Files
mist-script/src/parser/mod.rs
T
2026-04-14 04:38:56 +02:00

339 lines
11 KiB
Rust

use pest::Parser;
use pest_derive::Parser;
pub mod ast;
use ast::*;
#[derive(Parser)]
#[grammar = "./src/parser/grammar.pest"]
pub struct MistParser;
// convenience alias for pest errors
pub type ParseError = pest::error::Error<Rule>;
pub fn parse(source: &str) -> Result<Vec<TopLevel>, ParseError> {
let mut pairs = MistParser::parse(Rule::program, source)?;
let mut statements = vec![];
for pair in pairs.next().unwrap().into_inner() {
if let Some(stmt) = TopLevel::from_pair(pair) {
statements.push(stmt);
}
}
Ok(statements)
}
impl TypeExpr {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
match pair.as_rule() {
Rule::type_expr => {
let inner = pair.into_inner().next().unwrap();
TypeExpr::from_pair(inner)
}
Rule::identifier => TypeExpr::Identifier(pair.as_str().to_string()),
_ => unimplemented!("TypeExpr parsing not implemented yet"),
}
}
}
impl ParamList {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
let params = pair
.into_inner()
.map(|p| {
let mut param_inner = p.into_inner();
let param_name = param_inner.next().unwrap().as_str().to_string();
let param_type = TypeExpr::from_pair(param_inner.next().unwrap());
(param_name, param_type)
})
.collect();
ParamList(params)
}
}
impl TopLevel {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Option<Self> {
match pair.as_rule() {
Rule::import => {
let path = pair.into_inner().next().unwrap().as_str().to_string();
Some(TopLevel::Import(path))
}
Rule::function_decl => {
let mut inner = pair.into_inner();
let export = if let Some(first) = inner.peek() {
if first.as_rule() == Rule::export {
inner.next();
true
} else {
false
}
} else {
false
};
let name = inner.next().unwrap().as_str().to_string();
let params_pair = inner.next().unwrap();
let params = if params_pair.as_rule() == Rule::param_list {
ParamList::from_pair(params_pair)
} else {
ParamList(vec![])
};
let return_type = if let Some(next) = inner.peek() {
if next.as_rule() == Rule::type_expr {
Some(TypeExpr::from_pair(inner.next().unwrap()))
} else {
None
}
} else {
None
};
let body = Block::from_pair(inner.next().unwrap());
Some(TopLevel::FunctionDecl {
export,
name,
params,
return_type,
body,
})
}
Rule::struct_decl => {
let mut inner = pair.into_inner();
let export = if let Some(first) = inner.peek() {
if first.as_rule() == Rule::export {
inner.next();
true
} else {
false
}
} else {
false
};
let name = inner.next().unwrap().as_str().to_string();
let fields_pair = inner.next().unwrap();
let fields = ParamList::from_pair(fields_pair);
Some(TopLevel::StructDecl {
export,
name,
fields,
})
}
Rule::EOI => None,
_ => unimplemented!("TopLevel parsing not implemented yet {:?}", pair.as_rule()),
}
}
}
impl Block {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
let statements = pair
.into_inner()
.flat_map(|pair| {
if pair.as_rule() == Rule::statement_list {
pair.into_inner().map(Statement::from_pair).collect()
} else {
vec![Statement::from_pair(pair)]
}
})
.collect();
Block(statements)
}
}
impl Statement {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
match pair.as_rule() {
Rule::statement => {
let inner = pair.into_inner().next().unwrap();
Statement::from_pair(inner)
}
Rule::expr_stmt => {
let expr_pair = pair.into_inner().next().unwrap();
Statement::Expression(Expression::from_pair(expr_pair))
}
Rule::block => Statement::Block(Block::from_pair(pair.into_inner().next().unwrap())),
Rule::var_decl => {
let mut inner = pair.into_inner();
let kind_pair = inner.next().unwrap(); // let/const/var
let name_pair = inner.next().unwrap(); // identifier
let init = inner.next().map(|expr_pair| {
// expects "=" expr
Expression::from_pair(expr_pair.into_inner().next().unwrap())
});
let kind = match kind_pair.as_str() {
"let" => VarKind::Let,
"const" => VarKind::Const,
"var" => VarKind::Var,
_ => unreachable!(),
};
Statement::VarDecl {
kind,
name: name_pair.as_str().to_string(),
init,
}
}
Rule::return_stmt => {
let mut inner = pair.into_inner();
let expr = inner.next().map(Expression::from_pair);
Statement::Return(expr)
}
Rule::break_stmt => Statement::Break,
Rule::continue_stmt => Statement::Continue,
Rule::if_stmt => {
let mut inner = pair.into_inner();
let condition = Expression::from_pair(inner.next().unwrap());
let then_branch = Statement::from_pair(inner.next().unwrap());
let else_branch = inner.next().map(Statement::from_pair);
Statement::If {
condition,
then_branch: Box::new(then_branch),
else_branch: else_branch.map(Box::new),
}
}
Rule::while_stmt => {
let mut inner = pair.into_inner();
let condition = Expression::from_pair(inner.next().unwrap());
let body = Statement::from_pair(inner.next().unwrap());
Statement::While {
condition,
body: Box::new(body),
}
}
Rule::for_stmt => {
let mut inner = pair.into_inner();
let init = inner.next().map(|p| match p.as_rule() {
Rule::var_decl_no_semicolon => {
let mut it = p.into_inner();
let kind = match it.next().unwrap().as_str() {
"let" => VarKind::Let,
"const" => VarKind::Const,
"var" => VarKind::Var,
_ => unreachable!(),
};
let name = it.next().unwrap().as_str().to_string();
let init_expr = it
.next()
.map(|e| Expression::from_pair(e.into_inner().next().unwrap()));
ForInit::VarDecl {
kind,
name,
init: init_expr,
}
}
_ => ForInit::Expr(Expression::from_pair(p)),
});
let condition = inner.next().map(Expression::from_pair);
let update = inner.next().map(Expression::from_pair);
let body = Statement::from_pair(inner.next().unwrap());
Statement::For {
init,
condition,
update,
body: Box::new(body),
}
}
_ => unimplemented!(
"Statement parsing not implemented yet: {:?}",
pair.as_rule()
),
}
}
}
impl Expression {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
match pair.as_rule() {
Rule::expr => {
let mut inner = pair.into_inner();
let exp = Expression::from_pair(inner.next().unwrap());
if inner.len() > 0 {
Expression::Postfix {
initial: Box::new(exp),
postfixes: inner.map(|p| Postfix::from_pair(p)).collect(),
}
} else {
exp
}
}
Rule::primary => Expression::from_pair(pair.into_inner().next().unwrap()),
Rule::identifier => Expression::Identifier(pair.as_str().to_string()),
Rule::integer => {
let value = pair.as_str().parse::<i64>().unwrap();
Expression::IntLiteral(value)
}
Rule::float => {
let value = pair.as_str().parse::<f64>().unwrap();
Expression::FloatLiteral(value)
}
Rule::boolean => {
let value = pair.as_str().parse::<bool>().unwrap();
Expression::BoolLiteral(value)
}
Rule::string_lit => {
let inner_str = pair.into_inner().next().unwrap().as_str();
Expression::StringLiteral(inner_str.to_string())
}
_ => unimplemented!(
"Expression parsing not implemented yet {:?}",
pair.as_rule()
),
}
}
}
impl Postfix {
pub fn from_pair(pair: pest::iterators::Pair<Rule>) -> Self {
match pair.as_rule() {
Rule::postfix => {
let inner = pair.into_inner();
if let Some(field) = inner.peek() {
if field.as_rule() == Rule::identifier {
Postfix::FieldAccess(field.as_str().to_string())
} else {
Postfix::FunctionCall(inner.map(|p| Expression::from_pair(p)).collect())
}
} else {
Postfix::FunctionCall(vec![])
}
}
_ => unimplemented!("Postfix parsing not implemented yet {:?}", pair.as_rule()),
}
}
}