Raise the Matrix adapter default chunk size from 4,000 to 16,000
characters and allow overrides via config.yaml or MATRIX_MAX_MESSAGE_LENGTH.
Fixes#53026
- Replace outdated brief hint with comprehensive, tested rules
- Document exactly what renders on Matrix and what does not
- Add critical linebreak semantics (two trailing spaces = soft break)
- Add link formatting guidance (descriptive text, never bare URLs)
Moonshot/Kimi's tool-parameter validator rejects object schemas that omit
the required key with HTTP 400 ("required must be an array"), even though
standard JSON Schema allows omitting it. Any Hermes tool with zero required
parameters (browser_back, delegate_task, project_list, several MCP list_*
tools, etc.) tripped this when routed to a Moonshot endpoint.
Add a Rule 4 to the sanitizer: every object schema gets a required array,
defaulting to []. Existing lists are preserved but pruned to names that
actually appear in properties (dangling entries are also rejected upstream).
Applied recursively to nested object schemas and to the coerced/empty
top-level fallback.
Fixes#66835
The staleness fix (f9b1fd799) bolted two wall-clock dicts (_changed_at,
_pulled_at) onto a client that already scattered per-document state
across six parallel dicts (_files, _push_diagnostics, _pull_diagnostics,
_published, _published_version, _first_push_seen) — eight maps kept in
sync by hand.
Collapse all of it into one _DocState per path, and use the LSP document
version as the freshness token instead of clocks:
- didChange bumps doc.version; stored push/pull results carry the
version they describe (push_version from the server's echoed version,
or the current version at receipt for servers that don't echo one;
pull_version captured at request send so an in-flight pull that a
didChange races past is stale on arrival).
- fresh == tag >= version. Invalidation is implicit in the bump — no
store-clearing, no clock comparisons, no race windows.
- _has_fresh_push/_has_fresh_pull helpers dissolve into two one-line
_DocState methods; diagnostics_for(fresh_only=True) becomes a
three-liner.
Semantics are unchanged from f9b1fd799 (same tests pass, one test
updated off private internals); net -15 lines.
Slow language servers (tsserver on large projects especially) publish
diagnostics long after an edit. The client's wait/report path had three
holes that together surfaced the PREVIOUS edit's errors as if they were
current ("ghost diagnostics"), sending the agent chasing errors it had
already fixed:
1. open_file only cleared the diagnostic stores on first open — on the
didChange path (every subsequent edit) stale push/pull entries
survived.
2. wait_for_diagnostics' predicates were satisfiable by that leftover
state (`path in _published`, `path in _pull_diagnostics`), so the
"wait" often returned instantly with old data.
3. diagnostics_for merged the stale push store unconditionally, so even
a fresh clean pull got the old error merged back in.
Fix: anchor freshness on a per-file didChange timestamp.
- Pull results record their request send-time and are dropped when a
didChange raced past them; the pull store is invalidated on every
change, not just first open.
- wait_for_diagnostics now returns bool (fresh data vs timeout), only
counts pushes published at/after the change (and version >= ours when
the server echoes versions), and accepts an explicit timeout — the
user's lsp.wait_timeout config now actually controls the inner wait
budget instead of only the outer thread-join.
- diagnostics_for(fresh_only=True) excludes stores that predate the
latest change; all manager report paths use it.
- On timeout the manager returns [] ("no data") instead of stale
state, logs a WARNING via eventlog, and does NOT mark the server
broken — slow is not dead.
- seed-on-first-push no longer marks the file published, so the TS
seed push can't satisfy a waiter.
Tests: new "stale" and "slow_push" mock-server scripts model the slow
tsserver, plus client- and service-level regression tests
(tests/agent/lsp/test_stale_diagnostics.py).
The cherry-picked resolve_provider_full 0.5 step returned a generic
openai_chat ProviderDef for ANY registry ID, hijacking single-entry
alias rewrites like copilot -> github-copilot away from their overlay
transports (test_explicit_copilot_switch_uses_selected_model_api_mode
regression). Restrict the early return to names where MULTIPLE registry
providers collapse to one canonical (kimi-coding + kimi-coding-cn +
kimi + moonshot -> kimi-for-coding) — the only case where alias
resolution actually loses information.
Also maps Almurat123's contributor email.
Both providers share the same models.dev ID (kimi-for-coding) but
have different API keys (KIMI_API_KEY vs KIMI_CN_API_KEY) and base
URLs (moonshot.ai vs moonshot.cn). The /model picker was only
showing one because the dedup key was mdev_id alone.
Changes in list_authenticated_providers():
- Resolve canonical provider profile name and skip alias hermes_ids
(e.g. "kimi", "moonshot" → "kimi-coding") so only canonical
entries are processed.
- Deduplicate by slug (hermes_id) instead of mdev_id so distinct
profiles sharing a models.dev ID (kimi-coding vs kimi-coding-cn)
both appear.
- Prefer PROVIDER_REGISTRY name for the display label so the CN
variant shows "Kimi / Moonshot (China)" instead of the generic
models.dev name.
Adds test coverage for all three key scenarios:
- Only KIMI_CN_API_KEY set → only kimi-coding-cn appears
- Only KIMI_API_KEY set → only kimi-coding appears
- Both keys set → both providers appear, aliases not duplicated
Closes#10526
A single Kimi credential surfaced two rows in the `/model` picker — the
bare alias `kimi` (PROVIDER_TO_MODELS_DEV pass) and the canonical
`kimi-coding` (CANONICAL_PROVIDERS cross-check, section 2b) — both backed
by the same `kimi-for-coding` provider.
`kimi`, `moonshot` and the canonical `kimi-coding` all map to one
models.dev id (`kimi-for-coding`). The seen_mdev_ids guard collapses them
to the first key in section 1, but that key is the bare alias, so 2b
re-emits the canonical name as a second row.
Emit the row under the canonical Hermes slug instead: resolve the alias
via _PROVIDER_ALIASES (`kimi` -> `kimi-coding`) before appending, so 2b's
seen_slugs check collapses the pair. This matches the picker's other alias
rows (copilot, gemini) and the overlay slug-resolution contract, and keeps
the surviving row resolvable to the real provider. A defensive seen_slugs
guard prevents emitting a duplicate canonical row.
Distinct providers keep their own row: `kimi-coding-cn` has its own
KIMI_CN_API_KEY and is still emitted by section 2b.
Regression tests assert the single-key case yields one `kimi-coding` row
(fails on clean main, which shows both `kimi` and `kimi-coding`) and that
the China endpoint is preserved.
Fixes#49439
The display_history_prefix calculation used by session.resume's
_live_session_payload was display_history[:len(display) - len(raw)].
This assumed the model (repaired) history is always a suffix of the
display history — i.e., repair_message_sequence only removes messages
from the tail. That assumption broke when verification candidates
(finish_reason=verification_required) were persisted to state.db (#65919):
- repair collapses consecutive assistant messages, removing the
verification candidate from the MODEL history
- the candidate stays in the DISPLAY history (it's real persisted content)
- the length gap (gap = len(display) - len(raw)) counts BOTH ancestor
messages AND repair-removed tip messages
- the prefix = display[:gap] grabs the first N display messages, which
are tip messages (not ancestors) when there are no compression ancestors
- _live_session_payload concatenates prefix + model_history, duplicating
the first N messages
On session 20260720_110036_a33889 (8 verification candidates), this
duplicated the first 8 messages in every warm-cache session.activate
response, producing visible duplicate user messages in the desktop.
Fix: add SessionDB.get_ancestor_display_prefix() which returns ONLY
genuine ancestor messages (rows where session_id != tip_session_id),
identified at the row level before _rows_to_conversation strips
session_id. Both resume paths (eager + deferred) now use this instead
of the length-slice heuristic.
Tests:
- test_get_ancestor_display_prefix_single_session_returns_empty
- test_get_ancestor_display_prefix_returns_ancestor_only_messages
- Updated 12 mock DBs across test_protocol.py + test_tui_gateway_server.py
- 848 passed (run_tests.sh), 0 regressions
Add a "keep computer awake" toggle (Claude-style) for long/overnight runs:
the renderer owns the device-local pref and mirrors it to the Electron main
process, which holds a single `powerSaveBlocker('prevent-app-suspension')` —
the same authority split as translucency. Surfaced as a statusbar quick-toggle
and a Settings row.
Introduce a dedicated System settings section (device-local machine prefs) and
de-crowd Appearance by moving Window Translucency + UI Scale into it (both are
main-process/window-owned, not visual theme). Give Haptic Feedback its first
Settings home there too (the titlebar quick-toggle stays). Relocated i18n copy
into `settings.system` across en/zh/zh-hant/ja; wired the `system` route into
the SettingsView union + allowlist + nav.
LiveDuration returned a bare string with proportional digits, so the
statusbar reflowed every second as the timer ticked. Extract a shared
StableText component that renders each character in its own 1ch-wide
cell, preventing any digit from shifting the layout — works with the
proportional sans font, no need for font-mono.
Both LiveDuration (statusbar session/running timers) and
ActivityTimerText (tool activity timers) now use StableText, dropping
the font-mono + tabular-nums workaround from the latter.
Also renames statusbar.ts → statusbar.tsx since LiveDuration now
returns JSX.
Transplant of PR #26848 onto the plugin adapter path
(plugins/platforms/feishu/adapter.py — the original PR targeted the
since-removed gateway/platforms/feishu.py).
``send`` classifies each chunk independently, so chunk 1 of a long
markdown reply (often plain prose) went out as msg_type=text while
later chunks rendered as post — literal **bold**/## heading markers
in the Feishu client. Lock the decision at the whole-message level:
compute prefer_post once from the full formatted message and pass it
to _build_outbound_payload per chunk.
The original PR's per-chunk table exemption is intentionally dropped:
tables now route through post/md (issue #52786 cluster fix), so the
exemption would reintroduce the raw-table downgrade.
Co-authored-by: Hermes Agent <hermes@nousresearch.com>
TestPtyWebSocket's two python-resolution tests and the sibling fixture in
test_tui_resume_flow.py hard-linked sys.executable into pytest's tmp_path.
On machines where /tmp is a different filesystem than the venv (tmpfs vs
disk home) os.link raises OSError EXDEV and the tests fail before reaching
any assertion. copy2 preserves the executable bit and works across devices.
Follow-up to #67640: move the agent.file_safety import to module top
(stdlib-only, no circular-import concern), replace the over-broad
except Exception + logger.warning with an import sentinel plus
logger.exception so a guard failure is debuggable instead of silently
swallowed. Adds fail-closed tests asserting the diagnostic is emitted.
c253b0738 added clear_model_endpoint_credentials() to scrub an old endpoint's
inline secret (api_key, the legacy `api` alias, api_mode) when the web UI
switches the main model to a different provider. But _apply_main_model_assignment
gates the key-scrub path on model_cfg["api_key"] being truthy, so when the stale
secret lives only under the legacy `api` alias (no api_key), a provider switch
never clears it — the secret survives in config.yaml.
model.api is a live credential read path (_resolve_openrouter_runtime reads
`for k in ("api_key", "api")`), so the old endpoint's key contaminates a later
custom resolution — the exact harm clear_model_endpoint_credentials documents.
The sibling persistence sites (the gateway model-picker paths and the aux-slot
path) call the helper unconditionally on a non-custom switch and already scrub
`api`; only this caller had the api_key-only gate.
Widen the guard to fire on either field. The same-provider re-pick and
explicit-new-key paths are unchanged. Adds the api-alias case to the assignment
test (it fails without the fix).
Route table-shaped Markdown through the existing post/md builder so current Feishu clients render tables instead of showing source markup.
Add a direct payload regression test that checks the post message type and decoded md element.
Resolves issue #52786 (duplicate of #23938):
The `_build_outbound_payload` shortcut forced any message containing a
pipe table to ``msg_type=text``. Feishu readers then rendered the raw
pipe-and-dash source instead of a table. Empirically current Feishu
clients render markdown tables inside ``post``-type ``md`` elements
natively, so the downgrade branch had to go.
Two changes:
1. ``_MARKDOWN_HINT_RE`` now also matches a pipe-table header+separator
pair, so a table-only message is recognised as "has markdown" and
takes the ``post`` path. All previously recognised hints (headings,
lists, code, bold/italic/strike/underline, links, blockquotes, hr)
still match — verified by the existing 205 test_feishu.py cases plus
the new regression tests below.
2. ``_build_outbound_payload`` no longer special-cases `_MARKDOWN_TABLE_RE`
before the hint check. The hint check now routes table content to
`_build_markdown_post_payload`, which is the same path any other
markdown structure takes.
``_MARKDOWN_TABLE_RE`` itself is retained as a module-level constant for
external callers (import-path-sensitive tests, third-party consumers of
the adapter module) and continues to work for its existing uses.
Tests
-----
New: ``tests/gateway/test_feishu_table_markdown.py`` — four regression
tests:
- ``test_markdown_table_uses_post_not_text`` — pure-table content
reaches ``post`` (issue #52786 scenario).
- ``test_table_combined_with_other_markdown_does_not_downgrade`` —
prose + table + prose message keeps its surrounding markdown.
- ``test_existing_markdown_heading_still_uses_post`` — sanity guard:
the heading path is unchanged.
- ``test_plain_text_without_markdown_still_uses_text`` — negative
control: pure prose still goes to ``text``.
Verification
------------
``pytest tests/gateway/test_feishu.py
tests/gateway/test_feishu_table_markdown.py`` passes 209/209 (205
existing + 4 new), three consecutive runs.
Rollback
--------
``git reset --hard 44ddc552f5``
restores upstream main without the new test file.
test_deepseek_still_strips_signed_thinking passed model='k3' with the
DeepSeek base URL — that only held because bare 'k3' wasn't classified
as Kimi family yet. With k3 now correctly classified, the kimi-family
model-name path (deliberate: proxied endpoints preserve thinking,
#13848/#17057) keeps the blocks. Use a real DeepSeek slug for the
DeepSeek behavior, and add an explicit invariant test that Kimi-family
slugs (named and bare) keep thinking on foreign gateway hostnames.
Follow-up widening for salvaged PRs #67115, #67685, #67620:
- _PROVIDER_MODELS: add kimi-k3 atop kimi-coding / moonshot / opencode-go
curated lists (kimi-coding-cn covered by cherry-picked #67620)
- setup.py _DEFAULT_PROVIDER_MODELS: kimi-k3 for kimi-coding(-cn) + opencode-go
- model_metadata: align DEFAULT_CONTEXT_LENGTHS kimi-k3 entry to 1,048,576
(matches endpoint-scoped override, models.dev, and OpenRouter live metadata)
- anthropic_adapter: classify the bare Coding Plan slug 'k3' (and k3.x/k3-*)
as Kimi family so adaptive thinking applies on proxied endpoints
- moonshot_schema: is_moonshot_model matches bare 'k3' so tool-schema
sanitization runs on the chat-completions path
- contributor mappings for githubespresso407, datachainsystems, Punyko8
Tests: 582 passed across 11 targeted files; hermetic E2E verifies picker
order (kimi-k3 first), no dupes, and 1M context resolution.
Moonshot China (api.moonshot.cn) has rolled out kimi-k3 to all
CN-endpoint keys, plus the new kimi-k2.7-code / -highspeed variants.
The kimi-coding-cn curated picker whitelist was still on the k2.6/k2.5
era list, so users holding CN keys could not select any of the new
models from 'hermes model' or the gateway /model picker even though
the underlying provider + endpoint already serve them.
Verified against a live CN key:
GET https://api.moonshot.cn/v1/models
-> [kimi-k3, kimi-k2.7-code, kimi-k2.7-code-highspeed, kimi-k2.6,
kimi-k2.5, moonshot-v1-* ...]
No provider-code changes; pure whitelist addition mirroring the
existing kimi-coding (global) list which already tracks k2.7-code.
Kimi K3 ships with a 1M-token context window (verified against
platform.kimi.ai/docs/overview) but was falling through to the generic
'kimi': 262144 catch-all. Added 'kimi-k3': 1_000_000 before the catch-all
so longest-key-first substring matching resolves K3 to 1M while older
Kimi models still hit the 256K default.
Added matching test_kimi_k3_context_1m test covering native,
vendor-prefixed (kimi/, moonshotai/), and older model fallback.
Kimi Coding serves K3 under the bare slug 'k3', but users can also
configure or select the public-facing aliases 'kimi-k3' and
'kimi-k3-cot'. The endpoint-scoped 1M context window was only keyed
on the bare 'k3' slug, so selecting 'kimi-k3' fell through to the
generic 'kimi' catch-all (262k).
Extend the guard in _endpoint_scoped_context_length to also recognize
'kimi-k3' and 'kimi-k3-cot', while keeping the endpoint check that
limits the 1M value to https://api.kimi.com/coding (legacy Moonshot
endpoints still fall back to 262k). Update the existing test to cover
all three aliases.
Fixes: context window limited to 262k when using kimi-k3 via kimi-coding.
The boot-failure screenshot showed a progress bar because of two bugs:
1. waitForBootFailure matched on "Let's get you setup" (the onboarding
header that mounts from frame 1 during normal boot), so the screenshot
fired at ~86% progress while the Preparing component's progress bar was
still painted.
2. The Preparing component kept rendering the progress bar even after
boot.error was set — it just turned the bar red and appended the error
text below it.
Fixes:
- Preparing bails out (returns null) when boot.error is set, so
BootFailureOverlay (z-1400) owns the screen exclusively.
- applyDesktopBootProgress no longer clobbers a previously-set boot.error
when a late progress event arrives with error: null — failDesktopBoot is
terminal for the boot cycle.
- waitForBootFailure guards against progress bars being visible and matches
on actual failure signals (error toast, Retry/Repair buttons), not the
onboarding header.
- setupDeadBackend now accepts { fakeError: true } which injects
HERMES_DESKTOP_BOOT_FAKE_ERROR to trigger a real boot failure — the
previous dead-provider fixture never actually caused a boot failure
(hermes serve starts fine; the dead endpoint only matters at chat time).
- boot-failure.spec.ts updated to use { fakeError: true }.
Verified: e2e test passes with 0 progress bars in the DOM at screenshot
time (confirmed via DOM inspection), 16/16 vitest tests pass, typecheck
clean.
Screenshots were catching the app mid-boot at ~92% with the onboarding
Preparing progress bar still visible. waitForAppReady checked for the
composer (textarea/contenteditable) with state:'visible', but Playwright
considers an element visible even when a z-1300+ fixed overlay covers it
(non-zero bounding box, not display:none).
Now waits for the composer to be attached, then polls
document.elementFromPoint at viewport center — if the topmost element is
inside a position:fixed inset:0 overlay, the app isn't ready yet.
Screenshots were catching the CONNECTING overlay and onboarding Preparing
loading bar mid-transition because the wait helpers fire on text content
while visual state lags behind. Fix at the source via reduced motion:
- playwright.config.ts: emulate prefers-reduced-motion: reduce
- styles.css: blanket reduced-motion rule kills all CSS animations/transitions
- gateway-connecting-overlay.tsx: skip JS setTimeout exit choreography
(text-out 360ms + hold 300ms + overlay fade 520ms) — jump straight to gone
- decode-text.tsx: skip scramble interval, render resolved text immediately
The summary step previously linked to the run's /artifacts page generically.
Now it links the specific artifact download URLs from each upload step's
artifact-url output. Reordered the steps so uploads run before the summary
(since the summary needs their outputs), and added id: to each upload step.
Each artifact gets its own clickable link:
- playwright-test-results (all screenshots + traces)
- playwright-report (interactive HTML report)
- visual-diffs (just the diffed screenshots, PR-only)
The check script ran: typecheck && test && test:desktop:all && build
test:desktop:all calls ensurePackagedApp() → npm run pack, which itself
runs npm run build (vite + electron-main + preload + stage-native-deps)
before electron-builder --dir. The trailing npm run build was rebuilding
the exact same dist/ output a second time. electron-builder --dir reads
dist/ as input and doesn't mutate it, so nothing between the two builds
invalidates the first one.
On the CI linux runner this saves the vite+bundle build (~5s) on every
js-tests run. The postbuild assert-dist-built.mjs still runs as part of
pack's build step.
The visual diff summary told reviewers to 'download and open to compare'
instead of linking to the actual run's artifacts page. Now links directly
to the run's /artifacts page and lists both artifacts with descriptions.
Also, screenshots that matched their baselines were never written to
test-results/, so the artifact only contained screenshots that diffed.
Now the actual screenshot is always written to the output dir regardless
of match/diff, so CI artifacts include every screenshot.
Adds a full desktop Playwright E2E suite that launches the Electron app
against a mock inference server, exercising the full boot chain:
electron -> hermes serve -> mock provider -> renderer
Includes:
- Mock OpenAI-compatible inference server (mock-server.ts)
- Shared fixtures with sandbox isolation (credentials, HERMES_HOME,
userData, fixed window-state.json for reproducible screenshots)
- Test specs: boot, boot-failure, onboarding, mock-backend-setup, chat,
and packaged-app launch
- Visual regression: expectVisualSnapshot() wraps toHaveScreenshot in
try/catch so diffs are reported without failing the test suite
- CI workflow: xvfb at 1280x1024, baseline cache from main
(--update-snapshots on main, compare on PRs), step summary table with
diff/actual/expected image links, dedicated visual-diffs artifact
- dev:mock script for local fake-provider development
- test:e2e:visual + test:e2e:update-snapshots scripts using cage
- .gitignore: *-snapshots/ (baselines cached in CI, not committed)
- Type gatewayState in session store
- Electron main.ts: force-show window for e2e test workers
- tsconfig: include e2e test types
- nix/devShell.nix: add cage for headless visual testing on tiling WMs
Adds a Windows E2E workflow that downloads the built installer, runs it via AutoHotkey automation (install-hermes-desktop.ahk), and launches the installed app. Includes button reference screenshots for the AHK image matching.
Improves managed_uv.py path resolution for winget/uv installs and updates install.ps1 accordingly. Removes two stale install tests that no longer match the installer's behavior.
* fix(desktop): preserve interim assistant text wiped at message.complete
When the agent emits interim text (commentary alongside tool calls, or the
attempted final answer before a verify-on-stop nudge), all UI surfaces
streamed it live but then wiped it at message.complete — keeping only the
final response. The user saw text appear during inference, then disappear.
This is the complete fix across all three layers: agent core, gateway
transport, and all UI surfaces (desktop + Ink TUI).
The verify-on-stop and pre_verify paths flagged the assistant's attempted
final answer as _verification_stop_synthetic, suppressing it from both
state.db and the UI. The user only saw the terse post-verification reply.
Now the assistant response is real content: it's persisted to state.db and
emitted as an interim message via _emit_interim_assistant_message(force_display=True)
before the verification loop runs. Only the synthetic nudge messages keep
the synthetic flags. The turn finalizer drops nudges from live history and
compares content (not just role) to avoid duplicating a published candidate.
Message sequence repair collapses verification candidates in the
consecutive-assistant merge.
Wire agent.interim_assistant_callback both at construction (_agent_cbs())
and per-turn (defense-in-depth), emitting a new message.interim event with
{text, already_streamed}. Gated on display.interim_assistant_messages
(default true). Cleared in the finally block so a stale closure can't
fire on a later turn.
Add message.interim to the GatewayEventName union (apps/shared) and a
typed payload to the TUI's GatewayEvent discriminated union.
The TUI already had the segment-anchoring machinery (flushStreamingSegment +
finalTail) but had no handler for message.interim. Added recordInterimMessage
+ interimBoundaryIndex to seal segments mid-turn, and updated
recordMessageComplete to only dedupe segments after the interim boundary.
Replaced the fragile sealed-set approach with a proper interimBoundaryPending
state flag on ClientSessionState. finalizeInterimAssistantMessage finalizes
the streaming bubble in place (or creates a standalone one), rotates the
stream ID so next deltas create a new bubble, and sets the flag. When the
final text equals an already-sealed interim, they stay as distinct messages.
Extracted mergeFinalAssistantText() as a pure function in chat-messages.ts,
used by both completeAssistantMessage and finalizeInterimAssistantMessage.
Split the bidirectional dedup predicate: reasoning is a restatement only when
the final FULLY covers it. A short final ("Done.") no longer swallows a
longer reasoning block that merely starts with it.
Honor display.interim_assistant_messages (default true) across all layers:
the tui_gateway gates the callback, the desktop wires it to a nanostores
atom via use-hermes-config. Updated hermes_cli/config.py and
cli-config.yaml.example comments to document the Desktop behavior.
_split_segment_tokens now accepts posix=False and _find_ad_hoc_match tries
both posix modes so ad-hoc verification scripts with Windows backslash
paths are matched correctly. (response_previewed forwarding from #53553
is not included — our emit-interim + persist approach makes it unnecessary
since the attempted answer is now surfaced before the verification loop.)
- tsc: clean (desktop + TUI + shared)
- vitest desktop: 73/73 pass (7 interim-sealing + 5 mergeFinalAssistantText + 4 config atom)
- vitest TUI: 83/83 pass (4 new message.interim tests)
- python: 390 tests pass (340 tui_gateway + 33 verification/finalizer + 6 config gating + 3 evidence + 8 continuation budget)
Co-authored-by: Liam Zhang <yingliang-zhang@users.noreply.github.com>
Co-authored-by: Lucas D'Alessandro <lucasfdale@users.noreply.github.com>
Co-authored-by: Eric Manganaro <superposition@users.noreply.github.com>
Co-authored-by: sweetcornna <sweetcornna@users.noreply.github.com>
Co-authored-by: DECK6 <DECK6@users.noreply.github.com>
Co-authored-by: matantsevs <matantsevs@users.noreply.github.com>
Co-authored-by: gitcommit90 <gitcommit90@users.noreply.github.com>
* fix: prefix-match interim streamed content to avoid benign duplicate bubbles
_interim_content_was_streamed used exact equality (streamed == visible_content),
so a final response that was the streamed text plus a trailing delta — or a
partial stream before the verify nudge fired — failed the match and left
_response_was_previewed false. The turn then showed two bubbles (interim +
identical final) instead of settling the interim in place.
Relax to a prefix check (visible_content.startswith(streamed)) in both the
core match and the desktop's settle-in-place gate. The TUI already used
prefix matching via finalTail. The reverse direction (streamed longer than
final) is intentionally not matched — that could suppress a needed resend
in the gateway path where already_streamed=True calls on_segment_break().
* test(desktop): add partial-stream-then-nudge dedup edge case
Third edge case for the interim-sealing dedup: model streams part of its
answer via message.delta, verify nudge fires, interim seals the streamed
prefix, then the final response is the same text plus a trailing delta.
Asserts one bubble (not two) containing the full final text.
Acceptance protocol #2 — covers all three dedup edges:
1. interim == final (existing)
2. interim = strict prefix of final (existing)
3. partial-stream-then-nudge (this commit)
---------
Co-authored-by: Liam Zhang <yingliang-zhang@users.noreply.github.com>
Co-authored-by: Lucas D'Alessandro <lucasfdale@users.noreply.github.com>
Co-authored-by: Eric Manganaro <superposition@users.noreply.github.com>
Co-authored-by: sweetcornna <sweetcornna@users.noreply.github.com>
Co-authored-by: DECK6 <DECK6@users.noreply.github.com>
Co-authored-by: matantsevs <matantsevs@users.noreply.github.com>
Co-authored-by: gitcommit90 <gitcommit90@users.noreply.github.com>
activate_custom_endpoint copies the endpoint's base_url and api_key onto
cfg["model"]. delete_custom_endpoint pops the providers entry and saves —
it never touches that mirror.
So deleting the endpoint the agent is currently using leaves both behind:
DELETE /api/providers/custom-endpoints/acme -> 200
providers entry gone : True
model.api_key : sk-CUSTOM-ENDPOINT-SECRET
model.base_url : https://llm.acme.corp/v1
Two consequences, both silent:
* The agent keeps authenticating to the deleted host with the deleted key.
model.api_key outranks the environment at client construction, so this
also shadows whatever the operator configures next — the persistent-401
shape credential_lifecycle.py documents as #62269.
* A credential the operator just removed through the dashboard stays
sitting in config.yaml.
Scrub the main-slot mirror on delete, but only when it actually names the
deleted provider — an endpoint deleted while a different one is active must
leave that active assignment untouched. Both directions are pinned by tests.
_write_custom_endpoint builds a fresh entry dict from the request body and
assigns it over providers[endpoint_id], carrying nothing forward but api_key.
A providers.<name> block is not owned by that panel. It can carry keys the
dashboard has no field for, all of them load-bearing:
api_mode the protocol the endpoint speaks
key_env where the credential comes from
extra_headers per-provider HTTP headers (may carry credentials)
request_overrides extra body params
and a models map with more than the one model the panel names.
So an edit that only changes the default model destroys the rest:
BEFORE api_mode, base_url, extra_headers, key_env, model, models,
name, request_overrides
AFTER base_url, discover_models, model, models, name
FIELDS DESTROYED: ['api_mode', 'extra_headers', 'key_env',
'request_overrides']
The provider is left with no credential wiring (key_env gone, no api_key),
talking the wrong protocol, missing its proxy auth header — from a UI action
that said nothing about any of that. The models map also collapses to the one
named model, dropping the others and their context_length.
Merge onto the existing entry instead of replacing it, and merge the models
map rather than overwriting it. Managed fields still win, so the edit itself
still applies; a brand-new endpoint is unchanged. api_key keeps its previous
semantics — a supplied key overwrites, an omitted one leaves the stored key
in place (now via the merge rather than an explicit carry-forward branch).
Detect the remote platform on connect and Test SSH: uname first (Linux/Darwin
keep the POSIX lifecycle), else an encoded-PowerShell probe that routes a
Windows host through connectWindowsRemote. The Windows lifecycle mirrors the
POSIX one — probe, one-shot token upload, spawn, readiness scrape, tunnel,
reuse-by-exact-ownership, and teardown — over a PowerShell helper dialect.
Preserve a backend on indeterminate process state (never destroy on unknowns);
a thrown terminate aborts before remove-lock so a live backend is never
orphaned. Interactive terminals on a Windows backend open PowerShell in the
requested cwd instead of a POSIX login shell.
* fix(desktop): stabilize runtime readiness polling
* fix(tui_gateway): pool live-session status polling
* fix(desktop): clear readiness when gateway disconnects