1use crate::codegen::traits::file_writer::FileInfo;
8use crate::ir::types::{
9 IrEnum, IrEnumValueType, IrIntersection, IrObject, IrPrimitive, IrProperty, IrSchema,
10 IrSchemaKind, IrSpec, IrTaggedUnion, IrTaggedVariant, IrTypeExpr, IrUnion, TaggingStyle,
11};
12use heck::{ToPascalCase, ToSnakeCase};
13use sigil_stitch::code_block::CodeBlock;
14use sigil_stitch::lang::python::Python;
15use sigil_stitch::prelude::*;
16
17pub fn generate_model_files(ir: &IrSpec, header: &str) -> Result<Vec<FileInfo>, String> {
19 let mut files = Vec::new();
20 for (_name, schema) in &ir.schemas {
21 let body = emit_model_body(schema, ir).ok_or_else(|| {
22 format!(
23 "unsupported schema kind for {}: {:?}",
24 schema.name, schema.kind
25 )
26 })?;
27 let stem = schema.name.to_snake_case();
28 let filename = format!("{stem}.py");
29 let mut content = String::with_capacity(header.len() + body.len());
30 content.push_str(header);
31 content.push_str(&body);
32 files.push(FileInfo::model(filename, content));
33 }
34 Ok(files)
35}
36
37fn emit_model_body(schema: &IrSchema, ir: &IrSpec) -> Option<String> {
38 let file_spec = match &schema.kind {
39 IrSchemaKind::Object(obj) => emit_object(schema, obj, ir),
40 IrSchemaKind::Enum(en) => emit_enum(schema, en),
41 IrSchemaKind::Alias(expr) => emit_alias(schema, expr),
42 IrSchemaKind::Union(u) => emit_union(schema, u),
43 IrSchemaKind::Intersection(i) => emit_intersection(schema, i, ir),
44 IrSchemaKind::TaggedUnion(tu) => emit_tagged_union(schema, tu, ir),
45 }?;
46 file_spec.render(100).ok()
47}
48
49pub fn future_annotations_header() -> CodeBlock {
50 CodeBlock::of("from __future__ import annotations", ()).expect("static header")
51}
52
53fn emit_object(schema: &IrSchema, obj: &IrObject, ir: &IrSpec) -> Option<FileSpec> {
58 let name = schema.name.to_pascal_case();
59
60 let mut file =
61 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
62
63 if needs_typing_literal_in_props(&obj.properties) {
64 file = file.add_import(ImportSpec::named("typing", "Literal"));
65 }
66
67 let dataclass_tn = TypeName::importable("dataclasses", "dataclass");
68 let mut cls = TypeSpec::builder(&name, TypeKind::Class)
69 .annotate(AnnotationSpec::importable(dataclass_tn));
70
71 if let Some(doc) = &schema.description {
72 cls = cls.doc(&format!("{}.", escape_docstring(doc)));
73 }
74
75 let mut required: Vec<(&String, &IrProperty)> = Vec::new();
76 let mut optional: Vec<(&String, &IrProperty)> = Vec::new();
77 for (json_name, prop) in &obj.properties {
78 if prop.required && !prop.nullable {
79 required.push((json_name, prop));
80 } else {
81 optional.push((json_name, prop));
82 }
83 }
84
85 let all_fields: Vec<(&String, &IrProperty)> =
86 required.iter().chain(optional.iter()).copied().collect();
87
88 if all_fields.is_empty() {
89 cls = cls.extra_member(CodeBlock::of("pass", ()).expect("pass"));
90 } else {
91 for (_json_name, prop) in &required {
92 let field_name = python_field_name(&prop.name);
93 let type_name = python_type_name(&prop.type_expr);
94 cls = cls.add_field(
95 FieldSpec::builder(&field_name, type_name)
96 .build()
97 .expect("required field"),
98 );
99 }
100 for (_json_name, prop) in &optional {
101 let field_name = python_field_name(&prop.name);
102 let type_name = python_type_name(&prop.type_expr);
103 cls = cls.add_field(
104 FieldSpec::builder(&field_name, TypeName::optional(type_name))
105 .initializer(CodeBlock::of("None", ()).expect("None init"))
106 .build()
107 .expect("optional field"),
108 );
109 }
110
111 cls = cls.add_method(build_to_dict_method(&all_fields, ir, &obj.properties));
112 cls = cls.add_method(build_from_dict_method(
113 &name,
114 &all_fields,
115 ir,
116 &obj.properties,
117 ));
118 }
119
120 file = file.add_type(cls.build().ok()?);
121 file.build().ok()
122}
123
124fn build_to_dict_method(
125 all_fields: &[(&String, &IrProperty)],
126 ir: &IrSpec,
127 properties: &indexmap::IndexMap<String, IrProperty>,
128) -> FunSpec {
129 let self_param = ParameterSpec::of("self", TypeName::primitive(""));
130 let return_type = TypeName::generic(
131 TypeName::primitive("dict"),
132 vec![TypeName::primitive("str"), TypeName::primitive("object")],
133 );
134
135 let mut body = CodeBlock::builder();
136 body.add_statement("result: dict[str, object] = {}", ());
137 for (json_name, prop) in all_fields {
138 let field_name = python_field_name(&prop.name);
139 let to_expr = render_to_dict_expr(&format!("self.{field_name}"), json_name, ir, properties);
140 if prop.required && !prop.nullable {
141 body.add_statement(&format!("result[\"{json_name}\"] = {to_expr}"), ());
142 } else {
143 body.add_statement(&format!("if self.{field_name} is not None:%>"), ());
144 body.add_statement(&format!("result[\"{json_name}\"] = {to_expr}%<"), ());
145 }
146 }
147 body.add_statement("return result", ());
148
149 FunSpec::builder("to_dict")
150 .add_param(self_param)
151 .returns(return_type)
152 .body(body.build().expect("to_dict body"))
153 .build()
154 .expect("to_dict method")
155}
156
157fn build_from_dict_method(
158 class_name: &str,
159 all_fields: &[(&String, &IrProperty)],
160 ir: &IrSpec,
161 properties: &indexmap::IndexMap<String, IrProperty>,
162) -> FunSpec {
163 let cls_param = ParameterSpec::of("cls", TypeName::primitive(""));
164 let data_param = ParameterSpec::of(
165 "data",
166 TypeName::generic(
167 TypeName::primitive("dict"),
168 vec![TypeName::primitive("str"), TypeName::primitive("object")],
169 ),
170 );
171
172 let mut body = CodeBlock::builder();
173 body.add_statement("return cls(%>", ());
174 for (json_name, prop) in all_fields {
175 let field_name = python_field_name(&prop.name);
176 let is_required = prop.required && !prop.nullable;
177 let expr = if is_required {
178 render_from_dict_expr(json_name, ir, properties)
179 } else {
180 render_from_dict_optional_expr(json_name, ir, properties)
181 };
182 if let Some(comment_start) = expr.find(" #") {
183 let (value_part, comment_part) = expr.split_at(comment_start);
184 body.add_statement(&format!("{field_name}={value_part},{comment_part}"), ());
185 } else {
186 body.add_statement(&format!("{field_name}={expr},"), ());
187 }
188 }
189 body.add("%<", ());
190 body.add_statement(")", ());
191
192 FunSpec::builder("from_dict")
193 .annotation(CodeBlock::of("@classmethod", ()).expect("classmethod"))
194 .add_param(cls_param)
195 .add_param(data_param)
196 .returns(TypeName::primitive(class_name))
197 .body(body.build().expect("from_dict body"))
198 .build()
199 .expect("from_dict method")
200}
201
202fn emit_enum(schema: &IrSchema, en: &IrEnum) -> Option<FileSpec> {
207 if en.value_type == IrEnumValueType::Mixed {
208 return emit_type_alias_raw(schema, "object");
209 }
210
211 let name = schema.name.to_pascal_case();
212 let base = match en.value_type {
213 IrEnumValueType::String => TypeName::primitive("str"),
214 IrEnumValueType::Integer | IrEnumValueType::Number => TypeName::primitive("int"),
215 IrEnumValueType::Mixed => unreachable!(),
216 };
217
218 let mut ts = TypeSpec::builder(&name, TypeKind::Enum)
219 .extends(base)
220 .extends(TypeName::importable("enum", "Enum"));
221
222 if let Some(doc) = &schema.description {
223 ts = ts.doc(&format!("{}.", escape_docstring(doc)));
224 }
225
226 for v in &en.values {
227 let (member_name, value_code) = match en.value_type {
228 IrEnumValueType::String => {
229 let s = v.value.as_str()?;
230 (
231 python_enum_member_name(s),
232 format!("\"{}\"", escape_python_string(s)),
233 )
234 }
235 IrEnumValueType::Integer | IrEnumValueType::Number => {
236 let n = v
237 .value
238 .as_i64()
239 .or_else(|| v.value.as_f64().map(|f| f as i64))?;
240 (format!("N{n}").replace('-', "NEG"), format!("{n}"))
241 }
242 IrEnumValueType::Mixed => unreachable!(),
243 };
244 ts = ts.add_variant(
245 EnumVariantSpec::builder(&member_name)
246 .value(CodeBlock::of(&value_code, ()).expect("enum value"))
247 .build()
248 .expect("enum variant"),
249 );
250 }
251
252 let file = FileSpec::builder_with("model.py", Python::new())
253 .header(future_annotations_header())
254 .add_type(ts.build().ok()?);
255 file.build().ok()
256}
257
258fn emit_alias(schema: &IrSchema, expr: &IrTypeExpr) -> Option<FileSpec> {
263 let name = schema.name.to_pascal_case();
264 let rhs_type = python_type_name(expr);
265
266 let type_alias = sigil_quote!(Python {
267 type $N(name.as_str()) = $T(rhs_type);
268 })
269 .ok()?;
270
271 let mut file =
272 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
273 if needs_typing_literal(expr) {
274 file = file.add_import(ImportSpec::named("typing", "Literal"));
275 }
276 if let Some(doc) = &schema.description {
277 file = file.add_raw(&format!("# {}\n", escape_docstring(doc)));
278 }
279 file = file.add_code(type_alias);
280 file.build().ok()
281}
282
283fn emit_type_alias_raw(schema: &IrSchema, rhs: &str) -> Option<FileSpec> {
284 let name = schema.name.to_pascal_case();
285
286 let type_alias = sigil_quote!(Python {
287 type $N(name.as_str()) = $L(rhs);
288 })
289 .ok()?;
290
291 let mut file =
292 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
293 if let Some(doc) = &schema.description {
294 file = file.add_raw(&format!("# {}\n", escape_docstring(doc)));
295 }
296 file = file.add_code(type_alias);
297 file.build().ok()
298}
299
300fn emit_union(schema: &IrSchema, u: &IrUnion) -> Option<FileSpec> {
305 let name = schema.name.to_pascal_case();
306
307 let mut members: Vec<TypeName> = u.members.iter().map(python_type_name).collect();
308 if u.nullable {
309 members.push(TypeName::primitive("None"));
310 }
311 let union_ty = if members.is_empty() {
312 TypeName::importable("typing", "Any")
313 } else {
314 TypeName::union(members)
315 };
316
317 let type_alias = sigil_quote!(Python {
318 type $N(name.as_str()) = $T(union_ty);
319 })
320 .ok()?;
321
322 let mut file =
323 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
324 if needs_typing_literal_in_exprs(&u.members) {
325 file = file.add_import(ImportSpec::named("typing", "Literal"));
326 }
327 if let Some(doc) = &schema.description {
328 file = file.add_raw(&format!("# {}\n", escape_docstring(doc)));
329 }
330 file = file.add_code(type_alias);
331 file.build().ok()
332}
333
334fn emit_intersection(schema: &IrSchema, inter: &IrIntersection, ir: &IrSpec) -> Option<FileSpec> {
339 let mut all_props: indexmap::IndexMap<String, IrProperty> = indexmap::IndexMap::new();
340 for member in &inter.members {
341 if let IrTypeExpr::Named(ref_name) = member
342 && let Some(s) = ir.schemas.get(ref_name.as_str())
343 && let IrSchemaKind::Object(obj) = &s.kind
344 {
345 for (k, v) in &obj.properties {
346 all_props.entry(k.clone()).or_insert_with(|| v.clone());
347 }
348 }
349 }
350
351 if all_props.is_empty() {
352 return emit_intersection_as_alias(schema, inter);
353 }
354
355 emit_intersection_as_dataclass(schema, &all_props)
356}
357
358fn emit_intersection_as_alias(schema: &IrSchema, inter: &IrIntersection) -> Option<FileSpec> {
359 let name = schema.name.to_pascal_case();
360 let members: Vec<TypeName> = inter.members.iter().map(python_type_name).collect();
361 let union_ty = if members.is_empty() {
362 TypeName::importable("typing", "Any")
363 } else {
364 TypeName::union(members)
365 };
366
367 let type_alias = sigil_quote!(Python {
368 type $N(name.as_str()) = $T(union_ty);
369 })
370 .ok()?;
371
372 let mut file =
373 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
374 if needs_typing_literal_in_exprs(&inter.members) {
375 file = file.add_import(ImportSpec::named("typing", "Literal"));
376 }
377 file = file.add_code(type_alias);
378 file.build().ok()
379}
380
381fn emit_intersection_as_dataclass(
382 schema: &IrSchema,
383 all_props: &indexmap::IndexMap<String, IrProperty>,
384) -> Option<FileSpec> {
385 let name = schema.name.to_pascal_case();
386
387 let mut file =
388 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
389
390 if needs_typing_literal_in_props(all_props) {
391 file = file.add_import(ImportSpec::named("typing", "Literal"));
392 }
393
394 let dataclass_tn = TypeName::importable("dataclasses", "dataclass");
395 let mut cls = TypeSpec::builder(&name, TypeKind::Class)
396 .annotate(AnnotationSpec::importable(dataclass_tn));
397
398 if let Some(doc) = &schema.description {
399 cls = cls.doc(&format!("{}.", escape_docstring(doc)));
400 }
401
402 let mut required: Vec<(&String, &IrProperty)> = Vec::new();
403 let mut optional: Vec<(&String, &IrProperty)> = Vec::new();
404 for (json_name, prop) in all_props {
405 if prop.required && !prop.nullable {
406 required.push((json_name, prop));
407 } else {
408 optional.push((json_name, prop));
409 }
410 }
411
412 if required.is_empty() && optional.is_empty() {
413 cls = cls.extra_member(CodeBlock::of("pass", ()).expect("pass"));
414 } else {
415 for (_json_name, prop) in &required {
416 let field_name = python_field_name(&prop.name);
417 let type_name = python_type_name(&prop.type_expr);
418 cls = cls.add_field(
419 FieldSpec::builder(&field_name, type_name)
420 .build()
421 .expect("required field"),
422 );
423 }
424 for (_json_name, prop) in &optional {
425 let field_name = python_field_name(&prop.name);
426 let type_name = python_type_name(&prop.type_expr);
427 cls = cls.add_field(
428 FieldSpec::builder(&field_name, TypeName::optional(type_name))
429 .initializer(CodeBlock::of("None", ()).expect("None init"))
430 .build()
431 .expect("optional field"),
432 );
433 }
434 }
435
436 file = file.add_type(cls.build().ok()?);
437 file.build().ok()
438}
439
440fn emit_tagged_union(schema: &IrSchema, tu: &IrTaggedUnion, ir: &IrSpec) -> Option<FileSpec> {
445 let name = schema.name.to_pascal_case();
446 let snake_name = schema.name.to_snake_case();
447
448 let members: Vec<TypeName> = tu
449 .variants
450 .iter()
451 .map(|v| python_type_name(&v.content_type))
452 .collect();
453
454 let union_ty = if members.is_empty() {
455 TypeName::importable("typing", "Any")
456 } else {
457 TypeName::union(members)
458 };
459
460 let type_alias = sigil_quote!(Python {
461 type $N(name.as_str()) = $T(union_ty);
462 })
463 .ok()?;
464
465 let hint = match &tu.tagging {
466 TaggingStyle::Internal => {
467 format!("Discriminator: {} (internal).", tu.discriminator_field)
468 }
469 TaggingStyle::Adjacent { content_field } => format!(
470 "Discriminator: {} / content: {} (adjacent).",
471 tu.discriminator_field, content_field
472 ),
473 TaggingStyle::External => "Discriminator: variant key (external).".to_string(),
474 };
475
476 let doc = match &schema.description {
477 Some(desc) => format!("{desc}\n\n{hint}"),
478 None => hint,
479 };
480
481 let mut file =
482 FileSpec::builder_with("model.py", Python::new()).header(future_annotations_header());
483 let exprs: Vec<&IrTypeExpr> = tu.variants.iter().map(|v| &v.content_type).collect();
484 if exprs.iter().any(|e| needs_typing_literal(e)) {
485 file = file.add_import(ImportSpec::named("typing", "Literal"));
486 }
487 let mut doc_block = String::new();
488 for line in doc.lines() {
489 doc_block.push_str(&format!("# {line}\n"));
490 }
491 file = file.add_raw(&doc_block);
492 file = file.add_code(type_alias);
493
494 if !tu.variants.is_empty() {
495 let helpers = build_tagged_union_helpers(&name, &snake_name, tu, ir);
496 file = file.add_raw(&helpers);
497 }
498
499 file.build().ok()
500}
501
502fn build_tagged_union_helpers(
503 pascal_name: &str,
504 snake_name: &str,
505 tu: &IrTaggedUnion,
506 ir: &IrSpec,
507) -> String {
508 let mut out = String::new();
509 let tag_field = &tu.discriminator_field;
510
511 let resolved_variants: Vec<(&IrTaggedVariant, String)> = tu
512 .variants
513 .iter()
514 .filter_map(|v| {
515 if let IrTypeExpr::Named(ref_name) = &v.content_type
516 && is_object_schema(ref_name, ir)
517 {
518 return Some((v, ref_name.to_pascal_case()));
519 }
520 None
521 })
522 .collect();
523
524 if resolved_variants.is_empty() {
525 return out;
526 }
527
528 out.push('\n');
530 out.push_str(&format!(
531 "def {snake_name}_from_dict(data: dict[str, object]) -> {pascal_name}:\n"
532 ));
533 match &tu.tagging {
534 TaggingStyle::Internal => {
535 out.push_str(&format!(" _tag = data[\"{tag_field}\"]\n"));
536 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
537 let kw = if i == 0 { "if" } else { "elif" };
538 out.push_str(&format!(
539 " {kw} _tag == \"{}\":\n return {py_class}.from_dict(data)\n",
540 variant.discriminator_value
541 ));
542 }
543 }
544 TaggingStyle::Adjacent { content_field } => {
545 out.push_str(&format!(" _tag = data[\"{tag_field}\"]\n"));
546 out.push_str(&format!(
547 " _content = data[\"{content_field}\"] # type: ignore[assignment]\n"
548 ));
549 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
550 let kw = if i == 0 { "if" } else { "elif" };
551 out.push_str(&format!(
552 " {kw} _tag == \"{}\":\n return {py_class}.from_dict(_content) # type: ignore[arg-type]\n",
553 variant.discriminator_value
554 ));
555 }
556 }
557 TaggingStyle::External => {
558 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
559 let kw = if i == 0 { "if" } else { "elif" };
560 out.push_str(&format!(
561 " {kw} \"{}\" in data:\n return {py_class}.from_dict(data[\"{}\"]) # type: ignore[arg-type]\n",
562 variant.discriminator_value, variant.discriminator_value
563 ));
564 }
565 }
566 }
567 out.push_str(&format!(
568 " raise ValueError(f\"Unknown discriminator value for {pascal_name}: {{data}}\")\n"
569 ));
570
571 out.push('\n');
573 out.push_str(&format!(
574 "def {snake_name}_to_dict(obj: {pascal_name}) -> dict[str, object]:\n"
575 ));
576 let last_idx = resolved_variants.len() - 1;
577 match &tu.tagging {
578 TaggingStyle::Internal => {
579 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
580 let kw = if i == 0 { "if" } else { "elif" };
581 let ignore = if i == last_idx {
582 " # type: ignore[reportUnnecessaryIsInstance]"
583 } else {
584 ""
585 };
586 out.push_str(&format!(" {kw} isinstance(obj, {py_class}):{ignore}\n"));
587 out.push_str(" result = obj.to_dict()\n");
588 out.push_str(&format!(
589 " result[\"{tag_field}\"] = \"{}\"\n",
590 variant.discriminator_value
591 ));
592 out.push_str(" return result\n");
593 }
594 }
595 TaggingStyle::Adjacent { content_field } => {
596 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
597 let kw = if i == 0 { "if" } else { "elif" };
598 let ignore = if i == last_idx {
599 " # type: ignore[reportUnnecessaryIsInstance]"
600 } else {
601 ""
602 };
603 out.push_str(&format!(" {kw} isinstance(obj, {py_class}):{ignore}\n"));
604 out.push_str(&format!(
605 " return {{\"{tag_field}\": \"{}\", \"{content_field}\": obj.to_dict()}}\n",
606 variant.discriminator_value
607 ));
608 }
609 }
610 TaggingStyle::External => {
611 for (i, (variant, py_class)) in resolved_variants.iter().enumerate() {
612 let kw = if i == 0 { "if" } else { "elif" };
613 let ignore = if i == last_idx {
614 " # type: ignore[reportUnnecessaryIsInstance]"
615 } else {
616 ""
617 };
618 out.push_str(&format!(" {kw} isinstance(obj, {py_class}):{ignore}\n"));
619 out.push_str(&format!(
620 " return {{\"{}\": obj.to_dict()}}\n",
621 variant.discriminator_value
622 ));
623 }
624 }
625 }
626 out.push_str(&format!(
627 " raise ValueError(f\"Unknown variant for {pascal_name}: {{type(obj)}}\")\n"
628 ));
629
630 out
631}
632
633pub fn python_type_name(expr: &IrTypeExpr) -> TypeName {
639 match expr {
640 IrTypeExpr::Named(name) => {
641 let py_name = name.to_pascal_case();
642 let module = format!(".{}", name.to_snake_case());
643 TypeName::importable(&module, &py_name)
644 }
645 IrTypeExpr::Primitive(p) => python_primitive_type_name(p),
646 IrTypeExpr::StringLiteral(s) => {
647 let lit = format!("Literal[\"{}\"]", escape_python_string(s));
648 TypeName::raw(&lit)
649 }
650 IrTypeExpr::StringEnum(values) => {
651 let members: Vec<String> = values
652 .iter()
653 .map(|v| format!("\"{}\"", escape_python_string(v)))
654 .collect();
655 let lit = format!("Literal[{}]", members.join(", "));
656 TypeName::raw(&lit)
657 }
658 IrTypeExpr::Array(inner) => {
659 TypeName::generic(TypeName::primitive("list"), vec![python_type_name(inner)])
660 }
661 IrTypeExpr::Map(inner) => TypeName::generic(
662 TypeName::primitive("dict"),
663 vec![TypeName::primitive("str"), python_type_name(inner)],
664 ),
665 IrTypeExpr::Union(members) => {
666 if members.is_empty() {
667 TypeName::importable("typing", "Any")
668 } else {
669 TypeName::union(members.iter().map(python_type_name).collect())
670 }
671 }
672 IrTypeExpr::Nullable(inner) => TypeName::optional(python_type_name(inner)),
673 IrTypeExpr::Any => TypeName::importable("typing", "Any"),
674 }
675}
676
677pub fn api_type_name(expr: &IrTypeExpr) -> TypeName {
679 match expr {
680 IrTypeExpr::Named(name) => {
681 let py_name = name.to_pascal_case();
682 let module = format!("..models.{}", name.to_snake_case());
683 TypeName::importable(&module, &py_name)
684 }
685 IrTypeExpr::Array(inner) => {
686 TypeName::generic(TypeName::primitive("list"), vec![api_type_name(inner)])
687 }
688 IrTypeExpr::Map(inner) => TypeName::generic(
689 TypeName::primitive("dict"),
690 vec![TypeName::primitive("str"), api_type_name(inner)],
691 ),
692 IrTypeExpr::Union(members) => {
693 if members.is_empty() {
694 TypeName::importable("typing", "Any")
695 } else {
696 TypeName::union(members.iter().map(api_type_name).collect())
697 }
698 }
699 IrTypeExpr::Nullable(inner) => TypeName::optional(api_type_name(inner)),
700 _ => python_type_name(expr),
701 }
702}
703
704fn python_primitive_type_name(p: &IrPrimitive) -> TypeName {
705 match p {
706 IrPrimitive::String | IrPrimitive::StringWithFormat(_) => TypeName::primitive("str"),
707 IrPrimitive::Integer | IrPrimitive::IntegerWithFormat(_) => TypeName::primitive("int"),
708 IrPrimitive::Number | IrPrimitive::NumberWithFormat(_) => TypeName::primitive("float"),
709 IrPrimitive::Boolean => TypeName::primitive("bool"),
710 IrPrimitive::Binary => TypeName::primitive("bytes"),
711 IrPrimitive::Date => TypeName::importable("datetime", "date"),
712 IrPrimitive::DateTime => TypeName::importable("datetime", "datetime"),
713 IrPrimitive::Uuid => TypeName::importable("uuid", "UUID"),
714 }
715}
716
717pub fn python_type_str(expr: &IrTypeExpr) -> String {
719 match expr {
720 IrTypeExpr::Named(name) => name.to_pascal_case(),
721 IrTypeExpr::Primitive(p) => python_primitive(p).to_string(),
722 IrTypeExpr::StringLiteral(s) => {
723 format!("Literal[\"{}\"]", escape_python_string(s))
724 }
725 IrTypeExpr::StringEnum(values) => {
726 let members: Vec<String> = values
727 .iter()
728 .map(|v| format!("\"{}\"", escape_python_string(v)))
729 .collect();
730 format!("Literal[{}]", members.join(", "))
731 }
732 IrTypeExpr::Array(inner) => {
733 let inner_ty = python_type_str(inner);
734 format!("list[{inner_ty}]")
735 }
736 IrTypeExpr::Map(inner) => {
737 let inner_ty = python_type_str(inner);
738 format!("dict[str, {inner_ty}]")
739 }
740 IrTypeExpr::Union(members) => {
741 let parts: Vec<String> = members.iter().map(python_type_str).collect();
742 if parts.is_empty() {
743 "Any".to_string()
744 } else {
745 parts.join(" | ")
746 }
747 }
748 IrTypeExpr::Nullable(inner) => {
749 let inner_ty = python_type_str(inner);
750 format!("{inner_ty} | None")
751 }
752 IrTypeExpr::Any => "Any".to_string(),
753 }
754}
755
756fn python_primitive(p: &IrPrimitive) -> &'static str {
757 match p {
758 IrPrimitive::String | IrPrimitive::StringWithFormat(_) => "str",
759 IrPrimitive::Integer | IrPrimitive::IntegerWithFormat(_) => "int",
760 IrPrimitive::Number | IrPrimitive::NumberWithFormat(_) => "float",
761 IrPrimitive::Boolean => "bool",
762 IrPrimitive::Binary => "bytes",
763 IrPrimitive::Date => "datetime.date",
764 IrPrimitive::DateTime => "datetime.datetime",
765 IrPrimitive::Uuid => "uuid.UUID",
766 }
767}
768
769fn needs_typing_literal(expr: &IrTypeExpr) -> bool {
770 match expr {
771 IrTypeExpr::StringLiteral(_) | IrTypeExpr::StringEnum(_) => true,
772 IrTypeExpr::Array(inner) | IrTypeExpr::Map(inner) | IrTypeExpr::Nullable(inner) => {
773 needs_typing_literal(inner)
774 }
775 IrTypeExpr::Union(members) => members.iter().any(needs_typing_literal),
776 _ => false,
777 }
778}
779
780fn needs_typing_literal_in_props(props: &indexmap::IndexMap<String, IrProperty>) -> bool {
781 props.values().any(|p| needs_typing_literal(&p.type_expr))
782}
783
784fn needs_typing_literal_in_exprs(exprs: &[IrTypeExpr]) -> bool {
785 exprs.iter().any(needs_typing_literal)
786}
787
788fn render_to_dict_expr(
793 value_expr: &str,
794 json_name: &str,
795 ir: &IrSpec,
796 properties: &indexmap::IndexMap<String, IrProperty>,
797) -> String {
798 let prop = properties.get(json_name);
799 let type_expr = prop.map(|p| &p.type_expr);
800 match type_expr {
801 Some(IrTypeExpr::Named(ref_name)) => {
802 if is_object_schema(ref_name, ir) {
803 format!("{value_expr}.to_dict()")
804 } else {
805 value_expr.to_string()
806 }
807 }
808 Some(IrTypeExpr::Array(inner)) => {
809 if let IrTypeExpr::Named(ref_name) = inner.as_ref()
810 && is_object_schema(ref_name, ir)
811 {
812 return format!("[item.to_dict() for item in {value_expr}]");
813 }
814 value_expr.to_string()
815 }
816 Some(IrTypeExpr::Nullable(inner)) => {
817 if let IrTypeExpr::Named(ref_name) = inner.as_ref()
818 && is_object_schema(ref_name, ir)
819 {
820 return format!("{value_expr}.to_dict() if {value_expr} is not None else None");
821 }
822 value_expr.to_string()
823 }
824 _ => value_expr.to_string(),
825 }
826}
827
828fn render_from_dict_expr(
829 json_name: &str,
830 ir: &IrSpec,
831 properties: &indexmap::IndexMap<String, IrProperty>,
832) -> String {
833 let prop = properties.get(json_name);
834 let type_expr = prop.map(|p| &p.type_expr);
835 let accessor = format!("data[\"{json_name}\"]");
836 match type_expr {
837 Some(IrTypeExpr::Named(ref_name)) => {
838 if is_object_schema(ref_name, ir) {
839 let py_name = ref_name.to_pascal_case();
840 format!("{py_name}.from_dict({accessor}) # type: ignore[arg-type]")
841 } else {
842 format!("{accessor} # type: ignore[assignment]")
843 }
844 }
845 Some(IrTypeExpr::Array(inner)) => {
846 if let IrTypeExpr::Named(ref_name) = inner.as_ref()
847 && is_object_schema(ref_name, ir)
848 {
849 let py_name = ref_name.to_pascal_case();
850 return format!(
851 "[{py_name}.from_dict(item) for item in {accessor}] # type: ignore[union-attr]"
852 );
853 }
854 format!("{accessor} # type: ignore[assignment]")
855 }
856 _ => format!("{accessor} # type: ignore[assignment]"),
857 }
858}
859
860fn render_from_dict_optional_expr(
861 json_name: &str,
862 ir: &IrSpec,
863 properties: &indexmap::IndexMap<String, IrProperty>,
864) -> String {
865 let prop = properties.get(json_name);
866 let type_expr = prop.map(|p| &p.type_expr);
867 let raw_type = type_expr.map(|t| match t {
868 IrTypeExpr::Nullable(inner) => inner.as_ref(),
869 _ => t,
870 });
871 let accessor = format!("data.get(\"{json_name}\")");
872 match raw_type {
873 Some(IrTypeExpr::Named(ref_name)) => {
874 if is_object_schema(ref_name, ir) {
875 let py_name = ref_name.to_pascal_case();
876 format!(
877 "{py_name}.from_dict({accessor}) if {accessor} is not None else None # type: ignore[arg-type]"
878 )
879 } else {
880 format!("{accessor} # type: ignore[assignment]")
881 }
882 }
883 Some(IrTypeExpr::Array(inner)) => {
884 if let IrTypeExpr::Named(ref_name) = inner.as_ref()
885 && is_object_schema(ref_name, ir)
886 {
887 let py_name = ref_name.to_pascal_case();
888 return format!(
889 "[{py_name}.from_dict(item) for item in {accessor}] if {accessor} is not None else None # type: ignore[union-attr]"
890 );
891 }
892 format!("{accessor} # type: ignore[assignment]")
893 }
894 _ => format!("{accessor} # type: ignore[assignment]"),
895 }
896}
897
898pub fn is_object_schema(name: &str, ir: &IrSpec) -> bool {
899 ir.schemas
900 .get(name)
901 .is_some_and(|s| matches!(s.kind, IrSchemaKind::Object(_)))
902}
903
904pub fn python_field_name(name: &str) -> String {
909 let snake = name.to_snake_case();
910 if snake.is_empty() {
911 return "field_".to_string();
912 }
913 match snake.as_str() {
914 "and" | "as" | "assert" | "async" | "await" | "break" | "class" | "continue" | "def"
915 | "del" | "elif" | "else" | "except" | "finally" | "for" | "from" | "global" | "if"
916 | "import" | "in" | "is" | "lambda" | "nonlocal" | "not" | "or" | "pass" | "raise"
917 | "return" | "try" | "while" | "with" | "yield" | "type" => {
918 format!("{snake}_")
919 }
920 _ => snake,
921 }
922}
923
924fn python_enum_member_name(value: &str) -> String {
925 let upper = value
926 .to_uppercase()
927 .replace(|c: char| !c.is_alphanumeric(), "_");
928 if upper.is_empty() {
929 return "EMPTY".to_string();
930 }
931 if upper.starts_with(|c: char| c.is_ascii_digit()) {
932 return format!("N{upper}");
933 }
934 upper
935}
936
937fn escape_python_string(s: &str) -> String {
938 s.replace('\\', "\\\\").replace('"', "\\\"")
939}
940
941fn escape_docstring(s: &str) -> String {
942 s.replace("\"\"\"", "\\\"\\\"\\\"")
943 .lines()
944 .next()
945 .unwrap_or("")
946 .to_string()
947}