1use crate::ast::{BindingPattern, DictEntry, MatchArm, Node, SNode, SelectCase};
25
26pub fn walk_program(program: &[SNode], visitor: &mut impl FnMut(&SNode)) {
29 let mut stack = Vec::with_capacity(program.len());
30 push_nodes_reversed(program, &mut stack);
31 walk_stack(&mut stack, visitor);
32}
33
34pub fn walk_node(node: &SNode, visitor: &mut impl FnMut(&SNode)) {
36 let mut stack = vec![node];
37 walk_stack(&mut stack, visitor);
38}
39
40pub fn walk_children(node: &SNode, visitor: &mut impl FnMut(&SNode)) {
44 let mut stack = Vec::new();
45 push_children_reversed(node, &mut stack);
46 walk_stack(&mut stack, visitor);
47}
48
49fn walk_stack(stack: &mut Vec<&SNode>, visitor: &mut impl FnMut(&SNode)) {
50 while let Some(node) = stack.pop() {
51 visitor(node);
52 push_children_reversed(node, stack);
53 }
54}
55
56fn push_children_reversed<'a>(node: &'a SNode, stack: &mut Vec<&'a SNode>) {
57 let mut children = Vec::new();
58 collect_children(node, &mut children);
59 stack.extend(children.into_iter().rev());
60}
61
62fn push_nodes_reversed<'a>(nodes: &'a [SNode], stack: &mut Vec<&'a SNode>) {
63 stack.extend(nodes.iter().rev());
64}
65
66fn collect_children<'a>(node: &'a SNode, children: &mut Vec<&'a SNode>) {
67 match &node.node {
68 Node::AttributedDecl { attributes, inner } => {
69 for attr in attributes {
70 for arg in &attr.args {
71 children.push(&arg.value);
72 }
73 }
74 children.push(inner);
75 }
76 Node::Pipeline { body, .. } | Node::OverrideDecl { body, .. } => {
77 collect_nodes(body, children);
78 }
79 Node::LetBinding { pattern, value, .. } | Node::VarBinding { pattern, value, .. } => {
80 collect_binding_pattern(pattern, children);
81 children.push(value);
82 }
83 Node::ConstBinding { value, .. } => {
84 children.push(value);
85 }
86 Node::EnumDecl { .. }
87 | Node::StructDecl { .. }
88 | Node::InterfaceDecl { .. }
89 | Node::ImportDecl { .. }
90 | Node::SelectiveImport { .. }
91 | Node::TypeDecl { .. }
92 | Node::BreakStmt
93 | Node::ContinueStmt => {}
94 Node::ImplBlock { methods, .. } => collect_nodes(methods, children),
95 Node::IfElse {
96 condition,
97 then_body,
98 else_body,
99 } => {
100 children.push(condition);
101 collect_nodes(then_body, children);
102 if let Some(body) = else_body {
103 collect_nodes(body, children);
104 }
105 }
106 Node::ForIn {
107 pattern,
108 iterable,
109 body,
110 } => {
111 collect_binding_pattern(pattern, children);
112 children.push(iterable);
113 collect_nodes(body, children);
114 }
115 Node::MatchExpr { value, arms } => {
116 children.push(value);
117 for arm in arms {
118 collect_match_arm(arm, children);
119 }
120 }
121 Node::WhileLoop { condition, body } => {
122 children.push(condition);
123 collect_nodes(body, children);
124 }
125 Node::Retry { count, body } => {
126 children.push(count);
127 collect_nodes(body, children);
128 }
129 Node::CostRoute { options, body } => {
130 collect_option_values(options, children);
131 collect_nodes(body, children);
132 }
133 Node::ReturnStmt { value } | Node::YieldExpr { value } => {
134 if let Some(value) = value {
135 children.push(value);
136 }
137 }
138 Node::TryCatch {
139 has_catch: _,
140 body,
141 catch_body,
142 finally_body,
143 ..
144 } => {
145 collect_nodes(body, children);
146 collect_nodes(catch_body, children);
147 if let Some(body) = finally_body {
148 collect_nodes(body, children);
149 }
150 }
151 Node::TryExpr { body }
152 | Node::SpawnExpr { body }
153 | Node::DeferStmt { body }
154 | Node::MutexBlock { body }
155 | Node::Block(body)
156 | Node::Closure { body, .. } => collect_nodes(body, children),
157 Node::FnDecl { body, .. } | Node::ToolDecl { body, .. } => {
158 collect_nodes(body, children);
159 }
160 Node::SkillDecl { fields, .. } => collect_field_values(fields, children),
161 Node::EvalPackDecl {
162 fields,
163 body,
164 summarize,
165 ..
166 } => {
167 collect_field_values(fields, children);
168 collect_nodes(body, children);
169 if let Some(body) = summarize {
170 collect_nodes(body, children);
171 }
172 }
173 Node::RangeExpr { start, end, .. } => {
174 children.push(start);
175 children.push(end);
176 }
177 Node::GuardStmt {
178 condition,
179 else_body,
180 } => {
181 children.push(condition);
182 collect_nodes(else_body, children);
183 }
184 Node::RequireStmt { condition, message } => {
185 children.push(condition);
186 if let Some(message) = message {
187 children.push(message);
188 }
189 }
190 Node::DeadlineBlock { duration, body } => {
191 children.push(duration);
192 collect_nodes(body, children);
193 }
194 Node::EmitExpr { value }
195 | Node::ThrowStmt { value }
196 | Node::Spread(value)
197 | Node::TryOperator { operand: value }
198 | Node::TryStar { operand: value }
199 | Node::UnaryOp { operand: value, .. } => children.push(value),
200 Node::HitlExpr { args, .. } => {
201 for arg in args {
202 children.push(&arg.value);
203 }
204 }
205 Node::Parallel {
206 expr,
207 body,
208 options,
209 ..
210 } => {
211 children.push(expr);
212 collect_option_values(options, children);
213 collect_nodes(body, children);
214 }
215 Node::SelectExpr {
216 cases,
217 timeout,
218 default_body,
219 } => {
220 for case in cases {
221 collect_select_case(case, children);
222 }
223 if let Some((duration, body)) = timeout {
224 children.push(duration);
225 collect_nodes(body, children);
226 }
227 if let Some(body) = default_body {
228 collect_nodes(body, children);
229 }
230 }
231 Node::FunctionCall { args, .. } | Node::EnumConstruct { args, .. } => {
232 collect_nodes(args, children);
233 }
234 Node::MethodCall { object, args, .. } | Node::OptionalMethodCall { object, args, .. } => {
235 children.push(object);
236 collect_nodes(args, children);
237 }
238 Node::PropertyAccess { object, .. } | Node::OptionalPropertyAccess { object, .. } => {
239 children.push(object);
240 }
241 Node::SubscriptAccess { object, index }
242 | Node::OptionalSubscriptAccess { object, index } => {
243 children.push(object);
244 children.push(index);
245 }
246 Node::SliceAccess { object, start, end } => {
247 children.push(object);
248 if let Some(start) = start {
249 children.push(start);
250 }
251 if let Some(end) = end {
252 children.push(end);
253 }
254 }
255 Node::BinaryOp { left, right, .. } => {
256 children.push(left);
257 children.push(right);
258 }
259 Node::Ternary {
260 condition,
261 true_expr,
262 false_expr,
263 } => {
264 children.push(condition);
265 children.push(true_expr);
266 children.push(false_expr);
267 }
268 Node::Assignment { target, value, .. } => {
269 children.push(target);
270 children.push(value);
271 }
272 Node::StructConstruct { fields, .. } | Node::DictLiteral(fields) => {
273 collect_dict_entries(fields, children);
274 }
275 Node::ListLiteral(items) | Node::OrPattern(items) => collect_nodes(items, children),
276 Node::InterpolatedString(_)
277 | Node::StringLiteral(_)
278 | Node::RawStringLiteral(_)
279 | Node::IntLiteral(_)
280 | Node::FloatLiteral(_)
281 | Node::BoolLiteral(_)
282 | Node::NilLiteral
283 | Node::Identifier(_)
284 | Node::DurationLiteral(_) => {}
285 }
286}
287
288fn collect_nodes<'a>(nodes: &'a [SNode], children: &mut Vec<&'a SNode>) {
289 children.extend(nodes.iter());
290}
291
292fn collect_dict_entries<'a>(entries: &'a [DictEntry], children: &mut Vec<&'a SNode>) {
293 for entry in entries {
294 children.push(&entry.key);
295 children.push(&entry.value);
296 }
297}
298
299fn collect_field_values<'a>(fields: &'a [(String, SNode)], children: &mut Vec<&'a SNode>) {
300 for (_, value) in fields {
301 children.push(value);
302 }
303}
304
305fn collect_option_values<'a>(options: &'a [(String, SNode)], children: &mut Vec<&'a SNode>) {
306 for (_, value) in options {
307 children.push(value);
308 }
309}
310
311fn collect_match_arm<'a>(arm: &'a MatchArm, children: &mut Vec<&'a SNode>) {
312 children.push(&arm.pattern);
313 if let Some(guard) = &arm.guard {
314 children.push(guard);
315 }
316 collect_nodes(&arm.body, children);
317}
318
319fn collect_select_case<'a>(case: &'a SelectCase, children: &mut Vec<&'a SNode>) {
320 children.push(&case.channel);
321 collect_nodes(&case.body, children);
322}
323
324fn collect_binding_pattern<'a>(pattern: &'a BindingPattern, children: &mut Vec<&'a SNode>) {
325 match pattern {
326 BindingPattern::Identifier(_) | BindingPattern::Pair(_, _) => {}
327 BindingPattern::Dict(fields) => {
328 for field in fields {
329 if let Some(default) = &field.default_value {
330 children.push(default);
331 }
332 }
333 }
334 BindingPattern::List(items) => {
335 for item in items {
336 if let Some(default) = &item.default_value {
337 children.push(default);
338 }
339 }
340 }
341 }
342}
343
344#[cfg(test)]
345mod tests {
346 use super::*;
347 use crate::ast::{spanned, Node};
348 use harn_lexer::Span;
349
350 fn dummy(node: Node) -> SNode {
351 spanned(node, Span::dummy())
352 }
353
354 #[test]
355 fn walk_program_preserves_preorder() {
356 let program = vec![dummy(Node::LetBinding {
357 pattern: BindingPattern::Identifier("x".to_string()),
358 type_ann: None,
359 value: Box::new(dummy(Node::BinaryOp {
360 op: "+".to_string(),
361 left: Box::new(dummy(Node::IntLiteral(1))),
362 right: Box::new(dummy(Node::IntLiteral(2))),
363 })),
364 })];
365 let mut seen = Vec::new();
366
367 walk_program(&program, &mut |node| {
368 seen.push(match &node.node {
369 Node::LetBinding { .. } => "let",
370 Node::BinaryOp { .. } => "binary",
371 Node::IntLiteral(1) => "one",
372 Node::IntLiteral(2) => "two",
373 other => panic!("unexpected node {other:?}"),
374 });
375 });
376
377 assert_eq!(seen, vec!["let", "binary", "one", "two"]);
378 }
379
380 #[test]
381 fn walk_node_handles_deep_unary_chain_iteratively() {
382 let mut node = dummy(Node::IntLiteral(0));
383 for _ in 0..10_000 {
384 node = dummy(Node::UnaryOp {
385 op: "!".to_string(),
386 operand: Box::new(node),
387 });
388 }
389
390 let mut count = 0usize;
391 walk_node(&node, &mut |_| count += 1);
392
393 assert_eq!(count, 10_001);
394 }
395}