The problem Druks solves
Agent apps routinely cross boundaries that do not fit a request handler. They call slow models, provision machines, wait for people, and react to webhooks. They can also outlive a process or deployment. A retry of the full script costs time and can cause a side effect again. One long-lived process does not provide recovery. Druks separates durable control flow from app code. DBOS records workflow progress in Postgres. Druks layers workflows, agents, gates, subjects, events, settings, and app loading on top, then exposes their state through an API and dashboard.The app boundary
An app is an independently packaged Python distribution installed into the same environment as Druks. Its package registers anApp subclass:
/api/<name>. The entry-point
name must match App.name. The same name scopes:
- The API namespace
- The default
<name>_table prefix - The app’s Alembic version table
- App setting keys.
Druks owns
- Durable execution, queues, schedules, run state, cancellation, and gates
- Agent descriptors, harness dispatch, and sandbox access
- Subject timelines, the event feed, signals, webhook dispatch, and notifications
- MCP and skill delivery, settings, MCP secret encryption, and diagnostics
- The FastAPI server, shared dashboard shell, and app loading.
An app owns
- Domain workflows, their subjects, and their start policy
- Agents, prompts, and structured output contracts
- Domain models, migrations, HTTP routes, and subject summaries
- Normalized event reactions and provider-specific webhook behavior
- Provider credentials and prerequisites that are specific to the domain
- Optional static frontend assets in the app package.
software_factory app owns projects, work items, ticket intake,
GitHub branches, pull requests, coding-agent policy, and dashboard pages. These
features are examples, not platform guarantees.
Durability and recovery
A workflow defines either:- Single-step:
run()is one durable operation. - Multistep:
run_multistep()provides replayable orchestration across explicit@stepoperations, agent calls, and gates.
- Druks reuses completed checkpoints. An agent call uses its checkpoint or the checkpoint of the enclosing step.
- Ordinary orchestration code can run again to rebuild in-memory decisions.
- Plain instance attributes are working memory, not a separate persisted object.
- Code that stops inside a step can run again.
- External side effects inside a step require stable idempotency keys.
- A workflow structure change can affect active runs. Treat the change as a deployment compatibility decision.
When Druks fits
Druks is for apps whose work crosses process lifetimes. This work can include durable operations, isolated agent calls, external triggers, and waits. It is also useful for independent app packages that share one operating substrate. It is not an agent model SDK, a sandbox provider, or a reason to wrap a single short model call in a workflow. Drukbox owns host provisioning, and an app still owns domain policy and side-effect idempotency.State has one lifecycle owner
Thedurable_runs row stores the Druks-owned facts DBOS has no slot for: the
current gate ask, the failure text, and timestamps. The run’s subject lives on
the DBOS workflow itself as custom attributes. workflow_status alone answers
“runs for this subject.” The run row does not store the app —
it is workflow-class metadata, derivable from the run’s kind through the
app registry. The API reads the row’s lifecycle state from DBOS workflow status:
scheduled during the short
enqueue window and orphaned after five minutes. orphaned is terminal: the
workflow record needed to execute it no longer exists.
Subjected workflow starts use DBOS queue deduplication per workflow kind and
subject. A duplicate start returns the active run’s id. Druks does not impose
that policy on subjectless background runs.
Current work on the Dashboard
The Dashboard reads current runs across the installed apps with the same identity gate as the shared run API. An authenticated operator sees installation-wide run facts.Run.account_id records attribution and does not restrict this
read.
For each workflow kind and subject, the newest run counts. A newer successful
run therefore removes an older failure from Problems. A run without a subject,
including one whose DBOS record is missing, counts on its own until it is
cancelled. The read returns the 200 most recently changed current runs with
labels and artifact titles of at most 240 characters, and failure text of at
most 2,048 characters. It never carries transcripts or complete review content.
Needs you lists parked runs that carry a request the operator can act on,
oldest request first. Other parked work is Waiting. Active work is running and
queued runs. Problems is failed and orphaned runs. Scheduled work lists
declared schedules with resolved cadence, pause state, and installation timezone.
These are configuration facts, not proof that a future run will succeed.
Review opens the owning app at the selected run and names the request round
by its parkedAt timestamp. The owner reads the current gate. A different
round shows a stale-link message, and an answer echoes the round it read, so
the server rejects a stale one. An external request opens the app-declared
HTTP or HTTPS address. The Dashboard does not infer access health from
configuration.
Waiting for people and systems
AGate defines a typed reply and a durable receive topic. When a workflow
waits at a gate, Druks:
- Releases each warm sandbox that the workflow holds.
- Records
parkedand the request for the operator. - Sends an optional notification.
- Suspends the workflow until a reply arrives or the 14-day timeout expires.
- Clears the gate and returns the validated reply after the workflow resumes.
on_wait() to send an external
notification. Without this override, the gate fails instead of creating an
invisible wait.
Cancellation clears the outstanding ask and asks DBOS to cancel the workflow.
A parked subject then releases its deduplication slot so another run can start.
Agents, harnesses, workspaces, and sandboxes
These terms describe different ownership layers:
Each agent call validates a strict Pydantic output contract. It records model
and cost metadata. It also stores the transcript, stderr, prompt, output, and a
secret-free capability manifest. The model choice determines the harness. The
configured Drukbox service determines the sandbox provider. Workflow authors do
not write provider-specific execution code.
By default, each agent call uses an ephemeral sandbox. A workflow can retain one
warm sandbox across a segment. Druks releases it before a gate and at workflow
exit. Druks also rotates it before the lease becomes too short for another
call. Store durable state in an external system such as Git, not only on the VM.
A sandbox never holds a subscription token. Druks gives each sandbox that
fetches one an identity at its issuer, before Drukbox provisions it. The
identity names the run and the workflow or agent the sandbox is scoped to. It
keeps a hash of a random bearer and one secret ref per secret the sandbox
holds: the Drukbox name, the vault row, and the resource. The row can be the
GitHub App key, a pasted token, or a provider subscription. A replay after a
crash finds the sandbox through the run’s live identity with the same scope.
Drukbox holds the bearer in the sandbox’s issuer entry and fetches the token
from the Druks issuer,
GET /api/secrets/<identity id>/<name>. The sandbox
sees a placeholder in the variable the entry names. Claude reads it from
ANTHROPIC_AUTH_TOKEN. The Codex run wrapper writes it into
~/.codex/auth.json beside a sentinel refresh token, so Codex never refreshes
inside the sandbox. The issuer answers a fresh token at once. A token inside
its refresh margin rotates first, while the subscription is idle or the token
is urgent. One rotator runs at a time, and
new calls wait for it. After a rotation, Druks requests a refresh from the secrets
exchange for every live sandbox on that subscription. A provider can revoke
the previous token at the rotation. Druks revokes the identity when it
releases the sandbox, and a terminal run denies every fetch. An hourly task
releases the sandbox of a run that ended without its cleanup. The identity
expires with the sandbox lease.
Events, signals, webhooks, and subjects
A subject is the object of a run. It is always a class that represents an app row or an identity. The workflow declares the class. Thus, Druks knows the subject kind before a run exists. Only the subject type and ID travel with the run. A run can outlive its subject row. Each run action enters an append-only event log. Apps add domain events and a summary for each subject class. Druks supplies pagination, activity composition, and a live fact feed. The client owns the words that describe a subject. Signals connect producers to app reactions. The publisher waits for their delivery. Delivery occurs at least one time. A webhook error tells the provider to send the webhook again. Durable lifecycle publishers also retry. Thus, subscribers must be idempotent. Webhook classes authenticate and normalize provider deliveries before publishing signals. The framework supplies routing and deduplication. An app or integration owns the provider payload and domain reaction.Settings and capabilities delivered to agents
Configuration has two planes:- Deployment:
druks.tomlconfigures the deployment and creates the process environment. - Postgres settings configure installation defaults, personal profiles, app and workflow settings, agent overrides, notifications, MCP servers, and skills. See personal and installation settings for profile resolution and timezone rules.
Process and access topology
The shippedweb process serves FastAPI, the SPA, DBOS workflows, and schedules.
Postgres stores app and DBOS state. Redis stores short-lived
coordination such as webhook deduplication, OAuth caches, and the sandbox
provisioning gate. Drukbox provisions sandbox hosts. Druks connects to them over
SSH.
Druks does not authenticate browsers. It resolves identity for each request. A
personal access token in Authorization: Bearer has first priority. If this
header is present, it must authenticate.
The configured DRUKS_AUTH_MODE handles requests without a token. In header
mode, the edge authenticates the operator. The edge can be exe.dev, Teleport,
or Cloudflare Access. It puts the operator email in the trusted identity
header. Druks maps this email to an account. The edge controls access, so this
mode permits account creation at first access.
In none mode, Druks has no authentication and exactly one operator account.
The first completed provider connection creates this account. Public
/_external routes stay outside the identity gate. These routes include
webhooks and the token-authenticated notification response.
The PAT-authenticated
/mcp endpoint also stays outside the gate. Each route keeps its own
authentication. A harness connection adds a capability to the current
account. It is not a login. See
configuration for the
trust requirements. The edge must remove client-supplied copies of the identity
header.