Unify the layout metadata model and collapse the single-row entry emitters

This commit is contained in:
Dennis Kobert
2026-08-12 13:11:48 +00:00
parent b6f73b0691
commit 83fbaca6f2
4 changed files with 246 additions and 277 deletions

View File

@@ -1747,10 +1747,25 @@ pub(crate) fn generate_node_impl(crate_ident: &CrateIdent, parsed: &ParsedNodeFn
Some(ty) => quote!(#core_types::record::ElementSpec::Concrete(#core_types::record::element_write::<#ty>())),
None => quote!(#core_types::record::ElementSpec::Carried),
};
let sources = if carrier_present { quote!(::std::vec![0u8]) } else { quote!(::std::vec![]) };
let reads_meta: Vec<TokenStream2> = regular_fields
.iter()
.enumerate()
.filter(|(_, field)| !field.attribute_reads.is_empty())
.map(|(index, field)| {
let descs = field.attribute_reads.iter().map(|read| {
let marker = &read.marker;
quote!(#core_types::record::FieldWrite::of::<#marker>(0))
});
let index = index as u8;
quote!(#core_types::record::InputReads { input: #index, reads: ::std::vec![#(#descs),*] })
})
.collect();
let layout_meta_def = quote! {
#vis fn #layout_meta_fn() -> #core_types::record::LayoutMeta {
#core_types::record::LayoutMeta {
carrier: #carrier_present,
sources: #sources,
reads: ::std::vec![#(#reads_meta),*],
element: #element_spec,
writes: ::std::vec![#(#write_descs),*],
removes: ::std::vec![#(#remove_pairs),*],

View File

@@ -8,10 +8,8 @@ pub(crate) fn entries_tokens(parsed: &ParsedNodeFn, class: &Class, struct_name:
return quote!();
}
match class {
Class::RecordIo(_) => record_entries_tokens(parsed, struct_name, regular_fields),
Class::Routing(_) => routing_entries_tokens(parsed, struct_name, regular_fields),
Class::Flip { .. } => flip_entries_tokens(parsed, struct_name, regular_fields),
Class::Opaque => record_opaque_entries_tokens(parsed, struct_name, regular_fields),
Class::RecordIo(_) | Class::Routing(_) | Class::Opaque => single_row_entries(parsed, class, struct_name, regular_fields),
}
}
@@ -57,6 +55,7 @@ fn flip_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_field
let names: Vec<&Ident> = regular_fields.iter().map(|field| &field.pat_ident.ident).collect();
let node_underscores: Vec<TokenStream2> = regular_fields.iter().map(|_| quote!(_)).collect();
let carrier_present = flip_carrier(parsed);
let sources = if carrier_present { quote!(::std::vec![0u8]) } else { quote!(::std::vec![]) };
// Shorthand associated types in the output only resolve against the
// generics' bounds, so rows name the output through a bounded alias. Only
@@ -146,7 +145,8 @@ fn flip_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_field
Some(quote! {
gcore::registry::RegistryEntry {
layout_meta: Some(gcore::record::LayoutMeta {
carrier: #carrier_present,
sources: #sources,
reads: ::std::vec::Vec::new(),
element: gcore::record::ElementSpec::Concrete(gcore::record::element_write::<#row_output>()),
writes: ::std::vec::Vec::new(),
removes: ::std::vec::Vec::new(),
@@ -182,303 +182,223 @@ fn flip_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_field
}
}
/// The registry row of a routing node: one instance covers every element,
/// sources claim generic record edges, and the constructor wraps each source
/// in its union translation and stores the union as the node's layout.
fn routing_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_fields: &[&ParsedField]) -> TokenStream2 {
let Some(routing) = routing_io(parsed) else {
return quote!();
};
let is_source = |field: &ParsedField| {
let ty = match &field.ty {
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => output_type,
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => ty,
};
matches!(ty, Type::Path(path) if path.path.get_ident() == Some(&routing.generic))
};
let values_concrete = regular_fields.iter().filter(|field| !is_source(field)).all(|field| {
let (ty, lend) = match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, lend, .. }) => (ty, lend.is_some()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => (output_type, false),
};
!contains_open_generic(parsed, ty) && (lend || !type_disqualifies(ty))
});
if !values_concrete {
return quote!();
/// Which record wire an input claims and how its value is recovered. Base slots
/// are the record edges whose layouts form the output; value slots are record
/// edges read for their layout; plain and lazy slots are ordinary edges.
enum SlotKind {
/// A generic record edge whose element is only known at runtime; the runtime
/// type is captured for the output wrap or the union.
BaseGeneric(String),
/// A concrete record carrier read for its layout.
BaseConcrete(Type),
/// A concrete record edge read for its layout only.
Value(Type),
/// A plain value edge.
Plain(Type),
/// A lazy node edge.
Lazy(Type),
}
impl SlotKind {
fn is_base(&self) -> bool {
matches!(self, SlotKind::BaseGeneric(_) | SlotKind::BaseConcrete(_))
}
}
/// The single registry row shared by record-io, routing, and opaque nodes: one
/// instance covers the wire, each input's edge type and downcast follow its
/// slot, and the output layout folds from the base slots.
fn single_row_entries(parsed: &ParsedNodeFn, class: &Class, struct_name: &Ident, regular_fields: &[&ParsedField]) -> TokenStream2 {
let fn_name = &parsed.fn_name;
let entries_name = format_ident!("{}_entries", fn_name);
let arity = regular_fields.len();
let names: Vec<&Ident> = regular_fields.iter().map(|field| &field.pat_ident.ident).collect();
let token_name = routing.generic.to_string();
let lend = |field: &ParsedField| matches!(&field.ty, ParsedFieldType::Regular(RegularParsedField { lend: Some(_), .. }));
let input_types = regular_fields.iter().map(|field| {
if is_source(field) {
return quote!(gcore::registry::generic_record_edge_type(#token_name));
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => quote!(gcore::registry::record_edge_type::<#ty>()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => quote!(gcore::registry::edge_type::<#output_type>()),
}
});
let source_layouts: Vec<Ident> = regular_fields
.iter()
.enumerate()
.filter(|(_, field)| is_source(field))
.map(|(index, _)| format_ident!("__layout_{index}"))
.collect();
let downcasts = regular_fields.iter().enumerate().map(|(index, field)| {
let name = &field.pat_ident.ident;
if is_source(field) {
let layout = format_ident!("__layout_{index}");
let handle = format_ident!("__handle_{index}");
let ty = format_ident!("__ty_{index}");
return quote! {
let #handle = inputs.next().unwrap();
let #ty = #handle.ty().clone();
let Some(#layout) = #handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
};
let #name = #handle.downcast_erased::<gcore::registry::ErasedRecordNode>(#ty.clone())?;
};
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => {
let handle = format_ident!("__handle_{index}");
let layout = format_ident!("__in_layout_{index}");
quote! {
let #handle = inputs.next().unwrap();
let Some(#layout) = #handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
let slots: Vec<SlotKind> = match class {
Class::RecordIo(shape) => {
let carrier_in_fields = !shape.skips_carrier();
regular_fields
.iter()
.enumerate()
.map(|(index, field)| {
let ParsedFieldType::Regular(RegularParsedField { ty, .. }) = &field.ty else {
unreachable!("record nodes take no lazy inputs")
};
let #name = #handle.downcast_record::<#ty>()?;
}
}
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => quote!(let #name = inputs.next().unwrap().downcast::<#output_type>()?;),
}
});
let value_layout_args = regular_fields
.iter()
.enumerate()
.filter(|(_, field)| !is_source(field) && matches!(field.ty, ParsedFieldType::Regular(_)))
.map(|(index, _)| {
let layout = format_ident!("__in_layout_{index}");
quote!(&#layout,)
});
let source_wraps = regular_fields.iter().enumerate().filter(|(_, field)| is_source(field)).map(|(index, field)| {
let name = &field.pat_ident.ident;
let layout = format_ident!("__layout_{index}");
quote!(let #name = gcore::record::RecordSource::new(#name, &#layout, &__union);)
});
let first_source_ty = regular_fields
.iter()
.enumerate()
.find(|(_, field)| is_source(field))
.map(|(index, _)| format_ident!("__ty_{index}"))
.expect("routing nodes have a source");
quote! {
pub fn #entries_name() -> ::std::vec::Vec<gcore::registry::RegistryEntry> {
vec![gcore::registry::RegistryEntry {
layout_meta: None,
io: gcore::registry::NodeIOTypes::new(
gcore::concrete!(gcore::context::ContextImpl<'static>),
gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed(#token_name)))),
vec![#(#input_types),*],
),
constructor: |inputs| {
if inputs.len() != #arity {
return Err(gcore::registry::ConstructionError::Arity { expected: #arity, got: inputs.len() });
if carrier_in_fields && index == 0 {
return match &shape.carrier {
RecordCarrier::Token(token) => SlotKind::BaseGeneric(token.to_string()),
RecordCarrier::Read(carrier_ty) => SlotKind::BaseConcrete(carrier_ty.clone()),
RecordCarrier::None => unreachable!(),
};
}
let mut inputs = inputs.into_iter();
#(#downcasts)*
let __union = gcore::record::Layout::union(&[#(&#source_layouts),*]);
#(#source_wraps)*
let __node = #struct_name::new(#(#names,)* &__union, #(#value_layout_args)*);
Ok(gcore::registry::EdgeHandle::new_erased(
::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>,
#first_source_ty,
))
},
}]
match field.attribute_reads.is_empty() {
false => SlotKind::Value(ty.clone()),
true => SlotKind::Plain(ty.clone()),
}
})
.collect()
}
}
}
Class::Routing(routing) => {
let is_source = |field: &ParsedField| {
let ty = match &field.ty {
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => output_type,
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => ty,
};
matches!(ty, Type::Path(path) if path.path.get_ident() == Some(&routing.generic))
};
regular_fields
.iter()
.map(|field| {
if is_source(field) {
return SlotKind::BaseGeneric(routing.generic.to_string());
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => SlotKind::Value(ty.clone()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => SlotKind::Lazy(output_type.clone()),
}
})
.collect()
}
Class::Opaque => {
let is_record = |field: &ParsedField| matches!(&field.ty, ParsedFieldType::Node(NodeParsedField { output_type, .. }) if is_record_value(output_type));
regular_fields
.iter()
.map(|field| {
if is_record(field) {
return SlotKind::BaseGeneric("T".to_string());
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => SlotKind::Plain(ty.clone()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => SlotKind::Lazy(output_type.clone()),
}
})
.collect()
}
Class::Flip { .. } => unreachable!("flip has its own multi-row emitter"),
};
fn record_opaque_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_fields: &[&ParsedField]) -> TokenStream2 {
let is_record = |field: &ParsedField| matches!(&field.ty, ParsedFieldType::Node(NodeParsedField { output_type, .. }) if is_record_value(output_type));
let values_concrete = regular_fields.iter().filter(|field| !is_record(field)).all(|field| {
let (ty, lend) = match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, lend, .. }) => (ty, lend.is_some()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => (output_type, false),
};
!contains_open_generic(parsed, ty) && (lend || !type_disqualifies(ty))
// Every non-base value/plain/lazy input must be concrete.
let values_concrete = regular_fields.iter().zip(&slots).all(|(field, slot)| match slot {
SlotKind::BaseGeneric(_) | SlotKind::BaseConcrete(_) => true,
SlotKind::Value(ty) | SlotKind::Plain(ty) | SlotKind::Lazy(ty) => !contains_open_generic(parsed, ty) && (lend(field) || !type_disqualifies(ty)),
});
if !values_concrete {
return quote!();
}
let fn_name = &parsed.fn_name;
let entries_name = format_ident!("{}_entries", fn_name);
let arity = regular_fields.len();
let names: Vec<&Ident> = regular_fields.iter().map(|field| &field.pat_ident.ident).collect();
let input_types = regular_fields.iter().map(|field| {
if is_record(field) {
return quote!(gcore::registry::generic_record_edge_type("T"));
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, lend: Some(_), .. }) => quote!(gcore::registry::edge_type::<#ty>()),
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => quote!(gcore::registry::edge_type::<#ty>()),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => quote!(gcore::registry::edge_type::<#output_type>()),
}
let input_types = slots.iter().map(|slot| match slot {
SlotKind::BaseGeneric(name) => quote!(gcore::registry::generic_record_edge_type(#name)),
SlotKind::BaseConcrete(ty) | SlotKind::Value(ty) => quote!(gcore::registry::record_edge_type::<#ty>()),
SlotKind::Plain(ty) | SlotKind::Lazy(ty) => quote!(gcore::registry::edge_type::<#ty>()),
});
let downcasts = regular_fields.iter().enumerate().map(|(index, field)| {
let name = &field.pat_ident.ident;
if is_record(field) {
let layout = format_ident!("__layout_{index}");
let handle = format_ident!("__handle_{index}");
let ty = format_ident!("__ty_{index}");
return quote! {
let downcasts = names.iter().zip(&slots).enumerate().map(|(index, (name, slot))| {
let handle = format_ident!("__handle_{index}");
let layout = format_ident!("__layout_{index}");
let ty = format_ident!("__ty_{index}");
match slot {
SlotKind::BaseGeneric(_) | SlotKind::BaseConcrete(_) => quote! {
let #handle = inputs.next().unwrap();
let #ty = #handle.ty().clone();
let Some(#layout) = #handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
};
let #name = #handle.downcast_erased::<gcore::registry::ErasedRecordNode>(#ty.clone())?;
};
}
match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, lend: Some(_), .. }) => quote!(let #name = inputs.next().unwrap().downcast::<#ty>()?;),
ParsedFieldType::Regular(RegularParsedField { ty, .. }) => quote!(let #name = inputs.next().unwrap().downcast::<#ty>()?;),
ParsedFieldType::Node(NodeParsedField { output_type, .. }) => quote!(let #name = inputs.next().unwrap().downcast::<#output_type>()?;),
},
SlotKind::Value(value_ty) => quote! {
let #handle = inputs.next().unwrap();
let Some(#layout) = #handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
};
let #name = #handle.downcast_record::<#value_ty>()?;
},
SlotKind::Plain(value_ty) | SlotKind::Lazy(value_ty) => quote!(let #name = inputs.next().unwrap().downcast::<#value_ty>()?;),
}
});
let first_record = regular_fields.iter().position(|field| is_record(field)).expect("record-opaque nodes have a record input");
let record_layout = format_ident!("__layout_{first_record}");
let record_ty = format_ident!("__ty_{first_record}");
quote! {
pub fn #entries_name() -> ::std::vec::Vec<gcore::registry::RegistryEntry> {
vec![gcore::registry::RegistryEntry {
layout_meta: None,
io: gcore::registry::NodeIOTypes::new(
gcore::concrete!(gcore::context::ContextImpl<'static>),
gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed("T")))),
vec![#(#input_types),*],
),
constructor: |inputs| {
if inputs.len() != #arity {
return Err(gcore::registry::ConstructionError::Arity { expected: #arity, got: inputs.len() });
}
let mut inputs = inputs.into_iter();
#(#downcasts)*
let __node = #struct_name::new(#(#names,)* &#record_layout);
Ok(gcore::registry::EdgeHandle::new_erased(
::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>,
#record_ty,
))
},
}]
let base_indices: Vec<usize> = slots.iter().enumerate().filter(|(_, slot)| slot.is_base()).map(|(index, _)| index).collect();
let value_indices: Vec<usize> = slots.iter().enumerate().filter(|(_, slot)| matches!(slot, SlotKind::Value(_))).map(|(index, _)| index).collect();
let value_layout_args = value_indices.iter().map(|index| {
let layout = format_ident!("__layout_{index}");
quote!(&#layout,)
});
let carried_meta = |sources: &[usize]| {
let sources = sources.iter().map(|index| *index as u8);
quote! {
Some(gcore::record::LayoutMeta {
sources: ::std::vec![#(#sources),*],
reads: ::std::vec::Vec::new(),
element: gcore::record::ElementSpec::Carried,
writes: ::std::vec::Vec::new(),
removes: ::std::vec::Vec::new(),
level_delta: 0,
})
}
}
}
fn record_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_fields: &[&ParsedField]) -> TokenStream2 {
let Some(shape) = record_shape(parsed) else {
return quote!();
};
let carrier_in_fields = !shape.skips_carrier();
let values_concrete = regular_fields.iter().skip(carrier_in_fields as usize).all(|field| match &field.ty {
ParsedFieldType::Regular(RegularParsedField { ty, lend, .. }) => !contains_open_generic(parsed, ty) && (lend.is_some() || !type_disqualifies(ty)),
_ => false,
});
if !values_concrete {
return quote!();
}
let fn_name = &parsed.fn_name;
let entries_name = format_ident!("{}_entries", fn_name);
let arity = regular_fields.len();
let names: Vec<&Ident> = regular_fields.iter().map(|field| &field.pat_ident.ident).collect();
let reading_secondaries = reading_secondary_indices(regular_fields, &shape);
let input_types = regular_fields.iter().enumerate().map(|(index, field)| {
let ParsedFieldType::Regular(RegularParsedField { ty, .. }) = &field.ty else {
unreachable!("record nodes take no lazy inputs")
};
if carrier_in_fields && index == 0 {
return match &shape.carrier {
RecordCarrier::Token(token) => {
let name = token.to_string();
quote!(gcore::registry::generic_record_edge_type(#name))
let (io_output, wrap, prelude, new_layout_args, layout_meta) = match class {
Class::RecordIo(shape) => {
let carrier_arg = (!shape.skips_carrier()).then(|| quote!(&__layout_0,));
let (io_output, wrap) = match (&shape.carrier, &shape.element_write) {
(RecordCarrier::Token(token), _) => {
let token_name = token.to_string();
(
quote!(gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed(#token_name))))),
quote!(Ok(gcore::registry::EdgeHandle::new_erased(::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>, __ty_0))),
)
}
RecordCarrier::Read(carrier_ty) => quote!(gcore::registry::record_edge_type::<#carrier_ty>()),
RecordCarrier::None => unreachable!(),
(_, Some(element)) => (
quote!(gcore::registry::record_type::<#element>()),
quote!(Ok(gcore::registry::EdgeHandle::new_record::<#element>(::std::sync::Arc::new(__node)))),
),
(_, None) => unreachable!("non-token record nodes write an element"),
};
let layout_meta_fn = format_ident!("{}_layout_meta", fn_name);
(io_output, wrap, quote!(), quote!(#carrier_arg #(#value_layout_args)*), quote!(Some(self::#layout_meta_fn())))
}
match field.attribute_reads.is_empty() {
true => quote!(gcore::registry::edge_type::<#ty>()),
false => quote!(gcore::registry::record_edge_type::<#ty>()),
}
});
let downcasts = regular_fields.iter().enumerate().map(|(index, field)| {
let name = &field.pat_ident.ident;
let ParsedFieldType::Regular(RegularParsedField { ty, .. }) = &field.ty else {
unreachable!("record nodes take no lazy inputs")
};
if carrier_in_fields && index == 0 {
return quote! {
let __carrier_handle = inputs.next().unwrap();
let __carrier_ty = __carrier_handle.ty().clone();
let Some(__carrier_layout) = __carrier_handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
};
let #name = __carrier_handle.downcast_erased::<gcore::registry::ErasedRecordNode>(__carrier_ty.clone())?;
Class::Routing(routing) => {
let token_name = routing.generic.to_string();
let source_layouts = base_indices.iter().map(|index| format_ident!("__layout_{index}"));
let source_wraps = base_indices.iter().map(|index| {
let name = names[*index];
let layout = format_ident!("__layout_{index}");
quote!(let #name = gcore::record::RecordSource::new(#name, &#layout, &__union);)
});
let first_source_ty = format_ident!("__ty_{}", base_indices[0]);
let prelude = quote! {
let __union = gcore::record::Layout::union(&[#(&#source_layouts),*]);
#(#source_wraps)*
};
}
if !field.attribute_reads.is_empty() {
let layout_local = format_ident!("__in_layout_{index}");
return quote! {
let __in_handle = inputs.next().unwrap();
let __in_ty = __in_handle.ty().clone();
let Some(#layout_local) = __in_handle.layout().cloned() else {
return Err(gcore::registry::ConstructionError::MissingLayout);
};
let #name = __in_handle.downcast_erased::<gcore::registry::ErasedRecordNode>(__in_ty)?;
};
}
quote!(let #name = inputs.next().unwrap().downcast::<#ty>()?;)
});
let wire_layout_arg = carrier_in_fields.then(|| quote!(&__carrier_layout,)).into_iter();
let input_layout_args = reading_secondaries.iter().map(|index| {
let layout_local = format_ident!("__in_layout_{index}");
quote!(&#layout_local,)
});
let (io_output, construct_output) = match (&shape.carrier, &shape.element_write) {
(RecordCarrier::Token(token), _) => {
let name = token.to_string();
(
quote!(gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed(#name))))),
quote!(Ok(gcore::registry::EdgeHandle::new_erased(
::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>,
__carrier_ty,
))),
quote!(gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed(#token_name))))),
quote!(Ok(gcore::registry::EdgeHandle::new_erased(::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>, #first_source_ty))),
prelude,
quote!(&__union, #(#value_layout_args)*),
carried_meta(&base_indices),
)
}
(_, Some(element)) => (
quote!(gcore::registry::record_type::<#element>()),
quote!(Ok(gcore::registry::EdgeHandle::new_record::<#element>(::std::sync::Arc::new(__node)))),
),
(_, None) => unreachable!("non-token record nodes write an element"),
Class::Opaque => {
let first_record = base_indices[0];
let record_layout = format_ident!("__layout_{first_record}");
let record_ty = format_ident!("__ty_{first_record}");
(
quote!(gcore::Type::Record(Box::new(gcore::Type::Generic(::std::borrow::Cow::Borrowed("T"))))),
quote!(Ok(gcore::registry::EdgeHandle::new_erased(::std::sync::Arc::new(__node) as ::std::sync::Arc<gcore::registry::ErasedRecordNode>, #record_ty))),
quote!(),
quote!(&#record_layout),
carried_meta(&[first_record]),
)
}
Class::Flip { .. } => unreachable!("flip has its own multi-row emitter"),
};
let layout_meta_fn = format_ident!("{}_layout_meta", fn_name);
quote! {
pub fn #entries_name() -> ::std::vec::Vec<gcore::registry::RegistryEntry> {
vec![gcore::registry::RegistryEntry {
layout_meta: Some(self::#layout_meta_fn()),
layout_meta: #layout_meta,
io: gcore::registry::NodeIOTypes::new(
gcore::concrete!(gcore::context::ContextImpl<'static>),
#io_output,
@@ -490,8 +410,9 @@ fn record_entries_tokens(parsed: &ParsedNodeFn, struct_name: &Ident, regular_fie
}
let mut inputs = inputs.into_iter();
#(#downcasts)*
let __node = #struct_name::new(#(#names,)* #(#wire_layout_arg)* #(#input_layout_args)*);
#construct_output
#prelude
let __node = #struct_name::new(#(#names,)* #new_layout_args);
#wrap
},
}]
}