Files
breakpilot-compliance/ai-compliance-sdk/internal/iace/component_library_test.go
T
Benjamin Admin 2e29b611c9 feat(iace): Phase 1 — Haftungs-Fixes, Massnahmen-Verkabelung, Explainability Engine
Phase 1A — Haftungs-kritische Fixes:
- SIL/PL-Badges als "Vorab-Einschaetzung" mit Tooltip gekennzeichnet
- Coverage-Disclaimer in CE-Akte, Projekt-Uebersicht und Print-Export
- Norm-Referenzen: 42 Kapitelverweise durch Themen-Deskriptoren ersetzt

Phase 1B — Massnahmen-Verkabelung:
- 16 neue Massnahmen (M201-M216) fuer bisher unabgedeckte Kategorien
  (communication_failure, hmi_error, firmware_corruption, maintenance,
  sensor_fault, mode_confusion)
- Kategorie-Fallback im Initialize-Endpoint: ordnet Massnahmen aus der
  Bibliothek automatisch per HazardCategory zu (max 8 pro Kategorie)
- Total: 225 → 241 Massnahmen, 0 Kategorien ohne Massnahmen

Phase 1C — Explainability Engine:
- MatchReason Struct in PatternMatch (type, tag, met)
- Pattern Engine schreibt fuer jeden Match strukturierte Begruendungen
- Frontend zeigt "Erkannt weil: Komponente X, Energie Y, Kein Ausschluss Z"

Weitere Aenderungen:
- BAuA/OSHA Regulatory Hints: 3 Enrich-Endpoints (per Hazard, per Measure, Batch)
- Dokumente-Tab in IACE-Bibliothek (36.708 Chunks aus Qdrant)
- Varianten-UX: Basis-Projekt-Summary auf Varianten-Seite
- Projekt-Initialisierung: POST /initialize kettet Parse→Komponenten→Patterns→Hazards→Massnahmen→Normen
- 18 pre-existing TS-Fehler gefixt, Route-Konflikt behoben
- Component-Library + Measures-Library Tests aktualisiert

Tests: Go alle bestanden, TS 0 Fehler, Playwright 141+ bestanden

Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
2026-05-09 21:32:23 +02:00

132 lines
3.6 KiB
Go

package iace
import "testing"
// TestGetComponentLibrary_EntryCount verifies the component library has at least 120 entries.
func TestGetComponentLibrary_EntryCount(t *testing.T) {
entries := GetComponentLibrary()
if len(entries) < 120 {
t.Fatalf("GetComponentLibrary returned %d entries, want at least 120", len(entries))
}
}
// TestGetComponentLibrary_UniqueIDs verifies all component IDs are unique.
func TestGetComponentLibrary_UniqueIDs(t *testing.T) {
entries := GetComponentLibrary()
seen := make(map[string]bool)
for _, e := range entries {
if e.ID == "" {
t.Errorf("component has empty ID: %s", e.NameDE)
}
if seen[e.ID] {
t.Errorf("duplicate component ID: %s", e.ID)
}
seen[e.ID] = true
}
}
// TestGetComponentLibrary_ValidCategories verifies all categories are valid.
func TestGetComponentLibrary_ValidCategories(t *testing.T) {
validCats := make(map[string]bool)
for _, c := range ValidComponentLibraryCategories() {
validCats[c] = true
}
for _, e := range GetComponentLibrary() {
if !validCats[e.Category] {
t.Errorf("component %s has invalid category %q", e.ID, e.Category)
}
}
}
// TestGetComponentLibrary_NonEmptyFields verifies required fields are filled.
func TestGetComponentLibrary_NonEmptyFields(t *testing.T) {
for _, e := range GetComponentLibrary() {
if e.NameDE == "" {
t.Errorf("component %s: NameDE is empty", e.ID)
}
if e.NameEN == "" {
t.Errorf("component %s: NameEN is empty", e.ID)
}
if e.MapsToComponentType == "" {
t.Errorf("component %s: MapsToComponentType is empty", e.ID)
}
if len(e.Tags) == 0 {
t.Errorf("component %s: Tags is empty", e.ID)
}
}
}
// TestGetComponentLibrary_CategoryDistribution verifies minimum category counts.
func TestGetComponentLibrary_CategoryDistribution(t *testing.T) {
counts := make(map[string]int)
for _, e := range GetComponentLibrary() {
counts[e.Category]++
}
minimums := map[string]int{
"mechanical": 10,
"structural": 10,
"drive": 10,
"hydraulic": 10,
"pneumatic": 10,
"electrical": 10,
"control": 10,
"sensor": 10,
"actuator": 10,
"safety": 10,
"it_network": 10,
}
for cat, minWant := range minimums {
got := counts[cat]
if got < minWant {
t.Errorf("category %s: got %d entries, want at least %d", cat, got, minWant)
}
}
}
// TestGetEnergySources_EntryCount verifies the energy source library has exactly 20 entries.
func TestGetEnergySources_EntryCount(t *testing.T) {
entries := GetEnergySources()
if len(entries) != 20 {
t.Fatalf("GetEnergySources returned %d entries, want 20", len(entries))
}
}
// TestGetEnergySources_UniqueIDs verifies all energy source IDs are unique.
func TestGetEnergySources_UniqueIDs(t *testing.T) {
entries := GetEnergySources()
seen := make(map[string]bool)
for _, e := range entries {
if e.ID == "" {
t.Errorf("energy source has empty ID: %s", e.NameDE)
}
if seen[e.ID] {
t.Errorf("duplicate energy source ID: %s", e.ID)
}
seen[e.ID] = true
}
}
// TestGetEnergySources_NonEmptyFields verifies required fields are filled.
func TestGetEnergySources_NonEmptyFields(t *testing.T) {
for _, e := range GetEnergySources() {
if e.NameDE == "" {
t.Errorf("energy source %s: NameDE is empty", e.ID)
}
if e.NameEN == "" {
t.Errorf("energy source %s: NameEN is empty", e.ID)
}
if len(e.Tags) == 0 {
t.Errorf("energy source %s: Tags is empty", e.ID)
}
}
}
// TestGetEnergySources_AllHaveTags verifies every energy source has at least one tag.
func TestGetEnergySources_AllHaveTags(t *testing.T) {
for _, e := range GetEnergySources() {
if len(e.Tags) == 0 {
t.Errorf("energy source %s has no tags", e.ID)
}
}
}