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Caching based RAG primitives

Project description

rager

Composable RAG primitives with caching baked in.

Install

uv add rager

Getting started

uv run pytest
uv run prek install

For GPU (CUDA/ROCm) torch, add the matching PyTorch index to your own project and install torch from it — those builds aren't on PyPI.

Example

Wire the primitives together yourself — there is no hidden pipeline. This chunks documents, embeds and indexes each chunk under its own key, then answers a query from the nearest chunk:

chunker = SemanticChunker()
embedder = SentenceTransformerDenseEmbedder()
index = FaissIndex(384, MemoryStore())
chunks = MemoryStore()
generator = TransformersGenerator()

key = 0
for document in documents:
    for chunk in chunker.chunks(document):
        index[key] = await embedder.embed(chunk)
        chunks[key] = chunk
        key += 1

query = "Why do cats purr?"
(key,) = await index.similar(await embedder.embed(query), embedding_results=1)
answer = await generator.prompt(f"Answer using only the context.\n{chunks[key]}\n{query}")

tests/application/ has full dense and hybrid recipes.

API

Every stage is a Protocol with concrete implementations. Each module also ships an abstract Base* helper that derives the protocol from a few core operations, so you can drop in your own implementation. async methods batch concurrent calls; model-backed methods cache results under .jar/.

Parsers — extract text units from files

  • Parser — protocol: units(file) returns text units, id(file) returns the content Hash.
  • BaseParser — derives a cached units() from _jar, _parse, and id.
  • UnstructuredFileParser — parses any file supported by unstructured.
  • PdfFileParser, MarkdownFileParser, CsvFileParser — aliases of UnstructuredFileParser for readable call sites.

Chunkers — split units into chunks

  • Chunker — protocol: chunks(unit) -> list[str].
  • BaseChunker — derives a cached chunks() from _jar and _split.
  • SemanticChunker — splits on semantic boundaries with a token budget: SemanticChunker(model_name="gpt-3.5-turbo", chunk_size=1000, overlap=0).

Embedders — turn chunks into vectors

  • Embedder[E] — protocol: async embed(chunk) -> E.
  • BaseEmbedder — derives a cached embed() from _jar and _encode.
  • SentenceTransformerDenseEmbedder — dense, L2-normalized DenseEmbedding via SentenceTransformers (default all-MiniLM-L6-v2).
  • SpladeSparseEmbedder — sparse SparseEmbedding via a SPLADE encoder (default prithivida/Splade_PP_en_v1).

Indexes — store vectors and search by similarity

  • Index[K, E] — protocol: a Store[K, E] of embeddings plus async similar(embedding, embedding_results=100) -> list[key]. Ranks by inner product (equals cosine for L2-normalized vectors).
  • FaissIndex(dimensions, key_map) — flat FAISS index; seals embeddings on disk under .jar/ and records each key's FAISS id in the injected key_map store.
  • SparseIndex(embedding_map, token_map) — inner-product search over sparse weight maps through an inverted token index; the injected stores decide whether embeddings live in memory or on disk, and search only loads the posting lists of the query's tokens.

Fusers — merge ranked lists

  • Fuser[V] — protocol: fuse(*rankings) -> list[V].
  • BaseFuser — derives fuse() from _weight(rank, size).
  • ReciprocalRankFuser — reciprocal rank fusion with smoothing constant k (default 60).
  • BordaCountFuser — Borda count fusion.

Scorers — rerank chunks against a query

  • Scorer — protocol: async score(query, chunk) -> float.
  • BaseScorer — derives a cached score() from _jar and _predict.
  • CrossEncoderScorer — cross-encoder reranker (default cross-encoder/ms-marco-MiniLM-L6-v2).

Generators — produce an answer

  • Generator — protocol: async prompt(query) -> str.
  • BaseGenerator — derives a cached prompt() from _jar and _generate.
  • TransformersGenerator — local Transformers text-generation model (default HuggingFaceTB/SmolLM2-135M-Instruct, max_new_tokens=512).

Stores — map keys to data

  • Store[K, V] — protocol: mapping-style access (store[key], del store[key], in, len(), iteration) plus set(key, value), get(key) -> value | None, remove(key), clear(), and keys().
  • BaseStore — derives the full protocol from keys, __setitem__, __getitem__, and __delitem__.
  • MemoryStore[K, V] — in-memory map from key to value (chunk text, embeddings, metadata, ...).
  • FileStore[K, V] — like MemoryStore, but seals values on disk under .jar/, keeping only keys and digests in memory.

Types

  • Hash — a blake3 hasher; the content ID returned by parsers.
  • DenseEmbeddinglist[float].
  • SparseEmbeddingdict[int, float] mapping token id to weight.

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