1use crate::typing::{ArgsRef, Record, Type, TypeRef};
2use crate::{Attrs, ExprKey, ExprPtr, ExprRef, Field, RecRef, StrRef, Value, VecRef};
3use rustc_hash::{FxBuildHasher, FxHashMap};
4use serde::Serialize;
5use std::collections::hash_map::Entry;
6use std::hash::BuildHasher;
7use std::ops::Range;
8use unicase::Ascii;
9
10#[derive(Default, Serialize)]
14pub(crate) struct StringArena {
15 #[serde(skip_serializing)]
16 hasher: FxBuildHasher,
17
18 cache: FxHashMap<u64, StrRef>,
19 slots: Vec<String>,
20}
21
22impl StringArena {
23 pub fn alloc(&mut self, value: &str) -> StrRef {
25 match self.cache.entry(self.hasher.hash_one(value)) {
26 Entry::Occupied(entry) => *entry.get(),
27 Entry::Vacant(entry) => {
28 let key = StrRef(self.slots.len());
29 entry.insert(key);
30 self.slots.push(value.to_owned());
31
32 key
33 }
34 }
35 }
36
37 pub fn str_ref(&self, value: &str) -> Option<StrRef> {
39 self.cache.get(&self.hasher.hash_one(value)).copied()
40 }
41
42 pub fn alloc_no_case(&mut self, value: &str) -> StrRef {
47 match self.cache.entry(self.hasher.hash_one(Ascii::new(value))) {
48 Entry::Occupied(entry) => *entry.get(),
49 Entry::Vacant(entry) => {
50 let key = StrRef(self.slots.len());
51 entry.insert(key);
52 self.slots.push(value.to_owned());
53
54 key
55 }
56 }
57 }
58
59 pub fn get(&self, key: StrRef) -> &str {
61 &self.slots[key.0]
62 }
63}
64
65#[derive(Debug, Clone, Copy, Serialize)]
69pub struct Expr {
70 pub attrs: Attrs,
72 pub value: Value,
74}
75
76#[derive(Default, Serialize)]
81pub(crate) struct ExprArena {
82 #[serde(skip_serializing)]
83 hasher: FxBuildHasher,
84 exprs: Vec<Expr>,
85 vecs: Vec<Vec<ExprRef>>,
86 recs: Vec<Vec<Field>>,
87}
88
89impl ExprArena {
90 pub fn alloc(&mut self, attrs: Attrs, value: Value) -> ExprRef {
96 let key = ExprKey(self.hasher.hash_one(value));
97
98 let ptr = ExprPtr(self.exprs.len());
99 self.exprs.push(Expr { attrs, value });
100
101 ExprRef { key, ptr }
102 }
103
104 pub fn get(&self, node_ref: ExprRef) -> Expr {
111 self.exprs[node_ref.ptr.0]
112 }
113
114 pub fn alloc_vec(&mut self, values: Vec<ExprRef>) -> VecRef {
116 let key = VecRef(self.vecs.len());
117 self.vecs.push(values);
118
119 key
120 }
121
122 pub fn alloc_rec(&mut self, values: Vec<Field>) -> RecRef {
124 let key = RecRef(self.recs.len());
125 self.recs.push(values);
126
127 key
128 }
129
130 pub fn vec(&self, ptr: VecRef) -> &[ExprRef] {
132 &self.vecs[ptr.0]
133 }
134
135 pub fn vec_get(&self, ptr: VecRef, idx: usize) -> ExprRef {
137 self.vecs[ptr.0][idx]
138 }
139
140 pub fn vec_idxes(&self, ptr: VecRef) -> Range<usize> {
142 0..self.vec(ptr).len()
143 }
144
145 pub fn rec(&self, ptr: RecRef) -> &[Field] {
147 self.recs[ptr.0].as_slice()
148 }
149
150 pub fn rec_get(&self, ptr: RecRef, idx: usize) -> Field {
152 self.recs[ptr.0][idx]
153 }
154
155 pub fn rec_idxes(&self, ptr: RecRef) -> Range<usize> {
157 0..self.rec(ptr).len()
158 }
159}
160
161#[derive(Default, Serialize)]
166pub(crate) struct TypeArena {
167 #[serde(skip_serializing)]
168 args_hasher: FxBuildHasher,
169
170 type_offset: usize,
171 rec_offset: usize,
172
173 dedup_types: FxHashMap<Type, TypeRef>,
174 dedup_args: FxHashMap<u64, ArgsRef>,
175 types: Vec<Type>,
176 pub(crate) records: Vec<FxHashMap<StrRef, Type>>,
177 pub(crate) args: Vec<Vec<Type>>,
178}
179
180impl TypeArena {
181 pub fn freeze(&mut self) {
186 self.rec_offset = self.records.len();
187 self.type_offset = self.types.len();
188 }
189
190 pub fn free_space(&mut self) {
192 for tpe in self.types.drain(self.type_offset..) {
193 self.dedup_types.remove(&tpe);
194 }
195
196 for _ in self.records.drain(self.rec_offset..) {}
197 }
198
199 pub fn register_type(&mut self, tpe: Type) -> TypeRef {
201 match self.dedup_types.entry(tpe) {
202 Entry::Occupied(entry) => *entry.get(),
203 Entry::Vacant(entry) => {
204 let key = TypeRef(self.types.len());
205 self.types.push(tpe);
206 entry.insert(key);
207
208 key
209 }
210 }
211 }
212
213 pub fn alloc_type(&mut self, tpe: Type) -> Type {
215 if let Type::Record(rec) = tpe {
216 let key = Record {
217 id: self.records.len(),
218 open: rec.open,
219 };
220 self.records.push(self.records[rec.id].clone());
223
224 return Type::Record(key);
225 }
226
227 tpe
228 }
229
230 pub fn alloc_array_of(&mut self, tpe: Type) -> Type {
232 Type::Array(self.register_type(tpe))
233 }
234
235 pub fn alloc_record(&mut self, record: FxHashMap<StrRef, Type>) -> Record {
237 let key = Record {
238 id: self.records.len(),
239 open: false,
240 };
241 self.records.push(record);
242 key
243 }
244
245 pub fn alloc_open_record(&mut self, record: FxHashMap<StrRef, Type>) -> Record {
248 let key = Record {
249 id: self.records.len(),
250 open: true,
251 };
252 self.records.push(record);
253 key
254 }
255
256 pub fn alloc_args(&mut self, args: &[Type]) -> ArgsRef {
258 let hash = self.args_hasher.hash_one(args);
259
260 match self.dedup_args.entry(hash) {
261 Entry::Occupied(entry) => *entry.get(),
262 Entry::Vacant(entry) => {
263 let key = ArgsRef(self.args.len());
264 entry.insert(key);
265 self.args.push(args.to_vec());
266
267 key
268 }
269 }
270 }
271
272 pub fn get_type(&self, key: TypeRef) -> Type {
274 self.types[key.0]
275 }
276
277 pub fn get_record(&self, key: Record) -> &FxHashMap<StrRef, Type> {
279 &self.records[key.id]
280 }
281
282 pub fn get_args(&self, key: ArgsRef) -> &[Type] {
284 self.args[key.0].as_slice()
285 }
286
287 pub fn args_idxes(&self, key: ArgsRef) -> impl Iterator<Item = usize> + use<> {
289 0..self.get_args(key).len()
290 }
291
292 pub fn args_get(&self, key: ArgsRef, idx: usize) -> Type {
294 self.get_args(key)[idx]
295 }
296
297 pub fn record_get(&self, record: Record, field: StrRef) -> Option<Type> {
299 self.records[record.id].get(&field).copied()
300 }
301
302 pub fn records_have_same_keys(&self, rec_a: Record, rec_b: Record) -> bool {
304 let rec_a = self.get_record(rec_a);
305 let rec_b = self.get_record(rec_b);
306
307 if rec_a.is_empty() && rec_b.is_empty() {
308 return true;
309 }
310
311 if rec_a.len() != rec_b.len() {
312 return false;
313 }
314
315 for bk in rec_b.keys() {
316 if !rec_a.contains_key(bk) {
317 return false;
318 }
319 }
320
321 true
322 }
323
324 pub fn instantiate_open_record(&mut self) -> Record {
326 self.alloc_open_record(FxHashMap::default())
327 }
328
329 pub fn record_set(&mut self, record: Record, field: StrRef, value: Type) {
331 self.records[record.id].insert(field, value);
332 }
333
334 pub fn record_len(&self, record: Record) -> usize {
336 self.records[record.id].len()
337 }
338}
339
340#[derive(Default, Serialize)]
342pub struct Arena {
343 pub(crate) exprs: ExprArena,
344 pub(crate) strings: StringArena,
345 pub(crate) types: TypeArena,
346}
347
348impl Arena {
349 pub fn freeze(&mut self) {
351 self.types.freeze();
352 }
353
354 pub fn free_space(&mut self) {
356 self.types.free_space();
357 }
358
359 pub fn get_str(&self, key: StrRef) -> &str {
361 self.strings.get(key)
362 }
363
364 pub fn str_ref(&self, key: &str) -> Option<StrRef> {
366 self.strings.str_ref(key)
367 }
368
369 pub fn get_expr(&self, key: ExprRef) -> Expr {
371 self.exprs.get(key)
372 }
373
374 pub fn get_type(&self, key: TypeRef) -> Type {
376 self.types.get_type(key)
377 }
378
379 pub fn get_vec(&self, key: VecRef) -> &[ExprRef] {
381 self.exprs.vec(key)
382 }
383
384 pub fn get_rec(&self, key: RecRef) -> &[Field] {
386 self.exprs.rec(key)
387 }
388
389 pub fn get_type_rec(&self, key: Record) -> &FxHashMap<StrRef, Type> {
391 self.types.get_record(key)
392 }
393
394 pub fn get_args(&self, key: ArgsRef) -> &[Type] {
396 self.types.get_args(key)
397 }
398}