mirror of
https://github.com/meilisearch/MeiliSearch
synced 2024-11-25 22:34:28 +01:00
Make the facet level search system generic on f64 and i64
This commit is contained in:
parent
9e2cbe3362
commit
38c76754ef
5
Cargo.lock
generated
5
Cargo.lock
generated
@ -617,6 +617,7 @@ dependencies = [
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"maplit",
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"memmap",
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"near-proximity",
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"num-traits",
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"obkv",
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"once_cell",
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"ordered-float",
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@ -675,9 +676,9 @@ dependencies = [
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[[package]]
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name = "num-traits"
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version = "0.2.12"
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version = "0.2.14"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "ac267bcc07f48ee5f8935ab0d24f316fb722d7a1292e2913f0cc196b29ffd611"
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checksum = "9a64b1ec5cda2586e284722486d802acf1f7dbdc623e2bfc57e65ca1cd099290"
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dependencies = [
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"autocfg",
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]
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@ -21,6 +21,7 @@ levenshtein_automata = { version = "0.2.0", features = ["fst_automaton"] }
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linked-hash-map = "0.5.3"
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memmap = "0.7.0"
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near-proximity = { git = "https://github.com/Kerollmops/plane-sweep-proximity", rev = "6608205" }
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num-traits = "0.2.14"
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obkv = "0.1.0"
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once_cell = "1.4.0"
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ordered-float = "2.0.0"
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123
src/search.rs
123
src/search.rs
@ -1,7 +1,9 @@
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use std::borrow::Cow;
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use std::collections::{HashMap, HashSet};
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use std::fmt;
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use std::error::Error as StdError;
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use std::fmt::{self, Debug};
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use std::ops::Bound::{self, Unbounded, Included, Excluded};
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use std::str::FromStr;
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use anyhow::{bail, ensure, Context};
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use fst::{IntoStreamer, Streamer};
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@ -9,11 +11,12 @@ use heed::types::DecodeIgnore;
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use levenshtein_automata::DFA;
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use levenshtein_automata::LevenshteinAutomatonBuilder as LevBuilder;
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use log::debug;
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use num_traits::Bounded;
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use once_cell::sync::Lazy;
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use roaring::bitmap::RoaringBitmap;
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use crate::facet::FacetType;
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use crate::heed_codec::facet::FacetLevelValueI64Codec;
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use crate::heed_codec::facet::{FacetLevelValueI64Codec, FacetLevelValueF64Codec};
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use crate::mdfs::Mdfs;
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use crate::query_tokens::{QueryTokens, QueryToken};
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use crate::{Index, DocumentId};
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@ -24,20 +27,21 @@ static LEVDIST1: Lazy<LevBuilder> = Lazy::new(|| LevBuilder::new(1, true));
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static LEVDIST2: Lazy<LevBuilder> = Lazy::new(|| LevBuilder::new(2, true));
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// TODO support also floats
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#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
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pub enum FacetOperator {
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GreaterThan(i64),
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GreaterThanOrEqual(i64),
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LowerThan(i64),
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LowerThanOrEqual(i64),
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Equal(i64),
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Between(i64, i64),
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#[derive(Debug, Copy, Clone, PartialEq)]
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pub enum FacetOperator<T> {
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GreaterThan(T),
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GreaterThanOrEqual(T),
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LowerThan(T),
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LowerThanOrEqual(T),
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Equal(T),
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Between(T, T),
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}
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// TODO also support ANDs, ORs, NOTs.
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#[derive(Debug, Copy, Clone, PartialEq, Eq, Hash)]
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#[derive(Debug, Copy, Clone, PartialEq)]
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pub enum FacetCondition {
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Operator(u8, FacetOperator),
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OperatorI64(u8, FacetOperator<i64>),
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OperatorF64(u8, FacetOperator<f64>),
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}
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impl FacetCondition {
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@ -48,7 +52,6 @@ impl FacetCondition {
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) -> anyhow::Result<Option<FacetCondition>>
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{
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use FacetCondition::*;
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use FacetOperator::*;
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let fields_ids_map = index.fields_ids_map(rtxn)?;
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let faceted_fields = index.faceted_fields(rtxn)?;
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@ -64,33 +67,44 @@ impl FacetCondition {
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let field_id = fields_ids_map.id(&field_name).with_context(|| format!("field {} not found", field_name))?;
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let field_type = faceted_fields.get(&field_id).with_context(|| format!("field {} is not faceted", field_name))?;
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ensure!(*field_type == FacetType::Integer, "Only conditions on integer facets");
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match field_type {
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FacetType::Integer => Self::parse_condition(iter).map(|op| Some(OperatorI64(field_id, op))),
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FacetType::Float => Self::parse_condition(iter).map(|op| Some(OperatorF64(field_id, op))),
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FacetType::String => bail!("invalid facet type"),
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}
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}
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fn parse_condition<'a, T: FromStr>(
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mut iter: impl Iterator<Item=&'a str>,
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) -> anyhow::Result<FacetOperator<T>>
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where T::Err: Send + Sync + StdError + 'static,
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{
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use FacetOperator::*;
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match iter.next() {
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Some(">") => {
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let param = iter.next().context("missing parameter")?;
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let value = param.parse().with_context(|| format!("invalid parameter ({:?})", param))?;
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Ok(Some(Operator(field_id, GreaterThan(value))))
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Ok(GreaterThan(value))
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},
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Some(">=") => {
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let param = iter.next().context("missing parameter")?;
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let value = param.parse().with_context(|| format!("invalid parameter ({:?})", param))?;
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Ok(Some(Operator(field_id, GreaterThanOrEqual(value))))
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Ok(GreaterThanOrEqual(value))
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},
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Some("<") => {
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let param = iter.next().context("missing parameter")?;
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let value = param.parse().with_context(|| format!("invalid parameter ({:?})", param))?;
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Ok(Some(Operator(field_id, LowerThan(value))))
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Ok(LowerThan(value))
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},
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Some("<=") => {
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let param = iter.next().context("missing parameter")?;
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let value = param.parse().with_context(|| format!("invalid parameter ({:?})", param))?;
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Ok(Some(Operator(field_id, LowerThanOrEqual(value))))
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Ok(LowerThanOrEqual(value))
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},
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Some("=") => {
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let param = iter.next().context("missing parameter")?;
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let value = param.parse().with_context(|| format!("invalid parameter ({:?})", param))?;
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Ok(Some(Operator(field_id, Equal(value))))
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Ok(Equal(value))
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},
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Some(otherwise) => {
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// BETWEEN or X TO Y (both inclusive)
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@ -98,7 +112,7 @@ impl FacetCondition {
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ensure!(iter.next().map_or(false, |s| s.eq_ignore_ascii_case("to")), "TO keyword missing or invalid");
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let next = iter.next().context("missing second TO parameter")?;
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let right_param = next.parse().with_context(|| format!("invalid second TO parameter ({:?})", next))?;
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Ok(Some(Operator(field_id, Between(left_param, right_param))))
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Ok(Between(left_param, right_param))
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},
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None => bail!("missing facet filter first parameter"),
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}
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@ -229,19 +243,23 @@ impl<'a> Search<'a> {
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/// Aggregates the documents ids that are part of the specified range automatically
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/// going deeper through the levels.
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fn explore_facet_levels(
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fn explore_facet_levels<T: 'a, KC>(
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&self,
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field_id: u8,
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level: u8,
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left: Bound<i64>,
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right: Bound<i64>,
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left: Bound<T>,
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right: Bound<T>,
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output: &mut RoaringBitmap,
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) -> anyhow::Result<()>
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where
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T: Copy + PartialEq + PartialOrd + Bounded + Debug,
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KC: heed::BytesDecode<'a, DItem = (u8, u8, T, T)>,
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KC: for<'x> heed::BytesEncode<'x, EItem = (u8, u8, T, T)>,
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{
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match (left, right) {
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// If the request is an exact value we must go directly to the deepest level.
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(Included(l), Included(r)) if l == r && level > 0 => {
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return self.explore_facet_levels(field_id, 0, left, right, output);
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return self.explore_facet_levels::<T, KC>(field_id, 0, left, right, output);
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},
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// lower TO upper when lower > upper must return no result
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(Included(l), Included(r)) if l > r => return Ok(()),
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@ -257,12 +275,12 @@ impl<'a> Search<'a> {
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// We must create a custom iterator to be able to iterate over the
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// requested range as the range iterator cannot express some conditions.
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let left_bound = match left {
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Included(left) => Included((field_id, level, left, i64::MIN)),
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Excluded(left) => Excluded((field_id, level, left, i64::MIN)),
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Included(left) => Included((field_id, level, left, T::min_value())),
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Excluded(left) => Excluded((field_id, level, left, T::min_value())),
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Unbounded => Unbounded,
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};
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let right_bound = Included((field_id, level, i64::MAX, i64::MAX));
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let db = self.index.facet_field_id_value_docids.remap_key_type::<FacetLevelValueI64Codec>();
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let right_bound = Included((field_id, level, T::max_value(), T::max_value()));
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let db = self.index.facet_field_id_value_docids.remap_key_type::<KC>();
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let iter = db
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.range(self.rtxn, &(left_bound, right_bound))?
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.take_while(|r| r.as_ref().map_or(true, |((.., r), _)| {
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@ -277,7 +295,7 @@ impl<'a> Search<'a> {
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for (i, result) in iter.enumerate() {
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let ((_fid, _level, l, r), docids) = result?;
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debug!("{} to {} (level {}) found {} documents", l, r, _level, docids.len());
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debug!("{:?} to {:?} (level {}) found {} documents", l, r, _level, docids.len());
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output.union_with(&docids);
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// We save the leftest and rightest bounds we actually found at this level.
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if i == 0 { left_found = Some(l); }
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@ -298,18 +316,18 @@ impl<'a> Search<'a> {
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if !matches!(left, Included(l) if l == left_found) {
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let sub_right = Excluded(left_found);
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debug!("calling left with {:?} to {:?} (level {})", left, sub_right, deeper_level);
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self.explore_facet_levels(field_id, deeper_level, left, sub_right, output)?;
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self.explore_facet_levels::<T, KC>(field_id, deeper_level, left, sub_right, output)?;
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}
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if !matches!(right, Included(r) if r == right_found) {
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let sub_left = Excluded(right_found);
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debug!("calling right with {:?} to {:?} (level {})", sub_left, right, deeper_level);
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self.explore_facet_levels(field_id, deeper_level, sub_left, right, output)?;
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self.explore_facet_levels::<T, KC>(field_id, deeper_level, sub_left, right, output)?;
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}
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},
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None => {
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// If we found nothing at this level it means that we must find
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// the same bounds but at a deeper, more precise level.
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self.explore_facet_levels(field_id, deeper_level, left, right, output)?;
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self.explore_facet_levels::<T, KC>(field_id, deeper_level, left, right, output)?;
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},
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}
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@ -327,10 +345,10 @@ impl<'a> Search<'a> {
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};
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// We create the original candidates with the facet conditions results.
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use FacetOperator::*;
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let facet_candidates = match self.facet_condition {
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Some(FacetCondition::Operator(fid, operator)) => {
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use FacetOperator::*;
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// TODO make that generic over floats and integers.
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Some(FacetCondition::OperatorI64(fid, operator)) => {
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// Make sure we always bound the ranges with the field id and the level,
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// as the facets values are all in the same database and prefixed by the
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// field id and the level.
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@ -357,7 +375,40 @@ impl<'a> Search<'a> {
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match biggest_level {
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Some(level) => {
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let mut output = RoaringBitmap::new();
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self.explore_facet_levels(fid, level, left, right, &mut output)?;
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self.explore_facet_levels::<i64, FacetLevelValueI64Codec>(fid, level, left, right, &mut output)?;
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Some(output)
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},
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None => None,
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}
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},
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Some(FacetCondition::OperatorF64(fid, operator)) => {
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// Make sure we always bound the ranges with the field id and the level,
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// as the facets values are all in the same database and prefixed by the
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// field id and the level.
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let (left, right) = match operator {
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GreaterThan(val) => (Excluded(val), Included(f64::MAX)),
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GreaterThanOrEqual(val) => (Included(val), Included(f64::MAX)),
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LowerThan(val) => (Included(f64::MIN), Excluded(val)),
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LowerThanOrEqual(val) => (Included(f64::MIN), Included(val)),
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Equal(val) => (Included(val), Included(val)),
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Between(left, right) => (Included(left), Included(right)),
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};
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let db = self.index
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.facet_field_id_value_docids
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.remap_key_type::<FacetLevelValueF64Codec>();
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// Ask for the biggest value that can exist for this specific field, if it exists
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// that's fine if it don't, the value just before will be returned instead.
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let biggest_level = db
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.remap_data_type::<DecodeIgnore>()
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.get_lower_than_or_equal_to(self.rtxn, &(fid, u8::MAX, f64::MAX, f64::MAX))?
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.and_then(|((id, level, _, _), _)| if id == fid { Some(level) } else { None });
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match biggest_level {
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Some(level) => {
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let mut output = RoaringBitmap::new();
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self.explore_facet_levels::<f64, FacetLevelValueF64Codec>(fid, level, left, right, &mut output)?;
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Some(output)
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},
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None => None,
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@ -6,10 +6,12 @@ use heed::types::{ByteSlice, DecodeIgnore};
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use heed::{BytesEncode, Error};
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use itertools::Itertools;
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use log::debug;
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use num_traits::{Bounded, Zero};
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use roaring::RoaringBitmap;
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use crate::facet::FacetType;
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use crate::heed_codec::{facet::FacetLevelValueI64Codec, CboRoaringBitmapCodec};
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use crate::heed_codec::CboRoaringBitmapCodec;
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use crate::heed_codec::facet::{FacetLevelValueI64Codec, FacetLevelValueF64Codec};
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use crate::Index;
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use crate::update::index_documents::WriteMethod;
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use crate::update::index_documents::{create_writer, writer_into_reader, write_into_lmdb_database};
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@ -68,26 +70,47 @@ impl<'t, 'u, 'i> FacetLevels<'t, 'u, 'i> {
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debug!("Computing and writing the facet values levels docids into LMDB on disk...");
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for (field_id, facet_type) in faceted_fields {
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if facet_type == FacetType::String { continue }
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let content = match facet_type {
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FacetType::Integer => {
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clear_field_levels::<i64, FacetLevelValueI64Codec>(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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field_id,
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)?;
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clear_field_levels(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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field_id,
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)?;
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compute_facet_levels::<i64, FacetLevelValueI64Codec>(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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self.chunk_compression_type,
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self.chunk_compression_level,
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self.chunk_fusing_shrink_size,
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self.last_level_size,
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self.number_of_levels,
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self.easing_function,
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field_id,
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)?
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},
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FacetType::Float => {
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clear_field_levels::<f64, FacetLevelValueF64Codec>(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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field_id,
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)?;
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let content = compute_facet_levels(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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self.chunk_compression_type,
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self.chunk_compression_level,
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self.chunk_fusing_shrink_size,
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self.last_level_size,
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self.number_of_levels,
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self.easing_function,
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field_id,
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facet_type,
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)?;
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compute_facet_levels::<f64, FacetLevelValueF64Codec>(
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self.wtxn,
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self.index.facet_field_id_value_docids,
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self.chunk_compression_type,
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self.chunk_compression_level,
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self.chunk_fusing_shrink_size,
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self.last_level_size,
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self.number_of_levels,
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self.easing_function,
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field_id,
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)?
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},
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FacetType::String => continue,
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};
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write_into_lmdb_database(
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self.wtxn,
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@ -102,20 +125,26 @@ impl<'t, 'u, 'i> FacetLevels<'t, 'u, 'i> {
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}
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}
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fn clear_field_levels(
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wtxn: &mut heed::RwTxn,
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fn clear_field_levels<'t, T: 't, KC>(
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wtxn: &'t mut heed::RwTxn,
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db: heed::Database<ByteSlice, CboRoaringBitmapCodec>,
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field_id: u8,
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) -> heed::Result<()>
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where
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T: Copy + Bounded,
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KC: heed::BytesDecode<'t, DItem = (u8, u8, T, T)>,
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KC: for<'x> heed::BytesEncode<'x, EItem = (u8, u8, T, T)>,
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{
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let range = (field_id, 1, i64::MIN, i64::MIN)..=(field_id, u8::MAX, i64::MAX, i64::MAX);
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db.remap_key_type::<FacetLevelValueI64Codec>()
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let left = (field_id, 1, T::min_value(), T::min_value());
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let right = (field_id, u8::MAX, T::max_value(), T::max_value());
|
||||
let range = left..=right;
|
||||
db.remap_key_type::<KC>()
|
||||
.delete_range(wtxn, &range)
|
||||
.map(drop)
|
||||
}
|
||||
|
||||
fn compute_facet_levels(
|
||||
rtxn: &heed::RoTxn,
|
||||
fn compute_facet_levels<'t, T: 't, KC>(
|
||||
rtxn: &'t heed::RoTxn,
|
||||
db: heed::Database<ByteSlice, CboRoaringBitmapCodec>,
|
||||
compression_type: CompressionType,
|
||||
compression_level: Option<u32>,
|
||||
@ -124,8 +153,11 @@ fn compute_facet_levels(
|
||||
number_of_levels: NonZeroUsize,
|
||||
easing_function: EasingName,
|
||||
field_id: u8,
|
||||
facet_type: FacetType,
|
||||
) -> anyhow::Result<Reader<FileFuse>>
|
||||
where
|
||||
T: Copy + PartialEq + PartialOrd + Bounded + Zero,
|
||||
KC: heed::BytesDecode<'t, DItem = (u8, u8, T, T)>,
|
||||
KC: for<'x> heed::BytesEncode<'x, EItem = (u8, u8, T, T)>,
|
||||
{
|
||||
let first_level_size = db.prefix_iter(rtxn, &[field_id])?
|
||||
.remap_types::<DecodeIgnore, DecodeIgnore>()
|
||||
@ -137,7 +169,12 @@ fn compute_facet_levels(
|
||||
create_writer(compression_type, compression_level, file)
|
||||
})?;
|
||||
|
||||
let level_0_range = (field_id, 0, i64::MIN, i64::MIN)..=(field_id, 0, i64::MAX, i64::MAX);
|
||||
let level_0_range = {
|
||||
let left = (field_id, 0, T::min_value(), T::min_value());
|
||||
let right = (field_id, 0, T::max_value(), T::max_value());
|
||||
left..=right
|
||||
};
|
||||
|
||||
let level_sizes_iter =
|
||||
levels_iterator(first_level_size, last_level_size.get(), number_of_levels.get(), easing_function)
|
||||
.map(|size| (first_level_size as f64 / size as f64).ceil() as usize)
|
||||
@ -147,13 +184,11 @@ fn compute_facet_levels(
|
||||
|
||||
// TODO we must not create levels with identical group sizes.
|
||||
for (level, level_entry_sizes) in level_sizes_iter {
|
||||
let mut left = 0;
|
||||
let mut right = 0;
|
||||
let mut left = T::zero();
|
||||
let mut right = T::zero();
|
||||
let mut group_docids = RoaringBitmap::new();
|
||||
|
||||
dbg!(level, level_entry_sizes, first_level_size);
|
||||
|
||||
let db = db.remap_key_type::<FacetLevelValueI64Codec>();
|
||||
let db = db.remap_key_type::<KC>();
|
||||
for (i, result) in db.range(rtxn, &level_0_range)?.enumerate() {
|
||||
let ((_field_id, _level, value, _right), docids) = result?;
|
||||
|
||||
@ -162,7 +197,7 @@ fn compute_facet_levels(
|
||||
} else if i % level_entry_sizes == 0 {
|
||||
// we found the first bound of the next group, we must store the left
|
||||
// and right bounds associated with the docids.
|
||||
write_entry(&mut writer, field_id, level as u8, left, right, &group_docids)?;
|
||||
write_entry::<T, KC>(&mut writer, field_id, level as u8, left, right, &group_docids)?;
|
||||
|
||||
// We save the left bound for the new group and also reset the docids.
|
||||
group_docids = RoaringBitmap::new();
|
||||
@ -175,24 +210,26 @@ fn compute_facet_levels(
|
||||
}
|
||||
|
||||
if !group_docids.is_empty() {
|
||||
write_entry(&mut writer, field_id, level as u8, left, right, &group_docids)?;
|
||||
write_entry::<T, KC>(&mut writer, field_id, level as u8, left, right, &group_docids)?;
|
||||
}
|
||||
}
|
||||
|
||||
writer_into_reader(writer, shrink_size)
|
||||
}
|
||||
|
||||
fn write_entry(
|
||||
fn write_entry<T, KC>(
|
||||
writer: &mut Writer<File>,
|
||||
field_id: u8,
|
||||
level: u8,
|
||||
left: i64,
|
||||
right: i64,
|
||||
left: T,
|
||||
right: T,
|
||||
ids: &RoaringBitmap,
|
||||
) -> anyhow::Result<()>
|
||||
where
|
||||
KC: for<'x> heed::BytesEncode<'x, EItem = (u8, u8, T, T)>,
|
||||
{
|
||||
let key = (field_id, level, left, right);
|
||||
let key = FacetLevelValueI64Codec::bytes_encode(&key).ok_or(Error::Encoding)?;
|
||||
let key = KC::bytes_encode(&key).ok_or(Error::Encoding)?;
|
||||
let data = CboRoaringBitmapCodec::bytes_encode(&ids).ok_or(Error::Encoding)?;
|
||||
writer.insert(&key, &data)?;
|
||||
Ok(())
|
||||
|
Loading…
Reference in New Issue
Block a user