Chroma’s official MCP server: vector search and collection management for RAG workflows.
PgVouch is installed from its publisher's own source and answers where it runs, so this marketplace is not in the path of a single call. There is no address here to send one to, and a panel that pretended otherwise would be showing you an answer we made up. Install it and call it from your own client — the Installation tab has the entry for each one.
What it does
Safe PostgreSQL migrations: schema drift, lock analysis, safe rewrites, data checksums. Read-only.
Quickstart
# 1 — add it to Claude Code
claude mcp add --scope user --env 'SOURCE_DATABASE_URL=${SOURCE_DATABASE_URL}' --env 'TARGET_DATABASE_URL=${TARGET_DATABASE_URL}' --transport stdio pgvouch-mcp '--' npx -y pgvouch mcp
# 2 — ask your agent for something these tools do
# detect_drift, verify_data, find_differing_rows and 4 more
It needs SOURCE_DATABASE_URL, TARGET_DATABASE_URL: this reads them from your environment, so export them first.
PgVouch costs nothing on mcprush: there is no plan to choose here, no cap to set and nothing mcprush can bill you for.
Collected from a public index. Nobody has claimed this account, so nothing here was written by its author — claim it if it is yours.
Where are you running it?
Every route below installs the same thing and ends at the same approval screen. This one runs on your machine: your client starts PgVouch as a process under your own user, with your files and your network, so the tool surface below is what it can do to your computer rather than to a server somewhere else. Its scan result is on the Security tab — read the surface before you approve it.
This is a public server: you run it yourself and this marketplace is not in the path. You need Node.js — the current LTS (24) is the safe choice; npx comes with it. Claude Code registers it in one command; --scope user makes it available in every project. Claude Code reads SOURCE_DATABASE_URL (Read-only postgres:// URL of the reference database), TARGET_DATABASE_URL (Read-only postgres:// URL of the database to check) from your environment each time it starts the server, so the value stays out of its config: export them in your shell profile (macOS, Linux), or run setx SOURCE_DATABASE_URL …, setx TARGET_DATABASE_URL … and open a new terminal (Windows). The '--' is in quotes so that PowerShell passes it on.
claude mcp add --scope user --env 'SOURCE_DATABASE_URL=${SOURCE_DATABASE_URL}' --env 'TARGET_DATABASE_URL=${TARGET_DATABASE_URL}' --transport stdio pgvouch-mcp '--' npx -y pgvouch mcpReconnect, or start a new session, and the tools appear in the model’s tool list.
It reaches a system of yours, so it needs settings only you can give it: SOURCE_DATABASE_URL — Read-only postgres:// URL of the reference database; TARGET_DATABASE_URL — Read-only postgres:// URL of the database to check. You set them in your own client’s config, on your machine — this marketplace never holds it.
One config entry your client uses to start the process locally. A local server runs with your file system and your network, which is why it is priced without metering.
7 tools, with what each one reads, writes and reaches shown before you agree — the same list on every route above. Read the tool surface.
Tool surface
What the model actually sees. Descriptions are diffed on every release — see version history.
Compare the SOURCE (reference) and TARGET PostgreSQL schemas: tables, columns, types, nullability, defaults, indexes, constraints, sequences. Returns every difference with a severity. 'missing' = in source but not target; 'extra' = only in target.
No parameter schema on file.
Prove that table data is identical on source and target by comparing MD5 hashes of primary-key chunks computed inside Postgres (no rows are transferred). Returns per-table status and the key ranges of mismatched chunks, plus a check that every identity/serial sequence on the target is ahead of its d
No parameter schema on file.
For one table, bisect mismatched chunks (binary search over checksums) to find the exact rows that differ: missing on target, extra on target, or changed (with the changed column names). By default returns primary keys and column names only, not values.
No parameter schema on file.
Parse a SQL migration with PostgreSQL's own parser and predict, per statement: the table lock taken, whether it blocks reads/writes, whether it scans or rewrites the table, and a risk level using the target table's size. Also warns about missing lock_timeout and CONCURRENTLY inside transactions.
No parameter schema on file.
Live check on the TARGET: for each statement, compares the table lock it needs with the locks other sessions hold or are waiting for right now (pg_locks, full Postgres conflict table), and lists open transactions that CREATE INDEX CONCURRENTLY would wait for. Verdict: safe_now or would_wait (with th
No parameter schema on file.
Rewrite risky DDL into safe, non-blocking steps using deterministic rules (CREATE INDEX CONCURRENTLY, NOT VALID + VALIDATE, expand/contract for NOT NULL columns and type changes, batched backfills). Returns a commented script that starts with SET lock_timeout and statement_timeout. It is NOT execute
No parameter schema on file.
Build an ordered, safe migration plan that makes TARGET match SOURCE. If an LLM is configured, its plan must pass a validator (objects exist, only allow-listed statements, no unsafe DDL) and then a shadow run: PgVouch starts a disposable local Postgres container, copies the target's schema (no data)
No parameter schema on file.
- Every tool, no call limit
- No card, and mcprush charges nothing for it
- Source published under Apache-2.0
- Runs on your machine — nothing of it reaches our gateway
- Nothing to cap, because mcprush bills nothing
What counts against your monthly calls
| Tool | Unit | Calls used | Out of the allowance |
|---|
Nothing here is billable: mcprush charges nothing to install PgVouch or to call it, at any volume.
Two independent axes, because powerful and malicious are different questions. The grade is threat only. The capability level is blast radius, and it is never a penalty on the grade — it is priced as one subtract-only term in the score, where you can see it.
| Term | Level | What it prices | Points |
|---|---|---|---|
| capability-exposure | high | capability blast radius (high) — client exposure if the model is manipulated | −6 |
| verification-discount | source | publisher verification (provenance) — cryptographic build provenance ties the artifact to its source | −0 |
| coverage-honesty | source | inspection depth (source) — how much of the target the scan could see | −0 |
What the scan could actually read
A grade is only as meaningful as its coverage, so the scanner publishes its own depth before it publishes its result.
Tools were statically extracted from the published source (7 recovered), not enumerated from a running server. Tool-poisoning, Unicode-smuggling, capability and toxic-flow analysis ran on this inferred surface, but a mis-parsed registration could be missed or mis-attributed, so tool-derived findings are capped below “confirmed”. To grade the real runtime surface, scan the running server: --command "npx -y <package>".
Capability — what it could do if the model were manipulated
Tags derived from each tool’s schema and the implementation, not from what the tool calls itself. high is the level these add up to.
| Tool | Capability tags | Why the tag was assigned |
|---|---|---|
| detect_drift | no tags | |
| verify_data | no tags | |
| find_differing_rows | no tags | |
| analyze_locks | sensitive-source | sensitive-source: parameter "sql" |
| check_lock_queue | sensitive-source | sensitive-source: parameter "sql" |
| suggest_safe_rewrite | sensitive-source | sensitive-source: parameter "sql" |
| plan_migration | no tags |
Toxic-flow graph
The lethal trifecta, checked as a graph rather than as a checklist: untrusted input, a sensitive source and an external sink have to meet before there is a path worth worrying about.
The public result for this release does not print the flow graph, so there is nothing to show here. That is not the same as "no paths were found": what the scan did read is above, under coverage.
Supply chain and provenance
This is the first scan of this surface here, so there is nothing yet to compare it against.
Every result on this tab comes from one deterministic pass over the published package — offline, rule by rule, and auditable line by line above. Same methodology version, same bytes, same score.
Release history
Always latest — the install command names no version, so it installs the newest release when it runs; the current release on file is 0.4.4. Pin a release below and the command asks for exactly that one.
No release note was published with this version.
One review per account, from a signed-in account that does not publish this listing. Nothing else is asked — you can say what you think before you install it. Publishers can reply once per review, and a review can be edited or deleted by whoever wrote it.
Any signed-in account that does not publish PgVouch can review it, once — before installing it or after. A review from an account that has installed it is marked as one.
Nobody has reviewed this listing. The rating on the card is the mean of the reviews written here and nothing else, so there is no rating until somebody writes the first — which takes a signed-in account that does not publish it, and nothing else.