// Step 598: Phase 34a Integration (8 tests) #include "Phase34aIntegration.h" #include static int passed = 0, failed = 0; #define TEST(name) { std::cout << " " << #name << "... "; } #define PASS() { std::cout << "PASS\n"; ++passed; } #define FAIL(msg) { std::cout << "FAIL: " << msg << "\n"; ++failed; } #define CHECK(cond, msg) if (!(cond)) { FAIL(msg); return; } else {} static bool hasNote(const Phase34aResult& r, const std::string& note) { for (const auto& n : r.notes) if (n == note) return true; return false; } void test_full_phase34a_cycle_passes() { TEST(full_phase34a_cycle_passes); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.guardrailCatalogReady, "catalog should be ready"); CHECK(r.escalationPlannerReady, "planner should be ready"); CHECK(r.auditLedgerReady, "ledger should be ready"); CHECK(r.driftMonitorReady, "drift monitor should be ready"); CHECK(hasNote(r, "phase34a:policy_governance_cycle_ready"), "success note missing"); PASS(); } void test_guardrail_catalog_signal_true_on_pass() { TEST(guardrail_catalog_signal_true_on_pass); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.guardrailCatalogReady, "catalog flag should be true"); PASS(); } void test_escalation_planner_signal_true_on_pass() { TEST(escalation_planner_signal_true_on_pass); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.escalationPlannerReady, "planner flag should be true"); PASS(); } void test_audit_ledger_signal_true_on_pass() { TEST(audit_ledger_signal_true_on_pass); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.auditLedgerReady, "ledger flag should be true"); PASS(); } void test_drift_monitor_signal_true_on_pass() { TEST(drift_monitor_signal_true_on_pass); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.driftMonitorReady, "drift flag should be true"); CHECK(r.driftScore > 0, "drift score should be positive"); PASS(); } void test_no_blocked_note_on_success() { TEST(no_blocked_note_on_success); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(!hasNote(r, "phase34a:blocked"), "blocked note should not appear"); PASS(); } void test_notes_include_only_success_marker_on_pass() { TEST(notes_include_only_success_marker_on_pass); auto r = Phase34aIntegration::run(); CHECK(r.phase34aPass, "phase should pass"); CHECK(r.notes.size() == 1, "expected one success note"); PASS(); } void test_phase_flag_matches_component_conjunction() { TEST(phase_flag_matches_component_conjunction); auto r = Phase34aIntegration::run(); const bool conjunction = r.guardrailCatalogReady && r.escalationPlannerReady && r.auditLedgerReady && r.driftMonitorReady; CHECK(r.phase34aPass == conjunction, "phase flag should equal conjunction"); PASS(); } int main() { std::cout << "Step 598: Phase 34a Integration\n"; test_full_phase34a_cycle_passes(); // 1 test_guardrail_catalog_signal_true_on_pass(); // 2 test_escalation_planner_signal_true_on_pass(); // 3 test_audit_ledger_signal_true_on_pass(); // 4 test_drift_monitor_signal_true_on_pass(); // 5 test_no_blocked_note_on_success(); // 6 test_notes_include_only_success_marker_on_pass();// 7 test_phase_flag_matches_component_conjunction(); // 8 std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n"; return failed == 0 ? 0 : 1; }