1use std::fmt;
2
3use crate::atomic::Atomic;
4use crate::union::Type;
5
6fn write_joined<T: fmt::Display>(
9 f: &mut fmt::Formatter<'_>,
10 items: impl IntoIterator<Item = T>,
11 sep: &str,
12) -> fmt::Result {
13 for (i, item) in items.into_iter().enumerate() {
14 if i > 0 {
15 f.write_str(sep)?;
16 }
17 write!(f, "{item}")?;
18 }
19 Ok(())
20}
21
22fn is_exactly_mixed(t: &Type) -> bool {
29 matches!(t.types.as_slice(), [Atomic::TMixed])
30}
31
32fn write_param_types(f: &mut fmt::Formatter<'_>, params: &[crate::atomic::FnParam]) -> fmt::Result {
35 for (i, p) in params.iter().enumerate() {
36 if i > 0 {
37 f.write_str(", ")?;
38 }
39 match &p.ty {
40 Some(ty) => write!(f, "{ty}")?,
41 None => f.write_str("mixed")?,
42 }
43 }
44 Ok(())
45}
46
47fn iterable_span(types: &[Atomic]) -> Option<(usize, usize, String)> {
59 for (ai, a) in types.iter().enumerate() {
60 let Atomic::TArray { key, value } = a else {
61 continue;
62 };
63 for (ti, t) in types.iter().enumerate() {
64 if ti == ai {
65 continue;
66 }
67 let Atomic::TNamedObject { fqcn, type_params } = t else {
68 continue;
69 };
70 if fqcn.as_ref() != "Traversable" {
71 continue;
72 }
73 let is_default_key_value =
74 is_exactly_mixed(value) && (is_exactly_mixed(key) || key.is_array_key());
75 let matches = if type_params.is_empty() {
76 is_default_key_value
81 } else {
82 type_params.len() == 2
83 && &type_params[0] == key.as_ref()
84 && &type_params[1] == value.as_ref()
85 };
86 if !matches {
87 continue;
88 }
89 let rendered = if is_default_key_value {
90 "iterable".to_string()
91 } else {
92 format!("iterable<{key}, {value}>")
93 };
94 return Some((ai.min(ti), ai.max(ti), rendered));
95 }
96 }
97 None
98}
99
100impl fmt::Display for Type {
101 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
102 if self.types.is_empty() {
103 return write!(f, "never");
104 }
105 if let Some((lo, hi, rendered)) = iterable_span(&self.types) {
106 let mut first = true;
107 for (i, t) in self.types.iter().enumerate() {
108 if i == hi {
109 continue;
110 }
111 if !first {
112 f.write_str("|")?;
113 }
114 first = false;
115 if i == lo {
116 f.write_str(&rendered)?;
117 } else {
118 write!(f, "{t}")?;
119 }
120 }
121 return Ok(());
122 }
123 write_joined(f, self.types.iter(), "|")
124 }
125}
126
127impl fmt::Display for Atomic {
128 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
129 match self {
130 Atomic::TString => write!(f, "string"),
131 Atomic::TLiteralString(s) => write!(f, "\"{s}\""),
132 Atomic::TCallableString => write!(f, "callable-string"),
133 Atomic::TClassString(None) => write!(f, "class-string"),
134 Atomic::TClassString(Some(cls)) => write!(f, "class-string<{cls}>"),
135 Atomic::TNonEmptyString => write!(f, "non-empty-string"),
136 Atomic::TNumericString => write!(f, "numeric-string"),
137
138 Atomic::TInt => write!(f, "int"),
139 Atomic::TLiteralInt(n) => write!(f, "{n}"),
140 Atomic::TIntRange { min, max } => match (min, max) {
141 (None, None) => write!(f, "int"),
142 (lo, hi) => {
143 let lo = lo.map_or_else(|| "min".to_string(), |n| n.to_string());
144 let hi = hi.map_or_else(|| "max".to_string(), |n| n.to_string());
145 write!(f, "int<{lo}, {hi}>")
146 }
147 },
148 Atomic::TPositiveInt => write!(f, "positive-int"),
149 Atomic::TNegativeInt => write!(f, "negative-int"),
150 Atomic::TNonNegativeInt => write!(f, "non-negative-int"),
151
152 Atomic::TFloat | Atomic::TIntegralFloat => write!(f, "float"),
153 Atomic::TLiteralFloat(high, low) => {
154 let bits = ((*high as u64) << 32) | (*low as u32 as u64);
155 let value = f64::from_bits(bits);
156 write!(f, "{value}")
157 }
158
159 Atomic::TBool => write!(f, "bool"),
160 Atomic::TTrue => write!(f, "true"),
161 Atomic::TFalse => write!(f, "false"),
162
163 Atomic::TNull => write!(f, "null"),
164 Atomic::TVoid => write!(f, "void"),
165 Atomic::TNever => write!(f, "never"),
166 Atomic::TMixed => write!(f, "mixed"),
167 Atomic::TScalar => write!(f, "scalar"),
168 Atomic::TNumeric => write!(f, "numeric"),
169
170 Atomic::TObject => write!(f, "object"),
171 Atomic::TNamedObject { fqcn, type_params } => {
172 if type_params.is_empty() || type_params.iter().all(is_exactly_mixed) {
177 write!(f, "{fqcn}")
178 } else {
179 write!(f, "{fqcn}<")?;
180 write_joined(f, type_params.iter(), ", ")?;
181 f.write_str(">")
182 }
183 }
184 Atomic::TStaticObject { fqcn } => write!(f, "static({fqcn})"),
185 Atomic::TSelf { fqcn } => write!(f, "self({fqcn})"),
186 Atomic::TParent { fqcn } => write!(f, "parent({fqcn})"),
187
188 Atomic::TCallable {
189 params: None,
190 return_type: None,
191 } => write!(f, "callable"),
192 Atomic::TCallable {
193 params: Some(params),
194 return_type,
195 } => {
196 f.write_str("callable(")?;
197 write_param_types(f, params)?;
198 match return_type {
199 Some(r) => write!(f, "): {r}"),
200 None => f.write_str("): mixed"),
201 }
202 }
203 Atomic::TCallable {
204 params: None,
205 return_type: Some(ret),
206 } => {
207 write!(f, "callable(): {ret}")
208 }
209 Atomic::TClosure { data } => {
210 f.write_str("Closure(")?;
211 write_param_types(f, &data.params)?;
212 write!(f, "): {}", data.return_type)
213 }
214
215 Atomic::TArray { key, value } => {
216 if is_exactly_mixed(value) && (is_exactly_mixed(key) || key.is_array_key()) {
221 write!(f, "array")
222 } else {
223 write!(f, "array<{key}, {value}>")
224 }
225 }
226 Atomic::TList { value } => {
227 if is_exactly_mixed(value) {
228 write!(f, "list")
229 } else {
230 write!(f, "list<{value}>")
231 }
232 }
233 Atomic::TNonEmptyArray { key, value } => {
234 if is_exactly_mixed(value) && (is_exactly_mixed(key) || key.is_array_key()) {
235 write!(f, "non-empty-array")
236 } else {
237 write!(f, "non-empty-array<{key}, {value}>")
238 }
239 }
240 Atomic::TNonEmptyList { value } => {
241 if is_exactly_mixed(value) {
242 write!(f, "non-empty-list")
243 } else {
244 write!(f, "non-empty-list<{value}>")
245 }
246 }
247 Atomic::TKeyedArray { properties, .. } => {
248 f.write_str("array{")?;
249 for (i, (k, v)) in properties.iter().enumerate() {
250 if i > 0 {
251 f.write_str(", ")?;
252 }
253 match k {
254 crate::atomic::ArrayKey::String(s) => write!(f, "'{s}'")?,
255 crate::atomic::ArrayKey::Int(n) => write!(f, "{n}")?,
256 }
257 if v.optional {
258 f.write_str("?")?;
259 }
260 write!(f, ": {}", v.ty)?;
261 }
262 f.write_str("}")
263 }
264
265 Atomic::TTemplateParam { name, .. } => write!(f, "{name}"),
266 Atomic::TConditional { data } => {
267 let (subject, if_true, if_false) = (&data.subject, &data.if_true, &data.if_false);
268 match &data.param_name {
269 Some(name) => write!(f, "(${name} is {subject} ? {if_true} : {if_false})"),
270 None => write!(f, "({subject} is ? {if_true} : {if_false})"),
271 }
272 }
273
274 Atomic::TInterfaceString(None) => write!(f, "interface-string"),
275 Atomic::TInterfaceString(Some(iface)) => write!(f, "interface-string<{iface}>"),
276 Atomic::TEnumString => write!(f, "enum-string"),
277 Atomic::TTraitString => write!(f, "trait-string"),
278 Atomic::TLiteralEnumCase {
279 enum_fqcn,
280 case_name,
281 } => {
282 write!(f, "{enum_fqcn}::{case_name}")
283 }
284
285 Atomic::TIntersection { parts } => {
286 let mut printed: Vec<&Type> = Vec::new();
291 let mut first = true;
292 for part in parts.iter() {
293 if printed.contains(&part) {
294 continue;
295 }
296 printed.push(part);
297 if !first {
298 f.write_str("&")?;
299 }
300 first = false;
301 write!(f, "{part}")?;
302 }
303 Ok(())
304 }
305 }
306 }
307}
308
309#[cfg(test)]
310mod tests {
311 use super::*;
312
313 #[test]
314 fn int_range_unbounded_displays_as_int() {
315 assert_eq!(
316 format!(
317 "{}",
318 Atomic::TIntRange {
319 min: None,
320 max: None
321 }
322 ),
323 "int"
324 );
325 }
326
327 #[test]
328 fn int_range_bounded_min_displays_range() {
329 assert_eq!(
330 format!(
331 "{}",
332 Atomic::TIntRange {
333 min: Some(0),
334 max: None
335 }
336 ),
337 "int<0, max>"
338 );
339 }
340
341 #[test]
342 fn int_range_bounded_max_displays_range() {
343 assert_eq!(
344 format!(
345 "{}",
346 Atomic::TIntRange {
347 min: None,
348 max: Some(100)
349 }
350 ),
351 "int<min, 100>"
352 );
353 }
354
355 #[test]
356 fn int_range_fully_bounded_displays_range() {
357 assert_eq!(
358 format!(
359 "{}",
360 Atomic::TIntRange {
361 min: Some(1),
362 max: Some(10)
363 }
364 ),
365 "int<1, 10>"
366 );
367 }
368
369 #[test]
370 fn unbounded_int_range_in_union_displays_as_int() {
371 let mut u = Type::empty();
372 u.add_type(Atomic::TIntRange {
373 min: None,
374 max: None,
375 });
376 u.add_type(Atomic::TFalse);
377 assert_eq!(format!("{u}"), "int|false");
378 }
379
380 #[test]
381 fn array_of_mixed_mixed_collapses_to_array() {
382 let atomic = Atomic::TArray {
383 key: Box::new(Type::mixed()),
384 value: Box::new(Type::mixed()),
385 };
386 assert_eq!(format!("{atomic}"), "array");
387 }
388
389 #[test]
390 fn array_of_array_key_mixed_collapses_to_array() {
391 let atomic = Atomic::TArray {
392 key: Box::new(Type::array_key()),
393 value: Box::new(Type::mixed()),
394 };
395 assert_eq!(format!("{atomic}"), "array");
396 }
397
398 #[test]
399 fn array_of_int_mixed_does_not_collapse() {
400 let atomic = Atomic::TArray {
401 key: Box::new(Type::int()),
402 value: Box::new(Type::mixed()),
403 };
404 assert_eq!(format!("{atomic}"), "array<int, mixed>");
405 }
406
407 #[test]
408 fn array_of_mixed_string_does_not_collapse() {
409 let atomic = Atomic::TArray {
410 key: Box::new(Type::mixed()),
411 value: Box::new(Type::string()),
412 };
413 assert_eq!(format!("{atomic}"), "array<mixed, string>");
414 }
415
416 #[test]
417 fn non_empty_array_of_mixed_mixed_collapses() {
418 let atomic = Atomic::TNonEmptyArray {
419 key: Box::new(Type::mixed()),
420 value: Box::new(Type::mixed()),
421 };
422 assert_eq!(format!("{atomic}"), "non-empty-array");
423 }
424
425 #[test]
426 fn list_of_mixed_collapses_to_list() {
427 let atomic = Atomic::TList {
428 value: Box::new(Type::mixed()),
429 };
430 assert_eq!(format!("{atomic}"), "list");
431 }
432
433 #[test]
434 fn list_of_string_does_not_collapse() {
435 let atomic = Atomic::TList {
436 value: Box::new(Type::string()),
437 };
438 assert_eq!(format!("{atomic}"), "list<string>");
439 }
440
441 #[test]
442 fn non_empty_list_of_mixed_collapses() {
443 let atomic = Atomic::TNonEmptyList {
444 value: Box::new(Type::mixed()),
445 };
446 assert_eq!(format!("{atomic}"), "non-empty-list");
447 }
448
449 #[test]
450 fn named_object_all_mixed_params_collapses_to_bare_name() {
451 let atomic = Atomic::TNamedObject {
452 fqcn: "Traversable".into(),
453 type_params: crate::union::vec_to_type_params(vec![Type::mixed(), Type::mixed()]),
454 };
455 assert_eq!(format!("{atomic}"), "Traversable");
456 }
457
458 #[test]
459 fn named_object_with_one_concrete_param_does_not_collapse() {
460 let atomic = Atomic::TNamedObject {
461 fqcn: "Traversable".into(),
462 type_params: crate::union::vec_to_type_params(vec![Type::int(), Type::mixed()]),
463 };
464 assert_eq!(format!("{atomic}"), "Traversable<int, mixed>");
465 }
466
467 #[test]
468 fn named_object_with_mixed_bounded_template_param_does_not_collapse() {
469 let template_param = Atomic::TTemplateParam {
473 name: "T".into(),
474 as_type: Box::new(Type::mixed()),
475 defining_entity: "MyClass".into(),
476 };
477 let atomic = Atomic::TNamedObject {
478 fqcn: "MyClass".into(),
479 type_params: crate::union::vec_to_type_params(vec![Type::single(template_param)]),
480 };
481 assert_eq!(format!("{atomic}"), "MyClass<T>");
482 }
483
484 fn bare_traversable() -> Atomic {
485 Atomic::TNamedObject {
486 fqcn: "Traversable".into(),
487 type_params: crate::union::empty_type_params(),
488 }
489 }
490
491 #[test]
492 fn array_mixed_mixed_or_traversable_collapses_to_iterable() {
493 let mut u = Type::single(Atomic::TArray {
494 key: Box::new(Type::array_key()),
495 value: Box::new(Type::mixed()),
496 });
497 u.add_type(bare_traversable());
498 assert_eq!(format!("{u}"), "iterable");
499 }
500
501 #[test]
502 fn parameterized_array_or_matching_traversable_collapses_to_iterable() {
503 let key = Type::string();
504 let value = Type::int();
505 let mut u = Type::single(Atomic::TArray {
506 key: Box::new(key.clone()),
507 value: Box::new(value.clone()),
508 });
509 u.add_type(Atomic::TNamedObject {
510 fqcn: "Traversable".into(),
511 type_params: crate::union::vec_to_type_params(vec![key, value]),
512 });
513 assert_eq!(format!("{u}"), "iterable<string, int>");
514 }
515
516 #[test]
517 fn iterable_collapse_preserves_other_union_members() {
518 let mut u = Type::single(Atomic::TArray {
519 key: Box::new(Type::array_key()),
520 value: Box::new(Type::mixed()),
521 });
522 u.add_type(bare_traversable());
523 u.add_type(Atomic::TNull);
524 assert_eq!(format!("{u}"), "iterable|null");
525 }
526
527 #[test]
528 fn array_with_mismatched_bare_traversable_does_not_collapse() {
529 let mut u = Type::single(Atomic::TArray {
534 key: Box::new(Type::int()),
535 value: Box::new(Type::string()),
536 });
537 u.add_type(bare_traversable());
538 assert_eq!(format!("{u}"), "array<int, string>|Traversable");
539 }
540
541 #[test]
542 fn array_with_non_matching_parameterized_traversable_does_not_collapse() {
543 let mut u = Type::single(Atomic::TArray {
544 key: Box::new(Type::int()),
545 value: Box::new(Type::string()),
546 });
547 u.add_type(Atomic::TNamedObject {
548 fqcn: "Traversable".into(),
549 type_params: crate::union::vec_to_type_params(vec![Type::string(), Type::int()]),
550 });
551 assert_eq!(
552 format!("{u}"),
553 "array<int, string>|Traversable<string, int>"
554 );
555 }
556
557 fn named_object(fqcn: &str) -> Atomic {
558 Atomic::TNamedObject {
559 fqcn: fqcn.into(),
560 type_params: crate::union::empty_type_params(),
561 }
562 }
563
564 #[test]
565 fn intersection_drops_exact_duplicate_part() {
566 let atomic = Atomic::TIntersection {
567 parts: crate::union::vec_to_type_params(vec![
568 Type::single(named_object("Foo")),
569 Type::single(named_object("Foo")),
570 ]),
571 };
572 assert_eq!(format!("{atomic}"), "Foo");
573 }
574
575 #[test]
576 fn intersection_keeps_distinct_parts() {
577 let atomic = Atomic::TIntersection {
578 parts: crate::union::vec_to_type_params(vec![
579 Type::single(named_object("Countable")),
580 Type::single(named_object("Traversable")),
581 ]),
582 };
583 assert_eq!(format!("{atomic}"), "Countable&Traversable");
584 }
585
586 #[test]
587 fn intersection_drops_duplicate_among_three_parts() {
588 let atomic = Atomic::TIntersection {
589 parts: crate::union::vec_to_type_params(vec![
590 Type::single(named_object("Foo")),
591 Type::single(named_object("Bar")),
592 Type::single(named_object("Foo")),
593 ]),
594 };
595 assert_eq!(format!("{atomic}"), "Foo&Bar");
596 }
597}