Files
qdrant/lib/segment/tests/integration/exact_search_test.rs
xzfc 20229f99ba [combined-storage] Combined storage write (#10669)
* HNSWIndex::build(): add `inline_vectors` arg

Let the caller decide whether to use `inline_vectors` format.

* SegmentBuilder::build: finalize GraphInline vector storage

Instead of old "graph-with-vectors plus regular vector storage",
keep only the graph-with-vectors storage.

* Gate the GraphInline segment build behind a feature flag
2026-09-17 15:31:31 +00:00

239 lines
7.6 KiB
Rust

// Deprecated storage placement params (`on_disk`, `always_ram`, `on_disk_payload`) are still
// handled here for backward compatibility with the new `memory` parameter
#![allow(deprecated)]
use std::collections::HashMap;
use std::sync::Arc;
use std::sync::atomic::AtomicBool;
use common::budget::ResourcePermit;
use common::counter::hardware_counter::HardwareCounterCell;
use common::flags::FeatureFlags;
use common::progress_tracker::ProgressTracker;
use common::types::PointOffsetType;
use ordered_float::OrderedFloat;
use rand::RngExt;
use segment::data_types::vectors::{DEFAULT_VECTOR_NAME, only_default_vector};
use segment::entry::entry_point::SegmentEntry;
use segment::fixtures::payload_fixtures::{random_int_payload, random_vector};
use segment::index::hnsw_index::get_num_indexing_threads;
use segment::index::hnsw_index::hnsw::{HNSWIndex, HnswIndexOpenArgs};
use segment::index::{PayloadIndex, PayloadIndexRead, VectorIndexRead};
use segment::json_path::JsonPath;
use segment::payload_json;
use segment::segment_constructor::VectorIndexBuildArgs;
use segment::segment_constructor::simple_segment_constructor::build_simple_segment;
use segment::types::{
Condition, Distance, FieldCondition, Filter, HnswConfig, HnswGlobalConfig, PayloadSchemaType,
Range, SearchParams, SeqNumberType,
};
use tempfile::Builder;
#[test]
fn exact_search_test() {
let stopped = AtomicBool::new(false);
let dim = 8;
let m = 8;
let num_vectors: u64 = 5_000;
let ef = 32;
let ef_construct = 16;
let distance = Distance::Cosine;
let full_scan_threshold = 16; // KB
let indexing_threshold = 500; // num vectors
let num_payload_values = 2;
let mut rng = rand::rng();
let dir = Builder::new().prefix("segment_dir").tempdir().unwrap();
let hnsw_dir = Builder::new().prefix("hnsw_dir").tempdir().unwrap();
let int_key = "int";
let hw_counter = HardwareCounterCell::new();
let is_stopped = AtomicBool::new(false);
let mut segment = build_simple_segment(dir.path(), dim, distance).unwrap();
for n in 0..num_vectors {
let idx = n.into();
let vector = random_vector(&mut rng, dim);
let int_payload = random_int_payload(&mut rng, num_payload_values..=num_payload_values);
let payload = payload_json! {int_key: int_payload};
segment
.upsert_point(
n as SeqNumberType,
idx,
only_default_vector(&vector),
&hw_counter,
)
.unwrap();
segment
.set_full_payload(n as SeqNumberType, idx, &payload, &hw_counter)
.unwrap();
}
// let opnum = num_vectors + 1;
let payload_index_ptr = segment.payload_index.clone();
let hnsw_config = HnswConfig {
memory: None,
m,
ef_construct,
full_scan_threshold,
max_indexing_threads: 2,
on_disk: Some(false),
payload_m: None,
inline_storage: None,
};
payload_index_ptr
.borrow_mut()
.set_indexed(
&JsonPath::new(int_key),
PayloadSchemaType::Integer,
&hw_counter,
)
.unwrap();
let borrowed_payload_index = payload_index_ptr.borrow();
let mut blocks = Vec::new();
borrowed_payload_index
.with_view(|v| {
v.for_each_payload_block(&JsonPath::new(int_key), indexing_threshold, &mut |block| {
blocks.push(block);
Ok(())
})
})
.unwrap();
for block in &blocks {
assert!(
block.condition.range.is_some(),
"only range conditions should be generated for this type of payload"
);
}
let mut coverage: HashMap<PointOffsetType, usize> = Default::default();
for block in &blocks {
let px = payload_index_ptr.borrow();
let filter = Filter::new_must(Condition::Field(block.condition.clone()));
let points = px
.with_view(|v| v.query_points(&filter, &hw_counter, &is_stopped))
.unwrap();
for point in points {
coverage.insert(point, coverage.get(&point).unwrap_or(&0) + 1);
}
}
let expected_blocks = num_vectors as usize / indexing_threshold * 2;
eprintln!("blocks.len() = {:#?}", blocks.len());
assert!(
(blocks.len() as i64 - expected_blocks as i64).abs() <= 3,
"real number of payload blocks is too far from expected"
);
assert_eq!(
coverage.len(),
num_vectors as usize,
"not all points are covered by payload blocks"
);
let permit_cpu_count = get_num_indexing_threads(hnsw_config.max_indexing_threads);
let permit = Arc::new(ResourcePermit::dummy(permit_cpu_count as u32));
let hnsw_index = HNSWIndex::build(
HnswIndexOpenArgs {
path: hnsw_dir.path(),
id_tracker: segment.id_tracker.clone(),
vector_storage: segment.vector_data[DEFAULT_VECTOR_NAME]
.vector_storage
.clone(),
quantized_vectors: segment.vector_data[DEFAULT_VECTOR_NAME]
.quantized_vectors
.clone(),
payload_index: payload_index_ptr.clone(),
hnsw_config,
},
VectorIndexBuildArgs {
permit,
old_indices: &[],
gpu_device: None,
rng: &mut rng,
stopped: &stopped,
hnsw_global_config: &HnswGlobalConfig::default(),
feature_flags: FeatureFlags::default(),
inline_vectors: false,
progress: ProgressTracker::new_for_test(),
},
)
.unwrap();
let top = 3;
let attempts = 50;
for _i in 0..attempts {
let query = random_vector(&mut rng, dim).into();
let index_result = hnsw_index
.search(
&[&query],
None,
top,
Some(&SearchParams {
hnsw_ef: Some(ef),
exact: true,
..Default::default()
}),
&Default::default(),
)
.unwrap();
let plain_result = segment.vector_data[DEFAULT_VECTOR_NAME]
.vector_index
.borrow()
.search(&[&query], None, top, None, &Default::default())
.unwrap();
assert_eq!(
index_result, plain_result,
"Exact search is not equal to plain search"
);
let range_size = 40;
let left_range = rng.random_range(0..400);
let right_range = left_range + range_size;
let filter = Filter::new_must(Condition::Field(FieldCondition::new_range(
JsonPath::new(int_key),
Range {
lt: None,
gt: None,
gte: Some(OrderedFloat(f64::from(left_range))),
lte: Some(OrderedFloat(f64::from(right_range))),
},
)));
let filter_query = Some(&filter);
let index_result = hnsw_index
.search(
&[&query],
filter_query,
top,
Some(&SearchParams {
hnsw_ef: Some(ef),
exact: true,
..Default::default()
}),
&Default::default(),
)
.unwrap();
let plain_result = segment.vector_data[DEFAULT_VECTOR_NAME]
.vector_index
.borrow()
.search(&[&query], filter_query, top, None, &Default::default())
.unwrap();
assert_eq!(
index_result, plain_result,
"Exact search is not equal to plain search"
);
}
}