implement basic typed representation and conversion to it
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75be6e22a0
commit
b50fb5ed06
3 changed files with 129 additions and 6 deletions
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@ -1,18 +1,26 @@
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use crate::namespace::{typedef::TypeDef, GlobalNamespace};
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pub const TYPE_INTEGER: &str = "int";
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pub const TYPE_FLOAT: &str = "float";
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pub const TYPE_STRING: &str = "string";
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pub const TRAIT_NUMERIC: &str = "Num";
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pub const CMD_ADD: &str = "add";
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pub fn initialise_globals() -> GlobalNamespace {
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let ns = GlobalNamespace::init();
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let numeric = ns.register_trait("Numeric").unwrap();
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let numeric = ns.register_trait(TRAIT_NUMERIC).unwrap();
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ns.register_type("integer").unwrap().add_trait(&numeric);
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ns.register_type("float").unwrap().add_trait(&numeric);
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ns.register_type(TYPE_INTEGER).unwrap().add_trait(&numeric);
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ns.register_type(TYPE_FLOAT).unwrap().add_trait(&numeric);
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ns.register_type("string").unwrap();
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ns.register_type(TYPE_STRING).unwrap();
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// def math add [ Numeric Numeric ] -> Numeric
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ns.register_command(
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"add",
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CMD_ADD,
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Some(TypeDef::List(vec![
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TypeDef::Trait(numeric),
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TypeDef::Trait(numeric),
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@ -9,11 +9,14 @@ use codespan_reporting::{
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};
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use syntax::{check::check, error::SyntaxError, parse_syntax};
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use crate::{builtins::initialise_globals, typed::into_typed_repr};
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mod args;
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mod builtins;
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mod lexer;
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mod namespace;
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mod syntax;
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mod typed;
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fn main() {
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let args = Args::parse();
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@ -42,7 +45,7 @@ fn main() {
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)
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.unwrap();
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} else {
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let check_res = check(&syntax.unwrap());
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let check_res = check(&syntax.clone().unwrap());
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if let Err(errs) = check_res {
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let writer = &mut writer.lock();
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@ -52,6 +55,10 @@ fn main() {
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for diag in diags {
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term::emit(writer, &config, &files, &diag).unwrap();
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}
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} else {
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let ns = initialise_globals();
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println!("typed: {:#?}", into_typed_repr(&ns, syntax.unwrap()));
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}
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}
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}
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108
src/typed.rs
Normal file
108
src/typed.rs
Normal file
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@ -0,0 +1,108 @@
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use core::panic;
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use crate::{
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builtins::{TYPE_FLOAT, TYPE_INTEGER, TYPE_STRING},
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namespace::{command::Command, r#type::Type, GlobalNamespace},
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syntax::{CommandPart, CommandPartKind, PipelineElement, PipelineElementKind},
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};
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#[derive(Debug)]
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pub struct Expr<'a> {
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kind: ExprKind<'a>,
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span: logos::Span,
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}
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#[derive(Debug)]
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pub enum ExprKind<'a> {
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Command {
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command: Command<'a>,
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args: Vec<Expr<'a>>,
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},
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Literal(LiteralKind),
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}
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#[derive(Debug)]
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pub enum LiteralKind {
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Int(i64),
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Float(f64),
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String(String),
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}
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impl LiteralKind {
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pub fn get_type<'a>(&self, ns: &'a GlobalNamespace) -> Type<'a> {
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match self {
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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::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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pub fn into_typed_repr(ns: &GlobalNamespace, syntax: Vec<PipelineElement>) -> Vec<Expr> {
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let mut res = Vec::new();
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for item in syntax {
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let PipelineElement { kind, span } = item;
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match kind {
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PipelineElementKind::Command(c) => {
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if c.len() == 1 {
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let CommandPart { kind, span: _ } = &c[0];
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res.push(Expr {
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kind: match kind {
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CommandPartKind::Word(val) => ExprKind::Command {
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command: ns.get_command_by_name(val).unwrap(),
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args: Vec::new(),
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},
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CommandPartKind::Integer(val) => {
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ExprKind::Literal(LiteralKind::Int(*val))
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}
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CommandPartKind::Float(val) => {
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ExprKind::Literal(LiteralKind::Float(*val))
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}
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CommandPartKind::String(val) => {
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ExprKind::Literal(LiteralKind::String(val.clone()))
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}
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},
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span,
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})
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} else {
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let Some(CommandPart {
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kind: CommandPartKind::Word(name),
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span,
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}) = c.first()
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else {
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panic!("tried conversion to typed representation with invalid syntax")
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};
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res.push(Expr {
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kind: ExprKind::Command {
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command: ns.get_command_by_name(name).unwrap(),
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args: c
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.iter()
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.skip(1)
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.map(|CommandPart { kind, span }| Expr {
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kind: ExprKind::Literal(match kind {
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CommandPartKind::Word(val) => {
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LiteralKind::String(val.to_string())
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}
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CommandPartKind::Integer(val) => LiteralKind::Int(*val),
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CommandPartKind::Float(val) => LiteralKind::Float(*val),
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CommandPartKind::String(val) => {
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LiteralKind::String(val.to_string())
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}
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}),
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span: span.clone(),
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})
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.collect(),
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},
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span: span.clone(),
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})
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}
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}
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PipelineElementKind::Pipe => {}
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}
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}
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res
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}
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