pond
The Pond server provides read-only, MCP-based access to a searchable archive of AI agent session history (Claude Code, Codex, opencode, etc.). It enables recall, retrieval, and SQL analysis of past sessions and messages.
Search: Use
pond_searchfor semantic (vector) or full-text (BM25) search across sessions, with filters for project, agent, session ID, and date range. Results are grouped by session, sorted by relevance or recency.Retrieve sessions: Use
pond_get_sessionto read a full session transcript chronologically, with paging and support for anchoring at start, end, or a specific message. Subagent sessions are accessible via footer links.Inspect messages: Use
pond_get_messageto expand a message with full content (tool calls, results, reasoning, files) and surrounding context (configurable before/after window).Run SQL queries: Use
pond_sqlto execute read-only SQL (PostgreSQL/DataFusion compatible) over thesessions,messages, andpartstables for aggregation, tool-call analytics, text search, or bulk export to Parquet/NDJSON.All tools are read-only and idempotent, safe for agents. The primary use case is to let AI agents query past sessions to recall how previous problems were solved.
It also offers
schema://pondandschema://pond-sqlresources for canonical data definitions.
pond
"I know we discussed that before. Why can't I find that damn conversation?"
Pond makes every AI agent session you've ever run - Claude Code, Codex, any tool, any machine - searchable in one place.
Your agent history is already on your disk: thousands of sessions full of decisions, fixes, and dead ends - scattered across tools that can't search them. Pond ingests them all automatically and losslessly into storage you own (a local dir or your own S3 bucket), makes the whole corpus searchable and SQL-queryable, and hands that recall back to your agents over MCP - so "how did we fix this before?" is a query, not an archaeology dig. Sessions stop being locked to the tool that created them: any session can be restored into any supported client and continued there.
brew install tenequm/tap/pond # macOS / Linux
scoop bucket add tenequm https://github.com/tenequm/scoop-bucket # Windows
scoop install tenequm/pondOr prompt your agent: "Please install and set up pond (see github.com/tenequm/pond)" - the full, failure-proofed version of that prompt is in Connect your agents.
Status: pre-v1. Schemas, wire shapes, and config keys are subject to breaking change until v1. Full documentation lives at pond.locker; the contract is docs/spec.md.
Quickstart
Install, run guided setup, and ingest your local sessions:
brew install tenequm/tap/pond # macOS / Linux; Windows: Scoop or a release zip - see Install below
pond init # guided setup: storage, adapters, MCP + agent skill, optional schedule
pond sync # ingest and index - every enabled adapterpond init registers pond as an MCP server for Claude Code and installs the bundled pond skill; for Codex it prints the command to run instead - restart the client afterwards so the tools load. By hand: claude mcp add -s user pond -- pond mcp, codex mcp add pond -- pond mcp; skill: mkdir -p ~/.claude/skills/pond && pond skill > ~/.claude/skills/pond/SKILL.md (that whole line is POSIX-only - mkdir -p, &&, and > all break or corrupt in Windows PowerShell 5.1; use the PowerShell block in Connect your agents). Then ask your agent - real prompts from daily use:
check in pond how we solved this before, then apply the same fix herewhere we left off yesterday - check pond, then continueare you sure that won't break X? check in pond how we struggled with exactly thisSessions are picked up automatically from Claude Code, the Claude desktop app (local agent mode), Codex CLI, opencode, pi-coding-agent, oh-my-pi, OpenClaw, NanoClaw, Hermes Agent, letta-code, and grok-build. A Claude.ai data export imports with pond sync claude-ai-export --path <path> (manual download, so not auto-discovered).
Related MCP server: suasor
Isn't this another memory tool?
No - it's the layer underneath one. Memory tools store what they decided you'd need - facts, summaries, filed chunks; the sessions themselves are gone. Pond keeps the sessions: every message, tool call, and result, value-complete, cross-client, in storage you own, never pruned - searchable over MCP and restorable into any client. Memory is a derived view you can always rebuild from an archive; an archive can never be rebuilt from memories.
Three kinds of tool get called "memory". Side by side:
pond | Session search (ctx, deja-vu, cass) | Memory layers (Mem0, Letta) | |
History from before install | yes | yes | no |
What is kept | the whole session | a search index ¹ | extracted facts |
Where it lives | local dir or S3 bucket | local index | the tool's database |
After the harness deletes the file | still there | gone at next refresh ¹ | only the extract |
Several machines | one shared bucket | pulled into one machine ² | shared server or cloud |
Agent access | CLI, MCP, HTTP, SQL | CLI, MCP ³ | HTTP, SDK, MCP |
¹ cass also mirrors the raw files, so they outlive the source. ² deja-vu copies records between machines over ssh; cass pulls other hosts' session files over ssh/rsync into its local index; ctx is single-machine. ³ cass has no MCP server.
Pick session search for fast local recall. Pick a memory layer when the agent should carry distilled facts, not the record. Pick pond when you want the sessions themselves, in storage you own, from every machine you run.
Full comparison, with receipts per tool: pond.locker/compare. Every cell is a claim about a specific version of someone else's project. If one has gone stale, open an issue and it gets fixed the same day.
Background
Every agentic CLI ships its own session format and its own search surface. Switching tools means losing history. Replaying a Claude Code session in another provider's tooling means re-translating the wire shape by hand. Hosted multi-tenant deployments rebuild the same storage layer from scratch.
Pond is the storage and retrieval layer that sits underneath. Every adapter is a bidirectional codec between a client format and one canonical schema, so any session can be restored by any adapter - it need not return to the client that produced it. Storage, search (BM25 full-text by default, with optional semantic search, one arm per query), and provider-agnostic replay all sit on a single Lance-on-object-storage foundation.
The v1 surface includes: full CLI, HTTP+JSON and MCP transports, search over three Lance datasets, opt-in intfloat/multilingual-e5-small embeddings at FP16 weights (Metal on macOS, CUDA opt-in, CPU fallback), and local-FS / S3 / GCS / Azure backends through Lance's object_store integration.
Install
Linux, macOS, and Windows are supported.
macOS and Linux:
brew install tenequm/tap/pond # Homebrew
nix profile add github:tenequm/pond#pond # NixWindows (Scoop, the primary channel - it also ships pondw.exe, the windowless launcher that scheduled sync runs through):
scoop bucket add tenequm https://github.com/tenequm/scoop-bucket
scoop install tenequm/pondBuckets are git clones, so the first line needs git on PATH - if it fails with "Git is required for buckets", run scoop install git and retry.
No Scoop yet? Bootstrap it first, from a normal (non-admin) PowerShell (its installer refuses an elevated shell):
Set-ExecutionPolicy -ExecutionPolicy RemoteSigned -Scope CurrentUser -Force
irm get.scoop.sh | iexThen open a new terminal - PATH changes reach only processes started after the install. See the Windows notes for Defender, long paths, scheduling, and WSL.
No package manager (any platform): every release attaches prebuilt binaries (pond-x86_64-pc-windows-msvc.zip on Windows, ~223 MB unpacked) - unpack one and add its directory to PATH (on Windows: Settings > System > About > Advanced system settings > Environment Variables, under your user variables), nothing else to install.
Via cargo (any platform, needs the Rust toolchain):
cargo binstall pond-db # downloads the prebuilt binary (needs cargo-binstall)
cargo install pond-db # builds from crates.io (installs the `pond` command)Both install pond.exe only, so scheduled sync on Windows - which runs through pondw.exe - wants the Scoop or zip install instead (or --features windows-launcher on a source build). cargo install also needs the protoc and NASM prerequisites below.
Build from source:
git clone https://github.com/tenequm/pond.git
cd pond
cargo install --path packages/pondOn Windows that clone needs git config --global core.longpaths true first (test-fixture paths exceed 260 characters), and the build needs an explicit --target x86_64-pc-windows-msvc - without it cargo applies the repo's +crt-static flag to build scripts and proc-macros too, which then fail to load.
For CUDA acceleration on Linux:
cargo install --path packages/pond --features cudaOn macOS the Metal backend is selected automatically; on other systems the CPU fallback runs without extra features. Building from source on Windows additionally needs protoc (winget install Google.Protobuf) and NASM (winget install NASM.NASM, then add C:\Program Files\NASM to PATH yourself - its installer doesn't) on PATH.
If any install path fails, the Troubleshooting guide covers the common stalls.
Usage
Sync and search
Set up storage, adapters, MCP registration, and an optional sync schedule in one pass (idempotent - re-run it any time to repair or update):
pond initThen import sessions from local adapters, update indexes, and search:
pond sync
pond search "how did we wire up the OCC retry loop"Run a server
pond serve # HTTP on 127.0.0.1:9797
pond serve --transport stdio # MCP over stdio
pond mcp # alias for stdio MCPFetch and copy
Fetch a single session or message, or move a whole corpus:
pond get-session <id>
pond get-message <id>
pond copy --from local --to snapshot.pond
pond copy --from snapshot.pond --to localRead-only SQL
Ask structured questions with read-only SQL (the same surface as the pond_sql MCP tool):
pond sql "SELECT project, count(*) FROM messages GROUP BY project ORDER BY 2 DESC"Maintenance
Run maintenance on demand (sync folds indexes on every run):
pond optimize --only embed # only when [embeddings].enabled = true
pond optimize --only indexScheduled sync
Keep pond current automatically (launchd on macOS, systemd user timers or cron on Linux, Task Scheduler on Windows - there, run it from a normal shell, not an elevated one, or the task ends up owned by Administrators):
pond schedule start # every 5m by default (--every 15m|1h|6h|1d)
pond schedule status
pond schedule logsStatus and introspection
pond status prints a per-table storage table, then indexes (text readiness, plus the semantic half only when embeddings are enabled), stored (sessions + messages), agents (source agents in the store), and this host's view of it: per-adapter sessions pending sync, the last sync's outcome (including a surfaced failure from a scheduled run), and the next scheduled run. pond status --hosts breaks a shared store down by ingest host; --include-subagents counts each subagent as its own agent. pond sync --dry-run previews what the next sync would read. pond search --explain returns Lance's analyze_plan output for each retrieval arm.
Remote storage
By default pond stores data locally under ~/.local/share/pond (%LOCALAPPDATA%\pond\data on Windows). To use an object store, add credentials and switch the destination:
pond creds add # interactive: name, access key, hidden secret
pond storage use s3+https://nbg1.your-objectstorage.com/my-pond # probe end-to-end, then flip [storage].path
pond storage check # verify: parse, creds, conditional-put (OCC), write/read/deletepond init --storage-path <url> configures a remote destination during setup and prompts for credentials inline when the destination is remote, so a bucket is one command. The s3+https://host/bucket form works for any S3-compatible store (Hetzner, R2, B2, MinIO); s3://, gs://, and az:// use the standard cloud SDK credential chain when no [creds.*] set matches. pond copy --from <local> --to <url> carries existing local data into the bucket - idempotent, never deletes the source, and on completion it rebuilds the destination indexes and verifies every row landed (exit 6 if any are missing or duplicated, so you never reconcile by hand). pond copy --verify-only --from <local> --to <url> runs that same check read-only, without copying. Full walkthrough: pond.locker.
Configuration
pond init walks through everything below interactively and enables the adapters it finds. pond sync only ingests already-enabled adapters - enabling one is an explicit step (pond adapters enable / pond adapters discover / pond init), never a side effect of sync. Config lives at ~/.config/pond/config.toml on macOS and Linux, %APPDATA%\pond\config.toml on Windows (pond config path prints it). Every [adapters.<name>] block needs enabled = true to be active; sections without it (or with enabled = false) are skipped. ~ in paths expands on every platform (%USERPROFILE% on Windows).
[adapters.claude-code]
enabled = true
path = "~/.claude/projects"
[adapters.codex-cli]
enabled = false # kept in config, skipped on `pond sync`
path = "~/.codex/sessions"Search is BM25 full-text by default. Semantic search is opt-in and off unless you ask for it: with it off no pond process downloads or loads an embedding model, new messages get no vectors, and --mode vector is refused. Turn it on in config or with POND_EMBEDDINGS_ENABLED=true, then run pond optimize --only embed once to fill the backlog:
[embeddings]
enabled = trueFull detail, including what it costs and how mixed fleets behave, is in the configuration reference.
Supported harnesses
One adapter per harness, in pond adapters discovery order; Reads is the path pond init discovers and writes to [adapters.<name>].path - shown POSIX-style, with the same home-relative layout on Windows (~/.claude/projects is %USERPROFILE%\.claude\projects). Last verified is the most recent capture or refresh date of the adapter's committed fixture (packages/pond/tests/fixtures/adapter/), the corpus its mapping is tested against. Adapters are maintained best-effort, and format drift is safe by design: unknown record shapes still ingest losslessly, malformed input surfaces as a typed error naming the file. Adding a harness is routine work - see Contributing.
Adapter | Reads | Last verified |
| Claude Code CLI, | 2026-08-14 |
| Claude Desktop / Cowork local agent sessions | 2026-05-13 |
| claude.ai data-export archive (manual | 2026-06-04 |
| OpenAI Codex CLI, | 2026-05-13 |
| opencode, | 2026-07-14 |
| openclaw, | 2026-05-13 |
| nanoclaw, | 2026-05-14 |
| Hermes Agent, | 2026-07-23 |
| pi, | 2026-08-06 |
| oh-my-pi, | 2026-08-14 |
| letta-code, | 2026-08-24 |
| grok-build (xAI | 2026-08-24 |
Verbosity
Root-level -v / -vv / -vvv raise the tracing level (info / debug / trace); -q / -qq lower it. The default surfaces warnings only. RUST_LOG overrides the CLI flag when set; POND_LOG is no longer honored.
Design
The full contract is in docs/spec.md. Key choices:
Lance direct, no wrapper. The
lance-format/lancecrates are the only storage and search engine. Nolancedb, no parallel abstraction. Storage, indexing, OCC, schema evolution, blob columns, versioning, and time-travel are all Lance. The read-onlypond sqlsurface is DataFusion planning over the same Lance datasets - a query escape hatch, not a second engine.Canonical Session / Message / Part interlingua. Owned in pond, in the shape of Effect v4's
Prompt-side Part union. This schema is pond's product; everything else is machinery around it.Three Lance datasets (
sessions,messages,parts).messagescarries the nullable embedding (vector+embedding_model) alongside denormalized filter columns (source_agent/project/role/timestamp) for single-stage filter pushdown.No-synthesis adapter seam. Adapters parse source records through extractor helpers that make "invent a value" a compile error -
model-no-synthesis,model-schema-honesty, andadapter-provenance-requiredare structural, not review rules.Index lifecycle decoupled from writes. Writes commit data (including embeddings, computed inline at ingest when embeddings are enabled) without folding the search indexes.
pond syncruns index maintenance by default, andpond optimize --only indexruns it on demand; Lance merges index results with a flat scan over unindexed fragments, so reads stay correct.Single-arm retrieval. Each query runs one retriever -
fts(BM25, the default) orvector(cosine, with a gentle recency tiebreaker, offered only when embeddings are enabled) - chosen per query; no server-side fusion.--sort-by recencyreturns newest-first. Results group to one summary per session, keyed onsession_root.Language-neutral full-text. Word-level
simpletokenizer with English stemming (ascii-folding on); tokens the stemmer does not recognize pass through unchanged and stay exact-matchable, so pond indexes sessions in any language alike.Two transports, one handler set. HTTP+JSON (axum) and MCP (rmcp) both dispatch into the same handlers. Wire ops:
pond_search,pond_get_session,pond_get_message,pond_ingest. MCP additionally exposes the read-onlypond_sqltool and theschema://pond,schema://pond-sql, andstats://pondresources.Opaque-string multi-tenancy. Each tenant is a
namespacestring the integrator supplies; pond does not authenticate, authorize, or model identity. The object store's IAM is the storage boundary.Encryption is operational. Bucket SSE plus filesystem encryption; pond holds no keys and adds no application-level crypto.
Roadmap
pond ships in small steps. This table lists the steps in order. Done steps stay in the table. The roadmap board holds the same items with their issues. React or comment on an issue to influence the order.
# | Step | Status |
1 | Lossless ingest from Claude Code and Codex into Lance, local or S3 | ✅ v0.5 |
2 | Single-arm search: BM25 or vector, one arm per query | ✅ v0.10 |
3 | Remote sync in under a minute; warm search in under a second | |
4 | Tool-call columns and read-only SQL over the corpus | ✅ v0.13 |
5 | Crash-safe local stores that self-heal on open | ✅ v0.14.0 |
6 | Eleven harnesses, | ✅ v0.14.11 |
7 | BM25 becomes the default arm. Embeddings become opt-in. #164 | ✅ v0.15.0 |
8 | New adapters become routine: | ✅ v0.15.1 |
9 | Lance 10: count pushdown, date-filter zonemaps, faster index commits. #145 | ⏭ Next |
10 |
| ⏭ Next |
11 | Remote reads as fast as local reads. #165 | ⏳ Later |
12 | Namespaces: keep work and personal sessions apart. #166 | ⏳ Later |
13 | Redaction on copy, export, and resume. Never at ingest. #167 | ⏳ Later |
A capture daemon. pond reads what your harness already writes. | ❌ Not planned | |
A hosted service that owns your bucket. Your storage stays yours. | ❌ Not planned | |
Summaries or pruning of stored sessions. pond keeps the sessions. | ❌ Not planned |
Step 7 was based on data. Over 63 days, agents ran 1,126 searches against this archive. BM25 found the answer 61% of the time. Vector found it 37% of the time. Read the measurement.
This is a direction, not a contract. The order changes when the data changes.
References
The upstream schemas that shaped pond's canonical model are documented in docs/references/ (source URLs + why each matters; the vendored code itself is not redistributed). Real session captures live under packages/pond/tests/fixtures/adapter/.
Source | Why it matters |
Effect v4 Prompt/Response Part unions. Pond's canonical types copy this shape. | |
Effect Schema canonical Part union; SDK types; storage schema. | |
OpenCode fork. Adds | |
pi-coding-agent leaf-cursor branching and cross-provider conformance test matrix. | |
GenAI semantic conventions. Inspiration for shape overlap; pond does not derive from OTel. | |
| Session samples for thirteen source harnesses (claude_ai_export, claude_code, claude_desktop_app, claude_managed_agents, codex_cli, grok-build, hermes, letta-code, nanoclaw, oh-my-pi, openclaw, opencode, pi-coding-agent; real captures except the synthetic hermes |
Contributing
Issues and pull requests are welcome. The most useful contributions right now:
An adapter for a harness pond does not read yet. The playbook is the
add-adapterskill; the PR expectations are in CONTRIBUTING.md.Spec feedback on
docs/spec.md.Pointers to additional reference schemas or session samples worth documenting under
docs/references/.Bug reports against the v1 surface (CLI verbs, wire ops, schema mismatches, OCC behavior, object-store backends).
For something bigger, the roadmap is the list. Comment on the issue before you start, so we agree on the scope. For other larger changes, open an issue first to discuss the direction. For security issues, see SECURITY.md.
Questions or feedback? Start a GitHub Discussion, or DM me on Telegram or X - I answer personally.
Links
Docs: pond.locker
Crate: pond-db on crates.io
MCP Registry name:
mcp-name: io.github.tenequm/pond
License
Apache-2.0 (c) 2026 tenequm
Maintenance
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