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sysadmin 108cbfa173 Merge pull request 'feat(controller): expose instance-level fleet identity and health snapshots (Closes #978)' (#979) from feat/issue-978-instance-fleet-snapshot into master 2026-07-30 09:34:33 -05:00
sysadminandClaude Opus 4.8 0dbff6dcd5 fix(controller): production client_instance_id launch path and instance-aware mutation gate
Remediate review 655 blockers on PR #979 (issue #978):

B1 — Production launcher (mcp_application_launcher) mints one trusted
client_instance_id per application launch and propagates it to all five
namespace workers via GITEA_MCP_CLIENT_INSTANCE. launcher_entry and
multi_namespace_launcher_entries use that path. Workers never invent a
trusted ID; missing/malformed/user-supplied values fail closed.

B2 — _check_mcp_runtimes_diagnostics is instance-aware: two legitimate
instances sharing a profile are allowed when each has a distinct trusted
client_instance_id; duplicate workers for the same (instance, profile)
still fail closed. Worker identity/generation exported for peer scans.

Tests cover shared ID across five namespaces, distinct launches, multi-
instance same profile, same-instance duplicates, untrusted attribution,
and the production launcher path.

Co-Authored-By: Claude Opus 4.8 (1M context) <[email protected]>
2026-07-30 10:12:16 -04:00
sysadminandClaude Opus 4.8 4a1cc63e94 feat(controller): expose instance-level fleet identity and health snapshots
Add a pure fleet snapshot assessor and a read-only controller/reconciler
MCP tool so multi-instance fleets can be enumerated by client_instance_id
without treating shared client_type as duplication. Trusted launcher
instance IDs, classification (missing/unmanifested/collisions/historical),
registry schema extensions, docs, and regression tests for #978.

Closes #978

Co-Authored-By: Claude Opus 4.8 (1M context) <[email protected]>
2026-07-30 03:14:15 -04:00
sysadmin 6596b259fc Merge pull request 'fix(runtime): recognize client identity environment and refresh worker registrations' (#976) from fix/issue-975-client-identity-heartbeat into master 2026-07-29 23:26:34 -05:00
10 changed files with 3437 additions and 59 deletions
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@@ -0,0 +1,198 @@
# Instance-level fleet identity and health snapshots
Issue **#978**. Companion primitives: **#948** (worker ownership), **#975**
(heartbeat lifecycle), **#951** (restart receipts).
## Why this exists
The multi-instance fleet gate (#963) needs a *native* answer to:
* which application launches are live;
* which of the five namespace workers belong to each launch;
* whether two Codex (or Claude, Grok, …) launches are distinct;
* whether any live collision is real rather than a shared client type.
Process tables, PID proximity, configuration files, and direct SQLite access
are **not** production evidence. The sanctioned surface is the read-only MCP
tool `gitea_snapshot_instance_fleet` on **controller** and **reconciler**
namespaces.
## Identity hierarchy
| Identity | Scope | Who generates it | Lifetime |
| --- | --- | --- | --- |
| `client_type` | Application family (`codex`, `claude_code`, `gemini`, `grok`, …) | Launcher sets `GITEA_MCP_CLIENT` | Stable for the product |
| `client_instance_id` | One running application launch | **Trusted launcher**, once per launch, as `GITEA_MCP_CLIENT_INSTANCE` | Fresh launch → new ID; reconnect of same launch → same ID; full app restart → new ID |
| `fleet_run_id` | Operator-approved enrollment / canary cohort | Operator / controller sets `GITEA_MCP_FLEET_RUN_ID` | Duration of the approved rollout |
| `namespace` | `author` \| `reviewer` \| `merger` \| `controller` \| `reconciler` | Profile / MCP server binding | Process lifetime |
| `worker_id` / `worker_identity` | One namespace worker process | Runtime registry at first registration | New on worker restart; not reused |
| `session_id` | Client session ownership | Launcher `GITEA_MCP_CLIENT_SESSION` or runtime | Session lifetime |
| `generation_id` | One daemon launch | Runtime at process boot | New on process restart |
| `process_identity` / PID | OS process | Runtime | Process lifetime |
### Rules
1. Multiple active instances **may** share the same `client_type`.
2. Every application launch receives a **distinct** `client_instance_id`.
3. All five namespace workers of one launch report the **same**
`client_instance_id`.
4. Each namespace worker has a **distinct** `worker_identity`, process
identity, generation, and PID.
5. Instance identity is **never** inferred from PID proximity, timestamps, or
client type alone.
6. Live reuse of one `client_instance_id` with conflicting workers fails closed.
7. Sharing only a profile or `client_type` is **not** a duplicate.
This deliberately **replaces** any permanent `exactly_one_per_profile` fleet
model (#949 assumption) as the operating rule for multi-instance fleets.
## How five workers join one instance
1. The host starts one application instance (for example one Codex session).
2. The **production application launcher**
(`mcp_application_launcher.build_application_mcp_servers` /
`gitea_config.multi_namespace_launcher_entries`) mints exactly one
`client_instance_id` via `mcp_fleet_snapshot.generate_client_instance_id`
and injects the same env into every namespace worker:
```text
GITEA_MCP_CLIENT=<client_type>
GITEA_MCP_CLIENT_INSTANCE=<client_instance_id>
GITEA_MCP_INSTANCE_PROVENANCE=trusted_launcher
GITEA_MCP_CLIENT_SESSION=<session_id> # optional but recommended
GITEA_MCP_FLEET_RUN_ID=<enrollment id> # when on an approved canary
GITEA_CLIENT_MANAGED=1
GITEA_MCP_PROFILE=<role-profile>
```
3. The MCP client starts the five namespace processes (`gitea-author`,
`gitea-reviewer`, `gitea-merger`, `gitea-controller`, `gitea-reconciler`)
from that generated `mcpServers` map — each entry carries the **same**
instance ID.
4. Each worker registers once into the worker registry with its own
`worker_identity`, `namespace`, `generation_id`, and PID, but the shared
`client_instance_id`. Workers never mint a trusted instance ID themselves.
Only IDs matching the launcher format `inst-<client>-<timestamp>-<digest>`
are trusted. Missing, `legacy-pid-*` / `pid-*` placeholders, and ordinary
user-supplied strings fail closed as untrusted and cannot authorize
multi-instance fleet mutation safety.
Worker reconnect (same process, same registration) keeps the instance ID.
Worker restart (new process) mints a new worker identity and generation but
must still receive the same `GITEA_MCP_CLIENT_INSTANCE` from the parent
application if it is the same launch. Full application restart mints a new
`client_instance_id` (call the launcher without a prior ID).
### Mutation gate (instance-aware)
The capability / runtime diagnostic gate
(`_check_mcp_runtimes_diagnostics`) is **instance-aware**:
* Two legitimate application instances that share a profile (same
`GITEA_MCP_PROFILE`) are allowed when each has a distinct trusted
`client_instance_id`.
* More than one live worker for the same
`(client_instance_id, profile/namespace)` fails closed as a duplicate
namespace worker.
* Multiple processes sharing a profile **without** trusted instance
evidence still fail closed (indistinguishable from a duplicate).
## Approved fleet manifest
An operator (or controller enrollment step) obtains an approved manifest as a
list of expected instances, for example:
```json
{
"instances": [
{
"client_type": "codex",
"client_instance_id": "inst-codex-20260730T120000Z-abc123def456",
"fleet_run_id": "canary-963-2026-07-30",
"namespaces": ["author", "reviewer", "merger", "controller", "reconciler"]
},
{
"client_type": "codex",
"client_instance_id": "inst-codex-20260730T120100Z-fed654cba321",
"fleet_run_id": "canary-963-2026-07-30",
"namespaces": ["author", "reviewer", "merger", "controller", "reconciler"]
}
]
}
```
Pass that list as `expected_manifest` to `gitea_snapshot_instance_fleet`.
When a manifest is supplied:
* instances on the manifest but not live → `missing_expected`;
* live instances not on the manifest → `unmanifested`;
* both are **active blockers** for fleet-gate safety.
Without a manifest, the snapshot still enumerates the live fleet and classifies
identity collisions; it does not invent enrollment policy.
## Snapshot consistency
Each snapshot includes:
* `snapshot_at` — UTC timestamp;
* `consistency_token` / `registry_revision` — content digest over worker
identity, instance id, status, heartbeat, fencing, and generation.
Two successive snapshots can prove heartbeat continuity via
`mcp_fleet_snapshot.compare_snapshot_heartbeats`.
## Classification (active vs historical)
**Active blockers** (make `live_fleet_safe=false`):
* missing expected instance;
* unmanifested extra instance;
* duplicate namespace worker within one instance;
* live `client_instance_id` collision;
* reused worker / session / generation / process / PID / fencing identity;
* orphaned or unowned workers;
* unknown client;
* foreign-repository workers;
* old-revision workers;
* stale workers still marked active;
* legacy incomplete instance identity.
**Historical dead rows** (`status` released/superseded) are reported as
`historical_dead` findings with `active_blocker=false`. They never
automatically make the live fleet unsafe.
## Fail-closed behaviour and recovery
| Condition | Mutation safety | Diagnostic reads | Recovery |
| --- | --- | --- | --- |
| Two instances, same `client_type`, distinct IDs | Safe (if otherwise healthy) | Available | None needed |
| Live reuse of one `client_instance_id` | Unsafe | Available | Stop the colliding launch or re-issue a distinct ID |
| Two workers, same namespace, one instance | Unsafe | Available | Stop the extra worker |
| Legacy registration without trusted instance ID | Unsafe for fleet mutation | Available | Relaunch with launcher-issued `GITEA_MCP_CLIENT_INSTANCE` |
| Historical dead row only | Does not block alone | Available | No action required for fleet safety |
| Registry unavailable | Snapshot fails closed | N/A | Repair registry path / reconnect namespaces |
Incomplete or untrusted instance identity **cannot** authorize unsafe
mutation. Diagnostic reads remain available where `gitea.read` allows.
## Permissions
* **Allowed:** `controller`, `reconciler` with `gitea.read`.
* **Denied:** author, reviewer, merger (even with `gitea.read` for other tools).
* **No new mutation permissions** are granted to any role.
## Related surfaces
* `mcp_worker_identity` — registry, worker identity, heartbeats (#948, #975).
* `mcp_fleet_snapshot` — pure snapshot + classification (#978).
* `gitea_snapshot_instance_fleet` — sanctioned MCP tool (#978).
* `gitea_get_runtime_context` — single-process view (not fleet-wide).
## Non-goals
* Starting the #963 canary.
* Purging historical registry rows.
* Preserving “exactly one process per profile” as the permanent model.
* Using shell / process-table / SQLite inspection as production fleet evidence.
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@@ -159,6 +159,7 @@ that gates each call, not which tools exist.
- `gitea_sentry_reconcile_issue`
- `gitea_sentry_watchdog`
- `gitea_set_issue_labels`
- `gitea_snapshot_instance_fleet`
- `gitea_submit_pr_review`
- `gitea_update_pr_branch_by_merge`
- `gitea_validate_review_final_report`
+70 -15
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@@ -1203,6 +1203,15 @@ RECOGNIZED_GITEA_ENV_KEYS = frozenset({
"GITEA_MCP_CLIENT",
"GITEA_MCP_CLIENT_INSTANCE",
"GITEA_MCP_CLIENT_SESSION",
# #978: operator-approved fleet enrollment identity shared by one launch.
"GITEA_MCP_FLEET_RUN_ID",
"GITEA_MCP_PROCESS_IDENTITY",
# #978 B1/B2: launcher-sealed provenance + peer-visible worker identity so
# the instance-aware mutation gate can distinguish two legitimate
# application instances that share a profile from a true duplicate worker.
"GITEA_MCP_INSTANCE_PROVENANCE",
"GITEA_MCP_WORKER_IDENTITY",
"GITEA_MCP_GENERATION_ID",
# #975 review 652 B1: production also consumes HEARTBEAT_INTERVAL_ENV from
# mcp_worker_identity via gitea_mcp_server._start_worker_heartbeat. Omitting
# it reproduced the same unsupported-env → runtime_reconnect_required
@@ -1236,24 +1245,70 @@ def get_unconsumed_gitea_env_overrides(env=None) -> dict[str, str]:
return unconsumed
def launcher_entry(profile_name, config_path=None):
def launcher_entry(
profile_name,
config_path=None,
*,
client_type=None,
client_instance_id=None,
fleet_run_id=None,
session_id=None,
launch_nonce=None,
):
"""Return a thin MCP launcher entry for *profile_name*.
Contains command/args and the GITEA_MCP_* / GITEA_CLIENT_MANAGED env vars — never a token
or password. Suitable for Claude / Gemini / Codex ``mcpServers`` blocks.
Contains command/args and the GITEA_MCP_* / GITEA_CLIENT_MANAGED env vars —
never a token or password. Suitable for Claude / Gemini / Codex
``mcpServers`` blocks.
#978 B1: production launches mint (or reuse) a trusted
``GITEA_MCP_CLIENT_INSTANCE`` so workers never fall back to the legacy
placeholder identity on the real serve path. Pass *client_instance_id* to
resume the same launch; omit it for a fresh launch (new ID).
"""
command, args = server_command()
return {
"gitea-tools": {
"command": command,
"args": args,
"env": {
"GITEA_MCP_CONFIG": config_path or DEFAULT_CONFIG_PATH,
"GITEA_MCP_PROFILE": profile_name,
"GITEA_CLIENT_MANAGED": "1",
},
}
}
import mcp_application_launcher as app_launcher
built = app_launcher.launcher_entry_for_profile(
profile_name,
client_type=client_type or "unknown",
config_path=config_path or DEFAULT_CONFIG_PATH,
client_instance_id=client_instance_id,
fleet_run_id=fleet_run_id,
session_id=session_id,
launch_nonce=launch_nonce,
server_key="gitea-tools",
)
# Public shape stays {server_key: {command, args, env}} for existing callers.
return {"gitea-tools": built["gitea-tools"]}
def multi_namespace_launcher_entries(
profile_by_namespace,
*,
client_type,
config_path=None,
client_instance_id=None,
fleet_run_id=None,
session_id=None,
launch_nonce=None,
):
"""Build production mcpServers for all five namespaces of one application launch.
One shared trusted ``client_instance_id`` is minted (or reused) and
propagated to every namespace worker env. See
:func:`mcp_application_launcher.build_application_mcp_servers`.
"""
import mcp_application_launcher as app_launcher
return app_launcher.build_application_mcp_servers(
profile_by_namespace,
client_type=client_type,
config_path=config_path or DEFAULT_CONFIG_PATH,
client_instance_id=client_instance_id,
fleet_run_id=fleet_run_id,
session_id=session_id,
launch_nonce=launch_nonce,
)
+338 -30
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@@ -15733,6 +15733,10 @@ _WORKER_HEARTBEAT_SUPERVISOR = None
CLIENT_NAME_ENV = "GITEA_MCP_CLIENT"
CLIENT_INSTANCE_ENV = "GITEA_MCP_CLIENT_INSTANCE"
CLIENT_SESSION_ENV = "GITEA_MCP_CLIENT_SESSION"
FLEET_RUN_ENV = "GITEA_MCP_FLEET_RUN_ID"
INSTANCE_PROVENANCE_ENV = "GITEA_MCP_INSTANCE_PROVENANCE"
WORKER_IDENTITY_ENV = "GITEA_MCP_WORKER_IDENTITY"
GENERATION_ID_ENV = "GITEA_MCP_GENERATION_ID"
def _worker_registry():
@@ -15756,13 +15760,57 @@ def _worker_registry():
def _client_identity_hints() -> dict:
"""What the launcher told us about itself. Unset fields stay unset."""
"""What the launcher told us about itself (#948 / #975 / #978).
``client_instance_id`` is established by the trusted application launcher
once per launch and shared by all five namespace workers. Workers inherit
that value from the production launcher env and never mint a trusted ID
themselves. When the launcher key is absent or untrusted we still register
under an explicit *legacy* placeholder so diagnostic reads work, but the
registration is marked incomplete and cannot authorize multi-instance fleet
mutation safety.
"""
import mcp_application_launcher as app_launcher
import mcp_fleet_snapshot
inherited = app_launcher.inherit_or_refuse_client_instance(os.environ)
client_name = (os.environ.get(CLIENT_NAME_ENV) or "").strip() or None
instance = {
"client_instance_id": inherited.get("client_instance_id"),
"provenance": inherited.get("provenance"),
"trusted": bool(inherited.get("trusted")),
"complete": bool(inherited.get("complete")),
"launcher_sealed": bool(inherited.get("launcher_sealed")),
}
# Legacy placeholder only when the launcher omitted a usable key — never
# invent a trusted ID from PID proximity or ordinary user env.
if not instance["client_instance_id"] or not instance["trusted"]:
if not instance["client_instance_id"]:
placeholder = f"legacy-pid-{os.getpid()}"
fallback = mcp_fleet_snapshot.assess_instance_identity(
placeholder, source="pid_fallback"
)
instance = {
"client_instance_id": fallback["client_instance_id"],
"provenance": fallback["provenance"],
"trusted": False,
"complete": False,
"launcher_sealed": False,
}
else:
# Malformed / untrusted user-supplied value: keep it for diagnosis
# but never mark trusted.
instance["trusted"] = False
instance["launcher_sealed"] = False
return {
"client_name": (os.environ.get(CLIENT_NAME_ENV) or "").strip() or None,
"client_instance_id": (os.environ.get(CLIENT_INSTANCE_ENV) or "").strip()
or f"pid-{os.getpid()}",
"client_name": client_name,
"client_instance_id": instance["client_instance_id"],
"instance_id_provenance": instance["provenance"],
"instance_identity_trusted": instance["trusted"],
"instance_launcher_sealed": instance.get("launcher_sealed", False),
"session_id": (os.environ.get(CLIENT_SESSION_ENV) or "").strip()
or f"proc-{os.getpid()}-{_process_boot_head_sha or 'nohead'}",
"fleet_run_id": (os.environ.get(FLEET_RUN_ENV) or "").strip() or None,
}
@@ -15794,24 +15842,60 @@ def _active_worker_identity() -> str | None:
identity = mcp_worker_identity.generate_worker_identity(
hints["client_name"], hints["session_id"]
)
role = _active_role_kind_safe()
profile_name = (
(os.environ.get(gitea_config.ENV_PROFILE) or "").strip() or None
)
# Namespace is the role namespace (author/reviewer/…) when known.
namespace = role if role in {
"author", "reviewer", "merger", "controller", "reconciler"
} else None
parity = None
try:
parity = _current_master_parity()
except Exception:
parity = None
outcome = registry.register(
worker_identity=identity,
client_name=hints["client_name"],
client_instance_id=hints["client_instance_id"],
session_id=hints["session_id"],
generation_id=generation,
role=_active_role_kind_safe(),
profile=(os.environ.get(gitea_config.ENV_PROFILE) or "").strip() or None,
role=role,
profile=profile_name,
namespace=namespace,
remote=(os.environ.get("GITEA_MCP_REMOTE") or "").strip() or None,
repository_binding=PROJECT_ROOT,
pid=os.getpid(),
transport=native.get("bound_transport"),
token_fingerprint=native.get("token_fingerprint"),
pid_alive_probe=issue_lock_store.is_process_alive,
fleet_run_id=hints.get("fleet_run_id"),
process_identity=f"pid-{os.getpid()}",
startup_revision=(parity or {}).get("startup_head")
or _process_boot_head_sha,
loaded_revision=(parity or {}).get("local_head")
or (parity or {}).get("current_head"),
parity_revision=(parity or {}).get("current_head"),
live_revision=(parity or {}).get("live_remote_head"),
instance_id_provenance=hints.get("instance_id_provenance"),
)
if outcome.get("registered"):
_WORKER_IDENTITY = identity
_WORKER_GENERATION = generation
# #978 B2: export worker/generation/instance into this process
# env so peer process scans (and the instance-aware mutation
# gate) can attribute live workers without treating shared
# profiles as duplicates. Never overwrite a launcher-sealed
# client_instance_id with a different value.
os.environ[WORKER_IDENTITY_ENV] = identity
os.environ[GENERATION_ID_ENV] = generation
if hints.get("client_instance_id") and not (
os.environ.get(CLIENT_INSTANCE_ENV) or ""
).strip():
os.environ[CLIENT_INSTANCE_ENV] = str(
hints["client_instance_id"]
)
# #975: registration is the only moment identity and fencing
# epoch are both known, so the heartbeat supervisor is started
# here. Without it ``last_heartbeat_at`` never left
@@ -19373,6 +19457,172 @@ def gitea_validate_review_final_report(
)
@mcp.tool()
def gitea_snapshot_instance_fleet(
remote: str = "dadeschools",
host: str | None = None,
org: str | None = None,
repo: str | None = None,
expected_manifest: list | dict | str | None = None,
include_historical: bool = True,
canonical_repository: str | None = None,
expected_live_revision: str | None = None,
) -> dict:
"""Read-only: authoritative instance-level fleet identity and health snapshot (#978).
Controller and reconciler only. Returns a point-in-time snapshot of every
registered namespace worker with instance attribution, heartbeat freshness,
and structured classification (expected/missing/unmanifested, duplicate
namespace workers, identity collisions, foreign repository, old revision,
historical dead rows). Sharing only a client type is never a duplicate.
Does not grant any mutation capability. Does not scan process tables or
open foreign databases for production evidence the worker registry is
the sole authority.
Args:
remote: Known instance 'dadeschools' or 'prgs'.
host: Optional host override.
org: Optional org override (audit context only).
repo: Optional repo override (audit context only).
expected_manifest: Optional approved fleet enrollment list
(list of dicts with client_instance_id / client_type / fleet_run_id).
When supplied, missing and unmanifested instances are classified.
include_historical: Include released/superseded rows (default True);
historical rows never make the live fleet unsafe by themselves.
canonical_repository: Expected repository binding path/slug for
foreign-repository classification.
expected_live_revision: When set, workers whose recorded revisions
differ are classified as old-revision.
"""
import json as _json
import mcp_fleet_snapshot
read_block = _profile_operation_gate("gitea.read")
if read_block:
return {
"success": False,
"read_only": True,
"reasons": read_block,
"permission_report": _permission_block_report("gitea.read"),
}
profile = get_profile()
role = _profile_role_kind(profile)
if role not in {"controller", "reconciler"}:
return {
"success": False,
"read_only": True,
"allowed": False,
"denied_role": role,
"required_roles": ["controller", "reconciler"],
"mutation_performed": False,
"reasons": [
f"gitea_snapshot_instance_fleet is restricted to controller and "
f"reconciler roles; active role_kind is {role!r}. Author, "
"reviewer, and merger profiles keep gitea.read for diagnosis "
"elsewhere but do not receive this fleet surface, and no "
"unrelated mutation permission is granted."
],
"exact_next_action": (
"Re-run from a prgs-controller or prgs-reconciler namespace."
),
}
manifest: list | None = None
if expected_manifest is not None:
raw = expected_manifest
if isinstance(raw, str):
try:
raw = _json.loads(raw)
except Exception as exc:
return {
"success": False,
"read_only": True,
"reasons": [
f"expected_manifest is not valid JSON: {type(exc).__name__}"
],
}
if isinstance(raw, dict):
# Accept {"instances": [...]} or a single instance object.
if "instances" in raw and isinstance(raw["instances"], list):
raw = raw["instances"]
else:
raw = [raw]
if not isinstance(raw, list):
return {
"success": False,
"read_only": True,
"reasons": ["expected_manifest must be a list of instance objects"],
}
manifest = raw
registry = _worker_registry()
if registry is None:
return {
"success": False,
"read_only": True,
"reasons": [
"worker registry is unavailable; cannot produce an authoritative "
"fleet snapshot (fail closed)"
],
"exact_next_action": (
"Ensure GITEA_WORKER_REGISTRY_DB is writable and re-run after "
"workers have registered."
),
}
try:
if include_historical:
records = registry.list_workers(status=None)
else:
records = registry.list_workers(status=mcp_worker_identity.STATUS_ACTIVE)
except Exception as exc:
return {
"success": False,
"read_only": True,
"reasons": [
f"failed to read worker registry: {type(exc).__name__}: {_redact(str(exc))}"
],
}
parity = None
try:
parity = _current_master_parity()
except Exception:
parity = None
live_rev = expected_live_revision or (parity or {}).get("live_remote_head")
canon = canonical_repository or PROJECT_ROOT
snapshot = mcp_fleet_snapshot.snapshot_instance_fleet(
records,
expected_manifest=manifest,
pid_alive_probe=issue_lock_store.is_process_alive,
canonical_repository=canon,
expected_live_revision=live_rev,
)
snapshot["role_kind"] = role
snapshot["profile"] = profile.get("profile_name")
snapshot["remote"] = _effective_remote(remote)
snapshot["repository"] = {
"org": org,
"repo": repo,
"canonical_repository": canon,
}
snapshot["mutation_performed"] = False
snapshot["permission_scope"] = {
"read_only": True,
"granted_operations": ["gitea.read"],
"denied_unrelated_mutations": True,
"note": (
"This capability is strictly observational. It does not authorize "
"branch, issue, PR, review, merge, or restart mutations."
),
}
return snapshot
@mcp.tool()
def gitea_get_runtime_context(
remote: str = "dadeschools",
@@ -22164,6 +22414,20 @@ def _check_mcp_runtimes_diagnostics(task: str, matching_profiles: list[str]) ->
)
peer_worker_identity = peer_env.get("GITEA_MCP_WORKER_IDENTITY")
peer_generation = peer_env.get("GITEA_MCP_GENERATION_ID")
# #978 B2: instance attribution for the live fleet gate. Two legitimate
# application instances may share a profile when each has a distinct
# trusted client_instance_id; only same-(instance, profile/namespace)
# duplicates remain blocked.
import mcp_fleet_snapshot as _fleet
peer_instance_raw = peer_env.get("GITEA_MCP_CLIENT_INSTANCE")
peer_instance_assess = _fleet.assess_instance_identity(peer_instance_raw)
peer_client_instance = (
peer_instance_assess["client_instance_id"]
if peer_instance_assess.get("trusted")
else None
)
peer_instance_trusted = bool(peer_instance_assess.get("trusted"))
for env_match in re.finditer(r'\b(GITEA_[A-Z0-9_]+)=([^\s]+)', env_out):
k, v = env_match.group(1), env_match.group(2)
@@ -22181,6 +22445,9 @@ def _check_mcp_runtimes_diagnostics(task: str, matching_profiles: list[str]) ->
"is_client_managed": is_client_managed,
"worker_identity": peer_worker_identity,
"generation_id": peer_generation,
"client_instance_id": peer_client_instance,
"instance_identity_trusted": peer_instance_trusted,
"raw_client_instance_id": peer_instance_raw,
}
if profile not in all_profile_procs:
all_profile_procs[profile] = []
@@ -22188,44 +22455,85 @@ def _check_mcp_runtimes_diagnostics(task: str, matching_profiles: list[str]) ->
running_profiles = {}
for profile, procs in all_profile_procs.items():
# #948 AC40/AC43: sharing a profile is legitimate — profile is a
# reusable capability definition, not a worker identity. What is *not*
# legitimate is reusing one worker identity, or two live sessions
# claiming one generation. Distinctness has to be proven, though:
# processes carrying no identity evidence are indistinguishable, so
# they stay classified as duplicates and keep the #686 wall intact.
identified = [p for p in procs if p.get("worker_identity")]
# #978 B2 / #948 AC40: sharing a profile is legitimate when each live
# process belongs to a distinct trusted application instance. The
# permanent model is instance-aware — not exactly_one_per_profile.
# Fail closed only when:
# * more than one live worker claims the same (client_instance_id,
# profile/namespace), or
# * worker identity / generation is reused, or
# * multiple processes share a profile without trusted instance
# evidence (indistinguishable → treat as duplicate).
# Group by trusted client_instance_id (untrusted/missing → one bucket).
by_instance: dict[str, list[dict]] = {}
for p in procs:
if p.get("instance_identity_trusted") and p.get("client_instance_id"):
key = str(p["client_instance_id"])
else:
key = "__untrusted_or_missing__"
by_instance.setdefault(key, []).append(p)
for instance_key, group in by_instance.items():
if len(group) <= 1:
continue
identified = [p for p in group if p.get("worker_identity")]
distinct_identities = {p["worker_identity"] for p in identified}
all_identified = len(identified) == len(procs)
all_identified = len(identified) == len(group)
duplicate_identity = len(identified) != len(distinct_identities)
contested_generation = any(
len({p["worker_identity"] for p in identified if p.get("generation_id") == gen}) > 1
for gen in {p.get("generation_id") for p in identified if p.get("generation_id")}
len(
{
p["worker_identity"]
for p in identified
if p.get("generation_id") == gen
}
)
if len(procs) > 1 and (
> 1
for gen in {
p.get("generation_id")
for p in identified
if p.get("generation_id")
}
)
# Same trusted (instance, profile) with >1 live process is always a
# duplicate-namespace-worker, even if worker identities differ —
# one application launch gets exactly one worker per namespace.
same_trusted_instance = instance_key != "__untrusted_or_missing__"
if same_trusted_instance or (
not all_identified or duplicate_identity or contested_generation
):
pids_str = ", ".join(str(p["pid"]) for p in procs)
if duplicate_identity or contested_generation:
pids_str = ", ".join(str(p["pid"]) for p in group)
if same_trusted_instance:
detail = (
"The same worker identity or generation is claimed more than once, "
"so these are genuine duplicates rather than independent workers."
f"More than one live worker for profile '{profile}' under "
f"client_instance_id {instance_key!r} (duplicate namespace "
"worker). Two legitimate application instances with "
"distinct trusted client_instance_id values may share a "
"profile; this collision does not."
)
elif duplicate_identity or contested_generation:
detail = (
"The same worker identity or generation is claimed more "
"than once, so these are genuine duplicates rather than "
"independent workers."
)
else:
detail = (
"Manual or duplicate launches defeat staleness detection and cannot "
"receive client stdio."
"Multiple processes share this profile without distinct "
"trusted client_instance_id evidence, so they cannot be "
"told apart from a duplicate MCP process. Relaunch via "
"the production application launcher so each instance "
"receives a trusted GITEA_MCP_CLIENT_INSTANCE."
)
reasons.append(
f"stale-runtime: Duplicate MCP server process(es) detected for profile '{profile}' (PIDs: {pids_str}). "
f"stale-runtime: Duplicate MCP server process(es) detected "
f"for profile '{profile}' (PIDs: {pids_str}). "
+ detail
)
# Otherwise: several independently identified workers share one profile.
# No reason is appended, deliberately. Every reason this function
# returns is raised as a hard RuntimeError by its callers, so recording
# legitimate concurrency here as "informational" would block exactly the
# case #948 exists to permit.
# Multiple trusted instances sharing one profile intentionally produce
# no reason here. Callers raise every reason as a hard RuntimeError, so
# treating legitimate multi-instance concurrency as "informational"
# would re-introduce the profile-only wall #978 removes.
client_procs = [p for p in procs if p["is_client_managed"]]
if client_procs:
client_procs.sort(key=lambda p: p["start_time"], reverse=True)
+393
View File
@@ -0,0 +1,393 @@
"""Production application launcher for multi-namespace MCP fleets (#978 B1).
One real LLM application launch mints exactly one trusted
``client_instance_id`` and propagates it to every Gitea MCP namespace worker
started for that launch. Workers never invent a trusted instance identity from
PID proximity, timestamps, or ordinary untrusted environment values.
This module is the production serve-path authority for instance identity.
Tests and fixtures may call the same functions, but production registration
receives the identity from the env this launcher builds — not from a hand-set
test-only helper that bypasses it.
"""
from __future__ import annotations
import os
import secrets
from typing import Any, Mapping
import mcp_fleet_snapshot as fleet
import mcp_worker_identity as mwi
#: Canonical MCP server names for the five role namespaces.
NAMESPACE_SERVER_NAMES: tuple[str, ...] = (
"gitea-author",
"gitea-reviewer",
"gitea-merger",
"gitea-controller",
"gitea-reconciler",
)
#: Map MCP server name → role/namespace kind.
SERVER_TO_NAMESPACE: dict[str, str] = {
"gitea-author": "author",
"gitea-reviewer": "reviewer",
"gitea-merger": "merger",
"gitea-controller": "controller",
"gitea-reconciler": "reconciler",
}
SANCTIONED_NAMESPACES: tuple[str, ...] = (
"author",
"reviewer",
"merger",
"controller",
"reconciler",
)
# Env the launcher may set on every worker of one application launch.
CLIENT_NAME_ENV = "GITEA_MCP_CLIENT"
CLIENT_INSTANCE_ENV = fleet.CLIENT_INSTANCE_ENV
FLEET_RUN_ENV = fleet.FLEET_RUN_ENV
CLIENT_SESSION_ENV = "GITEA_MCP_CLIENT_SESSION"
CLIENT_MANAGED_ENV = "GITEA_CLIENT_MANAGED"
PROFILE_ENV = "GITEA_MCP_PROFILE"
CONFIG_ENV = "GITEA_MCP_CONFIG"
INSTANCE_PROVENANCE_ENV = "GITEA_MCP_INSTANCE_PROVENANCE"
WORKER_IDENTITY_ENV = "GITEA_MCP_WORKER_IDENTITY"
GENERATION_ID_ENV = "GITEA_MCP_GENERATION_ID"
# Marker the trusted launcher alone writes; ordinary user env without this
# marker is never classified as launcher-trusted provenance.
LAUNCHER_PROVENANCE_VALUE = fleet.INSTANCE_ID_PROVENANCE_TRUSTED
def mint_application_launch(
client_type: str | None,
*,
launch_nonce: str | None = None,
fleet_run_id: str | None = None,
session_id: str | None = None,
now=None,
) -> dict[str, Any]:
"""Mint one trusted application-instance identity for a production launch.
Called exactly once per real application launch. The returned
``client_instance_id`` is injected into every namespace worker environment
for that launch. A second call (separate launch) yields a different ID.
"""
client = mwi.normalize_client_name(client_type)
instance_id = fleet.generate_client_instance_id(
client, launch_nonce=launch_nonce, now=now
)
assessment = fleet.assess_instance_identity(instance_id)
if not assessment["trusted"]:
# generate_client_instance_id always produces a trusted format; fail
# closed if that invariant ever breaks rather than shipping untrusted.
raise RuntimeError(
f"launcher produced untrusted client_instance_id {instance_id!r}: "
f"{assessment.get('reasons')}"
)
session = (session_id or "").strip() or f"launch-{secrets.token_hex(12)}"
return {
"client_type": client,
"client_instance_id": instance_id,
"instance_id_provenance": LAUNCHER_PROVENANCE_VALUE,
"instance_identity_trusted": True,
"fleet_run_id": (fleet_run_id or "").strip() or None,
"session_id": session,
"namespaces": list(SANCTIONED_NAMESPACES),
"namespace_server_names": list(NAMESPACE_SERVER_NAMES),
}
def namespace_worker_env(
*,
profile_name: str,
client_type: str | None,
client_instance_id: str,
config_path: str | None = None,
fleet_run_id: str | None = None,
session_id: str | None = None,
extra_env: Mapping[str, str] | None = None,
) -> dict[str, str]:
"""Build the environment for one namespace worker of a trusted launch.
Never invents a client_instance_id. The caller must supply the launch-minted
identity so all five workers receive the same value.
"""
assessment = fleet.assess_instance_identity(client_instance_id)
if not assessment["trusted"]:
raise ValueError(
"namespace_worker_env refuses untrusted client_instance_id "
f"{client_instance_id!r}: {assessment.get('reasons')}"
)
client = mwi.normalize_client_name(client_type)
env: dict[str, str] = {
PROFILE_ENV: str(profile_name),
CLIENT_MANAGED_ENV: "1",
"GITEA_MCP_CLIENT": client,
CLIENT_INSTANCE_ENV: assessment["client_instance_id"],
INSTANCE_PROVENANCE_ENV: LAUNCHER_PROVENANCE_VALUE,
}
if config_path:
env[CONFIG_ENV] = str(config_path)
if fleet_run_id:
env[FLEET_RUN_ENV] = str(fleet_run_id)
if session_id:
env[CLIENT_SESSION_ENV] = str(session_id)
if extra_env:
# Never let untrusted callers override the trusted instance keys.
protected = {
CLIENT_INSTANCE_ENV,
INSTANCE_PROVENANCE_ENV,
"GITEA_MCP_CLIENT",
CLIENT_MANAGED_ENV,
}
for key, value in extra_env.items():
if key in protected:
continue
env[str(key)] = str(value)
return env
def build_application_mcp_servers(
profile_by_namespace: Mapping[str, str],
*,
client_type: str | None,
config_path: str | None = None,
client_instance_id: str | None = None,
fleet_run_id: str | None = None,
session_id: str | None = None,
launch_nonce: str | None = None,
command: str | None = None,
args: list[str] | None = None,
now=None,
) -> dict[str, Any]:
"""Build a production ``mcpServers`` map for one application launch.
Mints one ``client_instance_id`` when *client_instance_id* is omitted (fresh
launch). When the caller supplies a previously minted trusted ID (resume of
the same launch / config rewrite), that ID is reused so reconnect keeps
attribution. A full new application restart omits the ID and receives a
fresh mint.
Every namespace server entry receives the **same** instance ID. Separate
calls with no supplied ID receive distinct IDs.
"""
missing = [
ns for ns in SANCTIONED_NAMESPACES if not profile_by_namespace.get(ns)
]
if missing:
raise ValueError(
"build_application_mcp_servers requires a profile for every "
f"sanctioned namespace; missing: {missing}"
)
if client_instance_id is None:
launch = mint_application_launch(
client_type,
launch_nonce=launch_nonce,
fleet_run_id=fleet_run_id,
session_id=session_id,
now=now,
)
else:
assessment = fleet.assess_instance_identity(client_instance_id)
if not assessment["trusted"]:
raise ValueError(
"refusing to propagate untrusted client_instance_id "
f"{client_instance_id!r} into production launch envs: "
f"{assessment.get('reasons')}"
)
launch = {
"client_type": mwi.normalize_client_name(client_type),
"client_instance_id": assessment["client_instance_id"],
"instance_id_provenance": LAUNCHER_PROVENANCE_VALUE,
"instance_identity_trusted": True,
"fleet_run_id": (fleet_run_id or "").strip() or None,
"session_id": (session_id or "").strip()
or f"launch-{secrets.token_hex(12)}",
"namespaces": list(SANCTIONED_NAMESPACES),
"namespace_server_names": list(NAMESPACE_SERVER_NAMES),
}
# Resolve command/args from the production server entry when not provided.
if command is None or args is None:
import gitea_config
cmd, cmd_args = gitea_config.server_command()
command = command or cmd
args = args if args is not None else list(cmd_args)
servers: dict[str, Any] = {}
shared_id = launch["client_instance_id"]
for namespace in SANCTIONED_NAMESPACES:
server_name = f"gitea-{namespace}"
profile = profile_by_namespace[namespace]
env = namespace_worker_env(
profile_name=profile,
client_type=launch["client_type"],
client_instance_id=shared_id,
config_path=config_path,
fleet_run_id=launch.get("fleet_run_id"),
session_id=launch.get("session_id"),
)
servers[server_name] = {
"command": command,
"args": list(args),
"env": env,
}
return {
"mcpServers": servers,
"launch": launch,
"client_instance_id": shared_id,
"client_type": launch["client_type"],
"namespaces": list(SANCTIONED_NAMESPACES),
"shared_instance_id_across_namespaces": True,
"namespace_count": len(SANCTIONED_NAMESPACES),
}
def launcher_entry_for_profile(
profile_name: str,
*,
client_type: str | None = None,
config_path: str | None = None,
client_instance_id: str | None = None,
fleet_run_id: str | None = None,
session_id: str | None = None,
server_key: str = "gitea-tools",
launch_nonce: str | None = None,
now=None,
) -> dict[str, Any]:
"""Thin single-server production launcher entry with trusted instance ID.
Used when only one namespace is being configured. Still mints (or reuses)
a trusted ``client_instance_id`` so production never relies on the legacy
placeholder identity for normal launches.
"""
import gitea_config
if client_instance_id is None:
launch = mint_application_launch(
client_type or "unknown",
launch_nonce=launch_nonce,
fleet_run_id=fleet_run_id,
session_id=session_id,
now=now,
)
client_instance_id = launch["client_instance_id"]
client = launch["client_type"]
fleet_run = launch.get("fleet_run_id")
session = launch.get("session_id")
else:
assessment = fleet.assess_instance_identity(client_instance_id)
if not assessment["trusted"]:
raise ValueError(
f"untrusted client_instance_id {client_instance_id!r}"
)
client = mwi.normalize_client_name(client_type)
fleet_run = (fleet_run_id or "").strip() or None
session = (session_id or "").strip() or None
client_instance_id = assessment["client_instance_id"]
command, args = gitea_config.server_command()
env = namespace_worker_env(
profile_name=profile_name,
client_type=client,
client_instance_id=client_instance_id,
config_path=config_path or gitea_config.DEFAULT_CONFIG_PATH,
fleet_run_id=fleet_run,
session_id=session,
)
return {
server_key: {
"command": command,
"args": args,
"env": env,
},
"client_instance_id": client_instance_id,
"client_type": client,
}
def collect_instance_ids_from_mcp_servers(
mcp_servers: Mapping[str, Any],
) -> dict[str, Any]:
"""Inspect a production mcpServers map for shared instance attribution.
Returns the unique set of client_instance_id values across gitea-* servers
and whether all five namespaces share exactly one trusted ID.
"""
ids: list[str] = []
by_server: dict[str, str | None] = {}
for name in NAMESPACE_SERVER_NAMES:
entry = mcp_servers.get(name) or {}
env = entry.get("env") or {}
raw = (env.get(CLIENT_INSTANCE_ENV) or "").strip() or None
by_server[name] = raw
if raw:
ids.append(raw)
unique = sorted(set(ids))
trusted = [
i
for i in unique
if fleet.assess_instance_identity(i)["trusted"]
]
return {
"server_instance_ids": by_server,
"unique_instance_ids": unique,
"trusted_instance_ids": trusted,
"shared_single_trusted_id": (
len(unique) == 1
and len(trusted) == 1
and all(by_server.get(n) == unique[0] for n in NAMESPACE_SERVER_NAMES)
),
"namespace_server_count": sum(
1 for n in NAMESPACE_SERVER_NAMES if n in mcp_servers
),
}
def inherit_or_refuse_client_instance(
env: Mapping[str, str] | None = None,
) -> dict[str, Any]:
"""Resolve instance identity for a worker process at serve time.
Production workers inherit the launcher-issued ID. They never mint a
trusted ID themselves. Missing / legacy / malformed values fail soft into
an untrusted assessment so registration can still record a diagnostic row
without authorizing multi-instance fleet mutation.
"""
source = dict(env if env is not None else os.environ)
raw = (source.get(CLIENT_INSTANCE_ENV) or "").strip() or None
provenance_marker = (source.get(INSTANCE_PROVENANCE_ENV) or "").strip()
assessment = fleet.assess_instance_identity(raw)
# Ordinary user-supplied values without launcher provenance marker are
# still format-checked by assess_instance_identity. When the format is
# trusted but the launcher marker is absent, keep the ID but note that
# provenance is not launcher-sealed (operator hand-set or legacy config).
if assessment["trusted"] and provenance_marker != LAUNCHER_PROVENANCE_VALUE:
assessment = dict(assessment)
assessment["launcher_sealed"] = False
assessment["reasons"] = list(assessment.get("reasons") or []) + [
f"{INSTANCE_PROVENANCE_ENV} is not {LAUNCHER_PROVENANCE_VALUE!r}; "
"identity format is valid but not sealed by the production launcher"
]
else:
assessment = dict(assessment)
assessment["launcher_sealed"] = bool(
assessment["trusted"]
and provenance_marker == LAUNCHER_PROVENANCE_VALUE
)
assessment["fleet_run_id"] = (source.get(FLEET_RUN_ENV) or "").strip() or None
assessment["session_id"] = (
(source.get(CLIENT_SESSION_ENV) or "").strip() or None
)
assessment["client_type"] = mwi.normalize_client_name(
(source.get("GITEA_MCP_CLIENT") or "").strip() or None
)
return assessment
+869
View File
@@ -0,0 +1,869 @@
"""Instance-level fleet identity and health snapshots (#978).
#948 established per-worker ownership; #975 made heartbeats keep those rows
live. Neither surface could enumerate the fleet at *instance* granularity:
which application launch owns which five namespace workers, whether two
Codex launches are distinct, or whether a live collision is real rather than
a shared client type.
This module is pure. Callers supply registry rows (and optional enrichments);
nothing here opens SQLite, scans process tables, or mutates state. Production
evidence for the fleet gate is the snapshot returned by the sanctioned
controller/reconciler tool that wraps this assessor.
Identity hierarchy (highest → lowest):
* ``client_type`` — application family (``codex``, ``claude_code``, …)
* ``client_instance_id`` — one running application launch (trusted launcher)
* ``fleet_run_id`` — operator-approved enrollment / canary cohort
* ``worker_id`` / ``worker_identity`` — one namespace worker process
* ``namespace`` — author | reviewer | merger | controller | reconciler
Multiple simultaneous instances of the same ``client_type`` are first-class.
Sharing only a profile or client type is never a duplicate.
"""
from __future__ import annotations
import hashlib
import secrets
from collections import defaultdict
from datetime import datetime, timezone
from typing import Any, Callable, Iterable, Mapping
import mcp_worker_identity as mwi
# --- Classification labels ------------------------------------------------
CLASS_EXPECTED = "expected_enrolled"
CLASS_MISSING = "missing_expected"
CLASS_UNMANIFESTED = "unmanifested"
CLASS_DUPLICATE_NAMESPACE = "duplicate_namespace_worker"
CLASS_INSTANCE_ID_COLLISION = "instance_id_collision"
CLASS_WORKER_ID_COLLISION = "worker_identity_collision"
CLASS_SESSION_COLLISION = "session_identity_collision"
CLASS_GENERATION_COLLISION = "generation_identity_collision"
CLASS_PROCESS_COLLISION = "process_identity_collision"
CLASS_PID_COLLISION = "pid_collision"
CLASS_OWNERSHIP_COLLISION = "ownership_fencing_collision"
CLASS_ORPHANED = "orphaned_unowned"
CLASS_UNKNOWN_CLIENT = "unknown_client"
CLASS_FOREIGN_REPOSITORY = "foreign_repository"
CLASS_OLD_REVISION = "old_revision"
CLASS_STALE_WORKER = "stale_orphaned_worker"
CLASS_LEGACY_INCOMPLETE = "legacy_incomplete_identity"
CLASS_HISTORICAL = "historical_dead"
CLASS_HEALTHY = "healthy"
#: Active blockers that make the live fleet unsafe for mutation-gated work.
ACTIVE_BLOCKER_CLASSES = frozenset(
{
CLASS_MISSING,
CLASS_UNMANIFESTED,
CLASS_DUPLICATE_NAMESPACE,
CLASS_INSTANCE_ID_COLLISION,
CLASS_WORKER_ID_COLLISION,
CLASS_SESSION_COLLISION,
CLASS_GENERATION_COLLISION,
CLASS_PROCESS_COLLISION,
CLASS_PID_COLLISION,
CLASS_OWNERSHIP_COLLISION,
CLASS_ORPHANED,
CLASS_UNKNOWN_CLIENT,
CLASS_FOREIGN_REPOSITORY,
CLASS_OLD_REVISION,
CLASS_STALE_WORKER,
CLASS_LEGACY_INCOMPLETE,
}
)
SANCTIONED_NAMESPACES = frozenset(
{"author", "reviewer", "merger", "controller", "reconciler"}
)
INSTANCE_ID_PROVENANCE_TRUSTED = "trusted_launcher"
INSTANCE_ID_PROVENANCE_LEGACY = "legacy_incomplete"
INSTANCE_ID_PROVENANCE_MISSING = "missing"
CLIENT_INSTANCE_ENV = "GITEA_MCP_CLIENT_INSTANCE"
FLEET_RUN_ENV = "GITEA_MCP_FLEET_RUN_ID"
PROCESS_IDENTITY_ENV = "GITEA_MCP_PROCESS_IDENTITY"
INSTANCE_PROVENANCE_ENV = "GITEA_MCP_INSTANCE_PROVENANCE"
_LEGACY_INSTANCE_PREFIXES = ("pid-", "proc-", "legacy-")
#: Trusted launcher-issued IDs use the reserved ``inst-`` prefix
#: (see :func:`generate_client_instance_id`). Ordinary user-supplied strings
#: without that prefix never count as trusted attribution.
_TRUSTED_INSTANCE_PREFIX = "inst-"
def _utc_now() -> datetime:
return datetime.now(timezone.utc)
def _ts(value: datetime) -> str:
return value.astimezone(timezone.utc).strftime("%Y-%m-%dT%H:%M:%SZ")
def generate_client_instance_id(
client_type: str | None,
*,
launch_nonce: str | None = None,
now: datetime | None = None,
) -> str:
"""Mint a distinct instance ID for one application launch (#978).
The trusted launcher (or host that starts all five namespace workers)
generates this once per launch and injects it as ``GITEA_MCP_CLIENT_INSTANCE``
into every worker environment. Workers never invent their own instance ID
from PID proximity or timestamps.
"""
client = mwi.normalize_client_name(client_type)
stamp = (now or _utc_now()).astimezone(timezone.utc).strftime(
mwi.IDENTITY_TIMESTAMP_FORMAT
)
nonce = launch_nonce if launch_nonce is not None else secrets.token_hex(16)
digest = hashlib.sha256(
f"{client}\x1f{stamp}\x1f{nonce}".encode("utf-8")
).hexdigest()[:12]
return f"inst-{client}-{stamp}-{digest}"
def assess_instance_identity(
raw_instance_id: str | None,
*,
source: str | None = None,
) -> dict[str, Any]:
"""Classify whether a client_instance_id is trusted enough for mutation.
Trusted instance IDs are non-empty, match the launcher-minted ``inst-…``
format from :func:`generate_client_instance_id`, and are not pre-#978
PID/proc/legacy placeholders. Ordinary user-supplied or malformed values
fail closed as untrusted so they cannot spoof multi-instance attribution.
Incomplete identities remain visible for diagnosis but cannot authorize
unsafe mutation.
"""
text = (raw_instance_id or "").strip()
if not text:
return {
"client_instance_id": None,
"complete": False,
"trusted": False,
"provenance": INSTANCE_ID_PROVENANCE_MISSING,
"reasons": [
"client_instance_id is missing; the trusted launcher must set "
f"{CLIENT_INSTANCE_ENV} once per application launch"
],
}
lowered = text.lower()
if lowered.startswith(_LEGACY_INSTANCE_PREFIXES) or source == "pid_fallback":
return {
"client_instance_id": text,
"complete": False,
"trusted": False,
"provenance": INSTANCE_ID_PROVENANCE_LEGACY,
"reasons": [
f"client_instance_id {text!r} is a legacy PID/process fallback, "
"not a trusted launcher-issued instance identity"
],
}
if not text.startswith(_TRUSTED_INSTANCE_PREFIX) or len(text) <= len(
_TRUSTED_INSTANCE_PREFIX
):
return {
"client_instance_id": text,
"complete": False,
"trusted": False,
"provenance": INSTANCE_ID_PROVENANCE_LEGACY,
"reasons": [
f"client_instance_id {text!r} is malformed or user-supplied and "
f"does not use the trusted launcher prefix "
f"{_TRUSTED_INSTANCE_PREFIX!r}; refusing trusted attribution"
],
}
return {
"client_instance_id": text,
"complete": True,
"trusted": True,
"provenance": INSTANCE_ID_PROVENANCE_TRUSTED,
"reasons": [],
}
def resolve_client_instance_from_env(
env: Mapping[str, str] | None = None,
*,
pid: int | None = None,
) -> dict[str, Any]:
"""Resolve instance identity from launcher env without inventing one.
When the trusted key is absent, return incomplete evidence rather than a
silent ``pid-<n>`` identity. Callers that still need a non-empty registry
key may choose a legacy placeholder deliberately; they must not treat it as
trusted.
"""
source = dict(env or {})
raw = (source.get(CLIENT_INSTANCE_ENV) or "").strip()
assessment = assess_instance_identity(raw or None)
assessment["fleet_run_id"] = (source.get(FLEET_RUN_ENV) or "").strip() or None
assessment["process_identity"] = (
(source.get(PROCESS_IDENTITY_ENV) or "").strip()
or (f"pid-{pid}" if pid is not None else None)
)
return assessment
def _public_worker(record: Mapping[str, Any]) -> dict[str, Any]:
return {
"worker_id": record.get("worker_identity") or record.get("worker_id"),
"worker_identity": record.get("worker_identity") or record.get("worker_id"),
"client_type": mwi.normalize_client_name(
record.get("client_name") or record.get("client_type")
),
"client_instance_id": record.get("client_instance_id"),
"fleet_run_id": record.get("fleet_run_id"),
"namespace": record.get("namespace"),
"profile": record.get("profile"),
"declared_role": record.get("role") or record.get("declared_role"),
"authenticated_account": record.get("authenticated_account"),
"session_id": record.get("session_id"),
"generation_id": record.get("generation_id"),
"process_identity": record.get("process_identity")
or (
f"pid-{record['pid']}"
if record.get("pid") is not None
else None
),
"pid": record.get("pid"),
"repository_binding": record.get("repository_binding"),
"remote": record.get("remote"),
"startup_revision": record.get("startup_revision"),
"loaded_revision": record.get("loaded_revision"),
"parity_revision": record.get("parity_revision"),
"live_revision": record.get("live_revision"),
"runtime_provenance": record.get("runtime_provenance")
or record.get("transport"),
"transport": record.get("transport"),
"started_at": record.get("started_at"),
"last_heartbeat_at": record.get("last_heartbeat_at"),
"heartbeat_ttl_seconds": record.get("heartbeat_ttl_seconds"),
"fencing_epoch": record.get("fencing_epoch"),
"status": record.get("status"),
"instance_id_provenance": record.get("instance_id_provenance"),
}
def _liveness(
record: Mapping[str, Any],
*,
now: datetime | None,
pid_alive_probe: Callable[[int | None], bool | None] | None,
) -> dict[str, Any]:
pid_alive = None
if pid_alive_probe is not None and record.get("pid") is not None:
try:
pid_alive = pid_alive_probe(record.get("pid"))
except Exception:
pid_alive = None
return mwi.WorkerRegistry.is_live(record, now=now, pid_alive=pid_alive)
def _consistency_token(rows: Iterable[Mapping[str, Any]], snapshot_at: str) -> str:
material = [snapshot_at]
for row in sorted(
rows,
key=lambda r: (
str(r.get("worker_identity") or ""),
str(r.get("last_heartbeat_at") or ""),
str(r.get("fencing_epoch") or ""),
),
):
material.append(
"|".join(
[
str(row.get("worker_identity") or ""),
str(row.get("client_instance_id") or ""),
str(row.get("status") or ""),
str(row.get("last_heartbeat_at") or ""),
str(row.get("fencing_epoch") or ""),
str(row.get("generation_id") or ""),
]
)
)
digest = hashlib.sha256("\n".join(material).encode("utf-8")).hexdigest()[:16]
return f"fleetrev-{digest}"
def build_worker_snapshot_row(
record: Mapping[str, Any],
*,
now: datetime | None = None,
pid_alive_probe: Callable[[int | None], bool | None] | None = None,
canonical_repository: str | None = None,
expected_live_revision: str | None = None,
heartbeat_supervised: bool | None = None,
) -> dict[str, Any]:
"""One point-in-time worker row for the fleet snapshot."""
stamp = now or _utc_now()
base = _public_worker(record)
identity = assess_instance_identity(
base.get("client_instance_id"),
source=record.get("instance_id_source"),
)
liveness = _liveness(record, now=stamp, pid_alive_probe=pid_alive_probe)
is_historical = str(record.get("status") or "") != mwi.STATUS_ACTIVE
live = bool(liveness.get("live")) and not is_historical
repo = (base.get("repository_binding") or "").strip() or None
foreign_repo = bool(
canonical_repository
and repo
and repo.rstrip("/") != str(canonical_repository).rstrip("/")
)
old_revision = False
if expected_live_revision:
for key in ("startup_revision", "loaded_revision", "parity_revision", "live_revision"):
rev = (base.get(key) or "").strip()
if rev and rev != expected_live_revision:
old_revision = True
break
ownership_state = "historical" if is_historical else (
"live" if live else "stale"
)
if live and not identity["trusted"]:
ownership_state = "live_untrusted_identity"
if live and not base.get("session_id"):
ownership_state = "orphaned"
mutation_safe = bool(
live
and identity["trusted"]
and not foreign_repo
and not old_revision
and ownership_state == "live"
and base.get("client_type") != mwi.UNKNOWN_CLIENT
)
restart_required = bool(
old_revision
or (live and not liveness.get("heartbeat_fresh", True))
)
return {
**base,
"instance_identity": identity,
"client_instance_id": identity["client_instance_id"] or base.get("client_instance_id"),
"instance_id_provenance": identity["provenance"],
"instance_identity_trusted": identity["trusted"],
"live": live,
"historical": is_historical,
"liveness": liveness,
"heartbeat": {
"registered": bool(base.get("last_heartbeat_at")),
"supervised": heartbeat_supervised,
"age_seconds": liveness.get("heartbeat_age_seconds"),
"ttl_seconds": liveness.get("heartbeat_ttl_seconds"),
"fresh": liveness.get("heartbeat_fresh"),
"last_heartbeat_at": base.get("last_heartbeat_at"),
},
"fencing": {
"fencing_epoch": base.get("fencing_epoch"),
"generation_id": base.get("generation_id"),
},
"ownership_state": ownership_state,
"foreign_repository": foreign_repo,
"old_revision": old_revision,
"stale": not live and not is_historical,
"restart_required": restart_required,
"mutation_safe": mutation_safe,
"conflicting_live_sessions": [],
}
def _collision_groups(
live_rows: list[dict[str, Any]],
key_fn,
) -> dict[str, list[dict[str, Any]]]:
groups: dict[str, list[dict[str, Any]]] = defaultdict(list)
for row in live_rows:
key = key_fn(row)
if key is None or key == "" or key == "None":
continue
groups[str(key)].append(row)
return {k: v for k, v in groups.items() if len(v) > 1}
def snapshot_instance_fleet(
records: Iterable[Mapping[str, Any]],
*,
expected_manifest: list[Mapping[str, Any]] | None = None,
now: datetime | None = None,
pid_alive_probe: Callable[[int | None], bool | None] | None = None,
canonical_repository: str | None = None,
expected_live_revision: str | None = None,
registry_revision: str | None = None,
known_client_types: Iterable[str] | None = None,
) -> dict[str, Any]:
"""Authoritative point-in-time fleet snapshot with classification (#978).
Historical dead rows are reported separately and never automatically make
the live fleet unsafe.
"""
stamp = now or _utc_now()
snapshot_at = _ts(stamp)
known = {
mwi.normalize_client_name(c)
for c in (known_client_types or mwi.CLIENT_ALIASES.values())
}
known.discard(mwi.UNKNOWN_CLIENT)
all_rows: list[dict[str, Any]] = []
for record in records:
all_rows.append(
build_worker_snapshot_row(
record,
now=stamp,
pid_alive_probe=pid_alive_probe,
canonical_repository=canonical_repository,
expected_live_revision=expected_live_revision,
)
)
live_rows = [r for r in all_rows if r["live"]]
historical_rows = [r for r in all_rows if r["historical"]]
stale_rows = [r for r in all_rows if r["stale"]]
# --- identity collisions among live workers ---
findings: list[dict[str, Any]] = []
def _finding(
classification: str,
*,
severity: str,
workers: list[dict[str, Any]] | None = None,
instance_ids: list[str] | None = None,
detail: str,
active_blocker: bool,
) -> None:
findings.append(
{
"classification": classification,
"severity": severity,
"active_blocker": active_blocker,
"detail": detail,
"client_instance_ids": instance_ids or sorted(
{
str(w.get("client_instance_id"))
for w in (workers or [])
if w.get("client_instance_id")
}
),
"worker_identities": [
w.get("worker_identity") for w in (workers or [])
],
}
)
# Duplicate worker identity (should not happen with PK, still detect)
for wid, group in _collision_groups(
live_rows, lambda r: r.get("worker_identity")
).items():
_finding(
CLASS_WORKER_ID_COLLISION,
severity="blocker",
workers=group,
detail=f"worker identity {wid!r} is claimed by {len(group)} live workers",
active_blocker=True,
)
# Reused session identity across live workers
for sid, group in _collision_groups(live_rows, lambda r: r.get("session_id")).items():
# Same session may appear once; collision only when multiple workers share it
# across different worker identities (always true for group size > 1).
_finding(
CLASS_SESSION_COLLISION,
severity="blocker",
workers=group,
detail=f"session identity {sid!r} is reused by {len(group)} live workers",
active_blocker=True,
)
# Generation claimed by multiple live sessions/workers is a conflict when
# the workers are not the five sanctioned namespaces of one instance.
for gen, group in _collision_groups(
live_rows, lambda r: r.get("generation_id")
).items():
namespaces = {g.get("namespace") for g in group if g.get("namespace")}
instance_ids = {g.get("client_instance_id") for g in group}
# Multiple workers under one generation is only valid if they share one
# instance and distinct namespaces. Same generation + same namespace = bad.
by_ns: dict[str, list] = defaultdict(list)
for g in group:
by_ns[str(g.get("namespace") or "")].append(g)
ns_dups = {ns: rows for ns, rows in by_ns.items() if ns and len(rows) > 1}
if ns_dups or len(instance_ids) > 1:
_finding(
CLASS_GENERATION_COLLISION,
severity="blocker",
workers=group,
detail=(
f"generation {gen!r} is contested across namespaces/instances "
f"(namespaces={sorted(namespaces)}, "
f"instances={sorted(str(i) for i in instance_ids if i)})"
),
active_blocker=True,
)
# Process identity / PID collisions across distinct workers
for proc, group in _collision_groups(
live_rows, lambda r: r.get("process_identity")
).items():
if len({r.get("worker_identity") for r in group}) > 1:
_finding(
CLASS_PROCESS_COLLISION,
severity="blocker",
workers=group,
detail=f"process identity {proc!r} is shared by distinct live workers",
active_blocker=True,
)
for pid, group in _collision_groups(live_rows, lambda r: r.get("pid")).items():
if len({r.get("worker_identity") for r in group}) > 1:
_finding(
CLASS_PID_COLLISION,
severity="blocker",
workers=group,
detail=f"PID {pid} is shared by distinct live workers",
active_blocker=True,
)
# Fencing/ownership: same fencing epoch on different workers of different instances
for epoch, group in _collision_groups(
live_rows,
lambda r: (
f"{r.get('generation_id')}:{r.get('fencing_epoch')}"
if r.get("generation_id") is not None and r.get("fencing_epoch") is not None
else None
),
).items():
if len({r.get("client_instance_id") for r in group}) > 1:
_finding(
CLASS_OWNERSHIP_COLLISION,
severity="blocker",
workers=group,
detail=(
f"fencing token {epoch!r} spans more than one client_instance_id"
),
active_blocker=True,
)
# Per-instance grouping
by_instance: dict[str, list[dict[str, Any]]] = defaultdict(list)
unkeyed_live: list[dict[str, Any]] = []
for row in live_rows:
iid = row.get("client_instance_id")
if not iid:
unkeyed_live.append(row)
continue
by_instance[str(iid)].append(row)
instances: list[dict[str, Any]] = []
for iid, workers in sorted(by_instance.items()):
client_types = sorted({w.get("client_type") for w in workers if w.get("client_type")})
trusted = all(w.get("instance_identity_trusted") for w in workers)
namespaces = [w.get("namespace") for w in workers]
ns_counts: dict[str, int] = defaultdict(int)
for ns in namespaces:
if ns:
ns_counts[str(ns)] += 1
dup_ns = sorted(ns for ns, n in ns_counts.items() if n > 1)
if dup_ns:
_finding(
CLASS_DUPLICATE_NAMESPACE,
severity="blocker",
workers=[w for w in workers if w.get("namespace") in dup_ns],
instance_ids=[iid],
detail=(
f"instance {iid!r} has more than one live worker for "
f"namespace(s) {dup_ns}"
),
active_blocker=True,
)
# Live reuse of one instance ID with incompatible client types
if len(client_types) > 1:
_finding(
CLASS_INSTANCE_ID_COLLISION,
severity="blocker",
workers=workers,
instance_ids=[iid],
detail=(
f"client_instance_id {iid!r} is live under multiple client "
f"types {client_types}"
),
active_blocker=True,
)
if not trusted:
_finding(
CLASS_LEGACY_INCOMPLETE,
severity="blocker",
workers=workers,
instance_ids=[iid],
detail=(
f"instance {iid!r} lacks trusted launcher-issued instance "
"identity; diagnostic reads remain available"
),
active_blocker=True,
)
unknown = [w for w in workers if w.get("client_type") == mwi.UNKNOWN_CLIENT]
if unknown:
_finding(
CLASS_UNKNOWN_CLIENT,
severity="blocker",
workers=unknown,
instance_ids=[iid],
detail=f"instance {iid!r} has worker(s) with unknown client_type",
active_blocker=True,
)
foreign = [w for w in workers if w.get("foreign_repository")]
if foreign:
_finding(
CLASS_FOREIGN_REPOSITORY,
severity="blocker",
workers=foreign,
instance_ids=[iid],
detail=f"instance {iid!r} has foreign-repository workers",
active_blocker=True,
)
old = [w for w in workers if w.get("old_revision")]
if old:
_finding(
CLASS_OLD_REVISION,
severity="blocker",
workers=old,
instance_ids=[iid],
detail=f"instance {iid!r} has old-revision workers",
active_blocker=True,
)
orphans = [w for w in workers if w.get("ownership_state") == "orphaned"]
if orphans:
_finding(
CLASS_ORPHANED,
severity="blocker",
workers=orphans,
instance_ids=[iid],
detail=f"instance {iid!r} has orphaned/unowned workers",
active_blocker=True,
)
instances.append(
{
"client_instance_id": iid,
"client_types": client_types,
"client_type": client_types[0] if len(client_types) == 1 else None,
"fleet_run_ids": sorted(
{w.get("fleet_run_id") for w in workers if w.get("fleet_run_id")}
),
"worker_count": len(workers),
"namespaces": sorted({n for n in namespaces if n}),
"namespace_counts": dict(ns_counts),
"duplicate_namespaces": dup_ns,
"trusted_instance_identity": trusted,
"workers": workers,
"mutation_safe": all(w.get("mutation_safe") for w in workers)
and not dup_ns
and trusted,
}
)
for row in unkeyed_live:
_finding(
CLASS_LEGACY_INCOMPLETE,
severity="blocker",
workers=[row],
detail="live worker has no client_instance_id",
active_blocker=True,
)
if row.get("client_type") == mwi.UNKNOWN_CLIENT:
_finding(
CLASS_UNKNOWN_CLIENT,
severity="blocker",
workers=[row],
detail="live worker has unknown client_type and no instance id",
active_blocker=True,
)
for row in stale_rows:
_finding(
CLASS_STALE_WORKER,
severity="warning",
workers=[row],
detail=(
f"worker {row.get('worker_identity')!r} is active in the registry "
"but not live (stale heartbeat or dead pid)"
),
active_blocker=True,
)
for row in historical_rows:
_finding(
CLASS_HISTORICAL,
severity="info",
workers=[row],
detail=(
f"historical registration {row.get('worker_identity')!r} "
f"(status={row.get('status')!r}) is not an active blocker"
),
active_blocker=False,
)
# Manifest comparison
expected = list(expected_manifest or [])
expected_ids = {
str(item.get("client_instance_id")).strip()
for item in expected
if (item.get("client_instance_id") or "").strip()
}
live_ids = set(by_instance.keys())
missing_ids = sorted(expected_ids - live_ids)
unmanifested_ids = sorted(live_ids - expected_ids) if expected_ids else []
for iid in missing_ids:
_finding(
CLASS_MISSING,
severity="blocker",
instance_ids=[iid],
detail=f"expected enrolled instance {iid!r} is missing from the live fleet",
active_blocker=True,
)
for iid in unmanifested_ids:
_finding(
CLASS_UNMANIFESTED,
severity="blocker",
instance_ids=[iid],
workers=by_instance.get(iid, []),
detail=(
f"live instance {iid!r} is not on the approved fleet manifest "
"(unmanifested)"
),
active_blocker=True,
)
# Same client_type multi-instance is healthy when each has distinct instance IDs
by_type: dict[str, list[str]] = defaultdict(list)
for inst in instances:
for ct in inst.get("client_types") or []:
by_type[str(ct)].append(inst["client_instance_id"])
multi_instance_same_type = {
ct: ids for ct, ids in by_type.items() if len(ids) > 1
}
active_blockers = [f for f in findings if f.get("active_blocker")]
historical_only = [f for f in findings if f.get("classification") == CLASS_HISTORICAL]
live_safe = not active_blockers
consistency = registry_revision or _consistency_token(all_rows, snapshot_at)
return {
"success": True,
"read_only": True,
"snapshot_at": snapshot_at,
"consistency_token": consistency,
"registry_revision": consistency,
"live_worker_count": len(live_rows),
"historical_worker_count": len(historical_rows),
"stale_worker_count": len(stale_rows),
"instance_count": len(instances),
"workers": all_rows,
"live_workers": live_rows,
"historical_workers": historical_rows,
"stale_workers": stale_rows,
"instances": instances,
"multi_instance_same_client_type": multi_instance_same_type,
"same_client_type_not_duplicate": True,
"expected_manifest": [
{
"client_instance_id": item.get("client_instance_id"),
"client_type": item.get("client_type"),
"fleet_run_id": item.get("fleet_run_id"),
"namespaces": item.get("namespaces"),
}
for item in expected
],
"missing_expected_instance_ids": missing_ids,
"unmanifested_instance_ids": unmanifested_ids,
"findings": findings,
"active_blockers": active_blockers,
"historical_findings": historical_only,
"live_fleet_safe": live_safe,
"mutation_safe": live_safe and all(
inst.get("mutation_safe") for inst in instances
)
if instances
else live_safe,
"classification_model": {
"exactly_one_process_per_profile": False,
"exactly_one_instance_per_client_type": False,
"multiple_instances_per_client_type": True,
"duplicate_requires": [
"live client_instance_id collision",
"duplicate namespace worker within one instance",
"reused worker/session/generation/process/pid/fencing identity",
"cross-instance ownership collision",
"unmanifested instance when a manifest is required",
],
},
"reasons": [f["detail"] for f in active_blockers],
}
def compare_snapshot_heartbeats(
earlier: Mapping[str, Any],
later: Mapping[str, Any],
) -> dict[str, Any]:
"""Prove heartbeat continuity and stable ownership across two snapshots."""
earlier_live = {
w.get("worker_identity"): w for w in earlier.get("live_workers") or []
}
later_live = {
w.get("worker_identity"): w for w in later.get("live_workers") or []
}
shared = sorted(set(earlier_live) & set(later_live))
continuity: list[dict[str, Any]] = []
stable_ownership = True
for wid in shared:
a = earlier_live[wid]
b = later_live[wid]
same_instance = a.get("client_instance_id") == b.get("client_instance_id")
same_session = a.get("session_id") == b.get("session_id")
same_generation = a.get("generation_id") == b.get("generation_id")
hb_advanced_or_equal = True
if a.get("last_heartbeat_at") and b.get("last_heartbeat_at"):
hb_advanced_or_equal = b["last_heartbeat_at"] >= a["last_heartbeat_at"]
if not (same_instance and same_session and same_generation):
stable_ownership = False
continuity.append(
{
"worker_identity": wid,
"same_client_instance_id": same_instance,
"same_session_id": same_session,
"same_generation_id": same_generation,
"heartbeat_non_decreasing": hb_advanced_or_equal,
"earlier_heartbeat": a.get("last_heartbeat_at"),
"later_heartbeat": b.get("last_heartbeat_at"),
}
)
return {
"shared_live_workers": shared,
"continuity": continuity,
"stable_ownership": stable_ownership
and all(c["heartbeat_non_decreasing"] for c in continuity),
"dropped_workers": sorted(set(earlier_live) - set(later_live)),
"new_workers": sorted(set(later_live) - set(earlier_live)),
}
+97 -2
View File
@@ -301,8 +301,22 @@ CREATE INDEX IF NOT EXISTS idx_worker_session
ON worker_registrations(session_id, status);
CREATE INDEX IF NOT EXISTS idx_worker_profile
ON worker_registrations(profile, status);
CREATE INDEX IF NOT EXISTS idx_worker_instance
ON worker_registrations(client_instance_id, status);
"""
#: #978 optional columns added without rewriting historical rows.
_SCHEMA_OPTIONAL_COLUMNS: tuple[tuple[str, str], ...] = (
("fleet_run_id", "TEXT"),
("authenticated_account", "TEXT"),
("process_identity", "TEXT"),
("startup_revision", "TEXT"),
("loaded_revision", "TEXT"),
("parity_revision", "TEXT"),
("live_revision", "TEXT"),
("instance_id_provenance", "TEXT"),
)
class WorkerRegistryError(RuntimeError):
"""Raised for registry misuse that is a programming error, not a refusal."""
@@ -634,6 +648,17 @@ class WorkerRegistry:
conn = self._connect()
try:
conn.executescript(_SCHEMA_SQL)
existing = {
row[1]
for row in conn.execute(
"PRAGMA table_info(worker_registrations)"
).fetchall()
}
for name, decl in _SCHEMA_OPTIONAL_COLUMNS:
if name not in existing:
conn.execute(
f"ALTER TABLE worker_registrations ADD COLUMN {name} {decl}"
)
conn.commit()
finally:
conn.close()
@@ -758,6 +783,14 @@ class WorkerRegistry:
heartbeat_ttl_seconds: float = DEFAULT_HEARTBEAT_TTL_SECONDS,
now: datetime | None = None,
pid_alive_probe=None,
fleet_run_id: str | None = None,
authenticated_account: str | None = None,
process_identity: str | None = None,
startup_revision: str | None = None,
loaded_revision: str | None = None,
parity_revision: str | None = None,
live_revision: str | None = None,
instance_id_provenance: str | None = None,
) -> dict[str, Any]:
"""Atomically register one worker identity.
@@ -766,6 +799,10 @@ class WorkerRegistry:
to mint a different identity and register that instead (AC32). The
existing registration is returned untouched so the caller can see what
it collided with.
#978 also fails closed when a *live* registration already holds the same
``client_instance_id`` for the same namespace: two workers of one
namespace cannot share one instance.
"""
parsed = parse_worker_identity(worker_identity)
if not parsed["valid"]:
@@ -783,6 +820,9 @@ class WorkerRegistry:
}
stamp = _ts(now or _utc_now())
proc_id = process_identity or (
f"pid-{int(pid)}" if pid is not None else None
)
with self._tx() as conn:
existing = conn.execute(
"SELECT * FROM worker_registrations WHERE worker_identity = ?",
@@ -819,6 +859,41 @@ class WorkerRegistry:
),
}
# #978: refuse a second live worker for the same (instance, namespace).
if namespace and client_instance_id:
peers = conn.execute(
"SELECT * FROM worker_registrations "
"WHERE client_instance_id = ? AND namespace = ? AND status = ?",
(client_instance_id, namespace, STATUS_ACTIVE),
).fetchall()
for peer_row in peers:
peer = self._row_to_record(peer_row)
pid_alive = (
pid_alive_probe(peer.get("pid"))
if pid_alive_probe is not None
else None
)
if self.is_live(peer, now=now, pid_alive=pid_alive)["live"]:
return {
"success": False,
"registered": False,
"mutation_performed": False,
"blocker_kind": BLOCKER_CONFLICTING_SESSIONS,
"collision": True,
"collision_kind": "duplicate_namespace_worker",
"existing_registration": _public_record(peer),
"reasons": [
f"client_instance_id {client_instance_id!r} already "
f"has a live worker for namespace {namespace!r} "
f"({peer.get('worker_identity')!r}); #978 fails closed "
"rather than registering a second worker"
],
"exact_next_action": (
"Stop the extra namespace worker, or use a distinct "
"client_instance_id for a separate application launch."
),
}
epoch = self._next_epoch(conn, generation_id)
conn.execute(
"""
@@ -827,8 +902,11 @@ class WorkerRegistry:
generation_id, role, profile, namespace, remote,
repository_binding, pid, transport, token_fingerprint,
started_at, last_heartbeat_at, heartbeat_ttl_seconds,
fencing_epoch, status
) VALUES (?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?)
fencing_epoch, status,
fleet_run_id, authenticated_account, process_identity,
startup_revision, loaded_revision, parity_revision,
live_revision, instance_id_provenance
) VALUES (?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,?)
""",
(
worker_identity,
@@ -849,6 +927,14 @@ class WorkerRegistry:
float(heartbeat_ttl_seconds),
epoch,
STATUS_ACTIVE,
(fleet_run_id or "").strip() or None,
(authenticated_account or "").strip() or None,
proc_id,
(startup_revision or "").strip() or None,
(loaded_revision or "").strip() or None,
(parity_revision or "").strip() or None,
(live_revision or "").strip() or None,
(instance_id_provenance or "").strip() or None,
),
)
row = conn.execute(
@@ -1149,8 +1235,17 @@ def _public_record(record: dict[str, Any]) -> dict[str, Any]:
"transport": record.get("transport"),
"started_at": record.get("started_at"),
"last_heartbeat_at": record.get("last_heartbeat_at"),
"heartbeat_ttl_seconds": record.get("heartbeat_ttl_seconds"),
"fencing_epoch": record.get("fencing_epoch"),
"status": record.get("status"),
"fleet_run_id": record.get("fleet_run_id"),
"authenticated_account": record.get("authenticated_account"),
"process_identity": record.get("process_identity"),
"startup_revision": record.get("startup_revision"),
"loaded_revision": record.get("loaded_revision"),
"parity_revision": record.get("parity_revision"),
"live_revision": record.get("live_revision"),
"instance_id_provenance": record.get("instance_id_provenance"),
}
+12
View File
@@ -163,6 +163,18 @@ TASK_CAPABILITY_MAP: dict[str, dict[str, str]] = {
"permission": "gitea.read",
"role": "author",
},
# #978: instance-level fleet identity/health snapshot. gitea.read is the
# operation gate; the tool additionally restricts role_kind to
# controller|reconciler so author/reviewer/merger cannot use it as a
# mutation surface and no unrelated write permission is introduced.
"snapshot_instance_fleet": {
"permission": "gitea.read",
"role": "controller",
},
"gitea_snapshot_instance_fleet": {
"permission": "gitea.read",
"role": "controller",
},
# #644: Phase 2 Web Console recovery tasks.
"clear_stale_binding": {
"permission": "gitea.read",
+14 -1
View File
@@ -175,8 +175,21 @@ class TestLauncherSnippets(unittest.TestCase):
def test_only_safe_keys_no_secrets(self):
entry = gitea_config.launcher_entry("prgs", "/cfg/profiles.json")["gitea-tools"]
self.assertEqual(set(entry), {"command", "args", "env"})
self.assertEqual(set(entry["env"]), {"GITEA_MCP_CONFIG", "GITEA_MCP_PROFILE", "GITEA_CLIENT_MANAGED"})
# #978 B1: production launcher also injects trusted client identity.
required = {
"GITEA_MCP_CONFIG",
"GITEA_MCP_PROFILE",
"GITEA_CLIENT_MANAGED",
"GITEA_MCP_CLIENT",
"GITEA_MCP_CLIENT_INSTANCE",
"GITEA_MCP_INSTANCE_PROVENANCE",
}
self.assertTrue(required.issubset(set(entry["env"])), entry["env"])
self.assertEqual(entry["env"]["GITEA_MCP_PROFILE"], "prgs")
self.assertTrue(
entry["env"]["GITEA_MCP_CLIENT_INSTANCE"].startswith("inst-"),
entry["env"]["GITEA_MCP_CLIENT_INSTANCE"],
)
blob = json.dumps(entry).lower()
for word in ("token", "password", "secret"):
self.assertNotIn(word, blob)
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