Skip to main content

icydb_core/db/identity/
mod.rs

1//! Module: db::identity
2//! Responsibility: validated entity/index naming and stable byte ordering contracts.
3//! Does not own: schema metadata, relation policy, or storage-layer persistence.
4//! Boundary: all identity construction/decoding for db data/index key domains.
5//!
6//! Invariants:
7//! - Identities are ASCII, non-empty, and bounded by MAX_* limits.
8//! - All construction paths validate invariants.
9//! - Stored byte representation is canonical and order-preserving.
10//! - Ordering semantics follow the length-prefixed stored-byte layout, not
11//!   lexicographic string ordering.
12
13#![expect(clippy::cast_possible_truncation)]
14
15#[cfg(test)]
16mod tests;
17
18use crate::MAX_INDEX_FIELDS;
19use icydb_schema::canonical_index_name_slug;
20use std::{
21    cmp::Ordering,
22    fmt::{self, Display},
23};
24
25///
26/// Constants
27///
28
29const MAX_ENTITY_NAME_LEN: usize = 64;
30const MAX_INDEX_FIELD_NAME_LEN: usize = 64;
31const MAX_INDEX_NAME_PREFIX_LEN: usize = 5;
32const MAX_ENTITY_NAME_SLUG_LEN: usize = (MAX_ENTITY_NAME_LEN * 3) / 2;
33const MAX_INDEX_FIELD_NAME_SLUG_LEN: usize = (MAX_INDEX_FIELD_NAME_LEN * 3) / 2;
34const MAX_INDEX_NAME_LEN: usize = MAX_INDEX_NAME_PREFIX_LEN
35    + MAX_ENTITY_NAME_SLUG_LEN
36    + 2
37    + (MAX_INDEX_FIELDS * MAX_INDEX_FIELD_NAME_SLUG_LEN)
38    + (MAX_INDEX_FIELDS - 1);
39const INDEX_NAME_SEGMENT_DELIMITER: u8 = b'|';
40
41/// Decode error for persisted identity bytes.
42///
43/// Owned by the identity layer at storage/corruption boundaries.
44
45#[derive(Debug)]
46pub enum IdentityDecodeError {
47    /// Persisted byte slice has the wrong fixed envelope size.
48    InvalidSize,
49
50    /// Persisted length prefix is empty or exceeds the identity limit.
51    InvalidLength,
52
53    /// Identity payload contains non-ASCII bytes.
54    NonAscii,
55
56    /// Fixed-width padding contains non-zero bytes.
57    NonZeroPadding,
58
59    /// Entity identity payload contains the reserved index segment delimiter.
60    Delimiter,
61}
62
63/// Admission error for generated entity names.
64///
65/// Owned by the identity layer before entity names enter stable key formats.
66
67#[derive(Debug)]
68pub enum EntityNameError {
69    /// Entity name is empty.
70    Empty,
71
72    /// Entity name exceeds the stable identity byte limit.
73    TooLong { len: usize, max: usize },
74
75    /// Entity name contains non-ASCII bytes.
76    NonAscii,
77
78    /// Entity name contains the reserved index segment delimiter.
79    Delimiter,
80}
81
82/// Admission error for generated index names.
83///
84/// Owned by the identity layer while deriving index names from an entity and
85/// field list.
86
87#[derive(Debug)]
88pub enum IndexNameError {
89    /// Index field list exceeds the supported key-width limit.
90    TooManyFields { len: usize, max: usize },
91
92    /// Index field list is empty.
93    NoFields,
94
95    /// One index field segment is empty.
96    FieldEmpty,
97
98    /// One index field segment exceeds the stable identity byte limit.
99    FieldTooLong { field: String, max: usize },
100
101    /// One index field segment contains non-ASCII bytes.
102    FieldNonAscii { field: String },
103
104    /// One index field segment contains the reserved segment delimiter.
105    FieldDelimiter { field: String },
106
107    /// Derived index name exceeds the stable identity byte limit.
108    TooLong { len: usize, max: usize },
109}
110
111/// Validated entity identity with fixed-size persisted representation.
112///
113/// Used by data-key and index-key domains as canonical entity-name bytes.
114
115#[derive(Clone, Copy, Eq, Hash, PartialEq)]
116pub struct EntityName {
117    len: u8,
118    bytes: [u8; MAX_ENTITY_NAME_LEN],
119}
120
121impl EntityName {
122    /// Fixed on-disk size in bytes (stable, protocol-level)
123    pub const STORED_SIZE_BYTES: u64 = 1 + (MAX_ENTITY_NAME_LEN as u64);
124
125    /// Fixed in-memory size (for buffers and arrays)
126    pub const STORED_SIZE_USIZE: usize = Self::STORED_SIZE_BYTES as usize;
127
128    /// Validate and construct an entity name from one ASCII string.
129    pub fn try_from_str(name: &str) -> Result<Self, EntityNameError> {
130        // Phase 1: validate user-visible identity constraints.
131        let bytes = name.as_bytes();
132        let len = bytes.len();
133
134        if len == 0 {
135            return Err(EntityNameError::Empty);
136        }
137        if len > MAX_ENTITY_NAME_LEN {
138            return Err(EntityNameError::TooLong {
139                len,
140                max: MAX_ENTITY_NAME_LEN,
141            });
142        }
143        if !bytes.is_ascii() {
144            return Err(EntityNameError::NonAscii);
145        }
146        if bytes.contains(&INDEX_NAME_SEGMENT_DELIMITER) {
147            return Err(EntityNameError::Delimiter);
148        }
149
150        // Phase 2: write into fixed-size canonical storage.
151        let mut out = [0u8; MAX_ENTITY_NAME_LEN];
152        out[..len].copy_from_slice(bytes);
153
154        Ok(Self {
155            len: len as u8,
156            bytes: out,
157        })
158    }
159
160    /// Return the stored entity-name length.
161    #[must_use]
162    pub const fn len(&self) -> usize {
163        self.len as usize
164    }
165
166    /// Return whether the stored entity-name length is zero.
167    #[must_use]
168    pub const fn is_empty(&self) -> bool {
169        self.len() == 0
170    }
171
172    /// Borrow raw identity bytes excluding trailing fixed-buffer padding.
173    #[must_use]
174    pub fn as_bytes(&self) -> &[u8] {
175        &self.bytes[..self.len()]
176    }
177
178    /// Borrow the entity name as UTF-8 text.
179    ///
180    #[must_use]
181    pub fn as_str(&self) -> &str {
182        std::str::from_utf8(self.as_bytes()).unwrap_or_default()
183    }
184
185    /// Encode this identity into its fixed-size persisted representation.
186    #[must_use]
187    pub fn to_bytes(self) -> [u8; Self::STORED_SIZE_USIZE] {
188        let mut out = [0u8; Self::STORED_SIZE_USIZE];
189        out[0] = self.len;
190        out[1..].copy_from_slice(&self.bytes);
191        out
192    }
193
194    /// Decode one fixed-size persisted entity identity payload.
195    pub fn from_bytes(bytes: &[u8]) -> Result<Self, IdentityDecodeError> {
196        // Phase 1: validate layout and payload bounds.
197        if bytes.len() != Self::STORED_SIZE_USIZE {
198            return Err(IdentityDecodeError::InvalidSize);
199        }
200
201        let len = bytes[0] as usize;
202        if len == 0 || len > MAX_ENTITY_NAME_LEN {
203            return Err(IdentityDecodeError::InvalidLength);
204        }
205        if !bytes[1..=len].is_ascii() {
206            return Err(IdentityDecodeError::NonAscii);
207        }
208        if bytes[1..=len].contains(&INDEX_NAME_SEGMENT_DELIMITER) {
209            return Err(IdentityDecodeError::Delimiter);
210        }
211        if bytes[1 + len..].iter().any(|&b| b != 0) {
212            return Err(IdentityDecodeError::NonZeroPadding);
213        }
214
215        // Phase 2: materialize canonical fixed-buffer identity storage.
216        let mut name = [0u8; MAX_ENTITY_NAME_LEN];
217        name.copy_from_slice(&bytes[1..]);
218
219        Ok(Self {
220            len: len as u8,
221            bytes: name,
222        })
223    }
224}
225
226impl Ord for EntityName {
227    fn cmp(&self, other: &Self) -> Ordering {
228        // Keep ordering consistent with `to_bytes()` (length prefix first).
229        // This is deterministic protocol/storage ordering, not lexical string order.
230        self.len.cmp(&other.len).then(self.bytes.cmp(&other.bytes))
231    }
232}
233
234impl PartialOrd for EntityName {
235    fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
236        Some(self.cmp(other))
237    }
238}
239
240impl Display for EntityName {
241    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
242        f.write_str(self.as_str())
243    }
244}
245
246impl fmt::Debug for EntityName {
247    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
248        write!(f, "EntityName({})", self.as_str())
249    }
250}
251
252/// Validated index identity with fixed-size persisted representation.
253///
254/// Used by index-store key domains as canonical index-name bytes.
255
256#[derive(Clone, Copy, Eq, Hash, PartialEq)]
257pub struct IndexName {
258    len: u16,
259    bytes: [u8; MAX_INDEX_NAME_LEN],
260}
261
262impl IndexName {
263    /// Fixed on-disk size in bytes (stable, protocol-level).
264    pub const STORED_SIZE_BYTES: u64 = 2 + (MAX_INDEX_NAME_LEN as u64);
265    /// Fixed in-memory size (for buffers and arrays).
266    pub const STORED_SIZE_USIZE: usize = Self::STORED_SIZE_BYTES as usize;
267
268    /// Validate and construct one non-unique index identity from an entity +
269    /// field list.
270    pub fn try_from_entity_fields(
271        entity: &EntityName,
272        fields: &[&str],
273    ) -> Result<Self, IndexNameError> {
274        Self::try_from_entity_fields_with_prefix("idx", entity, fields)
275    }
276
277    /// Validate and construct one unique index identity from an entity + field
278    /// list.
279    pub fn try_unique_from_entity_fields(
280        entity: &EntityName,
281        fields: &[&str],
282    ) -> Result<Self, IndexNameError> {
283        Self::try_from_entity_fields_with_prefix("uniq", entity, fields)
284    }
285
286    fn try_from_entity_fields_with_prefix(
287        prefix: &str,
288        entity: &EntityName,
289        fields: &[&str],
290    ) -> Result<Self, IndexNameError> {
291        // Phase 1: validate index-field count and per-field identity constraints.
292        if fields.is_empty() {
293            return Err(IndexNameError::NoFields);
294        }
295        if fields.len() > MAX_INDEX_FIELDS {
296            return Err(IndexNameError::TooManyFields {
297                len: fields.len(),
298                max: MAX_INDEX_FIELDS,
299            });
300        }
301
302        let mut field_slugs = Vec::with_capacity(fields.len());
303        for field in fields {
304            let field_len = field.len();
305            if field_len == 0 {
306                return Err(IndexNameError::FieldEmpty);
307            }
308            if field_len > MAX_INDEX_FIELD_NAME_LEN {
309                return Err(IndexNameError::FieldTooLong {
310                    field: (*field).to_string(),
311                    max: MAX_INDEX_FIELD_NAME_LEN,
312                });
313            }
314            if !field.is_ascii() {
315                return Err(IndexNameError::FieldNonAscii {
316                    field: (*field).to_string(),
317                });
318            }
319            if field.as_bytes().contains(&INDEX_NAME_SEGMENT_DELIMITER) {
320                return Err(IndexNameError::FieldDelimiter {
321                    field: (*field).to_string(),
322                });
323            }
324            let slug = index_name_slug(field);
325            if slug.is_empty() {
326                return Err(IndexNameError::FieldEmpty);
327            }
328            field_slugs.push(slug);
329        }
330
331        let entity_slug = index_name_slug(entity.as_str());
332        let total_len = prefix
333            .len()
334            .saturating_add(1)
335            .saturating_add(entity_slug.len())
336            .saturating_add(2)
337            .saturating_add(field_slugs.iter().map(String::len).sum::<usize>())
338            .saturating_add(field_slugs.len().saturating_sub(1));
339        if total_len > MAX_INDEX_NAME_LEN {
340            return Err(IndexNameError::TooLong {
341                len: total_len,
342                max: MAX_INDEX_NAME_LEN,
343            });
344        }
345
346        // Phase 2: encode canonical `idx_entity__field...` bytes into fixed storage.
347        let mut out = [0u8; MAX_INDEX_NAME_LEN];
348        let mut len = 0usize;
349
350        Self::push_bytes(&mut out, &mut len, prefix.as_bytes());
351        Self::push_bytes(&mut out, &mut len, b"_");
352        Self::push_bytes(&mut out, &mut len, entity_slug.as_bytes());
353        Self::push_bytes(&mut out, &mut len, b"__");
354        for (index, field_slug) in field_slugs.iter().enumerate() {
355            if index > 0 {
356                Self::push_bytes(&mut out, &mut len, b"_");
357            }
358            Self::push_bytes(&mut out, &mut len, field_slug.as_bytes());
359        }
360
361        Ok(Self {
362            len: len as u16,
363            bytes: out,
364        })
365    }
366
367    /// Borrow raw index-identity bytes excluding trailing fixed-buffer padding.
368    #[must_use]
369    pub fn as_bytes(&self) -> &[u8] {
370        &self.bytes[..self.len as usize]
371    }
372
373    /// Borrow the index identity as UTF-8 text.
374    ///
375    #[must_use]
376    pub fn as_str(&self) -> &str {
377        std::str::from_utf8(self.as_bytes()).unwrap_or_default()
378    }
379
380    /// Encode this identity into its fixed-size persisted representation.
381    #[must_use]
382    pub fn to_bytes(self) -> [u8; Self::STORED_SIZE_USIZE] {
383        let mut out = [0u8; Self::STORED_SIZE_USIZE];
384        out[..2].copy_from_slice(&self.len.to_be_bytes());
385        out[2..].copy_from_slice(&self.bytes);
386        out
387    }
388
389    /// Decode one fixed-size persisted index identity payload.
390    ///
391    /// This validates the canonical fixed-width byte envelope only. It does not
392    /// reconstruct field segments or prove the bytes were produced by
393    /// `try_from_entity_fields`; callers must ensure persisted bytes originate from a
394    /// previously validated `IndexName`.
395    pub fn from_bytes(bytes: &[u8]) -> Result<Self, IdentityDecodeError> {
396        // Phase 1: validate layout and payload bounds.
397        if bytes.len() != Self::STORED_SIZE_USIZE {
398            return Err(IdentityDecodeError::InvalidSize);
399        }
400
401        let len = u16::from_be_bytes([bytes[0], bytes[1]]) as usize;
402        if len == 0 || len > MAX_INDEX_NAME_LEN {
403            return Err(IdentityDecodeError::InvalidLength);
404        }
405        if !bytes[2..2 + len].is_ascii() {
406            return Err(IdentityDecodeError::NonAscii);
407        }
408        if bytes[2 + len..].iter().any(|&b| b != 0) {
409            return Err(IdentityDecodeError::NonZeroPadding);
410        }
411
412        // Phase 2: materialize canonical fixed-buffer identity storage.
413        let mut name = [0u8; MAX_INDEX_NAME_LEN];
414        name.copy_from_slice(&bytes[2..]);
415
416        Ok(Self {
417            len: len as u16,
418            bytes: name,
419        })
420    }
421
422    // Append bytes into the fixed-size identity buffer while tracking write offset.
423    fn push_bytes(out: &mut [u8; MAX_INDEX_NAME_LEN], len: &mut usize, bytes: &[u8]) {
424        let end = *len + bytes.len();
425        out[*len..end].copy_from_slice(bytes);
426        *len = end;
427    }
428}
429
430fn index_name_slug(value: &str) -> String {
431    canonical_index_name_slug(value)
432}
433
434impl Ord for IndexName {
435    fn cmp(&self, other: &Self) -> Ordering {
436        self.to_bytes().cmp(&other.to_bytes())
437    }
438}
439
440impl PartialOrd for IndexName {
441    fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
442        Some(self.cmp(other))
443    }
444}
445
446impl fmt::Debug for IndexName {
447    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
448        write!(f, "IndexName({})", self.as_str())
449    }
450}
451
452impl Display for IndexName {
453    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
454        f.write_str(self.as_str())
455    }
456}