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7 Commits
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config: enforce enterprise feature requirements (#13388)
## Why Enterprises can already constrain approvals, sandboxing, and web search through `requirements.toml` and MDM, but feature flags were still only configurable as managed defaults. That meant an enterprise could suggest feature values, but it could not actually pin them. This change closes that gap and makes enterprise feature requirements behave like the other constrained settings. The effective feature set now stays consistent with enterprise requirements during config load, when config writes are validated, and when runtime code mutates feature flags later in the session. It also tightens the runtime API for managed features. `ManagedFeatures` now follows the same constraint-oriented shape as `Constrained<T>` instead of exposing panic-prone mutation helpers, and production code can no longer construct it through an unconstrained `From<Features>` path. The PR also hardens the `compact_resume_fork` integration coverage on Windows. After the feature-management changes, `compact_resume_after_second_compaction_preserves_history` was overflowing the libtest/Tokio thread stacks on Windows, so the test now uses an explicit larger-stack harness as a pragmatic mitigation. That may not be the ideal root-cause fix, and it merits a parallel investigation into whether part of the async future chain should be boxed to reduce stack pressure instead. ## What Changed Enterprises can now pin feature values in `requirements.toml` with the requirements-side `features` table: ```toml [features] personality = true unified_exec = false ``` Only canonical feature keys are allowed in the requirements `features` table; omitted keys remain unconstrained. - Added a requirements-side pinned feature map to `ConfigRequirementsToml`, threaded it through source-preserving requirements merge and normalization in `codex-config`, and made the TOML surface use `[features]` (while still accepting legacy `[feature_requirements]` for compatibility). - Exposed `featureRequirements` from `configRequirements/read`, regenerated the JSON/TypeScript schema artifacts, and updated the app-server README. - Wrapped the effective feature set in `ManagedFeatures`, backed by `ConstrainedWithSource<Features>`, and changed its API to mirror `Constrained<T>`: `can_set(...)`, `set(...) -> ConstraintResult<()>`, and result-returning `enable` / `disable` / `set_enabled` helpers. - Removed the legacy-usage and bulk-map passthroughs from `ManagedFeatures`; callers that need those behaviors now mutate a plain `Features` value and reapply it through `set(...)`, so the constrained wrapper remains the enforcement boundary. - Removed the production loophole for constructing unconstrained `ManagedFeatures`. Non-test code now creates it through the configured feature-loading path, and `impl From<Features> for ManagedFeatures` is restricted to `#[cfg(test)]`. - Rejected legacy feature aliases in enterprise feature requirements, and return a load error when a pinned combination cannot survive dependency normalization. - Validated config writes against enterprise feature requirements before persisting changes, including explicit conflicting writes and profile-specific feature states that normalize into invalid combinations. - Updated runtime and TUI feature-toggle paths to use the constrained setter API and to persist or apply the effective post-constraint value rather than the requested value. - Updated the `core_test_support` Bazel target to include the bundled core model-catalog fixtures in its runtime data, so helper code that resolves `core/models.json` through runfiles works in remote Bazel test environments. - Renamed the core config test coverage to emphasize that effective feature values are normalized at runtime, while conflicting persisted config writes are rejected. - Ran `compact_resume_after_second_compaction_preserves_history` inside an explicit 8 MiB test thread and Tokio runtime worker stack, following the existing larger-stack integration-test pattern, to keep the Windows `compact_resume_fork` test slice from aborting while a parallel investigation continues into whether some of the underlying async futures should be boxed. ## Verification - `cargo test -p codex-config` - `cargo test -p codex-core feature_requirements_ -- --nocapture` - `cargo test -p codex-core load_requirements_toml_produces_expected_constraints -- --nocapture` - `cargo test -p codex-core compact_resume_after_second_compaction_preserves_history -- --nocapture` - `cargo test -p codex-core compact_resume_fork -- --nocapture` - Re-ran the built `codex-core` `tests/all` binary with `RUST_MIN_STACK=262144` for `compact_resume_after_second_compaction_preserves_history` to confirm the explicit-stack harness fixes the deterministic low-stack repro. - `cargo test -p codex-core` - This still fails locally in unrelated integration areas that expect the `codex` / `test_stdio_server` binaries or hit existing `search_tool` wiremock mismatches. ## Docs `developers.openai.com/codex` should document the requirements-side `[features]` table for enterprise and MDM-managed configuration, including that it only accepts canonical feature keys and that conflicting config writes are rejected.
Michael Bolin ·
2026-03-04 04:40:22 +00:00 -
chore: remove codex-core public protocol/shell re-exports (#12432)
## Why `codex-rs/core/src/lib.rs` re-exported a broad set of types and modules from `codex-protocol` and `codex-shell-command`. That made it easy for workspace crates to import those APIs through `codex-core`, which in turn hides dependency edges and makes it harder to reduce compile-time coupling over time. This change removes those public re-exports so call sites must import from the source crates directly. Even when a crate still depends on `codex-core` today, this makes dependency boundaries explicit and unblocks future work to drop `codex-core` dependencies where possible. ## What Changed - Removed public re-exports from `codex-rs/core/src/lib.rs` for: - `codex_protocol::protocol` and related protocol/model types (including `InitialHistory`) - `codex_protocol::config_types` (`protocol_config_types`) - `codex_shell_command::{bash, is_dangerous_command, is_safe_command, parse_command, powershell}` - Migrated workspace Rust call sites to import directly from: - `codex_protocol::protocol` - `codex_protocol::config_types` - `codex_protocol::models` - `codex_shell_command` - Added explicit `Cargo.toml` dependencies (`codex-protocol` / `codex-shell-command`) in crates that now import those crates directly. - Kept `codex-core` internal modules compiling by using `pub(crate)` aliases in `core/src/lib.rs` (internal-only, not part of the public API). - Updated the two utility crates that can already drop a `codex-core` dependency edge entirely: - `codex-utils-approval-presets` - `codex-utils-cli` ## Verification - `cargo test -p codex-utils-approval-presets` - `cargo test -p codex-utils-cli` - `cargo check --workspace --all-targets` - `just clippy`Michael Bolin ·
2026-02-20 23:45:35 -08:00 -
feat: make sandbox read access configurable with
ReadOnlyAccess(#11387)`SandboxPolicy::ReadOnly` previously implied broad read access and could not express a narrower read surface. This change introduces an explicit read-access model so we can support user-configurable read restrictions in follow-up work, while preserving current behavior today. It also ensures unsupported backends fail closed for restricted-read policies instead of silently granting broader access than intended. ## What - Added `ReadOnlyAccess` in protocol with: - `Restricted { include_platform_defaults, readable_roots }` - `FullAccess` - Updated `SandboxPolicy` to carry read-access configuration: - `ReadOnly { access: ReadOnlyAccess }` - `WorkspaceWrite { ..., read_only_access: ReadOnlyAccess }` - Preserved existing behavior by defaulting current construction paths to `ReadOnlyAccess::FullAccess`. - Threaded the new fields through sandbox policy consumers and call sites across `core`, `tui`, `linux-sandbox`, `windows-sandbox`, and related tests. - Updated Seatbelt policy generation to honor restricted read roots by emitting scoped read rules when full read access is not granted. - Added fail-closed behavior on Linux and Windows backends when restricted read access is requested but not yet implemented there (`UnsupportedOperation`). - Regenerated app-server protocol schema and TypeScript artifacts, including `ReadOnlyAccess`. ## Compatibility / rollout - Runtime behavior remains unchanged by default (`FullAccess`). - API/schema changes are in place so future config wiring can enable restricted read access without another policy-shape migration.Michael Bolin ·
2026-02-11 18:31:14 -08:00 -
feat: add support for allowed_web_search_modes in requirements.toml (#10964)
This PR makes it possible to disable live web search via an enterprise config even if the user is running in `--yolo` mode (though cached web search will still be available). To do this, create `/etc/codex/requirements.toml` as follows: ```toml # "live" is not allowed; "disabled" is allowed even though not listed explicitly. allowed_web_search_modes = ["cached"] ``` Or set `requirements_toml_base64` MDM as explained on https://developers.openai.com/codex/security/#locations. ### Why - Enforce admin/MDM/`requirements.toml` constraints on web-search behavior, independent of user config and per-turn sandbox defaults. - Ensure per-turn config resolution and review-mode overrides never crash when constraints are present. ### What - Add `allowed_web_search_modes` to requirements parsing and surface it in app-server v2 `ConfigRequirements` (`allowedWebSearchModes`), with fixtures updated. - Define a requirements allowlist type (`WebSearchModeRequirement`) and normalize semantics: - `disabled` is always implicitly allowed (even if not listed). - An empty list is treated as `["disabled"]`. - Make `Config.web_search_mode` a `Constrained<WebSearchMode>` and apply requirements via `ConstrainedWithSource<WebSearchMode>`. - Update per-turn resolution (`resolve_web_search_mode_for_turn`) to: - Prefer `Live → Cached → Disabled` when `SandboxPolicy::DangerFullAccess` is active (subject to requirements), unless the user preference is explicitly `Disabled`. - Otherwise, honor the user’s preferred mode, falling back to an allowed mode when necessary. - Update TUI `/debug-config` and app-server mapping to display normalized `allowed_web_search_modes` (including implicit `disabled`). - Fix web-search integration tests to assert cached behavior under `SandboxPolicy::ReadOnly` (since `DangerFullAccess` legitimately prefers `live` when allowed).
Michael Bolin ·
2026-02-07 05:55:15 +00:00 -
go back to auto-enabling web_search for azure (#10820)
###### What Remove special-casing that prevented auto-enabling `web_search` for Azure model provider users. Addresses #10071, #10257. ###### Why Azure fixed their responsesapi implementation; `web_search` is now supported on models it wasn't before (like `gpt-5.1-codex-max`). This request now works: ``` curl "$AZURE_API_ENDPOINT" -H "Content-Type: application/json" -H "Authorization: Bearer $AZURE_API_KEY" -d '{ "model": "gpt-5.1-codex-max", "tools": [ { "type": "web_search" } ], "tool_choice": "auto", "input": "Find the sunrise time in Paris today and cite the source." }' ``` ###### Tests Tested with above curl, removed Azure-specific tests.
sayan-oai ·
2026-02-05 14:57:07 -08:00 -
Update tests to stop using sse_completed fixture (#10638)
Summary: - replace the `sse_completed` fixture and related JSON template with direct `responses::ev_completed` payload builders - cascade the new SSE helpers through all affected core tests for consistency and clarity - remove legacy fixtures that were no longer needed once the helpers are in place Testing: - Not run (not requested)
pakrym-oai ·
2026-02-04 08:38:06 -08:00 -
fix: dont auto-enable web_search for azure (#10266)
seeing issues with azure after default-enabling web search: #10071, #10257. need to work with azure to fix api-side, for now turning off default-enable of web_search for azure. diff is big because i moved logic to reuse
sayan-oai ·
2026-01-30 22:52:37 +00:00