1use std::collections::BTreeMap;
2use std::sync::Arc;
3use std::sync::LazyLock;
4
5use foldhash::HashSet;
6
7use mago_word::Word;
8use mago_word::WordSet;
9use mago_word::word;
10
11static ATOM_FALSE: LazyLock<Word> = LazyLock::new(|| word("false"));
12static ATOM_TRUE: LazyLock<Word> = LazyLock::new(|| word("true"));
13static ATOM_BOOL: LazyLock<Word> = LazyLock::new(|| word("bool"));
14static ATOM_VOID: LazyLock<Word> = LazyLock::new(|| word("void"));
15static ATOM_NULL: LazyLock<Word> = LazyLock::new(|| word("null"));
16static ATOM_STRING: LazyLock<Word> = LazyLock::new(|| word("string"));
17static ATOM_FLOAT: LazyLock<Word> = LazyLock::new(|| word("float"));
18static ATOM_INT: LazyLock<Word> = LazyLock::new(|| word("int"));
19static ATOM_MIXED: LazyLock<Word> = LazyLock::new(|| word("mixed"));
20static ATOM_SCALAR: LazyLock<Word> = LazyLock::new(|| word("scalar"));
21static ATOM_ARRAY_KEY: LazyLock<Word> = LazyLock::new(|| word("array-key"));
22static ATOM_NUMERIC: LazyLock<Word> = LazyLock::new(|| word("numeric"));
23static ATOM_NEVER: LazyLock<Word> = LazyLock::new(|| word("never"));
24
25use crate::metadata::CodebaseMetadata;
26use crate::symbol::SymbolKind;
27use crate::ttype::TType;
28use crate::ttype::atomic::TAtomic;
29use crate::ttype::atomic::array::TArray;
30use crate::ttype::atomic::array::key::ArrayKey;
31use crate::ttype::atomic::array::keyed::TKeyedArray;
32use crate::ttype::atomic::array::list::TList;
33use crate::ttype::atomic::mixed::TMixed;
34use crate::ttype::atomic::mixed::truthiness::TMixedTruthiness;
35use crate::ttype::atomic::object::TObject;
36use crate::ttype::atomic::object::named::TNamedObject;
37use crate::ttype::atomic::resource::TResource;
38use crate::ttype::atomic::scalar::TScalar;
39use crate::ttype::atomic::scalar::float::TFloat;
40use crate::ttype::atomic::scalar::int::TInteger;
41use crate::ttype::atomic::scalar::string::TString;
42use crate::ttype::atomic::scalar::string::TStringCasing;
43use crate::ttype::atomic::scalar::string::TStringLiteral;
44use crate::ttype::combination::CombinationFlags;
45use crate::ttype::combination::TypeCombination;
46use crate::ttype::combine_union_types;
47use crate::ttype::comparator::ComparisonResult;
48use crate::ttype::comparator::array_comparator::is_array_contained_by_array;
49use crate::ttype::comparator::object_comparator;
50use crate::ttype::comparator::union_comparator;
51use crate::ttype::template::variance::Variance;
52use crate::ttype::union::TUnion;
53use crate::utils::str_is_numeric;
54
55pub const DEFAULT_ARRAY_COMBINATION_THRESHOLD: u16 = 32;
62
63pub const DEFAULT_STRING_COMBINATION_THRESHOLD: u16 = 128;
69
70pub const DEFAULT_INTEGER_COMBINATION_THRESHOLD: u16 = 128;
76
77#[derive(Debug, Clone, Copy, PartialEq, Eq)]
79pub struct CombinerOptions {
80 pub overwrite_empty_array: bool,
82 pub array_combination_threshold: u16,
84 pub string_combination_threshold: u16,
86 pub integer_combination_threshold: u16,
88}
89
90impl Default for CombinerOptions {
91 fn default() -> Self {
92 Self {
93 overwrite_empty_array: false,
94 array_combination_threshold: DEFAULT_ARRAY_COMBINATION_THRESHOLD,
95 string_combination_threshold: DEFAULT_STRING_COMBINATION_THRESHOLD,
96 integer_combination_threshold: DEFAULT_INTEGER_COMBINATION_THRESHOLD,
97 }
98 }
99}
100
101impl CombinerOptions {
102 #[inline]
104 #[must_use]
105 pub fn with_overwrite_empty_array(mut self) -> Self {
106 self.overwrite_empty_array = true;
107 self
108 }
109
110 #[inline]
112 #[must_use]
113 pub fn with_array_combination_threshold(mut self, threshold: u16) -> Self {
114 self.array_combination_threshold = threshold;
115 self
116 }
117
118 #[inline]
120 #[must_use]
121 pub fn with_string_combination_threshold(mut self, threshold: u16) -> Self {
122 self.string_combination_threshold = threshold;
123 self
124 }
125
126 #[inline]
128 #[must_use]
129 pub fn with_integer_combination_threshold(mut self, threshold: u16) -> Self {
130 self.integer_combination_threshold = threshold;
131 self
132 }
133}
134
135pub fn combine(types: Vec<TAtomic>, codebase: &CodebaseMetadata, options: CombinerOptions) -> Vec<TAtomic> {
136 if types.is_empty() {
137 debug_assert!(false, "combine() received an empty Vec; this is a caller bug");
138
139 return vec![TAtomic::Never];
140 }
141
142 if types.len() == 1 {
143 return types;
144 }
145
146 let mut combination = TypeCombination::new();
147
148 for atomic in types {
149 if let TAtomic::Derived(derived) = atomic {
150 combination.derived_types.insert(derived);
151 continue;
152 }
153
154 scrape_type_properties(atomic, &mut combination, codebase, options);
155 }
156
157 combination.integers.sort_unstable();
158 combination.integers.dedup();
159 combination.literal_floats.sort_unstable();
160 combination.literal_floats.dedup();
161
162 finalize_sealed_arrays(&mut combination.sealed_arrays, codebase);
163
164 let is_falsy_mixed = combination.flags.falsy_mixed().unwrap_or(false);
165 let is_truthy_mixed = combination.flags.truthy_mixed().unwrap_or(false);
166 let is_nonnull_mixed = combination.flags.nonnull_mixed().unwrap_or(false);
167
168 if is_falsy_mixed
169 || is_nonnull_mixed
170 || combination.flags.contains(CombinationFlags::GENERIC_MIXED)
171 || is_truthy_mixed
172 {
173 return vec![TAtomic::Mixed(TMixed::new().with_is_non_null(is_nonnull_mixed).with_truthiness(
174 if is_truthy_mixed && !is_falsy_mixed {
175 TMixedTruthiness::Truthy
176 } else if is_falsy_mixed && !is_truthy_mixed {
177 TMixedTruthiness::Falsy
178 } else {
179 TMixedTruthiness::Undetermined
180 },
181 ))];
182 } else if combination.flags.contains(CombinationFlags::HAS_MIXED) {
183 return vec![TAtomic::Mixed(TMixed::new())];
184 }
185
186 if combination.value_types.len() > 1 {
189 combination.value_types.remove(&*ATOM_NEVER);
190 }
191
192 if combination.is_simple() {
193 if combination.value_types.contains_key(&*ATOM_FALSE) {
194 return vec![TAtomic::Scalar(TScalar::r#false())];
195 }
196
197 if combination.value_types.contains_key(&*ATOM_TRUE) {
198 return vec![TAtomic::Scalar(TScalar::r#true())];
199 }
200
201 return combination.value_types.into_values().collect();
202 }
203
204 if combination.value_types.remove(&*ATOM_VOID).is_some() {
205 combination.value_types.insert(*ATOM_NULL, TAtomic::Null);
206 }
207
208 if combination.value_types.contains_key(&*ATOM_FALSE) && combination.value_types.contains_key(&*ATOM_TRUE) {
209 combination.value_types.remove(&*ATOM_FALSE);
210 combination.value_types.remove(&*ATOM_TRUE);
211 combination.value_types.insert(*ATOM_BOOL, TAtomic::Scalar(TScalar::bool()));
212 }
213
214 let estimated_capacity = combination.derived_types.len()
215 + combination.integers.len().min(10)
216 + combination.literal_floats.len()
217 + combination.enum_names.len()
218 + combination.value_types.len()
219 + combination.sealed_arrays.len()
220 + 5;
221
222 let mut new_types = Vec::with_capacity(estimated_capacity);
223 for derived_type in combination.derived_types {
224 new_types.push(TAtomic::Derived(derived_type));
225 }
226
227 if combination.flags.contains(CombinationFlags::RESOURCE) {
228 new_types.push(TAtomic::Resource(TResource { closed: None }));
229 } else {
230 let open = combination.flags.contains(CombinationFlags::OPEN_RESOURCE);
231 let closed = combination.flags.contains(CombinationFlags::CLOSED_RESOURCE);
232 match (open, closed) {
233 (true, true) => {
234 new_types.push(TAtomic::Resource(TResource { closed: None }));
235 }
236 (true, false) => {
237 new_types.push(TAtomic::Resource(TResource { closed: Some(false) }));
238 }
239 (false, true) => {
240 new_types.push(TAtomic::Resource(TResource { closed: Some(true) }));
241 }
242 _ => {
243 }
245 }
246 }
247
248 let mut arrays = vec![];
249
250 if combination.flags.contains(CombinationFlags::HAS_KEYED_ARRAY) {
251 arrays.push(TArray::Keyed(TKeyedArray {
252 known_items: if combination.keyed_array_entries.is_empty() {
253 None
254 } else {
255 Some(combination.keyed_array_entries)
256 },
257 parameters: if let Some((k, v)) = combination.keyed_array_parameters {
258 Some((Arc::new(k), Arc::new(v)))
259 } else {
260 None
261 },
262 non_empty: combination.flags.contains(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED),
263 }));
264 }
265
266 if let Some(list_parameter) = combination.list_array_parameter {
267 arrays.push(TArray::List(TList {
268 known_elements: if combination.list_array_entries.is_empty() {
269 None
270 } else {
271 Some(combination.list_array_entries)
272 },
273 element_type: Arc::new(list_parameter),
274 non_empty: combination.flags.contains(CombinationFlags::LIST_ARRAY_ALWAYS_FILLED),
275 known_count: None,
276 }));
277 }
278
279 for array in combination.sealed_arrays {
280 arrays.push(array);
281 }
282
283 if arrays.is_empty() && combination.flags.contains(CombinationFlags::HAS_EMPTY_ARRAY) {
284 arrays.push(TArray::Keyed(TKeyedArray { known_items: None, parameters: None, non_empty: false }));
285 }
286
287 new_types.extend(arrays.into_iter().map(TAtomic::Array));
288
289 for (_, (generic_type, generic_type_parameters)) in combination.object_type_params {
290 let generic_object = TAtomic::Object(TObject::Named(
291 TNamedObject::new(generic_type)
292 .with_is_static(*combination.object_static.get(&generic_type).unwrap_or(&false))
293 .with_type_parameters(Some(generic_type_parameters)),
294 ));
295
296 new_types.push(generic_object);
297 }
298
299 new_types.extend(combination.literal_strings.into_iter().map(|s| TAtomic::Scalar(TScalar::literal_string(s))));
300
301 if combination.value_types.contains_key(&*ATOM_STRING)
302 && combination.value_types.contains_key(&*ATOM_FLOAT)
303 && combination.value_types.contains_key(&*ATOM_BOOL)
304 && combination.integers.iter().any(super::atomic::scalar::int::TInteger::is_unspecified)
305 {
306 combination.integers.clear();
307 combination.value_types.remove(&*ATOM_STRING);
308 combination.value_types.remove(&*ATOM_FLOAT);
309 combination.value_types.remove(&*ATOM_BOOL);
310
311 new_types.push(TAtomic::Scalar(TScalar::Generic));
312 }
313
314 new_types.extend(TInteger::combine(combination.integers));
315 new_types.extend(combination.literal_floats.into_iter().map(|f| TAtomic::Scalar(TScalar::literal_float(f.into()))));
316
317 for (enum_name, enum_case) in combination.enum_names {
318 if combination.value_types.contains_key(&enum_name) {
319 continue;
320 }
321
322 let enum_object = match enum_case {
323 Some(case) => TAtomic::Object(TObject::new_enum_case(enum_name, case)),
324 None => TAtomic::Object(TObject::new_enum(enum_name)),
325 };
326
327 combination.value_types.insert(enum_object.get_id(), enum_object);
328 }
329
330 let mut has_never = combination.value_types.contains_key(&*ATOM_NEVER);
331
332 let combination_value_type_count = combination.value_types.len();
333 let mixed_from_loop_isset = combination.flags.mixed_from_loop_isset().unwrap_or(false);
334
335 for (_, atomic) in combination.value_types {
336 let tc = usize::from(has_never);
337 if atomic.is_mixed()
338 && mixed_from_loop_isset
339 && (combination_value_type_count > (tc + 1) || new_types.len() > tc)
340 {
341 continue;
342 }
343
344 if (atomic.is_never() || atomic.is_templated_as_never())
345 && (combination_value_type_count > 1 || !new_types.is_empty())
346 {
347 has_never = true;
348 continue;
349 }
350
351 new_types.push(atomic);
352 }
353
354 if new_types.is_empty() {
355 debug_assert!(has_never, "combine(): empty result without a `never` atomic in the combination");
356
357 return vec![TAtomic::Never];
358 }
359
360 new_types
361}
362
363fn finalize_sealed_arrays(arrays: &mut Vec<TArray>, codebase: &CodebaseMetadata) {
364 if arrays.len() <= 1 {
365 return;
366 }
367
368 arrays.sort_unstable_by_key(|a| match a {
369 TArray::List(list) => list.known_elements.as_ref().map_or(0, std::collections::BTreeMap::len),
370 TArray::Keyed(keyed) => keyed.known_items.as_ref().map_or(0, std::collections::BTreeMap::len),
371 });
372
373 let mut keep = vec![true; arrays.len()];
374
375 for i in 0..arrays.len() {
376 if !keep[i] {
377 continue;
378 }
379
380 for j in (i + 1)..arrays.len() {
381 if !keep[j] {
382 continue;
383 }
384
385 if is_array_contained_by_array(codebase, &arrays[i], &arrays[j], false, &mut ComparisonResult::new()) {
386 keep[i] = false;
387 break;
388 }
389
390 if is_array_contained_by_array(codebase, &arrays[j], &arrays[i], false, &mut ComparisonResult::new()) {
391 keep[j] = false;
392 }
393 }
394 }
395
396 let mut write = 0;
397 for (read, item) in keep.iter().enumerate().take(arrays.len()) {
398 if *item {
399 if write != read {
400 arrays.swap(write, read);
401 }
402
403 write += 1;
404 }
405 }
406
407 arrays.truncate(write);
408}
409
410fn scrape_type_properties(
411 atomic: TAtomic,
412 combination: &mut TypeCombination,
413 codebase: &CodebaseMetadata,
414 options: CombinerOptions,
415) {
416 if combination.flags.contains(CombinationFlags::GENERIC_MIXED) {
417 return;
418 }
419
420 if let TAtomic::Mixed(mixed) = atomic {
421 if mixed.is_isset_from_loop() {
422 if combination.flags.contains(CombinationFlags::GENERIC_MIXED) {
423 return; }
425
426 if combination.flags.mixed_from_loop_isset().is_none() {
427 combination.flags.set_mixed_from_loop_isset(Some(true));
428 }
429
430 combination.value_types.insert(*ATOM_MIXED, atomic);
431
432 return;
433 }
434
435 combination.flags.insert(CombinationFlags::HAS_MIXED);
436
437 if mixed.is_vanilla() {
438 combination.flags.set_falsy_mixed(Some(false));
439 combination.flags.set_truthy_mixed(Some(false));
440 combination.flags.set_mixed_from_loop_isset(Some(false));
441 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
442
443 return;
444 }
445
446 if mixed.is_truthy() {
447 if combination.flags.contains(CombinationFlags::GENERIC_MIXED) {
448 return;
449 }
450
451 combination.flags.set_mixed_from_loop_isset(Some(false));
452
453 if combination.flags.falsy_mixed().unwrap_or(false) {
454 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
455 combination.flags.set_falsy_mixed(Some(false));
456 return;
457 }
458
459 if combination.flags.truthy_mixed().is_some() {
460 return;
461 }
462
463 let has_non_truthy = combination.value_types.values().any(|v| !v.is_truthy())
464 || combination.literal_strings.iter().any(|s| s.is_empty() || s.as_bytes() == b"0");
465
466 if has_non_truthy {
467 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
468 return;
469 }
470
471 combination.flags.set_truthy_mixed(Some(true));
472 } else {
473 combination.flags.set_truthy_mixed(Some(false));
474 }
475
476 if mixed.is_falsy() {
477 if combination.flags.contains(CombinationFlags::GENERIC_MIXED) {
478 return;
479 }
480
481 combination.flags.set_mixed_from_loop_isset(Some(false));
482
483 if combination.flags.truthy_mixed().unwrap_or(false) {
484 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
485 combination.flags.set_truthy_mixed(Some(false));
486 return;
487 }
488
489 if combination.flags.falsy_mixed().is_some() {
490 return;
491 }
492
493 let has_non_falsy = combination.value_types.values().any(|v| !v.is_falsy())
494 || combination.literal_strings.iter().any(|s| !s.is_empty() && s.as_bytes() != b"0");
495
496 if has_non_falsy {
497 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
498 return;
499 }
500
501 combination.flags.set_falsy_mixed(Some(true));
502 } else {
503 combination.flags.set_falsy_mixed(Some(false));
504 }
505
506 if mixed.is_non_null() {
507 if combination.flags.contains(CombinationFlags::GENERIC_MIXED) {
508 return;
509 }
510
511 combination.flags.set_mixed_from_loop_isset(Some(false));
512
513 if combination.value_types.contains_key(&*ATOM_NULL) {
514 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
515 return;
516 }
517
518 if combination.flags.falsy_mixed().unwrap_or(false) {
519 combination.flags.set_falsy_mixed(Some(false));
520 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
521 return;
522 }
523
524 if combination.flags.nonnull_mixed().is_some() {
525 return;
526 }
527
528 combination.flags.set_mixed_from_loop_isset(Some(false));
529 combination.flags.set_nonnull_mixed(Some(true));
530 } else {
531 combination.flags.set_nonnull_mixed(Some(false));
532 }
533
534 return;
535 }
536
537 if combination.flags.falsy_mixed().unwrap_or(false) {
538 if !atomic.is_falsy() {
539 combination.flags.set_falsy_mixed(Some(false));
540 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
541 }
542
543 return;
544 }
545
546 if combination.flags.truthy_mixed().unwrap_or(false) {
547 if !atomic.is_truthy() {
548 combination.flags.set_truthy_mixed(Some(false));
549 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
550 }
551
552 return;
553 }
554
555 if combination.flags.nonnull_mixed().unwrap_or(false) {
556 if atomic == TAtomic::Null {
557 combination.flags.set_nonnull_mixed(Some(false));
558 combination.flags.insert(CombinationFlags::GENERIC_MIXED);
559 }
560
561 return;
562 }
563
564 if combination.flags.contains(CombinationFlags::HAS_MIXED) {
565 return;
566 }
567
568 if matches!(&atomic, TAtomic::Scalar(TScalar::Bool(bool)) if !bool.is_general())
569 && combination.value_types.contains_key(&*ATOM_BOOL)
570 {
571 return;
572 }
573
574 if let TAtomic::Resource(TResource { closed }) = atomic {
575 match closed {
576 Some(closed) => {
577 if closed {
578 combination.flags.insert(CombinationFlags::CLOSED_RESOURCE);
579 } else {
580 combination.flags.insert(CombinationFlags::OPEN_RESOURCE);
581 }
582 }
583 None => {
584 combination.flags.insert(CombinationFlags::RESOURCE);
585 }
586 }
587
588 return;
589 }
590
591 if matches!(&atomic, TAtomic::Scalar(TScalar::Bool(bool)) if bool.is_general()) {
592 combination.value_types.remove(&*ATOM_FALSE);
593 combination.value_types.remove(&*ATOM_TRUE);
594 }
595
596 if let TAtomic::Array(array) = atomic {
597 if options.overwrite_empty_array && array.is_empty() {
598 combination.flags.insert(CombinationFlags::HAS_EMPTY_ARRAY);
599
600 return;
601 }
602
603 if !array.is_empty()
607 && array.is_sealed()
608 && combination.list_array_parameter.is_some()
609 && !combination.flags.contains(CombinationFlags::HAS_KEYED_ARRAY)
610 && combination.sealed_arrays.len() < options.array_combination_threshold as usize
611 {
612 combination.sealed_arrays.push(array);
613 return;
614 }
615
616 let mut sealed_arrays = vec![];
617 std::mem::swap(&mut sealed_arrays, &mut combination.sealed_arrays);
618 for array in std::iter::once(array).chain(sealed_arrays) {
619 match array {
620 TArray::List(TList { element_type, known_elements, non_empty, known_count: _ }) => {
621 if !non_empty {
622 combination.flags.remove(CombinationFlags::LIST_ARRAY_ALWAYS_FILLED);
623 }
624
625 if let Some(known_elements) = known_elements {
626 let mut has_defined_keys = false;
627
628 for (candidate_element_index, (candidate_optional, candidate_element_type)) in known_elements {
629 let existing_entry = combination.list_array_entries.get(&candidate_element_index);
630
631 let new_entry = if let Some((existing_optional, existing_type)) = existing_entry {
632 (
633 *existing_optional || candidate_optional,
634 combine_union_types(existing_type, &candidate_element_type, codebase, options),
635 )
636 } else {
637 (
638 candidate_optional,
639 if let Some(ref mut existing_value_parameter) = combination.list_array_parameter {
640 if !existing_value_parameter.is_never() {
641 *existing_value_parameter = combine_union_types(
642 existing_value_parameter,
643 &candidate_element_type,
644 codebase,
645 options,
646 );
647
648 if !candidate_optional {
649 has_defined_keys = true;
650 }
651
652 continue;
653 }
654
655 candidate_element_type
656 } else {
657 candidate_element_type
658 },
659 )
660 };
661
662 combination.list_array_entries.insert(candidate_element_index, new_entry);
663
664 if !candidate_optional {
665 has_defined_keys = true;
666 }
667 }
668
669 if !has_defined_keys {
670 combination.flags.remove(CombinationFlags::LIST_ARRAY_ALWAYS_FILLED);
671 }
672 } else if !options.overwrite_empty_array {
673 if element_type.is_never() {
674 for (pu, _) in combination.list_array_entries.values_mut() {
675 *pu = true;
676 }
677 } else {
678 for (_, entry_type) in combination.list_array_entries.values() {
679 if let Some(ref mut existing_value_param) = combination.list_array_parameter {
680 *existing_value_param =
681 combine_union_types(existing_value_param, entry_type, codebase, options);
682 }
683 }
684
685 combination.list_array_entries.clear();
686 }
687 }
688
689 combination.list_array_parameter =
690 if let Some(existing_type) = combination.list_array_parameter.as_ref() {
691 Some(combine_union_types(existing_type, &element_type, codebase, options))
692 } else {
693 Some((*element_type).clone())
694 };
695 }
696 TArray::Keyed(TKeyedArray { parameters, known_items, non_empty }) => {
697 let mut had_previous_keyed_array = combination.flags.contains(CombinationFlags::HAS_KEYED_ARRAY);
698 let sealed_budget_available = !combination.sealed_keyed_budget_exhausted
699 && combination.sealed_arrays.len() < options.array_combination_threshold as usize;
700
701 if !sealed_budget_available
702 && !combination.sealed_keyed_budget_exhausted
703 && !combination.sealed_arrays.is_empty()
704 {
705 flush_sealed_keyed_arrays_into_combination(combination, codebase, options);
706 combination.sealed_keyed_budget_exhausted = true;
707 had_previous_keyed_array = combination.flags.contains(CombinationFlags::HAS_KEYED_ARRAY);
708 }
709
710 if had_previous_keyed_array && sealed_budget_available {
711 let incoming_is_sealed = parameters.is_none();
712 let existing_is_sealed = combination.keyed_array_parameters.is_none();
713
714 if incoming_is_sealed && !existing_is_sealed && known_items.is_some() {
715 let known_items = widen_known_items_with_params(
716 known_items,
717 combination.keyed_array_parameters.as_ref(),
718 &combination.keyed_array_entries,
719 codebase,
720 options,
721 );
722
723 combination.sealed_arrays.push(TArray::Keyed(TKeyedArray {
724 known_items,
725 parameters,
726 non_empty,
727 }));
728
729 continue;
730 }
731
732 if !incoming_is_sealed && existing_is_sealed && !combination.keyed_array_entries.is_empty() {
733 let mut frozen_entries = std::mem::take(&mut combination.keyed_array_entries);
734 if let Some((key_param, value_param)) = parameters.as_ref() {
735 for (key, (_, entry_type)) in frozen_entries.iter_mut() {
736 if known_items.as_ref().is_some_and(|ki| ki.contains_key(key)) {
743 continue;
744 }
745
746 let key_type = TUnion::from_atomic(key.to_atomic());
747
748 if union_comparator::can_expression_types_be_identical(
749 codebase, &key_type, key_param, false, false,
750 ) {
751 *entry_type = combine_union_types(entry_type, value_param, codebase, options);
752 }
753 }
754 }
755
756 let frozen = TArray::Keyed(TKeyedArray {
757 known_items: Some(frozen_entries),
758 parameters: None,
759 non_empty: combination.flags.contains(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED),
760 });
761 combination.sealed_arrays.push(frozen);
762 combination.flags.remove(CombinationFlags::HAS_KEYED_ARRAY);
763 combination.flags.remove(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED);
764 combination.flags.insert(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED);
765 had_previous_keyed_array = false;
766 }
767
768 if incoming_is_sealed
769 && existing_is_sealed
770 && !combination.keyed_array_entries.is_empty()
771 && let Some(known_items_inner) = known_items.as_ref()
772 && combination.sealed_arrays.len() + 1 < options.array_combination_threshold as usize
773 && (!known_items_inner.keys().any(|k| combination.keyed_array_entries.contains_key(k))
774 || shapes_are_discriminated(
775 known_items_inner,
776 &combination.keyed_array_entries,
777 codebase,
778 ))
779 {
780 let frozen = TArray::Keyed(TKeyedArray {
781 known_items: Some(std::mem::take(&mut combination.keyed_array_entries)),
782 parameters: None,
783 non_empty: combination.flags.contains(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED),
784 });
785 combination.sealed_arrays.push(frozen);
786 combination.sealed_arrays.push(TArray::Keyed(TKeyedArray {
787 known_items,
788 parameters,
789 non_empty,
790 }));
791 combination.flags.remove(CombinationFlags::HAS_KEYED_ARRAY);
792 combination.flags.remove(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED);
793 combination.flags.insert(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED);
794
795 continue;
796 }
797 }
798
799 combination.flags.insert(CombinationFlags::HAS_KEYED_ARRAY);
800
801 if non_empty {
802 combination.flags.insert(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED);
803 } else {
804 combination.flags.remove(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED);
805
806 if parameters.is_none()
807 && known_items.as_ref().is_none_or(|items| items.is_empty())
808 && combination.list_array_parameter.is_some()
809 {
810 combination.flags.remove(CombinationFlags::LIST_ARRAY_ALWAYS_FILLED);
811 for (is_optional, _) in combination.list_array_entries.values_mut() {
812 *is_optional = true;
813 }
814
815 had_previous_keyed_array = false;
816 combination.flags.remove(CombinationFlags::HAS_KEYED_ARRAY);
817
818 continue;
819 }
820 }
821
822 if let Some(known_items) = known_items {
823 let has_existing_entries =
824 !combination.keyed_array_entries.is_empty() || had_previous_keyed_array;
825 let mut possibly_undefined_entries =
826 combination.keyed_array_entries.keys().copied().collect::<HashSet<_>>();
827
828 let mut has_defined_keys = false;
829
830 for (candidate_item_name, (cu, candidate_item_type)) in known_items {
831 if let Some((eu, existing_type)) =
832 combination.keyed_array_entries.get_mut(&candidate_item_name)
833 {
834 if cu {
835 *eu = true;
836 }
837 if &candidate_item_type != existing_type {
838 *existing_type =
839 combine_union_types(existing_type, &candidate_item_type, codebase, options);
840 }
841 } else {
842 let new_item_value_type =
843 if let Some((ref mut existing_key_param, ref mut existing_value_param)) =
844 combination.keyed_array_parameters
845 {
846 adjust_keyed_array_parameters(
847 existing_value_param,
848 &candidate_item_type,
849 codebase,
850 options,
851 &candidate_item_name,
852 existing_key_param,
853 );
854
855 continue;
856 } else {
857 let new_type = candidate_item_type.clone();
858 (has_existing_entries || cu, new_type)
859 };
860
861 combination.keyed_array_entries.insert(candidate_item_name, new_item_value_type);
862 }
863
864 possibly_undefined_entries.remove(&candidate_item_name);
865
866 if !cu {
867 has_defined_keys = true;
868 }
869 }
870
871 if !has_defined_keys {
872 combination.flags.remove(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED);
873 }
874
875 for possibly_undefined_type_key in possibly_undefined_entries {
876 let possibly_undefined_type =
877 combination.keyed_array_entries.get_mut(&possibly_undefined_type_key);
878 if let Some((pu, _)) = possibly_undefined_type {
879 *pu = true;
880 }
881 }
882 } else if !options.overwrite_empty_array {
883 if match ¶meters {
884 Some((_, value_param)) => value_param.is_never(),
885 None => true,
886 } {
887 for (tu, _) in combination.keyed_array_entries.values_mut() {
888 *tu = true;
889 }
890 } else {
891 for (key, (_, entry_type)) in &combination.keyed_array_entries {
892 if let Some((ref mut existing_key_param, ref mut existing_value_param)) =
893 combination.keyed_array_parameters
894 {
895 adjust_keyed_array_parameters(
896 existing_value_param,
897 entry_type,
898 codebase,
899 options,
900 key,
901 existing_key_param,
902 );
903 }
904 }
905
906 combination.keyed_array_entries.clear();
907 }
908 }
909
910 combination.keyed_array_parameters = match (&combination.keyed_array_parameters, parameters) {
911 (None, None) => None,
912 (Some(existing_types), None) => Some(existing_types.clone()),
913 (None, Some(params)) => Some(((*params.0).clone(), (*params.1).clone())),
914 (Some(existing_types), Some(params)) => Some((
915 combine_union_types(&existing_types.0, ¶ms.0, codebase, options),
916 combine_union_types(&existing_types.1, ¶ms.1, codebase, options),
917 )),
918 };
919 }
920 }
921 }
922
923 return;
924 }
925
926 if atomic == TAtomic::Object(TObject::Any) {
929 combination.flags.insert(CombinationFlags::HAS_OBJECT_TOP_TYPE);
930 combination.value_types.retain(|_, t| !matches!(t, TAtomic::Object(TObject::Named(_))));
931 combination.value_types.insert(atomic.get_id(), atomic);
932
933 return;
934 }
935
936 if let TAtomic::Object(TObject::Named(named_object)) = &atomic {
937 if let Some(object_static) = combination.object_static.get(&named_object.get_name()) {
938 if *object_static && !named_object.is_static {
939 combination.object_static.insert(named_object.get_name(), false);
940 }
941 } else {
942 combination.object_static.insert(named_object.get_name(), named_object.is_static);
943 }
944 }
945
946 if let TAtomic::Object(TObject::Named(named_object)) = &atomic {
947 let fq_class_name = named_object.get_name();
948 if let Some(type_parameters) = named_object.get_type_parameters() {
949 let object_type_key = get_combiner_key(fq_class_name, type_parameters, codebase);
950
951 if let Some((_, existing_type_params)) = combination.object_type_params.get(&object_type_key) {
952 let mut new_type_parameters = Vec::with_capacity(type_parameters.len());
953 for (i, type_param) in type_parameters.iter().enumerate() {
954 if let Some(existing_type_param) = existing_type_params.get(i) {
955 new_type_parameters.push(combine_union_types(
956 existing_type_param,
957 type_param,
958 codebase,
959 options,
960 ));
961 }
962 }
963
964 combination.object_type_params.insert(object_type_key, (fq_class_name, new_type_parameters));
965 } else {
966 combination.object_type_params.insert(object_type_key, (fq_class_name, type_parameters.to_vec()));
967 }
968
969 return;
970 }
971 }
972
973 if let TAtomic::Object(TObject::Enum(enum_object)) = atomic {
974 combination.enum_names.insert((enum_object.get_name(), enum_object.get_case()));
975
976 return;
977 }
978
979 if let TAtomic::Object(TObject::Named(named_object)) = &atomic {
980 let fq_class_name = named_object.get_name();
981 let intersection_types = named_object.get_intersection_types();
982
983 if combination.flags.contains(CombinationFlags::HAS_OBJECT_TOP_TYPE)
984 || combination.value_types.contains_key(&atomic.get_id())
985 {
986 return;
987 }
988
989 let Some(symbol_type) = codebase.symbols.get_kind(fq_class_name) else {
990 combination.value_types.insert(atomic.get_id(), atomic);
991 return;
992 };
993
994 if !matches!(symbol_type, SymbolKind::Class | SymbolKind::Enum | SymbolKind::Interface) {
995 combination.value_types.insert(atomic.get_id(), atomic);
996 return;
997 }
998
999 let is_class = matches!(symbol_type, SymbolKind::Class);
1000 let is_interface = matches!(symbol_type, SymbolKind::Interface);
1001
1002 let mut types_to_remove: Vec<Word> = Vec::new();
1003
1004 for (key, existing_type) in &combination.value_types {
1005 if let TAtomic::Object(TObject::Named(existing_object)) = &existing_type {
1006 let existing_name = existing_object.get_name();
1007
1008 if intersection_types.is_some() || existing_object.has_intersection_types() {
1009 if object_comparator::is_shallowly_contained_by(
1010 codebase,
1011 existing_type,
1012 &atomic,
1013 false,
1014 &mut ComparisonResult::new(),
1015 ) {
1016 types_to_remove.push(existing_name);
1017 continue;
1018 }
1019
1020 if object_comparator::is_shallowly_contained_by(
1021 codebase,
1022 &atomic,
1023 existing_type,
1024 false,
1025 &mut ComparisonResult::new(),
1026 ) {
1027 return;
1028 }
1029
1030 continue;
1031 }
1032
1033 let Some(existing_symbol_kind) = codebase.symbols.get_kind(existing_object.get_name()) else {
1034 continue;
1035 };
1036
1037 if matches!(existing_symbol_kind, SymbolKind::Class) {
1038 if codebase.is_instance_of(existing_name.as_bytes(), fq_class_name.as_bytes()) {
1040 types_to_remove.push(*key);
1041 continue;
1042 }
1043
1044 if is_class {
1045 if codebase.class_extends(fq_class_name.as_bytes(), existing_name.as_bytes()) {
1047 return;
1048 }
1049 } else if is_interface {
1050 if codebase.class_implements(fq_class_name.as_bytes(), existing_name.as_bytes()) {
1052 return;
1053 }
1054 }
1055 } else if matches!(existing_symbol_kind, SymbolKind::Interface) {
1056 if codebase.class_implements(existing_name.as_bytes(), fq_class_name.as_bytes()) {
1057 types_to_remove.push(existing_name);
1058 continue;
1059 }
1060
1061 if (is_class || is_interface)
1062 && codebase.class_implements(fq_class_name.as_bytes(), existing_name.as_bytes())
1063 {
1064 return;
1065 }
1066 }
1067 }
1068 }
1069
1070 combination.value_types.insert(atomic.get_id(), atomic);
1071
1072 for type_key in types_to_remove {
1073 combination.value_types.remove(&type_key);
1074 }
1075
1076 return;
1077 }
1078
1079 if atomic == TAtomic::Scalar(TScalar::Generic) {
1080 combination.literal_strings.clear();
1081 combination.integers.clear();
1082 combination.literal_floats.clear();
1083 combination.value_types.retain(|k, _| {
1084 k.as_bytes() != b"string"
1085 && k.as_bytes() != b"bool"
1086 && k.as_bytes() != b"false"
1087 && k.as_bytes() != b"true"
1088 && k.as_bytes() != b"float"
1089 && k.as_bytes() != b"numeric"
1090 && k.as_bytes() != b"array-key"
1091 });
1092
1093 combination.value_types.insert(atomic.get_id(), atomic);
1094 return;
1095 }
1096
1097 if atomic == TAtomic::Scalar(TScalar::ArrayKey) {
1098 if combination.value_types.contains_key(&*ATOM_SCALAR) {
1099 return;
1100 }
1101
1102 combination.literal_strings.clear();
1103 combination.integers.clear();
1104 combination.value_types.retain(|k, _| k != &*ATOM_STRING && k != &*ATOM_INT);
1105 combination.value_types.insert(atomic.get_id(), atomic);
1106
1107 return;
1108 }
1109
1110 if let TAtomic::Scalar(TScalar::String(_) | TScalar::Integer(_)) = atomic
1111 && (combination.value_types.contains_key(&*ATOM_SCALAR)
1112 || combination.value_types.contains_key(&*ATOM_ARRAY_KEY))
1113 {
1114 return;
1115 }
1116
1117 if let TAtomic::Scalar(TScalar::Float(_) | TScalar::Integer(_)) = atomic
1118 && (combination.value_types.contains_key(&*ATOM_NUMERIC) || combination.value_types.contains_key(&*ATOM_SCALAR))
1119 {
1120 return;
1121 }
1122
1123 if let TAtomic::Scalar(TScalar::String(mut string_scalar)) = atomic {
1124 if let Some(existing_string_type) = combination.value_types.get_mut(&*ATOM_STRING) {
1125 if let TAtomic::Scalar(TScalar::String(existing_string_type)) = existing_string_type {
1126 if let Some(lit_atom) = string_scalar.get_known_literal_atom() {
1127 let lit_value = lit_atom.as_bytes();
1128 let is_incompatible = (existing_string_type.is_numeric && !str_is_numeric(lit_value))
1129 || (existing_string_type.is_truthy && (lit_value.is_empty() || lit_value == b"0"))
1130 || (existing_string_type.is_non_empty && lit_value.is_empty())
1131 || (existing_string_type.is_lowercase() && lit_value.iter().any(u8::is_ascii_uppercase))
1132 || (existing_string_type.is_uppercase() && lit_value.iter().any(u8::is_ascii_lowercase));
1133
1134 if is_incompatible {
1135 if combination.literal_strings.len() >= options.string_combination_threshold as usize {
1137 *existing_string_type = combine_string_scalars(existing_string_type, string_scalar);
1139 } else {
1140 combination.literal_strings.insert(lit_atom);
1141 }
1142 } else {
1143 *existing_string_type = combine_string_scalars(existing_string_type, string_scalar);
1144 }
1145 } else {
1146 *existing_string_type = combine_string_scalars(existing_string_type, string_scalar);
1147 }
1148 }
1149 } else if let Some(atom) = string_scalar.get_known_literal_atom() {
1150 if combination.literal_strings.len() >= options.string_combination_threshold as usize {
1152 combination.literal_strings.clear();
1154 combination.value_types.insert(*ATOM_STRING, TAtomic::Scalar(TScalar::string()));
1155 } else {
1156 combination.literal_strings.insert(atom);
1157 }
1158 } else {
1159 let mut literals_to_keep = WordSet::default();
1160 if !combination.literal_strings.is_empty() {
1161 string_scalar.is_callable = false;
1162 }
1163
1164 if string_scalar.is_truthy
1165 || string_scalar.is_non_empty
1166 || string_scalar.is_numeric
1167 || !string_scalar.casing.is_unspecified()
1168 {
1169 for value in &combination.literal_strings {
1170 if value.is_empty() {
1171 string_scalar.is_non_empty = false;
1172 string_scalar.is_truthy = false;
1173 string_scalar.is_numeric = false;
1174 break;
1175 } else if value.as_bytes() == b"0" {
1176 string_scalar.is_truthy = false;
1177 }
1178
1179 if string_scalar.is_numeric && !str_is_numeric(value.as_bytes()) {
1180 literals_to_keep.insert(*value);
1181 } else {
1182 string_scalar.is_numeric = string_scalar.is_numeric && str_is_numeric(value.as_bytes());
1183 }
1184
1185 string_scalar.casing = match string_scalar.casing {
1186 TStringCasing::Lowercase if value.as_bytes().iter().all(u8::is_ascii_lowercase) => {
1187 TStringCasing::Lowercase
1188 }
1189 TStringCasing::Uppercase if value.as_bytes().iter().all(u8::is_ascii_uppercase) => {
1190 TStringCasing::Uppercase
1191 }
1192 _ => TStringCasing::Unspecified,
1193 };
1194 }
1195 }
1196
1197 combination.value_types.insert(*ATOM_STRING, TAtomic::Scalar(TScalar::String(string_scalar)));
1198
1199 std::mem::swap(&mut combination.literal_strings, &mut literals_to_keep);
1200 }
1201
1202 return;
1203 }
1204
1205 if let TAtomic::Scalar(TScalar::Integer(integer)) = &atomic {
1206 if combination.value_types.contains_key(&*ATOM_INT) {
1208 return;
1209 }
1210
1211 if integer.is_literal() && combination.integers.len() >= options.integer_combination_threshold as usize {
1213 combination.integers.clear();
1215 combination.value_types.insert(*ATOM_INT, TAtomic::Scalar(TScalar::int()));
1216 return;
1217 }
1218
1219 combination.integers.push(*integer);
1220
1221 return;
1222 }
1223
1224 if let TAtomic::Scalar(TScalar::Float(float_scalar)) = &atomic {
1225 if let Some(stored) = combination.value_types.get(&*ATOM_FLOAT) {
1226 if matches!(stored, TAtomic::Scalar(TScalar::Float(TFloat::Float))) {
1227 return;
1228 }
1229
1230 if matches!(float_scalar, TFloat::Float) {
1231 combination.literal_floats.clear();
1232 combination.value_types.insert(*ATOM_FLOAT, atomic);
1233 }
1234
1235 return;
1236 }
1237
1238 if let TFloat::Literal(literal_value) = float_scalar {
1239 if combination.literal_floats.len() >= options.string_combination_threshold as usize {
1240 combination.literal_floats.clear();
1241 combination.value_types.insert(*ATOM_FLOAT, TAtomic::Scalar(TScalar::float()));
1242 return;
1243 }
1244 combination.literal_floats.push(*literal_value);
1245 } else {
1246 combination.literal_floats.clear();
1247 combination.value_types.insert(*ATOM_FLOAT, atomic);
1248 }
1249
1250 return;
1251 }
1252
1253 combination.value_types.insert(atomic.get_id(), atomic);
1254}
1255
1256fn shapes_are_discriminated(
1257 incoming: &BTreeMap<ArrayKey, (bool, TUnion)>,
1258 existing: &BTreeMap<ArrayKey, (bool, TUnion)>,
1259 codebase: &CodebaseMetadata,
1260) -> bool {
1261 let mut has_asymmetric_keys = false;
1262 for key in incoming.keys() {
1263 if !existing.contains_key(key) {
1264 has_asymmetric_keys = true;
1265 break;
1266 }
1267 }
1268
1269 if !has_asymmetric_keys {
1270 for key in existing.keys() {
1271 if !incoming.contains_key(key) {
1272 has_asymmetric_keys = true;
1273 break;
1274 }
1275 }
1276 }
1277
1278 if !has_asymmetric_keys {
1279 return false;
1280 }
1281
1282 for (key, (incoming_optional, incoming_type)) in incoming {
1283 if *incoming_optional {
1284 continue;
1285 }
1286
1287 let Some((existing_optional, existing_type)) = existing.get(key) else {
1288 continue;
1289 };
1290
1291 if *existing_optional {
1292 continue;
1293 }
1294
1295 if !union_comparator::can_expression_types_be_identical(codebase, incoming_type, existing_type, false, false) {
1296 return true;
1297 }
1298 }
1299
1300 false
1301}
1302
1303fn widen_known_items_with_params(
1307 known_items: Option<BTreeMap<ArrayKey, (bool, TUnion)>>,
1308 params: Option<&(TUnion, TUnion)>,
1309 other_known_items: &BTreeMap<ArrayKey, (bool, TUnion)>,
1310 codebase: &CodebaseMetadata,
1311 options: CombinerOptions,
1312) -> Option<BTreeMap<ArrayKey, (bool, TUnion)>> {
1313 let mut items = known_items?;
1314
1315 if let Some((key_param, value_param)) = params {
1316 let (key_param_accepts_int, key_param_accepts_string) =
1317 if key_param.has_mixed() || key_param.has_mixed_template() {
1318 (true, true)
1319 } else {
1320 let mut accepts_int = false;
1321 let mut accepts_string = false;
1322 for part in key_param.types.as_ref() {
1323 if accepts_int && accepts_string {
1324 break;
1325 }
1326
1327 match part {
1328 TAtomic::Scalar(TScalar::ArrayKey) => {
1329 accepts_int = true;
1330 accepts_string = true;
1331 }
1332 TAtomic::Scalar(TScalar::Integer(_)) => accepts_int = true,
1333 TAtomic::Scalar(TScalar::String(_)) => accepts_string = true,
1334 _ => {
1335 accepts_int = true;
1336 accepts_string = true;
1337 }
1338 }
1339 }
1340
1341 (accepts_int, accepts_string)
1342 };
1343
1344 if !key_param_accepts_int && !key_param_accepts_string {
1345 return Some(items);
1346 }
1347
1348 for (key, (_, entry_type)) in items.iter_mut() {
1349 if entry_type == value_param {
1350 continue;
1351 }
1352
1353 if other_known_items.contains_key(key) {
1354 continue;
1355 }
1356
1357 let key_compatible = match key {
1358 ArrayKey::Integer(_) => key_param_accepts_int,
1359 ArrayKey::String(_) => key_param_accepts_string,
1360 ArrayKey::ClassLikeConstant { .. } => key_param_accepts_int || key_param_accepts_string,
1361 };
1362
1363 if !key_compatible {
1364 continue;
1365 }
1366
1367 *entry_type = combine_union_types(entry_type, value_param, codebase, options);
1368 }
1369 }
1370
1371 Some(items)
1372}
1373
1374fn adjust_keyed_array_parameters(
1375 existing_value_param: &mut TUnion,
1376 entry_type: &TUnion,
1377 codebase: &CodebaseMetadata,
1378 options: CombinerOptions,
1379 key: &ArrayKey,
1380 existing_key_param: &mut TUnion,
1381) {
1382 *existing_value_param = combine_union_types(existing_value_param, entry_type, codebase, options);
1383 let new_key_type = key.to_union();
1384 *existing_key_param = combine_union_types(existing_key_param, &new_key_type, codebase, options);
1385}
1386
1387fn flush_sealed_keyed_arrays_into_combination(
1388 combination: &mut TypeCombination,
1389 codebase: &CodebaseMetadata,
1390 options: CombinerOptions,
1391) {
1392 let sealed = std::mem::take(&mut combination.sealed_arrays);
1393 let mut any_keyed = false;
1394 let mut put_back = Vec::new();
1395
1396 for array in sealed {
1397 let TArray::Keyed(keyed) = array else {
1398 put_back.push(array);
1399 continue;
1400 };
1401
1402 any_keyed = true;
1403 let TKeyedArray { known_items, parameters, non_empty } = keyed;
1404
1405 if non_empty {
1406 combination.flags.insert(CombinationFlags::KEYED_ARRAY_SOMETIMES_FILLED);
1407 } else {
1408 combination.flags.remove(CombinationFlags::KEYED_ARRAY_ALWAYS_FILLED);
1409 }
1410
1411 if let Some(known_items) = known_items {
1412 for (candidate_item_name, (candidate_optional, candidate_item_type)) in known_items {
1413 if let Some((existing_optional, existing_type)) =
1414 combination.keyed_array_entries.get_mut(&candidate_item_name)
1415 {
1416 if candidate_optional {
1417 *existing_optional = true;
1418 }
1419 if &candidate_item_type != existing_type {
1420 *existing_type = combine_union_types(existing_type, &candidate_item_type, codebase, options);
1421 }
1422 } else {
1423 let inserted = if let Some((ref mut existing_key_param, ref mut existing_value_param)) =
1424 combination.keyed_array_parameters
1425 {
1426 adjust_keyed_array_parameters(
1427 existing_value_param,
1428 &candidate_item_type,
1429 codebase,
1430 options,
1431 &candidate_item_name,
1432 existing_key_param,
1433 );
1434 None
1435 } else {
1436 Some((true, candidate_item_type.clone()))
1437 };
1438
1439 if let Some(entry) = inserted {
1440 combination.keyed_array_entries.insert(candidate_item_name, entry);
1441 }
1442 }
1443 }
1444 }
1445
1446 combination.keyed_array_parameters = match (combination.keyed_array_parameters.take(), parameters) {
1447 (None, None) => None,
1448 (Some(existing_types), None) => Some(existing_types),
1449 (None, Some(params)) => Some(((*params.0).clone(), (*params.1).clone())),
1450 (Some(existing_types), Some(params)) => Some((
1451 combine_union_types(&existing_types.0, ¶ms.0, codebase, options),
1452 combine_union_types(&existing_types.1, ¶ms.1, codebase, options),
1453 )),
1454 };
1455 }
1456
1457 if any_keyed {
1458 combination.flags.insert(CombinationFlags::HAS_KEYED_ARRAY);
1459 }
1460
1461 combination.sealed_arrays = put_back;
1462}
1463
1464const COMBINER_KEY_STACK_BUF: usize = 256;
1465
1466fn get_combiner_key(name: Word, type_params: &[TUnion], codebase: &CodebaseMetadata) -> Word {
1467 let covariants = if let Some(class_like_metadata) = codebase.get_class_like(name.as_bytes()) {
1468 &class_like_metadata.template_variance
1469 } else {
1470 return name;
1471 };
1472
1473 let name_str = name.as_bytes();
1474 let mut estimated_len = name_str.len() + 2; for (i, tunion) in type_params.iter().enumerate() {
1476 if i > 0 {
1477 estimated_len += 2; }
1479
1480 if covariants.get(i) == Some(&Variance::Covariant) {
1481 estimated_len += 1; } else {
1483 estimated_len += tunion.get_id().len();
1484 }
1485 }
1486
1487 if estimated_len <= COMBINER_KEY_STACK_BUF {
1488 let mut buffer = [0u8; COMBINER_KEY_STACK_BUF];
1489 let mut pos = 0;
1490
1491 buffer[pos..pos + name_str.len()].copy_from_slice(name_str);
1492 pos += name_str.len();
1493
1494 buffer[pos] = b'<';
1495 pos += 1;
1496
1497 for (i, tunion) in type_params.iter().enumerate() {
1498 if i > 0 {
1499 buffer[pos..pos + 2].copy_from_slice(b", ");
1500 pos += 2;
1501 }
1502 let id_word = tunion.get_id();
1503 let param_bytes: &[u8] =
1504 if covariants.get(i) == Some(&Variance::Covariant) { b"*" } else { id_word.as_bytes() };
1505 let need = param_bytes.len();
1506 buffer[pos..pos + need].copy_from_slice(param_bytes);
1507 pos += need;
1508 }
1509
1510 buffer[pos] = b'>';
1511 pos += 1;
1512
1513 return word(&buffer[..pos]);
1514 }
1515
1516 let mut result: Vec<u8> = Vec::with_capacity(estimated_len);
1517 result.extend_from_slice(name_str);
1518 result.push(b'<');
1519 for (i, tunion) in type_params.iter().enumerate() {
1520 if i > 0 {
1521 result.extend_from_slice(b", ");
1522 }
1523 if covariants.get(i) == Some(&Variance::Covariant) {
1524 result.push(b'*');
1525 } else {
1526 result.extend_from_slice(tunion.get_id().as_bytes());
1527 }
1528 }
1529 result.push(b'>');
1530 word(&result)
1531}
1532
1533fn combine_string_scalars(s1: &TString, s2: TString) -> TString {
1534 TString {
1535 literal: match (&s1.literal, s2.literal) {
1536 (Some(TStringLiteral::Value(v1)), Some(TStringLiteral::Value(v2))) => {
1537 if v1 == &v2 {
1538 Some(TStringLiteral::Value(v2))
1539 } else {
1540 Some(TStringLiteral::Unspecified)
1541 }
1542 }
1543 (Some(TStringLiteral::Unspecified), Some(_)) | (Some(_), Some(TStringLiteral::Unspecified)) => {
1544 Some(TStringLiteral::Unspecified)
1545 }
1546 _ => None,
1547 },
1548 is_numeric: s1.is_numeric && s2.is_numeric,
1549 is_truthy: s1.is_truthy && s2.is_truthy,
1550 is_non_empty: s1.is_non_empty && s2.is_non_empty,
1551 is_callable: s1.is_callable && s2.is_callable,
1552 casing: match (s1.casing, s2.casing) {
1553 (TStringCasing::Lowercase, TStringCasing::Lowercase) => TStringCasing::Lowercase,
1554 (TStringCasing::Uppercase, TStringCasing::Uppercase) => TStringCasing::Uppercase,
1555 _ => TStringCasing::Unspecified,
1556 },
1557 }
1558}
1559
1560#[cfg(test)]
1561mod tests {
1562 use std::collections::BTreeMap;
1563
1564 use super::*;
1565
1566 use crate::ttype::atomic::TAtomic;
1567 use crate::ttype::atomic::array::list::TList;
1568 use crate::ttype::atomic::scalar::TScalar;
1569
1570 #[test]
1571 fn test_combine_scalars() {
1572 let types = vec![
1573 TAtomic::Scalar(TScalar::string()),
1574 TAtomic::Scalar(TScalar::int()),
1575 TAtomic::Scalar(TScalar::float()),
1576 TAtomic::Scalar(TScalar::bool()),
1577 ];
1578
1579 let combined =
1580 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1581
1582 assert_eq!(combined.len(), 1);
1583 assert!(matches!(combined[0], TAtomic::Scalar(TScalar::Generic)));
1584 }
1585
1586 #[test]
1587 fn test_combine_boolean_lists() {
1588 let types = vec![
1589 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1590 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::r#false())))),
1591 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::r#true())))),
1592 ])))),
1593 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1594 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::r#true())))),
1595 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::r#false())))),
1596 ])))),
1597 ];
1598
1599 let combined =
1600 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1601
1602 assert_eq!(combined.len(), 2);
1603 assert!(matches!(combined[0], TAtomic::Array(TArray::List(_))));
1604 assert!(matches!(combined[1], TAtomic::Array(TArray::List(_))));
1605 }
1606
1607 #[test]
1608 fn test_combine_integer_lists() {
1609 let types = vec![
1610 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1611 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(1)))))),
1612 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(2)))))),
1613 ])))),
1614 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1615 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(2)))))),
1616 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(1)))))),
1617 ])))),
1618 ];
1619
1620 let combined =
1621 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1622
1623 assert_eq!(combined.len(), 2);
1624 assert!(matches!(combined[0], TAtomic::Array(TArray::List(_))));
1625 assert!(matches!(combined[1], TAtomic::Array(TArray::List(_))));
1626 }
1627
1628 #[test]
1629 fn test_combine_string_lists() {
1630 let types = vec![
1631 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1632 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("a".into())))))),
1633 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("b".into())))))),
1634 ])))),
1635 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1636 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("b".into())))))),
1637 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("a".into())))))),
1638 ])))),
1639 ];
1640
1641 let combined =
1642 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1643
1644 assert_eq!(combined.len(), 2);
1645 assert!(matches!(combined[0], TAtomic::Array(TArray::List(_))));
1646 assert!(matches!(combined[1], TAtomic::Array(TArray::List(_))));
1647 }
1648
1649 #[test]
1650 fn test_combine_mixed_literal_lists() {
1651 let types = vec![
1652 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1653 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(1)))))),
1654 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("a".into())))))),
1655 ])))),
1656 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1657 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::String(TString::known_literal("b".into())))))),
1658 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(2)))))),
1659 ])))),
1660 ];
1661
1662 let combined =
1663 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1664
1665 assert_eq!(combined.len(), 2);
1666 assert!(matches!(combined[0], TAtomic::Array(TArray::List(_))));
1667 assert!(matches!(combined[1], TAtomic::Array(TArray::List(_))));
1668 }
1669
1670 #[test]
1671 fn test_combine_list_with_generic_list() {
1672 let types = vec![
1673 TAtomic::Array(TArray::List(TList::from_known_elements(BTreeMap::from_iter([
1674 (0, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(1)))))),
1675 (1, (false, TUnion::from_atomic(TAtomic::Scalar(TScalar::Integer(TInteger::literal(2)))))),
1676 ])))),
1677 TAtomic::Array(TArray::List(TList::new(Arc::new(TUnion::from_atomic(TAtomic::Scalar(TScalar::int())))))), ];
1679
1680 let combined =
1681 combine(types, &CodebaseMetadata::default(), CombinerOptions::default().with_overwrite_empty_array());
1682
1683 assert_eq!(combined.len(), 1);
1685
1686 let TAtomic::Array(TArray::List(list_type)) = &combined[0] else {
1687 panic!("Expected a list type");
1688 };
1689
1690 let Some(known_elements) = &list_type.known_elements else {
1691 panic!("Expected known elements");
1692 };
1693
1694 assert!(!list_type.is_non_empty());
1695 assert!(list_type.known_count.is_none());
1696 assert!(list_type.element_type.is_int());
1697
1698 assert_eq!(known_elements.len(), 2);
1699 assert!(known_elements.contains_key(&0));
1700 assert!(known_elements.contains_key(&1));
1701
1702 let Some(first_element) = known_elements.get(&0) else {
1703 panic!("Expected first element");
1704 };
1705
1706 let Some(second_element) = known_elements.get(&1) else {
1707 panic!("Expected second element");
1708 };
1709
1710 assert!(first_element.1.is_int());
1711 assert!(second_element.1.is_int());
1712 }
1713}