miden_crypto/merkle/smt/full/
leaf.rs1use alloc::{string::ToString, vec::Vec};
2use core::cmp::Ordering;
3
4use super::EMPTY_WORD;
5use crate::{
6 Felt, Word,
7 hash::poseidon2::Poseidon2,
8 merkle::smt::{LeafIndex, MAX_LEAF_ENTRIES, SMT_DEPTH, SmtLeafError},
9 utils::{ByteReader, ByteWriter, Deserializable, DeserializationError, Serializable},
10};
11
12const DOUBLE_WORD_LEN: usize = 8;
14
15#[derive(Clone, Debug, PartialEq, Eq)]
19#[cfg_attr(feature = "serde", derive(serde::Deserialize, serde::Serialize))]
20pub enum SmtLeaf {
21 Empty(LeafIndex<SMT_DEPTH>),
23 Single((Word, Word)),
25 Multiple(Vec<(Word, Word)>),
27}
28
29impl SmtLeaf {
30 pub fn new(
40 entries: Vec<(Word, Word)>,
41 leaf_index: LeafIndex<SMT_DEPTH>,
42 ) -> Result<Self, SmtLeafError> {
43 match entries.len() {
44 0 => Ok(Self::new_empty(leaf_index)),
45 1 => {
46 let (key, value) = entries[0];
47
48 let computed_index = LeafIndex::<SMT_DEPTH>::from(key);
49 if computed_index != leaf_index {
50 return Err(SmtLeafError::InconsistentSingleLeafIndices {
51 key,
52 expected_leaf_index: leaf_index,
53 actual_leaf_index: computed_index,
54 });
55 }
56
57 Ok(Self::new_single(key, value))
58 },
59 _ => {
60 let leaf = Self::new_multiple(entries)?;
61
62 if leaf.index() != leaf_index {
65 Err(SmtLeafError::InconsistentMultipleLeafIndices {
66 leaf_index_from_keys: leaf.index(),
67 leaf_index_supplied: leaf_index,
68 })
69 } else {
70 Ok(leaf)
71 }
72 },
73 }
74 }
75
76 pub fn new_empty(leaf_index: LeafIndex<SMT_DEPTH>) -> Self {
78 Self::Empty(leaf_index)
79 }
80
81 pub fn new_single(key: Word, value: Word) -> Self {
84 Self::Single((key, value))
85 }
86
87 pub fn new_multiple(entries: Vec<(Word, Word)>) -> Result<Self, SmtLeafError> {
94 if entries.len() < 2 {
95 return Err(SmtLeafError::MultipleLeafRequiresTwoEntries(entries.len()));
96 }
97
98 if entries.len() > MAX_LEAF_ENTRIES {
99 return Err(SmtLeafError::TooManyLeafEntries { actual: entries.len() });
100 }
101
102 {
104 let mut keys = entries.iter().map(|(key, _)| key);
105
106 let first_key = *keys.next().expect("ensured at least 2 entries");
107 let first_leaf_index: LeafIndex<SMT_DEPTH> = first_key.into();
108
109 for &next_key in keys {
110 let next_leaf_index: LeafIndex<SMT_DEPTH> = next_key.into();
111
112 if next_leaf_index != first_leaf_index {
113 return Err(SmtLeafError::InconsistentMultipleLeafKeys {
114 key_1: first_key,
115 key_2: next_key,
116 });
117 }
118 }
119 }
120
121 Ok(Self::Multiple(entries))
122 }
123
124 pub fn is_empty(&self) -> bool {
129 matches!(self, Self::Empty(_))
130 }
131
132 pub fn index(&self) -> LeafIndex<SMT_DEPTH> {
134 match self {
135 SmtLeaf::Empty(leaf_index) => *leaf_index,
136 SmtLeaf::Single((key, _)) => (*key).into(),
137 SmtLeaf::Multiple(entries) => {
138 let (first_key, _) = entries[0];
140 first_key.into()
141 },
142 }
143 }
144
145 pub fn num_entries(&self) -> usize {
147 match self {
148 SmtLeaf::Empty(_) => 0,
149 SmtLeaf::Single(_) => 1,
150 SmtLeaf::Multiple(entries) => entries.len(),
151 }
152 }
153
154 pub fn hash(&self) -> Word {
156 match self {
157 SmtLeaf::Empty(_) => EMPTY_WORD,
158 SmtLeaf::Single((key, value)) => Poseidon2::merge(&[*key, *value]),
159 SmtLeaf::Multiple(kvs) => {
160 let elements: Vec<Felt> = kvs.iter().copied().flat_map(kv_to_elements).collect();
161 Poseidon2::hash_elements(&elements)
162 },
163 }
164 }
165
166 pub fn entries(&self) -> &[(Word, Word)] {
171 match self {
172 SmtLeaf::Empty(_) => &[],
173 SmtLeaf::Single(kv_pair) => core::slice::from_ref(kv_pair),
174 SmtLeaf::Multiple(kv_pairs) => kv_pairs,
175 }
176 }
177
178 pub fn to_elements(&self) -> impl Iterator<Item = Felt> + '_ {
183 self.entries().iter().copied().flat_map(kv_to_elements)
184 }
185
186 pub fn into_elements(self) -> Vec<Felt> {
188 self.into_entries().into_iter().flat_map(kv_to_elements).collect()
189 }
190
191 pub fn into_entries(self) -> Vec<(Word, Word)> {
193 match self {
194 SmtLeaf::Empty(_) => Vec::new(),
195 SmtLeaf::Single(kv_pair) => vec![kv_pair],
196 SmtLeaf::Multiple(kv_pairs) => kv_pairs,
197 }
198 }
199
200 pub fn try_from_elements(
202 elements: &[Felt],
203 leaf_index: LeafIndex<SMT_DEPTH>,
204 ) -> Result<SmtLeaf, SmtLeafError> {
205 if elements.is_empty() {
206 return Ok(SmtLeaf::new_empty(leaf_index));
207 }
208
209 if !elements.len().is_multiple_of(DOUBLE_WORD_LEN) {
211 return Err(SmtLeafError::DecodingError(
212 "elements length is not a multiple of 8".into(),
213 ));
214 }
215
216 let num_entries = elements.len() / DOUBLE_WORD_LEN;
217
218 if num_entries == 1 {
219 let key = Word::new([elements[0], elements[1], elements[2], elements[3]]);
221 let value = Word::new([elements[4], elements[5], elements[6], elements[7]]);
222 Ok(SmtLeaf::new_single(key, value))
223 } else {
224 let mut entries = Vec::with_capacity(num_entries);
226 for i in 0..num_entries {
228 let base_idx = i * DOUBLE_WORD_LEN;
229 let key = Word::new([
230 elements[base_idx],
231 elements[base_idx + 1],
232 elements[base_idx + 2],
233 elements[base_idx + 3],
234 ]);
235 let value = Word::new([
236 elements[base_idx + 4],
237 elements[base_idx + 5],
238 elements[base_idx + 6],
239 elements[base_idx + 7],
240 ]);
241 entries.push((key, value));
242 }
243 let leaf = SmtLeaf::new_multiple(entries)?;
244 Ok(leaf)
245 }
246 }
247
248 pub(in crate::merkle::smt) fn get_value(&self, key: &Word) -> Option<Word> {
254 if self.index() != (*key).into() {
256 return None;
257 }
258
259 match self {
260 SmtLeaf::Empty(_) => Some(EMPTY_WORD),
261 SmtLeaf::Single((key_in_leaf, value_in_leaf)) => {
262 if key == key_in_leaf {
263 Some(*value_in_leaf)
264 } else {
265 Some(EMPTY_WORD)
266 }
267 },
268 SmtLeaf::Multiple(kv_pairs) => {
269 for (key_in_leaf, value_in_leaf) in kv_pairs {
270 if key == key_in_leaf {
271 return Some(*value_in_leaf);
272 }
273 }
274
275 Some(EMPTY_WORD)
276 },
277 }
278 }
279
280 pub(in crate::merkle::smt) fn insert(
289 &mut self,
290 key: Word,
291 value: Word,
292 ) -> Result<Option<Word>, SmtLeafError> {
293 match self {
294 SmtLeaf::Empty(_) => {
295 *self = SmtLeaf::new_single(key, value);
296 Ok(None)
297 },
298 SmtLeaf::Single(kv_pair) => {
299 if kv_pair.0 == key {
300 let old_value = kv_pair.1;
303 kv_pair.1 = value;
304 Ok(Some(old_value))
305 } else {
306 let mut pairs = vec![*kv_pair, (key, value)];
311 pairs.sort_by(|(key_1, _), (key_2, _)| cmp_keys(*key_1, *key_2));
312 *self = SmtLeaf::Multiple(pairs);
313 Ok(None)
314 }
315 },
316 SmtLeaf::Multiple(kv_pairs) => {
317 match kv_pairs.binary_search_by(|kv_pair| cmp_keys(kv_pair.0, key)) {
318 Ok(pos) => {
319 let old_value = kv_pairs[pos].1;
320 kv_pairs[pos].1 = value;
321 Ok(Some(old_value))
322 },
323 Err(pos) => {
324 if kv_pairs.len() >= MAX_LEAF_ENTRIES {
325 return Err(SmtLeafError::TooManyLeafEntries {
326 actual: kv_pairs.len() + 1,
327 });
328 }
329 kv_pairs.insert(pos, (key, value));
330 Ok(None)
331 },
332 }
333 },
334 }
335 }
336
337 pub(in crate::merkle::smt) fn remove(&mut self, key: Word) -> (Option<Word>, bool) {
341 match self {
342 SmtLeaf::Empty(_) => (None, false),
343 SmtLeaf::Single((key_at_leaf, value_at_leaf)) => {
344 if *key_at_leaf == key {
345 let old_value = *value_at_leaf;
348
349 *self = SmtLeaf::new_empty(key.into());
352
353 (Some(old_value), true)
354 } else {
355 (None, false)
357 }
358 },
359 SmtLeaf::Multiple(kv_pairs) => {
360 match kv_pairs.binary_search_by(|kv_pair| cmp_keys(kv_pair.0, key)) {
361 Ok(pos) => {
362 let old_value = kv_pairs[pos].1;
363
364 let _ = kv_pairs.remove(pos);
365 debug_assert!(!kv_pairs.is_empty());
366
367 if kv_pairs.len() == 1 {
368 *self = SmtLeaf::Single(kv_pairs[0]);
370 }
371
372 (Some(old_value), false)
373 },
374 Err(_) => {
375 (None, false)
377 },
378 }
379 },
380 }
381 }
382}
383
384impl Serializable for SmtLeaf {
385 fn write_into<W: ByteWriter>(&self, target: &mut W) {
386 self.num_entries().write_into(target);
388
389 let leaf_index: u64 = self.index().value();
391 leaf_index.write_into(target);
392
393 for (key, value) in self.entries() {
395 key.write_into(target);
396 value.write_into(target);
397 }
398 }
399}
400
401impl Deserializable for SmtLeaf {
402 fn read_from<R: ByteReader>(source: &mut R) -> Result<Self, DeserializationError> {
403 let num_entries = source.read_usize()?;
405
406 let leaf_index: LeafIndex<SMT_DEPTH> = {
408 let value = source.read_u64()?;
409 LeafIndex::new_max_depth(value)
410 };
411
412 let mut entries: Vec<(Word, Word)> = Vec::new();
414 for _ in 0..num_entries {
415 let key: Word = source.read()?;
416 let value: Word = source.read()?;
417
418 entries.push((key, value));
419 }
420
421 Self::new(entries, leaf_index)
422 .map_err(|err| DeserializationError::InvalidValue(err.to_string()))
423 }
424}
425
426pub(crate) fn kv_to_elements((key, value): (Word, Word)) -> impl Iterator<Item = Felt> {
431 let key_elements = key.into_iter();
432 let value_elements = value.into_iter();
433
434 key_elements.chain(value_elements)
435}
436
437pub(crate) fn cmp_keys(key_1: Word, key_2: Word) -> Ordering {
440 for (v1, v2) in key_1.iter().zip(key_2.iter()).rev() {
441 let v1 = (*v1).as_canonical_u64();
442 let v2 = (*v2).as_canonical_u64();
443 if v1 != v2 {
444 return v1.cmp(&v2);
445 }
446 }
447
448 Ordering::Equal
449}