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Merge #467
467: optimize prefix database r=Kerollmops a=MarinPostma This pr introduces two optimizations that greatly improve the speed of computing prefix databases. - The time that it takes to create the prefix FST has been divided by 5 by inverting the way we iterated over the words FST. - We unconditionally and needlessly checked for documents to remove in `word_prefix_pair`, which caused an iteration over the whole database. Co-authored-by: ad hoc <postma.marin@protonmail.com>
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commit
8efac33b53
@ -155,6 +155,7 @@ impl<'t, 'u, 'i> WordPrefixPairProximityDocids<'t, 'u, 'i> {
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// All of the word prefix pairs in the database that have a w2
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// All of the word prefix pairs in the database that have a w2
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// that is contained in the `suppr_pw` set must be removed as well.
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// that is contained in the `suppr_pw` set must be removed as well.
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if !del_prefix_fst_words.is_empty() {
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let mut iter = self
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let mut iter = self
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.index
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.index
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.word_prefix_pair_proximity_docids
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.word_prefix_pair_proximity_docids
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@ -166,8 +167,7 @@ impl<'t, 'u, 'i> WordPrefixPairProximityDocids<'t, 'u, 'i> {
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unsafe { iter.del_current()? };
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unsafe { iter.del_current()? };
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}
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}
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}
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}
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}
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drop(iter);
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// We finally write and merge the new word prefix pair proximity docids
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// We finally write and merge the new word prefix pair proximity docids
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// in the LMDB database.
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// in the LMDB database.
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@ -1,7 +1,7 @@
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use std::iter::FromIterator;
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use std::iter::{repeat_with, FromIterator};
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use std::str;
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use std::str;
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use fst::Streamer;
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use fst::{SetBuilder, Streamer};
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use crate::{Index, Result, SmallString32};
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use crate::{Index, Result, SmallString32};
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@ -44,43 +44,45 @@ impl<'t, 'u, 'i> WordsPrefixesFst<'t, 'u, 'i> {
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pub fn execute(self) -> Result<()> {
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pub fn execute(self) -> Result<()> {
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let words_fst = self.index.words_fst(&self.wtxn)?;
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let words_fst = self.index.words_fst(&self.wtxn)?;
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let mut prefix_fsts = Vec::with_capacity(self.max_prefix_length);
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let mut current_prefix = vec![SmallString32::new(); self.max_prefix_length];
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for n in 1..=self.max_prefix_length {
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let mut current_prefix_count = vec![0; self.max_prefix_length];
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let mut current_prefix = SmallString32::new();
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let mut builders =
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let mut current_prefix_count = 0;
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repeat_with(SetBuilder::memory).take(self.max_prefix_length).collect::<Vec<_>>();
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let mut builder = fst::SetBuilder::memory();
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let mut stream = words_fst.stream();
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let mut stream = words_fst.stream();
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while let Some(bytes) = stream.next() {
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while let Some(bytes) = stream.next() {
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for n in 0..self.max_prefix_length {
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let current_prefix = &mut current_prefix[n];
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let current_prefix_count = &mut current_prefix_count[n];
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let builder = &mut builders[n];
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// We try to get the first n bytes out of this string but we only want
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// We try to get the first n bytes out of this string but we only want
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// to split at valid characters bounds. If we try to split in the middle of
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// to split at valid characters bounds. If we try to split in the middle of
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// a character we ignore this word and go to the next one.
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// a character we ignore this word and go to the next one.
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let word = str::from_utf8(bytes)?;
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let word = str::from_utf8(bytes)?;
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let prefix = match word.get(..n) {
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let prefix = match word.get(..=n) {
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Some(prefix) => prefix,
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Some(prefix) => prefix,
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None => continue,
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None => continue,
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};
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};
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// This is the first iteration of the loop,
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// This is the first iteration of the loop,
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// or the current word doesn't starts with the current prefix.
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// or the current word doesn't starts with the current prefix.
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if current_prefix_count == 0 || prefix != current_prefix.as_str() {
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if *current_prefix_count == 0 || prefix != current_prefix.as_str() {
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current_prefix = SmallString32::from(prefix);
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*current_prefix = SmallString32::from(prefix);
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current_prefix_count = 0;
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*current_prefix_count = 0;
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}
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}
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current_prefix_count += 1;
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*current_prefix_count += 1;
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// There is enough words corresponding to this prefix to add it to the cache.
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// There is enough words corresponding to this prefix to add it to the cache.
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if current_prefix_count >= self.threshold {
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if *current_prefix_count >= self.threshold {
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builder.insert(prefix)?;
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builder.insert(prefix)?;
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}
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}
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}
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}
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// We construct the final set for prefixes of size n.
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prefix_fsts.push(builder.into_set());
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}
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}
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// We merge all of the previously computed prefixes into on final set.
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// We merge all of the previously computed prefixes into on final set.
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let prefix_fsts: Vec<_> = builders.into_iter().map(|sb| sb.into_set()).collect();
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let op = fst::set::OpBuilder::from_iter(prefix_fsts.iter());
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let op = fst::set::OpBuilder::from_iter(prefix_fsts.iter());
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let mut builder = fst::SetBuilder::memory();
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let mut builder = fst::SetBuilder::memory();
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builder.extend_stream(op.r#union())?;
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builder.extend_stream(op.r#union())?;
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