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icydb_core/db/store/
data_key.rs

1#![expect(clippy::cast_possible_truncation)]
2use crate::{
3    db::{
4        identity::{EntityName, IdentityDecodeError},
5        store::storage_key::{StorageKey, StorageKeyEncodeError},
6    },
7    error::{ErrorClass, ErrorOrigin, InternalError},
8    traits::{EntityKind, FieldValue, Storable},
9};
10use canic_cdk::structures::storable::Bound;
11use std::{
12    borrow::Cow,
13    fmt::{self, Display},
14};
15use thiserror::Error as ThisError;
16
17///
18/// DataKeyEncodeError
19/// (serialize boundary)
20///
21
22#[derive(Debug, ThisError)]
23pub enum DataKeyEncodeError {
24    #[error("data key encoding failed for {key}: {source}")]
25    KeyEncoding {
26        key: DataKey,
27        source: StorageKeyEncodeError,
28    },
29}
30
31impl From<DataKeyEncodeError> for InternalError {
32    fn from(err: DataKeyEncodeError) -> Self {
33        Self::new(
34            ErrorClass::Unsupported,
35            ErrorOrigin::Serialize,
36            err.to_string(),
37        )
38    }
39}
40
41///
42/// KeyDecodeError
43/// (decode / corruption boundary)
44///
45
46#[derive(Debug, ThisError)]
47pub enum KeyDecodeError {
48    #[error("invalid primary key encoding")]
49    InvalidEncoding,
50}
51
52impl From<&'static str> for KeyDecodeError {
53    fn from(_: &'static str) -> Self {
54        Self::InvalidEncoding
55    }
56}
57
58///
59/// DataKeyDecodeError
60/// (decode / corruption boundary)
61///
62
63#[derive(Debug, ThisError)]
64pub enum DataKeyDecodeError {
65    #[error("invalid entity name")]
66    Entity(#[from] IdentityDecodeError),
67
68    #[error("invalid primary key")]
69    Key(#[from] KeyDecodeError),
70}
71
72///
73/// DataKey
74///
75
76#[derive(Clone, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
77pub struct DataKey {
78    entity: EntityName,
79    key: StorageKey,
80}
81
82impl DataKey {
83    /// Fixed on-disk size in bytes (stable, protocol-level)
84    pub const STORED_SIZE_BYTES: u64 =
85        EntityName::STORED_SIZE_BYTES + StorageKey::STORED_SIZE_BYTES;
86
87    /// Fixed in-memory size (for buffers and arrays only)
88    pub const STORED_SIZE_USIZE: usize = Self::STORED_SIZE_BYTES as usize;
89
90    // ------------------------------------------------------------------
91    // Constructors
92    // ------------------------------------------------------------------
93
94    /// Construct using compile-time entity metadata.
95    ///
96    /// This requires that the entity ID is persistable.
97    pub fn try_new<E>(id: E::Id) -> Result<Self, InternalError>
98    where
99        E: EntityKind,
100    {
101        let value = id.to_value();
102        let key = StorageKey::try_from_value(&value)?;
103
104        Ok(Self {
105            entity: Self::entity_for::<E>(),
106            key,
107        })
108    }
109
110    /// Decode a semantic identity from this data key.
111    ///
112    /// This is a fallible boundary that validates entity identity and
113    /// key compatibility against the target entity type.
114    pub fn try_id<E>(&self) -> Result<E::Id, InternalError>
115    where
116        E: EntityKind,
117    {
118        let expected = Self::entity_for::<E>();
119        if self.entity != expected {
120            return Err(InternalError::new(
121                ErrorClass::Corruption,
122                ErrorOrigin::Store,
123                format!(
124                    "data key entity mismatch: expected {}, found {}",
125                    expected, self.entity
126                ),
127            ));
128        }
129
130        let value = self.key.as_value();
131        <E::Id as FieldValue>::from_value(&value).ok_or_else(|| {
132            InternalError::new(
133                ErrorClass::Corruption,
134                ErrorOrigin::Store,
135                format!("data key primary key decode failed: {value:?}"),
136            )
137        })
138    }
139
140    /// Construct a DataKey from a raw StorageKey using entity metadata.
141    #[must_use]
142    pub fn from_storage_key<E: EntityKind>(key: StorageKey) -> Self {
143        Self {
144            entity: Self::entity_for::<E>(),
145            key,
146        }
147    }
148
149    #[must_use]
150    pub fn lower_bound<E>() -> Self
151    where
152        E: EntityKind,
153    {
154        Self {
155            entity: Self::entity_for::<E>(),
156            key: StorageKey::MIN,
157        }
158    }
159
160    #[must_use]
161    pub fn upper_bound<E>() -> Self
162    where
163        E: EntityKind,
164    {
165        Self {
166            entity: Self::entity_for::<E>(),
167            key: StorageKey::upper_bound(),
168        }
169    }
170
171    #[inline]
172    fn entity_for<E: EntityKind>() -> EntityName {
173        // SAFETY: ENTITY_NAME is generated code and guaranteed valid.
174        // A failure here indicates a schema/codegen bug, not runtime input.
175        EntityName::try_from_str(E::ENTITY_NAME).unwrap()
176    }
177
178    // ------------------------------------------------------------------
179    // Accessors
180    // ------------------------------------------------------------------
181
182    #[must_use]
183    pub const fn entity_name(&self) -> &EntityName {
184        &self.entity
185    }
186
187    #[must_use]
188    pub(crate) const fn storage_key(&self) -> StorageKey {
189        self.key
190    }
191
192    /// Compute on-disk entry size from value length.
193    #[must_use]
194    pub const fn entry_size_bytes(value_len: u64) -> u64 {
195        Self::STORED_SIZE_BYTES + value_len
196    }
197
198    #[must_use]
199    pub fn max_storable() -> Self {
200        Self {
201            entity: EntityName::max_storable(),
202            key: StorageKey::max_storable(),
203        }
204    }
205
206    // ------------------------------------------------------------------
207    // Encoding / decoding
208    // ------------------------------------------------------------------
209
210    /// Encode into fixed-size on-disk representation.
211    pub fn to_raw(&self) -> Result<RawDataKey, InternalError> {
212        let mut buf = [0u8; Self::STORED_SIZE_USIZE];
213
214        let entity_bytes = self.entity.to_bytes();
215        buf[..EntityName::STORED_SIZE_USIZE].copy_from_slice(&entity_bytes);
216
217        let key_bytes = self
218            .key
219            .to_bytes()
220            .map_err(|err| DataKeyEncodeError::KeyEncoding {
221                key: self.clone(),
222                source: err,
223            })?;
224
225        let key_offset = EntityName::STORED_SIZE_USIZE;
226        buf[key_offset..key_offset + StorageKey::STORED_SIZE_USIZE].copy_from_slice(&key_bytes);
227
228        Ok(RawDataKey(buf))
229    }
230
231    pub fn try_from_raw(raw: &RawDataKey) -> Result<Self, DataKeyDecodeError> {
232        let bytes = &raw.0;
233
234        let entity = EntityName::from_bytes(&bytes[..EntityName::STORED_SIZE_USIZE])?;
235
236        let key = StorageKey::try_from_bytes(&bytes[EntityName::STORED_SIZE_USIZE..])
237            .map_err(KeyDecodeError::from)?;
238
239        Ok(Self { entity, key })
240    }
241}
242
243impl Display for DataKey {
244    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
245        write!(f, "#{} ({})", self.entity, self.key)
246    }
247}
248
249///
250/// RawDataKey
251///
252
253#[derive(Clone, Copy, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
254pub struct RawDataKey([u8; DataKey::STORED_SIZE_USIZE]);
255
256impl RawDataKey {
257    #[must_use]
258    pub const fn as_bytes(&self) -> &[u8; DataKey::STORED_SIZE_USIZE] {
259        &self.0
260    }
261}
262
263impl Storable for RawDataKey {
264    fn to_bytes(&self) -> Cow<'_, [u8]> {
265        Cow::Borrowed(&self.0)
266    }
267
268    fn from_bytes(bytes: Cow<'_, [u8]>) -> Self {
269        let mut out = [0u8; DataKey::STORED_SIZE_USIZE];
270        if bytes.len() == out.len() {
271            out.copy_from_slice(bytes.as_ref());
272        }
273        Self(out)
274    }
275
276    fn into_bytes(self) -> Vec<u8> {
277        self.0.to_vec()
278    }
279
280    const BOUND: Bound = Bound::Bounded {
281        max_size: DataKey::STORED_SIZE_BYTES as u32,
282        is_fixed_size: true,
283    };
284}
285
286///
287/// TESTS
288///
289
290#[cfg(test)]
291mod tests {
292    use super::*;
293    use std::borrow::Cow;
294
295    #[test]
296    fn data_key_is_exactly_fixed_size() {
297        let data_key = DataKey::max_storable();
298        let size = data_key.to_raw().unwrap().as_bytes().len();
299        assert_eq!(size, DataKey::STORED_SIZE_USIZE);
300    }
301
302    #[test]
303    fn data_key_ordering_matches_bytes() {
304        let keys = vec![
305            DataKey {
306                entity: EntityName::try_from_str("a").unwrap(),
307                key: StorageKey::Int(0),
308            },
309            DataKey {
310                entity: EntityName::try_from_str("aa").unwrap(),
311                key: StorageKey::Int(0),
312            },
313            DataKey {
314                entity: EntityName::try_from_str("b").unwrap(),
315                key: StorageKey::Int(0),
316            },
317            DataKey {
318                entity: EntityName::try_from_str("a").unwrap(),
319                key: StorageKey::Uint(1),
320            },
321        ];
322
323        let mut by_ord = keys.clone();
324        by_ord.sort();
325
326        let mut by_bytes = keys;
327        by_bytes.sort_by(|a, b| {
328            a.to_raw()
329                .unwrap()
330                .as_bytes()
331                .cmp(b.to_raw().unwrap().as_bytes())
332        });
333
334        assert_eq!(by_ord, by_bytes);
335    }
336
337    #[test]
338    fn data_key_rejects_corrupt_entity() {
339        let mut raw = DataKey::max_storable().to_raw().unwrap();
340        raw.0[0] = 0;
341        assert!(DataKey::try_from_raw(&raw).is_err());
342    }
343
344    #[test]
345    fn data_key_rejects_corrupt_key() {
346        let mut raw = DataKey::max_storable().to_raw().unwrap();
347        let off = EntityName::STORED_SIZE_USIZE;
348        raw.0[off] = 0xFF;
349        assert!(DataKey::try_from_raw(&raw).is_err());
350    }
351
352    #[test]
353    #[allow(clippy::cast_possible_truncation)]
354    fn data_key_fuzz_roundtrip_is_canonical() {
355        let mut seed = 0xDEAD_BEEF_u64;
356
357        for _ in 0..1_000 {
358            let mut bytes = [0u8; DataKey::STORED_SIZE_USIZE];
359            for b in &mut bytes {
360                seed = seed.wrapping_mul(6_364_136_223_846_793_005).wrapping_add(1);
361                *b = (seed >> 24) as u8;
362            }
363
364            let raw = RawDataKey(bytes);
365            if let Ok(decoded) = DataKey::try_from_raw(&raw) {
366                let re = decoded.to_raw().unwrap();
367                assert_eq!(raw.as_bytes(), re.as_bytes());
368            }
369        }
370    }
371
372    #[test]
373    fn raw_data_key_storable_roundtrip() {
374        let key = DataKey::max_storable().to_raw().unwrap();
375        let bytes = key.to_bytes();
376        let decoded = RawDataKey::from_bytes(Cow::Borrowed(&bytes));
377        assert_eq!(key, decoded);
378    }
379}