--- summary: "Configure native Codex plugins for Codex-mode OpenClaw agents" title: "Native Codex plugins" read_when: - You want Codex-mode OpenClaw agents to use native Codex plugins - You are migrating source-installed openai-curated Codex plugins - You are discovering or installing a Codex marketplace plugin - You are troubleshooting codexPlugins, app inventory, destructive actions, or plugin app diagnostics - You need the precedence of OpenClaw policy, native app defaults, and per-tool overrides --- Native Codex plugin support lets a Codex-mode OpenClaw agent use Codex app-server's own app and plugin capabilities inside the same Codex thread that handles the OpenClaw turn. Plugin calls stay in the native Codex transcript; Codex app-server owns app-backed MCP execution. OpenClaw does not translate Codex plugins into synthetic `codex_plugin_*` OpenClaw dynamic tools. Use this page after the base [Codex harness](/plugins/codex-harness) is working. ## Requirements - The agent runtime must be the native Codex harness. - `plugins.entries.codex.enabled` is `true`. - `plugins.entries.codex.config.codexPlugins.enabled` is `true`. - Codex app-server reports `0.149.0` or newer. The official plugin ships `@openai/codex` `0.158.0`; newer custom, remote, and macOS desktop-owned binaries continue with a compatibility warning and normal runtime validation. - The target Codex app-server can see the expected marketplace, plugin, and app inventory. - Migration supports only `openai-curated` plugins that it observed as source-installed in the source Codex home. Codex serves the same catalog to API-key and Bedrock accounts under the `openai-api-curated` wire name; OpenClaw treats both names as the one curated catalog, so configured `openai-curated` plugins resolve from either. - Native runtime support also includes other marketplaces already available to Codex, such as `openai-bundled`, `openai-primary-runtime`, `workspace-directory`, and marketplace manifests in the current repository. Plugins remain unavailable until an owner or `operator.admin` explicitly installs or enables their marketplace-qualified identity. `codexPlugins` has no effect on OpenClaw-provider runs, ACP conversation bindings, or other harnesses, because those paths never create Codex app-server threads with native `apps` config. OpenAI-side Codex account, app availability, and workspace app/plugin controls come from the signed-in Codex account. See [Using Codex with your ChatGPT plan](https://help.openai.com/en/articles/11369540-using-codex-with-your-chatgpt-plan) for the OpenAI account and admin model. ## Quickstart The source Codex home is the Codex CLI state directory you are migrating from: `~/.codex` by default, or `CODEX_HOME` when that variable is set. See [`openclaw migrate`](/cli/migrate) to point at a different one with `--from`. Preview migration from the source Codex home: ```bash openclaw migrate codex --dry-run ``` Add `--verify-plugin-apps` to make migration read the source installed app snapshot and app metadata, requiring every owned app to be present, enabled, and accessible before planning native activation: ```bash openclaw migrate codex --dry-run --verify-plugin-apps ``` Apply the migration when the plan looks right: ```bash openclaw migrate apply codex --yes ``` Migration writes explicit `codexPlugins` entries for eligible plugins and calls Codex app-server `plugin/install` for selected plugins. A migrated config looks like this: ```json5 { plugins: { entries: { codex: { enabled: true, config: { codexPlugins: { enabled: true, allow_destructive_actions: true, plugins: { "google-calendar": { enabled: true, marketplaceName: "openai-curated", pluginName: "google-calendar", }, }, }, }, }, }, }, } ``` Migration remains limited to `openai-curated`. To find another plugin that Codex can already see, list the available marketplace catalog and install the exact marketplace-qualified identity: ```text /codex plugins available /codex plugins install security-review@company-tools /codex plugins status security-review@company-tools ``` Codex discovers repository marketplaces from `.agents/plugins/marketplace.json` in the current conversation workspace. An owner does not need to add that marketplace to OpenClaw configuration before listing or installing its plugins. Official bundled, primary-runtime, curated, workspace, shared, and personal marketplaces depend on the signed-in Codex account and upstream feature or administrator policies. When Codex requires marketplace sources to be explicitly configured or allowlisted, those requirements still apply; OpenClaw does not bypass them. Installation writes an explicit configuration entry such as: ```json5 { plugins: { entries: { codex: { enabled: true, config: { codexPlugins: { enabled: true, plugins: { "security-review@company-tools": { enabled: true, marketplaceName: "company-tools", pluginName: "security-review", }, }, }, }, }, }, }, } ``` The install command checks the authenticated owner or administrator before it calls Codex `plugin/install`. Codex continues to enforce marketplace source, workspace administrator, account, and connector-authentication policies. Remote plugins that require a Codex installation interstitial, or do not report whether one is required, must be installed in Codex first; rerun the OpenClaw install command afterward to authorize the already-installed plugin. OpenClaw keeps apps hidden when the response omits the exact marketplace, plugin identity, detail identity, or app-readiness evidence. If a connector requires additional sign-in, complete that authorization before expecting the plugin's tools to become available. Installing the plugin bundle and configuring OpenClaw app access do not confirm hosted app connections. When installation returns apps that still need sign-in, OpenClaw provides **Open <app> in ChatGPT** links to the app pages returned by Codex. Sign in with the same ChatGPT account and workspace used by the Codex harness. Opening a link does not verify the connection or make its tools callable in the current conversation. If the browser shows a directory instead of the app, or no safe link is available, run `/apps` in Codex CLI and select the app there. Responses show up to five app links and explicitly report additional apps to review in Codex CLI. These links are for hosted ChatGPT apps; native MCP server setup remains separate. An app can also request sign-in when you first use one of its tools. In the Control UI, choose **Open link** to open the requested page in a separate tab. The question stays pending while you sign in. After completing the browser step, select **I've completed this step** and submit to let Codex refresh and retry. Opening the link alone does not resume the tool or confirm a connection. Clients without a link action still show the URL to open manually before answering. For setup completed outside an active Codex sign-in prompt, refresh hosted app inventory for the current Codex account/runtime: ```text /codex plugins refresh ``` This refresh covers all hosted apps in that runtime; it is not a per-plugin backend refresh. A plugin's **Refresh hosted apps** button runs this command. The separate **Check status** button inspects only that plugin without refreshing hosted tools. Neither action changes authorization or the current conversation's app policy. Use `/new` or `/reset` after connecting, then inspect status in the new conversation. After a `codexPlugins` change, new Codex conversations pick up the updated app set automatically. Run `/new` or `/reset` to refresh the current conversation. A gateway restart is not required for plugin enable/disable changes. ## Scheduled automations When an authenticated owner creates an automation from a Codex turn, OpenClaw captures the app IDs and approval limits callable on that exact Codex thread. The stored authority is bound to the creator's prepared Codex profile and account. Scheduled runs intersect that cap with current Codex policy and app availability. They never gain new app IDs or a broader destructive, open-world, or approval ceiling. Tools added later within an already captured app may run only when both the stored ceiling and current policy allow them. Scheduled app calls are unattended. Only actions explicitly allowed both when the job was created and when it runs can proceed without a prompt. An action that still requires approval or elicitation is declined. A changed account, runtime, revoked app, narrower policy, or unavailable inventory stops before app execution and reports how to restore access or reauthorize the automation. Model fallbacks cannot move this authority to another runtime or account. This path is stricter than an ordinary interactive turn. OpenClaw generates per-tool `enabled` and `approval_mode` values from current tool metadata and the captured authority. An explicit native `enabled: true` cannot override a captured or current destructive/open-world restriction on a scheduled run. Approval intersections keep `"prompt"` if either side requires it; `"approve"` defers to the other side. Combining `"auto"` with `"writes"` produces `"prompt"`, because their annotation-dependent rules are not totally ordered. Jobs created before app authority capture may keep their ordinary OpenClaw tool cap and continue non-app work, but cannot recover Codex app access automatically. Recreate or reauthorize only a job that needs app access, from a fresh authenticated owner turn. See [Automations](/automation/cron-jobs#codex-apps-in-scheduled-automations). Ordinary edits preserve captured app authority. Explicitly replacing a job's `toolsAllow` cap without a fresh authenticated Codex authority capture clears that authority; the next run reports that app access requires reauthorization. An update from a fresh authenticated owner turn can instead capture and store a new app ceiling for the updated job. ## Manage plugins from chat `/codex plugins` inspects or changes configured native Codex plugins from the same chat where you operate the Codex harness: ```text /codex plugins /codex plugins list /codex plugins available /codex plugins available security /codex plugins available --page 2 /codex plugins install security-review@company-tools /codex plugins status security-review@company-tools /codex plugins refresh /codex plugins disable google-calendar /codex plugins enable google-calendar /codex plugins disable security-review@company-tools ``` `/codex plugins` is an alias for `/codex plugins list`. The list shows each configured plugin's key, on/off state, Codex plugin name, and marketplace from `plugins.entries.codex.config.codexPlugins.plugins`. `available [query] [--page ]` requires an owner or `operator.admin`. It reads Codex's marketplace catalogs using the bound workspace, including repository-local plugins, without installing or enabling them. Search matches names, display titles, publishers, marketplaces, and descriptions case-insensitively across the full returned catalog before showing ten results per page. **Next page** and **Previous page** preserve your search; channels without buttons show the commands to send. Search text is limited to 100 characters. Use `--` before literal search text containing `--page`. Results show display titles, publishers, and descriptions when supplied by Codex, with explicit placeholders for missing publishers or descriptions. They retain marketplace-qualified identities and availability restrictions; display titles and publisher names do not change installation identity. This searches Codex catalogs, not OpenClaw's plugin registry or every ChatGPT connection. The owner-scoped `codex_plugins` model tool uses the same search matching and is also read-only: it can recommend an exact install command but cannot install, enable, or add a marketplace. `status @ [page]` inspects exactly one configured plugin and requires an owner or `operator.admin`. The qualified identity is required; bare `status` or an unqualified name returns usage guidance pointing to `list`. Status shows bundle installation, marketplace restrictions, Codex enablement, and shared OpenClaw app access separately. Changes to OpenClaw app access take effect on the next message; they do not install or enable the Codex bundle. App results show at most five apps per page. A ChatGPT app-page link requires confirmed hosted-app runtime support, an available plugin under its catalog policy, and matching authorized metadata from `app/read`. A plugin's app declaration or setup URL alone does not establish that access. OpenClaw app access can be disabled while an eligible ChatGPT page remains available; opening that page does not enable OpenClaw app access. Plugins without hosted apps receive no ChatGPT connection or setup guidance. Status does not assess their skills or native MCP server readiness. The selected agent, auth profile, conversation workspace, and account email/plan are shown when available. ChatGPT workspace identity remains unknown when Codex does not report it; use the same account and workspace in the browser when opening an eligible hosted app page. Status uses `app/read` for app metadata and displays the `enabled` and `callable` flags returned by `app/installed`. The runtime scope is the bound Codex thread when available, or the account otherwise. These flags reflect effective Codex configuration and the current runtime tool snapshot; they are separate from OpenClaw app access. Status does not infer a separate connection state. Missing app records and failed reads are reported explicitly instead of becoming false flags. `/codex plugins refresh` requires owner or `operator.admin` authority and confirmed hosted-app support in the selected Codex account/runtime. It works without a configured plugin. It invalidates that runtime's OpenClaw app cache, calls Codex `app/installed` with `forceRefresh: true` and no `threadId`, and reads metadata for the returned apps. It does not refresh marketplace catalogs, reinstall plugin bundles, or reload native MCP servers. After refreshing, use `/codex plugins status @` to inspect one plugin. Status never forces a hosted refresh. Disabled or blocked plugins remain disabled or blocked, but do not prevent an otherwise permitted hosted refresh. A completed request does not prove that Codex replaced its snapshot or that a live tool call will succeed. Refresh never installs, enables, authenticates, or replaces a thread, and does not reload other conversations. After connecting, use `/new` or `/reset` and inspect status again. Browser setup does not change OpenClaw app access; local app-access changes take effect on the next message. Unsupported methods, cancellation, and refresh failures provide a retry action without treating the previous inventory as confirmed. `install`, `enable`, and `disable` require the owner or a gateway client with the `operator.admin` scope. OpenClaw's reserved `/codex` command is dispatched before agent invocation, so a model-generated recommendation does not count as installation approval. For a plugin that Codex has not installed yet, `install` calls the Codex app-server and records the explicit plugin policy only after installation succeeds. If Codex confirms that the plugin is already installed and enabled, the same command records its authorization without installing it again. `enable` and `disable` change OpenClaw's persisted policy; qualified identities and existing configuration keys are both accepted. Installing or enabling a configured plugin also turns on the global `codexPlugins.enabled` switch without enabling `allow_all_plugins`. If a plugin reports `auth_required`, authorize the app in Codex before starting a new conversation. Authorization remains in effect for later conversations until the plugin is disabled or the upstream account or workspace revokes access. Only install plugins you trust. A Codex plugin can contribute skills, apps, MCP servers, and hooks. Some hooks can participate in permission decisions, so explicit installation trusts the selected plugin's code; it is not a security review or an isolation boundary. ## How native plugin setup works The integration tracks three states: | State | Meaning | | ---------- | ---------------------------------------------------------------------------------------------------------------------------------- | | Installed | Codex has the plugin bundle in the target app-server runtime. | | Enabled | Codex reports the plugin enabled, and OpenClaw config allows it for Codex harness turns. | | Accessible | Codex app-server confirms the plugin's app entries are available for the active account and map to the configured plugin identity. | For `openai-curated` plugins, migration is the durable install/eligibility step: - During planning, OpenClaw reads source Codex `plugin/read` details and checks the source Codex app-server account. `codex_subscription_required` means `account/read` positively identified an API-key or other non-ChatGPT account; a missing account is not evidence that a subscription is absent. - By default, migration skips source app inventory calls: app-backed source plugins that pass the account gate are planned without source app accessibility verification. A missing account or failed `account/read` skips them with `codex_account_unavailable`. - With `--verify-plugin-apps`, migration takes a fresh source `app/installed` snapshot, fetches authenticated metadata with `app/read`, and requires every owned app to be present, enabled, and accessible in the source Codex account before planning native activation. If `account/read` is missing or fails, strict verification can still prove access through the source app-server's configured bearer or header authentication. A positively identified non-ChatGPT account remains ineligible. For explicitly approved plugins from any discovered marketplace, OpenClaw uses its `plugin/installed` snapshot and `plugin/read` details to establish the exact marketplace-qualified identity and app ownership. The installed-only check during ordinary thread setup is read-only; apps from disabled or unapproved plugins stay denied. Owner-issued installation is the explicit mutation path. Missing or ambiguous ownership fails closed instead of granting account-wide access. Runtime app inventory is the target-session accessibility check for both migrated curated plugins and manually configured workspace plugins. Before enabled-policy turns, including warm reuse and cold resume, the Codex harness rebuilds the restrictive thread app policy from current native settings while reusing its app inventory and plugin metadata caches. ## Support boundary - Only `openai-curated` plugins already installed in the source Codex app-server inventory are migration-eligible. - Runtime supports explicitly approved plugins from Codex-discovered official, workspace, personal, shared, and repository-local marketplaces. A missing marketplace, plugin, ownership detail, or app readiness evidence exposes no plugin app. - Positively identified non-ChatGPT source accounts fail the subscription gate. Missing or unreadable source accounts are unavailable by default. `--verify-plugin-apps` can instead establish access through authenticated source app inventory, including bearer- or header-authenticated app-servers. Inaccessible, disabled, or missing source apps and inventory refresh failures remain skipped manual items. Unreadable plugin details are skipped before the app-inventory gate. - Migration writes explicit plugin identities (`marketplaceName` and `pluginName`); it does not write local `marketplacePath` cache paths. - `codexPlugins.enabled` is the only global enablement switch; there is no `plugins["*"]` wildcard or config key that grants arbitrary install authority. - Migration does not automatically import non-curated marketplaces, cached plugin bundles, hooks, or Codex config files. Use `/codex plugins available` and an owner-issued `/codex plugins install @` command to opt into an additional discovered plugin. - OpenClaw does not add new Git or local marketplace sources in this flow. Additional sources must already be configured in Codex or be discoverable from the bound repository. ## App inventory and ownership OpenClaw first reads and caches one `plugin/installed` snapshot scoped to the target Codex app-server and configured workspace. That snapshot covers plugins from the marketplaces visible in that scope, including disabled plugin identities; failed or incomplete snapshots are never cached. Conversations in the same runtime and workspace share this metadata, and owner installation invalidates it for all of them. App readiness remains specific to each thread. `plugin/read` is limited to exact configured plugin details required to establish ownership. Explicit discovery queries `plugin/list` with the conversation workspace to find repository marketplaces. Routine setup retains its existing curated recovery behavior; additional marketplace installation requires the explicit owner or administrator command. Codex owns skill, hook, and MCP refresh after plugin installation. OpenClaw refreshes its plugin and app inventories without reloading unrelated threads. Use `/new` or `/reset` if an older custom Codex runtime does not make a newly installed plugin available in an existing conversation. OpenClaw reads installed app runtime state through `app/installed` and fetches canonical app metadata with `app/read` in batches of at most 100 app IDs. The first read force-refreshes a cold installed runtime snapshot. When multiple configured curated plugins are installed, OpenClaw combines their cache invalidations into a single app-inventory refresh. Ordinary cached reads do not force a connector refresh for every new thread. OpenClaw caches the combined inventory in memory for one hour and refreshes stale or missing entries asynchronously. The cache is process-local; restarting the CLI or gateway drops it. Missing inventory methods, authentication errors, transport failures, and connector refresh failures do not admit app tools. Ordinary turns, including those using `allow_destructive_actions: "ask"`, can continue with native apps disabled when inventory exceeds its startup budget. Scheduled runs stop if their captured app policy cannot be revalidated within that budget. Migration and runtime use separate cache keys: - Source migration verification uses the source Codex home and start options. It runs only with `--verify-plugin-apps` and forces a fresh source runtime snapshot and metadata read for that planning run. - Target runtime setup uses the target agent's Codex app-server identity when building and verifying the thread app config. Curated plugin activation invalidates that target cache key, then force-refreshes it after `plugin/install`. Explicit marketplace installation refreshes the same target runtime state before subsequent conversations use the plugin. A plugin app is exposed only when OpenClaw can map it back to the configured plugin through stable ownership: an exact app id from plugin detail, a known MCP server name, or unique stable metadata. Display-name-only or ambiguous ownership is excluded until the next inventory refresh proves ownership. Missing plugins and marketplaces remain in saved settings for future discovery, but are omitted from the effective runtime plugin policy. OpenClaw logs an error and continues with healthy plugins and connected account apps. A missing entry's permissions do not apply to other apps, even when their display names match. The entry is reconsidered on the next normal inventory refresh; no saved settings are removed. Found plugins disabled by an administrator retain their restrictions. ## Connected account apps Owner-operated agents can opt into every app already connected to their Codex account without requiring a matching plugin package: ```json5 { plugins: { entries: { codex: { enabled: true, config: { codexPlugins: { enabled: true, allow_all_plugins: true, allow_destructive_actions: "auto", }, }, }, }, }, } ``` `allow_all_plugins: true` reads the installed app snapshot and authenticated metadata when a new native Codex thread is established. It admits only account-accessible apps. Codex must also confirm each admitted app is enabled and callable for that thread. OpenClaw does not install, authenticate, or enable apps globally. Existing threads keep their persisted app set; use `/new`, `/reset`, or restart the gateway to pick up newly connected or revoked apps. An explicitly disabled configured plugin found in the inventory overrides account-wide app access. Because Codex `app/read` omits a disabled workspace plugin's display names, OpenClaw uses its `plugin/installed` snapshot and reads only that exact configured plugin's details to reserve its owned app IDs. This narrow, read-only check does not discover unrelated marketplaces, activate the plugin, or grant its apps. If the disabled plugin's ownership cannot be established, the account-wide app selection fails closed. Account apps inherit the global `codexPlugins.allow_destructive_actions` value, which accepts `true`, `false`, `"auto"`, or `"ask"`. Explicit per-plugin policy overrides the global policy for overlapping app ids. Inventory failures fail closed instead of falling back to an unrestricted default. ## Thread app config OpenClaw injects a restrictive `config.apps` patch for the Codex thread: `_default` is disabled, and only apps owned by enabled configured plugins or accessible account apps admitted by `allow_all_plugins` are enabled. An app can be installed and authenticated but non-callable in the account-wide snapshot while `_default` is disabled. OpenClaw provisionally admits only ownership-proven, policy-allowed apps, creates the restrictive thread, and then rereads `app/installed` once with the resulting thread ID and `forceRefresh: false`. If the snapshot reports an app missing, disabled, or non-callable, OpenClaw logs one warning listing the unavailable apps and continues with the remaining tools. Codex still enforces the thread's effective app, managed, workspace, and tool policies. An unavailable optional app does not block unrelated chat or heartbeat runs. If the snapshot request itself fails, the provisional thread is never bound or used. OpenClaw deletes a failed persistent provisional thread, unsubscribes a failed ephemeral thread, and retires the app-server connection if safe cleanup cannot be confirmed. `destructive_enabled` on each app comes from the effective global or per-plugin `allow_destructive_actions` policy; `true`, `"auto"`, and `"ask"` all set `destructive_enabled: true`, and `false` sets it `false`. Codex still evaluates native tool enablement and annotations in the order below. `_default` is disabled with `open_world_enabled: false`; enabled plugin apps get `open_world_enabled: true`. OpenClaw does not expose a separate plugin-level open-world policy knob and does not maintain per-plugin destructive tool-name deny lists. ## Approval decision order For an ordinary interactive Codex turn, follow these decisions in order: 1. **Admission:** OpenClaw selects the plugin/app identities allowed on this thread. Unavailable inventory or unproven ownership does not grant access. 2. **Thread configuration:** OpenClaw overlays its app policy on the target app-server's native configuration. Codex administrative requirements still apply. 3. **Tool enablement:** Codex decides whether the particular tool is callable. A disabled tool cannot be made callable by approving a prompt. 4. **Approval mode and reviewer:** Codex decides whether the call needs review and whether to use its automatic reviewer or send a user approval request. 5. **OpenClaw response:** When a plugin approval request reaches OpenClaw, its elicitation bridge applies the effective `allow_destructive_actions` value. These are separate decisions. `enabled: true` does not mean automatic approval, and `approval_mode: "approve"` does not enable a disabled tool. OpenClaw dynamic tools, ordinary MCP forms, and native shell permissions have their own flows; see [Native permissions and MCP elicitations](/plugins/codex-harness-runtime/permissions). ### Which configuration owns each setting | Setting | Owner and purpose | | ------------------------------------------------------------------------------- | -------------------------------------------------------------------------------------------------------------------------------------------------------------------- | | `plugins.entries.codex.config.codexPlugins` | OpenClaw's admission and plugin elicitation policy. | | `codexPlugins.allow_destructive_actions` | Shared OpenClaw default for configured plugins and admitted account apps. | | `codexPlugins.plugins..allow_destructive_actions` | Explicit override for that configured plugin. | | Native `apps._default`, `apps.`, and `apps..tools` | Codex app defaults and per-tool settings, after configuration layers and the OpenClaw thread patch are combined. | | `plugins.entries.codex.config.appServer.approvalPolicy` and `approvalsReviewer` | General Codex approval posture and reviewer, distinct from app/tool policy. See [Approval and sandbox modes](/plugins/codex-harness-reference/approval-and-sandbox). | OpenClaw resolves the destructive-action setting as: ```text per-plugin value ?? codexPlugins shared value ?? true ``` Omitting a per-plugin value inherits the shared value. Explicit `false`, `true`, `"auto"`, and `"ask"` all override it. In particular, a generated per-plugin `"auto"` overrides a shared `false`; `"auto"` is a policy value, not an instruction to inherit. The shared default lives in the same OpenClaw configuration as the plugin entries. It requires no separate host-wide configuration file. Native Codex settings belong to the app-server that runs the tools: the default managed local server uses an agent-scoped Codex home; a remote server uses its own configuration. Starting Codex from OpenClaw or a deployment manager does not remove this native configuration layer. OpenClaw's thread patches do not rewrite saved native settings. ### Native tool enablement After OpenClaw's admission patch, Codex evaluates an app tool in this order: 1. A disabled app blocks all its tools, including explicitly enabled tools. Managed app disablement remains authoritative. 2. An explicit `apps..tools..enabled` wins for that tool. 3. Otherwise, an explicit `apps..default_tools_enabled` wins. 4. Otherwise, Codex checks `destructive_enabled` and `open_world_enabled` against the tool's annotations. Each category setting falls back from the app to `apps._default`, then to `true`. Missing annotations are treated as destructive/open-world for this eligibility check. For tool configuration, an exact tool-name entry wins over a tool-title entry. Codex selects the whole entry first; it does not fill missing fields from the title entry. Omit `enabled` to inherit; TOML has no `null` value. For example, on an admitted app with `destructive_enabled: false`, an omitted tool `enabled` leaves destructive tools blocked. Explicit `enabled: true` allows that particular tool through this native eligibility check, while `enabled: false` blocks it even if the app allows destructive tools. The call still has to pass approval and execution checks. This is an exception to an app default, not a way to enable an unadmitted app or widen scheduled authority. ### Native approval mode For an enabled tool, Codex selects the first applicable approval mode: 1. Managed per-tool approval requirement. 2. The selected native tool entry's `approval_mode`. 3. The selected connected account's `apps..links..default_tools_approval_mode`. 4. `apps..default_tools_approval_mode`. 5. `apps._default.default_tools_approval_mode`. 6. `"auto"`. The account link is the connected account used for this call, not the OpenClaw conversation. The following modes decide whether review is needed; they do not themselves promise an OpenClaw prompt: | Native mode | Approval requirement | | ----------- | ----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | | `"approve"` | No tool approval request. Other access and execution restrictions still apply. | | `"prompt"` | Requires approval, including for read-only tools. | | `"writes"` | Requires approval unless the tool explicitly declares itself read-only. | | `"auto"` | Uses annotations: explicitly destructive tools require approval; otherwise explicitly read-only tools do not. Remaining tools require approval when destructive/open-world hints are true or missing. | Reviewer selection is separate: the connected account's reviewer overrides the app reviewer, then `apps._default.approvals_reviewer`, then the thread reviewer. Codex only accepts a configured reviewer allowed by administrative requirements; otherwise it uses the thread reviewer. A model-specific requirement for automatic review takes precedence. Strict automatic review can also require review when a tool's mode would otherwise skip it. Unless OpenClaw policy is explicitly `"ask"`, admitted apps retain their native approval mode and reviewer, including app defaults and saved account-link or tool overrides. This also applies when resuming a thread or asking a `/btw` side question. With no native approval setting, Codex falls back to `"auto"`. Use OpenClaw `allow_destructive_actions: "auto"` to route native human approval requests through OpenClaw consent. Native `"prompt"` with the `"auto_review"` reviewer stays in Codex's automatic review flow. OpenClaw `true` preserves the native mode too, but auto-accepts supported approval requests that reach the bridge, as described below. OpenClaw `"ask"` also overlays saved approval fields for current non-read-only tool names/aliases and connected accounts, selecting native `"auto"` and a human app/account reviewer. It preserves tool enablement. If tool summaries are unavailable, it targets all saved tool approval entries. Thus `"ask"` requires one-shot consent for the actions Codex sends for approval; it does not mean native `"prompt"` for every read. Other apps retain their reviewer. On ordinary native-plugin turns and `/btw` side questions with bound apps, OpenClaw enables MCP elicitation delegation even when the general `appServer.approvalPolicy` is `"never"`; this does not enable unrelated shell approval categories. The app mode, reviewer, and bridge response still determine the outcome. General approval policy is not a replacement for the per-app/tool settings above. ## Destructive action policy Destructive plugin elicitations are allowed by default for configured Codex plugins, while unsafe schemas and ambiguous ownership fail closed: - Global `allow_destructive_actions` defaults to `true`. - Per-plugin `allow_destructive_actions` overrides the global policy for that plugin. - `false`: OpenClaw sets native `destructive_enabled: false`; tool eligibility follows the native defaults and explicit exceptions described above. Approval requests for eligible hosted app tools still go through OpenClaw consent, including permitted reads and `/btw` side questions. The bridge does not classify tools again or blanket-decline their requests. Plugin-provided MCP server approval requests still receive a deterministic decline. - `true`: OpenClaw auto-accepts only safe schemas it can map to an approval response, such as a boolean approve field. - `"auto"`: OpenClaw exposes destructive plugin actions to Codex, then turns ownership-proven MCP approval elicitations into OpenClaw plugin approvals before returning the Codex approval response. - `"ask"`: OpenClaw uses the same Codex write/destructive gating as `"auto"`, applies the tool/account approval overlays described above, and offers only one-shot approval or denial. Saved native settings stay unchanged, and user-config reloads preserve the thread's approval policy. These checks also run before reusing a thread or answering a `/btw` side question. Changed override keys rebuild the thread with current policy. - Missing plugin identity, ambiguous ownership, a missing or mismatched turn id, or an unsafe elicitation schema declines instead of prompting. Apps outside the admitted policy stay disabled even if native Codex settings enable them. Native settings must be verified before an enabled policy can admit app tools. When no app can be admitted, Codex's app tool surface is disabled without reading native app settings. Disabling plugin apps also skips app inventory discovery. Active legacy managed app settings outrank native thread configuration and prevent app admission; move those app settings to a supported user or project configuration layer. Native administrative requirements remain authoritative. ### Approval examples Assume an admitted, authenticated app, no conflicting managed requirement, and a human reviewer for calls that need approval. The read tools below declare `readOnlyHint: true` and `destructiveHint: false`: | Configuration | Observable result on an ordinary turn | | --------------------------------------------------------------------------------------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------- | | OpenClaw shared `false`, per-plugin `"auto"` | The plugin override wins. Destructive tools are eligible; approval elicitations that reach OpenClaw request consent. | | OpenClaw `"auto"`, native app default `"prompt"`, no tool/link override, non-destructive read | Native `"prompt"` survives. The read requests consent; Allow once permits the call and Deny blocks it. | | OpenClaw `"auto"`, native read-tool `approval_mode: "prompt"` | The per-tool mode survives. The read requests consent; Allow once permits the call and Deny blocks it. | | OpenClaw `false`, native app default `"prompt"`, no tool/link override, non-destructive read | Native eligibility allows the read, and OpenClaw requests consent. Allow once permits the call and Deny blocks it. | | OpenClaw `false`, destructive tool explicitly `enabled: true` and `approval_mode: "approve"` | The native tool exception bypasses the category default and requires no tool approval request. The bridge's decline path is not an execution-time category ceiling. | | OpenClaw `"ask"`, saved non-read-only tool approval `"approve"` | The thread overlay replaces that saved approval with native `"auto"`; calls needing approval use one-shot consent. | If the reviewer in the native `"prompt"` examples is `"auto_review"` instead of `"user"`, Codex performs automatic review rather than displaying an OpenClaw consent prompt. Neither reviewer choice enables a tool that failed the eligibility check. Remembered approval and explicit enablement are different settings. Codex's persistent app-tool approval writes `approval_mode: "approve"`, not `enabled: true`; Allow once does not persist either setting. Recheck both when explaining why a tool ran or why no prompt appeared. ## Troubleshooting | Code | Meaning | Fix | | ------------------------------------------------- | ------------------------------------------------------------------------------------------------------------------------------------ | ---------------------------------------------------------------------------------------------------------------------- | | `auth_required` | Migration installed the plugin, but one of its apps still needs authentication. The entry is written disabled until you reauthorize. | Reauthorize the app in Codex, then enable the plugin in OpenClaw. | | `app_inaccessible`, `app_disabled`, `app_missing` | With `--verify-plugin-apps`, the source Codex app inventory did not show all owned apps as present, enabled, and accessible. | Reauthorize or enable the app in Codex, then rerun migration with `--verify-plugin-apps`. | | `app_inventory_unavailable` | Strict source app verification was requested but the source Codex app inventory refresh failed. | Fix source Codex app-server access, or retry without `--verify-plugin-apps` to accept the faster account-gated plan. | | `codex_subscription_required` | The source app-server positively identified an API-key or other non-ChatGPT account. | Log in to the Codex app with subscription auth, then rerun migration. | | `codex_account_unavailable` | The source account was missing or `account/read` failed without strict app verification. | Restore source account access, or use `--verify-plugin-apps` when authenticated source app inventory can prove access. | | `marketplace_missing`, `plugin_missing` | The exact marketplace or configured plugin is unavailable in the installed snapshot; plugin apps fail closed. | Verify the target app-server's `plugin/installed` response and exact configured plugin identity. | | `plugin_detail_unavailable` | OpenClaw could not read the exact configured plugin's ownership details. | Inspect the target app-server's `plugin/installed` and `plugin/read` responses. | | `plugin_disabled` | Codex reports the plugin installed but disabled. | Enable the plugin in Codex, or have the owner explicitly install and authorize it again. | | `plugin_activation_failed` | Plugin activation did not complete. | Use the attached diagnostic to distinguish marketplace, auth, refresh, or workspace-readiness failures. | | `app_inventory_missing`, `app_inventory_stale` | App readiness came from an empty or stale cache. | OpenClaw schedules an async refresh automatically; plugin apps stay excluded until ownership and readiness are known. | | `app_ownership_ambiguous` | App inventory only matched by display name. | The app stays hidden from the Codex thread until a later refresh proves ownership. | **Workspace plugin is installed but not visible:** confirm the workspace `plugin/installed` snapshot reports the exact configured ID as installed and enabled, then confirm `app/installed` returns every owned app for the same Codex account and `app/read` returns its metadata. An app disabled only by the account-wide default can become callable after OpenClaw starts and verifies its explicitly configured thread. Revoked auth, missing metadata, disabled workspace plugins, and Codex managed or workspace restrictions still block access. Reauthorize or repair those upstream conditions before starting a new thread. If you changed that state after the gateway cached app inventory, run `/codex plugins refresh`, then use `/new` or `/reset`. OpenClaw does not authenticate plugin apps on the owner's behalf. For `plugin_detail_unavailable`, verify that the exact installed marketplace and plugin identity select a matching `plugin/read` result. OpenClaw keeps owned apps hidden when that selector or ownership detail is unavailable. For `plugin_activation_failed`, inspect the marketplace, app authorization, and post-install refresh diagnostics. An explicitly approved plugin must be installed, enabled, and authenticated before its apps can appear in a thread. **Config changed but the agent cannot see the plugin:** run `/codex plugins list` to confirm the configured state, then `/new` or `/reset`. Existing Codex thread bindings keep the app config they started with until OpenClaw establishes a new harness session or replaces a stale binding. **Destructive action is declined:** check the global and per-plugin `allow_destructive_actions` values. Even with `true`, `"auto"`, or `"ask"`, unsafe elicitation schemas and ambiguous plugin identity still fail closed. ## Related - [Codex harness](/plugins/codex-harness) - [Codex harness reference](/plugins/codex-harness-reference) - [Codex harness runtime](/plugins/codex-harness-runtime) - [Configuration reference](/gateway/config-extensions#codex-harness-plugin-config) - [Migrate CLI](/cli/migrate)