forked from katzen-cafe/iowo
start work on type resolver
This commit is contained in:
parent
b07eb248f1
commit
c3db966765
3 changed files with 152 additions and 12 deletions
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@ -18,6 +18,18 @@ impl<'a> Command<'a> {
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.as_ref()
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.as_ref()
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.map(|def| TypeDef::from_internal(self.namespace, def))
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.map(|def| TypeDef::from_internal(self.namespace, def))
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}
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}
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// get a count of inputs required
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pub fn input_count(&self) -> usize {
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self.namespace.commands.borrow()[self.id]
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.input
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.as_ref()
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.map(|inputs| match inputs {
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InternalTypeDef::Single(_) => 1,
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InternalTypeDef::List(list) => list.len(),
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InternalTypeDef::Record(rec) => rec.len(),
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})
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.unwrap_or(0)
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}
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pub fn get_output_types(&self) -> Option<TypeDef> {
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pub fn get_output_types(&self) -> Option<TypeDef> {
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self.namespace.commands.borrow()[self.id]
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self.namespace.commands.borrow()[self.id]
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.output
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.output
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@ -101,6 +101,18 @@ impl Debug for TypeDef<'_> {
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}
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}
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}
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}
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impl<'a> From<Type<'a>> for TypeDef<'a> {
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fn from(value: Type<'a>) -> Self {
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TypeDef::Type(value)
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}
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}
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impl<'a> From<Trait<'a>> for TypeDef<'a> {
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fn from(value: Trait<'a>) -> Self {
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TypeDef::Trait(value)
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}
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}
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pub(super) enum InternalTypeDef {
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pub(super) enum InternalTypeDef {
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Single(TypeNamespaceId),
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Single(TypeNamespaceId),
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List(Vec<InternalTypeDef>),
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List(Vec<InternalTypeDef>),
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138
src/typed.rs
138
src/typed.rs
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@ -1,9 +1,15 @@
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use core::panic;
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use core::panic;
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use std::process::CommandEnvs;
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use crate::{
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use crate::{
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builtins::{TYPE_FLOAT, TYPE_INTEGER, TYPE_STRING},
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builtins::{TYPE_FLOAT, TYPE_INTEGER, TYPE_STRING},
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error::Errors,
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error::Errors,
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namespace::{command::Command, r#type::Type, GlobalNamespace},
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namespace::{
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command::{self, Command},
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r#type::Type,
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typedef::TypeDef,
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GlobalNamespace,
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},
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syntax::{CommandPart, CommandPartKind, PipelineElement, PipelineElementKind},
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syntax::{CommandPart, CommandPartKind, PipelineElement, PipelineElementKind},
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Span,
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Span,
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};
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};
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@ -15,13 +21,57 @@ pub struct Expr<'a> {
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span: Span,
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span: Span,
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}
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}
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impl<'a> Expr<'a> {
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fn try_find_concrete(&'a self, ns: &'a GlobalNamespace) -> IoTypes<'a> {
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let Self { ref kind, .. } = self;
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kind.try_find_concrete(ns)
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}
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fn get_input_typedef(&'a self) -> Option<TypeDef<'a>> {
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match &self.kind {
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ExprKind::Command(c) => c.command.get_input_types(),
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ExprKind::Literal(_) => None,
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}
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}
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}
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#[derive(Debug)]
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#[derive(Debug)]
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pub enum ExprKind<'a> {
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pub enum ExprKind<'a> {
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Command {
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Command(CommandExpr<'a>),
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Literal(LiteralKind),
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}
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impl<'a> ExprKind<'a> {
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fn try_find_concrete(&'a self, ns: &'a GlobalNamespace) -> IoTypes<'a> {
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match self {
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ExprKind::Literal(lit) => IoTypes::Concrete(lit.get_type(ns)),
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ExprKind::Command(c) => c.try_find_concrete(ns),
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}
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}
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}
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#[derive(Debug)]
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struct CommandExpr<'a> {
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command: Command<'a>,
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command: Command<'a>,
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args: Vec<Expr<'a>>,
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args: Vec<Expr<'a>>,
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},
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}
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Literal(LiteralKind),
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impl<'a> CommandExpr<'a> {
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fn try_find_concrete(&'a self, ns: &'a GlobalNamespace) -> IoTypes<'a> {
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let Self { command, args } = self;
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match command.get_output_types() {
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None => IoTypes::Empty,
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Some(def) => {
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if let Some(concrete) = ConcreteTypeDef::try_from_typedef(&def) {
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IoTypes::Concrete(concrete)
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} else {
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// TODO: make it possible to get clear output type
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IoTypes::Unclear
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}
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}
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}
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}
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}
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}
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#[derive(Debug)]
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#[derive(Debug)]
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@ -31,17 +81,26 @@ pub enum LiteralKind {
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String(String),
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String(String),
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}
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}
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enum IoTypes<'a> {
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/// expression does not expect/return anything
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Empty,
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/// expression does expect/return something, but some types are unclear
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Unclear,
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/// we know for sure what types the expression expects/returns
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Concrete(ConcreteTypeDef<'a>),
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}
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impl LiteralKind {
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impl LiteralKind {
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#[allow(
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#[allow(
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clippy::unwrap_used,
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clippy::unwrap_used,
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reason = "these are fetched by type name constants used for keeping names consistent in codebase, which cannot be None"
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reason = "these are fetched by type name constants used for keeping names consistent in codebase, which cannot be None"
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)]
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)]
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pub fn get_type<'a>(&self, ns: &'a GlobalNamespace) -> Type<'a> {
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pub fn get_type<'a>(&self, ns: &'a GlobalNamespace) -> ConcreteTypeDef<'a> {
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match self {
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ConcreteTypeDef::Single(match self {
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LiteralKind::Int(_) => ns.get_type_by_name(TYPE_INTEGER).unwrap(),
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LiteralKind::Int(_) => ns.get_type_by_name(TYPE_INTEGER).unwrap(),
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LiteralKind::Float(_) => ns.get_type_by_name(TYPE_FLOAT).unwrap(),
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LiteralKind::Float(_) => ns.get_type_by_name(TYPE_FLOAT).unwrap(),
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LiteralKind::String(_) => ns.get_type_by_name(TYPE_STRING).unwrap(),
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LiteralKind::String(_) => ns.get_type_by_name(TYPE_STRING).unwrap(),
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}
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})
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}
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}
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}
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}
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@ -61,7 +120,7 @@ pub fn into_typed_repr(
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res.push(Expr {
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res.push(Expr {
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kind: match kind {
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kind: match kind {
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CommandPartKind::Word(val) => ExprKind::Command {
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CommandPartKind::Word(val) => ExprKind::Command(CommandExpr {
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command: {
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command: {
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let Some(c) = ns.get_command_by_name(val) else {
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let Some(c) = ns.get_command_by_name(val) else {
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errs.push(span);
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errs.push(span);
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@ -70,7 +129,7 @@ pub fn into_typed_repr(
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c
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c
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},
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},
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args: Vec::new(),
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args: Vec::new(),
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},
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}),
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CommandPartKind::Integer(val) => {
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CommandPartKind::Integer(val) => {
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ExprKind::Literal(LiteralKind::Int(*val))
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ExprKind::Literal(LiteralKind::Int(*val))
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}
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}
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@ -93,7 +152,7 @@ pub fn into_typed_repr(
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};
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};
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res.push(Expr {
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res.push(Expr {
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kind: ExprKind::Command {
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kind: ExprKind::Command(CommandExpr {
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command: {
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command: {
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let Some(c) = ns.get_command_by_name(name) else {
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let Some(c) = ns.get_command_by_name(name) else {
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errs.push(span.clone());
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errs.push(span.clone());
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@ -116,7 +175,7 @@ pub fn into_typed_repr(
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span: span.clone(),
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span: span.clone(),
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})
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})
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.collect(),
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.collect(),
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},
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}),
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span: span.clone(),
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span: span.clone(),
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});
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});
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}
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}
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@ -131,3 +190,60 @@ pub fn into_typed_repr(
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Err(Errors::new(crate::error::ErrorKind::CommandNotFound, errs))
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Err(Errors::new(crate::error::ErrorKind::CommandNotFound, errs))
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}
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}
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}
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}
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enum ConcreteTypeDef<'a> {
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Single(Type<'a>),
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List(Vec<ConcreteTypeDef<'a>>),
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Record(Vec<(String, ConcreteTypeDef<'a>)>),
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}
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impl<'a> ConcreteTypeDef<'a> {
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fn try_from_typedef(val: &TypeDef<'a>) -> Option<Self> {
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match val {
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TypeDef::Type(typ) => Some(Self::Single(*typ)),
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TypeDef::Trait(_) => None,
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TypeDef::List(list) => {
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let out: Vec<ConcreteTypeDef<'a>> =
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list.iter().filter_map(Self::try_from_typedef).collect();
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(out.len() == list.len()).then_some(ConcreteTypeDef::List(out))
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}
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TypeDef::Record(rec) => {
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let out: Vec<(String, ConcreteTypeDef<'a>)> = rec
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.iter()
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.filter_map(|(name, def)| {
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Self::try_from_typedef(def).map(|def| (name.clone(), def))
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})
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.collect();
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(out.len() == rec.len()).then_some(ConcreteTypeDef::Record(out))
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}
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}
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}
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}
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struct TypeChecker<'a> {
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global_ns: &'a GlobalNamespace,
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typed_syntax: Vec<Expr<'a>>,
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}
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impl<'a> TypeChecker<'a> {
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fn new(ns: &'a GlobalNamespace, syntax: Vec<Expr<'a>>) -> TypeChecker<'a> {
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Self {
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global_ns: ns,
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typed_syntax: syntax,
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}
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}
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// not sure if this is the optimal alg, or even a working one, but lets see
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fn check_forward(&self) {
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let i = 0;
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// loop {
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// let maybe_concrete = match self.typed_syntax[i].kind {
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// ExprKind::Literal(l) => todo!(),
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// ExprKind::Command(c) => todo!(),
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// }
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// }
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}
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}
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