1use ahash::AHashSet;
2use alef_core::ir::{CoreWrapper, PrimitiveType, TypeDef, TypeRef};
3use std::fmt::Write;
4
5use super::ConversionConfig;
6use super::binding_to_core::field_conversion_to_core;
7use super::helpers::is_newtype;
8use super::helpers::{binding_prim_str, core_type_path, needs_i64_cast};
9
10pub fn gen_from_core_to_binding(typ: &TypeDef, core_import: &str, opaque_types: &AHashSet<String>) -> String {
12 gen_from_core_to_binding_cfg(typ, core_import, opaque_types, &ConversionConfig::default())
13}
14
15pub fn gen_from_core_to_binding_cfg(
17 typ: &TypeDef,
18 core_import: &str,
19 opaque_types: &AHashSet<String>,
20 config: &ConversionConfig,
21) -> String {
22 let core_path = core_type_path(typ, core_import);
23 let binding_name = format!("{}{}", config.type_name_prefix, typ.name);
24 let mut out = String::with_capacity(256);
25 writeln!(out, "#[allow(clippy::redundant_closure, clippy::useless_conversion)]").ok();
26 writeln!(out, "impl From<{core_path}> for {binding_name} {{").ok();
27 writeln!(out, " fn from(val: {core_path}) -> Self {{").ok();
28
29 if is_newtype(typ) {
31 let field = &typ.fields[0];
32 let inner_expr = match &field.ty {
33 TypeRef::Named(_) => "val.0.into()".to_string(),
34 TypeRef::Path => "val.0.to_string_lossy().to_string()".to_string(),
35 TypeRef::Duration => "val.0.as_millis() as u64".to_string(),
36 _ => "val.0".to_string(),
37 };
38 writeln!(out, " Self {{ _0: {inner_expr} }}").ok();
39 writeln!(out, " }}").ok();
40 write!(out, "}}").ok();
41 return out;
42 }
43
44 let optionalized = config.optionalize_defaults && typ.has_default;
45 writeln!(out, " Self {{").ok();
46 for field in &typ.fields {
47 if !config.exclude_types.is_empty()
49 && super::helpers::field_references_excluded_type(&field.ty, config.exclude_types)
50 {
51 continue;
52 }
53 let base_conversion = field_conversion_from_core_cfg(
54 &field.name,
55 &field.ty,
56 field.optional,
57 field.sanitized,
58 opaque_types,
59 config,
60 );
61 let base_conversion = if field.is_boxed && matches!(&field.ty, TypeRef::Named(_)) {
63 if field.optional {
64 let src = format!("{}: val.{}.map(Into::into)", field.name, field.name);
66 let dst = format!("{}: val.{}.map(|v| (*v).into())", field.name, field.name);
67 if base_conversion == src { dst } else { base_conversion }
68 } else {
69 base_conversion.replace(&format!("val.{}", field.name), &format!("(*val.{})", field.name))
71 }
72 } else {
73 base_conversion
74 };
75 let base_conversion = if field.newtype_wrapper.is_some() {
81 match &field.ty {
82 TypeRef::Optional(_) => {
83 base_conversion.replace(
85 &format!("val.{}", field.name),
86 &format!("val.{}.map(|v| v.0)", field.name),
87 )
88 }
89 TypeRef::Vec(_) => {
90 base_conversion.replace(
92 &format!("val.{}", field.name),
93 &format!("val.{}.iter().map(|v| v.0).collect::<Vec<_>>()", field.name),
94 )
95 }
96 _ if field.optional => base_conversion.replace(
99 &format!("val.{}", field.name),
100 &format!("val.{}.map(|v| v.0)", field.name),
101 ),
102 _ => {
103 base_conversion.replace(&format!("val.{}", field.name), &format!("val.{}.0", field.name))
105 }
106 }
107 } else {
108 base_conversion
109 };
110 let is_flattened_optional = field.optional && matches!(field.ty, TypeRef::Optional(_));
116 let base_conversion = if is_flattened_optional {
117 if let TypeRef::Optional(inner) = &field.ty {
118 let inner_conv = field_conversion_from_core_cfg(
120 &field.name,
121 inner.as_ref(),
122 true,
123 field.sanitized,
124 opaque_types,
125 config,
126 );
127 inner_conv.replace(&format!("val.{}", field.name), &format!("val.{}.flatten()", field.name))
129 } else {
130 base_conversion
131 }
132 } else {
133 base_conversion
134 };
135 let needs_some_wrap = !is_flattened_optional
139 && ((optionalized && !field.optional)
140 || (config.option_duration_on_defaults
141 && typ.has_default
142 && !field.optional
143 && matches!(field.ty, TypeRef::Duration)));
144 let conversion = if needs_some_wrap {
145 if let Some(expr) = base_conversion.strip_prefix(&format!("{}: ", field.name)) {
147 format!("{}: Some({})", field.name, expr)
148 } else {
149 base_conversion
150 }
151 } else {
152 base_conversion
153 };
154 let conversion = if !field.sanitized {
157 apply_core_wrapper_from_core(
158 &conversion,
159 &field.name,
160 &field.core_wrapper,
161 &field.vec_inner_core_wrapper,
162 field.optional,
163 )
164 } else {
165 conversion
166 };
167 if field.cfg.is_some() {
169 continue;
170 }
171 let binding_field = config.binding_field_name_owned(&typ.name, &field.name);
175 let conversion = if binding_field != field.name {
176 if let Some(expr) = conversion.strip_prefix(&format!("{}: ", field.name)) {
177 format!("{binding_field}: {expr}")
178 } else {
179 conversion
180 }
181 } else {
182 conversion
183 };
184 writeln!(out, " {conversion},").ok();
185 }
186
187 writeln!(out, " }}").ok();
188 writeln!(out, " }}").ok();
189 write!(out, "}}").ok();
190 out
191}
192
193pub fn field_conversion_from_core(
196 name: &str,
197 ty: &TypeRef,
198 optional: bool,
199 sanitized: bool,
200 opaque_types: &AHashSet<String>,
201) -> String {
202 if sanitized {
206 if let TypeRef::Vec(inner) = ty {
209 if matches!(inner.as_ref(), TypeRef::Primitive(_)) {
210 if optional {
211 return format!(
212 "{name}: val.{name}.map(|t| {{ let arr: Vec<_> = [t.0, t.1].into_iter().map(|v| v as _).collect(); arr }})"
213 );
214 }
215 return format!("{name}: vec![val.{name}.0 as _, val.{name}.1 as _]");
216 }
217 }
218 if let TypeRef::Optional(opt_inner) = ty {
220 if let TypeRef::Vec(vec_inner) = opt_inner.as_ref() {
221 if matches!(vec_inner.as_ref(), TypeRef::Primitive(_)) {
222 return format!("{name}: val.{name}.map(|t| vec![t.0 as _, t.1 as _])");
223 }
224 }
225 }
226 if let TypeRef::Map(k, v) = ty {
228 if matches!(k.as_ref(), TypeRef::String) && matches!(v.as_ref(), TypeRef::String) {
229 if optional {
230 return format!(
231 "{name}: val.{name}.as_ref().map(|m| m.iter().map(|(k, v)| (k.to_string(), v.to_string())).collect())"
232 );
233 }
234 return format!(
235 "{name}: val.{name}.into_iter().map(|(k, v)| (k.to_string(), v.to_string())).collect()"
236 );
237 }
238 }
239 if let TypeRef::Vec(inner) = ty {
242 if matches!(inner.as_ref(), TypeRef::String) {
243 if optional {
244 return format!(
245 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|i| format!(\"{{:?}}\", i)).collect())"
246 );
247 }
248 return format!("{name}: val.{name}.iter().map(|i| format!(\"{{:?}}\", i)).collect()");
249 }
250 }
251 if let TypeRef::Optional(opt_inner) = ty {
253 if let TypeRef::Vec(vec_inner) = opt_inner.as_ref() {
254 if matches!(vec_inner.as_ref(), TypeRef::String) {
255 return format!(
256 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|i| format!(\"{{:?}}\", i)).collect())"
257 );
258 }
259 }
260 }
261 if matches!(ty, TypeRef::String) {
265 if optional {
266 return format!("{name}: val.{name}.as_ref().map(|v| format!(\"{{v:?}}\"))");
267 }
268 return format!("{name}: format!(\"{{:?}}\", val.{name})");
269 }
270 if optional {
273 return format!("{name}: val.{name}.as_ref().map(|v| format!(\"{{v:?}}\"))");
274 }
275 return format!("{name}: format!(\"{{:?}}\", val.{name})");
276 }
277 match ty {
278 TypeRef::Duration => {
280 if optional {
281 return format!("{name}: val.{name}.map(|d| d.as_millis() as u64)");
282 }
283 format!("{name}: val.{name}.as_millis() as u64")
284 }
285 TypeRef::Path => {
287 if optional {
288 format!("{name}: val.{name}.map(|p| p.to_string_lossy().to_string())")
289 } else {
290 format!("{name}: val.{name}.to_string_lossy().to_string()")
291 }
292 }
293 TypeRef::Optional(inner) if matches!(inner.as_ref(), TypeRef::Path) => {
294 format!("{name}: val.{name}.map(|p| p.to_string_lossy().to_string())")
295 }
296 TypeRef::Char => {
298 if optional {
299 format!("{name}: val.{name}.map(|c| c.to_string())")
300 } else {
301 format!("{name}: val.{name}.to_string()")
302 }
303 }
304 TypeRef::Bytes => {
306 if optional {
307 format!("{name}: val.{name}.map(|v| v.to_vec())")
308 } else {
309 format!("{name}: val.{name}.to_vec()")
310 }
311 }
312 TypeRef::Named(n) if opaque_types.contains(n.as_str()) => {
314 if optional {
315 format!("{name}: val.{name}.map(|v| {n} {{ inner: Arc::new(v) }})")
316 } else {
317 format!("{name}: {n} {{ inner: Arc::new(val.{name}) }}")
318 }
319 }
320 TypeRef::Json => {
322 if optional {
323 format!("{name}: val.{name}.as_ref().map(ToString::to_string)")
324 } else {
325 format!("{name}: val.{name}.to_string()")
326 }
327 }
328 TypeRef::Optional(inner) if matches!(inner.as_ref(), TypeRef::Json) => {
329 format!("{name}: val.{name}.as_ref().map(ToString::to_string)")
330 }
331 TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Json) => {
332 if optional {
333 format!("{name}: val.{name}.as_ref().map(|v| v.iter().map(|i| i.to_string()).collect())")
334 } else {
335 format!("{name}: val.{name}.iter().map(ToString::to_string).collect()")
336 }
337 }
338 TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Optional(oi) if matches!(oi.as_ref(), TypeRef::Json)) => {
340 if optional {
341 format!(
342 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|i| i.as_ref().map(ToString::to_string)).collect())"
343 )
344 } else {
345 format!("{name}: val.{name}.iter().map(|i| i.as_ref().map(ToString::to_string)).collect()")
346 }
347 }
348 TypeRef::Map(k, v) if matches!(v.as_ref(), TypeRef::Json) => {
350 let k_is_json = matches!(k.as_ref(), TypeRef::Json);
351 let k_expr = if k_is_json { "k.to_string()" } else { "k" };
352 if optional {
353 format!("{name}: val.{name}.map(|m| m.into_iter().map(|(k, v)| ({k_expr}, v.to_string())).collect())")
354 } else {
355 format!("{name}: val.{name}.into_iter().map(|(k, v)| ({k_expr}, v.to_string())).collect()")
356 }
357 }
358 TypeRef::Map(k, _v) if matches!(k.as_ref(), TypeRef::Json) => {
360 if optional {
361 format!("{name}: val.{name}.map(|m| m.into_iter().map(|(k, v)| (k.to_string(), v)).collect())")
362 } else {
363 format!("{name}: val.{name}.into_iter().map(|(k, v)| (k.to_string(), v)).collect()")
364 }
365 }
366 TypeRef::Map(_k, v) if matches!(v.as_ref(), TypeRef::Named(_)) => {
368 if optional {
369 format!("{name}: val.{name}.map(|m| m.into_iter().map(|(k, v)| (k, v.into())).collect())")
370 } else {
371 format!("{name}: val.{name}.into_iter().map(|(k, v)| (k, v.into())).collect()")
372 }
373 }
374 TypeRef::Optional(inner) if matches!(inner.as_ref(), TypeRef::Map(_k, v) if matches!(v.as_ref(), TypeRef::Named(_))) =>
376 {
377 format!("{name}: val.{name}.map(|m| m.into_iter().map(|(k, v)| (k, v.into())).collect())")
378 }
379 TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Named(_)) => {
381 if optional {
382 format!("{name}: val.{name}.map(|v| v.into_iter().map(Into::into).collect())")
383 } else {
384 format!("{name}: val.{name}.into_iter().map(Into::into).collect()")
385 }
386 }
387 TypeRef::Optional(inner) if matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Named(_))) =>
389 {
390 format!("{name}: val.{name}.map(|v| v.into_iter().map(Into::into).collect())")
391 }
392 _ => field_conversion_to_core(name, ty, optional),
394 }
395}
396
397pub fn field_conversion_from_core_cfg(
399 name: &str,
400 ty: &TypeRef,
401 optional: bool,
402 sanitized: bool,
403 opaque_types: &AHashSet<String>,
404 config: &ConversionConfig,
405) -> String {
406 if sanitized {
411 if config.map_uses_jsvalue {
412 if let TypeRef::Map(k, v) = ty {
414 if matches!(k.as_ref(), TypeRef::String) && matches!(v.as_ref(), TypeRef::String) {
415 if optional {
416 return format!(
417 "{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())"
418 );
419 }
420 return format!("{name}: serde_wasm_bindgen::to_value(&val.{name}).unwrap_or(JsValue::NULL)");
421 }
422 }
423 if let TypeRef::Vec(inner) = ty {
425 if matches!(inner.as_ref(), TypeRef::Json) {
426 if optional {
427 return format!(
428 "{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())"
429 );
430 }
431 return format!("{name}: serde_wasm_bindgen::to_value(&val.{name}).unwrap_or(JsValue::NULL)");
432 }
433 }
434 }
435 return field_conversion_from_core(name, ty, optional, sanitized, opaque_types);
436 }
437
438 if config.vec_named_to_string {
442 if let TypeRef::Vec(inner) = ty {
443 if matches!(inner.as_ref(), TypeRef::Named(_)) {
444 if optional {
445 return format!("{name}: val.{name}.as_ref().and_then(|v| serde_json::to_string(v).ok())");
446 }
447 return format!("{name}: serde_json::to_string(&val.{name}).unwrap_or_default()");
448 }
449 }
450 }
451
452 if config.map_uses_jsvalue {
454 let is_nested_vec = matches!(ty, TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Vec(_)));
455 let is_map = matches!(ty, TypeRef::Map(_, _));
456 if is_nested_vec || is_map {
457 if optional {
458 return format!("{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())");
459 }
460 return format!("{name}: serde_wasm_bindgen::to_value(&val.{name}).unwrap_or(JsValue::NULL)");
461 }
462 if let TypeRef::Optional(inner) = ty {
463 let is_inner_nested = matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Vec(_)));
464 let is_inner_map = matches!(inner.as_ref(), TypeRef::Map(_, _));
465 if is_inner_nested || is_inner_map {
466 return format!("{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())");
467 }
468 }
469 }
470
471 let prefix = config.type_name_prefix;
472 let is_enum_string = |n: &str| -> bool { config.enum_string_names.as_ref().is_some_and(|names| names.contains(n)) };
473
474 match ty {
475 TypeRef::Primitive(p) if config.cast_large_ints_to_i64 && needs_i64_cast(p) => {
477 let cast_to = binding_prim_str(p);
478 if optional {
479 format!("{name}: val.{name}.map(|v| v as {cast_to})")
480 } else {
481 format!("{name}: val.{name} as {cast_to}")
482 }
483 }
484 TypeRef::Optional(inner)
486 if config.cast_large_ints_to_i64
487 && matches!(inner.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p)) =>
488 {
489 if let TypeRef::Primitive(p) = inner.as_ref() {
490 let cast_to = binding_prim_str(p);
491 format!("{name}: val.{name}.map(|v| v as {cast_to})")
492 } else {
493 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
494 }
495 }
496 TypeRef::Primitive(PrimitiveType::F32) if config.cast_f32_to_f64 => {
498 if optional {
499 format!("{name}: val.{name}.map(|v| v as f64)")
500 } else {
501 format!("{name}: val.{name} as f64")
502 }
503 }
504 TypeRef::Duration if config.cast_large_ints_to_i64 => {
506 if optional {
507 format!("{name}: val.{name}.map(|d| d.as_millis() as u64 as i64)")
508 } else {
509 format!("{name}: val.{name}.as_millis() as u64 as i64")
510 }
511 }
512 TypeRef::Named(n) if opaque_types.contains(n.as_str()) && !prefix.is_empty() => {
514 let prefixed = format!("{prefix}{n}");
515 if optional {
516 format!("{name}: val.{name}.map(|v| {prefixed} {{ inner: Arc::new(v) }})")
517 } else {
518 format!("{name}: {prefixed} {{ inner: Arc::new(val.{name}) }}")
519 }
520 }
521 TypeRef::Named(n) if is_enum_string(n) => {
523 if optional {
526 format!(
527 "{name}: val.{name}.as_ref().map(|v| serde_json::to_value(v).ok().and_then(|s| s.as_str().map(String::from)).unwrap_or_default())"
528 )
529 } else {
530 format!(
531 "{name}: serde_json::to_value(val.{name}).ok().and_then(|s| s.as_str().map(String::from)).unwrap_or_default()"
532 )
533 }
534 }
535 TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Named(n) if is_enum_string(n)) => {
537 if optional {
538 format!(
539 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|x| serde_json::to_value(x).ok().and_then(|s| s.as_str().map(String::from)).unwrap_or_default()).collect())"
540 )
541 } else {
542 format!(
543 "{name}: val.{name}.iter().map(|v| serde_json::to_value(v).ok().and_then(|s| s.as_str().map(String::from)).unwrap_or_default()).collect()"
544 )
545 }
546 }
547 TypeRef::Optional(inner) if matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Named(n) if is_enum_string(n))) =>
549 {
550 format!(
551 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|x| serde_json::to_value(x).ok().and_then(|s| s.as_str().map(String::from)).unwrap_or_default()).collect())"
552 )
553 }
554 TypeRef::Vec(inner)
556 if config.cast_f32_to_f64 && matches!(inner.as_ref(), TypeRef::Primitive(PrimitiveType::F32)) =>
557 {
558 if optional {
559 format!("{name}: val.{name}.as_ref().map(|v| v.iter().map(|&x| x as f64).collect())")
560 } else {
561 format!("{name}: val.{name}.iter().map(|&v| v as f64).collect()")
562 }
563 }
564 TypeRef::Optional(inner)
566 if config.cast_f32_to_f64
567 && matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Primitive(PrimitiveType::F32))) =>
568 {
569 format!("{name}: val.{name}.as_ref().map(|v| v.iter().map(|&x| x as f64).collect())")
570 }
571 TypeRef::Optional(inner)
573 if config.cast_large_ints_to_i64
574 && matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p))) =>
575 {
576 if let TypeRef::Vec(vi) = inner.as_ref() {
577 if let TypeRef::Primitive(p) = vi.as_ref() {
578 let cast_to = binding_prim_str(p);
579 if sanitized {
580 format!("{name}: val.{name}.map(|(a, b)| vec![a as {cast_to}, b as {cast_to}])")
582 } else {
583 format!("{name}: val.{name}.as_ref().map(|v| v.iter().map(|&x| x as {cast_to}).collect())")
584 }
585 } else {
586 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
587 }
588 } else {
589 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
590 }
591 }
592 TypeRef::Vec(outer)
594 if config.cast_f32_to_f64
595 && matches!(outer.as_ref(), TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Primitive(PrimitiveType::F32))) =>
596 {
597 if optional {
598 format!(
599 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|inner| inner.iter().map(|&x| x as f64).collect()).collect())"
600 )
601 } else {
602 format!("{name}: val.{name}.iter().map(|inner| inner.iter().map(|&x| x as f64).collect()).collect()")
603 }
604 }
605 TypeRef::Optional(inner)
607 if config.cast_f32_to_f64
608 && matches!(inner.as_ref(), TypeRef::Vec(outer) if matches!(outer.as_ref(), TypeRef::Vec(prim) if matches!(prim.as_ref(), TypeRef::Primitive(PrimitiveType::F32)))) =>
609 {
610 format!(
611 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|inner| inner.iter().map(|&x| x as f64).collect()).collect())"
612 )
613 }
614 TypeRef::Optional(inner)
616 if config.cast_large_ints_to_i64
617 && matches!(inner.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p)) =>
618 {
619 if let TypeRef::Primitive(p) = inner.as_ref() {
620 let cast_to = binding_prim_str(p);
621 format!("{name}: val.{name}.map(|v| v as {cast_to})")
622 } else {
623 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
624 }
625 }
626 TypeRef::Map(_k, v)
628 if config.cast_large_ints_to_i64 && matches!(v.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p)) =>
629 {
630 if let TypeRef::Primitive(p) = v.as_ref() {
631 let cast_to = binding_prim_str(p);
632 if optional {
633 format!(
634 "{name}: val.{name}.as_ref().map(|m| m.iter().map(|(k, v)| (k.clone(), *v as {cast_to})).collect())"
635 )
636 } else {
637 format!("{name}: val.{name}.iter().map(|(k, v)| (k.clone(), *v as {cast_to})).collect()")
638 }
639 } else {
640 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
641 }
642 }
643 TypeRef::Vec(inner)
645 if config.cast_large_ints_to_i64
646 && matches!(inner.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p)) =>
647 {
648 if let TypeRef::Primitive(p) = inner.as_ref() {
649 let cast_to = binding_prim_str(p);
650 if sanitized {
651 if optional {
653 format!("{name}: val.{name}.map(|(a, b)| vec![a as {cast_to}, b as {cast_to}])")
654 } else {
655 format!("{name}: {{ let (a, b) = val.{name}; vec![a as {cast_to}, b as {cast_to}] }}")
656 }
657 } else if optional {
658 format!("{name}: val.{name}.as_ref().map(|v| v.iter().map(|&x| x as {cast_to}).collect())")
659 } else {
660 format!("{name}: val.{name}.iter().map(|&v| v as {cast_to}).collect()")
661 }
662 } else {
663 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
664 }
665 }
666 TypeRef::Vec(outer)
668 if config.cast_large_ints_to_i64
669 && matches!(outer.as_ref(), TypeRef::Vec(inner) if matches!(inner.as_ref(), TypeRef::Primitive(p) if needs_i64_cast(p))) =>
670 {
671 if let TypeRef::Vec(inner) = outer.as_ref() {
672 if let TypeRef::Primitive(p) = inner.as_ref() {
673 let cast_to = binding_prim_str(p);
674 if optional {
675 format!(
676 "{name}: val.{name}.as_ref().map(|v| v.iter().map(|inner| inner.iter().map(|&x| x as {cast_to}).collect()).collect())"
677 )
678 } else {
679 format!(
680 "{name}: val.{name}.iter().map(|inner| inner.iter().map(|&x| x as {cast_to}).collect()).collect()"
681 )
682 }
683 } else {
684 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
685 }
686 } else {
687 field_conversion_from_core(name, ty, optional, sanitized, opaque_types)
688 }
689 }
690 TypeRef::Json if config.json_to_string => {
692 if optional {
693 format!("{name}: val.{name}.as_ref().map(ToString::to_string)")
694 } else {
695 format!("{name}: val.{name}.to_string()")
696 }
697 }
698 TypeRef::Json if config.map_uses_jsvalue => {
700 if optional {
701 format!("{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())")
702 } else {
703 format!("{name}: serde_wasm_bindgen::to_value(&val.{name}).unwrap_or(JsValue::NULL)")
704 }
705 }
706 TypeRef::Vec(inner) if config.map_uses_jsvalue && matches!(inner.as_ref(), TypeRef::Json) => {
708 if optional {
709 format!("{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())")
710 } else {
711 format!("{name}: serde_wasm_bindgen::to_value(&val.{name}).unwrap_or(JsValue::NULL)")
712 }
713 }
714 TypeRef::Optional(inner)
716 if config.map_uses_jsvalue
717 && matches!(inner.as_ref(), TypeRef::Vec(vi) if matches!(vi.as_ref(), TypeRef::Json)) =>
718 {
719 format!("{name}: val.{name}.as_ref().and_then(|v| serde_wasm_bindgen::to_value(v).ok())")
720 }
721 _ => field_conversion_from_core(name, ty, optional, sanitized, opaque_types),
723 }
724}
725
726fn apply_core_wrapper_from_core(
729 conversion: &str,
730 name: &str,
731 core_wrapper: &CoreWrapper,
732 vec_inner_core_wrapper: &CoreWrapper,
733 optional: bool,
734) -> String {
735 if *vec_inner_core_wrapper == CoreWrapper::Arc {
737 return conversion
738 .replace(".map(Into::into).collect()", ".map(|v| (*v).clone().into()).collect()")
739 .replace(
740 "map(|v| v.into_iter().map(Into::into)",
741 "map(|v| v.into_iter().map(|v| (*v).clone().into())",
742 );
743 }
744
745 match core_wrapper {
746 CoreWrapper::None => conversion.to_string(),
747 CoreWrapper::Cow => {
748 if let Some(expr) = conversion.strip_prefix(&format!("{name}: ")) {
753 if optional {
754 conversion.to_string()
756 } else if expr == format!("val.{name}") {
757 format!("{name}: val.{name}.into_owned()")
758 } else {
759 conversion.to_string()
760 }
761 } else {
762 conversion.to_string()
763 }
764 }
765 CoreWrapper::Arc => {
766 if conversion.contains("{ inner: Arc::new(") {
775 return conversion.replace("{ inner: Arc::new(v) }", "{ inner: v }").replace(
776 &format!("{{ inner: Arc::new(val.{name}) }}"),
777 &format!("{{ inner: val.{name} }}"),
778 );
779 }
780 if let Some(expr) = conversion.strip_prefix(&format!("{name}: ")) {
781 if optional {
782 format!("{name}: {expr}.map(|v| (*v).clone().into())")
783 } else {
784 let unwrapped = expr.replace(&format!("val.{name}"), &format!("(*val.{name}).clone()"));
785 format!("{name}: {unwrapped}")
786 }
787 } else {
788 conversion.to_string()
789 }
790 }
791 CoreWrapper::Bytes => {
792 if let Some(expr) = conversion.strip_prefix(&format!("{name}: ")) {
794 if optional {
795 format!("{name}: {expr}.map(|v| v.to_vec())")
796 } else if expr == format!("val.{name}") {
797 format!("{name}: val.{name}.to_vec()")
798 } else {
799 conversion.to_string()
800 }
801 } else {
802 conversion.to_string()
803 }
804 }
805 CoreWrapper::ArcMutex => {
806 if let Some(expr) = conversion.strip_prefix(&format!("{name}: ")) {
808 if optional {
809 format!("{name}: {expr}.map(|v| v.lock().unwrap().clone().into())")
810 } else if expr == format!("val.{name}") {
811 format!("{name}: val.{name}.lock().unwrap().clone().into()")
812 } else {
813 conversion.to_string()
814 }
815 } else {
816 conversion.to_string()
817 }
818 }
819 }
820}