* Tool results reach the frameworks as MCP content; the frameworks render it get_document_image returns an MCP image block, and the SDK flattened every tool result to text on its way to a framework, so an own-model chat received "[image/png content omitted: ~256 KB]" where the hosted lanes (HostedMCPTool, the http MCP config, the managed chat) received the page. The rule now: the SDK carries MCP types and renders nothing. Each framework gets the tool set the way it consumes MCP, and converts the content itself. - McpBridge.call_tool returns the content blocks untouched; the invoke contract behind _tool_specs is (content blocks, is_error) on the cloud and local paths alike (local tools send one text block). - openai-agents: an in-process MCPServer over the tool specs, and the FunctionTools are MCPUtil.to_function_tool over it. The framework's own MCP conversion builds the tools (schema verbatim, strict off) and renders results (text items, image data URLs); its failure pipeline answers malformed arguments. The hand-built FunctionTools are gone. - Anthropic tool runner: results validated as CallToolResult and rendered by the Anthropic SDK's mcp_content (text blocks, base64 image blocks), on the error channel too. - Claude Agent SDK: the content passes through, it is MCP already. - Plain functions (agent_tools): render_text, the former flattening, keeps the size stub for binary content; a string cannot carry an image. Wire consequences: tool results on the openai-agents lanes are the framework's structured items (a single text item for a text result) rather than a bare string, and the Anthropic tool_result content is a block list. ChatStream tool_result events carry that structured output; the woven display shows its text. mcp becomes a declared dependency: it already arrives with openai-agents, and both adapters use its types. Verified live on a 15-page paper, page 1, across chat() on the LiteLLM lane (gpt-5.6-luna), chat(protocol="responses"), and chat(protocol="messages", claude-sonnet-4-6): each answer described the red attribution text and the arXiv stamp rotated along the left margin. Claude-Session: https://claude.ai/code/session_01F8QMbFKngRT4TpBAKfuNVW * Relay test asserts the wire aliases: mcp 1.x and 2.x differ in attribute names CI installs mcp 2.x, where CallToolResult exposes is_error and content blocks exposes mime_type as attributes, with the wire names (isError, mimeType) as aliases; mcp 1.x uses the wire names as attributes. The adapters only ever validate from and dump to the wire shape, so they run on both; the test now does the same. Claude-Session: https://claude.ai/code/session_01F8QMbFKngRT4TpBAKfuNVW
PageIndex: Vectorless, Reasoning-based RAG
Reasoning-based RAG ◦ No Vector DB, No Chunking ◦ Context-Aware Retrieval ◦ Reads Like a Human
🌐 Website • ☁️ Cloud • 📖 Docs • 📝 Blog • ✉️ Contact
Updates
- [Aug '26] 🔥 PageIndex SDK:
pip install -U pageindexnow ships local mode: index, retrieve, and chat entirely on your machine with your own LLM key, or point the same client at PageIndex Cloud with an API key. - [Aug '26] ⚡ PageIndex Flash: fast tree index generation for text-based PDFs, now the default indexing method in PageIndex SDK local mode.
- Scale PageIndex to Millions of Documents: PageIndex File System is a file-level tree indexing layer that lets PageIndex reason over an entire corpus, not just a single document.
- PageIndex App: a human-like document analysis agent for long professional documents.
What is PageIndex?
Are you frustrated with vector database retrieval accuracy for long and complex documents? Vector-based RAG retrieves by semantic similarity. But similarity ≠ relevance — what retrieval actually needs is relevance, and relevance requires reasoning. On professional documents that demand contextual understanding, domain expertise, and multi-step reasoning, similarity search misses what is relevant but not similar, and returns what is similar but not relevant.
Inspired by AlphaGo, PageIndex replaces the vector index with a hierarchical tree index and lets an LLM reason its way through it, the way a human expert turns to and reads the right section of a long report. Retrieval happens in two steps:
- Index: generate a tree-structure index for each document
- Retrieve: agentically search that tree with LLM reasoning
TL;DR
PageIndex is a vectorless, reasoning-based RAG engine that mirrors how humans read, delivering traceable, explainable, and context-aware retrieval, with no vector DBs or chunking.
Compare with Vector RAG
| Vector RAG | PageIndex | |
|---|---|---|
| Index | vector index | tree index |
| Unit | fixed-size chunks | natural sections |
| Retrieval | semantic similarity search | LLM reasoning over the tree |
| Result | opaque, “vibe retrieval” | traceable to explicit references |
| Context | query embedding only | full context: conversation history, domain knowledge, etc. |
It is ideal for financial reports, legal documents, regulatory filings, technical manuals, medical literature, academic textbooks, and any other long, complex professional document.
Quickstart
pip install -U pageindex
import os
from pageindex import PageIndexClient
os.environ["OPENAI_API_KEY"] = "your-openai-key"
client = PageIndexClient(
index="gpt-5.6-luna", # model to build the tree index
chat="gpt-5.6-sol", # model to search the tree
)
doc_id = client.submit_document("report.pdf")["doc_id"]
answer = client.chat("What was the 2023 operating margin?", doc_id=doc_id)
print(answer)
Model Recommendations
index=: a basic model is sufficient. The tree structure itself is extracted from the document layout without an LLM; the index model only summarizes and refines it, which a basic model does well.chat=: use the best model you can afford. The chat model searches the tree to retrieve information. See Query cost and accuracy.
Use PageIndex through the SDK client →
Configure other models, streaming, multi-document search, citations, and more.
Integrate PageIndex with your own agent →
Drop PageIndex tools into the OpenAI Agents SDK, the Claude Agent SDK, or any other framework.
Benchmarks
Local indexing cost and time
Building a tree locally runs about $0.001 per page with gpt-5.6-luna as the index model, so a 1,000-page textbook costs a little over a dollar and a few minutes, once, and every later question reuses it. PageIndex is designed not to rely heavily on the model used at index time, so in our experiments a basic model does not hurt quality.
Indexing time also scales predictably with document length. In the same local setup, the benchmark documents (9 to 1,098 pages) finished in roughly 13 seconds to 4.5 minutes.
Query cost and accuracy
PageIndex-OSS-Benchmark measures exactly the setup in the quickstart above (PageIndexClient() in local mode, flash indexing, no OCR) on 62 lookup questions over 34 PDFs (1,945 pages) drawn from MMLongBench-Doc-V2. Every question's answer is a fact stated in running text, so a wrong answer is a retrieval or reading failure, not a reasoning one.
Full results, data, and the runner are in the benchmark repo.
Cost per query vs. native PDF input
The alternative to retrieval is handing the model the whole PDF on every question. That cost grows with the document; PageIndex's does not, because it reads only the nodes its reasoning reaches. On documents where both routes return the same answer, native PDF input costs 2.1× more at 52 pages and 16.6× more at 420 (gpt-5.6-sol, prompt caching excluded) — and at 805 pages the document no longer fits in the context window at all.
Leading accuracy on FinanceBench
PageIndex reached a state-of-the-art 98.7% accuracy on FinanceBench (financial document QA benchmark), vastly outperforming vector-based RAG.
Explore the full FinanceBench evaluation results and the blog post.
PageIndex Cloud
The open-source version is ideal for text-heavy PDFs and local workflows. With PageIndex Cloud, document indexing and storage run in the cloud: PageIndex handles parsing, OCR, image understanding, tree-index construction, and managed storage for you. The chat and retrieval layer remains compatible with your model, so you can search the cloud-hosted index using the model provider your application already uses.
Moving indexing and storage from Local to Cloud only requires a PageIndex API key:
import os
from pageindex import PageIndexClient
os.environ["PAGEINDEX_API_KEY"] = "your-pageindex-key"
os.environ["OPENAI_API_KEY"] = "your-openai-key"
client = PageIndexClient(
index="cloud", # build and store the index in PageIndex Cloud
chat="gpt-5.6-sol", # use your preferred compatible model for chat
)
doc_id = client.submit_document("report.pdf", wait=True)["doc_id"]
print(client.chat("What was the 2023 operating margin?", doc_id=doc_id))
| Capability | Local (this repo) | Cloud (get an API key) |
|---|---|---|
| Best for | text-heavy PDFs and local workflows | scanned, image-heavy, and large document collections |
| Indexing | runs locally | runs in PageIndex Cloud, with production OCR and image understanding |
| Storage | local | managed in PageIndex Cloud |
| Chat model | your model | your model, or the managed chat included with your key |
| Citations | page-level | line-level |
| Image understanding | — | ✅ |
| Multi-document scale | manual | PageIndex File System |
| MCP server | — | ✅ |
More About PageIndex Cloud
- Scale PageIndex to Millions of Documents: PageIndex File System is a Cloud-only, file-level tree indexing layer that lets PageIndex reason over an entire corpus, not just a single document.
Ready to Try It?
- Get a PageIndex API key
- Read the PageIndex Cloud documentation
For dedicated deployment (VPC or on-premises), contact us or book a demo.
⭐ Support Us
Leave us a star 🌟 if you like our project. Thank you!
Please cite this work as:
Mingtian Zhang, Yu Tang and PageIndex Team,
"PageIndex: Next-Generation Vectorless, Reasoning-based RAG",
PageIndex Blog, Sep 2025.
Or use the BibTeX citation.
@article{zhang2025pageindex,
author = {Mingtian Zhang and Yu Tang and PageIndex Team},
title = {PageIndex: Next-Generation Vectorless, Reasoning-based RAG},
journal = {PageIndex Blog},
year = {2025},
month = {September},
note = {https://pageindex.ai/blog/pageindex-intro},
}
Connect with Us
© 2026 PageIndex AI



