Files
oikos/internal/core/domain/execution.go
dtoro e074f04bdf feat: Phase 0 of hexagonal refactor — ADR 0016, core scaffold, depguard rules
Problem: the hexagonal-architecture plan (plans/2026-08-15-hexagonal-
architecture.md) needs its foundation — an accepted ADR, the target
directory tree, and machine-checked dependency rules — before any
service extraction starts. Also folds the four outstanding review
findings (F3.1/F5/F6/F7) into the plan: ObservationService owns the
bounded probe-concurrency contract (scheduler.go:133), Phase 9 gates
ExecutionService+PolicyService ≥ 90% with a gating-matrix test,
per-phase abort criteria, and the §3.2 internal/config note.

Change:
- docs/adr/0016-hexagonal-ports-adapters.md records context, decision,
  and consequences of the ports & adapters migration.
- internal/domain → internal/core/domain (mechanical import rewrite,
  20 files), new internal/core/{ports,app}, internal/adapters trees
  with package docs.
- .golangci.yml: depguard rules for §3.1 (core purity, no agent-client
  tech in core, nomos isolation — the nomos rules self-activate when
  internal/nomos exists in Phase 8). Config migrated to golangci-lint
  v2 format so it loads at all (the v1 config errored under v2, masked
  by CI's advisory continue-on-error). Verified depguard fires on a
  planted openai-go import in internal/core/app.
- CONTRIBUTING.md layout section now shows the core/adapters tree.

Risk: import path churn is mechanical and tests pass unchanged; the
lint config migration surfaces the pre-existing 400-issue baseline
(advisory in CI, unchanged policy) — new/moved packages lint clean.

Verification: go vet ./..., make test (race, core/domain at 100%
coverage), make generate-check, golangci-lint on internal/core/... and
internal/adapters/... — 0 issues; depguard violation probe confirmed.
2026-08-15 22:09:19 +02:00

65 lines
1.5 KiB
Go

package domain
import "time"
// Classification persists every autonomous decision the classifier makes (SA5).
// This is the audit trail for "why did the OS auto-act / escalate?"
type Classification struct {
EntityID UUID
SignalEntityID UUID
TargetEntityID UUID
Action string
RecommendedAction map[string]any
RiskClass string
Route string
BlastRadius []UUID
PatternConfidence float64
SkillID UUID
AutonomyCheck string
Reasoning map[string]any
CorrelationID string
CreatedAt time.Time
}
// Classification routes.
const (
RouteAutoAct = "auto-act"
RouteEscalate = "escalate"
RouteHold = "hold"
)
// Execution is a detailed record of one action the OS performed.
type Execution struct {
EntityID UUID
ClassificationID UUID
SignalEntityID UUID
TargetEntityID UUID
Action string
RiskClass string
ApprovalID UUID
AgentID UUID
SkillID UUID
SkillVersion int
Status string
Result map[string]any
DurationMs int
Verified bool
CorrelationID string
StartedAt *time.Time
CompletedAt *time.Time
CreatedAt time.Time
}
// Execution lifecycle states.
const (
ExecProposed = "proposed"
ExecApproved = "approved"
ExecExecuting = "executing"
ExecVerified = "verified"
ExecFailed = "failed"
ExecTimedOut = "timed-out"
ExecRolledBack = "rolled-back"
ExecCancelled = "cancelled"
ExecExpired = "expired"
)