Commit Graph

81 Commits

  • extension: move git attribution into an extension (#21738)
    ## Why
    
    Git commit attribution is prompt policy, not session orchestration.
    After #21737 adds the extension-registry seam, this moves that
    prompt-only behavior out of `codex-core` so `Session` can consume
    extension-contributed prompt fragments instead of owning a one-off
    policy path itself.
    
    Before this PR, `Session` injected the trailer instruction directly from
    `codex-core` ([session
    assembly](https://github.com/openai/codex/blob/a57a747eb667753118217b8bb47dfd1fff88cbde/codex-rs/core/src/session/mod.rs#L2733-L2739),
    [helper
    module](https://github.com/openai/codex/blob/a57a747eb667753118217b8bb47dfd1fff88cbde/codex-rs/core/src/commit_attribution.rs#L1-L33)).
    This branch moves that same responsibility into
    [`codex-git-attribution`](https://github.com/openai/codex/blob/b5029a67360fe5c948aa849d4cf65fd2597ebaae/codex-rs/ext/git-attribution/src/lib.rs#L14-L100).
    
    ## What changed
    
    - Added the `codex-git-attribution` extension crate.
    - Snapshot `CodexGitCommit` plus `commit_attribution` at thread start,
    then contribute the developer-policy fragment through the extension
    registry.
    - Register the extension in app-server thread extensions.
    - Remove the old `codex-core` helper module and direct `Session`
    injection path.
    
    This keeps the existing behavior intact: the prompt is only contributed
    when `CodexGitCommit` is enabled, blank attribution still disables the
    trailer, and the default remains `Codex <noreply@openai.com>`.
    
    ## Stack
    
    - Stacked on #21737.
  • extension: wire extension registries into sessions (#21737)
    ## Why
    
    [#21736](https://github.com/openai/codex/pull/21736) introduces the
    typed extension API, but the runtime does not yet carry a registry
    through thread/session startup or give contributors host-owned stores to
    read from. This PR wires that host-side path so later feature migrations
    can move product-specific behavior behind typed contributions without
    adding another bespoke seam directly to `codex-core`.
    
    ## What changed
    
    - Thread `ExtensionRegistry<Config>` through `ThreadManager`,
    `CodexSpawnArgs`, `Session`, and sub-agent spawn paths.
    - Wire `ThreadStartContributor` and `ContextContributor`
    - Expose the small supporting surface needed by non-core callers that
    construct threads directly, including `empty_extension_registry()`
    through `codex-core-api`.
    
    This PR lands the host plumbing only: the app-server registry is still
    empty, and concrete feature migrations are intended to follow
    separately.
  • Reapply "Move skills watcher to app-server" (#21652)
    ## Why
    
    PR #21460 reverted the earlier move of skills change watching from
    `codex-core` into app-server. This reapplies that boundary change so
    app-server owns client-facing `skills/changed` notifications and core no
    longer carries the watcher.
    
    ## What
    
    - Restore the app-server `SkillsWatcher` and register it from thread
    listener setup.
    - Remove the core-owned skills watcher and its core live-reload
    integration surface.
    - Restore app-server coverage for `skills/changed` notifications after a
    watched skill file changes.
    
    ## Validation
    
    - `cargo test -p codex-app-server --test all
    suite::v2::skills_list::skills_changed_notification_is_emitted_after_skill_change
    -- --exact --nocapture`
    - `cargo test -p codex-core --lib --no-run`
  • [codex] request desktop attestation from app (#20619)
    ## Summary
    
    TL;DR: teaches `codex-rs` / app-server to request a desktop-provided
    attestation token and attach it as `x-oai-attestation` on the scoped
    ChatGPT Codex request paths.
    
    ![DeviceCheck attestation
    interface](https://raw.githubusercontent.com/openai/codex/dev/jm/devicecheck-diagram-assets/pr-assets/devicecheck-attestation-interface.png)
    
    ## Details
    
    This PR teaches the Codex app-server runtime how to request and attach
    an attestation token. It does not generate DeviceCheck tokens directly;
    instead, it relies on the connected desktop app to advertise that it can
    generate attestation and then asks that app for a fresh header value
    when needed.
    
    The flow is:
    
    1. The Codex desktop app connects to app-server.
    2. During `initialize`, the app can advertise that it supports
    `requestAttestation`.
    3. Before app-server calls selected ChatGPT Codex endpoints, it sends
    the internal server request `attestation/generate` to the app.
    4. app-server receives a pre-encoded header value back.
    5. app-server forwards that value as `x-oai-attestation` on the scoped
    outbound requests.
    
    The code in this repo is mostly protocol and runtime plumbing: it adds
    the app-server request/response shape, introduces an attestation
    provider in core, wires that provider into Responses / compaction /
    realtime setup paths, and covers the intended scoping with tests. The
    signed macOS DeviceCheck generation remains owned by the desktop app PR.
    
    ## Related PR
    
    - Codex desktop app implementation:
    https://github.com/openai/openai/pull/878649
    
    ## Validation
    
    <details>
    <summary>Tests run</summary>
    
    ```sh
    cargo test -p codex-app-server-protocol
    cargo test -p codex-core attestation --lib
    cargo test -p codex-app-server --lib attestation
    ```
    
    Also ran:
    
    ```sh
    just fix -p codex-core
    just fix -p codex-app-server
    just fix -p codex-app-server-protocol
    just fmt
    just write-app-server-schema
    ```
    
    </details>
    
    <details>
    <summary>E2E DeviceCheck validation</summary>
    
    First validated the signed desktop app boundary directly: launched a
    packaged signed `Codex.app`, sent `attestation/generate`, decoded the
    returned `v1.` attestation header, and validated the extracted
    DeviceCheck token with `personal/jm/verify_devicecheck_token.py` using
    bundle ID `com.openai.codex`. Apple returned `status_code: 200` and
    `is_ok: true`.
    
    Then ran the fuller app + app-server flow. The packaged `Codex.app`
    launched a current-branch app-server via `CODEX_CLI_PATH`, and a local
    MITM proxy intercepted outbound `chatgpt.com` traffic. The app-server
    requested `attestation/generate` from the real Electron app process, and
    the intercepted `/backend-api/codex/responses` traffic included
    `x-oai-attestation` on both routes:
    
    ```text
    GET  /backend-api/codex/responses  Upgrade: websocket  x-oai-attestation: present
    POST /backend-api/codex/responses  Upgrade: none       x-oai-attestation: present
    ```
    
    The captured header decoded to a DeviceCheck token that also validated
    with Apple for `com.openai.codex` (`status_code: 200`, `is_ok: true`,
    team `2DC432GLL2`).
    
    </details>
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • [codex-analytics] plumb protocol-native review timing (#21434)
    ## Why
    
    We want terminal tool review analytics, but the reducer should not stamp
    review timing from its own wall clock.
    
    This PR plumbs review timing through the real protocol and app-server
    seams so downstream analytics can consume the emitter's timestamps
    directly. Guardian reviews keep their enriched `started_at` /
    `completed_at` analytics fields by deriving those legacy second-based
    values from the same protocol-native millisecond lifecycle timestamps,
    rather than sampling a separate analytics clock.
    
    ## What changed
    
    - add `started_at_ms` to user approval request payloads
    - add `started_at_ms` / `completed_at_ms` to guardian review
    notifications
    - preserve Guardian review `started_at` / `completed_at` enrichment from
    the protocol-native timing source
    - stamp typed `ServerResponse` analytics facts with app-server-observed
    `completed_at_ms`
    - thread the new timing fields through core, protocol, app-server, TUI,
    and analytics fixtures
    
    ## Verification
    
    - `cargo test -p codex-app-server outgoing_message --manifest-path
    codex-rs/Cargo.toml`
    - `cargo test -p codex-app-server-protocol guardian --manifest-path
    codex-rs/Cargo.toml`
    - `cargo test -p codex-tui guardian --manifest-path codex-rs/Cargo.toml`
    - `cargo test -p codex-analytics analytics_client_tests --manifest-path
    codex-rs/Cargo.toml`
    
    ---
    [//]: # (BEGIN SAPLING FOOTER)
    Stack created with [Sapling](https://sapling-scm.com). Best reviewed
    with [ReviewStack](https://reviewstack.dev/openai/codex/pull/21434).
    * #18748
    * __->__ #21434
    * #18747
    * #17090
    * #17089
    * #20514
  • Move thread name edits to ThreadStore (#21264)
    - Route live thread renames through `ThreadStore` metadata updates.
    - Read resumed thread names from store metadata with legacy local
    fallback preserved in the store.
  • app-server: refresh live threads from latest config snapshot (#21187)
    ## Why
    
    App-server config writes were leaving existing threads partially stale.
    After a config mutation, the app-server told each live thread to run
    `Op::ReloadUserConfig`, but that path only re-read the user
    `config.toml` layer. Settings that came from the app-server's
    materialized config snapshot did not propagate to existing threads until
    restart.
    
    This change prevent a FS access from `core` for CCA.
    
    ## What changed
    
    - add `CodexThread::refresh_runtime_config()` and
    `Session::refresh_runtime_config()` so the app-server can push a freshly
    rebuilt config snapshot into a live thread
    - rebuild the latest config with each thread's `cwd` after config
    mutations, then refresh the thread from that snapshot instead of asking
    it to reload only `config.toml`
    - keep session-static settings unchanged during refresh, while updating
    runtime-refreshable state such as the config layer stack,
    `tool_suggest`, and derived hook/plugin/skill state
    - keep `reload_user_config_layer()` as the file-backed fallback for
    legacy local reload flows, but route the shared refresh logic through
    the new runtime refresh path
    
    ## Testing
    
    - add a session test that verifies `refresh_runtime_config()` rebuilds
    hooks from refreshed config
    - add a session test that verifies runtime-refreshable fields update
    while session-static settings like `model` and `notify` stay unchanged
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • feat: make built-in MCPs first-class runtime servers (#21356)
    ## DISCLAIMER
    This is experimental and no production service must rely on this
    
    ## Why
    
    Built-in MCPs are product-owned runtime capabilities, but they were
    previously flattened into the same config-backed stdio path as
    user-configured servers. That made them depend on a hidden `codex
    builtin-mcp` re-exec path, exposed them through config-oriented CLI
    flows, and erased distinctions the runtime needs to preserve—most
    notably whether an MCP call should count as external context for
    memory-mode pollution.
    
    ## What changed
    
    - Model product-owned built-ins separately from config-backed MCP
    servers via `BuiltinMcpServer` and `EffectiveMcpServer`.
    - Launch built-ins in process through a reusable async transport instead
    of the hidden `builtin-mcp` stdio subcommand.
    - Keep config-oriented CLI operations such as `codex mcp
    list/get/login/logout` scoped to configured servers, while merging
    built-ins only into the effective runtime server set.
    - Retain server metadata after launch so parallel-tool support and
    context classification come from the live server set; built-in
    `memories` is now classified as local Codex state rather than external
    context.
    
    ## Test plan
    
    - `cargo test -p codex-mcp`
    - `cargo test -p codex-core --test suite
    builtin_memories_mcp_call_does_not_mark_thread_memory_mode_polluted_when_configured`
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Revert state DB injection and agent graph store (#21481)
    ## Why
    
    Reverts #20689 to restore the previous optional state DB plumbing. The
    conflict resolution keeps the newer installation ID and session/thread
    identity changes that landed after #20689, while removing the mandatory
    state DB and agent graph store dependency from ThreadManager
    construction.
    
    ## What changed
    
    - Restored `Option<StateDbHandle>` through app-server, MCP server,
    prompt debug, and test entry points.
    - Removed the `codex-core` dependency on `codex-agent-graph-store` and
    reverted descendant lookup back to the existing state DB path when
    available.
    - Kept newer `installation_id` forwarding by passing it beside the
    optional DB handle.
    - Kept local thread-name updates working when the optional state DB
    handle is absent.
    
    ## Validation
    
    - `git diff --check`
    - `cargo test -p codex-thread-store`
    - `cargo test -p codex-state -p codex-rollout -p
    codex-app-server-protocol`
    - Attempted `env CARGO_INCREMENTAL=0 cargo test -p codex-core -p
    codex-app-server -p codex-app-server-client -p codex-mcp-server -p
    codex-thread-manager-sample -p codex-tui`; blocked locally by a rustc
    ICE while compiling `v8 v146.4.0` with `rustc 1.93.0 (254b59607
    2026-01-19)` on `aarch64-apple-darwin`.
  • Move skills watcher to app-server (#21287)
    ## Why
    
    Skills update notifications are app-server API behavior, but the watcher
    lived in `codex-core` and surfaced through
    `EventMsg::SkillsUpdateAvailable`. Moving the watcher out keeps core
    focused on thread execution and lets app-server own both cache
    invalidation and the `skills/changed` notification.
    
    ## What changed
    
    - Added an app-server-owned skills watcher that watches local skill
    roots, clears the shared skills cache, and emits `skills/changed`
    directly.
    - Registers skill watches from the common app-server thread listener
    attach path, including direct starts, resumes, and app-server-observed
    child or forked threads.
    - Stores the `WatchRegistration` on `ThreadState`, so listener
    replacement, thread teardown, idle unload, and app-server shutdown
    deregister by dropping the RAII guard.
    - Removed `EventMsg::SkillsUpdateAvailable`, the core watcher, and the
    old core live-reload test.
    - Extended the app-server skills change test to verify a cached skills
    list is refreshed after a filesystem change without forcing reload.
    
    ## Validation
    
    - `cargo check -p codex-core -p codex-app-server -p codex-mcp-server -p
    codex-rollout -p codex-rollout-trace`
    - `cargo test -p codex-app-server
    skills_changed_notification_is_emitted_after_skill_change`
  • Avoid hard-coded environment context shell (#21390)
    ## Summary
    - make resolved turn environment shell metadata optional instead of
    hard-coding bash
    - render environment context shells from explicit environment metadata
    when present, falling back to the existing session shell
    - update environment context tests for inherited PowerShell-style
    fallback and explicit per-environment shell override
    
    ## Testing
    - Not run (not requested; formatted with `just fmt`).
    
    Co-authored-by: Codex <noreply@openai.com>
  • 2- Use string service tiers in session protocol (#20971)
    ## Summary
    - break service tier session/op/app-server protocol fields from the
    closed enum to string tier ids
    - send the service tier string directly through model requests, prewarm,
    compaction, memories, and TUI/app-server turn starts
    - regenerate app-server protocol JSON/TypeScript schemas, removing the
    standalone ServiceTier TS enum
    
    ## Verification
    - just fmt
    - cargo check -p codex-core -p codex-app-server -p codex-tui
    - just write-app-server-schema
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Move installation ID resolution out of core startup (#21182)
    ## Summary
    
    - resolve or inject the installation ID before core startup and pass it
    through `ThreadManager`, `CodexSpawnArgs`, and `Session` as a plain
    `String`
    - keep child sessions on the parent installation ID instead of
    rediscovering it inside core
    - propagate installation ID startup failures in `mcp-server` instead of
    panicking
    
    ## Why
    
    Core was still touching the filesystem on the session startup path to
    discover `installation_id`. This moves that work to the outer host
    boundary so core no longer depends on `codex_home` reads during session
    construction.
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Support Codex Apps auth elicitations (#19193)
    ## Summary
    
    - request URL-mode MCP elicitations when Codex Apps tool calls fail with
    connector auth metadata
    - route Codex Apps auth URL elicitations into the TUI app-link flow
    
    ## Test plan
    
    - `just fmt`
    - `cargo test -p codex-core mcp_tool_call::tests`
    - `cargo test -p codex-mcp`
    - `cargo test -p codex-tui bottom_pane::app_link_view::tests`
    - `just fix -p codex-core`
    - `just fix -p codex-mcp`
    - `just fix -p codex-tui`
    
    Also attempted broader local runs:
    
    - `cargo test -p codex-core` fails in unrelated
    config/request-permission/proxy-sensitive tests under the current Codex
    Desktop environment.
    - `cargo test -p codex-tui` fails in unrelated status
    snapshots/trust-default tests because the ambient environment renders
    workspace-write/network permission defaults.
  • [codex-analytics] rework thread_source for thread analytics (#20949)
    ## Summary
    - make `thread_source` an explicit optional thread-level field on
    `thread/start`, `thread/fork`, and returned thread payloads
    - persist `thread_source` in rollout/session metadata so resumed live
    threads retain the original value
    - replace the old best-effort `session_source` -> `thread_source`
    mapping with an explicit caller-supplied analytics classification
    
    ## Why
    Before this change, analytics `thread_source` was populated by a
    best-effort mapping from `session_source`. `session_source` describes
    the runtime/client surface, not the actual thread-level origin, so that
    projection was not accurate enough to distinguish cases such as `user`,
    `subagent`, `memory_consolidation`, and future thread origins reliably.
    
    Making `thread_source` explicit keeps one thread-level analytics field
    while letting callers provide the real classification directly instead
    of recovering it indirectly from `session_source`.
    
    ## Impact
    For new analytics events, `thread_source` now reflects the explicit
    thread-level classification supplied by the caller rather than an
    inferred value derived from `session_source`. Existing protocol fields
    remain optional; callers that omit `threadSource` now produce `null`
    instead of a best-effort inferred value.
    
    ## Validation
    - `just write-app-server-schema`
    - `cargo test -p codex-analytics -p codex-core -p
    codex-app-server-protocol --no-run`
    - `cargo test -p codex-app-server-protocol
    generated_ts_optional_nullable_fields_only_in_params`
    - `cargo test -p codex-analytics
    thread_initialized_event_serializes_expected_shape`
    - `cargo test -p codex-core
    resume_stopped_thread_from_rollout_preserves_thread_source`
  • [codex] Remove legacy ListSkills op (#21282)
    ## Why
    
    `skills/list` is already exposed through app-server v2 and covered by
    the app-server test suite. Keeping the separate core `Op::ListSkills`
    path leaves a duplicate legacy protocol surface that no longer needs to
    be maintained.
    
    ## What Changed
    
    - Removed `Op::ListSkills` and `EventMsg::ListSkillsResponse` from the
    core protocol.
    - Deleted the corresponding core session handler and stale core
    integration tests.
    - Removed rollout/MCP ignore branches and protocol v1 docs references
    for the deleted event/op.
    - Left app-server `skills/list` and its existing coverage intact.
    
    ## Validation
    
    - `cargo test -p codex-protocol`
    - `cargo test -p codex-core --test all suite::skills`
    - `cargo check -p codex-mcp-server -p codex-rollout -p
    codex-rollout-trace`
    - `just fix -p codex-core`
  • Inject state DB, agent graph store (#20689)
    ## Why
    
    We want the agent graph store to be passed down the stack as a real
    dependency, the same way we already treat the thread store.
    
    This will let us inject the agent graph store as a real dependency and
    support implementations other than the local SQLite-backed one. Right
    now most code instantiates a state DB and an agent graph store
    just-in-time. Ideally, we would not depend on the state DB directly but
    only read through the higher-level interfaces.
    
    This change makes the dependency boundaries explicit and moves state DB
    initialization to process bootstrap instead of hiding it inside local
    store implementations.
    
    ## What changed
    
    - `ThreadManager` now requires a `StateDbHandle` and an
    `AgentGraphStore` at construction time instead of treating them as
    optional internals.
    - The local store constructors no longer lazily initialize SQLite.
    Callers now initialize the state DB once per process and use that shared
    handle to build:
      - `LocalThreadStore`
      - `LocalAgentGraphStore`
    - App bootstraps (`app-server`, `mcp-server`, `prompt_debug`, and the
    thread-manager sample) now initialize the state DB up front and inject
    the resulting handle down the stack.
    - `app-server` now consistently uses its process-scoped state DB handle
    instead of reopening SQLite or trying to recover it from loaded threads.
    - Device-key storage now reuses the shared state DB handle instead of
    maintaining its own lazy opener.
    - The thread archive / descendant traversal paths now use the injected
    `AgentGraphStore` instead of reaching through local
    thread-store-specific state.
    
    ## Verification
    
    - `cargo check -p codex-core -p codex-thread-store -p codex-app-server
    -p codex-mcp-server -p codex-thread-manager-sample --tests`
    - `cargo test -p codex-thread-store`
    - `cargo test -p codex-core
    thread_manager_accepts_separate_agent_graph_store_and_thread_store --
    --nocapture`
    - `cargo test -p codex-app-server
    thread_archive_archives_spawned_descendants -- --nocapture`
  • Auto-deny MCP elicitations for Xcode 26.4 clients (#21113)
    ## Summary
    
    Xcode 26.4 was built against app-server behavior from before MCP
    elicitation requests became client-visible in CLI 0.120.0 via #17043.
    That client line does not expect the new events/messages, so this PR
    restores the old behavior for exactly that client/version combination.
    
    The compatibility handling stays in the app-server layer: when the
    initialized client is `Xcode` and its version starts with `26.4`, the
    app server marks the live Codex thread so MCP elicitations are
    auto-denied. The flag is applied on thread start/resume/fork/turn
    attachment, carried through `Codex`/`CodexThread`, and stored on
    `McpConnectionManager` so refreshed MCP managers preserve the behavior.
    
    ## Notes
    
    This is intentionally narrow and includes a TODO to remove the
    compatibility path once Xcode 26.4 ages out.
  • Add plugin ID to skill analytics (#20923)
    ## Summary
    - thread plugin skill roots through the skills loader with their plugin
    ID
    - store plugin ID on loaded skill metadata for plugin-provided skills
    - include plugin ID on skill invocation analytics events
    
    ## Test plan
    - cargo check -p codex-core-skills
    - cargo check -p codex-core -p codex-core-plugins -p codex-analytics
    - cargo check -p codex-tui
    - cargo check -p codex-plugin -p codex-core -p codex-core-plugins -p
    codex-analytics
    - cargo check -p codex-app-server
    - cargo test -p codex-analytics
    - HOME=/private/tmp/codex-empty-home cargo test -p codex-core-skills
    - just fix -p codex-core-skills
    - just fix -p codex-analytics
    - just fix -p codex-core-plugins
    - just fix -p codex-core
    - just fmt
    - git diff --check
  • [codex-analytics] add item lifecycle timing (#20514)
    ## Why
    
    Tool families already disagree on what their existing `duration` fields
    mean, so lifecycle latency should live on the shared item envelope
    instead of being inferred from per-tool execution fields. Carrying that
    envelope through app-server notifications gives downstream consumers one
    reusable timing signal without pretending every tool has the same
    execution semantics.
    
    ## What changed
    
    - Adds `started_at_ms` to core `ItemStartedEvent` values and
    `completed_at_ms` to core `ItemCompletedEvent` values.
    - Populates those timestamps in the shared session lifecycle emitters,
    so protocol-native items get timing without each producer tracking its
    own clock state.
    - Exposes `startedAtMs` on app-server `item/started` notifications and
    `completedAtMs` on `item/completed` notifications.
    - Maps the lifecycle timestamps through the app-server boundary while
    leaving legacy-converted notifications nullable when no lifecycle
    timestamp exists.
    - Regenerates the app-server JSON schema and TypeScript fixtures for the
    notification-envelope change and updates downstream fixtures that
    construct those notifications directly.
    - Extends the existing web-search and image-generation integration flows
    to assert the new lifecycle timestamps on the native item events.
    
    ## Verification
    
    - `cargo check -p codex-protocol -p codex-core -p
    codex-app-server-protocol -p codex-app-server -p codex-tui -p codex-exec
    -p codex-app-server-client`
    - `cargo test -p codex-core --test all web_search_item_is_emitted`
    - `cargo test -p codex-core --test all
    image_generation_call_event_is_emitted`
    - `cargo test -p codex-app-server-protocol`
    
    ---
    [//]: # (BEGIN SAPLING FOOTER)
    Stack created with [Sapling](https://sapling-scm.com). Best reviewed
    with [ReviewStack](https://reviewstack.dev/openai/codex/pull/20514).
    * #18748
    * #18747
    * #17090
    * #17089
    * __->__ #20514
  • state: pass state db handles through consumers (#20561)
    ## Why
    
    SQLite state was still being opened from consumer paths, including lazy
    `OnceCell`-backed thread-store call sites. That let one process
    construct multiple state DB connections for the same Codex home, which
    makes SQLite lock contention and `database is locked` failures much
    easier to hit.
    
    State DB lifetime should be chosen by main-like entrypoints and tests,
    then passed through explicitly. Consumers should use the supplied
    `Option<StateDbHandle>` or `StateDbHandle` and keep their existing
    filesystem fallback or error behavior when no handle is available.
    
    The startup path also needs to keep the rollout crate in charge of
    SQLite state initialization. Opening `codex_state::StateRuntime`
    directly bypasses rollout metadata backfill, so entrypoints should
    initialize through `codex_rollout::state_db` and receive a handle only
    after required rollout backfills have completed.
    
    ## What Changed
    
    - Initialize the state DB in main-like entrypoints for CLI, TUI,
    app-server, exec, MCP server, and the thread-manager sample.
    - Pass `Option<StateDbHandle>` through `ThreadManager`,
    `LocalThreadStore`, app-server processors, TUI app wiring, rollout
    listing/recording, personality migration, shell snapshot cleanup,
    session-name lookup, and memory/device-key consumers.
    - Remove the lazy local state DB wrapper from the thread store so
    non-test consumers use only the supplied handle or their existing
    fallback path.
    - Make `codex_rollout::state_db::init` the local state startup path: it
    opens/migrates SQLite, runs rollout metadata backfill when needed, waits
    for concurrent backfill workers up to a bounded timeout, verifies
    completion, and then returns the initialized handle.
    - Keep optional/non-owning SQLite helpers, such as remote TUI local
    reads, as open-only paths that do not run startup backfill.
    - Switch app-server startup from direct
    `codex_state::StateRuntime::init` to the rollout state initializer so
    app-server cannot skip rollout backfill.
    - Collapse split rollout lookup/list APIs so callers use the normal
    methods with an optional state handle instead of `_with_state_db`
    variants.
    - Restore `getConversationSummary(ThreadId)` to delegate through
    `ThreadStore::read_thread` instead of a LocalThreadStore-specific
    rollout path special case.
    - Keep DB-backed rollout path lookup keyed on the DB row and file
    existence, without imposing the filesystem filename convention on
    existing DB rows.
    - Verify readable DB-backed rollout paths against `session_meta.id`
    before returning them, so a stale SQLite row that points at another
    thread's JSONL falls back to filesystem search and read-repairs the DB
    row.
    - Keep `debug prompt-input` filesystem-only so a one-off debug command
    does not initialize or backfill SQLite state just to print prompt input.
    - Keep goal-session test Codex homes alive only in the goal-specific
    helper, rather than leaking tempdirs from the shared session test
    helper.
    - Update tests and call sites to pass explicit state handles where DB
    behavior is expected and explicit `None` where filesystem-only behavior
    is intended.
    
    ## Validation
    
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo check -p
    codex-rollout -p codex-thread-store -p codex-app-server -p codex-core -p
    codex-tui -p codex-exec -p codex-cli --tests`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-rollout state_db_`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-rollout find_thread_path`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-rollout find_thread_path -- --nocapture`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-rollout try_init_ -- --nocapture`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-rollout`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo clippy -p
    codex-rollout --lib -- -D warnings`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-thread-store
    read_thread_falls_back_when_sqlite_path_points_to_another_thread --
    --nocapture`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-thread-store`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    shell_snapshot`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    --test all personality_migration`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    --test all rollout_list_find`
    - `RUST_MIN_STACK=8388608 CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    --test all rollout_list_find::find_prefers_sqlite_path_by_id --
    --nocapture`
    - `RUST_MIN_STACK=8388608 CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    --test all rollout_list_find -- --nocapture`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p codex-core
    interrupt_accounts_active_goal_before_pausing`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-app-server get_auth_status -- --test-threads=1`
    - `CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo test -p
    codex-app-server --lib`
    - `CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db cargo check -p codex-rollout
    -p codex-app-server --tests`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db just fix -p codex-rollout
    -p codex-thread-store -p codex-core -p codex-app-server -p codex-tui -p
    codex-exec -p codex-cli`
    - `CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db just fix -p codex-rollout -p
    codex-app-server`
    - `CARGO_TARGET_DIR=/tmp/codex-target-state-db just fix -p
    codex-rollout`
    - `CODEX_SKIP_VENDORED_BWRAP=1
    CARGO_TARGET_DIR=/tmp/codex-target-state-db just fix -p codex-core`
    - `just argument-comment-lint -p codex-core`
    - `just argument-comment-lint -p codex-rollout`
    
    Focused coverage added in `codex-rollout`:
    
    - `recorder::tests::state_db_init_backfills_before_returning` verifies
    the rollout metadata row exists before startup init returns.
    - `state_db::tests::try_init_waits_for_concurrent_startup_backfill`
    verifies startup waits for another worker to finish backfill instead of
    disabling the handle for the process.
    -
    `state_db::tests::try_init_times_out_waiting_for_stuck_startup_backfill`
    verifies startup does not hang indefinitely on a stuck backfill lease.
    -
    `tests::find_thread_path_accepts_existing_state_db_path_without_canonical_filename`
    verifies DB-backed lookup accepts valid existing rollout paths even when
    the filename does not include the thread UUID.
    -
    `tests::find_thread_path_falls_back_when_db_path_points_to_another_thread`
    verifies DB-backed lookup ignores a stale row whose existing path
    belongs to another thread and read-repairs the row after filesystem
    fallback.
    
    Focused coverage updated in `codex-core`:
    
    - `rollout_list_find::find_prefers_sqlite_path_by_id` now uses a
    DB-preferred rollout file with matching `session_meta.id`, so it still
    verifies that valid SQLite paths win without depending on stale/empty
    rollout contents.
    
    `cargo test -p codex-app-server thread_list_respects_search_term_filter
    -- --test-threads=1 --nocapture` was attempted locally but timed out
    waiting for the app-server test harness `initialize` response before
    reaching the changed thread-list code path.
    
    `bazel test //codex-rs/thread-store:thread-store-unit-tests
    --test_output=errors` was attempted locally after the thread-store fix,
    but this container failed before target analysis while fetching `v8+`
    through BuildBuddy/direct GitHub. The equivalent local crate coverage,
    including `cargo test -p codex-thread-store`, passes.
    
    A plain local `cargo check -p codex-rollout -p codex-app-server --tests`
    also requires system `libcap.pc` for `codex-linux-sandbox`; the
    follow-up app-server check above used `CODEX_SKIP_VENDORED_BWRAP=1` in
    this container.
  • Prepare selected environment plumbing (#20669)
    ## Why
    This is a prep PR in the multi-environment process-tool stack. It
    separates ownership/config cleanup from the behavior change that teaches
    process tools to route by selected environment, so the follow-up PR can
    focus on model-facing `environment_id` behavior.
    
    ## Stack
    1. https://github.com/openai/codex/pull/20646 - `EnvironmentContext`
    rendering for selected environments
    2. https://github.com/openai/codex/pull/20669 - selected-environment
    ownership and tool config prep (this PR)
    3. https://github.com/openai/codex/pull/20647 - process-tool
    `environment_id` routing
    
    ## What Changed
    - keep the resolved turn environment list wrapped in
    `ResolvedTurnEnvironments` through `TurnContext` instead of unwrapping
    it back to a raw `Vec`
    - add `TurnContext::resolve_path_against` so cwd-relative path
    resolution has one shared helper
    - replace the old tool config boolean with `ToolEnvironmentMode::{None,
    Single, Multiple}`
    
    ## Testing
    - Tests not run locally; this prep refactor is covered by GitHub CI for
    the stack.
    
    Co-authored-by: Codex <noreply@openai.com>
  • feat: add remote compaction v2 Responses client path (#20773)
    ## Why
    
    This adds the `remote_compaction_v2` client path so remote compaction
    can run through the normal Responses stream and install a
    `context_compaction` item that trigger a compaction.
    
    The goal is to migrate some of the compaction logic on the client side
    
    We keeps the v2 transport behind a feature flag while letting follow-up
    requests reuse the compacted context instead of falling back to the
    legacy compaction item shape.
    
    ## What changed
    
    - add `ResponseItem::ContextCompaction` and refresh the generated
    app-server / schema / TypeScript fixtures that expose response items on
    the wire
    - add `core/src/compact_remote_v2.rs` to send compaction through the
    standard streamed Responses client, require exactly one
    `context_compaction` output item, and install that item into compacted
    history
    - route manual compact and auto-compaction through the v2 path when
    `remote_compaction_v2` is enabled, while keeping the existing remote
    compaction path as the fallback
    - preserve the new item type across history retention, follow-up request
    construction, telemetry, rollout persistence, and rollout-trace
    normalization
    - add targeted coverage for the feature flag, `context_compaction`
    serialization, rollout-trace normalization, and remote-compaction
    follow-up behavior
    
    ## Verification
    
    - added protocol tests for `context_compaction`
    serialization/deserialization in `protocol/src/models.rs`
    - added rollout-trace coverage for `context_compaction` normalization in
    `rollout-trace/src/reducer/conversation_tests.rs`
    - added remote compaction integration coverage for v2 follow-up reuse
    and mixed compaction output streams in
    `core/tests/suite/compact_remote.rs`
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Surface multi-environment choices in environment context (#20646)
    ## Why
    The model needs a way to see which environments are available during a
    multi-environment turn without changing the legacy single-environment
    prompt surface or pulling replay/persistence changes into the same
    review.
    
    ## Stack
    1. https://github.com/openai/codex/pull/20646 - `EnvironmentContext`
    rendering for selected environments (this PR)
    2. https://github.com/openai/codex/pull/20669 - selected-environment
    ownership and tool config prep
    3. https://github.com/openai/codex/pull/20647 - process-tool
    `environment_id` routing
    
    ## What Changed
    - extend `environment_context` so multi-environment turns render an
    `<environments>` block with the selected environment ids and cwd values
    - keep zero- and single-environment turns on the existing cwd-only
    render path
    - keep replay and persistence paths on the legacy surface for now so
    this PR stays scoped to live prompt rendering
    - add focused coverage in
    `codex-rs/core/src/context/environment_context_tests.rs`
    
    ## Testing
    - CI
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Use selected turn environments for runtime context (#20281)
    ## Summary
    - make selected turn environments the source of truth for session
    runtime cwd and MCP runtime environment selection
    - keep local/no-selection fallback behavior intact
    - add coverage for duplicate selected environments, cwd resolution, and
    MCP runtime environment selection
    
    ## Validation
    - git diff --check
    - rustfmt was run on touched Rust files during the implementation
    workflow
    
    CI should provide the full Bazel/test signal.
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • feat: export and replay effective config locks (#20405)
    ## Why
    
    For reproducibility. A hand-written `config.toml` is not enough to
    recreate what a Codex session actually ran with because layered config,
    CLI overrides, defaults, feature aliases, resolved feature config,
    prompt setup, and model-catalog/session values can all affect the final
    runtime behavior.
    
    This PR adds an effective config lockfile path: one run can export the
    resolved session config, and a later run can replay that lockfile and
    fail early if the regenerated effective config drifts.
    
    ## What Changed
    
    - Add a dedicated `ConfigLockfileToml` wrapper with top-level lockfile
    metadata plus the replayable config:
    
      ```toml
      version = 1
      codex_version = "..."
    
      [config]
      # effective ConfigToml fields
      ```
    
    - Keep lockfile metadata out of regular `ConfigToml`; replay loads
    `ConfigLockfileToml` and then uses its nested `config` as the
    authoritative config layer.
    - Add `debug.config_lockfile.export_dir` to write
    `<thread_id>.config.lock.toml` when a root session starts.
    - Add `debug.config_lockfile.load_path` to replay a saved lockfile and
    validate the regenerated session lockfile against it.
    - Add `debug.config_lockfile.allow_codex_version_mismatch` to optionally
    tolerate Codex binary version drift while still comparing the rest of
    the lockfile.
    - Add `debug.config_lockfile.save_fields_resolved_from_model_catalog` so
    lock creation can either save model-catalog/session-resolved fields or
    intentionally leave those fields dynamic.
    - Build lockfiles from the effective config plus resolved runtime values
    such as model selection, reasoning settings, prompts, service tier, web
    search mode, feature states/config, memories config, skill instructions,
    and agent limits.
    - Materialize feature aliases and custom feature config into the
    lockfile so replay compares canonical resolved behavior instead of
    user-authored alias shape.
    - Strip profile/debug/file-include/environment-specific inputs from
    generated lockfiles so they contain replayable values rather than the
    inputs that produced those values.
    - Surface JSON-RPC server error code/data in app-server client and TUI
    bootstrap errors so config-lock replay failures include the actual TOML
    diff.
    - Regenerate the config schema for the new debug config keys.
    
    ## Review Notes
    
    The main flow is split across these files:
    
    - `config/src/config_toml.rs`: lockfile/debug TOML shapes.
    - `core/src/config/mod.rs`: loading `debug.config_lockfile.*`, replaying
    a lockfile as a config layer, and preserving the expected lockfile for
    validation.
    - `core/src/session/config_lock.rs`: exporting the current session
    lockfile and materializing resolved session/config values.
    - `core/src/config_lock.rs`: lockfile parsing, metadata/version checks,
    replay comparison, and diff formatting.
    
    ## Usage
    
    Export a lockfile from a normal session:
    
    ```sh
    codex -c 'debug.config_lockfile.export_dir="/tmp/codex-locks"'
    ```
    
    Export a lockfile without saving model-catalog/session-resolved fields:
    
    ```sh
    codex -c 'debug.config_lockfile.export_dir="/tmp/codex-locks"' \
      -c 'debug.config_lockfile.save_fields_resolved_from_model_catalog=false'
    ```
    
    Replay a saved lockfile in a later session:
    
    ```sh
    codex -c 'debug.config_lockfile.load_path="/tmp/codex-locks/<thread_id>.config.lock.toml"'
    ```
    
    If replay resolves to a different effective config, startup fails with a
    TOML diff.
    
    To tolerate Codex binary version drift during replay:
    
    ```sh
    codex -c 'debug.config_lockfile.load_path="/tmp/codex-locks/<thread_id>.config.lock.toml"' \
      -c 'debug.config_lockfile.allow_codex_version_mismatch=true'
    ```
    
    ## Limitations
    
    This does not support custom rules/network policies.
    
    ## Verification
    
    - `cargo test -p codex-core config_lock`
    - `cargo test -p codex-config`
    - `cargo test -p codex-thread-manager-sample`
  • Make thread store process-scoped (#19474)
    - Build one app-server process ThreadStore from startup config and share
    it with ThreadManager and CodexMessageProcessor.
    - Remove per-thread/fork store reconstruction so effective thread config
    cannot switch the persistence backend.
    - Add params to ThreadStore create/resume for specifying thread
    metadata, since otherwise the metadata from store creation would be used
    (incorrectly).
  • [codex] Remove unused event messages (#20511)
    ## Why
    
    Several legacy `EventMsg` variants were still emitted or mapped even
    though clients either ignored them or had moved to item/lifecycle
    events. `Op::Undo` had also degraded to an unavailable shim, so this
    removes that dead task path instead of preserving a command that cannot
    do useful work.
    
    `McpStartupComplete`, `WebSearchBegin`, and `ImageGenerationBegin` are
    intentionally kept because useful consumers still depend on them: MCP
    startup completion drives readiness behavior, and the begin events let
    app-server/core consumers surface in-progress web-search and
    image-generation items before the final payload arrives.
    
    ## What Changed
    
    - Removed weak legacy event variants and payloads from `codex-protocol`,
    including legacy agent deltas, background events, and undo lifecycle
    events.
    - Kept/restored `EventMsg::McpStartupComplete`,
    `EventMsg::WebSearchBegin`, and `EventMsg::ImageGenerationBegin` with
    serializer and emission coverage.
    - Updated core, rollout, MCP server, app-server thread history,
    review/delegate filtering, and tests to rely on the useful replacement
    events that remain.
    - Removed `Op::Undo`, `UndoTask`, the undo test module, and stale TUI
    slash-command comments.
    - Stopped agent job/background progress and compaction retry notices
    from emitting `BackgroundEvent` payloads.
    
    ## Verification
    
    - `cargo check -p codex-protocol -p codex-app-server-protocol -p
    codex-core -p codex-rollout -p codex-rollout-trace -p codex-mcp-server`
    - `cargo test -p codex-protocol -p codex-app-server-protocol -p
    codex-rollout -p codex-rollout-trace -p codex-mcp-server`
    - `cargo test -p codex-core --test all suite::items`
    - `just fix -p codex-protocol -p codex-app-server-protocol -p codex-core
    -p codex-rollout -p codex-rollout-trace -p codex-mcp-server`
    - Earlier coverage on this PR also included `codex-mcp`, `codex-tui`,
    core library tests, MCP/plugin/delegate/review/agent job tests, and MCP
    startup TUI tests.
  • Add persisted hook enablement state (#19840)
    ## Why
    
    After `hooks/list` exposes the hook inventory, clients need a way to
    persist user hook preferences, make those changes effective in
    already-open sessions, and distinguish user-controllable hooks from
    managed requirements without adding another bespoke app-server write
    API.
    
    ## What
    
    - Extends `hooks/list` entries with effective `enabled` state.
    - Persists user-level hook state under `hooks.state.<hook-id>` so the
    model can grow beyond a single boolean over time.
    - Uses the existing `config/batchWrite` path for hook state updates
    instead of introducing a dedicated hook write RPC.
    - Refreshes live session hook engines after config writes so
    already-open threads observe updated enablement without a restart.
    
    ## Stack
    
    1. openai/codex#19705
    2. openai/codex#19778
    3. This PR - openai/codex#19840
    4. openai/codex#19882
    
    ## Reviewer Notes
    
    The generated schema files account for much of the raw diff. The core
    behavior is in:
    
    - `hooks/src/config_rules.rs`, which resolves per-hook user state from
    the config layer stack.
    - `hooks/src/engine/discovery.rs`, which projects effective enablement
    into `hooks/list` from source-derived managedness.
    - `config/src/hook_config.rs`, which defines the new `hooks.state`
    representation.
    - `core/src/session/mod.rs`, which rebuilds live hook state after user
    config reloads.
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Make multi-agent v2 ignore agents.max_depth (#20180)
    ## Why
    
    `agents.max_depth` is a legacy multi-agent v1 guard. Multi-agent v2 uses
    task-path routing and its own session/thread limits, so v2 should not
    reject nested `spawn_agent` calls just because the thread-spawn depth
    has reached the v1 maximum.
    
    Keeping the v1 depth guard active in v2 prevents deeper task trees even
    though the v2 path still needs the depth value only for lineage and
    task-path metadata.
    
    ## What Changed
    
    - Removed the depth-limit rejection from the multi-agent v2
    `spawn_agent` handler while still computing child depth for lineage/path
    metadata.
    - Made the depth-based disabling of legacy `SpawnCsv`/`Collab` tools
    apply only when `Feature::MultiAgentV2` is disabled.
    - Added `multi_agent_v2_spawn_agent_ignores_configured_max_depth` to
    cover a v2 child spawning another agent when `agent_max_depth = 1`,
    while the existing v1 depth-limit tests continue to enforce the legacy
    behavior.
    
    ## Verification
    
    - `cargo test -p codex-core
    multi_agent_v2_spawn_agent_ignores_configured_max_depth -- --nocapture`
    - `cargo test -p codex-core depth_limit -- --nocapture`
    - `cargo test -p codex-core tools::handlers::multi_agents::tests --
    --nocapture`
  • Support disabling tool suggest for specific tools. (#20072)
    ## Summary
    - Add `disable_tool_suggest` to app and plugin config, schema, and
    TypeScript output
    - Exclude disabled connectors and plugins from tool suggestion discovery
    - Persist "never show again" tool-suggestion choices back into
    `config.toml`
    - Update config docs and add coverage for connector and plugin
    suppression
    
    ## Testing
    - Added and updated unit tests for config persistence and tool-suggest
    filtering
    - Not run (not requested)
  • feat: split memories part 2 (#19860)
    Keep extracting memories out of core and moving the write trigger in the
    app-server
    This is temporary and it should move at the client level as a follow-up
    This makes core fully independant from `codex-memories-write`
    
    ---------
    
    Co-authored-by: Codex <noreply@openai.com>
  • Add MultiAgentV2 root and subagent context hints (#19805)
    ## Why
    
    MultiAgentV2 sessions need startup guidance that matches the role of the
    thread that is actually being created. Root agents and subagents have
    different responsibilities, and forked subagents can inherit parent
    rollout history. If the parent hint is carried into the child context,
    the child can see stale or conflicting developer guidance before its own
    session-specific context is added.
    
    ## What changed
    
    - Added `features.multi_agent_v2.root_agent_usage_hint_text` and
    `features.multi_agent_v2.subagent_usage_hint_text` config fields,
    including schema/config parsing support.
    - Injected the matching root or subagent hint into the initial context
    as its own developer message when `multi_agent_v2` is enabled.
    - Filtered configured MultiAgentV2 usage-hint developer messages out of
    forked parent history so a child thread receives fresh guidance for its
    own session source/config.
    - Added targeted coverage for config parsing, initial-context rendering,
    feature-config deserialization, and forked-history filtering.
    
    ## Context examples
    
    With this config:
    
    ```toml
    [features.multi_agent_v2]
    enabled = true
    root_agent_usage_hint_text = "Root guidance."
    subagent_usage_hint_text = "Subagent guidance."
    ```
    
    A root thread initial context renders the root hint as a standalone
    developer message:
    
    ```text
    [developer]
    <existing developer context, when present>
    
    [developer]
    Root guidance.
    ```
    
    A subagent thread initial context renders the subagent hint instead:
    
    ```text
    [developer]
    <existing developer context, when present>
    
    [developer]
    Subagent guidance.
    ```
    
    When a subagent forks parent history, any parent developer message whose
    text exactly matches the configured MultiAgentV2 root or subagent hint
    is omitted from the forked history before the child receives its fresh
    subagent hint.
  • Remove ghost snapshots (#19481)
    ## Summary
    - Remove `ghost_snapshot` / `GhostCommit` from the Responses API surface
    and generated SDK/schema artifacts.
    - Keep legacy config loading compatible, but make undo a no-op that
    reports the feature is unavailable.
    - Clean up core history, compaction, telemetry, rollout, and tests to
    stop carrying ghost snapshot items.
    
    ## Testing
    - Unit tests passed for `codex-protocol`, `codex-core` targeted undo and
    compaction flows, `codex-rollout`, and `codex-app-server-protocol`.
    - Regenerated config and app-server schemas plus Python SDK artifacts
    and verified they match the checked-in outputs.
  • chore: split memories part 1 (#19818)
    Extract memories into 2 different crates
  • permissions: migrate approval and sandbox consumers to profiles (#19393)
    ## Why
    
    Runtime decisions should not infer permissions from the lossy legacy
    sandbox projection once `PermissionProfile` is available. In particular,
    `Disabled` and `External` need to remain distinct, and managed profiles
    with split filesystem or deny-read rules should not be collapsed before
    approval, network, safety, or analytics code makes decisions.
    
    ## What Changed
    
    - Changes managed network proxy setup and network approval logic to use
    `PermissionProfile` when deciding whether a managed sandbox is active.
    - Migrates patch safety, Guardian/user-shell approval paths, Landlock
    helper setup, analytics sandbox classification, and selected
    turn/session code to profile-backed permissions.
    - Validates command-level profile overrides against the constrained
    `PermissionProfile` rather than a strict `SandboxPolicy` round trip.
    - Preserves configured deny-read restrictions when command profiles are
    narrowed.
    - Adds coverage for profile-backed trust, network proxy/approval
    behavior, patch safety, analytics classification, and command-profile
    narrowing.
    
    ## Verification
    
    - `cargo test -p codex-core direct_write_roots`
    - `cargo test -p codex-core runtime_roots_to_legacy_projection`
    - `cargo test -p codex-app-server
    requested_permissions_trust_project_uses_permission_profile_intent`
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    ---
    [//]: # (BEGIN SAPLING FOOTER)
    Stack created with [Sapling](https://sapling-scm.com). Best reviewed
    with [ReviewStack](https://reviewstack.dev/openai/codex/pull/19393).
    * #19395
    * #19394
    * __->__ #19393
  • [codex] Move config loading into codex-config (#19487)
    ## Why
    
    Config loading had become split across crates: `codex-config` owned the
    config types and merge logic, while `codex-core` still owned the loader
    that assembled the layer stack. This change consolidates that
    responsibility in `codex-config`, so the crate that defines config
    behavior also owns how configs are discovered and loaded.
    
    To make that move possible without reintroducing the old dependency
    cycle, the shell-environment policy types and helpers that
    `codex-exec-server` needs now live in `codex-protocol` instead of
    flowing through `codex-config`.
    
    This also makes the migrated loader tests more deterministic on machines
    that already have managed or system Codex config installed by letting
    tests override the system config and requirements paths instead of
    reading the host's `/etc/codex`.
    
    ## What Changed
    
    - moved the config loader implementation from `codex-core` into
    `codex-config::loader` and deleted the old `core::config_loader` module
    instead of leaving a compatibility shim
    - moved shell-environment policy types and helpers into
    `codex-protocol`, then updated `codex-exec-server` and other downstream
    crates to import them from their new home
    - updated downstream callers to use loader/config APIs from
    `codex-config`
    - added test-only loader overrides for system config and requirements
    paths so loader-focused tests do not depend on host-managed config state
    - cleaned up now-unused dependency entries and platform-specific cfgs
    that were surfaced by post-push CI
    
    ## Testing
    
    - `cargo test -p codex-config`
    - `cargo test -p codex-core config_loader_tests::`
    - `cargo test -p codex-protocol -p codex-exec-server -p
    codex-cloud-requirements -p codex-rmcp-client --lib`
    - `cargo test --lib -p codex-app-server-client -p codex-exec`
    - `cargo test --no-run --lib -p codex-app-server`
    - `cargo test -p codex-linux-sandbox --lib`
    - `cargo shear`
    - `just bazel-lock-check`
    
    ## Notes
    
    - I did not chase unrelated full-suite failures outside the migrated
    loader surface.
    - `cargo test -p codex-core --lib` still hits unrelated proxy-sensitive
    failures on this machine, and Windows CI still shows unrelated
    long-running/timeouting test noise outside the loader migration itself.
  • permissions: derive compatibility policies from profiles (#19392)
    ## Why
    
    After #19391, `PermissionProfile` and the split filesystem/network
    policies could still be stored in parallel. That creates drift risk: a
    profile can preserve deny globs, external enforcement, or split
    filesystem entries while a cached projection silently loses those
    details. This PR makes the profile the runtime source and derives
    compatibility views from it.
    
    ## What Changed
    
    - Removes stored filesystem/network sandbox projections from
    `Permissions` and `SessionConfiguration`; their accessors now derive
    from the canonical `PermissionProfile`.
    - Derives legacy `SandboxPolicy` snapshots from profiles only where an
    older API still needs that field.
    - Updates MCP connection and elicitation state to track
    `PermissionProfile` instead of `SandboxPolicy` for auto-approval
    decisions.
    - Adds semantic filesystem-policy comparison so cwd changes can preserve
    richer profiles while still recognizing equivalent legacy projections
    independent of entry ordering.
    - Updates config/session tests to assert profile-derived projections
    instead of parallel stored fields.
    
    ## Verification
    
    - `cargo test -p codex-core direct_write_roots`
    - `cargo test -p codex-core runtime_roots_to_legacy_projection`
    - `cargo test -p codex-app-server
    requested_permissions_trust_project_uses_permission_profile_intent`
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    
    ---
    [//]: # (BEGIN SAPLING FOOTER)
    Stack created with [Sapling](https://sapling-scm.com). Best reviewed
    with [ReviewStack](https://reviewstack.dev/openai/codex/pull/19392).
    * #19395
    * #19394
    * #19393
    * __->__ #19392
  • permissions: make runtime config profile-backed (#19606)
    ## Why
    
    This supersedes #19391. During stack repair, GitHub marked #19391 as
    merged into a temporary stack branch rather than into `main`, so the
    runtime-config change needed a fresh PR.
    
    `PermissionProfile` is now the canonical permissions shape after #19231
    because it can distinguish `Managed`, `Disabled`, and `External`
    enforcement while also carrying filesystem rules that legacy
    `SandboxPolicy` cannot represent cleanly. Core config and session state
    still needed to accept profile-backed permissions without forcing every
    profile through the strict legacy bridge, which rejected valid runtime
    profiles such as direct write roots.
    
    The unrelated CI/test hardening that previously rode along with this PR
    has been split into #19683 so this PR stays focused on the permissions
    model migration.
    
    ## What Changed
    
    - Adds `Permissions.permission_profile` and
    `SessionConfiguration.permission_profile` as constrained runtime state,
    while keeping `sandbox_policy` as a legacy compatibility projection.
    - Introduces profile setters that keep `PermissionProfile`, split
    filesystem/network policies, and legacy `SandboxPolicy` projections
    synchronized.
    - Uses a compatibility projection for requirement checks and legacy
    consumers instead of rejecting profiles that cannot round-trip through
    `SandboxPolicy` exactly.
    - Updates config loading, config overrides, session updates, turn
    context plumbing, prompt permission text, sandbox tags, and exec request
    construction to carry profile-backed runtime permissions.
    - Preserves configured deny-read entries and `glob_scan_max_depth` when
    command/session profiles are narrowed.
    - Adds `PermissionProfile::read_only()` and
    `PermissionProfile::workspace_write()` presets that match legacy
    defaults.
    
    ## Verification
    
    - `cargo test -p codex-core direct_write_roots`
    - `cargo test -p codex-core runtime_roots_to_legacy_projection`
    - `cargo test -p codex-app-server
    requested_permissions_trust_project_uses_permission_profile_intent`
    
    
    
    
    ---
    [//]: # (BEGIN SAPLING FOOTER)
    Stack created with [Sapling](https://sapling-scm.com). Best reviewed
    with [ReviewStack](https://reviewstack.dev/openai/codex/pull/19606).
    * #19395
    * #19394
    * #19393
    * #19392
    * __->__ #19606
  • Add goal core runtime (4 / 5) (#18076)
    Adds the core runtime behavior for active goals on top of the model
    tools from PR 3.
    
    ## Why
    
    A long-running goal should be a core runtime concern, not something
    every client has to implement. Core owns the turn lifecycle, tool
    completion boundaries, interruptions, resume behavior, and token usage,
    so it is the right place to account progress, enforce budgets, and
    decide when to continue work.
    
    ## What changed
    
    - Centralized goal lifecycle side effects behind
    `Session::goal_runtime_apply(GoalRuntimeEvent::...)`.
    - Starts goal continuation turns only when the session is idle; pending
    user input and mailbox work take priority.
    - Accounts token and wall-clock usage at turn, tool, mutation,
    interrupt, and resume boundaries; `get_thread_goal` remains read-only.
    - Preserves sub-second wall-clock remainder across accounting boundaries
    so long-running goals do not drift downward over time.
    - Treats token budget exhaustion as a soft stop by marking the goal
    `budget_limited` and injecting wrap-up steering instead of aborting the
    active turn.
    - Suppresses budget steering when `update_goal` marks a goal complete.
    - Pauses active goals on interrupt and auto-reactivates paused goals
    when a thread resumes outside plan mode.
    - Suppresses repeated automatic continuation when a continuation turn
    makes no tool calls.
    - Added continuation and budget-limit prompt templates.
    
    ## Verification
    
    - Added focused core coverage for continuation scheduling, accounting
    boundaries, budget-limit steering, completion accounting, interrupt
    pause behavior, resume auto-activation, and wall-clock remainder
    accounting.
  • feat: Compress skill paths with root aliases (#19098)
    Add skill root tracking so model-visible skill lists can use short path
    aliases when absolute paths would exceed the metadata budget.
  • permissions: make profiles represent enforcement (#19231)
    ## Why
    
    `PermissionProfile` is becoming the canonical permissions abstraction,
    but the old shape only carried optional filesystem and network fields.
    It could describe allowed access, but not who is responsible for
    enforcing it. That made `DangerFullAccess` and `ExternalSandbox` lossy
    when profiles were exported, cached, or round-tripped through app-server
    APIs.
    
    The important model change is that active permissions are now a disjoint
    union over the enforcement mode. Conceptually:
    
    ```rust
    pub enum PermissionProfile {
        Managed {
            file_system: FileSystemSandboxPolicy,
            network: NetworkSandboxPolicy,
        },
        Disabled,
        External {
            network: NetworkSandboxPolicy,
        },
    }
    ```
    
    This distinction matters because `Disabled` means Codex should apply no
    outer sandbox at all, while `External` means filesystem isolation is
    owned by an outside caller. Those are not equivalent to a broad managed
    sandbox. For example, macOS cannot nest Seatbelt inside Seatbelt, so an
    inner sandbox may require the outer Codex layer to use no sandbox rather
    than a permissive one.
    
    ## How Existing Modeling Maps
    
    Legacy `SandboxPolicy` remains a boundary projection, but it now maps
    into the higher-fidelity profile model:
    
    - `ReadOnly` and `WorkspaceWrite` map to `PermissionProfile::Managed`
    with restricted filesystem entries plus the corresponding network
    policy.
    - `DangerFullAccess` maps to `PermissionProfile::Disabled`, preserving
    the “no outer sandbox” intent instead of treating it as a lax managed
    sandbox.
    - `ExternalSandbox { network_access }` maps to
    `PermissionProfile::External { network }`, preserving external
    filesystem enforcement while still carrying the active network policy.
    - Split runtime policies that legacy `SandboxPolicy` cannot faithfully
    express, such as managed unrestricted filesystem plus restricted
    network, stay `Managed` instead of being collapsed into
    `ExternalSandbox`.
    - Per-command/session/turn grants remain partial overlays via
    `AdditionalPermissionProfile`; full `PermissionProfile` is reserved for
    complete active runtime permissions.
    
    ## What Changed
    
    - Change active `PermissionProfile` into a tagged union: `managed`,
    `disabled`, and `external`.
    - Keep partial permission grants separate with
    `AdditionalPermissionProfile` for command/session/turn overlays.
    - Represent managed filesystem permissions as either `restricted`
    entries or `unrestricted`; `glob_scan_max_depth` is non-zero when
    present.
    - Preserve old rollout compatibility by accepting the pre-tagged `{
    network, file_system }` profile shape during deserialization.
    - Preserve fidelity for important edge cases: `DangerFullAccess`
    round-trips as `disabled`, `ExternalSandbox` round-trips as `external`,
    and managed unrestricted filesystem + restricted network stays managed
    instead of being mistaken for external enforcement.
    - Preserve configured deny-read entries and bounded glob scan depth when
    full profiles are projected back into runtime policies, including
    unrestricted replacements that now become `:root = write` plus deny
    entries.
    - Regenerate the experimental app-server v2 JSON/TypeScript schema and
    update the `command/exec` README example for the tagged
    `permissionProfile` shape.
    
    ## Compatibility
    
    Legacy `SandboxPolicy` remains available at config/API boundaries as the
    compatibility projection. Existing rollout lines with the old
    `PermissionProfile` shape continue to load. The app-server
    `permissionProfile` field is experimental, so its v2 wire shape is
    intentionally updated to match the higher-fidelity model.
    
    ## Verification
    
    - `just write-app-server-schema`
    - `cargo check --tests`
    - `cargo test -p codex-protocol permission_profile`
    - `cargo test -p codex-protocol
    preserving_deny_entries_keeps_unrestricted_policy_enforceable`
    - `cargo test -p codex-app-server-protocol
    permission_profile_file_system_permissions`
    - `cargo test -p codex-app-server-protocol serialize_client_response`
    - `cargo test -p codex-core
    session_configured_reports_permission_profile_for_external_sandbox`
    - `just fix`
    - `just fix -p codex-protocol`
    - `just fix -p codex-app-server-protocol`
    - `just fix -p codex-core`
    - `just fix -p codex-app-server`
  • feat: let model providers own model discovery (#18950)
    ## Why
    
    `codex-models-manager` had grown to own provider-specific concerns:
    constructing OpenAI-compatible `/models` requests, resolving provider
    auth, emitting request telemetry, and deciding how provider catalogs
    should be sourced. That made the manager harder to reuse for providers
    whose model catalog is not fetched from the OpenAI `/models` endpoint,
    such as Amazon Bedrock.
    
    This change moves provider-specific model discovery behind
    provider-owned implementations, so the models manager can focus on
    refresh policy, cache behavior, picker ordering, and model metadata
    merging.
    
    ## What Changed
    
    - Introduced a `ModelsManager` trait with separate `OpenAiModelsManager`
    and `StaticModelsManager` implementations.
    - Added `ModelsEndpointClient` so OpenAI-compatible HTTP fetching lives
    outside `codex-models-manager`.
    - Moved `/models` request construction, provider auth resolution,
    timeout handling, and request telemetry into `codex-model-provider` via
    `OpenAiModelsEndpoint`.
    - Added provider-owned `models_manager(...)` construction so configured
    OpenAI-compatible providers use `OpenAiModelsManager`, while
    static/catalog-backed providers can return `StaticModelsManager`.
    - Added an Amazon Bedrock static model catalog for the GPT OSS Bedrock
    model IDs.
    - Updated core/session/thread manager code and tests to depend on
    `Arc<dyn ModelsManager>`.
    - Moved offline model test helpers into
    `codex_models_manager::test_support`.
    ## Metadata References
    
    The Bedrock catalog metadata is based on the official Amazon Bedrock
    OpenAI model documentation:
    
    - [Amazon Bedrock OpenAI
    models](https://docs.aws.amazon.com/bedrock/latest/userguide/model-parameters-openai.html)
    lists the Bedrock model IDs, text input/output modalities, and `128,000`
    token context window for `gpt-oss-20b` and `gpt-oss-120b`.
    - [Amazon Bedrock `gpt-oss-120b` model
    card](https://docs.aws.amazon.com/bedrock/latest/userguide/model-card-openai-gpt-oss-120b.html)
    lists the `bedrock-runtime` model ID `openai.gpt-oss-120b-1:0`, the
    `bedrock-mantle` model ID `openai.gpt-oss-120b`, text-only modalities,
    and `128K` context window.
    - [OpenAI `gpt-oss-120b` model
    docs](https://developers.openai.com/api/docs/models/gpt-oss-120b)
    document configurable reasoning effort with `low`, `medium`, and `high`,
    plus text input/output modality.
    
    The display names, default reasoning effort, and priority ordering are
    Codex-local catalog choices.
    
    ## Test Plan
    - Manually verified app-server model listing with an AWS profile:
    
    ```shell
    CODEX_HOME="$(mktemp -d)" cargo run -p codex-app-server-test-client -- \
      --codex-bin ./target/debug/codex \
      -c 'model_provider="amazon-bedrock"' \
      -c 'model_providers.amazon-bedrock.aws.profile="codex-bedrock"' \
      -c 'model_providers.amazon-bedrock.aws.region="us-west-2"' \
      model-list
    ```
    
    The response returned the Bedrock catalog with `openai.gpt-oss-120b-1:0`
    as the default model and `openai.gpt-oss-20b-1:0` as the second listed
    model, both text-only and supporting low/medium/high reasoning effort.