 PrimitiveType::U64 | PrimitiveType::Usize | PrimitiveType::Isize => "i64",
167 PrimitiveType::F32 => "f64",
168 PrimitiveType::Bool => "bool",
169 PrimitiveType::U8 | PrimitiveType::U16 | PrimitiveType::U32 => "i32",
170 PrimitiveType::I8 | PrimitiveType::I16 | PrimitiveType::I32 => "i32",
171 PrimitiveType::I64 => "i64",
172 PrimitiveType::F64 => "f64",
173 }
174}
175
176pub fn core_to_binding_convertible_types(surface: &ApiSurface) -> AHashSet<String> {
180 let convertible_enums: AHashSet<&str> = surface
181 .enums
182 .iter()
183 .filter(|e| can_generate_enum_conversion_from_core(e))
184 .map(|e| e.name.as_str())
185 .collect();
186
187 let opaque_type_names: AHashSet<&str> = surface
188 .types
189 .iter()
190 .filter(|t| t.is_opaque)
191 .map(|t| t.name.as_str())
192 .collect();
193
194 let data_enum_names: AHashSet<&str> = surface
199 .enums
200 .iter()
201 .filter(|e| e.variants.iter().any(|v| !v.fields.is_empty()))
202 .map(|e| e.name.as_str())
203 .collect();
204
205 let (enum_paths, type_paths) = build_rust_path_maps(surface);
207
208 let mut convertible: AHashSet<String> = surface
210 .types
211 .iter()
212 .filter(|t| !t.is_opaque)
213 .map(|t| t.name.clone())
214 .collect();
215
216 let mut changed = true;
217 while changed {
218 changed = false;
219 let snapshot: Vec<String> = convertible.iter().cloned().collect();
220 let mut known: AHashSet<&str> = convertible.iter().map(|s| s.as_str()).collect();
221 known.extend(&opaque_type_names);
222 known.extend(&data_enum_names);
223 let mut to_remove = Vec::new();
224 for type_name in &snapshot {
225 if let Some(typ) = surface.types.iter().find(|t| t.name == *type_name) {
226 let ok = typ.fields.iter().all(|f| {
227 if f.sanitized {
228 true
229 } else if field_has_path_mismatch(f, &enum_paths, &type_paths) {
230 false
231 } else {
232 is_field_convertible(&f.ty, &convertible_enums, &known)
233 }
234 });
235 if !ok {
236 to_remove.push(type_name.clone());
237 }
238 }
239 }
240 for name in to_remove {
241 if convertible.remove(&name) {
242 changed = true;
243 }
244 }
245 }
246 convertible
247}
248
249pub fn convertible_types(surface: &ApiSurface) -> AHashSet<String> {
254 let convertible_enums: AHashSet<&str> = surface
256 .enums
257 .iter()
258 .filter(|e| can_generate_enum_conversion(e))
259 .map(|e| e.name.as_str())
260 .collect();
261
262 let _all_type_names: AHashSet<&str> = surface.types.iter().map(|t| t.name.as_str()).collect();
265
266 let default_type_names: AHashSet<&str> = surface
269 .types
270 .iter()
271 .filter(|t| t.has_default)
272 .map(|t| t.name.as_str())
273 .collect();
274
275 let mut convertible: AHashSet<String> = surface
279 .types
280 .iter()
281 .filter(|t| !t.is_opaque)
282 .map(|t| t.name.clone())
283 .collect();
284
285 let opaque_type_names: AHashSet<&str> = surface
288 .types
289 .iter()
290 .filter(|t| t.is_opaque)
291 .map(|t| t.name.as_str())
292 .collect();
293
294 let data_enum_names: AHashSet<&str> = surface
297 .enums
298 .iter()
299 .filter(|e| e.variants.iter().any(|v| !v.fields.is_empty()))
300 .map(|e| e.name.as_str())
301 .collect();
302
303 let (enum_paths, type_paths) = build_rust_path_maps(surface);
305
306 let mut changed = true;
311 while changed {
312 changed = false;
313 let snapshot: Vec<String> = convertible.iter().cloned().collect();
314 let mut known: AHashSet<&str> = convertible.iter().map(|s| s.as_str()).collect();
315 known.extend(&opaque_type_names);
316 known.extend(&data_enum_names);
317 let mut to_remove = Vec::new();
318 for type_name in &snapshot {
319 if let Some(typ) = surface.types.iter().find(|t| t.name == *type_name) {
320 let ok = typ.fields.iter().all(|f| {
321 if f.sanitized {
322 sanitized_field_has_default(&f.ty, &default_type_names)
323 } else if field_has_path_mismatch(f, &enum_paths, &type_paths) {
324 false
325 } else {
326 is_field_convertible(&f.ty, &convertible_enums, &known)
327 }
328 });
329 if !ok {
330 to_remove.push(type_name.clone());
331 }
332 }
333 }
334 for name in to_remove {
335 if convertible.remove(&name) {
336 changed = true;
337 }
338 }
339 }
340 convertible
341}
342
343fn sanitized_field_has_default(ty: &TypeRef, default_types: &AHashSet<&str>) -> bool {
348 match ty {
349 TypeRef::Primitive(_)
350 | TypeRef::String
351 | TypeRef::Char
352 | TypeRef::Bytes
353 | TypeRef::Path
354 | TypeRef::Unit
355 | TypeRef::Duration
356 | TypeRef::Json => true,
357 TypeRef::Optional(_) => true,
359 TypeRef::Vec(_) => true,
361 TypeRef::Map(_, _) => true,
363 TypeRef::Named(name) => {
364 if is_tuple_type_name(name) {
365 true
367 } else {
368 default_types.contains(name.as_str())
370 }
371 }
372 }
373}
374
375pub fn can_generate_conversion(typ: &TypeDef, convertible: &AHashSet<String>) -> bool {
377 convertible.contains(&typ.name)
378}
379
380pub(crate) fn is_field_convertible(
381 ty: &TypeRef,
382 convertible_enums: &AHashSet<&str>,
383 known_types: &AHashSet<&str>,
384) -> bool {
385 match ty {
386 TypeRef::Primitive(_)
387 | TypeRef::String
388 | TypeRef::Char
389 | TypeRef::Bytes
390 | TypeRef::Path
391 | TypeRef::Unit
392 | TypeRef::Duration => true,
393 TypeRef::Json => true,
394 TypeRef::Optional(inner) | TypeRef::Vec(inner) => is_field_convertible(inner, convertible_enums, known_types),
395 TypeRef::Map(k, v) => {
396 is_field_convertible(k, convertible_enums, known_types)
397 && is_field_convertible(v, convertible_enums, known_types)
398 }
399 TypeRef::Named(name) if is_tuple_type_name(name) => true,
401 TypeRef::Named(name) => convertible_enums.contains(name.as_str()) || known_types.contains(name.as_str()),
403 }
404}
405
406fn field_has_path_mismatch(
412 field: &FieldDef,
413 enum_rust_paths: &AHashMap<&str, &str>,
414 type_rust_paths: &AHashMap<&str, &str>,
415) -> bool {
416 let name = match &field.ty {
417 TypeRef::Named(n) => n.as_str(),
418 TypeRef::Optional(inner) | TypeRef::Vec(inner) => match inner.as_ref() {
419 TypeRef::Named(n) => n.as_str(),
420 _ => return false,
421 },
422 _ => return false,
423 };
424
425 if let Some(field_path) = &field.type_rust_path {
426 if let Some(enum_path) = enum_rust_paths.get(name) {
427 if !paths_compatible(field_path, enum_path) {
428 return true;
429 }
430 }
431 if let Some(type_path) = type_rust_paths.get(name) {
432 if !paths_compatible(field_path, type_path) {
433 return true;
434 }
435 }
436 }
437 false
438}
439
440fn paths_compatible(a: &str, b: &str) -> bool {
445 if a == b {
446 return true;
447 }
448 let a_norm = a.replace('-', "_");
451 let b_norm = b.replace('-', "_");
452 if a_norm == b_norm {
453 return true;
454 }
455 if a_norm.ends_with(&b_norm) || b_norm.ends_with(&a_norm) {
457 return true;
458 }
459 let a_root = a_norm.split("::").next().unwrap_or("");
461 let b_root = b_norm.split("::").next().unwrap_or("");
462 let a_name = a_norm.rsplit("::").next().unwrap_or("");
463 let b_name = b_norm.rsplit("::").next().unwrap_or("");
464 a_root == b_root && a_name == b_name
465}
466
467fn build_rust_path_maps(surface: &ApiSurface) -> (AHashMap<&str, &str>, AHashMap<&str, &str>) {
469 let enum_paths: AHashMap<&str, &str> = surface
470 .enums
471 .iter()
472 .map(|e| (e.name.as_str(), e.rust_path.as_str()))
473 .collect();
474 let type_paths: AHashMap<&str, &str> = surface
475 .types
476 .iter()
477 .map(|t| (t.name.as_str(), t.rust_path.as_str()))
478 .collect();
479 (enum_paths, type_paths)
480}
481
482pub fn can_generate_enum_conversion(enum_def: &EnumDef) -> bool {
486 !enum_def.variants.is_empty()
487}
488
489pub fn can_generate_enum_conversion_from_core(enum_def: &EnumDef) -> bool {
492 !enum_def.variants.is_empty()
494}
495
496pub fn is_tuple_variant(fields: &[FieldDef]) -> bool {
498 !fields.is_empty()
499 && fields[0]
500 .name
501 .strip_prefix('_')
502 .is_some_and(|rest: &str| rest.chars().all(|c: char| c.is_ascii_digit()))
503}
504
505pub fn is_newtype(typ: &TypeDef) -> bool {
507 typ.fields.len() == 1 && typ.fields[0].name == "_0"
508}
509
510pub(crate) fn is_tuple_type_name(name: &str) -> bool {
513 name.starts_with('(')
514}
515
516pub fn core_type_path(typ: &TypeDef, core_import: &str) -> String {
522 let path = typ.rust_path.replace('-', "_");
527 if path.contains("::") {
528 path
529 } else {
530 format!("{core_import}::{}", typ.name)
531 }
532}
533
534pub fn has_sanitized_fields(typ: &TypeDef) -> bool {
536 typ.fields.iter().any(|f| f.sanitized)
537}
538
539pub fn core_enum_path(enum_def: &EnumDef, core_import: &str) -> String {
541 let path = enum_def.rust_path.replace('-', "_");
542 if path.starts_with(core_import) || path.contains("::") {
543 path
545 } else {
546 format!("{core_import}::{}", enum_def.name)
548 }
549}
550
551pub fn build_type_path_map(surface: &ApiSurface, core_import: &str) -> AHashMap<String, String> {
556 let mut map = AHashMap::new();
557 for typ in surface.types.iter().filter(|typ| !typ.is_trait) {
558 let path = typ.rust_path.replace('-', "_");
559 let resolved = if path.starts_with(core_import) {
560 path
561 } else {
562 format!("{core_import}::{}", typ.name)
563 };
564 map.insert(typ.name.clone(), resolved);
565 }
566 for en in &surface.enums {
567 let path = en.rust_path.replace('-', "_");
568 let resolved = if path.starts_with(core_import) {
569 path
570 } else {
571 format!("{core_import}::{}", en.name)
572 };
573 map.insert(en.name.clone(), resolved);
574 }
575 map
576}
577
578pub fn resolve_named_path(name: &str, core_import: &str, path_map: &AHashMap<String, String>) -> String {
583 if let Some(path) = path_map.get(name) {
584 path.clone()
585 } else {
586 format!("{core_import}::{name}")
587 }
588}
589
590pub fn binding_to_core_match_arm(binding_prefix: &str, variant_name: &str, fields: &[FieldDef]) -> String {
594 binding_to_core_match_arm_ext(binding_prefix, variant_name, fields, false)
595}
596
597pub fn binding_to_core_match_arm_ext_cfg(
601 binding_prefix: &str,
602 variant_name: &str,
603 fields: &[FieldDef],
604 binding_has_data: bool,
605 config: &ConversionConfig,
606) -> String {
607 use super::binding_to_core::field_conversion_to_core_cfg;
608
609 if fields.is_empty() {
610 format!("{binding_prefix}::{variant_name} => Self::{variant_name},")
611 } else if !binding_has_data {
612 if is_tuple_variant(fields) {
614 let defaults: Vec<&str> = fields.iter().map(|_| "Default::default()").collect();
615 format!(
616 "{binding_prefix}::{variant_name} => Self::{variant_name}({}),",
617 defaults.join(", ")
618 )
619 } else {
620 let defaults: Vec<String> = fields
621 .iter()
622 .map(|f| format!("{}: Default::default()", f.name))
623 .collect();
624 format!(
625 "{binding_prefix}::{variant_name} => Self::{variant_name} {{ {} }},",
626 defaults.join(", ")
627 )
628 }
629 } else if is_tuple_variant(fields) {
630 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
631 let binding_pattern = field_names.join(", ");
632 let core_args: Vec<String> = fields
633 .iter()
634 .map(|f| {
635 let conv = field_conversion_to_core_cfg(&f.name, &f.ty, f.optional, config);
639 if let Some(expr) = conv.strip_prefix(&format!("{}: ", f.name)) {
641 let expr = expr.replace(&format!("val.{}", f.name), &f.name);
642 expr.to_string()
643 } else {
644 conv
645 }
646 })
647 .collect();
648 format!(
649 "{binding_prefix}::{variant_name} {{ {binding_pattern} }} => Self::{variant_name}({}),",
650 core_args.join(", ")
651 )
652 } else {
653 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
654 let pattern = field_names.join(", ");
655 let core_fields: Vec<String> = fields
656 .iter()
657 .map(|f| {
658 let conv = field_conversion_to_core_cfg(&f.name, &f.ty, f.optional, config);
662 if let Some(expr) = conv.strip_prefix(&format!("{}: ", f.name)) {
664 let expr = expr.replace(&format!("val.{}", f.name), &f.name);
665 format!("{}: {}", f.name, expr)
666 } else {
667 conv
668 }
669 })
670 .collect();
671 format!(
672 "{binding_prefix}::{variant_name} {{ {pattern} }} => Self::{variant_name} {{ {} }},",
673 core_fields.join(", ")
674 )
675 }
676}
677
678pub fn binding_to_core_match_arm_ext(
679 binding_prefix: &str,
680 variant_name: &str,
681 fields: &[FieldDef],
682 binding_has_data: bool,
683) -> String {
684 if fields.is_empty() {
685 format!("{binding_prefix}::{variant_name} => Self::{variant_name},")
686 } else if !binding_has_data {
687 if is_tuple_variant(fields) {
689 let defaults: Vec<&str> = fields.iter().map(|_| "Default::default()").collect();
690 format!(
691 "{binding_prefix}::{variant_name} => Self::{variant_name}({}),",
692 defaults.join(", ")
693 )
694 } else {
695 let defaults: Vec<String> = fields
696 .iter()
697 .map(|f| format!("{}: Default::default()", f.name))
698 .collect();
699 format!(
700 "{binding_prefix}::{variant_name} => Self::{variant_name} {{ {} }},",
701 defaults.join(", ")
702 )
703 }
704 } else if is_tuple_variant(fields) {
705 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
707 let binding_pattern = field_names.join(", ");
708 let core_args: Vec<String> = fields
710 .iter()
711 .map(|f| {
712 let name = &f.name;
713 let expr = if matches!(&f.ty, TypeRef::Named(_)) {
714 format!("{name}.into()")
715 } else if f.sanitized {
716 format!("serde_json::from_str(&{name}).unwrap_or_default()")
717 } else {
718 name.clone()
719 };
720 if f.is_boxed { format!("Box::new({expr})") } else { expr }
721 })
722 .collect();
723 format!(
724 "{binding_prefix}::{variant_name} {{ {binding_pattern} }} => Self::{variant_name}({}),",
725 core_args.join(", ")
726 )
727 } else {
728 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
730 let pattern = field_names.join(", ");
731 let core_fields: Vec<String> = fields
732 .iter()
733 .map(|f| {
734 if matches!(&f.ty, TypeRef::Named(_)) {
735 format!("{}: {}.into()", f.name, f.name)
736 } else if f.sanitized {
737 format!("{}: serde_json::from_str(&{}).unwrap_or_default()", f.name, f.name)
741 } else {
742 format!("{0}: {0}", f.name)
743 }
744 })
745 .collect();
746 format!(
747 "{binding_prefix}::{variant_name} {{ {pattern} }} => Self::{variant_name} {{ {} }},",
748 core_fields.join(", ")
749 )
750 }
751}
752
753pub fn core_to_binding_match_arm(core_prefix: &str, variant_name: &str, fields: &[FieldDef]) -> String {
757 core_to_binding_match_arm_ext(core_prefix, variant_name, fields, false)
758}
759
760pub fn core_to_binding_match_arm_ext_cfg(
764 core_prefix: &str,
765 variant_name: &str,
766 fields: &[FieldDef],
767 binding_has_data: bool,
768 config: &ConversionConfig,
769) -> String {
770 use super::core_to_binding::field_conversion_from_core_cfg;
771 use ahash::AHashSet;
772
773 if fields.is_empty() {
774 format!("{core_prefix}::{variant_name} => Self::{variant_name},")
775 } else if !binding_has_data {
776 if is_tuple_variant(fields) {
778 format!("{core_prefix}::{variant_name}(..) => Self::{variant_name},")
779 } else {
780 format!("{core_prefix}::{variant_name} {{ .. }} => Self::{variant_name},")
781 }
782 } else if is_tuple_variant(fields) {
783 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
784 let core_pattern = field_names.join(", ");
785 let binding_fields: Vec<String> = fields
786 .iter()
787 .map(|f| {
788 let conv =
792 field_conversion_from_core_cfg(&f.name, &f.ty, f.optional, f.sanitized, &AHashSet::new(), config);
793 if let Some(expr) = conv.strip_prefix(&format!("{}: ", f.name)) {
795 let mut expr = expr.replace(&format!("val.{}", f.name), &f.name);
796 if f.is_boxed {
798 expr = expr.replace(&format!("{}.into()", f.name), &format!("(*{}).into()", f.name));
799 }
800 format!("{}: {}", f.name, expr)
801 } else {
802 conv
803 }
804 })
805 .collect();
806 format!(
807 "{core_prefix}::{variant_name}({core_pattern}) => Self::{variant_name} {{ {} }},",
808 binding_fields.join(", ")
809 )
810 } else {
811 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
812 let pattern = field_names.join(", ");
813 let binding_fields: Vec<String> = fields
814 .iter()
815 .map(|f| {
816 let conv =
820 field_conversion_from_core_cfg(&f.name, &f.ty, f.optional, f.sanitized, &AHashSet::new(), config);
821 if let Some(expr) = conv.strip_prefix(&format!("{}: ", f.name)) {
823 let expr = expr.replace(&format!("val.{}", f.name), &f.name);
824 format!("{}: {}", f.name, expr)
825 } else {
826 conv
827 }
828 })
829 .collect();
830 format!(
831 "{core_prefix}::{variant_name} {{ {pattern} }} => Self::{variant_name} {{ {} }},",
832 binding_fields.join(", ")
833 )
834 }
835}
836
837pub fn core_to_binding_match_arm_ext(
838 core_prefix: &str,
839 variant_name: &str,
840 fields: &[FieldDef],
841 binding_has_data: bool,
842) -> String {
843 if fields.is_empty() {
844 format!("{core_prefix}::{variant_name} => Self::{variant_name},")
845 } else if !binding_has_data {
846 if is_tuple_variant(fields) {
848 format!("{core_prefix}::{variant_name}(..) => Self::{variant_name},")
849 } else {
850 format!("{core_prefix}::{variant_name} {{ .. }} => Self::{variant_name},")
851 }
852 } else if is_tuple_variant(fields) {
853 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
855 let core_pattern = field_names.join(", ");
856 let binding_fields: Vec<String> = fields
858 .iter()
859 .map(|f| {
860 let name = &f.name;
861 let expr = if f.is_boxed && matches!(&f.ty, TypeRef::Named(_)) {
862 format!("(*{name}).into()")
863 } else if f.is_boxed {
864 format!("*{name}")
865 } else if matches!(&f.ty, TypeRef::Named(_)) {
866 format!("{name}.into()")
867 } else if f.sanitized {
868 format!("serde_json::to_string(&{name}).unwrap_or_default()")
869 } else {
870 name.clone()
871 };
872 format!("{name}: {expr}")
873 })
874 .collect();
875 format!(
876 "{core_prefix}::{variant_name}({core_pattern}) => Self::{variant_name} {{ {} }},",
877 binding_fields.join(", ")
878 )
879 } else {
880 let field_names: Vec<&str> = fields.iter().map(|f| f.name.as_str()).collect();
881 let pattern = field_names.join(", ");
882 let binding_fields: Vec<String> = fields
883 .iter()
884 .map(|f| {
885 if matches!(&f.ty, TypeRef::Named(_)) {
886 format!("{}: {}.into()", f.name, f.name)
887 } else if f.sanitized {
888 format!("{}: serde_json::to_string(&{}).unwrap_or_default()", f.name, f.name)
892 } else {
893 format!("{0}: {0}", f.name)
894 }
895 })
896 .collect();
897 format!(
898 "{core_prefix}::{variant_name} {{ {pattern} }} => Self::{variant_name} {{ {} }},",
899 binding_fields.join(", ")
900 )
901 }
902}