add Expr type for union of BoolExpr or NumExpr
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6 changed files with 32 additions and 22 deletions
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@ -17,7 +17,7 @@ use crate::{ArgusResult, Error};
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/// All expressions that are numeric
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#[derive(Clone, Debug, PartialEq, argus_derive::NumExpr)]
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#[enum_dispatch(Expr)]
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#[enum_dispatch(AnyExpr)]
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pub enum NumExpr {
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/// A signed integer literal
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IntLit(IntLit),
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@ -54,7 +54,7 @@ impl NumExpr {
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/// All expressions that are evaluated to be of type `bool`
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#[derive(Clone, Debug, PartialEq, argus_derive::BoolExpr)]
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#[enum_dispatch(Expr)]
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#[enum_dispatch(AnyExpr)]
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pub enum BoolExpr {
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/// A `bool` literal
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BoolLit(BoolLit),
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@ -118,6 +118,15 @@ pub enum ExprRef<'a> {
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Num(&'a NumExpr),
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}
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/// An expression (either [`BoolExpr`] or [`NumExpr`])
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#[derive(Clone, Debug, derive_more::From)]
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pub enum Expr {
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/// A reference to a [`BoolExpr`]
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Bool(BoolExpr),
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/// A reference to a [`NumExpr`]
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Num(NumExpr),
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}
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/// Expression builder
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///
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/// The `ExprBuilder` is a factory structure that deals with the creation of
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@ -3,7 +3,7 @@
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use std::ops::{Bound, RangeBounds};
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use std::time::Duration;
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use super::{BoolExpr, Expr, NumExpr};
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use super::{AnyExpr, BoolExpr, NumExpr};
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/// Types of comparison operations
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#[derive(Clone, Copy, Debug, PartialEq)]
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@ -142,7 +142,7 @@ where
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// TODO(anand): Can I implement this within argus_derive?
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macro_rules! impl_bool_expr {
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($ty:ty$(, $($arg:ident),* )? ) => {
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impl Expr for $ty {
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impl AnyExpr for $ty {
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fn is_numeric(&self) -> bool {
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false
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}
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@ -157,7 +157,7 @@ macro_rules! impl_bool_expr {
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}
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};
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($ty:ty, [$args:ident]) => {
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impl Expr for $ty {
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impl AnyExpr for $ty {
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fn is_numeric(&self) -> bool {
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false
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}
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@ -2,19 +2,19 @@
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use std::collections::VecDeque;
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use super::{Expr, ExprRef};
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use super::{AnyExpr, ExprRef};
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/// Iterator that starts from some root [`Expr`] and travels down to it's leaf
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/// Iterator that starts from some root [`AnyExpr`] and travels down to it's leaf
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/// expressions.
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///
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/// This essentially implements breadth-first search over the expression tree rooted at
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/// the given [`Expr`].
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/// the given [`AnyExpr`].
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pub struct AstIter<'a> {
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queue: VecDeque<ExprRef<'a>>,
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}
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impl<'a> AstIter<'a> {
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/// Create an iterator that traverses an [`Expr`] from root to leaf.
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/// Create an iterator that traverses an [`AnyExpr`] from root to leaf.
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pub fn new(root: ExprRef<'a>) -> Self {
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let mut queue = VecDeque::new();
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queue.push_back(root);
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@ -28,7 +28,7 @@ impl<'a> Iterator for AstIter<'a> {
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fn next(&mut self) -> Option<Self::Item> {
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let expr_ref = self.queue.pop_front()?;
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let expr: &dyn Expr = match expr_ref {
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let expr: &dyn AnyExpr = match expr_ref {
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ExprRef::Bool(expr) => expr,
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ExprRef::Num(expr) => expr,
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};
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@ -1,11 +1,11 @@
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//! Numeric expression types
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use super::{Expr, NumExpr};
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use super::{AnyExpr, NumExpr};
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// TODO(anand): Can I implement this within argus_derive?
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macro_rules! impl_num_expr {
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($ty:ty$(, $($arg:ident),* )? ) => {
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impl Expr for $ty {
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impl AnyExpr for $ty {
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fn is_numeric(&self) -> bool {
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true
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}
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@ -20,7 +20,7 @@ macro_rules! impl_num_expr {
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}
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};
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($ty:ty, [$args:ident]) => {
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impl Expr for $ty {
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impl AnyExpr for $ty {
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fn is_numeric(&self) -> bool {
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false
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}
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@ -4,7 +4,7 @@ use super::{BoolExpr, ExprRef, NumExpr};
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/// A trait representing expressions
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#[enum_dispatch]
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pub trait Expr {
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pub trait AnyExpr {
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/// Check if the given expression is a numeric expression
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fn is_numeric(&self) -> bool;
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/// Check if the given expression is a boolean expression
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@ -17,7 +17,7 @@ pub trait Expr {
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}
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/// Marker trait for numeric expressions
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pub trait IsNumExpr: Expr + Into<NumExpr> {}
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pub trait IsNumExpr: AnyExpr + Into<NumExpr> {}
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/// Marker trait for Boolean expressions
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pub trait IsBoolExpr: Expr + Into<BoolExpr> {}
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pub trait IsBoolExpr: AnyExpr + Into<BoolExpr> {}
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@ -1,18 +1,19 @@
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use std::{env, fmt, fs};
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use ariadne::{sources, Color, Label, Report, ReportKind};
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use chumsky::{input::SpannedInput, prelude::*};
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use chumsky::input::SpannedInput;
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use chumsky::prelude::*;
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use crate::lexer::{lexer, Span, Token};
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use crate::lexer::{lexer, Error as LexError, Span, Token};
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pub type Spanned<T> = (T, Span);
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// The type of the input that our parser operates on. The input is the `&[(Token, Span)]` token buffer generated by the
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// lexer, wrapped in a `SpannedInput` which 'splits' it apart into its constituent parts, tokens and spans, for chumsky
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// The type of the input that our parser operates on. The input is the `&[(Token,
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// Span)]` token buffer generated by the lexer, wrapped in a `SpannedInput` which
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// 'splits' it apart into its constituent parts, tokens and spans, for chumsky
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// to understand.
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type ParserInput<'tokens, 'src> = SpannedInput<Token<'src>, Span, &'tokens [(Token<'src>, Span)]>;
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pub fn parser<'tokens, 'src: 'tokens>(
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) -> impl Parser<'tokens, ParserInput<'tokens, 'src>, Spanned<Expr<'src>>, extra::Err<Rich<'tokens, Token<'src>, Span>>>
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+ Clone {
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) -> impl Parser<'tokens, ParserInput<'tokens, 'src>, Spanned<Expr<'src>>, LexError<'src>> + Clone {
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}
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