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Add per-turn multi-agent mode (#28685)
## Why Multi-agent v2 currently carries an explicit-request-only delegation rule in its static usage hint. That provides a safe default, but it prevents clients from selecting proactive delegation per turn without changing static guidance or rewriting prior model context. This change makes delegation mode a session selection that can be updated through `turn/start`, while deriving the effective model-visible mode separately for each turn. Eligible multi-agent v2 turns remain explicit-request-only unless proactive mode is both selected and enabled. ## What changed - Add the experimental `turn/start.multiAgentMode` parameter with `explicitRequestOnly` and `proactive` values. Omission retains the loaded session's current optional selection. - Add the default-off `features.multi_agent_mode` feature gate. Eligible multi-agent v2 turns use the selected mode when enabled; an unset selection or disabled gate resolves to `explicitRequestOnly`. - Treat mode prompting as inapplicable for multi-agent v1 and other unsupported session configurations, producing no multi-agent mode developer message rather than rejecting the turn. - Move the explicit-request-only rule out of the static v2 usage hint and into a bounded, tagged developer context fragment. - Emit the effective mode in initial context and only when that effective mode changes on later turns. - Persist the effective mode in `TurnContextItem` as the durable baseline for resume and context-update comparisons. Historical rollout items are not rewritten. Later mode developer messages establish the current rule incrementally. ## Not covered - Initial selection through `thread/start` and selected-mode reporting from thread lifecycle/settings APIs; those are isolated in the stacked #28792. - A TUI control or slash command for selecting the mode. - Persisting a preferred mode to `config.toml`; selection remains session/turn scoped. - Changes to multi-agent concurrency limits, tool availability, or model catalog capability declarations. - Rewriting historical rollout prompt items. Cold resume restores the latest persisted effective mode when available while leaving historical developer messages intact. ## Verification - `CARGO_INCREMENTAL=0 just test -p codex-core multi_agent_mode` - Focused app-server coverage verifies that `turn/start.multiAgentMode` produces proactive developer instructions for an eligible v2 turn. ## Stack Followed by #28792, which adds `thread/start` initialization and lifecycle/settings observability.
Shijie Rao ·
2026-06-18 22:47:51 -07:00 -
[2/3] core: track starting environments in snapshots (#28683)
## Why Remote environments may still be resolving when Codex creates a session or turn. Waiting for the existing all-or-nothing environment snapshot can hold startup until the selected environment is usable. Behind the default-off `deferred_executor` feature, let callers take a useful snapshot immediately: completed environments remain available normally, while unfinished environments are reported without blocking startup. With the feature disabled, snapshots preserve the existing blocking behavior. Depends on #28674. ## What changed - Store one ordered list of selected environments in `ThreadEnvironments`. Each selection owns one shared resolution that produces its complete `TurnEnvironment`. - Start new resolutions in the background with `remote_handle()`, allowing snapshots and the future wait tool to share the same result while cancellation follows the retained handles. - Make `snapshot()` a read-only operation: nonblocking snapshots collect completed resolutions and retain handles for unfinished ones, while blocking snapshots await every resolution. - Replace completed failed resolutions from the current manager entry and log when failed environments are omitted. - Return attached and starting environments as a point-in-time view, and count starting environments when deciding whether a snapshot is local-only. - Keep existing consumers attached-only. `to_selections()` derives from attached environments, so child threads do not inherit an environment that is still starting. ## Test plan - `just test -p codex-core environment_selection` - `just test -p codex-core deferred_executor_reaches_model_before_remote_environment_is_ready` ## Landing note Keep `deferred_executor` disabled for slow-starting executors until configurable `environment/add` connection timeouts and caller support land. When enabled, an environment that attaches after session startup may remain absent from environment-derived model context, tools, instructions, skills, and related state until follow-up refresh work lands.
sayan-oai ·
2026-06-19 05:06:34 +00:00 -
[codex] Assign response item IDs when recording history (#28814)
## Why Client-created response items enter history without IDs, so their identity is lost across rollout persistence and resume. IDs should be assigned once at the history-recording boundary, while IDs returned by the server must remain unchanged. The Responses API validates item IDs using type-specific prefixes. Locally generated IDs therefore use the matching prefix plus a hyphenated UUIDv7, keeping them valid while distinguishable from server-generated IDs. Because this changes persisted history and provider request shapes, the behavior is opt-in behind the under-development `item_ids` feature. Compaction triggers remain request controls whose API shape does not accept an ID. ## What changed - Register the disabled-by-default `item_ids` feature and expose it in `config.schema.json`. - Make supported optional `ResponseItem` IDs serializable and expose them in the generated app-server schemas. - When `item_ids` is enabled, assign an ID during conversation-history preparation if an item has no ID. - Generate type-prefixed, hyphenated UUIDv7 IDs using the Responses API item conventions. - Preserve existing server IDs without rewriting them. - Persist assigned IDs in rollouts and include them in subsequent Responses requests. - Remove the unsupported ID field from `CompactionTrigger` and document why it has no ID. - Add integration coverage for enabled ID persistence, preservation of server IDs, and omission of generated IDs while the feature is disabled. `prepare_conversation_items_for_history` is the single response-item ID allocation boundary. ## Test plan - `just test -p codex-features` - `just test -p codex-core response_item_ids_persist_across_resume_and_preserve_server_ids` - `just test -p codex-core non_openai_responses_requests_omit_item_turn_metadata` - `just test -p codex-core resize_all_images_prepares_failures_before_history_insertion` - `just test -p codex-protocol` - `just test -p codex-app-server-protocol` - `just test -p codex-api azure_default_store_attaches_ids_and_headers`
pakrym-oai ·
2026-06-18 17:30:55 -07:00 -
[codex] Reuse parsed plugin skills during session startup (#28844)
## Summary - Preserve raw plugin skill-root snapshots in the matching loaded-plugin cache entry, keyed by the effective plugin root identity including namespace. - Pass those snapshots through `SkillsLoadInput` as an optional preload, so session startup reuses plugin parsing while ordinary skill loads pass `None`. - Keep plugin skill loading cohesive: the existing loaders accept the optional snapshots directly, and uncached or marketplace-detail paths do not create a cache. ## Why Plugin discovery already parses plugin skills to determine available capabilities. Cold session startup then scanned and parsed the same roots again while building the skills snapshot. This solves the same duplicate-work problem as #28623 while keeping ownership narrow: `PluginsManager` creates and owns `PluginSkillSnapshots` only for its loaded-plugin cache entry; `SkillsService` consumes an optional clone. Entry replacement or clearing naturally drops the snapshots, with no separate generation, capacity policy, or watcher coupling. ## Validation - `cargo clippy -p codex-core-skills --all-targets -- -D warnings` - `just test -p codex-core-plugins skills_service_reuses_skills_parsed_during_plugin_load` - `just test -p codex-core-skills namespaces_plugin_skills_using_provided_namespace` - `just fmt`
xl-openai ·
2026-06-18 16:45:58 -07:00 -
current time reminders impl for system clock (varlatency 2/n) (#28824)
Stacked on #28822. ## Summary - add a host-injectable current-time provider with a built-in system implementation - record UTC developer reminders in history immediately before due model requests - keep cadence state per session and force a refresh after compaction This does NOT include the app server client <-> server clock logic. This PR is only for the reminder message & system clock that will be used in prod. ## Testing - `just test -p codex-core varlatency_` - `just clippy -p codex-core -p codex-app-server -p codex-mcp-server -p codex-thread-manager-sample` - `just fmt`
rka-oai ·
2026-06-18 19:18:42 +00:00 -
Support
openai/formextended form elicitations (#27500)# Summary Allow App Server clients to opt into `openai/form` MCP elicitations.
Gabriel Peal ·
2026-06-18 11:54:49 -07:00 -
Replace SkillsManager with SkillsService (#28705)
## Why Host skill discovery was still exposed as a manager even though it is a process-owned service shared by sessions, the app-server catalog, and file-watcher invalidation. The skills extension also consumed an ad hoc loaded-skills wrapper instead of a named immutable snapshot. ## What changed - replace `SkillsManager` with concrete `SkillsService` - make the service cache and return immutable `HostSkillsSnapshot` values - migrate the skills extension host provider to the snapshot boundary - migrate app-server catalog, watcher, and invalidation paths to the service This keeps the service limited to host discovery, caching, roots, and invalidation. Catalog rendering and invocation remain extension responsibilities for the next stacked change.
jif ·
2026-06-17 17:01:06 +02:00 -
app-server: preserve target-native environment cwd (#28146)
## Why app-server may run on a different OS from the selected exec-server environment. Parsing that environment’s cwd with the Codex host’s path rules prevents thread startup. ## What Carry environment cwd values as `LegacyAppPathString` at the app-server boundary and `PathUri` internally. Existing tool-call schemas and relative-path behavior stay host-native; remaining local-only consumers convert explicitly and leave follow-up TODOs. The Wine integration test verifies app-server can start a thread and complete an ordinary turn with a Windows environment cwd from Linux. ## Validation - `bazel test //codex-rs/core/tests/remote_env_windows:smoke-test --test_output=errors` - focused app-server environment-selection and protocol schema tests - scoped Clippy for `codex-core` and `codex-app-server-protocol`
Adam Perry @ OpenAI ·
2026-06-16 21:42:28 +00:00 -
[codex] Use local environment for user shell commands (#28163)
## Why User shell commands still read the legacy turn cwd and session shell even though execution context is now owned by selected turn environments. App-server also defines `thread/shellCommand` as a local-host escape hatch, so it must use an available local environment even when a remote environment is primary. ## What changed - Add `ResolvedTurnEnvironments::local()` to find the selected local environment. - Resolve the user shell command cwd and shell from that local `TurnEnvironment`. - Emit the standard `shell is unavailable in this session` error when no selected local environment or resolved local shell is available. - Add an integration test covering `/shell` without a local environment. ## Test plan - `just test -p codex-core user_shell_command_without_local_environment_emits_error`
pakrym-oai ·
2026-06-16 04:55:20 +00:00 -
[codex] Bind shell snapshots to retained thread environments (#28421)
## Why Shell snapshots are currently session-scoped even though shell and cwd are properties of a selected turn environment. That makes snapshot refresh depend on separate session-cwd plumbing, prevents retained environments from retaining their snapshot work, and can make snapshot construction use a different shell than command execution. This follows #27955 by making the retained thread-environment service own environment snapshot lifecycles. Session configuration remains the requested selection state, while `ThreadEnvironments` remains the source of successfully resolved environments. ## What changed - Configure the shell-snapshot builder before initial environment resolution. - Start each local environment snapshot task when its `TurnEnvironment` is built and retain that shared task while environment ID and cwd still match. - Inherit retained environment snapshots into spawned child threads. - Carry the selected `TurnEnvironment` through shell runtimes so snapshot construction and command execution use the same environment-specific shell and cwd. - Load project instructions and warm plugins/skills after initial environment resolution. - Continue decoding invalid UTF-8 instruction files lossily without emitting a startup warning. - Keep requested selections in `SessionConfiguration`; failed or duplicate resolutions only affect the resolved environment snapshot. ## Validation - `cargo check -p codex-core --tests` - `just test -p codex-home instructions` (6 passed) - Focused environment, instruction, shell-snapshot, and user-shell tests (84 passed) - Focused shell-snapshot, user-shell, and unified-exec tests (126 passed; two event-timing tests passed on retry)
pakrym-oai ·
2026-06-15 20:10:53 -07:00 -
[codex] retain resolved environments across turns (#27955)
## Why Selected execution environments are thread-scoped resources, but startup and turn construction repeatedly resolved their IDs and working directories. That discarded existing environment handles and shell metadata even when a selection had not changed. Session configuration updates also need to affect future turns without changing the resolved environment set already captured by a running turn. ## What changed - Create a `ThreadEnvironments` service inside `Codex` from the spawned `EnvironmentManager` and raw environment selections, then store it on `SessionServices`. - Split service construction from `update_selections`, allowing session configuration updates to mutate the resolved set in place. - Retain an existing `TurnEnvironment` when its environment ID and working directory match; resolve only added or changed selections and remove selections that are no longer present. - Normalize duplicate IDs by keeping the first selection and skip individual selections that fail to resolve instead of rejecting the entire update. - Give each `TurnContext` a cloned `TurnEnvironmentSnapshot`, so later session configuration updates affect future turns without rewriting an active turn. - Reuse the service-owned environment manager and resolved snapshot for startup work, MCP initialization, and child-thread spawning instead of flowing resolved environments through spawn arguments. ## Test plan - `cargo check -p codex-core --tests` - `just test -p codex-core environment_selection` - `just test -p codex-core turn_environments` - `just test -p codex-core session_update_settings_does_not_rewrite_sticky_environment_cwds` - `just test -p codex-core default_turn_does_not_overlay_legacy_fallback_cwd_onto_stored_thread_environments`
pakrym-oai ·
2026-06-15 16:15:07 -07:00 -
core: cache the tool search handler per session (#27258)
## Why Tool router construction rebuilds the deferred-tool BM25 index during session initialization and before each sampling continuation, even when the searchable tool metadata is unchanged. Local profiling measured `append_tool_search_executor` at roughly 113 ms per continuation, making repeated index construction the largest measured router-building cost. ## What changed - Add a session-scoped `ToolSearchHandlerCache` so continuations and user turns can reuse the existing handler. - Key reuse on the complete ordered `Vec<ToolSearchInfo>`, rebuilding when searchable text, loadable tool specs, source metadata, or ordering changes. - Build handlers outside the cache lock and recheck before publishing them, avoiding holding the mutex during index construction. ## Verification - `cache_reuses_identical_search_infos_and_rebuilds_changed_inputs` covers exact cache reuse and invalidation when the ordered search metadata changes. - Local rollout profiling showed the initial router build populating the cache and unchanged later continuations reusing it: - uncached: 118 ms median across 14 spans from 3 rollouts - cached: 4 ms median across 12 spans from 3 rollouts
mchen-oai ·
2026-06-15 14:48:30 -07:00 -
[codex] simplify shell snapshot ownership (#27756)
## Why Shell snapshot lifecycle state was split between `Shell` and `SessionServices`: `Shell` carried the receiver while session code exposed and forwarded the raw sender. That coupled shell identity to mutable snapshot state and made refresh, inheritance, and file lifetime harder to reason about. ## What changed - make each `Arc<ShellSnapshot>` represent one cwd-specific snapshot generation - store the active generation in `SessionServices` with `ArcSwapOption` - have construction start the background build and expose only a cwd-validated snapshot path - use `ShellSnapshotFile` ownership to delete snapshot files automatically - pass snapshot paths explicitly to shell runtimes instead of storing snapshot state on `Shell` - preserve inherited and in-flight generations by pinning their `Arc` while they are in use ## Test plan - `cargo check -p codex-core --lib` - `just test -p codex-core 'shell_snapshot::tests'` - `just test -p codex-core shell_command_snapshot_still_intercepts_apply_patch` - `just test -p codex-core shell_snapshot_deleted_after_shutdown_with_skills`
pakrym-oai ·
2026-06-15 08:18:13 -07:00 -
skills: hide orchestrator skills with a local executor (#28333)
## Why App-server threads without a local executor need orchestrator-owned skills from the hosted `codex_apps` MCP server. Threads with the local executor already discover installed skills from the local filesystem. After the orchestrator skill provider was enabled for every app-server thread, local-executor threads also received the hosted skill catalog and the `skills.list` and `skills.read` tools. This changed the existing local behavior and could expose a second hosted copy of a skill that was already installed locally. ## What changed - Expose the thread's selected execution environments to extensions at thread startup. - Enable orchestrator skills only when the reserved local environment is not selected. - Apply that decision consistently to hosted skill catalog discovery, explicit skill injection, and the `skills.list` and `skills.read` tools. ## Verification - The existing no-executor app-server test continues to verify hosted skill discovery, invocation, and child-resource reads. - A new app-server test verifies that local-executor threads do not receive hosted skill context or `skills.*` tools.
jif ·
2026-06-15 17:15:45 +02:00 -
feat: use encrypted local secrets for MCP OAuth (#27541)
## Summary - store MCP OAuth credentials in the configured auth credential backend - support encrypted-local OAuth storage, including legacy keyring migration - propagate the credential backend through MCP refresh, session, CLI, and app-server paths ## Stack 1. #27504 — config and feature flag 2. #27535 — auth-specific secret namespaces 3. #27539 — encrypted CLI auth storage 4. this PR — encrypted MCP OAuth storage This is a parallel review stack; the original #17931 remains unchanged. ## Tests - `just test -p codex-rmcp-client` (the transport round-trip test passed after building the required `codex` binary and retrying) - `just test -p codex-mcp` - `just test -p codex-app-server refresh_config_uses_latest_auth_keyring_backend` - `just test -p codex-core refresh_mcp_servers_is_deferred_until_next_turn` - `just test -p codex-cli mcp` - `just fix -p codex-rmcp-client -p codex-mcp -p codex-core -p codex-cli -p codex-app-server -p codex-protocol` - `just bazel-lock-check`
Celia Chen ·
2026-06-12 22:03:51 +00:00 -
sandboxing: migrate cwd inputs to PathUri (#27816)
## Why Sandbox cwd values can cross app-server and exec-server host boundaries. They should retain URI semantics until the receiving host validates them instead of being interpreted early as native paths. ## What - Carry `PathUri` through filesystem sandbox contexts, sandbox commands, and transform inputs. - Convert command and policy cwd once in `SandboxManager::transform`, then keep launch requests native. - Preserve sandbox cwd over remote filesystem transport and reject non-native URIs without fallback. - Cache paired native/URI turn-environment cwd values during migration, with immutable access to keep them synchronized. - Extend existing protocol, forwarding, transform, and core runtime tests.
Adam Perry @ OpenAI ·
2026-06-12 11:38:01 -07:00 -
Make MCP server contributions thread-scoped (#27670)
## Why `selectedCapabilityRoots` belongs to one thread, but MCP contributors previously received only the global Codex config. That left no clean way for a selected executor capability to contribute MCP servers to its own thread. ## What this PR does - Gives MCP contributors a small context containing the config and, for a running thread, its frozen host-seeded inputs. - Uses the same thread inputs during startup, status queries, refreshes, and skill dependency checks. - Keeps threadless MCP operations and the existing hosted Apps behavior unchanged. - Adds coverage showing that two threads resolve independent registrations and that later lifecycle mutations do not change the frozen MCP inputs. This PR does not discover plugin manifests, add MCP servers, or launch anything new. It only establishes the thread-scoped registration boundary. ## Follow-ups - Resolve selected executor plugin roots through their owning environment filesystem. - Convert their stdio MCP declarations into environment-bound registrations and add an executor MCP end-to-end test. ## Verification - `just fmt` - `cargo check --tests -p codex-protocol -p codex-extension-api -p codex-mcp-extension -p codex-core -p codex-app-server` Tests and Clippy were not run.
jif ·
2026-06-12 11:20:34 +02:00 -
[codex] resolve environment shell metadata eagerly (#27709)
## Why Turn construction passed resolved environments through several layers while leaving the environment shell unresolved. As a result, model-visible environment context could fall back to the session shell instead of reporting the selected remote environment's shell. Resolve environment metadata at the turn-context boundary so each turn carries the shell that belongs to its selected environment. Keep request validation in app-server, where invalid selections can be returned as straightforward JSON-RPC errors without coupling core turn construction to that policy. ## What changed - resolve environment selections eagerly in `new_turn_context_from_configuration` - store the full resolved `Shell` on each `TurnEnvironment` - simplify the now-redundant resolved-environment constructor plumbing - keep duplicate and unknown-environment validation as a small app-server preflight - add a remote-environment integration test that runs a full `test_codex` turn and verifies the model-visible environment message reports `bash` ## Testing - `cargo check -p codex-core --test all -p codex-app-server` - `remote_test_env_exposes_bash_shell_to_model` on the Linux remote-executor harness
pakrym-oai ·
2026-06-11 20:35:28 -07:00 -
[codex] Move persistence policy application into ThreadStore (#27318)
Move the application of the persistence policy into the thread store, so thread stores can get raw append items rather than canonical append items. This will enable store-specific projections over the raw input items.
Tom ·
2026-06-11 16:24:12 -07:00 -
core: Consolidate Responses API Codex metadata (#27122)
## What Introduce a `CodexResponsesMetadata` struct that defines all the core metadata we send to Responses API. Example fields are `thread_id`, `turn_id`, `window_id`, etc. Going forward, `client_metadata["x-codex-turn-metadata"]` will be the canonical way Codex sends metadata to Responses API across both HTTP and websocket transports. For now, we continue to emit the existing top-level HTTP headers and top-level `client_metadata` fields from the same `CodexResponsesMetadata` struct for compatibility reasons. Also, app-server clients who specify additional `responsesapi_client_metadata` via `turn/start` and `turn/steer` will have those fields merged into `client_metadata["x-codex-turn-metadata"]`, but cannot override the reserved fields that core uses (i.e. the fields in `CodexResponsesMetadata`). ## Why Responses API request instrumentation is the source of truth for downstream Codex analytics that join requests by Codex IDs such as session, thread, turn, and context window. Before this change, those values were assembled through several request-specific paths: HTTP request bodies, websocket handshake headers, websocket `response.create` payloads, compaction requests, and the rich `x-codex-turn-metadata` envelope all had their own wiring. That made metadata propagation easy to drift across API-key/direct Responses API requests, ChatGPT-auth/proxied requests, websocket requests, and compaction requests. It also made additions like `window_id` error-prone because a field could be added to one transport projection but missed in another. ## What changed - Added `CodexResponsesMetadata` as the core-owned snapshot for Codex metadata sent to ResponsesAPI. - Render `client_metadata["x-codex-turn-metadata"]`, flat `client_metadata` projections, and direct compatibility headers from that same snapshot. - Include the known Codex-owned fields in the turn metadata blob, including installation/session/thread/turn/window IDs, request kind, lineage, sandbox/workspace metadata, timing, and compaction details. - Treat app-server `responsesapi_client_metadata` as enrichment for the Codex turn metadata blob while preventing those extras from overriding Codex-owned fields. - Use the same metadata path for normal turns, websocket prewarm, local compaction, remote v1 compaction, and remote v2 compaction. - Keep websocket connection-only preconnect metadata separate so handshakes carry compatibility identity headers without inventing a fake turn metadata blob. ## Verification - `cargo check -p codex-core` - `just fix -p codex-core`
Owen Lin ·
2026-06-11 13:42:09 -07:00 -
Resolve MCP server registrations through a catalog (#27634)
## Why MCP servers currently come from user config, local plugins, compatibility Apps synthesis, and host extensions. Those sources were composed by mutating a shared map, leaving registration identity, precedence, removal, and provenance implicit in assembly order. Before adding executor-owned MCPs, Codex needs one durable resolution boundary above `McpConnectionManager`. This PR introduces that boundary while preserving current server configuration, policy, and runtime behavior. Executor-scoped registrations and explicit policy layers remain follow-ups. ## What changed - Add typed `McpServerRegistration` inputs and an immutable `ResolvedMcpCatalog` in `codex-mcp`. - Retain each registration's complete `McpServerConfig`, including its environment binding, while recording its source and provenance. - Preserve the existing structural precedence between plugin, config, compatibility, and ordered extension sources. - Resolve equal-precedence actions by contribution order; provenance IDs are used only for diagnostics and cannot affect the winner. - Preserve extension removals and the existing name-scoped `enabled = false` veto. - Report same-tier conflicts with every contender and the final catalog outcome, including whether the winning action registers or removes the server. - Require MCP contributors to provide a stable diagnostic identity. - Derive materialized server maps and plugin ownership from the resolved catalog. `McpConnectionManager`, transport startup, tool calls, and resource routing continue to consume the same effective `McpServerConfig` values. ## Scope This PR does not add new MCP capabilities or change user-visible behavior. It does not add executor plugin discovery, thread-scoped registrations, dynamic refresh generations, or new user/managed policy semantics. ## Verification - Added focused catalog coverage for source precedence, complete configuration preservation, disabled vetoes, plugin ownership, contribution-order tie breaking, removal outcomes, and conflict diagnostics. - Extended hosted Apps coverage for ordered extension removal and Apps-disabled hosts with and without the hosted extension installed. - `cargo check -p codex-mcp --tests -p codex-extension-api -p codex-core`
jif ·
2026-06-11 21:54:52 +02:00 -
[codex] Load user instructions through an injected provider (#27101)
## Why We want to remove implicit use of `$CODEX_HOME` from `codex-core` and make embedders responsible for supplying user-level instructions. This also ensures user instructions load when no primary environment is selected. ## What changed Stacked on #27415, which makes `codex exec` surface thread-scoped runtime warnings. - Added `UserInstructionsProvider` to `codex-extension-api`, with absolute source attribution and recoverable loading warnings. - Added `codex-home` with the filesystem-backed provider for `AGENTS.override.md` and `AGENTS.md`, preserving precedence, fallback, trimming, lossy UTF-8 handling, and the existing uncapped global instruction size. - Removed global instruction loading from `Config` and require `ThreadManager` callers to inject a provider. - Load provider instructions once for each fresh root runtime, including runtimes without a primary environment. Running sessions retain their snapshot, while child agents inherit the parent snapshot without invoking the provider. - Keep provider instructions separate while loading project `AGENTS.md`, then assemble the model-visible instructions with the existing ordering, source attribution, warning, and turn-context behavior. - Wired the Codex home provider through the CLI, app server, MCP server, core facade, and thread-manager sample. ## Validation - `just test -p codex-home -p codex-extension-api` - `just test -p codex-core agents_md` - `just test -p codex-core guardian` - `just test -p codex-app-server thread_start_without_selected_environment_includes_only_global_instruction_source` - `just test -p codex-exec warning` - `just bazel-lock-check`
Adam Perry @ OpenAI ·
2026-06-11 19:28:47 +00:00 -
skills: make backend plugin skills invocable without an executor (#27387)
## Why #27198 made the extension-owned `codex_apps` MCP connection the hosted plugin runtime, but its `mcp/skill` resources still bypassed the skills extension. App-server could list and read those resources through generic MCP APIs, but a thread with no selected environment did not expose them in the model's skills catalog or load their `SKILL.md` through `$skill`. Hosted skills should stay remote while using the same typed catalog, source authority, deduplication, bounded contextual catalog, and selected-skill prompt injection as host and executor skills. They should not be downloaded or exposed as ambient filesystem paths. ## What changed - Add a session-scoped `McpResourceClient` over the replaceable MCP connection manager so resource list/read calls follow startup and refresh replacements. - Add a `BackendSkillProvider` that pages `codex_apps` resources, accepts bounded and validated `mcp/skill` entries, and reads a selected skill's `SKILL.md` through the same MCP connection. - Register the remote provider in app-server and include it in the skills catalog even when a thread has no selected capability roots or executor. - Contribute hosted skill metadata through the bounded `AvailableSkillsInstructions` developer-context path, exclude remote entries from per-turn catalog injection, and classify `<skills>` messages as contextual developer content so rollback can trim and rebuild them correctly. ## Testing - Extend the app-server MCP resource integration test with `environments: []` to exercise two-page discovery, filter a non-`mcp/skill` resource, verify the escaped developer catalog entry and user-role `<skill>` fragment containing the fetched `SKILL.md`, and preserve generic MCP resource reads. - Add core event-mapping coverage that classifies `<skills>` developer messages as contextual history.
jif ·
2026-06-11 11:28:16 +02:00 -
[codex] Store compact window id in rollout (#27264)
## Why Compaction window identity is part of session history, not model-client transport state. Persisting it with the compacted rollout item lets resumed threads continue from the reconstructed window without keeping mutable window state on `ModelClient`. ## What changed - Added `window_id` to `CompactedItem` and stamp it when `replace_compacted_history` installs compacted history. - Moved auto-compact window id ownership into `AutoCompactWindow` / `SessionState`; `ModelClient` now receives the request window id from callers instead of storing it. - Returned `window_id` from rollout reconstruction for resume. Reconstruction uses the newest surviving compacted item's stored `window_id` when present, and falls back to the legacy compacted-item count when it is absent. - Kept fork startup at the fresh default window id and updated direct model-client tests to pass explicit test window ids. ## Validation - `cargo check -p codex-core --tests`
pakrym-oai ·
2026-06-10 08:47:16 -07:00 -
Use latest-wins MCP manager replacement (#27259)
## Summary We originally addressed startup prewarming holding the read side of `RwLock<McpConnectionManager>` by snapshotting tool-list state. Review feedback identified the broader ownership problem: the outer synchronization should only publish or retrieve the current manager, while MCP operations rely on the manager's internal synchronization. A follow-up preserved operation retirement with a separate gate, but further review questioned whether that synchronization was actually required and whether we could support latest-wins replacement instead. This PR now stores the current MCP manager in `ArcSwap`. Each operation uses `load_full()` to obtain an owned `Arc<McpConnectionManager>`, then performs MCP I/O without retaining the publication mechanism. Refresh cancels obsolete startup work, constructs a replacement, and atomically publishes it. New operations see the latest manager, while operations that already loaded the previous manager retain a valid handle. Refresh happens at a turn boundary, so there should be no active user tool calls to drain. Git history supports dropping the outer `RwLock`. It was introduced in `03ffe4d595` on November 17, 2025 for non-blocking MCP startup: the session published an empty manager, startup initialized that same object while holding the write lock, and readers waited for initialization. `7cd2e84026` on February 19, 2026 removed that two-phase initialization in favor of constructing a fresh manager and swapping it in, explicitly noting that `Option` or `OnceCell` could replace the placeholder design. Hot reload later reused the existing lock to publish a replacement, but I found no indication that the lock was introduced to guarantee in-flight tool calls finish before refresh or shutdown. Terminal shutdown remains separate from refresh: it aborts startup prewarming and active tasks before shutting down the current manager, so tool calls may be interrupted and no model WebSocket work continues after shutdown. Focused regression coverage exercises pending tool-list cancellation, deferred refresh, and startup-prewarm shutdown.
Charlie Marsh ·
2026-06-10 08:33:21 -07:00 -
[codex] Make MCP connection startup fallible (#27261)
## Why Required MCP server startup was enforced in `Session::new` after `McpConnectionManager` had already created the clients. That split let other manager construction paths bypass the same requirement and exposed manager internals solely so the session could validate them. Keeping required-server readiness in the constructor gives every caller one consistent startup contract. ## What changed - make `McpConnectionManager::new` return `anyhow::Result<Self>` and fail when an enabled, required server cannot initialize - pass the startup cancellation token into the constructor so required-server waits remain cancellable - propagate constructor failures through resource reads, connector discovery, and MCP status collection - preserve the active manager and cancellation token when a refreshed replacement fails - keep required-startup failure collection private and cover the constructor error contract directly ## Validation - updated the focused connection-manager test to assert the complete required-server startup error - local tests not run; relying on CI
Ahmed Ibrahim ·
2026-06-10 00:17:58 -07:00 -
[codex-analytics] add extensible feature thread sources (#27063)
## Why - `ThreadSource` currently defines a closed set of core-owned values - Product features also create threads for background or scheduled work - Adding every product-specific value to the core enum would require repeated `codex-rs` protocol changes - Feature-backed values let product callers provide precise attribution while preserving the existing core classifications ## What Changed - Adds `ThreadSource::Feature(String)` for app-owned thread source values - Represents all app-server v2 thread sources as scalar strings, so a feature source is supplied as `"automation"` - Persists and emits the feature's plain string label, so `"automation"` produces `thread_source="automation"` in analytics - Keeps `user`, `subagent`, and `memory_consolidation` as explicit core-owned values and regenerates the app-server schemas and TypeScript bindings ## Verification - `just write-app-server-schema` - `cargo check --workspace` - `just test -p codex-protocol feature_thread_source_serializes_as_its_app_owned_label` - `just test -p codex-app-server-protocol thread_sources_round_trip_as_scalar_labels` - `cargo test -p codex-analytics thread_initialized_event_serializes_expected_shape` - `just fmt`
marksteinbrick-oai ·
2026-06-09 12:27:10 -07:00 -
Load selected executor skills through extensions (#27184)
## Why CCA is moving toward a split runtime where the orchestrator may not have a filesystem, while executors can expose preinstalled plugins and skills. A thread therefore needs to select capabilities without asking app-server or core to interpret executor-owned paths through the orchestrator's filesystem. The longer-term model is broader than executor skills: - A plugin is a bundle of skills, MCP servers, connectors/apps, and hooks. - A plugin root can be local, executor-owned, or hosted by a backend. - Components inside one plugin can use different access and execution mechanisms. A skill may be read from a filesystem or through backend tools; an HTTP MCP server can run without an executor; a stdio MCP server or hook needs an execution environment. - Core should carry generic extension initialization data. The extension that owns a component should discover it, expose it to the model, and invoke it through the appropriate runtime. This PR establishes that architecture through one complete vertical: selecting a root on an executor, discovering the skills beneath it, exposing those skills to the model, and reading an explicitly invoked `SKILL.md` through the same executor. ## Contract `thread/start` gains an experimental `selectedCapabilityRoots` field: ```json { "selectedCapabilityRoots": [ { "id": "deploy-plugin@1", "location": { "type": "environment", "environmentId": "workspace", "path": "/opt/codex/plugins/deploy" } } ] } ``` The root is intentionally not classified as a "plugin" or "skill" in the API. It can point at a standalone skill, a directory containing several skills, or a plugin containing skills and other components. This PR only teaches the skills extension how to consume it; later extensions can resolve MCP, connector, and hook components from the same selection. The platform-supplied `id` is stable selection identity. The location says which runtime owns the root and gives that runtime an opaque path. App-server does not inspect or canonicalize the path. ## What changed ### Generic thread extension initialization App-server converts selected roots into `ExtensionDataInit`. Core carries that generic initialization value until the final thread ID is known, then creates thread-scoped `ExtensionData` before lifecycle contributors run. This keeps `Session` and core independent of the capability-selection contract. The initialization value is consumed during construction; it is not retained as another long-lived `Session` field. ### Executor-backed skills The skills extension now owns an `ExecutorSkillProvider` that: - resolves the selected environment through `EnvironmentManager` - discovers, canonicalizes, and reads skills through that environment's `ExecutorFileSystem` - contributes the bounded selected-skill catalog as stable developer context - reads an explicitly invoked skill body through the authority that listed it - warns when an environment or root is unavailable - never falls back to the orchestrator filesystem for an executor-owned root Skill catalog and instruction fragments have hard byte bounds, which also bound them below the 10K-token per-item context limit. If a selected executor skill has the same name as a legacy local skill, the executor selection owns that invocation and the local body is not injected a second time. Existing local and bundled skill loading remains in place. Omitting `selectedCapabilityRoots` therefore preserves current local-only behavior. ## Current semantics - Only environment-owned locations are represented in this first contract. - Roots are resolved by the destination extension, not by app-server or core. - An unavailable executor or invalid root produces a warning and no capabilities from that root; it does not trigger a local-filesystem fallback. - Selection applies to a newly started active thread. - MCP servers, connectors, and hooks beneath a selected plugin root are not activated yet. - Selection is not yet persisted or inherited across resume, fork, or subagent creation. Existing local capabilities continue to behave as they do today in those flows. ## Planned vertical follow-ups 1. **Hosted HTTP MCP:** add an extension-backed HTTP MCP source that works without an executor, then replace the special-purpose MCP plugins loader with that implementation. 2. **Executor MCP:** register and execute stdio MCP servers through the environment that owns the selected plugin root. 3. **Backend skills:** add a hosted skill source whose catalog and bodies are accessed through extension tools rather than a filesystem. 4. **Connectors and hooks:** activate those components through their owning extensions, using the same selected-root boundary and component-specific runtime. 5. **Durable selection:** define the desired-selection lifecycle, persist it, and make resume, fork, and subagent inheritance explicit rather than accidental. 6. **Local convergence:** incrementally route existing local plugin, skill, and MCP loading through the same extension model while preserving current local behavior. Each follow-up remains reviewable as an end-to-end capability. The platform selects roots, generic thread extension data carries the selection, and the owning extension resolves and operates its component. ## Verification Coverage added for: - app-server end-to-end discovery and explicit invocation of a skill inside an executor-selected plugin root - exclusive invocation when a selected executor skill collides with a local skill name - executor filesystem authority for discovery, canonicalization, and reads - thread extension initialization before lifecycle contributors run - stable executor catalog context, explicit invocation, context rebuilding, hidden skills, and preserved host/remote catalog behavior Targeted protocol, core-skills, skills-extension, core lifecycle, and app-server executor-skill tests were run during development.jif ·
2026-06-09 19:51:54 +02:00 -
Boyang Niu ·
2026-06-09 00:38:35 +00:00 -
Pair thread environment settings (#26687)
## Why Thread cwd and environment selections are a single logical setting in core: updating one without the other can silently desynchronize the next-turn execution context. This change makes that relationship explicit in the internal thread settings flow while preserving the existing app-server public API shape. ## What changed - Moved the cwd/environment pair through internal `ThreadSettingsOverrides.environment_settings` instead of a top-level internal `cwd` field. - Kept `thread/settings/update` public params unchanged, with app-server translating top-level `cwd` into the paired internal settings shape. - Moved `Op::UserInput` environment overrides into thread settings so user turns and settings updates use the same core path. - Updated core, app-server, MCP, memories, sample, and test callsites to construct the paired settings shape. ## Verification - `git diff --check` - Local test run starting after PR creation.
pakrym-oai ·
2026-06-08 13:55:15 -07:00 -
feat: count V2 concurrency by active execution (#26969)
## Why Multi-Agent V2 concurrency should count active non-root turns, not resident or durable agent threads. The limit is intentionally best effort: admission checks are synchronous, but concurrent successful checks may overshoot slightly. ## What changed - Keep one root-derived execution limit on the shared `AgentControl`. - Count active V2 subagent turns with an RAII guard owned by `RunningTask`. - Check capacity before spawning or starting an idle agent, including direct app-server `turn/start` submissions. - Preserve queued delivery for agents that are already running. - Exempt automatic idle continuations so `/goal` work is not dropped when capacity is temporarily full. - Keep root and V1 turns outside this limiter. ## Test coverage - `execution_guards_count_active_v2_subagent_turns` - `execution_guards_ignore_root_and_v1_turns` - `v2_nested_spawn_checks_shared_active_execution_capacity`
jif ·
2026-06-08 14:21:28 +02:00 -
[2 of 2] Finish moving goal runtime to extension (#26548)
## Stack 1. [#26547](https://github.com/openai/codex/pull/26547) - [1 of 2] Align goal extension with core behavior 2. [#26548](https://github.com/openai/codex/pull/26548) - [2 of 2] Move goal runtime to extension ## Why This PR completes the switch of the goal behavior to the extension-backed runtime and removes the old core goal implementation. ## What Changed - Installs the goal extension for app-server `ThreadManager` sessions. - Routes app-server thread goal `get`, `set`, and `clear` through `GoalService`. - Uses thread-idle lifecycle emission after goal resume and snapshot ordering so the extension can decide whether to continue the goal. - Forwards extension goal updates through a FIFO async app-server notification path so backpressure does not drop them or reorder updates. - Keeps review turns from enabling goal runtime behavior. - Plans extension tools before dynamic tools so built-in goal tool names keep their old precedence when goals are enabled. - Removes the old core goal runtime, core goal tool handlers, and core goal tool specs. - Updates tests that were coupled to the core-owned goal runtime while leaving the legacy `<goal_context>` compatibility path in core for old threads. - Removes the stale cargo-shear ignore now that `codex-goal-extension` is used by the workspace. - Keeps realtime event matching exhaustive after removing the old goal-specific realtime text path. ## Validation - Ran manual `/goal` runs in TUI. Validated time accounting matched wall-clock time and goal lifecycle state transitions.
Eric Traut ·
2026-06-05 14:17:30 -07:00 -
Require absolute cwd in thread settings (#26532)
## Why Thread settings cwd overrides are expected to be resolved before they enter core. Keeping this boundary as a plain `PathBuf` made it easy for core/session code to keep fallback normalization and relative-path resolution logic in places that should only receive an already-resolved cwd. This is intentionally the absolute-cwd-only slice: it does not change environment selection stickiness or cwd-to-default-environment fallback behavior. ## What changed - Changes `ThreadSettingsOverrides.cwd`, `CodexThreadSettingsOverrides.cwd`, and `SessionSettingsUpdate.cwd` to use `AbsolutePathBuf`. - Removes core-side cwd normalization/resolution from session settings updates. - Updates affected core/app-server test helpers and callsites to pass existing absolute cwd values or use `abs()` helpers. ## Validation Opening as draft so CI can start while local validation continues.
pakrym-oai ·
2026-06-05 09:29:15 -07:00 -
Route AGENTS.md loading through environment filesystems (#26205)
## Why Workspace-specific `AGENTS.md` loading needs to use the selected environment filesystem so remote workspaces and child agents read instructions from their actual environment instead of the host filesystem. The app-server should report the same instruction sources the initialized thread actually loaded, rather than independently rescanning configuration and filesystem state. ## What changed - Introduce `LoadedAgentsMd` to retain ordered user, project, and internal instructions with their provenance. - Load and canonicalize workspace `AGENTS.md` paths through the primary `EnvironmentManager` environment, then render the loaded instructions when constructing turn context. - Expose cached loaded instruction sources from initialized threads and use them for app-server start, resume, and fork responses. - Preserve global `CODEX_HOME` loading and separator behavior while excluding empty project files that did not supply model-visible instructions. - Add integration coverage for CLI injection, selected-environment provenance and rendering, empty environment selection, and cached sources on loaded-thread resume. ## Validation - `just test -p codex-core agents_md` - `just test -p codex-core selected_environment_sources_match_model_visible_instructions` - `just test -p codex-exec agents_md` - `just test -p codex-app-server instruction_sources` - `just test -p codex-app-server --status-level fail`
Adam Perry @ OpenAI ·
2026-06-04 12:43:07 -07:00 -
[codex-analytics] emit forked thread id on initialization (#26248)
## Why - Thread initialization analytics do not identify the source thread for forked threads. - The session viewer needs this lineage to construct thread trees. - Depends on openai/openai#987854. Do not release this change before that backend schema change is deployed. ## What Changed - Adds optional `forked_from_thread_id` to `codex_thread_initialized`. - Populates it from the existing thread fork lineage for app-server and in-process subagent initialization paths. - Keeps it null for non-forked threads. ## Verification - `just fmt` - `just test -p codex-analytics` - `just test -p codex-app-server thread_fork_tracks_thread_initialized_analytics`
kbazzi ·
2026-06-04 11:24:12 -07:00 -
core: stop threading SandboxPolicy through exec (#25700)
## Why #25450 attempts a broad `SandboxPolicy` removal across several unrelated surfaces, which makes it hard to review and still leaves new helper code moving legacy policies around. This PR is a narrower alternative: migrate only the exec-side Windows sandbox plumbing so the review can focus on one production path and one compatibility boundary. The goal is to stop threading `SandboxPolicy` through exec code without expanding the migration into app-server, protocol, telemetry, config, or session behavior. ## What changed - Removed `ExecRequest::compatibility_sandbox_policy()`. - Changed the Windows restricted-token and elevated filesystem override helpers to accept `PermissionProfile` plus the split filesystem/network policies instead of a `SandboxPolicy`. - Kept the remaining legacy projection local to the writable-root comparison that still needs to compare split policy behavior against the legacy Windows backend model. - Rejected restricted split filesystem policies that still grant full-disk writes before using the Windows restricted-token backend, preserving the previous clear-failure behavior for profiles that project to `ExternalSandbox`. - Updated the Windows sandbox override tests to exercise the new call shape and cover the full-write split-profile regression. ## Verification - `just test -p codex-core windows_restricted_token` - `just test -p codex-core windows_elevated`
Michael Bolin ·
2026-06-03 10:41:41 -07:00 -
chore: mechanical rename (#26156)
Rename `Session::conversation_id` to `Session::thread_id` with an auto refactor in RustRover
jif ·
2026-06-03 15:38:30 +02:00 -
Resolve per-thread multi-agent runtime (#25722)
Stack split from #25708. Original PR intentionally left open. This third PR resolves the effective per-thread multi-agent runtime from persisted metadata, inherited runtime, and current model selection.
jif-oai ·
2026-06-02 14:31:00 +02:00 -
Persist multi-agent runtime metadata (#25721)
Stack split from #25708. Original PR intentionally left open. This second PR persists multi-agent runtime metadata through thread creation, rollout recording, and thread storage.
jif-oai ·
2026-06-02 13:05:20 +02:00 -
app-server: remove experimental persist_extended_history bool flag (#25712)
## Summary Remove the dead experimental `persistExtendedHistory` app-server flag and collapse rollout persistence to the single policy app-server already used. ## What Changed - Removed `persistExtendedHistory` from v2 thread start/resume/fork params and deleted its deprecation notice path. - Removed the persistence-mode enums and plumbing through core, rollout, and thread-store. - Made rollout filtering mode-free, keeping the existing limited persisted-history behavior. ## Test Plan - `just write-app-server-schema` - `cargo nextest run --no-fail-fast -p codex-app-server-protocol schema_fixtures` - `cargo nextest run --no-fail-fast -p codex-app-server thread_shell_command_history_responses_exclude_persisted_command_executions` - `cargo nextest run --no-fail-fast -p codex-rollout -p codex-thread-store` - final `rg` for removed flag/type names
Owen Lin ·
2026-06-01 23:33:42 +00:00 -
store and expose parent_thread_id on Threads (#25113)
## Why This PR https://github.com/openai/codex/pull/24161#discussion_r3325692763 revealed a subagent data modeling issue, where we overloaded `forked_from_id` to also mean `parent_thread_id`. That's incorrect since guardian and review subagents can be a subagent and NOT fork the main thread's history. The solution here is to explicitly store a new `parent_thread_id` on `SessionMeta`, alongside `forked_from_id` which already exists. While we're at it, also expose it in the app-server protocol on the `Thread` object. A thread->subagent relationship and a fork of thread history are orthogonal concepts. ## What Changed - Added top-level `parent_thread_id` persistence on `SessionMeta` and runtime/session plumbing through `SessionConfiguredEvent`, `CodexSpawnArgs`, `SessionConfiguration`, `ThreadConfigSnapshot`, `TurnContext`, and `ModelClient`. - Made turn metadata, request headers, analytics, and subagent-start events read the separate runtime/top-level parent field instead of deriving general parent lineage from `SessionSource` or `forked_from_thread_id`. - Passed parent lineage separately at delegated subagent, review, guardian, agent-job, and multi-agent spawn construction sites; copied-history fork lineage remains derived only from `InitialHistory`. - Persisted and exposed parent lineage through rollout/thread-store projections and app-server v2 `Thread.parentThreadId`. - Updated app-server README text and regenerated app-server schema fixtures for the additive `parentThreadId` response field.
Owen Lin ·
2026-06-01 04:33:20 +00:00 -
Add thread start contributor facts (#24915)
Summary: add session source and persistent-state availability to ThreadStartInput; populate them from session init; update existing goal test harness constructors. Tests: just fmt; git diff --check. No full tests or clippy run per request.
jif-oai ·
2026-05-28 16:10:55 +02:00 -
Thread Guardian cache key through session (#24895)
Split from the Guardian prompt cache key change. This PR only updates codex-rs/core/src/session/session.rs. Validation was not run per request; this branch is expected to rely on the companion split PRs.
jif-oai ·
2026-05-28 12:36:40 +02:00 -
Add forked_from_thread_id turn metadata (#24160)
## Why When Codex calls responsesapi, we currently send `session_id`, `thread_id`, and `turn_id` among other things as `client_metadata["x-codex-turn-metadata"]`. This PR adds `forked_from_thread_id` which helps explain the "lineage" of a forked thread. ## What's changed - Track the immediate history source copied into a forked thread through thread/session creation, including subagent and review turn metadata paths. - Include `forked_from_thread_id` in Codex turn metadata while preventing turn-scoped Responses API client metadata from overwriting Codex-owned lineage fields. - Add coverage for fork lineage in turn metadata and the app-server Responses API request path.
Owen Lin ·
2026-05-26 14:05:28 -07:00 -
Move MCP tool naming mode into manager (#21576)
## Why The `non_prefixed_mcp_tool_names` feature should be applied where MCP tools become model-visible, not by remapping names later in core. Keeping the decision in `McpConnectionManager` construction makes `ToolInfo` the single shaped view that spec building, deferred tool search, routing, and unavailable-tool placeholders can consume directly. This also preserves the existing external behavior while the feature is off, and keeps the feature-on behavior for code mode and hooks explicit at the manager boundary. ## What Changed - Add `McpToolNameMode` to `codex-mcp` and flow it through `McpConfig` into `McpConnectionManager::new`. - Normalize MCP `ToolInfo` names in the manager using either legacy-prefixed namespaces or non-prefixed namespaces; the legacy path adds `mcp__` without restoring the old trailing namespace suffix. - Remove the core-side MCP name remapping path so specs, tool search, session resolution, and unavailable-tool placeholder construction use the manager-provided `ToolName` values directly. - Keep code mode flattening on the `__` namespace separator. - Preserve hook compatibility by giving non-prefixed MCP hook names legacy `mcp__...` matcher aliases. - Add/adjust integration and unit coverage for non-prefixed code-mode behavior, hook matching with the feature on and off, and manager-level legacy prefixing. ## Testing - `cargo test -p codex-mcp --lib` - `cargo test -p codex-core --lib tools::spec::tests -- --nocapture` - `cargo test -p codex-core --lib mcp_tools -- --nocapture` - `cargo test -p codex-core --lib mcp_tool_exposure -- --nocapture` - `cargo test -p codex-core --test all mcp_tool -- --nocapture` - `cargo test -p codex-core --test all search_tool -- --nocapture` - `cargo test -p codex-core --test all hooks_mcp -- --nocapture` - `cargo test -p codex-core --test all code_mode_uses_non_prefixed_mcp_tool_names_when_feature_enabled -- --nocapture` - `cargo test -p codex-tools` - `cargo test -p codex-features`
pakrym-oai ·
2026-05-26 08:21:15 -07:00 -
package: include zsh fork in Codex package (#23756)
## Why The package layout gives Codex a stable place for runtime helpers that should travel with the entrypoint. `shell_zsh_fork` still required users to configure `zsh_path` manually, even though we already publish prebuilt zsh fork artifacts. This PR builds on #24129 and uses the shared DotSlash artifact fetcher to include the zsh fork in Codex packages when a matching target artifact exists. Packaged Codex builds can then discover the bundled fork automatically; the user/profile `zsh_path` override is removed so the feature uses the package-managed artifact instead of a legacy path knob. ## What Changed - Added `scripts/codex_package/codex-zsh`, a checked-in DotSlash manifest for the current macOS arm64 and Linux zsh fork artifacts. - Taught `scripts/build_codex_package.py` to fetch the matching zsh fork artifact and install it at `codex-resources/zsh/bin/zsh` when available for the selected target. - Added package layout validation for the optional bundled zsh resource. - Added `InstallContext::bundled_zsh_path()` and `InstallContext::bundled_zsh_bin_dir()` for package-layout resource discovery. - Threaded the packaged zsh path through config loading as the runtime `zsh_path` for packaged installs, and removed the config/profile/CLI override path. - Kept the packaged default zsh override typed as `AbsolutePathBuf` until the existing runtime `Config::zsh_path` boundary. - Updated app-server zsh-fork integration tests to spawn `codex-app-server` from a temporary package layout with `codex-resources/zsh/bin/zsh`, matching the new packaged discovery path instead of setting `zsh_path` in config. - Switched package executable copying from metadata-preserving `copy2()` to `copyfile()` plus explicit executable bits, which avoids macOS file-flag failures when local smoke tests use system binaries as inputs. ## Testing To verify that the `zsh` executable from the Codex package is picked up correctly, first I ran: ```shell ./scripts/build_codex_package.py ``` which created: ``` /private/var/folders/vw/x2knqmks50sfhfpy27nftl900000gp/T/codex-package-pms94kdp/ ``` so then I ran: ``` /private/var/folders/vw/x2knqmks50sfhfpy27nftl900000gp/T/codex-package-pms94kdp/bin/codex exec --enable shell_zsh_fork 'run `echo $0`' ``` which reported the following, as expected: ``` /private/var/folders/vw/x2knqmks50sfhfpy27nftl900000gp/T/codex-package-pms94kdp/codex-resources/zsh/bin/zsh ``` --- [//]: # (BEGIN SAPLING FOOTER) Stack created with [Sapling](https://sapling-scm.com). Best reviewed with [ReviewStack](https://reviewstack.dev/openai/codex/pull/23756). * #23768 * __->__ #23756
Michael Bolin ·
2026-05-22 17:54:07 -07:00 -
otel: drop legacy profile usage telemetry (#24061)
## Summary - drop the dead legacy profile usage metric and active-profile conversation-start fields - update role comments so they describe provider and service-tier preservation without legacy config-profile wording - pair the code cleanup with the file-backed profile docs update in openai/developers-website#1476 ## Testing - `just fmt` - `cargo test -p codex-otel` - `cargo test -p codex-core` *(fails: existing stack overflow in `mcp_tool_call::tests::guardian_mode_mcp_denial_returns_rationale_message`)* - `cargo test -p codex-core --lib mcp_tool_call::tests::guardian_mode_mcp_denial_returns_rationale_message` *(fails with the same stack overflow)*
jif-oai ·
2026-05-22 13:14:44 +02:00 -
config: remove legacy profile write paths (#24055)
## Why [#23883](https://github.com/openai/codex/pull/23883) moved the user-facing `--profile` flag onto profile v2 and [#23886](https://github.com/openai/codex/pull/23886) removed CLI forwarding for the legacy profile-v1 path. Core and TUI config persistence still carried `active_profile` and `ConfigEditsBuilder::with_profile`, which let later writes continue targeting legacy `[profiles.<name>]` tables after profile selection moved to profile-v2 config files. ## What - Remove legacy profile routing from [`ConfigEditsBuilder`](https://github.com/openai/codex/blob/4b38e9c22e762261d7f7eef49d8a21792e241a06/codex-rs/core/src/config/edit.rs#L1064-L1294), so core config edits no longer carry `with_profile` or infer `[profiles.*]` write targets from a `profile` key. - Drop `active_profile` plumbing from runtime `Config`, TUI startup/state, app-server config override forwarding, and Windows sandbox setup persistence. - Make app-server-backed TUI config edits use unscoped model, service-tier, feature, Auto-review, plan-mode, and Windows sandbox paths through [`tui/src/config_update.rs`](https://github.com/openai/codex/blob/4b38e9c22e762261d7f7eef49d8a21792e241a06/codex-rs/tui/src/config_update.rs#L43-L112). - Update config edit coverage so legacy `profile` state stays untouched by direct model writes, and remove tests whose only contract was the deleted profile-scoped persistence path. ## Testing - Not run locally.
jif-oai ·
2026-05-22 12:50:42 +02:00 -
Route MCP servers through explicit environments (#23583)
## Summary - route each configured MCP server through an explicit per-server `environment_id` instead of a manager-wide remote toggle - default omitted `environment_id` to `local`, resolve named ids through `EnvironmentManager`, and fail only the affected MCP server when an explicit id is unknown - keep local stdio on the existing local launcher path for now, while named-environment stdio uses the selected environment backend and requires an absolute `cwd` - allow local HTTP MCP servers to keep using the ambient HTTP client when no local `Environment` is configured; named-environment HTTP MCPs use that environment's HTTP client ## Validation - devbox Bazel build: `bazel build --bes_backend= --bes_results_url= //codex-rs/cli:codex //codex-rs/rmcp-client:test_stdio_server //codex-rs/rmcp-client:test_streamable_http_server` - devbox app-server config matrix with real `config.toml` / `environments.toml` files covering omitted local, explicit local, omitted local under remote default, explicit remote stdio, local HTTP without local env, explicit remote HTTP, local stdio without local env, unknown explicit env, and remote stdio without `cwd`
starr-openai ·
2026-05-21 17:19:54 +02:00 -
Honor client-resolved service tier defaults (#23537)
## Why Model catalog responses can now advertise a nullable `default_service_tier` for each model. Codex needs to preserve three distinct states all the way from config/app-server inputs to inference: - no explicit service tier, so the client may apply the current model catalog default when FastMode is enabled - explicit `default`, meaning the user intentionally wants standard routing - explicit catalog tier ids such as `priority`, `flex`, or future tiers Keeping those states distinct prevents the UI from showing one tier while core sends another, especially after model switches or app-server `thread/start` / `turn/start` updates. ## What Changed - Plumbed `default_service_tier` through model catalog protocol types, app-server model responses, generated schemas, model cache fixtures, and provider/model-manager conversions. - Added the request-only `default` service tier sentinel and normalized legacy config spelling so `fast` in `config.toml` still materializes as the runtime/request id `priority`. - Moved catalog default resolution to the TUI/client side, including recomputing the effective service tier when model/FastMode-dependent surfaces change. - Updated app-server thread lifecycle config construction so `serviceTier: null` preserves explicit standard-routing intent by mapping to `default` instead of internal `None`. - Kept core responsible for validating explicit tiers against the current model and stripping `default` before `/v1/responses`, without applying catalog defaults itself. ## Validation - `CARGO_INCREMENTAL=0 cargo build -p codex-cli` - `CARGO_INCREMENTAL=0 cargo test -p codex-app-server model_list` - `cargo test -p codex-tui service_tier` - `cargo test -p codex-protocol service_tier_for_request` - `cargo test -p codex-core get_service_tier` - `RUST_MIN_STACK=8388608 CARGO_INCREMENTAL=0 cargo test -p codex-core service_tier`
Shijie Rao ·
2026-05-20 15:57:50 -07:00