mirror of
https://github.com/meilisearch/meilisearch.git
synced 2024-11-23 02:27:40 +08:00
Compute split words derivations of terms that don't accept typos
This commit is contained in:
parent
4a4210c116
commit
4d352a21ac
@ -28,11 +28,9 @@ pub enum ZeroOrOneTypo {
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impl Interned<QueryTerm> {
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impl Interned<QueryTerm> {
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pub fn compute_fully_if_needed(self, ctx: &mut SearchContext) -> Result<()> {
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pub fn compute_fully_if_needed(self, ctx: &mut SearchContext) -> Result<()> {
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let s = ctx.term_interner.get_mut(self);
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let s = ctx.term_interner.get_mut(self);
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if s.max_nbr_typos == 0 {
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if s.max_nbr_typos <= 1 && s.one_typo.is_uninit() {
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s.one_typo = Lazy::Init(OneTypoTerm::default());
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s.two_typo = Lazy::Init(TwoTypoTerm::default());
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} else if s.max_nbr_typos == 1 && s.one_typo.is_uninit() {
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assert!(s.two_typo.is_uninit());
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assert!(s.two_typo.is_uninit());
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// Initialize one_typo subterm even if max_nbr_typo is 0 because of split words
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self.initialize_one_typo_subterm(ctx)?;
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self.initialize_one_typo_subterm(ctx)?;
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let s = ctx.term_interner.get_mut(self);
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let s = ctx.term_interner.get_mut(self);
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assert!(s.one_typo.is_init());
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assert!(s.one_typo.is_init());
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@ -277,7 +275,7 @@ fn find_split_words(ctx: &mut SearchContext, word: &str) -> Result<Option<Intern
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impl Interned<QueryTerm> {
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impl Interned<QueryTerm> {
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fn initialize_one_typo_subterm(self, ctx: &mut SearchContext) -> Result<()> {
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fn initialize_one_typo_subterm(self, ctx: &mut SearchContext) -> Result<()> {
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let self_mut = ctx.term_interner.get_mut(self);
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let self_mut = ctx.term_interner.get_mut(self);
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let QueryTerm { original, is_prefix, one_typo, .. } = self_mut;
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let QueryTerm { original, is_prefix, one_typo, max_nbr_typos, .. } = self_mut;
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let original = *original;
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let original = *original;
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let is_prefix = *is_prefix;
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let is_prefix = *is_prefix;
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// let original_str = ctx.word_interner.get(*original).to_owned();
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// let original_str = ctx.word_interner.get(*original).to_owned();
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@ -286,19 +284,22 @@ impl Interned<QueryTerm> {
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}
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}
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let mut one_typo_words = BTreeSet::new();
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let mut one_typo_words = BTreeSet::new();
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find_zero_one_typo_derivations(ctx, original, is_prefix, |derived_word, nbr_typos| {
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if *max_nbr_typos > 0 {
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match nbr_typos {
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find_zero_one_typo_derivations(ctx, original, is_prefix, |derived_word, nbr_typos| {
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ZeroOrOneTypo::Zero => {}
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match nbr_typos {
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ZeroOrOneTypo::One => {
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ZeroOrOneTypo::Zero => {}
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if one_typo_words.len() < limits::MAX_ONE_TYPO_COUNT {
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ZeroOrOneTypo::One => {
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one_typo_words.insert(derived_word);
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if one_typo_words.len() < limits::MAX_ONE_TYPO_COUNT {
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} else {
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one_typo_words.insert(derived_word);
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return Ok(ControlFlow::Break(()));
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} else {
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return Ok(ControlFlow::Break(()));
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}
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}
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}
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}
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}
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}
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Ok(ControlFlow::Continue(()))
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Ok(ControlFlow::Continue(()))
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})?;
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})?;
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}
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let original_str = ctx.word_interner.get(original).to_owned();
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let original_str = ctx.word_interner.get(original).to_owned();
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let split_words = find_split_words(ctx, original_str.as_str())?;
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let split_words = find_split_words(ctx, original_str.as_str())?;
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@ -327,7 +328,7 @@ impl Interned<QueryTerm> {
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}
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}
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fn initialize_one_and_two_typo_subterm(self, ctx: &mut SearchContext) -> Result<()> {
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fn initialize_one_and_two_typo_subterm(self, ctx: &mut SearchContext) -> Result<()> {
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let self_mut = ctx.term_interner.get_mut(self);
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let self_mut = ctx.term_interner.get_mut(self);
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let QueryTerm { original, is_prefix, two_typo, .. } = self_mut;
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let QueryTerm { original, is_prefix, two_typo, max_nbr_typos, .. } = self_mut;
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let original_str = ctx.word_interner.get(*original).to_owned();
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let original_str = ctx.word_interner.get(*original).to_owned();
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if two_typo.is_init() {
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if two_typo.is_init() {
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return Ok(());
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return Ok(());
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@ -335,34 +336,37 @@ impl Interned<QueryTerm> {
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let mut one_typo_words = BTreeSet::new();
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let mut one_typo_words = BTreeSet::new();
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let mut two_typo_words = BTreeSet::new();
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let mut two_typo_words = BTreeSet::new();
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find_zero_one_two_typo_derivations(
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if *max_nbr_typos > 0 {
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*original,
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find_zero_one_two_typo_derivations(
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*is_prefix,
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*original,
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ctx.index.words_fst(ctx.txn)?,
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*is_prefix,
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&mut ctx.word_interner,
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ctx.index.words_fst(ctx.txn)?,
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|derived_word, nbr_typos| {
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&mut ctx.word_interner,
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if one_typo_words.len() >= limits::MAX_ONE_TYPO_COUNT
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|derived_word, nbr_typos| {
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&& two_typo_words.len() >= limits::MAX_TWO_TYPOS_COUNT
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if one_typo_words.len() >= limits::MAX_ONE_TYPO_COUNT
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{
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&& two_typo_words.len() >= limits::MAX_TWO_TYPOS_COUNT
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// No chance we will add either one- or two-typo derivations anymore, stop iterating.
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{
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return Ok(ControlFlow::Break(()));
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// No chance we will add either one- or two-typo derivations anymore, stop iterating.
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}
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return Ok(ControlFlow::Break(()));
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match nbr_typos {
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}
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NumberOfTypos::Zero => {}
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match nbr_typos {
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NumberOfTypos::One => {
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NumberOfTypos::Zero => {}
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if one_typo_words.len() < limits::MAX_ONE_TYPO_COUNT {
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NumberOfTypos::One => {
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one_typo_words.insert(derived_word);
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if one_typo_words.len() < limits::MAX_ONE_TYPO_COUNT {
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one_typo_words.insert(derived_word);
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}
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}
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NumberOfTypos::Two => {
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if two_typo_words.len() < limits::MAX_TWO_TYPOS_COUNT {
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two_typo_words.insert(derived_word);
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}
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}
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}
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}
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}
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NumberOfTypos::Two => {
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Ok(ControlFlow::Continue(()))
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if two_typo_words.len() < limits::MAX_TWO_TYPOS_COUNT {
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},
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two_typo_words.insert(derived_word);
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)?;
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}
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}
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}
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}
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Ok(ControlFlow::Continue(()))
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},
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)?;
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let split_words = find_split_words(ctx, original_str.as_str())?;
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let split_words = find_split_words(ctx, original_str.as_str())?;
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let self_mut = ctx.term_interner.get_mut(self);
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let self_mut = ctx.term_interner.get_mut(self);
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@ -3,9 +3,9 @@ This module tests the following properties:
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1. Two consecutive words from a query can be combined into a "2gram"
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1. Two consecutive words from a query can be combined into a "2gram"
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2. Three consecutive words from a query can be combined into a "3gram"
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2. Three consecutive words from a query can be combined into a "3gram"
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3. A word from the query can be split into two consecutive words (split words)
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3. A word from the query can be split into two consecutive words (split words), no matter how short it is
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4. A 2gram can be split into two words
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4. A 2gram can be split into two words
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5. A 3gram cannot be split into two words
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5. A 3gram can be split into two words
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6. 2grams can contain up to 1 typo
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6. 2grams can contain up to 1 typo
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7. 3grams cannot have typos
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7. 3grams cannot have typos
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8. 2grams and 3grams can be prefix tolerant
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8. 2grams and 3grams can be prefix tolerant
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@ -14,6 +14,7 @@ This module tests the following properties:
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11. Disabling typo tolerance does not disable ngram tolerance
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11. Disabling typo tolerance does not disable ngram tolerance
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12. Prefix tolerance is disabled for the last word if a space follows it
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12. Prefix tolerance is disabled for the last word if a space follows it
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13. Ngrams cannot be formed by combining a phrase and a word or two phrases
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13. Ngrams cannot be formed by combining a phrase and a word or two phrases
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14. Split words are not disabled by the `disableOnAttribute` or `disableOnWords` typo settings
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*/
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*/
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use crate::index::tests::TempIndex;
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use crate::index::tests::TempIndex;
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@ -56,6 +57,10 @@ fn create_index() -> TempIndex {
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{
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{
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"id": 5,
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"id": 5,
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"text": "sunflowering is not a verb"
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"text": "sunflowering is not a verb"
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},
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{
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"id": 6,
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"text": "xy z"
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}
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}
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]))
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]))
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.unwrap();
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.unwrap();
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@ -263,10 +268,11 @@ fn test_disable_split_words() {
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s.query("sunflower ");
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s.query("sunflower ");
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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// no document containing `sun flower`
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// no document containing `sun flower`
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[3]");
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[1, 3]");
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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insta::assert_debug_snapshot!(texts, @r###"
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insta::assert_debug_snapshot!(texts, @r###"
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[
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[
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"\"the sun flower is tall\"",
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"\"the sunflower is tall\"",
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"\"the sunflower is tall\"",
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]
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]
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"###);
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"###);
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@ -307,10 +313,11 @@ fn test_3gram_no_split_words() {
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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// no document with `sun flower`
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// no document with `sun flower`
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[2, 3, 5]");
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[1, 2, 3, 5]");
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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insta::assert_debug_snapshot!(texts, @r###"
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insta::assert_debug_snapshot!(texts, @r###"
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[
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[
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"\"the sun flower is tall\"",
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"\"the sunflowers are pretty\"",
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"\"the sunflowers are pretty\"",
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"\"the sunflower is tall\"",
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"\"the sunflower is tall\"",
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"\"sunflowering is not a verb\"",
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"\"sunflowering is not a verb\"",
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@ -369,3 +376,50 @@ fn test_no_ngram_phrases() {
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]
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]
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"###);
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"###);
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}
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}
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#[test]
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fn test_short_split_words() {
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let index = create_index();
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let txn = index.read_txn().unwrap();
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let mut s = Search::new(&txn, &index);
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s.terms_matching_strategy(TermsMatchingStrategy::All);
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s.query("xyz");
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[6]");
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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insta::assert_debug_snapshot!(texts, @r###"
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[
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"\"xy z\"",
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]
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"###);
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}
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#[test]
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fn test_split_words_never_disabled() {
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let index = create_index();
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index
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.update_settings(|s| {
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s.set_exact_words(["sunflower"].iter().map(ToString::to_string).collect());
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s.set_exact_attributes(["text"].iter().map(ToString::to_string).collect());
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})
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.unwrap();
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let txn = index.read_txn().unwrap();
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let mut s = Search::new(&txn, &index);
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s.terms_matching_strategy(TermsMatchingStrategy::All);
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s.query("the sunflower is tall");
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[1, 3]");
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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insta::assert_debug_snapshot!(texts, @r###"
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[
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"\"the sun flower is tall\"",
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"\"the sunflower is tall\"",
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]
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"###);
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}
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@ -9,7 +9,7 @@ This module tests the following properties:
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6. A typo on the first letter of a word counts as two typos
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6. A typo on the first letter of a word counts as two typos
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7. Phrases are not typo tolerant
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7. Phrases are not typo tolerant
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8. 2grams can have 1 typo if they are larger than `min_word_len_two_typos`
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8. 2grams can have 1 typo if they are larger than `min_word_len_two_typos`
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9. 3grams are not typo tolerant
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9. 3grams are not typo tolerant (but they can be split into two words)
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10. The `typo` ranking rule assumes the role of the `words` ranking rule implicitly
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10. The `typo` ranking rule assumes the role of the `words` ranking rule implicitly
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if `words` doesn't exist before it.
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if `words` doesn't exist before it.
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11. The `typo` ranking rule places documents with the same number of typos in the same bucket
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11. The `typo` ranking rule places documents with the same number of typos in the same bucket
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@ -287,16 +287,17 @@ fn test_typo_exact_word() {
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]
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]
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"###);
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"###);
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// exact words do not disable prefix (sunflowering OK, but no sunflowar or sun flower)
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// exact words do not disable prefix (sunflowering OK, but no sunflowar)
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let mut s = Search::new(&txn, &index);
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let mut s = Search::new(&txn, &index);
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s.terms_matching_strategy(TermsMatchingStrategy::All);
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s.terms_matching_strategy(TermsMatchingStrategy::All);
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s.query("network interconnection sunflower");
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s.query("network interconnection sunflower");
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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let SearchResult { documents_ids, .. } = s.execute().unwrap();
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[16, 18]");
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insta::assert_snapshot!(format!("{documents_ids:?}"), @"[16, 17, 18]");
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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let texts = collect_field_values(&index, &txn, "text", &documents_ids);
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insta::assert_debug_snapshot!(texts, @r###"
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insta::assert_debug_snapshot!(texts, @r###"
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[
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[
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"\"network interconnection sunflower\"",
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"\"network interconnection sunflower\"",
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"\"network interconnection sun flower\"",
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"\"network interconnection sunflowering\"",
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"\"network interconnection sunflowering\"",
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]
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]
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"###);
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"###);
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