use crate::model::{Kind, SchemaRecord};
pub mod score;
pub struct Hit<'a> {
pub record: &'a SchemaRecord,
pub score: i64,
}
const TAIL_CUTOFF: f64 = 0.4;
pub fn parent_filter<'a>(query: &str, records: &'a [SchemaRecord]) -> Option<&'a str> {
let (_, Some(qualifier)) = score::parse_qualified(query) else {
return None;
};
let parents: std::collections::HashSet<&str> =
records.iter().filter_map(|r| r.parent.as_deref()).collect();
if let Some(exact) = parents.iter().find(|p| p.eq_ignore_ascii_case(qualifier)) {
return Some(exact);
}
let q = qualifier.to_ascii_lowercase();
let mut best: Option<(usize, &str)> = None;
let mut tied = false;
for p in parents {
let Some(d) = score::typo_distance(&q, &p.to_ascii_lowercase()) else {
continue;
};
match best {
Some((bd, _)) if d > bd => {}
Some((bd, _)) if d == bd => tied = true,
_ => {
best = Some((d, p));
tied = false;
}
}
}
match (best, tied) {
(Some((_, p)), false) => Some(p),
_ => None,
}
}
pub fn spaced_qualifier(query: &str, records: &[SchemaRecord]) -> Option<String> {
if query.contains('.') {
return None;
}
let mut words = query.split_whitespace();
let (Some(first), Some(second), None) = (words.next(), words.next(), words.next()) else {
return None;
};
records
.iter()
.filter_map(|r| r.parent.as_deref())
.any(|p| p.eq_ignore_ascii_case(first))
.then(|| format!("{first}.{second}"))
}
pub fn named_hit(query: &str, hits: &[Hit]) -> bool {
let (leaf, _) = score::parse_qualified(query);
let leaf = leaf.to_ascii_lowercase();
if leaf.is_empty() {
return false;
}
hits.iter().any(|h| {
let lower = h.record.name.to_ascii_lowercase();
let chars: Vec<char> = h.record.name.chars().collect();
let boundary = score::boundaries(&chars);
lower
.match_indices(&leaf)
.any(|(i, _)| boundary.get(i).copied().unwrap_or(false))
})
}
pub fn search<'a>(
query: &str,
records: &'a [SchemaRecord],
kind: Option<Kind>,
parent: Option<&str>,
) -> Vec<Hit<'a>> {
use rayon::prelude::*;
let mut hits: Vec<Hit> = records
.par_iter()
.filter(|r| kind.is_none_or(|k| r.kind == k))
.filter(|r| {
parent.is_none_or(|p| {
r.parent
.as_deref()
.is_some_and(|rp| rp.eq_ignore_ascii_case(p))
})
})
.filter_map(|r| score::score(query, r).map(|score| Hit { record: r, score }))
.collect();
hits.sort_by(|a, b| {
b.score
.cmp(&a.score)
.then_with(|| a.record.path.len().cmp(&b.record.path.len()))
});
if let Some(top) = hits.first().map(|h| h.score) {
let floor = (top as f64 * TAIL_CUTOFF) as i64;
hits.retain(|h| h.score >= floor);
}
hits
}
#[cfg(test)]
mod tests {
use super::*;
fn rec(name: &str, parent: Option<&str>, kind: Kind) -> SchemaRecord {
let path = match parent {
Some(p) => format!("{p}.{name}"),
None => name.to_string(),
};
SchemaRecord {
path,
name: name.into(),
kind,
parent: parent.map(Into::into),
type_ref: None,
args: vec![],
description: None,
deprecated: None,
directives: vec![],
}
}
#[test]
fn parent_filter_resolves_a_real_type() {
let records = vec![
rec("employees", Some("Company"), Kind::Field),
rec("name", Some("CompanyProfile"), Kind::Field),
];
assert_eq!(parent_filter("Company.employe", &records), Some("Company"));
assert_eq!(parent_filter("company.employe", &records), Some("Company"));
assert_eq!(parent_filter("Comp.employe", &records), None);
assert_eq!(parent_filter("employe", &records), None);
}
#[test]
fn parent_filter_snaps_a_misspelled_type_to_the_closest() {
let records = vec![
rec("employees", Some("Company"), Kind::Field),
rec("name", Some("CompanyProfile"), Kind::Field),
];
assert_eq!(parent_filter("Compnay.employe", &records), Some("Company"));
assert_eq!(parent_filter("Zebra.employe", &records), None);
}
#[test]
fn parent_filter_declines_an_ambiguous_misspelling() {
let records = vec![
rec("id", Some("Vser"), Kind::Field),
rec("id", Some("Usor"), Kind::Field),
];
assert_eq!(parent_filter("User.id", &records), None);
}
#[test]
fn parent_filter_excludes_other_types() {
let records = vec![
rec("employees", Some("Company"), Kind::Field),
rec("employees", Some("CompanyProfile"), Kind::Field),
rec("employer", Some("CompanyMemberStats"), Kind::Field),
];
let hits = search("Company.employe", &records, None, Some("Company"));
assert_eq!(hits.len(), 1);
assert_eq!(hits[0].record.path, "Company.employees");
}
#[test]
fn spaced_qualifier_rewrites_type_plus_word() {
let records = vec![
rec("name", Some("User"), Kind::Field),
rec("lastName", Some("User"), Kind::Field),
];
assert_eq!(
spaced_qualifier("User name", &records).as_deref(),
Some("User.name")
);
assert_eq!(
spaced_qualifier("user name", &records).as_deref(),
Some("user.name")
);
assert_eq!(spaced_qualifier("cancel a subscription", &records), None);
assert_eq!(spaced_qualifier("User.name", &records), None);
assert_eq!(spaced_qualifier("employee summary", &records), None);
}
#[test]
fn named_hit_accepts_exact_and_boundary_words() {
let records = vec![rec("name", Some("User"), Kind::Field)];
let hits = search("User.name", &records, None, None);
assert!(named_hit("User.name", &hits));
assert!(named_hit("user.NAME", &hits));
let variants = vec![
rec("lastName", Some("User"), Kind::Field),
rec("fullName", Some("User"), Kind::Field),
];
let hits = search("User.name", &variants, None, Some("User"));
assert!(named_hit("User.name", &hits));
}
#[test]
fn named_hit_rejects_mid_word_and_scattered_matches() {
let records = vec![rec("accountant", Some("User"), Kind::Field)];
let hits = search("count", &records, None, None);
assert!(!hits.is_empty());
assert!(!named_hit("count", &hits));
}
#[test]
fn weak_tail_is_cut_when_a_strong_match_exists() {
let records = vec![
rec("user", Some("Query"), Kind::Query),
rec("userProfile", Some("Query"), Kind::Query),
rec("uzszezr", Some("Query"), Kind::Query),
];
let paths: Vec<&str> = search("user", &records, None, None)
.iter()
.map(|h| h.record.path.as_str())
.collect();
assert_eq!(paths, ["Query.user", "Query.userProfile"]);
}
#[test]
fn weak_matches_survive_when_nothing_stronger_exists() {
let records = vec![rec("uzszezr", Some("Query"), Kind::Query)];
assert_eq!(search("user", &records, None, None).len(), 1);
}
#[test]
fn search_returns_all_hits_above_the_cutoff() {
let records: Vec<SchemaRecord> = (0..50)
.map(|i| rec(&format!("user{i}"), Some("Query"), Kind::Query))
.collect();
assert_eq!(search("user", &records, None, None).len(), 50);
}
}