An `execute_task mode="async"` was invisible from the chat that started it.
The only trace was the receipt in the transcript and a row on the Tasks page
— which does not say *which* of those rows the assistant just spawned — so
"is it still going?" had no answer where the question is asked.
Worse, a task that did not simply succeed never came back at all. `run_job`
branched on `Ok`/`Err` first and routed by `job.kind` only inside the `Ok`
arm, so a failure or a kill left through the `Err` arm's unconditional
`hub.notify` — the home source (`/sethome`), worded "Cron job … failed" —
while the parent conversation sat waiting for a `task_completed` that would
never arrive. The wrong chat, and a wedged one.
The fix is a shape, not a branch: one `JobOutcome` classification, then one
`match job.kind` delivery site for every ending. An async task now ends in
its parent conversation whatever happened to it. The sink has a single
channel deliberately — to the model reading it, "it broke" is a result like
any other and must not be overlookable — so a failure is delivered as prose,
carrying whatever partial output the run produced, which is usually the only
clue about why. A cron job keeps the home notification: it belongs to nobody's
conversation. Cancellation becomes a third outcome rather than a flavour of
failure (`job_runs.status` has always had `'cancelled'` in its CHECK and
nothing ever wrote it), classified off the new typed `TurnCancelled` error so
nothing keys on a message string.
The strip above the composer is the visible half. `ServerEvent::TaskUpdate`
announces state to the source of the parent conversation only; the list is
`renderTaskStrip` (shared by the desktop copilot and the mobile chat), fed by
state on `ChatSession`. Each row links to `#session/{id}` — the page that
already shows, live, what a background agent is doing, and without which
"a task is running" is a fact you can do nothing with. Stopping is the
existing kill endpoint. A finished row clears itself after 20 s (its result
is in the conversation by then); a failed one stays until dismissed, and the
dismissal is remembered across reloads.
`GET /api/{source}/tasks` is what makes the strip survive a browser refresh:
the event is a broadcast with no replay, so without a load-time read a reload
would empty a chat that still has work running under it. It answers with the
running tasks plus failures from the last 30 minutes — the two states a person
can still act on. Successes are absent on purpose. Its window compares through
`datetime()` on both sides: `completed_at` is RFC 3339 and the cutoff is
SQLite-shaped, and `'T' > ' '` would let every same-day row through a window
meant to exclude it.
Not addressed, and worth doing next: a cron job's result should go where its
creator says, not always to the home chat.
The first AgentScope::PerSubject system agent, and the reason that scope
exists. Once a night, for each person with a supervision edge, it reads every
message that person and the assistant exchanged since the previous review —
across all their conversations — and writes one report for the people who
supervise them.
Schema (all registry except reports):
- supervision(subject_user_id, supervisor_user_id): the generic §0.1 edge,
answering both 'whom does a background agent look at' and 'who may read
what it produced', with real FKs so deleting a user cascades both ways
- system_agent_coverage(agent_id, subject_user_id, covered_through): the
per-subject watermark that makes 'everything since last time' a window —
neither system_agent_runs (history for humans) nor system_agent_state
(advances before the work), and advanced only on a completed pass so a
crash re-covers instead of skipping
- reports (owner schema, the second two-homes table after memory_docs):
instance rows land in system.db, deliberately cleartext to the box owner,
who is the intended reader (§2); the subject cannot see them structurally
The pass reads the subject's database inside a supervisor's runtime, so the
ephemeral session and run row land in the watcher's file; iteration is over
subjects, so two parents watching one child get one review; and the subject
need not be logged in when their space is unencrypted — via the new
UserManager::open_unencrypted, which refuses an encrypted user outright (no
key to be had) and never registers the pool as unlocked.
The agent declares the new AgentMeta flag allow_tools: false, so its turn
gets an empty tool registry — nothing for a prompt injection in the
transcript to call — and produces its report as its final assistant message,
read back from chat_history and parsed (NOTHING_TO_REPORT sentinel, no row on
quiet days). chat_history::conversation_window is the transcript query; its
four filters (non-ephemeral, depth 0, non-synthetic, non-empty) each guard a
specific way the review would otherwise be wrong, and tool calls are absent
by construction.
Cadence is Run at (hour) rather than Interval — 4am local by default — with
due-ness answered inside has_work against the coverage watermark, so a
machine off for three days covers the whole stretch in one pass. Reports
announce ReportCreated on the system bus (no subscriber yet). run_ephemeral_turn
gains a per-pass system_substitutions map, which the review uses to hand the
model the subject's profile under __SUBJECT_PROFILE__ — the system-context
substitutions describe the session owner, the wrong person here.
docs/system-agents.md gains the conversation review section; CLAUDE.md
documents the scope, the tables and the tool-less design.
TIC said nothing about what the agent does, and named the wrong thing: the
tick belongs to the scheduler, which is generic and lives outside it. The
agent's only decision is whether an incoming event deserves an interruption
— it sorts, it never acts — so it is now event-triage, matching the
functional naming of the two memory lints.
- agents/tic/ -> agents/event-triage/, module tic/ -> event_triage/,
TicManager -> EventTriageManager, TicConfig -> EventTriageConfig
- agent id and chat source: "tic" -> "event-triage"
- config keys: tic.* -> event_triage.*, and the config.yml section tic: ->
event_triage: (greenfield: previously set values fall back to defaults)
- i18n en/it/fr: Event triage / Triage eventi / Tri des evenements; dropped
the stale "TIC sessions" mention from the debug-pages description
- docs/system-agents.md, docs/index.md, docs/settings.md, CLAUDE.md, SKALD.md
Memory is kept as a maintained wiki, and a wiki nobody prunes rots. This adds
the scheduled maintenance pass, and generalises the machinery TIC had grown so
that a background agent is a trait impl rather than a loop of its own.
Two lint agents, not one. The private pass runs per user over `user-memory/`
and reports to them; the shared pass runs once over `shared-memory/`, where the
interesting defect is different — a note failing the table rule, i.e. private
business written where every member can read it. It names the note and the
category without repeating the content, since restating it spreads the very
thing being flagged. Both share `agents/common/memory-lint.md`.
Both are read-only, and that is enforced twice: the prompt says report-never-
repair, and `shared-memory/*` writes are already `@fs_write require`, so an
agent that tried to fix something would raise an approval card from an
unattended pass, which is auto-denied. Read-only is the only design that works
here, not merely the safe one.
One scheduler for cadences three orders of magnitude apart. TIC runs every few
minutes, a lint weekly — the case that tempts a second loop. It stays one
because the wake-up decides nothing: `base_tick` picks only how often to look,
and whether an agent runs for a user is `is_due` against persisted state.
Due-ness moves out of the run log into a new owner table, `system_agent_state`.
The two answer different questions: the run log skips idle ticks so it stays a
history rather than a heartbeat, while scheduling needs every attempt. Reading
due-ness off the log would re-run an idle agent on every tick and never bring a
weekly one due once its last productive run aged out. Persisting it is also
what makes a long interval survive a restart — an in-memory deadline is fine at
TIC's scale, but a weekly agent on a box rebooted every few days would have it
re-armed before it ever fired.
The shared store belongs to nobody, so `AgentScope::Instance` runs that pass as
the first unlocked admin. An ownerless run would write its trace into system.db,
which the runs endpoint shows to nobody by design, and its notify() would have
no recipient; attributing it to a user keeps the whole per-user surface working
unchanged.
Settings move to where the run log is. `ConfigSet` gains `owner`, so placement
is data on the set rather than a page that knows set names; the System agents
page grows one tab per agent holding its description, its settings (admin only)
and its runs — "why did this do nothing last night?" is half a schedule
question and half a log question. The form is shared with the Config page, and
writes still go through PUT /api/config/{key}.
Fixes an authorization gap found on the way: neither /api/config handler took
the caller into account, so any authenticated session could read and write
instance-wide config. The sidebar hiding the page is presentation, not access
control. Both are now admin-gated.
The generic per-user #plugins page is gone: a plugin with per-user
settings hosts them in its own web_pages() sidebar page instead
(Telegram's pairing page is new; Honcho's opt-in page already existed).
The admin catalog moves from #plugin-catalog to #plugins (old hash
redirected), and user_config_schema is removed from the Plugin trait,
the API DTOs and both plugins — the my-config endpoint, the
plugin_user_configs store and the update_user_config hook stay, now
driven by each plugin's own page fragment.
The two admin-only console pages become a single "Mobile App" page
visible to every logged-in user: connection status (with the last
connection error for troubleshooting), the device list (admin sees all,
others only their own), a pairing dialog with the QR, and — admin-only —
a settings dialog hosting the plugin config, including a relay picker
(official grayed out, test, custom URL). The generic plugin-detail
config form defers to it via the new Plugin::config_in_detail_page flag.
Pairing is now self-service: any user opens a window and the device
auto-binds to them; revocation is admin-for-anyone, owner-for-self;
(re)binding to another user stays admin-only. Binding-managed plugins
(manages_own_access) now expose their non-admin pages to all users and
self-scope per caller (web_pages_for). The relay client records the
error that ends a WS session and clears it on reconnect.
Five call-sites reached into the live-runtime refresh helpers from HTTP
handlers, the same shape as the container remounts. Only three of them
belonged on the bus, and finding out which was the point.
global_enable and global_delete now emit McpGlobalServersChanged, and the
marketplace reinstall emits ConnectorReinstalled. All three are pure
reconciliation: the first only makes a connector appear; the second is
already enforced by stop_server, with the snapshot refresh just tidying
each user's filter; the third pushes metadata and code into what is
already running. The reinstall gains something from being off the
response path, since it re-copies files and restarts servers inside every
live user's container.
global_set_access and user_connectors_set keep calling
refresh_global_mcp_access directly. Their writes *replace* a grant set, so
anyone dropped from the list is being revoked and that refresh is what
enforces it — on a best-effort broadcast a revoked user would keep the
connector until their next login. Both carry a DELIBERATELY SYNCHRONOUS
comment, since they are otherwise indistinguishable from the announced
call-sites and are exactly what a later cleanup would sweep up.
No behaviour change for the two synchronous paths; the three announced
ones now return without waiting for the refresh.
Two variants of the same defect: an admin took away access and the running
system kept granting it.
Deactivating or deleting a user only stopped the *next* login. `login`
checks the active flag, but `require_auth` maps token -> id without
re-reading the row, so an already-open session kept working over a pool
whose key was still in RAM. There was no way to stop one user either: the
per-user cron, hub and MCP loops all observed the *instance* shutdown
token. They now take a per-user child token stored on UserContext, and
Skald::revoke_user_runtime tears a single user down in a load-bearing
order — revoke every session, evict and cancel the context, then lock the
database, so nothing is left querying a pool we are about to close.
Revoking a security group had a durable version of the same problem. The
group is validated when selected and then persisted on
chat_sessions.run_context, which was replayed verbatim on every later
load — so a group removed from a role stayed in force on sessions that
already had it, across restarts. get_or_create_handler now runs the stored
value through run_context::reconcile_group_for_user, making it advisory:
every load re-checks it, whether or not anyone announced the change.
The degrade target is the role's default group, never None: a context with
no group resolves to the catch-all `default`, whose rules are the fallback
tier under every other group, so clearing widens rather than narrows. The
reconcile touches only security_group, so a project session's server-built
project_root and system_prompt survive a permissions edit, and it leaves
the stored group alone when the role cannot be resolved — guessing on a
transient error could only widen. role_default_run_context moves into the
core seam so the group a session starts on and the group it falls back to
cannot drift apart.
Both fixes run synchronously in their handlers. Only the container half of
deactivation rides the bus, as the new UserActiveChanged event: a lossy
64-slot broadcast whose contract is "settles at the next login" is the
wrong transport for taking access away.
Tests: revoke_user drops all of one user's sessions and nobody else's, and
is a no-op when nothing is live; the reconcile degrades a revoked group to
the role default, keeps an allowed one, preserves project fields in both
directions, never touches an admin, and stays put when the role is
unresolvable.
Not exercised at runtime: no Docker/live-server run, so the end-to-end
paths (deactivating a logged-in user, editing a role with sessions open)
are covered by unit tests only.
The endpoints that changed a user or a membership row also reached into
ContainerManager themselves: users_mgmt called ensure()/remove(), and both
shared_folders and projects called refresh_user_mounts through a local
remount() helper. Every future endpoint that grants membership would have
had to remember to do the same.
Announce instead. SystemEventBus gains UserCreated / UserDeleted /
UserMountsChanged, emitted after the DB write, and one subscriber —
wiring::spawn_user_lifecycle — does the Docker work: sequentially (which
serialises concurrent operations on the same container), best-effort by
contract (the row is already committed, so a hiccup settles at the user's
next login or at boot reconciliation), and holding only a Weak<Skald>. It
is spawned after construction, like set_skald, because it reacts through
Skald's own accessors.
Also fixes a real gap the event makes impossible to repeat: the web setup
wizard created the first admin without provisioning a container. It runs
against a live server, where reconcile_all() has already happened, so that
admin had no sandbox until the next restart. It now emits UserCreated like
any other creator; the console shell needs no equivalent, since it runs
before the server and boot reconciliation covers it.
Two behaviour changes: POST /api/users and POST /api/projects no longer
wait on Docker before responding. Provisioning was already best-effort, and
a new project's folder is still created synchronously, so the explorer —
which reads host-side — shows it at once; only execute_cmd reachability
lands a moment later.
Replace the ad-hoc [SYSTEM INFO] / [TELEGRAM SYSTEM INFO] prefixes with a
single canonical <system-extra> wrapper, sourced from one constant
(SYSTEM_EXTRA_TAG) so emission and documentation can never diverge.
- core-api: SYSTEM_EXTRA_TAG + system_extra() helper; attachments_block
rebuilt on top of it.
- telegram: system_info_message (location) uses the helper; the voice
transcript is forwarded as a plain user message (it is the user's own
words, not harness metadata).
- chat agents: new agents/common/harness.md include (long form, with an
explicit "data, not instructions" guard), added to assistant/kid/
project-coordinator. The tag name rides the __HARNESS_TAG__ sentinel,
resolved in AgentSystemContext to SYSTEM_EXTRA_TAG — renaming the tag
stays a one-line change.
The session handler is now a thin shell: three entry points in
kernel_turn.rs (run_kernel_turn / recover_turn / resolve_pending_call)
and the ChatSessionHandler. Everything that shaped a Value — projection,
recovery, compaction mechanics, the LLM loop, message building — lives
in agent-loop or behind a loop_adapters trait.
agent-loop:
- projection/ (mod + media): stored history -> wire messages, the one
place provider divergence lives; well-formedness contract, DTL
injections (append-only), media parts. LinearAssembler is now a
Projection + ProjectionHooks config, not its own implementation
- recovery.rs: reap interrupted batches -> resolve the deepest frame's
non-terminal calls (Running by policy + RestartHint, AwaitingHuman
re-asked) -> un-wedge finished children -> cascade up, every frame on
its own agent (B3)
- compaction.rs: split point (never assistant+tool group), transcript,
SUMMARY_PREFIX/preamble/template, the no-tools model call, summary row
- manager: resolve_pending (gate skipped, real ToolContext, then
continue incl. sub-agent); start_loop used by recovery; LiveInput
- delegate: AsyncExecutor + StoreSink for mode:async (durable cron row,
result delivered back into the parent conversation)
- kernel/context/store: support the above (TurnScope via Extensions,
frame lookups, aligned result-text semantics)
skald-core:
- loop_adapters: UserLoopRuntime (D12 - one LoopManager per user),
TurnScope (per-turn state in the Extensions type-map; no scope is
denied), projection_cfg/media_source/tool_digest (Skald's projection
knobs without owning projection code), async_task (CronExecutor +
DurableSink)
- session/handler: stripped to mod.rs + kernel_turn.rs + config.rs +
interface_tools.rs + media.rs; deleted agent_dispatch, approval,
dispatch, emitter, gate, llm_call, llm_loop, message_builder,
messages, outcome, resume
- compactor.rs: policy only (threshold, model pick, CompactionEvent);
mechanics are the crate's
CLAUDE.md updated (recovery, compaction, sub-agents, approval gate,
projection sections now describe the crate-owned flow).
ChatSessionHandler now runs the root turn on the agent-loop kernel
instead of run_agent_turn; sub-agents follow on the same kernel via
DelegateTool. The old loop stays for resume/recovery until phase 3.
agent-loop:
- DelegateTool + AgentCatalog/AgentProfile (full toolset override,
per-child selector/assembler, frame-scoped get), StaticCatalog,
FilteredToolSet; sync flow with sticky child_token; batch via the
generic fan-out
- manager: start_loop skips the registry (children are not
double-driving; they ride the parent's token tree); LoopParams gains
selector/token overrides
- store: get_frame, get_call, set_call_extras; HistoryStore result text
aligned to raw-stored semantics (projection formats)
- events: ApprovalRequired.request_id, AgentSpawned/Finished parent
info; AskUserTool with_name + suggested_answers alias + Question.frame
skald-core (loop_adapters + handler):
- SkaldAssembler (byte-parity port of MessageBuilder's projection:
scratchpad/summary/window, DTL Kimi/Anthropic injection, media, user
coalescing, reasoning echo) + AgentSystemContext (prompt layers,
substitutions, MCP list, shared folders, user profile)
- SkaldAgentCatalog (build_sub_agent_config port), SkaldHumanChannel,
scratchpad/todos tools, execute_task sync/async alias,
LegacyInterfaceTool, PendingLiveInput
- ApprovalGate: PendingWrite diffs via LoopEvent::Host (memory/disk
routed like the fs-tools); SkaldWritePreviewHook for executed-write
diffs; EventTranslator LoopEvent→ServerEvent (display meta, preview,
FileChanged, AgentStart/Done, root-only Done/Truncated/Cancelled)
- handle_message: builds TurnParams and drives the kernel; resume of
pending tools runs first (results belong to the previous turn);
ChatEvent publication stays handler-side; /stop cancels the live loop
- ToolRegistry.get_tool/all_tools; def builders made pub(crate)
Full workspace suite green (179 skald-core, 34 agent-loop, adapters
incl.); two pre-existing doc-test failures fixed along the way.
The LLM call path now runs on the agent-loop crate's clients and trait:
- core-api: BuiltLlmClient.client is Arc<dyn agent_loop::model::Model>;
chatbot.rs (ChatbotClient + wire types) deleted; APP_NAME re-exported
from agent-loop
- providers (openai/anthropic/ollama/openrouter/requesty/declared) build
OpenAiModel/AnthropicModel/OllamaModel with the model's wire id
- LoggingModel decorator (llm/logging.rs) replaces LoggingChatbotClient;
per-request correlation (session/stack/user) travels in the new
ModelRequest.log field, never sent to providers
- llm_call/llm_loop/compactor speak Model::complete + ModelResponse;
retriability via Model::is_retriable (structured status, B6 rule now
the crate's default); payload persistence reads RawMeta off
ModelResponse/ModelError
- crates/llm-client and skald-core/src/chatbot deleted
Full workspace test suite green (incl. 162 skald-core + 32 agent-loop).
Remove the scope system end-to-end (llm_models.scope column, agent meta
scope field, scope-based tier in model selection, UI checkboxes/pills):
it was only a soft ranking hint, had drifted (6 UI scopes vs 3 used by
agents, 'general' not even selectable) and duplicated what strength
already decides. Strength stays the single AUTO-selection axis.
Compaction: the summary model is now pickable from the Settings page
via a new PropertyType::LlmModel config property (registry key
compaction_model), instance-wide and live (no restart). Fallback chain:
explicit pick -> compaction.strength from config.yml -> priority order;
a deleted configured model degrades to AUTO. ContextCompactor reads the
key at compact time through GlobalConfigManager.
Replace the old session_mcp_grants/stack_mcp_grants table pair with
a single activated_tools table that anchors each activation at the
assistant message_id that triggered it. The durable write moves from
the activate_tools tool itself to the round loop (handle_tool_call),
which has the message_id the DTL serializer positions injected tool
blocks against.
Introduce DtlMode (None / AnthropicToolReference / KimiSystemTools),
resolved per model from capabilities (opt-in via tool_search)
combined with the provider's dtl_format(). The message builder inserts
Kimi system {tools} blocks at the activation position, or emits
Anthropic tool_reference markers on the tool result. The tool-def
surface (all_tool_defs) switches shape: Anthropic declares everything
deferred; Kimi omits activated tools from the top-level array (system
takes over); None keeps the old grant-set logic.
Anthropic client: accept structured system arrays (cache_control on
the static block when DTL is active), carry defer_loading through
conversion, emit tool_reference blocks on result messages. Prompt
caching enabled exactly when DTL is active (anthropic provider).
MCP server list in the prompt is now a static catalogue (not split
Available/Active) — the split invalidated the cache on every activation.
Groundwork for providers.yaml dtl: key; Moonshot/Kimi providers wired
with kimi_system_tools and the k3* enrich now adds tool_search.
Compactor re-anchors activations whose message was compacted away.
Extract shared upload seam in skald-core, move Telegram and web
handlers to use it. Simplify media attachment routing. Clean up
unused deps and dead code.
Add project-files component with tree navigation. Extend UserFs with
shared-folder resolution. Wire API routes for file browsing. Improve
WS session lifecycle and project-board layout. Add i18n keys for
projects and inbox across all locales.
When the resolved model declares an input modality (vision → images,
video, document → PDFs), read_file now hands a binary media file back to
the model as native input instead of failing on non-UTF-8 bytes.
- ToolResult gains a Media { text, media } variant carrying MediaRef
{ host_path, mime }; the tool message keeps only the text note, the
bytes travel out of band in a new additive chat_llm_tools.media column
(mirrors preview_old/new).
- read_file sniffs the resolved host file; a recognized medium becomes a
Media result (with a neutral note), everything else keeps the textual
path. Capability gating lives in the message builder, so read_file
never needs the model caps and degrades cleanly on a text-only model.
- MessageBuilder inlines current-turn tool media as a synthetic user
message right after the tool-result group (media_turn_start boundary,
so older turns are never re-billed), reusing media.rs primitives via a
new inline_paths helper that contains against the caller's workspace
roots. OpenAI forwards the parts verbatim; the Anthropic client now
also translates the PDF `file` part into a native `document` block
(image_url → image was already handled).
- read_file's description is annotated per serving model in
call_llm_round, listing the formats it can open, so the model knows
reading one shows it the content.
Tests: media sniff (PDF), PDF file-part build, inline_paths containment
+ capability gating, capability hint, read_file media-vs-text, Anthropic
file→document, and the owner-schema-stands-alone check with the new
column.
- Strip ~55 stale upstream docs (dev docs never meant for the agents)
- Write new slim index.md as an agent-facing guide to the app's features
- Add new plugin docs: comfyui, elevenlabs, kokoro_tts, orpheus_tts_3b,
remote_connectivity, whisper_local (replacing old names)
- Add docs_host to UserFs: docs/… and ~/docs/… resolve to {WD}/docs,
mounted read-only at /root/docs in every user's container
- Instruct assistant/kid/project-coordinator agents to read docs/index.md
when users ask how the software works
Rework projects from single-user leftovers into shareable endeavours.
- DB: move `projects` from the owner bucket to the registry (system.db,
not encrypted); add `owner_user_id` + `slug` (drop free `path`); new
`project_members(project_id, user_id, can_write)` mirroring
`shared_folder_members`. Drop `project_tickets` entirely. Only user↔agent
conversations stay encrypted (per-user DB) — each member keeps a private
project chat. Registry home dissolves the cross-DB-FK problem.
- Filesystem/container: on disk `{WD}/projects/{owner_userid}/{slug}`,
agent/container path `projects/{owner_username}/{slug}`. Two-segment routing
in UserFs (ProjectMount + host_base_and_tail arm) and a second loop in
build_user_fs; read-only members get a :ro mount. Reuse the shared-folder
remount machinery (refresh_user_shared_folders -> refresh_user_mounts).
- Remove the ticket system: ProjectTicketManager, UserContext.tickets, its
wiring, and the project_tickets references in scheduled_jobs/cron.
- API: repoint handlers to the registry pool + membership scoping. Sharing is
self-service — owner or any write-member may add/remove members and set
read/write; only the owner deletes; the owner cannot be removed. New
POST/DELETE /api/projects/{id}/members[/{user_id}]. Seed `@fs_any allow
projects/*`; build_runtime_run_context sets working_directory to the agent
path and drops the host-path allow_fs_writes.
- Frontend: create form without the free path field, owner/read-write badges;
the detail page becomes header + description + sharing panel + Open chat + a
file-explorer placeholder (the future primary surface). i18n en/it/fr.
The honcho memory sink needs to observe every user's completed chat turns
from one subscription, keyed by ChatEvent.user_id. But each UserContext
minted its own per-user ChatEventBus, so a single global subscription saw
nothing.
- UserContext now publishes onto the shared Runtime.event_bus (the one
Skald::subscribe_chat_events reads) instead of a fresh per-user bus.
- Expose that bus to plugins as PluginContext.chat_bus (distinct from
system_bus, which carries only infra lifecycle events).
- plugin-honcho subscribes via ctx.chat_bus.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
- Add MoonshotProvider and MoonshotCodeProvider (OpenAI-compatible)
- Extract `fetch_openai_models()` and `build_openai_llm()` shared functions,
deduplicating model-listing and client construction across OpenAI,
OpenRouter, DeepSeek, LM Studio, and Z.AI providers
- Add `lists_models` field to `ProviderUiMeta` — drives frontend model
picker dynamically instead of hardcoded `type_id` list
- Port DeepSeek, LM Studio, OpenRouter model listing to `fetch_openai_models`
- Set `lists_models: true` on Z.AI provider (missed in prior pass)
feat(mcp): named key placeholders {SECRET:name}/{ENV:name} in connector URLs
- `apply_key_placeholder` now accepts an `env` map alongside `api_key`
- Named tokens resolve from the connector's described `env[]` fields,
with `{SECRET:name}` falling back to `api_key` for backward compat
- Replace `substitute_secret_tokens` with `substitute_named_tokens`
- Unresolved tokens are left in place (visible misconfig) rather than
silently producing a wrong URL
fix(ui): connector detail hides generic API key when schema has secret
fix(ui): model picker uses `lists_models` from provider types endpoint
Realizes blueprint §6: each user gets a permanent Docker container
(skald-{userid}, our own skald-runtime image with python+node) as their
execution sandbox. Docker is now a hard requirement — a missing daemon fails
Skald::new and the process exits at boot.
- ContainerManager (crates/skald-core/src/container/): docker availability
check, builds skald-runtime from the embedded Dockerfile, reconciles one
running container per active user at boot, stops them at shutdown, and
ensure/remove on user create/delete. Shells the docker CLI (no client crate).
- UserFs (core-api): pure value type carried in ToolContext, mapping the agent's
single namespace — ~/ → homes/{userid}, shared/{X}/ → shared/{X} (membership),
user-memory/ + shared-memory/ → SQLite — to host and container paths.
- execute_cmd now runs inside the caller's container via `docker exec`.
- fs-tools resolve every physical path through UserFs to the per-user host
workspace, host-side, with fail-closed symlink/`..` containment
(resolve_host_path: canonicalize + prefix-check). grep_files resolves its root
the same way but stays disk-only.
- shared_folders + shared_folder_members (registry, junction table with
can_write) back the shared-folder membership that drives both the container
mounts and the shared/{X} routing.
- Threading: UserContext.fs → ChatSessionManager → handler → ToolContext.fs.
Per-user MCP servers do not yet run in the container (next round).
Two changes developed together in one session; they share the same module
structure (db/mod.rs, the core lib root) and only compile together, so they
land as one commit.
## UserManager + per-user encryption (§9/§11)
New `users::UserManager`: owns the system.db pool plus a map
`userid -> SqlitePool` of unlocked databases. The pool *is* the unlock token —
its connect options carry the DEK as SQLCipher's raw key, so an open pool means
the key is in RAM until restart and dropping it re-locks (§9). Knows nothing
about cookies.
New `crypto` module: envelope encryption. A random 256-bit DEK encrypts
`{userid}.db`; `users.database_password` holds it sealed with AES-256-GCM under
`Argon2id(password, salt)`. The AEAD tag is the password verifier — one
derivation both authenticates and yields the key, so encrypted users store no
second hash. Cleartext users store the Argon2id output directly, compared in
constant time. Argon2 runs in spawn_blocking behind a 2-permit semaphore
(256 MiB per derivation).
- SQLCipher via `libsqlite3-sys` `bundled-sqlcipher-vendored-openssl`, pinned
<0.38 so it unifies with the one sqlx-sqlite links (a newer copy would apply
the feature to a SQLite sqlx never uses). OpenSSL is vendored and static, so
the binary stays self-contained.
- Schema split into `create_registry_tables` (instance-wide, no user key) and
`create_owner_tables` (one owner's content, identical in every file). No FK in
the owner bucket may reach the registry — enforced by a standalone test.
Dropped `chat_history.model_db_id` (write-only, and the only registry-crossing
key); moved `projects`/`project_tickets` into the owner bucket.
- Provisioning invariant: the file is written before the row, deleted after it,
so a crash leaves an orphan file, never a user without a database. `open_db`
never creates: a missing file is an error, not a silent empty database.
Not consumed yet: no login, call sites still use the shared system.db pool.
## Extract crates/skald-core
The headless core moves out of `src/` into its own crate; `skald` (server) and
the coming `skald-setup` are shells around it. Two dependencies on the shell
were inverted rather than dragged along, so the core names neither Tauri nor any
concrete plugin:
- `Plugin::tools(self: Arc<Self>)` — plugins contribute tools through this hook
(sibling of `http_router`), so the core no longer downcasts to
`MobileConnectorPlugin`.
- `tools::restart::set_restart_handler` — the desktop shell installs its
teardown-and-respawn; the core defaults to the supervisor exit code. The core
loses its `desktop` feature.
- `boot`'s stdout formatter moves to the binary (`src/boot_format.rs`); the core
only emits tracing events.
All 79 core tests pass; the binary boots and serves in a clean directory, and
the mobile-connector tools still register through the new hook.