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Config file (YAML)

Paddock has always been configured from the environment (every PADDOCK_* variable is listed here). As the number of knobs grew, so did the length of the -e FOO=bar list on the run command. Since v0.31 you can instead keep an instance’s settings in a single YAML file — and every environment variable still wins over it, so you can override one value at run time without rewriting the file.

This page covers the file: where it lives, how it layers with the environment, and a realistic example. It documents the same loader as the env-var page (packages/server/src/config.ts), so the two are two views of one config.

Precedence: file < env, defaults beneath both

Section titled “Precedence: file < env, defaults beneath both”

There is one resolution order, from lowest to highest priority:

  1. Built-in defaults — the floor. Every setting has a sane default baked into the code (e.g. PORT7233, auth.modenone).
  2. The YAML file — overrides the defaults. This is the base layer: each file value is threaded in as the fallback beneath the matching environment read.
  3. Environment variables — override the file. A PADDOCK_* (or plain, e.g. PORT) env var always wins over the file value it shadows.

So the mental model is defaults < file < env. An env-only deployment is completely unaffected: with no file present, resolution is byte-for-byte the behaviour it had before the loader existed. You can adopt the file gradually — move your stable settings into it and keep using env vars for the one or two you tweak per run.

Paddock looks for the file in one of two places:

  • PADDOCK_CONFIG — if this env var is set, it’s an explicit path to the file (wins over the default location).
  • Otherwise <PADDOCK_DATA_DIR>/paddock.config.yaml — the default location, under your data directory (which defaults to ./data).

The file is entirely optional:

  • No file → no-op. If the default file doesn’t exist, Paddock runs env-only, exactly as before. Existing installs need change nothing.
  • A missing explicit file is an error. If PADDOCK_CONFIG points at a path that doesn’t exist, that’s treated as a misconfiguration — startup fails with a clear error rather than silently ignoring your intent.
  • A malformed file is an error. Unparseable YAML, or a top-level list/scalar where a mapping is expected, fails startup with a clear message rather than booting with a half-empty config.
  • Empty sections are ignored, not fatal. An empty file (or a comments-only one) is treated as “no overrides”. A valueless key (brand: with nothing after it) is dropped, so that section falls back to env/defaults instead of crashing.
  • Unknown keys are ignored. This leaves room for the schedule and hook declarations that share this file to be added without breaking older builds.
  • A file from a NEWER Paddock is an error. See below.

Since v0.66 the file may carry a schemaVersion: at the top, and Paddock refuses to start when it declares a version newer than the running build understands:

refusing to start: /data/paddock.config.yaml declares version 2 of the paddock
config format, but this build understands up to version 1. It was written by a
NEWER paddock. …

The reason is the bullet just above. “Unknown keys are ignored” is exactly the right behaviour for a file written by an older Paddock and exactly the wrong one for a file written by a newer one: running npx @edspencer/paddock@0.62.0 against a data dir 0.66 wrote would read the keys it recognises, ignore the rest, and — the moment anything saved a setting — write the file back without them. The version field turns that into a clean stop.

Three things worth knowing:

  • Nothing you have needs changing. The shape the file has today is version 1, and an absent schemaVersion reads as 1. Existing files are correct as they stand; Paddock adds the key the next time it writes the file itself (a save from the Settings screen), and never rewrites one just to add it.
  • It is a plain counter, not semver. It goes up by one, and only when an old reader would get the wrong answer — a renamed key, a key whose meaning changed, a default whose absence now means something new. Adding an optional key does not bump it, which is why it will move rarely.
  • project.yaml carries the same field, and guards more gently — see Projects. One project directory from the future gets hidden with a startup warning rather than stopping the whole instance.

Keys mirror the resolved config: top-level scalars plus a few nested sections. Every value below is optional and overridable by its matching env var. This is the same YAML house style as project.yaml and the generated herdctl.yaml.

# <PADDOCK_DATA_DIR>/paddock.config.yaml
# A home-lab instance. Every value here is overridable by its env var.
schemaVersion: 1 # which version of THIS format the file is in
# --- Core ---
port: 7233
host: 0.0.0.0
logLevel: info
# --- Agent behaviour ---
driveMode: session # session enables cross-turn autonomy (ScheduleWakeup / /loop)
nativeSystemPrompt: true # use the native Claude Code prompt + CLAUDE.md hierarchy
# Appended to every keeper turn's system prompt. Omit the key entirely for
# Paddock's built-in text; set it to "" to append nothing. See
# /configuration/instance-settings/#the-environment-prompt
environmentPrompt: |
You are running in Acme's Paddock — replies render as Markdown in a browser.
Link every ticket as [ABC-123](https://acme.atlassian.net/browse/ABC-123).
# --- What this instance shares with the host's Claude Code (#691) ---
# `own` = Paddock's, isolated inside the data dir. `host` = this machine's
# Claude Code. Omit the block entirely for full isolation, which is the default:
# nothing outside the data dir is written.
claude:
transcripts: own # own | host — see the section below
credentials: host # own | host — the ONE key that defaults to host
instructions: own # own | host — your ~/.claude CLAUDE.md, agents, commands
hooks: own # own | host — shell commands your settings.json binds
mcpServers: own # own | host — the servers you added with `claude mcp add`
# --- MCP servers this instance declares for ITSELF ---
# A sibling of `claude:`, not a key in it: that block borrows what this machine
# already has, this one says what Paddock should have regardless. `env:VAR_NAME`
# anywhere a string goes means "read it from the environment" — keep tokens out
# of this file, it is git-tracked.
mcpServers:
notion:
command: npx
args: ["-y", "@notionhq/notion-mcp-server"]
env:
NOTION_TOKEN: env:NOTION_TOKEN
# --- Authentication (see the Authentication page for modes) ---
auth:
mode: jwt
jwksUrl: https://idp.example.com/application/o/paddock/jwks/
jwtIssuer: https://idp.example.com/application/o/paddock/
# --- Per-instance branding (tell several instances apart) ---
brand:
name: Homelab
logo: "🏠"
accent: "#3c6ec2"
# --- Capabilities & safety gates (default OFF; maxSpawnDepth defaults to 1) ---
selfMcpEnabled: true # read-only self-management MCP for Claude
selfMcpWriteEnabled: true # + the write tools (create/fork/send/archive/fan-out)
selfMcpProjectsEnabled: false # + create_project / promote_project (clone a repo)
maxSpawnDepth: 1 # how deep spawned children may themselves spawn
scheduleMutationEnabled: false
hooksMcpEnabled: false # + the trigger tools (list/set/remove/run_trigger)
# --- External Management API (/mcp) — file-first; only trustedProxies has an env var ---
managementApi:
instanceId: my-paddock # binds `pdk_<instanceId>_…` tokens here
publicUrl: https://paddock.example.com # required once `clients` is set
trustedProxies: [172.18.0.0/16] # whose X-Forwarded-Proto the guard believes
clients:
my-laptop:
auth:
ref: env:PADDOCK_MCP_TOKEN_MY_LAPTOP # env reference ONLY — inline is an error
# omit `scope` for the read-only default
# --- Inbound composer attachments (file/image upload; all optional) ---
attachments:
enabled: true # master switch (default on)
maxFileSizeMb: 25 # per-file cap
maxFilesPerMessage: 10 # per-message cap
allowedTypes: ["*"] # a real array here (env is comma-separated)
# --- Voice dictation (Whisper), git author, GitHub OAuth ---
transcription:
mode: remote
endpoint: https://whisper.example.com/v1
gitAuthor:
name: Paddock
email: paddock@localhost

Point Paddock at a file in a non-default place with PADDOCK_CONFIG:

Terminal window
PADDOCK_CONFIG=/etc/paddock/instance.yaml node packages/server/dist/index.js

claude — what this instance shares with your Claude Code

Section titled “claude — what this instance shares with your Claude Code”

Paddock drives Claude Code, which means it sits next to state you already have: transcripts, a login, MCP servers, a CLAUDE.md. By default it writes none of it, and reads almost none of it. A fresh instance keeps its own Claude home under the data dir; the only thing it takes from your ~/.claude unasked is your login (see credentials below) and the non-executable half of your settings.json. Everything else is a key you turn on.

Each key under claude: answers one question — whose X does this instance use? — with one vocabulary, so the guarantee is readable at a glance rather than inferred from which directory Paddock happens to be pointed at.

claude:
transcripts: own # own | host — default own
credentials: host # own | host — default host
instructions: own # own | host — default own
hooks: own # own | host — default own
mcpServers: own # own | host — default own
  • own (default) — each project’s chats live in its own .chats/, inside the data dir. Move the data dir and the whole instance moves with it. Deleting a chat deletes Paddock’s copy.
  • host — Paddock uses your real ~/.claude/projects/<encoded-cwd>/ folder for each project’s working directory. One set of files, both directions: a chat you continue in the terminal with claude --resume shows up in Paddock without a restart or a re-import, and vice versa. Deleting a chat in Paddock releases it — the transcript stays on disk, because it is your history rather than Paddock’s copy (#689). Note the chat does not yet leave your list: releasing drops Paddock’s adoption record, but the engine rediscovers the transcript structurally on the next listing and shows it again. Closing that gap needs a tombstone and is tracked as #693.

host is implemented as one symlink per project pointing out of Paddock’s own Claude home, not by pointing Paddock at ~/.claude. That distinction is load-bearing rather than cosmetic: agent memory lives beside the transcripts, and an agent cannot write to any path containing a .claude component — so the home that moves is the one thing that must not (#690). Paddock refuses to start if CLAUDE_CONFIG_DIR or a claudeHome: key resolves to your own ~/.claude, and the refusal names this key as what you probably wanted.

The one key that defaults to host, and the exception is deliberate: isolation is about writes. Reading a login creates, moves and deletes nothing, while defaulting it to own produces an instance that boots cleanly, says everything is ready, and then fails every single turn with “Not logged in” — which is exactly the bug this key closes (#683).

  • host (default) — Paddock uses the Claude Code login already on this machine. On macOS that is the Keychain entry claude /login wrote; everywhere else it is your ~/.claude/.credentials.json, symlinked into Paddock’s home rather than copied, so a refreshed token is never duplicated or stale.
  • own — Paddock uses only a login of its own: a CLAUDE_CODE_OAUTH_TOKEN / ANTHROPIC_API_KEY in the environment, or a .credentials.json inside its own Claude home (CLAUDE_CONFIG_DIR=<data-dir>/claude-home claude login). Nothing of yours is read. If a previous boot bridged your .credentials.json in, that symlink is removed on the next start.

The macOS half works because Claude Code resolves its secure-storage scope from CLAUDE_SECURESTORAGE_CONFIG_DIR instead of CLAUDE_CONFIG_DIR whenever that variable is defined. Paddock defines it as the empty string, which selects the unsuffixed service name — your real login — while its own Claude home stays exactly where it is. Nothing else is shared by this key: not transcripts, not memory, not .claude.json. If you set CLAUDE_SECURESTORAGE_CONFIG_DIR yourself to something non-empty, Paddock honours yours and says so at startup.

Paddock says which login it is running on when it has anything to report, and warns before the first turn — rather than after it — when it can find none.

Your ~/.claude/CLAUDE.md, agents/, commands/ and plugins/ — prompts, subagent definitions and slash commands. Content the model reads, or definitions it can invoke by name; nothing here runs a command on its own.

  • own (default) — none of them are loaded. Each project’s own CLAUDE.md and .claude/ are unaffected, and so is anything you put in Paddock’s own Claude home.
  • host — all four are symlinked in, which is what every version before 0.62 did unconditionally.

This default is a reversal, and it is smaller than it looks. The version it reverses argued that dropping these is a silent behaviour regression — your curated ~/.claude/CLAUDE.md no longer reaching your agents, with no error. That is a fair argument, but its premise does not hold for the runtime Paddock actually runs chats on: user memory, agents/ and commands/ all move with Claude Code’s user setting source, and Paddock’s agents run with only project loaded (see the caution under hooks). So on a default chat turn these four have been inert since chats moved to the SDK runtime — bridged or not. They do apply to the CLI paths: the post-turn sweeper, triggers, and driveMode: batch chats.

It is the default anyway because own everywhere means nothing outside the data dir is read or written” has to be a guarantee you can read off this file, and “…except your CLAUDE.md, agents, commands and plugins, always, with no key to turn them off” is not a guarantee, it is a footnote. Your project’s own CLAUDE.md is unaffected in every mode, and so is agent auto-memory, which lives in the Claude home but is not gated by the setting source.

You are told. When Paddock finds ~/.claude instruction files it is not loading, it names them and names this key at startup — as a warning, so it survives the npx launcher’s quiet default (LOG_LEVEL=warn unless you pass --verbose). It says nothing at all if you have none of those files, or if you are on host. Earlier versions wrote that notice at info, which the quiet default filtered out — so if you started on 0.62 and saw nothing, that is why (#706).

plugins/ is this key too, and since 0.63 it actually works. The symlink alone never did: the runtime’s plugin root is the Claude home and it does discover what is there, but discovery of an installed plugin is driven by enabledPlugins, which lives in settings.json, and Paddock’s agents run with only the project settings source loaded (see below) — so the flag that would switch a bridged plugin on never arrived. That is why plugins looked bridged and did nothing for months.

herdctl 5.32.0 added the channel this needed: a plugins array on the agent config, passed to the SDK’s own plugins option (and --plugin-dir on the CLI runtime). A plugin passed that way is a session plugin, and a session plugin’s enablement is enabledPlugins["<name>@inline"] ?? manifest.defaultEnabled !== falseenabled by default, with no settings-source grant required. So under instructions: host Paddock enumerates the host’s installed plugins from <plugin-root>/installed_plugins.json and passes them, and your commands, agents, skills and hooks from a plugin reach your keepers. The host’s enabledPlugins is still consulted, but only to veto: an id set to false is skipped, so a /plugin disable on your machine is respected.

A plugin’s MCP servers are a second question, gated by mcpServers below — see the truth table there.

Hooks are shell commands your ~/.claude/settings.json binds to tool use and session lifecycle (PreToolUse, PostToolUse, SessionStart, …). Before 0.62 they were inherited unconditionally, so every hook you had ever configured ran inside every Paddock turn with no key to turn it off. This is that key.

  • own (default) — your hooks do not run here.
  • host — your settings.json is symlinked in whole and your hooks run.

settings.json is a mixed bag: it carries hooks and permissions, model, statusLine, enabledPlugins. A symlink is all-or-nothing and the file is not, so under own Paddock writes its own settings.json into its Claude home — your keys, with hooks dropped. Two consequences worth knowing:

  • A restart is what applies an edit. The generated file is regenerated at every startup, so changing your ~/.claude/settings.json reaches Paddock on the next start rather than immediately. Only files that actually define hooks are copied at all; without them Paddock symlinks yours as before and nothing can go stale.
  • A settings.json you put in Paddock’s own Claude home is never touched. Paddock recognises its own generated file by hash, so editing that file makes it yours and Paddock stops regenerating it — and says at startup that hooks: own is therefore not in force for whatever that file says.

If your ~/.claude/settings.json cannot be parsed, Paddock plants nothing rather than falling back to the symlink: it would rather run with no user-level settings than hand over the hooks this key exists to withhold.

Scope, stated plainly: hooks: own means “no host hooks”, not “no host commands”. settings.json has several other keys that name a script to run — apiKeyHelper, awsAuthRefresh, awsCredentialExport, gcpAuthRefresh, proxyAuthHelper, otelHeadersHelper, statusLine, subagentStatusLine — and they are still inherited. Several of those are how a corporate login works, so dropping them under a key named hooks would break authentication for people who did nothing wrong; where they belong is an open question (#691).

The MCP servers you have added with claude mcp add — the external tools your own Claude Code can call.

  • own (default) — your agents get only the servers Paddock provides itself: send_file, the optional self-management tools, and the optional browser server. Nothing of yours is read.
  • host — Paddock also attaches the servers declared in your ~/.claude.json: the top-level mcpServers (user scope, everywhere) plus any under projects.<absolute-dir>.mcpServers (directory scope), which a project gets only when that directory is its own working directory. The boot log names every server it attached.

This key is the odd one out, and the path is why. MCP servers are not declared inside ~/.claude at all — they live in ~/.claude.json, a sibling file next to that directory, because Claude Code resolves it as <config-dir-or-home>/.claude.json. So the config bridge the other keys are built on could never have reached them, no matter how it was configured, and MCP inheritance broke silently and separately from everything else.

host is therefore a read, not a link: Paddock reads that file and passes the servers to the runtime. It deliberately does not symlink it, because Claude Code writes to it — per-project trust, server approvals, migration flags — and bridging it would mean a Paddock instance mutating your real config, which is the thing this whole block exists to prevent.

The file is read once, at startup. Add a server and restart Paddock to pick it up.

MCP logins do follow credentials. An OAuth-authenticated server’s tokens live under an mcpOAuth key in the same credential store as your Anthropic login — ~/.claude/.credentials.json, or the one Claude Code-credentials Keychain item — so credentials: host (the default) carries them, and credentials: own means re-authorising inside Paddock. There is no separate MCP token store.

Plugins take both keys, one per half. A plugin bundles commands, agents, skills and hooks — which is instructions — and it can also contribute MCP servers, which is this key. So the two levers split it, using the SDK’s skipMcpDiscovery flag:

claude.instructionsclaude.mcpServersresult
hosthostplugins passed whole, MCP servers included
hostownplugins passed with skipMcpDiscovery: true — skills, hooks, agents and commands only, no .mcp.json read
ownanyno plugins at all

instructions: own withdraws the plugin bridge and Paddock says so; passing the plugins anyway because a different key said host would contradict a notice Paddock itself emits. If you set mcpServers: host while instructions is own, the boot log names claude.instructions as the key that turns plugins on.

Paddock also widens each keeper’s tool allow-list with mcp__plugin_<plugin>_<server>__* for every plugin server it can name, recovering <server> from <dir>/.mcp.json and from an inline mcpServers object in <dir>/.claude-plugin/plugin.json. A manifest that instead points mcpServers at another file or an MCPB source cannot be enumerated: the plugin is still attached, and a boot warning names it and the exact pattern to add by hand — because the alternative failure is the silent one, where the server connects and every call is denied with nothing in the logs.

Declaring a server that is only for Paddock is not this key — it borrows servers you already have. That is the top-level mcpServers: block below.

mcpServers — the servers this instance declares itself

Section titled “mcpServers — the servers this instance declares itself”

A sibling of claude:, not a key inside it, because it answers a different question. claude.mcpServers asks whose servers this instance uses; this one says what this instance should have, whether or not the machine it runs on has ever heard of it. If you are running Paddock in a container and want Notion in it, there is nothing on the host to borrow — you declare it here.

mcpServers:
notion:
command: npx
args: ["-y", "@notionhq/notion-mcp-server"]
env:
NOTION_VERSION: "2022-06-28"
NOTION_TOKEN: env:NOTION_TOKEN # a REFERENCE — see below
linear:
url: https://mcp.example.com/mcp
type: sse
headers:
Authorization: env:LINEAR_BEARER # also a REFERENCE

The full key set of one declaration — anything else is a typo and refuses the server:

KeyTypeNotes
commandstringExecutable for a stdio server. Mutually exclusive with url; one of the two is required.
argsstring[]Arguments for command.
envmap of string → stringEnvironment for the server process.
urlstringEndpoint for a remote server. Mutually exclusive with command.
typestringstdio for a command; http or sse for a url. Optional — a bare url infers http. Must agree with the rest of the declaration.
headersmap of string → stringHeaders for a remote server. url servers onlyheaders on a command server is an error.

Every string leaf above accepts env:VAR_NAME — see Keeping the token out of the file.

Every project’s keeper gets every server here, and Paddock adds each one’s mcp__<name>__* pattern to that keeper’s tool allow-list — without which the server would attach and then have every one of its calls silently refused. The boot log names each attached server.

This block is file-only. There is no PADDOCK_MCP_SERVERS: a map of servers does not express as a scalar, and the credentials belong in the environment as references rather than as one JSON blob. Same reasoning as managementApi.

Precedenceclaude.mcpServers: host < mcpServers: < Paddock’s own. A name you declare here beats the same name inherited from your ~/.claude.json, because this file is a statement about this instance and that one is ambient machine state. Paddock’s own servers still win: paddock (which carries send_file) and paddock_manage (the self-management tools) are reserved names and declaring one is an error, and a playwright of yours loses to the built-in browser server — with a warning at boot, not in silence — unless you set browserMcp: false.

This file is git-tracked, and the Config screen can write to it. So anywhere a string is expected — command, an args entry, an env value, url, a headers value — env:VAR_NAME means “read this from the environment”, exactly as managementApi.clients.<id>.auth.ref does:

mcpServers:
notion:
command: npx
args: ["-y", "@notionhq/notion-mcp-server"]
env:
NOTION_TOKEN: env:NOTION_TOKEN

If the referenced variable is unset or blank the server is dropped with a warning naming the variable, rather than started without its credential — a server that connects unauthenticated is worse than one that does not connect.

An inline value is allowed, because unlike a management token an MCP env entry is often not a secret (NOTION_VERSION is not one). But an inline value under a credential-shaped key (…TOKEN, …KEY, …SECRET, …AUTH, …) — in env or in headers, one rule to learn — or a url carrying a query string or user:pass@, gets a warning telling you to move it. Nothing Paddock logs about this block ever contains a value from it: server names, key names and referenced variable names only, with URLs stripped of their query string. For the same reason the block is absent from the Config screen and from every API response.

Capability & safety gates worth setting here

Section titled “Capability & safety gates worth setting here”

Several of the knobs above are capability gates that default to off — a plain instance advertises none of them, and you opt in per instance. They are prime candidates for the config file because they rarely change between runs. Each is settable either in the YAML or via its env var (env wins), and several also take a per-project override that wins at dispatch time.

The first four rows decide which of the fifteen mcp__paddock_manage__* tools Claude is handed; the self-management MCP reference lists every tool, its arguments and the exact gating matrix.

YAML keyEnv varDefaultWhat it gates
selfMcpEnabledPADDOCK_SELF_MCPfalseGive Claude the read-only self-management MCP (mcp__paddock_manage__*): list_projects, list_chats, read_chat.
selfMcpWriteEnabledPADDOCK_SELF_MCP_WRITEfalseAdd the self-management write tools: create_chat, fork_chat, send_message, archive_chat, unarchive_chat, fork_chat_batch. Only honoured when selfMcpEnabled is also on — write implies read. (The trigger tools are gated separately, by hooksMcpEnabled below.)
selfMcpProjectsEnabledPADDOCK_SELF_MCP_PROJECTSfalseAdd the self-management project tools (create_project, promote_project) — provisioning a whole new project, or promoting an existing managed (notebook) project into an unmanaged one backed by a repo. Only honoured when selfMcpWriteEnabled (and so selfMcpEnabled) is also on. Their own flag because they create or restructure instance-level state and clone a caller-supplied URL; when off the tools are absent, not present-but-refusing.
maxSpawnDepthPADDOCK_MAX_SPAWN_DEPTH1How deep a spawned chat may itself spawn: a server-initiated turn at depth d gets the self-MCP only if d ≤ maxSpawnDepth. 0 restores “no spawned child gets it”; valid values are 08. A human turn is the depth-0 root and is never depth-gated. A per-project override wins at dispatch.
scheduleMutationEnabledPADDOCK_SCHEDULE_MUTATIONfalseConstruct herdctl’s fleet manager with allowScheduleMutation, permitting its runtime schedule add/remove APIs; off (the default) makes them throw. It is not what gates the self-MCP trigger tools (that’s hooksMcpEnabled), and triggers declared in project.yaml are armed regardless.
hooksMcpEnabledPADDOCK_HOOKS_MCPfalseAdvertise the unified trigger-management MCP tools — list_triggers, set_trigger, remove_trigger, run_trigger. (There are no list_hooks/set_hook/remove_hook tools; Epic T collapsed the separate hook and schedule verbs into this one family, and kept this flag as their gate.) Only honoured alongside the self-MCP write tools; a per-project hooksMcpEnabled override wins at dispatch.

The external Management API is configured here rather than in the environment, because a list of clients each with its own scope doesn’t express well as a scalar.

The one exception is trustedProxies — a flat list, and the thing a container deployment most often needs to set per-environment. It also reads PADDOCK_MANAGEMENT_TRUSTED_PROXIES, which wins over the file; that is the only PADDOCK_MANAGEMENT_* variable Paddock reads.

trustedProxies names the peers whose X-Forwarded-Proto: https the /mcp plaintext guard believes. The peer is the socket address, so a client can’t forge it — but a client also can’t vouch for its own transport, which is why the list exists (#474, shipped in 0.48.1):

managementApi:
# Recommended: name your TLS terminator, and only its forwarded scheme is
# believed. This is what makes the guard a control rather than a footgun-preventer.
trustedProxies: [172.18.0.5]
# The DEFAULT, if you omit the key entirely — equivalent to:
# trustedProxies: [loopback, linklocal, uniquelocal]
# Loopback plus the whole private address space. Keeps a TLS-terminating
# sidecar working, but can't tell your proxy from any other private host, so
# believing a forwarded scheme under it logs a warning once per peer.
#
# Strictest — believe no forwarded scheme at all; reach /mcp over real TLS or
# over loopback:
# trustedProxies: [none]
#
# The opposite, `all`, restores the pre-#474 behaviour and boots with a loud
# warning. Only for a network you fully control.

A comma- or newline-delimited string works in place of the array, and an entry that is not a valid IP, CIDR or preset is dropped with a logged error rather than failing startup — dropping one can only make the guard stricter.

The one thing that never goes in this file is the token itself. This file is git-tracked (and editable from the instance Config screen), so a client’s credential is given as an environment referenceauth: { ref: "env:VAR" } — and an inline token:/secret: is a hard config error, not a warning.

The block fails closed in both directions: /mcp returns 404 until both clients and publicUrl are set, and a client whose referenced variable is unset, blank, or under 24 characters is dropped with a warning rather than weakening the gate. A client with no scope gets read-only — any write scope can start turns, and Claude has Bash. The Management API reference has the full schema, the scope grammar and a worked example.

For the full list of settings — auth headers, Whisper models, recovery knobs, dev-server advertising, and more — see the Environment variables reference; every PADDOCK_* server setting there has a matching YAML key. (The runtime credentials — CLAUDE_CODE_OAUTH_TOKEN / ANTHROPIC_API_KEY — and the Vite web-build variables are read straight from the environment and have no file key.)

The YAML file sets instance-wide defaults. A handful of settings can then be overridden per project from that project’s Settings tab (persisted in its project.yaml), which wins at dispatch time — for example driveMode, maxSpawnDepth, hooksMcpEnabled, the chat recovery knobs, and the attachments group (a project can raise/lower its upload caps or disable uploads entirely). So the layering is: built-in default → instance YAML/env → per-project override.

A project&#x27;s Settings tab, where agent behaviour set instance-wide in the config file can be overridden for this one project