use std::collections::HashMap;
use crate::ast::*;
pub fn skip(rule: Rule, map: &HashMap<String, Expr>) -> Rule {
fn populate_choices(
expr: Expr,
map: &HashMap<String, Expr>,
mut choices: Vec<String>,
) -> Option<Expr> {
match expr {
Expr::Choice(lhs, rhs) => {
if let Expr::Str(string) = *lhs {
choices.push(string);
populate_choices(*rhs, map, choices)
} else if let Expr::Ident(name) = *lhs {
if let Some(Expr::Skip(mut inlined_choices)) = map
.get(&name)
.and_then(|expr| populate_choices(expr.clone(), map, vec![]))
{
choices.append(&mut inlined_choices);
populate_choices(*rhs, map, choices)
} else {
None
}
} else {
None
}
}
Expr::Str(string) => {
choices.push(string);
Some(Expr::Skip(choices))
}
Expr::Ident(name) => map
.get(&name)
.and_then(|expr| populate_choices(expr.clone(), map, choices)),
_ => None,
}
}
let Rule { name, ty, expr } = rule;
Rule {
name,
ty,
expr: if ty == RuleType::Atomic {
expr.map_top_down(|expr| {
if let Expr::Rep(expr) = expr.clone() {
if let Expr::Seq(lhs, rhs) = *expr {
if let (Expr::NegPred(expr), Expr::Ident(ident)) = (*lhs, *rhs) {
if ident == "ANY" {
if let Some(expr) = populate_choices(*expr, map, vec![]) {
return expr;
}
}
}
}
};
expr
})
} else {
expr
},
}
}