1use proc_macro::TokenStream;
10use proc_macro2::TokenStream as TokenStream2;
11use quote::quote;
12use syn::{
13 parse_macro_input, spanned::Spanned, Data, DeriveInput, Fields, GenericArgument, LitStr,
14 PathArguments, Type, TypePath,
15};
16
17#[proc_macro_derive(Model, attributes(rustango))]
19pub fn derive_model(input: TokenStream) -> TokenStream {
20 let input = parse_macro_input!(input as DeriveInput);
21 expand(&input)
22 .unwrap_or_else(syn::Error::into_compile_error)
23 .into()
24}
25
26#[proc_macro_derive(ViewSet, attributes(viewset))]
59pub fn derive_viewset(input: TokenStream) -> TokenStream {
60 let input = parse_macro_input!(input as DeriveInput);
61 expand_viewset(&input)
62 .unwrap_or_else(syn::Error::into_compile_error)
63 .into()
64}
65
66#[proc_macro_derive(Form, attributes(form))]
94pub fn derive_form(input: TokenStream) -> TokenStream {
95 let input = parse_macro_input!(input as DeriveInput);
96 expand_form(&input)
97 .unwrap_or_else(syn::Error::into_compile_error)
98 .into()
99}
100
101#[proc_macro_derive(Serializer, attributes(serializer))]
114pub fn derive_serializer(input: TokenStream) -> TokenStream {
115 let input = parse_macro_input!(input as DeriveInput);
116 expand_serializer(&input)
117 .unwrap_or_else(syn::Error::into_compile_error)
118 .into()
119}
120
121#[proc_macro]
156pub fn embed_migrations(input: TokenStream) -> TokenStream {
157 expand_embed_migrations(input.into())
158 .unwrap_or_else(syn::Error::into_compile_error)
159 .into()
160}
161
162#[proc_macro_attribute]
185pub fn main(args: TokenStream, item: TokenStream) -> TokenStream {
186 expand_main(args.into(), item.into())
187 .unwrap_or_else(syn::Error::into_compile_error)
188 .into()
189}
190
191fn expand_main(args: TokenStream2, item: TokenStream2) -> syn::Result<TokenStream2> {
192 let mut input: syn::ItemFn = syn::parse2(item)?;
193 if input.sig.asyncness.is_none() {
194 return Err(syn::Error::new(
195 input.sig.ident.span(),
196 "`#[rustango::main]` must wrap an `async fn`",
197 ));
198 }
199
200 let tokio_attr = if args.is_empty() {
203 quote! { #[::tokio::main] }
204 } else {
205 quote! { #[::tokio::main(#args)] }
206 };
207
208 let body = input.block.clone();
210 input.block = syn::parse2(quote! {{
211 {
212 use ::rustango::__private_runtime::tracing_subscriber::{self, EnvFilter};
213 let _ = tracing_subscriber::fmt()
216 .with_env_filter(
217 EnvFilter::try_from_default_env()
218 .unwrap_or_else(|_| EnvFilter::new("info,sqlx=warn")),
219 )
220 .try_init();
221 }
222 #body
223 }})?;
224
225 Ok(quote! {
226 #tokio_attr
227 #input
228 })
229}
230
231fn expand_embed_migrations(input: TokenStream2) -> syn::Result<TokenStream2> {
232 let path_str = if input.is_empty() {
234 "./migrations".to_string()
235 } else {
236 let lit: LitStr = syn::parse2(input)?;
237 lit.value()
238 };
239
240 let manifest = std::env::var("CARGO_MANIFEST_DIR").map_err(|_| {
241 syn::Error::new(
242 proc_macro2::Span::call_site(),
243 "embed_migrations! must be invoked during a Cargo build (CARGO_MANIFEST_DIR not set)",
244 )
245 })?;
246 let abs = std::path::Path::new(&manifest).join(&path_str);
247
248 let mut entries: Vec<(String, std::path::PathBuf)> = Vec::new();
249 if abs.is_dir() {
250 let read = std::fs::read_dir(&abs).map_err(|e| {
251 syn::Error::new(
252 proc_macro2::Span::call_site(),
253 format!("embed_migrations!: cannot read {}: {e}", abs.display()),
254 )
255 })?;
256 for entry in read.flatten() {
257 let path = entry.path();
258 if !path.is_file() {
259 continue;
260 }
261 if path.extension().and_then(|s| s.to_str()) != Some("json") {
262 continue;
263 }
264 let Some(stem) = path.file_stem().and_then(|s| s.to_str()) else {
265 continue;
266 };
267 entries.push((stem.to_owned(), path));
268 }
269 }
270 entries.sort_by(|a, b| a.0.cmp(&b.0));
271
272 let mut chain_names: Vec<String> = Vec::with_capacity(entries.len());
285 let mut prev_refs: Vec<(String, Option<String>)> = Vec::with_capacity(entries.len());
286 for (stem, path) in &entries {
287 let raw = std::fs::read_to_string(path).map_err(|e| {
288 syn::Error::new(
289 proc_macro2::Span::call_site(),
290 format!(
291 "embed_migrations!: cannot read {} for chain validation: {e}",
292 path.display()
293 ),
294 )
295 })?;
296 let json: serde_json::Value = serde_json::from_str(&raw).map_err(|e| {
297 syn::Error::new(
298 proc_macro2::Span::call_site(),
299 format!(
300 "embed_migrations!: {} is not valid JSON: {e}",
301 path.display()
302 ),
303 )
304 })?;
305 let name = json
306 .get("name")
307 .and_then(|v| v.as_str())
308 .ok_or_else(|| {
309 syn::Error::new(
310 proc_macro2::Span::call_site(),
311 format!(
312 "embed_migrations!: {} is missing the `name` field",
313 path.display()
314 ),
315 )
316 })?
317 .to_owned();
318 if name != *stem {
319 return Err(syn::Error::new(
320 proc_macro2::Span::call_site(),
321 format!(
322 "embed_migrations!: file stem `{stem}` does not match the migration's \
323 `name` field `{name}` — rename the file or fix the JSON",
324 ),
325 ));
326 }
327 let prev = json.get("prev").and_then(|v| v.as_str()).map(str::to_owned);
328 chain_names.push(name.clone());
329 prev_refs.push((name, prev));
330 }
331
332 let name_set: std::collections::HashSet<&str> =
333 chain_names.iter().map(String::as_str).collect();
334 for (name, prev) in &prev_refs {
335 if let Some(p) = prev {
336 if !name_set.contains(p.as_str()) {
337 return Err(syn::Error::new(
338 proc_macro2::Span::call_site(),
339 format!(
340 "embed_migrations!: broken migration chain — `{name}` declares \
341 prev=`{p}` but no migration with that name exists in {}",
342 abs.display()
343 ),
344 ));
345 }
346 }
347 }
348
349 let pairs: Vec<TokenStream2> = entries
350 .iter()
351 .map(|(name, path)| {
352 let path_lit = path.display().to_string();
353 quote! { (#name, ::core::include_str!(#path_lit)) }
354 })
355 .collect();
356
357 Ok(quote! {
358 {
359 const __RUSTANGO_EMBEDDED: &[(&'static str, &'static str)] = &[#(#pairs),*];
360 __RUSTANGO_EMBEDDED
361 }
362 })
363}
364
365fn expand(input: &DeriveInput) -> syn::Result<TokenStream2> {
366 let struct_name = &input.ident;
367
368 let Data::Struct(data) = &input.data else {
369 return Err(syn::Error::new_spanned(
370 struct_name,
371 "Model can only be derived on structs",
372 ));
373 };
374 let Fields::Named(named) = &data.fields else {
375 return Err(syn::Error::new_spanned(
376 struct_name,
377 "Model requires a struct with named fields",
378 ));
379 };
380
381 let container = parse_container_attrs(input)?;
382 let table = container
383 .table
384 .unwrap_or_else(|| to_snake_case(&struct_name.to_string()));
385 let model_name = struct_name.to_string();
386
387 let collected = collect_fields(named, &table)?;
388
389 if let Some((ref display, span)) = container.display {
391 if !collected.field_names.iter().any(|n| n == display) {
392 return Err(syn::Error::new(
393 span,
394 format!("`display = \"{display}\"` does not match any field on this struct"),
395 ));
396 }
397 }
398 let display = container.display.map(|(name, _)| name);
399 let app_label = container.app.clone();
400
401 if let Some(admin) = &container.admin {
403 for (label, list) in [
404 ("list_display", &admin.list_display),
405 ("search_fields", &admin.search_fields),
406 ("readonly_fields", &admin.readonly_fields),
407 ("list_filter", &admin.list_filter),
408 ] {
409 if let Some((names, span)) = list {
410 for name in names {
411 if !collected.field_names.iter().any(|n| n == name) {
412 return Err(syn::Error::new(
413 *span,
414 format!(
415 "`{label} = \"{name}\"`: \"{name}\" is not a declared field on this struct"
416 ),
417 ));
418 }
419 }
420 }
421 }
422 if let Some((pairs, span)) = &admin.ordering {
423 for (name, _) in pairs {
424 if !collected.field_names.iter().any(|n| n == name) {
425 return Err(syn::Error::new(
426 *span,
427 format!(
428 "`ordering = \"{name}\"`: \"{name}\" is not a declared field on this struct"
429 ),
430 ));
431 }
432 }
433 }
434 if let Some((groups, span)) = &admin.fieldsets {
435 for (_, fields) in groups {
436 for name in fields {
437 if !collected.field_names.iter().any(|n| n == name) {
438 return Err(syn::Error::new(
439 *span,
440 format!(
441 "`fieldsets`: \"{name}\" is not a declared field on this struct"
442 ),
443 ));
444 }
445 }
446 }
447 }
448 }
449 if let Some(audit) = &container.audit {
450 if let Some((names, span)) = &audit.track {
451 for name in names {
452 if !collected.field_names.iter().any(|n| n == name) {
453 return Err(syn::Error::new(
454 *span,
455 format!(
456 "`audit(track = \"{name}\")`: \"{name}\" is not a declared field on this struct"
457 ),
458 ));
459 }
460 }
461 }
462 }
463
464 let audit_track_names: Option<Vec<String>> = container.audit.as_ref().map(|audit| {
467 audit
468 .track
469 .as_ref()
470 .map(|(names, _)| names.clone())
471 .unwrap_or_default()
472 });
473
474 let mut all_indexes: Vec<IndexAttr> = container.indexes;
476 for field in &named.named {
477 let ident = field.ident.as_ref().expect("named");
478 let col = to_snake_case(&ident.to_string()); if let Ok(fa) = parse_field_attrs(field) {
481 if fa.index {
482 let col_name = fa.column.clone().unwrap_or_else(|| col.clone());
483 let auto_name = if fa.index_unique {
484 format!("{table}_{col_name}_uq_idx")
485 } else {
486 format!("{table}_{col_name}_idx")
487 };
488 all_indexes.push(IndexAttr {
489 name: fa.index_name.or(Some(auto_name)),
490 columns: vec![col_name],
491 unique: fa.index_unique,
492 });
493 }
494 }
495 }
496
497 let model_impl = model_impl_tokens(
498 struct_name,
499 &model_name,
500 &table,
501 display.as_deref(),
502 app_label.as_deref(),
503 container.admin.as_ref(),
504 &collected.field_schemas,
505 collected.soft_delete_column.as_deref(),
506 container.permissions,
507 audit_track_names.as_deref(),
508 &container.m2m,
509 &all_indexes,
510 &container.checks,
511 &container.composite_fks,
512 &container.generic_fks,
513 container.scope.as_deref(),
514 );
515 let module_ident = column_module_ident(struct_name);
516 let column_consts = column_const_tokens(&module_ident, &collected.column_entries);
517 let audited_fields: Option<Vec<&ColumnEntry>> = container.audit.as_ref().map(|audit| {
518 let track_set: Option<std::collections::HashSet<&str>> = audit
519 .track
520 .as_ref()
521 .map(|(names, _)| names.iter().map(String::as_str).collect());
522 collected
523 .column_entries
524 .iter()
525 .filter(|c| {
526 track_set
527 .as_ref()
528 .map_or(true, |s| s.contains(c.name.as_str()))
529 })
530 .collect()
531 });
532 let inherent_impl = inherent_impl_tokens(
533 struct_name,
534 &collected,
535 collected.primary_key.as_ref(),
536 &column_consts,
537 audited_fields.as_deref(),
538 &all_indexes,
539 );
540 let column_module = column_module_tokens(&module_ident, struct_name, &collected.column_entries);
541 let from_row_impl = from_row_impl_tokens(struct_name, &collected.from_row_inits);
542 let reverse_helpers = reverse_helper_tokens(struct_name, &collected.fk_relations);
543 let m2m_accessors = m2m_accessor_tokens(struct_name, &container.m2m);
544
545 Ok(quote! {
546 #model_impl
547 #inherent_impl
548 #from_row_impl
549 #column_module
550 #reverse_helpers
551 #m2m_accessors
552
553 ::rustango::core::inventory::submit! {
554 ::rustango::core::ModelEntry {
555 schema: <#struct_name as ::rustango::core::Model>::SCHEMA,
556 module_path: ::core::module_path!(),
561 }
562 }
563 })
564}
565
566fn load_related_impl_tokens(struct_name: &syn::Ident, fk_relations: &[FkRelation]) -> TokenStream2 {
577 let arms = fk_relations.iter().map(|rel| {
578 let parent_ty = &rel.parent_type;
579 let fk_col = rel.fk_column.as_str();
580 let field_ident = syn::Ident::new(fk_col, proc_macro2::Span::call_site());
583 let (variant_ident, default_expr) = rel.pk_kind.sqlvalue_match_arm();
584 let assign = if rel.nullable {
585 quote! {
586 self.#field_ident = ::core::option::Option::Some(
587 ::rustango::sql::ForeignKey::loaded(_pk, _parent),
588 );
589 }
590 } else {
591 quote! {
592 self.#field_ident = ::rustango::sql::ForeignKey::loaded(_pk, _parent);
593 }
594 };
595 quote! {
596 #fk_col => {
597 let _parent: #parent_ty = <#parent_ty>::__rustango_from_aliased_row(row, alias)?;
598 let _pk = match <#parent_ty>::__rustango_pk_value(&_parent) {
605 ::rustango::core::SqlValue::#variant_ident(v) => v,
606 _other => {
607 ::core::debug_assert!(
608 false,
609 "rustango macro bug: load_related on FK `{}` expected \
610 SqlValue::{} from parent's __rustango_pk_value but got \
611 {:?} — file a bug at https://github.com/ujeenet/rustango",
612 #fk_col,
613 ::core::stringify!(#variant_ident),
614 _other,
615 );
616 #default_expr
617 }
618 };
619 #assign
620 ::core::result::Result::Ok(true)
621 }
622 }
623 });
624 quote! {
625 impl ::rustango::sql::LoadRelated for #struct_name {
626 #[allow(unused_variables)]
627 fn __rustango_load_related(
628 &mut self,
629 row: &::rustango::sql::sqlx::postgres::PgRow,
630 field_name: &str,
631 alias: &str,
632 ) -> ::core::result::Result<bool, ::rustango::sql::sqlx::Error> {
633 match field_name {
634 #( #arms )*
635 _ => ::core::result::Result::Ok(false),
636 }
637 }
638 }
639 }
640}
641
642fn load_related_impl_my_tokens(
650 struct_name: &syn::Ident,
651 fk_relations: &[FkRelation],
652) -> TokenStream2 {
653 let arms = fk_relations.iter().map(|rel| {
654 let parent_ty = &rel.parent_type;
655 let fk_col = rel.fk_column.as_str();
656 let field_ident = syn::Ident::new(fk_col, proc_macro2::Span::call_site());
657 let (variant_ident, default_expr) = rel.pk_kind.sqlvalue_match_arm();
658 let assign = if rel.nullable {
659 quote! {
660 __self.#field_ident = ::core::option::Option::Some(
661 ::rustango::sql::ForeignKey::loaded(_pk, _parent),
662 );
663 }
664 } else {
665 quote! {
666 __self.#field_ident = ::rustango::sql::ForeignKey::loaded(_pk, _parent);
667 }
668 };
669 quote! {
674 #fk_col => {
675 let _parent: #parent_ty =
676 <#parent_ty>::__rustango_from_aliased_my_row(row, alias)?;
677 let _pk = match <#parent_ty>::__rustango_pk_value(&_parent) {
680 ::rustango::core::SqlValue::#variant_ident(v) => v,
681 _other => {
682 ::core::debug_assert!(
683 false,
684 "rustango macro bug: load_related on FK `{}` expected \
685 SqlValue::{} from parent's __rustango_pk_value but got \
686 {:?} — file a bug at https://github.com/ujeenet/rustango",
687 #fk_col,
688 ::core::stringify!(#variant_ident),
689 _other,
690 );
691 #default_expr
692 }
693 };
694 #assign
695 ::core::result::Result::Ok(true)
696 }
697 }
698 });
699 quote! {
700 ::rustango::__impl_my_load_related!(#struct_name, |__self, row, field_name, alias| {
701 #( #arms )*
702 });
703 }
704}
705
706fn load_related_impl_sqlite_tokens(
710 struct_name: &syn::Ident,
711 fk_relations: &[FkRelation],
712) -> TokenStream2 {
713 let arms = fk_relations.iter().map(|rel| {
714 let parent_ty = &rel.parent_type;
715 let fk_col = rel.fk_column.as_str();
716 let field_ident = syn::Ident::new(fk_col, proc_macro2::Span::call_site());
717 let (variant_ident, default_expr) = rel.pk_kind.sqlvalue_match_arm();
718 let assign = if rel.nullable {
719 quote! {
720 __self.#field_ident = ::core::option::Option::Some(
721 ::rustango::sql::ForeignKey::loaded(_pk, _parent),
722 );
723 }
724 } else {
725 quote! {
726 __self.#field_ident = ::rustango::sql::ForeignKey::loaded(_pk, _parent);
727 }
728 };
729 quote! {
730 #fk_col => {
731 let _parent: #parent_ty =
732 <#parent_ty>::__rustango_from_aliased_sqlite_row(row, alias)?;
733 let _pk = match <#parent_ty>::__rustango_pk_value(&_parent) {
734 ::rustango::core::SqlValue::#variant_ident(v) => v,
735 _other => {
736 ::core::debug_assert!(
737 false,
738 "rustango macro bug: load_related on FK `{}` expected \
739 SqlValue::{} from parent's __rustango_pk_value but got \
740 {:?} — file a bug at https://github.com/ujeenet/rustango",
741 #fk_col,
742 ::core::stringify!(#variant_ident),
743 _other,
744 );
745 #default_expr
746 }
747 };
748 #assign
749 ::core::result::Result::Ok(true)
750 }
751 }
752 });
753 quote! {
754 ::rustango::__impl_sqlite_load_related!(#struct_name, |__self, row, field_name, alias| {
755 #( #arms )*
756 });
757 }
758}
759
760fn fk_pk_access_impl_tokens(struct_name: &syn::Ident, fk_relations: &[FkRelation]) -> TokenStream2 {
768 let arms = fk_relations.iter().map(|rel| {
769 let fk_col = rel.fk_column.as_str();
770 let field_ident = syn::Ident::new(fk_col, proc_macro2::Span::call_site());
771 if rel.pk_kind == DetectedKind::I64 {
772 if rel.nullable {
778 quote! {
779 #fk_col => self.#field_ident
780 .as_ref()
781 .map(|fk| ::rustango::sql::ForeignKey::pk(fk)),
782 }
783 } else {
784 quote! {
785 #fk_col => ::core::option::Option::Some(self.#field_ident.pk()),
786 }
787 }
788 } else {
789 quote! {
797 #fk_col => ::core::option::Option::None,
798 }
799 }
800 });
801 let value_arms = fk_relations.iter().map(|rel| {
807 let fk_col = rel.fk_column.as_str();
808 let field_ident = syn::Ident::new(fk_col, proc_macro2::Span::call_site());
809 if rel.nullable {
810 quote! {
811 #fk_col => self.#field_ident
812 .as_ref()
813 .map(|fk| ::core::convert::Into::<::rustango::core::SqlValue>::into(
814 ::rustango::sql::ForeignKey::pk(fk)
815 )),
816 }
817 } else {
818 quote! {
819 #fk_col => ::core::option::Option::Some(
820 ::core::convert::Into::<::rustango::core::SqlValue>::into(
821 self.#field_ident.pk()
822 )
823 ),
824 }
825 }
826 });
827 quote! {
828 impl ::rustango::sql::FkPkAccess for #struct_name {
829 #[allow(unused_variables)]
830 fn __rustango_fk_pk(&self, field_name: &str) -> ::core::option::Option<i64> {
831 match field_name {
832 #( #arms )*
833 _ => ::core::option::Option::None,
834 }
835 }
836 #[allow(unused_variables)]
837 fn __rustango_fk_pk_value(
838 &self,
839 field_name: &str,
840 ) -> ::core::option::Option<::rustango::core::SqlValue> {
841 match field_name {
842 #( #value_arms )*
843 _ => ::core::option::Option::None,
844 }
845 }
846 }
847 }
848}
849
850fn reverse_helper_tokens(child_ident: &syn::Ident, fk_relations: &[FkRelation]) -> TokenStream2 {
856 if fk_relations.is_empty() {
857 return TokenStream2::new();
858 }
859 let suffix = format!("{}_set", to_snake_case(&child_ident.to_string()));
863 let method_ident = syn::Ident::new(&suffix, child_ident.span());
864 let impls = fk_relations.iter().map(|rel| {
865 let parent_ty = &rel.parent_type;
866 let fk_col = rel.fk_column.as_str();
867 let doc = format!(
868 "Fetch every `{child_ident}` whose `{fk_col}` foreign key points at this row. \
869 Single SQL query — `SELECT … FROM <{child_ident} table> WHERE {fk_col} = $1` — \
870 generated from the FK declaration on `{child_ident}::{fk_col}`. Composes with \
871 further `{child_ident}::objects()` filters via direct queryset use."
872 );
873 quote! {
874 impl #parent_ty {
875 #[doc = #doc]
876 pub async fn #method_ident<'_c, _E>(
881 &self,
882 _executor: _E,
883 ) -> ::core::result::Result<
884 ::std::vec::Vec<#child_ident>,
885 ::rustango::sql::ExecError,
886 >
887 where
888 _E: ::rustango::sql::sqlx::Executor<
889 '_c,
890 Database = ::rustango::sql::sqlx::Postgres,
891 >,
892 {
893 let _pk: ::rustango::core::SqlValue = self.__rustango_pk_value();
894 ::rustango::query::QuerySet::<#child_ident>::new()
895 .filter(#fk_col, ::rustango::core::Op::Eq, _pk)
896 .fetch_on(_executor)
897 .await
898 }
899 }
900 }
901 });
902 quote! { #( #impls )* }
903}
904
905fn m2m_accessor_tokens(struct_name: &syn::Ident, m2m_relations: &[M2MAttr]) -> TokenStream2 {
908 if m2m_relations.is_empty() {
909 return TokenStream2::new();
910 }
911 let methods = m2m_relations.iter().map(|rel| {
912 let method_name = format!("{}_m2m", rel.name);
913 let method_ident = syn::Ident::new(&method_name, struct_name.span());
914 let through = rel.through.as_str();
915 let src_col = rel.src.as_str();
916 let dst_col = rel.dst.as_str();
917 quote! {
918 pub fn #method_ident(&self) -> ::rustango::sql::M2MManager {
919 ::rustango::sql::M2MManager {
920 src_pk: self.__rustango_pk_value(),
921 through: #through,
922 src_col: #src_col,
923 dst_col: #dst_col,
924 }
925 }
926 }
927 });
928 quote! {
929 impl #struct_name {
930 #( #methods )*
931 }
932 }
933}
934
935struct ColumnEntry {
936 ident: syn::Ident,
939 value_ty: Type,
941 name: String,
943 column: String,
945 field_type_tokens: TokenStream2,
947}
948
949struct CollectedFields {
950 field_schemas: Vec<TokenStream2>,
951 from_row_inits: Vec<TokenStream2>,
952 from_aliased_row_inits: Vec<TokenStream2>,
956 insert_columns: Vec<TokenStream2>,
959 insert_values: Vec<TokenStream2>,
962 insert_pushes: Vec<TokenStream2>,
967 returning_cols: Vec<TokenStream2>,
970 auto_assigns: Vec<TokenStream2>,
973 auto_field_idents: Vec<(syn::Ident, String)>,
977 first_auto_value_ty: Option<Type>,
980 bulk_pushes_no_auto: Vec<TokenStream2>,
984 bulk_pushes_all: Vec<TokenStream2>,
988 bulk_columns_no_auto: Vec<TokenStream2>,
991 bulk_columns_all: Vec<TokenStream2>,
994 bulk_auto_uniformity: Vec<TokenStream2>,
998 first_auto_ident: Option<syn::Ident>,
1001 has_auto: bool,
1003 pk_is_auto: bool,
1007 update_assignments: Vec<TokenStream2>,
1010 upsert_update_columns: Vec<TokenStream2>,
1013 primary_key: Option<(syn::Ident, String)>,
1014 column_entries: Vec<ColumnEntry>,
1015 field_names: Vec<String>,
1018 fk_relations: Vec<FkRelation>,
1023 soft_delete_column: Option<String>,
1028}
1029
1030#[derive(Clone)]
1031struct FkRelation {
1032 parent_type: Type,
1035 fk_column: String,
1038 pk_kind: DetectedKind,
1043 nullable: bool,
1048}
1049
1050fn collect_fields(named: &syn::FieldsNamed, table: &str) -> syn::Result<CollectedFields> {
1051 let cap = named.named.len();
1052 let mut out = CollectedFields {
1053 field_schemas: Vec::with_capacity(cap),
1054 from_row_inits: Vec::with_capacity(cap),
1055 from_aliased_row_inits: Vec::with_capacity(cap),
1056 insert_columns: Vec::with_capacity(cap),
1057 insert_values: Vec::with_capacity(cap),
1058 insert_pushes: Vec::with_capacity(cap),
1059 returning_cols: Vec::new(),
1060 auto_assigns: Vec::new(),
1061 auto_field_idents: Vec::new(),
1062 first_auto_value_ty: None,
1063 bulk_pushes_no_auto: Vec::with_capacity(cap),
1064 bulk_pushes_all: Vec::with_capacity(cap),
1065 bulk_columns_no_auto: Vec::with_capacity(cap),
1066 bulk_columns_all: Vec::with_capacity(cap),
1067 bulk_auto_uniformity: Vec::new(),
1068 first_auto_ident: None,
1069 has_auto: false,
1070 pk_is_auto: false,
1071 update_assignments: Vec::with_capacity(cap),
1072 upsert_update_columns: Vec::with_capacity(cap),
1073 primary_key: None,
1074 column_entries: Vec::with_capacity(cap),
1075 field_names: Vec::with_capacity(cap),
1076 fk_relations: Vec::new(),
1077 soft_delete_column: None,
1078 };
1079
1080 for field in &named.named {
1081 let info = process_field(field, table)?;
1082 out.field_names.push(info.ident.to_string());
1083 out.field_schemas.push(info.schema);
1084 out.from_row_inits.push(info.from_row_init);
1085 out.from_aliased_row_inits.push(info.from_aliased_row_init);
1086 if let Some(parent_ty) = info.fk_inner.clone() {
1087 out.fk_relations.push(FkRelation {
1088 parent_type: parent_ty,
1089 fk_column: info.column.clone(),
1090 pk_kind: info.fk_pk_kind,
1091 nullable: info.nullable,
1092 });
1093 }
1094 if info.soft_delete {
1095 if out.soft_delete_column.is_some() {
1096 return Err(syn::Error::new_spanned(
1097 field,
1098 "only one field may be marked `#[rustango(soft_delete)]`",
1099 ));
1100 }
1101 out.soft_delete_column = Some(info.column.clone());
1102 }
1103 let column = info.column.as_str();
1104 let ident = info.ident;
1105 if info.generated_as.is_some() {
1114 out.column_entries.push(ColumnEntry {
1115 ident: ident.clone(),
1116 value_ty: info.value_ty.clone(),
1117 name: ident.to_string(),
1118 column: info.column.clone(),
1119 field_type_tokens: info.field_type_tokens,
1120 });
1121 continue;
1122 }
1123 out.insert_columns.push(quote!(#column));
1124 out.insert_values.push(quote! {
1125 ::core::convert::Into::<::rustango::core::SqlValue>::into(
1126 ::core::clone::Clone::clone(&self.#ident)
1127 )
1128 });
1129 if info.auto {
1130 out.has_auto = true;
1131 if out.first_auto_ident.is_none() {
1132 out.first_auto_ident = Some(ident.clone());
1133 out.first_auto_value_ty = auto_inner_type(info.value_ty).cloned();
1134 }
1135 out.returning_cols.push(quote!(#column));
1136 out.auto_field_idents
1137 .push((ident.clone(), info.column.clone()));
1138 out.auto_assigns.push(quote! {
1139 self.#ident = ::rustango::sql::try_get_returning(_returning_row, #column)?;
1140 });
1141 out.insert_pushes.push(quote! {
1142 if let ::rustango::sql::Auto::Set(_v) = &self.#ident {
1143 _columns.push(#column);
1144 _values.push(::core::convert::Into::<::rustango::core::SqlValue>::into(
1145 ::core::clone::Clone::clone(_v)
1146 ));
1147 }
1148 });
1149 out.bulk_columns_all.push(quote!(#column));
1152 out.bulk_pushes_all.push(quote! {
1153 _row_vals.push(::core::convert::Into::<::rustango::core::SqlValue>::into(
1154 ::core::clone::Clone::clone(&_row.#ident)
1155 ));
1156 });
1157 let ident_clone = ident.clone();
1161 out.bulk_auto_uniformity.push(quote! {
1162 for _r in rows.iter().skip(1) {
1163 if matches!(_r.#ident_clone, ::rustango::sql::Auto::Unset) != _first_unset {
1164 return ::core::result::Result::Err(
1165 ::rustango::sql::ExecError::Sql(
1166 ::rustango::sql::SqlError::BulkAutoMixed
1167 )
1168 );
1169 }
1170 }
1171 });
1172 } else {
1173 out.insert_pushes.push(quote! {
1174 _columns.push(#column);
1175 _values.push(::core::convert::Into::<::rustango::core::SqlValue>::into(
1176 ::core::clone::Clone::clone(&self.#ident)
1177 ));
1178 });
1179 out.bulk_columns_no_auto.push(quote!(#column));
1181 out.bulk_columns_all.push(quote!(#column));
1182 let push_expr = quote! {
1183 _row_vals.push(::core::convert::Into::<::rustango::core::SqlValue>::into(
1184 ::core::clone::Clone::clone(&_row.#ident)
1185 ));
1186 };
1187 out.bulk_pushes_no_auto.push(push_expr.clone());
1188 out.bulk_pushes_all.push(push_expr);
1189 }
1190 if info.primary_key {
1191 if out.primary_key.is_some() {
1192 return Err(syn::Error::new_spanned(
1193 field,
1194 "only one field may be marked `#[rustango(primary_key)]`",
1195 ));
1196 }
1197 out.primary_key = Some((ident.clone(), info.column.clone()));
1198 if info.auto {
1199 out.pk_is_auto = true;
1200 }
1201 } else if info.auto_now_add {
1202 } else if info.auto_now {
1204 out.update_assignments.push(quote! {
1209 ::rustango::core::Assignment {
1210 column: #column,
1211 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
1212 ::chrono::Utc::now()
1213 ),
1214 }
1215 });
1216 out.upsert_update_columns.push(quote!(#column));
1217 } else {
1218 out.update_assignments.push(quote! {
1219 ::rustango::core::Assignment {
1220 column: #column,
1221 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
1222 ::core::clone::Clone::clone(&self.#ident)
1223 ),
1224 }
1225 });
1226 out.upsert_update_columns.push(quote!(#column));
1227 }
1228 out.column_entries.push(ColumnEntry {
1229 ident: ident.clone(),
1230 value_ty: info.value_ty.clone(),
1231 name: ident.to_string(),
1232 column: info.column.clone(),
1233 field_type_tokens: info.field_type_tokens,
1234 });
1235 }
1236 Ok(out)
1237}
1238
1239fn model_impl_tokens(
1240 struct_name: &syn::Ident,
1241 model_name: &str,
1242 table: &str,
1243 display: Option<&str>,
1244 app_label: Option<&str>,
1245 admin: Option<&AdminAttrs>,
1246 field_schemas: &[TokenStream2],
1247 soft_delete_column: Option<&str>,
1248 permissions: bool,
1249 audit_track: Option<&[String]>,
1250 m2m_relations: &[M2MAttr],
1251 indexes: &[IndexAttr],
1252 checks: &[CheckAttr],
1253 composite_fks: &[CompositeFkAttr],
1254 generic_fks: &[GenericFkAttr],
1255 scope: Option<&str>,
1256) -> TokenStream2 {
1257 let display_tokens = if let Some(name) = display {
1258 quote!(::core::option::Option::Some(#name))
1259 } else {
1260 quote!(::core::option::Option::None)
1261 };
1262 let app_label_tokens = if let Some(name) = app_label {
1263 quote!(::core::option::Option::Some(#name))
1264 } else {
1265 quote!(::core::option::Option::None)
1266 };
1267 let soft_delete_tokens = if let Some(col) = soft_delete_column {
1268 quote!(::core::option::Option::Some(#col))
1269 } else {
1270 quote!(::core::option::Option::None)
1271 };
1272 let audit_track_tokens = match audit_track {
1273 None => quote!(::core::option::Option::None),
1274 Some(names) => {
1275 let lits = names.iter().map(|n| n.as_str());
1276 quote!(::core::option::Option::Some(&[ #(#lits),* ]))
1277 }
1278 };
1279 let admin_tokens = admin_config_tokens(admin);
1280 let scope_tokens = match scope.map(|s| s.to_ascii_lowercase()).as_deref() {
1284 Some("registry") => quote!(::rustango::core::ModelScope::Registry),
1285 _ => quote!(::rustango::core::ModelScope::Tenant),
1286 };
1287 let indexes_tokens = indexes.iter().map(|idx| {
1288 let name = idx.name.as_deref().unwrap_or("unnamed_index");
1289 let cols: Vec<&str> = idx.columns.iter().map(String::as_str).collect();
1290 let unique = idx.unique;
1291 quote! {
1292 ::rustango::core::IndexSchema {
1293 name: #name,
1294 columns: &[ #(#cols),* ],
1295 unique: #unique,
1296 }
1297 }
1298 });
1299 let checks_tokens = checks.iter().map(|c| {
1300 let name = c.name.as_str();
1301 let expr = c.expr.as_str();
1302 quote! {
1303 ::rustango::core::CheckConstraint {
1304 name: #name,
1305 expr: #expr,
1306 }
1307 }
1308 });
1309 let composite_fk_tokens = composite_fks.iter().map(|rel| {
1310 let name = rel.name.as_str();
1311 let to = rel.to.as_str();
1312 let from_cols: Vec<&str> = rel.from.iter().map(String::as_str).collect();
1313 let on_cols: Vec<&str> = rel.on.iter().map(String::as_str).collect();
1314 quote! {
1315 ::rustango::core::CompositeFkRelation {
1316 name: #name,
1317 to: #to,
1318 from: &[ #(#from_cols),* ],
1319 on: &[ #(#on_cols),* ],
1320 }
1321 }
1322 });
1323 let generic_fk_tokens = generic_fks.iter().map(|rel| {
1324 let name = rel.name.as_str();
1325 let ct_col = rel.ct_column.as_str();
1326 let pk_col = rel.pk_column.as_str();
1327 quote! {
1328 ::rustango::core::GenericRelation {
1329 name: #name,
1330 ct_column: #ct_col,
1331 pk_column: #pk_col,
1332 }
1333 }
1334 });
1335 let m2m_tokens = m2m_relations.iter().map(|rel| {
1336 let name = rel.name.as_str();
1337 let to = rel.to.as_str();
1338 let through = rel.through.as_str();
1339 let src = rel.src.as_str();
1340 let dst = rel.dst.as_str();
1341 quote! {
1342 ::rustango::core::M2MRelation {
1343 name: #name,
1344 to: #to,
1345 through: #through,
1346 src_col: #src,
1347 dst_col: #dst,
1348 }
1349 }
1350 });
1351 quote! {
1352 impl ::rustango::core::Model for #struct_name {
1353 const SCHEMA: &'static ::rustango::core::ModelSchema = &::rustango::core::ModelSchema {
1354 name: #model_name,
1355 table: #table,
1356 fields: &[ #(#field_schemas),* ],
1357 display: #display_tokens,
1358 app_label: #app_label_tokens,
1359 admin: #admin_tokens,
1360 soft_delete_column: #soft_delete_tokens,
1361 permissions: #permissions,
1362 audit_track: #audit_track_tokens,
1363 m2m: &[ #(#m2m_tokens),* ],
1364 indexes: &[ #(#indexes_tokens),* ],
1365 check_constraints: &[ #(#checks_tokens),* ],
1366 composite_relations: &[ #(#composite_fk_tokens),* ],
1367 generic_relations: &[ #(#generic_fk_tokens),* ],
1368 scope: #scope_tokens,
1369 };
1370 }
1371 }
1372}
1373
1374fn admin_config_tokens(admin: Option<&AdminAttrs>) -> TokenStream2 {
1378 let Some(admin) = admin else {
1379 return quote!(::core::option::Option::None);
1380 };
1381
1382 let list_display = admin
1383 .list_display
1384 .as_ref()
1385 .map(|(v, _)| v.as_slice())
1386 .unwrap_or(&[]);
1387 let list_display_lits = list_display.iter().map(|s| s.as_str());
1388
1389 let search_fields = admin
1390 .search_fields
1391 .as_ref()
1392 .map(|(v, _)| v.as_slice())
1393 .unwrap_or(&[]);
1394 let search_fields_lits = search_fields.iter().map(|s| s.as_str());
1395
1396 let readonly_fields = admin
1397 .readonly_fields
1398 .as_ref()
1399 .map(|(v, _)| v.as_slice())
1400 .unwrap_or(&[]);
1401 let readonly_fields_lits = readonly_fields.iter().map(|s| s.as_str());
1402
1403 let list_filter = admin
1404 .list_filter
1405 .as_ref()
1406 .map(|(v, _)| v.as_slice())
1407 .unwrap_or(&[]);
1408 let list_filter_lits = list_filter.iter().map(|s| s.as_str());
1409
1410 let actions = admin
1411 .actions
1412 .as_ref()
1413 .map(|(v, _)| v.as_slice())
1414 .unwrap_or(&[]);
1415 let actions_lits = actions.iter().map(|s| s.as_str());
1416
1417 let fieldsets = admin
1418 .fieldsets
1419 .as_ref()
1420 .map(|(v, _)| v.as_slice())
1421 .unwrap_or(&[]);
1422 let fieldset_tokens = fieldsets.iter().map(|(title, fields)| {
1423 let title = title.as_str();
1424 let field_lits = fields.iter().map(|s| s.as_str());
1425 quote!(::rustango::core::Fieldset {
1426 title: #title,
1427 fields: &[ #( #field_lits ),* ],
1428 })
1429 });
1430
1431 let list_per_page = admin.list_per_page.unwrap_or(0);
1432
1433 let ordering_pairs = admin
1434 .ordering
1435 .as_ref()
1436 .map(|(v, _)| v.as_slice())
1437 .unwrap_or(&[]);
1438 let ordering_tokens = ordering_pairs.iter().map(|(name, desc)| {
1439 let name = name.as_str();
1440 let desc = *desc;
1441 quote!((#name, #desc))
1442 });
1443
1444 quote! {
1445 ::core::option::Option::Some(&::rustango::core::AdminConfig {
1446 list_display: &[ #( #list_display_lits ),* ],
1447 search_fields: &[ #( #search_fields_lits ),* ],
1448 list_per_page: #list_per_page,
1449 ordering: &[ #( #ordering_tokens ),* ],
1450 readonly_fields: &[ #( #readonly_fields_lits ),* ],
1451 list_filter: &[ #( #list_filter_lits ),* ],
1452 actions: &[ #( #actions_lits ),* ],
1453 fieldsets: &[ #( #fieldset_tokens ),* ],
1454 })
1455 }
1456}
1457
1458fn inherent_impl_tokens(
1459 struct_name: &syn::Ident,
1460 fields: &CollectedFields,
1461 primary_key: Option<&(syn::Ident, String)>,
1462 column_consts: &TokenStream2,
1463 audited_fields: Option<&[&ColumnEntry]>,
1464 indexes: &[IndexAttr],
1465) -> TokenStream2 {
1466 let executor_passes_to_data_write = if audited_fields.is_some() {
1472 quote!(&mut *_executor)
1473 } else {
1474 quote!(_executor)
1475 };
1476 let executor_param = if audited_fields.is_some() {
1477 quote!(_executor: &mut ::rustango::sql::sqlx::PgConnection)
1478 } else {
1479 quote!(_executor: _E)
1480 };
1481 let executor_generics = if audited_fields.is_some() {
1482 quote!()
1483 } else {
1484 quote!(<'_c, _E>)
1485 };
1486 let executor_where = if audited_fields.is_some() {
1487 quote!()
1488 } else {
1489 quote! {
1490 where
1491 _E: ::rustango::sql::sqlx::Executor<'_c, Database = ::rustango::sql::sqlx::Postgres>,
1492 }
1493 };
1494 let pool_to_save_on = if audited_fields.is_some() {
1499 quote! {
1500 let mut _conn = pool.acquire().await?;
1501 self.save_on(&mut *_conn).await
1502 }
1503 } else {
1504 quote!(self.save_on(pool).await)
1505 };
1506 let pool_to_insert_on = if audited_fields.is_some() {
1507 quote! {
1508 let mut _conn = pool.acquire().await?;
1509 self.insert_on(&mut *_conn).await
1510 }
1511 } else {
1512 quote!(self.insert_on(pool).await)
1513 };
1514 let pool_to_delete_on = if audited_fields.is_some() {
1515 quote! {
1516 let mut _conn = pool.acquire().await?;
1517 self.delete_on(&mut *_conn).await
1518 }
1519 } else {
1520 quote!(self.delete_on(pool).await)
1521 };
1522 let pool_to_bulk_insert_on = if audited_fields.is_some() {
1523 quote! {
1524 let mut _conn = pool.acquire().await?;
1525 Self::bulk_insert_on(rows, &mut *_conn).await
1526 }
1527 } else {
1528 quote!(Self::bulk_insert_on(rows, pool).await)
1529 };
1530 let pool_to_upsert_on = if audited_fields.is_some() {
1537 quote! {
1538 let mut _conn = pool.acquire().await?;
1539 self.upsert_on(&mut *_conn).await
1540 }
1541 } else {
1542 quote!(self.upsert_on(pool).await)
1543 };
1544
1545 let pool_insert_method = if audited_fields.is_some() && !fields.has_auto {
1563 quote!()
1572 } else if audited_fields.is_some() && fields.has_auto {
1573 quote!()
1576 } else if fields.has_auto {
1577 let pushes = &fields.insert_pushes;
1578 let returning_cols = &fields.returning_cols;
1579 quote! {
1580 pub async fn insert_pool(
1586 &mut self,
1587 pool: &::rustango::sql::Pool,
1588 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
1589 let mut _columns: ::std::vec::Vec<&'static str> =
1590 ::std::vec::Vec::new();
1591 let mut _values: ::std::vec::Vec<::rustango::core::SqlValue> =
1592 ::std::vec::Vec::new();
1593 #( #pushes )*
1594 let _query = ::rustango::core::InsertQuery {
1595 model: <Self as ::rustango::core::Model>::SCHEMA,
1596 columns: _columns,
1597 values: _values,
1598 returning: ::std::vec![ #( #returning_cols ),* ],
1599 on_conflict: ::core::option::Option::None,
1600 };
1601 let _result = ::rustango::sql::insert_returning_pool(
1602 pool, &_query,
1603 ).await?;
1604 ::rustango::sql::apply_auto_pk_pool(_result, self)
1605 }
1606 }
1607 } else {
1608 let insert_columns = &fields.insert_columns;
1609 let insert_values = &fields.insert_values;
1610 quote! {
1611 pub async fn insert_pool(
1618 &self,
1619 pool: &::rustango::sql::Pool,
1620 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
1621 let _query = ::rustango::core::InsertQuery {
1622 model: <Self as ::rustango::core::Model>::SCHEMA,
1623 columns: ::std::vec![ #( #insert_columns ),* ],
1624 values: ::std::vec![ #( #insert_values ),* ],
1625 returning: ::std::vec::Vec::new(),
1626 on_conflict: ::core::option::Option::None,
1627 };
1628 ::rustango::sql::insert_pool(pool, &_query).await
1629 }
1630 }
1631 };
1632
1633 let audit_pair_tokens: Vec<TokenStream2> = audited_fields
1646 .map(|tracked| {
1647 tracked
1648 .iter()
1649 .map(|c| {
1650 let column_lit = c.column.as_str();
1651 let ident = &c.ident;
1652 quote! {
1653 (
1654 #column_lit,
1655 ::serde_json::to_value(&self.#ident)
1656 .unwrap_or(::serde_json::Value::Null),
1657 )
1658 }
1659 })
1660 .collect()
1661 })
1662 .unwrap_or_default();
1663 let audit_pk_to_string = if let Some((pk_ident, _)) = primary_key {
1664 if fields.pk_is_auto {
1665 quote!(self.#pk_ident.get().map(|v| ::std::format!("{}", v)).unwrap_or_default())
1666 } else {
1667 quote!(::std::format!("{}", &self.#pk_ident))
1668 }
1669 } else {
1670 quote!(::std::string::String::new())
1671 };
1672 let make_op_emit = |op_path: TokenStream2| -> TokenStream2 {
1673 if audited_fields.is_some() {
1674 let pairs = audit_pair_tokens.iter();
1675 let pk_str = audit_pk_to_string.clone();
1676 quote! {
1677 let _audit_entry = ::rustango::audit::PendingEntry {
1678 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
1679 entity_pk: #pk_str,
1680 operation: #op_path,
1681 source: ::rustango::audit::current_source(),
1682 changes: ::rustango::audit::snapshot_changes(&[
1683 #( #pairs ),*
1684 ]),
1685 };
1686 ::rustango::audit::emit_one(&mut *_executor, &_audit_entry).await?;
1687 }
1688 } else {
1689 quote!()
1690 }
1691 };
1692 let audit_insert_emit = make_op_emit(quote!(::rustango::audit::AuditOp::Create));
1693 let audit_delete_emit = make_op_emit(quote!(::rustango::audit::AuditOp::Delete));
1694 let audit_softdelete_emit = make_op_emit(quote!(::rustango::audit::AuditOp::SoftDelete));
1695 let audit_restore_emit = make_op_emit(quote!(::rustango::audit::AuditOp::Restore));
1696
1697 let pool_save_method = if let Some((pk_ident, pk_col)) = primary_key {
1713 let pk_column_lit = pk_col.as_str();
1714 let assignments = &fields.update_assignments;
1715 if audited_fields.is_some() {
1716 if fields.pk_is_auto {
1717 quote!()
1721 } else {
1722 let pairs = audit_pair_tokens.iter();
1723 let pk_str = audit_pk_to_string.clone();
1724 quote! {
1725 pub async fn save_pool(
1739 &mut self,
1740 pool: &::rustango::sql::Pool,
1741 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
1742 let _query = ::rustango::core::UpdateQuery {
1743 model: <Self as ::rustango::core::Model>::SCHEMA,
1744 set: ::std::vec![ #( #assignments ),* ],
1745 where_clause: ::rustango::core::WhereExpr::Predicate(
1746 ::rustango::core::Filter {
1747 column: #pk_column_lit,
1748 op: ::rustango::core::Op::Eq,
1749 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
1750 ::core::clone::Clone::clone(&self.#pk_ident)
1751 ),
1752 }
1753 ),
1754 };
1755 let _audit_entry = ::rustango::audit::PendingEntry {
1756 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
1757 entity_pk: #pk_str,
1758 operation: ::rustango::audit::AuditOp::Update,
1759 source: ::rustango::audit::current_source(),
1760 changes: ::rustango::audit::snapshot_changes(&[
1761 #( #pairs ),*
1762 ]),
1763 };
1764 let _ = ::rustango::audit::save_one_with_audit_pool(
1765 pool, &_query, &_audit_entry,
1766 ).await?;
1767 ::core::result::Result::Ok(())
1768 }
1769 }
1770 }
1771 } else {
1772 let dispatch_unset = if fields.pk_is_auto {
1773 quote! {
1774 if matches!(self.#pk_ident, ::rustango::sql::Auto::Unset) {
1775 return self.insert_pool(pool).await;
1776 }
1777 }
1778 } else {
1779 quote!()
1780 };
1781 quote! {
1782 pub async fn save_pool(
1789 &mut self,
1790 pool: &::rustango::sql::Pool,
1791 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
1792 #dispatch_unset
1793 let _query = ::rustango::core::UpdateQuery {
1794 model: <Self as ::rustango::core::Model>::SCHEMA,
1795 set: ::std::vec![ #( #assignments ),* ],
1796 where_clause: ::rustango::core::WhereExpr::Predicate(
1797 ::rustango::core::Filter {
1798 column: #pk_column_lit,
1799 op: ::rustango::core::Op::Eq,
1800 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
1801 ::core::clone::Clone::clone(&self.#pk_ident)
1802 ),
1803 }
1804 ),
1805 };
1806 let _ = ::rustango::sql::update_pool(pool, &_query).await?;
1807 ::core::result::Result::Ok(())
1808 }
1809 }
1810 }
1811 } else {
1812 quote!()
1813 };
1814
1815 let pool_insert_method = if audited_fields.is_some() {
1822 if let Some(_) = primary_key {
1823 let pushes = if fields.has_auto {
1824 fields.insert_pushes.clone()
1825 } else {
1826 fields
1831 .insert_columns
1832 .iter()
1833 .zip(&fields.insert_values)
1834 .map(|(col, val)| {
1835 quote! {
1836 _columns.push(#col);
1837 _values.push(#val);
1838 }
1839 })
1840 .collect()
1841 };
1842 let returning_cols: Vec<proc_macro2::TokenStream> = if fields.has_auto {
1843 fields.returning_cols.clone()
1844 } else {
1845 primary_key
1852 .map(|(_, col)| {
1853 let lit = col.as_str();
1854 vec![quote!(#lit)]
1855 })
1856 .unwrap_or_default()
1857 };
1858 let pairs = audit_pair_tokens.iter();
1859 let pk_str = audit_pk_to_string.clone();
1860 quote! {
1861 pub async fn insert_pool(
1870 &mut self,
1871 pool: &::rustango::sql::Pool,
1872 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
1873 let mut _columns: ::std::vec::Vec<&'static str> =
1874 ::std::vec::Vec::new();
1875 let mut _values: ::std::vec::Vec<::rustango::core::SqlValue> =
1876 ::std::vec::Vec::new();
1877 #( #pushes )*
1878 let _query = ::rustango::core::InsertQuery {
1879 model: <Self as ::rustango::core::Model>::SCHEMA,
1880 columns: _columns,
1881 values: _values,
1882 returning: ::std::vec![ #( #returning_cols ),* ],
1883 on_conflict: ::core::option::Option::None,
1884 };
1885 let _audit_entry = ::rustango::audit::PendingEntry {
1886 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
1887 entity_pk: #pk_str,
1888 operation: ::rustango::audit::AuditOp::Create,
1889 source: ::rustango::audit::current_source(),
1890 changes: ::rustango::audit::snapshot_changes(&[
1891 #( #pairs ),*
1892 ]),
1893 };
1894 let _result = ::rustango::audit::insert_one_with_audit_pool(
1895 pool, &_query, &_audit_entry,
1896 ).await?;
1897 ::rustango::sql::apply_auto_pk_pool(_result, self)
1898 }
1899 }
1900 } else {
1901 quote!()
1902 }
1903 } else {
1904 pool_insert_method
1906 };
1907
1908 let pool_save_method = if let Some(tracked) = audited_fields {
1929 if let Some((pk_ident, pk_col)) = primary_key {
1930 let pk_column_lit = pk_col.as_str();
1931 let after_pairs_pg = audit_pair_tokens.iter().collect::<Vec<_>>();
1935 let pk_str = audit_pk_to_string.clone();
1936 let mk_before_pairs =
1941 |getter: proc_macro2::TokenStream| -> Vec<proc_macro2::TokenStream> {
1942 tracked
1943 .iter()
1944 .map(|c| {
1945 let column_lit = c.column.as_str();
1946 let value_ty = &c.value_ty;
1947 quote! {
1948 (
1949 #column_lit,
1950 match #getter::<#value_ty>(
1951 _audit_before_row, #column_lit,
1952 ) {
1953 ::core::result::Result::Ok(v) => {
1954 ::serde_json::to_value(&v)
1955 .unwrap_or(::serde_json::Value::Null)
1956 }
1957 ::core::result::Result::Err(_) => ::serde_json::Value::Null,
1958 },
1959 )
1960 }
1961 })
1962 .collect()
1963 };
1964 let before_pairs_pg: Vec<proc_macro2::TokenStream> =
1965 mk_before_pairs(quote!(::rustango::sql::try_get_returning));
1966 let before_pairs_my: Vec<proc_macro2::TokenStream> =
1967 mk_before_pairs(quote!(::rustango::sql::try_get_returning_my));
1968 let before_pairs_sqlite: Vec<proc_macro2::TokenStream> =
1969 mk_before_pairs(quote!(::rustango::sql::try_get_returning_sqlite));
1970 let pg_select_cols: String = tracked
1971 .iter()
1972 .map(|c| format!("\"{}\"", c.column.replace('"', "\"\"")))
1973 .collect::<Vec<_>>()
1974 .join(", ");
1975 let my_select_cols: String = tracked
1976 .iter()
1977 .map(|c| format!("`{}`", c.column.replace('`', "``")))
1978 .collect::<Vec<_>>()
1979 .join(", ");
1980 let sqlite_select_cols: String = pg_select_cols.clone();
1984 let pk_value_for_bind = if fields.pk_is_auto {
1985 quote!(self.#pk_ident.get().copied().unwrap_or_default())
1986 } else {
1987 quote!(::core::clone::Clone::clone(&self.#pk_ident))
1988 };
1989 let assignments = &fields.update_assignments;
1990 let unset_dispatch = if fields.has_auto {
1991 quote! {
1992 if matches!(self.#pk_ident, ::rustango::sql::Auto::Unset) {
1993 return self.insert_pool(pool).await;
1994 }
1995 }
1996 } else {
1997 quote!()
1998 };
1999 quote! {
2000 pub async fn save_pool(
2014 &mut self,
2015 pool: &::rustango::sql::Pool,
2016 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2017 #unset_dispatch
2018 let _query = ::rustango::core::UpdateQuery {
2019 model: <Self as ::rustango::core::Model>::SCHEMA,
2020 set: ::std::vec![ #( #assignments ),* ],
2021 where_clause: ::rustango::core::WhereExpr::Predicate(
2022 ::rustango::core::Filter {
2023 column: #pk_column_lit,
2024 op: ::rustango::core::Op::Eq,
2025 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2026 ::core::clone::Clone::clone(&self.#pk_ident)
2027 ),
2028 }
2029 ),
2030 };
2031 let _after_pairs: ::std::vec::Vec<(&'static str, ::serde_json::Value)> =
2032 ::std::vec![ #( #after_pairs_pg ),* ];
2033 ::rustango::audit::save_one_with_diff_pool(
2034 pool,
2035 &_query,
2036 #pk_column_lit,
2037 ::core::convert::Into::<::rustango::core::SqlValue>::into(
2038 #pk_value_for_bind,
2039 ),
2040 <Self as ::rustango::core::Model>::SCHEMA.table,
2041 #pk_str,
2042 _after_pairs,
2043 #pg_select_cols,
2044 #my_select_cols,
2045 #sqlite_select_cols,
2046 |_audit_before_row| ::std::vec![ #( #before_pairs_pg ),* ],
2047 |_audit_before_row| ::std::vec![ #( #before_pairs_my ),* ],
2048 |_audit_before_row| ::std::vec![ #( #before_pairs_sqlite ),* ],
2049 ).await
2050 }
2051 }
2052 } else {
2053 quote!()
2054 }
2055 } else {
2056 pool_save_method
2057 };
2058
2059 let pool_delete_method = {
2066 let pk_column_lit = primary_key.map(|(_, col)| col.as_str()).unwrap_or("id");
2067 let pk_ident_for_pool = primary_key.map(|(ident, _)| ident);
2068 if let Some(pk_ident) = pk_ident_for_pool {
2069 if audited_fields.is_some() {
2070 let pairs = audit_pair_tokens.iter();
2071 let pk_str = audit_pk_to_string.clone();
2072 quote! {
2073 pub async fn delete_pool(
2080 &self,
2081 pool: &::rustango::sql::Pool,
2082 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError> {
2083 let _query = ::rustango::core::DeleteQuery {
2084 model: <Self as ::rustango::core::Model>::SCHEMA,
2085 where_clause: ::rustango::core::WhereExpr::Predicate(
2086 ::rustango::core::Filter {
2087 column: #pk_column_lit,
2088 op: ::rustango::core::Op::Eq,
2089 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2090 ::core::clone::Clone::clone(&self.#pk_ident)
2091 ),
2092 }
2093 ),
2094 };
2095 let _audit_entry = ::rustango::audit::PendingEntry {
2096 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
2097 entity_pk: #pk_str,
2098 operation: ::rustango::audit::AuditOp::Delete,
2099 source: ::rustango::audit::current_source(),
2100 changes: ::rustango::audit::snapshot_changes(&[
2101 #( #pairs ),*
2102 ]),
2103 };
2104 ::rustango::audit::delete_one_with_audit_pool(
2105 pool, &_query, &_audit_entry,
2106 ).await
2107 }
2108 }
2109 } else {
2110 quote! {
2111 pub async fn delete_pool(
2118 &self,
2119 pool: &::rustango::sql::Pool,
2120 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError> {
2121 let _query = ::rustango::core::DeleteQuery {
2122 model: <Self as ::rustango::core::Model>::SCHEMA,
2123 where_clause: ::rustango::core::WhereExpr::Predicate(
2124 ::rustango::core::Filter {
2125 column: #pk_column_lit,
2126 op: ::rustango::core::Op::Eq,
2127 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2128 ::core::clone::Clone::clone(&self.#pk_ident)
2129 ),
2130 }
2131 ),
2132 };
2133 ::rustango::sql::delete_pool(pool, &_query).await
2134 }
2135 }
2136 }
2137 } else {
2138 quote!()
2139 }
2140 };
2141
2142 let (audit_update_pre, audit_update_post): (TokenStream2, TokenStream2) = if let Some(tracked) =
2152 audited_fields
2153 {
2154 if tracked.is_empty() {
2155 (quote!(), quote!())
2156 } else {
2157 let select_cols: String = tracked
2158 .iter()
2159 .map(|c| format!("\"{}\"", c.column.replace('"', "\"\"")))
2160 .collect::<Vec<_>>()
2161 .join(", ");
2162 let pk_column_for_select = primary_key.map(|(_, col)| col.clone()).unwrap_or_default();
2163 let select_cols_lit = select_cols;
2164 let pk_column_lit_for_select = pk_column_for_select;
2165 let pk_value_for_bind = if let Some((pk_ident, _)) = primary_key {
2166 if fields.pk_is_auto {
2167 quote!(self.#pk_ident.get().copied().unwrap_or_default())
2168 } else {
2169 quote!(::core::clone::Clone::clone(&self.#pk_ident))
2170 }
2171 } else {
2172 quote!(0_i64)
2173 };
2174 let before_pairs = tracked.iter().map(|c| {
2175 let column_lit = c.column.as_str();
2176 let value_ty = &c.value_ty;
2177 quote! {
2178 (
2179 #column_lit,
2180 match ::rustango::sql::sqlx::Row::try_get::<#value_ty, _>(
2181 &_audit_before_row, #column_lit,
2182 ) {
2183 ::core::result::Result::Ok(v) => {
2184 ::serde_json::to_value(&v)
2185 .unwrap_or(::serde_json::Value::Null)
2186 }
2187 ::core::result::Result::Err(_) => ::serde_json::Value::Null,
2188 },
2189 )
2190 }
2191 });
2192 let after_pairs = tracked.iter().map(|c| {
2193 let column_lit = c.column.as_str();
2194 let ident = &c.ident;
2195 quote! {
2196 (
2197 #column_lit,
2198 ::serde_json::to_value(&self.#ident)
2199 .unwrap_or(::serde_json::Value::Null),
2200 )
2201 }
2202 });
2203 let pk_str = audit_pk_to_string.clone();
2204 let pre = quote! {
2205 let _audit_select_sql = ::std::format!(
2206 r#"SELECT {} FROM "{}" WHERE "{}" = $1"#,
2207 #select_cols_lit,
2208 <Self as ::rustango::core::Model>::SCHEMA.table,
2209 #pk_column_lit_for_select,
2210 );
2211 let _audit_before_pairs:
2212 ::std::option::Option<::std::vec::Vec<(&'static str, ::serde_json::Value)>> =
2213 match ::rustango::sql::sqlx::query(&_audit_select_sql)
2214 .bind(#pk_value_for_bind)
2215 .fetch_optional(&mut *_executor)
2216 .await
2217 {
2218 ::core::result::Result::Ok(::core::option::Option::Some(_audit_before_row)) => {
2219 ::core::option::Option::Some(::std::vec![ #( #before_pairs ),* ])
2220 }
2221 _ => ::core::option::Option::None,
2222 };
2223 };
2224 let post = quote! {
2225 if let ::core::option::Option::Some(_audit_before) = _audit_before_pairs {
2226 let _audit_after:
2227 ::std::vec::Vec<(&'static str, ::serde_json::Value)> =
2228 ::std::vec![ #( #after_pairs ),* ];
2229 let _audit_entry = ::rustango::audit::PendingEntry {
2230 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
2231 entity_pk: #pk_str,
2232 operation: ::rustango::audit::AuditOp::Update,
2233 source: ::rustango::audit::current_source(),
2234 changes: ::rustango::audit::diff_changes(
2235 &_audit_before,
2236 &_audit_after,
2237 ),
2238 };
2239 ::rustango::audit::emit_one(&mut *_executor, &_audit_entry).await?;
2240 }
2241 };
2242 (pre, post)
2243 }
2244 } else {
2245 (quote!(), quote!())
2246 };
2247
2248 let audit_bulk_insert_emit: TokenStream2 = if audited_fields.is_some() {
2252 let row_pk_str = if let Some((pk_ident, _)) = primary_key {
2253 if fields.pk_is_auto {
2254 quote!(_row.#pk_ident.get().map(|v| ::std::format!("{}", v)).unwrap_or_default())
2255 } else {
2256 quote!(::std::format!("{}", &_row.#pk_ident))
2257 }
2258 } else {
2259 quote!(::std::string::String::new())
2260 };
2261 let row_pairs = audited_fields.unwrap_or(&[]).iter().map(|c| {
2262 let column_lit = c.column.as_str();
2263 let ident = &c.ident;
2264 quote! {
2265 (
2266 #column_lit,
2267 ::serde_json::to_value(&_row.#ident)
2268 .unwrap_or(::serde_json::Value::Null),
2269 )
2270 }
2271 });
2272 quote! {
2273 let _audit_source = ::rustango::audit::current_source();
2274 let mut _audit_entries:
2275 ::std::vec::Vec<::rustango::audit::PendingEntry> =
2276 ::std::vec::Vec::with_capacity(rows.len());
2277 for _row in rows.iter() {
2278 _audit_entries.push(::rustango::audit::PendingEntry {
2279 entity_table: <Self as ::rustango::core::Model>::SCHEMA.table,
2280 entity_pk: #row_pk_str,
2281 operation: ::rustango::audit::AuditOp::Create,
2282 source: _audit_source.clone(),
2283 changes: ::rustango::audit::snapshot_changes(&[
2284 #( #row_pairs ),*
2285 ]),
2286 });
2287 }
2288 ::rustango::audit::emit_many(&mut *_executor, &_audit_entries).await?;
2289 }
2290 } else {
2291 quote!()
2292 };
2293
2294 let save_method = if fields.pk_is_auto {
2295 let (pk_ident, pk_column) = primary_key.expect("pk_is_auto implies primary_key is Some");
2296 let pk_column_lit = pk_column.as_str();
2297 let assignments = &fields.update_assignments;
2298 let upsert_cols = &fields.upsert_update_columns;
2299 let upsert_pushes = &fields.insert_pushes;
2300 let upsert_returning = &fields.returning_cols;
2301 let upsert_auto_assigns = &fields.auto_assigns;
2302 let upsert_target_columns: Vec<String> = indexes
2311 .iter()
2312 .find(|i| i.unique && !i.columns.is_empty())
2313 .map(|i| i.columns.clone())
2314 .unwrap_or_else(|| vec![pk_column.clone()]);
2315 let upsert_target_lits = upsert_target_columns
2316 .iter()
2317 .map(String::as_str)
2318 .collect::<Vec<_>>();
2319 let conflict_clause = if fields.upsert_update_columns.is_empty() {
2320 quote!(::rustango::core::ConflictClause::DoNothing)
2321 } else {
2322 quote!(::rustango::core::ConflictClause::DoUpdate {
2323 target: ::std::vec![ #( #upsert_target_lits ),* ],
2324 update_columns: ::std::vec![ #( #upsert_cols ),* ],
2325 })
2326 };
2327 Some(quote! {
2328 pub async fn save(
2346 &mut self,
2347 pool: &::rustango::sql::sqlx::PgPool,
2348 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2349 #pool_to_save_on
2350 }
2351
2352 pub async fn save_on #executor_generics (
2363 &mut self,
2364 #executor_param,
2365 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2366 #executor_where
2367 {
2368 if matches!(self.#pk_ident, ::rustango::sql::Auto::Unset) {
2369 return self.insert_on(#executor_passes_to_data_write).await;
2370 }
2371 #audit_update_pre
2372 let _query = ::rustango::core::UpdateQuery {
2373 model: <Self as ::rustango::core::Model>::SCHEMA,
2374 set: ::std::vec![ #( #assignments ),* ],
2375 where_clause: ::rustango::core::WhereExpr::Predicate(
2376 ::rustango::core::Filter {
2377 column: #pk_column_lit,
2378 op: ::rustango::core::Op::Eq,
2379 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2380 ::core::clone::Clone::clone(&self.#pk_ident)
2381 ),
2382 }
2383 ),
2384 };
2385 let _ = ::rustango::sql::update_on(
2386 #executor_passes_to_data_write,
2387 &_query,
2388 ).await?;
2389 #audit_update_post
2390 ::core::result::Result::Ok(())
2391 }
2392
2393 pub async fn save_on_with #executor_generics (
2404 &mut self,
2405 #executor_param,
2406 source: ::rustango::audit::AuditSource,
2407 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2408 #executor_where
2409 {
2410 ::rustango::audit::with_source(source, self.save_on(_executor)).await
2411 }
2412
2413 pub async fn upsert(
2423 &mut self,
2424 pool: &::rustango::sql::sqlx::PgPool,
2425 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2426 #pool_to_upsert_on
2427 }
2428
2429 pub async fn upsert_on #executor_generics (
2435 &mut self,
2436 #executor_param,
2437 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2438 #executor_where
2439 {
2440 let mut _columns: ::std::vec::Vec<&'static str> =
2441 ::std::vec::Vec::new();
2442 let mut _values: ::std::vec::Vec<::rustango::core::SqlValue> =
2443 ::std::vec::Vec::new();
2444 #( #upsert_pushes )*
2445 let query = ::rustango::core::InsertQuery {
2446 model: <Self as ::rustango::core::Model>::SCHEMA,
2447 columns: _columns,
2448 values: _values,
2449 returning: ::std::vec![ #( #upsert_returning ),* ],
2450 on_conflict: ::core::option::Option::Some(#conflict_clause),
2451 };
2452 let _returning_row_v = ::rustango::sql::insert_returning_on(
2453 #executor_passes_to_data_write,
2454 &query,
2455 ).await?;
2456 let _returning_row = &_returning_row_v;
2457 #( #upsert_auto_assigns )*
2458 ::core::result::Result::Ok(())
2459 }
2460 })
2461 } else {
2462 None
2463 };
2464
2465 let pk_methods = primary_key.map(|(pk_ident, pk_column)| {
2466 let pk_column_lit = pk_column.as_str();
2467 let soft_delete_methods = if let Some(col) = fields.soft_delete_column.as_deref() {
2474 let col_lit = col;
2475 quote! {
2476 pub async fn soft_delete_on #executor_generics (
2486 &self,
2487 #executor_param,
2488 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError>
2489 #executor_where
2490 {
2491 let _query = ::rustango::core::UpdateQuery {
2492 model: <Self as ::rustango::core::Model>::SCHEMA,
2493 set: ::std::vec![
2494 ::rustango::core::Assignment {
2495 column: #col_lit,
2496 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2497 ::chrono::Utc::now()
2498 ),
2499 },
2500 ],
2501 where_clause: ::rustango::core::WhereExpr::Predicate(
2502 ::rustango::core::Filter {
2503 column: #pk_column_lit,
2504 op: ::rustango::core::Op::Eq,
2505 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2506 ::core::clone::Clone::clone(&self.#pk_ident)
2507 ),
2508 }
2509 ),
2510 };
2511 let _affected = ::rustango::sql::update_on(
2512 #executor_passes_to_data_write,
2513 &_query,
2514 ).await?;
2515 #audit_softdelete_emit
2516 ::core::result::Result::Ok(_affected)
2517 }
2518
2519 pub async fn restore_on #executor_generics (
2526 &self,
2527 #executor_param,
2528 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError>
2529 #executor_where
2530 {
2531 let _query = ::rustango::core::UpdateQuery {
2532 model: <Self as ::rustango::core::Model>::SCHEMA,
2533 set: ::std::vec![
2534 ::rustango::core::Assignment {
2535 column: #col_lit,
2536 value: ::rustango::core::SqlValue::Null,
2537 },
2538 ],
2539 where_clause: ::rustango::core::WhereExpr::Predicate(
2540 ::rustango::core::Filter {
2541 column: #pk_column_lit,
2542 op: ::rustango::core::Op::Eq,
2543 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2544 ::core::clone::Clone::clone(&self.#pk_ident)
2545 ),
2546 }
2547 ),
2548 };
2549 let _affected = ::rustango::sql::update_on(
2550 #executor_passes_to_data_write,
2551 &_query,
2552 ).await?;
2553 #audit_restore_emit
2554 ::core::result::Result::Ok(_affected)
2555 }
2556 }
2557 } else {
2558 quote!()
2559 };
2560 quote! {
2561 pub async fn delete(
2569 &self,
2570 pool: &::rustango::sql::sqlx::PgPool,
2571 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError> {
2572 #pool_to_delete_on
2573 }
2574
2575 pub async fn delete_on #executor_generics (
2582 &self,
2583 #executor_param,
2584 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError>
2585 #executor_where
2586 {
2587 let query = ::rustango::core::DeleteQuery {
2588 model: <Self as ::rustango::core::Model>::SCHEMA,
2589 where_clause: ::rustango::core::WhereExpr::Predicate(
2590 ::rustango::core::Filter {
2591 column: #pk_column_lit,
2592 op: ::rustango::core::Op::Eq,
2593 value: ::core::convert::Into::<::rustango::core::SqlValue>::into(
2594 ::core::clone::Clone::clone(&self.#pk_ident)
2595 ),
2596 }
2597 ),
2598 };
2599 let _affected = ::rustango::sql::delete_on(
2600 #executor_passes_to_data_write,
2601 &query,
2602 ).await?;
2603 #audit_delete_emit
2604 ::core::result::Result::Ok(_affected)
2605 }
2606
2607 pub async fn delete_on_with #executor_generics (
2613 &self,
2614 #executor_param,
2615 source: ::rustango::audit::AuditSource,
2616 ) -> ::core::result::Result<u64, ::rustango::sql::ExecError>
2617 #executor_where
2618 {
2619 ::rustango::audit::with_source(source, self.delete_on(_executor)).await
2620 }
2621 #pool_delete_method
2622 #pool_insert_method
2623 #pool_save_method
2624 #soft_delete_methods
2625 }
2626 });
2627
2628 let insert_method = if fields.has_auto {
2629 let pushes = &fields.insert_pushes;
2630 let returning_cols = &fields.returning_cols;
2631 let auto_assigns = &fields.auto_assigns;
2632 quote! {
2633 pub async fn insert(
2642 &mut self,
2643 pool: &::rustango::sql::sqlx::PgPool,
2644 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2645 #pool_to_insert_on
2646 }
2647
2648 pub async fn insert_on #executor_generics (
2654 &mut self,
2655 #executor_param,
2656 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2657 #executor_where
2658 {
2659 let mut _columns: ::std::vec::Vec<&'static str> =
2660 ::std::vec::Vec::new();
2661 let mut _values: ::std::vec::Vec<::rustango::core::SqlValue> =
2662 ::std::vec::Vec::new();
2663 #( #pushes )*
2664 let query = ::rustango::core::InsertQuery {
2665 model: <Self as ::rustango::core::Model>::SCHEMA,
2666 columns: _columns,
2667 values: _values,
2668 returning: ::std::vec![ #( #returning_cols ),* ],
2669 on_conflict: ::core::option::Option::None,
2670 };
2671 let _returning_row_v = ::rustango::sql::insert_returning_on(
2672 #executor_passes_to_data_write,
2673 &query,
2674 ).await?;
2675 let _returning_row = &_returning_row_v;
2676 #( #auto_assigns )*
2677 #audit_insert_emit
2678 ::core::result::Result::Ok(())
2679 }
2680
2681 pub async fn insert_on_with #executor_generics (
2687 &mut self,
2688 #executor_param,
2689 source: ::rustango::audit::AuditSource,
2690 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2691 #executor_where
2692 {
2693 ::rustango::audit::with_source(source, self.insert_on(_executor)).await
2694 }
2695 }
2696 } else {
2697 let insert_columns = &fields.insert_columns;
2698 let insert_values = &fields.insert_values;
2699 quote! {
2700 pub async fn insert(
2706 &self,
2707 pool: &::rustango::sql::sqlx::PgPool,
2708 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2709 self.insert_on(pool).await
2710 }
2711
2712 pub async fn insert_on<'_c, _E>(
2718 &self,
2719 _executor: _E,
2720 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2721 where
2722 _E: ::rustango::sql::sqlx::Executor<'_c, Database = ::rustango::sql::sqlx::Postgres>,
2723 {
2724 let query = ::rustango::core::InsertQuery {
2725 model: <Self as ::rustango::core::Model>::SCHEMA,
2726 columns: ::std::vec![ #( #insert_columns ),* ],
2727 values: ::std::vec![ #( #insert_values ),* ],
2728 returning: ::std::vec::Vec::new(),
2729 on_conflict: ::core::option::Option::None,
2730 };
2731 ::rustango::sql::insert_on(_executor, &query).await
2732 }
2733 }
2734 };
2735
2736 let bulk_insert_method = if fields.has_auto {
2737 let cols_no_auto = &fields.bulk_columns_no_auto;
2738 let cols_all = &fields.bulk_columns_all;
2739 let pushes_no_auto = &fields.bulk_pushes_no_auto;
2740 let pushes_all = &fields.bulk_pushes_all;
2741 let returning_cols = &fields.returning_cols;
2742 let auto_assigns_for_row = bulk_auto_assigns_for_row(fields);
2743 let uniformity = &fields.bulk_auto_uniformity;
2744 let first_auto_ident = fields
2745 .first_auto_ident
2746 .as_ref()
2747 .expect("has_auto implies first_auto_ident is Some");
2748 quote! {
2749 pub async fn bulk_insert(
2763 rows: &mut [Self],
2764 pool: &::rustango::sql::sqlx::PgPool,
2765 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2766 #pool_to_bulk_insert_on
2767 }
2768
2769 pub async fn bulk_insert_on #executor_generics (
2775 rows: &mut [Self],
2776 #executor_param,
2777 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2778 #executor_where
2779 {
2780 if rows.is_empty() {
2781 return ::core::result::Result::Ok(());
2782 }
2783 let _first_unset = matches!(
2784 rows[0].#first_auto_ident,
2785 ::rustango::sql::Auto::Unset
2786 );
2787 #( #uniformity )*
2788
2789 let mut _all_rows: ::std::vec::Vec<
2790 ::std::vec::Vec<::rustango::core::SqlValue>,
2791 > = ::std::vec::Vec::with_capacity(rows.len());
2792 let _columns: ::std::vec::Vec<&'static str> = if _first_unset {
2793 for _row in rows.iter() {
2794 let mut _row_vals: ::std::vec::Vec<::rustango::core::SqlValue> =
2795 ::std::vec::Vec::new();
2796 #( #pushes_no_auto )*
2797 _all_rows.push(_row_vals);
2798 }
2799 ::std::vec![ #( #cols_no_auto ),* ]
2800 } else {
2801 for _row in rows.iter() {
2802 let mut _row_vals: ::std::vec::Vec<::rustango::core::SqlValue> =
2803 ::std::vec::Vec::new();
2804 #( #pushes_all )*
2805 _all_rows.push(_row_vals);
2806 }
2807 ::std::vec![ #( #cols_all ),* ]
2808 };
2809
2810 let _query = ::rustango::core::BulkInsertQuery {
2811 model: <Self as ::rustango::core::Model>::SCHEMA,
2812 columns: _columns,
2813 rows: _all_rows,
2814 returning: ::std::vec![ #( #returning_cols ),* ],
2815 on_conflict: ::core::option::Option::None,
2816 };
2817 let _returned = ::rustango::sql::bulk_insert_on(
2818 #executor_passes_to_data_write,
2819 &_query,
2820 ).await?;
2821 if _returned.len() != rows.len() {
2822 return ::core::result::Result::Err(
2823 ::rustango::sql::ExecError::Sql(
2824 ::rustango::sql::SqlError::BulkInsertReturningMismatch {
2825 expected: rows.len(),
2826 actual: _returned.len(),
2827 }
2828 )
2829 );
2830 }
2831 for (_returning_row, _row_mut) in _returned.iter().zip(rows.iter_mut()) {
2832 #auto_assigns_for_row
2833 }
2834 #audit_bulk_insert_emit
2835 ::core::result::Result::Ok(())
2836 }
2837 }
2838 } else {
2839 let cols_all = &fields.bulk_columns_all;
2840 let pushes_all = &fields.bulk_pushes_all;
2841 quote! {
2842 pub async fn bulk_insert(
2852 rows: &[Self],
2853 pool: &::rustango::sql::sqlx::PgPool,
2854 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2855 Self::bulk_insert_on(rows, pool).await
2856 }
2857
2858 pub async fn bulk_insert_on<'_c, _E>(
2864 rows: &[Self],
2865 _executor: _E,
2866 ) -> ::core::result::Result<(), ::rustango::sql::ExecError>
2867 where
2868 _E: ::rustango::sql::sqlx::Executor<'_c, Database = ::rustango::sql::sqlx::Postgres>,
2869 {
2870 if rows.is_empty() {
2871 return ::core::result::Result::Ok(());
2872 }
2873 let mut _all_rows: ::std::vec::Vec<
2874 ::std::vec::Vec<::rustango::core::SqlValue>,
2875 > = ::std::vec::Vec::with_capacity(rows.len());
2876 for _row in rows.iter() {
2877 let mut _row_vals: ::std::vec::Vec<::rustango::core::SqlValue> =
2878 ::std::vec::Vec::new();
2879 #( #pushes_all )*
2880 _all_rows.push(_row_vals);
2881 }
2882 let _query = ::rustango::core::BulkInsertQuery {
2883 model: <Self as ::rustango::core::Model>::SCHEMA,
2884 columns: ::std::vec![ #( #cols_all ),* ],
2885 rows: _all_rows,
2886 returning: ::std::vec::Vec::new(),
2887 on_conflict: ::core::option::Option::None,
2888 };
2889 let _ = ::rustango::sql::bulk_insert_on(_executor, &_query).await?;
2890 ::core::result::Result::Ok(())
2891 }
2892 }
2893 };
2894
2895 let pk_value_helper = primary_key.map(|(pk_ident, _)| {
2896 quote! {
2897 #[doc(hidden)]
2902 pub fn __rustango_pk_value(&self) -> ::rustango::core::SqlValue {
2903 ::core::convert::Into::<::rustango::core::SqlValue>::into(
2904 ::core::clone::Clone::clone(&self.#pk_ident)
2905 )
2906 }
2907 }
2908 });
2909
2910 let has_pk_value_impl = primary_key.map(|(pk_ident, _)| {
2911 quote! {
2912 impl ::rustango::sql::HasPkValue for #struct_name {
2913 fn __rustango_pk_value_impl(&self) -> ::rustango::core::SqlValue {
2914 ::core::convert::Into::<::rustango::core::SqlValue>::into(
2915 ::core::clone::Clone::clone(&self.#pk_ident)
2916 )
2917 }
2918 }
2919 }
2920 });
2921
2922 let fk_pk_access_impl = fk_pk_access_impl_tokens(struct_name, &fields.fk_relations);
2923
2924 let assign_auto_pk_pool_impl = {
2930 let auto_assigns = &fields.auto_assigns;
2931 let auto_assigns_sqlite: Vec<TokenStream2> = fields
2937 .auto_field_idents
2938 .iter()
2939 .map(|(ident, column)| {
2940 quote! {
2941 self.#ident = ::rustango::sql::try_get_returning_sqlite(
2942 _returning_row, #column
2943 )?;
2944 }
2945 })
2946 .collect();
2947 let mysql_body = if let Some(first) = fields.first_auto_ident.as_ref() {
2948 let value_ty = fields
2966 .first_auto_value_ty
2967 .as_ref()
2968 .expect("first_auto_value_ty set whenever first_auto_ident is");
2969 quote! {
2970 let _converted = <#value_ty as ::rustango::sql::MysqlAutoIdSet>
2971 ::rustango_from_mysql_auto_id(_id)?;
2972 self.#first = ::rustango::sql::Auto::Set(_converted);
2973 ::core::result::Result::Ok(())
2974 }
2975 } else {
2976 quote! {
2977 let _ = _id;
2978 ::core::result::Result::Ok(())
2979 }
2980 };
2981 quote! {
2982 impl ::rustango::sql::AssignAutoPkPool for #struct_name {
2983 fn __rustango_assign_from_pg_row(
2984 &mut self,
2985 _returning_row: &::rustango::sql::PgReturningRow,
2986 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2987 #( #auto_assigns )*
2988 ::core::result::Result::Ok(())
2989 }
2990 fn __rustango_assign_from_mysql_id(
2991 &mut self,
2992 _id: i64,
2993 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
2994 #mysql_body
2995 }
2996 fn __rustango_assign_from_sqlite_row(
2997 &mut self,
2998 _returning_row: &::rustango::sql::SqliteReturningRow,
2999 ) -> ::core::result::Result<(), ::rustango::sql::ExecError> {
3000 #( #auto_assigns_sqlite )*
3001 ::core::result::Result::Ok(())
3002 }
3003 }
3004 }
3005 };
3006
3007 let from_aliased_row_inits = &fields.from_aliased_row_inits;
3008 let aliased_row_helper = quote! {
3009 #[doc(hidden)]
3015 pub fn __rustango_from_aliased_row(
3016 row: &::rustango::sql::sqlx::postgres::PgRow,
3017 prefix: &str,
3018 ) -> ::core::result::Result<Self, ::rustango::sql::sqlx::Error> {
3019 ::core::result::Result::Ok(Self {
3020 #( #from_aliased_row_inits ),*
3021 })
3022 }
3023 };
3024 let aliased_row_helper_my = quote! {
3027 ::rustango::__impl_my_aliased_row_decoder!(#struct_name, |row, prefix| {
3028 #( #from_aliased_row_inits ),*
3029 });
3030 };
3031
3032 let aliased_row_helper_sqlite = quote! {
3035 ::rustango::__impl_sqlite_aliased_row_decoder!(#struct_name, |row, prefix| {
3036 #( #from_aliased_row_inits ),*
3037 });
3038 };
3039
3040 let load_related_impl = load_related_impl_tokens(struct_name, &fields.fk_relations);
3041 let load_related_impl_my = load_related_impl_my_tokens(struct_name, &fields.fk_relations);
3042 let load_related_impl_sqlite =
3043 load_related_impl_sqlite_tokens(struct_name, &fields.fk_relations);
3044
3045 quote! {
3046 impl #struct_name {
3047 #[must_use]
3049 pub fn objects() -> ::rustango::query::QuerySet<#struct_name> {
3050 ::rustango::query::QuerySet::new()
3051 }
3052
3053 #insert_method
3054
3055 #bulk_insert_method
3056
3057 #save_method
3058
3059 #pk_methods
3060
3061 #pk_value_helper
3062
3063 #aliased_row_helper
3064
3065 #column_consts
3066 }
3067
3068 #aliased_row_helper_my
3069
3070 #aliased_row_helper_sqlite
3071
3072 #load_related_impl
3073
3074 #load_related_impl_my
3075
3076 #load_related_impl_sqlite
3077
3078 #has_pk_value_impl
3079
3080 #fk_pk_access_impl
3081
3082 #assign_auto_pk_pool_impl
3083 }
3084}
3085
3086fn bulk_auto_assigns_for_row(fields: &CollectedFields) -> TokenStream2 {
3090 let lines = fields.auto_field_idents.iter().map(|(ident, column)| {
3091 let col_lit = column.as_str();
3092 quote! {
3093 _row_mut.#ident = ::rustango::sql::sqlx::Row::try_get(
3094 _returning_row,
3095 #col_lit,
3096 )?;
3097 }
3098 });
3099 quote! { #( #lines )* }
3100}
3101
3102fn column_const_tokens(module_ident: &syn::Ident, entries: &[ColumnEntry]) -> TokenStream2 {
3104 let lines = entries.iter().map(|e| {
3105 let ident = &e.ident;
3106 let col_ty = column_type_ident(ident);
3107 quote! {
3108 #[allow(non_upper_case_globals)]
3109 pub const #ident: #module_ident::#col_ty = #module_ident::#col_ty;
3110 }
3111 });
3112 quote! { #(#lines)* }
3113}
3114
3115fn column_module_tokens(
3118 module_ident: &syn::Ident,
3119 struct_name: &syn::Ident,
3120 entries: &[ColumnEntry],
3121) -> TokenStream2 {
3122 let items = entries.iter().map(|e| {
3123 let col_ty = column_type_ident(&e.ident);
3124 let value_ty = &e.value_ty;
3125 let name = &e.name;
3126 let column = &e.column;
3127 let field_type_tokens = &e.field_type_tokens;
3128 quote! {
3129 #[derive(::core::clone::Clone, ::core::marker::Copy)]
3130 pub struct #col_ty;
3131
3132 impl ::rustango::core::Column for #col_ty {
3133 type Model = super::#struct_name;
3134 type Value = #value_ty;
3135 const NAME: &'static str = #name;
3136 const COLUMN: &'static str = #column;
3137 const FIELD_TYPE: ::rustango::core::FieldType = #field_type_tokens;
3138 }
3139 }
3140 });
3141 quote! {
3142 #[doc(hidden)]
3143 #[allow(non_camel_case_types, non_snake_case)]
3144 pub mod #module_ident {
3145 #[allow(unused_imports)]
3150 use super::*;
3151 #(#items)*
3152 }
3153 }
3154}
3155
3156fn column_type_ident(field_ident: &syn::Ident) -> syn::Ident {
3157 syn::Ident::new(&format!("{field_ident}_col"), field_ident.span())
3158}
3159
3160fn column_module_ident(struct_name: &syn::Ident) -> syn::Ident {
3161 syn::Ident::new(
3162 &format!("__rustango_cols_{struct_name}"),
3163 struct_name.span(),
3164 )
3165}
3166
3167fn from_row_impl_tokens(struct_name: &syn::Ident, from_row_inits: &[TokenStream2]) -> TokenStream2 {
3168 quote! {
3179 impl<'r> ::rustango::sql::sqlx::FromRow<'r, ::rustango::sql::sqlx::postgres::PgRow>
3180 for #struct_name
3181 {
3182 fn from_row(
3183 row: &'r ::rustango::sql::sqlx::postgres::PgRow,
3184 ) -> ::core::result::Result<Self, ::rustango::sql::sqlx::Error> {
3185 ::core::result::Result::Ok(Self {
3186 #( #from_row_inits ),*
3187 })
3188 }
3189 }
3190
3191 ::rustango::__impl_my_from_row!(#struct_name, |row| {
3192 #( #from_row_inits ),*
3193 });
3194
3195 ::rustango::__impl_sqlite_from_row!(#struct_name, |row| {
3196 #( #from_row_inits ),*
3197 });
3198 }
3199}
3200
3201struct ContainerAttrs {
3202 table: Option<String>,
3203 display: Option<(String, proc_macro2::Span)>,
3204 app: Option<String>,
3211 admin: Option<AdminAttrs>,
3216 audit: Option<AuditAttrs>,
3222 permissions: bool,
3226 m2m: Vec<M2MAttr>,
3230 indexes: Vec<IndexAttr>,
3236 checks: Vec<CheckAttr>,
3239 composite_fks: Vec<CompositeFkAttr>,
3243 generic_fks: Vec<GenericFkAttr>,
3247 scope: Option<String>,
3253}
3254
3255struct IndexAttr {
3257 name: Option<String>,
3259 columns: Vec<String>,
3261 unique: bool,
3263}
3264
3265struct CheckAttr {
3267 name: String,
3268 expr: String,
3269}
3270
3271struct CompositeFkAttr {
3277 name: String,
3279 to: String,
3281 from: Vec<String>,
3283 on: Vec<String>,
3285}
3286
3287struct GenericFkAttr {
3292 name: String,
3294 ct_column: String,
3296 pk_column: String,
3298}
3299
3300struct M2MAttr {
3302 name: String,
3304 to: String,
3306 through: String,
3308 src: String,
3310 dst: String,
3312}
3313
3314#[derive(Default)]
3320struct AuditAttrs {
3321 track: Option<(Vec<String>, proc_macro2::Span)>,
3325}
3326
3327#[derive(Default)]
3332struct AdminAttrs {
3333 list_display: Option<(Vec<String>, proc_macro2::Span)>,
3334 search_fields: Option<(Vec<String>, proc_macro2::Span)>,
3335 list_per_page: Option<usize>,
3336 ordering: Option<(Vec<(String, bool)>, proc_macro2::Span)>,
3337 readonly_fields: Option<(Vec<String>, proc_macro2::Span)>,
3338 list_filter: Option<(Vec<String>, proc_macro2::Span)>,
3339 actions: Option<(Vec<String>, proc_macro2::Span)>,
3342 fieldsets: Option<(Vec<(String, Vec<String>)>, proc_macro2::Span)>,
3346}
3347
3348fn parse_container_attrs(input: &DeriveInput) -> syn::Result<ContainerAttrs> {
3349 let mut out = ContainerAttrs {
3350 table: None,
3351 display: None,
3352 app: None,
3353 admin: None,
3354 audit: None,
3355 permissions: false,
3356 m2m: Vec::new(),
3357 indexes: Vec::new(),
3358 checks: Vec::new(),
3359 composite_fks: Vec::new(),
3360 generic_fks: Vec::new(),
3361 scope: None,
3362 };
3363 for attr in &input.attrs {
3364 if !attr.path().is_ident("rustango") {
3365 continue;
3366 }
3367 attr.parse_nested_meta(|meta| {
3368 if meta.path.is_ident("table") {
3369 let s: LitStr = meta.value()?.parse()?;
3370 out.table = Some(s.value());
3371 return Ok(());
3372 }
3373 if meta.path.is_ident("display") {
3374 let s: LitStr = meta.value()?.parse()?;
3375 out.display = Some((s.value(), s.span()));
3376 return Ok(());
3377 }
3378 if meta.path.is_ident("app") {
3379 let s: LitStr = meta.value()?.parse()?;
3380 out.app = Some(s.value());
3381 return Ok(());
3382 }
3383 if meta.path.is_ident("scope") {
3384 let s: LitStr = meta.value()?.parse()?;
3385 let val = s.value();
3386 if !matches!(val.to_ascii_lowercase().as_str(), "registry" | "tenant") {
3387 return Err(meta.error(format!(
3388 "`scope` must be \"registry\" or \"tenant\", got {val:?}"
3389 )));
3390 }
3391 out.scope = Some(val);
3392 return Ok(());
3393 }
3394 if meta.path.is_ident("admin") {
3395 let mut admin = AdminAttrs::default();
3396 meta.parse_nested_meta(|inner| {
3397 if inner.path.is_ident("list_display") {
3398 let s: LitStr = inner.value()?.parse()?;
3399 admin.list_display =
3400 Some((split_field_list(&s.value()), s.span()));
3401 return Ok(());
3402 }
3403 if inner.path.is_ident("search_fields") {
3404 let s: LitStr = inner.value()?.parse()?;
3405 admin.search_fields =
3406 Some((split_field_list(&s.value()), s.span()));
3407 return Ok(());
3408 }
3409 if inner.path.is_ident("readonly_fields") {
3410 let s: LitStr = inner.value()?.parse()?;
3411 admin.readonly_fields =
3412 Some((split_field_list(&s.value()), s.span()));
3413 return Ok(());
3414 }
3415 if inner.path.is_ident("list_per_page") {
3416 let lit: syn::LitInt = inner.value()?.parse()?;
3417 admin.list_per_page = Some(lit.base10_parse::<usize>()?);
3418 return Ok(());
3419 }
3420 if inner.path.is_ident("ordering") {
3421 let s: LitStr = inner.value()?.parse()?;
3422 admin.ordering = Some((
3423 parse_ordering_list(&s.value()),
3424 s.span(),
3425 ));
3426 return Ok(());
3427 }
3428 if inner.path.is_ident("list_filter") {
3429 let s: LitStr = inner.value()?.parse()?;
3430 admin.list_filter =
3431 Some((split_field_list(&s.value()), s.span()));
3432 return Ok(());
3433 }
3434 if inner.path.is_ident("actions") {
3435 let s: LitStr = inner.value()?.parse()?;
3436 admin.actions =
3437 Some((split_field_list(&s.value()), s.span()));
3438 return Ok(());
3439 }
3440 if inner.path.is_ident("fieldsets") {
3441 let s: LitStr = inner.value()?.parse()?;
3442 admin.fieldsets =
3443 Some((parse_fieldset_list(&s.value()), s.span()));
3444 return Ok(());
3445 }
3446 Err(inner.error(
3447 "unknown admin attribute (supported: \
3448 `list_display`, `search_fields`, `readonly_fields`, \
3449 `list_filter`, `list_per_page`, `ordering`, `actions`, \
3450 `fieldsets`)",
3451 ))
3452 })?;
3453 out.admin = Some(admin);
3454 return Ok(());
3455 }
3456 if meta.path.is_ident("audit") {
3457 let mut audit = AuditAttrs::default();
3458 meta.parse_nested_meta(|inner| {
3459 if inner.path.is_ident("track") {
3460 let s: LitStr = inner.value()?.parse()?;
3461 audit.track =
3462 Some((split_field_list(&s.value()), s.span()));
3463 return Ok(());
3464 }
3465 Err(inner.error(
3466 "unknown audit attribute (supported: `track`)",
3467 ))
3468 })?;
3469 out.audit = Some(audit);
3470 return Ok(());
3471 }
3472 if meta.path.is_ident("permissions") {
3473 out.permissions = true;
3474 return Ok(());
3475 }
3476 if meta.path.is_ident("unique_together") {
3477 let (columns, name) = parse_together_attr(&meta, "unique_together")?;
3486 out.indexes.push(IndexAttr { name, columns, unique: true });
3487 return Ok(());
3488 }
3489 if meta.path.is_ident("index_together") {
3490 let (columns, name) = parse_together_attr(&meta, "index_together")?;
3496 out.indexes.push(IndexAttr { name, columns, unique: false });
3497 return Ok(());
3498 }
3499 if meta.path.is_ident("index") {
3500 let cols_lit: LitStr = meta.value()?.parse()?;
3508 let columns = split_field_list(&cols_lit.value());
3509 out.indexes.push(IndexAttr { name: None, columns, unique: false });
3510 return Ok(());
3511 }
3512 if meta.path.is_ident("check") {
3513 let mut name: Option<String> = None;
3515 let mut expr: Option<String> = None;
3516 meta.parse_nested_meta(|inner| {
3517 if inner.path.is_ident("name") {
3518 let s: LitStr = inner.value()?.parse()?;
3519 name = Some(s.value());
3520 return Ok(());
3521 }
3522 if inner.path.is_ident("expr") {
3523 let s: LitStr = inner.value()?.parse()?;
3524 expr = Some(s.value());
3525 return Ok(());
3526 }
3527 Err(inner.error("unknown check attribute (supported: `name`, `expr`)"))
3528 })?;
3529 let name = name.ok_or_else(|| meta.error("check requires `name = \"...\"`"))?;
3530 let expr = expr.ok_or_else(|| meta.error("check requires `expr = \"...\"`"))?;
3531 out.checks.push(CheckAttr { name, expr });
3532 return Ok(());
3533 }
3534 if meta.path.is_ident("generic_fk") {
3535 let mut gfk = GenericFkAttr {
3536 name: String::new(),
3537 ct_column: String::new(),
3538 pk_column: String::new(),
3539 };
3540 meta.parse_nested_meta(|inner| {
3541 if inner.path.is_ident("name") {
3542 let s: LitStr = inner.value()?.parse()?;
3543 gfk.name = s.value();
3544 return Ok(());
3545 }
3546 if inner.path.is_ident("ct_column") {
3547 let s: LitStr = inner.value()?.parse()?;
3548 gfk.ct_column = s.value();
3549 return Ok(());
3550 }
3551 if inner.path.is_ident("pk_column") {
3552 let s: LitStr = inner.value()?.parse()?;
3553 gfk.pk_column = s.value();
3554 return Ok(());
3555 }
3556 Err(inner.error(
3557 "unknown generic_fk attribute (supported: `name`, `ct_column`, `pk_column`)",
3558 ))
3559 })?;
3560 if gfk.name.is_empty() {
3561 return Err(meta.error("generic_fk requires `name = \"...\"`"));
3562 }
3563 if gfk.ct_column.is_empty() {
3564 return Err(meta.error("generic_fk requires `ct_column = \"...\"`"));
3565 }
3566 if gfk.pk_column.is_empty() {
3567 return Err(meta.error("generic_fk requires `pk_column = \"...\"`"));
3568 }
3569 out.generic_fks.push(gfk);
3570 return Ok(());
3571 }
3572 if meta.path.is_ident("fk_composite") {
3573 let mut fk = CompositeFkAttr {
3574 name: String::new(),
3575 to: String::new(),
3576 from: Vec::new(),
3577 on: Vec::new(),
3578 };
3579 meta.parse_nested_meta(|inner| {
3580 if inner.path.is_ident("name") {
3581 let s: LitStr = inner.value()?.parse()?;
3582 fk.name = s.value();
3583 return Ok(());
3584 }
3585 if inner.path.is_ident("to") {
3586 let s: LitStr = inner.value()?.parse()?;
3587 fk.to = s.value();
3588 return Ok(());
3589 }
3590 if inner.path.is_ident("on") || inner.path.is_ident("from") {
3593 let value = inner.value()?;
3594 let content;
3595 syn::parenthesized!(content in value);
3596 let lits: syn::punctuated::Punctuated<syn::LitStr, syn::Token![,]> =
3597 content.parse_terminated(
3598 |p| p.parse::<syn::LitStr>(),
3599 syn::Token![,],
3600 )?;
3601 let cols: Vec<String> = lits.iter().map(syn::LitStr::value).collect();
3602 if inner.path.is_ident("on") {
3603 fk.on = cols;
3604 } else {
3605 fk.from = cols;
3606 }
3607 return Ok(());
3608 }
3609 Err(inner.error(
3610 "unknown fk_composite attribute (supported: `name`, `to`, `on`, `from`)",
3611 ))
3612 })?;
3613 if fk.name.is_empty() {
3614 return Err(meta.error("fk_composite requires `name = \"...\"`"));
3615 }
3616 if fk.to.is_empty() {
3617 return Err(meta.error("fk_composite requires `to = \"...\"`"));
3618 }
3619 if fk.from.is_empty() || fk.on.is_empty() {
3620 return Err(meta.error(
3621 "fk_composite requires non-empty `from = (...)` and `on = (...)` tuples",
3622 ));
3623 }
3624 if fk.from.len() != fk.on.len() {
3625 return Err(meta.error(format!(
3626 "fk_composite `from` ({} cols) and `on` ({} cols) must be the same length",
3627 fk.from.len(),
3628 fk.on.len(),
3629 )));
3630 }
3631 out.composite_fks.push(fk);
3632 return Ok(());
3633 }
3634 if meta.path.is_ident("m2m") {
3635 let mut m2m = M2MAttr {
3636 name: String::new(),
3637 to: String::new(),
3638 through: String::new(),
3639 src: String::new(),
3640 dst: String::new(),
3641 };
3642 meta.parse_nested_meta(|inner| {
3643 if inner.path.is_ident("name") {
3644 let s: LitStr = inner.value()?.parse()?;
3645 m2m.name = s.value();
3646 return Ok(());
3647 }
3648 if inner.path.is_ident("to") {
3649 let s: LitStr = inner.value()?.parse()?;
3650 m2m.to = s.value();
3651 return Ok(());
3652 }
3653 if inner.path.is_ident("through") {
3654 let s: LitStr = inner.value()?.parse()?;
3655 m2m.through = s.value();
3656 return Ok(());
3657 }
3658 if inner.path.is_ident("src") {
3659 let s: LitStr = inner.value()?.parse()?;
3660 m2m.src = s.value();
3661 return Ok(());
3662 }
3663 if inner.path.is_ident("dst") {
3664 let s: LitStr = inner.value()?.parse()?;
3665 m2m.dst = s.value();
3666 return Ok(());
3667 }
3668 Err(inner.error("unknown m2m attribute (supported: `name`, `to`, `through`, `src`, `dst`)"))
3669 })?;
3670 if m2m.name.is_empty() {
3671 return Err(meta.error("m2m requires `name = \"...\"`"));
3672 }
3673 if m2m.to.is_empty() {
3674 return Err(meta.error("m2m requires `to = \"...\"`"));
3675 }
3676 if m2m.through.is_empty() {
3677 return Err(meta.error("m2m requires `through = \"...\"`"));
3678 }
3679 if m2m.src.is_empty() {
3680 return Err(meta.error("m2m requires `src = \"...\"`"));
3681 }
3682 if m2m.dst.is_empty() {
3683 return Err(meta.error("m2m requires `dst = \"...\"`"));
3684 }
3685 out.m2m.push(m2m);
3686 return Ok(());
3687 }
3688 Err(meta.error("unknown rustango container attribute"))
3689 })?;
3690 }
3691 Ok(out)
3692}
3693
3694fn split_field_list(raw: &str) -> Vec<String> {
3698 raw.split(',')
3699 .map(str::trim)
3700 .filter(|s| !s.is_empty())
3701 .map(str::to_owned)
3702 .collect()
3703}
3704
3705fn parse_together_attr(
3713 meta: &syn::meta::ParseNestedMeta<'_>,
3714 attr: &str,
3715) -> syn::Result<(Vec<String>, Option<String>)> {
3716 if meta.input.peek(syn::Token![=]) {
3719 let cols_lit: LitStr = meta.value()?.parse()?;
3720 let columns = split_field_list(&cols_lit.value());
3721 check_together_columns(meta, attr, &columns)?;
3722 return Ok((columns, None));
3723 }
3724 let mut columns: Option<Vec<String>> = None;
3725 let mut name: Option<String> = None;
3726 meta.parse_nested_meta(|inner| {
3727 if inner.path.is_ident("columns") {
3728 let s: LitStr = inner.value()?.parse()?;
3729 columns = Some(split_field_list(&s.value()));
3730 return Ok(());
3731 }
3732 if inner.path.is_ident("name") {
3733 let s: LitStr = inner.value()?.parse()?;
3734 name = Some(s.value());
3735 return Ok(());
3736 }
3737 Err(inner.error("unknown sub-attribute (supported: `columns`, `name`)"))
3738 })?;
3739 let columns = columns.ok_or_else(|| {
3740 meta.error(format!(
3741 "{attr}(...) requires a `columns = \"col1, col2\"` argument",
3742 ))
3743 })?;
3744 check_together_columns(meta, attr, &columns)?;
3745 Ok((columns, name))
3746}
3747
3748fn check_together_columns(
3749 meta: &syn::meta::ParseNestedMeta<'_>,
3750 attr: &str,
3751 columns: &[String],
3752) -> syn::Result<()> {
3753 if columns.len() < 2 {
3754 let single = if attr == "unique_together" {
3755 "#[rustango(unique)] on the field"
3756 } else {
3757 "#[rustango(index)] on the field"
3758 };
3759 return Err(meta.error(format!(
3760 "{attr} expects two or more columns; for a single-column equivalent use {single}",
3761 )));
3762 }
3763 Ok(())
3764}
3765
3766fn parse_fieldset_list(raw: &str) -> Vec<(String, Vec<String>)> {
3775 raw.split('|')
3776 .map(str::trim)
3777 .filter(|s| !s.is_empty())
3778 .map(|section| {
3779 let (title, rest) = match section.split_once(':') {
3781 Some((title, rest)) if !title.contains(',') => (title.trim().to_owned(), rest),
3782 _ => (String::new(), section),
3783 };
3784 let fields = split_field_list(rest);
3785 (title, fields)
3786 })
3787 .collect()
3788}
3789
3790fn parse_ordering_list(raw: &str) -> Vec<(String, bool)> {
3793 raw.split(',')
3794 .map(str::trim)
3795 .filter(|s| !s.is_empty())
3796 .map(|spec| {
3797 spec.strip_prefix('-')
3798 .map_or((spec.to_owned(), false), |rest| {
3799 (rest.trim().to_owned(), true)
3800 })
3801 })
3802 .collect()
3803}
3804
3805struct FieldAttrs {
3806 column: Option<String>,
3807 primary_key: bool,
3808 fk: Option<String>,
3809 o2o: Option<String>,
3810 on: Option<String>,
3811 max_length: Option<u32>,
3812 min: Option<i64>,
3813 max: Option<i64>,
3814 default: Option<String>,
3815 auto_uuid: bool,
3821 auto_now_add: bool,
3826 auto_now: bool,
3832 soft_delete: bool,
3837 unique: bool,
3840 index: bool,
3844 index_unique: bool,
3845 index_name: Option<String>,
3846 generated_as: Option<String>,
3852}
3853
3854fn parse_field_attrs(field: &syn::Field) -> syn::Result<FieldAttrs> {
3855 let mut out = FieldAttrs {
3856 column: None,
3857 primary_key: false,
3858 fk: None,
3859 o2o: None,
3860 on: None,
3861 max_length: None,
3862 min: None,
3863 max: None,
3864 default: None,
3865 auto_uuid: false,
3866 auto_now_add: false,
3867 auto_now: false,
3868 soft_delete: false,
3869 unique: false,
3870 index: false,
3871 index_unique: false,
3872 index_name: None,
3873 generated_as: None,
3874 };
3875 for attr in &field.attrs {
3876 if !attr.path().is_ident("rustango") {
3877 continue;
3878 }
3879 attr.parse_nested_meta(|meta| {
3880 if meta.path.is_ident("column") {
3881 let s: LitStr = meta.value()?.parse()?;
3882 out.column = Some(s.value());
3883 return Ok(());
3884 }
3885 if meta.path.is_ident("primary_key") {
3886 out.primary_key = true;
3887 return Ok(());
3888 }
3889 if meta.path.is_ident("fk") {
3890 let s: LitStr = meta.value()?.parse()?;
3891 out.fk = Some(s.value());
3892 return Ok(());
3893 }
3894 if meta.path.is_ident("o2o") {
3895 let s: LitStr = meta.value()?.parse()?;
3896 out.o2o = Some(s.value());
3897 return Ok(());
3898 }
3899 if meta.path.is_ident("on") {
3900 let s: LitStr = meta.value()?.parse()?;
3901 out.on = Some(s.value());
3902 return Ok(());
3903 }
3904 if meta.path.is_ident("max_length") {
3905 let lit: syn::LitInt = meta.value()?.parse()?;
3906 out.max_length = Some(lit.base10_parse::<u32>()?);
3907 return Ok(());
3908 }
3909 if meta.path.is_ident("min") {
3910 out.min = Some(parse_signed_i64(&meta)?);
3911 return Ok(());
3912 }
3913 if meta.path.is_ident("max") {
3914 out.max = Some(parse_signed_i64(&meta)?);
3915 return Ok(());
3916 }
3917 if meta.path.is_ident("default") {
3918 let s: LitStr = meta.value()?.parse()?;
3919 out.default = Some(s.value());
3920 return Ok(());
3921 }
3922 if meta.path.is_ident("generated_as") {
3923 let s: LitStr = meta.value()?.parse()?;
3924 out.generated_as = Some(s.value());
3925 return Ok(());
3926 }
3927 if meta.path.is_ident("auto_uuid") {
3928 out.auto_uuid = true;
3929 out.primary_key = true;
3933 if out.default.is_none() {
3934 out.default = Some("gen_random_uuid()".into());
3935 }
3936 return Ok(());
3937 }
3938 if meta.path.is_ident("auto_now_add") {
3939 out.auto_now_add = true;
3940 if out.default.is_none() {
3941 out.default = Some("now()".into());
3942 }
3943 return Ok(());
3944 }
3945 if meta.path.is_ident("auto_now") {
3946 out.auto_now = true;
3947 if out.default.is_none() {
3948 out.default = Some("now()".into());
3949 }
3950 return Ok(());
3951 }
3952 if meta.path.is_ident("soft_delete") {
3953 out.soft_delete = true;
3954 return Ok(());
3955 }
3956 if meta.path.is_ident("unique") {
3957 out.unique = true;
3958 return Ok(());
3959 }
3960 if meta.path.is_ident("index") {
3961 out.index = true;
3962 if meta.input.peek(syn::token::Paren) {
3964 meta.parse_nested_meta(|inner| {
3965 if inner.path.is_ident("unique") {
3966 out.index_unique = true;
3967 return Ok(());
3968 }
3969 if inner.path.is_ident("name") {
3970 let s: LitStr = inner.value()?.parse()?;
3971 out.index_name = Some(s.value());
3972 return Ok(());
3973 }
3974 Err(inner
3975 .error("unknown index sub-attribute (supported: `unique`, `name`)"))
3976 })?;
3977 }
3978 return Ok(());
3979 }
3980 Err(meta.error("unknown rustango field attribute"))
3981 })?;
3982 }
3983 Ok(out)
3984}
3985
3986fn parse_signed_i64(meta: &syn::meta::ParseNestedMeta<'_>) -> syn::Result<i64> {
3988 let expr: syn::Expr = meta.value()?.parse()?;
3989 match expr {
3990 syn::Expr::Lit(syn::ExprLit {
3991 lit: syn::Lit::Int(lit),
3992 ..
3993 }) => lit.base10_parse::<i64>(),
3994 syn::Expr::Unary(syn::ExprUnary {
3995 op: syn::UnOp::Neg(_),
3996 expr,
3997 ..
3998 }) => {
3999 if let syn::Expr::Lit(syn::ExprLit {
4000 lit: syn::Lit::Int(lit),
4001 ..
4002 }) = *expr
4003 {
4004 let v: i64 = lit.base10_parse()?;
4005 Ok(-v)
4006 } else {
4007 Err(syn::Error::new_spanned(expr, "expected integer literal"))
4008 }
4009 }
4010 other => Err(syn::Error::new_spanned(
4011 other,
4012 "expected integer literal (signed)",
4013 )),
4014 }
4015}
4016
4017struct FieldInfo<'a> {
4018 ident: &'a syn::Ident,
4019 column: String,
4020 primary_key: bool,
4021 auto: bool,
4025 value_ty: &'a Type,
4028 field_type_tokens: TokenStream2,
4030 schema: TokenStream2,
4031 from_row_init: TokenStream2,
4032 from_aliased_row_init: TokenStream2,
4038 fk_inner: Option<Type>,
4042 fk_pk_kind: DetectedKind,
4048 nullable: bool,
4056 auto_now: bool,
4062 auto_now_add: bool,
4068 soft_delete: bool,
4073 generated_as: Option<String>,
4078}
4079
4080fn process_field<'a>(field: &'a syn::Field, table: &str) -> syn::Result<FieldInfo<'a>> {
4081 let attrs = parse_field_attrs(field)?;
4082 let ident = field
4083 .ident
4084 .as_ref()
4085 .ok_or_else(|| syn::Error::new(field.span(), "tuple structs are not supported"))?;
4086 let name = ident.to_string();
4087 let column = attrs.column.clone().unwrap_or_else(|| name.clone());
4088 let primary_key = attrs.primary_key;
4089 let DetectedType {
4090 kind,
4091 nullable,
4092 auto: detected_auto,
4093 fk_inner,
4094 } = detect_type(&field.ty)?;
4095 check_bound_compatibility(field, &attrs, kind)?;
4096 let auto = detected_auto;
4097 if attrs.auto_uuid {
4103 if kind != DetectedKind::Uuid {
4104 return Err(syn::Error::new_spanned(
4105 field,
4106 "`#[rustango(auto_uuid)]` requires the field type to be \
4107 `Auto<uuid::Uuid>`",
4108 ));
4109 }
4110 if !detected_auto {
4111 return Err(syn::Error::new_spanned(
4112 field,
4113 "`#[rustango(auto_uuid)]` requires the field type to be \
4114 wrapped in `Auto<...>` so the macro skips the column on \
4115 INSERT and the DB DEFAULT (`gen_random_uuid()`) fires",
4116 ));
4117 }
4118 }
4119 if attrs.auto_now_add || attrs.auto_now {
4120 if kind != DetectedKind::DateTime {
4121 return Err(syn::Error::new_spanned(
4122 field,
4123 "`#[rustango(auto_now_add)]` / `#[rustango(auto_now)]` require \
4124 the field type to be `Auto<chrono::DateTime<chrono::Utc>>`",
4125 ));
4126 }
4127 if !detected_auto {
4128 return Err(syn::Error::new_spanned(
4129 field,
4130 "`#[rustango(auto_now_add)]` / `#[rustango(auto_now)]` require \
4131 the field type to be wrapped in `Auto<...>` so the macro skips \
4132 the column on INSERT and the DB DEFAULT (`now()`) fires",
4133 ));
4134 }
4135 }
4136 if attrs.soft_delete && !(kind == DetectedKind::DateTime && nullable) {
4137 return Err(syn::Error::new_spanned(
4138 field,
4139 "`#[rustango(soft_delete)]` requires the field type to be \
4140 `Option<chrono::DateTime<chrono::Utc>>`",
4141 ));
4142 }
4143 let is_mixin_auto = attrs.auto_uuid || attrs.auto_now_add || attrs.auto_now;
4144 if detected_auto && !primary_key && !is_mixin_auto {
4145 return Err(syn::Error::new_spanned(
4146 field,
4147 "`Auto<T>` is only valid on a `#[rustango(primary_key)]` field, \
4148 or on a field carrying one of `auto_uuid`, `auto_now_add`, or \
4149 `auto_now`",
4150 ));
4151 }
4152 if detected_auto && attrs.default.is_some() && !is_mixin_auto {
4153 return Err(syn::Error::new_spanned(
4154 field,
4155 "`#[rustango(default = \"…\")]` is redundant on an `Auto<T>` field — \
4156 SERIAL / BIGSERIAL already supplies a default sequence.",
4157 ));
4158 }
4159 if fk_inner.is_some() && primary_key {
4160 return Err(syn::Error::new_spanned(
4161 field,
4162 "`ForeignKey<T>` is not allowed on a primary-key field — \
4163 a row's PK is its own identity, not a reference to a parent.",
4164 ));
4165 }
4166 if attrs.generated_as.is_some() {
4167 if primary_key {
4168 return Err(syn::Error::new_spanned(
4169 field,
4170 "`#[rustango(generated_as = \"…\")]` is not allowed on a \
4171 primary-key field — a PK must be writable so the row \
4172 has an identity at INSERT time.",
4173 ));
4174 }
4175 if attrs.default.is_some() {
4176 return Err(syn::Error::new_spanned(
4177 field,
4178 "`#[rustango(generated_as = \"…\")]` cannot combine with \
4179 `default = \"…\"` — Postgres rejects DEFAULT on \
4180 generated columns. The expression IS the default.",
4181 ));
4182 }
4183 if detected_auto {
4184 return Err(syn::Error::new_spanned(
4185 field,
4186 "`#[rustango(generated_as = \"…\")]` is not allowed on \
4187 an `Auto<T>` field — generated columns are computed \
4188 by the DB, not server-assigned via a sequence. Use a \
4189 plain Rust type (e.g. `f64`).",
4190 ));
4191 }
4192 if fk_inner.is_some() {
4193 return Err(syn::Error::new_spanned(
4194 field,
4195 "`#[rustango(generated_as = \"…\")]` is not allowed on a \
4196 ForeignKey field.",
4197 ));
4198 }
4199 }
4200 let relation = relation_tokens(field, &attrs, fk_inner, table)?;
4201 let column_lit = column.as_str();
4202 let field_type_tokens = kind.variant_tokens();
4203 let max_length = optional_u32(attrs.max_length);
4204 let min = optional_i64(attrs.min);
4205 let max = optional_i64(attrs.max);
4206 let default = optional_str(attrs.default.as_deref());
4207
4208 let unique = attrs.unique;
4209 let generated_as = optional_str(attrs.generated_as.as_deref());
4210 let schema = quote! {
4211 ::rustango::core::FieldSchema {
4212 name: #name,
4213 column: #column_lit,
4214 ty: #field_type_tokens,
4215 nullable: #nullable,
4216 primary_key: #primary_key,
4217 relation: #relation,
4218 max_length: #max_length,
4219 min: #min,
4220 max: #max,
4221 default: #default,
4222 auto: #auto,
4223 unique: #unique,
4224 generated_as: #generated_as,
4225 }
4226 };
4227
4228 let from_row_init = quote! {
4229 #ident: ::rustango::sql::sqlx::Row::try_get(row, #column_lit)?
4230 };
4231 let from_aliased_row_init = quote! {
4232 #ident: ::rustango::sql::sqlx::Row::try_get(
4233 row,
4234 ::std::format!("{}__{}", prefix, #column_lit).as_str(),
4235 )?
4236 };
4237
4238 Ok(FieldInfo {
4239 ident,
4240 column,
4241 primary_key,
4242 auto,
4243 value_ty: &field.ty,
4244 field_type_tokens,
4245 schema,
4246 from_row_init,
4247 from_aliased_row_init,
4248 fk_inner: fk_inner.cloned(),
4249 fk_pk_kind: kind,
4250 nullable,
4251 auto_now: attrs.auto_now,
4252 auto_now_add: attrs.auto_now_add,
4253 soft_delete: attrs.soft_delete,
4254 generated_as: attrs.generated_as.clone(),
4255 })
4256}
4257
4258fn check_bound_compatibility(
4259 field: &syn::Field,
4260 attrs: &FieldAttrs,
4261 kind: DetectedKind,
4262) -> syn::Result<()> {
4263 if attrs.max_length.is_some() && kind != DetectedKind::String {
4264 return Err(syn::Error::new_spanned(
4265 field,
4266 "`max_length` is only valid on `String` fields (or `Option<String>`)",
4267 ));
4268 }
4269 if (attrs.min.is_some() || attrs.max.is_some()) && !kind.is_integer() {
4270 return Err(syn::Error::new_spanned(
4271 field,
4272 "`min` / `max` are only valid on integer fields (`i32`, `i64`, optionally Option-wrapped)",
4273 ));
4274 }
4275 if let (Some(min), Some(max)) = (attrs.min, attrs.max) {
4276 if min > max {
4277 return Err(syn::Error::new_spanned(
4278 field,
4279 format!("`min` ({min}) is greater than `max` ({max})"),
4280 ));
4281 }
4282 }
4283 Ok(())
4284}
4285
4286fn optional_u32(value: Option<u32>) -> TokenStream2 {
4287 if let Some(v) = value {
4288 quote!(::core::option::Option::Some(#v))
4289 } else {
4290 quote!(::core::option::Option::None)
4291 }
4292}
4293
4294fn optional_i64(value: Option<i64>) -> TokenStream2 {
4295 if let Some(v) = value {
4296 quote!(::core::option::Option::Some(#v))
4297 } else {
4298 quote!(::core::option::Option::None)
4299 }
4300}
4301
4302fn optional_str(value: Option<&str>) -> TokenStream2 {
4303 if let Some(v) = value {
4304 quote!(::core::option::Option::Some(#v))
4305 } else {
4306 quote!(::core::option::Option::None)
4307 }
4308}
4309
4310fn relation_tokens(
4311 field: &syn::Field,
4312 attrs: &FieldAttrs,
4313 fk_inner: Option<&syn::Type>,
4314 table: &str,
4315) -> syn::Result<TokenStream2> {
4316 if let Some(inner) = fk_inner {
4317 if attrs.fk.is_some() || attrs.o2o.is_some() {
4318 return Err(syn::Error::new_spanned(
4319 field,
4320 "`ForeignKey<T>` already declares the FK target via the type parameter — \
4321 remove the `fk = \"…\"` / `o2o = \"…\"` attribute.",
4322 ));
4323 }
4324 let on = attrs.on.as_deref().unwrap_or("id");
4325 return Ok(quote! {
4326 ::core::option::Option::Some(::rustango::core::Relation::Fk {
4327 to: <#inner as ::rustango::core::Model>::SCHEMA.table,
4328 on: #on,
4329 })
4330 });
4331 }
4332 match (&attrs.fk, &attrs.o2o) {
4333 (Some(_), Some(_)) => Err(syn::Error::new_spanned(
4334 field,
4335 "`fk` and `o2o` are mutually exclusive",
4336 )),
4337 (Some(to), None) => {
4338 let on = attrs.on.as_deref().unwrap_or("id");
4339 let resolved = if to == "self" { table } else { to };
4345 Ok(quote! {
4346 ::core::option::Option::Some(::rustango::core::Relation::Fk { to: #resolved, on: #on })
4347 })
4348 }
4349 (None, Some(to)) => {
4350 let on = attrs.on.as_deref().unwrap_or("id");
4351 let resolved = if to == "self" { table } else { to };
4352 Ok(quote! {
4353 ::core::option::Option::Some(::rustango::core::Relation::O2O { to: #resolved, on: #on })
4354 })
4355 }
4356 (None, None) => {
4357 if attrs.on.is_some() {
4358 return Err(syn::Error::new_spanned(
4359 field,
4360 "`on` requires `fk` or `o2o`",
4361 ));
4362 }
4363 Ok(quote!(::core::option::Option::None))
4364 }
4365 }
4366}
4367
4368#[derive(Clone, Copy, PartialEq, Eq)]
4372enum DetectedKind {
4373 I16,
4374 I32,
4375 I64,
4376 F32,
4377 F64,
4378 Bool,
4379 String,
4380 DateTime,
4381 Date,
4382 Uuid,
4383 Json,
4384}
4385
4386impl DetectedKind {
4387 fn variant_tokens(self) -> TokenStream2 {
4388 match self {
4389 Self::I16 => quote!(::rustango::core::FieldType::I16),
4390 Self::I32 => quote!(::rustango::core::FieldType::I32),
4391 Self::I64 => quote!(::rustango::core::FieldType::I64),
4392 Self::F32 => quote!(::rustango::core::FieldType::F32),
4393 Self::F64 => quote!(::rustango::core::FieldType::F64),
4394 Self::Bool => quote!(::rustango::core::FieldType::Bool),
4395 Self::String => quote!(::rustango::core::FieldType::String),
4396 Self::DateTime => quote!(::rustango::core::FieldType::DateTime),
4397 Self::Date => quote!(::rustango::core::FieldType::Date),
4398 Self::Uuid => quote!(::rustango::core::FieldType::Uuid),
4399 Self::Json => quote!(::rustango::core::FieldType::Json),
4400 }
4401 }
4402
4403 fn is_integer(self) -> bool {
4404 matches!(self, Self::I16 | Self::I32 | Self::I64)
4405 }
4406
4407 fn sqlvalue_match_arm(self) -> (TokenStream2, TokenStream2) {
4415 match self {
4416 Self::I16 => (quote!(I16), quote!(0i16)),
4417 Self::I32 => (quote!(I32), quote!(0i32)),
4418 Self::I64 => (quote!(I64), quote!(0i64)),
4419 Self::F32 => (quote!(F32), quote!(0f32)),
4420 Self::F64 => (quote!(F64), quote!(0f64)),
4421 Self::Bool => (quote!(Bool), quote!(false)),
4422 Self::String => (quote!(String), quote!(::std::string::String::new())),
4423 Self::DateTime => (
4424 quote!(DateTime),
4425 quote!(<::chrono::DateTime<::chrono::Utc> as ::std::default::Default>::default()),
4426 ),
4427 Self::Date => (
4428 quote!(Date),
4429 quote!(<::chrono::NaiveDate as ::std::default::Default>::default()),
4430 ),
4431 Self::Uuid => (quote!(Uuid), quote!(::uuid::Uuid::nil())),
4432 Self::Json => (quote!(Json), quote!(::serde_json::Value::Null)),
4433 }
4434 }
4435}
4436
4437#[derive(Clone, Copy)]
4443struct DetectedType<'a> {
4444 kind: DetectedKind,
4445 nullable: bool,
4446 auto: bool,
4447 fk_inner: Option<&'a syn::Type>,
4448}
4449
4450fn auto_inner_type(ty: &syn::Type) -> Option<&syn::Type> {
4455 let Type::Path(TypePath { path, qself: None }) = ty else {
4456 return None;
4457 };
4458 let last = path.segments.last()?;
4459 if last.ident != "Auto" {
4460 return None;
4461 }
4462 let syn::PathArguments::AngleBracketed(args) = &last.arguments else {
4463 return None;
4464 };
4465 args.args.iter().find_map(|a| match a {
4466 syn::GenericArgument::Type(t) => Some(t),
4467 _ => None,
4468 })
4469}
4470
4471fn detect_type(ty: &syn::Type) -> syn::Result<DetectedType<'_>> {
4472 let Type::Path(TypePath { path, qself: None }) = ty else {
4473 return Err(syn::Error::new_spanned(ty, "unsupported field type"));
4474 };
4475 let last = path
4476 .segments
4477 .last()
4478 .ok_or_else(|| syn::Error::new_spanned(ty, "empty type path"))?;
4479
4480 if last.ident == "Option" {
4481 let inner = generic_inner(ty, &last.arguments, "Option")?;
4482 let inner_det = detect_type(inner)?;
4483 if inner_det.nullable {
4484 return Err(syn::Error::new_spanned(
4485 ty,
4486 "nested Option is not supported",
4487 ));
4488 }
4489 if inner_det.auto {
4490 return Err(syn::Error::new_spanned(
4491 ty,
4492 "`Option<Auto<T>>` is not supported — Auto fields are server-assigned and cannot be NULL",
4493 ));
4494 }
4495 return Ok(DetectedType {
4496 nullable: true,
4497 ..inner_det
4498 });
4499 }
4500
4501 if last.ident == "Auto" {
4502 let inner = generic_inner(ty, &last.arguments, "Auto")?;
4503 let inner_det = detect_type(inner)?;
4504 if inner_det.auto {
4505 return Err(syn::Error::new_spanned(ty, "nested Auto is not supported"));
4506 }
4507 if inner_det.nullable {
4508 return Err(syn::Error::new_spanned(
4509 ty,
4510 "`Auto<Option<T>>` is not supported — Auto fields are server-assigned and cannot be NULL",
4511 ));
4512 }
4513 if inner_det.fk_inner.is_some() {
4514 return Err(syn::Error::new_spanned(
4515 ty,
4516 "`Auto<ForeignKey<T>>` is not supported — Auto is for server-assigned PKs, ForeignKey is for parent references",
4517 ));
4518 }
4519 if !matches!(
4520 inner_det.kind,
4521 DetectedKind::I32 | DetectedKind::I64 | DetectedKind::Uuid | DetectedKind::DateTime
4522 ) {
4523 return Err(syn::Error::new_spanned(
4524 ty,
4525 "`Auto<T>` only supports integers (`i32` → SERIAL, `i64` → BIGSERIAL), \
4526 `uuid::Uuid` (DEFAULT gen_random_uuid()), or `chrono::DateTime<chrono::Utc>` \
4527 (DEFAULT now())",
4528 ));
4529 }
4530 return Ok(DetectedType {
4531 auto: true,
4532 ..inner_det
4533 });
4534 }
4535
4536 if last.ident == "ForeignKey" {
4537 let (inner, key_ty) = generic_pair(ty, &last.arguments, "ForeignKey")?;
4538 let kind = match key_ty {
4546 Some(k) => detect_type(k)?.kind,
4547 None => DetectedKind::I64,
4548 };
4549 return Ok(DetectedType {
4550 kind,
4551 nullable: false,
4552 auto: false,
4553 fk_inner: Some(inner),
4554 });
4555 }
4556
4557 let kind = match last.ident.to_string().as_str() {
4558 "i16" => DetectedKind::I16,
4559 "i32" => DetectedKind::I32,
4560 "i64" => DetectedKind::I64,
4561 "f32" => DetectedKind::F32,
4562 "f64" => DetectedKind::F64,
4563 "bool" => DetectedKind::Bool,
4564 "String" => DetectedKind::String,
4565 "DateTime" => DetectedKind::DateTime,
4566 "NaiveDate" => DetectedKind::Date,
4567 "Uuid" => DetectedKind::Uuid,
4568 "Value" => DetectedKind::Json,
4569 other => {
4570 return Err(syn::Error::new_spanned(
4571 ty,
4572 format!("unsupported field type `{other}`; v0.1 supports i32/i64/f32/f64/bool/String/DateTime/NaiveDate/Uuid/serde_json::Value, optionally wrapped in Option or Auto (Auto only on integers)"),
4573 ));
4574 }
4575 };
4576 Ok(DetectedType {
4577 kind,
4578 nullable: false,
4579 auto: false,
4580 fk_inner: None,
4581 })
4582}
4583
4584fn generic_inner<'a>(
4585 ty: &'a Type,
4586 arguments: &'a PathArguments,
4587 wrapper: &str,
4588) -> syn::Result<&'a Type> {
4589 let PathArguments::AngleBracketed(args) = arguments else {
4590 return Err(syn::Error::new_spanned(
4591 ty,
4592 format!("{wrapper} requires a generic argument"),
4593 ));
4594 };
4595 args.args
4596 .iter()
4597 .find_map(|a| match a {
4598 GenericArgument::Type(t) => Some(t),
4599 _ => None,
4600 })
4601 .ok_or_else(|| {
4602 syn::Error::new_spanned(ty, format!("{wrapper}<T> requires a type argument"))
4603 })
4604}
4605
4606fn generic_pair<'a>(
4610 ty: &'a Type,
4611 arguments: &'a PathArguments,
4612 wrapper: &str,
4613) -> syn::Result<(&'a Type, Option<&'a Type>)> {
4614 let PathArguments::AngleBracketed(args) = arguments else {
4615 return Err(syn::Error::new_spanned(
4616 ty,
4617 format!("{wrapper} requires a generic argument"),
4618 ));
4619 };
4620 let mut types = args.args.iter().filter_map(|a| match a {
4621 GenericArgument::Type(t) => Some(t),
4622 _ => None,
4623 });
4624 let first = types.next().ok_or_else(|| {
4625 syn::Error::new_spanned(ty, format!("{wrapper}<T> requires a type argument"))
4626 })?;
4627 let second = types.next();
4628 Ok((first, second))
4629}
4630
4631fn to_snake_case(s: &str) -> String {
4632 let mut out = String::with_capacity(s.len() + 4);
4633 for (i, ch) in s.chars().enumerate() {
4634 if ch.is_ascii_uppercase() {
4635 if i > 0 {
4636 out.push('_');
4637 }
4638 out.push(ch.to_ascii_lowercase());
4639 } else {
4640 out.push(ch);
4641 }
4642 }
4643 out
4644}
4645
4646#[derive(Default)]
4652struct FormFieldAttrs {
4653 min: Option<i64>,
4654 max: Option<i64>,
4655 min_length: Option<u32>,
4656 max_length: Option<u32>,
4657}
4658
4659#[derive(Clone, Copy)]
4661enum FormFieldKind {
4662 String,
4663 I16,
4664 I32,
4665 I64,
4666 F32,
4667 F64,
4668 Bool,
4669}
4670
4671impl FormFieldKind {
4672 fn parse_method(self) -> &'static str {
4673 match self {
4674 Self::I16 => "i16",
4675 Self::I32 => "i32",
4676 Self::I64 => "i64",
4677 Self::F32 => "f32",
4678 Self::F64 => "f64",
4679 Self::String | Self::Bool => "",
4682 }
4683 }
4684}
4685
4686fn expand_form(input: &DeriveInput) -> syn::Result<TokenStream2> {
4687 let struct_name = &input.ident;
4688
4689 let Data::Struct(data) = &input.data else {
4690 return Err(syn::Error::new_spanned(
4691 struct_name,
4692 "Form can only be derived on structs",
4693 ));
4694 };
4695 let Fields::Named(named) = &data.fields else {
4696 return Err(syn::Error::new_spanned(
4697 struct_name,
4698 "Form requires a struct with named fields",
4699 ));
4700 };
4701
4702 let mut field_blocks: Vec<TokenStream2> = Vec::with_capacity(named.named.len());
4703 let mut field_idents: Vec<&syn::Ident> = Vec::with_capacity(named.named.len());
4704
4705 for field in &named.named {
4706 let ident = field
4707 .ident
4708 .as_ref()
4709 .ok_or_else(|| syn::Error::new(field.span(), "tuple structs are not supported"))?;
4710 let attrs = parse_form_field_attrs(field)?;
4711 let (kind, nullable) = detect_form_field(&field.ty, field.span())?;
4712
4713 let name_lit = ident.to_string();
4714 let parse_block = render_form_field_parse(ident, &name_lit, kind, nullable, &attrs);
4715 field_blocks.push(parse_block);
4716 field_idents.push(ident);
4717 }
4718
4719 Ok(quote! {
4720 impl ::rustango::forms::Form for #struct_name {
4721 fn parse(
4722 data: &::std::collections::HashMap<::std::string::String, ::std::string::String>,
4723 ) -> ::core::result::Result<Self, ::rustango::forms::FormErrors> {
4724 let mut __errors = ::rustango::forms::FormErrors::default();
4725 #( #field_blocks )*
4726 if !__errors.is_empty() {
4727 return ::core::result::Result::Err(__errors);
4728 }
4729 ::core::result::Result::Ok(Self {
4730 #( #field_idents ),*
4731 })
4732 }
4733 }
4734 })
4735}
4736
4737fn parse_form_field_attrs(field: &syn::Field) -> syn::Result<FormFieldAttrs> {
4738 let mut out = FormFieldAttrs::default();
4739 for attr in &field.attrs {
4740 if !attr.path().is_ident("form") {
4741 continue;
4742 }
4743 attr.parse_nested_meta(|meta| {
4744 if meta.path.is_ident("min") {
4745 let lit: syn::LitInt = meta.value()?.parse()?;
4746 out.min = Some(lit.base10_parse::<i64>()?);
4747 return Ok(());
4748 }
4749 if meta.path.is_ident("max") {
4750 let lit: syn::LitInt = meta.value()?.parse()?;
4751 out.max = Some(lit.base10_parse::<i64>()?);
4752 return Ok(());
4753 }
4754 if meta.path.is_ident("min_length") {
4755 let lit: syn::LitInt = meta.value()?.parse()?;
4756 out.min_length = Some(lit.base10_parse::<u32>()?);
4757 return Ok(());
4758 }
4759 if meta.path.is_ident("max_length") {
4760 let lit: syn::LitInt = meta.value()?.parse()?;
4761 out.max_length = Some(lit.base10_parse::<u32>()?);
4762 return Ok(());
4763 }
4764 Err(meta.error(
4765 "unknown form attribute (supported: `min`, `max`, `min_length`, `max_length`)",
4766 ))
4767 })?;
4768 }
4769 Ok(out)
4770}
4771
4772fn detect_form_field(ty: &Type, span: proc_macro2::Span) -> syn::Result<(FormFieldKind, bool)> {
4773 let Type::Path(TypePath { path, qself: None }) = ty else {
4774 return Err(syn::Error::new(
4775 span,
4776 "Form field must be a simple typed path (e.g. `String`, `i32`, `Option<String>`)",
4777 ));
4778 };
4779 let last = path
4780 .segments
4781 .last()
4782 .ok_or_else(|| syn::Error::new(span, "empty type path"))?;
4783
4784 if last.ident == "Option" {
4785 let inner = generic_inner(ty, &last.arguments, "Option")?;
4786 let (kind, nested) = detect_form_field(inner, span)?;
4787 if nested {
4788 return Err(syn::Error::new(
4789 span,
4790 "nested Option in Form fields is not supported",
4791 ));
4792 }
4793 return Ok((kind, true));
4794 }
4795
4796 let kind = match last.ident.to_string().as_str() {
4797 "String" => FormFieldKind::String,
4798 "i16" => FormFieldKind::I16,
4799 "i32" => FormFieldKind::I32,
4800 "i64" => FormFieldKind::I64,
4801 "f32" => FormFieldKind::F32,
4802 "f64" => FormFieldKind::F64,
4803 "bool" => FormFieldKind::Bool,
4804 other => {
4805 return Err(syn::Error::new(
4806 span,
4807 format!(
4808 "Form field type `{other}` is not supported in v0.8 — use String / \
4809 i16 / i32 / i64 / f32 / f64 / bool, optionally wrapped in Option<…>"
4810 ),
4811 ));
4812 }
4813 };
4814 Ok((kind, false))
4815}
4816
4817#[allow(clippy::too_many_lines)]
4818fn render_form_field_parse(
4819 ident: &syn::Ident,
4820 name_lit: &str,
4821 kind: FormFieldKind,
4822 nullable: bool,
4823 attrs: &FormFieldAttrs,
4824) -> TokenStream2 {
4825 let lookup = quote! {
4828 let __raw: ::core::option::Option<&::std::string::String> = data.get(#name_lit);
4829 };
4830
4831 let parsed_value = match kind {
4832 FormFieldKind::Bool => quote! {
4833 let __v: bool = match __raw {
4834 ::core::option::Option::None => false,
4835 ::core::option::Option::Some(__s) => !matches!(
4836 __s.to_ascii_lowercase().as_str(),
4837 "" | "false" | "0" | "off" | "no"
4838 ),
4839 };
4840 },
4841 FormFieldKind::String => {
4842 if nullable {
4843 quote! {
4844 let __v: ::core::option::Option<::std::string::String> = match __raw {
4845 ::core::option::Option::None => ::core::option::Option::None,
4846 ::core::option::Option::Some(__s) if __s.is_empty() => {
4847 ::core::option::Option::None
4848 }
4849 ::core::option::Option::Some(__s) => {
4850 ::core::option::Option::Some(::core::clone::Clone::clone(__s))
4851 }
4852 };
4853 }
4854 } else {
4855 quote! {
4856 let __v: ::std::string::String = match __raw {
4857 ::core::option::Option::Some(__s) if !__s.is_empty() => {
4858 ::core::clone::Clone::clone(__s)
4859 }
4860 _ => {
4861 __errors.add(#name_lit, "This field is required.");
4862 ::std::string::String::new()
4863 }
4864 };
4865 }
4866 }
4867 }
4868 FormFieldKind::I16
4869 | FormFieldKind::I32
4870 | FormFieldKind::I64
4871 | FormFieldKind::F32
4872 | FormFieldKind::F64 => {
4873 let parse_ty = syn::Ident::new(kind.parse_method(), proc_macro2::Span::call_site());
4874 let ty_lit = kind.parse_method();
4875 let default_val = match kind {
4876 FormFieldKind::I16 => quote! { 0i16 },
4877 FormFieldKind::I32 => quote! { 0i32 },
4878 FormFieldKind::I64 => quote! { 0i64 },
4879 FormFieldKind::F32 => quote! { 0f32 },
4880 FormFieldKind::F64 => quote! { 0f64 },
4881 _ => quote! { Default::default() },
4882 };
4883 if nullable {
4884 quote! {
4885 let __v: ::core::option::Option<#parse_ty> = match __raw {
4886 ::core::option::Option::None => ::core::option::Option::None,
4887 ::core::option::Option::Some(__s) if __s.is_empty() => {
4888 ::core::option::Option::None
4889 }
4890 ::core::option::Option::Some(__s) => {
4891 match __s.parse::<#parse_ty>() {
4892 ::core::result::Result::Ok(__n) => {
4893 ::core::option::Option::Some(__n)
4894 }
4895 ::core::result::Result::Err(__e) => {
4896 __errors.add(
4897 #name_lit,
4898 ::std::format!("Enter a valid {} value: {}", #ty_lit, __e),
4899 );
4900 ::core::option::Option::None
4901 }
4902 }
4903 }
4904 };
4905 }
4906 } else {
4907 quote! {
4908 let __v: #parse_ty = match __raw {
4909 ::core::option::Option::Some(__s) if !__s.is_empty() => {
4910 match __s.parse::<#parse_ty>() {
4911 ::core::result::Result::Ok(__n) => __n,
4912 ::core::result::Result::Err(__e) => {
4913 __errors.add(
4914 #name_lit,
4915 ::std::format!("Enter a valid {} value: {}", #ty_lit, __e),
4916 );
4917 #default_val
4918 }
4919 }
4920 }
4921 _ => {
4922 __errors.add(#name_lit, "This field is required.");
4923 #default_val
4924 }
4925 };
4926 }
4927 }
4928 }
4929 };
4930
4931 let validators = render_form_validators(name_lit, kind, nullable, attrs);
4932
4933 quote! {
4934 let #ident = {
4935 #lookup
4936 #parsed_value
4937 #validators
4938 __v
4939 };
4940 }
4941}
4942
4943fn render_form_validators(
4944 name_lit: &str,
4945 kind: FormFieldKind,
4946 nullable: bool,
4947 attrs: &FormFieldAttrs,
4948) -> TokenStream2 {
4949 let mut checks: Vec<TokenStream2> = Vec::new();
4950
4951 let val_ref = if nullable {
4952 quote! { __v.as_ref() }
4953 } else {
4954 quote! { ::core::option::Option::Some(&__v) }
4955 };
4956
4957 let is_string = matches!(kind, FormFieldKind::String);
4958 let is_numeric = matches!(
4959 kind,
4960 FormFieldKind::I16
4961 | FormFieldKind::I32
4962 | FormFieldKind::I64
4963 | FormFieldKind::F32
4964 | FormFieldKind::F64
4965 );
4966
4967 if is_string {
4968 if let Some(min_len) = attrs.min_length {
4969 let min_len_usize = min_len as usize;
4970 checks.push(quote! {
4971 if let ::core::option::Option::Some(__s) = #val_ref {
4972 if __s.len() < #min_len_usize {
4973 __errors.add(
4974 #name_lit,
4975 ::std::format!("Ensure this value has at least {} characters.", #min_len_usize),
4976 );
4977 }
4978 }
4979 });
4980 }
4981 if let Some(max_len) = attrs.max_length {
4982 let max_len_usize = max_len as usize;
4983 checks.push(quote! {
4984 if let ::core::option::Option::Some(__s) = #val_ref {
4985 if __s.len() > #max_len_usize {
4986 __errors.add(
4987 #name_lit,
4988 ::std::format!("Ensure this value has at most {} characters.", #max_len_usize),
4989 );
4990 }
4991 }
4992 });
4993 }
4994 }
4995
4996 if is_numeric {
4997 if let Some(min) = attrs.min {
4998 checks.push(quote! {
4999 if let ::core::option::Option::Some(__n) = #val_ref {
5000 if (*__n as f64) < (#min as f64) {
5001 __errors.add(
5002 #name_lit,
5003 ::std::format!("Ensure this value is greater than or equal to {}.", #min),
5004 );
5005 }
5006 }
5007 });
5008 }
5009 if let Some(max) = attrs.max {
5010 checks.push(quote! {
5011 if let ::core::option::Option::Some(__n) = #val_ref {
5012 if (*__n as f64) > (#max as f64) {
5013 __errors.add(
5014 #name_lit,
5015 ::std::format!("Ensure this value is less than or equal to {}.", #max),
5016 );
5017 }
5018 }
5019 });
5020 }
5021 }
5022
5023 quote! { #( #checks )* }
5024}
5025
5026struct ViewSetAttrs {
5031 model: syn::Path,
5032 fields: Option<Vec<String>>,
5033 filter_fields: Vec<String>,
5034 search_fields: Vec<String>,
5035 ordering: Vec<(String, bool)>,
5037 page_size: Option<usize>,
5038 read_only: bool,
5039 perms: ViewSetPermsAttrs,
5040}
5041
5042#[derive(Default)]
5043struct ViewSetPermsAttrs {
5044 list: Vec<String>,
5045 retrieve: Vec<String>,
5046 create: Vec<String>,
5047 update: Vec<String>,
5048 destroy: Vec<String>,
5049}
5050
5051fn expand_viewset(input: &DeriveInput) -> syn::Result<TokenStream2> {
5052 let struct_name = &input.ident;
5053
5054 match &input.data {
5056 Data::Struct(s) => match &s.fields {
5057 Fields::Unit | Fields::Named(_) => {}
5058 Fields::Unnamed(_) => {
5059 return Err(syn::Error::new_spanned(
5060 struct_name,
5061 "ViewSet can only be derived on a unit struct or an empty named struct",
5062 ));
5063 }
5064 },
5065 _ => {
5066 return Err(syn::Error::new_spanned(
5067 struct_name,
5068 "ViewSet can only be derived on a struct",
5069 ));
5070 }
5071 }
5072
5073 let attrs = parse_viewset_attrs(input)?;
5074 let model_path = &attrs.model;
5075
5076 let fields_call = if let Some(ref fields) = attrs.fields {
5078 let lits = fields.iter().map(|f| f.as_str());
5079 quote!(.fields(&[ #(#lits),* ]))
5080 } else {
5081 quote!()
5082 };
5083
5084 let filter_fields_call = if attrs.filter_fields.is_empty() {
5085 quote!()
5086 } else {
5087 let lits = attrs.filter_fields.iter().map(|f| f.as_str());
5088 quote!(.filter_fields(&[ #(#lits),* ]))
5089 };
5090
5091 let search_fields_call = if attrs.search_fields.is_empty() {
5092 quote!()
5093 } else {
5094 let lits = attrs.search_fields.iter().map(|f| f.as_str());
5095 quote!(.search_fields(&[ #(#lits),* ]))
5096 };
5097
5098 let ordering_call = if attrs.ordering.is_empty() {
5099 quote!()
5100 } else {
5101 let pairs = attrs.ordering.iter().map(|(f, desc)| {
5102 let f = f.as_str();
5103 quote!((#f, #desc))
5104 });
5105 quote!(.ordering(&[ #(#pairs),* ]))
5106 };
5107
5108 let page_size_call = if let Some(n) = attrs.page_size {
5109 quote!(.page_size(#n))
5110 } else {
5111 quote!()
5112 };
5113
5114 let read_only_call = if attrs.read_only {
5115 quote!(.read_only())
5116 } else {
5117 quote!()
5118 };
5119
5120 let perms = &attrs.perms;
5121 let perms_call = if perms.list.is_empty()
5122 && perms.retrieve.is_empty()
5123 && perms.create.is_empty()
5124 && perms.update.is_empty()
5125 && perms.destroy.is_empty()
5126 {
5127 quote!()
5128 } else {
5129 let list_lits = perms.list.iter().map(|s| s.as_str());
5130 let retrieve_lits = perms.retrieve.iter().map(|s| s.as_str());
5131 let create_lits = perms.create.iter().map(|s| s.as_str());
5132 let update_lits = perms.update.iter().map(|s| s.as_str());
5133 let destroy_lits = perms.destroy.iter().map(|s| s.as_str());
5134 quote! {
5135 .permissions(::rustango::viewset::ViewSetPerms {
5136 list: ::std::vec![ #(#list_lits.to_owned()),* ],
5137 retrieve: ::std::vec![ #(#retrieve_lits.to_owned()),* ],
5138 create: ::std::vec![ #(#create_lits.to_owned()),* ],
5139 update: ::std::vec![ #(#update_lits.to_owned()),* ],
5140 destroy: ::std::vec![ #(#destroy_lits.to_owned()),* ],
5141 })
5142 }
5143 };
5144
5145 Ok(quote! {
5146 impl #struct_name {
5147 pub fn router(prefix: &str, pool: ::rustango::sql::sqlx::PgPool) -> ::axum::Router {
5150 ::rustango::viewset::ViewSet::for_model(
5151 <#model_path as ::rustango::core::Model>::SCHEMA
5152 )
5153 #fields_call
5154 #filter_fields_call
5155 #search_fields_call
5156 #ordering_call
5157 #page_size_call
5158 #perms_call
5159 #read_only_call
5160 .router(prefix, pool)
5161 }
5162 }
5163 })
5164}
5165
5166fn parse_viewset_attrs(input: &DeriveInput) -> syn::Result<ViewSetAttrs> {
5167 let mut model: Option<syn::Path> = None;
5168 let mut fields: Option<Vec<String>> = None;
5169 let mut filter_fields: Vec<String> = Vec::new();
5170 let mut search_fields: Vec<String> = Vec::new();
5171 let mut ordering: Vec<(String, bool)> = Vec::new();
5172 let mut page_size: Option<usize> = None;
5173 let mut read_only = false;
5174 let mut perms = ViewSetPermsAttrs::default();
5175
5176 for attr in &input.attrs {
5177 if !attr.path().is_ident("viewset") {
5178 continue;
5179 }
5180 attr.parse_nested_meta(|meta| {
5181 if meta.path.is_ident("model") {
5182 let path: syn::Path = meta.value()?.parse()?;
5183 model = Some(path);
5184 return Ok(());
5185 }
5186 if meta.path.is_ident("fields") {
5187 let s: LitStr = meta.value()?.parse()?;
5188 fields = Some(split_field_list(&s.value()));
5189 return Ok(());
5190 }
5191 if meta.path.is_ident("filter_fields") {
5192 let s: LitStr = meta.value()?.parse()?;
5193 filter_fields = split_field_list(&s.value());
5194 return Ok(());
5195 }
5196 if meta.path.is_ident("search_fields") {
5197 let s: LitStr = meta.value()?.parse()?;
5198 search_fields = split_field_list(&s.value());
5199 return Ok(());
5200 }
5201 if meta.path.is_ident("ordering") {
5202 let s: LitStr = meta.value()?.parse()?;
5203 ordering = parse_ordering_list(&s.value());
5204 return Ok(());
5205 }
5206 if meta.path.is_ident("page_size") {
5207 let lit: syn::LitInt = meta.value()?.parse()?;
5208 page_size = Some(lit.base10_parse::<usize>()?);
5209 return Ok(());
5210 }
5211 if meta.path.is_ident("read_only") {
5212 read_only = true;
5213 return Ok(());
5214 }
5215 if meta.path.is_ident("permissions") {
5216 meta.parse_nested_meta(|inner| {
5217 let parse_codenames = |inner: &syn::meta::ParseNestedMeta| -> syn::Result<Vec<String>> {
5218 let s: LitStr = inner.value()?.parse()?;
5219 Ok(split_field_list(&s.value()))
5220 };
5221 if inner.path.is_ident("list") {
5222 perms.list = parse_codenames(&inner)?;
5223 } else if inner.path.is_ident("retrieve") {
5224 perms.retrieve = parse_codenames(&inner)?;
5225 } else if inner.path.is_ident("create") {
5226 perms.create = parse_codenames(&inner)?;
5227 } else if inner.path.is_ident("update") {
5228 perms.update = parse_codenames(&inner)?;
5229 } else if inner.path.is_ident("destroy") {
5230 perms.destroy = parse_codenames(&inner)?;
5231 } else {
5232 return Err(inner.error(
5233 "unknown permissions key (supported: list, retrieve, create, update, destroy)",
5234 ));
5235 }
5236 Ok(())
5237 })?;
5238 return Ok(());
5239 }
5240 Err(meta.error(
5241 "unknown viewset attribute (supported: model, fields, filter_fields, \
5242 search_fields, ordering, page_size, read_only, permissions(...))",
5243 ))
5244 })?;
5245 }
5246
5247 let model = model.ok_or_else(|| {
5248 syn::Error::new_spanned(&input.ident, "`#[viewset(model = SomeModel)]` is required")
5249 })?;
5250
5251 Ok(ViewSetAttrs {
5252 model,
5253 fields,
5254 filter_fields,
5255 search_fields,
5256 ordering,
5257 page_size,
5258 read_only,
5259 perms,
5260 })
5261}
5262
5263struct SerializerContainerAttrs {
5266 model: syn::Path,
5267}
5268
5269#[derive(Default)]
5270struct SerializerFieldAttrs {
5271 read_only: bool,
5272 write_only: bool,
5273 source: Option<String>,
5274 skip: bool,
5275 method: Option<String>,
5279 validate: Option<String>,
5284 nested: bool,
5294 nested_strict: bool,
5299 many: Option<syn::Type>,
5308}
5309
5310fn parse_serializer_container_attrs(input: &DeriveInput) -> syn::Result<SerializerContainerAttrs> {
5311 let mut model: Option<syn::Path> = None;
5312 for attr in &input.attrs {
5313 if !attr.path().is_ident("serializer") {
5314 continue;
5315 }
5316 attr.parse_nested_meta(|meta| {
5317 if meta.path.is_ident("model") {
5318 let _eq: syn::Token![=] = meta.input.parse()?;
5319 model = Some(meta.input.parse()?);
5320 return Ok(());
5321 }
5322 Err(meta.error("unknown serializer container attribute (supported: `model`)"))
5323 })?;
5324 }
5325 let model = model.ok_or_else(|| {
5326 syn::Error::new_spanned(
5327 &input.ident,
5328 "`#[serializer(model = SomeModel)]` is required",
5329 )
5330 })?;
5331 Ok(SerializerContainerAttrs { model })
5332}
5333
5334fn parse_serializer_field_attrs(field: &syn::Field) -> syn::Result<SerializerFieldAttrs> {
5335 let mut out = SerializerFieldAttrs::default();
5336 for attr in &field.attrs {
5337 if !attr.path().is_ident("serializer") {
5338 continue;
5339 }
5340 attr.parse_nested_meta(|meta| {
5341 if meta.path.is_ident("read_only") {
5342 out.read_only = true;
5343 return Ok(());
5344 }
5345 if meta.path.is_ident("write_only") {
5346 out.write_only = true;
5347 return Ok(());
5348 }
5349 if meta.path.is_ident("skip") {
5350 out.skip = true;
5351 return Ok(());
5352 }
5353 if meta.path.is_ident("source") {
5354 let s: LitStr = meta.value()?.parse()?;
5355 out.source = Some(s.value());
5356 return Ok(());
5357 }
5358 if meta.path.is_ident("method") {
5359 let s: LitStr = meta.value()?.parse()?;
5360 out.method = Some(s.value());
5361 return Ok(());
5362 }
5363 if meta.path.is_ident("validate") {
5364 let s: LitStr = meta.value()?.parse()?;
5365 out.validate = Some(s.value());
5366 return Ok(());
5367 }
5368 if meta.path.is_ident("many") {
5369 let _eq: syn::Token![=] = meta.input.parse()?;
5370 out.many = Some(meta.input.parse()?);
5371 return Ok(());
5372 }
5373 if meta.path.is_ident("nested") {
5374 out.nested = true;
5375 if meta.input.peek(syn::token::Paren) {
5378 meta.parse_nested_meta(|inner| {
5379 if inner.path.is_ident("strict") {
5380 out.nested_strict = true;
5381 return Ok(());
5382 }
5383 Err(inner.error("unknown nested sub-attribute (supported: `strict`)"))
5384 })?;
5385 }
5386 return Ok(());
5387 }
5388 Err(meta.error(
5389 "unknown serializer field attribute (supported: \
5390 `read_only`, `write_only`, `source`, `skip`, `method`, `validate`, `nested`)",
5391 ))
5392 })?;
5393 }
5394 if out.read_only && out.write_only {
5396 return Err(syn::Error::new_spanned(
5397 field,
5398 "a field cannot be both `read_only` and `write_only`",
5399 ));
5400 }
5401 if out.method.is_some() && out.source.is_some() {
5402 return Err(syn::Error::new_spanned(
5403 field,
5404 "`method` and `source` are mutually exclusive — `method` computes \
5405 the value from a method, `source` reads it from a different model field",
5406 ));
5407 }
5408 Ok(out)
5409}
5410
5411fn expand_serializer(input: &DeriveInput) -> syn::Result<TokenStream2> {
5412 let struct_name = &input.ident;
5413 let struct_name_lit = struct_name.to_string();
5414
5415 let Data::Struct(data) = &input.data else {
5416 return Err(syn::Error::new_spanned(
5417 struct_name,
5418 "Serializer can only be derived on structs",
5419 ));
5420 };
5421 let Fields::Named(named) = &data.fields else {
5422 return Err(syn::Error::new_spanned(
5423 struct_name,
5424 "Serializer requires a struct with named fields",
5425 ));
5426 };
5427
5428 let container = parse_serializer_container_attrs(input)?;
5429 let model_path = &container.model;
5430
5431 #[allow(dead_code)]
5435 struct FieldInfo {
5436 ident: syn::Ident,
5437 ty: syn::Type,
5438 attrs: SerializerFieldAttrs,
5439 }
5440 let mut fields_info: Vec<FieldInfo> = Vec::new();
5441 for field in &named.named {
5442 let ident = field.ident.clone().expect("named field has ident");
5443 let attrs = parse_serializer_field_attrs(field)?;
5444 fields_info.push(FieldInfo {
5445 ident,
5446 ty: field.ty.clone(),
5447 attrs,
5448 });
5449 }
5450
5451 let from_model_fields = fields_info.iter().map(|fi| {
5453 let ident = &fi.ident;
5454 let ty = &fi.ty;
5455 if let Some(_inner) = &fi.attrs.many {
5456 quote! { #ident: ::std::vec::Vec::new() }
5460 } else if let Some(method) = &fi.attrs.method {
5461 let method_ident = syn::Ident::new(method, ident.span());
5465 quote! { #ident: Self::#method_ident(model) }
5466 } else if fi.attrs.nested {
5467 let src_name = fi.attrs.source.as_deref().unwrap_or(&fi.ident.to_string()).to_owned();
5483 let src_ident = syn::Ident::new(&src_name, ident.span());
5484 if fi.attrs.nested_strict {
5485 let panic_msg = format!(
5486 "nested(strict) serializer for `{ident}` requires `model.{src_name}` to be loaded — \
5487 call .get(&pool).await? or .select_related(\"{src_name}\") on the model first",
5488 );
5489 quote! {
5490 #ident: <#ty as ::rustango::serializer::ModelSerializer>::from_model(
5491 model.#src_ident.value().expect(#panic_msg),
5492 )
5493 }
5494 } else {
5495 quote! {
5496 #ident: match model.#src_ident.value() {
5497 ::core::option::Option::Some(__loaded) =>
5498 <#ty as ::rustango::serializer::ModelSerializer>::from_model(__loaded),
5499 ::core::option::Option::None =>
5500 ::core::default::Default::default(),
5501 }
5502 }
5503 }
5504 } else if fi.attrs.write_only || fi.attrs.skip {
5505 quote! { #ident: ::core::default::Default::default() }
5507 } else if let Some(src) = &fi.attrs.source {
5508 let src_ident = syn::Ident::new(src, ident.span());
5509 quote! { #ident: ::core::clone::Clone::clone(&model.#src_ident) }
5510 } else {
5511 quote! { #ident: ::core::clone::Clone::clone(&model.#ident) }
5512 }
5513 });
5514
5515 let validator_calls: Vec<_> = fields_info
5519 .iter()
5520 .filter_map(|fi| {
5521 let ident = &fi.ident;
5522 let name_lit = ident.to_string();
5523 let method = fi.attrs.validate.as_ref()?;
5524 let method_ident = syn::Ident::new(method, ident.span());
5525 Some(quote! {
5526 if let ::core::result::Result::Err(__e) = Self::#method_ident(&self.#ident) {
5527 __errors.add(#name_lit.to_owned(), __e);
5528 }
5529 })
5530 })
5531 .collect();
5532 let validate_method = if validator_calls.is_empty() {
5533 quote! {}
5534 } else {
5535 quote! {
5536 impl #struct_name {
5537 pub fn validate(&self) -> ::core::result::Result<(), ::rustango::forms::FormErrors> {
5541 let mut __errors = ::rustango::forms::FormErrors::default();
5542 #( #validator_calls )*
5543 if __errors.is_empty() {
5544 ::core::result::Result::Ok(())
5545 } else {
5546 ::core::result::Result::Err(__errors)
5547 }
5548 }
5549 }
5550 }
5551 };
5552
5553 let many_setters: Vec<_> = fields_info
5557 .iter()
5558 .filter_map(|fi| {
5559 let many_ty = fi.attrs.many.as_ref()?;
5560 let ident = &fi.ident;
5561 let setter = syn::Ident::new(&format!("set_{ident}"), ident.span());
5562 Some(quote! {
5563 pub fn #setter(
5568 &mut self,
5569 models: &[<#many_ty as ::rustango::serializer::ModelSerializer>::Model],
5570 ) -> &mut Self {
5571 self.#ident = models.iter()
5572 .map(<#many_ty as ::rustango::serializer::ModelSerializer>::from_model)
5573 .collect();
5574 self
5575 }
5576 })
5577 })
5578 .collect();
5579 let many_setters_impl = if many_setters.is_empty() {
5580 quote! {}
5581 } else {
5582 quote! {
5583 impl #struct_name {
5584 #( #many_setters )*
5585 }
5586 }
5587 };
5588
5589 let output_fields: Vec<_> = fields_info
5591 .iter()
5592 .filter(|fi| !fi.attrs.write_only)
5593 .collect();
5594 let output_field_count = output_fields.len();
5595 let serialize_fields = output_fields.iter().map(|fi| {
5596 let ident = &fi.ident;
5597 let name_lit = ident.to_string();
5598 quote! { __state.serialize_field(#name_lit, &self.#ident)?; }
5599 });
5600
5601 let writable_lits: Vec<_> = fields_info
5603 .iter()
5604 .filter(|fi| !fi.attrs.read_only && !fi.attrs.skip)
5605 .map(|fi| fi.ident.to_string())
5606 .collect();
5607
5608 let openapi_impl = {
5612 #[cfg(feature = "openapi")]
5613 {
5614 let property_calls = output_fields.iter().map(|fi| {
5615 let ident = &fi.ident;
5616 let name_lit = ident.to_string();
5617 let ty = &fi.ty;
5618 let nullable_call = if is_option(ty) {
5619 quote! { .nullable() }
5620 } else {
5621 quote! {}
5622 };
5623 quote! {
5624 .property(
5625 #name_lit,
5626 <#ty as ::rustango::openapi::OpenApiSchema>::openapi_schema()
5627 #nullable_call,
5628 )
5629 }
5630 });
5631 let required_lits: Vec<_> = output_fields
5632 .iter()
5633 .filter(|fi| !is_option(&fi.ty))
5634 .map(|fi| fi.ident.to_string())
5635 .collect();
5636 quote! {
5637 impl ::rustango::openapi::OpenApiSchema for #struct_name {
5638 fn openapi_schema() -> ::rustango::openapi::Schema {
5639 ::rustango::openapi::Schema::object()
5640 #( #property_calls )*
5641 .required([ #( #required_lits ),* ])
5642 }
5643 }
5644 }
5645 }
5646 #[cfg(not(feature = "openapi"))]
5647 {
5648 quote! {}
5649 }
5650 };
5651
5652 Ok(quote! {
5653 impl ::rustango::serializer::ModelSerializer for #struct_name {
5654 type Model = #model_path;
5655
5656 fn from_model(model: &Self::Model) -> Self {
5657 Self {
5658 #( #from_model_fields ),*
5659 }
5660 }
5661
5662 fn writable_fields() -> &'static [&'static str] {
5663 &[ #( #writable_lits ),* ]
5664 }
5665 }
5666
5667 impl ::serde::Serialize for #struct_name {
5668 fn serialize<S>(&self, serializer: S)
5669 -> ::core::result::Result<S::Ok, S::Error>
5670 where
5671 S: ::serde::Serializer,
5672 {
5673 use ::serde::ser::SerializeStruct;
5674 let mut __state = serializer.serialize_struct(
5675 #struct_name_lit,
5676 #output_field_count,
5677 )?;
5678 #( #serialize_fields )*
5679 __state.end()
5680 }
5681 }
5682
5683 #openapi_impl
5684
5685 #validate_method
5686
5687 #many_setters_impl
5688 })
5689}
5690
5691#[cfg_attr(not(feature = "openapi"), allow(dead_code))]
5695fn is_option(ty: &syn::Type) -> bool {
5696 if let syn::Type::Path(p) = ty {
5697 if let Some(last) = p.path.segments.last() {
5698 return last.ident == "Option";
5699 }
5700 }
5701 false
5702}