1use std::collections::HashSet;
12
13use crate::ast::*;
14use crate::call_graph;
15
16pub fn transform_program(items: &mut [TopLevel]) {
18 let groups = call_graph::find_tco_groups(items);
19 if groups.is_empty() {
20 return;
21 }
22
23 let mut fn_to_scc: std::collections::HashMap<String, &HashSet<String>> =
25 std::collections::HashMap::new();
26 for group in &groups {
27 for name in group {
28 fn_to_scc.insert(name.clone(), group);
29 }
30 }
31
32 for item in items.iter_mut() {
33 if let TopLevel::FnDef(fd) = item
34 && let Some(scc_members) = fn_to_scc.get(&fd.name)
35 {
36 transform_fn(fd, scc_members);
37 }
38 }
39}
40
41fn transform_fn(fd: &mut FnDef, scc_members: &HashSet<String>) {
42 let mut body = fd.body.as_ref().clone();
43 if let Some(expr) = body.tail_expr_mut() {
45 transform_tail_expr(expr, scc_members);
46 }
47 fd.body = std::rc::Rc::new(body);
48}
49
50fn transform_tail_expr(expr: &mut Expr, scc_members: &HashSet<String>) {
52 match expr {
53 Expr::FnCall(fn_expr, args) => {
55 if let Expr::Ident(name) = fn_expr.as_ref()
56 && scc_members.contains(name)
57 {
58 let name = name.clone();
59 let args = std::mem::take(args);
60 *expr = Expr::TailCall(Box::new((name, args)));
61 }
62 }
63 Expr::Match { arms, .. } => {
65 for arm in arms {
66 transform_tail_expr(&mut arm.body, scc_members);
67 }
68 }
69 _ => {}
71 }
72}
73
74#[cfg(test)]
75mod tests {
76 use super::*;
77
78 fn parse(src: &str) -> Vec<TopLevel> {
79 let mut lexer = crate::lexer::Lexer::new(src);
80 let tokens = lexer.tokenize().expect("lex failed");
81 let mut parser = crate::parser::Parser::new(tokens);
82 parser.parse().expect("parse failed")
83 }
84
85 fn extract_match_arms(fd: &FnDef) -> &[MatchArm] {
88 if let Some(Stmt::Expr(Expr::Match { arms, .. })) = fd.body.stmts().last() {
89 arms
90 } else {
91 panic!("expected Match in block body, got {:?}", fd.body)
92 }
93 }
94
95 #[test]
96 fn transforms_self_tail_call() {
97 let src = r#"
98fn factorial(n: Int, acc: Int) -> Int
99 match n
100 0 -> acc
101 _ -> factorial(n - 1, acc * n)
102"#;
103 let mut items = parse(src);
104 transform_program(&mut items);
105
106 let fd = match &items[0] {
107 TopLevel::FnDef(fd) => fd,
108 _ => panic!("expected FnDef"),
109 };
110
111 let arms = extract_match_arms(fd);
112 assert!(!matches!(*arms[0].body, Expr::TailCall(..)));
114 match &*arms[1].body {
116 Expr::TailCall(boxed) => {
117 let (name, args) = boxed.as_ref();
118 assert_eq!(name, "factorial");
119 assert_eq!(args.len(), 2);
120 }
121 other => panic!("expected TailCall, got {:?}", other),
122 }
123 }
124
125 #[test]
126 fn does_not_transform_non_tail_call() {
127 let src = r#"
128fn fib(n: Int) -> Int
129 match n
130 0 -> 0
131 1 -> 1
132 _ -> fib(n - 1) + fib(n - 2)
133"#;
134 let mut items = parse(src);
135 transform_program(&mut items);
136
137 let fd = match &items[0] {
138 TopLevel::FnDef(fd) => fd,
139 _ => panic!("expected FnDef"),
140 };
141
142 let arms = extract_match_arms(fd);
143 assert!(
145 !matches!(*arms[2].body, Expr::TailCall(..)),
146 "fib should NOT be tail-call transformed"
147 );
148 }
149
150 #[test]
151 fn transforms_mutual_recursion() {
152 let src = r#"
153fn isEven(n: Int) -> Bool
154 match n
155 0 -> true
156 _ -> isOdd(n - 1)
157
158fn isOdd(n: Int) -> Bool
159 match n
160 0 -> false
161 _ -> isEven(n - 1)
162"#;
163 let mut items = parse(src);
164 transform_program(&mut items);
165
166 let fd_even = match &items[0] {
168 TopLevel::FnDef(fd) => fd,
169 _ => panic!("expected FnDef"),
170 };
171 let arms_even = extract_match_arms(fd_even);
172 match &*arms_even[1].body {
173 Expr::TailCall(boxed) => assert_eq!(boxed.0, "isOdd"),
174 other => panic!("expected TailCall to isOdd, got {:?}", other),
175 }
176
177 let fd_odd = match &items[1] {
179 TopLevel::FnDef(fd) => fd,
180 _ => panic!("expected FnDef"),
181 };
182 let arms_odd = extract_match_arms(fd_odd);
183 match &*arms_odd[1].body {
184 Expr::TailCall(boxed) => assert_eq!(boxed.0, "isEven"),
185 other => panic!("expected TailCall to isEven, got {:?}", other),
186 }
187 }
188}