1use lazy_static::lazy_static;
2use smallvec::{smallvec, SmallVec};
3use std::iter;
4
5lazy_static! {
6 pub static ref MIN: Locator = Locator::min();
7 pub static ref MAX: Locator = Locator::max();
8}
9
10#[derive(Clone, Debug, PartialEq, Eq, PartialOrd, Ord, Hash)]
11pub struct Locator(SmallVec<[u64; 4]>);
12
13impl Locator {
14 pub fn min() -> Self {
15 Self(smallvec![u64::MIN])
16 }
17
18 pub fn max() -> Self {
19 Self(smallvec![u64::MAX])
20 }
21
22 pub fn assign(&mut self, other: &Self) {
23 self.0.resize(other.0.len(), 0);
24 self.0.copy_from_slice(&other.0);
25 }
26
27 pub fn between(lhs: &Self, rhs: &Self) -> Self {
28 let lhs = lhs.0.iter().copied().chain(iter::repeat(u64::MIN));
29 let rhs = rhs.0.iter().copied().chain(iter::repeat(u64::MAX));
30 let mut location = SmallVec::new();
31 for (lhs, rhs) in lhs.zip(rhs) {
32 let mid = lhs + ((rhs.saturating_sub(lhs)) >> 48);
33 location.push(mid);
34 if mid > lhs {
35 break;
36 }
37 }
38 Self(location)
39 }
40
41 pub fn len(&self) -> usize {
42 self.0.len()
43 }
44
45 pub fn is_empty(&self) -> bool {
46 self.len() == 0
47 }
48}
49
50impl Default for Locator {
51 fn default() -> Self {
52 Self::min()
53 }
54}
55
56impl sum_tree::Item for Locator {
57 type Summary = Locator;
58
59 fn summary(&self) -> Self::Summary {
60 self.clone()
61 }
62}
63
64impl sum_tree::KeyedItem for Locator {
65 type Key = Locator;
66
67 fn key(&self) -> Self::Key {
68 self.clone()
69 }
70}
71
72impl sum_tree::Summary for Locator {
73 type Context = ();
74
75 fn add_summary(&mut self, summary: &Self, _: &()) {
76 self.assign(summary);
77 }
78}
79
80#[cfg(test)]
81mod tests {
82 use super::*;
83 use rand::prelude::*;
84 use std::mem;
85
86 #[gpui::test(iterations = 100)]
87 fn test_locators(mut rng: StdRng) {
88 let mut lhs = Default::default();
89 let mut rhs = Default::default();
90 while lhs == rhs {
91 lhs = Locator(
92 (0..rng.gen_range(1..=5))
93 .map(|_| rng.gen_range(0..=100))
94 .collect(),
95 );
96 rhs = Locator(
97 (0..rng.gen_range(1..=5))
98 .map(|_| rng.gen_range(0..=100))
99 .collect(),
100 );
101 }
102
103 if lhs > rhs {
104 mem::swap(&mut lhs, &mut rhs);
105 }
106
107 let middle = Locator::between(&lhs, &rhs);
108 assert!(middle > lhs);
109 assert!(middle < rhs);
110 for ix in 0..middle.0.len() - 1 {
111 assert!(
112 middle.0[ix] == *lhs.0.get(ix).unwrap_or(&0)
113 || middle.0[ix] == *rhs.0.get(ix).unwrap_or(&0)
114 );
115 }
116 }
117}