kevy_index/value.rs
1//! [`IndexValue`] — the three scalar types an index can hold, with a
2//! total order (f64 via `total_cmp`, so NaN coerce-fails upstream and
3//! never enters a segment).
4
5use crate::catalog::ValType;
6use std::cmp::Ordering;
7
8/// One indexed scalar. Ordering is total within a type; the catalog
9/// guarantees a segment only ever holds one variant.
10#[derive(Debug, Clone, PartialEq)]
11pub enum IndexValue {
12 /// `TYPE i64`.
13 I64(i64),
14 /// `TYPE f64` (never NaN — coercion rejects it).
15 F64(f64),
16 /// `TYPE str` (raw bytes, memcmp order).
17 Str(Vec<u8>),
18}
19
20impl Eq for IndexValue {}
21
22impl Ord for IndexValue {
23 fn cmp(&self, other: &Self) -> Ordering {
24 match (self, other) {
25 (IndexValue::I64(a), IndexValue::I64(b)) => a.cmp(b),
26 (IndexValue::F64(a), IndexValue::F64(b)) => a.total_cmp(b),
27 (IndexValue::Str(a), IndexValue::Str(b)) => a.cmp(b),
28 // Cross-variant comparison means a catalog bug; order by
29 // discriminant to stay total rather than panic in a
30 // B-tree.
31 (a, b) => disc(a).cmp(&disc(b)),
32 }
33 }
34}
35
36impl PartialOrd for IndexValue {
37 fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
38 Some(self.cmp(other))
39 }
40}
41
42fn disc(v: &IndexValue) -> u8 {
43 match v {
44 IndexValue::I64(_) => 0,
45 IndexValue::F64(_) => 1,
46 IndexValue::Str(_) => 2,
47 }
48}
49
50impl IndexValue {
51 /// Coerce raw field bytes per the declared type. `None` = the row
52 /// is excluded from the index (and counted as a coerce failure).
53 pub fn coerce(ty: crate::ValType, raw: &[u8]) -> Option<IndexValue> {
54 match ty {
55 // ANN kinds never coerce through IndexValue.
56 crate::ValType::Vector => None,
57 crate::ValType::I64 => {
58 std::str::from_utf8(raw).ok()?.trim().parse::<i64>().ok().map(IndexValue::I64)
59 }
60 crate::ValType::F64 => {
61 let f = std::str::from_utf8(raw).ok()?.trim().parse::<f64>().ok()?;
62 if f.is_nan() {
63 return None;
64 }
65 Some(IndexValue::F64(f))
66 }
67 crate::ValType::Str => Some(IndexValue::Str(raw.to_vec())),
68 }
69 }
70
71 /// Parse a query-side literal (same rules as [`Self::coerce`]).
72 pub fn parse_literal(ty: crate::ValType, raw: &[u8]) -> Option<IndexValue> {
73 Self::coerce(ty, raw)
74 }
75
76 /// Numeric view for aggregation (Str = 0.0; agg kinds only admit
77 /// numeric types at CREATE, so this arm is unreachable there).
78 pub fn as_f64(&self) -> f64 {
79 match self {
80 IndexValue::I64(v) => *v as f64,
81 IndexValue::F64(v) => *v,
82 IndexValue::Str(_) => 0.0,
83 }
84 }
85
86 /// Approximate heap bytes (for the memory formula / IDX.LIST).
87 pub fn approx_bytes(&self) -> usize {
88 match self {
89 IndexValue::I64(_) | IndexValue::F64(_) => 8,
90 IndexValue::Str(s) => s.len(),
91 }
92 }
93}
94
95/// A comparison over a stored value's raw bytes, built once from the
96/// type the field was declared as.
97///
98/// `EQ` is the degenerate range `[v, v]`: stored values are totally
99/// ordered, so equality needs no second code path — and one path cannot
100/// disagree with itself about what a bound means.
101#[derive(Debug, Clone, PartialEq)]
102pub struct ValueTest {
103 ty: ValType,
104 lo: IndexValue,
105 hi: IndexValue,
106}
107
108/// One query BOUND's value: [`IndexValue::parse_literal`] plus the
109/// `@` time expressions on i64 fields (`@now`, `@now-7d`,
110/// a calendar literal, per [`kevy_time::eval`]) — only ever called on
111/// bound bytes, never on row data (a row whose field holds "@now" is
112/// data, not an expression, and the write path never comes here).
113/// Non-i64 fields pass through untouched, so a str field matching a
114/// literal "@…" value stays unambiguous.
115pub fn parse_literal_bound(ty: ValType, raw: &[u8], now: i64) -> Option<IndexValue> {
116 if ty == ValType::I64 && raw.first() == Some(&b'@') {
117 return kevy_time::eval(raw, now).map(IndexValue::I64);
118 }
119 IndexValue::parse_literal(ty, raw)
120}
121
122/// [`parse_literal_bound`]'s coercing sibling for FILTER bounds.
123pub fn coerce_bound(ty: ValType, raw: &[u8], now: i64) -> Option<IndexValue> {
124 if ty == ValType::I64 && raw.first() == Some(&b'@') {
125 return kevy_time::eval(raw, now).map(IndexValue::I64);
126 }
127 IndexValue::coerce(ty, raw)
128}
129
130impl ValueTest {
131 /// `RANGE min max` on a field declared as `ty`. `None` when a bound
132 /// is not of that type — a bound the index cannot interpret is an
133 /// error, not an empty result.
134 pub fn range(ty: ValType, min: &[u8], max: &[u8]) -> Option<ValueTest> {
135 Some(ValueTest { ty, lo: IndexValue::coerce(ty, min)?, hi: IndexValue::coerce(ty, max)? })
136 }
137
138 /// [`ValueTest::range`] for query bounds: `@` time expressions
139 /// resolve against `now` on i64 fields.
140 pub fn range_at(ty: ValType, min: &[u8], max: &[u8], now: i64) -> Option<ValueTest> {
141 Some(ValueTest { ty, lo: coerce_bound(ty, min, now)?, hi: coerce_bound(ty, max, now)? })
142 }
143
144 /// `EQ v` on a field declared as `ty`.
145 pub fn eq(ty: ValType, v: &[u8]) -> Option<ValueTest> {
146 let v = IndexValue::coerce(ty, v)?;
147 Some(ValueTest { ty, lo: v.clone(), hi: v })
148 }
149
150 /// [`ValueTest::eq`] for query bounds: `@` time expressions
151 /// resolve against `now` on i64 fields.
152 pub fn eq_at(ty: ValType, v: &[u8], now: i64) -> Option<ValueTest> {
153 let v = coerce_bound(ty, v, now)?;
154 Some(ValueTest { ty, lo: v.clone(), hi: v })
155 }
156
157 /// Whether a stored value's bytes satisfy the test.
158 ///
159 /// A value that does not coerce fails: text sitting in a field
160 /// declared numeric is not inside any numeric range, and passing it
161 /// would be the accept-and-ignore shape this surface keeps refusing.
162 pub fn passes(&self, raw: &[u8]) -> bool {
163 IndexValue::coerce(self.ty, raw).is_some_and(|v| v >= self.lo && v <= self.hi)
164 }
165}
166
167/// An order-preserving byte encoding of a coerced value.
168///
169/// Two values' encodings compare with `memcmp` exactly as the values
170/// themselves compare. That is what lets `kevy-text` sort by a stored
171/// value without learning what a number is: the caller encodes once per
172/// candidate, and the segment compares bytes.
173///
174/// `None` when the raw bytes are not of that type — a document whose
175/// stored value does not coerce has no place in the order, and is sorted
176/// as missing rather than guessed at.
177pub fn order_key(ty: ValType, raw: &[u8]) -> Option<Vec<u8>> {
178 match IndexValue::coerce(ty, raw)? {
179 // Bytes already compare as themselves.
180 IndexValue::Str(v) => Some(v),
181 // Flip the sign bit: two's complement negatives have the high bit
182 // set and would otherwise sort above every positive.
183 IndexValue::I64(v) => Some(((v as u64) ^ (1 << 63)).to_be_bytes().to_vec()),
184 // The standard IEEE total-order transform. A negative float's
185 // magnitude grows with its bit pattern, so inverting every bit
186 // reverses that and drops it below the positives (whose sign bit
187 // is set instead). Coercion rejects NaN, so there is none to
188 // place.
189 IndexValue::F64(v) => {
190 let b = v.to_bits();
191 let m = if b >> 63 == 1 { !b } else { b | (1 << 63) };
192 Some(m.to_be_bytes().to_vec())
193 }
194 }
195}
196
197#[cfg(test)]
198mod order_key_tests {
199 use super::*;
200
201 /// The encoding must agree with `IndexValue`'s own order on every
202 /// pair — including across zero, which is where a naive big-endian
203 /// encoding of a signed number gets it backwards.
204 fn agrees(ty: ValType, raws: &[&str]) {
205 let mut vals: Vec<(IndexValue, Vec<u8>)> = raws
206 .iter()
207 .map(|r| {
208 (
209 IndexValue::coerce(ty, r.as_bytes()).expect("coerces"),
210 order_key(ty, r.as_bytes()).expect("encodes"),
211 )
212 })
213 .collect();
214 vals.sort_by(|a, b| a.1.cmp(&b.1));
215 for w in vals.windows(2) {
216 assert!(w[0].0 <= w[1].0, "{:?} then {:?} for {ty:?}", w[0].0, w[1].0);
217 }
218 }
219
220 #[test]
221 fn byte_order_matches_value_order() {
222 agrees(
223 ValType::I64,
224 &["-9223372036854775808", "-5", "-1", "0", "1", "5", "9223372036854775807"],
225 );
226 agrees(ValType::F64, &["-1e308", "-1.5", "-0.5", "0", "0.5", "1.5", "1e308"]);
227 agrees(ValType::Str, &["", "a", "ab", "b", "z"]);
228 }
229
230 #[test]
231 fn a_value_that_does_not_coerce_has_no_key() {
232 assert!(order_key(ValType::I64, b"cheap").is_none());
233 assert!(order_key(ValType::F64, b"").is_none());
234 assert_eq!(order_key(ValType::Str, b"anything"), Some(b"anything".to_vec()));
235 }
236}