1use alef_core::config::{BridgeBinding, TraitBridgeConfig};
9use alef_core::ir::{FieldDef, FunctionDef, MethodDef, ParamDef, PrimitiveType, TypeDef, TypeRef};
10use heck::ToSnakeCase;
11use std::collections::HashMap;
12
13pub struct TraitBridgeSpec<'a> {
15 pub trait_def: &'a TypeDef,
17 pub bridge_config: &'a TraitBridgeConfig,
19 pub core_import: &'a str,
21 pub wrapper_prefix: &'a str,
23 pub type_paths: HashMap<String, String>,
25 pub error_type: String,
27 pub error_constructor: String,
29}
30
31impl<'a> TraitBridgeSpec<'a> {
32 pub fn error_path(&self) -> String {
39 if self.error_type.contains("::") || self.error_type.contains('<') {
40 self.error_type.clone()
41 } else {
42 format!("{}::{}", self.core_import, self.error_type)
43 }
44 }
45
46 pub fn make_error(&self, msg_expr: &str) -> String {
48 self.error_constructor.replace("{msg}", msg_expr)
49 }
50
51 pub fn wrapper_name(&self) -> String {
53 format!("{}{}Bridge", self.wrapper_prefix, self.trait_def.name)
54 }
55
56 pub fn trait_snake(&self) -> String {
58 self.trait_def.name.to_snake_case()
59 }
60
61 pub fn trait_path(&self) -> String {
63 self.trait_def.rust_path.replace('-', "_")
64 }
65
66 pub fn required_methods(&self) -> Vec<&'a MethodDef> {
68 self.trait_def.methods.iter().filter(|m| !m.has_default_impl).collect()
69 }
70
71 pub fn optional_methods(&self) -> Vec<&'a MethodDef> {
73 self.trait_def.methods.iter().filter(|m| m.has_default_impl).collect()
74 }
75}
76
77pub trait TraitBridgeGenerator {
83 fn foreign_object_type(&self) -> &str;
85
86 fn bridge_imports(&self) -> Vec<String>;
88
89 fn gen_sync_method_body(&self, method: &MethodDef, spec: &TraitBridgeSpec) -> String;
94
95 fn gen_async_method_body(&self, method: &MethodDef, spec: &TraitBridgeSpec) -> String;
99
100 fn gen_constructor(&self, spec: &TraitBridgeSpec) -> String;
105
106 fn gen_registration_fn(&self, spec: &TraitBridgeSpec) -> String;
112
113 fn gen_unregistration_fn(&self, _spec: &TraitBridgeSpec) -> String {
120 String::new()
121 }
122
123 fn gen_clear_fn(&self, _spec: &TraitBridgeSpec) -> String {
130 String::new()
131 }
132
133 fn async_trait_is_send(&self) -> bool {
138 true
139 }
140}
141
142pub fn gen_bridge_wrapper_struct(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> String {
156 let wrapper = spec.wrapper_name();
157 let foreign_type = generator.foreign_object_type();
158
159 crate::template_env::render(
160 "generators/trait_bridge/wrapper_struct.jinja",
161 minijinja::context! {
162 wrapper_prefix => spec.wrapper_prefix,
163 trait_name => &spec.trait_def.name,
164 wrapper_name => wrapper,
165 foreign_type => foreign_type,
166 },
167 )
168}
169
170fn gen_bridge_debug_impl(spec: &TraitBridgeSpec) -> String {
176 let wrapper = spec.wrapper_name();
177 crate::template_env::render(
178 "generators/trait_bridge/debug_impl.jinja",
179 minijinja::context! {
180 wrapper_name => wrapper,
181 },
182 )
183}
184
185pub fn gen_bridge_plugin_impl(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> Option<String> {
193 let super_trait_name = spec.bridge_config.super_trait.as_deref()?;
194
195 let wrapper = spec.wrapper_name();
196 let core_import = spec.core_import;
197
198 let super_trait_path = if super_trait_name.contains("::") {
200 super_trait_name.to_string()
201 } else {
202 format!("{core_import}::{super_trait_name}")
203 };
204
205 let error_path = spec.error_path();
209
210 let version_method = MethodDef {
212 name: "version".to_string(),
213 params: vec![],
214 return_type: alef_core::ir::TypeRef::String,
215 is_async: false,
216 is_static: false,
217 error_type: None,
218 doc: String::new(),
219 receiver: Some(alef_core::ir::ReceiverKind::Ref),
220 sanitized: false,
221 trait_source: None,
222 returns_ref: false,
223 returns_cow: false,
224 return_newtype_wrapper: None,
225 has_default_impl: false,
226 binding_excluded: false,
227 binding_exclusion_reason: None,
228 };
229 let version_body = generator.gen_sync_method_body(&version_method, spec);
230
231 let init_method = MethodDef {
233 name: "initialize".to_string(),
234 params: vec![],
235 return_type: alef_core::ir::TypeRef::Unit,
236 is_async: false,
237 is_static: false,
238 error_type: Some(error_path.clone()),
239 doc: String::new(),
240 receiver: Some(alef_core::ir::ReceiverKind::Ref),
241 sanitized: false,
242 trait_source: None,
243 returns_ref: false,
244 returns_cow: false,
245 return_newtype_wrapper: None,
246 has_default_impl: true,
247 binding_excluded: false,
248 binding_exclusion_reason: None,
249 };
250 let init_body = generator.gen_sync_method_body(&init_method, spec);
251
252 let shutdown_method = MethodDef {
254 name: "shutdown".to_string(),
255 params: vec![],
256 return_type: alef_core::ir::TypeRef::Unit,
257 is_async: false,
258 is_static: false,
259 error_type: Some(error_path.clone()),
260 doc: String::new(),
261 receiver: Some(alef_core::ir::ReceiverKind::Ref),
262 sanitized: false,
263 trait_source: None,
264 returns_ref: false,
265 returns_cow: false,
266 return_newtype_wrapper: None,
267 has_default_impl: true,
268 binding_excluded: false,
269 binding_exclusion_reason: None,
270 };
271 let shutdown_body = generator.gen_sync_method_body(&shutdown_method, spec);
272
273 let version_lines: Vec<&str> = version_body.lines().collect();
275 let init_lines: Vec<&str> = init_body.lines().collect();
276 let shutdown_lines: Vec<&str> = shutdown_body.lines().collect();
277
278 Some(crate::template_env::render(
279 "generators/trait_bridge/plugin_impl.jinja",
280 minijinja::context! {
281 super_trait_path => super_trait_path,
282 wrapper_name => wrapper,
283 error_path => error_path,
284 version_lines => version_lines,
285 init_lines => init_lines,
286 shutdown_lines => shutdown_lines,
287 },
288 ))
289}
290
291pub fn gen_bridge_trait_impl(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> String {
297 let wrapper = spec.wrapper_name();
298 let trait_path = spec.trait_path();
299
300 let has_async_methods = spec
303 .trait_def
304 .methods
305 .iter()
306 .any(|m| m.is_async && m.trait_source.is_none() && !m.has_default_impl);
307 let async_trait_is_send = generator.async_trait_is_send();
308
309 let own_methods: Vec<_> = spec
313 .trait_def
314 .methods
315 .iter()
316 .filter(|m| m.trait_source.is_none() && !m.has_default_impl)
317 .collect();
318
319 let mut methods_code = String::with_capacity(1024);
321 for (i, method) in own_methods.iter().enumerate() {
322 if i > 0 {
323 methods_code.push_str("\n\n");
324 }
325
326 let async_kw = if method.is_async { "async " } else { "" };
328 let receiver = match &method.receiver {
329 Some(alef_core::ir::ReceiverKind::Ref) => "&self",
330 Some(alef_core::ir::ReceiverKind::RefMut) => "&mut self",
331 Some(alef_core::ir::ReceiverKind::Owned) => "self",
332 None => "",
333 };
334
335 let params: Vec<String> = method
337 .params
338 .iter()
339 .map(|p| format!("{}: {}", p.name, format_param_type(p, &spec.type_paths)))
340 .collect();
341
342 let all_params = if receiver.is_empty() {
343 params.join(", ")
344 } else if params.is_empty() {
345 receiver.to_string()
346 } else {
347 format!("{}, {}", receiver, params.join(", "))
348 };
349
350 let error_override = method.error_type.as_ref().map(|_| spec.error_path());
355 let ret = format_return_type(
356 &method.return_type,
357 error_override.as_deref(),
358 &spec.type_paths,
359 method.returns_ref,
360 );
361
362 let raw_body = if method.is_async {
364 generator.gen_async_method_body(method, spec)
365 } else {
366 generator.gen_sync_method_body(method, spec)
367 };
368
369 let raw_body_trimmed = raw_body.trim();
379 let body_is_static_slice = raw_body_trimmed.starts_with("self.") && raw_body_trimmed.ends_with("_strs");
380 let body = if method.returns_ref
381 && matches!(&method.return_type, alef_core::ir::TypeRef::Vec(inner) if matches!(inner.as_ref(), alef_core::ir::TypeRef::String))
382 {
383 if body_is_static_slice {
384 raw_body
385 } else {
386 format!(
387 "let __types: Vec<String> = {{ {raw_body} }};\n\
388 let __strs: Vec<&'static str> = __types.into_iter()\n\
389 .map(|s| -> &'static str {{ Box::leak(s.into_boxed_str()) }})\n\
390 .collect();\n\
391 Box::leak(__strs.into_boxed_slice())"
392 )
393 }
394 } else {
395 raw_body
396 };
397
398 let indented_body = body
400 .lines()
401 .map(|line| format!(" {line}"))
402 .collect::<Vec<_>>()
403 .join("\n");
404
405 methods_code.push_str(&crate::template_env::render(
406 "generators/trait_bridge/trait_method.jinja",
407 minijinja::context! {
408 async_kw => async_kw,
409 method_name => &method.name,
410 all_params => all_params,
411 ret => ret,
412 indented_body => &indented_body,
413 },
414 ));
415 }
416
417 crate::template_env::render(
418 "generators/trait_bridge/trait_impl.jinja",
419 minijinja::context! {
420 has_async_methods => has_async_methods,
421 async_trait_is_send => async_trait_is_send,
422 trait_path => trait_path,
423 wrapper_name => wrapper,
424 methods_code => methods_code,
425 },
426 )
427}
428
429pub fn gen_bridge_registration_fn(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> Option<String> {
436 spec.bridge_config.register_fn.as_deref()?;
437 Some(generator.gen_registration_fn(spec))
438}
439
440pub fn gen_bridge_unregistration_fn(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> Option<String> {
447 spec.bridge_config.unregister_fn.as_deref()?;
448 let body = generator.gen_unregistration_fn(spec);
449 if body.is_empty() { None } else { Some(body) }
450}
451
452pub fn gen_bridge_clear_fn(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> Option<String> {
459 spec.bridge_config.clear_fn.as_deref()?;
460 let body = generator.gen_clear_fn(spec);
461 if body.is_empty() { None } else { Some(body) }
462}
463
464pub fn host_function_path(spec: &TraitBridgeSpec, fn_name: &str) -> String {
482 if let Some(getter) = spec.bridge_config.registry_getter.as_deref() {
483 let last = getter.rsplit("::").next().unwrap_or("");
484 if let Some(sub) = last.strip_prefix("get_").and_then(|s| s.strip_suffix("_registry")) {
485 let prefix_end = getter.len() - last.len();
486 let prefix = &getter[..prefix_end];
487 let prefix = prefix.trim_end_matches("registry::");
488 return format!("{prefix}{sub}::{fn_name}");
489 }
490 }
491 format!("{}::plugins::{}", spec.core_import, fn_name)
492}
493
494pub struct BridgeOutput {
497 pub imports: Vec<String>,
499 pub code: String,
501}
502
503pub fn gen_bridge_all(spec: &TraitBridgeSpec, generator: &dyn TraitBridgeGenerator) -> BridgeOutput {
509 let imports = generator.bridge_imports();
510 let mut out = String::with_capacity(4096);
511
512 out.push_str(&gen_bridge_wrapper_struct(spec, generator));
514 out.push_str("\n\n");
515
516 out.push_str(&gen_bridge_debug_impl(spec));
518 out.push_str("\n\n");
519
520 out.push_str(&generator.gen_constructor(spec));
522 out.push_str("\n\n");
523
524 if let Some(plugin_impl) = gen_bridge_plugin_impl(spec, generator) {
526 out.push_str(&plugin_impl);
527 out.push_str("\n\n");
528 }
529
530 out.push_str(&gen_bridge_trait_impl(spec, generator));
532
533 if let Some(reg_fn_code) = gen_bridge_registration_fn(spec, generator) {
535 out.push_str("\n\n");
536 out.push_str(®_fn_code);
537 }
538
539 if let Some(unreg_fn_code) = gen_bridge_unregistration_fn(spec, generator) {
542 out.push_str("\n\n");
543 out.push_str(&unreg_fn_code);
544 }
545
546 if let Some(clear_fn_code) = gen_bridge_clear_fn(spec, generator) {
549 out.push_str("\n\n");
550 out.push_str(&clear_fn_code);
551 }
552
553 BridgeOutput { imports, code: out }
554}
555
556pub fn format_type_ref(ty: &alef_core::ir::TypeRef, type_paths: &HashMap<String, String>) -> String {
565 use alef_core::ir::{PrimitiveType, TypeRef};
566 match ty {
567 TypeRef::Primitive(p) => match p {
568 PrimitiveType::Bool => "bool",
569 PrimitiveType::U8 => "u8",
570 PrimitiveType::U16 => "u16",
571 PrimitiveType::U32 => "u32",
572 PrimitiveType::U64 => "u64",
573 PrimitiveType::I8 => "i8",
574 PrimitiveType::I16 => "i16",
575 PrimitiveType::I32 => "i32",
576 PrimitiveType::I64 => "i64",
577 PrimitiveType::F32 => "f32",
578 PrimitiveType::F64 => "f64",
579 PrimitiveType::Usize => "usize",
580 PrimitiveType::Isize => "isize",
581 }
582 .to_string(),
583 TypeRef::String => "String".to_string(),
584 TypeRef::Char => "char".to_string(),
585 TypeRef::Bytes => "Vec<u8>".to_string(),
586 TypeRef::Optional(inner) => format!("Option<{}>", format_type_ref(inner, type_paths)),
587 TypeRef::Vec(inner) => format!("Vec<{}>", format_type_ref(inner, type_paths)),
588 TypeRef::Map(k, v) => format!(
589 "std::collections::HashMap<{}, {}>",
590 format_type_ref(k, type_paths),
591 format_type_ref(v, type_paths)
592 ),
593 TypeRef::Named(name) => type_paths.get(name.as_str()).cloned().unwrap_or_else(|| name.clone()),
594 TypeRef::Path => "std::path::PathBuf".to_string(),
595 TypeRef::Unit => "()".to_string(),
596 TypeRef::Json => "serde_json::Value".to_string(),
597 TypeRef::Duration => "std::time::Duration".to_string(),
598 }
599}
600
601pub fn format_return_type(
611 ty: &alef_core::ir::TypeRef,
612 error_type: Option<&str>,
613 type_paths: &HashMap<String, String>,
614 returns_ref: bool,
615) -> String {
616 let inner = if returns_ref {
617 if let alef_core::ir::TypeRef::Vec(elem) = ty {
619 let elem_str = match elem.as_ref() {
620 alef_core::ir::TypeRef::String => "&str".to_string(),
621 alef_core::ir::TypeRef::Bytes => "&[u8]".to_string(),
622 alef_core::ir::TypeRef::Named(name) => {
623 let qualified = type_paths.get(name.as_str()).cloned().unwrap_or_else(|| name.clone());
624 format!("&{qualified}")
625 }
626 other => format_type_ref(other, type_paths),
627 };
628 format!("&[{elem_str}]")
629 } else {
630 format_type_ref(ty, type_paths)
631 }
632 } else {
633 format_type_ref(ty, type_paths)
634 };
635 match error_type {
636 Some(err) => format!("std::result::Result<{inner}, {err}>"),
637 None => inner,
638 }
639}
640
641pub fn format_param_type(param: &ParamDef, type_paths: &HashMap<String, String>) -> String {
653 use alef_core::ir::TypeRef;
654 let base = if param.is_ref {
655 let mutability = if param.is_mut { "mut " } else { "" };
656 match ¶m.ty {
657 TypeRef::String => format!("&{mutability}str"),
658 TypeRef::Bytes => format!("&{mutability}[u8]"),
659 TypeRef::Path => format!("&{mutability}std::path::Path"),
660 TypeRef::Vec(inner) => format!("&{mutability}[{}]", format_type_ref(inner, type_paths)),
661 TypeRef::Named(name) => {
662 let qualified = type_paths.get(name.as_str()).cloned().unwrap_or_else(|| name.clone());
663 format!("&{mutability}{qualified}")
664 }
665 TypeRef::Optional(inner) => {
666 let inner_type_str = match inner.as_ref() {
670 TypeRef::String => format!("&{mutability}str"),
671 TypeRef::Bytes => format!("&{mutability}[u8]"),
672 TypeRef::Path => format!("&{mutability}std::path::Path"),
673 TypeRef::Vec(v) => format!("&{mutability}[{}]", format_type_ref(v, type_paths)),
674 TypeRef::Named(name) => {
675 let qualified = type_paths.get(name.as_str()).cloned().unwrap_or_else(|| name.clone());
676 format!("&{mutability}{qualified}")
677 }
678 other => format_type_ref(other, type_paths),
680 };
681 return format!("Option<{inner_type_str}>");
683 }
684 other => format_type_ref(other, type_paths),
686 }
687 } else {
688 format_type_ref(¶m.ty, type_paths)
689 };
690
691 if param.optional {
695 format!("Option<{base}>")
696 } else {
697 base
698 }
699}
700
701pub fn prim(p: &PrimitiveType) -> &'static str {
707 use PrimitiveType::*;
708 match p {
709 Bool => "bool",
710 U8 => "u8",
711 U16 => "u16",
712 U32 => "u32",
713 U64 => "u64",
714 I8 => "i8",
715 I16 => "i16",
716 I32 => "i32",
717 I64 => "i64",
718 F32 => "f32",
719 F64 => "f64",
720 Usize => "usize",
721 Isize => "isize",
722 }
723}
724
725pub fn bridge_param_type(ty: &TypeRef, ci: &str, is_ref: bool, tp: &HashMap<String, String>) -> String {
729 match ty {
730 TypeRef::Bytes if is_ref => "&[u8]".into(),
731 TypeRef::Bytes => "Vec<u8>".into(),
732 TypeRef::String if is_ref => "&str".into(),
733 TypeRef::String => "String".into(),
734 TypeRef::Path if is_ref => "&std::path::Path".into(),
735 TypeRef::Path => "std::path::PathBuf".into(),
736 TypeRef::Named(n) => {
737 let qualified = tp.get(n).cloned().unwrap_or_else(|| format!("{ci}::{n}"));
738 if is_ref { format!("&{qualified}") } else { qualified }
739 }
740 TypeRef::Vec(inner) => format!("Vec<{}>", bridge_param_type(inner, ci, false, tp)),
741 TypeRef::Optional(inner) => format!("Option<{}>", bridge_param_type(inner, ci, false, tp)),
742 TypeRef::Primitive(p) => prim(p).into(),
743 TypeRef::Unit => "()".into(),
744 TypeRef::Char => "char".into(),
745 TypeRef::Map(k, v) => format!(
746 "std::collections::HashMap<{}, {}>",
747 bridge_param_type(k, ci, false, tp),
748 bridge_param_type(v, ci, false, tp)
749 ),
750 TypeRef::Json => "serde_json::Value".into(),
751 TypeRef::Duration => "std::time::Duration".into(),
752 }
753}
754
755pub fn visitor_param_type(ty: &TypeRef, is_ref: bool, optional: bool, tp: &HashMap<String, String>) -> String {
761 if optional && matches!(ty, TypeRef::String) && is_ref {
762 return "Option<&str>".to_string();
763 }
764 if is_ref {
765 if let TypeRef::Vec(inner) = ty {
766 let inner_str = bridge_param_type(inner, "", false, tp);
767 return format!("&[{inner_str}]");
768 }
769 }
770 bridge_param_type(ty, "", is_ref, tp)
771}
772
773pub fn find_bridge_param<'a>(
780 func: &FunctionDef,
781 bridges: &'a [TraitBridgeConfig],
782) -> Option<(usize, &'a TraitBridgeConfig)> {
783 for (idx, param) in func.params.iter().enumerate() {
784 let named = match ¶m.ty {
785 TypeRef::Named(n) => Some(n.as_str()),
786 TypeRef::Optional(inner) => {
787 if let TypeRef::Named(n) = inner.as_ref() {
788 Some(n.as_str())
789 } else {
790 None
791 }
792 }
793 _ => None,
794 };
795 for bridge in bridges {
796 if bridge.bind_via != BridgeBinding::FunctionParam {
797 continue;
798 }
799 if let Some(type_name) = named {
800 if bridge.type_alias.as_deref() == Some(type_name) {
801 return Some((idx, bridge));
802 }
803 }
804 if bridge.param_name.as_deref() == Some(param.name.as_str()) {
805 return Some((idx, bridge));
806 }
807 }
808 }
809 None
810}
811
812#[derive(Debug, Clone)]
815pub struct BridgeFieldMatch<'a> {
816 pub param_index: usize,
818 pub param_name: String,
820 pub options_type: String,
822 pub param_is_optional: bool,
824 pub field_name: String,
826 pub field: &'a FieldDef,
828 pub bridge: &'a TraitBridgeConfig,
830}
831
832pub fn find_bridge_field<'a>(
843 func: &FunctionDef,
844 types: &'a [TypeDef],
845 bridges: &'a [TraitBridgeConfig],
846) -> Option<BridgeFieldMatch<'a>> {
847 fn unwrap_named(ty: &TypeRef) -> Option<(&str, bool)> {
848 match ty {
849 TypeRef::Named(n) => Some((n.as_str(), false)),
850 TypeRef::Optional(inner) => {
851 if let TypeRef::Named(n) = inner.as_ref() {
852 Some((n.as_str(), true))
853 } else {
854 None
855 }
856 }
857 _ => None,
858 }
859 }
860
861 for (idx, param) in func.params.iter().enumerate() {
862 let Some((type_name, is_optional)) = unwrap_named(¶m.ty) else {
863 continue;
864 };
865 let Some(type_def) = types.iter().find(|t| t.name == type_name) else {
866 continue;
867 };
868 for bridge in bridges {
869 if bridge.bind_via != BridgeBinding::OptionsField {
870 continue;
871 }
872 if bridge.options_type.as_deref() != Some(type_name) {
873 continue;
874 }
875 let field_name = bridge.resolved_options_field();
876 for field in &type_def.fields {
877 let matches_name = field_name.is_some_and(|n| field.name == n);
878 let matches_alias = bridge
879 .type_alias
880 .as_deref()
881 .is_some_and(|alias| field_type_matches_alias(&field.ty, alias));
882 if matches_name || matches_alias {
883 return Some(BridgeFieldMatch {
884 param_index: idx,
885 param_name: param.name.clone(),
886 options_type: type_name.to_string(),
887 param_is_optional: is_optional,
888 field_name: field.name.clone(),
889 field,
890 bridge,
891 });
892 }
893 }
894 }
895 }
896 None
897}
898
899fn field_type_matches_alias(field_ty: &TypeRef, alias: &str) -> bool {
902 match field_ty {
903 TypeRef::Named(n) => n == alias,
904 TypeRef::Optional(inner) | TypeRef::Vec(inner) => field_type_matches_alias(inner, alias),
905 _ => false,
906 }
907}
908
909pub fn to_camel_case(s: &str) -> String {
911 let mut result = String::new();
912 let mut capitalize_next = false;
913 for ch in s.chars() {
914 if ch == '_' {
915 capitalize_next = true;
916 } else if capitalize_next {
917 result.push(ch.to_ascii_uppercase());
918 capitalize_next = false;
919 } else {
920 result.push(ch);
921 }
922 }
923 result
924}
925
926#[cfg(test)]
927mod tests {
928 use super::*;
929 use alef_core::config::TraitBridgeConfig;
930 use alef_core::ir::{MethodDef, ParamDef, PrimitiveType, ReceiverKind, TypeDef, TypeRef};
931
932 fn make_trait_bridge_config(super_trait: Option<&str>, register_fn: Option<&str>) -> TraitBridgeConfig {
937 TraitBridgeConfig {
938 trait_name: "OcrBackend".to_string(),
939 super_trait: super_trait.map(str::to_string),
940 registry_getter: None,
941 register_fn: register_fn.map(str::to_string),
942 unregister_fn: None,
943 clear_fn: None,
944 type_alias: None,
945 param_name: None,
946 register_extra_args: None,
947 exclude_languages: Vec::new(),
948 ffi_skip_methods: Vec::new(),
949 bind_via: BridgeBinding::FunctionParam,
950 options_type: None,
951 options_field: None,
952 context_type: None,
953 result_type: None,
954 }
955 }
956
957 fn make_type_def(name: &str, rust_path: &str, methods: Vec<MethodDef>) -> TypeDef {
958 TypeDef {
959 name: name.to_string(),
960 rust_path: rust_path.to_string(),
961 original_rust_path: rust_path.to_string(),
962 fields: vec![],
963 methods,
964 is_opaque: true,
965 is_clone: false,
966 is_copy: false,
967 doc: String::new(),
968 cfg: None,
969 is_trait: true,
970 has_default: false,
971 has_stripped_cfg_fields: false,
972 is_return_type: false,
973 serde_rename_all: None,
974 has_serde: false,
975 super_traits: vec![],
976 binding_excluded: false,
977 binding_exclusion_reason: None,
978 }
979 }
980
981 fn make_method(
982 name: &str,
983 params: Vec<ParamDef>,
984 return_type: TypeRef,
985 is_async: bool,
986 has_default_impl: bool,
987 trait_source: Option<&str>,
988 error_type: Option<&str>,
989 ) -> MethodDef {
990 MethodDef {
991 name: name.to_string(),
992 params,
993 return_type,
994 is_async,
995 is_static: false,
996 error_type: error_type.map(str::to_string),
997 doc: String::new(),
998 receiver: Some(ReceiverKind::Ref),
999 sanitized: false,
1000 trait_source: trait_source.map(str::to_string),
1001 returns_ref: false,
1002 returns_cow: false,
1003 return_newtype_wrapper: None,
1004 has_default_impl,
1005 binding_excluded: false,
1006 binding_exclusion_reason: None,
1007 }
1008 }
1009
1010 fn make_func(name: &str, params: Vec<ParamDef>) -> FunctionDef {
1011 FunctionDef {
1012 name: name.to_string(),
1013 rust_path: format!("mylib::{name}"),
1014 original_rust_path: String::new(),
1015 params,
1016 return_type: TypeRef::Unit,
1017 is_async: false,
1018 error_type: None,
1019 doc: String::new(),
1020 cfg: None,
1021 sanitized: false,
1022 return_sanitized: false,
1023 returns_ref: false,
1024 returns_cow: false,
1025 return_newtype_wrapper: None,
1026 binding_excluded: false,
1027 binding_exclusion_reason: None,
1028 }
1029 }
1030
1031 fn make_field(name: &str, ty: TypeRef) -> FieldDef {
1032 FieldDef {
1033 name: name.to_string(),
1034 ty,
1035 optional: false,
1036 default: None,
1037 doc: String::new(),
1038 sanitized: false,
1039 is_boxed: false,
1040 type_rust_path: None,
1041 cfg: None,
1042 typed_default: None,
1043 core_wrapper: Default::default(),
1044 vec_inner_core_wrapper: Default::default(),
1045 newtype_wrapper: None,
1046 serde_rename: None,
1047 serde_flatten: false,
1048 binding_excluded: false,
1049 binding_exclusion_reason: None,
1050 }
1051 }
1052
1053 fn make_param(name: &str, ty: TypeRef, is_ref: bool) -> ParamDef {
1054 ParamDef {
1055 name: name.to_string(),
1056 ty,
1057 optional: false,
1058 default: None,
1059 sanitized: false,
1060 typed_default: None,
1061 is_ref,
1062 is_mut: false,
1063 newtype_wrapper: None,
1064 original_type: None,
1065 }
1066 }
1067
1068 fn make_spec<'a>(
1069 trait_def: &'a TypeDef,
1070 bridge_config: &'a TraitBridgeConfig,
1071 wrapper_prefix: &'a str,
1072 type_paths: HashMap<String, String>,
1073 ) -> TraitBridgeSpec<'a> {
1074 TraitBridgeSpec {
1075 trait_def,
1076 bridge_config,
1077 core_import: "mylib",
1078 wrapper_prefix,
1079 type_paths,
1080 error_type: "MyError".to_string(),
1081 error_constructor: "MyError::from({msg})".to_string(),
1082 }
1083 }
1084
1085 struct MockBridgeGenerator;
1090
1091 impl TraitBridgeGenerator for MockBridgeGenerator {
1092 fn foreign_object_type(&self) -> &str {
1093 "Py<PyAny>"
1094 }
1095
1096 fn bridge_imports(&self) -> Vec<String> {
1097 vec!["pyo3::prelude::*".to_string(), "pyo3::types::PyString".to_string()]
1098 }
1099
1100 fn gen_sync_method_body(&self, method: &MethodDef, _spec: &TraitBridgeSpec) -> String {
1101 format!("// sync body for {}", method.name)
1102 }
1103
1104 fn gen_async_method_body(&self, method: &MethodDef, _spec: &TraitBridgeSpec) -> String {
1105 format!("// async body for {}", method.name)
1106 }
1107
1108 fn gen_constructor(&self, spec: &TraitBridgeSpec) -> String {
1109 format!(
1110 "impl {} {{\n pub fn new(obj: Py<PyAny>) -> Self {{ Self {{ inner: obj, cached_name: String::new() }} }}\n}}",
1111 spec.wrapper_name()
1112 )
1113 }
1114
1115 fn gen_registration_fn(&self, spec: &TraitBridgeSpec) -> String {
1116 let fn_name = spec.bridge_config.register_fn.as_deref().unwrap_or("register");
1117 format!("pub fn {fn_name}(obj: Py<PyAny>) {{ /* register */ }}")
1118 }
1119 }
1120
1121 #[test]
1126 fn test_wrapper_name() {
1127 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1128 let config = make_trait_bridge_config(None, None);
1129 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1130 assert_eq!(spec.wrapper_name(), "PyOcrBackendBridge");
1131 }
1132
1133 #[test]
1134 fn test_trait_snake() {
1135 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1136 let config = make_trait_bridge_config(None, None);
1137 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1138 assert_eq!(spec.trait_snake(), "ocr_backend");
1139 }
1140
1141 #[test]
1142 fn test_trait_path_replaces_hyphens() {
1143 let trait_def = make_type_def("OcrBackend", "my-lib::OcrBackend", vec![]);
1144 let config = make_trait_bridge_config(None, None);
1145 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1146 assert_eq!(spec.trait_path(), "my_lib::OcrBackend");
1147 }
1148
1149 #[test]
1150 fn test_required_methods_filters_no_default_impl() {
1151 let methods = vec![
1152 make_method("process", vec![], TypeRef::String, false, false, None, None),
1153 make_method("initialize", vec![], TypeRef::Unit, false, true, None, None),
1154 make_method("detect", vec![], TypeRef::String, false, false, None, None),
1155 ];
1156 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1157 let config = make_trait_bridge_config(None, None);
1158 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1159 let required = spec.required_methods();
1160 assert_eq!(required.len(), 2);
1161 assert!(required.iter().any(|m| m.name == "process"));
1162 assert!(required.iter().any(|m| m.name == "detect"));
1163 }
1164
1165 #[test]
1166 fn test_optional_methods_filters_has_default_impl() {
1167 let methods = vec![
1168 make_method("process", vec![], TypeRef::String, false, false, None, None),
1169 make_method("initialize", vec![], TypeRef::Unit, false, true, None, None),
1170 make_method("shutdown", vec![], TypeRef::Unit, false, true, None, None),
1171 ];
1172 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1173 let config = make_trait_bridge_config(None, None);
1174 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1175 let optional = spec.optional_methods();
1176 assert_eq!(optional.len(), 2);
1177 assert!(optional.iter().any(|m| m.name == "initialize"));
1178 assert!(optional.iter().any(|m| m.name == "shutdown"));
1179 }
1180
1181 #[test]
1182 fn test_error_path() {
1183 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1184 let config = make_trait_bridge_config(None, None);
1185 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1186 assert_eq!(spec.error_path(), "mylib::MyError");
1187 }
1188
1189 #[test]
1194 fn test_format_type_ref_primitives() {
1195 let paths = HashMap::new();
1196 let cases: Vec<(TypeRef, &str)> = vec![
1197 (TypeRef::Primitive(PrimitiveType::Bool), "bool"),
1198 (TypeRef::Primitive(PrimitiveType::U8), "u8"),
1199 (TypeRef::Primitive(PrimitiveType::U16), "u16"),
1200 (TypeRef::Primitive(PrimitiveType::U32), "u32"),
1201 (TypeRef::Primitive(PrimitiveType::U64), "u64"),
1202 (TypeRef::Primitive(PrimitiveType::I8), "i8"),
1203 (TypeRef::Primitive(PrimitiveType::I16), "i16"),
1204 (TypeRef::Primitive(PrimitiveType::I32), "i32"),
1205 (TypeRef::Primitive(PrimitiveType::I64), "i64"),
1206 (TypeRef::Primitive(PrimitiveType::F32), "f32"),
1207 (TypeRef::Primitive(PrimitiveType::F64), "f64"),
1208 (TypeRef::Primitive(PrimitiveType::Usize), "usize"),
1209 (TypeRef::Primitive(PrimitiveType::Isize), "isize"),
1210 ];
1211 for (ty, expected) in cases {
1212 assert_eq!(format_type_ref(&ty, &paths), expected, "mismatch for {expected}");
1213 }
1214 }
1215
1216 #[test]
1217 fn test_format_type_ref_string() {
1218 assert_eq!(format_type_ref(&TypeRef::String, &HashMap::new()), "String");
1219 }
1220
1221 #[test]
1222 fn test_format_type_ref_char() {
1223 assert_eq!(format_type_ref(&TypeRef::Char, &HashMap::new()), "char");
1224 }
1225
1226 #[test]
1227 fn test_format_type_ref_bytes() {
1228 assert_eq!(format_type_ref(&TypeRef::Bytes, &HashMap::new()), "Vec<u8>");
1229 }
1230
1231 #[test]
1232 fn test_format_type_ref_path() {
1233 assert_eq!(format_type_ref(&TypeRef::Path, &HashMap::new()), "std::path::PathBuf");
1234 }
1235
1236 #[test]
1237 fn test_format_type_ref_unit() {
1238 assert_eq!(format_type_ref(&TypeRef::Unit, &HashMap::new()), "()");
1239 }
1240
1241 #[test]
1242 fn test_format_type_ref_json() {
1243 assert_eq!(format_type_ref(&TypeRef::Json, &HashMap::new()), "serde_json::Value");
1244 }
1245
1246 #[test]
1247 fn test_format_type_ref_duration() {
1248 assert_eq!(
1249 format_type_ref(&TypeRef::Duration, &HashMap::new()),
1250 "std::time::Duration"
1251 );
1252 }
1253
1254 #[test]
1255 fn test_format_type_ref_optional() {
1256 let ty = TypeRef::Optional(Box::new(TypeRef::String));
1257 assert_eq!(format_type_ref(&ty, &HashMap::new()), "Option<String>");
1258 }
1259
1260 #[test]
1261 fn test_format_type_ref_optional_nested() {
1262 let ty = TypeRef::Optional(Box::new(TypeRef::Optional(Box::new(TypeRef::Primitive(
1263 PrimitiveType::U32,
1264 )))));
1265 assert_eq!(format_type_ref(&ty, &HashMap::new()), "Option<Option<u32>>");
1266 }
1267
1268 #[test]
1269 fn test_format_type_ref_vec() {
1270 let ty = TypeRef::Vec(Box::new(TypeRef::Primitive(PrimitiveType::U8)));
1271 assert_eq!(format_type_ref(&ty, &HashMap::new()), "Vec<u8>");
1272 }
1273
1274 #[test]
1275 fn test_format_type_ref_vec_nested() {
1276 let ty = TypeRef::Vec(Box::new(TypeRef::Vec(Box::new(TypeRef::String))));
1277 assert_eq!(format_type_ref(&ty, &HashMap::new()), "Vec<Vec<String>>");
1278 }
1279
1280 #[test]
1281 fn test_format_type_ref_map() {
1282 let ty = TypeRef::Map(
1283 Box::new(TypeRef::String),
1284 Box::new(TypeRef::Primitive(PrimitiveType::I64)),
1285 );
1286 assert_eq!(
1287 format_type_ref(&ty, &HashMap::new()),
1288 "std::collections::HashMap<String, i64>"
1289 );
1290 }
1291
1292 #[test]
1293 fn test_format_type_ref_map_nested_value() {
1294 let ty = TypeRef::Map(
1295 Box::new(TypeRef::String),
1296 Box::new(TypeRef::Vec(Box::new(TypeRef::String))),
1297 );
1298 assert_eq!(
1299 format_type_ref(&ty, &HashMap::new()),
1300 "std::collections::HashMap<String, Vec<String>>"
1301 );
1302 }
1303
1304 #[test]
1305 fn test_format_type_ref_named_without_type_paths() {
1306 let ty = TypeRef::Named("Config".to_string());
1307 assert_eq!(format_type_ref(&ty, &HashMap::new()), "Config");
1308 }
1309
1310 #[test]
1311 fn test_format_type_ref_named_with_type_paths() {
1312 let ty = TypeRef::Named("Config".to_string());
1313 let mut paths = HashMap::new();
1314 paths.insert("Config".to_string(), "mylib::Config".to_string());
1315 assert_eq!(format_type_ref(&ty, &paths), "mylib::Config");
1316 }
1317
1318 #[test]
1319 fn test_format_type_ref_named_not_in_type_paths_falls_back_to_name() {
1320 let ty = TypeRef::Named("Unknown".to_string());
1321 let mut paths = HashMap::new();
1322 paths.insert("Other".to_string(), "mylib::Other".to_string());
1323 assert_eq!(format_type_ref(&ty, &paths), "Unknown");
1324 }
1325
1326 #[test]
1331 fn test_format_param_type_string_ref() {
1332 let param = make_param("input", TypeRef::String, true);
1333 assert_eq!(format_param_type(¶m, &HashMap::new()), "&str");
1334 }
1335
1336 #[test]
1337 fn test_format_param_type_string_owned() {
1338 let param = make_param("input", TypeRef::String, false);
1339 assert_eq!(format_param_type(¶m, &HashMap::new()), "String");
1340 }
1341
1342 #[test]
1343 fn test_format_param_type_bytes_ref() {
1344 let param = make_param("data", TypeRef::Bytes, true);
1345 assert_eq!(format_param_type(¶m, &HashMap::new()), "&[u8]");
1346 }
1347
1348 #[test]
1349 fn test_format_param_type_bytes_owned() {
1350 let param = make_param("data", TypeRef::Bytes, false);
1351 assert_eq!(format_param_type(¶m, &HashMap::new()), "Vec<u8>");
1352 }
1353
1354 #[test]
1355 fn test_format_param_type_path_ref() {
1356 let param = make_param("path", TypeRef::Path, true);
1357 assert_eq!(format_param_type(¶m, &HashMap::new()), "&std::path::Path");
1358 }
1359
1360 #[test]
1361 fn test_format_param_type_path_owned() {
1362 let param = make_param("path", TypeRef::Path, false);
1363 assert_eq!(format_param_type(¶m, &HashMap::new()), "std::path::PathBuf");
1364 }
1365
1366 #[test]
1367 fn test_format_param_type_vec_ref() {
1368 let param = make_param("items", TypeRef::Vec(Box::new(TypeRef::String)), true);
1369 assert_eq!(format_param_type(¶m, &HashMap::new()), "&[String]");
1370 }
1371
1372 #[test]
1373 fn test_format_param_type_vec_owned() {
1374 let param = make_param("items", TypeRef::Vec(Box::new(TypeRef::String)), false);
1375 assert_eq!(format_param_type(¶m, &HashMap::new()), "Vec<String>");
1376 }
1377
1378 #[test]
1379 fn test_format_param_type_named_ref_with_type_paths() {
1380 let mut paths = HashMap::new();
1381 paths.insert("Config".to_string(), "mylib::Config".to_string());
1382 let param = make_param("cfg", TypeRef::Named("Config".to_string()), true);
1383 assert_eq!(format_param_type(¶m, &paths), "&mylib::Config");
1384 }
1385
1386 #[test]
1387 fn test_format_param_type_named_ref_without_type_paths() {
1388 let param = make_param("cfg", TypeRef::Named("Config".to_string()), true);
1389 assert_eq!(format_param_type(¶m, &HashMap::new()), "&Config");
1390 }
1391
1392 #[test]
1393 fn test_format_param_type_primitive_ref_passes_by_value() {
1394 let param = make_param("count", TypeRef::Primitive(PrimitiveType::U32), true);
1396 assert_eq!(format_param_type(¶m, &HashMap::new()), "u32");
1397 }
1398
1399 #[test]
1400 fn test_format_param_type_unit_ref_passes_by_value() {
1401 let param = make_param("nothing", TypeRef::Unit, true);
1402 assert_eq!(format_param_type(¶m, &HashMap::new()), "()");
1403 }
1404
1405 #[test]
1410 fn test_format_return_type_without_error() {
1411 let result = format_return_type(&TypeRef::String, None, &HashMap::new(), false);
1412 assert_eq!(result, "String");
1413 }
1414
1415 #[test]
1416 fn test_format_return_type_with_error() {
1417 let result = format_return_type(&TypeRef::String, Some("MyError"), &HashMap::new(), false);
1418 assert_eq!(result, "std::result::Result<String, MyError>");
1419 }
1420
1421 #[test]
1422 fn test_format_return_type_unit_with_error() {
1423 let result = format_return_type(
1424 &TypeRef::Unit,
1425 Some("Box<dyn std::error::Error>"),
1426 &HashMap::new(),
1427 false,
1428 );
1429 assert_eq!(result, "std::result::Result<(), Box<dyn std::error::Error>>");
1430 }
1431
1432 #[test]
1433 fn test_format_return_type_named_with_type_paths_and_error() {
1434 let mut paths = HashMap::new();
1435 paths.insert("Output".to_string(), "mylib::Output".to_string());
1436 let result = format_return_type(
1437 &TypeRef::Named("Output".to_string()),
1438 Some("mylib::MyError"),
1439 &paths,
1440 false,
1441 );
1442 assert_eq!(result, "std::result::Result<mylib::Output, mylib::MyError>");
1443 }
1444
1445 #[test]
1446 fn test_format_return_type_vec_string_with_returns_ref() {
1447 let result = format_return_type(&TypeRef::Vec(Box::new(TypeRef::String)), None, &HashMap::new(), true);
1451 assert_eq!(result, "&[&str]", "Vec<String> + returns_ref must yield &[&str]");
1452 }
1453
1454 #[test]
1455 fn test_format_return_type_vec_no_returns_ref_unchanged() {
1456 let result = format_return_type(&TypeRef::Vec(Box::new(TypeRef::String)), None, &HashMap::new(), false);
1458 assert_eq!(
1459 result, "Vec<String>",
1460 "Vec<String> without returns_ref must stay Vec<String>"
1461 );
1462 }
1463
1464 #[test]
1469 fn test_gen_bridge_wrapper_struct_contains_struct_name() {
1470 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1471 let config = make_trait_bridge_config(None, None);
1472 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1473 let generator = MockBridgeGenerator;
1474 let result = gen_bridge_wrapper_struct(&spec, &generator);
1475 assert!(
1476 result.contains("pub struct PyOcrBackendBridge"),
1477 "missing struct declaration in:\n{result}"
1478 );
1479 }
1480
1481 #[test]
1482 fn test_gen_bridge_wrapper_struct_contains_inner_field() {
1483 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1484 let config = make_trait_bridge_config(None, None);
1485 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1486 let generator = MockBridgeGenerator;
1487 let result = gen_bridge_wrapper_struct(&spec, &generator);
1488 assert!(result.contains("inner: Py<PyAny>"), "missing inner field in:\n{result}");
1489 }
1490
1491 #[test]
1492 fn test_gen_bridge_wrapper_struct_contains_cached_name() {
1493 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1494 let config = make_trait_bridge_config(None, None);
1495 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1496 let generator = MockBridgeGenerator;
1497 let result = gen_bridge_wrapper_struct(&spec, &generator);
1498 assert!(
1499 result.contains("cached_name: String"),
1500 "missing cached_name field in:\n{result}"
1501 );
1502 }
1503
1504 #[test]
1509 fn test_gen_bridge_plugin_impl_returns_none_when_no_super_trait() {
1510 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1511 let config = make_trait_bridge_config(None, None);
1512 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1513 let generator = MockBridgeGenerator;
1514 assert!(gen_bridge_plugin_impl(&spec, &generator).is_none());
1515 }
1516
1517 #[test]
1518 fn test_gen_bridge_plugin_impl_returns_some_when_super_trait_configured() {
1519 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1520 let config = make_trait_bridge_config(Some("Plugin"), None);
1521 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1522 let generator = MockBridgeGenerator;
1523 assert!(gen_bridge_plugin_impl(&spec, &generator).is_some());
1524 }
1525
1526 #[test]
1527 fn test_gen_bridge_plugin_impl_uses_qualified_super_trait_path() {
1528 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1529 let config = make_trait_bridge_config(Some("Plugin"), None);
1530 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1531 let generator = MockBridgeGenerator;
1532 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1533 assert!(
1534 result.contains("impl mylib::Plugin for PyOcrBackendBridge"),
1535 "missing qualified super-trait path in:\n{result}"
1536 );
1537 }
1538
1539 #[test]
1540 fn test_gen_bridge_plugin_impl_uses_already_qualified_super_trait_path() {
1541 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1542 let config = make_trait_bridge_config(Some("other_crate::Plugin"), None);
1543 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1544 let generator = MockBridgeGenerator;
1545 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1546 assert!(
1547 result.contains("impl other_crate::Plugin for PyOcrBackendBridge"),
1548 "wrong super-trait path in:\n{result}"
1549 );
1550 }
1551
1552 #[test]
1553 fn test_gen_bridge_plugin_impl_contains_name_fn() {
1554 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1555 let config = make_trait_bridge_config(Some("Plugin"), None);
1556 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1557 let generator = MockBridgeGenerator;
1558 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1559 assert!(
1560 result.contains("fn name(") && result.contains("cached_name"),
1561 "missing name() using cached_name in:\n{result}"
1562 );
1563 }
1564
1565 #[test]
1566 fn test_gen_bridge_plugin_impl_contains_version_fn() {
1567 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1568 let config = make_trait_bridge_config(Some("Plugin"), None);
1569 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1570 let generator = MockBridgeGenerator;
1571 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1572 assert!(result.contains("fn version("), "missing version() in:\n{result}");
1573 }
1574
1575 #[test]
1576 fn test_gen_bridge_plugin_impl_contains_initialize_fn() {
1577 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1578 let config = make_trait_bridge_config(Some("Plugin"), None);
1579 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1580 let generator = MockBridgeGenerator;
1581 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1582 assert!(result.contains("fn initialize("), "missing initialize() in:\n{result}");
1583 }
1584
1585 #[test]
1586 fn test_gen_bridge_plugin_impl_contains_shutdown_fn() {
1587 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1588 let config = make_trait_bridge_config(Some("Plugin"), None);
1589 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1590 let generator = MockBridgeGenerator;
1591 let result = gen_bridge_plugin_impl(&spec, &generator).unwrap();
1592 assert!(result.contains("fn shutdown("), "missing shutdown() in:\n{result}");
1593 }
1594
1595 #[test]
1600 fn test_gen_bridge_trait_impl_includes_impl_header() {
1601 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1602 let config = make_trait_bridge_config(None, None);
1603 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1604 let generator = MockBridgeGenerator;
1605 let result = gen_bridge_trait_impl(&spec, &generator);
1606 assert!(
1607 result.contains("impl mylib::OcrBackend for PyOcrBackendBridge"),
1608 "missing impl header in:\n{result}"
1609 );
1610 }
1611
1612 #[test]
1613 fn test_gen_bridge_trait_impl_includes_method_signatures() {
1614 let methods = vec![make_method(
1615 "process",
1616 vec![],
1617 TypeRef::String,
1618 false,
1619 false,
1620 None,
1621 None,
1622 )];
1623 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1624 let config = make_trait_bridge_config(None, None);
1625 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1626 let generator = MockBridgeGenerator;
1627 let result = gen_bridge_trait_impl(&spec, &generator);
1628 assert!(result.contains("fn process("), "missing method signature in:\n{result}");
1629 }
1630
1631 #[test]
1632 fn test_gen_bridge_trait_impl_includes_method_body_from_generator() {
1633 let methods = vec![make_method(
1634 "process",
1635 vec![],
1636 TypeRef::String,
1637 false,
1638 false,
1639 None,
1640 None,
1641 )];
1642 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1643 let config = make_trait_bridge_config(None, None);
1644 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1645 let generator = MockBridgeGenerator;
1646 let result = gen_bridge_trait_impl(&spec, &generator);
1647 assert!(
1648 result.contains("// sync body for process"),
1649 "missing sync method body in:\n{result}"
1650 );
1651 }
1652
1653 #[test]
1654 fn test_gen_bridge_trait_impl_async_method_uses_async_body() {
1655 let methods = vec![make_method(
1656 "process_async",
1657 vec![],
1658 TypeRef::String,
1659 true,
1660 false,
1661 None,
1662 None,
1663 )];
1664 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1665 let config = make_trait_bridge_config(None, None);
1666 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1667 let generator = MockBridgeGenerator;
1668 let result = gen_bridge_trait_impl(&spec, &generator);
1669 assert!(
1670 result.contains("// async body for process_async"),
1671 "missing async method body in:\n{result}"
1672 );
1673 assert!(
1674 result.contains("async fn process_async("),
1675 "missing async keyword in method signature in:\n{result}"
1676 );
1677 }
1678
1679 #[test]
1680 fn test_gen_bridge_trait_impl_filters_trait_source_methods() {
1681 let methods = vec![
1683 make_method("own_method", vec![], TypeRef::String, false, false, None, None),
1684 make_method(
1685 "inherited_method",
1686 vec![],
1687 TypeRef::String,
1688 false,
1689 false,
1690 Some("other_crate::OtherTrait"),
1691 None,
1692 ),
1693 ];
1694 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1695 let config = make_trait_bridge_config(None, None);
1696 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1697 let generator = MockBridgeGenerator;
1698 let result = gen_bridge_trait_impl(&spec, &generator);
1699 assert!(
1700 result.contains("fn own_method("),
1701 "own method should be present in:\n{result}"
1702 );
1703 assert!(
1704 !result.contains("fn inherited_method("),
1705 "inherited method should be filtered out in:\n{result}"
1706 );
1707 }
1708
1709 #[test]
1710 fn test_gen_bridge_trait_impl_method_with_params() {
1711 let params = vec![
1712 make_param("input", TypeRef::String, true),
1713 make_param("count", TypeRef::Primitive(PrimitiveType::U32), false),
1714 ];
1715 let methods = vec![make_method(
1716 "process",
1717 params,
1718 TypeRef::String,
1719 false,
1720 false,
1721 None,
1722 None,
1723 )];
1724 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1725 let config = make_trait_bridge_config(None, None);
1726 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1727 let generator = MockBridgeGenerator;
1728 let result = gen_bridge_trait_impl(&spec, &generator);
1729 assert!(result.contains("input: &str"), "missing &str param in:\n{result}");
1730 assert!(result.contains("count: u32"), "missing u32 param in:\n{result}");
1731 }
1732
1733 #[test]
1734 fn test_gen_bridge_trait_impl_return_type_with_error() {
1735 let methods = vec![make_method(
1736 "process",
1737 vec![],
1738 TypeRef::String,
1739 false,
1740 false,
1741 None,
1742 Some("MyError"),
1743 )];
1744 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1745 let config = make_trait_bridge_config(None, None);
1746 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1747 let generator = MockBridgeGenerator;
1748 let result = gen_bridge_trait_impl(&spec, &generator);
1749 assert!(
1750 result.contains("-> std::result::Result<String, mylib::MyError>"),
1751 "missing std::result::Result return type in:\n{result}"
1752 );
1753 }
1754
1755 #[test]
1760 fn test_gen_bridge_registration_fn_returns_none_without_register_fn() {
1761 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1762 let config = make_trait_bridge_config(None, None);
1763 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1764 let generator = MockBridgeGenerator;
1765 assert!(gen_bridge_registration_fn(&spec, &generator).is_none());
1766 }
1767
1768 #[test]
1769 fn test_gen_bridge_registration_fn_returns_some_with_register_fn() {
1770 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1771 let config = make_trait_bridge_config(None, Some("register_ocr_backend"));
1772 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1773 let generator = MockBridgeGenerator;
1774 let result = gen_bridge_registration_fn(&spec, &generator);
1775 assert!(result.is_some());
1776 let code = result.unwrap();
1777 assert!(
1778 code.contains("register_ocr_backend"),
1779 "missing register fn name in:\n{code}"
1780 );
1781 }
1782
1783 #[test]
1788 fn test_gen_bridge_all_includes_imports() {
1789 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1790 let config = make_trait_bridge_config(None, None);
1791 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1792 let generator = MockBridgeGenerator;
1793 let output = gen_bridge_all(&spec, &generator);
1794 assert!(output.imports.contains(&"pyo3::prelude::*".to_string()));
1795 assert!(output.imports.contains(&"pyo3::types::PyString".to_string()));
1796 }
1797
1798 #[test]
1799 fn test_gen_bridge_all_includes_wrapper_struct() {
1800 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1801 let config = make_trait_bridge_config(None, None);
1802 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1803 let generator = MockBridgeGenerator;
1804 let output = gen_bridge_all(&spec, &generator);
1805 assert!(
1806 output.code.contains("pub struct PyOcrBackendBridge"),
1807 "missing struct in:\n{}",
1808 output.code
1809 );
1810 }
1811
1812 #[test]
1813 fn test_gen_bridge_all_includes_constructor() {
1814 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1815 let config = make_trait_bridge_config(None, None);
1816 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1817 let generator = MockBridgeGenerator;
1818 let output = gen_bridge_all(&spec, &generator);
1819 assert!(
1820 output.code.contains("pub fn new("),
1821 "missing constructor in:\n{}",
1822 output.code
1823 );
1824 }
1825
1826 #[test]
1827 fn test_gen_bridge_all_includes_trait_impl() {
1828 let methods = vec![make_method(
1829 "process",
1830 vec![],
1831 TypeRef::String,
1832 false,
1833 false,
1834 None,
1835 None,
1836 )];
1837 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", methods);
1838 let config = make_trait_bridge_config(None, None);
1839 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1840 let generator = MockBridgeGenerator;
1841 let output = gen_bridge_all(&spec, &generator);
1842 assert!(
1843 output.code.contains("impl mylib::OcrBackend for PyOcrBackendBridge"),
1844 "missing trait impl in:\n{}",
1845 output.code
1846 );
1847 }
1848
1849 #[test]
1850 fn test_gen_bridge_all_includes_plugin_impl_when_super_trait_set() {
1851 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1852 let config = make_trait_bridge_config(Some("Plugin"), None);
1853 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1854 let generator = MockBridgeGenerator;
1855 let output = gen_bridge_all(&spec, &generator);
1856 assert!(
1857 output.code.contains("impl mylib::Plugin for PyOcrBackendBridge"),
1858 "missing plugin impl in:\n{}",
1859 output.code
1860 );
1861 }
1862
1863 #[test]
1864 fn test_gen_bridge_all_no_plugin_impl_when_no_super_trait() {
1865 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1866 let config = make_trait_bridge_config(None, None);
1867 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1868 let generator = MockBridgeGenerator;
1869 let output = gen_bridge_all(&spec, &generator);
1870 assert!(
1871 !output.code.contains("fn name(") || !output.code.contains("cached_name"),
1872 "unexpected plugin impl present without super_trait"
1873 );
1874 }
1875
1876 #[test]
1877 fn test_gen_bridge_all_includes_registration_fn_when_configured() {
1878 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1879 let config = make_trait_bridge_config(None, Some("register_ocr_backend"));
1880 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1881 let generator = MockBridgeGenerator;
1882 let output = gen_bridge_all(&spec, &generator);
1883 assert!(
1884 output.code.contains("register_ocr_backend"),
1885 "missing registration fn in:\n{}",
1886 output.code
1887 );
1888 }
1889
1890 #[test]
1891 fn test_gen_bridge_all_no_registration_fn_when_absent() {
1892 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1893 let config = make_trait_bridge_config(None, None);
1894 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1895 let generator = MockBridgeGenerator;
1896 let output = gen_bridge_all(&spec, &generator);
1897 assert!(
1898 !output.code.contains("register_ocr_backend"),
1899 "unexpected registration fn present:\n{}",
1900 output.code
1901 );
1902 }
1903
1904 #[test]
1905 fn test_gen_bridge_all_ordering_struct_before_trait_impl() {
1906 let trait_def = make_type_def("OcrBackend", "mylib::OcrBackend", vec![]);
1907 let config = make_trait_bridge_config(None, None);
1908 let spec = make_spec(&trait_def, &config, "Py", HashMap::new());
1909 let generator = MockBridgeGenerator;
1910 let output = gen_bridge_all(&spec, &generator);
1911 let struct_pos = output.code.find("pub struct PyOcrBackendBridge").unwrap();
1912 let impl_pos = output
1913 .code
1914 .find("impl mylib::OcrBackend for PyOcrBackendBridge")
1915 .unwrap();
1916 assert!(struct_pos < impl_pos, "struct should appear before trait impl");
1917 }
1918
1919 fn make_bridge(
1924 type_alias: Option<&str>,
1925 param_name: Option<&str>,
1926 bind_via: BridgeBinding,
1927 options_type: Option<&str>,
1928 options_field: Option<&str>,
1929 context_type: Option<&str>,
1930 result_type: Option<&str>,
1931 ) -> TraitBridgeConfig {
1932 TraitBridgeConfig {
1933 trait_name: "HtmlVisitor".to_string(),
1934 super_trait: None,
1935 registry_getter: None,
1936 register_fn: None,
1937 unregister_fn: None,
1938 clear_fn: None,
1939 type_alias: type_alias.map(str::to_string),
1940 param_name: param_name.map(str::to_string),
1941 register_extra_args: None,
1942 exclude_languages: vec![],
1943 ffi_skip_methods: Vec::new(),
1944 bind_via,
1945 options_type: options_type.map(str::to_string),
1946 options_field: options_field.map(str::to_string),
1947 context_type: context_type.map(str::to_string),
1948 result_type: result_type.map(str::to_string),
1949 }
1950 }
1951
1952 #[test]
1953 fn find_bridge_param_returns_first_param_match_in_function_param_mode() {
1954 let func = make_func(
1955 "convert",
1956 vec![
1957 make_param("html", TypeRef::String, true),
1958 make_param("visitor", TypeRef::Named("VisitorHandle".to_string()), false),
1959 ],
1960 );
1961 let bridges = vec![make_bridge(
1962 Some("VisitorHandle"),
1963 Some("visitor"),
1964 BridgeBinding::FunctionParam,
1965 None,
1966 None,
1967 None,
1968 None,
1969 )];
1970 let result = find_bridge_param(&func, &bridges).expect("bridge match");
1971 assert_eq!(result.0, 1);
1972 }
1973
1974 #[test]
1975 fn find_bridge_param_skips_options_field_bridges() {
1976 let func = make_func(
1977 "convert",
1978 vec![
1979 make_param("html", TypeRef::String, true),
1980 make_param("visitor", TypeRef::Named("VisitorHandle".to_string()), false),
1981 ],
1982 );
1983 let bridges = vec![make_bridge(
1984 Some("VisitorHandle"),
1985 Some("visitor"),
1986 BridgeBinding::OptionsField,
1987 Some("ConversionOptions"),
1988 Some("visitor"),
1989 None,
1990 None,
1991 )];
1992 assert!(
1993 find_bridge_param(&func, &bridges).is_none(),
1994 "bridges configured with bind_via=options_field must not be returned by find_bridge_param"
1995 );
1996 }
1997
1998 #[test]
1999 fn find_bridge_field_detects_field_via_alias() {
2000 let opts_type = TypeDef {
2001 name: "ConversionOptions".to_string(),
2002 rust_path: "mylib::ConversionOptions".to_string(),
2003 original_rust_path: String::new(),
2004 fields: vec![
2005 make_field("debug", TypeRef::Primitive(PrimitiveType::Bool)),
2006 make_field(
2007 "visitor",
2008 TypeRef::Optional(Box::new(TypeRef::Named("VisitorHandle".to_string()))),
2009 ),
2010 ],
2011 methods: vec![],
2012 is_opaque: false,
2013 is_clone: true,
2014 is_copy: false,
2015 doc: String::new(),
2016 cfg: None,
2017 is_trait: false,
2018 has_default: true,
2019 has_stripped_cfg_fields: false,
2020 is_return_type: false,
2021 serde_rename_all: None,
2022 has_serde: false,
2023 super_traits: vec![],
2024 binding_excluded: false,
2025 binding_exclusion_reason: None,
2026 };
2027 let func = make_func(
2028 "convert",
2029 vec![
2030 make_param("html", TypeRef::String, true),
2031 make_param(
2032 "options",
2033 TypeRef::Optional(Box::new(TypeRef::Named("ConversionOptions".to_string()))),
2034 false,
2035 ),
2036 ],
2037 );
2038 let bridges = vec![make_bridge(
2039 Some("VisitorHandle"),
2040 Some("visitor"),
2041 BridgeBinding::OptionsField,
2042 Some("ConversionOptions"),
2043 None,
2044 None,
2045 None,
2046 )];
2047 let m = find_bridge_field(&func, std::slice::from_ref(&opts_type), &bridges).expect("bridge field match");
2048 assert_eq!(m.param_index, 1);
2049 assert_eq!(m.param_name, "options");
2050 assert_eq!(m.options_type, "ConversionOptions");
2051 assert!(m.param_is_optional);
2052 assert_eq!(m.field_name, "visitor");
2053 }
2054
2055 #[test]
2056 fn find_bridge_field_returns_none_for_function_param_bridge() {
2057 let opts_type = TypeDef {
2058 name: "ConversionOptions".to_string(),
2059 rust_path: "mylib::ConversionOptions".to_string(),
2060 original_rust_path: String::new(),
2061 fields: vec![make_field(
2062 "visitor",
2063 TypeRef::Optional(Box::new(TypeRef::Named("VisitorHandle".to_string()))),
2064 )],
2065 methods: vec![],
2066 is_opaque: false,
2067 is_clone: true,
2068 is_copy: false,
2069 doc: String::new(),
2070 cfg: None,
2071 is_trait: false,
2072 has_default: true,
2073 has_stripped_cfg_fields: false,
2074 is_return_type: false,
2075 serde_rename_all: None,
2076 has_serde: false,
2077 super_traits: vec![],
2078 binding_excluded: false,
2079 binding_exclusion_reason: None,
2080 };
2081 let func = make_func(
2082 "convert",
2083 vec![make_param(
2084 "options",
2085 TypeRef::Named("ConversionOptions".to_string()),
2086 false,
2087 )],
2088 );
2089 let bridges = vec![make_bridge(
2090 Some("VisitorHandle"),
2091 Some("visitor"),
2092 BridgeBinding::FunctionParam,
2093 None,
2094 None,
2095 None,
2096 None,
2097 )];
2098 assert!(find_bridge_field(&func, std::slice::from_ref(&opts_type), &bridges).is_none());
2099 }
2100}