When using Responses Lite, we should all use `additional_tools` and a
developer item instead of the top level tools array & instructions
field. This keeps things 1-to-1.
Forced namespacing for _all_ tools will land in a following PR after
some coordination & fixes in Responses API (around collisions & return
items).
The goal is to eventually expand the scope of this to _all_ requests
from codex, but that will require larger coordination across providers &
slower rollout.
## Summary
- read the request-scoped safety-buffering treatment from HTTP response
headers and per-turn WebSocket metadata through one shared header parser
- combine that treatment with Responses API safety-buffering signals
- propagate `showBufferingUi` and nullable `fasterModel` through the
existing `model/safetyBuffering/updated` app-server notification
- update the app-server documentation and generated JSON and TypeScript
schemas
The public implementation contains no model mapping or real model
identifier. Tests and protocol examples use generic `current-model` and
`faster-model` placeholders only.
## Dependencies
- server-side treatment evaluation:
https://github.com/openai/openai/pull/1060247
- initial Responses API safety-buffering propagation:
https://github.com/openai/codex/pull/29371
- Codex App UI: https://github.com/openai/openai/pull/1057789
## Validation
- Codex API tests: 129 passed
- focused Codex core safety-buffering integration test passed
- app-server protocol tests passed after regenerating schema fixtures
- Clippy fix and repository formatting completed successfully
The broader app-server run compiled all changed crates and completed
with 1,269 passing tests. Its remaining failures were unrelated
environment limitations: macOS sandbox application was denied, one
expected test binary was unavailable, and several existing subprocess
tests timed out as a result.
## Description
This PR cuts Codex over from generic `ResponseItem.metadata` (introduced
here: https://github.com/openai/codex/pull/28355) to
`ResponseItem.internal_chat_message_metadata_passthrough`, which is the
blessed path and has strongly-typed keys.
For now we have to drop this MAv2 usage of `metadata`:
https://github.com/openai/codex/pull/28561 until we figure out where
that should live.
## Why
Every successful Responses WebSocket event currently produces three
local log records: the full payload at TRACE, an OpenTelemetry log
event, and an OpenTelemetry trace event.
On busy threads these records fill the 1,000-row log partition in
seconds and cause continuous SQLite insert-and-prune churn.
Related to
https://openai.slack.com/archives/C095U48JNL9/p1782128972644209
## What changed
- Stop logging each successful Responses WebSocket payload at TRACE.
- Stop emitting `codex.websocket_event` as OpenTelemetry log and trace
events.
- Keep WebSocket event counters, duration metrics, response timing
metrics, parsing, and error handling.
Responses API safety buffering metadata currently stops at the transport
boundary, so app-server clients cannot render the in-progress safety
review state.
This change:
- decodes and deduplicates `safety_buffering` metadata from Responses
API SSE and WebSocket events without suppressing the original response
event
- emits a typed core event containing the requested model plus backend
use cases and reasons
- forwards that event as `turn/safetyBuffering/updated` through
app-server v2 and updates generated protocol schemas
- keeps the side-channel event out of persisted rollouts and turn timing
This supports the Codex Apps buffering UX and depends on the Responses
API backend work in https://github.com/openai/openai/pull/1044569 and
https://github.com/openai/openai/pull/1044571.
Validation:
- focused `codex-core` safety-buffering integration test passes
- `cargo check -p codex-core -p codex-app-server -p
codex-app-server-protocol`
- `just fix -p codex-api -p codex-protocol -p codex-core -p
codex-app-server-protocol -p codex-app-server -p codex-rollout -p
codex-rollout-trace -p codex-otel`
- `just fmt`
- broad package test run: 4,430/4,492 passed; 62 unrelated
local-environment/concurrency failures involved unavailable test
binaries, MCP subprocess setup, and app-server timeouts
## Summary
- Add `web_search = "indexed"` alongside `disabled`, `cached`, and
`live`.
- Use that same resolved mode for both hosted and standalone web search.
- For hosted search, send `index_gated_web_access: true` with external
web access enabled only when `indexed` is selected.
- For standalone search, preserve the existing boolean wire values for
existing modes (`cached` maps to `false` and `live` to `true`) and send
`"indexed"` only for `indexed`; `disabled` keeps the tool unavailable.
- Carry the mode through managed configuration requirements and
generated schemas.
## Why
Indexed search provides a middle ground between cached-only search and
unrestricted live page fetching. Search queries can remain live while
direct page fetches are limited to URLs admitted by the server.
The existing `web_search` setting remains the single source of truth, so
hosted and standalone executors cannot drift into different access
modes. Without an explicit `indexed` selection, the existing
model-visible tool and request shapes are unchanged.
```toml
web_search = "indexed"
[features]
standalone_web_search = true
```
## Validation
- `just fmt`
- `just test -p codex-api` (`126 passed`)
- `just test -p codex-web-search-extension` (`7 passed`)
- `just test -p codex-core
code_mode_can_call_indexed_standalone_web_search` (`1 passed`)
- Focused configuration, hosted request, standalone request, and
managed-requirement coverage is included in the PR; remaining suites run
in CI.
The full workspace test suite was not run locally.
## 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`
## Summary
- Remove the realtime `architecture` selector from core protocol,
app-server protocol, config parsing, generated schemas, and callers.
- Always create WebRTC realtime calls with the AVAS query params:
`intent=quicksilver&architecture=avas`.
- Keep direct websocket realtime behavior on the existing config/default
path, while WebRTC starts without an explicit version now default to
realtime v1 because AVAS requires v1.
## Notes
- WebRTC realtime now means AVAS. If a caller explicitly asks to start
WebRTC with realtime v2, Codex rejects that request because the AVAS
WebRTC path only supports realtime v1. Websocket realtime is separate
and can still use realtime v2.
- The old `[realtime] architecture = "realtimeapi" | "avas"` config knob
is removed. Local configs that still set it will need to delete that
line.
- Some app-server tests that were only trying to exercise realtime v2
protocol behavior now use websocket transport, because WebRTC is
intentionally locked to AVAS/v1. Separate WebRTC tests cover the AVAS
query params, v1 startup, SDP flow, and sideband join.
## Validation
- Merged fresh `origin/main` at `83e6a786a2`.
- `just fmt`
- `just write-config-schema`
- `just write-app-server-schema`
- `git diff --check`
- `just test -p codex-api -p codex-core -p codex-app-server-protocol -p
codex-app-server realtime` (176 passed)
- `just test -p codex-protocol -p codex-config` (413 passed)
## Why
Frontend realtime voice continuity needs to replay a tiny
previous-session overlap as actual conversation items, including
assistant text. The app-server `thread/realtime/appendText` API already
carries a role through to the Rust realtime websocket layer, but the
shared role enum only accepted `user` and `developer`.
## What Changed
- Added `assistant` to `ConversationTextRole` and regenerated the
app-server schema/type fixtures.
- Added `output_text` as a realtime conversation content type.
- Updated realtime websocket item creation so assistant appendText emits
`content: [{ type: "output_text", text }]`, while user and developer
continue to emit `input_text`.
- Updated app-server docs and tests to cover assistant appendText
alongside the existing developer role behavior.
## Validation
- `just write-app-server-schema`
- `just fmt` (first sandboxed attempt failed because `uv` could not
access `~/.cache/uv`; reran with filesystem access and passed)
- `just test -p codex-api` passed: 126/126
- `just test -p codex-app-server-protocol` passed: 239/239, including
generated JSON/TypeScript fixture checks
- `just test -p codex-app-server` was started locally but stopped per
request after unrelated local sandbox/Seatbelt failures (`sandbox-exec:
sandbox_apply: Operation not permitted`) and one missing local `codex`
binary failure; CI should be faster and more authoritative for the full
suite.
## Description
This PR adds an optional `metadata` field to `ResponseItem` for
Responses API calls. Only mechanical plumbing, no actual values
populated and sent yet. Turns out just adding a new field to
`ResponseItem` has quite a large blast radius already.
This change is backwards compatible because `metadata` is optional and
omitted when absent, so existing response items and rollout history
without it still deserialize and requests that do not set it keep the
same wire shape. For provider compatibility, we strip out `metadata`
before non-OpenAI Responses requests so Azure and AWS Bedrock never see
this field.
My followup PR here will actually make use of it to start storing and
passing along `turn_id`: https://github.com/openai/codex/pull/28360
## What changed
- Added `ResponseItemMetadata` with optional `turn_id`, plus optional
`metadata` on Responses API item variants and inter-agent communication.
- Preserved item metadata through response-item rewrites such as
truncation, missing tool-output synthesis, compaction history
rebuilding, visible-history conversion, rollout/resume, and generated
app-server schemas/types.
- Strip item metadata from non-OpenAI Responses requests while
preserving it for OpenAI-shaped requests.
- Updated the mechanical fixture/test construction churn required by the
new optional field.
## Why
Responses HTTP requests were converted from `ResponsesApiRequest` into a
full `serde_json::Value`. `EndpointSession` then deep-cloned that value
for each retry, and the transport serialized and compressed it again
before every send.
Large histories make those copies expensive. Retry attempts should reuse
the same immutable request bytes.
## What
- Serialize standard Responses requests directly into a ref-counted
`EncodedJsonBody`.
- Preserve the Azure path that attaches item IDs before encoding.
- Prepare JSON, compression, and derived content headers once before the
retry loop.
- Clone the prepared request per attempt so body clones only bump the
`Bytes` reference count.
- Keep auth inside the retry loop. Signing auth sees the exact final
headers and body bytes that the transport sends.
- Preserve request-body TRACE output. With TRACE plus compression,
retain the original JSON bytes for logging; normal requests keep only
the final wire bytes.
- Leave non-Responses endpoint bodies on the existing `Value` path.
## Performance
A temporary release-mode measurement used a 10 MiB JSON body and 10
retry preparations:
- old `Value` clone + serialize path: 30 ms total
- prepared shared-byte path: less than 1 ms total
That is about 3 ms avoided per retry for this payload on the test
machine. Each retry also stops allocating another request-sized JSON
tree and serialized buffer. Without TRACE, compressed requests retain
only the final compressed wire bytes.
## Validation
- `just test -p codex-client` — 28 passed
- `just test -p codex-api` — 125 passed
- `just fix -p codex-client`
- `just fix -p codex-api`
## Why
Responses WebSocket requests were encoded in two steps: first into a
full `serde_json::Value`, then again into the JSON string sent over the
socket.
That walks the full request twice and keeps an extra JSON tree alive.
These requests can contain the complete conversation history and tool
schemas, so the extra work grows with the request size.
## What changed
- serialize `ResponsesWsRequest` directly to the wire string
- pass that string through the existing WebSocket stream and send path
- keep the existing error mapping, tracing, send timeout, and telemetry
behavior
- compare the new wire JSON with the previous `to_value` payload in a
focused test
## Performance
I measured both paths in an optimized temporary test using a
6,324,180-byte request: 4 MiB of history plus 256 tools with 8 KiB
descriptions. Each path ran 100 times.
- previous `to_value` + `to_string`: 209 ms total, 2.09 ms per request
- direct `to_string`: 174 ms total, 1.74 ms per request
- difference: about 17% faster, or 0.35 ms per request
The direct path also removes one full temporary `serde_json::Value`
tree. For this mostly string-backed payload, that avoids roughly one
payload-sized copy plus the JSON node overhead. The exact memory saving
depends on the request shape.
The temporary benchmark was removed before committing.
## Validation
- `just test -p codex-api` — 125 passed
- `just fix -p codex-api`
## Context
Inline compaction is part of the active logical turn. Compact requests
and the sampling requests around them should use the same turn state,
including when compaction is the first request to establish it.
## Change
Pass the turn-scoped `OnceLock` directly to inline v1 compaction so
`/responses/compact` includes an established value in the existing HTTP
header. Capture `x-codex-turn-state` from the compact response into that
same lock, allowing pre-turn compact to establish the value that
subsequent sampling reuses.
V2 compact already uses the normal Responses HTTP/WebSocket path and
continues to share the same `OnceLock` without separate plumbing. The
first returned value wins for the logical turn.
## Test plan
Integration coverage verifies that:
- pre-turn v1 compact can establish state for the first sampling request
- inline v1 compact receives established state over HTTP
- inline v2 compact reuses established state over HTTP
- inline v2 compact reuses established state over WebSocket
CI validates the full change.
## Context
Turn state is scoped to one logical turn, but the WebSocket path
currently exchanges it through upgrade headers, which are scoped to the
physical connection. A connection may be reused across turns, so its
handshake cannot represent the turn lifecycle reliably.
## Change
Exchange turn state on each WebSocket response request instead:
- send an established value in `response.create.client_metadata`
- read the returned value from the existing `response.metadata` event
- retain the first value in the turn-scoped `ModelClientSession`
`OnceLock`
- start the next logical turn without state, even when it reuses the
same WebSocket connection
This gives WebSocket requests the same first-value-wins contract as the
existing HTTP path.
## Test plan
Integration coverage verifies that:
- WebSocket replays returned state on same-turn follow-ups
- later response metadata does not replace the first value
- state resets at the logical turn boundary without requiring a
reconnect
CI validates the full change.
## Stack
This is 1/2. #28002 builds on this request-scoped transport to carry
established state through compact requests.
## Summary
Add an explicit `user` or `developer` role to
`thread/realtime/appendText` and propagate it through the realtime input
queue into `conversation.item.create`. Older JSON clients that omit the
field continue to default to `user`.
This lets app-provided context such as memory retain developer authority
without bypassing app-server through a renderer-owned data channel. The
app-server schemas, API documentation, and focused protocol and
websocket coverage are updated with the new contract.
The Codex Apps consumer is tracked in
[openai/openai#1025261](https://github.com/openai/openai/pull/1025261).
## Summary
Adds a `RealtimeConversationArchitecture` option for realtime
conversation startup, with `realtimeapi` as the default and `avas` as an
opt-in architecture.
The AVAS path is limited to realtime v1 conversational WebRTC starts,
and WebRTC call creation appends `intent=quicksilver&architecture=avas`
to `/v1/realtime/calls`. The existing sideband websocket still joins by
`call_id`.
This also exposes the per-session architecture override through
app-server v2 `thread/realtime/start` params and updates the config
schema for `[realtime].architecture`.
## Validation
- `just fmt`
- `just write-config-schema`
- `just test -p codex-api sends_avas_session_call_query_params`
- `just test -p codex-core -E
'test(~conversation_webrtc_start_uses_avas_architecture_query)'`
- `just test -p codex-core -E 'test(realtime_loads_from_config_toml)'`
- `just test -p codex-app-server-protocol -E
'test(~serialize_thread_realtime_start) |
test(generated_ts_optional_nullable_fields_only_in_params)'`
- `just test -p codex-app-server -E
'test(realtime_webrtc_start_emits_sdp_notification)'`
## Why
First-party async traits should expose their `Send` contracts explicitly
without requiring `async_trait`. This completes the migration pattern
established in #27303 and #27304.
## What changed
- Replaced the remaining first-party `async_trait` traits with native
return-position `impl Future + Send` where statically dispatched and
explicit boxed `Send` futures where object safety is required.
- Kept implementations behavior-preserving, outlining existing async
bodies into inherent methods where that keeps the diff reviewable.
- Removed all direct first-party `async-trait` dependencies and the
workspace dependency declaration.
- Added a cargo-deny policy that permits `async-trait` only through the
remaining transitive wrapper crates.
- Updated `rand` from 0.8.5 to 0.8.6 to resolve RUSTSEC-2026-0097 and
keep the full cargo-deny check passing.
## Validation
- `just test -p codex-exec-server`: 216 passed, 2 skipped.
- `just test -p codex-model-provider`: 39 passed.
- `just test -p codex-core` and `just test`: changed tests passed;
remaining failures are environment-sensitive suites unrelated to this
migration.
- `cargo deny check`
- `just fix`
- `just fmt`
- `cargo shear`
- `just bazel-lock-check`
## Why
When a realtime session is open without an active frontend-model
handoff, completed Codex assistant messages are currently dropped. That
prevents the frontend model from hearing orchestrator preambles and
final responses produced by typed turns or other non-handoff work, which
makes the two models present as disconnected personas.
Active handoffs already forward each completed assistant message,
including preambles. This change leaves those V1 and V2 paths intact and
fills only the no-active-handoff gap.
## What changed
- Send standalone V1 assistant messages through
`conversation.handoff.append` with a stable synthetic handoff ID
- Send standalone V2 assistant messages as normal `[BACKEND]`
`conversation.item.create` message items, then enqueue `response.create`
so the frontend model responds
- Preserve the existing active V1 and V2 transport and completion
behavior
- Continue excluding user messages from realtime mirroring
- Skip empty output and cap each complete context injection, including
its V2 prefix, at 1,000 tokens
- Add end-to-end coverage for both wire formats, V2 response creation,
preambles, final responses, and truncation
## Test plan
- CI
## What
- Consume plaintext `output` from standalone search while retaining
optional `encrypted_output` parsing.
- Expose `web.run` to code mode and return search output to nested
JavaScript calls.
- Cover direct and code-mode standalone search paths with integration
tests.
## Why
`/v1/alpha/search` now returns plaintext output, which code mode needs
to consume standalone search results.
## Test plan
- `just test -p codex-api`
- `just test -p codex-web-search-extension`
- `just test -p codex-core code_mode_can_call_standalone_web_search`
- `just test -p codex-app-server
standalone_web_search_round_trips_output`
## Why
First-party backends can supply turn-scoped moderation metadata that
app-server clients need for client-side presentation. Exposing this as
an experimental typed notification lets opted-in clients consume it
without interpreting raw Responses API events.
## What changed
- forward `response.metadata.openai_chatgpt_moderation_metadata` from
Responses API SSE and WebSocket streams as turn-scoped moderation
metadata
- emit the experimental app-server v2 `turn/moderationMetadata`
notification with `{ threadId, turnId, metadata }`
- add app-server integration coverage for the typed moderation metadata
notification
## Testing
- `just test -p codex-core
build_ws_client_metadata_includes_window_lineage_and_turn_metadata`
- `just test -p codex-core` (fails locally: 46 failures and 1 timeout,
primarily missing `test_stdio_server` and shell snapshot timeouts)
- `just test -p codex-app-server-protocol`
- `just test -p codex-app-server
turn_moderation_metadata_emits_typed_notification_v2`
- `just test -p codex-app-server` (fails locally: 792 passed, 10 failed,
and 5 timed out; failures are in existing environment-sensitive tests,
primarily because nested macOS `sandbox-exec` is not permitted)
- `just write-app-server-schema --experimental --schema-root
/tmp/codex-app-server-schema-experimental`
## Why
The Responses websocket client no longer needs to send a follow-up
`response.processed` request after a turn response has already been
recorded. Keeping that extra acknowledgement path adds feature-gated
control flow and a second websocket request shape that no longer carries
useful behavior.
## What Changed
- Removed the `response.processed` websocket request type and sender.
- Removed the `responses_websocket_response_processed` feature flag and
schema entry.
- Removed turn and remote-compaction plumbing that only tracked response
IDs to send the acknowledgement.
- Removed tests that existed solely to cover the deleted feature path.
## Validation
- `just fix -p codex-core -p codex-api -p codex-features`
## Why
The standalone `/v1/alpha/search` request now requires a `model`, but
the `web.run` extension currently omits it.
Adds `model` to extension `ToolCall` invocation.
Follow-up to #23823.
## What changed
- Make `SearchRequest.model` required.
- Expose the effective per-turn model on extension tool calls and pass
it in standalone web-search requests.
- Assert the model is forwarded in the app-server round-trip test.
## Testing
- `just test -p codex-api -p codex-tools -p codex-web-search-extension
-p codex-memories-extension -p codex-goal-extension`
- `just test -p codex-core -E
'test(passes_turn_fields_and_scoped_turn_item_emitter_to_extension_call)'`
- `just test -p codex-app-server -E
'test(standalone_web_search_round_trips_encrypted_output)'`
## Why
Standalone image generation needs a typed `codex-api` client surface for
the Codex image proxy routes before the harness and model-facing tool
layers are wired in.
## What changed
- Added `ImagesClient` support for JSON `images/generations` and
`images/edits` requests.
- Added typed request and response shapes for generation, JSON edit
image URLs, image metadata, and base64 image outputs.
- Kept generation model slugs open-ended while requiring the generation
model field that the downstream endpoint expects.
- Exported the new client and image types from `codex-api`.
- Added coverage for generation and edit wire shapes, extra response
metadata that the client ignores, and malformed image responses missing
`data`.
## Validation
- `cargo test -p codex-api`
- `just fix -p codex-api`
- `just fmt`
- `git diff --check main`
## Why
Realtime v1 websocket sessions now expect a slightly different boundary
shape for text input, completed input transcripts, and connection
headers. Codex was still using the older shape, so some v1 text appends
could be rejected before the existing conversation flow could handle
them.
## What changed
- Send v1 user text items with `input_text` content
- Accept v1 turn-marked input transcript events as completed transcripts
- Add the v1 alpha header only for v1 realtime sessions
- Cover the outbound text shape, transcript parsing, and versioned
headers
## Test plan
- `cargo test -p codex-api endpoint::realtime_websocket::methods::tests`
- `cargo test -p codex-core quicksilver_alpha_header`
add standalone web search request types and a `codex-api` client ahead
of the extension-contributed search tool.
this adds typed commands/settings and opaque encrypted output handling
for the new standalone search flow. the endpoint types are close to
finalized but may still shift slightly as that API settles.
## Why
Remote compaction currently sends a unary `POST /responses/compact` and
waits for the full response before replacing history or emitting the
completed `ContextCompaction` item. Unlike normal `/responses` streaming
requests, this unary compact request had no timeout boundary. If the
backend accepts the request and then stalls before returning a body, the
existing request retry policy never sees a transport error, so the
compact turn can remain stuck after the started item with no completion
or actionable error.
That matches the reported hang shape in issues such as #18363, where
logs show `responses/compact` was posted but no corresponding compact
completion followed. A bounded request timeout gives the existing retry
policy a concrete timeout error to retry instead of letting the user sit
indefinitely on automatic context compaction.
## What
- Add a request timeout to legacy `/responses/compact` calls.
- Size that timeout from the provider stream idle timeout with a
conservative multiplier, so the default compact attempt gets 20 minutes
rather than the 5 minute stream idle window.
- Map API transport timeouts to a request timeout error instead of the
child-process timeout message.
## Testing
- Not run (per request; CI will cover).
## Why
Users and support need a single command that captures the local Codex
runtime, configuration, auth, terminal, network, and state shape without
asking the user to know which diagnostic depth to choose first. `codex
doctor` now runs the useful checks by default and makes the detailed
human output the default because the command is usually run when someone
already needs context.
The command also targets concrete support failure modes we have seen
while iterating on the design:
- update-target mismatches like #21956, where the installed package
manager target can differ from the running executable
- terminal and multiplexer issues that depend on `TERM`, tmux/zellij
state, color handling, and TTY metadata
- provider-specific HTTP/WebSocket connectivity, including ChatGPT
WebSocket handshakes and API-key/provider endpoint reachability
- local state/log SQLite integrity problems and large rollout
directories
- feedback reports that need an attached, redacted diagnostic snapshot
without asking the user to run a second command
## What Changed
- Adds `codex doctor` as a grouped CLI diagnostic report with default
detailed output and `--summary` for the compact view.
- Adds stable report sections for Environment, Configuration, Updates,
Connectivity, and Background Server, plus a top Notes block that
promotes anomalies such as available updates, large rollout directories,
optional MCP issues, and mixed auth signals.
- Adds runtime provenance, install consistency, bundled/system search
readiness, terminal/multiplexer metadata, `config.toml` parse status,
auth mode details, sandbox details, feature flag summaries, update
cache/latest-version state, app-server daemon state, SQLite integrity
checks, rollout statistics, and provider-aware network diagnostics.
- Adds ChatGPT WebSocket diagnostics that report the negotiated HTTP
upgrade as `HTTP 101 Switching Protocols` and include timeout, DNS,
auth, and provider context in detailed output.
- Makes reachability provider-aware: API-key OpenAI setups check the API
endpoint, ChatGPT auth checks the ChatGPT path, and custom/AWS/local
providers check configured HTTP endpoints when available.
- Adds structured, redacted JSON output where `checks` is keyed by check
id and `details` is a key/value object for support tooling.
- Integrates doctor with feedback uploads by attaching a best-effort
`codex-doctor-report.json` report and adding derived Sentry tags for
overall status and failing/warning checks.
- Updates the TUI feedback consent copy so users can see that the doctor
report is included when logs/diagnostics are uploaded.
- Updates the CLI bug issue template to ask reporters for `codex doctor
--json` and render pasted reports as JSON.
## Example Output
The examples below are sanitized from local smoke runs with `--no-color`
so the structure is reviewable in plain text.
### `codex doctor`
```text
Codex Doctor v0.0.0 · macos-aarch64
Notes
↑ updates 0.130.0 available (current 0.0.0, dismissed 0.128.0)
⚠rollouts 1,526 active files · 2.53 GB on disk
âš mcp MCP configuration has optional issues
âš auth mixed auth signals: ChatGPT login plus API key env var; HTTP reachability uses API-key mode
─────────────────────────────────────────────────────────────
Environment
✓ runtime local debug build
version 0.0.0
install method other
commit unknown
executable ~/code/codex.fcoury-doct…x-rs/target/debug/codex
✓ install consistent
context other
managed by npm: no · bun: no · package root —
PATH entries (2) ~/.local/share/mise/installs/node/24/bin/codex
~/.local/share/mise/shims/codex
✓ search ripgrep 15.1.0 (system, `rg`)
✓ terminal Ghostty 1.3.2-main-+b0f827665 · tmux 3.6a · TERM=xterm-256color
terminal Ghostty
TERM_PROGRAM ghostty
terminal version 1.3.2-main-+b0f827665
TERM xterm-256color
multiplexer tmux 3.6a
tmux extended-keys on
tmux allow-passthrough on
tmux set-clipboard on
✓ state databases healthy
CODEX_HOME ~/.codex (dir)
state DB ~/.codex/state_5.sqlite (file) · integrity ok
log DB ~/.codex/logs_2.sqlite (file) · integrity ok
active rollouts 1,526 files · 2.53 GB (avg 1.70 MB)
archived rollouts 8 files · 3.84 MB (avg 491.11 KB)
Configuration
✓ config loaded
model gpt-5.5 · openai
cwd ~/code/codex.fcoury-doctor/codex-rs
config.toml ~/.codex/config.toml
config.toml parse ok
MCP servers 1
feature flags 36 enabled · 7 overridden (full list with --all)
overrides code_mode, code_mode_only, memories, chronicle, goals, remote_control, prevent_idle_sleep
✓ auth auth is configured
auth storage mode File
auth file ~/.codex/auth.json
auth env vars present OPENAI_API_KEY
stored auth mode chatgpt
stored API key false
stored ChatGPT tokens true
stored agent identity false
⚠mcp MCP configuration has optional issues — Set the missing MCP env vars or disable the affected server.
configured servers 1
disabled servers 0
streamable_http servers 1
optional reachability openaiDeveloperDocs: https://developers.openai.com/mcp (HEAD connect failed; GET connect failed)
✓ sandbox restricted fs + restricted network · approval OnRequest
approval policy OnRequest
filesystem sandbox restricted
network sandbox restricted
Connectivity
✓ network network-related environment looks readable
✓ websocket connected (HTTP 101 Switching Protocols) · 15s timeout
model provider openai
provider name OpenAI
wire API responses
supports websockets true
connect timeout 15000 ms
auth mode chatgpt
endpoint wss://chatgpt.com/backend-api/<redacted>
DNS 2 IPv4, 2 IPv6, first IPv6
handshake result HTTP 101 Switching Protocols
✗ reachability one or more required provider endpoints are unreachable over HTTP — Check proxy, VPN, firewall, DNS, and custom CA configuration.
reachability mode API key auth
openai API https://api.openai.com/v1 connect failed (required)
Background Server
â—‹ app-server not running (ephemeral mode)
─────────────────────────────────────────────────────────────
11 ok · 1 idle · 4 notes · 1 warn · 1 fail failed
--summary compact output --all expand truncated lists
--json redacted report
```
### `codex doctor --summary`
```text
Codex Doctor v0.0.0 · macos-aarch64
Notes
↑ updates 0.130.0 available (current 0.0.0, dismissed 0.128.0)
⚠rollouts 1,526 active files · 2.53 GB on disk
âš mcp MCP configuration has optional issues
âš auth mixed auth signals: ChatGPT login plus API key env var; HTTP reachability uses API-key mode
─────────────────────────────────────────────────────────────
Environment
✓ runtime local debug build
✓ install consistent
✓ search ripgrep 15.1.0 (system, `rg`)
✓ terminal Ghostty 1.3.2-main-+b0f827665 · tmux 3.6a · TERM=xterm-256color
✓ state databases healthy
Configuration
✓ config loaded
✓ auth auth is configured
⚠mcp MCP configuration has optional issues — Set the missing MCP env vars or disable the affected server.
✓ sandbox restricted fs + restricted network · approval OnRequest
Updates
✓ updates update configuration is locally consistent
Connectivity
✓ network network-related environment looks readable
✓ websocket connected (HTTP 101 Switching Protocols) · 15s timeout
✗ reachability one or more required provider endpoints are unreachable over HTTP — Check proxy, VPN, firewall, DNS, and custom CA configuration.
Background Server
â—‹ app-server not running (ephemeral mode)
─────────────────────────────────────────────────────────────
11 ok · 1 idle · 4 notes · 1 warn · 1 fail failed
Run codex doctor without --summary for detailed diagnostics.
--all expand truncated lists --json redacted report
```
### `codex doctor --json` shape
```json
{
"schema_version": 1,
"overall_status": "fail",
"checks": {
"runtime.provenance": {
"id": "runtime.provenance",
"category": "Environment",
"status": "ok",
"summary": "local debug build",
"details": {
"version": "0.0.0",
"install method": "other",
"commit": "unknown"
}
},
"sandbox.helpers": {
"id": "sandbox.helpers",
"category": "Configuration",
"status": "ok",
"summary": "restricted fs + restricted network · approval OnRequest",
"details": {
"approval policy": "OnRequest",
"filesystem sandbox": "restricted",
"network sandbox": "restricted"
}
}
}
}
```
### `/feedback` new sentry attachment
<img width="938" height="798" alt="CleanShot 2026-05-13 at 15 36 14"
src="https://github.com/user-attachments/assets/715e62e0-d7b4-4fea-a35a-fd5d5d33c4c0"
/>
### New section in CLI issue template
<img width="1164" height="435" alt="CleanShot 2026-05-13 at 15 47 24"
src="https://github.com/user-attachments/assets/9081dc25-a28c-4afa-8ba1-e299c2b4031d"
/>
## How to Test
1. Run `cargo run --bin codex -- doctor --no-color`.
2. Confirm the detailed report is the default and includes promoted
Notes, grouped sections, terminal details, state DB integrity, rollout
stats, provider reachability, WebSocket diagnostics, and app-server
status.
3. Run `cargo run --bin codex -- doctor --summary --no-color`.
4. Confirm the compact view keeps the same sections and summary counts
but omits detailed key/value rows.
5. Run `cargo run --bin codex -- doctor --json`.
6. Confirm the output is redacted JSON, `checks` is an object keyed by
check id, and each check's `details` is a key/value object.
7. Preview the CLI bug issue template and confirm the `Codex doctor
report` field appears after the terminal field, asks for `codex doctor
--json`, and renders pasted output as JSON.
8. Start a feedback flow that includes logs.
9. Confirm the upload consent copy lists `codex-doctor-report.json`
alongside the log attachments.
Targeted tests:
- `cargo test -p codex-cli doctor`
- `cargo test -p codex-app-server
doctor_report_tags_summarize_status_counts`
- `cargo test -p codex-feedback`
- `cargo test -p codex-tui feedback_view`
- `just argument-comment-lint`
- `git diff --check`
## Summary
- Add a `response.processed` websocket request payload and sender for
Responses API websockets.
- Send `response.processed` from `try_run_sampling_request` after a
response completes, local turn processing succeeds, and the
session-owned feature flag is enabled.
- Add websocket coverage for both enabled and disabled feature-flag
behavior.
## Validation
- `just fmt`
- `cargo test -p codex-core response_processed`
- `cargo test -p codex-api responses_websocket`
- `cargo test -p codex-features
responses_websocket_response_processed_is_under_development`
- `git diff --check`
- `just fix -p codex-api -p codex-core -p codex-features`
- `git diff --check origin/main...HEAD`
## Summary
Related to
https://openai.slack.com/archives/C095U48JNL9/p1777537279707449
TLDR:
We update the meaning of session ids and thread ids:
* thread_id stays as now
* session_id become a shared id between every thread under a /root
thread (i.e. every sub-agent share the same session id)
This PR introduces an explicit `SessionId` and threads it through the
protocol/client boundary so `session_id` and `thread_id` can diverge
when they need to, while preserving compatibility for older serialized
`session_configured` events.
---------
Co-authored-by: Codex <noreply@openai.com>
## Why
We saw Responses websocket sessions recover only after a long quiet
period when the server had already logged the websocket as disconnected.
The normal connect path is already bounded by
`websocket_connect_timeout_ms`, but the first request send on an
established websocket reused only the receive-side idle timeout after
the write completed. If the socket write/pump stalls, the client can sit
in `ws_stream.send(...)` without reaching the existing receive timeout.
## Summary
Codex is repurposing `session` to mean a thread group, so the realtime
provider session id should no longer use `session_id` / `sessionId` in
Codex-facing protocol payloads. This PR renames that provider-specific
field to `realtime_session_id` / `realtimeSessionId` and intentionally
breaks clients that still send the old field names.
## What Changed
- Renamed realtime provider session fields in `ConversationStartParams`,
`RealtimeConversationStartedEvent`, and `RealtimeEvent::SessionUpdated`.
- Renamed app-server v2 realtime request and notification fields to
`realtimeSessionId`.
- Removed legacy serde aliases for `session_id` / `sessionId`; clients
must send the new names.
- Propagated the rename through core realtime startup, app-server
adapters, codex-api websocket handling, and TUI realtime state.
- Regenerated app-server protocol schema/TypeScript outputs and updated
app-server README examples.
- Kept upstream Realtime API concepts unchanged: provider `session.id`
parsing and `x-session-id` headers still use the upstream wire names.
## Testing
- CI is running on the latest pushed commit.
- Earlier local verification on this PR:
- `cargo test -p codex-protocol`
- `CODEX_SKIP_VENDORED_BWRAP=1 cargo test -p codex-core
realtime_conversation`
- `cargo test -p codex-app-server-protocol`
- `CODEX_SKIP_VENDORED_BWRAP=1 cargo test -p codex-app-server
realtime_conversation`
- attempted `CODEX_SKIP_VENDORED_BWRAP=1 cargo test -p codex-tui` (local
linker bus error while linking the test binary)
---------
Co-authored-by: Codex <noreply@openai.com>
## Why
Rollout traces need an identifier that can be used to correlate a Codex
inference with upstream Responses API, proxy, and engine logs. The
reduced trace model already exposed `upstream_request_id`, but it was
being populated from the Responses API `response.id`. That value is
useful for `previous_response_id` chaining, but it is not the transport
request id that upstream systems key on.
This PR separates those concepts so trace consumers can reliably answer
both questions:
- which Responses API response did this inference produce?
- which upstream request handled it?
## Structure
The change keeps the upstream request id at the same lifecycle level as
the provider stream:
- `codex-api` captures the `x-request-id` HTTP response header when the
SSE stream is created and exposes it on `ResponseStream`. Fixture and
websocket streams set the field to `None` because they do not have that
HTTP response header.
- `codex-core` carries that stream-level id into `InferenceTraceAttempt`
when recording terminal stream outcomes. Completed, failed, cancelled,
dropped-stream, and pre-response error paths all record the id when it
is available.
- `rollout-trace` now records both identifiers in raw terminal inference
events and response payloads: `response_id` for the Responses API
`response.id`, and `upstream_request_id` for `x-request-id`.
- The reducer stores both fields on `InferenceCall`. It also uses
`response_id` for `previous_response_id` conversation linking, which
removes the old accidental dependency on the misnamed
`upstream_request_id` field.
- Terminal inference reduction now consumes the full terminal payload
(`InferenceCompleted`, `InferenceFailed`, or `InferenceCancelled`) in
one place. That keeps status, partial payloads, response ids, and
upstream request ids consistent across success, failure, cancellation,
and late stream-mapper events.
## Why This Shape
`x-request-id` is a property of the HTTP/provider response envelope, not
an SSE event. Capturing it once in `codex-api` and plumbing it through
terminal trace recording avoids trying to infer the value from stream
contents, and it preserves the id even when the stream fails or is
cancelled after only partial output.
Keeping `response_id` separate from `upstream_request_id` also makes the
reduced trace model less surprising: `response_id` remains the
conversation-continuation id, while `upstream_request_id` is the
operational correlation id for upstream debugging.
## Validation
The PR updates trace and reducer coverage for:
- reading `x-request-id` from SSE response headers;
- storing the true upstream request id on completed inference calls;
- preserving upstream request ids for cancelled and late-cancelled
inference streams;
- keeping `previous_response_id` reconstruction tied to `response_id`
rather than transport request ids.
## Summary
Add first-class Amazon Bedrock Mantle provider support so Codex can keep
using its existing Responses API transport with OpenAI-compatible
AWS-hosted endpoints such as AOA/Mantle.
This is needed for the AWS launch path, where provider traffic should
authenticate with AWS credentials instead of OpenAI bearer credentials.
Requests are authenticated immediately before transport send, so SigV4
signs the final method, URL, headers, and body bytes that `reqwest` will
send.
## What Changed
- Added a new `codex-aws-auth` crate for loading AWS SDK config,
resolving credentials, and signing finalized HTTP requests with AWS
SigV4.
- Added a built-in `amazon-bedrock` provider that targets Bedrock Mantle
Responses endpoints, defaults to `us-east-1`, supports region/profile
overrides, disables WebSockets, and does not require OpenAI auth.
- Added Amazon Bedrock auth resolution in `codex-model-provider`: prefer
`AWS_BEARER_TOKEN_BEDROCK` when set, otherwise use AWS SDK credentials
and SigV4 signing.
- Added `AuthProvider::apply_auth` and `Request::prepare_body_for_send`
so request-signing providers can sign the exact outbound request after
JSON serialization/compression.
- Determine the region by taking the `aws.region` config first (required
for bearer token codepath), and fallback to SDK default region.
## Testing
Amazon Bedrock Mantle Responses paths:
- Built the local Codex binary with `cargo build`.
- Verified the custom proxy-backed `aws` provider using `env_key =
"AWS_BEARER_TOKEN_BEDROCK"` streamed raw `responses` output with
`response.output_text.delta`, `response.completed`, and `mantle-env-ok`.
- Verified a full `codex exec --profile aws` turn returned
`mantle-env-ok`.
- Confirmed the custom provider used the bearer env var, not AWS profile
auth: bogus `AWS_PROFILE` still passed, empty env var failed locally,
and malformed env var reached Mantle and failed with `401
invalid_api_key`.
- Verified built-in `amazon-bedrock` with `AWS_BEARER_TOKEN_BEDROCK` set
passed despite bogus AWS profiles, returning `amazon-bedrock-env-ok`.
- Verified built-in `amazon-bedrock` SDK/SigV4 auth passed with
`AWS_BEARER_TOKEN_BEDROCK` unset and temporary AWS session env
credentials, returning `amazon-bedrock-sdk-env-ok`.
## Why
This PR prepares the stack to enable Clippy await-holding lints that
were left disabled in #18178. The mechanical lock-scope cleanup is
handled separately; this PR is the documentation/configuration layer for
the remaining await-across-guard sites.
Without explicit annotations, reviewers and future maintainers cannot
tell whether an await-holding warning is a real concurrency smell or an
intentional serialization boundary.
## What changed
- Configures `clippy.toml` so `await_holding_invalid_type` also covers
`tokio::sync::{MutexGuard,RwLockReadGuard,RwLockWriteGuard}`.
- Adds targeted `#[expect(clippy::await_holding_invalid_type, reason =
...)]` annotations for intentional async guard lifetimes.
- Documents the main categories of intentional cases: active-turn state
transitions that must remain atomic, session-owned MCP manager accesses,
remote-control websocket serialization, JS REPL kernel/process
serialization, OAuth persistence, external bearer token refresh
serialization, and tests that intentionally serialize shared global or
session-owned state.
- For external bearer token refresh, documents the existing
serialization boundary: holding `cached_token` across the provider
command prevents concurrent cache misses from starting duplicate refresh
commands, and the current behavior is small enough that an explicit
expectation is easier to maintain than adding another synchronization
primitive.
## Verification
- `cargo clippy -p codex-login --all-targets`
- `cargo clippy -p codex-connectors --all-targets`
- `cargo clippy -p codex-core --all-targets`
- The follow-up PR #18698 enables `await_holding_invalid_type` and
`await_holding_lock` as workspace `deny` lints, so any undocumented
remaining offender will fail Clippy.
---
[//]: # (BEGIN SAPLING FOOTER)
Stack created with [Sapling](https://sapling-scm.com). Best reviewed
with [ReviewStack](https://reviewstack.dev/openai/codex/pull/18423).
* #18698
* __->__ #18423
## Summary
- Track how many realtime transcript entries have already been attached
to a background-agent handoff.
- Attach only entries added since the previous handoff as
`<transcript_delta>` instead of resending the accumulated transcript
snapshot.
- Update the realtime integration test so the second delegation carries
only the second transcript delta.
## Validation
- `just fmt`
- `cargo test -p codex-api`
- `cargo test -p codex-core
inbound_handoff_request_sends_transcript_delta_after_each_handoff`
- `cargo build -p codex-cli -p codex-app-server`
## Manual testing
Built local debug binaries at:
- `codex-rs/target/debug/codex`
- `codex-rs/target/debug/codex-app-server`
## Summary
Adds a second realtime v2 function tool, `remain_silent`, so the
realtime model has an explicit non-speaking action when the
collaboration mode or latest context says it should not answer aloud.
This is stacked on #18597.
## Design
- Advertise `remain_silent` alongside `background_agent` in realtime v2
conversational sessions.
- Parse `remain_silent` function calls into a typed
`RealtimeEvent::NoopRequested` event.
- Have core answer that function call with an empty
`function_call_output` and deliberately avoid `response.create`, so no
follow-up realtime response is requested.
- Keep the event hidden from app-server/TUI surfaces; it is operational
plumbing, not user-visible conversation content.
## Summary
This PR aims to improve integration between the realtime model and the
codex agent by sharing more context with each other. In particular, we
now share full realtime conversation transcript deltas in addition to
the delegation message.
realtime_conversation.rs now turns a handoff into:
```
<realtime_delegation>
<input>...</input>
<transcript_delta>...</transcript_delta>
</realtime_delegation>
```
## Implementation notes
The transcript is accumulated in the realtime websocket layer as parsed
realtime events arrive. When a background-agent handoff is requested,
the current transcript snapshot is copied onto the handoff event and
then serialized by `realtime_conversation.rs` into the hidden realtime
delegation envelope that Codex receives as user-turn context.
For Realtime V2, the session now explicitly enables input audio
transcription, and the parser handles the relevant input/output
transcript completion events so the snapshot includes both user speech
and realtime model responses. The delegation `<input>` remains the
actual handoff request, while `<transcript_delta>` carries the
surrounding conversation history for context.
Reviewers should note that the transcript payload is intended for Codex
context sharing, not UI rendering. The realtime delegation envelope
should stay hidden from the user-facing transcript surface, while still
being included in the background-agent turn so Codex can answer with the
same conversational context the realtime model had.
This is the first mechanical cleanup in a stack whose higher-level goal
is to enable Clippy coverage for async guards held across `.await`
points.
The follow-up commits enable Clippy's
[`await_holding_lock`](https://rust-lang.github.io/rust-clippy/master/index.html#await_holding_lock)
lint and the configurable
[`await_holding_invalid_type`](https://rust-lang.github.io/rust-clippy/master/index.html#await_holding_invalid_type)
lint for Tokio guard types. This PR handles the cases where the
underlying issue is not protected shared mutable state, but a
`tokio::sync::mpsc::UnboundedReceiver` wrapped in `Arc<Mutex<_>>` so
cloned owners can call `recv().await`.
Using a mutex for that shape forces the receiver lock guard to live
across `.await`. Switching these paths to `async-channel` gives us
cloneable `Receiver`s, so each owner can hold a receiver handle directly
and await messages without an async mutex guard.
## What changed
- In `codex-rs/code-mode`, replace the turn-message
`mpsc::UnboundedSender`/`UnboundedReceiver` plus `Arc<Mutex<Receiver>>`
with `async_channel::Sender`/`Receiver`.
- In `codex-rs/codex-api`, replace the realtime websocket event receiver
with an `async_channel::Receiver`, allowing `RealtimeWebsocketEvents`
clones to receive without locking.
- Add `async-channel` as a dependency for `codex-code-mode` and
`codex-api`, and update `Cargo.lock`.
## Verification
- The split stack was verified at the final lint-enabling head with
`just clippy`.
## Summary
- Add `codex-model-provider` as the runtime home for model-provider
behavior that does not belong in `codex-core`, `codex-login`, or
`codex-api`.
- The new crate wraps configured `ModelProviderInfo` in a
`ModelProvider` trait object that can resolve the API provider config,
provider-scoped auth manager, and request auth provider for each call.
- This centralizes provider auth behavior in one place today, and gives
us an extension point for future provider-specific auth, model listing,
request setup, and related runtime behavior.
## Tests
Ran tests manually to make sure that provider auth under different
configs still work as expected.
---------
Co-authored-by: pakrym-oai <pakrym@openai.com>
## Summary
- set the realtime v2 server VAD silence delay to 500ms
- update the default realtime 1.5 backend prompt to the v4 text
- keep the session payload and prompt rendering tests aligned with those
changes
## Why
- the VAD change gives the voice path a longer pause before ending the
user's turn
- the prompt change makes the default bundled realtime prompt match the
current v4 content
## Validation
- `cargo +1.93.0 test -p codex-core realtime_prompt --manifest-path
/tmp/codex-realtime-v2-vad-prompt-v4/codex-rs/Cargo.toml`
- `CARGO_TARGET_DIR=/tmp/codex-pr-v4-target cargo +1.93.0 test -p
codex-api
realtime_v2_session_update_includes_background_agent_tool_and_handoff_output_item
--manifest-path
/tmp/codex-realtime-v2-vad-prompt-v4/codex-rs/Cargo.toml`
- `CARGO_TARGET_DIR=/tmp/codex-pr-v4-target cargo +1.93.0 test -p
codex-app-server --test all
'suite::v2::realtime_conversation::realtime_webrtc_start_emits_sdp_notification'
--manifest-path /tmp/codex-realtime-v2-vad-prompt-v4/codex-rs/Cargo.toml
-- --exact`
## Summary
- wrap realtime startup context in
`<startup_context>...</startup_context>` tags
- prefix V2 mirrored user text and relayed backend text with `[USER]` /
`[BACKEND]`
- remove the V2 progress suffix and replace the final V2 handoff output
with a short completion acknowledgement while preserving the existing V1
wrapper
## Testing
- cargo test -p codex-api
realtime_v2_session_update_includes_background_agent_tool_and_handoff_output_item
-- --exact
- cargo test -p codex-app-server webrtc_v2_background_agent_
- cargo test -p codex-app-server webrtc_v2_text_input_is_
- cargo test -p codex-core conversation_user_text_turn_is_
## Summary
- Move auth header construction into the
`AuthProvider::add_auth_headers` contract.
- Inline `CoreAuthProvider` header mutation in its provider impl and
remove the shared header-map helper.
- Update HTTP, websocket, file upload, sideband websocket, and test auth
callsites to use the provider method.
- Add direct coverage for `CoreAuthProvider` auth header mutation.
## Testing
- `just fmt`
- `cargo test -p codex-api`
- `cargo test -p codex-core
client::tests::auth_request_telemetry_context_tracks_attached_auth_and_retry_phase`
- `cargo test -p codex-core` failed on unrelated/reproducible
`tools::handlers::multi_agents::tests::multi_agent_v2_followup_task_interrupts_busy_child_without_losing_message`
---------
Co-authored-by: Celia Chen <celia@openai.com>
- Add trace-only wire logging for realtime websocket request/event text
payloads and the WebRTC call SDP request.
- Gate raw realtime logs behind
`RUST_LOG=codex_api::realtime_websocket::wire=trace` so normal logs stay
quiet.
---------
Co-authored-by: Codex <noreply@openai.com>
- Add outputModality to thread/realtime/start and wire text/audio output
selection through app-server, core, API, and TUI.\n- Rename the realtime
transcript delta notification and add a separate transcript done
notification that forwards final text from item done without correlating
it with deltas.
# External (non-OpenAI) Pull Request Requirements
Before opening this Pull Request, please read the dedicated
"Contributing" markdown file or your PR may be closed:
https://github.com/openai/codex/blob/main/docs/contributing.md
If your PR conforms to our contribution guidelines, replace this text
with a detailed and high quality description of your changes.
Include a link to a bug report or enhancement request.
Builds on #17264.
- queues Realtime V2 `response.create` while an active response is open,
then flushes it after `response.done` or `response.cancelled`
- requests `response.create` after background agent final output and
steering acknowledgements
- adds app-server integration coverage for all `response.create` paths
Validation:
- `just fmt`
- `cargo check -p codex-app-server --tests`
- `git diff --check`
- CI green
---------
Co-authored-by: Codex <noreply@openai.com>
Rename the Realtime V2 delegation tool and parser constant to
background_agent, and update the tool description and fixtures to match.
Validation: just fmt; cargo check -p codex-api; git diff --check
---------
Co-authored-by: Codex <noreply@openai.com>