3 Commits
Author SHA1 Message Date
jcoffey-dev 999ae12cc7 Settings reload: no DNS at build time, don't refuse over old failures
ci / build (pull_request) Successful in 3m22s
ci / fork-checks (pull_request) Successful in 44s
A 3-node rehearsal found every settings reload refused, cluster-wide,
because one node couldn't resolve the Pyzor server:

- PyzorConfig::parse resolved the host while building the settings and
  made a failed lookup a build error. It now keeps the host and port and
  resolves when a message is checked (an IP address is used as is, a
  name is reused for five minutes, the lookup counts against the Pyzor
  timeout). A failure there is a Pyzor error for that message.
- A milter's hostname was resolved the same way, with a blocking
  to_socket_addrs in async code. An IP address is kept; a name is now
  resolved on each connection.

Other build-time I/O is already non-fatal: directories that can't
connect become unavailable with a warning (DIR-21), and the AI model
locality check only warns.

reload_registry swapped the core only when the whole build was free of
errors, while boot runs with whatever built. One failing object thus
refused every later reload, and the running settings went stale. Now a
reload is refused only for errors in objects that built when the
running settings were built (at boot or by the last applied reload):
applying it would lose those. Objects that already failed then are
missing from the running settings anyway, as at boot, so their errors
are logged and returned as known_errors but don't hold the reload back.
Refusing on new errors keeps a bad edit from taking a working object
out of service; the admin gets the error instead.

ReloadSettings now says "Settings were not reloaded." and names the
object and its error ("Tracer with id ...: Only one console tracer is
allowed"), with a count of any further errors. A refused reload after a
directory change logs its errors too.

system::reload::reload_tests (new): with Pyzor enabled on an
unresolvable host, ReloadSettings succeeds (on main it fails with
"Invalid address: failed to lookup address information"); an IP host
needs no lookup; a new build error refuses the reload, names the object
and leaves the running settings unchanged; the same error, once known
from the running settings' build, no longer blocks; once fixed, a new
error there blocks again. smtp::inbound::milter's session test now
names its milter "localhost", so the connect-time lookup is exercised.
2026-09-24 12:11:41 -07:00
jcoffey-dev 5853831bad Merge pull request 'Search: find addresses by local part, domain or name on PostgreSQL and MySQL' (#37) from fix/pg-address-search into main
ci / build (push) Failing after 3s
ci / fork-checks (push) Successful in 15s
2026-09-24 19:11:31 +00:00
jcoffey-dev 639a415a4f Search: find addresses by local part, domain or name on PostgreSQL and MySQL
ci / fork-checks (pull_request) Successful in 43s
ci / build (pull_request) Successful in 4m20s
A 3-node PostgreSQL rehearsal found IMAP SEARCH FROM "noreply" matched
0-2 messages where RocksDB matched 23 of 930. The message indexer hands
each address and display name of From/To/Cc/Bcc to the search store as
keyword text (Language::None). The built-in index splits keyword text
into lowercase runs of alphanumerics, so an address is found by its full
form, its local part, its domain or a display-name word. The SQL
backends didn't:

- PostgreSQL's text parser keeps "[email protected]" as one email
  token (host names and URLs likewise), so neither "noreply" nor
  "amazon.com" ever matched it. Keyword text is now split the same way
  as the built-in index (SpaceTokenizer) before to_tsvector on insert
  and before plainto_tsquery/phraseto_tsquery on search, still under
  the 'simple' configuration, so the GIN index keeps serving the query.
  The sort columns keep the raw text.
- MySQL's FULLTEXT parser already splits on punctuation, but InnoDB
  never indexes its stopwords ("com", "de", "www", ...) or words under
  innodb_ft_min_token_size (3), and a required +word it hasn't indexed
  matches no row. So "amazon.com", "[email protected]" or "jane doe" found
  nothing. Those words are now matched with a word-boundary REGEXP on
  the rows the indexed words select. In language text (bodies,
  subjects) they are dropped when other words remain, and only checked
  when nothing else is left, so "the invoice" no longer finds nothing
  either.

Existing PostgreSQL search indexes hold the old single-token vectors and
need a reindex (the reindexAccounts task) before address searches find
old messages. MySQL needs none: only the query changed.

store::search_tests gains test_address_search: five messages, 28
FROM/TO/CC/BCC searches by full address, local part, domain, domain
labels, display name and hyphenated local part, plus a TEXT-style OR,
with the same expected ids on every backend. It passes on RocksDB,
SQLite, PostgreSQL and MySQL; on main it fails on PostgreSQL (From
"noreply") and MySQL (From "[email protected]").
2026-09-24 11:25:25 -07:00
3 changed files with 312 additions and 23 deletions
+76 -13
View File
@@ -2,6 +2,8 @@
* SPDX-FileCopyrightText: 2020 Stalwart Labs LLC <[email protected]> * SPDX-FileCopyrightText: 2020 Stalwart Labs LLC <[email protected]>
* *
* SPDX-License-Identifier: AGPL-3.0-only OR LicenseRef-SEL * SPDX-License-Identifier: AGPL-3.0-only OR LicenseRef-SEL
*
* Modified by Coffey Labs in 2026 for INBUXA.
*/ */
use crate::{ use crate::{
@@ -19,7 +21,7 @@ use crate::{
write::SearchIndex, write::SearchIndex,
}; };
use mysql_async::{IsolationLevel, TxOpts, Value, prelude::Queryable}; use mysql_async::{IsolationLevel, TxOpts, Value, prelude::Queryable};
use nlp::tokenizers::word::WordTokenizer; use nlp::{language::Language, tokenizers::word::WordTokenizer};
use std::fmt::Write; use std::fmt::Write;
impl MysqlStore { impl MysqlStore {
@@ -146,6 +148,20 @@ impl MysqlStore {
} }
} }
// inbuxa: InnoDB's default full-text stopword list
// (INFORMATION_SCHEMA.INNODB_FT_DEFAULT_STOPWORD) and innodb_ft_min_token_size
// default; words outside these are not in a FULLTEXT index.
const FT_STOPWORDS: &[&str] = &[
"a", "about", "an", "are", "as", "at", "be", "by", "com", "de", "en", "for", "from", "how",
"i", "in", "is", "it", "la", "of", "on", "or", "that", "the", "this", "to", "was", "what",
"when", "where", "who", "will", "with", "und", "www",
];
const FT_MIN_TOKEN_SIZE: usize = 3;
fn is_ft_indexed(word: &str) -> bool {
word.chars().count() >= FT_MIN_TOKEN_SIZE && !FT_STOPWORDS.contains(&word)
}
fn build_filter(query: &mut String, filters: &[SearchFilter]) -> Vec<Value> { fn build_filter(query: &mut String, filters: &[SearchFilter]) -> Vec<Value> {
if filters.is_empty() { if filters.is_empty() {
return Vec::new(); return Vec::new();
@@ -171,30 +187,77 @@ fn build_filter(query: &mut String, filters: &[SearchFilter]) -> Vec<Value> {
if field.is_text() && matches!(op, SearchOperator::Equal | SearchOperator::Contains) if field.is_text() && matches!(op, SearchOperator::Equal | SearchOperator::Contains)
{ {
let (value, mode) = match (value, op) { let (value, mode, unindexed) = match (value, op) {
(SearchValue::Text { value, .. }, SearchOperator::Equal) => { (SearchValue::Text { value, .. }, SearchOperator::Equal) => (
(Value::Bytes(format!("{value:?}").into_bytes()), "BOOLEAN") Value::Bytes(format!("{value:?}").into_bytes()),
} "BOOLEAN",
(SearchValue::Text { value, .. }, ..) => { Vec::new(),
),
(SearchValue::Text { value, language }, ..) => {
let mut text_query = String::with_capacity(value.len() + 1); let mut text_query = String::with_capacity(value.len() + 1);
let mut unindexed = Vec::new();
for item in WordTokenizer::new(value, MAX_TOKEN_LENGTH) { for item in WordTokenizer::new(value, MAX_TOKEN_LENGTH) {
if !text_query.is_empty() { // inbuxa: InnoDB never indexes stopwords ("com",
text_query.push(' '); // "de", "www", ...) or words under
// innodb_ft_min_token_size, and a required
// (+word) term it has not indexed matches no row,
// so "example.com" or "[email protected]" found
// nothing. Such words are matched with a
// word-boundary REGEXP instead.
if is_ft_indexed(&item.word) {
if !text_query.is_empty() {
text_query.push(' ');
}
text_query.push('+');
text_query.push_str(&item.word);
} else {
unindexed.push(item.word);
} }
text_query.push('+');
text_query.push_str(&item.word);
} }
(Value::Bytes(text_query.into_bytes()), "BOOLEAN") // For language text (bodies, subjects) the unindexed
// words are noise words and only checked when nothing
// else is left to match; keyword text (addresses,
// contact fields) checks every word, as the other
// backends do.
if !text_query.is_empty() && !matches!(language, Language::None) {
unindexed.clear();
}
(Value::Bytes(text_query.into_bytes()), "BOOLEAN", unindexed)
} }
_ => { _ => {
debug_assert!(false, "Invalid search value for text field"); debug_assert!(false, "Invalid search value for text field");
continue; continue;
} }
}; };
let _ = write!(query, "MATCH({}) AGAINST(? IN {mode} MODE)", field.column()); if unindexed.is_empty() {
values.push(value); let _ =
write!(query, "MATCH({}) AGAINST(? IN {mode} MODE)", field.column());
values.push(value);
} else {
query.push('(');
let is_empty = matches!(&value, Value::Bytes(v) if v.is_empty());
if !is_empty {
let _ = write!(
query,
"MATCH({}) AGAINST(? IN {mode} MODE) AND ",
field.column()
);
values.push(value);
}
for (i, word) in unindexed.iter().enumerate() {
if i > 0 {
query.push_str(" AND ");
}
let _ = write!(query, "{} REGEXP ?", field.column());
values.push(Value::Bytes(
format!("(^|[^[:alnum:]]){word}([^[:alnum:]]|$)").into_bytes(),
));
}
query.push(')');
}
} else if let SearchValue::KeyValues(kv) = value { } else if let SearchValue::KeyValues(kv) = value {
let (key, value) = kv.iter().next().unwrap(); let (key, value) = kv.iter().next().unwrap();
+79 -10
View File
@@ -2,12 +2,17 @@
* SPDX-FileCopyrightText: 2020 Stalwart Labs LLC <[email protected]> * SPDX-FileCopyrightText: 2020 Stalwart Labs LLC <[email protected]>
* *
* SPDX-License-Identifier: AGPL-3.0-only OR LicenseRef-SEL * SPDX-License-Identifier: AGPL-3.0-only OR LicenseRef-SEL
*
* Modified by Coffey Labs in 2026 for INBUXA.
*/ */
use crate::{ use crate::{
backend::postgres::{ backend::{
DELETE_CHUNK_SIZE, MIN_DELETE_CHUNK_SIZE, PostgresStore, PsqlSearchField, into_error, MAX_TOKEN_LENGTH,
into_pool_error, is_timeout_error, postgres::{
DELETE_CHUNK_SIZE, MIN_DELETE_CHUNK_SIZE, PostgresStore, PsqlSearchField, into_error,
into_pool_error, is_timeout_error,
},
}, },
search::{ search::{
IndexDocument, SearchComparator, SearchDocumentId, SearchFilter, SearchOperator, IndexDocument, SearchComparator, SearchDocumentId, SearchFilter, SearchOperator,
@@ -15,7 +20,7 @@ use crate::{
}, },
write::SearchIndex, write::SearchIndex,
}; };
use nlp::language::Language; use nlp::{language::Language, tokenizers::space::SpaceTokenizer};
use std::fmt::Write; use std::fmt::Write;
use tokio_postgres::{ use tokio_postgres::{
IsolationLevel, IsolationLevel,
@@ -43,6 +48,19 @@ impl PostgresStore {
let primary_keys = index.primary_keys(); let primary_keys = index.primary_keys();
let all_fields = index.all_fields(); let all_fields = index.all_fields();
let fields = document.fields; let fields = document.fields;
// inbuxa: keyword text (addresses, contact fields, ...) is split into
// words before it reaches the text parser, see keyword_terms().
let keywords = primary_keys
.iter()
.chain(all_fields)
.map(|field| match fields.get(field) {
Some(SearchValue::Text {
value,
language: Language::None,
}) if field.is_text() => Some(keyword_terms(value)),
_ => None,
})
.collect::<Vec<_>>();
let mut values = Vec::with_capacity(fields.len() + 2); let mut values = Vec::with_capacity(fields.len() + 2);
let mut query = format!("INSERT INTO {} (", index.psql_table()); let mut query = format!("INSERT INTO {} (", index.psql_table());
@@ -74,7 +92,20 @@ impl PostgresStore {
(0, PG_UNSTEMMED_LANG) (0, PG_UNSTEMMED_LANG)
}; };
if field.is_text() { if let Some(keywords) = &keywords[i] {
let _ = write!(&mut query, "to_tsvector('{language}',{value_ref})");
values.push(keywords as &(dyn ToSql + Sync));
if field.sort_column().is_some() {
let value_ref = format!("${}", values.len() + 1);
if text_len > 255 {
let _ = write!(&mut query, ",left({value_ref},255)");
} else {
let _ = write!(&mut query, ",{value_ref}");
}
values.push(value as &(dyn ToSql + Sync));
}
continue;
} else if field.is_text() {
let _ = write!(&mut query, "to_tsvector('{language}',{value_ref})"); let _ = write!(&mut query, "to_tsvector('{language}',{value_ref})");
} else if text_len > 512 { } else if text_len > 512 {
query.push_str("left("); query.push_str("left(");
@@ -134,6 +165,7 @@ impl PostgresStore {
) -> trc::Result<Vec<R>> { ) -> trc::Result<Vec<R>> {
let mut query = format!("SELECT {} FROM {}", R::field().column(), index.psql_table()); let mut query = format!("SELECT {} FROM {}", R::field().column(), index.psql_table());
let params = self.build_filter(&mut query, filters); let params = self.build_filter(&mut query, filters);
let params = params.iter().map(SqlParam::as_sql).collect::<Vec<_>>();
if !sort.is_empty() { if !sort.is_empty() {
build_sort(&mut query, sort); build_sort(&mut query, sort);
} }
@@ -155,6 +187,7 @@ impl PostgresStore {
let table = filter.index.psql_table(); let table = filter.index.psql_table();
let mut where_clause = String::new(); let mut where_clause = String::new();
let params = self.build_filter(&mut where_clause, &filter.filters); let params = self.build_filter(&mut where_clause, &filter.filters);
let params = params.iter().map(SqlParam::as_sql).collect::<Vec<_>>();
let conn = self.conn_pool.get().await.map_err(into_pool_error)?; let conn = self.conn_pool.get().await.map_err(into_pool_error)?;
let s = conn let s = conn
.prepare_cached(&format!("DELETE FROM {table}{where_clause}")) .prepare_cached(&format!("DELETE FROM {table}{where_clause}"))
@@ -196,7 +229,7 @@ impl PostgresStore {
&self, &self,
query: &mut String, query: &mut String,
filters: &'x [SearchFilter], filters: &'x [SearchFilter],
) -> Vec<&'x (dyn ToSql + Sync)> { ) -> Vec<SqlParam<'x>> {
if filters.is_empty() { if filters.is_empty() {
return Vec::new(); return Vec::new();
} }
@@ -237,6 +270,10 @@ impl PostgresStore {
if matches!(language, Language::None) { if matches!(language, Language::None) {
let _ = write!(query, "@@ {method}('{config}', ${value_pos})"); let _ = write!(query, "@@ {method}('{config}', ${value_pos})");
if let SearchValue::Text { value, .. } = value {
values.push(SqlParam::Owned(keyword_terms(value)));
continue;
}
} else { } else {
let _ = write!(query, "@@ ({method}('{config}', ${value_pos})"); let _ = write!(query, "@@ ({method}('{config}', ${value_pos})");
for fallback in [PG_FALLBACK_LANG, PG_UNSTEMMED_LANG] { for fallback in [PG_FALLBACK_LANG, PG_UNSTEMMED_LANG] {
@@ -247,18 +284,18 @@ impl PostgresStore {
} }
query.push(')'); query.push(')');
} }
values.push(value as &(dyn ToSql + Sync)); values.push(SqlParam::Ref(value));
} else if let SearchValue::KeyValues(kv) = value { } else if let SearchValue::KeyValues(kv) = value {
query.push_str(field.column()); query.push_str(field.column());
query.push(' '); query.push(' ');
let (key, value) = kv.iter().next().unwrap(); let (key, value) = kv.iter().next().unwrap();
values.push(key as &(dyn ToSql + Sync)); values.push(SqlParam::Ref(key));
if !value.is_empty() { if !value.is_empty() {
let _ = write!(query, "->> ${value_pos} "); let _ = write!(query, "->> ${value_pos} ");
op.write_pqsql(query, values.len() + 1); op.write_pqsql(query, values.len() + 1);
values.push(value as &(dyn ToSql + Sync)); values.push(SqlParam::Ref(value));
} else { } else {
let _ = write!(query, " ? ${value_pos}"); let _ = write!(query, " ? ${value_pos}");
} }
@@ -267,7 +304,7 @@ impl PostgresStore {
query.push(' '); query.push(' ');
op.write_pqsql(query, value_pos); op.write_pqsql(query, value_pos);
values.push(value as &(dyn ToSql + Sync)); values.push(SqlParam::Ref(value));
} }
} }
SearchFilter::And | SearchFilter::Or => { SearchFilter::And | SearchFilter::Or => {
@@ -321,6 +358,38 @@ impl PostgresStore {
} }
} }
// inbuxa: PostgreSQL's text parser keeps "[email protected]" (and host names,
// URLs, file paths, ...) as a single token, so a search for "user" or
// "example.com" never matched an address. Keyword text is split into words the
// same way the built-in index splits it (SpaceTokenizer: lowercase runs of
// alphanumerics) on both the indexing and the query side, so a full address,
// its local part, its domain and the display-name words all match, as they do
// on the other backends.
pub(crate) fn keyword_terms(value: &str) -> String {
let mut terms = String::with_capacity(value.len());
for token in SpaceTokenizer::new(value, MAX_TOKEN_LENGTH) {
if !terms.is_empty() {
terms.push(' ');
}
terms.push_str(&token);
}
terms
}
pub(super) enum SqlParam<'x> {
Ref(&'x (dyn ToSql + Sync)),
Owned(String),
}
impl SqlParam<'_> {
fn as_sql(&self) -> &(dyn ToSql + Sync) {
match self {
SqlParam::Ref(value) => *value,
SqlParam::Owned(value) => value,
}
}
}
fn build_sort(query: &mut String, sort: &[SearchComparator]) { fn build_sort(query: &mut String, sort: &[SearchComparator]) {
query.push_str(" ORDER BY "); query.push_str(" ORDER BY ");
for (i, comparator) in sort.iter().enumerate() { for (i, comparator) in sort.iter().enumerate() {
+157
View File
@@ -128,6 +128,11 @@ pub async fn test(test: &TestServer) {
println!("Running trace document tests..."); println!("Running trace document tests...");
test_trace_documents(store.clone()).await; test_trace_documents(store.clone()).await;
// inbuxa: address fields match by full address, local part, domain and
// display name on every backend
println!("Running address search tests...");
test_address_search(store.clone()).await;
// Large document insert test // Large document insert test
println!("Running large document insert tests..."); println!("Running large document insert tests...");
let mut large_text = String::with_capacity(20 * 1024 * 1024); let mut large_text = String::with_capacity(20 * 1024 * 1024);
@@ -972,3 +977,155 @@ async fn test_trace_documents(store: SearchStore) {
.unwrap(); .unwrap();
} }
} }
// inbuxa: the message indexer passes each display name and each address of
// From/To/Cc/Bcc as keyword text (Language::None). The built-in index splits
// that text into words, so an address is found by its full form, its local
// part, its domain or a display-name word; PostgreSQL kept the whole address
// as one token and MySQL dropped stopwords such as "com" and words under three
// characters. The expected results below are the built-in (RocksDB/SQLite)
// results and must be the same on every backend.
async fn test_address_search(store: SearchStore) {
const ACCOUNT_ID: u32 = 7;
let messages: [[&[(&str, &str)]; 4]; 5] = [
// From, To, Cc, Bcc
[
&[("Amazon.com", "[email protected]")],
&[("Jane Doe", "[email protected]")],
&[],
&[],
],
[
&[("", "[email protected]")],
&[("", "[email protected]")],
&[("Jane Doe", "[email protected]")],
&[],
],
[
&[("GitHub", "[email protected]")],
&[("Jo Li", "[email protected]")],
&[],
&[("Audit", "[email protected]")],
],
[
&[("Jane Doe", "[email protected]")],
&[("Amazon Web Services", "[email protected]")],
&[("Bob", "[email protected]")],
&[("", "[email protected]")],
],
[
&[("Newsletter", "[email protected]")],
&[("", "[email protected]")],
&[],
&[],
],
];
let fields = [
EmailSearchField::From,
EmailSearchField::To,
EmailSearchField::Cc,
EmailSearchField::Bcc,
];
let mut documents = Vec::new();
let mut mask = RoaringBitmap::new();
for (document_id, message) in messages.iter().enumerate() {
let mut document = IndexDocument::new(SearchIndex::Email)
.with_account_id(ACCOUNT_ID)
.with_document_id(document_id as u32);
for (field, addresses) in fields.iter().zip(message.iter()) {
for (name, address) in addresses.iter() {
if !name.is_empty() {
document.index_text(field.clone(), name, Language::None);
}
document.index_text(field.clone(), address, Language::None);
}
}
document.index_unsigned(EmailSearchField::ReceivedAt, document_id as u64);
documents.push(document);
mask.insert(document_id as u32);
}
store.index(documents).await.unwrap();
if let SearchStore::ElasticSearch(store) = &store {
store.refresh_index(SearchIndex::Email).await.unwrap();
}
for (field, text, expected) in [
// full address
(EmailSearchField::From, "[email protected]", vec![0u32]),
(EmailSearchField::To, "[email protected]", vec![0]),
(EmailSearchField::Cc, "[email protected]", vec![1]),
(EmailSearchField::Bcc, "[email protected]", vec![3]),
(EmailSearchField::To, "[email protected]", vec![1, 2]),
// local part
(EmailSearchField::From, "noreply", vec![0, 2]),
(EmailSearchField::To, "jo", vec![1, 2]),
(EmailSearchField::Cc, "bob", vec![3]),
(EmailSearchField::Bcc, "audit", vec![2]),
// domain
(EmailSearchField::From, "amazon.com", vec![0, 1]),
(EmailSearchField::From, "amazon", vec![0, 1]),
(EmailSearchField::To, "example.org", vec![0, 4]),
(EmailSearchField::To, "io.de", vec![1, 2]),
(EmailSearchField::Cc, "example.net", vec![3]),
(EmailSearchField::Bcc, "example.org", vec![2]),
(EmailSearchField::From, "www.example.com", vec![4]),
(EmailSearchField::From, "com", vec![0, 1, 2, 4]),
// display name
(EmailSearchField::From, "Jane", vec![3]),
(EmailSearchField::From, "jane doe", vec![3]),
(EmailSearchField::To, "Web Services", vec![3]),
(EmailSearchField::To, "Li", vec![2]),
(EmailSearchField::Cc, "Doe", vec![1]),
(EmailSearchField::Bcc, "Audit", vec![2]),
// hyphenated local part
(EmailSearchField::From, "shipment-tracking", vec![1]),
(EmailSearchField::From, "tracking", vec![1]),
// no match
(EmailSearchField::From, "amazon.org", vec![]),
(EmailSearchField::To, "noreply", vec![]),
(EmailSearchField::Bcc, "jane", vec![]),
] {
let ids = store
.query_account(
SearchQuery::new(SearchIndex::Email)
.with_filters(vec![
SearchFilter::eq(SearchField::AccountId, ACCOUNT_ID),
SearchFilter::has_keyword(field.clone(), text),
])
.with_comparator(SearchComparator::ascending(EmailSearchField::ReceivedAt))
.with_mask(mask.clone()),
)
.await
.unwrap();
assert_eq!(ids, expected, "{field:?} {text:?}");
}
// TEXT-style search across all address fields
let ids = store
.query_account(
SearchQuery::new(SearchIndex::Email)
.with_filters(vec![
SearchFilter::eq(SearchField::AccountId, ACCOUNT_ID),
SearchFilter::Or,
SearchFilter::has_keyword(EmailSearchField::From, "example.org"),
SearchFilter::has_keyword(EmailSearchField::To, "example.org"),
SearchFilter::has_keyword(EmailSearchField::Cc, "example.org"),
SearchFilter::has_keyword(EmailSearchField::Bcc, "example.org"),
SearchFilter::End,
])
.with_comparator(SearchComparator::ascending(EmailSearchField::ReceivedAt))
.with_mask(mask.clone()),
)
.await
.unwrap();
assert_eq!(ids, vec![0, 1, 2, 3, 4]);
store
.unindex(
SearchQuery::new(SearchIndex::Email)
.with_filter(SearchFilter::eq(SearchField::AccountId, ACCOUNT_ID)),
)
.await
.unwrap();
}