Much better working grammar, more fixed tests
This commit is contained in:
+73
-47
@@ -80,7 +80,7 @@ pub struct Assignment {
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#[derive(PartialEq, Clone, Debug)]
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pub enum Lvalue {
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ArrayRef(ArrayRef),
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ArrayRef(String, Expr),
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Name(String),
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}
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@@ -150,62 +150,78 @@ pub enum Prefix {
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#[derive(Debug, PartialEq, Clone)]
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pub enum Suffix {
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Subscript(Expr),
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Subscript(BoxExpr),
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Arglist(Vec<Rvalue>),
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Member(String),
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}
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#[derive(PartialEq, Clone, Debug)]
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pub struct Expr {
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pub lhs: Val,
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pub op: Option<Operator>,
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pub rhs: Option<BoxExpr>,
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#[derive(Debug, PartialEq, Clone)]
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pub enum Expr {
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Val(Val),
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Prefix(Prefix, BoxExpr),
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Suffix(BoxExpr, Suffix),
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Infix(BoxExpr, Operator, BoxExpr)
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}
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// #[derive(PartialEq, Clone, Debug)]
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// pub struct Expr {
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// pub lhs: Val,
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// pub prefix: Vec<Prefix>,
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// pub suffix: Vec<Suffix>,
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// pub op: Option<Operator>,
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// pub rhs: Option<BoxExpr>,
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// }
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#[derive(PartialEq, Clone, Debug)]
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pub enum Val {
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Number(i32, Vec<Prefix>, Vec<Suffix>),
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Name(String, Vec<Prefix>, Vec<Suffix>),
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Expr(BoxExpr, Vec<Prefix>, Vec<Suffix>),
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Number(i32),
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Name(String),
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Expr(BoxExpr),
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}
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impl Val {
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pub fn is_simple(&self) -> bool {
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if let Self::Expr(expr, pre, suf) = &self {
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pre.is_empty() && suf.is_empty() && expr.0.op.is_none()
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} else {
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false
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}
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}
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pub fn inner_expr(self) -> Option<Expr> {
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if let Self::Expr(expr, _, _) = self {
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Some(expr.into())
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} else { None }
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}
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}
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// impl Val {
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// pub fn is_simple(&self) -> bool {
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// if let Self::Expr(expr, pre, suf) = &self {
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// pre.is_empty() && suf.is_empty() && expr.0.op.is_none()
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// } else {
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// false
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// }
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// }
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//
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// pub fn inner_expr(self) -> Option<Expr> {
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// if let Self::Expr(expr, _, _) = self {
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// Some(expr.into())
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// } else { None }
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// }
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// }
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impl From<i32> for Val {
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fn from(val: i32) -> Self {
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Self::Number(val, vec![], vec![])
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Self::Number(val)
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}
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}
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impl From<&str> for Val {
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fn from(s: &str) -> Self {
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Self::Name(String::from(s), vec![], vec![])
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Self::Name(String::from(s))
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}
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}
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impl From<Expr> for Val {
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fn from(value: Expr) -> Self {
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Self::Expr(value.into(), vec![], vec![])
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Self::Expr(value.into())
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}
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}
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impl From<BoxExpr> for Val {
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fn from(value: BoxExpr) -> Self {
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Self::Expr(value, vec![], vec![])
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Self::Expr(value)
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}
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}
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impl From<Val> for BoxExpr {
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fn from(value: Val) -> Self {
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Self::from(Expr::from(value))
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}
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}
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@@ -215,11 +231,7 @@ pub struct BoxExpr(pub Box<Expr>);
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impl From<Val> for Expr {
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fn from(value: Val) -> Self {
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Self {
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lhs: value,
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op: None,
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rhs: None
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}
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Self::Val(value)
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}
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}
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@@ -230,29 +242,43 @@ impl From<i32> for BoxExpr {
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}
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impl From<Expr> for BoxExpr {
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fn from(val: Expr) -> Self {
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BoxExpr(Box::from(val))
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fn from(expr: Expr) -> Self {
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BoxExpr(Box::from(expr))
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}
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}
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impl From<&str> for BoxExpr {
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fn from(value: &str) -> Self {
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Expr::Val(Val::Name(String::from(value))).into()
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}
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}
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impl From<BoxExpr> for Expr {
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fn from(val: BoxExpr) -> Self {
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*(val.0)
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fn from(expr: BoxExpr) -> Self {
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*(expr.0)
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}
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}
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impl From<i32> for Expr {
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fn from(value: i32) -> Self {
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Self {
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lhs: Val::Number(value, vec![], vec![]),
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op: None,
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rhs: None
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}
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Self::Val(Val::Number(value))
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}
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}
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#[derive(PartialEq, Clone, Debug)]
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pub struct ArrayRef {
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pub name: String,
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pub subscript: BoxExpr,
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impl From<&str> for Expr {
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fn from(value: &str) -> Self {
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Self::Val(Val::Name(String::from(value)))
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}
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}
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impl From<i32> for Rvalue {
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fn from(value: i32) -> Self {
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Self::Expr(value.into())
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}
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}
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impl From<&str> for Rvalue {
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fn from(value: &str) -> Self {
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Self::String(value.into())
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}
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}
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@@ -311,7 +311,7 @@ impl Compilable for Lvalue {
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let global_scope = &state.global_scope;
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let mut sig = sig.expect("lvalue outside a function");
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match self {
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Lvalue::ArrayRef(_) => todo!("Arrays are not implemented yet"),
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Lvalue::ArrayRef(_, _) => todo!("Arrays are not implemented yet"),
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Lvalue::Name(name) => {
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if let Some(var) = lookup(&name, global_scope, &sig.local_scope) {
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match var {
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+185
-175
@@ -1,4 +1,4 @@
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use pest::pratt_parser::PrattParser;
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use pest::pratt_parser::{Op, PrattParser};
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use pest::Parser;
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#[derive(Parser)]
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@@ -23,6 +23,7 @@ lazy_static::lazy_static! {
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.op(Op::infix(add, Left) | Op::infix(sub, Left))
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.op(Op::infix(mul, Left) | Op::infix(div, Left) | Op::infix(modulus, Left))
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.op(Op::prefix(Rule::prefix))
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.op(Op::postfix(Rule::suffix))
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};
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}
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@@ -324,12 +325,13 @@ impl AstNode for Assignment {
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const RULE: Rule = Rule::assignment;
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fn from_pair(pair: Pair) -> Self {
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let mut pairs = pair.into_inner();
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let lvalue_pair = pairs.next().unwrap().first();
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let lvalue = match lvalue_pair.as_rule() {
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//Rule::arrayref => Lvalue::ArrayRef(ArrayRef::from_pair(lvalue_pair)),
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Rule::name => Lvalue::Name(String::from(lvalue_pair.as_str())),
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_ => unreachable!(),
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};
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let lvalue_pair = pairs.next().unwrap();
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let lvalue = Lvalue::from_pair(lvalue_pair);
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// let lvalue = match lvalue_pair.as_rule() {
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// Rule::subscript => Lvalue::ArrayRef(Subscript::from_pair(lvalue_pair)),
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// Rule::name => Lvalue::Name(String::from(lvalue_pair.as_str())),
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// _ => unreachable!(),
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// };
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let rvalue = Rvalue::from_pair(pairs.next().unwrap());
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Self { lvalue, rvalue }
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}
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@@ -337,6 +339,18 @@ impl AstNode for Assignment {
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///////////////////////////////////////////////////////////////////////////////////////////
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impl AstNode for Lvalue {
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const RULE: Rule = Rule::lvalue;
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fn from_pair(pair: Pair) -> Self {
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let mut pairs = pair.into_inner();
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let name = pairs.next().unwrap().as_str();
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pairs.next().map_or(Lvalue::Name(String::from(name)),
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|subscript| Lvalue::ArrayRef(String::from(name), Expr::from_pair(subscript.first())))
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}
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}
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///////////////////////////////////////////////////////////////////////////////////////////
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impl AstNode for Rvalue {
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const RULE: Rule = Rule::rvalue;
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@@ -428,20 +442,35 @@ impl AstNode for RepeatLoop {
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impl AstNode for Expr {
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const RULE: Rule = Rule::expr;
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fn from_pair(pair: Pair) -> Self {
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// The way this works is, the rule has to be of the form:
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// expr = { prefix* ~ val ~ suffix* ~ (operator ~ prefix* ~ val ~ suffix*)* }
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// Each of these map methods turns a thing into an expr. Which means expr HAS
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// to be an enum with the different possible forms these things can take:
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// - if it's a val, it goes into map_primary and returns an Expr::Val
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// - If it's a prefix or suffix, it goes into map_prefix or map_postfix, and
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// returns an Expr::Prefix or Expr::Suffix
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// - Operators go into map_infix along with two exprs for the left and right
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// sides
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// The output of all this is an Expr, containing a tree of other Exprs of
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// various forms.
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PRATT_PARSER
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.map_primary(|val| {
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Expr {
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lhs: Val::from_pair(val),
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op: None,
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rhs: None
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}
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let val = Val::from_pair(val);
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// If the val is a parenthesized expr, just unwrap it
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if let Val::Expr(expr) = val {
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*expr.0
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} else {
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Expr::Val(val)
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}
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})
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.map_infix(|lhs, op, rhs|
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Expr {
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lhs: Val::from(lhs),
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op: Some(Operator::from_pair(op)),
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rhs: Some(rhs.into()),
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})
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Expr::Infix(lhs.into(), Operator::from_pair(op), rhs.into())
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)
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.map_prefix(|prefix, expr|
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Expr::Prefix(Prefix::from_pair(prefix), expr.into())
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)
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.map_postfix(|expr, suffix|
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Expr::Suffix(expr.into(), Suffix::from_pair(suffix)))
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.parse(pair.into_inner())
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}
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}
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@@ -503,7 +532,7 @@ impl AstNode for Suffix {
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fn from_pair(pair: Pair) -> Self {
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let first = pair.first();
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match first.as_rule() {
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Rule::subscript => Subscript(Expr::from_pair(first.first())),
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Rule::subscript => Subscript(Expr::from_pair(first.first()).into()),
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Rule::member => Self::Member(first.first_as_string()),
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Rule::arglist => Arglist(first.into_inner().map(Rvalue::from_pair).collect()),
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_ => unreachable!()
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@@ -533,23 +562,11 @@ impl AstNode for Val {
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const RULE: Rule = Rule::val;
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fn from_pair(pair: Pair) -> Self {
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let mut suffix = vec![];
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let mut prefix = vec![];
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let mut val = None;
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for child in pair.into_inner() {
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match child.as_rule() {
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Rule::prefix => prefix.push(Prefix::from_pair(child)),
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Rule::suffix => suffix.push(Suffix::from_pair(child)),
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Rule::number | Rule::name | Rule::expr => val = Some(child),
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_ => unreachable!()
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}
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}
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let val = val.unwrap();
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let val = pair.first();
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match val.as_rule() {
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Rule::number => Self::Number(val.into_number(), prefix, suffix),
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Rule::name => Self::Name(String::from(val.as_str()), prefix, suffix),
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Rule::expr => Self::Expr(Expr::from_pair(val).into(), prefix, suffix),
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Rule::number => Self::Number(val.into_number()),
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Rule::name => Self::Name(String::from(val.as_str())),
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Rule::expr => Self::Expr(Expr::from_pair(val).into()),
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_ => unreachable!()
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}
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}
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@@ -565,23 +582,7 @@ mod test {
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fn parse_vals() {
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// Basic vals with no extras:
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assert_eq!(Val::from_str("10"), Ok(10.into()));
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assert_eq!(Val::from_str("blah"), Ok(Val::Name("blah".into(), vec![], vec![])));
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// Simple prefix
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assert_eq!(Val::from_str("-5"),
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Ok(Val::Number(5, vec![Prefix::Neg], vec![])));
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// Multiple prefixes
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assert_eq!(Val::from_str("!&foo"),
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Ok(Val::Name("foo".into(), vec![Prefix::Not, Prefix::Address], vec![])));
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// Simple suffix
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assert_eq!(Val::from_str("foo[10]"),
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Ok(Val::Name("foo".into(), vec![], vec![Suffix::Subscript(10.into())])));
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// Multi-suffix
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assert_eq!(Val::from_str("foo[10].bar"),
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Ok(Val::Name("foo".into(), vec![], vec![Suffix::Subscript(10.into()), Suffix::Member("bar".into())])));
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assert_eq!(Val::from_str("blah"), Ok(Val::Name("blah".into())));
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}
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#[test]
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@@ -642,7 +643,7 @@ mod test {
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Const::from_str("const a = -7;"),
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Ok(Const {
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name: "a".into(),
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value: Some(Val::Number(7, vec![Prefix::Neg], vec![]).into()),
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value: Some(Expr::Prefix(Prefix::Neg, 7.into()).into()),
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string: None,
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})
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);
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@@ -755,108 +756,127 @@ mod test {
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}],
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body: Block(vec![]),
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};
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assert_eq!(
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Function::from_str("fn foo<inline, org=0x400>(a) {}"),
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Ok(func.clone())
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);
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assert_eq!(
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Function::from_str("fn foo<org=0x400, inline>(a) {}"),
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Ok(func)
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);
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}
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#[test]
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fn parse_exprs() {
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use Operator::*;
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use Prefix::*;
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use Suffix::*;
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use Expr::Infix;
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// A very, very basic expression
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// For the rest of these we'll .into() stuff for brevity
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//Some(assert_eq!(Expr::from_str("23"), Ok(Expr { lhs: Val::Number(23, vec![], vec![]), op: None, rhs: None })));
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assert_eq!(
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Expr::from_str("23"),
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Ok(Expr::Val(Val::Number(23)))
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);
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// Two vals with an operator
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assert_eq!(
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Expr::from_str("23 + 5"),
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Ok(Expr { lhs: 23.into(), op: Some(Add), rhs: Some(5.into()) })
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Ok(Infix(23.into(), Add, 5.into()))
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);
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// Multiple terms at the same precedence level
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assert_eq!(
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Expr::from_str("1 + 2 + 3"),
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Ok(Expr { lhs: 1.into(), op: Some(Add), rhs: Some(Expr { lhs: 2.into(), op: Some(Add), rhs: Some(3.into()) }.into()) })
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Ok(Infix(Infix(1.into(), Add, 2.into()).into(), Add, 3.into()))
|
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);
|
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|
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/*
|
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// Higher precedence levels
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assert_eq!(
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Node::from_str("1 + 2 * 3"),
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Ok(Expr(1.into(), Add, Expr(2.into(), Mul, 3.into()).into()))
|
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);
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// Simple prefix
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assert_eq!(Expr::from_str("-5"),
|
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Ok(Expr::Prefix(Neg, 5.into())));
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assert_eq!(Node::from_str("2 * 3"), Ok(Expr(2.into(), Mul, 3.into())));
|
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// Multiple prefixes
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assert_eq!(
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Expr::from_str("!&foo"),
|
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Ok(Expr::Prefix(Not,
|
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Expr::Prefix(Address, "foo".into()).into())));
|
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|
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assert_eq!(
|
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Node::from_str("2 * 3 + 4"),
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Ok(Expr(Expr(2.into(), Mul, 3.into()).into(), Add, 4.into()))
|
||||
);
|
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// Simple suffix
|
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assert_eq!(
|
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Expr::from_str("foo[10]"),
|
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Ok(Expr::Suffix("foo".into(), Subscript(10.into())))
|
||||
);
|
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|
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// Various operators
|
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assert_eq!(
|
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Node::from_str("1 || 2 && 3"),
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Ok(Expr(1.into(), Or, Expr(2.into(), And, 3.into()).into()))
|
||||
);
|
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// Multi-suffix
|
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assert_eq!(
|
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Expr::from_str("foo[10].bar"),
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Ok(Expr::Suffix(
|
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Expr::Suffix("foo".into(), Subscript(10.into())).into(),
|
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Member("bar".into())))
|
||||
);
|
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|
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assert_eq!(
|
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Node::from_str("2 && &blah"),
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Ok(Expr(2.into(), And, Address("blah".into()).into()))
|
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);
|
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// Higher precedence levels
|
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assert_eq!(
|
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Expr::from_str("1 + 2 * 3"),
|
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Ok(Infix(1.into(), Add, Infix(2.into(), Mul, 3.into()).into()))
|
||||
);
|
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|
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assert_eq!(
|
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Node::from_str("2 & &blah"),
|
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Ok(Expr(2.into(), BitAnd, Address("blah".into()).into()))
|
||||
);
|
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assert_eq!(
|
||||
Expr::from_str("2 * 3"),
|
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Ok(Infix(2.into(), Mul, 3.into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
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Node::from_str("1 | 2 ^ 3"),
|
||||
Ok(Expr(1.into(), BitOr, Expr(2.into(), Xor, 3.into()).into()))
|
||||
);
|
||||
assert_eq!(
|
||||
Expr::from_str("2 * 3 + 4"),
|
||||
Ok(Infix(Infix(2.into(), Mul, 3.into()).into(), Add, 4.into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Node::from_str("x == y > z"),
|
||||
Ok(Expr(
|
||||
Name("x".into()).into(),
|
||||
Eq,
|
||||
Expr(Name("y".into()).into(), Gt, Name("z".into()).into()).into()
|
||||
))
|
||||
);
|
||||
// Various operators
|
||||
assert_eq!(
|
||||
Expr::from_str("1 || 2 && 3"),
|
||||
Ok(Infix(1.into(), Or, Infix(2.into(), And, 3.into()).into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Node::from_str("1 << 6"),
|
||||
Ok(Expr(1.into(), Lshift, 6.into()))
|
||||
);
|
||||
assert_eq!(
|
||||
Expr::from_str("2 && &blah"),
|
||||
Ok(Infix(2.into(), And, Expr::Prefix(Address, "blah".into()).into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Node::from_str("!a - -3"),
|
||||
Ok(Expr(
|
||||
Prefix(crate::ast::Prefix::Not, Name("a".into()).into()).into(),
|
||||
Sub,
|
||||
Prefix(crate::ast::Prefix::Neg, 3.into()).into()
|
||||
))
|
||||
);
|
||||
assert_eq!(
|
||||
Expr::from_str("2 & &blah"),
|
||||
Ok(Infix(2.into(), BitAnd, Expr::Prefix(Address, "blah".into()).into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Node::from_str("-(4 * 5)"),
|
||||
Ok(Prefix(
|
||||
crate::ast::Prefix::Neg,
|
||||
Expr(4.into(), Mul, 5.into()).into()
|
||||
))
|
||||
);
|
||||
assert_eq!(
|
||||
Expr::from_str("1 | 2 ^ 3"),
|
||||
Ok(Infix(1.into(), BitOr, Infix(2.into(), Xor, 3.into()).into()))
|
||||
);
|
||||
|
||||
// Parens
|
||||
assert_eq!(
|
||||
Node::from_str("(1 + 2) * 3"),
|
||||
Ok(Expr(Expr(1.into(), Add, 2.into()).into(), Mul, 3.into()))
|
||||
);
|
||||
*/
|
||||
assert_eq!(
|
||||
Expr::from_str("x == y > z"),
|
||||
Ok(Infix("x".into(), Eq, Infix("y".into(), Gt, "z".into()).into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Expr::from_str("1 << 6"),
|
||||
Ok(Infix(1.into(), Lshift, 6.into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Expr::from_str("!a - -3"),
|
||||
Ok(Infix(Expr::Prefix(Not, "a".into()).into(), Sub, Expr::Prefix(Neg, 3.into()).into()))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Expr::from_str("-(4 * 5)"),
|
||||
Ok(Expr::Prefix(Neg,
|
||||
Infix(4.into(), Mul, 5.into()).into()
|
||||
))
|
||||
);
|
||||
|
||||
// Parens
|
||||
assert_eq!(
|
||||
Expr::from_str("(1 + 2) * 3"),
|
||||
Ok(
|
||||
Infix(
|
||||
Infix(1.into(), Add, 2.into()).into(),
|
||||
Mul,
|
||||
3.into()
|
||||
)
|
||||
)
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
@@ -894,55 +914,48 @@ mod test {
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn parse_addresses() {
|
||||
// assert_eq!(Node::from_str("&foo"), Ok(Node::Address("foo".into())));
|
||||
}
|
||||
fn parse_calls() {
|
||||
use Val::Number;
|
||||
|
||||
// #[test]
|
||||
// fn parse_calls() {
|
||||
// use Val::Number;
|
||||
//
|
||||
// let blah = Call {
|
||||
// name: "blah".into(),
|
||||
// args: vec![],
|
||||
// };
|
||||
//
|
||||
// // Can Node parse a call?
|
||||
// assert_eq!(Node::from_str("blah()"), Ok(Node::Call(blah.clone())));
|
||||
//
|
||||
// // Can Statement parse a call?
|
||||
// assert_eq!(Statement::from_str("blah();"), Ok(Statement::Call(blah)));
|
||||
//
|
||||
// // Calls with args
|
||||
// // assert_eq!(
|
||||
// // Call::from_str("blah(1, 2)"),
|
||||
// // Ok(Call {
|
||||
// // name: "blah".into(),
|
||||
// // args: vec![Rvalue::Expr(Number(1)), Rvalue::Expr(Number(2))]
|
||||
// // })
|
||||
// // );
|
||||
//
|
||||
// // Calls with strings
|
||||
// // assert_eq!(
|
||||
// // Call::from_str("blah(\"foo\", 2)"),
|
||||
// // Ok(Call {
|
||||
// // name: "blah".into(),
|
||||
// // args: vec![Rvalue::String("foo".into()), Rvalue::Expr(Number(2))]
|
||||
// // })
|
||||
// // );
|
||||
// }
|
||||
let blah = Expr::Suffix(
|
||||
"blah".into(),
|
||||
Arglist(vec![])
|
||||
);
|
||||
|
||||
// Can Node parse a call?
|
||||
assert_eq!(Expr::from_str("blah()"), Ok(blah.clone()));
|
||||
|
||||
// Can Statement parse a call?
|
||||
assert_eq!(Statement::from_str("blah();"), Ok(Statement::Expr(blah)));
|
||||
|
||||
// Calls with args
|
||||
assert_eq!(
|
||||
Expr::from_str("blah(1, 2)"),
|
||||
Ok(Expr::Suffix(
|
||||
"blah".into(),
|
||||
Arglist(vec![1.into(), 2.into()])))
|
||||
);
|
||||
|
||||
//Calls with strings
|
||||
assert_eq!(
|
||||
Expr::from_str("blah(\"foo\", 2)"),
|
||||
Ok(Expr::Suffix(
|
||||
"blah".into(),
|
||||
Arglist(vec!["foo".into(), 2.into()])))
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn parse_return() {
|
||||
// assert_eq!(
|
||||
// Statement::from_str("return;"),
|
||||
// Ok(Statement::Return(Return(None)))
|
||||
// );
|
||||
//
|
||||
// assert_eq!(
|
||||
// Statement::from_str("return 17;"),
|
||||
// Ok(Statement::Return(Return(Some(Node::Number(17)))))
|
||||
// );
|
||||
assert_eq!(
|
||||
Statement::from_str("return;"),
|
||||
Ok(Statement::Return(Return(None)))
|
||||
);
|
||||
|
||||
assert_eq!(
|
||||
Statement::from_str("return 17;"),
|
||||
Ok(Statement::Return(Return(Some(17.into()))))
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
@@ -958,10 +971,7 @@ mod test {
|
||||
assert_eq!(
|
||||
Assignment::from_str("foo[45] = 7"),
|
||||
Ok(Assignment {
|
||||
lvalue: Lvalue::ArrayRef(ArrayRef {
|
||||
name: "foo".into(),
|
||||
subscript: 45.into(),
|
||||
}),
|
||||
lvalue: Lvalue::ArrayRef("foo".into(), 45.into()),
|
||||
rvalue: Rvalue::Expr(7.into()),
|
||||
})
|
||||
);
|
||||
|
||||
@@ -64,15 +64,15 @@ operator = _{
|
||||
| ne
|
||||
}
|
||||
|
||||
expr = { val ~ (operator ~ val)* }
|
||||
val = { prefix* ~ (number | name | "(" ~ expr ~ ")") ~ suffix* }
|
||||
expr = { prefix* ~ val ~ suffix* ~ (operator ~ prefix* ~ val ~ suffix*)* }
|
||||
val = { number | name | "(" ~ expr ~ ")" }
|
||||
|
||||
suffix = { subscript | arglist | member }
|
||||
subscript = { "[" ~ expr ~ "]" }
|
||||
arglist = { "(" ~ (rvalue ~ ("," ~ rvalue)*)? ~ ")" }
|
||||
member = { "." ~ name }
|
||||
|
||||
statement = { asm | ((return_stmt | assignment | expr | var_decl) ~ ";") | conditional | while_loop | repeat_loop }
|
||||
statement = { asm | ((return_stmt | var_decl | assignment | expr) ~ ";") | conditional | while_loop | repeat_loop }
|
||||
|
||||
asm = { "asm" ~ asm_args? ~ "{" ~ asm_body ~ "}" }
|
||||
asm_args = { "(" ~ expr ~ ("," ~ expr)* ~ ")" }
|
||||
|
||||
Reference in New Issue
Block a user