241 lines
10 KiB
Rust
241 lines
10 KiB
Rust
use std::rc::Rc;
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use crate::{
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ast::*,
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symbol_table::{Fqsn, ScopeSegment, SymbolSpec, SymbolTable},
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util::ScopeStack,
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};
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#[derive(Debug)]
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enum NameType {
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//TODO eventually this needs to support closures
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Param(u8),
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LocalVariable(ItemId),
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LocalFunction(ItemId),
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Import(Fqsn),
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}
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#[derive(Debug)]
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enum ScopeType {
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Function { name: Rc<String> },
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Lambda,
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PatternMatch,
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//TODO add some notion of a let-like scope?
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}
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pub struct ScopeResolver<'a> {
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symbol_table: &'a mut super::SymbolTable,
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//TODO maybe this shouldn't be a scope stack, b/c the recursion behavior comes from multiple
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//instances of ScopeResolver
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lexical_scopes: ScopeStack<'a, Rc<String>, NameType, ScopeType>,
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}
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impl<'a> ScopeResolver<'a> {
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pub fn new(symbol_table: &'a mut SymbolTable) -> Self {
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let lexical_scopes = ScopeStack::new(None);
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Self { symbol_table, lexical_scopes }
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}
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pub fn resolve(&mut self, ast: &AST) {
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walk_ast(self, ast);
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}
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/// This method correctly modifies the id_to_def table (ItemId) to have the appropriate
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/// mappings.
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fn lookup_name_in_scope(&mut self, name: &QualifiedName) {
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let QualifiedName { id, components } = name;
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let local_name = components.first().unwrap().clone();
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let name_type = self.lexical_scopes.lookup(&local_name);
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let fqsn = Fqsn { scopes: components.iter().map(|name| ScopeSegment::Name(name.clone())).collect() };
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let def_id = self.symbol_table.symbol_trie.lookup(&fqsn);
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//TODO handle a "partial" qualified name, and also handle it down in the pattern-matching
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//section
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if components.len() == 1 {
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match name_type {
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Some(NameType::Import(fqsn)) => {
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let def_id = self.symbol_table.symbol_trie.lookup(fqsn);
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if let Some(def_id) = def_id {
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self.symbol_table.id_to_def.insert(*id, def_id);
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}
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}
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Some(NameType::Param(n)) => {
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let spec = SymbolSpec::FunctionParam(*n);
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//TODO need to come up with a better solution for local variable FQSNs
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let lscope = ScopeSegment::Name(Rc::new("<local-param>".to_string()));
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let fqsn = Fqsn { scopes: vec![lscope, ScopeSegment::Name(local_name.clone())] };
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self.symbol_table.add_symbol(id, fqsn, spec);
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}
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Some(NameType::LocalFunction(item_id)) => {
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let def_id = self.symbol_table.id_to_def.get(item_id);
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if let Some(def_id) = def_id {
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let def_id = *def_id;
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self.symbol_table.id_to_def.insert(*id, def_id);
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}
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}
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Some(NameType::LocalVariable(item_id)) => {
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let def_id = self.symbol_table.id_to_def.get(item_id);
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if let Some(def_id) = def_id {
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let def_id = *def_id;
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self.symbol_table.id_to_def.insert(*id, def_id);
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}
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}
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None =>
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if let Some(def_id) = def_id {
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self.symbol_table.id_to_def.insert(*id, def_id);
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},
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}
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} else if let Some(def_id) = def_id {
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self.symbol_table.id_to_def.insert(*id, def_id);
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}
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}
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}
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impl<'a> ASTVisitor for ScopeResolver<'a> {
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// Import statements bring in a bunch of local names that all map to a specific FQSN.
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// FQSNs map to a Symbol (or this is an error), Symbols have a DefId. So for every
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// name we import, we map a local name (a string) to a NameType::ImportedDefinition(DefId).
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fn import(&mut self, import_spec: &ImportSpecifier) -> Recursion {
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let ImportSpecifier { ref path_components, ref imported_names, .. } = &import_spec;
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match imported_names {
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ImportedNames::All => {
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let prefix =
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Fqsn { scopes: path_components.iter().map(|c| ScopeSegment::Name(c.clone())).collect() };
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let members = self.symbol_table.symbol_trie.get_children(&prefix);
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for fqsn in members.into_iter() {
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self.lexical_scopes.insert(fqsn.last_elem(), NameType::Import(fqsn));
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}
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}
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ImportedNames::LastOfPath => {
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let fqsn =
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Fqsn { scopes: path_components.iter().map(|c| ScopeSegment::Name(c.clone())).collect() };
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self.lexical_scopes.insert(fqsn.last_elem(), NameType::Import(fqsn));
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}
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ImportedNames::List(ref names) => {
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let fqsn_prefix: Vec<ScopeSegment> =
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path_components.iter().map(|c| ScopeSegment::Name(c.clone())).collect();
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for name in names.iter() {
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let mut scopes = fqsn_prefix.clone();
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scopes.push(ScopeSegment::Name(name.clone()));
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let fqsn = Fqsn { scopes };
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self.lexical_scopes.insert(fqsn.last_elem(), NameType::Import(fqsn));
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}
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}
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};
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Recursion::Continue
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}
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fn declaration(&mut self, declaration: &Declaration, id: &ItemId) -> Recursion {
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let cur_function_name = match self.lexical_scopes.get_name() {
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//TODO this needs to be a fqsn
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Some(ScopeType::Function { name }) => Some(name.clone()),
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_ => None,
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};
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match declaration {
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Declaration::FuncDecl(signature, block) => {
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let param_names = signature.params.iter().map(|param| param.name.clone());
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//TODO I'm 90% sure this is right, until I get to closures
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//let mut new_scope = self.lexical_scopes.new_scope(Some(ScopeType::Function { name: signature.name.clone() }));
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let mut new_scope =
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ScopeStack::new(Some(ScopeType::Function { name: signature.name.clone() }));
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for (n, param) in param_names.enumerate() {
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new_scope.insert(param, NameType::Param(n as u8));
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}
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self.lexical_scopes.insert(signature.name.clone(), NameType::LocalFunction(*id));
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let mut new_resolver =
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ScopeResolver { symbol_table: self.symbol_table, lexical_scopes: new_scope };
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walk_block(&mut new_resolver, block);
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Recursion::Stop
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}
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Declaration::Binding { name, .. } => {
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if let Some(fn_name) = cur_function_name {
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// We are within a function scope
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let fqsn =
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Fqsn { scopes: vec![ScopeSegment::Name(fn_name), ScopeSegment::Name(name.clone())] };
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self.symbol_table.add_symbol(id, fqsn, SymbolSpec::LocalVariable);
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self.lexical_scopes.insert(name.clone(), NameType::LocalVariable(*id));
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}
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Recursion::Continue
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}
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_ => Recursion::Continue,
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}
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}
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fn expression(&mut self, expression: &Expression) -> Recursion {
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use ExpressionKind::*;
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match &expression.kind {
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Value(name) => {
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self.lookup_name_in_scope(name);
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}
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NamedStruct { name, fields: _ } => {
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self.lookup_name_in_scope(name);
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}
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Lambda { params, body, .. } => {
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let param_names = params.iter().map(|param| param.name.clone());
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//TODO need to properly handle closure scope, this is currently broken
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//let mut new_scope = self.lexical_scopes.new_scope(Some(ScopeType::Function { name: signature.name.clone() }));
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let mut new_scope = ScopeStack::new(Some(ScopeType::Lambda));
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for (n, param) in param_names.enumerate() {
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new_scope.insert(param, NameType::Param(n as u8));
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}
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let mut new_resolver =
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ScopeResolver { symbol_table: self.symbol_table, lexical_scopes: new_scope };
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walk_block(&mut new_resolver, body);
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return Recursion::Stop;
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}
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IfExpression { discriminator, body } => {
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if let Some(d) = discriminator.as_ref() {
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walk_expression(self, d);
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}
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let mut resolver = ScopeResolver {
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lexical_scopes: self.lexical_scopes.new_scope(Some(ScopeType::PatternMatch)),
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symbol_table: self.symbol_table,
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};
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walk_if_expr_body(&mut resolver, body);
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return Recursion::Stop;
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}
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_ => (),
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}
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Recursion::Continue
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}
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fn pattern(&mut self, pat: &Pattern) -> Recursion {
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use Pattern::*;
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match pat {
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Literal(..) | Ignored | TuplePattern(..) => (),
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TupleStruct(name, _) | Record(name, _) => {
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self.lookup_name_in_scope(name);
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}
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//TODO this isn't really the right syntax for a VarOrName
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VarOrName(QualifiedName { id, components }) => {
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if components.len() == 1 {
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//TODO need a better way to construct a FQSN from a QualifiedName
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let local_name: Rc<String> = components[0].clone();
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let lscope = ScopeSegment::Name(Rc::new("<local-case-match>".to_string()));
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let fqsn = Fqsn { scopes: vec![lscope, ScopeSegment::Name(local_name.clone())] };
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self.symbol_table.add_symbol(id, fqsn, SymbolSpec::LocalVariable);
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self.lexical_scopes.insert(local_name, NameType::LocalVariable(*id));
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} else {
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let fqsn = Fqsn {
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scopes: components.iter().map(|name| ScopeSegment::Name(name.clone())).collect(),
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};
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let def_id = self.symbol_table.symbol_trie.lookup(&fqsn);
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if let Some(def_id) = def_id {
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self.symbol_table.id_to_def.insert(*id, def_id);
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}
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}
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}
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};
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Recursion::Continue
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}
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}
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