feat: track scoped storage incidents
This commit is contained in:
@@ -0,0 +1,78 @@
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package store
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import "sync"
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type ScopeState uint8
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const (
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ScopeRecovering ScopeState = iota + 1
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ScopeReady
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ScopeDirtyReadable
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ScopeUnavailable
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)
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type ScopeKey struct {
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Kind string
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ID string
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}
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type ScopeHealth struct {
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mu sync.RWMutex
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required map[ScopeKey]bool
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states map[ScopeKey]ScopeState
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}
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func NewScopeHealth(required []ScopeKey) *ScopeHealth {
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health := &ScopeHealth{required: make(map[ScopeKey]bool, len(required)), states: make(map[ScopeKey]ScopeState, len(required))}
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for _, scope := range required {
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health.required[scope] = true
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health.states[scope] = ScopeRecovering
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}
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return health
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}
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func (health *ScopeHealth) Set(scope ScopeKey, state ScopeState) bool {
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if health == nil || scope.Kind == "" || state < ScopeRecovering || state > ScopeUnavailable {
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return false
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}
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health.mu.Lock()
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defer health.mu.Unlock()
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health.states[scope] = state
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return true
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}
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func (health *ScopeHealth) State(scope ScopeKey) ScopeState {
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if health == nil {
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return ScopeUnavailable
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}
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health.mu.RLock()
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defer health.mu.RUnlock()
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state := health.states[scope]
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if state == 0 {
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return ScopeUnavailable
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}
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return state
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}
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func (health *ScopeHealth) GloballyReady() bool {
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if health == nil {
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return false
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}
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health.mu.RLock()
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defer health.mu.RUnlock()
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for scope := range health.required {
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if health.states[scope] != ScopeReady {
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return false
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}
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}
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return true
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}
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func (health *ScopeHealth) ReadAllowed(scope ScopeKey) bool {
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state := health.State(scope)
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return state == ScopeReady || state == ScopeDirtyReadable
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}
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func (health *ScopeHealth) MutationAllowed(scope ScopeKey) bool {
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return health.State(scope) == ScopeReady
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}
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@@ -0,0 +1,52 @@
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package store
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import (
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"sync"
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"testing"
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)
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func TestScopeHealthBestEffortReadiness_HP_STORE_10(t *testing.T) {
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t.Parallel()
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global := ScopeKey{Kind: "global", ID: "store"}
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client := ScopeKey{Kind: "client", ID: "client-a"}
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health := NewScopeHealth([]ScopeKey{global, client})
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if health.GloballyReady() || health.ReadAllowed(global) || health.MutationAllowed(global) {
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t.Fatal("recovering scope reported ready")
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}
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if !health.Set(global, ScopeReady) || !health.Set(client, ScopeDirtyReadable) {
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t.Fatal("valid state update failed")
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}
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if health.GloballyReady() || !health.ReadAllowed(client) || health.MutationAllowed(client) {
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t.Fatal("dirty-readable semantics are wrong")
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}
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if !health.Set(client, ScopeReady) || !health.GloballyReady() {
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t.Fatal("resolved required scopes did not become globally ready")
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}
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if health.Set(ScopeKey{}, ScopeReady) || health.Set(global, 0) {
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t.Fatal("invalid scope state accepted")
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}
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}
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func TestScopeHealthConcurrentUpdates_RACE_STORE_03(t *testing.T) {
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t.Parallel()
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scope := ScopeKey{Kind: "client", ID: "client-a"}
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health := NewScopeHealth([]ScopeKey{scope})
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var wait sync.WaitGroup
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for index := range 32 {
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wait.Add(1)
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go func(index int) {
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defer wait.Done()
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states := []ScopeState{ScopeRecovering, ScopeReady, ScopeDirtyReadable, ScopeUnavailable}
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health.Set(scope, states[index%len(states)])
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_ = health.ReadAllowed(scope)
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_ = health.MutationAllowed(scope)
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_ = health.GloballyReady()
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}(index)
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}
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wait.Wait()
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if state := health.State(scope); state < ScopeRecovering || state > ScopeUnavailable {
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t.Fatalf("final state = %d", state)
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}
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}
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@@ -0,0 +1,246 @@
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package store
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import (
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"bytes"
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"context"
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"crypto/sha256"
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"crypto/subtle"
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"database/sql"
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"encoding/hex"
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"errors"
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"fmt"
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"time"
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)
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type IncidentKind uint8
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const (
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IncidentUncommittedTail IncidentKind = iota + 1
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IncidentMissingCommittedBytes
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IncidentChecksumMismatch
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IncidentCounterMismatch
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IncidentSQLiteIntegrity
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IncidentFailedEviction
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IncidentPermission
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IncidentDiskExhaustion
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)
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type IncidentState uint8
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const (
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IncidentOpen IncidentState = iota + 1
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IncidentRepaired
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IncidentAcknowledged
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)
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type IncidentScope string
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const (
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IncidentScopeGlobal IncidentScope = "global"
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IncidentScopeClient IncidentScope = "client"
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IncidentScopeCommand IncidentScope = "command"
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IncidentScopeSegment IncidentScope = "segment"
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IncidentScopeAudit IncidentScope = "audit"
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)
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var (
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ErrIncidentNotFound = errors.New("storage incident not found")
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ErrIncidentResolution = errors.New("invalid storage incident resolution")
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ErrMutationConflict = errors.New("request ID conflicts with an earlier mutation")
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)
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type IncidentInput struct {
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IncidentUUID [16]byte
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DetectedAt time.Time
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Kind IncidentKind
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Scope IncidentScope
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ScopeKey string
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ClientID string
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IssueUUID *[16]byte
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Summary string
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Evidence []byte
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DataLoss bool
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AutomaticallyRepairable bool
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}
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type Incident struct {
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IncidentUUID [16]byte
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State IncidentState
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Created bool
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}
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type IncidentResolution struct {
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RequestUUID [16]byte
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IncidentUUID [16]byte
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State IncidentState
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Note string
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ResolvedAt time.Time
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}
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func (store *Store) RecordIncident(ctx context.Context, input IncidentInput) (Incident, error) {
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var result Incident
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if err := validateIncidentInput(input); err != nil {
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return result, err
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}
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store.writeMu.Lock()
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defer store.writeMu.Unlock()
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database, err := store.openDatabase()
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if err != nil {
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return result, err
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}
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var issue any
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if input.IssueUUID != nil {
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issue = input.IssueUUID[:]
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}
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dataLoss, repairable := 0, 0
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if input.DataLoss {
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dataLoss = 1
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}
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if input.AutomaticallyRepairable {
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repairable = 1
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}
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_, err = database.ExecContext(ctx, `INSERT INTO storage_incidents (
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incident_uuid, detected_at, state, kind, scope, scope_key, client_id, issue_uuid, summary, evidence,
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data_loss, automatically_repairable
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) VALUES (?, ?, 1, ?, ?, ?, NULLIF(?, ''), ?, ?, ?, ?, ?)`, input.IncidentUUID[:], input.DetectedAt.UnixNano(), input.Kind,
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input.Scope, input.ScopeKey, input.ClientID, issue, input.Summary, input.Evidence, dataLoss, repairable)
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if err == nil {
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return Incident{IncidentUUID: input.IncidentUUID, State: IncidentOpen, Created: true}, nil
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}
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insertErr := err
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var existingBytes []byte
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err = database.QueryRowContext(ctx, `SELECT incident_uuid FROM storage_incidents
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WHERE scope = ? AND scope_key = ? AND kind = ? AND state = 1`, input.Scope, input.ScopeKey, input.Kind).Scan(&existingBytes)
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if err != nil {
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return result, fmt.Errorf("record incident: %w", insertErr)
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}
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if len(existingBytes) != 16 {
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return result, ErrIntegrityCheck
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}
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copy(result.IncidentUUID[:], existingBytes)
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result.State = IncidentOpen
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return result, nil
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}
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func (store *Store) ResolveIncident(ctx context.Context, resolution IncidentResolution) (Incident, error) {
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var result Incident
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if isZeroUUID(resolution.RequestUUID) || isZeroUUID(resolution.IncidentUUID) || resolution.ResolvedAt.IsZero() ||
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(resolution.State != IncidentRepaired && resolution.State != IncidentAcknowledged) || len(resolution.Note) > 4096 ||
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(resolution.State == IncidentAcknowledged && resolution.Note == "") {
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return result, ErrIncidentResolution
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}
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store.writeMu.Lock()
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defer store.writeMu.Unlock()
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database, err := store.openDatabase()
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if err != nil {
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return result, err
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}
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method := "repair_storage_incident"
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if resolution.State == IncidentAcknowledged {
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method = "acknowledge_storage_incident"
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}
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target := hex.EncodeToString(resolution.IncidentUUID[:])
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requestHash := incidentResolutionHash(resolution)
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if replay, found, err := lookupIncidentResolution(ctx, database, resolution.RequestUUID, method, target, requestHash); err != nil {
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return result, err
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} else if found {
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return replay, nil
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}
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tx, err := database.BeginTx(ctx, nil)
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if err != nil {
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return result, err
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}
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var currentState IncidentState
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var repairable, dataLoss int
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err = tx.QueryRowContext(ctx, `SELECT state, automatically_repairable, data_loss FROM storage_incidents WHERE incident_uuid = ?`, resolution.IncidentUUID[:]).Scan(¤tState, &repairable, &dataLoss)
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if errors.Is(err, sql.ErrNoRows) {
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err = ErrIncidentNotFound
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}
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if err == nil && currentState != IncidentOpen && currentState != resolution.State {
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err = ErrIncidentResolution
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}
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if err == nil && resolution.State == IncidentRepaired && (repairable != 1 || dataLoss != 0) {
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err = ErrIncidentResolution
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}
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if err == nil && currentState == IncidentOpen {
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_, err = tx.ExecContext(ctx, `UPDATE storage_incidents SET state = ?, resolved_at = ?, resolution_note = ?
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WHERE incident_uuid = ? AND state = 1`, resolution.State, resolution.ResolvedAt.UnixNano(), resolution.Note, resolution.IncidentUUID[:])
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}
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resultPayload := []byte{byte(resolution.State)}
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if err == nil {
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_, err = tx.ExecContext(ctx, `INSERT INTO control_mutations (
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request_uuid, method, owner_kind, owner_id, target, immutable_sha256, result, created_at
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) VALUES (?, ?, 'incident', ?, ?, ?, ?, ?)`, resolution.RequestUUID[:], method, target, target, requestHash[:], resultPayload, resolution.ResolvedAt.UnixNano())
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}
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if err == nil {
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auditPayload := []byte(resolution.Note)
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auditHash := sha256.Sum256(auditPayload)
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_, err = tx.ExecContext(ctx, `INSERT INTO audit_events (
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occurred_at, source, principal, action, outcome, compression, payload, raw_bytes, stored_bytes, sha256
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) VALUES (?, 'store', NULL, ?, 'success', 1, ?, ?, ?, ?)`, resolution.ResolvedAt.UnixNano(), method,
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auditPayload, len(auditPayload), len(auditPayload), auditHash[:])
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}
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if err != nil {
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_ = tx.Rollback()
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return result, err
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}
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if err := tx.Commit(); err != nil {
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return result, err
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}
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return Incident{IncidentUUID: resolution.IncidentUUID, State: resolution.State}, nil
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}
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func (store *Store) HasDirtyIncidents(ctx context.Context) (bool, error) {
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store.writeMu.Lock()
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defer store.writeMu.Unlock()
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database, err := store.openDatabase()
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if err != nil {
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return false, err
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}
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var exists int
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if err := database.QueryRowContext(ctx, `SELECT EXISTS(SELECT 1 FROM storage_incidents WHERE state = 1)`).Scan(&exists); err != nil {
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return false, err
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}
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return exists == 1, nil
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}
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func validateIncidentInput(input IncidentInput) error {
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validScope := input.Scope == IncidentScopeGlobal || input.Scope == IncidentScopeClient || input.Scope == IncidentScopeCommand || input.Scope == IncidentScopeSegment || input.Scope == IncidentScopeAudit
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if isZeroUUID(input.IncidentUUID) || input.DetectedAt.IsZero() || input.Kind < IncidentUncommittedTail || input.Kind > IncidentDiskExhaustion ||
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!validScope || input.ScopeKey == "" || len(input.ScopeKey) > 512 || input.Summary == "" || len(input.Summary) > 4096 || len(input.Evidence) > 16<<10 ||
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(input.DataLoss && input.AutomaticallyRepairable) {
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return errors.New("invalid storage incident")
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}
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return nil
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}
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func incidentResolutionHash(resolution IncidentResolution) [sha256.Size]byte {
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buffer := bytes.NewBuffer(make([]byte, 0, 33+len(resolution.Note)))
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buffer.Write(resolution.IncidentUUID[:])
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buffer.WriteByte(byte(resolution.State))
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buffer.WriteString(resolution.Note)
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return sha256.Sum256(buffer.Bytes())
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}
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func lookupIncidentResolution(ctx context.Context, database *sql.DB, requestUUID [16]byte, method, target string, requestHash [32]byte) (Incident, bool, error) {
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var storedMethod, storedTarget string
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var storedHash, storedResult []byte
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err := database.QueryRowContext(ctx, `SELECT method, target, immutable_sha256, result FROM control_mutations WHERE request_uuid = ?`, requestUUID[:]).Scan(&storedMethod, &storedTarget, &storedHash, &storedResult)
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if errors.Is(err, sql.ErrNoRows) {
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return Incident{}, false, nil
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}
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if err != nil {
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return Incident{}, false, err
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}
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if storedMethod != method || storedTarget != target || len(storedHash) != 32 || subtle.ConstantTimeCompare(storedHash, requestHash[:]) != 1 || len(storedResult) != 1 {
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return Incident{}, false, ErrMutationConflict
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}
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decoded, err := hex.DecodeString(target)
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if err != nil || len(decoded) != 16 {
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return Incident{}, false, fmt.Errorf("%w: stored target", ErrIntegrityCheck)
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}
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var incidentUUID [16]byte
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copy(incidentUUID[:], decoded)
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return Incident{IncidentUUID: incidentUUID, State: IncidentState(storedResult[0])}, true, nil
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}
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@@ -321,3 +321,27 @@ id = "CRASH-STORE-04"
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layer = "integration"
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status = "implemented"
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tests = ["test/integration/store/store_integration_test.go:TestRetentionCrashStagesRollForward_CRASH_STORE_04"]
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[[requirements]]
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id = "HP-STORE-10"
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layer = "unit"
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status = "implemented"
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tests = ["internal/server/store/health_test.go:TestScopeHealthBestEffortReadiness_HP_STORE_10"]
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[[requirements]]
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id = "RACE-STORE-03"
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layer = "unit"
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status = "implemented"
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tests = ["internal/server/store/health_test.go:TestScopeHealthConcurrentUpdates_RACE_STORE_03"]
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[[requirements]]
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id = "HP-STORE-11"
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layer = "integration"
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status = "implemented"
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tests = ["test/integration/store/store_integration_test.go:TestIncidentDirtyResolutionIdempotencyAndRecurrence_HP_STORE_11"]
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[[requirements]]
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id = "BH-STORE-09"
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layer = "integration"
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status = "implemented"
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tests = ["test/integration/store/store_integration_test.go:TestIrreparableIncidentRequiresExplicitAcknowledgement_BH_STORE_09"]
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@@ -779,6 +779,110 @@ func TestRetentionCrashStagesRollForward_CRASH_STORE_04(t *testing.T) {
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}
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}
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func TestIncidentDirtyResolutionIdempotencyAndRecurrence_HP_STORE_11(t *testing.T) {
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t.Parallel()
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opened := openStore(t, filepath.Join(t.TempDir(), "state"))
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now := time.Unix(5_000_000, 0).UTC()
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firstID := uuidBytes(10)
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input := store.IncidentInput{
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IncidentUUID: firstID, DetectedAt: now, Kind: store.IncidentCounterMismatch,
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Scope: store.IncidentScopeClient, ScopeKey: "client-a", ClientID: "client-a",
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Summary: "charged totals disagree", Evidence: []byte("counter-version=1"), AutomaticallyRepairable: true,
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}
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created, err := opened.RecordIncident(context.Background(), input)
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if err != nil || !created.Created || created.IncidentUUID != firstID {
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t.Fatalf("RecordIncident = (%+v, %v)", created, err)
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}
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duplicateInput := input
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duplicateInput.IncidentUUID = uuidBytes(30)
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duplicate, err := opened.RecordIncident(context.Background(), duplicateInput)
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if err != nil || duplicate.Created || duplicate.IncidentUUID != firstID {
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t.Fatalf("duplicate RecordIncident = (%+v, %v)", duplicate, err)
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}
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dirty, err := opened.HasDirtyIncidents(context.Background())
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if err != nil || !dirty {
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t.Fatalf("dirty = %v, err = %v", dirty, err)
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}
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requestID := uuidBytes(50)
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resolution := store.IncidentResolution{
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RequestUUID: requestID, IncidentUUID: firstID, State: store.IncidentRepaired,
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Note: "recomputed counters from command rows", ResolvedAt: now.Add(time.Minute),
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}
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resolved, err := opened.ResolveIncident(context.Background(), resolution)
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if err != nil || resolved.State != store.IncidentRepaired {
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t.Fatalf("ResolveIncident = (%+v, %v)", resolved, err)
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}
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replayed, err := opened.ResolveIncident(context.Background(), resolution)
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if err != nil || replayed != resolved {
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t.Fatalf("resolution replay = (%+v, %v)", replayed, err)
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}
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conflict := resolution
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conflict.Note = "different repair claim"
|
||||
if _, err := opened.ResolveIncident(context.Background(), conflict); !errors.Is(err, store.ErrMutationConflict) {
|
||||
t.Fatalf("resolution conflict error = %v", err)
|
||||
}
|
||||
dirty, err = opened.HasDirtyIncidents(context.Background())
|
||||
if err != nil || dirty {
|
||||
t.Fatalf("resolved dirty = %v, err = %v", dirty, err)
|
||||
}
|
||||
var auditCount int
|
||||
if err := opened.DB().QueryRow(`SELECT count(*) FROM audit_events WHERE action = 'repair_storage_incident'`).Scan(&auditCount); err != nil || auditCount != 1 {
|
||||
t.Fatalf("repair audit count = %d, err = %v", auditCount, err)
|
||||
}
|
||||
recurrence := input
|
||||
recurrence.IncidentUUID = uuidBytes(70)
|
||||
recurrence.DetectedAt = now.Add(2 * time.Minute)
|
||||
recorded, err := opened.RecordIncident(context.Background(), recurrence)
|
||||
if err != nil || !recorded.Created || recorded.IncidentUUID != recurrence.IncidentUUID {
|
||||
t.Fatalf("incident recurrence = (%+v, %v)", recorded, err)
|
||||
}
|
||||
if err := opened.Close(); err != nil {
|
||||
t.Fatal(err)
|
||||
}
|
||||
}
|
||||
|
||||
func TestIrreparableIncidentRequiresExplicitAcknowledgement_BH_STORE_09(t *testing.T) {
|
||||
t.Parallel()
|
||||
|
||||
opened := openStore(t, filepath.Join(t.TempDir(), "state"))
|
||||
now := time.Unix(6_000_000, 0).UTC()
|
||||
incidentID := uuidBytes(90)
|
||||
if _, err := opened.RecordIncident(context.Background(), store.IncidentInput{
|
||||
IncidentUUID: incidentID, DetectedAt: now, Kind: store.IncidentMissingCommittedBytes,
|
||||
Scope: store.IncidentScopeSegment, ScopeKey: "segment-redacted", Summary: "committed bytes are missing",
|
||||
Evidence: []byte("offset=128"), DataLoss: true,
|
||||
}); err != nil {
|
||||
t.Fatal(err)
|
||||
}
|
||||
if _, err := opened.ResolveIncident(context.Background(), store.IncidentResolution{
|
||||
RequestUUID: uuidBytes(110), IncidentUUID: incidentID, State: store.IncidentRepaired,
|
||||
Note: "cannot really repair", ResolvedAt: now.Add(time.Minute),
|
||||
}); !errors.Is(err, store.ErrIncidentResolution) {
|
||||
t.Fatalf("unsafe repair error = %v", err)
|
||||
}
|
||||
if _, err := opened.ResolveIncident(context.Background(), store.IncidentResolution{
|
||||
RequestUUID: uuidBytes(130), IncidentUUID: incidentID, State: store.IncidentAcknowledged,
|
||||
ResolvedAt: now.Add(2 * time.Minute),
|
||||
}); !errors.Is(err, store.ErrIncidentResolution) {
|
||||
t.Fatalf("empty acknowledgement error = %v", err)
|
||||
}
|
||||
acknowledged, err := opened.ResolveIncident(context.Background(), store.IncidentResolution{
|
||||
RequestUUID: uuidBytes(150), IncidentUUID: incidentID, State: store.IncidentAcknowledged,
|
||||
Note: "operator accepts loss after external verification", ResolvedAt: now.Add(3 * time.Minute),
|
||||
})
|
||||
if err != nil || acknowledged.State != store.IncidentAcknowledged {
|
||||
t.Fatalf("acknowledgement = (%+v, %v)", acknowledged, err)
|
||||
}
|
||||
dirty, err := opened.HasDirtyIncidents(context.Background())
|
||||
if err != nil || dirty {
|
||||
t.Fatalf("acknowledged dirty = %v, err = %v", dirty, err)
|
||||
}
|
||||
if err := opened.Close(); err != nil {
|
||||
t.Fatal(err)
|
||||
}
|
||||
}
|
||||
|
||||
func openStore(t *testing.T, dataDir string) *store.Store {
|
||||
t.Helper()
|
||||
return openStoreWithOptions(t, store.Options{DataDir: dataDir, BusyTimeout: busyTimeout})
|
||||
|
||||
Reference in New Issue
Block a user