1use rustc_hash::FxHashMap;
2use serde::{Deserialize, Serialize};
3use smallvec::SmallVec;
4use std::sync::{Arc, OnceLock};
5
6use crate::atomic::Atomic;
7use crate::symbol::Name;
8
9pub fn empty_type_params() -> Arc<[Type]> {
13 static EMPTY: OnceLock<Arc<[Type]>> = OnceLock::new();
14 EMPTY.get_or_init(|| Arc::from([] as [Type; 0])).clone()
15}
16
17pub fn vec_to_type_params(v: Vec<Type>) -> Arc<[Type]> {
20 if v.is_empty() {
21 empty_type_params()
22 } else {
23 Arc::from(v)
24 }
25}
26
27pub type AtomicVec = SmallVec<[Atomic; 2]>;
29
30#[derive(Debug, Clone, Copy, PartialEq, Eq)]
32pub enum CloneValidity {
33 Cloneable,
35 Invalid,
37 PossiblyInvalid,
39 Unknown,
41}
42
43#[derive(Debug, Clone, PartialEq, Eq, Hash, Serialize, Deserialize)]
48pub struct Type {
49 pub types: AtomicVec,
50 pub possibly_undefined: bool,
52 pub from_docblock: bool,
54 pub falsy_stripped: bool,
62 pub possibly_absent_offset: bool,
73}
74
75impl Type {
76 pub fn empty() -> Self {
79 Self {
80 types: SmallVec::new(),
81 possibly_undefined: false,
82 from_docblock: false,
83 falsy_stripped: false,
84 possibly_absent_offset: false,
85 }
86 }
87
88 pub fn single(atomic: Atomic) -> Self {
89 let mut types = SmallVec::new();
90 types.push(atomic);
91 Self {
92 types,
93 possibly_undefined: false,
94 from_docblock: false,
95 falsy_stripped: false,
96 possibly_absent_offset: false,
97 }
98 }
99
100 pub fn mixed() -> Self {
101 Self::single(Atomic::TMixed)
102 }
103
104 pub fn void() -> Self {
105 Self::single(Atomic::TVoid)
106 }
107
108 pub fn never() -> Self {
109 Self::single(Atomic::TNever)
110 }
111
112 pub fn null() -> Self {
113 Self::single(Atomic::TNull)
114 }
115
116 pub fn bool() -> Self {
117 Self::single(Atomic::TBool)
118 }
119
120 pub fn int() -> Self {
121 Self::single(Atomic::TInt)
122 }
123
124 pub fn float() -> Self {
125 Self::single(Atomic::TFloat)
126 }
127
128 pub fn string() -> Self {
129 Self::single(Atomic::TString)
130 }
131
132 pub fn array_key() -> Self {
135 let mut u = Self::single(Atomic::TInt);
136 u.add_type(Atomic::TString);
137 u
138 }
139
140 pub fn nullable(atomic: Atomic) -> Self {
142 if matches!(atomic, Atomic::TMixed) {
144 return Self::mixed();
145 }
146 let mut types = SmallVec::new();
147 types.push(atomic);
148 types.push(Atomic::TNull);
149 Self {
150 types,
151 possibly_undefined: false,
152 from_docblock: false,
153 falsy_stripped: false,
154 possibly_absent_offset: false,
155 }
156 }
157
158 pub fn from_vec(atomics: Vec<Atomic>) -> Self {
160 let mut u = Self::empty();
161 for a in atomics {
162 u.add_type(a);
163 }
164 u
165 }
166
167 pub fn is_empty(&self) -> bool {
170 self.types.is_empty()
171 }
172
173 pub fn is_single(&self) -> bool {
174 self.types.len() == 1
175 }
176
177 pub fn is_nullable(&self) -> bool {
178 self.types.iter().any(|t| matches!(t, Atomic::TNull))
179 }
180
181 pub fn is_array_key(&self) -> bool {
186 self.types.len() == 2
187 && self.types.iter().any(|t| matches!(t, Atomic::TInt))
188 && self.types.iter().any(|t| matches!(t, Atomic::TString))
189 }
190
191 pub fn is_mixed(&self) -> bool {
192 self.types.iter().any(|t| match t {
193 Atomic::TMixed => true,
194 Atomic::TTemplateParam { as_type, .. } => as_type.is_mixed(),
195 _ => false,
196 })
197 }
198
199 pub fn is_mixed_not_template(&self) -> bool {
204 self.is_mixed()
205 && !self
206 .types
207 .iter()
208 .any(|t| matches!(t, Atomic::TTemplateParam { .. }))
209 }
210
211 pub fn is_never(&self) -> bool {
212 self.types.iter().all(|t| matches!(t, Atomic::TNever)) && !self.types.is_empty()
213 }
214
215 pub fn clone_validity(&self) -> CloneValidity {
218 if self.types.is_empty() {
219 return CloneValidity::Unknown;
220 }
221 let mut has_non_object = false;
222 let mut has_other = false; for t in &self.types {
224 match t {
225 Atomic::TTemplateParam { as_type, .. } => match as_type.clone_validity() {
226 CloneValidity::Invalid => has_non_object = true,
227 CloneValidity::PossiblyInvalid => {
228 has_non_object = true;
229 has_other = true;
230 }
231 CloneValidity::Cloneable | CloneValidity::Unknown => has_other = true,
232 },
233 other if other.is_definitely_non_object() => has_non_object = true,
234 _ => has_other = true,
235 }
236 }
237 match (has_non_object, has_other) {
238 (true, false) => CloneValidity::Invalid,
239 (true, true) => CloneValidity::PossiblyInvalid,
240 _ => CloneValidity::Cloneable,
241 }
242 }
243
244 pub fn is_void(&self) -> bool {
245 self.is_single() && matches!(self.types[0], Atomic::TVoid)
246 }
247
248 pub fn can_be_falsy(&self) -> bool {
249 self.types.iter().any(|t| t.can_be_falsy())
250 }
251
252 pub fn can_be_truthy(&self) -> bool {
253 self.types.iter().any(|t| t.can_be_truthy())
254 }
255
256 pub fn contains<F: Fn(&Atomic) -> bool>(&self, f: F) -> bool {
257 self.types.iter().any(f)
258 }
259
260 pub fn has_named_object(&self, fqcn: &str) -> bool {
261 self.types.iter().any(|t| match t {
262 Atomic::TNamedObject { fqcn: f, .. } => f.as_ref() == fqcn,
263 _ => false,
264 })
265 }
266
267 pub fn add_type(&mut self, atomic: Atomic) {
272 if self.types.iter().any(|t| matches!(t, Atomic::TMixed)) {
274 return;
275 }
276
277 if matches!(atomic, Atomic::TMixed) {
279 self.types.clear();
280 self.types.push(Atomic::TMixed);
281 return;
282 }
283
284 let atomic = if let Atomic::TConditional { data } = &atomic {
287 let (if_true, if_false) = (&data.if_true, &data.if_false);
288 let mut simplified_true = Type::empty();
289 for t in &if_true.types {
290 simplified_true.add_type(t.clone());
291 }
292 let mut simplified_false = Type::empty();
293 for t in &if_false.types {
294 simplified_false.add_type(t.clone());
295 }
296 if simplified_true == simplified_false {
297 for t in simplified_true.types {
298 self.add_type(t);
299 }
300 return;
301 }
302 atomic
303 } else {
304 atomic
305 };
306
307 if self.types.contains(&atomic) {
309 return;
310 }
311
312 if let Atomic::TLiteralInt(_) = &atomic {
314 if self.types.iter().any(|t| matches!(t, Atomic::TInt)) {
315 return;
316 }
317 }
318 if let Atomic::TLiteralString(_) = &atomic {
320 if self.types.iter().any(|t| matches!(t, Atomic::TString)) {
321 return;
322 }
323 }
324 if matches!(atomic, Atomic::TTrue | Atomic::TFalse)
326 && self.types.iter().any(|t| matches!(t, Atomic::TBool))
327 {
328 return;
329 }
330 if matches!(atomic, Atomic::TTrue) && self.types.iter().any(|t| matches!(t, Atomic::TFalse))
333 {
334 self.types.retain(|t| !matches!(t, Atomic::TFalse));
335 self.types.push(Atomic::TBool);
336 return;
337 }
338 if matches!(atomic, Atomic::TFalse) && self.types.iter().any(|t| matches!(t, Atomic::TTrue))
339 {
340 self.types.retain(|t| !matches!(t, Atomic::TTrue));
341 self.types.push(Atomic::TBool);
342 return;
343 }
344 if matches!(atomic, Atomic::TInt) {
346 self.types.retain(|t| !matches!(t, Atomic::TLiteralInt(_)));
347 }
348 if matches!(atomic, Atomic::TString) {
350 self.types
351 .retain(|t| !matches!(t, Atomic::TLiteralString(_)));
352 }
353 if matches!(atomic, Atomic::TBool) {
355 self.types
356 .retain(|t| !matches!(t, Atomic::TTrue | Atomic::TFalse));
357 }
358
359 if matches!(atomic, Atomic::TNever) {
361 if !self.types.is_empty() {
362 return;
363 }
364 } else {
365 self.types.retain(|t| !matches!(t, Atomic::TNever));
366 }
367
368 if let Atomic::TKeyedArray {
374 properties,
375 is_open,
376 ..
377 } = &atomic
378 {
379 if properties.is_empty() && !is_open {
380 for existing in &self.types {
381 match existing {
382 Atomic::TArray { .. }
383 | Atomic::TNonEmptyArray { .. }
384 | Atomic::TList { .. }
385 | Atomic::TNonEmptyList { .. } => {
386 return; }
388 _ => {}
389 }
390 }
391 }
392 }
393
394 let is_generic_array_or_list = matches!(
397 &atomic,
398 Atomic::TArray { .. }
399 | Atomic::TNonEmptyArray { .. }
400 | Atomic::TList { .. }
401 | Atomic::TNonEmptyList { .. }
402 );
403 if is_generic_array_or_list {
404 self.types.retain(|t| {
405 if let Atomic::TKeyedArray {
406 properties,
407 is_open,
408 ..
409 } = t
410 {
411 !properties.is_empty() || *is_open
412 } else {
413 true
414 }
415 });
416 }
417
418 self.types.push(atomic);
419 }
420
421 pub fn remove_null(&self) -> Type {
425 self.filter(|t| !matches!(t, Atomic::TNull))
426 }
427
428 pub fn remove_false(&self) -> Type {
431 let mut result = self.filter(|t| !matches!(t, Atomic::TFalse | Atomic::TBool));
432 if self.types.iter().any(|t| matches!(t, Atomic::TBool)) {
433 result.add_type(Atomic::TTrue);
434 }
435 result
436 }
437
438 pub fn remove_true(&self) -> Type {
441 let mut result = self.filter(|t| !matches!(t, Atomic::TTrue | Atomic::TBool));
442 if self.types.iter().any(|t| matches!(t, Atomic::TBool)) {
443 result.add_type(Atomic::TFalse);
444 }
445 result
446 }
447
448 pub fn core_type(&self) -> Type {
450 self.remove_null().remove_false()
451 }
452
453 pub fn narrow_to_truthy(&self) -> Type {
455 if self.is_mixed_not_template() {
456 return Type::mixed();
457 }
458 let mut result = Type::empty();
459 result.from_docblock = self.from_docblock;
460 for t in &self.types {
461 match t {
462 Atomic::TTemplateParam { .. } => result.add_type(t.clone()),
466 Atomic::TLiteralInt(0)
468 | Atomic::TLiteralFloat(0, 0)
469 | Atomic::TNull
470 | Atomic::TFalse => {}
471 Atomic::TLiteralString(s) if s.as_ref() == "" || s.as_ref() == "0" => {}
472 Atomic::TBool => result.add_type(Atomic::TTrue),
474 Atomic::TArray { key, value } => result.add_type(Atomic::TNonEmptyArray {
476 key: key.clone(),
477 value: value.clone(),
478 }),
479 Atomic::TList { value } => result.add_type(Atomic::TNonEmptyList {
480 value: value.clone(),
481 }),
482 Atomic::TString => result.add_type(Atomic::TNonEmptyString),
486 Atomic::TNonNegativeInt => result.add_type(Atomic::TPositiveInt),
491 Atomic::TIntRange { min: Some(0), max } if max.is_none_or(|m| m >= 1) => {
492 let atom = if max.is_none() {
493 Atomic::TPositiveInt
494 } else {
495 Atomic::TIntRange {
496 min: Some(1),
497 max: *max,
498 }
499 };
500 result.add_type(atom);
501 }
502 Atomic::TIntRange { min, max: Some(0) } => {
504 let atom = match min {
505 None => Atomic::TNegativeInt,
506 Some(n) if *n <= -1 => Atomic::TIntRange {
507 min: *min,
508 max: Some(-1),
509 },
510 _ => continue, };
512 result.add_type(atom);
513 }
514 t if !t.can_be_truthy() => {}
516 _ => result.add_type(t.clone()),
517 }
518 }
519 result
520 }
521
522 pub fn narrow_to_falsy(&self) -> Type {
524 if self.is_mixed_not_template() {
525 return Type::from_vec(vec![
526 Atomic::TNull,
527 Atomic::TFalse,
528 Atomic::TLiteralInt(0),
529 Atomic::TLiteralString("".into()),
530 ]);
531 }
532 let mut result = Type::empty();
533 result.from_docblock = self.from_docblock;
534 for t in &self.types {
535 match t {
536 Atomic::TTemplateParam { .. } => result.add_type(t.clone()),
541 Atomic::TBool => result.add_type(Atomic::TFalse),
543 Atomic::TInt => result.add_type(Atomic::TLiteralInt(0)),
545 Atomic::TFloat => result.add_type(Atomic::TLiteralFloat(0, 0)),
547 Atomic::TString => {
549 result.add_type(Atomic::TLiteralString("".into()));
550 result.add_type(Atomic::TLiteralString("0".into()));
551 }
552 Atomic::TNumericString => result.add_type(Atomic::TLiteralString("0".into())),
554 Atomic::TNonNegativeInt => result.add_type(Atomic::TLiteralInt(0)),
556 Atomic::TIntRange {
558 min: Some(0),
559 max: Some(_) | None,
560 } => result.add_type(Atomic::TLiteralInt(0)),
561 Atomic::TIntRange { max: Some(0), .. } => result.add_type(Atomic::TLiteralInt(0)),
563 t if !t.can_be_falsy() => {} _ => result.add_type(t.clone()),
565 }
566 }
567 result
568 }
569
570 pub fn narrow_instanceof(&self, class: &str) -> Type {
576 let narrowed_ty = Atomic::TNamedObject {
577 fqcn: class.into(),
578 type_params: empty_type_params(),
579 };
580 let has_object = self.types.iter().any(|t| {
582 matches!(
583 t,
584 Atomic::TObject | Atomic::TNamedObject { .. } | Atomic::TMixed | Atomic::TNull )
586 });
587 if has_object || self.is_empty() {
588 Type::single(narrowed_ty)
589 } else {
590 Type::single(narrowed_ty)
593 }
594 }
595
596 pub fn narrow_to_string(&self) -> Type {
600 self.filter_replacing(
601 |t| t.is_string() || matches!(t, Atomic::TTemplateParam { .. }),
602 |t| matches!(t, Atomic::TMixed | Atomic::TScalar),
603 Atomic::TString,
604 )
605 }
606
607 pub fn narrow_to_int(&self) -> Type {
609 self.filter_replacing(
610 |t| t.is_int() || matches!(t, Atomic::TTemplateParam { .. }),
611 |t| matches!(t, Atomic::TMixed | Atomic::TScalar | Atomic::TNumeric),
612 Atomic::TInt,
613 )
614 }
615
616 pub fn narrow_to_float(&self) -> Type {
618 self.filter_replacing(
619 |t| {
620 matches!(
621 t,
622 Atomic::TFloat
623 | Atomic::TIntegralFloat
624 | Atomic::TLiteralFloat(..)
625 | Atomic::TTemplateParam { .. }
626 )
627 },
628 |t| matches!(t, Atomic::TMixed | Atomic::TScalar | Atomic::TNumeric),
629 Atomic::TFloat,
630 )
631 }
632
633 pub fn narrow_to_bool(&self) -> Type {
635 self.filter_replacing(
636 |t| {
637 matches!(
638 t,
639 Atomic::TBool | Atomic::TTrue | Atomic::TFalse | Atomic::TTemplateParam { .. }
640 )
641 },
642 |t| matches!(t, Atomic::TMixed | Atomic::TScalar),
643 Atomic::TBool,
644 )
645 }
646
647 pub fn narrow_to_null(&self) -> Type {
649 self.filter_replacing(
650 |t| matches!(t, Atomic::TNull | Atomic::TTemplateParam { .. }),
651 |t| matches!(t, Atomic::TMixed),
652 Atomic::TNull,
653 )
654 }
655
656 pub fn narrow_to_array(&self) -> Type {
658 self.filter_replacing(
659 |t| t.is_array() || matches!(t, Atomic::TTemplateParam { .. }),
660 |t| matches!(t, Atomic::TMixed),
661 Atomic::TArray {
662 key: Box::new(Type::mixed()),
663 value: Box::new(Type::mixed()),
664 },
665 )
666 }
667
668 pub fn narrow_to_non_empty_collection(&self) -> Type {
670 let mut out = Type::empty();
671 out.from_docblock = self.from_docblock;
672 for t in &self.types {
673 match t {
674 Atomic::TArray { key, value } => out.add_type(Atomic::TNonEmptyArray {
675 key: key.clone(),
676 value: value.clone(),
677 }),
678 Atomic::TList { value } => out.add_type(Atomic::TNonEmptyList {
679 value: value.clone(),
680 }),
681 _ => out.add_type(t.clone()),
682 }
683 }
684 out
685 }
686
687 pub fn narrow_to_empty_collection(&self) -> Type {
697 let mut out = Type::empty();
698 out.from_docblock = self.from_docblock;
699 for t in &self.types {
700 match t {
701 Atomic::TNonEmptyArray { .. } | Atomic::TNonEmptyList { .. } => {}
702 Atomic::TArray { .. } | Atomic::TList { .. } => {
703 out.add_type(Atomic::TKeyedArray {
704 properties: Box::default(),
705 is_open: false,
706 is_list: true,
707 });
708 }
709 _ => out.add_type(t.clone()),
710 }
711 }
712 out
713 }
714
715 pub fn narrow_to_list(&self) -> Type {
727 let mut out = Type::empty();
728 out.from_docblock = self.from_docblock;
729 for t in &self.types {
730 match t {
731 Atomic::TList { .. } | Atomic::TNonEmptyList { .. } => out.add_type(t.clone()),
732 Atomic::TArray { key, value } if !key.narrow_to_int().is_empty() => {
738 out.add_type(Atomic::TList {
739 value: value.clone(),
740 });
741 }
742 Atomic::TNonEmptyArray { key, value } if !key.narrow_to_int().is_empty() => {
743 out.add_type(Atomic::TNonEmptyList {
744 value: value.clone(),
745 });
746 }
747 Atomic::TKeyedArray { is_list: true, .. } => out.add_type(t.clone()),
748 Atomic::TMixed => out.add_type(Atomic::TList {
749 value: Box::new(Type::mixed()),
750 }),
751 _ => {}
752 }
753 }
754 if out.is_empty() {
755 self.filter(|t| matches!(t, Atomic::TList { .. } | Atomic::TNonEmptyList { .. }))
756 } else {
757 out
758 }
759 }
760
761 pub fn narrow_to_object(&self) -> Type {
766 let mut out = Type::empty();
767 for t in &self.types {
768 if matches!(t, Atomic::TMixed) {
769 out.add_type(Atomic::TObject);
770 } else if t.is_object() || matches!(t, Atomic::TTemplateParam { .. }) {
771 out.add_type(t.clone());
772 }
773 }
774 if out.types.is_empty() {
775 self.filter(|t| t.is_object())
776 } else {
777 out
778 }
779 }
780
781 pub fn narrow_to_callable(&self) -> Type {
788 let narrowed = self.filter(|t| {
789 t.is_callable()
790 || t.is_string()
791 || t.is_array()
792 || t.is_object()
793 || matches!(t, Atomic::TMixed | Atomic::TTemplateParam { .. })
794 });
795 let mut result = Type::empty();
802 result.possibly_undefined = narrowed.possibly_undefined;
803 result.from_docblock = narrowed.from_docblock;
804 for atomic in narrowed.types {
805 if matches!(atomic, Atomic::TObject) {
806 result.add_type(Atomic::TCallable {
807 params: None,
808 return_type: None,
809 });
810 } else {
811 result.add_type(atomic);
812 }
813 }
814 result
815 }
816
817 pub fn narrow_to_scalar(&self) -> Type {
819 self.filter_replacing(
820 |t| {
821 t.is_string()
822 || t.is_int()
823 || matches!(
824 t,
825 Atomic::TFloat
826 | Atomic::TIntegralFloat
827 | Atomic::TLiteralFloat(..)
828 | Atomic::TBool
829 | Atomic::TTrue
830 | Atomic::TFalse
831 | Atomic::TScalar
832 | Atomic::TNumeric
833 | Atomic::TNumericString
834 | Atomic::TTemplateParam { .. }
835 )
836 },
837 |t| matches!(t, Atomic::TMixed),
838 Atomic::TScalar,
839 )
840 }
841
842 pub fn narrow_to_iterable(&self) -> Type {
845 self.filter(|t| {
846 t.is_array()
847 || t.is_object()
848 || matches!(t, Atomic::TMixed | Atomic::TTemplateParam { .. })
849 })
850 }
851
852 pub fn narrow_to_countable(&self) -> Type {
855 self.filter(|t| {
856 t.is_array()
857 || t.is_object()
858 || matches!(t, Atomic::TMixed | Atomic::TTemplateParam { .. })
859 })
860 }
861
862 pub fn narrow_to_resource(&self) -> Type {
866 self.filter(|t| matches!(t, Atomic::TMixed))
868 }
869
870 pub fn narrow_to_class_string(&self) -> Type {
875 let mut out = Type::empty();
876 out.from_docblock = self.from_docblock;
877 for t in &self.types {
878 match t {
879 Atomic::TClassString(_) => out.add_type(t.clone()),
880 _ if t.is_string() || matches!(t, Atomic::TMixed | Atomic::TScalar) => {
881 out.add_type(Atomic::TClassString(None));
882 }
883 _ => {}
884 }
885 }
886 out
887 }
888
889 pub fn narrow_to_interface_string(&self) -> Type {
894 let mut out = Type::empty();
895 out.from_docblock = self.from_docblock;
896 for t in &self.types {
897 match t {
898 Atomic::TInterfaceString(_) => out.add_type(t.clone()),
899 Atomic::TClassString(name) => {
903 out.add_type(Atomic::TInterfaceString(*name));
904 }
905 _ if t.is_string() || matches!(t, Atomic::TMixed | Atomic::TScalar) => {
906 out.add_type(Atomic::TInterfaceString(None));
907 }
908 _ => {}
909 }
910 }
911 out
912 }
913
914 pub fn merge(a: &Type, b: &Type) -> Type {
919 if b.types.is_empty() {
921 let mut result = a.clone();
922 result.possibly_undefined = a.possibly_undefined || b.possibly_undefined;
923 return result;
924 }
925 if a.types.is_empty() {
927 let mut result = b.clone();
928 result.possibly_undefined = a.possibly_undefined || b.possibly_undefined;
929 return result;
930 }
931 if a.types.len() == 1 && matches!(a.types[0], Atomic::TMixed) {
933 let mut result = a.clone();
934 result.possibly_undefined = a.possibly_undefined || b.possibly_undefined;
935 return result;
936 }
937 if b.types.iter().any(|t| matches!(t, Atomic::TMixed)) {
939 return Type {
940 types: smallvec::smallvec![Atomic::TMixed],
941 possibly_undefined: a.possibly_undefined || b.possibly_undefined,
942 from_docblock: a.from_docblock || b.from_docblock,
943 falsy_stripped: false,
944 possibly_absent_offset: false,
945 };
946 }
947 let mut result = a.clone();
948 result.merge_with(b);
949 result
950 }
951
952 pub fn merge_with(&mut self, other: &Type) {
954 if self.types.iter().any(|t| matches!(t, Atomic::TMixed)) {
955 self.possibly_undefined |= other.possibly_undefined;
956 return;
957 }
958 if other.types.iter().any(|t| matches!(t, Atomic::TMixed)) {
959 self.types.clear();
960 self.types.push(Atomic::TMixed);
961 self.possibly_undefined |= other.possibly_undefined;
962 return;
963 }
964 for atomic in &other.types {
965 self.add_type(atomic.clone());
966 }
967 self.possibly_undefined |= other.possibly_undefined;
968 }
969
970 pub fn intersect_with(&self, other: &Type) -> Type {
974 if self.is_mixed() {
975 return other.clone();
976 }
977 if other.is_mixed() {
978 return self.clone();
979 }
980 let mut result = Type::empty();
988 for a in &self.types {
989 for b in &other.types {
990 if a == b {
991 result.add_type(a.clone());
992 } else if atomic_subtype(b, a) {
993 result.add_type(b.clone());
994 } else if atomic_subtype(a, b) {
995 result.add_type(a.clone());
996 }
997 }
998 }
999 if result.is_empty() {
1000 Type::never()
1001 } else {
1002 result
1003 }
1004 }
1005
1006 pub fn substitute_templates(&self, bindings: &FxHashMap<Name, Type>) -> Type {
1010 if bindings.is_empty() {
1011 return self.clone();
1012 }
1013 if !self.types.iter().any(atomic_may_contain_templates) {
1016 return self.clone();
1017 }
1018 let mut result = Type::empty();
1019 result.possibly_undefined = self.possibly_undefined;
1020 result.from_docblock = self.from_docblock;
1021 for atomic in &self.types {
1022 match atomic {
1023 Atomic::TTemplateParam { name, .. } => {
1024 if let Some(resolved) = bindings.get(name) {
1025 for t in &resolved.types {
1026 result.add_type(t.clone());
1027 }
1028 } else {
1029 result.add_type(atomic.clone());
1030 }
1031 }
1032 Atomic::TArray { key, value } => {
1033 result.add_type(Atomic::TArray {
1034 key: Box::new(key.substitute_templates(bindings)),
1035 value: Box::new(value.substitute_templates(bindings)),
1036 });
1037 }
1038 Atomic::TList { value } => {
1039 result.add_type(Atomic::TList {
1040 value: Box::new(value.substitute_templates(bindings)),
1041 });
1042 }
1043 Atomic::TNonEmptyArray { key, value } => {
1044 result.add_type(Atomic::TNonEmptyArray {
1045 key: Box::new(key.substitute_templates(bindings)),
1046 value: Box::new(value.substitute_templates(bindings)),
1047 });
1048 }
1049 Atomic::TNonEmptyList { value } => {
1050 result.add_type(Atomic::TNonEmptyList {
1051 value: Box::new(value.substitute_templates(bindings)),
1052 });
1053 }
1054 Atomic::TKeyedArray {
1055 properties,
1056 is_open,
1057 is_list,
1058 } => {
1059 use crate::atomic::KeyedProperty;
1060 let new_props = properties
1061 .iter()
1062 .map(|(k, prop)| {
1063 (
1064 k.clone(),
1065 KeyedProperty {
1066 ty: prop.ty.substitute_templates(bindings),
1067 optional: prop.optional,
1068 },
1069 )
1070 })
1071 .collect();
1072 result.add_type(Atomic::TKeyedArray {
1073 properties: Box::new(new_props),
1074 is_open: *is_open,
1075 is_list: *is_list,
1076 });
1077 }
1078 Atomic::TCallable {
1079 params,
1080 return_type,
1081 } => {
1082 result.add_type(Atomic::TCallable {
1083 params: params.as_ref().map(|ps| {
1084 ps.iter()
1085 .map(|p| substitute_in_fn_param(p, bindings))
1086 .collect()
1087 }),
1088 return_type: return_type
1089 .as_ref()
1090 .map(|r| Box::new(r.substitute_templates(bindings))),
1091 });
1092 }
1093 Atomic::TClosure { data } => {
1094 result.add_type(Atomic::TClosure {
1095 data: Box::new(crate::atomic::ClosureData {
1096 params: data
1097 .params
1098 .iter()
1099 .map(|p| substitute_in_fn_param(p, bindings))
1100 .collect(),
1101 return_type: data.return_type.substitute_templates(bindings),
1102 this_type: data
1103 .this_type
1104 .as_ref()
1105 .map(|t| t.substitute_templates(bindings)),
1106 }),
1107 });
1108 }
1109 Atomic::TConditional { data } => {
1110 let param_name = &data.param_name;
1111 let new_subject = data.subject.substitute_templates(bindings);
1112 let new_if_true = data.if_true.substitute_templates(bindings);
1113 let new_if_false = data.if_false.substitute_templates(bindings);
1114
1115 let resolved = if let Some(name) = param_name {
1119 if let Some(bound) = bindings.get(name) {
1120 if new_subject.types.len() == 1 {
1121 resolve_conditional_branch(
1122 &new_subject.types[0],
1123 bound,
1124 &new_if_true,
1125 &new_if_false,
1126 )
1127 } else {
1128 None
1129 }
1130 } else {
1131 None
1132 }
1133 } else {
1134 None
1135 };
1136
1137 if let Some(branch) = resolved {
1138 for t in branch.types {
1139 result.add_type(t);
1140 }
1141 } else {
1142 result.add_type(Atomic::TConditional {
1143 data: Box::new(crate::atomic::ConditionalData {
1144 param_name: *param_name,
1145 subject: new_subject,
1146 if_true: new_if_true,
1147 if_false: new_if_false,
1148 }),
1149 });
1150 }
1151 }
1152 Atomic::TKeyOf { target } => {
1153 let new_target = target.substitute_templates(bindings);
1154 if let Some(resolved) = eval_key_of_type(&new_target) {
1155 result.merge_with(&resolved);
1156 } else {
1157 result.add_type(Atomic::TKeyOf {
1158 target: Box::new(new_target),
1159 });
1160 }
1161 }
1162 Atomic::TValueOf { target } => {
1163 let new_target = target.substitute_templates(bindings);
1164 if let Some(resolved) = eval_value_of_type(&new_target) {
1165 result.merge_with(&resolved);
1166 } else {
1167 result.add_type(Atomic::TValueOf {
1168 target: Box::new(new_target),
1169 });
1170 }
1171 }
1172 Atomic::TIntersection { parts } => {
1173 result.add_type(Atomic::TIntersection {
1174 parts: vec_to_type_params(
1175 parts
1176 .iter()
1177 .map(|p| p.substitute_templates(bindings))
1178 .collect(),
1179 ),
1180 });
1181 }
1182 Atomic::TNamedObject { fqcn, type_params } => {
1183 if type_params.is_empty() && !fqcn.contains('\\') {
1185 if let Some(resolved) = bindings.get(fqcn) {
1186 for t in &resolved.types {
1187 result.add_type(t.clone());
1188 }
1189 continue;
1190 }
1191 }
1192 let new_params: Vec<Type> = type_params
1193 .iter()
1194 .map(|p| p.substitute_templates(bindings))
1195 .collect();
1196 result.add_type(Atomic::TNamedObject {
1197 fqcn: *fqcn,
1198 type_params: vec_to_type_params(new_params),
1199 });
1200 }
1201 Atomic::TClassString(Some(param_name)) => {
1203 if let Some(resolved) = bindings.get(param_name) {
1204 for r_atomic in &resolved.types {
1205 let cls_name = if let Atomic::TNamedObject { fqcn, .. } = r_atomic {
1206 Some(*fqcn)
1207 } else {
1208 None
1209 };
1210 result.add_type(Atomic::TClassString(cls_name));
1211 }
1212 } else {
1213 result.add_type(atomic.clone());
1214 }
1215 }
1216 Atomic::TInterfaceString(Some(param_name)) => {
1218 if let Some(resolved) = bindings.get(param_name) {
1219 for r_atomic in &resolved.types {
1220 let iface_name = if let Atomic::TNamedObject { fqcn, .. } = r_atomic {
1221 Some(*fqcn)
1222 } else {
1223 None
1224 };
1225 result.add_type(Atomic::TInterfaceString(iface_name));
1226 }
1227 } else {
1228 result.add_type(atomic.clone());
1229 }
1230 }
1231 _ => {
1232 result.add_type(atomic.clone());
1233 }
1234 }
1235 }
1236 result
1237 }
1238
1239 pub fn resolve_conditional_returns<F>(self, lookup: F) -> Type
1245 where
1246 F: Fn(&str) -> Option<Type>,
1247 {
1248 self.resolve_conditional_inner(&lookup)
1249 }
1250
1251 fn resolve_conditional_inner<F>(self, lookup: &F) -> Type
1252 where
1253 F: Fn(&str) -> Option<Type>,
1254 {
1255 let mut result = Type::empty();
1256 for atomic in self.types {
1257 match atomic {
1258 Atomic::TConditional { ref data } => {
1259 let (param_name, subject, if_true, if_false) = (
1260 &data.param_name,
1261 &data.subject,
1262 &data.if_true,
1263 &data.if_false,
1264 );
1265 let resolved = if subject.types.len() == 1 {
1266 if let Some(name) = param_name {
1267 if let Some(arg_ty) = lookup(name.as_ref()) {
1268 resolve_conditional_branch(
1269 &subject.types[0],
1270 &arg_ty,
1271 if_true,
1272 if_false,
1273 )
1274 } else {
1275 None
1276 }
1277 } else {
1278 None
1279 }
1280 } else {
1281 None
1282 };
1283
1284 if let Some(branch) = resolved {
1285 for t in branch.resolve_conditional_inner(lookup).types {
1287 result.add_type(t);
1288 }
1289 } else {
1290 for t in if_true.clone().resolve_conditional_inner(lookup).types {
1293 result.add_type(t);
1294 }
1295 for t in if_false.clone().resolve_conditional_inner(lookup).types {
1296 result.add_type(t);
1297 }
1298 }
1299 }
1300 other => result.add_type(other),
1301 }
1302 }
1303 result
1304 }
1305
1306 pub fn is_subtype_structural(&self, other: &Type) -> bool {
1316 if other.is_mixed() {
1317 return true;
1318 }
1319 if self.is_never() {
1320 return true; }
1322 self.types
1323 .iter()
1324 .all(|a| other.types.iter().any(|b| atomic_subtype(a, b)))
1325 }
1326
1327 pub fn accepts_atomic_structural(&self, sub: &Atomic) -> bool {
1331 if self.is_mixed() {
1332 return true;
1333 }
1334 matches!(sub, Atomic::TNever) || self.types.iter().any(|b| atomic_subtype(sub, b))
1335 }
1336
1337 fn filter<F: Fn(&Atomic) -> bool>(&self, f: F) -> Type {
1340 let mut result = Type::empty();
1341 result.possibly_undefined = self.possibly_undefined;
1342 result.from_docblock = self.from_docblock;
1343 for atomic in &self.types {
1344 if f(atomic) {
1345 result.types.push(atomic.clone());
1346 }
1347 }
1348 result
1349 }
1350
1351 fn filter_replacing<K: Fn(&Atomic) -> bool, P: Fn(&Atomic) -> bool>(
1356 &self,
1357 keep: K,
1358 placeholder: P,
1359 replacement: Atomic,
1360 ) -> Type {
1361 let mut result = Type::empty();
1362 result.possibly_undefined = self.possibly_undefined;
1363 result.from_docblock = self.from_docblock;
1364 for atomic in &self.types {
1365 if keep(atomic) {
1366 result.add_type(atomic.clone());
1367 } else if placeholder(atomic) {
1368 result.add_type(replacement.clone());
1369 }
1370 }
1371 result
1372 }
1373
1374 pub fn possibly_undefined(mut self) -> Self {
1376 self.possibly_undefined = true;
1377 self
1378 }
1379
1380 pub fn from_docblock(mut self) -> Self {
1382 self.from_docblock = true;
1383 self
1384 }
1385
1386 pub fn falsy_stripped(mut self) -> Self {
1389 self.falsy_stripped = true;
1390 self
1391 }
1392
1393 pub fn possibly_absent_offset(mut self) -> Self {
1397 self.possibly_absent_offset = true;
1398 self
1399 }
1400}
1401
1402#[derive(Clone, PartialEq, Eq, Debug)]
1416enum ValueClass {
1417 Int,
1418 Float,
1419 True,
1420 False,
1421 String,
1422 Array,
1423 List,
1425 Object,
1426 Null,
1427 Top,
1430 LitInt(i64),
1433 LitFloat(i64, i64),
1435 LitString(Arc<str>),
1437}
1438
1439impl ValueClass {
1440 fn includes(&self, b: &Self) -> bool {
1445 self == b
1446 || matches!(
1447 (self, b),
1448 (Self::Top, _)
1449 | (Self::Int, Self::LitInt(_))
1450 | (Self::Float, Self::LitFloat(..))
1451 | (Self::String, Self::LitString(_))
1452 | (Self::Array, Self::List)
1453 )
1454 }
1455}
1456
1457fn value_classes(a: &Atomic) -> Vec<ValueClass> {
1463 use ValueClass::*;
1464 match a {
1465 Atomic::TInt
1468 | Atomic::TIntRange { .. }
1469 | Atomic::TPositiveInt
1470 | Atomic::TNegativeInt
1471 | Atomic::TNonNegativeInt => vec![Int],
1472 Atomic::TLiteralInt(v) => vec![LitInt(*v)],
1473 Atomic::TFloat | Atomic::TIntegralFloat => vec![Float],
1475 Atomic::TLiteralFloat(int_bits, frac_bits) => {
1476 vec![LitFloat(*int_bits, *frac_bits)]
1477 }
1478 Atomic::TBool => vec![True, False],
1480 Atomic::TTrue => vec![True],
1481 Atomic::TFalse => vec![False],
1482 Atomic::TString
1484 | Atomic::TNonEmptyString
1485 | Atomic::TNumericString
1486 | Atomic::TClassString(_)
1487 | Atomic::TInterfaceString(_)
1488 | Atomic::TEnumString
1489 | Atomic::TTraitString
1490 | Atomic::TCallableString => vec![String],
1491 Atomic::TLiteralString(s) => vec![LitString(s.clone())],
1492 Atomic::TArray { .. }
1494 | Atomic::TNonEmptyArray { .. }
1495 | Atomic::TKeyedArray { is_list: false, .. } => vec![Array],
1496 Atomic::TList { .. }
1497 | Atomic::TNonEmptyList { .. }
1498 | Atomic::TKeyedArray { is_list: true, .. } => vec![List],
1499 Atomic::TObject
1501 | Atomic::TNamedObject { .. }
1502 | Atomic::TStaticObject { .. }
1503 | Atomic::TSelf { .. }
1504 | Atomic::TParent { .. }
1505 | Atomic::TClosure { .. }
1506 | Atomic::TLiteralEnumCase { .. } => vec![Object],
1507 Atomic::TNull => vec![Null],
1510 Atomic::TVoid => vec![Top],
1511 Atomic::TMixed => vec![Top],
1513 Atomic::TScalar => vec![Int, Float, True, False, String],
1514 Atomic::TNumeric => vec![Int, Float],
1517 Atomic::TCallable { .. }
1519 | Atomic::TNever
1520 | Atomic::TTemplateParam { .. }
1521 | Atomic::TKeyOf { .. }
1522 | Atomic::TValueOf { .. }
1523 | Atomic::TConditional { .. }
1524 | Atomic::TIntersection { .. } => Vec::new(),
1525 }
1526}
1527
1528fn subject_is_decidable(subject: &Atomic) -> bool {
1536 matches!(
1537 subject,
1538 Atomic::TNull
1539 | Atomic::TTrue
1540 | Atomic::TFalse
1541 | Atomic::TBool
1542 | Atomic::TString
1543 | Atomic::TInt
1544 | Atomic::TFloat
1545 | Atomic::TArray { .. }
1546 | Atomic::TList { .. }
1547 | Atomic::TObject
1548 | Atomic::TMixed
1549 | Atomic::TScalar
1550 )
1551}
1552
1553fn resolve_conditional_branch(
1575 subject: &Atomic,
1576 arg_ty: &Type,
1577 if_true: &Type,
1578 if_false: &Type,
1579) -> Option<Type> {
1580 if !subject_is_decidable(subject) {
1581 return None;
1582 }
1583 if arg_ty.types.is_empty() {
1584 return None;
1585 }
1586 let subject_classes = value_classes(subject);
1587 let arg_classes: Vec<ValueClass> = arg_ty.types.iter().flat_map(value_classes).collect();
1588 if arg_classes.is_empty() {
1589 return None;
1591 }
1592 let all_match = arg_classes
1593 .iter()
1594 .all(|c| subject_classes.iter().any(|s| s.includes(c)));
1595 let any_overlap = arg_classes.iter().any(|c| {
1596 subject_classes
1597 .iter()
1598 .any(|s| s.includes(c) || c.includes(s))
1599 });
1600 if all_match {
1601 Some(if_true.clone())
1602 } else if !any_overlap {
1603 Some(if_false.clone())
1604 } else {
1605 None
1606 }
1607}
1608
1609fn atomic_may_contain_templates(atomic: &Atomic) -> bool {
1617 match atomic {
1618 Atomic::TNamedObject { fqcn, type_params } => {
1622 !type_params.is_empty() || !fqcn.contains('\\')
1623 }
1624 Atomic::TTemplateParam { .. }
1625 | Atomic::TKeyOf { .. }
1626 | Atomic::TValueOf { .. }
1627 | Atomic::TArray { .. }
1628 | Atomic::TList { .. }
1629 | Atomic::TNonEmptyArray { .. }
1630 | Atomic::TNonEmptyList { .. }
1631 | Atomic::TKeyedArray { .. }
1632 | Atomic::TCallable { .. }
1633 | Atomic::TClosure { .. }
1634 | Atomic::TConditional { .. }
1635 | Atomic::TIntersection { .. }
1636 | Atomic::TClassString(Some(_))
1637 | Atomic::TInterfaceString(Some(_)) => true,
1638 _ => false,
1639 }
1640}
1641
1642fn eval_key_of_type(t: &Type) -> Option<Type> {
1643 let mut result = Type::empty();
1644 for atomic in &t.types {
1645 match atomic {
1646 Atomic::TArray { key, .. } | Atomic::TNonEmptyArray { key, .. } => {
1647 for k in &key.types {
1648 result.add_type(k.clone());
1649 }
1650 }
1651 Atomic::TList { .. } | Atomic::TNonEmptyList { .. } => {
1652 result.add_type(Atomic::TInt);
1653 }
1654 Atomic::TKeyedArray { properties, .. } => {
1655 for key in properties.keys() {
1656 match key {
1657 crate::atomic::ArrayKey::Int(n) => result.add_type(Atomic::TLiteralInt(*n)),
1658 crate::atomic::ArrayKey::String(s) => {
1659 result.add_type(Atomic::TLiteralString(s.clone()))
1660 }
1661 }
1662 }
1663 }
1664 _ => return None,
1665 }
1666 }
1667 (!result.types.is_empty()).then_some(result)
1668}
1669
1670fn eval_value_of_type(t: &Type) -> Option<Type> {
1671 let mut result = Type::empty();
1672 for atomic in &t.types {
1673 match atomic {
1674 Atomic::TArray { value, .. }
1675 | Atomic::TNonEmptyArray { value, .. }
1676 | Atomic::TList { value }
1677 | Atomic::TNonEmptyList { value } => {
1678 result.merge_with(value);
1679 }
1680 Atomic::TKeyedArray { properties, .. } => {
1681 for prop in properties.values() {
1682 result.merge_with(&prop.ty);
1683 }
1684 }
1685 _ => return None,
1686 }
1687 }
1688 (!result.types.is_empty()).then_some(result)
1689}
1690
1691fn substitute_in_fn_param(
1692 p: &crate::atomic::FnParam,
1693 bindings: &FxHashMap<Name, Type>,
1694) -> crate::atomic::FnParam {
1695 crate::atomic::FnParam {
1696 name: p.name,
1697 ty: p.ty.as_ref().map(|t| {
1698 let u = t.to_union();
1699 let substituted = u.substitute_templates(bindings);
1700 crate::compact::SimpleType::from_union(substituted)
1701 }),
1702 out_ty: p.out_ty.as_ref().map(|t| {
1703 let u = t.to_union();
1704 let substituted = u.substitute_templates(bindings);
1705 crate::compact::SimpleType::from_union(substituted)
1706 }),
1707 default: p.default.as_ref().map(|d| {
1708 let u = d.to_union();
1709 let substituted = u.substitute_templates(bindings);
1710 crate::compact::SimpleType::from_union(substituted)
1711 }),
1712 is_variadic: p.is_variadic,
1713 is_byref: p.is_byref,
1714 is_optional: p.is_optional,
1715 }
1716}
1717
1718pub fn atomic_subtype(sub: &Atomic, sup: &Atomic) -> bool {
1724 if sub == sup {
1725 return true;
1726 }
1727 match (sub, sup) {
1728 (Atomic::TNever, _) => true,
1730 (_, Atomic::TMixed) => true,
1732 (Atomic::TMixed, _) => true,
1733 (_, Atomic::TTemplateParam { as_type, .. }) => {
1738 as_type.is_mixed() || as_type.types.iter().any(|b| atomic_subtype(sub, b))
1739 }
1740
1741 (Atomic::TLiteralInt(_), Atomic::TInt) => true,
1743 (Atomic::TLiteralInt(_), Atomic::TNumeric) => true,
1744 (Atomic::TLiteralInt(_), Atomic::TScalar) => true,
1745 (Atomic::TLiteralInt(n), Atomic::TPositiveInt) => *n > 0,
1746 (Atomic::TLiteralInt(n), Atomic::TNonNegativeInt) => *n >= 0,
1747 (Atomic::TLiteralInt(n), Atomic::TNegativeInt) => *n < 0,
1748 (Atomic::TPositiveInt, Atomic::TInt) => true,
1749 (Atomic::TPositiveInt, Atomic::TNonNegativeInt) => true,
1750 (Atomic::TPositiveInt, Atomic::TNumeric) => true,
1751 (Atomic::TPositiveInt, Atomic::TScalar) => true,
1752 (Atomic::TNegativeInt, Atomic::TInt) => true,
1753 (Atomic::TNegativeInt, Atomic::TNumeric) => true,
1754 (Atomic::TNegativeInt, Atomic::TScalar) => true,
1755 (Atomic::TNonNegativeInt, Atomic::TInt) => true,
1756 (Atomic::TNonNegativeInt, Atomic::TNumeric) => true,
1757 (Atomic::TNonNegativeInt, Atomic::TScalar) => true,
1758 (Atomic::TIntRange { .. }, Atomic::TInt) => true,
1759 (Atomic::TIntRange { .. }, Atomic::TNumeric) => true,
1760 (Atomic::TIntRange { .. }, Atomic::TScalar) => true,
1761 (Atomic::TPositiveInt, Atomic::TIntRange { min, max }) => {
1763 max.is_none() && min.is_none_or(|m| m <= 1)
1764 }
1765 (Atomic::TNegativeInt, Atomic::TIntRange { min, max }) => {
1767 min.is_none() && max.is_none_or(|m| m >= -1)
1768 }
1769 (Atomic::TNonNegativeInt, Atomic::TIntRange { min, max }) => {
1771 max.is_none() && min.is_none_or(|m| m <= 0)
1772 }
1773 (Atomic::TIntRange { min: sub_min, .. }, Atomic::TPositiveInt) => {
1775 sub_min.is_some_and(|lo| lo >= 1)
1776 }
1777 (Atomic::TIntRange { min: sub_min, .. }, Atomic::TNonNegativeInt) => {
1778 sub_min.is_some_and(|lo| lo >= 0)
1779 }
1780 (Atomic::TIntRange { max: sub_max, .. }, Atomic::TNegativeInt) => {
1781 sub_max.is_some_and(|hi| hi <= -1)
1782 }
1783 (
1785 Atomic::TIntRange {
1786 min: sub_min,
1787 max: sub_max,
1788 },
1789 Atomic::TIntRange {
1790 min: sup_min,
1791 max: sup_max,
1792 },
1793 ) => {
1794 let lower_ok = match (sub_min, sup_min) {
1795 (_, None) => true,
1796 (None, Some(_)) => false,
1797 (Some(sl), Some(su)) => sl >= su,
1798 };
1799 let upper_ok = match (sub_max, sup_max) {
1800 (None, None) | (Some(_), None) => true,
1801 (None, Some(_)) => false,
1802 (Some(sl), Some(su)) => sl <= su,
1803 };
1804 lower_ok && upper_ok
1805 }
1806
1807 (Atomic::TLiteralFloat(..), Atomic::TFloat) => true,
1808 (Atomic::TLiteralFloat(..), Atomic::TNumeric) => true,
1809 (Atomic::TLiteralFloat(..), Atomic::TScalar) => true,
1810
1811 (Atomic::TLiteralString(s), Atomic::TString) => {
1812 let _ = s;
1813 true
1814 }
1815 (Atomic::TLiteralString(s), Atomic::TCallableString) => {
1816 let _ = s;
1817 true
1818 }
1819 (Atomic::TLiteralString(s), Atomic::TNonEmptyString) => !s.is_empty(),
1820 (Atomic::TLiteralString(s), Atomic::TNumericString) => s.parse::<f64>().is_ok(),
1821 (Atomic::TLiteralString(_), Atomic::TClassString(_)) => true,
1824 (Atomic::TLiteralString(_), Atomic::TInterfaceString(_)) => true,
1827 (Atomic::TLiteralString(_), Atomic::TScalar) => true,
1828 (Atomic::TNonEmptyString, Atomic::TString) => true,
1829 (Atomic::TCallableString, Atomic::TString) => true,
1830 (Atomic::TNumericString, Atomic::TNonEmptyString) => true,
1832 (Atomic::TNumericString, Atomic::TString) => true,
1833 (Atomic::TClassString(_), Atomic::TNonEmptyString) => true,
1837 (Atomic::TInterfaceString(_), Atomic::TNonEmptyString) => true,
1838 (Atomic::TCallableString, Atomic::TNonEmptyString) => true,
1839 (Atomic::TEnumString, Atomic::TNonEmptyString) => true,
1840 (Atomic::TTraitString, Atomic::TNonEmptyString) => true,
1841 (Atomic::TClassString(_), Atomic::TString) => true,
1842 (Atomic::TInterfaceString(_), Atomic::TString) => true,
1843 (Atomic::TInterfaceString(_), Atomic::TClassString(None)) => true,
1848 (Atomic::TInterfaceString(Some(a)), Atomic::TClassString(Some(b))) => a == b,
1849 (Atomic::TEnumString, Atomic::TString) => true,
1850 (Atomic::TTraitString, Atomic::TString) => true,
1851
1852 (Atomic::TTrue, Atomic::TBool) => true,
1853 (Atomic::TFalse, Atomic::TBool) => true,
1854
1855 (Atomic::TInt, Atomic::TNumeric) => true,
1856 (Atomic::TFloat, Atomic::TNumeric) => true,
1857 (Atomic::TIntegralFloat, Atomic::TNumeric) => true,
1858 (Atomic::TNumericString, Atomic::TNumeric) => true,
1859
1860 (Atomic::TInt, Atomic::TScalar) => true,
1861 (Atomic::TFloat, Atomic::TScalar) => true,
1862 (Atomic::TIntegralFloat, Atomic::TScalar) => true,
1863 (Atomic::TString, Atomic::TScalar) => true,
1864 (Atomic::TBool, Atomic::TScalar) => true,
1865 (Atomic::TNumeric, Atomic::TScalar) => true,
1866 (Atomic::TTrue, Atomic::TScalar) => true,
1867 (Atomic::TFalse, Atomic::TScalar) => true,
1868 (Atomic::TNonEmptyString, Atomic::TScalar) => true,
1872 (Atomic::TNumericString, Atomic::TScalar) => true,
1873 (Atomic::TCallableString, Atomic::TScalar) => true,
1874 (Atomic::TClassString(_), Atomic::TScalar) => true,
1875 (Atomic::TInterfaceString(_), Atomic::TScalar) => true,
1876 (Atomic::TEnumString, Atomic::TScalar) => true,
1877 (Atomic::TTraitString, Atomic::TScalar) => true,
1878
1879 (Atomic::TNamedObject { .. }, Atomic::TObject) => true,
1881 (Atomic::TStaticObject { .. }, Atomic::TObject) => true,
1882 (Atomic::TSelf { .. }, Atomic::TObject) => true,
1883 (Atomic::TLiteralEnumCase { .. }, Atomic::TObject) => true,
1885 (Atomic::TSelf { fqcn: a }, Atomic::TNamedObject { fqcn: b, .. }) => a == b,
1887 (Atomic::TStaticObject { fqcn: a }, Atomic::TNamedObject { fqcn: b, .. }) => a == b,
1888 (Atomic::TNamedObject { fqcn: a, .. }, Atomic::TSelf { fqcn: b }) => a == b,
1890 (Atomic::TNamedObject { fqcn: a, .. }, Atomic::TStaticObject { fqcn: b }) => a == b,
1891 (Atomic::TLiteralEnumCase { enum_fqcn, .. }, Atomic::TNamedObject { fqcn, .. }) => {
1894 enum_fqcn == fqcn
1895 }
1896 (
1900 Atomic::TNamedObject {
1901 fqcn: sub_fqcn,
1902 type_params: sub_params,
1903 },
1904 Atomic::TNamedObject {
1905 fqcn: sup_fqcn,
1906 type_params: sup_params,
1907 },
1908 ) => {
1909 sub_fqcn == sup_fqcn
1910 && (sup_params.is_empty() || type_params_compatible(sub_params, sup_params))
1911 }
1912
1913 (Atomic::TIntegralFloat, Atomic::TFloat) => true,
1915
1916 (Atomic::TLiteralInt(_), Atomic::TFloat) => true,
1918 (Atomic::TPositiveInt, Atomic::TFloat) => true,
1919 (Atomic::TNegativeInt, Atomic::TFloat) => true,
1920 (Atomic::TNonNegativeInt, Atomic::TFloat) => true,
1921 (Atomic::TInt, Atomic::TFloat) => true,
1922 (Atomic::TIntRange { .. }, Atomic::TFloat) => true,
1923
1924 (Atomic::TLiteralInt(n), Atomic::TIntRange { min, max }) => {
1926 min.is_none_or(|lo| *n >= lo) && max.is_none_or(|hi| *n <= hi)
1927 }
1928
1929 (Atomic::TString, Atomic::TCallable { .. }) => true,
1931 (Atomic::TNonEmptyString, Atomic::TCallable { .. }) => true,
1932 (Atomic::TLiteralString(_), Atomic::TCallable { .. }) => true,
1933 (Atomic::TArray { .. }, Atomic::TCallable { .. }) => true,
1934 (Atomic::TNonEmptyArray { .. }, Atomic::TCallable { .. }) => true,
1935 (Atomic::TKeyedArray { .. }, Atomic::TCallable { .. }) => true,
1936
1937 (Atomic::TClosure { .. }, Atomic::TCallable { .. }) => true,
1939 (Atomic::TCallable { .. }, Atomic::TClosure { .. }) => true,
1941 (Atomic::TClosure { data: sub }, Atomic::TClosure { data: sup }) => {
1951 fn has_nominal_type(t: &Type) -> bool {
1952 t.types.iter().any(|a| {
1953 matches!(
1954 a,
1955 Atomic::TNamedObject { .. }
1956 | Atomic::TSelf { .. }
1957 | Atomic::TStaticObject { .. }
1958 | Atomic::TTemplateParam { .. }
1959 | Atomic::TClosure { .. }
1960 | Atomic::TCallable { .. }
1961 )
1962 })
1963 }
1964 let sub_required = sub
1965 .params
1966 .iter()
1967 .filter(|p| !p.is_optional && !p.is_variadic)
1968 .count();
1969 if sub_required > sup.params.len() {
1970 false
1971 } else {
1972 let params_ok = sup.params.iter().enumerate().all(|(i, sup_param)| {
1973 let Some(sub_param) = sub.params.get(i) else {
1974 return true;
1975 };
1976 if sub_param.is_optional || sub_param.is_variadic {
1977 return true;
1978 }
1979 let (Some(sub_ty), Some(sup_ty)) =
1980 (sub_param.ty.as_ref(), sup_param.ty.as_ref())
1981 else {
1982 return true;
1983 };
1984 let (sub_u, sup_u) = (sub_ty.to_union(), sup_ty.to_union());
1985 if has_nominal_type(&sub_u) || has_nominal_type(&sup_u) {
1986 return true;
1987 }
1988 sup_u.is_subtype_structural(&sub_u)
1991 });
1992 params_ok
1993 && (sub.return_type.is_mixed()
1994 || sup.return_type.is_mixed()
1995 || sup.return_type.is_void()
1999 || has_nominal_type(&sub.return_type)
2000 || has_nominal_type(&sup.return_type)
2001 || sub.return_type.is_subtype_structural(&sup.return_type))
2002 }
2003 }
2004 (Atomic::TCallable { .. }, Atomic::TCallable { .. }) => true,
2006 (Atomic::TClosure { .. }, Atomic::TNamedObject { fqcn, .. }) => {
2008 fqcn.as_ref().eq_ignore_ascii_case("closure")
2009 }
2010 (Atomic::TClosure { .. }, Atomic::TObject) => true,
2011 (Atomic::TNamedObject { fqcn, .. }, Atomic::TClosure { .. }) => {
2013 fqcn.as_ref().eq_ignore_ascii_case("closure")
2014 }
2015 (Atomic::TNamedObject { fqcn, .. }, Atomic::TCallable { .. }) => {
2017 fqcn.as_ref().eq_ignore_ascii_case("closure")
2018 }
2019
2020 (
2028 Atomic::TIntersection { parts: sub_parts },
2029 Atomic::TIntersection { parts: sup_parts },
2030 ) => sup_parts.iter().all(|sup_part| {
2031 sub_parts
2032 .iter()
2033 .any(|sub_part| sub_part.is_subtype_structural(sup_part))
2034 }),
2035
2036 (Atomic::TList { value }, Atomic::TArray { key, value: av }) => {
2038 Type::single(Atomic::TInt).is_subtype_structural(key) && value.is_subtype_structural(av)
2039 }
2040 (Atomic::TNonEmptyList { value }, Atomic::TArray { key, value: av }) => {
2041 Type::single(Atomic::TInt).is_subtype_structural(key) && value.is_subtype_structural(av)
2042 }
2043 (Atomic::TNonEmptyList { value }, Atomic::TNonEmptyArray { key, value: av }) => {
2044 Type::single(Atomic::TInt).is_subtype_structural(key) && value.is_subtype_structural(av)
2045 }
2046 (Atomic::TNonEmptyList { value }, Atomic::TList { value: lv }) => {
2047 value.is_subtype_structural(lv)
2048 }
2049 (Atomic::TArray { key, value: av }, Atomic::TList { value: lv }) => {
2051 matches!(key.types.as_slice(), [Atomic::TInt | Atomic::TMixed])
2052 && av.is_subtype_structural(lv)
2053 }
2054 (Atomic::TArray { key, value: av }, Atomic::TNonEmptyList { value: lv }) => {
2055 matches!(key.types.as_slice(), [Atomic::TInt | Atomic::TMixed])
2056 && av.is_subtype_structural(lv)
2057 }
2058 (Atomic::TNonEmptyArray { key, value: av }, Atomic::TList { value: lv }) => {
2059 matches!(key.types.as_slice(), [Atomic::TInt | Atomic::TMixed])
2060 && av.is_subtype_structural(lv)
2061 }
2062 (Atomic::TNonEmptyArray { key, value: av }, Atomic::TNonEmptyList { value: lv }) => {
2063 matches!(key.types.as_slice(), [Atomic::TInt | Atomic::TMixed])
2064 && av.is_subtype_structural(lv)
2065 }
2066 (Atomic::TList { value: v1 }, Atomic::TList { value: v2 }) => v1.is_subtype_structural(v2),
2068 (Atomic::TNonEmptyArray { key: k1, value: v1 }, Atomic::TArray { key: k2, value: v2 }) => {
2069 k1.is_subtype_structural(k2) && v1.is_subtype_structural(v2)
2070 }
2071
2072 (Atomic::TArray { key: k1, value: v1 }, Atomic::TArray { key: k2, value: v2 }) => {
2074 k1.is_subtype_structural(k2) && v1.is_subtype_structural(v2)
2075 }
2076
2077 (Atomic::TKeyedArray { properties, .. }, Atomic::TArray { key, value }) => {
2086 properties.iter().all(|(prop_key, prop)| {
2087 let key_atomic = match prop_key {
2088 crate::atomic::ArrayKey::String(s) => Atomic::TLiteralString(s.clone()),
2089 crate::atomic::ArrayKey::Int(n) => Atomic::TLiteralInt(*n),
2090 };
2091 if !Type::single(key_atomic).is_subtype_structural(key) {
2092 return false; }
2094 let has_named_obj = prop.ty.types.iter().any(|a| {
2096 matches!(
2097 a,
2098 Atomic::TNamedObject { .. }
2099 | Atomic::TSelf { .. }
2100 | Atomic::TStaticObject { .. }
2101 | Atomic::TClosure { .. }
2102 | Atomic::TTemplateParam { .. }
2103 )
2104 });
2105 has_named_obj || prop.ty.is_subtype_structural(value)
2106 })
2107 }
2108 (
2109 Atomic::TKeyedArray {
2110 properties,
2111 is_open,
2112 ..
2113 },
2114 Atomic::TNonEmptyArray { key, value },
2115 ) => {
2116 (*is_open || properties.iter().any(|(_, p)| !p.optional))
2117 && properties.iter().all(|(prop_key, prop)| {
2118 let key_atomic = match prop_key {
2119 crate::atomic::ArrayKey::String(s) => Atomic::TLiteralString(s.clone()),
2120 crate::atomic::ArrayKey::Int(n) => Atomic::TLiteralInt(*n),
2121 };
2122 if !Type::single(key_atomic).is_subtype_structural(key) {
2123 return false;
2124 }
2125 let has_named_obj = prop.ty.types.iter().any(|a| {
2126 matches!(
2127 a,
2128 Atomic::TNamedObject { .. }
2129 | Atomic::TSelf { .. }
2130 | Atomic::TStaticObject { .. }
2131 | Atomic::TClosure { .. }
2132 | Atomic::TTemplateParam { .. }
2133 )
2134 });
2135 has_named_obj || prop.ty.is_subtype_structural(value)
2136 })
2137 }
2138
2139 (
2141 Atomic::TKeyedArray {
2142 properties,
2143 is_list,
2144 ..
2145 },
2146 Atomic::TList { value: lv },
2147 ) => *is_list && properties.values().all(|p| p.ty.is_subtype_structural(lv)),
2148 (
2149 Atomic::TKeyedArray {
2150 properties,
2151 is_list,
2152 ..
2153 },
2154 Atomic::TNonEmptyList { value: lv },
2155 ) => {
2156 *is_list
2157 && !properties.is_empty()
2158 && properties.values().all(|p| p.ty.is_subtype_structural(lv))
2159 }
2160
2161 (
2166 Atomic::TKeyedArray {
2167 properties: sub_props,
2168 is_open: sub_open,
2169 ..
2170 },
2171 Atomic::TKeyedArray {
2172 properties: sup_props,
2173 is_open: sup_open,
2174 ..
2175 },
2176 ) => {
2177 let keys_satisfied = sup_props
2178 .iter()
2179 .all(|(key, sup_prop)| match sub_props.get(key) {
2180 Some(sub_prop) => {
2181 if !sup_prop.optional && sub_prop.optional {
2185 return false;
2186 }
2187 let has_named_obj = sup_prop.ty.types.iter().any(|a| {
2188 matches!(
2189 a,
2190 Atomic::TNamedObject { .. }
2191 | Atomic::TSelf { .. }
2192 | Atomic::TStaticObject { .. }
2193 | Atomic::TClosure { .. }
2194 | Atomic::TTemplateParam { .. }
2195 )
2196 });
2197 has_named_obj || sub_prop.ty.is_subtype_structural(&sup_prop.ty)
2198 }
2199 None => sup_prop.optional || *sub_open,
2200 });
2201 let no_undeclared_extras =
2202 *sup_open || sub_props.keys().all(|k| sup_props.contains_key(k));
2203 keys_satisfied && no_undeclared_extras
2204 }
2205 (
2210 Atomic::TKeyedArray {
2211 properties,
2212 is_open,
2213 ..
2214 },
2215 Atomic::TIntersection { parts },
2216 ) => parts.iter().all(|part| {
2217 part.types.iter().any(|part_atomic| match part_atomic {
2218 Atomic::TKeyedArray {
2219 properties: sup_props,
2220 is_open: sup_open,
2221 ..
2222 } => {
2223 let keys_satisfied =
2224 sup_props
2225 .iter()
2226 .all(|(key, sup_prop)| match properties.get(key) {
2227 Some(sub_prop) => {
2228 if !sup_prop.optional && sub_prop.optional {
2229 return false;
2230 }
2231 let has_named_obj = sup_prop.ty.types.iter().any(|a| {
2232 matches!(
2233 a,
2234 Atomic::TNamedObject { .. }
2235 | Atomic::TSelf { .. }
2236 | Atomic::TStaticObject { .. }
2237 | Atomic::TClosure { .. }
2238 | Atomic::TTemplateParam { .. }
2239 )
2240 });
2241 has_named_obj || sub_prop.ty.is_subtype_structural(&sup_prop.ty)
2242 }
2243 None => *is_open || sup_prop.optional,
2244 });
2245 let has_array_part = parts.iter().any(|part| {
2246 part.types
2247 .iter()
2248 .any(|t| matches!(t, Atomic::TArray { .. }))
2249 });
2250 let has_keyed_array_part = parts.iter().any(|part| {
2251 part.types
2252 .iter()
2253 .any(|t| matches!(t, Atomic::TKeyedArray { .. }))
2254 });
2255 let keys_allowed_by_some_part = if has_array_part {
2256 true
2257 } else if has_keyed_array_part {
2258 properties.keys().all(|k| {
2259 parts.iter().any(|part| {
2260 part.types.iter().any(|t| {
2261 if let Atomic::TKeyedArray {
2262 properties: part_props,
2263 ..
2264 } = t
2265 {
2266 part_props.contains_key(k)
2267 } else {
2268 false
2269 }
2270 })
2271 })
2272 })
2273 } else {
2274 true
2275 };
2276 let no_undeclared_extras = *sup_open || keys_allowed_by_some_part;
2277 keys_satisfied && no_undeclared_extras
2278 }
2279 Atomic::TArray { key, value } => properties.iter().all(|(prop_key, prop)| {
2280 let key_atomic = match prop_key {
2281 crate::atomic::ArrayKey::String(s) => Atomic::TLiteralString(s.clone()),
2282 crate::atomic::ArrayKey::Int(n) => Atomic::TLiteralInt(*n),
2283 };
2284 if !Type::single(key_atomic).is_subtype_structural(key) {
2285 return false;
2286 }
2287 let has_named_obj = prop.ty.types.iter().any(|a| {
2288 matches!(
2289 a,
2290 Atomic::TNamedObject { .. }
2291 | Atomic::TSelf { .. }
2292 | Atomic::TStaticObject { .. }
2293 | Atomic::TClosure { .. }
2294 | Atomic::TTemplateParam { .. }
2295 )
2296 });
2297 has_named_obj || prop.ty.is_subtype_structural(value)
2298 }),
2299 Atomic::TNamedObject { .. }
2300 | Atomic::TSelf { .. }
2301 | Atomic::TStaticObject { .. }
2302 | Atomic::TClosure { .. }
2303 | Atomic::TTemplateParam { .. } => true,
2304 _ => false,
2305 })
2306 }),
2307
2308 _ => false,
2309 }
2310}
2311
2312fn type_params_compatible(sub: &[Type], sup: &[Type]) -> bool {
2318 if sub.len() != sup.len() {
2319 return false;
2320 }
2321 sub.iter()
2322 .zip(sup.iter())
2323 .all(|(a, b)| a == b || (is_empty_array_literal(a) && is_array_like(b)))
2324}
2325
2326fn is_empty_array_literal(t: &Type) -> bool {
2329 !t.types.is_empty()
2330 && t.types.iter().all(
2331 |atom| matches!(atom, Atomic::TKeyedArray { properties, .. } if properties.is_empty()),
2332 )
2333}
2334
2335fn is_array_like(t: &Type) -> bool {
2337 !t.types.is_empty() && t.types.iter().all(|atom| atom.is_array())
2338}
2339
2340#[cfg(test)]
2345mod tests {
2346 use std::sync::Arc;
2347
2348 use super::*;
2349
2350 fn conditional(
2351 param_name: Option<Name>,
2352 subject: Type,
2353 if_true: Type,
2354 if_false: Type,
2355 ) -> Atomic {
2356 Atomic::TConditional {
2357 data: Box::new(crate::atomic::ConditionalData {
2358 param_name,
2359 subject,
2360 if_true,
2361 if_false,
2362 }),
2363 }
2364 }
2365
2366 #[test]
2367 fn single_is_single() {
2368 let u = Type::single(Atomic::TString);
2369 assert!(u.is_single());
2370 assert!(!u.is_nullable());
2371 }
2372
2373 #[test]
2374 fn nullable_has_null() {
2375 let u = Type::nullable(Atomic::TString);
2376 assert!(u.is_nullable());
2377 assert_eq!(u.types.len(), 2);
2378 }
2379
2380 #[test]
2381 fn add_type_deduplicates() {
2382 let mut u = Type::single(Atomic::TString);
2383 u.add_type(Atomic::TString);
2384 assert_eq!(u.types.len(), 1);
2385 }
2386
2387 #[test]
2388 fn array_key_is_int_string() {
2389 let k = Type::array_key();
2390 assert!(k.is_array_key());
2391 assert_eq!(k.types.len(), 2);
2392 }
2393
2394 #[test]
2395 fn is_array_key_false_for_plain_int() {
2396 assert!(!Type::int().is_array_key());
2397 }
2398
2399 #[test]
2400 fn is_array_key_false_for_mixed() {
2401 assert!(!Type::mixed().is_array_key());
2402 }
2403
2404 #[test]
2405 fn is_array_key_false_for_int_string_null() {
2406 let mut u = Type::array_key();
2407 u.add_type(Atomic::TNull);
2408 assert!(!u.is_array_key());
2409 }
2410
2411 #[test]
2412 fn add_type_literal_subsumed_by_base() {
2413 let mut u = Type::single(Atomic::TInt);
2414 u.add_type(Atomic::TLiteralInt(42));
2415 assert_eq!(u.types.len(), 1);
2416 assert!(matches!(u.types[0], Atomic::TInt));
2417 }
2418
2419 #[test]
2420 fn true_then_false_merges_to_bool() {
2421 let mut u = Type::single(Atomic::TTrue);
2422 u.add_type(Atomic::TFalse);
2423 assert_eq!(u.types.len(), 1);
2424 assert!(matches!(u.types[0], Atomic::TBool));
2425 }
2426
2427 #[test]
2428 fn false_then_true_merges_to_bool() {
2429 let mut u = Type::single(Atomic::TFalse);
2430 u.add_type(Atomic::TTrue);
2431 assert_eq!(u.types.len(), 1);
2432 assert!(matches!(u.types[0], Atomic::TBool));
2433 }
2434
2435 #[test]
2436 fn true_alone_stays_true() {
2437 let u = Type::single(Atomic::TTrue);
2438 assert_eq!(u.types.len(), 1);
2439 assert!(matches!(u.types[0], Atomic::TTrue));
2440 }
2441
2442 #[test]
2443 fn true_false_merge_preserves_other_union_members() {
2444 let mut u = Type::single(Atomic::TTrue);
2445 u.add_type(Atomic::TNull);
2446 u.add_type(Atomic::TFalse);
2447 assert_eq!(u.types.len(), 2);
2448 assert!(u.contains(|t| matches!(t, Atomic::TBool)));
2449 assert!(u.contains(|t| matches!(t, Atomic::TNull)));
2450 }
2451
2452 #[test]
2453 fn add_type_base_widens_literals() {
2454 let mut u = Type::single(Atomic::TLiteralInt(1));
2455 u.add_type(Atomic::TLiteralInt(2));
2456 u.add_type(Atomic::TInt);
2457 assert_eq!(u.types.len(), 1);
2458 assert!(matches!(u.types[0], Atomic::TInt));
2459 }
2460
2461 #[test]
2462 fn mixed_subsumes_everything() {
2463 let mut u = Type::single(Atomic::TString);
2464 u.add_type(Atomic::TMixed);
2465 assert_eq!(u.types.len(), 1);
2466 assert!(u.is_mixed());
2467 }
2468
2469 #[test]
2470 fn remove_null() {
2471 let u = Type::nullable(Atomic::TString);
2472 let narrowed = u.remove_null();
2473 assert!(!narrowed.is_nullable());
2474 assert_eq!(narrowed.types.len(), 1);
2475 }
2476
2477 #[test]
2478 fn narrow_to_truthy_removes_null_false() {
2479 let mut u = Type::empty();
2480 u.add_type(Atomic::TString);
2481 u.add_type(Atomic::TNull);
2482 u.add_type(Atomic::TFalse);
2483 let truthy = u.narrow_to_truthy();
2484 assert!(!truthy.is_nullable());
2485 assert!(!truthy.contains(|t| matches!(t, Atomic::TFalse)));
2486 }
2487
2488 #[test]
2489 fn merge_combines_types() {
2490 let a = Type::single(Atomic::TString);
2491 let b = Type::single(Atomic::TInt);
2492 let merged = Type::merge(&a, &b);
2493 assert_eq!(merged.types.len(), 2);
2494 }
2495
2496 #[test]
2497 fn intersect_keeps_narrower_side_not_self() {
2498 let int_ty = Type::single(Atomic::TInt);
2502 let mut literals = Type::empty();
2503 literals.add_type(Atomic::TLiteralInt(1));
2504 literals.add_type(Atomic::TLiteralInt(2));
2505
2506 let narrowed = int_ty.intersect_with(&literals);
2507 assert_eq!(narrowed.types.len(), 2);
2508 assert!(narrowed.contains(|t| matches!(t, Atomic::TLiteralInt(1))));
2509 assert!(narrowed.contains(|t| matches!(t, Atomic::TLiteralInt(2))));
2510 assert!(!narrowed.contains(|t| matches!(t, Atomic::TInt)));
2511 }
2512
2513 #[test]
2514 fn subtype_literal_int_under_int() {
2515 let sub = Type::single(Atomic::TLiteralInt(5));
2516 let sup = Type::single(Atomic::TInt);
2517 assert!(sub.is_subtype_structural(&sup));
2518 }
2519
2520 #[test]
2521 fn subtype_never_is_bottom() {
2522 let never = Type::never();
2523 let string = Type::single(Atomic::TString);
2524 assert!(never.is_subtype_structural(&string));
2525 }
2526
2527 #[test]
2528 fn subtype_everything_under_mixed() {
2529 let string = Type::single(Atomic::TString);
2530 let mixed = Type::mixed();
2531 assert!(string.is_subtype_structural(&mixed));
2532 }
2533
2534 #[test]
2535 fn subtype_enum_case_under_own_enum() {
2536 let sub = Type::single(Atomic::TLiteralEnumCase {
2537 enum_fqcn: Name::new("RoundingMode"),
2538 case_name: Name::new("Unnecessary"),
2539 });
2540 let sup = Type::single(Atomic::TNamedObject {
2541 fqcn: Name::new("RoundingMode"),
2542 type_params: empty_type_params(),
2543 });
2544 assert!(sub.is_subtype_structural(&sup));
2545 }
2546
2547 #[test]
2548 fn enum_case_not_subtype_of_unrelated_enum() {
2549 let sub = Type::single(Atomic::TLiteralEnumCase {
2550 enum_fqcn: Name::new("RoundingMode"),
2551 case_name: Name::new("Unnecessary"),
2552 });
2553 let sup = Type::single(Atomic::TNamedObject {
2554 fqcn: Name::new("Suit"),
2555 type_params: empty_type_params(),
2556 });
2557 assert!(!sub.is_subtype_structural(&sup));
2558 }
2559
2560 #[test]
2561 fn subtype_enum_case_under_bare_object() {
2562 let sub = Type::single(Atomic::TLiteralEnumCase {
2563 enum_fqcn: Name::new("RoundingMode"),
2564 case_name: Name::new("Unnecessary"),
2565 });
2566 let sup = Type::single(Atomic::TObject);
2567 assert!(sub.is_subtype_structural(&sup));
2568 }
2569
2570 #[test]
2571 fn template_substitution() {
2572 let mut bindings = FxHashMap::default();
2573 bindings.insert(Name::new("T"), Type::single(Atomic::TString));
2574
2575 let tmpl = Type::single(Atomic::TTemplateParam {
2576 name: Name::new("T"),
2577 as_type: Box::new(Type::mixed()),
2578 defining_entity: Name::new("MyClass"),
2579 });
2580
2581 let resolved = tmpl.substitute_templates(&bindings);
2582 assert_eq!(resolved.types.len(), 1);
2583 assert!(matches!(resolved.types[0], Atomic::TString));
2584 }
2585
2586 #[test]
2587 fn intersection_is_object() {
2588 let parts = vec![
2589 Type::single(Atomic::TNamedObject {
2590 fqcn: Name::new("Iterator"),
2591 type_params: empty_type_params(),
2592 }),
2593 Type::single(Atomic::TNamedObject {
2594 fqcn: Name::new("Countable"),
2595 type_params: empty_type_params(),
2596 }),
2597 ];
2598 let atomic = Atomic::TIntersection {
2599 parts: vec_to_type_params(parts),
2600 };
2601 assert!(atomic.is_object());
2602 assert!(!atomic.can_be_falsy());
2603 assert!(atomic.can_be_truthy());
2604 }
2605
2606 #[test]
2607 fn intersection_display_two_parts() {
2608 let parts = vec![
2609 Type::single(Atomic::TNamedObject {
2610 fqcn: Name::new("Iterator"),
2611 type_params: empty_type_params(),
2612 }),
2613 Type::single(Atomic::TNamedObject {
2614 fqcn: Name::new("Countable"),
2615 type_params: empty_type_params(),
2616 }),
2617 ];
2618 let u = Type::single(Atomic::TIntersection {
2619 parts: vec_to_type_params(parts),
2620 });
2621 assert_eq!(format!("{u}"), "Iterator&Countable");
2622 }
2623
2624 #[test]
2625 fn intersection_display_three_parts() {
2626 let parts = vec![
2627 Type::single(Atomic::TNamedObject {
2628 fqcn: Name::new("A"),
2629 type_params: empty_type_params(),
2630 }),
2631 Type::single(Atomic::TNamedObject {
2632 fqcn: Name::new("B"),
2633 type_params: empty_type_params(),
2634 }),
2635 Type::single(Atomic::TNamedObject {
2636 fqcn: Name::new("C"),
2637 type_params: empty_type_params(),
2638 }),
2639 ];
2640 let u = Type::single(Atomic::TIntersection {
2641 parts: vec_to_type_params(parts),
2642 });
2643 assert_eq!(format!("{u}"), "A&B&C");
2644 }
2645
2646 #[test]
2647 fn intersection_in_nullable_union_display() {
2648 let intersection = Atomic::TIntersection {
2649 parts: vec_to_type_params(vec![
2650 Type::single(Atomic::TNamedObject {
2651 fqcn: Name::new("Iterator"),
2652 type_params: empty_type_params(),
2653 }),
2654 Type::single(Atomic::TNamedObject {
2655 fqcn: Name::new("Countable"),
2656 type_params: empty_type_params(),
2657 }),
2658 ]),
2659 };
2660 let mut u = Type::single(intersection);
2661 u.add_type(Atomic::TNull);
2662 assert!(u.is_nullable());
2663 assert!(u.contains(|t| matches!(t, Atomic::TIntersection { .. })));
2664 }
2665
2666 fn t_param(name: &str) -> Type {
2669 Type::single(Atomic::TTemplateParam {
2670 name: Name::new(name),
2671 as_type: Box::new(Type::mixed()),
2672 defining_entity: Name::new("Fn"),
2673 })
2674 }
2675
2676 fn bindings_t_string() -> FxHashMap<Name, Type> {
2677 let mut b = FxHashMap::default();
2678 b.insert(Name::new("T"), Type::single(Atomic::TString));
2679 b
2680 }
2681
2682 #[test]
2683 fn substitute_non_empty_array_key_and_value() {
2684 let ty = Type::single(Atomic::TNonEmptyArray {
2685 key: Box::new(t_param("T")),
2686 value: Box::new(t_param("T")),
2687 });
2688 let result = ty.substitute_templates(&bindings_t_string());
2689 assert_eq!(result.types.len(), 1);
2690 let Atomic::TNonEmptyArray { key, value } = &result.types[0] else {
2691 panic!("expected TNonEmptyArray");
2692 };
2693 assert!(matches!(key.types[0], Atomic::TString));
2694 assert!(matches!(value.types[0], Atomic::TString));
2695 }
2696
2697 #[test]
2698 fn substitute_non_empty_list_value() {
2699 let ty = Type::single(Atomic::TNonEmptyList {
2700 value: Box::new(t_param("T")),
2701 });
2702 let result = ty.substitute_templates(&bindings_t_string());
2703 let Atomic::TNonEmptyList { value } = &result.types[0] else {
2704 panic!("expected TNonEmptyList");
2705 };
2706 assert!(matches!(value.types[0], Atomic::TString));
2707 }
2708
2709 #[test]
2710 fn substitute_keyed_array_property_types() {
2711 use crate::atomic::{ArrayKey, KeyedProperty};
2712 use indexmap::IndexMap;
2713 let mut props = IndexMap::new();
2714 props.insert(
2715 ArrayKey::String(Arc::from("name")),
2716 KeyedProperty {
2717 ty: t_param("T"),
2718 optional: false,
2719 },
2720 );
2721 props.insert(
2722 ArrayKey::String(Arc::from("tag")),
2723 KeyedProperty {
2724 ty: t_param("T"),
2725 optional: true,
2726 },
2727 );
2728 let ty = Type::single(Atomic::TKeyedArray {
2729 properties: Box::new(props),
2730 is_open: true,
2731 is_list: false,
2732 });
2733 let result = ty.substitute_templates(&bindings_t_string());
2734 let Atomic::TKeyedArray {
2735 properties,
2736 is_open,
2737 is_list,
2738 } = &result.types[0]
2739 else {
2740 panic!("expected TKeyedArray");
2741 };
2742 assert!(is_open);
2743 assert!(!is_list);
2744 assert!(matches!(
2745 properties[&ArrayKey::String(Arc::from("name"))].ty.types[0],
2746 Atomic::TString
2747 ));
2748 assert!(properties[&ArrayKey::String(Arc::from("tag"))].optional);
2749 assert!(matches!(
2750 properties[&ArrayKey::String(Arc::from("tag"))].ty.types[0],
2751 Atomic::TString
2752 ));
2753 }
2754
2755 #[test]
2756 fn substitute_callable_params_and_return() {
2757 use crate::atomic::FnParam;
2758 let ty = Type::single(Atomic::TCallable {
2759 params: Some(Box::new([FnParam {
2760 name: Name::new("x"),
2761 ty: Some(crate::compact::SimpleType::from_union(t_param("T"))),
2762 out_ty: None,
2763 default: None,
2764 is_variadic: false,
2765 is_byref: false,
2766 is_optional: false,
2767 }])),
2768 return_type: Some(Box::new(t_param("T"))),
2769 });
2770 let result = ty.substitute_templates(&bindings_t_string());
2771 let Atomic::TCallable {
2772 params,
2773 return_type,
2774 } = &result.types[0]
2775 else {
2776 panic!("expected TCallable");
2777 };
2778 let param_ty = params.as_ref().unwrap()[0].ty.as_ref().unwrap();
2779 let param_union = param_ty.to_union();
2780 assert!(matches!(param_union.types[0], Atomic::TString));
2781 let ret = return_type.as_ref().unwrap();
2782 assert!(matches!(ret.types[0], Atomic::TString));
2783 }
2784
2785 #[test]
2786 fn substitute_callable_bare_no_panic() {
2787 let ty = Type::single(Atomic::TCallable {
2789 params: None,
2790 return_type: None,
2791 });
2792 let result = ty.substitute_templates(&bindings_t_string());
2793 assert!(matches!(
2794 result.types[0],
2795 Atomic::TCallable {
2796 params: None,
2797 return_type: None
2798 }
2799 ));
2800 }
2801
2802 #[test]
2803 fn substitute_closure_params_return_and_this() {
2804 use crate::atomic::FnParam;
2805 let ty = Type::single(Atomic::TClosure {
2806 data: Box::new(crate::atomic::ClosureData {
2807 params: Box::new([FnParam {
2808 name: Name::new("a"),
2809 ty: Some(crate::compact::SimpleType::from_union(t_param("T"))),
2810 out_ty: None,
2811 default: Some(crate::compact::SimpleType::from_union(t_param("T"))),
2812 is_variadic: true,
2813 is_byref: true,
2814 is_optional: true,
2815 }]),
2816 return_type: t_param("T"),
2817 this_type: Some(t_param("T")),
2818 }),
2819 });
2820 let result = ty.substitute_templates(&bindings_t_string());
2821 let Atomic::TClosure { data } = &result.types[0] else {
2822 panic!("expected TClosure");
2823 };
2824 let (params, return_type, this_type) = (&data.params, &data.return_type, &data.this_type);
2825 let p = ¶ms[0];
2826 let ty_union = p.ty.as_ref().unwrap().to_union();
2827 let default_union = p.default.as_ref().unwrap().to_union();
2828 assert!(matches!(ty_union.types[0], Atomic::TString));
2829 assert!(matches!(default_union.types[0], Atomic::TString));
2830 assert!(p.is_variadic);
2832 assert!(p.is_byref);
2833 assert!(p.is_optional);
2834 assert!(matches!(return_type.types[0], Atomic::TString));
2835 assert!(matches!(
2836 this_type.as_ref().unwrap().types[0],
2837 Atomic::TString
2838 ));
2839 }
2840
2841 #[test]
2842 fn substitute_conditional_all_branches() {
2843 let ty = Type::single(conditional(
2844 None,
2845 t_param("T"),
2846 t_param("T"),
2847 Type::single(Atomic::TInt),
2848 ));
2849 let result = ty.substitute_templates(&bindings_t_string());
2850 let Atomic::TConditional { data } = &result.types[0] else {
2851 panic!("expected TConditional");
2852 };
2853 let (subject, if_true, if_false) = (&data.subject, &data.if_true, &data.if_false);
2854 assert!(matches!(subject.types[0], Atomic::TString));
2855 assert!(matches!(if_true.types[0], Atomic::TString));
2856 assert!(matches!(if_false.types[0], Atomic::TInt));
2857 }
2858
2859 #[test]
2860 fn resolve_conditional_is_null_non_null_arg() {
2861 let ty = Type::single(conditional(
2862 Some(Name::new("x")),
2863 Type::single(Atomic::TNull),
2864 Type::single(Atomic::TInt),
2865 Type::single(Atomic::TString),
2866 ));
2867 let result = ty.resolve_conditional_returns(|name| {
2868 if name == "x" {
2869 Some(Type::single(Atomic::TString)) } else {
2871 None
2872 }
2873 });
2874 assert!(result.types.len() == 1);
2875 assert!(matches!(result.types[0], Atomic::TString));
2876 }
2877
2878 #[test]
2879 fn resolve_conditional_is_null_null_arg() {
2880 let ty = Type::single(conditional(
2881 Some(Name::new("x")),
2882 Type::single(Atomic::TNull),
2883 Type::single(Atomic::TInt),
2884 Type::single(Atomic::TString),
2885 ));
2886 let result = ty.resolve_conditional_returns(|name| {
2887 if name == "x" {
2888 Some(Type::single(Atomic::TNull)) } else {
2890 None
2891 }
2892 });
2893 assert!(result.types.len() == 1);
2894 assert!(matches!(result.types[0], Atomic::TInt));
2895 }
2896
2897 #[test]
2898 fn resolve_conditional_is_null_nullable_arg_widens_to_branch_union() {
2899 let mut nullable_str = Type::single(Atomic::TString);
2900 nullable_str.add_type(Atomic::TNull);
2901 let ty = Type::single(conditional(
2902 Some(Name::new("x")),
2903 Type::single(Atomic::TNull),
2904 Type::single(Atomic::TInt),
2905 Type::single(Atomic::TString),
2906 ));
2907 let result = ty.resolve_conditional_returns(|name| {
2908 if name == "x" {
2909 Some(nullable_str.clone())
2910 } else {
2911 None
2912 }
2913 });
2914 assert_eq!(result.types.len(), 2);
2916 assert!(result.types.iter().any(|t| matches!(t, Atomic::TInt)));
2917 assert!(result.types.iter().any(|t| matches!(t, Atomic::TString)));
2918 }
2919
2920 #[test]
2921 fn resolve_conditional_nested_widens_inner_branch() {
2922 let inner = Type::single(conditional(
2925 Some(Name::new("x")),
2926 Type::single(Atomic::TString),
2927 Type::single(Atomic::TString),
2928 Type::single(Atomic::TFloat),
2929 ));
2930 let ty = Type::single(conditional(
2931 Some(Name::new("x")),
2932 Type::single(Atomic::TNull),
2933 Type::single(Atomic::TInt),
2934 inner,
2935 ));
2936 let result = ty.resolve_conditional_returns(|_| None);
2938 assert!(
2939 result
2940 .types
2941 .iter()
2942 .all(|t| !matches!(t, Atomic::TConditional { .. })),
2943 "no TConditional should survive: {:?}",
2944 result.types
2945 );
2946 assert!(result.types.iter().any(|t| matches!(t, Atomic::TInt)));
2947 assert!(result.types.iter().any(|t| matches!(t, Atomic::TString)));
2948 assert!(result.types.iter().any(|t| matches!(t, Atomic::TFloat)));
2949 }
2950
2951 #[test]
2952 fn resolve_conditional_nested_resolves_inner_branch() {
2953 let inner = Type::single(conditional(
2957 Some(Name::new("x")),
2958 Type::single(Atomic::TString),
2959 Type::single(Atomic::TString),
2960 Type::single(Atomic::TFloat),
2961 ));
2962 let ty = Type::single(conditional(
2963 Some(Name::new("x")),
2964 Type::single(Atomic::TNull),
2965 Type::single(Atomic::TInt),
2966 inner,
2967 ));
2968 let result = ty.resolve_conditional_returns(|name| {
2970 if name == "x" {
2971 Some(Type::single(Atomic::TString))
2972 } else {
2973 None
2974 }
2975 });
2976 assert!(
2977 result
2978 .types
2979 .iter()
2980 .all(|t| !matches!(t, Atomic::TConditional { .. })),
2981 "no TConditional should survive: {:?}",
2982 result.types
2983 );
2984 assert_eq!(result.types.len(), 1);
2985 assert!(matches!(result.types[0], Atomic::TString));
2986 }
2987
2988 #[test]
2989 fn resolve_conditional_true_subject_bool_arg_widens() {
2990 let ty = Type::single(conditional(
2994 Some(Name::new("x")),
2995 Type::single(Atomic::TTrue),
2996 Type::single(Atomic::TInt),
2997 Type::single(Atomic::TString),
2998 ));
2999 let result = ty.resolve_conditional_returns(|name| {
3000 if name == "x" {
3001 Some(Type::single(Atomic::TBool))
3002 } else {
3003 None
3004 }
3005 });
3006 assert_eq!(result.types.len(), 2);
3007 assert!(result.contains(|t| matches!(t, Atomic::TInt)));
3008 assert!(result.contains(|t| matches!(t, Atomic::TString)));
3009 }
3010
3011 #[test]
3012 fn resolve_conditional_true_subject_mixed_arg_widens() {
3013 let ty = Type::single(conditional(
3016 Some(Name::new("x")),
3017 Type::single(Atomic::TTrue),
3018 Type::single(Atomic::TInt),
3019 Type::single(Atomic::TString),
3020 ));
3021 let result = ty.resolve_conditional_returns(|name| {
3022 if name == "x" {
3023 Some(Type::mixed())
3024 } else {
3025 None
3026 }
3027 });
3028 assert_eq!(result.types.len(), 2);
3029 assert!(result.contains(|t| matches!(t, Atomic::TInt)));
3030 assert!(result.contains(|t| matches!(t, Atomic::TString)));
3031 }
3032
3033 #[test]
3034 fn resolve_conditional_true_subject_literal_args() {
3035 let ty = Type::single(conditional(
3038 Some(Name::new("x")),
3039 Type::single(Atomic::TTrue),
3040 Type::single(Atomic::TInt),
3041 Type::single(Atomic::TString),
3042 ));
3043 let false_arg = ty.clone().resolve_conditional_returns(|name| {
3044 if name == "x" {
3045 Some(Type::single(Atomic::TFalse))
3046 } else {
3047 None
3048 }
3049 });
3050 assert_eq!(false_arg.types.len(), 1);
3051 assert!(matches!(false_arg.types[0], Atomic::TString));
3052
3053 let true_arg = ty.resolve_conditional_returns(|name| {
3054 if name == "x" {
3055 Some(Type::single(Atomic::TTrue))
3056 } else {
3057 None
3058 }
3059 });
3060 assert_eq!(true_arg.types.len(), 1);
3061 assert!(matches!(true_arg.types[0], Atomic::TInt));
3062 }
3063
3064 #[test]
3065 fn resolve_conditional_bool_subject_scalar_arg_widens() {
3066 let ty = Type::single(conditional(
3070 Some(Name::new("x")),
3071 Type::single(Atomic::TBool),
3072 Type::single(Atomic::TInt),
3073 Type::single(Atomic::TString),
3074 ));
3075 let result = ty.resolve_conditional_returns(|name| {
3076 if name == "x" {
3077 Some(Type::single(Atomic::TScalar))
3078 } else {
3079 None
3080 }
3081 });
3082 assert_eq!(result.types.len(), 2);
3083 assert!(result.contains(|t| matches!(t, Atomic::TInt)));
3084 assert!(result.contains(|t| matches!(t, Atomic::TString)));
3085 }
3086
3087 #[test]
3088 fn resolve_conditional_string_subject_bool_arg_false_branch() {
3089 let ty = Type::single(conditional(
3093 Some(Name::new("x")),
3094 Type::single(Atomic::TString),
3095 Type::single(Atomic::TInt),
3096 Type::single(Atomic::TBool),
3097 ));
3098 let result = ty.resolve_conditional_returns(|name| {
3099 if name == "x" {
3100 Some(Type::single(Atomic::TBool))
3101 } else {
3102 None
3103 }
3104 });
3105 assert_eq!(result.types.len(), 1);
3106 assert!(matches!(result.types[0], Atomic::TBool));
3107 }
3108
3109 #[test]
3110 fn resolve_conditional_list_subject_bare_array_arg_widens() {
3111 let ty = Type::single(conditional(
3114 Some(Name::new("x")),
3115 Type::single(Atomic::TList {
3116 value: Box::new(Type::mixed()),
3117 }),
3118 Type::single(Atomic::TInt),
3119 Type::single(Atomic::TString),
3120 ));
3121 let result = ty.resolve_conditional_returns(|name| {
3122 if name == "x" {
3123 Some(Type::single(Atomic::TArray {
3124 key: Box::new(Type::mixed()),
3125 value: Box::new(Type::mixed()),
3126 }))
3127 } else {
3128 None
3129 }
3130 });
3131 assert_eq!(result.types.len(), 2);
3132 assert!(result.contains(|t| matches!(t, Atomic::TInt)));
3133 assert!(result.contains(|t| matches!(t, Atomic::TString)));
3134 }
3135
3136 #[test]
3137 fn resolve_conditional_float_subject_int_literal_false_branch() {
3138 let ty = resolve_conditional_branch(
3141 &Atomic::TFloat,
3142 &Type::single(Atomic::TLiteralInt(42)),
3143 &Type::single(Atomic::TInt),
3144 &Type::single(Atomic::TString),
3145 );
3146 assert!(matches!(
3147 ty.as_ref(),
3148 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3149 ));
3150 }
3151
3152 #[test]
3153 fn resolve_conditional_int_subject_float_literal_false_branch() {
3154 let ty = resolve_conditional_branch(
3155 &Atomic::TInt,
3156 &Type::single(Atomic::TLiteralFloat(1, 0)),
3157 &Type::single(Atomic::TInt),
3158 &Type::single(Atomic::TString),
3159 );
3160 assert!(matches!(
3161 ty.as_ref(),
3162 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3163 ));
3164 }
3165
3166 #[test]
3167 fn resolve_conditional_float_subject_float_literal_then_branch() {
3168 let ty = resolve_conditional_branch(
3169 &Atomic::TFloat,
3170 &Type::single(Atomic::TLiteralFloat(1, 5)),
3171 &Type::single(Atomic::TInt),
3172 &Type::single(Atomic::TString),
3173 );
3174 assert!(matches!(
3175 ty.as_ref(),
3176 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3177 ));
3178 }
3179
3180 #[test]
3181 fn resolve_conditional_int_subject_int_literal_then_branch() {
3182 let ty = resolve_conditional_branch(
3183 &Atomic::TInt,
3184 &Type::single(Atomic::TLiteralInt(7)),
3185 &Type::single(Atomic::TInt),
3186 &Type::single(Atomic::TString),
3187 );
3188 assert!(matches!(
3189 ty.as_ref(),
3190 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3191 ));
3192 }
3193
3194 #[test]
3195 fn resolve_conditional_int_subject_float_arg_false_branch() {
3196 let ty = resolve_conditional_branch(
3199 &Atomic::TInt,
3200 &Type::single(Atomic::TFloat),
3201 &Type::single(Atomic::TInt),
3202 &Type::single(Atomic::TString),
3203 );
3204 assert!(matches!(
3205 ty.as_ref(),
3206 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3207 ));
3208 }
3209
3210 #[test]
3211 fn resolve_conditional_array_subject_string_arg_false_branch() {
3212 let ty = resolve_conditional_branch(
3213 &Atomic::TArray {
3214 key: Box::new(Type::mixed()),
3215 value: Box::new(Type::mixed()),
3216 },
3217 &Type::single(Atomic::TString),
3218 &Type::single(Atomic::TInt),
3219 &Type::single(Atomic::TString),
3220 );
3221 assert!(matches!(
3222 ty.as_ref(),
3223 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3224 ));
3225 }
3226
3227 #[test]
3228 fn resolve_conditional_array_subject_bool_arg_false_branch() {
3229 let ty = resolve_conditional_branch(
3230 &Atomic::TArray {
3231 key: Box::new(Type::mixed()),
3232 value: Box::new(Type::mixed()),
3233 },
3234 &Type::single(Atomic::TBool),
3235 &Type::single(Atomic::TInt),
3236 &Type::single(Atomic::TString),
3237 );
3238 assert!(matches!(
3239 ty.as_ref(),
3240 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3241 ));
3242 }
3243
3244 #[test]
3245 fn resolve_conditional_array_subject_mixed_arg_widens() {
3246 let ty = resolve_conditional_branch(
3250 &Atomic::TArray {
3251 key: Box::new(Type::mixed()),
3252 value: Box::new(Type::mixed()),
3253 },
3254 &Type::mixed(),
3255 &Type::single(Atomic::TInt),
3256 &Type::single(Atomic::TString),
3257 );
3258 assert!(ty.is_none());
3259 }
3260
3261 #[test]
3262 fn resolve_conditional_array_subject_list_arg_then_branch() {
3263 let ty = resolve_conditional_branch(
3266 &Atomic::TArray {
3267 key: Box::new(Type::mixed()),
3268 value: Box::new(Type::mixed()),
3269 },
3270 &Type::single(Atomic::TList {
3271 value: Box::new(Type::mixed()),
3272 }),
3273 &Type::single(Atomic::TInt),
3274 &Type::single(Atomic::TString),
3275 );
3276 assert!(matches!(
3277 ty.as_ref(),
3278 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3279 ));
3280 }
3281
3282 #[test]
3283 fn resolve_conditional_list_subject_keyed_list_arg_then_branch() {
3284 let ty = resolve_conditional_branch(
3286 &Atomic::TList {
3287 value: Box::new(Type::mixed()),
3288 },
3289 &Type::single(Atomic::TKeyedArray {
3290 properties: Box::default(),
3291 is_open: false,
3292 is_list: true,
3293 }),
3294 &Type::single(Atomic::TInt),
3295 &Type::single(Atomic::TString),
3296 );
3297 assert!(matches!(
3298 ty.as_ref(),
3299 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3300 ));
3301 }
3302
3303 #[test]
3304 fn resolve_conditional_list_subject_list_string_union_widens() {
3305 let ty = resolve_conditional_branch(
3309 &Atomic::TList {
3310 value: Box::new(Type::mixed()),
3311 },
3312 &Type::from_vec(vec![
3313 Atomic::TList {
3314 value: Box::new(Type::mixed()),
3315 },
3316 Atomic::TString,
3317 ]),
3318 &Type::single(Atomic::TInt),
3319 &Type::single(Atomic::TString),
3320 );
3321 assert!(ty.is_none());
3322 }
3323
3324 #[test]
3325 fn resolve_conditional_numeric_subject_widens() {
3326 let ty = resolve_conditional_branch(
3330 &Atomic::TNumeric,
3331 &Type::single(Atomic::TLiteralString("123".into())),
3332 &Type::single(Atomic::TInt),
3333 &Type::single(Atomic::TString),
3334 );
3335 assert!(ty.is_none());
3336 }
3337
3338 #[test]
3339 fn resolve_conditional_non_empty_string_subject_widens() {
3340 let ty = resolve_conditional_branch(
3343 &Atomic::TNonEmptyString,
3344 &Type::single(Atomic::TString),
3345 &Type::single(Atomic::TInt),
3346 &Type::single(Atomic::TString),
3347 );
3348 assert!(ty.is_none());
3349 }
3350
3351 #[test]
3352 fn resolve_conditional_template_arg_widens() {
3353 let ty = resolve_conditional_branch(
3356 &Atomic::TString,
3357 &t_param("T"),
3358 &Type::single(Atomic::TInt),
3359 &Type::single(Atomic::TString),
3360 );
3361 assert!(ty.is_none());
3362 }
3363
3364 #[test]
3365 fn resolve_conditional_mixed_subject_bool_arg_then_branch() {
3366 let ty = resolve_conditional_branch(
3369 &Atomic::TMixed,
3370 &Type::single(Atomic::TBool),
3371 &Type::single(Atomic::TInt),
3372 &Type::single(Atomic::TString),
3373 );
3374 assert!(matches!(
3375 ty.as_ref(),
3376 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3377 ));
3378 }
3379
3380 #[test]
3381 fn resolve_conditional_scalar_subject_null_arg_false_branch() {
3382 let ty = resolve_conditional_branch(
3385 &Atomic::TScalar,
3386 &Type::single(Atomic::TNull),
3387 &Type::single(Atomic::TInt),
3388 &Type::single(Atomic::TString),
3389 );
3390 assert!(matches!(
3391 ty.as_ref(),
3392 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3393 ));
3394 }
3395
3396 #[test]
3397 fn resolve_conditional_object_subject_named_arg_then_branch() {
3398 let ty = resolve_conditional_branch(
3400 &Atomic::TObject,
3401 &Type::single(Atomic::TNamedObject {
3402 fqcn: Name::new("Foo"),
3403 type_params: empty_type_params(),
3404 }),
3405 &Type::single(Atomic::TInt),
3406 &Type::single(Atomic::TString),
3407 );
3408 assert!(matches!(
3409 ty.as_ref(),
3410 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3411 ));
3412 }
3413
3414 #[test]
3415 fn resolve_conditional_named_subject_other_class_widens() {
3416 let ty = resolve_conditional_branch(
3420 &Atomic::TNamedObject {
3421 fqcn: Name::new("Foo"),
3422 type_params: empty_type_params(),
3423 },
3424 &Type::single(Atomic::TNamedObject {
3425 fqcn: Name::new("Bar"),
3426 type_params: empty_type_params(),
3427 }),
3428 &Type::single(Atomic::TInt),
3429 &Type::single(Atomic::TString),
3430 );
3431 assert!(ty.is_none());
3432 }
3433
3434 #[test]
3435 fn resolve_conditional_enum_case_subject_widens() {
3436 let ty = resolve_conditional_branch(
3439 &Atomic::TLiteralEnumCase {
3440 enum_fqcn: Name::new("RoundingMode"),
3441 case_name: Name::new("Unnecessary"),
3442 },
3443 &Type::single(Atomic::TInt),
3444 &Type::single(Atomic::TInt),
3445 &Type::single(Atomic::TString),
3446 );
3447 assert!(ty.is_none());
3448 }
3449
3450 #[test]
3451 fn resolve_conditional_null_subject_bool_arg_false_branch() {
3452 let ty = resolve_conditional_branch(
3454 &Atomic::TNull,
3455 &Type::single(Atomic::TBool),
3456 &Type::single(Atomic::TInt),
3457 &Type::single(Atomic::TString),
3458 );
3459 assert!(matches!(
3460 ty.as_ref(),
3461 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TString)
3462 ));
3463 }
3464
3465 #[test]
3466 fn resolve_conditional_bool_subject_true_arg_then_branch() {
3467 let ty = resolve_conditional_branch(
3470 &Atomic::TBool,
3471 &Type::single(Atomic::TTrue),
3472 &Type::single(Atomic::TInt),
3473 &Type::single(Atomic::TString),
3474 );
3475 assert!(matches!(
3476 ty.as_ref(),
3477 Some(t) if t.types.len() == 1 && matches!(t.types[0], Atomic::TInt)
3478 ));
3479 }
3480
3481 #[test]
3482 fn substitute_intersection_parts() {
3483 let ty = Type::single(Atomic::TIntersection {
3484 parts: vec_to_type_params(vec![
3485 Type::single(Atomic::TNamedObject {
3486 fqcn: Name::new("Countable"),
3487 type_params: empty_type_params(),
3488 }),
3489 t_param("T"),
3490 ]),
3491 });
3492 let result = ty.substitute_templates(&bindings_t_string());
3493 let Atomic::TIntersection { parts } = &result.types[0] else {
3494 panic!("expected TIntersection");
3495 };
3496 assert_eq!(parts.len(), 2);
3497 assert!(matches!(parts[0].types[0], Atomic::TNamedObject { .. }));
3498 assert!(matches!(parts[1].types[0], Atomic::TString));
3499 }
3500
3501 #[test]
3502 fn substitute_no_template_params_identity() {
3503 let ty = Type::single(Atomic::TInt);
3504 let result = ty.substitute_templates(&bindings_t_string());
3505 assert!(matches!(result.types[0], Atomic::TInt));
3506 }
3507}