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viparse

Vietnamese-first document loader for RAG.

PyPI Python License

Website: viparse.trizenx.com

One command turns any Vietnamese document — including legacy TCVN3/VNI/VISCII fonts, scanned PDFs, and old .doc/.xls files — into clean Unicode NFC Markdown/JSON, ready to push into a vector DB.

Why

Generic loaders parse the file but often emit garbled diacritics (legacy fonts) or wrong Unicode normalization. viparse handles exactly that Vietnamese layer: detect & convert legacy encodings to Unicode, enforce NFC, and offer diacritic-aware OCR.

Backbone principle: never hand-write a parser. Wrap well-maintained engines behind thin adapters; if an engine gets a CVE or is abandoned, swap the adapter without touching the rest. Heavy dependencies are lazy-imported via extras (viparse[ocr], viparse[office]).

Where viparse fits

viparse is not a general-purpose document loader and does not try to replace one. Tools like Unstructured, LlamaParse and docling cover a far wider matrix of formats, layout analysis and table reconstruction; viparse covers one layer they are not built around — the Vietnamese text layer.

The concrete gap: a document authored in a pre-Unicode Vietnamese font stores Latin bytes that only render as Vietnamese when the original .VnTime/VNI font is applied. A faithful extractor returns those bytes faithfully — and faithfully wrong:

extracted   B¸o c¸o tµi chÝnh quý II n¨m 2026
correct     Báo cáo tài chính quý II năm 2026

Embeddings built on the first string retrieve nothing. viparse detects the legacy encoding, maps it to real Vietnamese letters and enforces NFC, so the text that reaches your vector DB is the text a human would read.

Use it as the loader for a Vietnamese-heavy corpus, or as a normalization pass over text another loader produced. A published head-to-head benchmark on diacritic accuracy is planned for v0.2 — until it exists, this section deliberately makes no accuracy claims against those tools.

Status

Released and published to PyPI — the version badge above tracks the current release. docs/specs/ holds the full spec map (SPEC-0 … SPEC-8) and CHANGELOG.md the release notes.

Installation

Requires Python 3.11+. The core install is pure stdlib — every parser and OCR binary lives behind an extra:

pip install viparse                # core — pure stdlib, no parser/OCR binaries
pip install "viparse[office]"      # .docx / .xlsx and legacy .doc / .xls
pip install "viparse[pdf]"         # digital PDFs
pip install "viparse[rtf]"         # RTF
pip install "viparse[ocr]"         # scanned PDFs (needs the Tesseract binary)
pip install "viparse[langchain]"   # LangChain document adapter
pip install "viparse[llamaindex]"  # LlamaIndex document adapter
pip install "viparse[mcp]"         # MCP server, for agents
pip install "viparse[all]"         # every engine and adapter

mcp is deliberately not in all: all is about parsing capability, and installing every format handler should not start pulling in a server runtime.

Run viparse doctor to see which engines your installed extras enable.

Usage

import viparse

docs = viparse.load("tai_lieu_cu.pdf")  # list[Document], already NFC
docs = viparse.load("bang_luong.xlsx", output="markdown", encoding="auto")

load() takes the knobs that matter per call — output (text / markdown / json), encoding (override detection), ocr, normalize (NFC by default), max_bytes, plus optional cache and chunk objects. load_batch() accepts the same options plus a workers count and yields one list[Document] per source, so a large corpus streams instead of materialising at once.

from viparse import load_batch
from viparse.cache import DiskCache

for docs in load_batch(paths, output="markdown", workers=8, cache=DiskCache(".viparse-cache")):
    index(docs)

Chunking runs on the document's block structure rather than flat text, so a chunk never straddles a section boundary and a table row is never split in half.

from viparse.integrations.langchain import to_langchain_documents
from viparse.integrations.llamaindex import to_llamaindex_documents
viparse ./docs/**/*.pdf -o md
viparse doctor        # list available engines per installed extras

Using it from an agent

pip install "viparse[mcp]"
viparse-mcp                        # stdio; also `python -m viparse.mcp`

Claude Desktop, Claude Code and anything else that speaks MCP:

{ "mcpServers": { "viparse": { "command": "viparse-mcp" } } }

Four tools. repair_garbled_vietnamese takes a string, not a path, because most of the time the agent already has the broken text in context and there is no file to point at. identify_vietnamese_encoding names the encoding without changing anything, and returns a preview so its answer can be judged rather than trusted. read_vietnamese_document is viparse.load over a path. viparse_version is for bug reports.

The agent skill

skills/garbled-vietnamese-text/SKILL.md is a Claude-style skill covering the same ground for agents that do not have the MCP server: how to recognise each encoding, how to convert, and the traps — never convert text that is already Unicode, a font name is not proof, one document can be two encodings, and detection needs a phrase rather than a four-character fragment.

Copy it into .claude/skills/ (or your agent's equivalent) to use it.

tests/test_skill.py executes every conversion the document claims, reading the examples out of the Markdown table rather than duplicating them. A skill whose examples do not run is worse than no skill: an agent follows it, gets a wrong answer, and has no reason to doubt the instruction.

If you change the tool descriptions, keep the symptom in them

This is the one thing about src/viparse/mcp/server.py that is not obvious.

An agent never thinks "I should use viparse" — it has never heard of it. It encounters B¸o c¸o tµi chÝnh in a file it just read and needs something that recognises that. So the descriptions are written around the symptom: the mojibake itself, the font names (.VnTime, VNI-Times), the encoding names. A description that says "parses Vietnamese documents" is invisible to an agent that does not know the product; one containing tµi chÝnh is found by pattern-matching the broken text.

tests/test_mcp.py asserts the symptoms are present, because that property is easy to lose in an edit that is only trying to tighten the wording.

Architecture

One pipeline, four layers, each behind a Protocol so implementations stay swappable and testable with fakes:

viparse.load("file")
    │
    ├─ route      detect format from magic bytes, pick engines by priority
    ├─ extract    Engine     → RawExtraction   (raw text + encoding/font signals)
    ├─ normalize  Normalizer → NormalizedDoc   (legacy → Unicode, NFC)
    └─ structure  Renderer   → Document        (text / markdown / json, + chunks)

Pipeline holds an EngineRegistry, a Normalizer and a Renderer, all injected — the orchestrator itself depends on no parsing library. The registry returns every engine matching a content type ordered by priority, and that ordered list is the fallback chain: the orchestrator walks it until one engine succeeds.

Module Role
detect.py Magic-byte format detection (zip/OOXML, %PDF, OLE2 for legacy .doc)
registry.py Priority-ordered engine registry and fallback chain
engines/ Thin adapters — docx, xlsx, pdf, rtf, ocr, legacy
normalize/ The moat: detector, tcvn3, vni, viscii, vps, frequency, cleanup
structure/renderer.py Blocks → text / markdown (GFM tables) / versioned json
chunk.py Section-aware, table-row-atomic chunking
safety.py Size ceiling and zip-bomb guard, applied before any parser sees a file
cache.py Opt-in content-hash cache keyed by hash + options + schema version
pipeline.py The orchestrator, error policy and metrics hooks

How encoding detection decides

The primary signal is the font name the extraction engine carries out of the document: a .Vn* font implies TCVN3, a VNI* font implies VNI. That signal is high confidence, so it runs by default.

A content-frequency heuristic — trial-convert, then score against a Vietnamese character model — also ships, but is opt-in. A character model cannot reliably separate legacy Vietnamese from other diacritic-heavy Latin text, so running it unconditionally would corrupt documents it has no business touching. Text already in Unicode passes through untouched either way.

Contributing

See CONTRIBUTING.md. The workflow is deliberately narrow:

  • One task = one branch = one commit = one PR. Branch vip-<id>-<short-slug>, commit and PR title VIP-<id> <short imperative>.
  • main is protected: a PR must pass quality on Python 3.11 / 3.12 / 3.13, plus build and audit.
  • Keep a PR scoped to its task; unrelated work gets its own task.

Specs live in docs/specs/ — a change that alters behaviour should say which SPEC section it implements.

License

MIT © 2026 Đinh Minh Trí (Kayden)

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