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52
.github/workflows/build.yml
vendored
52
.github/workflows/build.yml
vendored
@@ -20,8 +20,6 @@ jobs:
|
||||
os: ubuntu-20.04
|
||||
- postgres: 12
|
||||
os: ubuntu-20.04
|
||||
- postgres: 11
|
||||
os: ubuntu-20.04
|
||||
steps:
|
||||
- uses: actions/checkout@v4
|
||||
- uses: ankane/setup-postgres@v1
|
||||
@@ -30,7 +28,7 @@ jobs:
|
||||
dev-files: true
|
||||
- run: make
|
||||
env:
|
||||
PG_CFLAGS: -Wall -Wextra -Werror -Wno-unused-parameter -Wno-sign-compare
|
||||
PG_CFLAGS: -DUSE_ASSERT_CHECKING -Wall -Wextra -Werror -Wno-unused-parameter -Wno-sign-compare
|
||||
- run: |
|
||||
export PG_CONFIG=`which pg_config`
|
||||
sudo --preserve-env=PG_CONFIG make install
|
||||
@@ -42,27 +40,43 @@ jobs:
|
||||
sudo apt-get install libipc-run-perl
|
||||
- run: make prove_installcheck
|
||||
mac:
|
||||
runs-on: macos-latest
|
||||
runs-on: ${{ matrix.os }}
|
||||
if: ${{ !startsWith(github.ref_name, 'windows') }}
|
||||
strategy:
|
||||
fail-fast: false
|
||||
matrix:
|
||||
include:
|
||||
- postgres: 16
|
||||
os: macos-14
|
||||
- postgres: 14
|
||||
os: macos-12
|
||||
steps:
|
||||
- uses: actions/checkout@v4
|
||||
- uses: ankane/setup-postgres@v1
|
||||
with:
|
||||
postgres-version: 14
|
||||
postgres-version: ${{ matrix.postgres }}
|
||||
- run: make
|
||||
env:
|
||||
PG_CFLAGS: -Wall -Wextra -Werror -Wno-unused-parameter
|
||||
PG_CFLAGS: -DUSE_ASSERT_CHECKING -Wall -Wextra -Werror -Wno-unused-parameter
|
||||
- run: make install
|
||||
- run: make installcheck
|
||||
- if: ${{ failure() }}
|
||||
run: cat regression.diffs
|
||||
# Homebrew Postgres does not enable TAP tests, so need to download
|
||||
- run: |
|
||||
brew install cpanm
|
||||
cpanm --notest IPC::Run
|
||||
wget -q https://github.com/postgres/postgres/archive/refs/tags/REL_14_5.tar.gz
|
||||
tar xf REL_14_5.tar.gz
|
||||
- run: make prove_installcheck PROVE_FLAGS="-I ./postgres-REL_14_5/src/test/perl" PERL5LIB="/Users/runner/perl5/lib/perl5"
|
||||
- run: make clean && /usr/local/opt/llvm@15/bin/scan-build --status-bugs make
|
||||
wget -q https://github.com/postgres/postgres/archive/refs/tags/$TAG.tar.gz
|
||||
tar xf $TAG.tar.gz
|
||||
mv postgres-$TAG postgres
|
||||
env:
|
||||
TAG: ${{ matrix.postgres == 16 && 'REL_16_2' || 'REL_14_11' }}
|
||||
- run: make prove_installcheck PROVE_FLAGS="-I ./postgres/src/test/perl -I ./test/perl"
|
||||
env:
|
||||
PERL5LIB: /Users/runner/perl5/lib/perl5
|
||||
- run: make clean && $(brew --prefix llvm@15)/bin/scan-build --status-bugs make
|
||||
env:
|
||||
PG_CFLAGS: -DUSE_ASSERT_CHECKING
|
||||
windows:
|
||||
runs-on: windows-latest
|
||||
if: ${{ !startsWith(github.ref_name, 'mac') }}
|
||||
@@ -73,6 +87,7 @@ jobs:
|
||||
postgres-version: 14
|
||||
- run: |
|
||||
call "C:\Program Files\Microsoft Visual Studio\2022\Enterprise\VC\Auxiliary\Build\vcvars64.bat" && ^
|
||||
cd %TEMP% && ^
|
||||
nmake /NOLOGO /F Makefile.win && ^
|
||||
nmake /NOLOGO /F Makefile.win install && ^
|
||||
nmake /NOLOGO /F Makefile.win installcheck && ^
|
||||
@@ -83,10 +98,10 @@ jobs:
|
||||
if: ${{ !startsWith(github.ref_name, 'mac') && !startsWith(github.ref_name, 'windows') }}
|
||||
runs-on: ubuntu-latest
|
||||
container:
|
||||
image: debian:11
|
||||
image: debian:12
|
||||
options: --platform linux/386
|
||||
steps:
|
||||
- run: apt-get update && apt-get install -y build-essential git libipc-run-perl postgresql-13 postgresql-server-dev-13 sudo
|
||||
- run: apt-get update && apt-get install -y build-essential git libipc-run-perl postgresql-15 postgresql-server-dev-15 sudo
|
||||
- run: service postgresql start
|
||||
- run: |
|
||||
git clone https://github.com/${{ github.repository }}.git pgvector
|
||||
@@ -99,4 +114,15 @@ jobs:
|
||||
sudo -u postgres make installcheck
|
||||
sudo -u postgres make prove_installcheck
|
||||
env:
|
||||
PG_CFLAGS: -Wall -Wextra -Werror -Wno-unused-parameter -Wno-sign-compare
|
||||
PG_CFLAGS: -DUSE_ASSERT_CHECKING -Wall -Wextra -Werror -Wno-unused-parameter -Wno-sign-compare
|
||||
valgrind:
|
||||
if: ${{ !startsWith(github.ref_name, 'mac') && !startsWith(github.ref_name, 'windows') }}
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
- uses: actions/checkout@v4
|
||||
- uses: ankane/setup-postgres-valgrind@v1
|
||||
with:
|
||||
postgres-version: 16
|
||||
- run: make OPTFLAGS=""
|
||||
- run: sudo --preserve-env=PG_CONFIG make install
|
||||
- run: make installcheck
|
||||
|
||||
39
CHANGELOG.md
39
CHANGELOG.md
@@ -1,11 +1,40 @@
|
||||
## 0.5.2 (unreleased)
|
||||
## 0.7.0 (unreleased)
|
||||
|
||||
- Added `halfvec` type
|
||||
- Added `sparsevec` type
|
||||
- Added support for `bit` vectors to HNSW
|
||||
- Added `hamming_distance` function
|
||||
- Added `jaccard_distance` function
|
||||
- Added `quantize_binary` function
|
||||
- Added `subvector` function
|
||||
- Added CPU dispatching for distance functions on Linux x86-64
|
||||
- Updated comparison operators to support vectors with different dimensions
|
||||
|
||||
## 0.6.2 (2024-03-18)
|
||||
|
||||
- Reduced lock contention with parallel HNSW index builds
|
||||
|
||||
## 0.6.1 (2024-03-04)
|
||||
|
||||
- Fixed error with `ANALYZE` and vectors with different dimensions
|
||||
- Fixed segmentation fault with `shared_preload_libraries`
|
||||
- Fixed vector subtraction being marked as commutative
|
||||
|
||||
## 0.6.0 (2024-01-29)
|
||||
|
||||
If upgrading with Postgres 12 or Docker, see [these notes](https://github.com/pgvector/pgvector#060).
|
||||
|
||||
- Added support for parallel index builds for HNSW
|
||||
- Added validation for GUC parameters
|
||||
- Changed storage for vector from `extended` to `external`
|
||||
- Improved performance of HNSW
|
||||
- Added support for on-disk parallel index builds for HNSW
|
||||
- Reduced memory usage for HNSW index builds
|
||||
- Reduced WAL generation for HNSW index builds
|
||||
- Fixed error with logical replication
|
||||
- Fixed `invalid memory alloc request size` error with HNSW index build
|
||||
- Fixed `invalid memory alloc request size` error with HNSW index builds
|
||||
- Moved Docker image to `pgvector` org
|
||||
- Added Docker tags for each supported version of Postgres
|
||||
- Dropped support for Postgres 11
|
||||
|
||||
## 0.5.1 (2023-10-10)
|
||||
|
||||
@@ -53,7 +82,7 @@
|
||||
|
||||
## 0.4.0 (2023-01-11)
|
||||
|
||||
If upgrading with Postgres < 13, see [this note](https://github.com/pgvector/pgvector#040).
|
||||
If upgrading with Postgres < 13, see [this note](https://github.com/pgvector/pgvector/blob/v0.4.0/README.md#040).
|
||||
|
||||
- Changed text representation for vector elements to match `real`
|
||||
- Changed storage for vector from `plain` to `extended`
|
||||
@@ -70,7 +99,7 @@ If upgrading with Postgres < 13, see [this note](https://github.com/pgvector/pgv
|
||||
|
||||
## 0.3.1 (2022-11-02)
|
||||
|
||||
If upgrading from 0.2.7 or 0.3.0, [recreate](https://github.com/pgvector/pgvector#031) all `ivfflat` indexes after upgrading to ensure all data is indexed.
|
||||
If upgrading from 0.2.7 or 0.3.0, [recreate](https://github.com/pgvector/pgvector/blob/v0.3.1/README.md#031) all `ivfflat` indexes after upgrading to ensure all data is indexed.
|
||||
|
||||
- Fixed issue with inserts silently corrupting `ivfflat` indexes (introduced in 0.2.7)
|
||||
- Fixed segmentation fault with index creation when lists > 6500
|
||||
|
||||
@@ -1,4 +1,4 @@
|
||||
ARG PG_MAJOR=15
|
||||
ARG PG_MAJOR=16
|
||||
FROM postgres:$PG_MAJOR
|
||||
ARG PG_MAJOR
|
||||
|
||||
|
||||
2
LICENSE
2
LICENSE
@@ -1,4 +1,4 @@
|
||||
Portions Copyright (c) 1996-2023, PostgreSQL Global Development Group
|
||||
Portions Copyright (c) 1996-2024, PostgreSQL Global Development Group
|
||||
|
||||
Portions Copyright (c) 1994, The Regents of the University of California
|
||||
|
||||
|
||||
@@ -2,7 +2,7 @@
|
||||
"name": "vector",
|
||||
"abstract": "Open-source vector similarity search for Postgres",
|
||||
"description": "Supports L2 distance, inner product, and cosine distance",
|
||||
"version": "0.5.1",
|
||||
"version": "0.6.2",
|
||||
"maintainer": [
|
||||
"Andrew Kane <andrew@ankane.org>"
|
||||
],
|
||||
@@ -12,7 +12,7 @@
|
||||
"prereqs": {
|
||||
"runtime": {
|
||||
"requires": {
|
||||
"PostgreSQL": "11.0.0"
|
||||
"PostgreSQL": "12.0.0"
|
||||
}
|
||||
}
|
||||
},
|
||||
@@ -20,7 +20,7 @@
|
||||
"vector": {
|
||||
"file": "sql/vector.sql",
|
||||
"docfile": "README.md",
|
||||
"version": "0.5.1",
|
||||
"version": "0.6.2",
|
||||
"abstract": "Open-source vector similarity search for Postgres"
|
||||
}
|
||||
},
|
||||
|
||||
16
Makefile
16
Makefile
@@ -1,10 +1,10 @@
|
||||
EXTENSION = vector
|
||||
EXTVERSION = 0.5.1
|
||||
EXTVERSION = 0.6.2
|
||||
|
||||
MODULE_big = vector
|
||||
DATA = $(wildcard sql/*--*.sql)
|
||||
OBJS = src/hnsw.o src/hnswbuild.o src/hnswinsert.o src/hnswscan.o src/hnswutils.o src/hnswvacuum.o src/ivfbuild.o src/ivfflat.o src/ivfinsert.o src/ivfkmeans.o src/ivfscan.o src/ivfutils.o src/ivfvacuum.o src/vector.o
|
||||
HEADERS = src/vector.h
|
||||
OBJS = src/bitvector.o src/halfutils.o src/halfvec.o src/hnsw.o src/hnswbuild.o src/hnswinsert.o src/hnswscan.o src/hnswutils.o src/hnswvacuum.o src/ivfbuild.o src/ivfflat.o src/ivfinsert.o src/ivfkmeans.o src/ivfscan.o src/ivfutils.o src/ivfvacuum.o src/sparsevec.o src/vector.o
|
||||
HEADERS = src/halfvec.h src/sparsevec.h src/vector.h
|
||||
|
||||
TESTS = $(wildcard test/sql/*.sql)
|
||||
REGRESS = $(patsubst test/sql/%.sql,%,$(TESTS))
|
||||
@@ -12,7 +12,7 @@ REGRESS_OPTS = --inputdir=test --load-extension=$(EXTENSION)
|
||||
|
||||
OPTFLAGS = -march=native
|
||||
|
||||
# Mac ARM doesn't support -march=native
|
||||
# Mac ARM doesn't always support -march=native
|
||||
ifeq ($(shell uname -s), Darwin)
|
||||
ifeq ($(shell uname -p), arm)
|
||||
# no difference with -march=armv8.5-a
|
||||
@@ -65,13 +65,15 @@ dist:
|
||||
mkdir -p dist
|
||||
git archive --format zip --prefix=$(EXTENSION)-$(EXTVERSION)/ --output dist/$(EXTENSION)-$(EXTVERSION).zip master
|
||||
|
||||
# for Docker
|
||||
PG_MAJOR ?= 16
|
||||
|
||||
.PHONY: docker
|
||||
|
||||
docker:
|
||||
docker build --pull --no-cache --platform linux/amd64 -t ankane/pgvector:latest .
|
||||
docker build --pull --no-cache --build-arg PG_MAJOR=$(PG_MAJOR) -t pgvector/pgvector:pg$(PG_MAJOR) -t pgvector/pgvector:$(EXTVERSION)-pg$(PG_MAJOR) .
|
||||
|
||||
.PHONY: docker-release
|
||||
|
||||
docker-release:
|
||||
docker buildx build --push --pull --no-cache --platform linux/amd64,linux/arm64 -t ankane/pgvector:latest .
|
||||
docker buildx build --push --platform linux/amd64,linux/arm64 -t ankane/pgvector:v$(EXTVERSION) .
|
||||
docker buildx build --push --pull --no-cache --platform linux/amd64,linux/arm64 --build-arg PG_MAJOR=$(PG_MAJOR) -t pgvector/pgvector:pg$(PG_MAJOR) -t pgvector/pgvector:$(EXTVERSION)-pg$(PG_MAJOR) .
|
||||
|
||||
@@ -1,10 +1,10 @@
|
||||
EXTENSION = vector
|
||||
EXTVERSION = 0.5.1
|
||||
EXTVERSION = 0.6.2
|
||||
|
||||
OBJS = src\hnsw.obj src\hnswbuild.obj src\hnswinsert.obj src\hnswscan.obj src\hnswutils.obj src\hnswvacuum.obj src\ivfbuild.obj src\ivfflat.obj src\ivfinsert.obj src\ivfkmeans.obj src\ivfscan.obj src\ivfutils.obj src\ivfvacuum.obj src\vector.obj
|
||||
HEADERS = src\vector.h
|
||||
OBJS = src\bitvector.obj src\halfutils.obj src\halfvec.obj src\hnsw.obj src\hnswbuild.obj src\hnswinsert.obj src\hnswscan.obj src\hnswutils.obj src\hnswvacuum.obj src\ivfbuild.obj src\ivfflat.obj src\ivfinsert.obj src\ivfkmeans.obj src\ivfscan.obj src\ivfutils.obj src\ivfvacuum.obj src\sparsevec.obj src\vector.obj
|
||||
HEADERS = src\halfvec.h src\sparsevec.h src\vector.h
|
||||
|
||||
REGRESS = btree cast copy functions input ivfflat_cosine ivfflat_ip ivfflat_l2 ivfflat_options ivfflat_unlogged
|
||||
REGRESS = bit_functions btree cast copy halfvec_functions halfvec_input hnsw_bit_hamming hnsw_bit_jaccard hnsw_halfvec_cosine hnsw_halfvec_ip hnsw_halfvec_l2 hnsw_options hnsw_sparsevec_cosine hnsw_sparsevec_ip hnsw_sparsevec_l2 hnsw_unlogged hnsw_vector_cosine hnsw_vector_ip hnsw_vector_l2 ivfflat_options ivfflat_unlogged ivfflat_vector_cosine ivfflat_vector_ip ivfflat_vector_l2 sparsevec_functions sparsevec_input vector_functions vector_input
|
||||
REGRESS_OPTS = --inputdir=test --load-extension=$(EXTENSION)
|
||||
|
||||
# For /arch flags
|
||||
|
||||
474
README.md
474
README.md
@@ -14,19 +14,46 @@ Plus [ACID](https://en.wikipedia.org/wiki/ACID) compliance, point-in-time recove
|
||||
|
||||
## Installation
|
||||
|
||||
Compile and install the extension (supports Postgres 11+)
|
||||
### Linux and Mac
|
||||
|
||||
Compile and install the extension (supports Postgres 12+)
|
||||
|
||||
```sh
|
||||
cd /tmp
|
||||
git clone --branch v0.5.1 https://github.com/pgvector/pgvector.git
|
||||
git clone --branch v0.6.2 https://github.com/pgvector/pgvector.git
|
||||
cd pgvector
|
||||
make
|
||||
make install # may need sudo
|
||||
```
|
||||
|
||||
See the [installation notes](#installation-notes) if you run into issues
|
||||
See the [installation notes](#installation-notes---linux-and-mac) if you run into issues
|
||||
|
||||
You can also install it with [Docker](#docker), [Homebrew](#homebrew), [PGXN](#pgxn), [APT](#apt), [Yum](#yum), or [conda-forge](#conda-forge), and it comes preinstalled with [Postgres.app](#postgresapp) and many [hosted providers](#hosted-postgres). There are also instructions for [GitHub Actions](https://github.com/pgvector/setup-pgvector).
|
||||
You can also install it with [Docker](#docker), [Homebrew](#homebrew), [PGXN](#pgxn), [APT](#apt), [Yum](#yum), [pkg](#pkg), or [conda-forge](#conda-forge), and it comes preinstalled with [Postgres.app](#postgresapp) and many [hosted providers](#hosted-postgres). There are also instructions for [GitHub Actions](https://github.com/pgvector/setup-pgvector).
|
||||
|
||||
### Windows
|
||||
|
||||
Ensure [C++ support in Visual Studio](https://learn.microsoft.com/en-us/cpp/build/building-on-the-command-line?view=msvc-170#download-and-install-the-tools) is installed, and run:
|
||||
|
||||
```cmd
|
||||
call "C:\Program Files\Microsoft Visual Studio\2022\Community\VC\Auxiliary\Build\vcvars64.bat"
|
||||
```
|
||||
|
||||
Note: The exact path will vary depending on your Visual Studio version and edition
|
||||
|
||||
Then use `nmake` to build:
|
||||
|
||||
```cmd
|
||||
set "PGROOT=C:\Program Files\PostgreSQL\16"
|
||||
cd %TEMP%
|
||||
git clone --branch v0.6.2 https://github.com/pgvector/pgvector.git
|
||||
cd pgvector
|
||||
nmake /F Makefile.win
|
||||
nmake /F Makefile.win install
|
||||
```
|
||||
|
||||
See the [installation notes](#installation-notes---windows) if you run into issues
|
||||
|
||||
You can also install it with [Docker](#docker) or [conda-forge](#conda-forge).
|
||||
|
||||
## Getting Started
|
||||
|
||||
@@ -78,6 +105,12 @@ Insert vectors
|
||||
INSERT INTO items (embedding) VALUES ('[1,2,3]'), ('[4,5,6]');
|
||||
```
|
||||
|
||||
Or load vectors in bulk using `COPY` ([example](https://github.com/pgvector/pgvector-python/blob/master/examples/bulk_loading.py))
|
||||
|
||||
```sql
|
||||
COPY items (embedding) FROM STDIN WITH (FORMAT BINARY);
|
||||
```
|
||||
|
||||
Upsert vectors
|
||||
|
||||
```sql
|
||||
@@ -188,7 +221,24 @@ Cosine distance
|
||||
CREATE INDEX ON items USING hnsw (embedding vector_cosine_ops);
|
||||
```
|
||||
|
||||
Vectors with up to 2,000 dimensions can be indexed.
|
||||
Hamming distance - unreleased
|
||||
|
||||
```sql
|
||||
CREATE INDEX ON items USING hnsw (embedding bit_hamming_ops);
|
||||
```
|
||||
|
||||
Jaccard distance - unreleased
|
||||
|
||||
```sql
|
||||
CREATE INDEX ON items USING hnsw (embedding bit_jaccard_ops);
|
||||
```
|
||||
|
||||
Supported types are:
|
||||
|
||||
- `vector` - up to 2,000 dimensions
|
||||
- `halfvec` - up to 4,000 dimensions (unreleased)
|
||||
- `bit` - up to 64,000 dimensions (unreleased)
|
||||
- `sparsevec` - up to 1,000 non-zero elements (unreleased)
|
||||
|
||||
### Index Options
|
||||
|
||||
@@ -240,6 +290,16 @@ HINT: Increase maintenance_work_mem to speed up builds.
|
||||
|
||||
Note: Do not set `maintenance_work_mem` so high that it exhausts the memory on the server
|
||||
|
||||
Like other index types, it’s faster to create an index after loading your initial data
|
||||
|
||||
Starting with 0.6.0, you can also speed up index creation by increasing the number of parallel workers (2 by default)
|
||||
|
||||
```sql
|
||||
SET max_parallel_maintenance_workers = 7; -- plus leader
|
||||
```
|
||||
|
||||
For a large number of workers, you may also need to increase `max_parallel_workers` (8 by default)
|
||||
|
||||
### Indexing Progress
|
||||
|
||||
Check [indexing progress](https://www.postgresql.org/docs/current/progress-reporting.html#CREATE-INDEX-PROGRESS-REPORTING) with Postgres 12+
|
||||
@@ -283,7 +343,10 @@ Cosine distance
|
||||
CREATE INDEX ON items USING ivfflat (embedding vector_cosine_ops) WITH (lists = 100);
|
||||
```
|
||||
|
||||
Vectors with up to 2,000 dimensions can be indexed.
|
||||
Supported types are:
|
||||
|
||||
- `vector` - up to 2,000 dimensions
|
||||
- `halfvec` - up to 4,000 dimensions (unreleased)
|
||||
|
||||
### Query Options
|
||||
|
||||
@@ -357,6 +420,103 @@ Use [partitioning](https://www.postgresql.org/docs/current/ddl-partitioning.html
|
||||
CREATE TABLE items (embedding vector(3), category_id int) PARTITION BY LIST(category_id);
|
||||
```
|
||||
|
||||
## Half Vectors
|
||||
|
||||
*Unreleased*
|
||||
|
||||
Use the `halfvec` type to store half-precision vectors
|
||||
|
||||
```sql
|
||||
CREATE TABLE items (id bigserial PRIMARY KEY, embedding halfvec(3));
|
||||
```
|
||||
|
||||
## Half Indexing
|
||||
|
||||
*Unreleased*
|
||||
|
||||
Index vectors at half precision for smaller indexes and faster build times
|
||||
|
||||
```sql
|
||||
CREATE INDEX ON items USING hnsw ((embedding::halfvec(3)) halfvec_l2_ops);
|
||||
```
|
||||
|
||||
Get the nearest neighbors
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY embedding::halfvec(3) <-> '[1,2,3]' LIMIT 5;
|
||||
```
|
||||
|
||||
## Binary Vectors
|
||||
|
||||
Use the `bit` type to store binary vectors ([example](https://github.com/pgvector/pgvector-python/blob/master/examples/hash_image_search.py))
|
||||
|
||||
```sql
|
||||
CREATE TABLE items (id bigserial PRIMARY KEY, embedding bit(3));
|
||||
INSERT INTO items (embedding) VALUES ('000'), ('111');
|
||||
```
|
||||
|
||||
Get the nearest neighbors by Hamming distance
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY bit_count(embedding # '101') LIMIT 5;
|
||||
```
|
||||
|
||||
Or (unreleased)
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY embedding <~> '101' LIMIT 5;
|
||||
```
|
||||
|
||||
Also supports Jaccard distance (`<%>`)
|
||||
|
||||
## Binary Quantization
|
||||
|
||||
*Unreleased*
|
||||
|
||||
Use expression indexing for binary quantization
|
||||
|
||||
```sql
|
||||
CREATE INDEX ON items USING hnsw ((quantize_binary(embedding)::bit(3)) bit_hamming_ops);
|
||||
```
|
||||
|
||||
Get the nearest neighbors by Hamming distance
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY quantize_binary(embedding)::bit(3) <~> quantize_binary('[1,-2,3]') LIMIT 5;
|
||||
```
|
||||
|
||||
Re-rank by the original vectors for better recall
|
||||
|
||||
```sql
|
||||
SELECT * FROM (
|
||||
SELECT * FROM items ORDER BY quantize_binary(embedding)::bit(3) <~> quantize_binary('[1,-2,3]') LIMIT 20
|
||||
) ORDER BY embedding <=> '[1,-2,3]' LIMIT 5;
|
||||
```
|
||||
|
||||
## Sparse Vectors
|
||||
|
||||
*Unreleased*
|
||||
|
||||
Use the `sparsevec` type to store sparse vectors
|
||||
|
||||
```sql
|
||||
CREATE TABLE items (id bigserial PRIMARY KEY, embedding sparsevec(5));
|
||||
```
|
||||
|
||||
Insert vectors
|
||||
|
||||
```sql
|
||||
INSERT INTO items (embedding) VALUES ('{1:1,3:2,5:3}/5'), ('{1:4,3:5,5:6}/5');
|
||||
```
|
||||
|
||||
Note: The format is `{index1:value1,index2:value2,...}/dimensions` and indices start at 1 like SQL arrays
|
||||
|
||||
Get the nearest neighbors by L2 distance
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY embedding <-> '{1:3,3:1,5:2}/5' LIMIT 5;
|
||||
```
|
||||
|
||||
## Hybrid Search
|
||||
|
||||
Use together with Postgres [full-text search](https://www.postgresql.org/docs/current/textsearch-intro.html) for hybrid search.
|
||||
@@ -368,15 +528,77 @@ SELECT id, content FROM items, plainto_tsquery('hello search') query
|
||||
|
||||
You can use [Reciprocal Rank Fusion](https://github.com/pgvector/pgvector-python/blob/master/examples/hybrid_search_rrf.py) or a [cross-encoder](https://github.com/pgvector/pgvector-python/blob/master/examples/hybrid_search.py) to combine results.
|
||||
|
||||
## Subvector Indexing
|
||||
|
||||
*Unreleased*
|
||||
|
||||
Use expression indexing to index subvectors
|
||||
|
||||
```sql
|
||||
CREATE INDEX ON items USING hnsw ((subvector(embedding, 1, 3)::vector(3)) vector_cosine_ops);
|
||||
```
|
||||
|
||||
Get the nearest neighbors by cosine distance
|
||||
|
||||
```sql
|
||||
SELECT * FROM items ORDER BY subvector(embedding, 1, 3)::vector(3) <=> subvector('[1,2,3,4,5]'::vector, 1, 3) LIMIT 5;
|
||||
```
|
||||
|
||||
Re-rank by the full vectors for better recall
|
||||
|
||||
```sql
|
||||
SELECT * FROM (
|
||||
SELECT * FROM items ORDER BY subvector(embedding, 1, 3)::vector(3) <=> subvector('[1,2,3,4,5]'::vector, 1, 3) LIMIT 20
|
||||
) ORDER BY embedding <=> '[1,2,3,4,5]' LIMIT 5;
|
||||
```
|
||||
|
||||
## Performance
|
||||
|
||||
### Tuning
|
||||
|
||||
Use a tool like [PgTune](https://pgtune.leopard.in.ua/) to set initial values for Postgres server parameters. For instance, `shared_buffers` should typically be 25% of the server’s memory. You can find the config file with:
|
||||
|
||||
```sql
|
||||
SHOW config_file;
|
||||
```
|
||||
|
||||
And check individual settings with:
|
||||
|
||||
```sql
|
||||
SHOW shared_buffers;
|
||||
```
|
||||
|
||||
Be sure to restart Postgres for changes to take effect.
|
||||
|
||||
### Loading
|
||||
|
||||
Use `COPY` for bulk loading data ([example](https://github.com/pgvector/pgvector-python/blob/master/examples/bulk_loading.py)).
|
||||
|
||||
```sql
|
||||
COPY items (embedding) FROM STDIN WITH (FORMAT BINARY);
|
||||
```
|
||||
|
||||
Add any indexes *after* loading the initial data for best performance.
|
||||
|
||||
### Indexing
|
||||
|
||||
See index build time for [HNSW](#index-build-time) and [IVFFlat](#index-build-time-1).
|
||||
|
||||
In production environments, create indexes concurrently to avoid blocking writes.
|
||||
|
||||
```sql
|
||||
CREATE INDEX CONCURRENTLY ...
|
||||
```
|
||||
|
||||
### Querying
|
||||
|
||||
Use `EXPLAIN ANALYZE` to debug performance.
|
||||
|
||||
```sql
|
||||
EXPLAIN ANALYZE SELECT * FROM items ORDER BY embedding <-> '[3,1,2]' LIMIT 5;
|
||||
```
|
||||
|
||||
### Exact Search
|
||||
#### Exact Search
|
||||
|
||||
To speed up queries without an index, increase `max_parallel_workers_per_gather`.
|
||||
|
||||
@@ -390,7 +612,7 @@ If vectors are normalized to length 1 (like [OpenAI embeddings](https://platform
|
||||
SELECT * FROM items ORDER BY embedding <#> '[3,1,2]' LIMIT 5;
|
||||
```
|
||||
|
||||
### Approximate Search
|
||||
#### Approximate Search
|
||||
|
||||
To speed up queries with an IVFFlat index, increase the number of inverted lists (at the expense of recall).
|
||||
|
||||
@@ -398,6 +620,50 @@ To speed up queries with an IVFFlat index, increase the number of inverted lists
|
||||
CREATE INDEX ON items USING ivfflat (embedding vector_l2_ops) WITH (lists = 1000);
|
||||
```
|
||||
|
||||
### Vacuuming
|
||||
|
||||
Vacuuming can take a while for HNSW indexes. Speed it up by reindexing first.
|
||||
|
||||
```sql
|
||||
REINDEX INDEX CONCURRENTLY index_name;
|
||||
VACUUM table_name;
|
||||
```
|
||||
|
||||
## Monitoring
|
||||
|
||||
Monitor performance with [pg_stat_statements](https://www.postgresql.org/docs/current/pgstatstatements.html) (be sure to add it to `shared_preload_libraries`).
|
||||
|
||||
```sql
|
||||
CREATE EXTENSION pg_stat_statements;
|
||||
```
|
||||
|
||||
Get the most time-consuming queries with:
|
||||
|
||||
```sql
|
||||
SELECT query, calls, ROUND((total_plan_time + total_exec_time) / calls) AS avg_time_ms,
|
||||
ROUND((total_plan_time + total_exec_time) / 60000) AS total_time_min
|
||||
FROM pg_stat_statements ORDER BY total_plan_time + total_exec_time DESC LIMIT 20;
|
||||
```
|
||||
|
||||
Note: Replace `total_plan_time + total_exec_time` with `total_time` for Postgres < 13
|
||||
|
||||
Monitor recall by comparing results from approximate search with exact search.
|
||||
|
||||
```sql
|
||||
BEGIN;
|
||||
SET LOCAL enable_indexscan = off; -- use exact search
|
||||
SELECT ...
|
||||
COMMIT;
|
||||
```
|
||||
|
||||
## Scaling
|
||||
|
||||
Scale pgvector the same way you scale Postgres.
|
||||
|
||||
Scale vertically by increasing memory, CPU, and storage on a single instance. Use existing tools to [tune parameters](#tuning) and [monitor performance](#monitoring).
|
||||
|
||||
Scale horizontally with [replicas](https://www.postgresql.org/docs/current/hot-standby.html), or use [Citus](https://github.com/citusdata/citus) or another approach for sharding ([example](https://github.com/pgvector/pgvector-python/blob/master/examples/citus.py)).
|
||||
|
||||
## Languages
|
||||
|
||||
Use pgvector from any language with a Postgres client. You can even generate and store vectors in one language and query them in another.
|
||||
@@ -503,7 +769,17 @@ SELECT pg_size_pretty(pg_relation_size('index_name'));
|
||||
|
||||
#### Why isn’t a query using an index?
|
||||
|
||||
The cost estimation in pgvector < 0.4.3 does not always work well with the planner. You can encourage the planner to use an index for a query with:
|
||||
The query needs to have an `ORDER BY` and `LIMIT`, and the `ORDER BY` must be the result of a distance operator, not an expression.
|
||||
|
||||
```sql
|
||||
-- index
|
||||
ORDER BY embedding <=> '[3,1,2]' LIMIT 5;
|
||||
|
||||
-- no index
|
||||
ORDER BY 1 - (embedding <=> '[3,1,2]') DESC LIMIT 5;
|
||||
```
|
||||
|
||||
You can encourage the planner to use an index for a query with:
|
||||
|
||||
```sql
|
||||
BEGIN;
|
||||
@@ -532,6 +808,12 @@ or choose to store vectors inline:
|
||||
ALTER TABLE items ALTER COLUMN embedding SET STORAGE PLAIN;
|
||||
```
|
||||
|
||||
#### Why are there less results for a query after adding an HNSW index?
|
||||
|
||||
Results are limited by the size of the dynamic candidate list (`hnsw.ef_search`). There may be even less results due to dead tuples or filtering conditions in the query. We recommend setting `hnsw.ef_search` to at least twice the `LIMIT` of the query. If you need more than 500 results, use an IVFFlat index instead.
|
||||
|
||||
Also, note that `NULL` vectors are not indexed (as well as zero vectors for cosine distance).
|
||||
|
||||
#### Why are there less results for a query after adding an IVFFlat index?
|
||||
|
||||
The index was likely created with too little data for the number of lists. Drop the index until the table has more data.
|
||||
@@ -540,11 +822,20 @@ The index was likely created with too little data for the number of lists. Drop
|
||||
DROP INDEX index_name;
|
||||
```
|
||||
|
||||
Results can also be limited by the number of probes (`ivfflat.probes`).
|
||||
|
||||
Also, note that `NULL` vectors are not indexed (as well as zero vectors for cosine distance).
|
||||
|
||||
## Reference
|
||||
|
||||
- [Vector](#vector-type)
|
||||
- [Halfvec](#halfvec-type)
|
||||
- [Bit](#bit-type)
|
||||
- [Sparsevec](#sparsevec-type)
|
||||
|
||||
### Vector Type
|
||||
|
||||
Each vector takes `4 * dimensions + 8` bytes of storage. Each element is a single precision floating-point number (like the `real` type in Postgres), and all elements must be finite (no `NaN`, `Infinity` or `-Infinity`). Vectors can have up to 16,000 dimensions.
|
||||
Each vector takes `4 * dimensions + 8` bytes of storage. Each element is a single-precision floating-point number (like the `real` type in Postgres), and all elements must be finite (no `NaN`, `Infinity` or `-Infinity`). Vectors can have up to 16,000 dimensions.
|
||||
|
||||
### Vector Operators
|
||||
|
||||
@@ -565,17 +856,81 @@ cosine_distance(vector, vector) → double precision | cosine distance |
|
||||
inner_product(vector, vector) → double precision | inner product |
|
||||
l2_distance(vector, vector) → double precision | Euclidean distance |
|
||||
l1_distance(vector, vector) → double precision | taxicab distance | 0.5.0
|
||||
quantize_binary(vector) → bit | quantize | unreleased
|
||||
subvector(vector, integer, integer) → vector | subvector | unreleased
|
||||
vector_dims(vector) → integer | number of dimensions |
|
||||
vector_norm(vector) → double precision | Euclidean norm |
|
||||
|
||||
### Aggregate Functions
|
||||
### Vector Aggregate Functions
|
||||
|
||||
Function | Description | Added
|
||||
--- | --- | ---
|
||||
avg(vector) → vector | average |
|
||||
sum(vector) → vector | sum | 0.5.0
|
||||
|
||||
## Installation Notes
|
||||
### Halfvec Type
|
||||
|
||||
Each half vector takes `2 * dimensions + 8` bytes of storage. Each element is a half-precision floating-point number, and all elements must be finite (no `NaN`, `Infinity` or `-Infinity`). Half vectors can have up to 16,000 dimensions.
|
||||
|
||||
### Halfvec Operators
|
||||
|
||||
Operator | Description | Added
|
||||
--- | --- | ---
|
||||
<-> | Euclidean distance | unreleased
|
||||
<#> | negative inner product | unreleased
|
||||
<=> | cosine distance | unreleased
|
||||
|
||||
### Halfvec Functions
|
||||
|
||||
Function | Description | Added
|
||||
--- | --- | ---
|
||||
cosine_distance(halfvec, halfvec) → double precision | cosine distance | unreleased
|
||||
inner_product(halfvec, halfvec) → double precision | inner product | unreleased
|
||||
l2_distance(halfvec, halfvec) → double precision | Euclidean distance | unreleased
|
||||
l1_distance(halfvec, halfvec) → double precision | taxicab distance | unreleased
|
||||
quantize_binary(halfvec) → bit | quantize | unreleased
|
||||
subvector(halfvec, integer, integer) → halfvec | subvector | unreleased
|
||||
|
||||
### Bit Type
|
||||
|
||||
Each bit vector takes `dimensions / 8 + 8` bytes of storage. See the [Postgres docs](https://www.postgresql.org/docs/current/datatype-bit.html) for more info.
|
||||
|
||||
### Bit Operators
|
||||
|
||||
Operator | Description | Added
|
||||
--- | --- | ---
|
||||
<~> | Hamming distance | unreleased
|
||||
<%> | Jaccard distance | unreleased
|
||||
|
||||
### Bit Functions
|
||||
|
||||
Function | Description | Added
|
||||
--- | --- | ---
|
||||
hamming_distance(bit, bit) → double precision | Hamming distance | unreleased
|
||||
jaccard_distance(bit, bit) → double precision | Jaccard distance | unreleased
|
||||
|
||||
### Sparsevec Type
|
||||
|
||||
Each sparse vector takes `8 * non-zero elements + 16` bytes of storage. Each element is a single-precision floating-point number, and all elements must be finite (no `NaN`, `Infinity` or `-Infinity`). Sparse vectors can have up to 16,000 non-zero elements.
|
||||
|
||||
### Sparsevec Operators
|
||||
|
||||
Operator | Description | Added
|
||||
--- | --- | ---
|
||||
<-> | Euclidean distance | unreleased
|
||||
<#> | negative inner product | unreleased
|
||||
<=> | cosine distance | unreleased
|
||||
|
||||
### Sparsevec Functions
|
||||
|
||||
Function | Description | Added
|
||||
--- | --- | ---
|
||||
cosine_distance(sparsevec, sparsevec) → double precision | cosine distance | unreleased
|
||||
inner_product(sparsevec, sparsevec) → double precision | inner product | unreleased
|
||||
l2_distance(sparsevec, sparsevec) → double precision | Euclidean distance | unreleased
|
||||
l1_distance(sparsevec, sparsevec) → double precision | taxicab distance | unreleased
|
||||
|
||||
## Installation Notes - Linux and Mac
|
||||
|
||||
### Postgres Location
|
||||
|
||||
@@ -615,44 +970,44 @@ Note: Replace `16` with your Postgres server version
|
||||
|
||||
If compilation fails and the output includes `warning: no such sysroot directory` on Mac, reinstall Xcode Command Line Tools.
|
||||
|
||||
### Windows
|
||||
### Portability
|
||||
|
||||
Support for Windows is currently experimental. Ensure [C++ support in Visual Studio](https://learn.microsoft.com/en-us/cpp/build/building-on-the-command-line?view=msvc-170#download-and-install-the-tools) is installed, and run:
|
||||
By default, pgvector compiles with `-march=native` on some platforms for best performance. However, this can lead to `Illegal instruction` errors if trying to run the compiled extension on a different machine.
|
||||
|
||||
```cmd
|
||||
call "C:\Program Files\Microsoft Visual Studio\2022\Community\VC\Auxiliary\Build\vcvars64.bat"
|
||||
To compile for portability, use:
|
||||
|
||||
```sh
|
||||
make OPTFLAGS=""
|
||||
```
|
||||
|
||||
Note: The exact path will vary depending on your Visual Studio version and edition
|
||||
## Installation Notes - Windows
|
||||
|
||||
Then use `nmake` to build:
|
||||
### Missing Header
|
||||
|
||||
```cmd
|
||||
set "PGROOT=C:\Program Files\PostgreSQL\16"
|
||||
git clone --branch v0.5.1 https://github.com/pgvector/pgvector.git
|
||||
cd pgvector
|
||||
nmake /F Makefile.win
|
||||
nmake /F Makefile.win install
|
||||
```
|
||||
If compilation fails with `Cannot open include file: 'postgres.h': No such file or directory`, make sure `PGROOT` is correct.
|
||||
|
||||
### Permissions
|
||||
|
||||
If installation fails with `Access is denied`, re-run the installation instructions as an administrator.
|
||||
|
||||
## Additional Installation Methods
|
||||
|
||||
### Docker
|
||||
|
||||
Get the [Docker image](https://hub.docker.com/r/ankane/pgvector) with:
|
||||
Get the [Docker image](https://hub.docker.com/r/pgvector/pgvector) with:
|
||||
|
||||
```sh
|
||||
docker pull ankane/pgvector
|
||||
docker pull pgvector/pgvector:pg16
|
||||
```
|
||||
|
||||
This adds pgvector to the [Postgres image](https://hub.docker.com/_/postgres) (run it the same way).
|
||||
This adds pgvector to the [Postgres image](https://hub.docker.com/_/postgres) (replace `16` with your Postgres server version, and run it the same way).
|
||||
|
||||
You can also build the image manually:
|
||||
|
||||
```sh
|
||||
git clone --branch v0.5.1 https://github.com/pgvector/pgvector.git
|
||||
git clone --branch v0.6.2 https://github.com/pgvector/pgvector.git
|
||||
cd pgvector
|
||||
docker build --build-arg PG_MAJOR=15 -t myuser/pgvector .
|
||||
docker build --build-arg PG_MAJOR=16 -t myuser/pgvector .
|
||||
```
|
||||
|
||||
### Homebrew
|
||||
@@ -695,6 +1050,21 @@ sudo dnf install pgvector_16
|
||||
|
||||
Note: Replace `16` with your Postgres server version
|
||||
|
||||
### pkg
|
||||
|
||||
Install the FreeBSD package with:
|
||||
|
||||
```sh
|
||||
pkg install postgresql15-pg_vector
|
||||
```
|
||||
|
||||
or the port with:
|
||||
|
||||
```sh
|
||||
cd /usr/ports/databases/pgvector
|
||||
make install
|
||||
```
|
||||
|
||||
### conda-forge
|
||||
|
||||
With Conda Postgres, install from [conda-forge](https://anaconda.org/conda-forge/pgvector) with:
|
||||
@@ -729,28 +1099,32 @@ SELECT extversion FROM pg_extension WHERE extname = 'vector';
|
||||
|
||||
## Upgrade Notes
|
||||
|
||||
### 0.4.0
|
||||
### 0.6.0
|
||||
|
||||
If upgrading with Postgres < 13, remove this line from `sql/vector--0.3.2--0.4.0.sql`:
|
||||
#### Postgres 12
|
||||
|
||||
If upgrading with Postgres 12, remove this line from `sql/vector--0.5.1--0.6.0.sql`:
|
||||
|
||||
```sql
|
||||
ALTER TYPE vector SET (STORAGE = extended);
|
||||
ALTER TYPE vector SET (STORAGE = external);
|
||||
```
|
||||
|
||||
Then run `make install` and `ALTER EXTENSION vector UPDATE;`.
|
||||
|
||||
### 0.3.1
|
||||
#### Docker
|
||||
|
||||
If upgrading from 0.2.7 or 0.3.0, recreate all `ivfflat` indexes after upgrading to ensure all data is indexed.
|
||||
The Docker image is now published in the `pgvector` org, and there are tags for each supported version of Postgres (rather than a `latest` tag).
|
||||
|
||||
```sql
|
||||
-- Postgres 12+
|
||||
REINDEX INDEX CONCURRENTLY index_name;
|
||||
```sh
|
||||
docker pull pgvector/pgvector:pg16
|
||||
# or
|
||||
docker pull pgvector/pgvector:0.6.0-pg16
|
||||
```
|
||||
|
||||
-- Postgres < 12
|
||||
CREATE INDEX CONCURRENTLY temp_name ON table USING ivfflat (column opclass);
|
||||
DROP INDEX CONCURRENTLY index_name;
|
||||
ALTER INDEX temp_name RENAME TO index_name;
|
||||
Also, if you’ve increased `maintenance_work_mem`, make sure `--shm-size` is at least that size to avoid an error with parallel HNSW index builds.
|
||||
|
||||
```sh
|
||||
docker run --shm-size=1g ...
|
||||
```
|
||||
|
||||
## Thanks
|
||||
@@ -796,8 +1170,14 @@ make prove_installcheck # TAP tests
|
||||
To run single tests:
|
||||
|
||||
```sh
|
||||
make installcheck REGRESS=functions # regression test
|
||||
make prove_installcheck PROVE_TESTS=test/t/001_wal.pl # TAP test
|
||||
make installcheck REGRESS=functions # regression test
|
||||
make prove_installcheck PROVE_TESTS=test/t/001_ivfflat_wal.pl # TAP test
|
||||
```
|
||||
|
||||
To enable assertions:
|
||||
|
||||
```sh
|
||||
make clean && PG_CFLAGS="-DUSE_ASSERT_CHECKING" make && make install
|
||||
```
|
||||
|
||||
To enable benchmarking:
|
||||
@@ -812,12 +1192,6 @@ To show memory usage:
|
||||
make clean && PG_CFLAGS="-DHNSW_MEMORY -DIVFFLAT_MEMORY" make && make install
|
||||
```
|
||||
|
||||
To enable assertions:
|
||||
|
||||
```sh
|
||||
make clean && PG_CFLAGS="-DUSE_ASSERT_CHECKING" make && make install
|
||||
```
|
||||
|
||||
To get k-means metrics:
|
||||
|
||||
```sh
|
||||
|
||||
5
sql/vector--0.5.1--0.6.0.sql
Normal file
5
sql/vector--0.5.1--0.6.0.sql
Normal file
@@ -0,0 +1,5 @@
|
||||
-- complain if script is sourced in psql, rather than via CREATE EXTENSION
|
||||
\echo Use "ALTER EXTENSION vector UPDATE TO '0.6.0'" to load this file. \quit
|
||||
|
||||
-- remove this single line for Postgres < 13
|
||||
ALTER TYPE vector SET (STORAGE = external);
|
||||
16
sql/vector--0.6.0--0.6.1.sql
Normal file
16
sql/vector--0.6.0--0.6.1.sql
Normal file
@@ -0,0 +1,16 @@
|
||||
-- complain if script is sourced in psql, rather than via CREATE EXTENSION
|
||||
\echo Use "ALTER EXTENSION vector UPDATE TO '0.6.1'" to load this file. \quit
|
||||
|
||||
DROP OPERATOR - (vector, vector);
|
||||
|
||||
CREATE OPERATOR - (
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = vector_sub
|
||||
);
|
||||
|
||||
ALTER OPERATOR <= (vector, vector) SET (
|
||||
RESTRICT = scalarlesel, JOIN = scalarlejoinsel
|
||||
);
|
||||
|
||||
ALTER OPERATOR >= (vector, vector) SET (
|
||||
RESTRICT = scalargesel, JOIN = scalargejoinsel
|
||||
);
|
||||
2
sql/vector--0.6.1--0.6.2.sql
Normal file
2
sql/vector--0.6.1--0.6.2.sql
Normal file
@@ -0,0 +1,2 @@
|
||||
-- complain if script is sourced in psql, rather than via CREATE EXTENSION
|
||||
\echo Use "ALTER EXTENSION vector UPDATE TO '0.6.2'" to load this file. \quit
|
||||
283
sql/vector--0.6.2--0.7.0.sql
Normal file
283
sql/vector--0.6.2--0.7.0.sql
Normal file
@@ -0,0 +1,283 @@
|
||||
-- complain if script is sourced in psql, rather than via CREATE EXTENSION
|
||||
\echo Use "ALTER EXTENSION vector UPDATE TO '0.7.0'" to load this file. \quit
|
||||
|
||||
CREATE FUNCTION quantize_binary(vector) RETURNS bit
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION subvector(vector, int, int) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION hamming_distance(bit, bit) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION jaccard_distance(bit, bit) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE OPERATOR <~> (
|
||||
LEFTARG = bit, RIGHTARG = bit, PROCEDURE = hamming_distance,
|
||||
COMMUTATOR = '<~>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <%> (
|
||||
LEFTARG = bit, RIGHTARG = bit, PROCEDURE = jaccard_distance,
|
||||
COMMUTATOR = '<%>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR CLASS bit_hamming_ops
|
||||
FOR TYPE bit USING hnsw AS
|
||||
OPERATOR 1 <~> (bit, bit) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 hamming_distance(bit, bit);
|
||||
|
||||
CREATE OPERATOR CLASS bit_jaccard_ops
|
||||
FOR TYPE bit USING hnsw AS
|
||||
OPERATOR 1 <%> (bit, bit) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 jaccard_distance(bit, bit);
|
||||
|
||||
CREATE TYPE halfvec;
|
||||
|
||||
CREATE FUNCTION halfvec_in(cstring, oid, integer) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_out(halfvec) RETURNS cstring
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_typmod_in(cstring[]) RETURNS integer
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_recv(internal, oid, integer) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_send(halfvec) RETURNS bytea
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE TYPE halfvec (
|
||||
INPUT = halfvec_in,
|
||||
OUTPUT = halfvec_out,
|
||||
TYPMOD_IN = halfvec_typmod_in,
|
||||
RECEIVE = halfvec_recv,
|
||||
SEND = halfvec_send,
|
||||
STORAGE = external
|
||||
);
|
||||
|
||||
CREATE FUNCTION l2_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_l2_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION inner_product(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_inner_product' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION cosine_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_cosine_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION l1_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_l1_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_norm(halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION quantize_binary(halfvec) RETURNS bit
|
||||
AS 'MODULE_PATHNAME', 'halfvec_quantize_binary' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION subvector(halfvec, int, int) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME', 'halfvec_subvector' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_l2_squared_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_negative_inner_product(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_spherical_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec(halfvec, integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(integer[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(real[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(double precision[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(numeric[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_to_float4(halfvec, integer, boolean) RETURNS real[]
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE CAST (halfvec AS halfvec)
|
||||
WITH FUNCTION halfvec(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (halfvec AS real[])
|
||||
WITH FUNCTION halfvec_to_float4(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (integer[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(integer[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (real[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(real[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (double precision[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(double precision[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (numeric[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(numeric[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE OPERATOR <-> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = l2_distance,
|
||||
COMMUTATOR = '<->'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <#> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = halfvec_negative_inner_product,
|
||||
COMMUTATOR = '<#>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <=> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = cosine_distance,
|
||||
COMMUTATOR = '<=>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_l2_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <-> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_l2_squared_distance(halfvec, halfvec),
|
||||
FUNCTION 3 l2_distance(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_ip_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <#> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 3 halfvec_spherical_distance(halfvec, halfvec),
|
||||
FUNCTION 4 halfvec_norm(halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_cosine_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <=> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 2 halfvec_norm(halfvec),
|
||||
FUNCTION 3 halfvec_spherical_distance(halfvec, halfvec),
|
||||
FUNCTION 4 halfvec_norm(halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_l2_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <-> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_l2_squared_distance(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_ip_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <#> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_cosine_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <=> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 2 halfvec_norm(halfvec);
|
||||
|
||||
CREATE FUNCTION halfvec_to_vector(halfvec, integer, boolean) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION vector_to_halfvec(vector, integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE CAST (halfvec AS vector)
|
||||
WITH FUNCTION halfvec_to_vector(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (vector AS halfvec)
|
||||
WITH FUNCTION vector_to_halfvec(vector, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE TYPE sparsevec;
|
||||
|
||||
CREATE FUNCTION sparsevec_in(cstring, oid, integer) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_out(sparsevec) RETURNS cstring
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_typmod_in(cstring[]) RETURNS integer
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_recv(internal, oid, integer) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_send(sparsevec) RETURNS bytea
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE TYPE sparsevec (
|
||||
INPUT = sparsevec_in,
|
||||
OUTPUT = sparsevec_out,
|
||||
TYPMOD_IN = sparsevec_typmod_in,
|
||||
RECEIVE = sparsevec_recv,
|
||||
SEND = sparsevec_send,
|
||||
STORAGE = external
|
||||
);
|
||||
|
||||
CREATE FUNCTION l2_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_l2_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION inner_product(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_inner_product' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION cosine_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_cosine_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_norm(sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_l2_squared_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_negative_inner_product(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec(sparsevec, integer, boolean) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION vector_to_sparsevec(vector, integer, boolean) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_to_vector(sparsevec, integer, boolean) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE CAST (sparsevec AS sparsevec)
|
||||
WITH FUNCTION sparsevec(sparsevec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (sparsevec AS vector)
|
||||
WITH FUNCTION sparsevec_to_vector(sparsevec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (vector AS sparsevec)
|
||||
WITH FUNCTION vector_to_sparsevec(vector, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE OPERATOR <-> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = l2_distance,
|
||||
COMMUTATOR = '<->'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <#> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = sparsevec_negative_inner_product,
|
||||
COMMUTATOR = '<#>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <=> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = cosine_distance,
|
||||
COMMUTATOR = '<=>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_l2_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <-> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_l2_squared_distance(sparsevec, sparsevec);
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_ip_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <#> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_negative_inner_product(sparsevec, sparsevec);
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_cosine_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <=> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_negative_inner_product(sparsevec, sparsevec),
|
||||
FUNCTION 2 sparsevec_norm(sparsevec);
|
||||
340
sql/vector.sql
340
sql/vector.sql
@@ -1,7 +1,7 @@
|
||||
-- complain if script is sourced in psql, rather than via CREATE EXTENSION
|
||||
\echo Use "CREATE EXTENSION vector" to load this file. \quit
|
||||
|
||||
-- type
|
||||
-- vector type
|
||||
|
||||
CREATE TYPE vector;
|
||||
|
||||
@@ -26,10 +26,10 @@ CREATE TYPE vector (
|
||||
TYPMOD_IN = vector_typmod_in,
|
||||
RECEIVE = vector_recv,
|
||||
SEND = vector_send,
|
||||
STORAGE = extended
|
||||
STORAGE = external
|
||||
);
|
||||
|
||||
-- functions
|
||||
-- vector functions
|
||||
|
||||
CREATE FUNCTION l2_distance(vector, vector) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
@@ -58,7 +58,13 @@ CREATE FUNCTION vector_sub(vector, vector) RETURNS vector
|
||||
CREATE FUNCTION vector_mul(vector, vector) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- private functions
|
||||
CREATE FUNCTION quantize_binary(vector) RETURNS bit
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION subvector(vector, int, int) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- vector private functions
|
||||
|
||||
CREATE FUNCTION vector_lt(vector, vector) RETURNS bool
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
@@ -99,7 +105,7 @@ CREATE FUNCTION vector_avg(double precision[]) RETURNS vector
|
||||
CREATE FUNCTION vector_combine(double precision[], double precision[]) RETURNS double precision[]
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- aggregates
|
||||
-- vector aggregates
|
||||
|
||||
CREATE AGGREGATE avg(vector) (
|
||||
SFUNC = vector_accum,
|
||||
@@ -117,7 +123,7 @@ CREATE AGGREGATE sum(vector) (
|
||||
PARALLEL = SAFE
|
||||
);
|
||||
|
||||
-- cast functions
|
||||
-- vector cast functions
|
||||
|
||||
CREATE FUNCTION vector(vector, integer, boolean) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
@@ -137,7 +143,7 @@ CREATE FUNCTION array_to_vector(numeric[], integer, boolean) RETURNS vector
|
||||
CREATE FUNCTION vector_to_float4(vector, integer, boolean) RETURNS real[]
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- casts
|
||||
-- vector casts
|
||||
|
||||
CREATE CAST (vector AS vector)
|
||||
WITH FUNCTION vector(vector, integer, boolean) AS IMPLICIT;
|
||||
@@ -157,7 +163,7 @@ CREATE CAST (double precision[] AS vector)
|
||||
CREATE CAST (numeric[] AS vector)
|
||||
WITH FUNCTION array_to_vector(numeric[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
-- operators
|
||||
-- vector operators
|
||||
|
||||
CREATE OPERATOR <-> (
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = l2_distance,
|
||||
@@ -180,8 +186,7 @@ CREATE OPERATOR + (
|
||||
);
|
||||
|
||||
CREATE OPERATOR - (
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = vector_sub,
|
||||
COMMUTATOR = -
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = vector_sub
|
||||
);
|
||||
|
||||
CREATE OPERATOR * (
|
||||
@@ -195,11 +200,10 @@ CREATE OPERATOR < (
|
||||
RESTRICT = scalarltsel, JOIN = scalarltjoinsel
|
||||
);
|
||||
|
||||
-- should use scalarlesel and scalarlejoinsel, but not supported in Postgres < 11
|
||||
CREATE OPERATOR <= (
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = vector_le,
|
||||
COMMUTATOR = >= , NEGATOR = > ,
|
||||
RESTRICT = scalarltsel, JOIN = scalarltjoinsel
|
||||
RESTRICT = scalarlesel, JOIN = scalarlejoinsel
|
||||
);
|
||||
|
||||
CREATE OPERATOR = (
|
||||
@@ -214,11 +218,10 @@ CREATE OPERATOR <> (
|
||||
RESTRICT = eqsel, JOIN = eqjoinsel
|
||||
);
|
||||
|
||||
-- should use scalargesel and scalargejoinsel, but not supported in Postgres < 11
|
||||
CREATE OPERATOR >= (
|
||||
LEFTARG = vector, RIGHTARG = vector, PROCEDURE = vector_ge,
|
||||
COMMUTATOR = <= , NEGATOR = < ,
|
||||
RESTRICT = scalargtsel, JOIN = scalargtjoinsel
|
||||
RESTRICT = scalargesel, JOIN = scalargejoinsel
|
||||
);
|
||||
|
||||
CREATE OPERATOR > (
|
||||
@@ -243,7 +246,7 @@ CREATE ACCESS METHOD hnsw TYPE INDEX HANDLER hnswhandler;
|
||||
|
||||
COMMENT ON ACCESS METHOD hnsw IS 'hnsw index access method';
|
||||
|
||||
-- opclasses
|
||||
-- vector opclasses
|
||||
|
||||
CREATE OPERATOR CLASS vector_ops
|
||||
DEFAULT FOR TYPE vector USING btree AS
|
||||
@@ -290,3 +293,310 @@ CREATE OPERATOR CLASS vector_cosine_ops
|
||||
OPERATOR 1 <=> (vector, vector) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 vector_negative_inner_product(vector, vector),
|
||||
FUNCTION 2 vector_norm(vector);
|
||||
|
||||
-- bit functions
|
||||
|
||||
CREATE FUNCTION hamming_distance(bit, bit) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION jaccard_distance(bit, bit) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE OPERATOR <~> (
|
||||
LEFTARG = bit, RIGHTARG = bit, PROCEDURE = hamming_distance,
|
||||
COMMUTATOR = '<~>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <%> (
|
||||
LEFTARG = bit, RIGHTARG = bit, PROCEDURE = jaccard_distance,
|
||||
COMMUTATOR = '<%>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR CLASS bit_hamming_ops
|
||||
FOR TYPE bit USING hnsw AS
|
||||
OPERATOR 1 <~> (bit, bit) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 hamming_distance(bit, bit);
|
||||
|
||||
CREATE OPERATOR CLASS bit_jaccard_ops
|
||||
FOR TYPE bit USING hnsw AS
|
||||
OPERATOR 1 <%> (bit, bit) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 jaccard_distance(bit, bit);
|
||||
|
||||
-- halfvec type
|
||||
|
||||
CREATE TYPE halfvec;
|
||||
|
||||
CREATE FUNCTION halfvec_in(cstring, oid, integer) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_out(halfvec) RETURNS cstring
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_typmod_in(cstring[]) RETURNS integer
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_recv(internal, oid, integer) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_send(halfvec) RETURNS bytea
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE TYPE halfvec (
|
||||
INPUT = halfvec_in,
|
||||
OUTPUT = halfvec_out,
|
||||
TYPMOD_IN = halfvec_typmod_in,
|
||||
RECEIVE = halfvec_recv,
|
||||
SEND = halfvec_send,
|
||||
STORAGE = external
|
||||
);
|
||||
|
||||
-- halfvec functions
|
||||
|
||||
CREATE FUNCTION l2_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_l2_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION inner_product(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_inner_product' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION cosine_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_cosine_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION l1_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'halfvec_l1_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_norm(halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION quantize_binary(halfvec) RETURNS bit
|
||||
AS 'MODULE_PATHNAME', 'halfvec_quantize_binary' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION subvector(halfvec, int, int) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME', 'halfvec_subvector' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- halfvec private functions
|
||||
|
||||
CREATE FUNCTION halfvec_l2_squared_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_negative_inner_product(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_spherical_distance(halfvec, halfvec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- halfvec cast functions
|
||||
|
||||
CREATE FUNCTION halfvec(halfvec, integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(integer[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(real[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(double precision[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION array_to_halfvec(numeric[], integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION halfvec_to_float4(halfvec, integer, boolean) RETURNS real[]
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- halfvec casts
|
||||
|
||||
CREATE CAST (halfvec AS halfvec)
|
||||
WITH FUNCTION halfvec(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (halfvec AS real[])
|
||||
WITH FUNCTION halfvec_to_float4(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (integer[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(integer[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (real[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(real[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (double precision[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(double precision[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
CREATE CAST (numeric[] AS halfvec)
|
||||
WITH FUNCTION array_to_halfvec(numeric[], integer, boolean) AS ASSIGNMENT;
|
||||
|
||||
-- halfvec operators
|
||||
|
||||
CREATE OPERATOR <-> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = l2_distance,
|
||||
COMMUTATOR = '<->'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <#> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = halfvec_negative_inner_product,
|
||||
COMMUTATOR = '<#>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <=> (
|
||||
LEFTARG = halfvec, RIGHTARG = halfvec, PROCEDURE = cosine_distance,
|
||||
COMMUTATOR = '<=>'
|
||||
);
|
||||
|
||||
-- halfvec opclasses
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_l2_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <-> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_l2_squared_distance(halfvec, halfvec),
|
||||
FUNCTION 3 l2_distance(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_ip_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <#> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 3 halfvec_spherical_distance(halfvec, halfvec),
|
||||
FUNCTION 4 halfvec_norm(halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_cosine_ops
|
||||
FOR TYPE halfvec USING ivfflat AS
|
||||
OPERATOR 1 <=> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 2 halfvec_norm(halfvec),
|
||||
FUNCTION 3 halfvec_spherical_distance(halfvec, halfvec),
|
||||
FUNCTION 4 halfvec_norm(halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_l2_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <-> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_l2_squared_distance(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_ip_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <#> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec);
|
||||
|
||||
CREATE OPERATOR CLASS halfvec_cosine_ops
|
||||
FOR TYPE halfvec USING hnsw AS
|
||||
OPERATOR 1 <=> (halfvec, halfvec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 halfvec_negative_inner_product(halfvec, halfvec),
|
||||
FUNCTION 2 halfvec_norm(halfvec);
|
||||
|
||||
-- extension casts
|
||||
|
||||
CREATE FUNCTION halfvec_to_vector(halfvec, integer, boolean) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION vector_to_halfvec(vector, integer, boolean) RETURNS halfvec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE CAST (halfvec AS vector)
|
||||
WITH FUNCTION halfvec_to_vector(halfvec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (vector AS halfvec)
|
||||
WITH FUNCTION vector_to_halfvec(vector, integer, boolean) AS IMPLICIT;
|
||||
|
||||
--- sparsevec type
|
||||
|
||||
CREATE TYPE sparsevec;
|
||||
|
||||
CREATE FUNCTION sparsevec_in(cstring, oid, integer) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_out(sparsevec) RETURNS cstring
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_typmod_in(cstring[]) RETURNS integer
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_recv(internal, oid, integer) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_send(sparsevec) RETURNS bytea
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE TYPE sparsevec (
|
||||
INPUT = sparsevec_in,
|
||||
OUTPUT = sparsevec_out,
|
||||
TYPMOD_IN = sparsevec_typmod_in,
|
||||
RECEIVE = sparsevec_recv,
|
||||
SEND = sparsevec_send,
|
||||
STORAGE = external
|
||||
);
|
||||
|
||||
-- sparsevec functions
|
||||
|
||||
CREATE FUNCTION l2_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_l2_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION inner_product(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_inner_product' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION cosine_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME', 'sparsevec_cosine_distance' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_norm(sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- sparsevec private functions
|
||||
|
||||
CREATE FUNCTION sparsevec_l2_squared_distance(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_negative_inner_product(sparsevec, sparsevec) RETURNS float8
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- sparsevec cast functions
|
||||
|
||||
CREATE FUNCTION sparsevec(sparsevec, integer, boolean) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION vector_to_sparsevec(vector, integer, boolean) RETURNS sparsevec
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
CREATE FUNCTION sparsevec_to_vector(sparsevec, integer, boolean) RETURNS vector
|
||||
AS 'MODULE_PATHNAME' LANGUAGE C IMMUTABLE STRICT PARALLEL SAFE;
|
||||
|
||||
-- sparsevec casts
|
||||
|
||||
CREATE CAST (sparsevec AS sparsevec)
|
||||
WITH FUNCTION sparsevec(sparsevec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (sparsevec AS vector)
|
||||
WITH FUNCTION sparsevec_to_vector(sparsevec, integer, boolean) AS IMPLICIT;
|
||||
|
||||
CREATE CAST (vector AS sparsevec)
|
||||
WITH FUNCTION vector_to_sparsevec(vector, integer, boolean) AS IMPLICIT;
|
||||
|
||||
-- sparsevec operators
|
||||
|
||||
CREATE OPERATOR <-> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = l2_distance,
|
||||
COMMUTATOR = '<->'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <#> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = sparsevec_negative_inner_product,
|
||||
COMMUTATOR = '<#>'
|
||||
);
|
||||
|
||||
CREATE OPERATOR <=> (
|
||||
LEFTARG = sparsevec, RIGHTARG = sparsevec, PROCEDURE = cosine_distance,
|
||||
COMMUTATOR = '<=>'
|
||||
);
|
||||
|
||||
-- sparsevec opclasses
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_l2_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <-> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_l2_squared_distance(sparsevec, sparsevec);
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_ip_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <#> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_negative_inner_product(sparsevec, sparsevec);
|
||||
|
||||
CREATE OPERATOR CLASS sparsevec_cosine_ops
|
||||
FOR TYPE sparsevec USING hnsw AS
|
||||
OPERATOR 1 <=> (sparsevec, sparsevec) FOR ORDER BY float_ops,
|
||||
FUNCTION 1 sparsevec_negative_inner_product(sparsevec, sparsevec),
|
||||
FUNCTION 2 sparsevec_norm(sparsevec);
|
||||
|
||||
90
src/bitvector.c
Normal file
90
src/bitvector.c
Normal file
@@ -0,0 +1,90 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include "bitvector.h"
|
||||
#include "port/pg_bitutils.h"
|
||||
#include "utils/varbit.h"
|
||||
|
||||
#if PG_VERSION_NUM >= 160000
|
||||
#include "varatt.h"
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Allocate and initialize a new bit vector
|
||||
*/
|
||||
VarBit *
|
||||
InitBitVector(int dim)
|
||||
{
|
||||
VarBit *result;
|
||||
int size;
|
||||
|
||||
size = VARBITTOTALLEN(dim);
|
||||
result = (VarBit *) palloc0(size);
|
||||
SET_VARSIZE(result, size);
|
||||
VARBITLEN(result) = dim;
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure same dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckDims(VarBit *a, VarBit *b)
|
||||
{
|
||||
if (VARBITLEN(a) != VARBITLEN(b))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("different bit lengths %u and %u", VARBITLEN(a), VARBITLEN(b))));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the Hamming distance between two bit vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(hamming_distance);
|
||||
Datum
|
||||
hamming_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
VarBit *a = PG_GETARG_VARBIT_P(0);
|
||||
VarBit *b = PG_GETARG_VARBIT_P(1);
|
||||
unsigned char *ax = VARBITS(a);
|
||||
unsigned char *bx = VARBITS(b);
|
||||
uint64 distance = 0;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* TODO Improve performance */
|
||||
for (uint32 i = 0; i < VARBITBYTES(a); i++)
|
||||
distance += pg_number_of_ones[ax[i] ^ bx[i]];
|
||||
|
||||
PG_RETURN_FLOAT8((double) distance);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the Jaccard distance between two bit vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(jaccard_distance);
|
||||
Datum
|
||||
jaccard_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
VarBit *a = PG_GETARG_VARBIT_P(0);
|
||||
VarBit *b = PG_GETARG_VARBIT_P(1);
|
||||
unsigned char *ax = VARBITS(a);
|
||||
unsigned char *bx = VARBITS(b);
|
||||
uint64 ab = 0;
|
||||
uint64 aa;
|
||||
uint64 bb;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* TODO Improve performance */
|
||||
for (uint32 i = 0; i < VARBITBYTES(a); i++)
|
||||
ab += pg_number_of_ones[ax[i] & bx[i]];
|
||||
|
||||
if (ab == 0)
|
||||
PG_RETURN_FLOAT8(1);
|
||||
|
||||
aa = pg_popcount((char *) ax, VARBITBYTES(a));
|
||||
bb = pg_popcount((char *) bx, VARBITBYTES(b));
|
||||
|
||||
PG_RETURN_FLOAT8(1 - (ab / ((double) (aa + bb - ab))));
|
||||
}
|
||||
8
src/bitvector.h
Normal file
8
src/bitvector.h
Normal file
@@ -0,0 +1,8 @@
|
||||
#ifndef BITVECTOR_H
|
||||
#define BITVECTOR_H
|
||||
|
||||
#include "utils/varbit.h"
|
||||
|
||||
VarBit *InitBitVector(int dim);
|
||||
|
||||
#endif
|
||||
156
src/halfutils.c
Normal file
156
src/halfutils.c
Normal file
@@ -0,0 +1,156 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include "halfutils.h"
|
||||
#include "halfvec.h"
|
||||
|
||||
#ifdef HALFVEC_DISPATCH
|
||||
#include <immintrin.h>
|
||||
|
||||
#if defined(HAVE__GET_CPUID)
|
||||
#include <cpuid.h>
|
||||
#elif defined(HAVE__CPUID)
|
||||
#include <intrin.h>
|
||||
#endif
|
||||
|
||||
#ifdef _MSC_VER
|
||||
#define TARGET_F16C_FMA
|
||||
#else
|
||||
#define TARGET_F16C_FMA __attribute__((target("f16c,fma")))
|
||||
#endif
|
||||
#endif
|
||||
|
||||
float (*HalfvecL2SquaredDistance) (int dim, half * ax, half * bx);
|
||||
float (*HalfvecInnerProduct) (int dim, half * ax, half * bx);
|
||||
|
||||
static float
|
||||
HalfvecL2SquaredDistanceDefault(int dim, half * ax, half * bx)
|
||||
{
|
||||
float distance = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
float diff = HalfToFloat4(ax[i]) - HalfToFloat4(bx[i]);
|
||||
|
||||
distance += diff * diff;
|
||||
}
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
#ifdef HALFVEC_DISPATCH
|
||||
TARGET_F16C_FMA static float
|
||||
HalfvecL2SquaredDistanceF16cFma(int dim, half * ax, half * bx)
|
||||
{
|
||||
float distance;
|
||||
int i;
|
||||
float s[8];
|
||||
int count = (dim / 8) * 8;
|
||||
__m256 dist = _mm256_setzero_ps();
|
||||
|
||||
for (i = 0; i < count; i += 8)
|
||||
{
|
||||
__m128i axi = _mm_loadu_si128((__m128i *) (ax + i));
|
||||
__m128i bxi = _mm_loadu_si128((__m128i *) (bx + i));
|
||||
__m256 axs = _mm256_cvtph_ps(axi);
|
||||
__m256 bxs = _mm256_cvtph_ps(bxi);
|
||||
__m256 diff = _mm256_sub_ps(axs, bxs);
|
||||
|
||||
dist = _mm256_fmadd_ps(diff, diff, dist);
|
||||
}
|
||||
|
||||
_mm256_storeu_ps(s, dist);
|
||||
|
||||
distance = s[0] + s[1] + s[2] + s[3] + s[4] + s[5] + s[6] + s[7];
|
||||
|
||||
for (; i < dim; i++)
|
||||
{
|
||||
float diff = HalfToFloat4(ax[i]) - HalfToFloat4(bx[i]);
|
||||
|
||||
distance += diff * diff;
|
||||
}
|
||||
|
||||
return distance;
|
||||
}
|
||||
#endif
|
||||
|
||||
static float
|
||||
HalfvecInnerProductDefault(int dim, half * ax, half * bx)
|
||||
{
|
||||
float distance = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < dim; i++)
|
||||
distance += HalfToFloat4(ax[i]) * HalfToFloat4(bx[i]);
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
#ifdef HALFVEC_DISPATCH
|
||||
TARGET_F16C_FMA static float
|
||||
HalfvecInnerProductF16cFma(int dim, half * ax, half * bx)
|
||||
{
|
||||
float distance;
|
||||
int i;
|
||||
float s[8];
|
||||
int count = (dim / 8) * 8;
|
||||
__m256 dist = _mm256_setzero_ps();
|
||||
|
||||
for (i = 0; i < count; i += 8)
|
||||
{
|
||||
__m128i axi = _mm_loadu_si128((__m128i *) (ax + i));
|
||||
__m128i bxi = _mm_loadu_si128((__m128i *) (bx + i));
|
||||
__m256 axs = _mm256_cvtph_ps(axi);
|
||||
__m256 bxs = _mm256_cvtph_ps(bxi);
|
||||
|
||||
dist = _mm256_fmadd_ps(axs, bxs, dist);
|
||||
}
|
||||
|
||||
_mm256_storeu_ps(s, dist);
|
||||
|
||||
distance = s[0] + s[1] + s[2] + s[3] + s[4] + s[5] + s[6] + s[7];
|
||||
|
||||
for (; i < dim; i++)
|
||||
distance += HalfToFloat4(ax[i]) * HalfToFloat4(bx[i]);
|
||||
|
||||
return distance;
|
||||
}
|
||||
#endif
|
||||
|
||||
#ifdef HALFVEC_DISPATCH
|
||||
#define CPU_FEATURE_FMA (1 << 12)
|
||||
#define CPU_FEATURE_F16C (1 << 29)
|
||||
|
||||
static bool
|
||||
SupportsCpuFeature(unsigned int feature)
|
||||
{
|
||||
unsigned int exx[4] = {0, 0, 0, 0};
|
||||
|
||||
#if defined(HAVE__GET_CPUID)
|
||||
__get_cpuid(1, &exx[0], &exx[1], &exx[2], &exx[3]);
|
||||
#elif defined(HAVE__CPUID)
|
||||
__cpuid(exx, 1);
|
||||
#endif
|
||||
|
||||
return (exx[2] & feature) == feature;
|
||||
}
|
||||
#endif
|
||||
|
||||
void
|
||||
HalfvecInit(void)
|
||||
{
|
||||
/*
|
||||
* Could skip pointer when single function, but no difference in
|
||||
* performance
|
||||
*/
|
||||
HalfvecL2SquaredDistance = HalfvecL2SquaredDistanceDefault;
|
||||
HalfvecInnerProduct = HalfvecInnerProductDefault;
|
||||
|
||||
#ifdef HALFVEC_DISPATCH
|
||||
if (SupportsCpuFeature(CPU_FEATURE_FMA | CPU_FEATURE_F16C))
|
||||
{
|
||||
HalfvecL2SquaredDistance = HalfvecL2SquaredDistanceF16cFma;
|
||||
HalfvecInnerProduct = HalfvecInnerProductF16cFma;
|
||||
}
|
||||
#endif
|
||||
}
|
||||
254
src/halfutils.h
Normal file
254
src/halfutils.h
Normal file
@@ -0,0 +1,254 @@
|
||||
#ifndef HALFUTILS_H
|
||||
#define HALFUTILS_H
|
||||
|
||||
#include <math.h>
|
||||
|
||||
#include "common/shortest_dec.h"
|
||||
#include "halfvec.h"
|
||||
|
||||
#ifdef F16C_SUPPORT
|
||||
#include <immintrin.h>
|
||||
#endif
|
||||
|
||||
extern float (*HalfvecL2SquaredDistance) (int dim, half * ax, half * bx);
|
||||
extern float (*HalfvecInnerProduct) (int dim, half * ax, half * bx);
|
||||
|
||||
void HalfvecInit(void);
|
||||
|
||||
/*
|
||||
* Check if half is NaN
|
||||
*/
|
||||
static inline bool
|
||||
HalfIsNan(half num)
|
||||
{
|
||||
#ifdef FLT16_SUPPORT
|
||||
return isnan(num);
|
||||
#else
|
||||
return (num & 0x7C00) == 0x7C00 && (num & 0x7FFF) != 0x7C00;
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
* Check if half is infinite
|
||||
*/
|
||||
static inline bool
|
||||
HalfIsInf(half num)
|
||||
{
|
||||
#ifdef FLT16_SUPPORT
|
||||
return isinf(num);
|
||||
#else
|
||||
return (num & 0x7FFF) == 0x7C00;
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert a half to a float4
|
||||
*/
|
||||
static inline float
|
||||
HalfToFloat4(half num)
|
||||
{
|
||||
#if defined(F16C_SUPPORT)
|
||||
return _cvtsh_ss(num);
|
||||
#elif defined(FLT16_SUPPORT)
|
||||
return (float) num;
|
||||
#else
|
||||
/* TODO Improve performance */
|
||||
|
||||
/* Assumes same endianness for floats and integers */
|
||||
union
|
||||
{
|
||||
float f;
|
||||
uint32 i;
|
||||
} swapfloat;
|
||||
|
||||
union
|
||||
{
|
||||
half h;
|
||||
uint16 i;
|
||||
} swaphalf;
|
||||
|
||||
uint16 bin;
|
||||
uint32 exponent;
|
||||
uint32 mantissa;
|
||||
uint32 result;
|
||||
|
||||
swaphalf.h = num;
|
||||
bin = swaphalf.i;
|
||||
exponent = (bin & 0x7C00) >> 10;
|
||||
mantissa = bin & 0x03FF;
|
||||
|
||||
/* Sign */
|
||||
result = (bin & 0x8000) << 16;
|
||||
|
||||
if (unlikely(exponent == 31))
|
||||
{
|
||||
if (mantissa == 0)
|
||||
{
|
||||
/* Infinite */
|
||||
result |= 0x7F800000;
|
||||
}
|
||||
else
|
||||
{
|
||||
/* NaN */
|
||||
result |= 0x7FC00000;
|
||||
}
|
||||
}
|
||||
else if (unlikely(exponent == 0))
|
||||
{
|
||||
/* Subnormal */
|
||||
if (mantissa != 0)
|
||||
{
|
||||
exponent = -14;
|
||||
|
||||
for (int i = 0; i < 10; i++)
|
||||
{
|
||||
mantissa <<= 1;
|
||||
exponent -= 1;
|
||||
|
||||
if ((mantissa >> 10) % 2 == 1)
|
||||
{
|
||||
mantissa &= 0x03ff;
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
result |= (exponent + 127) << 23;
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
/* Normal */
|
||||
result |= (exponent - 15 + 127) << 23;
|
||||
}
|
||||
|
||||
result |= mantissa << 13;
|
||||
|
||||
swapfloat.i = result;
|
||||
return swapfloat.f;
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert a float4 to a half
|
||||
*/
|
||||
static inline half
|
||||
Float4ToHalfUnchecked(float num)
|
||||
{
|
||||
#if defined(F16C_SUPPORT)
|
||||
return _cvtss_sh(num, 0);
|
||||
#elif defined(FLT16_SUPPORT)
|
||||
return (_Float16) num;
|
||||
#else
|
||||
/* TODO Improve performance */
|
||||
|
||||
/* Assumes same endianness for floats and integers */
|
||||
union
|
||||
{
|
||||
float f;
|
||||
uint32 i;
|
||||
} swapfloat;
|
||||
|
||||
union
|
||||
{
|
||||
half h;
|
||||
uint16 i;
|
||||
} swaphalf;
|
||||
|
||||
uint32 bin;
|
||||
int exponent;
|
||||
int mantissa;
|
||||
uint16 result;
|
||||
|
||||
swapfloat.f = num;
|
||||
bin = swapfloat.i;
|
||||
exponent = (bin & 0x7F800000) >> 23;
|
||||
mantissa = bin & 0x007FFFFF;
|
||||
|
||||
/* Sign */
|
||||
result = (bin & 0x80000000) >> 16;
|
||||
|
||||
if (isinf(num))
|
||||
{
|
||||
/* Infinite */
|
||||
result |= 0x7C00;
|
||||
}
|
||||
else if (isnan(num))
|
||||
{
|
||||
/* NaN */
|
||||
result |= 0x7E00;
|
||||
result |= mantissa >> 13;
|
||||
}
|
||||
else if (exponent > 98)
|
||||
{
|
||||
int m;
|
||||
int gr;
|
||||
int s;
|
||||
|
||||
exponent -= 127;
|
||||
s = mantissa & 0x00000FFF;
|
||||
|
||||
/* Subnormal */
|
||||
if (exponent < -14)
|
||||
{
|
||||
int diff = -exponent - 14;
|
||||
|
||||
mantissa >>= diff;
|
||||
mantissa += 1 << (23 - diff);
|
||||
s |= mantissa & 0x00000FFF;
|
||||
}
|
||||
|
||||
m = mantissa >> 13;
|
||||
|
||||
/* Round */
|
||||
gr = (mantissa >> 12) % 4;
|
||||
if (gr == 3 || (gr == 1 && s != 0))
|
||||
m += 1;
|
||||
|
||||
if (m == 1024)
|
||||
{
|
||||
m = 0;
|
||||
exponent += 1;
|
||||
}
|
||||
|
||||
if (exponent > 15)
|
||||
{
|
||||
/* Infinite */
|
||||
result |= 0x7C00;
|
||||
}
|
||||
else
|
||||
{
|
||||
if (exponent >= -14)
|
||||
result |= (exponent + 15) << 10;
|
||||
|
||||
result |= m;
|
||||
}
|
||||
}
|
||||
|
||||
swaphalf.i = result;
|
||||
return swaphalf.h;
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert a float4 to a half
|
||||
*/
|
||||
static inline half
|
||||
Float4ToHalf(float num)
|
||||
{
|
||||
half result = Float4ToHalfUnchecked(num);
|
||||
|
||||
if (unlikely(HalfIsInf(result)) && !isinf(num))
|
||||
{
|
||||
char *buf = palloc(FLOAT_SHORTEST_DECIMAL_LEN);
|
||||
|
||||
float_to_shortest_decimal_buf(num, buf);
|
||||
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NUMERIC_VALUE_OUT_OF_RANGE),
|
||||
errmsg("\"%s\" is out of range for type halfvec", buf)));
|
||||
}
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
#endif
|
||||
777
src/halfvec.c
Normal file
777
src/halfvec.c
Normal file
@@ -0,0 +1,777 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include <math.h>
|
||||
|
||||
#include "bitvector.h"
|
||||
#include "catalog/pg_type.h"
|
||||
#include "common/shortest_dec.h"
|
||||
#include "fmgr.h"
|
||||
#include "halfutils.h"
|
||||
#include "halfvec.h"
|
||||
#include "lib/stringinfo.h"
|
||||
#include "libpq/pqformat.h"
|
||||
#include "port.h" /* for strtof() */
|
||||
#include "utils/array.h"
|
||||
#include "utils/builtins.h"
|
||||
#include "utils/float.h"
|
||||
#include "utils/lsyscache.h"
|
||||
#include "utils/numeric.h"
|
||||
#include "vector.h"
|
||||
|
||||
#if PG_VERSION_NUM < 130000
|
||||
#define TYPALIGN_DOUBLE 'd'
|
||||
#define TYPALIGN_INT 'i'
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Get a half from a message buffer
|
||||
*/
|
||||
static half
|
||||
pq_getmsghalf(StringInfo msg)
|
||||
{
|
||||
union
|
||||
{
|
||||
half h;
|
||||
uint16 i;
|
||||
} swap;
|
||||
|
||||
swap.i = pq_getmsgint(msg, 2);
|
||||
return swap.h;
|
||||
}
|
||||
|
||||
/*
|
||||
* Append a half to a StringInfo buffer
|
||||
*/
|
||||
static void
|
||||
pq_sendhalf(StringInfo buf, half h)
|
||||
{
|
||||
union
|
||||
{
|
||||
half h;
|
||||
uint16 i;
|
||||
} swap;
|
||||
|
||||
swap.h = h;
|
||||
pq_sendint16(buf, swap.i);
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure same dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckDims(HalfVector * a, HalfVector * b)
|
||||
{
|
||||
if (a->dim != b->dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("different halfvec dimensions %d and %d", a->dim, b->dim)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure expected dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckExpectedDim(int32 typmod, int dim)
|
||||
{
|
||||
if (typmod != -1 && typmod != dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("expected %d dimensions, not %d", typmod, dim)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure valid dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckDim(int dim)
|
||||
{
|
||||
if (dim < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("halfvec must have at least 1 dimension")));
|
||||
|
||||
if (dim > HALFVEC_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("halfvec cannot have more than %d dimensions", HALFVEC_MAX_DIM)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure finite element
|
||||
*/
|
||||
static inline void
|
||||
CheckElement(half value)
|
||||
{
|
||||
if (HalfIsNan(value))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("NaN not allowed in halfvec")));
|
||||
|
||||
if (HalfIsInf(value))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("infinite value not allowed in halfvec")));
|
||||
}
|
||||
|
||||
/*
|
||||
* Allocate and initialize a new half vector
|
||||
*/
|
||||
HalfVector *
|
||||
InitHalfVector(int dim)
|
||||
{
|
||||
HalfVector *result;
|
||||
int size;
|
||||
|
||||
size = HALFVEC_SIZE(dim);
|
||||
result = (HalfVector *) palloc0(size);
|
||||
SET_VARSIZE(result, size);
|
||||
result->dim = dim;
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
/*
|
||||
* Check for whitespace, since array_isspace() is static
|
||||
*/
|
||||
static inline bool
|
||||
halfvec_isspace(char ch)
|
||||
{
|
||||
if (ch == ' ' ||
|
||||
ch == '\t' ||
|
||||
ch == '\n' ||
|
||||
ch == '\r' ||
|
||||
ch == '\v' ||
|
||||
ch == '\f')
|
||||
return true;
|
||||
return false;
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert textual representation to internal representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_in);
|
||||
Datum
|
||||
halfvec_in(PG_FUNCTION_ARGS)
|
||||
{
|
||||
char *lit = PG_GETARG_CSTRING(0);
|
||||
int32 typmod = PG_GETARG_INT32(2);
|
||||
half x[HALFVEC_MAX_DIM];
|
||||
int dim = 0;
|
||||
char *pt = lit;
|
||||
HalfVector *result;
|
||||
|
||||
while (halfvec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != '[')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type halfvec: \"%s\"", lit),
|
||||
errdetail("Vector contents must start with \"[\".")));
|
||||
|
||||
pt++;
|
||||
|
||||
while (halfvec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == ']')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("halfvec must have at least 1 dimension")));
|
||||
|
||||
for (;;)
|
||||
{
|
||||
float val;
|
||||
char *stringEnd;
|
||||
|
||||
if (dim == HALFVEC_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("halfvec cannot have more than %d dimensions", HALFVEC_MAX_DIM)));
|
||||
|
||||
while (halfvec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
/* Check for empty string like float4in */
|
||||
if (*pt == '\0')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type halfvec: \"%s\"", lit)));
|
||||
|
||||
errno = 0;
|
||||
|
||||
/* Postgres sets LC_NUMERIC to C on startup */
|
||||
val = strtof(pt, &stringEnd);
|
||||
|
||||
if (stringEnd == pt)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type halfvec: \"%s\"", lit)));
|
||||
|
||||
x[dim] = Float4ToHalfUnchecked(val);
|
||||
|
||||
/* Check for range error like float4in */
|
||||
if ((errno == ERANGE && isinf(val)) || (HalfIsInf(x[dim]) && !isinf(val)))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NUMERIC_VALUE_OUT_OF_RANGE),
|
||||
errmsg("\"%s\" is out of range for type halfvec", pnstrdup(pt, stringEnd - pt))));
|
||||
|
||||
CheckElement(x[dim]);
|
||||
dim++;
|
||||
|
||||
pt = stringEnd;
|
||||
|
||||
while (halfvec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == ',')
|
||||
pt++;
|
||||
else if (*pt == ']')
|
||||
{
|
||||
pt++;
|
||||
break;
|
||||
}
|
||||
else
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type halfvec: \"%s\"", lit)));
|
||||
}
|
||||
|
||||
/* Only whitespace is allowed after the closing brace */
|
||||
while (halfvec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != '\0')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type halfvec: \"%s\"", lit),
|
||||
errdetail("Junk after closing right brace.")));
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
result = InitHalfVector(dim);
|
||||
for (int i = 0; i < dim; i++)
|
||||
result->x[i] = x[i];
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
#define AppendChar(ptr, c) (*(ptr)++ = (c))
|
||||
#define AppendFloat(ptr, f) ((ptr) += float_to_shortest_decimal_bufn((f), (ptr)))
|
||||
|
||||
/*
|
||||
* Convert internal representation to textual representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_out);
|
||||
Datum
|
||||
halfvec_out(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *vector = PG_GETARG_HALFVEC_P(0);
|
||||
int dim = vector->dim;
|
||||
char *buf;
|
||||
char *ptr;
|
||||
|
||||
/*
|
||||
* Need:
|
||||
*
|
||||
* dim * (FLOAT_SHORTEST_DECIMAL_LEN - 1) bytes for
|
||||
* float_to_shortest_decimal_bufn
|
||||
*
|
||||
* dim - 1 bytes for separator
|
||||
*
|
||||
* 3 bytes for [, ], and \0
|
||||
*/
|
||||
buf = (char *) palloc(FLOAT_SHORTEST_DECIMAL_LEN * dim + 2);
|
||||
ptr = buf;
|
||||
|
||||
AppendChar(ptr, '[');
|
||||
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (i > 0)
|
||||
AppendChar(ptr, ',');
|
||||
|
||||
AppendFloat(ptr, HalfToFloat4(vector->x[i]));
|
||||
}
|
||||
|
||||
AppendChar(ptr, ']');
|
||||
*ptr = '\0';
|
||||
|
||||
PG_FREE_IF_COPY(vector, 0);
|
||||
PG_RETURN_CSTRING(buf);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert type modifier
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_typmod_in);
|
||||
Datum
|
||||
halfvec_typmod_in(PG_FUNCTION_ARGS)
|
||||
{
|
||||
ArrayType *ta = PG_GETARG_ARRAYTYPE_P(0);
|
||||
int32 *tl;
|
||||
int n;
|
||||
|
||||
tl = ArrayGetIntegerTypmods(ta, &n);
|
||||
|
||||
if (n != 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("invalid type modifier")));
|
||||
|
||||
if (*tl < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("dimensions for type halfvec must be at least 1")));
|
||||
|
||||
if (*tl > HALFVEC_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("dimensions for type halfvec cannot exceed %d", HALFVEC_MAX_DIM)));
|
||||
|
||||
PG_RETURN_INT32(*tl);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert external binary representation to internal representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_recv);
|
||||
Datum
|
||||
halfvec_recv(PG_FUNCTION_ARGS)
|
||||
{
|
||||
StringInfo buf = (StringInfo) PG_GETARG_POINTER(0);
|
||||
int32 typmod = PG_GETARG_INT32(2);
|
||||
HalfVector *result;
|
||||
int16 dim;
|
||||
int16 unused;
|
||||
|
||||
dim = pq_getmsgint(buf, sizeof(int16));
|
||||
unused = pq_getmsgint(buf, sizeof(int16));
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
if (unused != 0)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("expected unused to be 0, not %d", unused)));
|
||||
|
||||
result = InitHalfVector(dim);
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
result->x[i] = pq_getmsghalf(buf);
|
||||
CheckElement(result->x[i]);
|
||||
}
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert internal representation to the external binary representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_send);
|
||||
Datum
|
||||
halfvec_send(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *vec = PG_GETARG_HALFVEC_P(0);
|
||||
StringInfoData buf;
|
||||
|
||||
pq_begintypsend(&buf);
|
||||
pq_sendint(&buf, vec->dim, sizeof(int16));
|
||||
pq_sendint(&buf, vec->unused, sizeof(int16));
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
pq_sendhalf(&buf, vec->x[i]);
|
||||
|
||||
PG_RETURN_BYTEA_P(pq_endtypsend(&buf));
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert half vector to half vector
|
||||
* This is needed to check the type modifier
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec);
|
||||
Datum
|
||||
halfvec(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *vec = PG_GETARG_HALFVEC_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
|
||||
CheckExpectedDim(typmod, vec->dim);
|
||||
|
||||
PG_RETURN_POINTER(vec);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert array to half vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(array_to_halfvec);
|
||||
Datum
|
||||
array_to_halfvec(PG_FUNCTION_ARGS)
|
||||
{
|
||||
ArrayType *array = PG_GETARG_ARRAYTYPE_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
HalfVector *result;
|
||||
int16 typlen;
|
||||
bool typbyval;
|
||||
char typalign;
|
||||
Datum *elemsp;
|
||||
int nelemsp;
|
||||
|
||||
if (ARR_NDIM(array) > 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("array must be 1-D")));
|
||||
|
||||
if (ARR_HASNULL(array) && array_contains_nulls(array))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NULL_VALUE_NOT_ALLOWED),
|
||||
errmsg("array must not contain nulls")));
|
||||
|
||||
get_typlenbyvalalign(ARR_ELEMTYPE(array), &typlen, &typbyval, &typalign);
|
||||
deconstruct_array(array, ARR_ELEMTYPE(array), typlen, typbyval, typalign, &elemsp, NULL, &nelemsp);
|
||||
|
||||
CheckDim(nelemsp);
|
||||
CheckExpectedDim(typmod, nelemsp);
|
||||
|
||||
result = InitHalfVector(nelemsp);
|
||||
|
||||
if (ARR_ELEMTYPE(array) == INT4OID)
|
||||
{
|
||||
for (int i = 0; i < nelemsp; i++)
|
||||
result->x[i] = Float4ToHalf(DatumGetInt32(elemsp[i]));
|
||||
}
|
||||
else if (ARR_ELEMTYPE(array) == FLOAT8OID)
|
||||
{
|
||||
for (int i = 0; i < nelemsp; i++)
|
||||
result->x[i] = Float4ToHalf(DatumGetFloat8(elemsp[i]));
|
||||
}
|
||||
else if (ARR_ELEMTYPE(array) == FLOAT4OID)
|
||||
{
|
||||
for (int i = 0; i < nelemsp; i++)
|
||||
result->x[i] = Float4ToHalf(DatumGetFloat4(elemsp[i]));
|
||||
}
|
||||
else if (ARR_ELEMTYPE(array) == NUMERICOID)
|
||||
{
|
||||
for (int i = 0; i < nelemsp; i++)
|
||||
result->x[i] = Float4ToHalf(DatumGetFloat4(DirectFunctionCall1(numeric_float4, elemsp[i])));
|
||||
}
|
||||
else
|
||||
{
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("unsupported array type")));
|
||||
}
|
||||
|
||||
/*
|
||||
* Free allocation from deconstruct_array. Do not free individual elements
|
||||
* when pass-by-reference since they point to original array.
|
||||
*/
|
||||
pfree(elemsp);
|
||||
|
||||
/* Check elements */
|
||||
for (int i = 0; i < result->dim; i++)
|
||||
CheckElement(result->x[i]);
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert half vector to float4[]
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_to_float4);
|
||||
Datum
|
||||
halfvec_to_float4(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *vec = PG_GETARG_HALFVEC_P(0);
|
||||
Datum *datums;
|
||||
ArrayType *result;
|
||||
|
||||
datums = (Datum *) palloc(sizeof(Datum) * vec->dim);
|
||||
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
datums[i] = Float4GetDatum(HalfToFloat4(vec->x[i]));
|
||||
|
||||
/* Use TYPALIGN_INT for float4 */
|
||||
result = construct_array(datums, vec->dim, FLOAT4OID, sizeof(float4), true, TYPALIGN_INT);
|
||||
|
||||
pfree(datums);
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert vector to half vec
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(vector_to_halfvec);
|
||||
Datum
|
||||
vector_to_halfvec(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *vec = PG_GETARG_VECTOR_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
HalfVector *result;
|
||||
|
||||
CheckDim(vec->dim);
|
||||
CheckExpectedDim(typmod, vec->dim);
|
||||
|
||||
result = InitHalfVector(vec->dim);
|
||||
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
result->x[i] = Float4ToHalf(vec->x[i]);
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 distance between half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_l2_distance);
|
||||
Datum
|
||||
halfvec_l2_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8(sqrt((double) HalfvecL2SquaredDistance(a->dim, a->x, b->x)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 squared distance between half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_l2_squared_distance);
|
||||
Datum
|
||||
halfvec_l2_squared_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8((double) HalfvecL2SquaredDistance(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the inner product of two half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_inner_product);
|
||||
Datum
|
||||
halfvec_inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8((double) HalfvecInnerProduct(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the negative inner product of two half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_negative_inner_product);
|
||||
Datum
|
||||
halfvec_negative_inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8((double) -HalfvecInnerProduct(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the cosine distance between two half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_cosine_distance);
|
||||
Datum
|
||||
halfvec_cosine_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
half *ax = a->x;
|
||||
half *bx = b->x;
|
||||
float distance = 0.0;
|
||||
float norma = 0.0;
|
||||
float normb = 0.0;
|
||||
double similarity;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
{
|
||||
float axi = HalfToFloat4(ax[i]);
|
||||
float bxi = HalfToFloat4(bx[i]);
|
||||
|
||||
distance += axi * bxi;
|
||||
norma += axi * axi;
|
||||
normb += bxi * bxi;
|
||||
}
|
||||
|
||||
/* Use sqrt(a * b) over sqrt(a) * sqrt(b) */
|
||||
similarity = (double) distance / sqrt((double) norma * (double) normb);
|
||||
|
||||
#ifdef _MSC_VER
|
||||
/* /fp:fast may not propagate NaN */
|
||||
if (isnan(similarity))
|
||||
PG_RETURN_FLOAT8(NAN);
|
||||
#endif
|
||||
|
||||
/* Keep in range */
|
||||
if (similarity > 1)
|
||||
similarity = 1;
|
||||
else if (similarity < -1)
|
||||
similarity = -1;
|
||||
|
||||
PG_RETURN_FLOAT8(1 - similarity);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the distance for spherical k-means
|
||||
* Currently uses angular distance since needs to satisfy triangle inequality
|
||||
* Assumes inputs are unit vectors (skips norm)
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_spherical_distance);
|
||||
Datum
|
||||
halfvec_spherical_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
double distance;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
distance = (double) HalfvecInnerProduct(a->dim, a->x, b->x);
|
||||
|
||||
/* Prevent NaN with acos with loss of precision */
|
||||
if (distance > 1)
|
||||
distance = 1;
|
||||
else if (distance < -1)
|
||||
distance = -1;
|
||||
|
||||
PG_RETURN_FLOAT8(acos(distance) / M_PI);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L1 distance between two half vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_l1_distance);
|
||||
Datum
|
||||
halfvec_l1_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
HalfVector *b = PG_GETARG_HALFVEC_P(1);
|
||||
half *ax = a->x;
|
||||
half *bx = b->x;
|
||||
float distance = 0.0;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
distance += fabsf(HalfToFloat4(ax[i]) - HalfToFloat4(bx[i]));
|
||||
|
||||
PG_RETURN_FLOAT8((double) distance);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 norm of a half vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_norm);
|
||||
Datum
|
||||
halfvec_norm(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
half *ax = a->x;
|
||||
double norm = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
{
|
||||
double axi = (double) HalfToFloat4(ax[i]);
|
||||
|
||||
norm += axi * axi;
|
||||
}
|
||||
|
||||
PG_RETURN_FLOAT8(sqrt(norm));
|
||||
}
|
||||
|
||||
/*
|
||||
* Quantize a half vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_quantize_binary);
|
||||
Datum
|
||||
halfvec_quantize_binary(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
half *ax = a->x;
|
||||
VarBit *result = InitBitVector(a->dim);
|
||||
unsigned char *rx = VARBITS(result);
|
||||
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
rx[i / 8] |= (HalfToFloat4(ax[i]) > 0) << (7 - (i % 8));
|
||||
|
||||
PG_RETURN_VARBIT_P(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get a subvector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_subvector);
|
||||
Datum
|
||||
halfvec_subvector(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *a = PG_GETARG_HALFVEC_P(0);
|
||||
int32 start = PG_GETARG_INT32(1);
|
||||
int32 count = PG_GETARG_INT32(2);
|
||||
int32 end = start + count;
|
||||
half *ax = a->x;
|
||||
HalfVector *result;
|
||||
int dim;
|
||||
|
||||
/* Indexing starts at 1, like substring */
|
||||
if (start < 1)
|
||||
start = 1;
|
||||
|
||||
if (end > a->dim)
|
||||
end = a->dim + 1;
|
||||
|
||||
dim = end - start;
|
||||
CheckDim(dim);
|
||||
result = InitHalfVector(dim);
|
||||
|
||||
for (int i = 0; i < dim; i++)
|
||||
result->x[i] = ax[start - 1 + i];
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Internal helper to compare half vectors
|
||||
*/
|
||||
int
|
||||
halfvec_cmp_internal(HalfVector * a, HalfVector * b)
|
||||
{
|
||||
int dim = Min(a->dim, b->dim);
|
||||
|
||||
/* Check values before dimensions to be consistent with Postgres arrays */
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (HalfToFloat4(a->x[i]) < HalfToFloat4(b->x[i]))
|
||||
return -1;
|
||||
|
||||
if (HalfToFloat4(a->x[i]) > HalfToFloat4(b->x[i]))
|
||||
return 1;
|
||||
}
|
||||
|
||||
if (a->dim < b->dim)
|
||||
return -1;
|
||||
|
||||
if (a->dim > b->dim)
|
||||
return 1;
|
||||
|
||||
return 0;
|
||||
}
|
||||
47
src/halfvec.h
Normal file
47
src/halfvec.h
Normal file
@@ -0,0 +1,47 @@
|
||||
#ifndef HALFVEC_H
|
||||
#define HALFVEC_H
|
||||
|
||||
#define __STDC_WANT_IEC_60559_TYPES_EXT__
|
||||
|
||||
#include <float.h>
|
||||
|
||||
#include "vector.h"
|
||||
|
||||
#if defined(__x86_64__) || defined(_M_AMD64)
|
||||
#define HALFVEC_DISPATCH
|
||||
#endif
|
||||
|
||||
/* F16C has better performance than _Float16 (on x86-64) */
|
||||
#if defined(__F16C__)
|
||||
#define F16C_SUPPORT
|
||||
#elif defined(__FLT16_MAX__) && !defined(HALFVEC_DISPATCH)
|
||||
#define FLT16_SUPPORT
|
||||
#endif
|
||||
|
||||
#ifdef FLT16_SUPPORT
|
||||
#define half _Float16
|
||||
#define HALF_MAX FLT16_MAX
|
||||
#else
|
||||
#define half uint16
|
||||
#define HALF_MAX 65504
|
||||
#endif
|
||||
|
||||
#define HALFVEC_MAX_DIM VECTOR_MAX_DIM
|
||||
|
||||
#define HALFVEC_SIZE(_dim) (offsetof(HalfVector, x) + sizeof(half)*(_dim))
|
||||
#define DatumGetHalfVector(x) ((HalfVector *) PG_DETOAST_DATUM(x))
|
||||
#define PG_GETARG_HALFVEC_P(x) DatumGetHalfVector(PG_GETARG_DATUM(x))
|
||||
#define PG_RETURN_HALFVEC_P(x) PG_RETURN_POINTER(x)
|
||||
|
||||
typedef struct HalfVector
|
||||
{
|
||||
int32 vl_len_; /* varlena header (do not touch directly!) */
|
||||
int16 dim; /* number of dimensions */
|
||||
int16 unused;
|
||||
half x[FLEXIBLE_ARRAY_MEMBER];
|
||||
} HalfVector;
|
||||
|
||||
HalfVector *InitHalfVector(int dim);
|
||||
int halfvec_cmp_internal(HalfVector * a, HalfVector * b);
|
||||
|
||||
#endif
|
||||
75
src/hnsw.c
75
src/hnsw.c
@@ -4,25 +4,59 @@
|
||||
#include <math.h>
|
||||
|
||||
#include "access/amapi.h"
|
||||
#include "access/reloptions.h"
|
||||
#include "commands/progress.h"
|
||||
#include "commands/vacuum.h"
|
||||
#include "hnsw.h"
|
||||
#include "miscadmin.h"
|
||||
#include "utils/guc.h"
|
||||
#include "utils/selfuncs.h"
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "commands/progress.h"
|
||||
#if PG_VERSION_NUM < 150000
|
||||
#define MarkGUCPrefixReserved(x) EmitWarningsOnPlaceholders(x)
|
||||
#endif
|
||||
|
||||
int hnsw_ef_search;
|
||||
bool hnsw_enable_parallel_build;
|
||||
int hnsw_lock_tranche_id;
|
||||
static relopt_kind hnsw_relopt_kind;
|
||||
|
||||
/*
|
||||
* Assign a tranche ID for our LWLocks. This only needs to be done by one
|
||||
* backend, as the tranche ID is remembered in shared memory.
|
||||
*
|
||||
* This shared memory area is very small, so we just allocate it from the
|
||||
* "slop" that PostgreSQL reserves for small allocations like this. If
|
||||
* this grows bigger, we should use a shmem_request_hook and
|
||||
* RequestAddinShmemSpace() to pre-reserve space for this.
|
||||
*/
|
||||
void
|
||||
HnswInitLockTranche(void)
|
||||
{
|
||||
int *tranche_ids;
|
||||
bool found;
|
||||
|
||||
LWLockAcquire(AddinShmemInitLock, LW_EXCLUSIVE);
|
||||
tranche_ids = ShmemInitStruct("hnsw LWLock ids",
|
||||
sizeof(int) * 1,
|
||||
&found);
|
||||
if (!found)
|
||||
tranche_ids[0] = LWLockNewTrancheId();
|
||||
hnsw_lock_tranche_id = tranche_ids[0];
|
||||
LWLockRelease(AddinShmemInitLock);
|
||||
|
||||
/* Per-backend registration of the tranche ID */
|
||||
LWLockRegisterTranche(hnsw_lock_tranche_id, "HnswBuild");
|
||||
}
|
||||
|
||||
/*
|
||||
* Initialize index options and variables
|
||||
*/
|
||||
void
|
||||
HnswInit(void)
|
||||
{
|
||||
if (!process_shared_preload_libraries_in_progress)
|
||||
HnswInitLockTranche();
|
||||
|
||||
hnsw_relopt_kind = add_reloption_kind();
|
||||
add_int_reloption(hnsw_relopt_kind, "m", "Max number of connections",
|
||||
HNSW_DEFAULT_M, HNSW_MIN_M, HNSW_MAX_M
|
||||
@@ -41,16 +75,12 @@ HnswInit(void)
|
||||
"Valid range is 1..1000.", &hnsw_ef_search,
|
||||
HNSW_DEFAULT_EF_SEARCH, HNSW_MIN_EF_SEARCH, HNSW_MAX_EF_SEARCH, PGC_USERSET, 0, NULL, NULL, NULL);
|
||||
|
||||
/* Behind a variable for now since can be slower than building in memory */
|
||||
DefineCustomBoolVariable("hnsw.enable_parallel_build", "Enables or disables building indexes in parallel",
|
||||
NULL, &hnsw_enable_parallel_build,
|
||||
false, PGC_USERSET, 0, NULL, NULL, NULL);
|
||||
MarkGUCPrefixReserved("hnsw");
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the name of index build phase
|
||||
*/
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
static char *
|
||||
hnswbuildphasename(int64 phasenum)
|
||||
{
|
||||
@@ -64,7 +94,6 @@ hnswbuildphasename(int64 phasenum)
|
||||
return NULL;
|
||||
}
|
||||
}
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Estimate the cost of an index scan
|
||||
@@ -79,12 +108,9 @@ hnswcostestimate(PlannerInfo *root, IndexPath *path, double loop_count,
|
||||
int m;
|
||||
int entryLevel;
|
||||
Relation index;
|
||||
#if PG_VERSION_NUM < 120000
|
||||
List *qinfos;
|
||||
#endif
|
||||
|
||||
/* Never use index without order or limit */
|
||||
if (path->indexorderbys == NULL || root->limit_tuples < 0)
|
||||
/* Never use index without order */
|
||||
if (path->indexorderbys == NULL)
|
||||
{
|
||||
*indexStartupCost = DBL_MAX;
|
||||
*indexTotalCost = DBL_MAX;
|
||||
@@ -94,20 +120,6 @@ hnswcostestimate(PlannerInfo *root, IndexPath *path, double loop_count,
|
||||
return;
|
||||
}
|
||||
|
||||
/*
|
||||
* Do not use index if limit + offset > ef_search unless enable_seqscan =
|
||||
* off
|
||||
*/
|
||||
if (root->limit_tuples > hnsw_ef_search)
|
||||
{
|
||||
*indexStartupCost = 1.0e10 - 1;
|
||||
*indexTotalCost = 1.0e10 - 1;
|
||||
*indexSelectivity = 0;
|
||||
*indexCorrelation = 0;
|
||||
*indexPages = 0;
|
||||
return;
|
||||
}
|
||||
|
||||
MemSet(&costs, 0, sizeof(costs));
|
||||
|
||||
index = index_open(path->indexinfo->indexoid, NoLock);
|
||||
@@ -121,12 +133,7 @@ hnswcostestimate(PlannerInfo *root, IndexPath *path, double loop_count,
|
||||
/* Account for number of tuples (or entry level), m, and ef_search */
|
||||
costs.numIndexTuples = (entryLevel + 2) * m;
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
genericcostestimate(root, path, loop_count, &costs);
|
||||
#else
|
||||
qinfos = deconstruct_indexquals(path);
|
||||
genericcostestimate(root, path, loop_count, qinfos, &costs);
|
||||
#endif
|
||||
|
||||
/* Use total cost since most work happens before first tuple is returned */
|
||||
*indexStartupCost = costs.indexTotalCost;
|
||||
@@ -220,9 +227,7 @@ hnswhandler(PG_FUNCTION_ARGS)
|
||||
amroutine->amcostestimate = hnswcostestimate;
|
||||
amroutine->amoptions = hnswoptions;
|
||||
amroutine->amproperty = NULL; /* TODO AMPROP_DISTANCE_ORDERABLE */
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
amroutine->ambuildphasename = hnswbuildphasename;
|
||||
#endif
|
||||
amroutine->amvalidate = hnswvalidate;
|
||||
#if PG_VERSION_NUM >= 140000
|
||||
amroutine->amadjustmembers = NULL;
|
||||
|
||||
170
src/hnsw.h
170
src/hnsw.h
@@ -3,24 +3,21 @@
|
||||
|
||||
#include "postgres.h"
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "access/genam.h"
|
||||
#include "access/parallel.h"
|
||||
#include "access/reloptions.h"
|
||||
#include "lib/ilist.h"
|
||||
#include "lib/pairingheap.h"
|
||||
#include "nodes/execnodes.h"
|
||||
#include "port.h" /* for random() */
|
||||
#include "utils/relptr.h"
|
||||
#include "utils/sampling.h"
|
||||
#include "vector.h"
|
||||
|
||||
#if PG_VERSION_NUM < 110000
|
||||
#error "Requires PostgreSQL 11+"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM < 120000
|
||||
#include "access/relscan.h"
|
||||
#error "Requires PostgreSQL 12+"
|
||||
#endif
|
||||
|
||||
#define HNSW_MAX_DIM 2000
|
||||
#define HNSW_MAX_NNZ 1000
|
||||
|
||||
/* Support functions */
|
||||
#define HNSW_DISTANCE_PROC 1
|
||||
@@ -59,15 +56,26 @@
|
||||
#define HNSW_UPDATE_ENTRY_GREATER 1
|
||||
#define HNSW_UPDATE_ENTRY_ALWAYS 2
|
||||
|
||||
typedef enum HnswType
|
||||
{
|
||||
HNSW_TYPE_VECTOR,
|
||||
HNSW_TYPE_HALFVEC,
|
||||
HNSW_TYPE_BIT,
|
||||
HNSW_TYPE_SPARSEVEC
|
||||
} HnswType;
|
||||
|
||||
/* Build phases */
|
||||
/* PROGRESS_CREATEIDX_SUBPHASE_INITIALIZE is 1 */
|
||||
#define PROGRESS_HNSW_PHASE_LOAD 2
|
||||
|
||||
#define HNSW_MAX_SIZE (BLCKSZ - MAXALIGN(SizeOfPageHeaderData) - MAXALIGN(sizeof(HnswPageOpaqueData)) - sizeof(ItemIdData))
|
||||
#define HNSW_TUPLE_ALLOC_SIZE BLCKSZ
|
||||
|
||||
#define HNSW_ELEMENT_TUPLE_SIZE(size) MAXALIGN(offsetof(HnswElementTupleData, data) + (size))
|
||||
#define HNSW_NEIGHBOR_TUPLE_SIZE(level, m) MAXALIGN(offsetof(HnswNeighborTupleData, indextids) + ((level) + 2) * (m) * sizeof(ItemPointerData))
|
||||
|
||||
#define HNSW_NEIGHBOR_ARRAY_SIZE(lm) (offsetof(HnswNeighborArray, items) + sizeof(HnswCandidate) * (lm))
|
||||
|
||||
#define HnswPageGetOpaque(page) ((HnswPageOpaque) PageGetSpecialPointer(page))
|
||||
#define HnswPageGetMeta(page) ((HnswMetaPageData *) PageGetContents(page))
|
||||
|
||||
@@ -81,7 +89,7 @@
|
||||
|
||||
#if PG_VERSION_NUM < 130000
|
||||
#define list_delete_last(list) list_truncate(list, list_length(list) - 1)
|
||||
#define list_sort(list, cmp) list_qsort(list, cmp)
|
||||
#define list_sort(list, cmp) ((list) = list_qsort(list, cmp))
|
||||
#endif
|
||||
|
||||
#define HnswIsElementTuple(tup) ((tup)->type == HNSW_ELEMENT_TUPLE_TYPE)
|
||||
@@ -96,43 +104,72 @@
|
||||
/* Ensure fits on page and in uint8 */
|
||||
#define HnswGetMaxLevel(m) Min(((BLCKSZ - MAXALIGN(SizeOfPageHeaderData) - MAXALIGN(sizeof(HnswPageOpaqueData)) - offsetof(HnswNeighborTupleData, indextids) - sizeof(ItemIdData)) / (sizeof(ItemPointerData)) / (m)) - 2, 255)
|
||||
|
||||
#define HnswGetNeighbors(element, lc) (AssertMacro((element)->level >= (lc)), &(element)->neighbors[lc])
|
||||
#define HnswGetValue(base, element) PointerGetDatum(HnswPtrAccess(base, (element)->value))
|
||||
|
||||
#if PG_VERSION_NUM < 140005
|
||||
#define relptr_offset(rp) ((rp).relptr_off - 1)
|
||||
#endif
|
||||
|
||||
/* Pointer macros */
|
||||
#define HnswPtrAccess(base, hp) ((base) == NULL ? (hp).ptr : relptr_access(base, (hp).relptr))
|
||||
#define HnswPtrStore(base, hp, value) ((base) == NULL ? (void) ((hp).ptr = (value)) : (void) relptr_store(base, (hp).relptr, value))
|
||||
#define HnswPtrIsNull(base, hp) ((base) == NULL ? (hp).ptr == NULL : relptr_is_null((hp).relptr))
|
||||
#define HnswPtrEqual(base, hp1, hp2) ((base) == NULL ? (hp1).ptr == (hp2).ptr : relptr_offset((hp1).relptr) == relptr_offset((hp2).relptr))
|
||||
|
||||
/* For code paths dedicated to each type */
|
||||
#define HnswPtrPointer(hp) (hp).ptr
|
||||
#define HnswPtrOffset(hp) relptr_offset((hp).relptr)
|
||||
|
||||
/* Variables */
|
||||
extern int hnsw_ef_search;
|
||||
extern bool hnsw_enable_parallel_build;
|
||||
extern int hnsw_lock_tranche_id;
|
||||
|
||||
typedef struct HnswElementData
|
||||
typedef struct HnswElementData HnswElementData;
|
||||
typedef struct HnswNeighborArray HnswNeighborArray;
|
||||
|
||||
#define HnswPtrDeclare(type, relptrtype, ptrtype) \
|
||||
relptr_declare(type, relptrtype); \
|
||||
typedef union { type *ptr; relptrtype relptr; } ptrtype;
|
||||
|
||||
/* Pointers that can be absolute or relative */
|
||||
/* Use char for DatumPtr so works with Pointer */
|
||||
HnswPtrDeclare(HnswElementData, HnswElementRelptr, HnswElementPtr);
|
||||
HnswPtrDeclare(HnswNeighborArray, HnswNeighborArrayRelptr, HnswNeighborArrayPtr);
|
||||
HnswPtrDeclare(HnswNeighborArrayPtr, HnswNeighborsRelptr, HnswNeighborsPtr);
|
||||
HnswPtrDeclare(char, DatumRelptr, DatumPtr);
|
||||
|
||||
struct HnswElementData
|
||||
{
|
||||
slist_node next;
|
||||
HnswElementPtr next;
|
||||
ItemPointerData heaptids[HNSW_HEAPTIDS];
|
||||
uint8 heaptidsLength;
|
||||
uint8 level;
|
||||
uint8 deleted;
|
||||
uint32 hash;
|
||||
struct HnswNeighborArray *neighbors;
|
||||
HnswNeighborsPtr neighbors;
|
||||
BlockNumber blkno;
|
||||
OffsetNumber offno;
|
||||
OffsetNumber neighborOffno;
|
||||
BlockNumber neighborPage;
|
||||
Datum value;
|
||||
} HnswElementData;
|
||||
DatumPtr value;
|
||||
LWLock lock;
|
||||
};
|
||||
|
||||
typedef HnswElementData * HnswElement;
|
||||
|
||||
typedef struct HnswCandidate
|
||||
{
|
||||
HnswElement element;
|
||||
HnswElementPtr element;
|
||||
float distance;
|
||||
bool closer;
|
||||
} HnswCandidate;
|
||||
|
||||
typedef struct HnswNeighborArray
|
||||
struct HnswNeighborArray
|
||||
{
|
||||
int length;
|
||||
bool closerSet;
|
||||
HnswCandidate *items;
|
||||
} HnswNeighborArray;
|
||||
HnswCandidate items[FLEXIBLE_ARRAY_MEMBER];
|
||||
};
|
||||
|
||||
typedef struct HnswPairingHeapNode
|
||||
{
|
||||
@@ -150,19 +187,25 @@ typedef struct HnswOptions
|
||||
|
||||
typedef struct HnswGraph
|
||||
{
|
||||
slist_head elements;
|
||||
HnswElement entryPoint;
|
||||
/* Graph state */
|
||||
slock_t lock;
|
||||
HnswElementPtr head;
|
||||
double indtuples;
|
||||
|
||||
/* Entry state */
|
||||
LWLock entryLock;
|
||||
LWLock entryWaitLock;
|
||||
HnswElementPtr entryPoint;
|
||||
|
||||
/* Allocations state */
|
||||
LWLock allocatorLock;
|
||||
long memoryUsed;
|
||||
long memoryTotal;
|
||||
bool flushed;
|
||||
double indtuples;
|
||||
} HnswGraph;
|
||||
|
||||
typedef struct HnswSpool
|
||||
{
|
||||
Relation heap;
|
||||
Relation index;
|
||||
} HnswSpool;
|
||||
/* Flushed state */
|
||||
LWLock flushLock;
|
||||
bool flushed;
|
||||
} HnswGraph;
|
||||
|
||||
typedef struct HnswShared
|
||||
{
|
||||
@@ -170,7 +213,6 @@ typedef struct HnswShared
|
||||
Oid heaprelid;
|
||||
Oid indexrelid;
|
||||
bool isconcurrent;
|
||||
int scantuplesortstates;
|
||||
|
||||
/* Worker progress */
|
||||
ConditionVariable workersdonecv;
|
||||
@@ -182,16 +224,10 @@ typedef struct HnswShared
|
||||
int nparticipantsdone;
|
||||
double reltuples;
|
||||
HnswGraph graphData;
|
||||
|
||||
#if PG_VERSION_NUM < 120000
|
||||
ParallelHeapScanDescData heapdesc; /* must come last */
|
||||
#endif
|
||||
} HnswShared;
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#define ParallelTableScanFromHnswShared(shared) \
|
||||
(ParallelTableScanDesc) ((char *) (shared) + BUFFERALIGN(sizeof(HnswShared)))
|
||||
#endif
|
||||
|
||||
typedef struct HnswLeader
|
||||
{
|
||||
@@ -199,8 +235,15 @@ typedef struct HnswLeader
|
||||
int nparticipanttuplesorts;
|
||||
HnswShared *hnswshared;
|
||||
Snapshot snapshot;
|
||||
char *hnswarea;
|
||||
} HnswLeader;
|
||||
|
||||
typedef struct HnswAllocator
|
||||
{
|
||||
void *(*alloc) (Size size, void *state);
|
||||
void *state;
|
||||
} HnswAllocator;
|
||||
|
||||
typedef struct HnswBuildState
|
||||
{
|
||||
/* Info */
|
||||
@@ -208,6 +251,7 @@ typedef struct HnswBuildState
|
||||
Relation index;
|
||||
IndexInfo *indexInfo;
|
||||
ForkNumber forkNum;
|
||||
HnswType type;
|
||||
|
||||
/* Settings */
|
||||
int dimensions;
|
||||
@@ -228,15 +272,16 @@ typedef struct HnswBuildState
|
||||
HnswGraph *graph;
|
||||
double ml;
|
||||
int maxLevel;
|
||||
Vector *normvec;
|
||||
|
||||
/* Memory */
|
||||
MemoryContext graphCtx;
|
||||
MemoryContext tmpCtx;
|
||||
HnswAllocator allocator;
|
||||
|
||||
/* Parallel builds */
|
||||
HnswLeader *hnswleader;
|
||||
HnswShared *hnswshared;
|
||||
char *hnswarea;
|
||||
} HnswBuildState;
|
||||
|
||||
typedef struct HnswMetaPageData
|
||||
@@ -331,28 +376,32 @@ typedef struct HnswVacuumState
|
||||
int HnswGetM(Relation index);
|
||||
int HnswGetEfConstruction(Relation index);
|
||||
FmgrInfo *HnswOptionalProcInfo(Relation index, uint16 procnum);
|
||||
bool HnswNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, Vector * result);
|
||||
HnswType HnswGetType(Relation index);
|
||||
bool HnswNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, HnswType type);
|
||||
void HnswCheckValue(Datum value, HnswType type);
|
||||
Buffer HnswNewBuffer(Relation index, ForkNumber forkNum);
|
||||
void HnswInitPage(Buffer buf, Page page);
|
||||
void HnswInit(void);
|
||||
List *HnswSearchLayer(Datum q, List *ep, int ef, int lc, Relation index, FmgrInfo *procinfo, Oid collation, int m, bool inserting, HnswElement skipElement);
|
||||
List *HnswSearchLayer(char *base, Datum q, List *ep, int ef, int lc, Relation index, FmgrInfo *procinfo, Oid collation, int m, bool inserting, HnswElement skipElement);
|
||||
HnswElement HnswGetEntryPoint(Relation index);
|
||||
void HnswGetMetaPageInfo(Relation index, int *m, HnswElement * entryPoint);
|
||||
HnswElement HnswInitElement(ItemPointer tid, int m, double ml, int maxLevel);
|
||||
void *HnswAlloc(HnswAllocator * allocator, Size size);
|
||||
HnswElement HnswInitElement(char *base, ItemPointer tid, int m, double ml, int maxLevel, HnswAllocator * alloc);
|
||||
HnswElement HnswInitElementFromBlock(BlockNumber blkno, OffsetNumber offno);
|
||||
void HnswInsertElement(HnswElement element, HnswElement entryPoint, Relation index, FmgrInfo *procinfo, Oid collation, int m, int efConstruction, bool existing);
|
||||
HnswCandidate *HnswEntryCandidate(HnswElement em, Datum q, Relation rel, FmgrInfo *procinfo, Oid collation, bool loadVec);
|
||||
void HnswFindElementNeighbors(char *base, HnswElement element, HnswElement entryPoint, Relation index, FmgrInfo *procinfo, Oid collation, int m, int efConstruction, bool existing);
|
||||
HnswCandidate *HnswEntryCandidate(char *base, HnswElement em, Datum q, Relation rel, FmgrInfo *procinfo, Oid collation, bool loadVec);
|
||||
void HnswUpdateMetaPage(Relation index, int updateEntry, HnswElement entryPoint, BlockNumber insertPage, ForkNumber forkNum, bool building);
|
||||
void HnswSetNeighborTuple(HnswNeighborTuple ntup, HnswElement e, int m);
|
||||
void HnswSetNeighborTuple(char *base, HnswNeighborTuple ntup, HnswElement e, int m);
|
||||
void HnswAddHeapTid(HnswElement element, ItemPointer heaptid);
|
||||
void HnswInitNeighbors(HnswElement element, int m);
|
||||
bool HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_tid, Relation heapRel, bool building);
|
||||
void HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement e, int m, bool checkExisting, bool building);
|
||||
void HnswInitNeighbors(char *base, HnswElement element, int m, HnswAllocator * alloc);
|
||||
bool HnswInsertTupleOnDisk(Relation index, Datum value, Datum *values, bool *isnull, ItemPointer heap_tid, bool building);
|
||||
void HnswUpdateNeighborsOnDisk(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement e, int m, bool checkExisting, bool building);
|
||||
void HnswLoadElementFromTuple(HnswElement element, HnswElementTuple etup, bool loadHeaptids, bool loadVec);
|
||||
void HnswLoadElement(HnswElement element, float *distance, Datum *q, Relation index, FmgrInfo *procinfo, Oid collation, bool loadVec);
|
||||
void HnswSetElementTuple(HnswElementTuple etup, HnswElement element);
|
||||
void HnswUpdateConnection(HnswElement element, HnswCandidate * hc, int m, int lc, int *updateIdx, Relation index, FmgrInfo *procinfo, Oid collation);
|
||||
void HnswSetElementTuple(char *base, HnswElementTuple etup, HnswElement element);
|
||||
void HnswUpdateConnection(char *base, HnswElement element, HnswCandidate * hc, int lm, int lc, int *updateIdx, Relation index, FmgrInfo *procinfo, Oid collation);
|
||||
void HnswLoadNeighbors(HnswElement element, Relation index, int m);
|
||||
void HnswInitLockTranche(void);
|
||||
PGDLLEXPORT void HnswParallelBuildMain(dsm_segment *seg, shm_toc *toc);
|
||||
|
||||
/* Index access methods */
|
||||
@@ -371,6 +420,16 @@ void hnswrescan(IndexScanDesc scan, ScanKey keys, int nkeys, ScanKey orderbys,
|
||||
bool hnswgettuple(IndexScanDesc scan, ScanDirection dir);
|
||||
void hnswendscan(IndexScanDesc scan);
|
||||
|
||||
static inline HnswNeighborArray *
|
||||
HnswGetNeighbors(char *base, HnswElement element, int lc)
|
||||
{
|
||||
HnswNeighborArrayPtr *neighborList = HnswPtrAccess(base, element->neighbors);
|
||||
|
||||
Assert(element->level >= lc);
|
||||
|
||||
return HnswPtrAccess(base, neighborList[lc]);
|
||||
}
|
||||
|
||||
/* Hash tables */
|
||||
typedef struct TidHashEntry
|
||||
{
|
||||
@@ -398,4 +457,17 @@ typedef struct PointerHashEntry
|
||||
#define SH_DECLARE
|
||||
#include "lib/simplehash.h"
|
||||
|
||||
typedef struct OffsetHashEntry
|
||||
{
|
||||
Size offset;
|
||||
char status;
|
||||
} OffsetHashEntry;
|
||||
|
||||
#define SH_PREFIX offsethash
|
||||
#define SH_ELEMENT_TYPE OffsetHashEntry
|
||||
#define SH_KEY_TYPE Size
|
||||
#define SH_SCOPE extern
|
||||
#define SH_DECLARE
|
||||
#include "lib/simplehash.h"
|
||||
|
||||
#endif
|
||||
|
||||
689
src/hnswbuild.c
689
src/hnswbuild.c
File diff suppressed because it is too large
Load Diff
135
src/hnswinsert.c
135
src/hnswinsert.c
@@ -2,6 +2,7 @@
|
||||
|
||||
#include <math.h>
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "hnsw.h"
|
||||
#include "storage/bufmgr.h"
|
||||
#include "storage/lmgr.h"
|
||||
@@ -116,7 +117,7 @@ HnswInsertAppendPage(Relation index, Buffer *nbuf, Page *npage, GenericXLogState
|
||||
* Add to element and neighbor pages
|
||||
*/
|
||||
static void
|
||||
WriteNewElementPages(Relation index, HnswElement e, int m, BlockNumber insertPage, BlockNumber *updatedInsertPage, bool building)
|
||||
AddElementOnDisk(Relation index, HnswElement e, int m, BlockNumber insertPage, BlockNumber *updatedInsertPage, bool building)
|
||||
{
|
||||
Buffer buf;
|
||||
Page page;
|
||||
@@ -134,9 +135,10 @@ WriteNewElementPages(Relation index, HnswElement e, int m, BlockNumber insertPag
|
||||
OffsetNumber freeOffno = InvalidOffsetNumber;
|
||||
OffsetNumber freeNeighborOffno = InvalidOffsetNumber;
|
||||
BlockNumber newInsertPage = InvalidBlockNumber;
|
||||
char *base = NULL;
|
||||
|
||||
/* Calculate sizes */
|
||||
etupSize = HNSW_ELEMENT_TUPLE_SIZE(VARSIZE_ANY(DatumGetPointer(e->value)));
|
||||
etupSize = HNSW_ELEMENT_TUPLE_SIZE(VARSIZE_ANY(HnswPtrAccess(base, e->value)));
|
||||
ntupSize = HNSW_NEIGHBOR_TUPLE_SIZE(e->level, m);
|
||||
combinedSize = etupSize + ntupSize + sizeof(ItemIdData);
|
||||
maxSize = HNSW_MAX_SIZE;
|
||||
@@ -144,11 +146,11 @@ WriteNewElementPages(Relation index, HnswElement e, int m, BlockNumber insertPag
|
||||
|
||||
/* Prepare element tuple */
|
||||
etup = palloc0(etupSize);
|
||||
HnswSetElementTuple(etup, e);
|
||||
HnswSetElementTuple(base, etup, e);
|
||||
|
||||
/* Prepare neighbor tuple */
|
||||
ntup = palloc0(ntupSize);
|
||||
HnswSetNeighborTuple(ntup, e, m);
|
||||
HnswSetNeighborTuple(base, ntup, e, m);
|
||||
|
||||
/* Find a page (or two if needed) to insert the tuples */
|
||||
for (;;)
|
||||
@@ -338,12 +340,14 @@ ConnectionExists(HnswElement e, HnswNeighborTuple ntup, int startIdx, int lm)
|
||||
* Update neighbors
|
||||
*/
|
||||
void
|
||||
HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement e, int m, bool checkExisting, bool building)
|
||||
HnswUpdateNeighborsOnDisk(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement e, int m, bool checkExisting, bool building)
|
||||
{
|
||||
char *base = NULL;
|
||||
|
||||
for (int lc = e->level; lc >= 0; lc--)
|
||||
{
|
||||
int lm = HnswGetLayerM(m, lc);
|
||||
HnswNeighborArray *neighbors = HnswGetNeighbors(e, lc);
|
||||
HnswNeighborArray *neighbors = HnswGetNeighbors(base, e, lc);
|
||||
|
||||
for (int i = 0; i < neighbors->length; i++)
|
||||
{
|
||||
@@ -351,16 +355,15 @@ HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswE
|
||||
Buffer buf;
|
||||
Page page;
|
||||
GenericXLogState *state;
|
||||
ItemId itemid;
|
||||
HnswNeighborTuple ntup;
|
||||
Size ntupSize;
|
||||
int idx = -1;
|
||||
int startIdx;
|
||||
OffsetNumber offno = hc->element->neighborOffno;
|
||||
HnswElement neighborElement = HnswPtrAccess(base, hc->element);
|
||||
OffsetNumber offno = neighborElement->neighborOffno;
|
||||
|
||||
/* Get latest neighbors since they may have changed */
|
||||
/* Do not lock yet since selecting neighbors can take time */
|
||||
HnswLoadNeighbors(hc->element, index, m);
|
||||
HnswLoadNeighbors(neighborElement, index, m);
|
||||
|
||||
/*
|
||||
* Could improve performance for vacuuming by checking neighbors
|
||||
@@ -370,14 +373,14 @@ HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswE
|
||||
*/
|
||||
|
||||
/* Select neighbors */
|
||||
HnswUpdateConnection(e, hc, lm, lc, &idx, index, procinfo, collation);
|
||||
HnswUpdateConnection(NULL, e, hc, lm, lc, &idx, index, procinfo, collation);
|
||||
|
||||
/* New element was not selected as a neighbor */
|
||||
if (idx == -1)
|
||||
continue;
|
||||
|
||||
/* Register page */
|
||||
buf = ReadBuffer(index, hc->element->neighborPage);
|
||||
buf = ReadBuffer(index, neighborElement->neighborPage);
|
||||
LockBuffer(buf, BUFFER_LOCK_EXCLUSIVE);
|
||||
if (building)
|
||||
{
|
||||
@@ -391,12 +394,10 @@ HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswE
|
||||
}
|
||||
|
||||
/* Get tuple */
|
||||
itemid = PageGetItemId(page, offno);
|
||||
ntup = (HnswNeighborTuple) PageGetItem(page, itemid);
|
||||
ntupSize = ItemIdGetLength(itemid);
|
||||
ntup = (HnswNeighborTuple) PageGetItem(page, PageGetItemId(page, offno));
|
||||
|
||||
/* Calculate index for update */
|
||||
startIdx = (hc->element->level - lc) * m;
|
||||
startIdx = (neighborElement->level - lc) * m;
|
||||
|
||||
/* Check for existing connection */
|
||||
if (checkExisting && ConnectionExists(e, ntup, startIdx, lm))
|
||||
@@ -422,13 +423,9 @@ HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswE
|
||||
{
|
||||
ItemPointer indextid = &ntup->indextids[idx];
|
||||
|
||||
/* Update neighbor */
|
||||
/* Update neighbor on the buffer */
|
||||
ItemPointerSet(indextid, e->blkno, e->offno);
|
||||
|
||||
/* Overwrite tuple */
|
||||
if (!PageIndexTupleOverwrite(page, offno, (Item) ntup, ntupSize))
|
||||
elog(ERROR, "failed to add index item to \"%s\"", RelationGetRelationName(index));
|
||||
|
||||
/* Commit */
|
||||
if (building)
|
||||
MarkBufferDirty(buf);
|
||||
@@ -447,14 +444,12 @@ HnswUpdateNeighborPages(Relation index, FmgrInfo *procinfo, Oid collation, HnswE
|
||||
* Add a heap TID to an existing element
|
||||
*/
|
||||
static bool
|
||||
HnswAddDuplicate(Relation index, HnswElement element, HnswElement dup, bool building)
|
||||
AddDuplicateOnDisk(Relation index, HnswElement element, HnswElement dup, bool building)
|
||||
{
|
||||
Buffer buf;
|
||||
Page page;
|
||||
GenericXLogState *state;
|
||||
ItemId itemid;
|
||||
HnswElementTuple etup;
|
||||
Size etupSize;
|
||||
int i;
|
||||
|
||||
/* Read page */
|
||||
@@ -472,9 +467,7 @@ HnswAddDuplicate(Relation index, HnswElement element, HnswElement dup, bool buil
|
||||
}
|
||||
|
||||
/* Find space */
|
||||
itemid = PageGetItemId(page, dup->offno);
|
||||
etup = (HnswElementTuple) PageGetItem(page, itemid);
|
||||
etupSize = ItemIdGetLength(itemid);
|
||||
etup = (HnswElementTuple) PageGetItem(page, PageGetItemId(page, dup->offno));
|
||||
for (i = 0; i < HNSW_HEAPTIDS; i++)
|
||||
{
|
||||
if (!ItemPointerIsValid(&etup->heaptids[i]))
|
||||
@@ -490,13 +483,9 @@ HnswAddDuplicate(Relation index, HnswElement element, HnswElement dup, bool buil
|
||||
return false;
|
||||
}
|
||||
|
||||
/* Add heap TID */
|
||||
/* Add heap TID, modifying the tuple on the page directly */
|
||||
etup->heaptids[i] = element->heaptids[0];
|
||||
|
||||
/* Overwrite tuple */
|
||||
if (!PageIndexTupleOverwrite(page, dup->offno, (Item) etup, etupSize))
|
||||
elog(ERROR, "failed to add index item to \"%s\"", RelationGetRelationName(index));
|
||||
|
||||
/* Commit */
|
||||
if (building)
|
||||
MarkBufferDirty(buf);
|
||||
@@ -511,19 +500,23 @@ HnswAddDuplicate(Relation index, HnswElement element, HnswElement dup, bool buil
|
||||
* Find duplicate element
|
||||
*/
|
||||
static bool
|
||||
HnswFindDuplicate(Relation index, HnswElement element, bool building)
|
||||
FindDuplicateOnDisk(Relation index, HnswElement element, bool building)
|
||||
{
|
||||
HnswNeighborArray *neighbors = HnswGetNeighbors(element, 0);
|
||||
char *base = NULL;
|
||||
HnswNeighborArray *neighbors = HnswGetNeighbors(base, element, 0);
|
||||
Datum value = HnswGetValue(base, element);
|
||||
|
||||
for (int i = 0; i < neighbors->length; i++)
|
||||
{
|
||||
HnswCandidate *neighbor = &neighbors->items[i];
|
||||
HnswElement neighborElement = HnswPtrAccess(base, neighbor->element);
|
||||
Datum neighborValue = HnswGetValue(base, neighborElement);
|
||||
|
||||
/* Exit early since ordered by distance */
|
||||
if (!datumIsEqual(element->value, neighbor->element->value, false, -1))
|
||||
if (!datumIsEqual(value, neighborValue, false, -1))
|
||||
return false;
|
||||
|
||||
if (HnswAddDuplicate(index, element, neighbor->element, building))
|
||||
if (AddDuplicateOnDisk(index, element, neighborElement, building))
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -531,26 +524,26 @@ HnswFindDuplicate(Relation index, HnswElement element, bool building)
|
||||
}
|
||||
|
||||
/*
|
||||
* Write changes to disk
|
||||
* Update graph on disk
|
||||
*/
|
||||
static void
|
||||
WriteElement(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement element, int m, int efConstruction, HnswElement entryPoint, bool building)
|
||||
UpdateGraphOnDisk(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement element, int m, int efConstruction, HnswElement entryPoint, bool building)
|
||||
{
|
||||
BlockNumber newInsertPage = InvalidBlockNumber;
|
||||
|
||||
/* Look for duplicate */
|
||||
if (HnswFindDuplicate(index, element, building))
|
||||
if (FindDuplicateOnDisk(index, element, building))
|
||||
return;
|
||||
|
||||
/* Write element and neighbor tuples */
|
||||
WriteNewElementPages(index, element, m, GetInsertPage(index), &newInsertPage, building);
|
||||
/* Add element */
|
||||
AddElementOnDisk(index, element, m, GetInsertPage(index), &newInsertPage, building);
|
||||
|
||||
/* Update insert page if needed */
|
||||
if (BlockNumberIsValid(newInsertPage))
|
||||
HnswUpdateMetaPage(index, 0, NULL, newInsertPage, MAIN_FORKNUM, building);
|
||||
|
||||
/* Update neighbors */
|
||||
HnswUpdateNeighborPages(index, procinfo, collation, element, m, false, building);
|
||||
HnswUpdateNeighborsOnDisk(index, procinfo, collation, element, m, false, building);
|
||||
|
||||
/* Update entry point if needed */
|
||||
if (entryPoint == NULL || element->level > entryPoint->level)
|
||||
@@ -561,10 +554,8 @@ WriteElement(Relation index, FmgrInfo *procinfo, Oid collation, HnswElement elem
|
||||
* Insert a tuple into the index
|
||||
*/
|
||||
bool
|
||||
HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_tid, Relation heapRel, bool building)
|
||||
HnswInsertTupleOnDisk(Relation index, Datum value, Datum *values, bool *isnull, ItemPointer heap_tid, bool building)
|
||||
{
|
||||
Datum value;
|
||||
FmgrInfo *normprocinfo;
|
||||
HnswElement entryPoint;
|
||||
HnswElement element;
|
||||
int m;
|
||||
@@ -572,17 +563,7 @@ HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_ti
|
||||
FmgrInfo *procinfo = index_getprocinfo(index, 1, HNSW_DISTANCE_PROC);
|
||||
Oid collation = index->rd_indcollation[0];
|
||||
LOCKMODE lockmode = ShareLock;
|
||||
|
||||
/* Detoast once for all calls */
|
||||
value = PointerGetDatum(PG_DETOAST_DATUM(values[0]));
|
||||
|
||||
/* Normalize if needed */
|
||||
normprocinfo = HnswOptionalProcInfo(index, HNSW_NORM_PROC);
|
||||
if (normprocinfo != NULL)
|
||||
{
|
||||
if (!HnswNormValue(normprocinfo, collation, &value, NULL))
|
||||
return false;
|
||||
}
|
||||
char *base = NULL;
|
||||
|
||||
/*
|
||||
* Get a shared lock. This allows vacuum to ensure no in-flight inserts
|
||||
@@ -595,8 +576,8 @@ HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_ti
|
||||
HnswGetMetaPageInfo(index, &m, &entryPoint);
|
||||
|
||||
/* Create an element */
|
||||
element = HnswInitElement(heap_tid, m, HnswGetMl(m), HnswGetMaxLevel(m));
|
||||
element->value = value;
|
||||
element = HnswInitElement(base, heap_tid, m, HnswGetMl(m), HnswGetMaxLevel(m), NULL);
|
||||
HnswPtrStore(base, element->value, DatumGetPointer(value));
|
||||
|
||||
/* Prevent concurrent inserts when likely updating entry point */
|
||||
if (entryPoint == NULL || element->level > entryPoint->level)
|
||||
@@ -612,11 +593,11 @@ HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_ti
|
||||
entryPoint = HnswGetEntryPoint(index);
|
||||
}
|
||||
|
||||
/* Insert element in graph */
|
||||
HnswInsertElement(element, entryPoint, index, procinfo, collation, m, efConstruction, false);
|
||||
/* Find neighbors for element */
|
||||
HnswFindElementNeighbors(base, element, entryPoint, index, procinfo, collation, m, efConstruction, false);
|
||||
|
||||
/* Write to disk */
|
||||
WriteElement(index, procinfo, collation, element, m, efConstruction, entryPoint, building);
|
||||
/* Update graph on disk */
|
||||
UpdateGraphOnDisk(index, procinfo, collation, element, m, efConstruction, entryPoint, building);
|
||||
|
||||
/* Release lock */
|
||||
UnlockPage(index, HNSW_UPDATE_LOCK, lockmode);
|
||||
@@ -624,6 +605,34 @@ HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_ti
|
||||
return true;
|
||||
}
|
||||
|
||||
/*
|
||||
* Insert a tuple into the index
|
||||
*/
|
||||
static void
|
||||
HnswInsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_tid)
|
||||
{
|
||||
Datum value;
|
||||
FmgrInfo *normprocinfo;
|
||||
Oid collation = index->rd_indcollation[0];
|
||||
HnswType type = HnswGetType(index);
|
||||
|
||||
/* Detoast once for all calls */
|
||||
value = PointerGetDatum(PG_DETOAST_DATUM(values[0]));
|
||||
|
||||
/* Check value */
|
||||
HnswCheckValue(value, type);
|
||||
|
||||
/* Normalize if needed */
|
||||
normprocinfo = HnswOptionalProcInfo(index, HNSW_NORM_PROC);
|
||||
if (normprocinfo != NULL)
|
||||
{
|
||||
if (!HnswNormValue(normprocinfo, collation, &value, type))
|
||||
return;
|
||||
}
|
||||
|
||||
HnswInsertTupleOnDisk(index, value, values, isnull, heap_tid, false);
|
||||
}
|
||||
|
||||
/*
|
||||
* Insert a tuple into the index
|
||||
*/
|
||||
@@ -650,7 +659,7 @@ hnswinsert(Relation index, Datum *values, bool *isnull, ItemPointer heap_tid,
|
||||
oldCtx = MemoryContextSwitchTo(insertCtx);
|
||||
|
||||
/* Insert tuple */
|
||||
HnswInsertTuple(index, values, isnull, heap_tid, heap, false);
|
||||
HnswInsertTuple(index, values, isnull, heap_tid);
|
||||
|
||||
/* Delete memory context */
|
||||
MemoryContextSwitchTo(oldCtx);
|
||||
|
||||
@@ -21,6 +21,7 @@ GetScanItems(IndexScanDesc scan, Datum q)
|
||||
List *w;
|
||||
int m;
|
||||
HnswElement entryPoint;
|
||||
char *base = NULL;
|
||||
|
||||
/* Get m and entry point */
|
||||
HnswGetMetaPageInfo(index, &m, &entryPoint);
|
||||
@@ -28,38 +29,15 @@ GetScanItems(IndexScanDesc scan, Datum q)
|
||||
if (entryPoint == NULL)
|
||||
return NIL;
|
||||
|
||||
ep = list_make1(HnswEntryCandidate(entryPoint, q, index, procinfo, collation, false));
|
||||
ep = list_make1(HnswEntryCandidate(base, entryPoint, q, index, procinfo, collation, false));
|
||||
|
||||
for (int lc = entryPoint->level; lc >= 1; lc--)
|
||||
{
|
||||
w = HnswSearchLayer(q, ep, 1, lc, index, procinfo, collation, m, false, NULL);
|
||||
w = HnswSearchLayer(base, q, ep, 1, lc, index, procinfo, collation, m, false, NULL);
|
||||
ep = w;
|
||||
}
|
||||
|
||||
return HnswSearchLayer(q, ep, hnsw_ef_search, 0, index, procinfo, collation, m, false, NULL);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get dimensions from metapage
|
||||
*/
|
||||
static int
|
||||
GetDimensions(Relation index)
|
||||
{
|
||||
Buffer buf;
|
||||
Page page;
|
||||
HnswMetaPage metap;
|
||||
int dimensions;
|
||||
|
||||
buf = ReadBuffer(index, HNSW_METAPAGE_BLKNO);
|
||||
LockBuffer(buf, BUFFER_LOCK_SHARE);
|
||||
page = BufferGetPage(buf);
|
||||
metap = HnswPageGetMeta(page);
|
||||
|
||||
dimensions = metap->dimensions;
|
||||
|
||||
UnlockReleaseBuffer(buf);
|
||||
|
||||
return dimensions;
|
||||
return HnswSearchLayer(base, q, ep, hnsw_ef_search, 0, index, procinfo, collation, m, false, NULL);
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -72,7 +50,7 @@ GetScanValue(IndexScanDesc scan)
|
||||
Datum value;
|
||||
|
||||
if (scan->orderByData->sk_flags & SK_ISNULL)
|
||||
value = PointerGetDatum(InitVector(GetDimensions(scan->indexRelation)));
|
||||
value = PointerGetDatum(NULL);
|
||||
else
|
||||
{
|
||||
value = scan->orderByData->sk_argument;
|
||||
@@ -83,7 +61,7 @@ GetScanValue(IndexScanDesc scan)
|
||||
|
||||
/* Fine if normalization fails */
|
||||
if (so->normprocinfo != NULL)
|
||||
HnswNormValue(so->normprocinfo, so->collation, &value, NULL);
|
||||
HnswNormValue(so->normprocinfo, so->collation, &value, HnswGetType(scan->indexRelation));
|
||||
}
|
||||
|
||||
return value;
|
||||
@@ -180,30 +158,32 @@ hnswgettuple(IndexScanDesc scan, ScanDirection dir)
|
||||
UnlockPage(scan->indexRelation, HNSW_SCAN_LOCK, ShareLock);
|
||||
|
||||
so->first = false;
|
||||
|
||||
#if defined(HNSW_MEMORY) && PG_VERSION_NUM >= 130000
|
||||
elog(INFO, "memory: %zu MB", MemoryContextMemAllocated(so->tmpCtx, false) / (1024 * 1024));
|
||||
#endif
|
||||
}
|
||||
|
||||
while (list_length(so->w) > 0)
|
||||
{
|
||||
char *base = NULL;
|
||||
HnswCandidate *hc = llast(so->w);
|
||||
HnswElement element = HnswPtrAccess(base, hc->element);
|
||||
ItemPointer heaptid;
|
||||
|
||||
/* Move to next element if no valid heap TIDs */
|
||||
if (hc->element->heaptidsLength == 0)
|
||||
if (element->heaptidsLength == 0)
|
||||
{
|
||||
so->w = list_delete_last(so->w);
|
||||
continue;
|
||||
}
|
||||
|
||||
heaptid = &hc->element->heaptids[--hc->element->heaptidsLength];
|
||||
heaptid = &element->heaptids[--element->heaptidsLength];
|
||||
|
||||
MemoryContextSwitchTo(oldCtx);
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
scan->xs_heaptid = *heaptid;
|
||||
#else
|
||||
scan->xs_ctup.t_self = *heaptid;
|
||||
#endif
|
||||
|
||||
scan->xs_recheck = false;
|
||||
scan->xs_recheckorderby = false;
|
||||
return true;
|
||||
}
|
||||
|
||||
550
src/hnswutils.c
550
src/hnswutils.c
File diff suppressed because it is too large
Load Diff
@@ -2,6 +2,7 @@
|
||||
|
||||
#include <math.h>
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "commands/vacuum.h"
|
||||
#include "hnsw.h"
|
||||
#include "storage/bufmgr.h"
|
||||
@@ -59,8 +60,7 @@ RemoveHeapTids(HnswVacuumState * vacuumstate)
|
||||
/* Iterate over nodes */
|
||||
for (offno = FirstOffsetNumber; offno <= maxoffno; offno = OffsetNumberNext(offno))
|
||||
{
|
||||
ItemId itemid = PageGetItemId(page, offno);
|
||||
HnswElementTuple etup = (HnswElementTuple) PageGetItem(page, itemid);
|
||||
HnswElementTuple etup = (HnswElementTuple) PageGetItem(page, PageGetItemId(page, offno));
|
||||
int idx = 0;
|
||||
bool itemUpdated = false;
|
||||
|
||||
@@ -91,15 +91,10 @@ RemoveHeapTids(HnswVacuumState * vacuumstate)
|
||||
|
||||
if (itemUpdated)
|
||||
{
|
||||
Size etupSize = ItemIdGetLength(itemid);
|
||||
|
||||
/* Mark rest as invalid */
|
||||
for (int i = idx; i < HNSW_HEAPTIDS; i++)
|
||||
ItemPointerSetInvalid(&etup->heaptids[i]);
|
||||
|
||||
if (!PageIndexTupleOverwrite(page, offno, (Item) etup, etupSize))
|
||||
elog(ERROR, "failed to add index item to \"%s\"", RelationGetRelationName(index));
|
||||
|
||||
updated = true;
|
||||
}
|
||||
}
|
||||
@@ -199,21 +194,25 @@ RepairGraphElement(HnswVacuumState * vacuumstate, HnswElement element, HnswEleme
|
||||
BufferAccessStrategy bas = vacuumstate->bas;
|
||||
HnswNeighborTuple ntup = vacuumstate->ntup;
|
||||
Size ntupSize = HNSW_NEIGHBOR_TUPLE_SIZE(element->level, m);
|
||||
char *base = NULL;
|
||||
|
||||
/* Skip if element is entry point */
|
||||
if (entryPoint != NULL && element->blkno == entryPoint->blkno && element->offno == entryPoint->offno)
|
||||
return;
|
||||
|
||||
/* Init fields */
|
||||
HnswInitNeighbors(element, m);
|
||||
HnswInitNeighbors(base, element, m, NULL);
|
||||
element->heaptidsLength = 0;
|
||||
|
||||
/* Add element to graph, skipping itself */
|
||||
HnswInsertElement(element, entryPoint, index, procinfo, collation, m, efConstruction, true);
|
||||
/* Find neighbors for element, skipping itself */
|
||||
HnswFindElementNeighbors(base, element, entryPoint, index, procinfo, collation, m, efConstruction, true);
|
||||
|
||||
/* Zero memory for each element */
|
||||
MemSet(ntup, 0, HNSW_TUPLE_ALLOC_SIZE);
|
||||
|
||||
/* Update neighbor tuple */
|
||||
/* Do this before getting page to minimize locking */
|
||||
HnswSetNeighborTuple(ntup, element, m);
|
||||
HnswSetNeighborTuple(base, ntup, element, m);
|
||||
|
||||
/* Get neighbor page */
|
||||
buf = ReadBufferExtended(index, MAIN_FORKNUM, element->neighborPage, RBM_NORMAL, bas);
|
||||
@@ -230,7 +229,7 @@ RepairGraphElement(HnswVacuumState * vacuumstate, HnswElement element, HnswEleme
|
||||
UnlockReleaseBuffer(buf);
|
||||
|
||||
/* Update neighbors */
|
||||
HnswUpdateNeighborPages(index, procinfo, collation, element, m, true, false);
|
||||
HnswUpdateNeighborsOnDisk(index, procinfo, collation, element, m, true, false);
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -301,7 +300,7 @@ RepairGraphEntryPoint(HnswVacuumState * vacuumstate)
|
||||
{
|
||||
/* Reset neighbors from previous update */
|
||||
if (highestPoint != NULL)
|
||||
highestPoint->neighbors = NULL;
|
||||
HnswPtrStore((char *) NULL, highestPoint->neighbors, (HnswNeighborArrayPtr *) NULL);
|
||||
|
||||
RepairGraphElement(vacuumstate, entryPoint, highestPoint);
|
||||
}
|
||||
@@ -477,11 +476,8 @@ MarkDeleted(HnswVacuumState * vacuumstate)
|
||||
/* Update element and neighbors together */
|
||||
for (offno = FirstOffsetNumber; offno <= maxoffno; offno = OffsetNumberNext(offno))
|
||||
{
|
||||
ItemId itemid = PageGetItemId(page, offno);
|
||||
HnswElementTuple etup = (HnswElementTuple) PageGetItem(page, itemid);
|
||||
HnswElementTuple etup = (HnswElementTuple) PageGetItem(page, PageGetItemId(page, offno));
|
||||
HnswNeighborTuple ntup;
|
||||
Size etupSize;
|
||||
Size ntupSize;
|
||||
Buffer nbuf;
|
||||
Page npage;
|
||||
BlockNumber neighborPage;
|
||||
@@ -505,10 +501,6 @@ MarkDeleted(HnswVacuumState * vacuumstate)
|
||||
if (ItemPointerIsValid(&etup->heaptids[0]))
|
||||
continue;
|
||||
|
||||
/* Calculate sizes */
|
||||
etupSize = ItemIdGetLength(itemid);
|
||||
ntupSize = HNSW_NEIGHBOR_TUPLE_SIZE(etup->level, vacuumstate->m);
|
||||
|
||||
/* Get neighbor page */
|
||||
neighborPage = ItemPointerGetBlockNumber(&etup->neighbortid);
|
||||
neighborOffno = ItemPointerGetOffsetNumber(&etup->neighbortid);
|
||||
@@ -535,13 +527,10 @@ MarkDeleted(HnswVacuumState * vacuumstate)
|
||||
for (int i = 0; i < ntup->count; i++)
|
||||
ItemPointerSetInvalid(&ntup->indextids[i]);
|
||||
|
||||
/* Overwrite element tuple */
|
||||
if (!PageIndexTupleOverwrite(page, offno, (Item) etup, etupSize))
|
||||
elog(ERROR, "failed to add index item to \"%s\"", RelationGetRelationName(index));
|
||||
|
||||
/* Overwrite neighbor tuple */
|
||||
if (!PageIndexTupleOverwrite(npage, neighborOffno, (Item) ntup, ntupSize))
|
||||
elog(ERROR, "failed to add index item to \"%s\"", RelationGetRelationName(index));
|
||||
/*
|
||||
* We modified the tuples in place, no need to call
|
||||
* PageIndexTupleOverwrite
|
||||
*/
|
||||
|
||||
/* Commit */
|
||||
GenericXLogFinish(state);
|
||||
@@ -586,7 +575,7 @@ InitVacuumState(HnswVacuumState * vacuumstate, IndexVacuumInfo *info, IndexBulkD
|
||||
vacuumstate->bas = GetAccessStrategy(BAS_BULKREAD);
|
||||
vacuumstate->procinfo = index_getprocinfo(index, 1, HNSW_DISTANCE_PROC);
|
||||
vacuumstate->collation = index->rd_indcollation[0];
|
||||
vacuumstate->ntup = palloc0(BLCKSZ);
|
||||
vacuumstate->ntup = palloc0(HNSW_TUPLE_ALLOC_SIZE);
|
||||
vacuumstate->tmpCtx = AllocSetContextCreate(CurrentMemoryContext,
|
||||
"Hnsw vacuum temporary context",
|
||||
ALLOCSET_DEFAULT_SIZES);
|
||||
|
||||
180
src/ivfbuild.c
180
src/ivfbuild.c
@@ -2,30 +2,27 @@
|
||||
|
||||
#include <float.h>
|
||||
|
||||
#include "access/table.h"
|
||||
#include "access/tableam.h"
|
||||
#include "access/parallel.h"
|
||||
#include "access/xact.h"
|
||||
#include "catalog/index.h"
|
||||
#include "catalog/pg_operator_d.h"
|
||||
#include "catalog/pg_type_d.h"
|
||||
#include "commands/progress.h"
|
||||
#include "halfvec.h"
|
||||
#include "ivfflat.h"
|
||||
#include "miscadmin.h"
|
||||
#include "optimizer/optimizer.h"
|
||||
#include "storage/bufmgr.h"
|
||||
#include "tcop/tcopprot.h"
|
||||
#include "utils/memutils.h"
|
||||
#include "vector.h"
|
||||
|
||||
#if PG_VERSION_NUM >= 140000
|
||||
#include "utils/backend_progress.h"
|
||||
#elif PG_VERSION_NUM >= 120000
|
||||
#include "pgstat.h"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "access/tableam.h"
|
||||
#include "commands/progress.h"
|
||||
#else
|
||||
#define PROGRESS_CREATEIDX_SUBPHASE 0
|
||||
#define PROGRESS_CREATEIDX_TUPLES_TOTAL 0
|
||||
#define PROGRESS_CREATEIDX_TUPLES_DONE 0
|
||||
#include "pgstat.h"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 130000
|
||||
@@ -34,26 +31,11 @@
|
||||
#define CALLBACK_ITEM_POINTER HeapTuple hup
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#define UpdateProgress(index, val) pgstat_progress_update_param(index, val)
|
||||
#else
|
||||
#define UpdateProgress(index, val) ((void)val)
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 140000
|
||||
#include "utils/backend_status.h"
|
||||
#include "utils/wait_event.h"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "access/table.h"
|
||||
#include "optimizer/optimizer.h"
|
||||
#else
|
||||
#include "access/heapam.h"
|
||||
#include "optimizer/planner.h"
|
||||
#include "pgstat.h"
|
||||
#endif
|
||||
|
||||
#define PARALLEL_KEY_IVFFLAT_SHARED UINT64CONST(0xA000000000000001)
|
||||
#define PARALLEL_KEY_TUPLESORT UINT64CONST(0xA000000000000002)
|
||||
#define PARALLEL_KEY_IVFFLAT_CENTERS UINT64CONST(0xA000000000000003)
|
||||
@@ -77,13 +59,13 @@ AddSample(Datum *values, IvfflatBuildState * buildstate)
|
||||
*/
|
||||
if (buildstate->kmeansnormprocinfo != NULL)
|
||||
{
|
||||
if (!IvfflatNormValue(buildstate->kmeansnormprocinfo, buildstate->collation, &value, buildstate->normvec))
|
||||
if (!IvfflatNormValue(buildstate->kmeansnormprocinfo, buildstate->collation, &value, buildstate->type))
|
||||
return;
|
||||
}
|
||||
|
||||
if (samples->length < targsamples)
|
||||
{
|
||||
VectorArraySet(samples, samples->length, DatumGetVector(value));
|
||||
VectorArraySet(samples, samples->length, DatumGetPointer(value));
|
||||
samples->length++;
|
||||
}
|
||||
else
|
||||
@@ -100,7 +82,7 @@ AddSample(Datum *values, IvfflatBuildState * buildstate)
|
||||
#endif
|
||||
|
||||
Assert(k >= 0 && k < targsamples);
|
||||
VectorArraySet(samples, k, DatumGetVector(value));
|
||||
VectorArraySet(samples, k, DatumGetPointer(value));
|
||||
}
|
||||
|
||||
buildstate->rowstoskip -= 1;
|
||||
@@ -125,7 +107,7 @@ SampleCallback(Relation index, CALLBACK_ITEM_POINTER, Datum *values,
|
||||
oldCtx = MemoryContextSwitchTo(buildstate->tmpCtx);
|
||||
|
||||
/* Add sample */
|
||||
AddSample(values, state);
|
||||
AddSample(values, buildstate);
|
||||
|
||||
/* Reset memory context */
|
||||
MemoryContextSwitchTo(oldCtx);
|
||||
@@ -150,13 +132,8 @@ SampleRows(IvfflatBuildState * buildstate)
|
||||
{
|
||||
BlockNumber targblock = BlockSampler_Next(&buildstate->bs);
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
table_index_build_range_scan(buildstate->heap, buildstate->index, buildstate->indexInfo,
|
||||
false, true, false, targblock, 1, SampleCallback, (void *) buildstate, NULL);
|
||||
#else
|
||||
IndexBuildHeapRangeScan(buildstate->heap, buildstate->index, buildstate->indexInfo,
|
||||
false, true, targblock, 1, SampleCallback, (void *) buildstate, NULL);
|
||||
#endif
|
||||
}
|
||||
}
|
||||
|
||||
@@ -178,7 +155,7 @@ AddTupleToSort(Relation index, ItemPointer tid, Datum *values, IvfflatBuildState
|
||||
/* Normalize if needed */
|
||||
if (buildstate->normprocinfo != NULL)
|
||||
{
|
||||
if (!IvfflatNormValue(buildstate->normprocinfo, buildstate->collation, &value, buildstate->normvec))
|
||||
if (!IvfflatNormValue(buildstate->normprocinfo, buildstate->collation, &value, buildstate->type))
|
||||
return;
|
||||
}
|
||||
|
||||
@@ -282,16 +259,12 @@ InsertTuples(Relation index, IvfflatBuildState * buildstate, ForkNumber forkNum)
|
||||
IndexTuple itup = NULL; /* silence compiler warning */
|
||||
int64 inserted = 0;
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
TupleTableSlot *slot = MakeSingleTupleTableSlot(buildstate->tupdesc, &TTSOpsMinimalTuple);
|
||||
#else
|
||||
TupleTableSlot *slot = MakeSingleTupleTableSlot(buildstate->tupdesc);
|
||||
#endif
|
||||
TupleDesc tupdesc = RelationGetDescr(index);
|
||||
|
||||
UpdateProgress(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_LOAD);
|
||||
pgstat_progress_update_param(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_LOAD);
|
||||
|
||||
UpdateProgress(PROGRESS_CREATEIDX_TUPLES_TOTAL, buildstate->indtuples);
|
||||
pgstat_progress_update_param(PROGRESS_CREATEIDX_TUPLES_TOTAL, buildstate->indtuples);
|
||||
|
||||
GetNextTuple(buildstate->sortstate, tupdesc, slot, &itup, &list);
|
||||
|
||||
@@ -327,7 +300,7 @@ InsertTuples(Relation index, IvfflatBuildState * buildstate, ForkNumber forkNum)
|
||||
|
||||
pfree(itup);
|
||||
|
||||
UpdateProgress(PROGRESS_CREATEIDX_TUPLES_DONE, ++inserted);
|
||||
pgstat_progress_update_param(PROGRESS_CREATEIDX_TUPLES_DONE, ++inserted);
|
||||
|
||||
GetNextTuple(buildstate->sortstate, tupdesc, slot, &itup, &list);
|
||||
}
|
||||
@@ -341,25 +314,58 @@ InsertTuples(Relation index, IvfflatBuildState * buildstate, ForkNumber forkNum)
|
||||
}
|
||||
}
|
||||
|
||||
/*
|
||||
* Get max dimensions
|
||||
*/
|
||||
static int
|
||||
GetMaxDimensions(IvfflatType type)
|
||||
{
|
||||
int maxDimensions = IVFFLAT_MAX_DIM;
|
||||
|
||||
if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
maxDimensions *= 2;
|
||||
|
||||
return maxDimensions;
|
||||
}
|
||||
|
||||
/*
|
||||
* Get item size
|
||||
*/
|
||||
static Size
|
||||
GetItemSize(IvfflatType type, int dimensions)
|
||||
{
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
return VECTOR_SIZE(dimensions);
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
return HALFVEC_SIZE(dimensions);
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
}
|
||||
|
||||
/*
|
||||
* Initialize the build state
|
||||
*/
|
||||
static void
|
||||
InitBuildState(IvfflatBuildState * buildstate, Relation heap, Relation index, IndexInfo *indexInfo)
|
||||
{
|
||||
int maxDimensions;
|
||||
|
||||
buildstate->heap = heap;
|
||||
buildstate->index = index;
|
||||
buildstate->indexInfo = indexInfo;
|
||||
buildstate->type = IvfflatGetType(index);
|
||||
|
||||
buildstate->lists = IvfflatGetLists(index);
|
||||
buildstate->dimensions = TupleDescAttr(index->rd_att, 0)->atttypmod;
|
||||
|
||||
maxDimensions = GetMaxDimensions(buildstate->type);
|
||||
|
||||
/* Require column to have dimensions to be indexed */
|
||||
if (buildstate->dimensions < 0)
|
||||
elog(ERROR, "column does not have dimensions");
|
||||
|
||||
if (buildstate->dimensions > IVFFLAT_MAX_DIM)
|
||||
elog(ERROR, "column cannot have more than %d dimensions for ivfflat index", IVFFLAT_MAX_DIM);
|
||||
if (buildstate->dimensions > maxDimensions)
|
||||
elog(ERROR, "column cannot have more than %d dimensions for ivfflat index", maxDimensions);
|
||||
|
||||
buildstate->reltuples = 0;
|
||||
buildstate->indtuples = 0;
|
||||
@@ -375,27 +381,16 @@ InitBuildState(IvfflatBuildState * buildstate, Relation heap, Relation index, In
|
||||
elog(ERROR, "dimensions must be greater than one for this opclass");
|
||||
|
||||
/* Create tuple description for sorting */
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
buildstate->tupdesc = CreateTemplateTupleDesc(3);
|
||||
#else
|
||||
buildstate->tupdesc = CreateTemplateTupleDesc(3, false);
|
||||
#endif
|
||||
TupleDescInitEntry(buildstate->tupdesc, (AttrNumber) 1, "list", INT4OID, -1, 0);
|
||||
TupleDescInitEntry(buildstate->tupdesc, (AttrNumber) 2, "tid", TIDOID, -1, 0);
|
||||
TupleDescInitEntry(buildstate->tupdesc, (AttrNumber) 3, "vector", RelationGetDescr(index)->attrs[0].atttypid, -1, 0);
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
buildstate->slot = MakeSingleTupleTableSlot(buildstate->tupdesc, &TTSOpsVirtual);
|
||||
#else
|
||||
buildstate->slot = MakeSingleTupleTableSlot(buildstate->tupdesc);
|
||||
#endif
|
||||
|
||||
buildstate->centers = VectorArrayInit(buildstate->lists, buildstate->dimensions);
|
||||
buildstate->centers = VectorArrayInit(buildstate->lists, buildstate->dimensions, GetItemSize(buildstate->type, buildstate->dimensions));
|
||||
buildstate->listInfo = palloc(sizeof(ListInfo) * buildstate->lists);
|
||||
|
||||
/* Reuse for each tuple */
|
||||
buildstate->normvec = InitVector(buildstate->dimensions);
|
||||
|
||||
buildstate->tmpCtx = AllocSetContextCreate(CurrentMemoryContext,
|
||||
"Ivfflat build temporary context",
|
||||
ALLOCSET_DEFAULT_SIZES);
|
||||
@@ -417,7 +412,6 @@ FreeBuildState(IvfflatBuildState * buildstate)
|
||||
{
|
||||
VectorArrayFree(buildstate->centers);
|
||||
pfree(buildstate->listInfo);
|
||||
pfree(buildstate->normvec);
|
||||
|
||||
#ifdef IVFFLAT_KMEANS_DEBUG
|
||||
pfree(buildstate->listSums);
|
||||
@@ -435,7 +429,7 @@ ComputeCenters(IvfflatBuildState * buildstate)
|
||||
{
|
||||
int numSamples;
|
||||
|
||||
UpdateProgress(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_KMEANS);
|
||||
pgstat_progress_update_param(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_KMEANS);
|
||||
|
||||
/* Target 50 samples per list, with at least 10000 samples */
|
||||
/* The number of samples has a large effect on index build time */
|
||||
@@ -449,7 +443,7 @@ ComputeCenters(IvfflatBuildState * buildstate)
|
||||
|
||||
/* Sample rows */
|
||||
/* TODO Ensure within maintenance_work_mem */
|
||||
buildstate->samples = VectorArrayInit(numSamples, buildstate->dimensions);
|
||||
buildstate->samples = VectorArrayInit(numSamples, buildstate->dimensions, buildstate->centers->itemsize);
|
||||
if (buildstate->heap != NULL)
|
||||
{
|
||||
SampleRows(buildstate);
|
||||
@@ -464,7 +458,7 @@ ComputeCenters(IvfflatBuildState * buildstate)
|
||||
}
|
||||
|
||||
/* Calculate centers */
|
||||
IvfflatBench("k-means", IvfflatKmeans(buildstate->index, buildstate->samples, buildstate->centers));
|
||||
IvfflatBench("k-means", IvfflatKmeans(buildstate->index, buildstate->samples, buildstate->centers, buildstate->type));
|
||||
|
||||
/* Free samples before we allocate more memory */
|
||||
VectorArrayFree(buildstate->samples);
|
||||
@@ -509,8 +503,8 @@ CreateListPages(Relation index, VectorArray centers, int dimensions,
|
||||
Size listSize;
|
||||
IvfflatList list;
|
||||
|
||||
listSize = MAXALIGN(IVFFLAT_LIST_SIZE(dimensions));
|
||||
list = palloc(listSize);
|
||||
listSize = MAXALIGN(IVFFLAT_LIST_SIZE(centers->itemsize));
|
||||
list = palloc0(listSize);
|
||||
|
||||
buf = IvfflatNewBuffer(index, forkNum);
|
||||
IvfflatInitRegisterPage(index, &buf, &page, &state);
|
||||
@@ -522,7 +516,7 @@ CreateListPages(Relation index, VectorArray centers, int dimensions,
|
||||
/* Load list */
|
||||
list->startPage = InvalidBlockNumber;
|
||||
list->insertPage = InvalidBlockNumber;
|
||||
memcpy(&list->center, VectorArrayGet(centers, i), VECTOR_SIZE(dimensions));
|
||||
memcpy(&list->center, VectorArrayGet(centers, i), centers->itemsize);
|
||||
|
||||
/* Ensure free space */
|
||||
if (PageGetFreeSpace(page) < listSize)
|
||||
@@ -627,15 +621,11 @@ ParallelHeapScan(IvfflatBuildState * buildstate)
|
||||
* Perform a worker's portion of a parallel sort
|
||||
*/
|
||||
static void
|
||||
IvfflatParallelScanAndSort(IvfflatSpool * ivfspool, IvfflatShared * ivfshared, Sharedsort *sharedsort, Vector * ivfcenters, int sortmem, bool progress)
|
||||
IvfflatParallelScanAndSort(IvfflatSpool * ivfspool, IvfflatShared * ivfshared, Sharedsort *sharedsort, char *ivfcenters, int sortmem, bool progress)
|
||||
{
|
||||
SortCoordinate coordinate;
|
||||
IvfflatBuildState buildstate;
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
TableScanDesc scan;
|
||||
#else
|
||||
HeapScanDesc scan;
|
||||
#endif
|
||||
double reltuples;
|
||||
IndexInfo *indexInfo;
|
||||
|
||||
@@ -655,22 +645,15 @@ IvfflatParallelScanAndSort(IvfflatSpool * ivfspool, IvfflatShared * ivfshared, S
|
||||
indexInfo = BuildIndexInfo(ivfspool->index);
|
||||
indexInfo->ii_Concurrent = ivfshared->isconcurrent;
|
||||
InitBuildState(&buildstate, ivfspool->heap, ivfspool->index, indexInfo);
|
||||
memcpy(buildstate.centers->items, ivfcenters, VECTOR_SIZE(buildstate.centers->dim) * buildstate.centers->maxlen);
|
||||
memcpy(buildstate.centers->items, ivfcenters, buildstate.centers->itemsize * buildstate.centers->maxlen);
|
||||
buildstate.centers->length = buildstate.centers->maxlen;
|
||||
ivfspool->sortstate = tuplesort_begin_heap(buildstate.tupdesc, 1, attNums, sortOperators, sortCollations, nullsFirstFlags, sortmem, coordinate, false);
|
||||
buildstate.sortstate = ivfspool->sortstate;
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
scan = table_beginscan_parallel(ivfspool->heap,
|
||||
ParallelTableScanFromIvfflatShared(ivfshared));
|
||||
reltuples = table_index_build_scan(ivfspool->heap, ivfspool->index, indexInfo,
|
||||
true, progress, BuildCallback,
|
||||
(void *) &buildstate, scan);
|
||||
#else
|
||||
scan = heap_beginscan_parallel(ivfspool->heap, &ivfshared->heapdesc);
|
||||
reltuples = IndexBuildHeapScan(ivfspool->heap, ivfspool->index, indexInfo,
|
||||
true, BuildCallback,
|
||||
(void *) &buildstate, scan);
|
||||
#endif
|
||||
|
||||
/* Execute this worker's part of the sort */
|
||||
tuplesort_performsort(ivfspool->sortstate);
|
||||
@@ -710,7 +693,7 @@ IvfflatParallelBuildMain(dsm_segment *seg, shm_toc *toc)
|
||||
IvfflatSpool *ivfspool;
|
||||
IvfflatShared *ivfshared;
|
||||
Sharedsort *sharedsort;
|
||||
Vector *ivfcenters;
|
||||
char *ivfcenters;
|
||||
Relation heapRel;
|
||||
Relation indexRel;
|
||||
LOCKMODE heapLockmode;
|
||||
@@ -740,11 +723,7 @@ IvfflatParallelBuildMain(dsm_segment *seg, shm_toc *toc)
|
||||
}
|
||||
|
||||
/* Open relations within worker */
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
heapRel = table_open(ivfshared->heaprelid, heapLockmode);
|
||||
#else
|
||||
heapRel = heap_open(ivfshared->heaprelid, heapLockmode);
|
||||
#endif
|
||||
indexRel = index_open(ivfshared->indexrelid, indexLockmode);
|
||||
|
||||
/* Initialize worker's own spool */
|
||||
@@ -764,11 +743,7 @@ IvfflatParallelBuildMain(dsm_segment *seg, shm_toc *toc)
|
||||
|
||||
/* Close relations within worker */
|
||||
index_close(indexRel, indexLockmode);
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
table_close(heapRel, heapLockmode);
|
||||
#else
|
||||
heap_close(heapRel, heapLockmode);
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -793,19 +768,7 @@ IvfflatEndParallel(IvfflatLeader * ivfleader)
|
||||
static Size
|
||||
ParallelEstimateShared(Relation heap, Snapshot snapshot)
|
||||
{
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
return add_size(BUFFERALIGN(sizeof(IvfflatShared)), table_parallelscan_estimate(heap, snapshot));
|
||||
#else
|
||||
if (!IsMVCCSnapshot(snapshot))
|
||||
{
|
||||
Assert(snapshot == SnapshotAny);
|
||||
return sizeof(IvfflatShared);
|
||||
}
|
||||
|
||||
return add_size(offsetof(IvfflatShared, heapdesc) +
|
||||
offsetof(ParallelHeapScanDescData, phs_snapshot_data),
|
||||
EstimateSnapshotSpace(snapshot));
|
||||
#endif
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -844,7 +807,7 @@ IvfflatBeginParallel(IvfflatBuildState * buildstate, bool isconcurrent, int requ
|
||||
Size estcenters;
|
||||
IvfflatShared *ivfshared;
|
||||
Sharedsort *sharedsort;
|
||||
Vector *ivfcenters;
|
||||
char *ivfcenters;
|
||||
IvfflatLeader *ivfleader = (IvfflatLeader *) palloc0(sizeof(IvfflatLeader));
|
||||
bool leaderparticipates = true;
|
||||
int querylen;
|
||||
@@ -856,11 +819,7 @@ IvfflatBeginParallel(IvfflatBuildState * buildstate, bool isconcurrent, int requ
|
||||
/* Enter parallel mode and create context */
|
||||
EnterParallelMode();
|
||||
Assert(request > 0);
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
pcxt = CreateParallelContext("vector", "IvfflatParallelBuildMain", request);
|
||||
#else
|
||||
pcxt = CreateParallelContext("vector", "IvfflatParallelBuildMain", request, true);
|
||||
#endif
|
||||
|
||||
scantuplesortstates = leaderparticipates ? request + 1 : request;
|
||||
|
||||
@@ -875,7 +834,7 @@ IvfflatBeginParallel(IvfflatBuildState * buildstate, bool isconcurrent, int requ
|
||||
shm_toc_estimate_chunk(&pcxt->estimator, estivfshared);
|
||||
estsort = tuplesort_estimate_shared(scantuplesortstates);
|
||||
shm_toc_estimate_chunk(&pcxt->estimator, estsort);
|
||||
estcenters = VECTOR_SIZE(buildstate->dimensions) * buildstate->lists;
|
||||
estcenters = buildstate->centers->itemsize * buildstate->centers->maxlen;
|
||||
shm_toc_estimate_chunk(&pcxt->estimator, estcenters);
|
||||
shm_toc_estimate_keys(&pcxt->estimator, 3);
|
||||
|
||||
@@ -918,20 +877,16 @@ IvfflatBeginParallel(IvfflatBuildState * buildstate, bool isconcurrent, int requ
|
||||
#ifdef IVFFLAT_KMEANS_DEBUG
|
||||
ivfshared->inertia = 0;
|
||||
#endif
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
table_parallelscan_initialize(buildstate->heap,
|
||||
ParallelTableScanFromIvfflatShared(ivfshared),
|
||||
snapshot);
|
||||
#else
|
||||
heap_parallelscan_initialize(&ivfshared->heapdesc, buildstate->heap, snapshot);
|
||||
#endif
|
||||
|
||||
/* Store shared tuplesort-private state, for which we reserved space */
|
||||
sharedsort = (Sharedsort *) shm_toc_allocate(pcxt->toc, estsort);
|
||||
tuplesort_initialize_shared(sharedsort, scantuplesortstates,
|
||||
pcxt->seg);
|
||||
|
||||
ivfcenters = (Vector *) shm_toc_allocate(pcxt->toc, estcenters);
|
||||
ivfcenters = shm_toc_allocate(pcxt->toc, estcenters);
|
||||
memcpy(ivfcenters, buildstate->centers->items, estcenters);
|
||||
|
||||
shm_toc_insert(pcxt->toc, PARALLEL_KEY_IVFFLAT_SHARED, ivfshared);
|
||||
@@ -995,7 +950,7 @@ AssignTuples(IvfflatBuildState * buildstate)
|
||||
Oid sortCollations[] = {InvalidOid};
|
||||
bool nullsFirstFlags[] = {false};
|
||||
|
||||
UpdateProgress(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_ASSIGN);
|
||||
pgstat_progress_update_param(PROGRESS_CREATEIDX_SUBPHASE, PROGRESS_IVFFLAT_PHASE_ASSIGN);
|
||||
|
||||
/* Calculate parallel workers */
|
||||
if (buildstate->heap != NULL)
|
||||
@@ -1023,15 +978,8 @@ AssignTuples(IvfflatBuildState * buildstate)
|
||||
if (buildstate->ivfleader)
|
||||
buildstate->reltuples = ParallelHeapScan(buildstate);
|
||||
else
|
||||
{
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
buildstate->reltuples = table_index_build_scan(buildstate->heap, buildstate->index, buildstate->indexInfo,
|
||||
true, true, BuildCallback, (void *) buildstate, NULL);
|
||||
#else
|
||||
buildstate->reltuples = IndexBuildHeapScan(buildstate->heap, buildstate->index, buildstate->indexInfo,
|
||||
true, BuildCallback, (void *) buildstate, NULL);
|
||||
#endif
|
||||
}
|
||||
|
||||
#ifdef IVFFLAT_KMEANS_DEBUG
|
||||
PrintKmeansMetrics(buildstate);
|
||||
|
||||
@@ -3,14 +3,16 @@
|
||||
#include <float.h>
|
||||
|
||||
#include "access/amapi.h"
|
||||
#include "access/reloptions.h"
|
||||
#include "commands/progress.h"
|
||||
#include "commands/vacuum.h"
|
||||
#include "ivfflat.h"
|
||||
#include "utils/guc.h"
|
||||
#include "utils/selfuncs.h"
|
||||
#include "utils/spccache.h"
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "commands/progress.h"
|
||||
#if PG_VERSION_NUM < 150000
|
||||
#define MarkGUCPrefixReserved(x) EmitWarningsOnPlaceholders(x)
|
||||
#endif
|
||||
|
||||
int ivfflat_probes;
|
||||
@@ -33,12 +35,13 @@ IvfflatInit(void)
|
||||
DefineCustomIntVariable("ivfflat.probes", "Sets the number of probes",
|
||||
"Valid range is 1..lists.", &ivfflat_probes,
|
||||
IVFFLAT_DEFAULT_PROBES, IVFFLAT_MIN_LISTS, IVFFLAT_MAX_LISTS, PGC_USERSET, 0, NULL, NULL, NULL);
|
||||
|
||||
MarkGUCPrefixReserved("ivfflat");
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the name of index build phase
|
||||
*/
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
static char *
|
||||
ivfflatbuildphasename(int64 phasenum)
|
||||
{
|
||||
@@ -56,7 +59,6 @@ ivfflatbuildphasename(int64 phasenum)
|
||||
return NULL;
|
||||
}
|
||||
}
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Estimate the cost of an index scan
|
||||
@@ -72,12 +74,9 @@ ivfflatcostestimate(PlannerInfo *root, IndexPath *path, double loop_count,
|
||||
double ratio;
|
||||
double spc_seq_page_cost;
|
||||
Relation index;
|
||||
#if PG_VERSION_NUM < 120000
|
||||
List *qinfos;
|
||||
#endif
|
||||
|
||||
/* Never use index without order or limit */
|
||||
if (path->indexorderbys == NULL || root->limit_tuples < 0)
|
||||
/* Never use index without order */
|
||||
if (path->indexorderbys == NULL)
|
||||
{
|
||||
*indexStartupCost = DBL_MAX;
|
||||
*indexTotalCost = DBL_MAX;
|
||||
@@ -105,26 +104,7 @@ ivfflatcostestimate(PlannerInfo *root, IndexPath *path, double loop_count,
|
||||
*/
|
||||
costs.numIndexTuples = path->indexinfo->tuples * ratio;
|
||||
|
||||
/*
|
||||
* Do not use index if limit + offset > expected tuples unless
|
||||
* enable_seqscan = off
|
||||
*/
|
||||
if (root->limit_tuples > costs.numIndexTuples)
|
||||
{
|
||||
*indexStartupCost = 1.0e10 - 1;
|
||||
*indexTotalCost = 1.0e10 - 1;
|
||||
*indexSelectivity = 0;
|
||||
*indexCorrelation = 0;
|
||||
*indexPages = 0;
|
||||
return;
|
||||
}
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
genericcostestimate(root, path, loop_count, &costs);
|
||||
#else
|
||||
qinfos = deconstruct_indexquals(path);
|
||||
genericcostestimate(root, path, loop_count, qinfos, &costs);
|
||||
#endif
|
||||
|
||||
get_tablespace_page_costs(path->indexinfo->reltablespace, NULL, &spc_seq_page_cost);
|
||||
|
||||
@@ -241,9 +221,7 @@ ivfflathandler(PG_FUNCTION_ARGS)
|
||||
amroutine->amcostestimate = ivfflatcostestimate;
|
||||
amroutine->amoptions = ivfflatoptions;
|
||||
amroutine->amproperty = NULL; /* TODO AMPROP_DISTANCE_ORDERABLE */
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
amroutine->ambuildphasename = ivfflatbuildphasename;
|
||||
#endif
|
||||
amroutine->amvalidate = ivfflatvalidate;
|
||||
#if PG_VERSION_NUM >= 140000
|
||||
amroutine->amadjustmembers = NULL;
|
||||
|
||||
@@ -3,9 +3,10 @@
|
||||
|
||||
#include "postgres.h"
|
||||
|
||||
#include "access/genam.h"
|
||||
#include "access/generic_xlog.h"
|
||||
#include "access/parallel.h"
|
||||
#include "access/reloptions.h"
|
||||
#include "lib/pairingheap.h"
|
||||
#include "nodes/execnodes.h"
|
||||
#include "port.h" /* for random() */
|
||||
#include "utils/sampling.h"
|
||||
@@ -16,10 +17,6 @@
|
||||
#include "common/pg_prng.h"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM < 120000
|
||||
#include "access/relscan.h"
|
||||
#endif
|
||||
|
||||
#ifdef IVFFLAT_BENCH
|
||||
#include "portability/instr_time.h"
|
||||
#endif
|
||||
@@ -46,13 +43,19 @@
|
||||
#define IVFFLAT_MAX_LISTS 32768
|
||||
#define IVFFLAT_DEFAULT_PROBES 1
|
||||
|
||||
typedef enum IvfflatType
|
||||
{
|
||||
IVFFLAT_TYPE_VECTOR,
|
||||
IVFFLAT_TYPE_HALFVEC
|
||||
} IvfflatType;
|
||||
|
||||
/* Build phases */
|
||||
/* PROGRESS_CREATEIDX_SUBPHASE_INITIALIZE is 1 */
|
||||
#define PROGRESS_IVFFLAT_PHASE_KMEANS 2
|
||||
#define PROGRESS_IVFFLAT_PHASE_ASSIGN 3
|
||||
#define PROGRESS_IVFFLAT_PHASE_LOAD 4
|
||||
|
||||
#define IVFFLAT_LIST_SIZE(_dim) (offsetof(IvfflatListData, center) + VECTOR_SIZE(_dim))
|
||||
#define IVFFLAT_LIST_SIZE(size) (offsetof(IvfflatListData, center) + size)
|
||||
|
||||
#define IvfflatPageGetOpaque(page) ((IvfflatPageOpaque) PageGetSpecialPointer(page))
|
||||
#define IvfflatPageGetMeta(page) ((IvfflatMetaPageData *) PageGetContents(page))
|
||||
@@ -88,7 +91,8 @@ typedef struct VectorArrayData
|
||||
int length;
|
||||
int maxlen;
|
||||
int dim;
|
||||
Vector *items;
|
||||
Size itemsize;
|
||||
char *items;
|
||||
} VectorArrayData;
|
||||
|
||||
typedef VectorArrayData * VectorArray;
|
||||
@@ -135,16 +139,10 @@ typedef struct IvfflatShared
|
||||
#ifdef IVFFLAT_KMEANS_DEBUG
|
||||
double inertia;
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM < 120000
|
||||
ParallelHeapScanDescData heapdesc; /* must come last */
|
||||
#endif
|
||||
} IvfflatShared;
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#define ParallelTableScanFromIvfflatShared(shared) \
|
||||
(ParallelTableScanDesc) ((char *) (shared) + BUFFERALIGN(sizeof(IvfflatShared)))
|
||||
#endif
|
||||
|
||||
typedef struct IvfflatLeader
|
||||
{
|
||||
@@ -153,7 +151,7 @@ typedef struct IvfflatLeader
|
||||
IvfflatShared *ivfshared;
|
||||
Sharedsort *sharedsort;
|
||||
Snapshot snapshot;
|
||||
Vector *ivfcenters;
|
||||
char *ivfcenters;
|
||||
} IvfflatLeader;
|
||||
|
||||
typedef struct IvfflatBuildState
|
||||
@@ -162,6 +160,7 @@ typedef struct IvfflatBuildState
|
||||
Relation heap;
|
||||
Relation index;
|
||||
IndexInfo *indexInfo;
|
||||
IvfflatType type;
|
||||
|
||||
/* Settings */
|
||||
int dimensions;
|
||||
@@ -181,7 +180,6 @@ typedef struct IvfflatBuildState
|
||||
VectorArray samples;
|
||||
VectorArray centers;
|
||||
ListInfo *listInfo;
|
||||
Vector *normvec;
|
||||
|
||||
#ifdef IVFFLAT_KMEANS_DEBUG
|
||||
double inertia;
|
||||
@@ -265,18 +263,18 @@ typedef struct IvfflatScanOpaqueData
|
||||
|
||||
typedef IvfflatScanOpaqueData * IvfflatScanOpaque;
|
||||
|
||||
#define VECTOR_ARRAY_SIZE(_length, _dim) (sizeof(VectorArrayData) + (_length) * VECTOR_SIZE(_dim))
|
||||
#define VECTOR_ARRAY_OFFSET(_arr, _offset) ((char*) (_arr)->items + (_offset) * VECTOR_SIZE((_arr)->dim))
|
||||
#define VectorArrayGet(_arr, _offset) ((Vector *) VECTOR_ARRAY_OFFSET(_arr, _offset))
|
||||
#define VectorArraySet(_arr, _offset, _val) memcpy(VECTOR_ARRAY_OFFSET(_arr, _offset), _val, VECTOR_SIZE((_arr)->dim))
|
||||
#define VECTOR_ARRAY_SIZE(_length, _size) (sizeof(VectorArrayData) + (_length) * _size)
|
||||
#define VECTOR_ARRAY_OFFSET(_arr, _offset) ((char*) (_arr)->items + (_offset) * (_arr)->itemsize)
|
||||
#define VectorArrayGet(_arr, _offset) VECTOR_ARRAY_OFFSET(_arr, _offset)
|
||||
#define VectorArraySet(_arr, _offset, _val) memcpy(VECTOR_ARRAY_OFFSET(_arr, _offset), _val, (_arr)->itemsize)
|
||||
|
||||
/* Methods */
|
||||
VectorArray VectorArrayInit(int maxlen, int dimensions);
|
||||
VectorArray VectorArrayInit(int maxlen, int dimensions, Size itemsize);
|
||||
void VectorArrayFree(VectorArray arr);
|
||||
void PrintVectorArray(char *msg, VectorArray arr);
|
||||
void IvfflatKmeans(Relation index, VectorArray samples, VectorArray centers);
|
||||
void IvfflatKmeans(Relation index, VectorArray samples, VectorArray centers, IvfflatType type);
|
||||
FmgrInfo *IvfflatOptionalProcInfo(Relation index, uint16 procnum);
|
||||
bool IvfflatNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, Vector * result);
|
||||
IvfflatType IvfflatGetType(Relation index);
|
||||
bool IvfflatNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, IvfflatType type);
|
||||
int IvfflatGetLists(Relation index);
|
||||
void IvfflatGetMetaPageInfo(Relation index, int *lists, int *dimensions);
|
||||
void IvfflatUpdateList(Relation index, ListInfo listInfo, BlockNumber insertPage, BlockNumber originalInsertPage, BlockNumber startPage, ForkNumber forkNum);
|
||||
|
||||
@@ -2,6 +2,7 @@
|
||||
|
||||
#include <float.h>
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "ivfflat.h"
|
||||
#include "storage/bufmgr.h"
|
||||
#include "storage/lmgr.h"
|
||||
@@ -84,7 +85,7 @@ InsertTuple(Relation index, Datum *values, bool *isnull, ItemPointer heap_tid, R
|
||||
normprocinfo = IvfflatOptionalProcInfo(index, IVFFLAT_NORM_PROC);
|
||||
if (normprocinfo != NULL)
|
||||
{
|
||||
if (!IvfflatNormValue(normprocinfo, index->rd_indcollation[0], &value, NULL))
|
||||
if (!IvfflatNormValue(normprocinfo, index->rd_indcollation[0], &value, IvfflatGetType(index)))
|
||||
return;
|
||||
}
|
||||
|
||||
|
||||
400
src/ivfkmeans.c
400
src/ivfkmeans.c
@@ -3,12 +3,13 @@
|
||||
#include <float.h>
|
||||
#include <math.h>
|
||||
|
||||
#include "halfutils.h"
|
||||
#include "halfvec.h"
|
||||
#include "ivfflat.h"
|
||||
#include "miscadmin.h"
|
||||
|
||||
#ifdef IVFFLAT_MEMORY
|
||||
#include "utils/datum.h"
|
||||
#include "utils/memutils.h"
|
||||
#endif
|
||||
#include "vector.h"
|
||||
|
||||
/*
|
||||
* Initialize with kmeans++
|
||||
@@ -46,12 +47,12 @@ InitCenters(Relation index, VectorArray samples, VectorArray centers, float *low
|
||||
|
||||
for (j = 0; j < numSamples; j++)
|
||||
{
|
||||
Vector *vec = VectorArrayGet(samples, j);
|
||||
Datum vec = PointerGetDatum(VectorArrayGet(samples, j));
|
||||
double distance;
|
||||
|
||||
/* Only need to compute distance for new center */
|
||||
/* TODO Use triangle inequality to reduce distance calculations */
|
||||
distance = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, PointerGetDatum(vec), PointerGetDatum(VectorArrayGet(centers, i))));
|
||||
distance = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, vec, PointerGetDatum(VectorArrayGet(centers, i))));
|
||||
|
||||
/* Set lower bound */
|
||||
lowerBound[j * numCenters + i] = distance;
|
||||
@@ -89,15 +90,29 @@ InitCenters(Relation index, VectorArray samples, VectorArray centers, float *low
|
||||
* Apply norm to vector
|
||||
*/
|
||||
static inline void
|
||||
ApplyNorm(FmgrInfo *normprocinfo, Oid collation, Vector * vec)
|
||||
ApplyNorm(FmgrInfo *normprocinfo, Oid collation, Datum value, IvfflatType type)
|
||||
{
|
||||
double norm = DatumGetFloat8(FunctionCall1Coll(normprocinfo, collation, PointerGetDatum(vec)));
|
||||
double norm = DatumGetFloat8(FunctionCall1Coll(normprocinfo, collation, value));
|
||||
|
||||
/* TODO Handle zero norm */
|
||||
if (norm > 0)
|
||||
{
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
vec->x[i] /= norm;
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
Vector *vec = DatumGetVector(value);
|
||||
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
vec->x[i] /= norm;
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
HalfVector *vec = DatumGetHalfVector(value);
|
||||
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
vec->x[i] = Float4ToHalfUnchecked(HalfToFloat4(vec->x[i]) / norm);
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
}
|
||||
}
|
||||
|
||||
@@ -110,11 +125,20 @@ CompareVectors(const void *a, const void *b)
|
||||
return vector_cmp_internal((Vector *) a, (Vector *) b);
|
||||
}
|
||||
|
||||
/*
|
||||
* Compare half vectors
|
||||
*/
|
||||
static int
|
||||
CompareHalfVectors(const void *a, const void *b)
|
||||
{
|
||||
return halfvec_cmp_internal((HalfVector *) a, (HalfVector *) b);
|
||||
}
|
||||
|
||||
/*
|
||||
* Quick approach if we have little data
|
||||
*/
|
||||
static void
|
||||
QuickCenters(Relation index, VectorArray samples, VectorArray centers)
|
||||
QuickCenters(Relation index, VectorArray samples, VectorArray centers, IvfflatType type)
|
||||
{
|
||||
int dimensions = centers->dim;
|
||||
Oid collation = index->rd_indcollation[0];
|
||||
@@ -123,14 +147,20 @@ QuickCenters(Relation index, VectorArray samples, VectorArray centers)
|
||||
/* Copy existing vectors while avoiding duplicates */
|
||||
if (samples->length > 0)
|
||||
{
|
||||
qsort(samples->items, samples->length, VECTOR_SIZE(samples->dim), CompareVectors);
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
qsort(samples->items, samples->length, samples->itemsize, CompareVectors);
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
qsort(samples->items, samples->length, samples->itemsize, CompareHalfVectors);
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
for (int i = 0; i < samples->length; i++)
|
||||
{
|
||||
Vector *vec = VectorArrayGet(samples, i);
|
||||
Datum vec = PointerGetDatum(VectorArrayGet(samples, i));
|
||||
|
||||
if (i == 0 || CompareVectors(vec, VectorArrayGet(samples, i - 1)) != 0)
|
||||
if (i == 0 || !datumIsEqual(vec, PointerGetDatum(VectorArrayGet(samples, i - 1)), false, -1))
|
||||
{
|
||||
VectorArraySet(centers, centers->length, vec);
|
||||
VectorArraySet(centers, centers->length, DatumGetPointer(vec));
|
||||
centers->length++;
|
||||
}
|
||||
}
|
||||
@@ -139,17 +169,34 @@ QuickCenters(Relation index, VectorArray samples, VectorArray centers)
|
||||
/* Fill remaining with random data */
|
||||
while (centers->length < centers->maxlen)
|
||||
{
|
||||
Vector *vec = VectorArrayGet(centers, centers->length);
|
||||
Datum center = PointerGetDatum(VectorArrayGet(centers, centers->length));
|
||||
|
||||
SET_VARSIZE(vec, VECTOR_SIZE(dimensions));
|
||||
vec->dim = dimensions;
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
Vector *vec = DatumGetVector(center);
|
||||
|
||||
for (int j = 0; j < dimensions; j++)
|
||||
vec->x[j] = RandomDouble();
|
||||
SET_VARSIZE(vec, VECTOR_SIZE(dimensions));
|
||||
vec->dim = dimensions;
|
||||
|
||||
for (int j = 0; j < dimensions; j++)
|
||||
vec->x[j] = RandomDouble();
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
HalfVector *vec = DatumGetHalfVector(center);
|
||||
|
||||
SET_VARSIZE(vec, HALFVEC_SIZE(dimensions));
|
||||
vec->dim = dimensions;
|
||||
|
||||
for (int j = 0; j < dimensions; j++)
|
||||
vec->x[j] = Float4ToHalfUnchecked((float) RandomDouble());
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
/* Normalize if needed (only needed for random centers) */
|
||||
if (normprocinfo != NULL)
|
||||
ApplyNorm(normprocinfo, collation, vec);
|
||||
ApplyNorm(normprocinfo, collation, center, type);
|
||||
|
||||
centers->length++;
|
||||
}
|
||||
@@ -160,18 +207,120 @@ QuickCenters(Relation index, VectorArray samples, VectorArray centers)
|
||||
* Show memory usage
|
||||
*/
|
||||
static void
|
||||
ShowMemoryUsage(Size estimatedSize)
|
||||
ShowMemoryUsage(MemoryContext context, Size estimatedSize)
|
||||
{
|
||||
#if PG_VERSION_NUM >= 130000
|
||||
elog(INFO, "total memory: %zu MB",
|
||||
MemoryContextMemAllocated(CurrentMemoryContext, true) / (1024 * 1024));
|
||||
MemoryContextMemAllocated(context, true) / (1024 * 1024));
|
||||
#else
|
||||
MemoryContextStats(CurrentMemoryContext);
|
||||
MemoryContextStats(context);
|
||||
#endif
|
||||
elog(INFO, "estimated memory: %zu MB", estimatedSize / (1024 * 1024));
|
||||
}
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Compute new centers
|
||||
*/
|
||||
static void
|
||||
ComputeNewCenters(VectorArray samples, VectorArray aggCenters, VectorArray newCenters, int *centerCounts, int *closestCenters, FmgrInfo *normprocinfo, Oid collation, IvfflatType type)
|
||||
{
|
||||
int dimensions = aggCenters->dim;
|
||||
int numCenters = aggCenters->maxlen;
|
||||
int numSamples = samples->length;
|
||||
|
||||
/* Reset sum and count */
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
Vector *vec = (Vector *) VectorArrayGet(aggCenters, j);
|
||||
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
vec->x[k] = 0.0;
|
||||
|
||||
centerCounts[j] = 0;
|
||||
}
|
||||
|
||||
/* Increment sum of closest center */
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
for (int j = 0; j < numSamples; j++)
|
||||
{
|
||||
Vector *aggCenter = (Vector *) VectorArrayGet(aggCenters, closestCenters[j]);
|
||||
Vector *vec = (Vector *) VectorArrayGet(samples, j);
|
||||
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
aggCenter->x[k] += vec->x[k];
|
||||
}
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
for (int j = 0; j < numSamples; j++)
|
||||
{
|
||||
Vector *aggCenter = (Vector *) VectorArrayGet(aggCenters, closestCenters[j]);
|
||||
HalfVector *vec = (HalfVector *) VectorArrayGet(samples, j);
|
||||
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
aggCenter->x[k] += HalfToFloat4(vec->x[k]);
|
||||
}
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
/* Increment count of closest center */
|
||||
for (int j = 0; j < numSamples; j++)
|
||||
centerCounts[closestCenters[j]] += 1;
|
||||
|
||||
/* Divide sum by count */
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
Vector *vec = (Vector *) VectorArrayGet(aggCenters, j);
|
||||
|
||||
if (centerCounts[j] > 0)
|
||||
{
|
||||
/* Double avoids overflow, but requires more memory */
|
||||
/* TODO Update bounds */
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
{
|
||||
if (isinf(vec->x[k]))
|
||||
vec->x[k] = vec->x[k] > 0 ? FLT_MAX : -FLT_MAX;
|
||||
}
|
||||
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
vec->x[k] /= centerCounts[j];
|
||||
}
|
||||
else
|
||||
{
|
||||
/* TODO Handle empty centers properly */
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
vec->x[k] = RandomDouble();
|
||||
}
|
||||
}
|
||||
|
||||
/* Set new centers if different from agg centers */
|
||||
if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
Vector *aggCenter = (Vector *) VectorArrayGet(aggCenters, j);
|
||||
HalfVector *newCenter = (HalfVector *) VectorArrayGet(newCenters, j);
|
||||
|
||||
for (int k = 0; k < dimensions; k++)
|
||||
newCenter->x[k] = Float4ToHalfUnchecked(aggCenter->x[k]);
|
||||
}
|
||||
}
|
||||
|
||||
/* Normalize if needed */
|
||||
if (normprocinfo != NULL)
|
||||
{
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
Datum newCenter = PointerGetDatum(VectorArrayGet(newCenters, j));
|
||||
|
||||
ApplyNorm(normprocinfo, collation, newCenter, type);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/*
|
||||
* Use Elkan for performance. This requires distance function to satisfy triangle inequality.
|
||||
*
|
||||
@@ -181,19 +330,16 @@ ShowMemoryUsage(Size estimatedSize)
|
||||
* https://www.aaai.org/Papers/ICML/2003/ICML03-022.pdf
|
||||
*/
|
||||
static void
|
||||
ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
ElkanKmeans(Relation index, VectorArray samples, VectorArray centers, IvfflatType type)
|
||||
{
|
||||
FmgrInfo *procinfo;
|
||||
FmgrInfo *normprocinfo;
|
||||
Oid collation;
|
||||
Vector *vec;
|
||||
Vector *newCenter;
|
||||
int64 j;
|
||||
int64 k;
|
||||
int dimensions = centers->dim;
|
||||
int numCenters = centers->maxlen;
|
||||
int numSamples = samples->length;
|
||||
VectorArray newCenters;
|
||||
VectorArray aggCenters;
|
||||
int *centerCounts;
|
||||
int *closestCenters;
|
||||
float *lowerBound;
|
||||
@@ -201,11 +347,14 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
float *s;
|
||||
float *halfcdist;
|
||||
float *newcdist;
|
||||
MemoryContext kmeansCtx;
|
||||
MemoryContext oldCtx;
|
||||
|
||||
/* Calculate allocation sizes */
|
||||
Size samplesSize = VECTOR_ARRAY_SIZE(samples->maxlen, samples->dim);
|
||||
Size centersSize = VECTOR_ARRAY_SIZE(centers->maxlen, centers->dim);
|
||||
Size newCentersSize = VECTOR_ARRAY_SIZE(numCenters, dimensions);
|
||||
Size samplesSize = VECTOR_ARRAY_SIZE(samples->maxlen, samples->itemsize);
|
||||
Size centersSize = VECTOR_ARRAY_SIZE(centers->maxlen, centers->itemsize);
|
||||
Size newCentersSize = VECTOR_ARRAY_SIZE(numCenters, centers->itemsize);
|
||||
Size aggCentersSize = type == IVFFLAT_TYPE_VECTOR ? 0 : VECTOR_ARRAY_SIZE(numCenters, VECTOR_SIZE(dimensions));
|
||||
Size centerCountsSize = sizeof(int) * numCenters;
|
||||
Size closestCentersSize = sizeof(int) * numSamples;
|
||||
Size lowerBoundSize = sizeof(float) * numSamples * numCenters;
|
||||
@@ -215,7 +364,7 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
Size newcdistSize = sizeof(float) * numCenters;
|
||||
|
||||
/* Calculate total size */
|
||||
Size totalSize = samplesSize + centersSize + newCentersSize + centerCountsSize + closestCentersSize + lowerBoundSize + upperBoundSize + sSize + halfcdistSize + newcdistSize;
|
||||
Size totalSize = samplesSize + centersSize + newCentersSize + aggCentersSize + centerCountsSize + closestCentersSize + lowerBoundSize + upperBoundSize + sSize + halfcdistSize + newcdistSize;
|
||||
|
||||
/* Check memory requirements */
|
||||
/* Add one to error message to ceil */
|
||||
@@ -234,6 +383,12 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
normprocinfo = IvfflatOptionalProcInfo(index, IVFFLAT_KMEANS_NORM_PROC);
|
||||
collation = index->rd_indcollation[0];
|
||||
|
||||
/* Use memory context */
|
||||
kmeansCtx = AllocSetContextCreate(CurrentMemoryContext,
|
||||
"Ivfflat kmeans temporary context",
|
||||
ALLOCSET_DEFAULT_SIZES);
|
||||
oldCtx = MemoryContextSwitchTo(kmeansCtx);
|
||||
|
||||
/* Allocate space */
|
||||
/* Use float instead of double to save memory */
|
||||
centerCounts = palloc(centerCountsSize);
|
||||
@@ -244,29 +399,50 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
halfcdist = palloc_extended(halfcdistSize, MCXT_ALLOC_HUGE);
|
||||
newcdist = palloc(newcdistSize);
|
||||
|
||||
newCenters = VectorArrayInit(numCenters, dimensions);
|
||||
for (j = 0; j < numCenters; j++)
|
||||
aggCenters = VectorArrayInit(numCenters, dimensions, VECTOR_SIZE(dimensions));
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
vec = VectorArrayGet(newCenters, j);
|
||||
Vector *vec = (Vector *) VectorArrayGet(aggCenters, j);
|
||||
|
||||
SET_VARSIZE(vec, VECTOR_SIZE(dimensions));
|
||||
vec->dim = dimensions;
|
||||
}
|
||||
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
/* Use same centers to save memory */
|
||||
newCenters = aggCenters;
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
newCenters = VectorArrayInit(numCenters, dimensions, centers->itemsize);
|
||||
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
{
|
||||
HalfVector *vec = (HalfVector *) VectorArrayGet(newCenters, j);
|
||||
|
||||
SET_VARSIZE(vec, HALFVEC_SIZE(dimensions));
|
||||
vec->dim = dimensions;
|
||||
}
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
#ifdef IVFFLAT_MEMORY
|
||||
ShowMemoryUsage(totalSize);
|
||||
ShowMemoryUsage(oldCtx, totalSize);
|
||||
#endif
|
||||
|
||||
/* Pick initial centers */
|
||||
InitCenters(index, samples, centers, lowerBound);
|
||||
|
||||
/* Assign each x to its closest initial center c(x) = argmin d(x,c) */
|
||||
for (j = 0; j < numSamples; j++)
|
||||
for (int64 j = 0; j < numSamples; j++)
|
||||
{
|
||||
float minDistance = FLT_MAX;
|
||||
int closestCenter = 0;
|
||||
|
||||
/* Find closest center */
|
||||
for (k = 0; k < numCenters; k++)
|
||||
for (int64 k = 0; k < numCenters; k++)
|
||||
{
|
||||
/* TODO Use Lemma 1 in k-means++ initialization */
|
||||
float distance = lowerBound[j * numCenters + k];
|
||||
@@ -292,13 +468,13 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
CHECK_FOR_INTERRUPTS();
|
||||
|
||||
/* Step 1: For all centers, compute distance */
|
||||
for (j = 0; j < numCenters; j++)
|
||||
for (int64 j = 0; j < numCenters; j++)
|
||||
{
|
||||
vec = VectorArrayGet(centers, j);
|
||||
Datum vec = PointerGetDatum(VectorArrayGet(centers, j));
|
||||
|
||||
for (k = j + 1; k < numCenters; k++)
|
||||
for (int64 k = j + 1; k < numCenters; k++)
|
||||
{
|
||||
float distance = 0.5 * DatumGetFloat8(FunctionCall2Coll(procinfo, collation, PointerGetDatum(vec), PointerGetDatum(VectorArrayGet(centers, k))));
|
||||
float distance = 0.5 * DatumGetFloat8(FunctionCall2Coll(procinfo, collation, vec, PointerGetDatum(VectorArrayGet(centers, k))));
|
||||
|
||||
halfcdist[j * numCenters + k] = distance;
|
||||
halfcdist[k * numCenters + j] = distance;
|
||||
@@ -306,11 +482,11 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
}
|
||||
|
||||
/* For all centers c, compute s(c) */
|
||||
for (j = 0; j < numCenters; j++)
|
||||
for (int64 j = 0; j < numCenters; j++)
|
||||
{
|
||||
float minDistance = FLT_MAX;
|
||||
|
||||
for (k = 0; k < numCenters; k++)
|
||||
for (int64 k = 0; k < numCenters; k++)
|
||||
{
|
||||
float distance;
|
||||
|
||||
@@ -327,7 +503,7 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
|
||||
rjreset = iteration != 0;
|
||||
|
||||
for (j = 0; j < numSamples; j++)
|
||||
for (int64 j = 0; j < numSamples; j++)
|
||||
{
|
||||
bool rj;
|
||||
|
||||
@@ -337,8 +513,9 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
|
||||
rj = rjreset;
|
||||
|
||||
for (k = 0; k < numCenters; k++)
|
||||
for (int64 k = 0; k < numCenters; k++)
|
||||
{
|
||||
Datum vec;
|
||||
float dxcx;
|
||||
|
||||
/* Step 3: For all remaining points x and centers c */
|
||||
@@ -351,12 +528,12 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
if (upperBound[j] <= halfcdist[closestCenters[j] * numCenters + k])
|
||||
continue;
|
||||
|
||||
vec = VectorArrayGet(samples, j);
|
||||
vec = PointerGetDatum(VectorArrayGet(samples, j));
|
||||
|
||||
/* Step 3a */
|
||||
if (rj)
|
||||
{
|
||||
dxcx = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, PointerGetDatum(vec), PointerGetDatum(VectorArrayGet(centers, closestCenters[j]))));
|
||||
dxcx = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, vec, PointerGetDatum(VectorArrayGet(centers, closestCenters[j]))));
|
||||
|
||||
/* d(x,c(x)) computed, which is a form of d(x,c) */
|
||||
lowerBound[j * numCenters + closestCenters[j]] = dxcx;
|
||||
@@ -370,7 +547,7 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
/* Step 3b */
|
||||
if (dxcx > lowerBound[j * numCenters + k] || dxcx > halfcdist[closestCenters[j] * numCenters + k])
|
||||
{
|
||||
float dxc = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, PointerGetDatum(vec), PointerGetDatum(VectorArrayGet(centers, k))));
|
||||
float dxc = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, vec, PointerGetDatum(VectorArrayGet(centers, k))));
|
||||
|
||||
/* d(x,c) calculated */
|
||||
lowerBound[j * numCenters + k] = dxc;
|
||||
@@ -389,66 +566,15 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
}
|
||||
|
||||
/* Step 4: For each center c, let m(c) be mean of all points assigned */
|
||||
for (j = 0; j < numCenters; j++)
|
||||
{
|
||||
vec = VectorArrayGet(newCenters, j);
|
||||
for (k = 0; k < dimensions; k++)
|
||||
vec->x[k] = 0.0;
|
||||
|
||||
centerCounts[j] = 0;
|
||||
}
|
||||
|
||||
for (j = 0; j < numSamples; j++)
|
||||
{
|
||||
int closestCenter;
|
||||
|
||||
vec = VectorArrayGet(samples, j);
|
||||
closestCenter = closestCenters[j];
|
||||
|
||||
/* Increment sum and count of closest center */
|
||||
newCenter = VectorArrayGet(newCenters, closestCenter);
|
||||
for (k = 0; k < dimensions; k++)
|
||||
newCenter->x[k] += vec->x[k];
|
||||
|
||||
centerCounts[closestCenter] += 1;
|
||||
}
|
||||
|
||||
for (j = 0; j < numCenters; j++)
|
||||
{
|
||||
vec = VectorArrayGet(newCenters, j);
|
||||
|
||||
if (centerCounts[j] > 0)
|
||||
{
|
||||
/* Double avoids overflow, but requires more memory */
|
||||
/* TODO Update bounds */
|
||||
for (k = 0; k < dimensions; k++)
|
||||
{
|
||||
if (isinf(vec->x[k]))
|
||||
vec->x[k] = vec->x[k] > 0 ? FLT_MAX : -FLT_MAX;
|
||||
}
|
||||
|
||||
for (k = 0; k < dimensions; k++)
|
||||
vec->x[k] /= centerCounts[j];
|
||||
}
|
||||
else
|
||||
{
|
||||
/* TODO Handle empty centers properly */
|
||||
for (k = 0; k < dimensions; k++)
|
||||
vec->x[k] = RandomDouble();
|
||||
}
|
||||
|
||||
/* Normalize if needed */
|
||||
if (normprocinfo != NULL)
|
||||
ApplyNorm(normprocinfo, collation, vec);
|
||||
}
|
||||
ComputeNewCenters(samples, aggCenters, newCenters, centerCounts, closestCenters, normprocinfo, collation, type);
|
||||
|
||||
/* Step 5 */
|
||||
for (j = 0; j < numCenters; j++)
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
newcdist[j] = DatumGetFloat8(FunctionCall2Coll(procinfo, collation, PointerGetDatum(VectorArrayGet(centers, j)), PointerGetDatum(VectorArrayGet(newCenters, j))));
|
||||
|
||||
for (j = 0; j < numSamples; j++)
|
||||
for (int64 j = 0; j < numSamples; j++)
|
||||
{
|
||||
for (k = 0; k < numCenters; k++)
|
||||
for (int64 k = 0; k < numCenters; k++)
|
||||
{
|
||||
float distance = lowerBound[j * numCenters + k] - newcdist[k];
|
||||
|
||||
@@ -461,32 +587,26 @@ ElkanKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
|
||||
/* Step 6 */
|
||||
/* We reset r(x) before Step 3 in the next iteration */
|
||||
for (j = 0; j < numSamples; j++)
|
||||
for (int j = 0; j < numSamples; j++)
|
||||
upperBound[j] += newcdist[closestCenters[j]];
|
||||
|
||||
/* Step 7 */
|
||||
for (j = 0; j < numCenters; j++)
|
||||
for (int j = 0; j < numCenters; j++)
|
||||
VectorArraySet(centers, j, VectorArrayGet(newCenters, j));
|
||||
|
||||
if (changes == 0 && iteration != 0)
|
||||
break;
|
||||
}
|
||||
|
||||
VectorArrayFree(newCenters);
|
||||
pfree(centerCounts);
|
||||
pfree(closestCenters);
|
||||
pfree(lowerBound);
|
||||
pfree(upperBound);
|
||||
pfree(s);
|
||||
pfree(halfcdist);
|
||||
pfree(newcdist);
|
||||
MemoryContextSwitchTo(oldCtx);
|
||||
MemoryContextDelete(kmeansCtx);
|
||||
}
|
||||
|
||||
/*
|
||||
* Detect issues with centers
|
||||
*/
|
||||
static void
|
||||
CheckCenters(Relation index, VectorArray centers)
|
||||
CheckCenters(Relation index, VectorArray centers, IvfflatType type)
|
||||
{
|
||||
FmgrInfo *normprocinfo;
|
||||
|
||||
@@ -496,24 +616,48 @@ CheckCenters(Relation index, VectorArray centers)
|
||||
/* Ensure no NaN or infinite values */
|
||||
for (int i = 0; i < centers->length; i++)
|
||||
{
|
||||
Vector *vec = VectorArrayGet(centers, i);
|
||||
|
||||
for (int j = 0; j < vec->dim; j++)
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
if (isnan(vec->x[j]))
|
||||
elog(ERROR, "NaN detected. Please report a bug.");
|
||||
Vector *vec = (Vector *) VectorArrayGet(centers, i);
|
||||
|
||||
if (isinf(vec->x[j]))
|
||||
elog(ERROR, "Infinite value detected. Please report a bug.");
|
||||
for (int j = 0; j < vec->dim; j++)
|
||||
{
|
||||
if (isnan(vec->x[j]))
|
||||
elog(ERROR, "NaN detected. Please report a bug.");
|
||||
|
||||
if (isinf(vec->x[j]))
|
||||
elog(ERROR, "Infinite value detected. Please report a bug.");
|
||||
}
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
HalfVector *vec = (HalfVector *) VectorArrayGet(centers, i);
|
||||
|
||||
for (int j = 0; j < vec->dim; j++)
|
||||
{
|
||||
if (HalfIsNan(vec->x[j]))
|
||||
elog(ERROR, "NaN detected. Please report a bug.");
|
||||
|
||||
if (HalfIsInf(vec->x[j]))
|
||||
elog(ERROR, "Infinite value detected. Please report a bug.");
|
||||
}
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
}
|
||||
|
||||
/* Ensure no duplicate centers */
|
||||
/* Fine to sort in-place */
|
||||
qsort(centers->items, centers->length, VECTOR_SIZE(centers->dim), CompareVectors);
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
qsort(centers->items, centers->length, centers->itemsize, CompareVectors);
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
qsort(centers->items, centers->length, centers->itemsize, CompareHalfVectors);
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
for (int i = 1; i < centers->length; i++)
|
||||
{
|
||||
if (CompareVectors(VectorArrayGet(centers, i), VectorArrayGet(centers, i - 1)) == 0)
|
||||
if (datumIsEqual(PointerGetDatum(VectorArrayGet(centers, i)), PointerGetDatum(VectorArrayGet(centers, i - 1)), false, -1))
|
||||
elog(ERROR, "Duplicate centers detected. Please report a bug.");
|
||||
}
|
||||
|
||||
@@ -539,12 +683,12 @@ CheckCenters(Relation index, VectorArray centers)
|
||||
* We use spherical k-means for inner product and cosine
|
||||
*/
|
||||
void
|
||||
IvfflatKmeans(Relation index, VectorArray samples, VectorArray centers)
|
||||
IvfflatKmeans(Relation index, VectorArray samples, VectorArray centers, IvfflatType type)
|
||||
{
|
||||
if (samples->length <= centers->maxlen)
|
||||
QuickCenters(index, samples, centers);
|
||||
QuickCenters(index, samples, centers, type);
|
||||
else
|
||||
ElkanKmeans(index, samples, centers);
|
||||
ElkanKmeans(index, samples, centers, type);
|
||||
|
||||
CheckCenters(index, centers);
|
||||
CheckCenters(index, centers, type);
|
||||
}
|
||||
|
||||
@@ -5,6 +5,8 @@
|
||||
#include "access/relscan.h"
|
||||
#include "catalog/pg_operator_d.h"
|
||||
#include "catalog/pg_type_d.h"
|
||||
#include "halfvec.h"
|
||||
#include "lib/pairingheap.h"
|
||||
#include "ivfflat.h"
|
||||
#include "miscadmin.h"
|
||||
#include "pgstat.h"
|
||||
@@ -105,12 +107,7 @@ GetScanItems(IndexScanDesc scan, Datum value)
|
||||
IvfflatScanOpaque so = (IvfflatScanOpaque) scan->opaque;
|
||||
TupleDesc tupdesc = RelationGetDescr(scan->indexRelation);
|
||||
double tuples = 0;
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
TupleTableSlot *slot = MakeSingleTupleTableSlot(so->tupdesc, &TTSOpsVirtual);
|
||||
#else
|
||||
TupleTableSlot *slot = MakeSingleTupleTableSlot(so->tupdesc);
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Reuse same set of shared buffers for scan
|
||||
@@ -181,6 +178,42 @@ GetScanItems(IndexScanDesc scan, Datum value)
|
||||
tuplesort_performsort(so->sortstate);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get scan value
|
||||
*/
|
||||
static Datum
|
||||
GetScanValue(IndexScanDesc scan)
|
||||
{
|
||||
IvfflatScanOpaque so = (IvfflatScanOpaque) scan->opaque;
|
||||
Datum value;
|
||||
|
||||
if (scan->orderByData->sk_flags & SK_ISNULL)
|
||||
{
|
||||
IvfflatType type = IvfflatGetType(scan->indexRelation);
|
||||
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
value = PointerGetDatum(InitVector(so->dimensions));
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
value = PointerGetDatum(InitHalfVector(so->dimensions));
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
}
|
||||
else
|
||||
{
|
||||
value = scan->orderByData->sk_argument;
|
||||
|
||||
/* Value should not be compressed or toasted */
|
||||
Assert(!VARATT_IS_COMPRESSED(DatumGetPointer(value)));
|
||||
Assert(!VARATT_IS_EXTENDED(DatumGetPointer(value)));
|
||||
|
||||
/* Fine if normalization fails */
|
||||
if (so->normprocinfo != NULL)
|
||||
IvfflatNormValue(so->normprocinfo, so->collation, &value, IvfflatGetType(scan->indexRelation));
|
||||
}
|
||||
|
||||
return value;
|
||||
}
|
||||
|
||||
/*
|
||||
* Prepare for an index scan
|
||||
*/
|
||||
@@ -216,22 +249,14 @@ ivfflatbeginscan(Relation index, int nkeys, int norderbys)
|
||||
so->collation = index->rd_indcollation[0];
|
||||
|
||||
/* Create tuple description for sorting */
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
so->tupdesc = CreateTemplateTupleDesc(2);
|
||||
#else
|
||||
so->tupdesc = CreateTemplateTupleDesc(2, false);
|
||||
#endif
|
||||
TupleDescInitEntry(so->tupdesc, (AttrNumber) 1, "distance", FLOAT8OID, -1, 0);
|
||||
TupleDescInitEntry(so->tupdesc, (AttrNumber) 2, "heaptid", TIDOID, -1, 0);
|
||||
|
||||
/* Prep sort */
|
||||
so->sortstate = tuplesort_begin_heap(so->tupdesc, 1, attNums, sortOperators, sortCollations, nullsFirstFlags, work_mem, NULL, false);
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
so->slot = MakeSingleTupleTableSlot(so->tupdesc, &TTSOpsMinimalTuple);
|
||||
#else
|
||||
so->slot = MakeSingleTupleTableSlot(so->tupdesc);
|
||||
#endif
|
||||
|
||||
so->listQueue = pairingheap_allocate(CompareLists, scan);
|
||||
|
||||
@@ -293,21 +318,7 @@ ivfflatgettuple(IndexScanDesc scan, ScanDirection dir)
|
||||
if (!IsMVCCSnapshot(scan->xs_snapshot))
|
||||
elog(ERROR, "non-MVCC snapshots are not supported with ivfflat");
|
||||
|
||||
if (scan->orderByData->sk_flags & SK_ISNULL)
|
||||
value = PointerGetDatum(InitVector(so->dimensions));
|
||||
else
|
||||
{
|
||||
value = scan->orderByData->sk_argument;
|
||||
|
||||
/* Value should not be compressed or toasted */
|
||||
Assert(!VARATT_IS_COMPRESSED(DatumGetPointer(value)));
|
||||
Assert(!VARATT_IS_EXTENDED(DatumGetPointer(value)));
|
||||
|
||||
/* Fine if normalization fails */
|
||||
if (so->normprocinfo != NULL)
|
||||
IvfflatNormValue(so->normprocinfo, so->collation, &value, NULL);
|
||||
}
|
||||
|
||||
value = GetScanValue(scan);
|
||||
IvfflatBench("GetScanLists", GetScanLists(scan, value));
|
||||
IvfflatBench("GetScanItems", GetScanItems(scan, value));
|
||||
so->first = false;
|
||||
@@ -321,12 +332,8 @@ ivfflatgettuple(IndexScanDesc scan, ScanDirection dir)
|
||||
{
|
||||
ItemPointer heaptid = (ItemPointer) DatumGetPointer(slot_getattr(so->slot, 2, &so->isnull));
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
scan->xs_heaptid = *heaptid;
|
||||
#else
|
||||
scan->xs_ctup.t_self = *heaptid;
|
||||
#endif
|
||||
|
||||
scan->xs_recheck = false;
|
||||
scan->xs_recheckorderby = false;
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -1,21 +1,27 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "catalog/pg_type.h"
|
||||
#include "halfutils.h"
|
||||
#include "halfvec.h"
|
||||
#include "ivfflat.h"
|
||||
#include "storage/bufmgr.h"
|
||||
#include "vector.h"
|
||||
#include "utils/syscache.h"
|
||||
|
||||
/*
|
||||
* Allocate a vector array
|
||||
*/
|
||||
VectorArray
|
||||
VectorArrayInit(int maxlen, int dimensions)
|
||||
VectorArrayInit(int maxlen, int dimensions, Size itemsize)
|
||||
{
|
||||
VectorArray res = palloc(sizeof(VectorArrayData));
|
||||
|
||||
res->length = 0;
|
||||
res->maxlen = maxlen;
|
||||
res->dim = dimensions;
|
||||
res->items = palloc_extended(maxlen * VECTOR_SIZE(dimensions), MCXT_ALLOC_ZERO | MCXT_ALLOC_HUGE);
|
||||
res->itemsize = itemsize;
|
||||
res->items = palloc_extended(maxlen * itemsize, MCXT_ALLOC_ZERO | MCXT_ALLOC_HUGE);
|
||||
return res;
|
||||
}
|
||||
|
||||
@@ -29,16 +35,6 @@ VectorArrayFree(VectorArray arr)
|
||||
pfree(arr);
|
||||
}
|
||||
|
||||
/*
|
||||
* Print vector array - useful for debugging
|
||||
*/
|
||||
void
|
||||
PrintVectorArray(char *msg, VectorArray arr)
|
||||
{
|
||||
for (int i = 0; i < arr->length; i++)
|
||||
PrintVector(msg, VectorArrayGet(arr, i));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the number of lists in the index
|
||||
*/
|
||||
@@ -65,6 +61,37 @@ IvfflatOptionalProcInfo(Relation index, uint16 procnum)
|
||||
return index_getprocinfo(index, 1, procnum);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get type
|
||||
*/
|
||||
IvfflatType
|
||||
IvfflatGetType(Relation index)
|
||||
{
|
||||
Oid typid = TupleDescAttr(index->rd_att, 0)->atttypid;
|
||||
HeapTuple tuple;
|
||||
Form_pg_type type;
|
||||
IvfflatType result;
|
||||
|
||||
tuple = SearchSysCache1(TYPEOID, ObjectIdGetDatum(typid));
|
||||
if (!HeapTupleIsValid(tuple))
|
||||
elog(ERROR, "cache lookup failed for type %u", typid);
|
||||
|
||||
type = (Form_pg_type) GETSTRUCT(tuple);
|
||||
if (strcmp(NameStr(type->typname), "vector") == 0)
|
||||
result = IVFFLAT_TYPE_VECTOR;
|
||||
else if (strcmp(NameStr(type->typname), "halfvec") == 0)
|
||||
result = IVFFLAT_TYPE_HALFVEC;
|
||||
else
|
||||
{
|
||||
ReleaseSysCache(tuple);
|
||||
elog(ERROR, "type not supported for ivfflat index");
|
||||
}
|
||||
|
||||
ReleaseSysCache(tuple);
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
/*
|
||||
* Divide by the norm
|
||||
*
|
||||
@@ -74,21 +101,34 @@ IvfflatOptionalProcInfo(Relation index, uint16 procnum)
|
||||
* if it's different than the original value
|
||||
*/
|
||||
bool
|
||||
IvfflatNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, Vector * result)
|
||||
IvfflatNormValue(FmgrInfo *procinfo, Oid collation, Datum *value, IvfflatType type)
|
||||
{
|
||||
double norm = DatumGetFloat8(FunctionCall1Coll(procinfo, collation, *value));
|
||||
|
||||
if (norm > 0)
|
||||
{
|
||||
Vector *v = DatumGetVector(*value);
|
||||
if (type == IVFFLAT_TYPE_VECTOR)
|
||||
{
|
||||
Vector *v = DatumGetVector(*value);
|
||||
Vector *result = InitVector(v->dim);
|
||||
|
||||
if (result == NULL)
|
||||
result = InitVector(v->dim);
|
||||
for (int i = 0; i < v->dim; i++)
|
||||
result->x[i] = v->x[i] / norm;
|
||||
|
||||
for (int i = 0; i < v->dim; i++)
|
||||
result->x[i] = v->x[i] / norm;
|
||||
*value = PointerGetDatum(result);
|
||||
}
|
||||
else if (type == IVFFLAT_TYPE_HALFVEC)
|
||||
{
|
||||
HalfVector *v = DatumGetHalfVector(*value);
|
||||
HalfVector *result = InitHalfVector(v->dim);
|
||||
|
||||
*value = PointerGetDatum(result);
|
||||
for (int i = 0; i < v->dim; i++)
|
||||
result->x[i] = Float4ToHalfUnchecked(HalfToFloat4(v->x[i]) / norm);
|
||||
|
||||
*value = PointerGetDatum(result);
|
||||
}
|
||||
else
|
||||
elog(ERROR, "Unsupported type");
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -1,5 +1,6 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include "access/generic_xlog.h"
|
||||
#include "commands/vacuum.h"
|
||||
#include "ivfflat.h"
|
||||
#include "storage/bufmgr.h"
|
||||
|
||||
800
src/sparsevec.c
Normal file
800
src/sparsevec.c
Normal file
@@ -0,0 +1,800 @@
|
||||
#include "postgres.h"
|
||||
|
||||
#include <limits.h>
|
||||
#include <math.h>
|
||||
|
||||
#include "fmgr.h"
|
||||
#include "libpq/pqformat.h"
|
||||
#include "sparsevec.h"
|
||||
#include "utils/array.h"
|
||||
#include "utils/builtins.h"
|
||||
#include "vector.h"
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "common/shortest_dec.h"
|
||||
#include "utils/float.h"
|
||||
#else
|
||||
#include <float.h>
|
||||
#include "utils/builtins.h"
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Ensure same dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckDims(SparseVector * a, SparseVector * b)
|
||||
{
|
||||
if (a->dim != b->dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("different sparsevec dimensions %d and %d", a->dim, b->dim)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure expected dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckExpectedDim(int32 typmod, int dim)
|
||||
{
|
||||
if (typmod != -1 && typmod != dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("expected %d dimensions, not %d", typmod, dim)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure valid dimensions
|
||||
*/
|
||||
static inline void
|
||||
CheckDim(int dim)
|
||||
{
|
||||
if (dim < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("sparsevec must have at least 1 dimension")));
|
||||
|
||||
if (dim > SPARSEVEC_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("sparsevec cannot have more than %d dimensions", SPARSEVEC_MAX_DIM)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure valid nnz
|
||||
*/
|
||||
static inline void
|
||||
CheckNnz(int nnz, int dim)
|
||||
{
|
||||
if (nnz < 0)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("sparsevec cannot have negative number of elements")));
|
||||
|
||||
if (nnz > SPARSEVEC_MAX_NNZ)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("sparsevec cannot have more than %d non-zero elements", SPARSEVEC_MAX_NNZ)));
|
||||
|
||||
if (nnz > dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("sparsevec cannot have more elements than dimensions")));
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure valid index
|
||||
*/
|
||||
static inline void
|
||||
CheckIndex(int32 *indices, int i, int dim)
|
||||
{
|
||||
int32 index = indices[i];
|
||||
|
||||
if (index < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("index must be greater than zero")));
|
||||
|
||||
if (index > dim)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("index must be less than or equal to dimensions")));
|
||||
|
||||
if (i > 0)
|
||||
{
|
||||
if (index < indices[i - 1])
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("indexes must be in ascending order")));
|
||||
|
||||
if (index == indices[i - 1])
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("indexes must not contain duplicates")));
|
||||
}
|
||||
}
|
||||
|
||||
/*
|
||||
* Ensure finite element
|
||||
*/
|
||||
static inline void
|
||||
CheckElement(float value)
|
||||
{
|
||||
if (isnan(value))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("NaN not allowed in sparsevec")));
|
||||
|
||||
if (isinf(value))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("infinite value not allowed in sparsevec")));
|
||||
}
|
||||
|
||||
/*
|
||||
* Allocate and initialize a new sparse vector
|
||||
*/
|
||||
SparseVector *
|
||||
InitSparseVector(int dim, int nnz)
|
||||
{
|
||||
SparseVector *result;
|
||||
int size;
|
||||
|
||||
size = SPARSEVEC_SIZE(nnz);
|
||||
result = (SparseVector *) palloc0(size);
|
||||
SET_VARSIZE(result, size);
|
||||
result->dim = dim;
|
||||
result->nnz = nnz;
|
||||
|
||||
return result;
|
||||
}
|
||||
|
||||
/*
|
||||
* Check for whitespace, since array_isspace() is static
|
||||
*/
|
||||
static inline bool
|
||||
sparsevec_isspace(char ch)
|
||||
{
|
||||
if (ch == ' ' ||
|
||||
ch == '\t' ||
|
||||
ch == '\n' ||
|
||||
ch == '\r' ||
|
||||
ch == '\v' ||
|
||||
ch == '\f')
|
||||
return true;
|
||||
return false;
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert textual representation to internal representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_in);
|
||||
Datum
|
||||
sparsevec_in(PG_FUNCTION_ARGS)
|
||||
{
|
||||
char *lit = PG_GETARG_CSTRING(0);
|
||||
int32 typmod = PG_GETARG_INT32(2);
|
||||
int dim;
|
||||
char *pt = lit;
|
||||
char *stringEnd;
|
||||
SparseVector *result;
|
||||
float *rvalues;
|
||||
int32 *indices;
|
||||
float *values;
|
||||
int maxNnz;
|
||||
int nnz = 0;
|
||||
|
||||
maxNnz = 1;
|
||||
while (*pt != '\0')
|
||||
{
|
||||
if (*pt == ',')
|
||||
maxNnz++;
|
||||
|
||||
pt++;
|
||||
}
|
||||
|
||||
if (maxNnz > SPARSEVEC_MAX_NNZ)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
errmsg("sparsevec cannot have more than %d non-zero elements", SPARSEVEC_MAX_NNZ)));
|
||||
|
||||
indices = palloc(maxNnz * sizeof(int32));
|
||||
values = palloc(maxNnz * sizeof(float));
|
||||
|
||||
pt = lit;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != '{')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit),
|
||||
errdetail("Vector contents must start with \"{\".")));
|
||||
|
||||
pt++;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == '}')
|
||||
pt++;
|
||||
else
|
||||
{
|
||||
for (;;)
|
||||
{
|
||||
long index;
|
||||
float value;
|
||||
|
||||
/* TODO Better error */
|
||||
if (nnz == maxNnz)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("ran out of buffer: \"%s\"", lit)));
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
/* Check for empty string like float4in */
|
||||
if (*pt == '\0')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
|
||||
/* Use similar logic as int2vectorin */
|
||||
errno = 0;
|
||||
index = strtol(pt, &stringEnd, 10);
|
||||
|
||||
if (stringEnd == pt)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
|
||||
if (errno == ERANGE || index < 1 || index > INT_MAX)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NUMERIC_VALUE_OUT_OF_RANGE),
|
||||
errmsg("index \"%ld\" is out of range for type sparsevec", index)));
|
||||
|
||||
pt = stringEnd;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != ':')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
|
||||
pt++;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
errno = 0;
|
||||
|
||||
/* Use strtof like float4in to avoid a double-rounding problem */
|
||||
/* Postgres sets LC_NUMERIC to C on startup */
|
||||
value = strtof(pt, &stringEnd);
|
||||
|
||||
if (stringEnd == pt)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
|
||||
/* Check for range error like float4in */
|
||||
if (errno == ERANGE && (value == 0 || isinf(value)))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NUMERIC_VALUE_OUT_OF_RANGE),
|
||||
errmsg("\"%s\" is out of range for type sparsevec", pnstrdup(pt, stringEnd - pt))));
|
||||
|
||||
CheckElement(value);
|
||||
|
||||
/* Do not store zero values */
|
||||
if (value != 0)
|
||||
{
|
||||
indices[nnz] = index;
|
||||
values[nnz] = value;
|
||||
nnz++;
|
||||
}
|
||||
|
||||
pt = stringEnd;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == ',')
|
||||
pt++;
|
||||
else if (*pt == '}')
|
||||
{
|
||||
pt++;
|
||||
break;
|
||||
}
|
||||
else
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
}
|
||||
}
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != '/')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit),
|
||||
errdetail("Unexpected end of input.")));
|
||||
|
||||
pt++;
|
||||
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
/* Use similar logic as int2vectorin */
|
||||
errno = 0;
|
||||
dim = strtol(pt, &stringEnd, 10);
|
||||
|
||||
if (stringEnd == pt)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit)));
|
||||
|
||||
pt = stringEnd;
|
||||
|
||||
/* Only whitespace is allowed after the closing brace */
|
||||
while (sparsevec_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt != '\0')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type sparsevec: \"%s\"", lit),
|
||||
errdetail("Junk after closing.")));
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
result = InitSparseVector(dim, nnz);
|
||||
rvalues = SPARSEVEC_VALUES(result);
|
||||
for (int i = 0; i < nnz; i++)
|
||||
{
|
||||
result->indices[i] = indices[i];
|
||||
rvalues[i] = values[i];
|
||||
|
||||
CheckIndex(result->indices, i, dim);
|
||||
}
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
#define AppendChar(ptr, c) (*(ptr)++ = (c))
|
||||
#define AppendFloat(ptr, f) ((ptr) += float_to_shortest_decimal_bufn((f), (ptr)))
|
||||
|
||||
#if PG_VERSION_NUM >= 140000
|
||||
#define AppendInt(ptr, i) ((ptr) += pg_ltoa((i), (ptr)))
|
||||
#else
|
||||
#define AppendInt(ptr, i) \
|
||||
do { \
|
||||
pg_ltoa(i, ptr); \
|
||||
while (*ptr != '\0') \
|
||||
ptr++; \
|
||||
} while (0)
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Convert internal representation to textual representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_out);
|
||||
Datum
|
||||
sparsevec_out(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *sparsevec = PG_GETARG_SPARSEVEC_P(0);
|
||||
float *values = SPARSEVEC_VALUES(sparsevec);
|
||||
char *buf;
|
||||
char *ptr;
|
||||
|
||||
/*
|
||||
* Need:
|
||||
*
|
||||
* nnz * 10 bytes for index (positive integer)
|
||||
*
|
||||
* nnz bytes for :
|
||||
*
|
||||
* nnz * (FLOAT_SHORTEST_DECIMAL_LEN - 1) bytes for
|
||||
* float_to_shortest_decimal_bufn
|
||||
*
|
||||
* nnz - 1 bytes for ,
|
||||
*
|
||||
* 10 bytes for dimensions
|
||||
*
|
||||
* 4 bytes for {, }, /, and \0
|
||||
*/
|
||||
buf = (char *) palloc((11 + FLOAT_SHORTEST_DECIMAL_LEN) * sparsevec->nnz + 13);
|
||||
ptr = buf;
|
||||
|
||||
AppendChar(ptr, '{');
|
||||
|
||||
for (int i = 0; i < sparsevec->nnz; i++)
|
||||
{
|
||||
if (i > 0)
|
||||
AppendChar(ptr, ',');
|
||||
|
||||
AppendInt(ptr, sparsevec->indices[i]);
|
||||
AppendChar(ptr, ':');
|
||||
AppendFloat(ptr, values[i]);
|
||||
}
|
||||
|
||||
AppendChar(ptr, '}');
|
||||
AppendChar(ptr, '/');
|
||||
AppendInt(ptr, sparsevec->dim);
|
||||
*ptr = '\0';
|
||||
|
||||
PG_FREE_IF_COPY(sparsevec, 0);
|
||||
PG_RETURN_CSTRING(buf);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert type modifier
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_typmod_in);
|
||||
Datum
|
||||
sparsevec_typmod_in(PG_FUNCTION_ARGS)
|
||||
{
|
||||
ArrayType *ta = PG_GETARG_ARRAYTYPE_P(0);
|
||||
int32 *tl;
|
||||
int n;
|
||||
|
||||
tl = ArrayGetIntegerTypmods(ta, &n);
|
||||
|
||||
if (n != 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("invalid type modifier")));
|
||||
|
||||
if (*tl < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("dimensions for type sparsevec must be at least 1")));
|
||||
|
||||
if (*tl > SPARSEVEC_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_PARAMETER_VALUE),
|
||||
errmsg("dimensions for type sparsevec cannot exceed %d", SPARSEVEC_MAX_DIM)));
|
||||
|
||||
PG_RETURN_INT32(*tl);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert external binary representation to internal representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_recv);
|
||||
Datum
|
||||
sparsevec_recv(PG_FUNCTION_ARGS)
|
||||
{
|
||||
StringInfo buf = (StringInfo) PG_GETARG_POINTER(0);
|
||||
int32 typmod = PG_GETARG_INT32(2);
|
||||
SparseVector *result;
|
||||
int32 dim;
|
||||
int32 nnz;
|
||||
int32 unused;
|
||||
float *values;
|
||||
|
||||
dim = pq_getmsgint(buf, sizeof(int32));
|
||||
nnz = pq_getmsgint(buf, sizeof(int32));
|
||||
unused = pq_getmsgint(buf, sizeof(int32));
|
||||
|
||||
CheckDim(dim);
|
||||
CheckNnz(nnz, dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
if (unused != 0)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("expected unused to be 0, not %d", unused)));
|
||||
|
||||
result = InitSparseVector(dim, nnz);
|
||||
values = SPARSEVEC_VALUES(result);
|
||||
|
||||
for (int i = 0; i < nnz; i++)
|
||||
{
|
||||
result->indices[i] = pq_getmsgint(buf, sizeof(int32));
|
||||
CheckIndex(result->indices, i, dim);
|
||||
}
|
||||
|
||||
for (int i = 0; i < nnz; i++)
|
||||
{
|
||||
values[i] = pq_getmsgfloat4(buf);
|
||||
CheckElement(values[i]);
|
||||
}
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert internal representation to the external binary representation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_send);
|
||||
Datum
|
||||
sparsevec_send(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *svec = PG_GETARG_SPARSEVEC_P(0);
|
||||
float *values = SPARSEVEC_VALUES(svec);
|
||||
StringInfoData buf;
|
||||
|
||||
pq_begintypsend(&buf);
|
||||
pq_sendint(&buf, svec->dim, sizeof(int32));
|
||||
pq_sendint(&buf, svec->nnz, sizeof(int32));
|
||||
pq_sendint(&buf, svec->unused, sizeof(int32));
|
||||
for (int i = 0; i < svec->nnz; i++)
|
||||
pq_sendint(&buf, svec->indices[i], sizeof(int32));
|
||||
for (int i = 0; i < svec->nnz; i++)
|
||||
pq_sendfloat4(&buf, values[i]);
|
||||
|
||||
PG_RETURN_BYTEA_P(pq_endtypsend(&buf));
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert sparse vector to sparse vector
|
||||
* This is needed to check the type modifier
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec);
|
||||
Datum
|
||||
sparsevec(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *svec = PG_GETARG_SPARSEVEC_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
|
||||
CheckExpectedDim(typmod, svec->dim);
|
||||
|
||||
PG_RETURN_POINTER(svec);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert dense vector to sparse vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(vector_to_sparsevec);
|
||||
Datum
|
||||
vector_to_sparsevec(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *vec = PG_GETARG_VECTOR_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
SparseVector *result;
|
||||
int dim = vec->dim;
|
||||
int nnz = 0;
|
||||
float *values;
|
||||
int j = 0;
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (vec->x[i] != 0)
|
||||
nnz++;
|
||||
}
|
||||
|
||||
result = InitSparseVector(dim, nnz);
|
||||
values = SPARSEVEC_VALUES(result);
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (vec->x[i] != 0)
|
||||
{
|
||||
/* Safety check */
|
||||
if (j == nnz)
|
||||
elog(ERROR, "safety check failed");
|
||||
|
||||
result->indices[j] = i + 1;
|
||||
values[j] = vec->x[i];
|
||||
j++;
|
||||
}
|
||||
}
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 squared distance between sparse vectors
|
||||
*/
|
||||
static double
|
||||
SparsevecL2SquaredDistance(SparseVector * a, SparseVector * b)
|
||||
{
|
||||
float *ax = SPARSEVEC_VALUES(a);
|
||||
float *bx = SPARSEVEC_VALUES(b);
|
||||
double distance = 0.0;
|
||||
int bpos = 0;
|
||||
|
||||
for (int i = 0; i < a->nnz; i++)
|
||||
{
|
||||
int ai = a->indices[i];
|
||||
int bi = -1;
|
||||
|
||||
for (int j = bpos; j < b->nnz; j++)
|
||||
{
|
||||
bi = b->indices[j];
|
||||
|
||||
if (ai == bi)
|
||||
{
|
||||
double diff = ax[i] - bx[j];
|
||||
|
||||
distance += diff * diff;
|
||||
}
|
||||
else if (ai > bi)
|
||||
distance += bx[j] * bx[j];
|
||||
|
||||
/* Update start for next iteration */
|
||||
if (ai >= bi)
|
||||
bpos = j + 1;
|
||||
|
||||
/* Found or passed it */
|
||||
if (bi >= ai)
|
||||
break;
|
||||
}
|
||||
|
||||
if (ai != bi)
|
||||
distance += ax[i] * ax[i];
|
||||
}
|
||||
|
||||
for (int j = bpos; j < b->nnz; j++)
|
||||
distance += bx[j] * bx[j];
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 distance between sparse vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_l2_distance);
|
||||
Datum
|
||||
sparsevec_l2_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
SparseVector *b = PG_GETARG_SPARSEVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8(sqrt(SparsevecL2SquaredDistance(a, b)));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 squared distance between sparse vectors
|
||||
* This saves a sqrt calculation
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_l2_squared_distance);
|
||||
Datum
|
||||
sparsevec_l2_squared_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
SparseVector *b = PG_GETARG_SPARSEVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8(SparsevecL2SquaredDistance(a, b));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the inner product of two sparse vectors
|
||||
*/
|
||||
static double
|
||||
SparsevecInnerProduct(SparseVector * a, SparseVector * b)
|
||||
{
|
||||
float *ax = SPARSEVEC_VALUES(a);
|
||||
float *bx = SPARSEVEC_VALUES(b);
|
||||
double distance = 0.0;
|
||||
int bpos = 0;
|
||||
|
||||
for (int i = 0; i < a->nnz; i++)
|
||||
{
|
||||
int ai = a->indices[i];
|
||||
|
||||
for (int j = bpos; j < b->nnz; j++)
|
||||
{
|
||||
int bi = b->indices[j];
|
||||
|
||||
/* Only update when the same index */
|
||||
if (ai == bi)
|
||||
distance += ax[i] * bx[j];
|
||||
|
||||
/* Update start for next iteration */
|
||||
if (ai >= bi)
|
||||
bpos = j + 1;
|
||||
|
||||
/* Found or passed it */
|
||||
if (bi >= ai)
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the inner product of two sparse vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_inner_product);
|
||||
Datum
|
||||
sparsevec_inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
SparseVector *b = PG_GETARG_SPARSEVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8(SparsevecInnerProduct(a, b));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the negative inner product of two sparse vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_negative_inner_product);
|
||||
Datum
|
||||
sparsevec_negative_inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
SparseVector *b = PG_GETARG_SPARSEVEC_P(1);
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
PG_RETURN_FLOAT8(-SparsevecInnerProduct(a, b));
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the cosine distance between two sparse vectors
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_cosine_distance);
|
||||
Datum
|
||||
sparsevec_cosine_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
SparseVector *b = PG_GETARG_SPARSEVEC_P(1);
|
||||
float *ax = SPARSEVEC_VALUES(a);
|
||||
float *bx = SPARSEVEC_VALUES(b);
|
||||
float norma = 0.0;
|
||||
float normb = 0.0;
|
||||
double similarity;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
similarity = SparsevecInnerProduct(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->nnz; i++)
|
||||
norma += ax[i] * ax[i];
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < b->nnz; i++)
|
||||
normb += bx[i] * bx[i];
|
||||
|
||||
/* Use sqrt(a * b) over sqrt(a) * sqrt(b) */
|
||||
similarity /= sqrt((double) norma * (double) normb);
|
||||
|
||||
#ifdef _MSC_VER
|
||||
/* /fp:fast may not propagate NaN */
|
||||
if (isnan(similarity))
|
||||
PG_RETURN_FLOAT8(NAN);
|
||||
#endif
|
||||
|
||||
/* Keep in range */
|
||||
if (similarity > 1)
|
||||
similarity = 1.0;
|
||||
else if (similarity < -1)
|
||||
similarity = -1.0;
|
||||
|
||||
PG_RETURN_FLOAT8(1.0 - similarity);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 norm of a sparse vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_norm);
|
||||
Datum
|
||||
sparsevec_norm(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *a = PG_GETARG_SPARSEVEC_P(0);
|
||||
float *ax = SPARSEVEC_VALUES(a);
|
||||
double norm = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->nnz; i++)
|
||||
norm += (double) ax[i] * (double) ax[i];
|
||||
|
||||
PG_RETURN_FLOAT8(sqrt(norm));
|
||||
}
|
||||
25
src/sparsevec.h
Normal file
25
src/sparsevec.h
Normal file
@@ -0,0 +1,25 @@
|
||||
#ifndef SPARSEVEC_H
|
||||
#define SPARSEVEC_H
|
||||
|
||||
#define SPARSEVEC_MAX_DIM 100000
|
||||
#define SPARSEVEC_MAX_NNZ 16000
|
||||
|
||||
/* Ensure values are aligned */
|
||||
#define SPARSEVEC_SIZE(_nnz) (offsetof(SparseVector, indices) + MAXALIGN((_nnz) * sizeof(int32)) + (_nnz * sizeof(float)))
|
||||
#define SPARSEVEC_VALUES(x) ((float *) (((char *) (x)) + offsetof(SparseVector, indices) + MAXALIGN((x)->nnz * sizeof(int32))))
|
||||
#define DatumGetSparseVector(x) ((SparseVector *) PG_DETOAST_DATUM(x))
|
||||
#define PG_GETARG_SPARSEVEC_P(x) DatumGetSparseVector(PG_GETARG_DATUM(x))
|
||||
#define PG_RETURN_SPARSEVEC_P(x) PG_RETURN_POINTER(x)
|
||||
|
||||
typedef struct SparseVector
|
||||
{
|
||||
int32 vl_len_; /* varlena header (do not touch directly!) */
|
||||
int32 dim; /* number of dimensions */
|
||||
int32 nnz;
|
||||
int32 unused;
|
||||
int32 indices[FLEXIBLE_ARRAY_MEMBER];
|
||||
} SparseVector;
|
||||
|
||||
SparseVector *InitSparseVector(int dim, int nnz);
|
||||
|
||||
#endif
|
||||
336
src/vector.c
336
src/vector.c
@@ -2,15 +2,21 @@
|
||||
|
||||
#include <math.h>
|
||||
|
||||
#include "bitvector.h"
|
||||
#include "catalog/pg_type.h"
|
||||
#include "common/shortest_dec.h"
|
||||
#include "fmgr.h"
|
||||
#include "halfutils.h"
|
||||
#include "halfvec.h"
|
||||
#include "hnsw.h"
|
||||
#include "ivfflat.h"
|
||||
#include "lib/stringinfo.h"
|
||||
#include "libpq/pqformat.h"
|
||||
#include "port.h" /* for strtof() */
|
||||
#include "sparsevec.h"
|
||||
#include "utils/array.h"
|
||||
#include "utils/builtins.h"
|
||||
#include "utils/float.h"
|
||||
#include "utils/lsyscache.h"
|
||||
#include "utils/numeric.h"
|
||||
#include "vector.h"
|
||||
@@ -19,13 +25,6 @@
|
||||
#include "varatt.h"
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
#include "common/shortest_dec.h"
|
||||
#include "utils/float.h"
|
||||
#else
|
||||
#include <float.h>
|
||||
#endif
|
||||
|
||||
#if PG_VERSION_NUM < 130000
|
||||
#define TYPALIGN_DOUBLE 'd'
|
||||
#define TYPALIGN_INT 'i'
|
||||
@@ -34,6 +33,13 @@
|
||||
#define STATE_DIMS(x) (ARR_DIMS(x)[0] - 1)
|
||||
#define CreateStateDatums(dim) palloc(sizeof(Datum) * (dim + 1))
|
||||
|
||||
/* target_clones requires glibc */
|
||||
#if defined(__x86_64__) && defined(__gnu_linux__) && defined(__has_attribute) && __has_attribute(target_clones) && !defined(__FMA__)
|
||||
#define VECTOR_DISPATCH __attribute__((target_clones("default", "fma")))
|
||||
#else
|
||||
#define VECTOR_DISPATCH
|
||||
#endif
|
||||
|
||||
PG_MODULE_MAGIC;
|
||||
|
||||
/*
|
||||
@@ -43,6 +49,7 @@ PGDLLEXPORT void _PG_init(void);
|
||||
void
|
||||
_PG_init(void)
|
||||
{
|
||||
HalfvecInit();
|
||||
HnswInit();
|
||||
IvfflatInit();
|
||||
}
|
||||
@@ -181,27 +188,33 @@ vector_in(PG_FUNCTION_ARGS)
|
||||
int32 typmod = PG_GETARG_INT32(2);
|
||||
float x[VECTOR_MAX_DIM];
|
||||
int dim = 0;
|
||||
char *pt;
|
||||
char *stringEnd;
|
||||
char *pt = lit;
|
||||
Vector *result;
|
||||
char *litcopy = pstrdup(lit);
|
||||
char *str = litcopy;
|
||||
|
||||
while (vector_isspace(*str))
|
||||
str++;
|
||||
while (vector_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*str != '[')
|
||||
if (*pt != '[')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("malformed vector literal: \"%s\"", lit),
|
||||
errmsg("invalid input syntax for type vector: \"%s\"", lit),
|
||||
errdetail("Vector contents must start with \"[\".")));
|
||||
|
||||
str++;
|
||||
pt = strtok(str, ",");
|
||||
stringEnd = pt;
|
||||
pt++;
|
||||
|
||||
while (pt != NULL && *stringEnd != ']')
|
||||
while (vector_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == ']')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("vector must have at least 1 dimension")));
|
||||
|
||||
for (;;)
|
||||
{
|
||||
float val;
|
||||
char *stringEnd;
|
||||
|
||||
if (dim == VECTOR_MAX_DIM)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
|
||||
@@ -216,61 +229,55 @@ vector_in(PG_FUNCTION_ARGS)
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type vector: \"%s\"", lit)));
|
||||
|
||||
errno = 0;
|
||||
|
||||
/* Use strtof like float4in to avoid a double-rounding problem */
|
||||
x[dim] = strtof(pt, &stringEnd);
|
||||
CheckElement(x[dim]);
|
||||
dim++;
|
||||
/* Postgres sets LC_NUMERIC to C on startup */
|
||||
val = strtof(pt, &stringEnd);
|
||||
|
||||
if (stringEnd == pt)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type vector: \"%s\"", lit)));
|
||||
|
||||
while (vector_isspace(*stringEnd))
|
||||
stringEnd++;
|
||||
/* Check for range error like float4in */
|
||||
if (errno == ERANGE && isinf(val))
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_NUMERIC_VALUE_OUT_OF_RANGE),
|
||||
errmsg("\"%s\" is out of range for type vector", pnstrdup(pt, stringEnd - pt))));
|
||||
|
||||
if (*stringEnd != '\0' && *stringEnd != ']')
|
||||
CheckElement(val);
|
||||
x[dim++] = val;
|
||||
|
||||
pt = stringEnd;
|
||||
|
||||
while (vector_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*pt == ',')
|
||||
pt++;
|
||||
else if (*pt == ']')
|
||||
{
|
||||
pt++;
|
||||
break;
|
||||
}
|
||||
else
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("invalid input syntax for type vector: \"%s\"", lit)));
|
||||
|
||||
pt = strtok(NULL, ",");
|
||||
}
|
||||
|
||||
if (stringEnd == NULL || *stringEnd != ']')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("malformed vector literal: \"%s\"", lit),
|
||||
errdetail("Unexpected end of input.")));
|
||||
|
||||
stringEnd++;
|
||||
|
||||
/* Only whitespace is allowed after the closing brace */
|
||||
while (vector_isspace(*stringEnd))
|
||||
stringEnd++;
|
||||
while (vector_isspace(*pt))
|
||||
pt++;
|
||||
|
||||
if (*stringEnd != '\0')
|
||||
if (*pt != '\0')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("malformed vector literal: \"%s\"", lit),
|
||||
errmsg("invalid input syntax for type vector: \"%s\"", lit),
|
||||
errdetail("Junk after closing right brace.")));
|
||||
|
||||
/* Ensure no consecutive delimiters since strtok skips */
|
||||
for (pt = lit + 1; *pt != '\0'; pt++)
|
||||
{
|
||||
if (pt[-1] == ',' && *pt == ',')
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
|
||||
errmsg("malformed vector literal: \"%s\"", lit)));
|
||||
}
|
||||
|
||||
if (dim < 1)
|
||||
ereport(ERROR,
|
||||
(errcode(ERRCODE_DATA_EXCEPTION),
|
||||
errmsg("vector must have at least 1 dimension")));
|
||||
|
||||
pfree(litcopy);
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
result = InitVector(dim);
|
||||
@@ -280,6 +287,9 @@ vector_in(PG_FUNCTION_ARGS)
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
#define AppendChar(ptr, c) (*(ptr)++ = (c))
|
||||
#define AppendFloat(ptr, f) ((ptr) += float_to_shortest_decimal_bufn((f), (ptr)))
|
||||
|
||||
/*
|
||||
* Convert internal representation to textual representation
|
||||
*/
|
||||
@@ -291,16 +301,6 @@ vector_out(PG_FUNCTION_ARGS)
|
||||
int dim = vector->dim;
|
||||
char *buf;
|
||||
char *ptr;
|
||||
int n;
|
||||
|
||||
#if PG_VERSION_NUM < 120000
|
||||
int ndig = FLT_DIG + extra_float_digits;
|
||||
|
||||
if (ndig < 1)
|
||||
ndig = 1;
|
||||
|
||||
#define FLOAT_SHORTEST_DECIMAL_LEN (ndig + 10)
|
||||
#endif
|
||||
|
||||
/*
|
||||
* Need:
|
||||
@@ -315,25 +315,17 @@ vector_out(PG_FUNCTION_ARGS)
|
||||
buf = (char *) palloc(FLOAT_SHORTEST_DECIMAL_LEN * dim + 2);
|
||||
ptr = buf;
|
||||
|
||||
*ptr = '[';
|
||||
ptr++;
|
||||
AppendChar(ptr, '[');
|
||||
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (i > 0)
|
||||
{
|
||||
*ptr = ',';
|
||||
ptr++;
|
||||
}
|
||||
AppendChar(ptr, ',');
|
||||
|
||||
#if PG_VERSION_NUM >= 120000
|
||||
n = float_to_shortest_decimal_bufn(vector->x[i], ptr);
|
||||
#else
|
||||
n = sprintf(ptr, "%.*g", ndig, vector->x[i]);
|
||||
#endif
|
||||
ptr += n;
|
||||
AppendFloat(ptr, vector->x[i]);
|
||||
}
|
||||
*ptr = ']';
|
||||
ptr++;
|
||||
|
||||
AppendChar(ptr, ']');
|
||||
*ptr = '\0';
|
||||
|
||||
PG_FREE_IF_COPY(vector, 0);
|
||||
@@ -550,6 +542,44 @@ vector_to_float4(PG_FUNCTION_ARGS)
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert half vector to vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(halfvec_to_vector);
|
||||
Datum
|
||||
halfvec_to_vector(PG_FUNCTION_ARGS)
|
||||
{
|
||||
HalfVector *vec = PG_GETARG_HALFVEC_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
Vector *result;
|
||||
|
||||
CheckDim(vec->dim);
|
||||
CheckExpectedDim(typmod, vec->dim);
|
||||
|
||||
result = InitVector(vec->dim);
|
||||
|
||||
for (int i = 0; i < vec->dim; i++)
|
||||
result->x[i] = HalfToFloat4(vec->x[i]);
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
VECTOR_DISPATCH static float
|
||||
VectorL2SquaredDistance(int dim, float *ax, float *bx)
|
||||
{
|
||||
float distance = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
float diff = ax[i] - bx[i];
|
||||
|
||||
distance += diff * diff;
|
||||
}
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
/*
|
||||
* Get the L2 distance between vectors
|
||||
*/
|
||||
@@ -559,21 +589,10 @@ l2_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
Vector *b = PG_GETARG_VECTOR_P(1);
|
||||
float *ax = a->x;
|
||||
float *bx = b->x;
|
||||
float distance = 0.0;
|
||||
float diff;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
{
|
||||
diff = ax[i] - bx[i];
|
||||
distance += diff * diff;
|
||||
}
|
||||
|
||||
PG_RETURN_FLOAT8(sqrt((double) distance));
|
||||
PG_RETURN_FLOAT8(sqrt((double) VectorL2SquaredDistance(a->dim, a->x, b->x)));
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -586,21 +605,22 @@ vector_l2_squared_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
Vector *b = PG_GETARG_VECTOR_P(1);
|
||||
float *ax = a->x;
|
||||
float *bx = b->x;
|
||||
float distance = 0.0;
|
||||
float diff;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
{
|
||||
diff = ax[i] - bx[i];
|
||||
distance += diff * diff;
|
||||
}
|
||||
PG_RETURN_FLOAT8((double) VectorL2SquaredDistance(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
PG_RETURN_FLOAT8((double) distance);
|
||||
VECTOR_DISPATCH static float
|
||||
VectorInnerProduct(int dim, float *ax, float *bx)
|
||||
{
|
||||
float distance = 0.0;
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < dim; i++)
|
||||
distance += ax[i] * bx[i];
|
||||
|
||||
return distance;
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -612,17 +632,10 @@ inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
Vector *b = PG_GETARG_VECTOR_P(1);
|
||||
float *ax = a->x;
|
||||
float *bx = b->x;
|
||||
float distance = 0.0;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
distance += ax[i] * bx[i];
|
||||
|
||||
PG_RETURN_FLOAT8((double) distance);
|
||||
PG_RETURN_FLOAT8((double) VectorInnerProduct(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -634,17 +647,10 @@ vector_negative_inner_product(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
Vector *b = PG_GETARG_VECTOR_P(1);
|
||||
float *ax = a->x;
|
||||
float *bx = b->x;
|
||||
float distance = 0.0;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
distance += ax[i] * bx[i];
|
||||
|
||||
PG_RETURN_FLOAT8((double) distance * -1);
|
||||
PG_RETURN_FLOAT8((double) -VectorInnerProduct(a->dim, a->x, b->x));
|
||||
}
|
||||
|
||||
/*
|
||||
@@ -702,18 +708,11 @@ vector_spherical_distance(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
Vector *b = PG_GETARG_VECTOR_P(1);
|
||||
float *ax = a->x;
|
||||
float *bx = b->x;
|
||||
float dp = 0.0;
|
||||
double distance;
|
||||
|
||||
CheckDims(a, b);
|
||||
|
||||
/* Auto-vectorized */
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
dp += ax[i] * bx[i];
|
||||
|
||||
distance = (double) dp;
|
||||
distance = (double) VectorInnerProduct(a->dim, a->x, b->x);
|
||||
|
||||
/* Prevent NaN with acos with loss of precision */
|
||||
if (distance > 1)
|
||||
@@ -878,15 +877,66 @@ vector_mul(PG_FUNCTION_ARGS)
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Quantize a vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(quantize_binary);
|
||||
Datum
|
||||
quantize_binary(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
float *ax = a->x;
|
||||
VarBit *result = InitBitVector(a->dim);
|
||||
unsigned char *rx = VARBITS(result);
|
||||
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
rx[i / 8] |= (ax[i] > 0) << (7 - (i % 8));
|
||||
|
||||
PG_RETURN_VARBIT_P(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Get a subvector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(subvector);
|
||||
Datum
|
||||
subvector(PG_FUNCTION_ARGS)
|
||||
{
|
||||
Vector *a = PG_GETARG_VECTOR_P(0);
|
||||
int32 start = PG_GETARG_INT32(1);
|
||||
int32 count = PG_GETARG_INT32(2);
|
||||
int32 end = start + count;
|
||||
float *ax = a->x;
|
||||
Vector *result;
|
||||
int dim;
|
||||
|
||||
/* Indexing starts at 1, like substring */
|
||||
if (start < 1)
|
||||
start = 1;
|
||||
|
||||
if (end > a->dim)
|
||||
end = a->dim + 1;
|
||||
|
||||
dim = end - start;
|
||||
CheckDim(dim);
|
||||
result = InitVector(dim);
|
||||
|
||||
for (int i = 0; i < dim; i++)
|
||||
result->x[i] = ax[start - 1 + i];
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Internal helper to compare vectors
|
||||
*/
|
||||
int
|
||||
vector_cmp_internal(Vector * a, Vector * b)
|
||||
{
|
||||
CheckDims(a, b);
|
||||
int dim = Min(a->dim, b->dim);
|
||||
|
||||
for (int i = 0; i < a->dim; i++)
|
||||
/* Check values before dimensions to be consistent with Postgres arrays */
|
||||
for (int i = 0; i < dim; i++)
|
||||
{
|
||||
if (a->x[i] < b->x[i])
|
||||
return -1;
|
||||
@@ -894,6 +944,13 @@ vector_cmp_internal(Vector * a, Vector * b)
|
||||
if (a->x[i] > b->x[i])
|
||||
return 1;
|
||||
}
|
||||
|
||||
if (a->dim < b->dim)
|
||||
return -1;
|
||||
|
||||
if (a->dim > b->dim)
|
||||
return 1;
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
@@ -1152,3 +1209,26 @@ vector_avg(PG_FUNCTION_ARGS)
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
/*
|
||||
* Convert sparse vector to dense vector
|
||||
*/
|
||||
PGDLLEXPORT PG_FUNCTION_INFO_V1(sparsevec_to_vector);
|
||||
Datum
|
||||
sparsevec_to_vector(PG_FUNCTION_ARGS)
|
||||
{
|
||||
SparseVector *svec = PG_GETARG_SPARSEVEC_P(0);
|
||||
int32 typmod = PG_GETARG_INT32(1);
|
||||
Vector *result;
|
||||
int dim = svec->dim;
|
||||
float *values = SPARSEVEC_VALUES(svec);
|
||||
|
||||
CheckDim(dim);
|
||||
CheckExpectedDim(typmod, dim);
|
||||
|
||||
result = InitVector(dim);
|
||||
for (int i = 0; i < svec->nnz; i++)
|
||||
result->x[svec->indices[i] - 1] = values[i];
|
||||
|
||||
PG_RETURN_POINTER(result);
|
||||
}
|
||||
|
||||
104
test/expected/bit_functions.out
Normal file
104
test/expected/bit_functions.out
Normal file
@@ -0,0 +1,104 @@
|
||||
SELECT hamming_distance('111', '111');
|
||||
hamming_distance
|
||||
------------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('111', '110');
|
||||
hamming_distance
|
||||
------------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('111', '100');
|
||||
hamming_distance
|
||||
------------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('111', '000');
|
||||
hamming_distance
|
||||
------------------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('10101010101010101010', '01010101010101010101');
|
||||
hamming_distance
|
||||
------------------
|
||||
20
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('', '');
|
||||
hamming_distance
|
||||
------------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('111', '00');
|
||||
ERROR: different bit lengths 3 and 2
|
||||
SELECT hamming_distance('111', '000'::varbit(4));
|
||||
hamming_distance
|
||||
------------------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT hamming_distance('111', '0000'::varbit(4));
|
||||
ERROR: different bit lengths 3 and 4
|
||||
SELECT jaccard_distance('1111', '1111');
|
||||
jaccard_distance
|
||||
------------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '1110');
|
||||
jaccard_distance
|
||||
------------------
|
||||
0.25
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '1100');
|
||||
jaccard_distance
|
||||
------------------
|
||||
0.5
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '1000');
|
||||
jaccard_distance
|
||||
------------------
|
||||
0.75
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '0000');
|
||||
jaccard_distance
|
||||
------------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1100', '1000');
|
||||
jaccard_distance
|
||||
------------------
|
||||
0.5
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('10101010101010101010', '01010101010101010101');
|
||||
jaccard_distance
|
||||
------------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('', '');
|
||||
jaccard_distance
|
||||
------------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '000');
|
||||
ERROR: different bit lengths 4 and 3
|
||||
SELECT jaccard_distance('1111', '0000'::varbit(5));
|
||||
jaccard_distance
|
||||
------------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT jaccard_distance('1111', '00000'::varbit(5));
|
||||
ERROR: different bit lengths 4 and 5
|
||||
@@ -28,6 +28,26 @@ SELECT ARRAY[1,2,3]::numeric[]::vector;
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector::real[];
|
||||
float4
|
||||
---------
|
||||
{1,2,3}
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::real[]::vector;
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::real[]::vector(3);
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::real[]::vector(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '{NULL}'::real[]::vector;
|
||||
ERROR: array must not contain nulls
|
||||
SELECT '{NaN}'::real[]::vector;
|
||||
@@ -40,12 +60,116 @@ SELECT '{}'::real[]::vector;
|
||||
ERROR: vector must have at least 1 dimension
|
||||
SELECT '{{1}}'::real[]::vector;
|
||||
ERROR: array must be 1-D
|
||||
SELECT '[1,2,3]'::vector::real[];
|
||||
float4
|
||||
SELECT '{1,2,3}'::double precision[]::vector;
|
||||
vector
|
||||
---------
|
||||
{1,2,3}
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::double precision[]::vector(3);
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::double precision[]::vector(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '{4e38,-4e38}'::double precision[]::vector;
|
||||
ERROR: infinite value not allowed in vector
|
||||
SELECT '{1e-46,-1e-46}'::double precision[]::vector;
|
||||
vector
|
||||
--------
|
||||
[0,-0]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector::halfvec(3);
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector::halfvec(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '[65520]'::vector::halfvec;
|
||||
ERROR: "65520" is out of range for type halfvec
|
||||
SELECT '[1e-8]'::vector::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[0]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::halfvec::vector;
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::halfvec::vector(3);
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::halfvec::vector(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '{1,2,3}'::real[]::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::real[]::halfvec(3);
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '{1,2,3}'::real[]::halfvec(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '{65520,-65520}'::real[]::halfvec;
|
||||
ERROR: "65520" is out of range for type halfvec
|
||||
SELECT '{1e-8,-1e-8}'::real[]::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[0,-0]
|
||||
(1 row)
|
||||
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec;
|
||||
sparsevec
|
||||
-----------------
|
||||
{2:1.5,4:3.5}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec(5);
|
||||
sparsevec
|
||||
-----------------
|
||||
{2:1.5,4:3.5}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec(4);
|
||||
ERROR: expected 4 dimensions, not 5
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector;
|
||||
vector
|
||||
-----------------
|
||||
[0,1.5,0,3.5,0]
|
||||
(1 row)
|
||||
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector(5);
|
||||
vector
|
||||
-----------------
|
||||
[0,1.5,0,3.5,0]
|
||||
(1 row)
|
||||
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector(4);
|
||||
ERROR: expected 4 dimensions, not 5
|
||||
SELECT '{}/16001'::sparsevec::vector;
|
||||
ERROR: vector cannot have more than 16000 dimensions
|
||||
SELECT array_agg(n)::vector FROM generate_series(1, 16001) n;
|
||||
ERROR: vector cannot have more than 16000 dimensions
|
||||
SELECT array_to_vector(array_agg(n), 16001, false) FROM generate_series(1, 16001) n;
|
||||
|
||||
@@ -1,15 +1,15 @@
|
||||
CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE TABLE t2 (val vector(3));
|
||||
CREATE TABLE t (val vector(3), val2 halfvec(3), val3 sparsevec(3));
|
||||
INSERT INTO t (val, val2, val3) VALUES ('[0,0,0]', '[0,0,0]', '{}/3'), ('[1,2,3]', '[1,2,3]', '{1:1,2:2,3:3}/3'), ('[1,1,1]', '[1,1,1]', '{1:1,2:1,3:1}/3'), (NULL, NULL, NULL);
|
||||
CREATE TABLE t2 (val vector(3), val2 halfvec(3), val3 sparsevec(3));
|
||||
\copy t TO 'results/data.bin' WITH (FORMAT binary)
|
||||
\copy t2 FROM 'results/data.bin' WITH (FORMAT binary)
|
||||
SELECT * FROM t2 ORDER BY val;
|
||||
val
|
||||
---------
|
||||
[0,0,0]
|
||||
[1,1,1]
|
||||
[1,2,3]
|
||||
|
||||
val | val2 | val3
|
||||
---------+---------+-----------------
|
||||
[0,0,0] | [0,0,0] | {}/3
|
||||
[1,1,1] | [1,1,1] | {1:1,2:1,3:1}/3
|
||||
[1,2,3] | [1,2,3] | {1:1,2:2,3:3}/3
|
||||
| |
|
||||
(4 rows)
|
||||
|
||||
DROP TABLE t;
|
||||
|
||||
@@ -1,210 +0,0 @@
|
||||
SELECT '[1,2,3]'::vector + '[4,5,6]';
|
||||
?column?
|
||||
----------
|
||||
[5,7,9]
|
||||
(1 row)
|
||||
|
||||
SELECT '[3e38]'::vector + '[3e38]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1,2,3]'::vector - '[4,5,6]';
|
||||
?column?
|
||||
------------
|
||||
[-3,-3,-3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[-3e38]'::vector - '[3e38]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1,2,3]'::vector * '[4,5,6]';
|
||||
?column?
|
||||
-----------
|
||||
[4,10,18]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1e37]'::vector * '[1e37]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1e-37]'::vector * '[1e-37]';
|
||||
ERROR: value out of range: underflow
|
||||
SELECT vector_dims('[1,2,3]');
|
||||
vector_dims
|
||||
-------------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT round(vector_norm('[1,1]')::numeric, 5);
|
||||
round
|
||||
---------
|
||||
1.41421
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[3,4]');
|
||||
vector_norm
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[0,1]');
|
||||
vector_norm
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[3e37,4e37]')::real;
|
||||
vector_norm
|
||||
-------------
|
||||
5e+37
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]', '[3,4]');
|
||||
l2_distance
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]', '[0,1]');
|
||||
l2_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[1,2]', '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT l2_distance('[3e38]', '[-3e38]');
|
||||
l2_distance
|
||||
-------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]', '[3,4]');
|
||||
inner_product
|
||||
---------------
|
||||
11
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]', '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT inner_product('[3e38]', '[3e38]');
|
||||
inner_product
|
||||
---------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]', '[2,4]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]', '[0,0]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]', '[1,1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,0]', '[0,2]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]', '[-1,-1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]', '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT cosine_distance('[1,1]', '[1.1,1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]', '[-1.1,-1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[3e38]', '[3e38]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]', '[3,4]');
|
||||
l1_distance
|
||||
-------------
|
||||
7
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]', '[0,1]');
|
||||
l1_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[1,2]', '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT l1_distance('[3e38]', '[-3e38]');
|
||||
l1_distance
|
||||
-------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
avg
|
||||
-----------
|
||||
[2,3.5,5]
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
avg
|
||||
-----------
|
||||
[2,3.5,5]
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
avg
|
||||
-----
|
||||
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
ERROR: expected 2 dimensions, not 1
|
||||
SELECT avg(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
avg
|
||||
---------
|
||||
[3e+38]
|
||||
(1 row)
|
||||
|
||||
SELECT vector_avg(array_agg(n)) FROM generate_series(1, 16002) n;
|
||||
ERROR: vector cannot have more than 16000 dimensions
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
sum
|
||||
----------
|
||||
[4,7,10]
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
sum
|
||||
----------
|
||||
[4,7,10]
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
sum
|
||||
-----
|
||||
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT sum(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
ERROR: value out of range: overflow
|
||||
176
test/expected/halfvec_functions.out
Normal file
176
test/expected/halfvec_functions.out
Normal file
@@ -0,0 +1,176 @@
|
||||
SELECT round(halfvec_norm('[1,1]')::numeric, 5);
|
||||
round
|
||||
---------
|
||||
1.41421
|
||||
(1 row)
|
||||
|
||||
SELECT halfvec_norm('[3,4]');
|
||||
halfvec_norm
|
||||
--------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT halfvec_norm('[0,1]');
|
||||
halfvec_norm
|
||||
--------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]'::halfvec, '[3,4]');
|
||||
l2_distance
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]'::halfvec, '[0,1]');
|
||||
l2_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[1,2]'::halfvec, '[3]');
|
||||
ERROR: different halfvec dimensions 2 and 1
|
||||
SELECT l2_distance('[1,1,1,1,1,1,1,1,1]'::halfvec, '[1,1,1,1,1,1,1,4,5]');
|
||||
l2_distance
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT '[0,0]'::halfvec <-> '[3,4]';
|
||||
?column?
|
||||
----------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]'::halfvec, '[3,4]');
|
||||
inner_product
|
||||
---------------
|
||||
11
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]'::halfvec, '[3]');
|
||||
ERROR: different halfvec dimensions 2 and 1
|
||||
SELECT inner_product('[65504]'::halfvec, '[65504]');
|
||||
inner_product
|
||||
---------------
|
||||
4290774016
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,1,1,1,1,1,1,1,1]'::halfvec, '[1,2,3,4,5,6,7,8,9]');
|
||||
inner_product
|
||||
---------------
|
||||
45
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2]'::halfvec <#> '[3,4]';
|
||||
?column?
|
||||
----------
|
||||
-11
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[2,4]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[0,0]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[1,1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,0]'::halfvec, '[0,2]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[-1,-1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[3]');
|
||||
ERROR: different halfvec dimensions 2 and 1
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[1.1,1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[-1.1,-1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2]'::halfvec <=> '[2,4]';
|
||||
?column?
|
||||
----------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]'::halfvec, '[3,4]');
|
||||
l1_distance
|
||||
-------------
|
||||
7
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]'::halfvec, '[0,1]');
|
||||
l1_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[1,2]'::halfvec, '[3]');
|
||||
ERROR: different halfvec dimensions 2 and 1
|
||||
SELECT quantize_binary('[1,0,-1]'::halfvec);
|
||||
quantize_binary
|
||||
-----------------
|
||||
100
|
||||
(1 row)
|
||||
|
||||
SELECT quantize_binary('[0,0.1,-0.2,-0.3,0.4,0.5,0.6,-0.7,0.8,-0.9,1]'::halfvec);
|
||||
quantize_binary
|
||||
-----------------
|
||||
01001110101
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 1, 3);
|
||||
subvector
|
||||
-----------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, 2);
|
||||
subvector
|
||||
-----------
|
||||
[3,4]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, -1, 3);
|
||||
subvector
|
||||
-----------
|
||||
[1]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, 9);
|
||||
subvector
|
||||
-----------
|
||||
[3,4,5]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 1, 0);
|
||||
ERROR: halfvec must have at least 1 dimension
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, -1);
|
||||
ERROR: halfvec must have at least 1 dimension
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, -1, 2);
|
||||
ERROR: halfvec must have at least 1 dimension
|
||||
164
test/expected/halfvec_input.out
Normal file
164
test/expected/halfvec_input.out
Normal file
@@ -0,0 +1,164 @@
|
||||
SELECT '[1,2,3]'::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[-1,-2,-3]'::halfvec;
|
||||
halfvec
|
||||
------------
|
||||
[-1,-2,-3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1.,2.,3.]'::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT ' [ 1, 2 , 3 ] '::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1.23456]'::halfvec;
|
||||
halfvec
|
||||
------------
|
||||
[1.234375]
|
||||
(1 row)
|
||||
|
||||
SELECT '[hello,1]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[hello,1]"
|
||||
LINE 1: SELECT '[hello,1]'::halfvec;
|
||||
^
|
||||
SELECT '[NaN,1]'::halfvec;
|
||||
ERROR: NaN not allowed in halfvec
|
||||
LINE 1: SELECT '[NaN,1]'::halfvec;
|
||||
^
|
||||
SELECT '[Infinity,1]'::halfvec;
|
||||
ERROR: infinite value not allowed in halfvec
|
||||
LINE 1: SELECT '[Infinity,1]'::halfvec;
|
||||
^
|
||||
SELECT '[-Infinity,1]'::halfvec;
|
||||
ERROR: infinite value not allowed in halfvec
|
||||
LINE 1: SELECT '[-Infinity,1]'::halfvec;
|
||||
^
|
||||
SELECT '[65519,-65519]'::halfvec;
|
||||
halfvec
|
||||
----------------
|
||||
[65504,-65504]
|
||||
(1 row)
|
||||
|
||||
SELECT '[65520,-65520]'::halfvec;
|
||||
ERROR: "65520" is out of range for type halfvec
|
||||
LINE 1: SELECT '[65520,-65520]'::halfvec;
|
||||
^
|
||||
SELECT '[1e-8,-1e-8]'::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[0,-0]
|
||||
(1 row)
|
||||
|
||||
SELECT '[4e38,1]'::halfvec;
|
||||
ERROR: "4e38" is out of range for type halfvec
|
||||
LINE 1: SELECT '[4e38,1]'::halfvec;
|
||||
^
|
||||
SELECT '[1e-46,1]'::halfvec;
|
||||
halfvec
|
||||
---------
|
||||
[0,1]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1,2,3"
|
||||
LINE 1: SELECT '[1,2,3'::halfvec;
|
||||
^
|
||||
SELECT '[1,2,3]9'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1,2,3]9"
|
||||
LINE 1: SELECT '[1,2,3]9'::halfvec;
|
||||
^
|
||||
DETAIL: Junk after closing right brace.
|
||||
SELECT '1,2,3'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "1,2,3"
|
||||
LINE 1: SELECT '1,2,3'::halfvec;
|
||||
^
|
||||
DETAIL: Vector contents must start with "[".
|
||||
SELECT ''::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: ""
|
||||
LINE 1: SELECT ''::halfvec;
|
||||
^
|
||||
DETAIL: Vector contents must start with "[".
|
||||
SELECT '['::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "["
|
||||
LINE 1: SELECT '['::halfvec;
|
||||
^
|
||||
SELECT '[ '::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[ "
|
||||
LINE 1: SELECT '[ '::halfvec;
|
||||
^
|
||||
SELECT '[,'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[,"
|
||||
LINE 1: SELECT '[,'::halfvec;
|
||||
^
|
||||
SELECT '[]'::halfvec;
|
||||
ERROR: halfvec must have at least 1 dimension
|
||||
LINE 1: SELECT '[]'::halfvec;
|
||||
^
|
||||
SELECT '[ ]'::halfvec;
|
||||
ERROR: halfvec must have at least 1 dimension
|
||||
LINE 1: SELECT '[ ]'::halfvec;
|
||||
^
|
||||
SELECT '[,]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[,]"
|
||||
LINE 1: SELECT '[,]'::halfvec;
|
||||
^
|
||||
SELECT '[1,]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1,]"
|
||||
LINE 1: SELECT '[1,]'::halfvec;
|
||||
^
|
||||
SELECT '[1a]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1a]"
|
||||
LINE 1: SELECT '[1a]'::halfvec;
|
||||
^
|
||||
SELECT '[1,,3]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1,,3]"
|
||||
LINE 1: SELECT '[1,,3]'::halfvec;
|
||||
^
|
||||
SELECT '[1, ,3]'::halfvec;
|
||||
ERROR: invalid input syntax for type halfvec: "[1, ,3]"
|
||||
LINE 1: SELECT '[1, ,3]'::halfvec;
|
||||
^
|
||||
SELECT '[1,2,3]'::halfvec(3);
|
||||
halfvec
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::halfvec(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '[1,2,3]'::halfvec(3, 2);
|
||||
ERROR: invalid type modifier
|
||||
LINE 1: SELECT '[1,2,3]'::halfvec(3, 2);
|
||||
^
|
||||
SELECT '[1,2,3]'::halfvec('a');
|
||||
ERROR: invalid input syntax for type integer: "a"
|
||||
LINE 1: SELECT '[1,2,3]'::halfvec('a');
|
||||
^
|
||||
SELECT '[1,2,3]'::halfvec(0);
|
||||
ERROR: dimensions for type halfvec must be at least 1
|
||||
LINE 1: SELECT '[1,2,3]'::halfvec(0);
|
||||
^
|
||||
SELECT '[1,2,3]'::halfvec(16001);
|
||||
ERROR: dimensions for type halfvec cannot exceed 16000
|
||||
LINE 1: SELECT '[1,2,3]'::halfvec(16001);
|
||||
^
|
||||
SELECT unnest('{"[1,2,3]", "[4,5,6]"}'::halfvec[]);
|
||||
unnest
|
||||
---------
|
||||
[1,2,3]
|
||||
[4,5,6]
|
||||
(2 rows)
|
||||
|
||||
SELECT '{"[1,2,3]"}'::halfvec(2)[];
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
29
test/expected/hnsw_bit_hamming.out
Normal file
29
test/expected/hnsw_bit_hamming.out
Normal file
@@ -0,0 +1,29 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val bit(3));
|
||||
INSERT INTO t (val) VALUES (B'000'), (B'100'), (B'111'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val bit_hamming_ops);
|
||||
INSERT INTO t (val) VALUES (B'110');
|
||||
SELECT * FROM t ORDER BY val <~> B'111';
|
||||
val
|
||||
-----
|
||||
111
|
||||
110
|
||||
100
|
||||
000
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <~> (SELECT NULL::bit)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
-- TODO move
|
||||
CREATE TABLE t (val varbit(3));
|
||||
CREATE INDEX ON t USING hnsw (val bit_hamming_ops);
|
||||
ERROR: type not supported for hnsw index
|
||||
CREATE INDEX ON t USING hnsw ((val::bit(3)) bit_hamming_ops);
|
||||
CREATE INDEX ON t USING hnsw ((val::bit(64001)) bit_hamming_ops);
|
||||
ERROR: column cannot have more than 64000 dimensions for hnsw index
|
||||
DROP TABLE t;
|
||||
21
test/expected/hnsw_bit_jaccard.out
Normal file
21
test/expected/hnsw_bit_jaccard.out
Normal file
@@ -0,0 +1,21 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val bit(4));
|
||||
INSERT INTO t (val) VALUES (B'0000'), (B'1100'), (B'1111'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val bit_jaccard_ops);
|
||||
INSERT INTO t (val) VALUES (B'1110');
|
||||
SELECT * FROM t ORDER BY val <%> B'1111';
|
||||
val
|
||||
------
|
||||
1111
|
||||
1110
|
||||
1100
|
||||
0000
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <%> (SELECT NULL::bit)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
26
test/expected/hnsw_halfvec_cosine.out
Normal file
26
test/expected/hnsw_halfvec_cosine.out
Normal file
@@ -0,0 +1,26 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_cosine_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,1,1]
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
(3 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
21
test/expected/hnsw_halfvec_ip.out
Normal file
21
test/expected/hnsw_halfvec_ip.out
Normal file
@@ -0,0 +1,21 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_ip_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,4]
|
||||
[1,2,3]
|
||||
[1,1,1]
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
33
test/expected/hnsw_halfvec_l2.out
Normal file
33
test/expected/hnsw_halfvec_l2.out
Normal file
@@ -0,0 +1,33 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_l2_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
[1,1,1]
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM t;
|
||||
count
|
||||
-------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
-----
|
||||
(0 rows)
|
||||
|
||||
DROP TABLE t;
|
||||
26
test/expected/hnsw_sparsevec_cosine.out
Normal file
26
test/expected/hnsw_sparsevec_cosine.out
Normal file
@@ -0,0 +1,26 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_cosine_ops);
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
SELECT * FROM t ORDER BY val <=> '{1:3,2:3,3:3}/3';
|
||||
val
|
||||
-----------------
|
||||
{1:1,2:1,3:1}/3
|
||||
{1:1,2:2,3:3}/3
|
||||
{1:1,2:2,3:4}/3
|
||||
(3 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '{}/3') t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::sparsevec)) t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
21
test/expected/hnsw_sparsevec_ip.out
Normal file
21
test/expected/hnsw_sparsevec_ip.out
Normal file
@@ -0,0 +1,21 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_ip_ops);
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
SELECT * FROM t ORDER BY val <#> '{1:3,2:3,3:3}/3';
|
||||
val
|
||||
-----------------
|
||||
{1:1,2:2,3:4}/3
|
||||
{1:1,2:2,3:3}/3
|
||||
{1:1,2:1,3:1}/3
|
||||
{}/3
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::sparsevec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
43
test/expected/hnsw_sparsevec_l2.out
Normal file
43
test/expected/hnsw_sparsevec_l2.out
Normal file
@@ -0,0 +1,43 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
SELECT * FROM t ORDER BY val <-> '{1:3,2:3,3:3}/3';
|
||||
val
|
||||
-----------------
|
||||
{1:1,2:2,3:3}/3
|
||||
{1:1,2:2,3:4}/3
|
||||
{1:1,2:1,3:1}/3
|
||||
{}/3
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::sparsevec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM t;
|
||||
count
|
||||
-------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '{1:3,2:3,3:3}/3';
|
||||
val
|
||||
-----
|
||||
(0 rows)
|
||||
|
||||
DROP TABLE t;
|
||||
-- TODO move
|
||||
CREATE TABLE t (val sparsevec(1001));
|
||||
INSERT INTO t (val) VALUES (array_fill(1, ARRAY[1001])::vector::sparsevec);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
ERROR: sparsevec cannot have more than 1000 non-zero elements for hnsw index
|
||||
TRUNCATE t;
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
INSERT INTO t (val) VALUES (array_fill(1, ARRAY[1001])::vector::sparsevec);
|
||||
ERROR: sparsevec cannot have more than 1000 non-zero elements for hnsw index
|
||||
DROP TABLE t;
|
||||
@@ -2,7 +2,7 @@ SET enable_seqscan = off;
|
||||
CREATE UNLOGGED TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val vector_l2_ops);
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val vector_cosine_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,1,1]
|
||||
@@ -11,13 +11,13 @@ SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
[1,2,4]
|
||||
(3 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]' LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val vector_ip_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,4]
|
||||
@@ -12,7 +12,7 @@ SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val vector_l2_ops);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
@@ -12,14 +12,11 @@ SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector) LIMIT 5;
|
||||
val
|
||||
---------
|
||||
[0,0,0]
|
||||
[1,1,1]
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
(4 rows)
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM t;
|
||||
count
|
||||
@@ -28,7 +25,7 @@ SELECT COUNT(*) FROM t;
|
||||
(1 row)
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
-----
|
||||
(0 rows)
|
||||
26
test/expected/ivfflat_halfvec_cosine.out
Normal file
26
test/expected/ivfflat_halfvec_cosine.out
Normal file
@@ -0,0 +1,26 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_cosine_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,1,1]
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
(3 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
21
test/expected/ivfflat_halfvec_ip.out
Normal file
21
test/expected/ivfflat_halfvec_ip.out
Normal file
@@ -0,0 +1,21 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_ip_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,4]
|
||||
[1,2,3]
|
||||
[1,1,1]
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
DROP TABLE t;
|
||||
36
test/expected/ivfflat_halfvec_l2.out
Normal file
36
test/expected/ivfflat_halfvec_l2.out
Normal file
@@ -0,0 +1,36 @@
|
||||
SET enable_seqscan = off;
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_l2_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
[1,1,1]
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::halfvec)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM t;
|
||||
count
|
||||
-------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
TRUNCATE t;
|
||||
NOTICE: ivfflat index created with little data
|
||||
DETAIL: This will cause low recall.
|
||||
HINT: Drop the index until the table has more data.
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
-----
|
||||
(0 rows)
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -2,7 +2,7 @@ SET enable_seqscan = off;
|
||||
CREATE UNLOGGED TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val vector_l2_ops) WITH (lists = 1);
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val vector_cosine_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,1,1]
|
||||
@@ -11,13 +11,13 @@ SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
[1,2,4]
|
||||
(3 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]' LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
3
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val vector_ip_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,4]
|
||||
@@ -12,7 +12,7 @@ SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
@@ -3,7 +3,7 @@ CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val vector_l2_ops) WITH (lists = 1);
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
---------
|
||||
[1,2,3]
|
||||
@@ -12,14 +12,11 @@ SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
[0,0,0]
|
||||
(4 rows)
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector) LIMIT 5;
|
||||
val
|
||||
---------
|
||||
[0,0,0]
|
||||
[1,1,1]
|
||||
[1,2,3]
|
||||
[1,2,4]
|
||||
(4 rows)
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector)) t2;
|
||||
count
|
||||
-------
|
||||
4
|
||||
(1 row)
|
||||
|
||||
SELECT COUNT(*) FROM t;
|
||||
count
|
||||
@@ -31,7 +28,7 @@ TRUNCATE t;
|
||||
NOTICE: ivfflat index created with little data
|
||||
DETAIL: This will cause low recall.
|
||||
HINT: Drop the index until the table has more data.
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
val
|
||||
-----
|
||||
(0 rows)
|
||||
86
test/expected/sparsevec_functions.out
Normal file
86
test/expected/sparsevec_functions.out
Normal file
@@ -0,0 +1,86 @@
|
||||
SELECT round(sparsevec_norm('{1:1,2:1}/2')::numeric, 5);
|
||||
round
|
||||
---------
|
||||
1.41421
|
||||
(1 row)
|
||||
|
||||
SELECT sparsevec_norm('{1:3,2:4}/2');
|
||||
sparsevec_norm
|
||||
----------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT sparsevec_norm('{2:1}/2');
|
||||
sparsevec_norm
|
||||
----------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT sparsevec_norm('{1:3e37,2:4e37}/2')::real;
|
||||
sparsevec_norm
|
||||
----------------
|
||||
5e+37
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('{}/2'::sparsevec, '{1:3,2:4}/2');
|
||||
l2_distance
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('{}/2'::sparsevec, '{2:1}/2');
|
||||
l2_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT '{}/2'::sparsevec <-> '{1:3,2:4}/2';
|
||||
?column?
|
||||
----------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('{1:1,2:2}/2'::sparsevec, '{1:2,2:4}/2');
|
||||
inner_product
|
||||
---------------
|
||||
10
|
||||
(1 row)
|
||||
|
||||
SELECT sparsevec_negative_inner_product('{1:1,2:2}/2', '{1:2,2:4}/2');
|
||||
sparsevec_negative_inner_product
|
||||
----------------------------------
|
||||
-10
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{1:1,2:2}/2'::sparsevec, '{1:2,2:4}/2');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{1:1,2:2}/2'::sparsevec, '{}/2');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{1:1,2:1}/2'::sparsevec, '{1:-1,2:-1}/2');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{1:2}/2'::sparsevec, '{2:2}/2');
|
||||
cosine_distance
|
||||
-----------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{}/1'::sparsevec, '{}/1');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('{1:2}/2'::sparsevec, '{1:1}/3');
|
||||
ERROR: different sparsevec dimensions 2 and 3
|
||||
215
test/expected/sparsevec_input.out
Normal file
215
test/expected/sparsevec_input.out
Normal file
@@ -0,0 +1,215 @@
|
||||
SELECT '{1:1.5,3:3.5}/5'::sparsevec;
|
||||
sparsevec
|
||||
-----------------
|
||||
{1:1.5,3:3.5}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:-2,3:-4}/5'::sparsevec;
|
||||
sparsevec
|
||||
---------------
|
||||
{1:-2,3:-4}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:2.,3:4.}/5'::sparsevec;
|
||||
sparsevec
|
||||
-------------
|
||||
{1:2,3:4}/5
|
||||
(1 row)
|
||||
|
||||
SELECT ' { 1 : 1.5 , 3 : 3.5 } / 5 '::sparsevec;
|
||||
sparsevec
|
||||
-----------------
|
||||
{1:1.5,3:3.5}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:1.23456}/1'::sparsevec;
|
||||
sparsevec
|
||||
---------------
|
||||
{1:1.23456}/1
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:hello,2:1}/2'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1:hello,2:1}/2"
|
||||
LINE 1: SELECT '{1:hello,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:NaN,2:1}/2'::sparsevec;
|
||||
ERROR: NaN not allowed in sparsevec
|
||||
LINE 1: SELECT '{1:NaN,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:Infinity,2:1}/2'::sparsevec;
|
||||
ERROR: infinite value not allowed in sparsevec
|
||||
LINE 1: SELECT '{1:Infinity,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:-Infinity,2:1}/2'::sparsevec;
|
||||
ERROR: infinite value not allowed in sparsevec
|
||||
LINE 1: SELECT '{1:-Infinity,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:1.5e38,2:-1.5e38}/2'::sparsevec;
|
||||
sparsevec
|
||||
--------------------------
|
||||
{1:1.5e+38,2:-1.5e+38}/2
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:1.5e+38,2:-1.5e+38}/2'::sparsevec;
|
||||
sparsevec
|
||||
--------------------------
|
||||
{1:1.5e+38,2:-1.5e+38}/2
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:1.5e-38,2:-1.5e-38}/2'::sparsevec;
|
||||
sparsevec
|
||||
--------------------------
|
||||
{1:1.5e-38,2:-1.5e-38}/2
|
||||
(1 row)
|
||||
|
||||
SELECT '{1:4e38,2:1}/2'::sparsevec;
|
||||
ERROR: "4e38" is out of range for type sparsevec
|
||||
LINE 1: SELECT '{1:4e38,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:-4e38,2:1}/2'::sparsevec;
|
||||
ERROR: "-4e38" is out of range for type sparsevec
|
||||
LINE 1: SELECT '{1:-4e38,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:1e-46,2:1}/2'::sparsevec;
|
||||
ERROR: "1e-46" is out of range for type sparsevec
|
||||
LINE 1: SELECT '{1:1e-46,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{1:-1e-46,2:1}/2'::sparsevec;
|
||||
ERROR: "-1e-46" is out of range for type sparsevec
|
||||
LINE 1: SELECT '{1:-1e-46,2:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT ''::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: ""
|
||||
LINE 1: SELECT ''::sparsevec;
|
||||
^
|
||||
DETAIL: Vector contents must start with "{".
|
||||
SELECT '{'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{"
|
||||
LINE 1: SELECT '{'::sparsevec;
|
||||
^
|
||||
SELECT '{ '::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{ "
|
||||
LINE 1: SELECT '{ '::sparsevec;
|
||||
^
|
||||
SELECT '{:'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{:"
|
||||
LINE 1: SELECT '{:'::sparsevec;
|
||||
^
|
||||
SELECT '{,'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{,"
|
||||
LINE 1: SELECT '{,'::sparsevec;
|
||||
^
|
||||
SELECT '{}'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{}"
|
||||
LINE 1: SELECT '{}'::sparsevec;
|
||||
^
|
||||
DETAIL: Unexpected end of input.
|
||||
SELECT '{}/'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{}/"
|
||||
LINE 1: SELECT '{}/'::sparsevec;
|
||||
^
|
||||
SELECT '{}/1'::sparsevec;
|
||||
sparsevec
|
||||
-----------
|
||||
{}/1
|
||||
(1 row)
|
||||
|
||||
SELECT '{}/1a'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{}/1a"
|
||||
LINE 1: SELECT '{}/1a'::sparsevec;
|
||||
^
|
||||
DETAIL: Junk after closing.
|
||||
SELECT '{ }/1'::sparsevec;
|
||||
sparsevec
|
||||
-----------
|
||||
{}/1
|
||||
(1 row)
|
||||
|
||||
SELECT '{:}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{:}/1"
|
||||
LINE 1: SELECT '{:}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{,}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{,}/1"
|
||||
LINE 1: SELECT '{,}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1,}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1,}/1"
|
||||
LINE 1: SELECT '{1,}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{:1}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{:1}/1"
|
||||
LINE 1: SELECT '{:1}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1:}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1:}/1"
|
||||
LINE 1: SELECT '{1:}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1a:1}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1a:1}/1"
|
||||
LINE 1: SELECT '{1a:1}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1:1a}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1:1a}/1"
|
||||
LINE 1: SELECT '{1:1a}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1:1,}/1'::sparsevec;
|
||||
ERROR: invalid input syntax for type sparsevec: "{1:1,}/1"
|
||||
LINE 1: SELECT '{1:1,}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{1:0,2:1,3:0}/3'::sparsevec;
|
||||
sparsevec
|
||||
-----------
|
||||
{2:1}/3
|
||||
(1 row)
|
||||
|
||||
SELECT '{2:1,1:1}/2'::sparsevec;
|
||||
ERROR: indexes must be in ascending order
|
||||
LINE 1: SELECT '{2:1,1:1}/2'::sparsevec;
|
||||
^
|
||||
SELECT '{}/5'::sparsevec;
|
||||
sparsevec
|
||||
-----------
|
||||
{}/5
|
||||
(1 row)
|
||||
|
||||
SELECT '{}/-1'::sparsevec;
|
||||
ERROR: sparsevec must have at least 1 dimension
|
||||
LINE 1: SELECT '{}/-1'::sparsevec;
|
||||
^
|
||||
SELECT '{}/100001'::sparsevec;
|
||||
ERROR: sparsevec cannot have more than 100000 dimensions
|
||||
LINE 1: SELECT '{}/100001'::sparsevec;
|
||||
^
|
||||
SELECT '{0:1}/1'::sparsevec;
|
||||
ERROR: index "0" is out of range for type sparsevec
|
||||
LINE 1: SELECT '{0:1}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{2:1}/1'::sparsevec;
|
||||
ERROR: index must be less than or equal to dimensions
|
||||
LINE 1: SELECT '{2:1}/1'::sparsevec;
|
||||
^
|
||||
SELECT '{}/3'::sparsevec(3);
|
||||
sparsevec
|
||||
-----------
|
||||
{}/3
|
||||
(1 row)
|
||||
|
||||
SELECT '{}/3'::sparsevec(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '{}/3'::sparsevec(3, 2);
|
||||
ERROR: invalid type modifier
|
||||
LINE 1: SELECT '{}/3'::sparsevec(3, 2);
|
||||
^
|
||||
SELECT '{}/3'::sparsevec('a');
|
||||
ERROR: invalid input syntax for type integer: "a"
|
||||
LINE 1: SELECT '{}/3'::sparsevec('a');
|
||||
^
|
||||
SELECT '{}/3'::sparsevec(0);
|
||||
ERROR: dimensions for type sparsevec must be at least 1
|
||||
LINE 1: SELECT '{}/3'::sparsevec(0);
|
||||
^
|
||||
SELECT '{}/3'::sparsevec(100001);
|
||||
ERROR: dimensions for type sparsevec cannot exceed 100000
|
||||
LINE 1: SELECT '{}/3'::sparsevec(100001);
|
||||
^
|
||||
366
test/expected/vector_functions.out
Normal file
366
test/expected/vector_functions.out
Normal file
@@ -0,0 +1,366 @@
|
||||
SELECT '[1,2,3]'::vector + '[4,5,6]';
|
||||
?column?
|
||||
----------
|
||||
[5,7,9]
|
||||
(1 row)
|
||||
|
||||
SELECT '[3e38]'::vector + '[3e38]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1,2,3]'::vector - '[4,5,6]';
|
||||
?column?
|
||||
------------
|
||||
[-3,-3,-3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[-3e38]'::vector - '[3e38]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1,2,3]'::vector * '[4,5,6]';
|
||||
?column?
|
||||
-----------
|
||||
[4,10,18]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1e37]'::vector * '[1e37]';
|
||||
ERROR: value out of range: overflow
|
||||
SELECT '[1e-37]'::vector * '[1e-37]';
|
||||
ERROR: value out of range: underflow
|
||||
SELECT '[1,2,3]'::vector < '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector < '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector <= '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector <= '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector = '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector = '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector != '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector != '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector >= '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector >= '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector > '[1,2,3]';
|
||||
?column?
|
||||
----------
|
||||
f
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector > '[1,2]';
|
||||
?column?
|
||||
----------
|
||||
t
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[1,2,3]', '[1,2,3]');
|
||||
vector_cmp
|
||||
------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[1,2,3]', '[0,0,0]');
|
||||
vector_cmp
|
||||
------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[0,0,0]', '[1,2,3]');
|
||||
vector_cmp
|
||||
------------
|
||||
-1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[1,2]', '[1,2,3]');
|
||||
vector_cmp
|
||||
------------
|
||||
-1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[1,2,3]', '[1,2]');
|
||||
vector_cmp
|
||||
------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[1,2]', '[2,3,4]');
|
||||
vector_cmp
|
||||
------------
|
||||
-1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_cmp('[2,3]', '[1,2,3]');
|
||||
vector_cmp
|
||||
------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_dims('[1,2,3]');
|
||||
vector_dims
|
||||
-------------
|
||||
3
|
||||
(1 row)
|
||||
|
||||
SELECT round(vector_norm('[1,1]')::numeric, 5);
|
||||
round
|
||||
---------
|
||||
1.41421
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[3,4]');
|
||||
vector_norm
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[0,1]');
|
||||
vector_norm
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT vector_norm('[3e37,4e37]')::real;
|
||||
vector_norm
|
||||
-------------
|
||||
5e+37
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]'::vector, '[3,4]');
|
||||
l2_distance
|
||||
-------------
|
||||
5
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[0,0]'::vector, '[0,1]');
|
||||
l2_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l2_distance('[1,2]'::vector, '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT l2_distance('[3e38]'::vector, '[-3e38]');
|
||||
l2_distance
|
||||
-------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]'::vector, '[3,4]');
|
||||
inner_product
|
||||
---------------
|
||||
11
|
||||
(1 row)
|
||||
|
||||
SELECT inner_product('[1,2]'::vector, '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT inner_product('[3e38]'::vector, '[3e38]');
|
||||
inner_product
|
||||
---------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::vector, '[2,4]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::vector, '[0,0]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::vector, '[1,1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,0]'::vector, '[0,2]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::vector, '[-1,-1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,2]'::vector, '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT cosine_distance('[1,1]'::vector, '[1.1,1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
0
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[1,1]'::vector, '[-1.1,-1.1]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
2
|
||||
(1 row)
|
||||
|
||||
SELECT cosine_distance('[3e38]'::vector, '[3e38]');
|
||||
cosine_distance
|
||||
-----------------
|
||||
NaN
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]'::vector, '[3,4]');
|
||||
l1_distance
|
||||
-------------
|
||||
7
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[0,0]'::vector, '[0,1]');
|
||||
l1_distance
|
||||
-------------
|
||||
1
|
||||
(1 row)
|
||||
|
||||
SELECT l1_distance('[1,2]'::vector, '[3]');
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT l1_distance('[3e38]'::vector, '[-3e38]');
|
||||
l1_distance
|
||||
-------------
|
||||
Infinity
|
||||
(1 row)
|
||||
|
||||
SELECT quantize_binary('[1,0,-1]'::vector);
|
||||
quantize_binary
|
||||
-----------------
|
||||
100
|
||||
(1 row)
|
||||
|
||||
SELECT quantize_binary('[0,0.1,-0.2,-0.3,0.4,0.5,0.6,-0.7,0.8,-0.9,1]'::vector);
|
||||
quantize_binary
|
||||
-----------------
|
||||
01001110101
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 1, 3);
|
||||
subvector
|
||||
-----------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, 2);
|
||||
subvector
|
||||
-----------
|
||||
[3,4]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, -1, 3);
|
||||
subvector
|
||||
-----------
|
||||
[1]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, 9);
|
||||
subvector
|
||||
-----------
|
||||
[3,4,5]
|
||||
(1 row)
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 1, 0);
|
||||
ERROR: vector must have at least 1 dimension
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, -1);
|
||||
ERROR: vector must have at least 1 dimension
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, -1, 2);
|
||||
ERROR: vector must have at least 1 dimension
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
avg
|
||||
-----------
|
||||
[2,3.5,5]
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
avg
|
||||
-----------
|
||||
[2,3.5,5]
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
avg
|
||||
-----
|
||||
|
||||
(1 row)
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
ERROR: expected 2 dimensions, not 1
|
||||
SELECT avg(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
avg
|
||||
---------
|
||||
[3e+38]
|
||||
(1 row)
|
||||
|
||||
SELECT vector_avg(array_agg(n)) FROM generate_series(1, 16002) n;
|
||||
ERROR: vector cannot have more than 16000 dimensions
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
sum
|
||||
----------
|
||||
[4,7,10]
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
sum
|
||||
----------
|
||||
[4,7,10]
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
sum
|
||||
-----
|
||||
|
||||
(1 row)
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
ERROR: different vector dimensions 2 and 1
|
||||
SELECT sum(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
ERROR: value out of range: overflow
|
||||
@@ -63,43 +63,68 @@ SELECT '[1.5e-38,-1.5e-38]'::vector;
|
||||
(1 row)
|
||||
|
||||
SELECT '[4e38,1]'::vector;
|
||||
ERROR: infinite value not allowed in vector
|
||||
ERROR: "4e38" is out of range for type vector
|
||||
LINE 1: SELECT '[4e38,1]'::vector;
|
||||
^
|
||||
SELECT '[-4e38,1]'::vector;
|
||||
ERROR: "-4e38" is out of range for type vector
|
||||
LINE 1: SELECT '[-4e38,1]'::vector;
|
||||
^
|
||||
SELECT '[1e-46,1]'::vector;
|
||||
vector
|
||||
--------
|
||||
[0,1]
|
||||
(1 row)
|
||||
|
||||
SELECT '[-1e-46,1]'::vector;
|
||||
vector
|
||||
--------
|
||||
[-0,1]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3'::vector;
|
||||
ERROR: malformed vector literal: "[1,2,3"
|
||||
ERROR: invalid input syntax for type vector: "[1,2,3"
|
||||
LINE 1: SELECT '[1,2,3'::vector;
|
||||
^
|
||||
DETAIL: Unexpected end of input.
|
||||
SELECT '[1,2,3]9'::vector;
|
||||
ERROR: malformed vector literal: "[1,2,3]9"
|
||||
ERROR: invalid input syntax for type vector: "[1,2,3]9"
|
||||
LINE 1: SELECT '[1,2,3]9'::vector;
|
||||
^
|
||||
DETAIL: Junk after closing right brace.
|
||||
SELECT '1,2,3'::vector;
|
||||
ERROR: malformed vector literal: "1,2,3"
|
||||
ERROR: invalid input syntax for type vector: "1,2,3"
|
||||
LINE 1: SELECT '1,2,3'::vector;
|
||||
^
|
||||
DETAIL: Vector contents must start with "[".
|
||||
SELECT ''::vector;
|
||||
ERROR: malformed vector literal: ""
|
||||
ERROR: invalid input syntax for type vector: ""
|
||||
LINE 1: SELECT ''::vector;
|
||||
^
|
||||
DETAIL: Vector contents must start with "[".
|
||||
SELECT '['::vector;
|
||||
ERROR: malformed vector literal: "["
|
||||
ERROR: invalid input syntax for type vector: "["
|
||||
LINE 1: SELECT '['::vector;
|
||||
^
|
||||
DETAIL: Unexpected end of input.
|
||||
SELECT '[ '::vector;
|
||||
ERROR: invalid input syntax for type vector: "[ "
|
||||
LINE 1: SELECT '[ '::vector;
|
||||
^
|
||||
SELECT '[,'::vector;
|
||||
ERROR: malformed vector literal: "[,"
|
||||
ERROR: invalid input syntax for type vector: "[,"
|
||||
LINE 1: SELECT '[,'::vector;
|
||||
^
|
||||
DETAIL: Unexpected end of input.
|
||||
SELECT '[]'::vector;
|
||||
ERROR: vector must have at least 1 dimension
|
||||
LINE 1: SELECT '[]'::vector;
|
||||
^
|
||||
SELECT '[ ]'::vector;
|
||||
ERROR: vector must have at least 1 dimension
|
||||
LINE 1: SELECT '[ ]'::vector;
|
||||
^
|
||||
SELECT '[,]'::vector;
|
||||
ERROR: invalid input syntax for type vector: "[,]"
|
||||
LINE 1: SELECT '[,]'::vector;
|
||||
^
|
||||
SELECT '[1,]'::vector;
|
||||
ERROR: invalid input syntax for type vector: "[1,]"
|
||||
LINE 1: SELECT '[1,]'::vector;
|
||||
@@ -109,15 +134,37 @@ ERROR: invalid input syntax for type vector: "[1a]"
|
||||
LINE 1: SELECT '[1a]'::vector;
|
||||
^
|
||||
SELECT '[1,,3]'::vector;
|
||||
ERROR: malformed vector literal: "[1,,3]"
|
||||
ERROR: invalid input syntax for type vector: "[1,,3]"
|
||||
LINE 1: SELECT '[1,,3]'::vector;
|
||||
^
|
||||
SELECT '[1, ,3]'::vector;
|
||||
ERROR: invalid input syntax for type vector: "[1, ,3]"
|
||||
LINE 1: SELECT '[1, ,3]'::vector;
|
||||
^
|
||||
SELECT '[1,2,3]'::vector(3);
|
||||
vector
|
||||
---------
|
||||
[1,2,3]
|
||||
(1 row)
|
||||
|
||||
SELECT '[1,2,3]'::vector(2);
|
||||
ERROR: expected 2 dimensions, not 3
|
||||
SELECT '[1,2,3]'::vector(3, 2);
|
||||
ERROR: invalid type modifier
|
||||
LINE 1: SELECT '[1,2,3]'::vector(3, 2);
|
||||
^
|
||||
SELECT '[1,2,3]'::vector('a');
|
||||
ERROR: invalid input syntax for type integer: "a"
|
||||
LINE 1: SELECT '[1,2,3]'::vector('a');
|
||||
^
|
||||
SELECT '[1,2,3]'::vector(0);
|
||||
ERROR: dimensions for type vector must be at least 1
|
||||
LINE 1: SELECT '[1,2,3]'::vector(0);
|
||||
^
|
||||
SELECT '[1,2,3]'::vector(16001);
|
||||
ERROR: dimensions for type vector cannot exceed 16000
|
||||
LINE 1: SELECT '[1,2,3]'::vector(16001);
|
||||
^
|
||||
SELECT unnest('{"[1,2,3]", "[4,5,6]"}'::vector[]);
|
||||
unnest
|
||||
---------
|
||||
21
test/sql/bit_functions.sql
Normal file
21
test/sql/bit_functions.sql
Normal file
@@ -0,0 +1,21 @@
|
||||
SELECT hamming_distance('111', '111');
|
||||
SELECT hamming_distance('111', '110');
|
||||
SELECT hamming_distance('111', '100');
|
||||
SELECT hamming_distance('111', '000');
|
||||
SELECT hamming_distance('10101010101010101010', '01010101010101010101');
|
||||
SELECT hamming_distance('', '');
|
||||
SELECT hamming_distance('111', '00');
|
||||
SELECT hamming_distance('111', '000'::varbit(4));
|
||||
SELECT hamming_distance('111', '0000'::varbit(4));
|
||||
|
||||
SELECT jaccard_distance('1111', '1111');
|
||||
SELECT jaccard_distance('1111', '1110');
|
||||
SELECT jaccard_distance('1111', '1100');
|
||||
SELECT jaccard_distance('1111', '1000');
|
||||
SELECT jaccard_distance('1111', '0000');
|
||||
SELECT jaccard_distance('1100', '1000');
|
||||
SELECT jaccard_distance('10101010101010101010', '01010101010101010101');
|
||||
SELECT jaccard_distance('', '');
|
||||
SELECT jaccard_distance('1111', '000');
|
||||
SELECT jaccard_distance('1111', '0000'::varbit(5));
|
||||
SELECT jaccard_distance('1111', '00000'::varbit(5));
|
||||
@@ -3,13 +3,50 @@ SELECT ARRAY[1.0,2.0,3.0]::vector;
|
||||
SELECT ARRAY[1,2,3]::float4[]::vector;
|
||||
SELECT ARRAY[1,2,3]::float8[]::vector;
|
||||
SELECT ARRAY[1,2,3]::numeric[]::vector;
|
||||
|
||||
SELECT '[1,2,3]'::vector::real[];
|
||||
|
||||
SELECT '{1,2,3}'::real[]::vector;
|
||||
SELECT '{1,2,3}'::real[]::vector(3);
|
||||
SELECT '{1,2,3}'::real[]::vector(2);
|
||||
SELECT '{NULL}'::real[]::vector;
|
||||
SELECT '{NaN}'::real[]::vector;
|
||||
SELECT '{Infinity}'::real[]::vector;
|
||||
SELECT '{-Infinity}'::real[]::vector;
|
||||
SELECT '{}'::real[]::vector;
|
||||
SELECT '{{1}}'::real[]::vector;
|
||||
SELECT '[1,2,3]'::vector::real[];
|
||||
|
||||
SELECT '{1,2,3}'::double precision[]::vector;
|
||||
SELECT '{1,2,3}'::double precision[]::vector(3);
|
||||
SELECT '{1,2,3}'::double precision[]::vector(2);
|
||||
SELECT '{4e38,-4e38}'::double precision[]::vector;
|
||||
SELECT '{1e-46,-1e-46}'::double precision[]::vector;
|
||||
|
||||
SELECT '[1,2,3]'::vector::halfvec;
|
||||
SELECT '[1,2,3]'::vector::halfvec(3);
|
||||
SELECT '[1,2,3]'::vector::halfvec(2);
|
||||
SELECT '[65520]'::vector::halfvec;
|
||||
SELECT '[1e-8]'::vector::halfvec;
|
||||
|
||||
SELECT '[1,2,3]'::halfvec::vector;
|
||||
SELECT '[1,2,3]'::halfvec::vector(3);
|
||||
SELECT '[1,2,3]'::halfvec::vector(2);
|
||||
|
||||
SELECT '{1,2,3}'::real[]::halfvec;
|
||||
SELECT '{1,2,3}'::real[]::halfvec(3);
|
||||
SELECT '{1,2,3}'::real[]::halfvec(2);
|
||||
SELECT '{65520,-65520}'::real[]::halfvec;
|
||||
SELECT '{1e-8,-1e-8}'::real[]::halfvec;
|
||||
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec;
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec(5);
|
||||
SELECT '[0,1.5,0,3.5,0]'::vector::sparsevec(4);
|
||||
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector;
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector(5);
|
||||
SELECT '{2:1.5,4:3.5}/5'::sparsevec::vector(4);
|
||||
SELECT '{}/16001'::sparsevec::vector;
|
||||
|
||||
SELECT array_agg(n)::vector FROM generate_series(1, 16001) n;
|
||||
SELECT array_to_vector(array_agg(n), 16001, false) FROM generate_series(1, 16001) n;
|
||||
|
||||
|
||||
@@ -1,7 +1,7 @@
|
||||
CREATE TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE TABLE t (val vector(3), val2 halfvec(3), val3 sparsevec(3));
|
||||
INSERT INTO t (val, val2, val3) VALUES ('[0,0,0]', '[0,0,0]', '{}/3'), ('[1,2,3]', '[1,2,3]', '{1:1,2:2,3:3}/3'), ('[1,1,1]', '[1,1,1]', '{1:1,2:1,3:1}/3'), (NULL, NULL, NULL);
|
||||
|
||||
CREATE TABLE t2 (val vector(3));
|
||||
CREATE TABLE t2 (val vector(3), val2 halfvec(3), val3 sparsevec(3));
|
||||
|
||||
\copy t TO 'results/data.bin' WITH (FORMAT binary)
|
||||
\copy t2 FROM 'results/data.bin' WITH (FORMAT binary)
|
||||
|
||||
@@ -1,51 +0,0 @@
|
||||
SELECT '[1,2,3]'::vector + '[4,5,6]';
|
||||
SELECT '[3e38]'::vector + '[3e38]';
|
||||
SELECT '[1,2,3]'::vector - '[4,5,6]';
|
||||
SELECT '[-3e38]'::vector - '[3e38]';
|
||||
SELECT '[1,2,3]'::vector * '[4,5,6]';
|
||||
SELECT '[1e37]'::vector * '[1e37]';
|
||||
SELECT '[1e-37]'::vector * '[1e-37]';
|
||||
|
||||
SELECT vector_dims('[1,2,3]');
|
||||
|
||||
SELECT round(vector_norm('[1,1]')::numeric, 5);
|
||||
SELECT vector_norm('[3,4]');
|
||||
SELECT vector_norm('[0,1]');
|
||||
SELECT vector_norm('[3e37,4e37]')::real;
|
||||
|
||||
SELECT l2_distance('[0,0]', '[3,4]');
|
||||
SELECT l2_distance('[0,0]', '[0,1]');
|
||||
SELECT l2_distance('[1,2]', '[3]');
|
||||
SELECT l2_distance('[3e38]', '[-3e38]');
|
||||
|
||||
SELECT inner_product('[1,2]', '[3,4]');
|
||||
SELECT inner_product('[1,2]', '[3]');
|
||||
SELECT inner_product('[3e38]', '[3e38]');
|
||||
|
||||
SELECT cosine_distance('[1,2]', '[2,4]');
|
||||
SELECT cosine_distance('[1,2]', '[0,0]');
|
||||
SELECT cosine_distance('[1,1]', '[1,1]');
|
||||
SELECT cosine_distance('[1,0]', '[0,2]');
|
||||
SELECT cosine_distance('[1,1]', '[-1,-1]');
|
||||
SELECT cosine_distance('[1,2]', '[3]');
|
||||
SELECT cosine_distance('[1,1]', '[1.1,1.1]');
|
||||
SELECT cosine_distance('[1,1]', '[-1.1,-1.1]');
|
||||
SELECT cosine_distance('[3e38]', '[3e38]');
|
||||
|
||||
SELECT l1_distance('[0,0]', '[3,4]');
|
||||
SELECT l1_distance('[0,0]', '[0,1]');
|
||||
SELECT l1_distance('[1,2]', '[3]');
|
||||
SELECT l1_distance('[3e38]', '[-3e38]');
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
SELECT vector_avg(array_agg(n)) FROM generate_series(1, 16002) n;
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
40
test/sql/halfvec_functions.sql
Normal file
40
test/sql/halfvec_functions.sql
Normal file
@@ -0,0 +1,40 @@
|
||||
SELECT round(halfvec_norm('[1,1]')::numeric, 5);
|
||||
SELECT halfvec_norm('[3,4]');
|
||||
SELECT halfvec_norm('[0,1]');
|
||||
|
||||
SELECT l2_distance('[0,0]'::halfvec, '[3,4]');
|
||||
SELECT l2_distance('[0,0]'::halfvec, '[0,1]');
|
||||
SELECT l2_distance('[1,2]'::halfvec, '[3]');
|
||||
SELECT l2_distance('[1,1,1,1,1,1,1,1,1]'::halfvec, '[1,1,1,1,1,1,1,4,5]');
|
||||
SELECT '[0,0]'::halfvec <-> '[3,4]';
|
||||
|
||||
SELECT inner_product('[1,2]'::halfvec, '[3,4]');
|
||||
SELECT inner_product('[1,2]'::halfvec, '[3]');
|
||||
SELECT inner_product('[65504]'::halfvec, '[65504]');
|
||||
SELECT inner_product('[1,1,1,1,1,1,1,1,1]'::halfvec, '[1,2,3,4,5,6,7,8,9]');
|
||||
SELECT '[1,2]'::halfvec <#> '[3,4]';
|
||||
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[2,4]');
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[0,0]');
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[1,1]');
|
||||
SELECT cosine_distance('[1,0]'::halfvec, '[0,2]');
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[-1,-1]');
|
||||
SELECT cosine_distance('[1,2]'::halfvec, '[3]');
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[1.1,1.1]');
|
||||
SELECT cosine_distance('[1,1]'::halfvec, '[-1.1,-1.1]');
|
||||
SELECT '[1,2]'::halfvec <=> '[2,4]';
|
||||
|
||||
SELECT l1_distance('[0,0]'::halfvec, '[3,4]');
|
||||
SELECT l1_distance('[0,0]'::halfvec, '[0,1]');
|
||||
SELECT l1_distance('[1,2]'::halfvec, '[3]');
|
||||
|
||||
SELECT quantize_binary('[1,0,-1]'::halfvec);
|
||||
SELECT quantize_binary('[0,0.1,-0.2,-0.3,0.4,0.5,0.6,-0.7,0.8,-0.9,1]'::halfvec);
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 1, 3);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, 2);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, -1, 3);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, 9);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 1, 0);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, 3, -1);
|
||||
SELECT subvector('[1,2,3,4,5]'::halfvec, -1, 2);
|
||||
38
test/sql/halfvec_input.sql
Normal file
38
test/sql/halfvec_input.sql
Normal file
@@ -0,0 +1,38 @@
|
||||
SELECT '[1,2,3]'::halfvec;
|
||||
SELECT '[-1,-2,-3]'::halfvec;
|
||||
SELECT '[1.,2.,3.]'::halfvec;
|
||||
SELECT ' [ 1, 2 , 3 ] '::halfvec;
|
||||
SELECT '[1.23456]'::halfvec;
|
||||
SELECT '[hello,1]'::halfvec;
|
||||
SELECT '[NaN,1]'::halfvec;
|
||||
SELECT '[Infinity,1]'::halfvec;
|
||||
SELECT '[-Infinity,1]'::halfvec;
|
||||
SELECT '[65519,-65519]'::halfvec;
|
||||
SELECT '[65520,-65520]'::halfvec;
|
||||
SELECT '[1e-8,-1e-8]'::halfvec;
|
||||
SELECT '[4e38,1]'::halfvec;
|
||||
SELECT '[1e-46,1]'::halfvec;
|
||||
SELECT '[1,2,3'::halfvec;
|
||||
SELECT '[1,2,3]9'::halfvec;
|
||||
SELECT '1,2,3'::halfvec;
|
||||
SELECT ''::halfvec;
|
||||
SELECT '['::halfvec;
|
||||
SELECT '[ '::halfvec;
|
||||
SELECT '[,'::halfvec;
|
||||
SELECT '[]'::halfvec;
|
||||
SELECT '[ ]'::halfvec;
|
||||
SELECT '[,]'::halfvec;
|
||||
SELECT '[1,]'::halfvec;
|
||||
SELECT '[1a]'::halfvec;
|
||||
SELECT '[1,,3]'::halfvec;
|
||||
SELECT '[1, ,3]'::halfvec;
|
||||
|
||||
SELECT '[1,2,3]'::halfvec(3);
|
||||
SELECT '[1,2,3]'::halfvec(2);
|
||||
SELECT '[1,2,3]'::halfvec(3, 2);
|
||||
SELECT '[1,2,3]'::halfvec('a');
|
||||
SELECT '[1,2,3]'::halfvec(0);
|
||||
SELECT '[1,2,3]'::halfvec(16001);
|
||||
|
||||
SELECT unnest('{"[1,2,3]", "[4,5,6]"}'::halfvec[]);
|
||||
SELECT '{"[1,2,3]"}'::halfvec(2)[];
|
||||
19
test/sql/hnsw_bit_hamming.sql
Normal file
19
test/sql/hnsw_bit_hamming.sql
Normal file
@@ -0,0 +1,19 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val bit(3));
|
||||
INSERT INTO t (val) VALUES (B'000'), (B'100'), (B'111'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val bit_hamming_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES (B'110');
|
||||
|
||||
SELECT * FROM t ORDER BY val <~> B'111';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <~> (SELECT NULL::bit)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
|
||||
-- TODO move
|
||||
CREATE TABLE t (val varbit(3));
|
||||
CREATE INDEX ON t USING hnsw (val bit_hamming_ops);
|
||||
CREATE INDEX ON t USING hnsw ((val::bit(3)) bit_hamming_ops);
|
||||
CREATE INDEX ON t USING hnsw ((val::bit(64001)) bit_hamming_ops);
|
||||
DROP TABLE t;
|
||||
12
test/sql/hnsw_bit_jaccard.sql
Normal file
12
test/sql/hnsw_bit_jaccard.sql
Normal file
@@ -0,0 +1,12 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val bit(4));
|
||||
INSERT INTO t (val) VALUES (B'0000'), (B'1100'), (B'1111'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val bit_jaccard_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES (B'1110');
|
||||
|
||||
SELECT * FROM t ORDER BY val <%> B'1111';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <%> (SELECT NULL::bit)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
13
test/sql/hnsw_halfvec_cosine.sql
Normal file
13
test/sql/hnsw_halfvec_cosine.sql
Normal file
@@ -0,0 +1,13 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_cosine_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::halfvec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
12
test/sql/hnsw_halfvec_ip.sql
Normal file
12
test/sql/hnsw_halfvec_ip.sql
Normal file
@@ -0,0 +1,12 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_ip_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::halfvec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
16
test/sql/hnsw_halfvec_l2.sql
Normal file
16
test/sql/hnsw_halfvec_l2.sql
Normal file
@@ -0,0 +1,16 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val halfvec_l2_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::halfvec)) t2;
|
||||
SELECT COUNT(*) FROM t;
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
13
test/sql/hnsw_sparsevec_cosine.sql
Normal file
13
test/sql/hnsw_sparsevec_cosine.sql
Normal file
@@ -0,0 +1,13 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_cosine_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
|
||||
SELECT * FROM t ORDER BY val <=> '{1:3,2:3,3:3}/3';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '{}/3') t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::sparsevec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
12
test/sql/hnsw_sparsevec_ip.sql
Normal file
12
test/sql/hnsw_sparsevec_ip.sql
Normal file
@@ -0,0 +1,12 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_ip_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
|
||||
SELECT * FROM t ORDER BY val <#> '{1:3,2:3,3:3}/3';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::sparsevec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
25
test/sql/hnsw_sparsevec_l2.sql
Normal file
25
test/sql/hnsw_sparsevec_l2.sql
Normal file
@@ -0,0 +1,25 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val sparsevec(3));
|
||||
INSERT INTO t (val) VALUES ('{}/3'), ('{1:1,2:2,3:3}/3'), ('{1:1,2:1,3:1}/3'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('{1:1,2:2,3:4}/3');
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '{1:3,2:3,3:3}/3';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::sparsevec)) t2;
|
||||
SELECT COUNT(*) FROM t;
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '{1:3,2:3,3:3}/3';
|
||||
|
||||
DROP TABLE t;
|
||||
|
||||
-- TODO move
|
||||
CREATE TABLE t (val sparsevec(1001));
|
||||
INSERT INTO t (val) VALUES (array_fill(1, ARRAY[1001])::vector::sparsevec);
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
TRUNCATE t;
|
||||
CREATE INDEX ON t USING hnsw (val sparsevec_l2_ops);
|
||||
INSERT INTO t (val) VALUES (array_fill(1, ARRAY[1001])::vector::sparsevec);
|
||||
DROP TABLE t;
|
||||
@@ -4,6 +4,6 @@ CREATE UNLOGGED TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING hnsw (val vector_l2_ops);
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
|
||||
@@ -6,8 +6,8 @@ CREATE INDEX ON t USING hnsw (val vector_cosine_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]' LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -6,7 +6,7 @@ CREATE INDEX ON t USING hnsw (val vector_ip_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -6,11 +6,11 @@ CREATE INDEX ON t USING hnsw (val vector_l2_ops);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector) LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector)) t2;
|
||||
SELECT COUNT(*) FROM t;
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
13
test/sql/ivfflat_halfvec_cosine.sql
Normal file
13
test/sql/ivfflat_halfvec_cosine.sql
Normal file
@@ -0,0 +1,13 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_cosine_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::halfvec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
12
test/sql/ivfflat_halfvec_ip.sql
Normal file
12
test/sql/ivfflat_halfvec_ip.sql
Normal file
@@ -0,0 +1,12 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_ip_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::halfvec)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
16
test/sql/ivfflat_halfvec_l2.sql
Normal file
16
test/sql/ivfflat_halfvec_l2.sql
Normal file
@@ -0,0 +1,16 @@
|
||||
SET enable_seqscan = off;
|
||||
|
||||
CREATE TABLE t (val halfvec(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val halfvec_l2_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::halfvec)) t2;
|
||||
SELECT COUNT(*) FROM t;
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -4,6 +4,6 @@ CREATE UNLOGGED TABLE t (val vector(3));
|
||||
INSERT INTO t (val) VALUES ('[0,0,0]'), ('[1,2,3]'), ('[1,1,1]'), (NULL);
|
||||
CREATE INDEX ON t USING ivfflat (val vector_l2_ops) WITH (lists = 1);
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
|
||||
@@ -6,8 +6,8 @@ CREATE INDEX ON t USING ivfflat (val vector_cosine_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]' LIMIT 5;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]' LIMIT 5) t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT * FROM t ORDER BY val <=> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> '[0,0,0]') t2;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <=> (SELECT NULL::vector)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -6,7 +6,7 @@ CREATE INDEX ON t USING ivfflat (val vector_ip_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]' LIMIT 5;
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector) LIMIT 5) t2;
|
||||
SELECT * FROM t ORDER BY val <#> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <#> (SELECT NULL::vector)) t2;
|
||||
|
||||
DROP TABLE t;
|
||||
@@ -6,11 +6,11 @@ CREATE INDEX ON t USING ivfflat (val vector_l2_ops) WITH (lists = 1);
|
||||
|
||||
INSERT INTO t (val) VALUES ('[1,2,4]');
|
||||
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector) LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
SELECT COUNT(*) FROM (SELECT * FROM t ORDER BY val <-> (SELECT NULL::vector)) t2;
|
||||
SELECT COUNT(*) FROM t;
|
||||
|
||||
TRUNCATE t;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]' LIMIT 5;
|
||||
SELECT * FROM t ORDER BY val <-> '[3,3,3]';
|
||||
|
||||
DROP TABLE t;
|
||||
18
test/sql/sparsevec_functions.sql
Normal file
18
test/sql/sparsevec_functions.sql
Normal file
@@ -0,0 +1,18 @@
|
||||
SELECT round(sparsevec_norm('{1:1,2:1}/2')::numeric, 5);
|
||||
SELECT sparsevec_norm('{1:3,2:4}/2');
|
||||
SELECT sparsevec_norm('{2:1}/2');
|
||||
SELECT sparsevec_norm('{1:3e37,2:4e37}/2')::real;
|
||||
|
||||
SELECT l2_distance('{}/2'::sparsevec, '{1:3,2:4}/2');
|
||||
SELECT l2_distance('{}/2'::sparsevec, '{2:1}/2');
|
||||
SELECT '{}/2'::sparsevec <-> '{1:3,2:4}/2';
|
||||
|
||||
SELECT inner_product('{1:1,2:2}/2'::sparsevec, '{1:2,2:4}/2');
|
||||
SELECT sparsevec_negative_inner_product('{1:1,2:2}/2', '{1:2,2:4}/2');
|
||||
|
||||
SELECT cosine_distance('{1:1,2:2}/2'::sparsevec, '{1:2,2:4}/2');
|
||||
SELECT cosine_distance('{1:1,2:2}/2'::sparsevec, '{}/2');
|
||||
SELECT cosine_distance('{1:1,2:1}/2'::sparsevec, '{1:-1,2:-1}/2');
|
||||
SELECT cosine_distance('{1:2}/2'::sparsevec, '{2:2}/2');
|
||||
SELECT cosine_distance('{}/1'::sparsevec, '{}/1');
|
||||
SELECT cosine_distance('{1:2}/2'::sparsevec, '{1:1}/3');
|
||||
48
test/sql/sparsevec_input.sql
Normal file
48
test/sql/sparsevec_input.sql
Normal file
@@ -0,0 +1,48 @@
|
||||
SELECT '{1:1.5,3:3.5}/5'::sparsevec;
|
||||
SELECT '{1:-2,3:-4}/5'::sparsevec;
|
||||
SELECT '{1:2.,3:4.}/5'::sparsevec;
|
||||
SELECT ' { 1 : 1.5 , 3 : 3.5 } / 5 '::sparsevec;
|
||||
SELECT '{1:1.23456}/1'::sparsevec;
|
||||
SELECT '{1:hello,2:1}/2'::sparsevec;
|
||||
SELECT '{1:NaN,2:1}/2'::sparsevec;
|
||||
SELECT '{1:Infinity,2:1}/2'::sparsevec;
|
||||
SELECT '{1:-Infinity,2:1}/2'::sparsevec;
|
||||
SELECT '{1:1.5e38,2:-1.5e38}/2'::sparsevec;
|
||||
SELECT '{1:1.5e+38,2:-1.5e+38}/2'::sparsevec;
|
||||
SELECT '{1:1.5e-38,2:-1.5e-38}/2'::sparsevec;
|
||||
SELECT '{1:4e38,2:1}/2'::sparsevec;
|
||||
SELECT '{1:-4e38,2:1}/2'::sparsevec;
|
||||
SELECT '{1:1e-46,2:1}/2'::sparsevec;
|
||||
SELECT '{1:-1e-46,2:1}/2'::sparsevec;
|
||||
SELECT ''::sparsevec;
|
||||
SELECT '{'::sparsevec;
|
||||
SELECT '{ '::sparsevec;
|
||||
SELECT '{:'::sparsevec;
|
||||
SELECT '{,'::sparsevec;
|
||||
SELECT '{}'::sparsevec;
|
||||
SELECT '{}/'::sparsevec;
|
||||
SELECT '{}/1'::sparsevec;
|
||||
SELECT '{}/1a'::sparsevec;
|
||||
SELECT '{ }/1'::sparsevec;
|
||||
SELECT '{:}/1'::sparsevec;
|
||||
SELECT '{,}/1'::sparsevec;
|
||||
SELECT '{1,}/1'::sparsevec;
|
||||
SELECT '{:1}/1'::sparsevec;
|
||||
SELECT '{1:}/1'::sparsevec;
|
||||
SELECT '{1a:1}/1'::sparsevec;
|
||||
SELECT '{1:1a}/1'::sparsevec;
|
||||
SELECT '{1:1,}/1'::sparsevec;
|
||||
SELECT '{1:0,2:1,3:0}/3'::sparsevec;
|
||||
SELECT '{2:1,1:1}/2'::sparsevec;
|
||||
SELECT '{}/5'::sparsevec;
|
||||
SELECT '{}/-1'::sparsevec;
|
||||
SELECT '{}/100001'::sparsevec;
|
||||
SELECT '{0:1}/1'::sparsevec;
|
||||
SELECT '{2:1}/1'::sparsevec;
|
||||
|
||||
SELECT '{}/3'::sparsevec(3);
|
||||
SELECT '{}/3'::sparsevec(2);
|
||||
SELECT '{}/3'::sparsevec(3, 2);
|
||||
SELECT '{}/3'::sparsevec('a');
|
||||
SELECT '{}/3'::sparsevec(0);
|
||||
SELECT '{}/3'::sparsevec(100001);
|
||||
83
test/sql/vector_functions.sql
Normal file
83
test/sql/vector_functions.sql
Normal file
@@ -0,0 +1,83 @@
|
||||
SELECT '[1,2,3]'::vector + '[4,5,6]';
|
||||
SELECT '[3e38]'::vector + '[3e38]';
|
||||
SELECT '[1,2,3]'::vector - '[4,5,6]';
|
||||
SELECT '[-3e38]'::vector - '[3e38]';
|
||||
SELECT '[1,2,3]'::vector * '[4,5,6]';
|
||||
SELECT '[1e37]'::vector * '[1e37]';
|
||||
SELECT '[1e-37]'::vector * '[1e-37]';
|
||||
|
||||
SELECT '[1,2,3]'::vector < '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector < '[1,2]';
|
||||
SELECT '[1,2,3]'::vector <= '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector <= '[1,2]';
|
||||
SELECT '[1,2,3]'::vector = '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector = '[1,2]';
|
||||
SELECT '[1,2,3]'::vector != '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector != '[1,2]';
|
||||
SELECT '[1,2,3]'::vector >= '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector >= '[1,2]';
|
||||
SELECT '[1,2,3]'::vector > '[1,2,3]';
|
||||
SELECT '[1,2,3]'::vector > '[1,2]';
|
||||
|
||||
SELECT vector_cmp('[1,2,3]', '[1,2,3]');
|
||||
SELECT vector_cmp('[1,2,3]', '[0,0,0]');
|
||||
SELECT vector_cmp('[0,0,0]', '[1,2,3]');
|
||||
SELECT vector_cmp('[1,2]', '[1,2,3]');
|
||||
SELECT vector_cmp('[1,2,3]', '[1,2]');
|
||||
SELECT vector_cmp('[1,2]', '[2,3,4]');
|
||||
SELECT vector_cmp('[2,3]', '[1,2,3]');
|
||||
|
||||
SELECT vector_dims('[1,2,3]');
|
||||
|
||||
SELECT round(vector_norm('[1,1]')::numeric, 5);
|
||||
SELECT vector_norm('[3,4]');
|
||||
SELECT vector_norm('[0,1]');
|
||||
SELECT vector_norm('[3e37,4e37]')::real;
|
||||
|
||||
SELECT l2_distance('[0,0]'::vector, '[3,4]');
|
||||
SELECT l2_distance('[0,0]'::vector, '[0,1]');
|
||||
SELECT l2_distance('[1,2]'::vector, '[3]');
|
||||
SELECT l2_distance('[3e38]'::vector, '[-3e38]');
|
||||
|
||||
SELECT inner_product('[1,2]'::vector, '[3,4]');
|
||||
SELECT inner_product('[1,2]'::vector, '[3]');
|
||||
SELECT inner_product('[3e38]'::vector, '[3e38]');
|
||||
|
||||
SELECT cosine_distance('[1,2]'::vector, '[2,4]');
|
||||
SELECT cosine_distance('[1,2]'::vector, '[0,0]');
|
||||
SELECT cosine_distance('[1,1]'::vector, '[1,1]');
|
||||
SELECT cosine_distance('[1,0]'::vector, '[0,2]');
|
||||
SELECT cosine_distance('[1,1]'::vector, '[-1,-1]');
|
||||
SELECT cosine_distance('[1,2]'::vector, '[3]');
|
||||
SELECT cosine_distance('[1,1]'::vector, '[1.1,1.1]');
|
||||
SELECT cosine_distance('[1,1]'::vector, '[-1.1,-1.1]');
|
||||
SELECT cosine_distance('[3e38]'::vector, '[3e38]');
|
||||
|
||||
SELECT l1_distance('[0,0]'::vector, '[3,4]');
|
||||
SELECT l1_distance('[0,0]'::vector, '[0,1]');
|
||||
SELECT l1_distance('[1,2]'::vector, '[3]');
|
||||
SELECT l1_distance('[3e38]'::vector, '[-3e38]');
|
||||
|
||||
SELECT quantize_binary('[1,0,-1]'::vector);
|
||||
SELECT quantize_binary('[0,0.1,-0.2,-0.3,0.4,0.5,0.6,-0.7,0.8,-0.9,1]'::vector);
|
||||
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 1, 3);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, 2);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, -1, 3);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, 9);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 1, 0);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, 3, -1);
|
||||
SELECT subvector('[1,2,3,4,5]'::vector, -1, 2);
|
||||
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
SELECT avg(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
SELECT vector_avg(array_agg(n)) FROM generate_series(1, 16002) n;
|
||||
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]']) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2,3]'::vector, '[3,5,7]', NULL]) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY[]::vector[]) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[1,2]'::vector, '[3]']) v;
|
||||
SELECT sum(v) FROM unnest(ARRAY['[3e38]'::vector, '[3e38]']) v;
|
||||
@@ -11,18 +11,30 @@ SELECT '[1.5e38,-1.5e38]'::vector;
|
||||
SELECT '[1.5e+38,-1.5e+38]'::vector;
|
||||
SELECT '[1.5e-38,-1.5e-38]'::vector;
|
||||
SELECT '[4e38,1]'::vector;
|
||||
SELECT '[-4e38,1]'::vector;
|
||||
SELECT '[1e-46,1]'::vector;
|
||||
SELECT '[-1e-46,1]'::vector;
|
||||
SELECT '[1,2,3'::vector;
|
||||
SELECT '[1,2,3]9'::vector;
|
||||
SELECT '1,2,3'::vector;
|
||||
SELECT ''::vector;
|
||||
SELECT '['::vector;
|
||||
SELECT '[ '::vector;
|
||||
SELECT '[,'::vector;
|
||||
SELECT '[]'::vector;
|
||||
SELECT '[ ]'::vector;
|
||||
SELECT '[,]'::vector;
|
||||
SELECT '[1,]'::vector;
|
||||
SELECT '[1a]'::vector;
|
||||
SELECT '[1,,3]'::vector;
|
||||
SELECT '[1, ,3]'::vector;
|
||||
|
||||
SELECT '[1,2,3]'::vector(3);
|
||||
SELECT '[1,2,3]'::vector(2);
|
||||
SELECT '[1,2,3]'::vector(3, 2);
|
||||
SELECT '[1,2,3]'::vector('a');
|
||||
SELECT '[1,2,3]'::vector(0);
|
||||
SELECT '[1,2,3]'::vector(16001);
|
||||
|
||||
SELECT unnest('{"[1,2,3]", "[4,5,6]"}'::vector[]);
|
||||
SELECT '{"[1,2,3]"}'::vector(2)[];
|
||||
@@ -30,18 +30,19 @@ sub test_recall
|
||||
SELECT i FROM tst ORDER BY v $operator '$queries[$i]' LIMIT $limit;
|
||||
));
|
||||
my @actual_ids = split("\n", $actual);
|
||||
my %actual_set = map { $_ => 1 } @actual_ids;
|
||||
|
||||
my @expected_ids = split("\n", $expected[$i]);
|
||||
my %expected_set = map { $_ => 1 } @expected_ids;
|
||||
|
||||
foreach (@expected_ids)
|
||||
foreach (@actual_ids)
|
||||
{
|
||||
if (exists($actual_set{$_}))
|
||||
if (exists($expected_set{$_}))
|
||||
{
|
||||
$correct++;
|
||||
}
|
||||
$total++;
|
||||
}
|
||||
|
||||
$total += $limit;
|
||||
}
|
||||
|
||||
cmp_ok($correct / $total, ">=", $min, $operator);
|
||||
@@ -81,7 +82,12 @@ for my $i (0 .. $#operators)
|
||||
@expected = ();
|
||||
foreach (@queries)
|
||||
{
|
||||
my $res = $node->safe_psql("postgres", "SELECT i FROM tst ORDER BY v $operator '$_' LIMIT $limit;");
|
||||
my $res = $node->safe_psql("postgres", qq(
|
||||
WITH top AS (
|
||||
SELECT v $operator '$_' AS distance FROM tst ORDER BY distance LIMIT $limit
|
||||
)
|
||||
SELECT i FROM tst WHERE (v $operator '$_') <= (SELECT MAX(distance) FROM top)
|
||||
));
|
||||
push(@expected, $res);
|
||||
}
|
||||
|
||||
@@ -98,8 +104,16 @@ for my $i (0 .. $#operators)
|
||||
test_recall(1, 0.71, $operator);
|
||||
test_recall(10, 0.95, $operator);
|
||||
}
|
||||
# Account for equal distances
|
||||
test_recall(100, 0.9925, $operator);
|
||||
|
||||
# Test probes equals lists
|
||||
if ($operator eq "<=>")
|
||||
{
|
||||
test_recall(100, 0.9925, $operator);
|
||||
}
|
||||
else
|
||||
{
|
||||
test_recall(100, 1.00, $operator);
|
||||
}
|
||||
|
||||
$node->safe_psql("postgres", "DROP INDEX idx;");
|
||||
|
||||
@@ -119,8 +133,16 @@ for my $i (0 .. $#operators)
|
||||
test_recall(1, 0.71, $operator);
|
||||
test_recall(10, 0.95, $operator);
|
||||
}
|
||||
# Account for equal distances
|
||||
test_recall(100, 0.9925, $operator);
|
||||
|
||||
# Test probes equals lists
|
||||
if ($operator eq "<=>")
|
||||
{
|
||||
test_recall(100, 0.9925, $operator);
|
||||
}
|
||||
else
|
||||
{
|
||||
test_recall(100, 1.00, $operator);
|
||||
}
|
||||
|
||||
$node->safe_psql("postgres", "DROP INDEX idx;");
|
||||
}
|
||||
|
||||
@@ -49,7 +49,7 @@ is(idx_scan(), 0);
|
||||
$count = $node->safe_psql("postgres", qq(
|
||||
SET enable_seqscan = off;
|
||||
SET ivfflat.probes = 100;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1) LIMIT 20000) t;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1)) t;
|
||||
));
|
||||
is($count, $expected);
|
||||
is(idx_scan(), 1);
|
||||
|
||||
@@ -95,11 +95,10 @@ for my $i (0 .. $#operators)
|
||||
|
||||
$node->safe_psql("postgres", "DROP INDEX idx;");
|
||||
|
||||
# Build index in parallel
|
||||
# Build index in parallel in memory
|
||||
my ($ret, $stdout, $stderr) = $node->psql("postgres", qq(
|
||||
SET client_min_messages = DEBUG;
|
||||
SET min_parallel_table_scan_size = 1;
|
||||
SET hnsw.enable_parallel_build = on;
|
||||
CREATE INDEX idx ON tst USING hnsw (v $opclass);
|
||||
));
|
||||
is($ret, 0, $stderr);
|
||||
@@ -109,6 +108,21 @@ for my $i (0 .. $#operators)
|
||||
test_recall($min, $operator);
|
||||
|
||||
$node->safe_psql("postgres", "DROP INDEX idx;");
|
||||
|
||||
# Build index in parallel on disk
|
||||
# Set parallel_workers on table to use workers with low maintenance_work_mem
|
||||
($ret, $stdout, $stderr) = $node->psql("postgres", qq(
|
||||
ALTER TABLE tst SET (parallel_workers = 2);
|
||||
SET client_min_messages = DEBUG;
|
||||
SET maintenance_work_mem = '4MB';
|
||||
CREATE INDEX idx ON tst USING hnsw (v $opclass);
|
||||
ALTER TABLE tst RESET (parallel_workers);
|
||||
));
|
||||
is($ret, 0, $stderr);
|
||||
like($stderr, qr/using \d+ parallel workers/);
|
||||
like($stderr, qr/hnsw graph no longer fits into maintenance_work_mem/);
|
||||
|
||||
$node->safe_psql("postgres", "DROP INDEX idx;");
|
||||
}
|
||||
|
||||
done_testing();
|
||||
|
||||
@@ -98,6 +98,7 @@ for my $i (0 .. $#operators)
|
||||
push(@expected, $res);
|
||||
}
|
||||
|
||||
# Test approximate results
|
||||
my $min = $operator eq "<#>" ? 0.80 : 0.99;
|
||||
test_recall($min, $operator);
|
||||
|
||||
|
||||
@@ -42,7 +42,7 @@ for my $i (1 .. 20)
|
||||
|
||||
my $count = $node->safe_psql("postgres", qq(
|
||||
SET enable_seqscan = off;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1) LIMIT 20) t;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1)) t;
|
||||
));
|
||||
is($count, 10);
|
||||
|
||||
@@ -63,7 +63,7 @@ $node->pgbench(
|
||||
my $count = $node->safe_psql("postgres", qq(
|
||||
SET enable_seqscan = off;
|
||||
SET hnsw.ef_search = 1000;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1) LIMIT 1000) t;
|
||||
SELECT COUNT(*) FROM (SELECT v FROM tst ORDER BY v <-> (SELECT v FROM tst LIMIT 1)) t;
|
||||
));
|
||||
# Elements may lose all incoming connections with the HNSW algorithm
|
||||
# Vacuuming can fix this if one of the elements neighbors is deleted
|
||||
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user