1use std::cmp::Ordering;
19use std::collections::HashMap;
20use std::sync::Arc as Rc;
21
22use crate::nan_value::{Arena, NanValue};
23use crate::value::{RuntimeError, Value, aver_repr, list_from_vec, list_view};
24
25pub fn register(global: &mut HashMap<String, Value>) {
26 let mut members = HashMap::new();
27 for method in &[
28 "empty", "set", "get", "remove", "has", "keys", "values", "entries", "len", "fromList",
29 ] {
30 members.insert(
31 method.to_string(),
32 Value::Builtin(format!("Map.{}", method)),
33 );
34 }
35 global.insert(
36 "Map".to_string(),
37 Value::Namespace {
38 name: "Map".to_string(),
39 members,
40 },
41 );
42}
43
44pub fn effects(_name: &str) -> &'static [&'static str] {
45 &[]
46}
47
48pub fn call(name: &str, args: &[Value]) -> Option<Result<Value, RuntimeError>> {
50 match name {
51 "Map.empty" => Some(empty(args)),
52 "Map.set" => Some(set(args)),
53 "Map.get" => Some(get(args)),
54 "Map.remove" => Some(remove(args)),
55 "Map.has" => Some(has(args)),
56 "Map.keys" => Some(keys(args)),
57 "Map.values" => Some(values(args)),
58 "Map.entries" => Some(entries(args)),
59 "Map.len" => Some(len(args)),
60 "Map.fromList" => Some(from_list(args)),
61 _ => None,
62 }
63}
64
65fn empty(args: &[Value]) -> Result<Value, RuntimeError> {
66 if !args.is_empty() {
67 return Err(RuntimeError::Error(format!(
68 "Map.empty() takes 0 arguments, got {}",
69 args.len()
70 )));
71 }
72 Ok(Value::Map(HashMap::new()))
73}
74
75fn set(args: &[Value]) -> Result<Value, RuntimeError> {
76 let [map_val, key, value] = three_args("Map.set", args)?;
77 let Value::Map(map) = map_val else {
78 return Err(RuntimeError::Error(
79 "Map.set() first argument must be a Map".to_string(),
80 ));
81 };
82 ensure_hashable_key("Map.set", key)?;
83 let mut out = map.clone();
84 out.insert(key.clone(), value.clone());
85 Ok(Value::Map(out))
86}
87
88fn get(args: &[Value]) -> Result<Value, RuntimeError> {
89 let [map_val, key] = two_args("Map.get", args)?;
90 let Value::Map(map) = map_val else {
91 return Err(RuntimeError::Error(
92 "Map.get() first argument must be a Map".to_string(),
93 ));
94 };
95 ensure_hashable_key("Map.get", key)?;
96 Ok(match map.get(key) {
97 Some(v) => Value::Some(Box::new(v.clone())),
98 None => Value::None,
99 })
100}
101
102fn remove(args: &[Value]) -> Result<Value, RuntimeError> {
103 let [map_val, key] = two_args("Map.remove", args)?;
104 let Value::Map(map) = map_val else {
105 return Err(RuntimeError::Error(
106 "Map.remove() first argument must be a Map".to_string(),
107 ));
108 };
109 ensure_hashable_key("Map.remove", key)?;
110 let mut out = map.clone();
111 out.remove(key);
112 Ok(Value::Map(out))
113}
114
115fn has(args: &[Value]) -> Result<Value, RuntimeError> {
116 let [map_val, key] = two_args("Map.has", args)?;
117 let Value::Map(map) = map_val else {
118 return Err(RuntimeError::Error(
119 "Map.has() first argument must be a Map".to_string(),
120 ));
121 };
122 ensure_hashable_key("Map.has", key)?;
123 Ok(Value::Bool(map.contains_key(key)))
124}
125
126fn keys(args: &[Value]) -> Result<Value, RuntimeError> {
127 let [map_val] = one_arg("Map.keys", args)?;
128 let Value::Map(map) = map_val else {
129 return Err(RuntimeError::Error(
130 "Map.keys() argument must be a Map".to_string(),
131 ));
132 };
133 let mut out = map.keys().cloned().collect::<Vec<_>>();
134 out.sort_by(compare_scalar_keys);
135 Ok(list_from_vec(out))
136}
137
138fn values(args: &[Value]) -> Result<Value, RuntimeError> {
139 let [map_val] = one_arg("Map.values", args)?;
140 let Value::Map(map) = map_val else {
141 return Err(RuntimeError::Error(
142 "Map.values() argument must be a Map".to_string(),
143 ));
144 };
145 let mut entries = map.iter().collect::<Vec<_>>();
146 entries.sort_by(|(k1, _), (k2, _)| compare_scalar_keys(k1, k2));
147 let out = entries
148 .into_iter()
149 .map(|(_, v)| v.clone())
150 .collect::<Vec<_>>();
151 Ok(list_from_vec(out))
152}
153
154fn entries(args: &[Value]) -> Result<Value, RuntimeError> {
155 let [map_val] = one_arg("Map.entries", args)?;
156 let Value::Map(map) = map_val else {
157 return Err(RuntimeError::Error(
158 "Map.entries() argument must be a Map".to_string(),
159 ));
160 };
161 let mut entries = map.iter().collect::<Vec<_>>();
162 entries.sort_by(|(k1, _), (k2, _)| compare_scalar_keys(k1, k2));
163 let out = entries
164 .into_iter()
165 .map(|(k, v)| Value::Tuple(vec![k.clone(), v.clone()]))
166 .collect::<Vec<_>>();
167 Ok(list_from_vec(out))
168}
169
170fn len(args: &[Value]) -> Result<Value, RuntimeError> {
171 let [map_val] = one_arg("Map.len", args)?;
172 let Value::Map(map) = map_val else {
173 return Err(RuntimeError::Error(
174 "Map.len() argument must be a Map".to_string(),
175 ));
176 };
177 Ok(Value::Int(map.len() as i64))
178}
179
180fn from_list(args: &[Value]) -> Result<Value, RuntimeError> {
181 let [pairs] = one_arg("Map.fromList", args)?;
182 let items = list_view(pairs).ok_or_else(|| {
183 RuntimeError::Error(
184 "Map.fromList() argument must be a List of (key, value) tuples".to_string(),
185 )
186 })?;
187
188 let mut out = HashMap::new();
189 for (idx, pair) in items.iter().enumerate() {
190 let Value::Tuple(parts) = pair else {
191 return Err(RuntimeError::Error(format!(
192 "Map.fromList() item {} must be (key, value)",
193 idx + 1
194 )));
195 };
196 if parts.len() != 2 {
197 return Err(RuntimeError::Error(format!(
198 "Map.fromList() item {} must have 2 elements",
199 idx + 1
200 )));
201 }
202
203 let key = &parts[0];
204 let value = &parts[1];
205 ensure_hashable_key("Map.fromList", key)?;
206 out.insert(key.clone(), value.clone());
207 }
208 Ok(Value::Map(out))
209}
210
211fn is_hashable_key(value: &Value) -> bool {
212 !matches!(value, Value::Fn(_))
213}
214
215fn ensure_hashable_key(name: &str, value: &Value) -> Result<(), RuntimeError> {
216 if is_hashable_key(value) {
217 Ok(())
218 } else {
219 Err(RuntimeError::Error(format!(
220 "{}: key must be hashable (functions are not)",
221 name
222 )))
223 }
224}
225
226fn compare_scalar_keys(a: &Value, b: &Value) -> Ordering {
227 match (a, b) {
228 (Value::Int(x), Value::Int(y)) => x.cmp(y),
229 (Value::Float(x), Value::Float(y)) => x.partial_cmp(y).unwrap_or_else(|| {
230 let xb = x.to_bits();
231 let yb = y.to_bits();
232 xb.cmp(&yb)
233 }),
234 (Value::Str(x), Value::Str(y)) => x.cmp(y),
235 (Value::Bool(x), Value::Bool(y)) => x.cmp(y),
236 _ => aver_repr(a).cmp(&aver_repr(b)),
237 }
238}
239
240fn one_arg<'a>(name: &str, args: &'a [Value]) -> Result<[&'a Value; 1], RuntimeError> {
241 if args.len() != 1 {
242 return Err(RuntimeError::Error(format!(
243 "{}() takes 1 argument, got {}",
244 name,
245 args.len()
246 )));
247 }
248 Ok([&args[0]])
249}
250
251fn two_args<'a>(name: &str, args: &'a [Value]) -> Result<[&'a Value; 2], RuntimeError> {
252 if args.len() != 2 {
253 return Err(RuntimeError::Error(format!(
254 "{}() takes 2 arguments, got {}",
255 name,
256 args.len()
257 )));
258 }
259 Ok([&args[0], &args[1]])
260}
261
262fn three_args<'a>(name: &str, args: &'a [Value]) -> Result<[&'a Value; 3], RuntimeError> {
263 if args.len() != 3 {
264 return Err(RuntimeError::Error(format!(
265 "{}() takes 3 arguments, got {}",
266 name,
267 args.len()
268 )));
269 }
270 Ok([&args[0], &args[1], &args[2]])
271}
272
273pub fn register_nv(global: &mut HashMap<String, NanValue>, arena: &mut Arena) {
276 let methods = &[
277 "empty", "set", "get", "remove", "has", "keys", "values", "entries", "len", "fromList",
278 ];
279 let mut members: Vec<(Rc<str>, NanValue)> = Vec::with_capacity(methods.len());
280 for method in methods {
281 let idx = arena.push_builtin(&format!("Map.{}", method));
282 members.push((Rc::from(*method), NanValue::new_builtin(idx)));
283 }
284 let ns_idx = arena.push(crate::nan_value::ArenaEntry::Namespace {
285 name: Rc::from("Map"),
286 members,
287 });
288 global.insert("Map".to_string(), NanValue::new_namespace(ns_idx));
289}
290
291pub fn call_nv(
292 name: &str,
293 args: &[NanValue],
294 arena: &mut Arena,
295) -> Option<Result<NanValue, RuntimeError>> {
296 match name {
297 "Map.empty" => Some(empty_nv(args, arena)),
298 "Map.set" => Some(set_nv(args, arena)),
299 "Map.get" => Some(get_nv(args, arena)),
300 "Map.remove" => Some(remove_nv(args, arena)),
301 "Map.has" => Some(has_nv(args, arena)),
302 "Map.keys" => Some(keys_nv(args, arena)),
303 "Map.values" => Some(values_nv(args, arena)),
304 "Map.entries" => Some(entries_nv(args, arena)),
305 "Map.len" => Some(len_nv(args, arena)),
306 "Map.fromList" => Some(from_list_nv(args, arena)),
307 _ => None,
308 }
309}
310
311fn is_hashable_nv(v: NanValue) -> bool {
312 !v.is_fn()
317}
318
319fn ensure_hashable_nv(name: &str, v: NanValue) -> Result<(), RuntimeError> {
320 if is_hashable_nv(v) {
321 Ok(())
322 } else {
323 Err(RuntimeError::Error(format!(
324 "{}: key must be hashable (functions are not)",
325 name
326 )))
327 }
328}
329
330fn nv_key_bits(v: NanValue, arena: &Arena) -> u64 {
331 v.map_key_hash_deep(arena)
332}
333
334fn empty_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
335 if !args.is_empty() {
336 return Err(RuntimeError::Error(format!(
337 "Map.empty() takes 0 arguments, got {}",
338 args.len()
339 )));
340 }
341 let _ = arena;
342 Ok(NanValue::EMPTY_MAP)
343}
344
345pub fn set_nv_owned(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
347 if args.len() != 3 {
348 return Err(RuntimeError::Error(format!(
349 "Map.set() takes 3 arguments, got {}",
350 args.len()
351 )));
352 }
353 if !args[0].is_map() {
354 return Err(RuntimeError::Error(
355 "Map.set() first argument must be a Map".to_string(),
356 ));
357 }
358 ensure_hashable_nv("Map.set", args[1])?;
359 let source = args[0];
360 let old_map = arena.take_map_value(source);
361 let key_hash = nv_key_bits(args[1], arena);
362 let new_map = old_map.insert_owned(key_hash, (args[1], args[2]));
363 let map_idx = arena.push_inheriting_source_space(aver_memory::ArenaEntry::Map(new_map), source);
364 Ok(NanValue::new_map(map_idx))
365}
366
367fn set_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
368 if args.len() != 3 {
369 return Err(RuntimeError::Error(format!(
370 "Map.set() takes 3 arguments, got {}",
371 args.len()
372 )));
373 }
374 if !args[0].is_map() {
375 return Err(RuntimeError::Error(
376 "Map.set() first argument must be a Map".to_string(),
377 ));
378 }
379 ensure_hashable_nv("Map.set", args[1])?;
380 let old_map = arena.clone_map_value(args[0]);
381 let key_hash = nv_key_bits(args[1], arena);
382 let new_map = old_map.insert(key_hash, (args[1], args[2]));
383 let map_idx = arena.push_map(new_map);
384 Ok(NanValue::new_map(map_idx))
385}
386
387fn get_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
388 if args.len() != 2 {
389 return Err(RuntimeError::Error(format!(
390 "Map.get() takes 2 arguments, got {}",
391 args.len()
392 )));
393 }
394 if !args[0].is_map() {
395 return Err(RuntimeError::Error(
396 "Map.get() first argument must be a Map".to_string(),
397 ));
398 }
399 ensure_hashable_nv("Map.get", args[1])?;
400 let key_hash = nv_key_bits(args[1], arena);
401 let map = arena.map_ref_value(args[0]);
402 match map.get(&key_hash) {
403 Some((_, v)) => Ok(NanValue::new_some_value(*v, arena)),
404 None => Ok(NanValue::NONE),
405 }
406}
407
408fn remove_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
409 if args.len() != 2 {
410 return Err(RuntimeError::Error(format!(
411 "Map.remove() takes 2 arguments, got {}",
412 args.len()
413 )));
414 }
415 if !args[0].is_map() {
416 return Err(RuntimeError::Error(
417 "Map.remove() first argument must be a Map".to_string(),
418 ));
419 }
420 ensure_hashable_nv("Map.remove", args[1])?;
421 let old_map = arena.clone_map_value(args[0]);
422 let key_hash = nv_key_bits(args[1], arena);
423 let new_map = old_map.remove(&key_hash);
424 if new_map.is_empty() {
425 Ok(NanValue::EMPTY_MAP)
426 } else {
427 let map_idx = arena.push_map(new_map);
428 Ok(NanValue::new_map(map_idx))
429 }
430}
431
432fn has_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
433 if args.len() != 2 {
434 return Err(RuntimeError::Error(format!(
435 "Map.has() takes 2 arguments, got {}",
436 args.len()
437 )));
438 }
439 if !args[0].is_map() {
440 return Err(RuntimeError::Error(
441 "Map.has() first argument must be a Map".to_string(),
442 ));
443 }
444 ensure_hashable_nv("Map.has", args[1])?;
445 let key_hash = nv_key_bits(args[1], arena);
446 let map = arena.map_ref_value(args[0]);
447 Ok(NanValue::new_bool(map.contains_key(&key_hash)))
448}
449
450fn keys_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
451 if args.len() != 1 {
452 return Err(RuntimeError::Error(format!(
453 "Map.keys() takes 1 argument, got {}",
454 args.len()
455 )));
456 }
457 if !args[0].is_map() {
458 return Err(RuntimeError::Error(
459 "Map.keys() argument must be a Map".to_string(),
460 ));
461 }
462 let map = arena.clone_map_value(args[0]);
463 let mut keys: Vec<NanValue> = map.values().map(|(k, _)| *k).collect();
464 keys.sort_by_key(|a| a.repr(arena));
465 if keys.is_empty() {
466 return Ok(NanValue::EMPTY_LIST);
467 }
468 let list_idx = arena.push_list(keys);
469 Ok(NanValue::new_list(list_idx))
470}
471
472fn values_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
473 if args.len() != 1 {
474 return Err(RuntimeError::Error(format!(
475 "Map.values() takes 1 argument, got {}",
476 args.len()
477 )));
478 }
479 if !args[0].is_map() {
480 return Err(RuntimeError::Error(
481 "Map.values() argument must be a Map".to_string(),
482 ));
483 }
484 let map = arena.clone_map_value(args[0]);
485 let mut entries: Vec<(NanValue, NanValue)> = map.values().cloned().collect();
486 entries.sort_by_key(|(a, _)| a.repr(arena));
487 let vals: Vec<NanValue> = entries.into_iter().map(|(_, v)| v).collect();
488 if vals.is_empty() {
489 return Ok(NanValue::EMPTY_LIST);
490 }
491 let list_idx = arena.push_list(vals);
492 Ok(NanValue::new_list(list_idx))
493}
494
495fn entries_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
496 if args.len() != 1 {
497 return Err(RuntimeError::Error(format!(
498 "Map.entries() takes 1 argument, got {}",
499 args.len()
500 )));
501 }
502 if !args[0].is_map() {
503 return Err(RuntimeError::Error(
504 "Map.entries() argument must be a Map".to_string(),
505 ));
506 }
507 let map = arena.clone_map_value(args[0]);
508 let mut entries: Vec<(NanValue, NanValue)> = map.values().cloned().collect();
509 entries.sort_by_key(|(a, _)| a.repr(arena));
510 let pairs: Vec<NanValue> = entries
511 .into_iter()
512 .map(|(k, v)| {
513 let tuple_idx = arena.push_tuple(vec![k, v]);
514 NanValue::new_tuple(tuple_idx)
515 })
516 .collect();
517 if pairs.is_empty() {
518 return Ok(NanValue::EMPTY_LIST);
519 }
520 let list_idx = arena.push_list(pairs);
521 Ok(NanValue::new_list(list_idx))
522}
523
524fn len_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
525 if args.len() != 1 {
526 return Err(RuntimeError::Error(format!(
527 "Map.len() takes 1 argument, got {}",
528 args.len()
529 )));
530 }
531 if !args[0].is_map() {
532 return Err(RuntimeError::Error(
533 "Map.len() argument must be a Map".to_string(),
534 ));
535 }
536 let map = arena.map_ref_value(args[0]);
537 Ok(NanValue::new_int(map.len() as i64, arena))
538}
539
540fn from_list_nv(args: &[NanValue], arena: &mut Arena) -> Result<NanValue, RuntimeError> {
541 if args.len() != 1 {
542 return Err(RuntimeError::Error(format!(
543 "Map.fromList() takes 1 argument, got {}",
544 args.len()
545 )));
546 }
547 if !args[0].is_list() {
548 return Err(RuntimeError::Error(
549 "Map.fromList() argument must be a List of (key, value) tuples".to_string(),
550 ));
551 }
552 let items = arena.list_to_vec_value(args[0]);
553 let mut out = crate::nan_value::PersistentMap::new();
554 for (idx, pair) in items.iter().enumerate() {
555 if !pair.is_tuple() {
556 return Err(RuntimeError::Error(format!(
557 "Map.fromList() item {} must be (key, value)",
558 idx + 1
559 )));
560 }
561 let parts = arena.get_tuple(pair.arena_index());
562 if parts.len() != 2 {
563 return Err(RuntimeError::Error(format!(
564 "Map.fromList() item {} must have 2 elements",
565 idx + 1
566 )));
567 }
568 let key = parts[0];
569 let value = parts[1];
570 ensure_hashable_nv("Map.fromList", key)?;
571 let key_hash = nv_key_bits(key, arena);
572 out = out.insert(key_hash, (key, value));
573 }
574 if out.is_empty() {
575 Ok(NanValue::EMPTY_MAP)
576 } else {
577 let map_idx = arena.push_map(out);
578 Ok(NanValue::new_map(map_idx))
579 }
580}