Resolve a named read's offset when the graph compiles

The fold already holds the name and the read input's finished layout, so
the offset falls out there rather than at construction: `RecordLayout`
carries the resolved numbers and `set_layout` copies them into the read
slots. Constructors are untouched, and census-marker reads keep their
current installation.

A read meets the value type the name was written at, so a disagreement
between a read here and a write upstream is the same graph error as two
writes disagreeing; the one-name-one-type check now spans reads and
writes together. An absent attribute stays absent and the read serves
the forced default rather than reporting it.

`read_attribute` is the catalog's get half, typed and never `Option` at
the kernel boundary, with the name declared exactly as the write side
declares it.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
This commit is contained in:
Dennis Kobert
2026-09-09 10:50:08 +00:00
parent fc94487d0b
commit 5eb80721dd
23 changed files with 349 additions and 69 deletions

View File

@@ -20,7 +20,9 @@ impl Compiler {
proto_networks.map(move |mut proto_network| {
proto_network.insert_context_nullification_nodes()?;
let _ = proto_network.resolve_types(registry);
proto_network.compute_layouts().map_err(|errors| errors.iter().map(|error| format!("{:?}", error.error)).collect::<Vec<_>>().join("\n"))?;
proto_network
.compute_layouts()
.map_err(|errors| errors.iter().map(|error| format!("{:?}", error.error)).collect::<Vec<_>>().join("\n"))?;
proto_network.generate_stable_node_ids();
Ok(proto_network)
})

View File

@@ -380,6 +380,7 @@ impl ProtoNetwork {
pub fn compute_layouts(&mut self) -> Result<(), GraphErrors> {
self.fold_attribute_names()?;
let mut errors = GraphErrors::new();
for index in 0..self.nodes.len() {
let lane_invariant = self.nodes[index].1.lane_invariant_inputs;
let layout = {
@@ -390,6 +391,7 @@ impl ProtoNetwork {
plan: Vec::new(),
lane_invariant,
named_writes: Vec::new(),
named_reads: Vec::new(),
layout,
}),
ConstructionArgs::Nodes(inputs) => node.resolved.layout_meta.as_ref().and_then(|meta| {
@@ -397,6 +399,10 @@ impl ProtoNetwork {
.iter()
.map(|input| self.nodes[input.0 as usize].1.resolved.layout.as_ref().map(|resolved| &resolved.layout))
.collect();
// A read meets the name's value type where the name was
// written, so a disagreement upstream is caught here
// rather than read as the wrong type at run time.
errors.extend(read_type_conflicts(node, meta, &input_layouts));
meta.sources.iter().all(|&source| input_layouts[source as usize].is_some()).then(|| core_types::record::RecordLayout {
lane_invariant,
..meta.resolve(&input_layouts)
@@ -414,7 +420,7 @@ impl ProtoNetwork {
self.nodes[index].1.resolved.layout = layout;
}
self.stack_need = self.fold_stack_peak();
Ok(())
errors.is_empty().then_some(()).ok_or(errors)
}
/// Resolves every name-from-input write against the constant its name
@@ -426,55 +432,64 @@ impl ProtoNetwork {
let mut errors = GraphErrors::new();
for index in 0..self.nodes.len() {
let Some(meta) = &self.nodes[index].1.resolved.layout_meta else { continue };
if meta.named_writes.is_empty() {
if meta.named_writes.is_empty() && meta.named_reads.is_empty() {
continue;
}
let ConstructionArgs::Nodes(inputs) = &self.nodes[index].1.construction_args else {
continue;
};
let names: Vec<Result<&'static str, GraphErrorType>> = meta
// Writes first, then reads: both draw their names the same way, and
// the one-name-one-type check runs over them together.
let sources: Vec<(u8, std::any::TypeId)> = meta
.named_writes
.iter()
.map(|named| match inputs.get(named.name_input as usize).map(|input| &self.nodes[input.0 as usize].1.construction_args) {
Some(ConstructionArgs::Value(value)) => match &**value {
value::TaggedValue::String(name) => Ok(core_types::attribute::intern_name(name)),
other => Err(GraphErrorType::AttributeName(format!(
"an attribute name must be text, but input {} is {}",
named.name_input + 1,
other.ty()
.map(|named| (named.name_input, named.template.type_id))
.chain(meta.named_reads.iter().map(|named| (named.name_input, named.template.type_id)))
.collect();
let names: Vec<Result<&'static str, GraphErrorType>> = sources
.iter()
.map(
|&(name_input, _)| match inputs.get(name_input as usize).map(|input| &self.nodes[input.0 as usize].1.construction_args) {
Some(ConstructionArgs::Value(value)) => match &**value {
value::TaggedValue::String(name) => Ok(core_types::attribute::intern_name(name)),
other => Err(GraphErrorType::AttributeName(format!("an attribute name must be text, but input {} is {}", name_input + 1, other.ty()))),
},
_ => Err(GraphErrorType::AttributeName(format!(
"input {} must be a constant, since attribute names resolve when the graph compiles rather than when it runs",
name_input + 1
))),
},
_ => Err(GraphErrorType::AttributeName(format!(
"input {} must be a constant, since attribute names resolve when the graph compiles rather than when it runs",
named.name_input + 1
))),
})
)
.collect();
let node = &self.nodes[index].1;
let mut folded: Vec<(&'static str, std::any::TypeId)> = Vec::new();
let mut failed = false;
for (position, name) in names.iter().enumerate() {
for (name, &(_, type_id)) in names.iter().zip(&sources) {
match name {
Err(error) => {
errors.push(GraphError::new(node, error.clone()));
failed = true;
}
Ok(name) => {
let template = node.resolved.layout_meta.as_ref().expect("checked above").named_writes[position].template;
if let Some(conflict) = one_name_one_type(name, template.type_id, &folded) {
if let Some(conflict) = one_name_one_type(name, type_id, &folded) {
errors.push(GraphError::new(node, conflict));
failed = true;
}
folded.push((name, template.type_id));
folded.push((name, type_id));
}
}
}
if failed {
continue;
}
let writes = self.nodes[index].1.resolved.layout_meta.as_ref().expect("checked above").named_writes.len();
let meta = self.nodes[index].1.resolved.layout_meta.as_mut().expect("checked above");
for (position, name) in names.into_iter().enumerate() {
meta.fold_name(position, name.expect("every name resolved"));
let name = name.expect("every name resolved");
match position < writes {
true => meta.fold_name(position, name),
false => meta.fold_read_name(name),
}
}
}
errors.is_empty().then_some(()).ok_or(errors)
@@ -803,6 +818,26 @@ impl ProtoNetwork {
Ok(())
}
}
/// Reports each name-from-input read whose value type disagrees with the field
/// the name already names on the input it reads. An absent field is no
/// conflict: the read serves the name's forced default.
fn read_type_conflicts(node: &ProtoNode, meta: &core_types::record::LayoutMeta, inputs: &[Option<&core_types::record::Layout>]) -> GraphErrors {
meta.named_reads
.iter()
.zip(&meta.folded_read_names)
.filter_map(|(read, name)| {
let layout = inputs.get(read.input as usize).copied().flatten()?;
let field = layout.fields.iter().find(|field| field.name == *name && field.level == read.template.level)?;
(field.type_id != read.template.type_id).then(|| {
GraphError::new(
node,
GraphErrorType::AttributeName(format!("attribute `{name}` is read at one value type but written at another, and one name carries one value type")),
)
})
})
.collect()
}
/// Reports a folded name that disagrees with a type the same name already
/// carries, over the census and the names this node folded together. One name
/// means one value type everywhere, so the layouts a graph folds can never