io.github.STiFLeR7/memex MCP Server
io.github.STiFLeR7/memex
Bitemporal engineering knowledge graph for AI coding agents—structured repository context with provenance and freshness.
What is the io.github.STiFLeR7/memex MCP server?
The memex MCP server is a daemon that builds a bitemporal knowledge graph of your repository—modules, symbols, decisions, problems, and code evolution—and exposes bounded, provenance-aware context to AI agents through MCP tools and Hermes integration. It turns commits and file changes into structured engineering knowledge that agents can query before tasks, preserving freshness and provenance without storing personal memory or raw session state.
memex creates a Neo4j-backed knowledge graph of your codebase, continuously updated from git commits and file changes. It extracts symbols, imports, and architectural decisions using tree-sitter and Gemini, then exposes 14 MCP tools (8 read, 4 write, 2 analytic) that let AI agents retrieve relevant context—project briefings, symbol relationships, recent decisions, open problems, and impact predictions—ranked by confidence and recency. Use it when working across multiple agents on multi-week projects where architectural decisions need to be remembered and queried across sessions.
How to install io.github.STiFLeR7/memex
Copy-paste configuration for popular MCP clients.
NEO4J_URIrequiredBolt URI of your Neo4j instance
NEO4J_USERrequiredNeo4j username
NEO4J_PASSWORDrequiredsecretNeo4j password
GEMINI_API_KEYrequiredsecretGoogle Gemini API key for entity extraction
Tools & capabilities
Tools this server exposes to the agent.
get_project_context— Session start. Returns a cluster-level briefing under 1500 tokens regardless of repo sizeget_symbol_context— Before editing a function or class. Returns callers, callees, linked decisionsget_recent_decisions— Last N days of architectural decisions, optionally module-scopedget_open_problems— Active bugs and tech debt, sorted by severitysearch_context— Hybrid search: semantic × keyword × graph traversal × RRF mergeget_stale_context— Edges whose composite confidence dropped below thresholdexplain_change— Given a commit SHA, cross-references the diff with linked Decision/Problem nodes and asks Gemini Pro for a grounded explanationpredict_impact— Given a file path, returns a ranked list of modules likely affected based on graph couplingrecord_decision— After making a technical choice. Supports corroborates (reinforce) and supersedes (replace)record_problem— When discovering a bug or piece of tech debtresolve_problem— When a tracked problem is fixedinvalidate_edge— When a stored fact is no longer truememex stats— Show context token savings and telemetry statsmemex graph— Generate self-contained D3 force layout visualization with cluster overlays
Use cases
- Query architectural decisions and tech debt across sessions without losing context between agent interactions
- Retrieve symbol relationships and impact analysis before refactoring to understand callers, callees, and downstream effects
- Get a cluster-level project briefing at session start that fits in 1500 tokens regardless of repository size
- Track and validate engineering decisions over time with bitemporal confidence scoring that decays unvalidated facts after 30 days
- Measure token savings and context efficiency across multiple AI agents (Claude, Cursor, Codex) working on the same codebase
io.github.STiFLeR7/memex MCP server FAQ
memex builds a bitemporal knowledge graph of your repository—modules, symbols, decisions, problems, and code evolution—and exposes it through 14 MCP tools. AI agents can query relevant context before tasks (project briefings, symbol relationships, recent decisions, impact predictions) with provenance and freshness preserved, reducing token waste and improving decision quality across multi-week projects.
Yes, memex is MIT-licensed open-source software. It requires a Gemini API key (free tier available) for synthesis of commits into Decision nodes, and Neo4j (runs locally in Docker) for graph storage.
For Claude Code: use `/plugin marketplace add STiFLeR7/claude-plugins` then `/plugin install memex-mcp@stifler-marketplace`. For Cursor: add memex to `~/.cursor/mcp.json` with command `npx` and args `["-y", "stifler-memex-mcp", "serve", "--repo", "."]`. Both require Docker running Neo4j and a Gemini API key in `.env`.
memex requires a Gemini API key (for commit synthesis) and Neo4j credentials. For single-user setup, Neo4j runs locally in Docker with default credentials. For team deployment, Neo4j auth is enabled by default and bootstrap scripts capture an initial admin key.
Confidence is computed at query time from base_confidence, validation status, time since reinforcement, and access count. Validated facts decay slowly (~139-day half-life); unvalidated facts become stale after 30 days. The `get_stale_context` tool surfaces low-confidence edges, and `memex review` queues decisions for human validation.
Yes. One watcher and one MCP server can manage hundreds of repositories; the `--repo` flag switches scope. memex is multi-agent aware and designed for teams where multiple developers use different AI agents (Claude, Cursor, Codex) on the same codebase, sharing a single Neo4j graph.
README (reference)
Source of truth, from the repository.
memex — trusted engineering context for agentic software engineering
<!-- mcp-name: io.github.STiFLeR7/memex -->A protocol-neutral engineering-context layer for AI coding agents. memex builds a bitemporal knowledge graph of your repository — modules, symbols, decisions, problems, evidence, and code evolution — and exposes bounded, provenance-aware context through Hermes MemoryProvider or MCP.
A daemon and MCP server that turns commits and file changes into structured engineering knowledge. Agents can receive relevant repository context before a task, with freshness and provenance preserved, without making memex a source of personal memory or raw session state.

flowchart LR
A[Your repository<br/>files + git] --> B[memex watcher<br/>tree-sitter + Gemini]
B --> C[Neo4j graph<br/>bitemporal facts]
C --> D[memex core<br/>ContextPacket selection]
D --> E[Hermes MemoryProvider<br/>automatic read-only prefetch]
D --> F[MCP fallback<br/>explicit lookup]
E --> G[AI coding agent]
F --> G
style B fill:#cfe8ff,stroke:#0066cc,color:#000
style C fill:#fff4cf,stroke:#cc9900,color:#000
style E fill:#d4f5d4,stroke:#2d8f2d,color:#000
Install
Via Claude Code marketplace
/plugin marketplace add STiFLeR7/claude-plugins
/plugin install memex-mcp@stifler-marketplace
Restart your Claude Code session.
Manual
docker compose -f docker/docker-compose.yml up -d
cat > .env <<EOF
NEO4J_URI=bolt://localhost:7687
NEO4J_USER=neo4j
NEO4J_PASSWORD=memex-local
GEMINI_API_KEY=your-key-here
EOF
npx stifler-memex-mcp init --repo .
npx stifler-memex-mcp watch --repo .
npx stifler-memex-mcp serve --repo .
Hermes integration
The v0.9 Hermes integration is read-only. Hermes retains personal memory, raw
session state, and execution state. memex supplies repository engineering
context through a bounded ContextPacket; it does not ingest Hermes
state.db, transcripts, prompts, or tool results.
Add the memex provider to Hermes' profile configuration:
memory:
provider: memex
plugins:
memex:
repo_path: /absolute/path/to/repository
prefetch_timeout_seconds: 7
max_items: 8
max_chars: 12000
If Hermes is not installed, use the same context selector through the MCP
get_engineering_context tool. Both paths share the protocol-neutral memex
core and fail open when retrieval is unavailable.
| Channel | Command |
|---|---|
| Claude Code marketplace | /plugin install memex-mcp@stifler-marketplace |
| npx (no install) | npx stifler-memex-mcp <cmd> |
| uv | uv add memex-mcp |
| pip | pip install memex-mcp |
| source | git clone github.com/STiFLeR7/memex && uv sync |
Self-hosted team deployment
For a shared team setup (one Neo4j + one memex-server, auth on by default, Neo4j's ports never exposed to the host):
bash docker/bootstrap-team-env.sh
docker compose -f docker/docker-compose.team.yml up -d
See docker/TEAM-DEPLOY.md for the full flow, capturing the
initial admin key, and the down -v footgun to avoid.
At a glance
| Property | Value |
|---|---|
| Output | A Neo4j graph populated continuously from your repo |
| Storage | Neo4j via Graphiti. Bitemporal — every edge has created_at and optional expired_at |
| Context | Bounded, ranked, provenance-aware ContextPacket |
| Integrations | Hermes MemoryProvider, MCP resources/tools, Claude Code, Cursor, Codex, Gemini CLI |
| Failure mode | Fail-open; agent execution continues without memex |
| Granularity | Scales from 50 to 5000+ modules via hierarchical Leiden clusters |
| Synthesis | Gemini Flash distills commits into Decision nodes; Pro for grounded synthesis |
| Confidence | Computed at query time. Two-regime decay (validated half-life ~139d, unvalidated stale at 30d) |
| Write governance | Per-node-type ACL, intent-confirmation on agent writes, explicit corroborates / supersedes semantics |
| Goal 10 evidence | 8/8 valid paired runs, 0 treatment failures, 0 treatment regressions |
The lifecycle
flowchart TD
Init[memex init<br/>extract baseline] --> Watch[memex watch<br/>daemon + git hooks]
Watch -->|commit| Extract[tree-sitter extract<br/>symbols, imports, lockfile]
Extract --> Synth[Gemini Flash<br/>diff → Decision nodes]
Synth --> Write[Graphiti add_episode<br/>+ post-hoc bitemporal SET]
Write --> Decay[Scheduler<br/>nightly confidence decay]
Decay -->|stale edges| Archive[expired_at = now]
Serve[memex serve<br/>MCP stdio/HTTP] -.->|reads| Write
Agent[AI agent] -->|14 MCP tools| Serve
Serve -->|record_decision / record_problem| Write
Cluster[memex cluster<br/>Leiden over hybrid edges] -.->|every N commits| Write
style Init fill:#e8f4ff,color:#000
style Watch fill:#fff4cf,color:#000
style Synth fill:#ffe0cc,color:#000
style Serve fill:#d4f5d4,color:#000
MCP tools
14 tools — eight read, four write, two analytic.
Read
| Tool | When |
|---|---|
get_project_context | Session start. Returns a cluster-level briefing under 1500 tokens regardless of repo size |
get_symbol_context | Before editing a function or class. Returns callers, callees, linked decisions |
get_recent_decisions | Last N days of architectural decisions, optionally module-scoped |
get_open_problems | Active bugs and tech debt, sorted by severity |
search_context | Hybrid search: semantic × keyword × graph traversal × RRF merge |
get_stale_context | Edges whose composite confidence dropped below threshold |
explain_change | Given a commit SHA, cross-references the diff with linked Decision/Problem nodes and asks Gemini Pro for a grounded explanation |
predict_impact | Given a file path, returns a ranked list of modules likely affected based on graph coupling (no LLM call) |
Write
| Tool | When |
|---|---|
record_decision | After making a technical choice. Supports corroborates (reinforce) and supersedes (replace) |
record_problem | When discovering a bug or piece of tech debt |
resolve_problem | When a tracked problem is fixed |
invalidate_edge | When a stored fact is no longer true |
Bitemporal confidence
Confidence is not a stored number that mutates. It is computed at query time from base_confidence, validation status, time since last reinforcement, and access count.
flowchart LR
Edge[Edge created<br/>base_confidence] --> Q{Validated by<br/>a human?}
Q -->|yes| Slow[Slow regime<br/>half-life ~139d]
Q -->|no| Fast[Fast regime<br/>stale at exactly 30d]
Slow --> Score[Composite score<br/>conf × recency × rehearsal]
Fast --> Score
Score -->|below floor| Stale[get_stale_context surfaces it]
Score -->|access| Bump[last_reinforced_at updated]
Bump --> Score
style Slow fill:#d4f5d4,color:#000
style Fast fill:#ffd4d4,color:#000
| Property | Value |
|---|---|
| Validated half-life | ~139 days |
| Unvalidated stale threshold | 30 days (composite < 0.3) |
| Recency τ | 90 days (exponential decay) |
| Composite formula | conf × recency × (1 + rehearsal_w × log(1 + access_count)) |
| Conflict similarity threshold | 0.4 (below this + overlapping validity = conflict) |
| Intent-confirmation threshold | 0.85 (MCP write similarity check) |
Hierarchical clusters
memex cluster runs hierarchical Leiden over a hybrid edge graph:
| Edge type | Weight |
|---|---|
| Directory co-location | 1.0 |
| Module imports | 2.0 |
| Symbol calls | log(1 + calls) |
| Property | Value |
|---|---|
| Algorithm | graspologic.partition.hierarchical_leiden with fixed seed |
| Naming | TF-IDF top-3 over module docstrings + symbol names, parent-dir fallback |
| ID pinning | Jaccard ≥ 0.5 across reruns (cluster names stay stable through renames) |
| User overrides | .memex/clusters.yaml — any assignment can be locked |
| Context budget | get_project_context stays under 1500 tokens whether your repo has 50 or 5000 modules |
Measure Your Savings
memex tracks token reduction metrics and human review actions locally in a SQLite database (~/.config/memex/telemetry.db).
You can query your savings at any time using the CLI:
memex stats
Or view the raw JSON payload:
memex stats --json
Or target a specific repository scope:
memex stats --repo /path/to/repo
This returns an aggregation of:
- Period Summaries: Calls, tokens returned, naive tokens (size of files requested), tokens saved, and token reduction percentage across
today,last 7 days,last 30 days, andlifetime. - Top Tools: The most valuable tools sorted by total tokens saved.
- Agent Clients: Active agents (Claude Code, Gemini CLI, Cursor, Codex) and their token saving distribution.
- Validation Health: Total validated, unvalidated, and corroborated nodes, along with the elapsed days since the last review.
The same statistics are exposed via the HTTP MCP transport:
GET /stats?repo=/path/to/repo
Authorization: Bearer <your-key>
Connect your agent
<details> <summary><b>Claude Code</b></summary>Marketplace install above does this for you. Manual wiring in .claude/settings.json:
{
"mcpServers": {
"memex": {
"type": "stdio",
"command": "npx",
"args": ["-y", "stifler-memex-mcp", "serve", "--repo", "."]
}
}
}
</details>
<details>
<summary><b>Cursor</b></summary>
Add to ~/.cursor/mcp.json:
{
"mcpServers": {
"memex": {
"command": "npx",
"args": ["-y", "stifler-memex-mcp", "serve", "--repo", "."]
}
}
}
</details>
<details>
<summary><b>Gemini CLI</b></summary>
Add to ~/.gemini/settings.json:
{
"mcpServers": {
"memex": {
"command": "npx",
"args": ["-y", "stifler-memex-mcp", "serve", "--repo", "."]
}
}
}
</details>
<details>
<summary><b>Codex</b></summary>
Add to ~/.codex/config.toml:
[mcp_servers.memex]
command = "npx"
args = ["-y", "stifler-memex-mcp", "serve", "--repo", "."]
</details>
<details>
<summary><b>Anthropic memory tool (memory_20250818)</b></summary>
memex can back Claude's native memory tool — agents read from a per-session graph projection plus a writable scratch zone.
memex memory-tool serve --repo . # in-process
memex memory-tool serve --repo . --transport http # FastAPI on :7464
from memex.memory_tool import MemexAsyncMemoryTool
memory_tool = MemexAsyncMemoryTool(repo_root=".")
client.beta.messages.run_tools(..., tools=[memory_tool])
</details>
Operating principles
| # | Principle | The bet |
|---|---|---|
| 1 | Bitemporal, never destructive | Edges are expired, not deleted. WHERE r.expired_at IS NULL filters live state |
| 2 | Confidence is computed, not stored | Mutating a number invites silent drift. Recompute every read |
| 3 | Two regimes for decay | Validated facts decay slowly; unvalidated facts must earn their place by being accessed |
| 4 | Human in the loop | memex review queues lowest-confidence Decision nodes for explicit validation |
| 5 | Write governance | Per-node-type ACL. Decision.policy = open, Module.policy = locked. Intent-confirmation on similar-content writes |
| 6 | Tokens are budgeted | get_project_context stays under 1500 tokens at any repo size via Leiden clusters |
| 7 | Synthesis only on commits | The watcher batches by debounce window. Gemini Flash is not in the hot path of a tool call |
| 8 | Pro for synthesis, Flash for extraction | explain_change uses Pro because grounding matters. Everything else uses Flash |
| 9 | Multi-repo aware | One watcher + one MCP server can manage hundreds of repos. --repo switches scope |
| 10 | Local-first | Neo4j runs in your Docker. Gemini is the only outbound call, and only on commits |
When to use memex
| Use it when | Skip it when |
|---|---|
| Multi-week or multi-month project | One-shot script, throwaway prototype |
| You work across multiple agents (Claude, Cursor, Codex) and want shared context | You only ever pair with one agent on one task |
| Architectural decisions are made over time and need to be remembered | The whole project fits in a single 200k-token context window |
| You want to query "what did we decide about X" from any session | Your repo is already small enough to paste into the prompt |
| Multiple developers using AI agents on the same codebase | Solo work where you never /clear |
Project structure
memex/
├── memex/
│ ├── extractor/ tree-sitter + lockfile parsers
│ ├── graph/ Neo4j writes, confidence, archive, cluster engine
│ ├── synthesizer/ Gemini Flash → Decision nodes
│ ├── mcp_server/ 14 MCP tools (read + write + analytic)
│ ├── memory_tool/ Anthropic memory_20250818 adapter
│ ├── watcher/ daemon + git hooks
│ └── cli.py init / watch / serve / review / graph / cluster
├── tests/ unit, integration, and objective evaluation suites
├── docker/ Neo4j compose
├── npm/ npx wrapper (publishes as stifler-memex-mcp)
└── Dockerfile introspection-only image for MCP directory sandboxes
Commands
| Command | What it does |
|---|---|
memex init | Extract baseline graph state, run first cluster pass |
memex watch | Daemon that listens for file + git events and writes to Neo4j |
memex serve | Run the MCP server (stdio, HTTP, or both) |
memex review | TUI that walks lowest-confidence decisions for human validation |
memex graph --output graph.html | Self-contained D3 force layout with cluster overlays |
memex cluster [--rerun] [--dry-run] | Run Leiden over the hybrid edge graph; pin cluster IDs by Jaccard ≥ 0.5 |
memex memory-tool serve | Back Anthropic's memory_20250818 tool with a graph projection |
memex stats [--json] [--repo <path>] | Show context token savings and telemetry stats |
License
MIT. See LICENSE.
Author
Hill Patel (@STiFLeR7)
Core Contributors & Maintainers
- Hill Patel (@STiFLeR7) — architect, maintainer
- Nirvaan Lagishetty (@Nirvaan05) — lead contributor, maintainer
Contributing
Open an issue or PR. uv sync --all-extras installs the development toolchain.
Run uv run pytest -m "not integration" for the offline suite and uv run ruff check . before opening a PR. Version bumps must update pyproject.toml,
npm/package.json, server.json, and the team Docker image tag together.
The v0.9 release record is in CHANGELOG.md, with the
architecture and evaluation evidence under docs/architecture/v0.9/.
Vannevar Bush, 1945: "Consider a future device for individual use, which is a sort of mechanized private file and library. It needs a name, and to coin one at random, memex will do."
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