167 lines
5.9 KiB
C++
167 lines
5.9 KiB
C++
// Step 596: Escalation Audit Ledger (12 tests)
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#include "EscalationAuditLedger.h"
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#include <iostream>
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static int passed = 0, failed = 0;
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#define TEST(name) { std::cout << " " << #name << "... "; }
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#define PASS() { std::cout << "PASS\n"; ++passed; }
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#define FAIL(msg) { std::cout << "FAIL: " << msg << "\n"; ++failed; }
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#define CHECK(cond, msg) if (!(cond)) { FAIL(msg); return; } else {}
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static EscalationAuditEntry entry(const std::string& id,
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const std::string& actor,
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GuardrailDecision decision,
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int risk) {
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EscalationAuditEntry e;
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e.entryId = id;
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e.operation = "deploy prod";
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e.decision = decision;
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e.level = EscalationLevel::Reviewer;
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e.actor = actor;
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e.outcome = "approved";
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e.riskScore = risk;
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return e;
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}
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void test_record_success() {
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TEST(record_success);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "record should succeed");
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CHECK(l.entries().size() == 1, "entry count mismatch");
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PASS();
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}
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void test_record_rejects_missing_entry_id() {
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TEST(record_rejects_missing_entry_id);
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EscalationAuditLedger l;
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std::string error;
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auto e = entry("", "alice", GuardrailDecision::Allow, 20);
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CHECK(!l.record(e, &error), "record should fail");
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CHECK(error == "entry_id_missing", "wrong error");
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PASS();
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}
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void test_record_rejects_missing_operation() {
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TEST(record_rejects_missing_operation);
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EscalationAuditLedger l;
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std::string error;
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auto e = entry("e1", "alice", GuardrailDecision::Allow, 20);
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e.operation.clear();
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CHECK(!l.record(e, &error), "record should fail");
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CHECK(error == "operation_missing", "wrong error");
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PASS();
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}
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void test_record_rejects_missing_actor() {
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TEST(record_rejects_missing_actor);
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EscalationAuditLedger l;
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std::string error;
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auto e = entry("e1", "", GuardrailDecision::Allow, 20);
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CHECK(!l.record(e, &error), "record should fail");
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CHECK(error == "actor_missing", "wrong error");
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PASS();
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}
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void test_record_rejects_missing_outcome() {
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TEST(record_rejects_missing_outcome);
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EscalationAuditLedger l;
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std::string error;
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auto e = entry("e1", "alice", GuardrailDecision::Allow, 20);
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e.outcome.clear();
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CHECK(!l.record(e, &error), "record should fail");
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CHECK(error == "outcome_missing", "wrong error");
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PASS();
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}
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void test_record_rejects_invalid_risk_score() {
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TEST(record_rejects_invalid_risk_score);
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EscalationAuditLedger l;
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std::string error;
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auto e = entry("e1", "alice", GuardrailDecision::Allow, 120);
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CHECK(!l.record(e, &error), "record should fail");
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CHECK(error == "risk_score_invalid", "wrong error");
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PASS();
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}
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void test_record_rejects_duplicate_entry_id() {
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TEST(record_rejects_duplicate_entry_id);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "first record failed");
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CHECK(!l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "duplicate should fail");
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CHECK(error == "entry_duplicate", "wrong error");
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PASS();
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}
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void test_entries_preserve_insertion_order() {
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TEST(entries_preserve_insertion_order);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "e1 failed");
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CHECK(l.record(entry("e2", "bob", GuardrailDecision::Allow, 25), &error), "e2 failed");
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auto all = l.entries();
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CHECK(all[0].entryId == "e1", "first order mismatch");
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CHECK(all[1].entryId == "e2", "second order mismatch");
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PASS();
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}
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void test_by_actor_filters_entries() {
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TEST(by_actor_filters_entries);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "e1 failed");
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CHECK(l.record(entry("e2", "bob", GuardrailDecision::Allow, 25), &error), "e2 failed");
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CHECK(l.byActor("alice").size() == 1, "actor filter mismatch");
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PASS();
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}
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void test_average_risk_score_computed() {
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TEST(average_risk_score_computed);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Allow, 20), &error), "e1 failed");
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CHECK(l.record(entry("e2", "bob", GuardrailDecision::Allow, 40), &error), "e2 failed");
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CHECK(l.averageRiskScore() == 30, "avg risk mismatch");
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PASS();
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}
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void test_average_risk_zero_when_empty() {
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TEST(average_risk_zero_when_empty);
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EscalationAuditLedger l;
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CHECK(l.averageRiskScore() == 0, "empty avg risk should be zero");
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PASS();
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}
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void test_denied_count_tracks_deny_decisions() {
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TEST(denied_count_tracks_deny_decisions);
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EscalationAuditLedger l;
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std::string error;
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CHECK(l.record(entry("e1", "alice", GuardrailDecision::Deny, 95), &error), "e1 failed");
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CHECK(l.record(entry("e2", "bob", GuardrailDecision::Allow, 20), &error), "e2 failed");
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CHECK(l.deniedCount() == 1, "denied count mismatch");
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PASS();
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}
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int main() {
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std::cout << "Step 596: Escalation Audit Ledger\n";
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test_record_success(); // 1
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test_record_rejects_missing_entry_id(); // 2
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test_record_rejects_missing_operation(); // 3
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test_record_rejects_missing_actor(); // 4
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test_record_rejects_missing_outcome(); // 5
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test_record_rejects_invalid_risk_score(); // 6
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test_record_rejects_duplicate_entry_id(); // 7
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test_entries_preserve_insertion_order(); // 8
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test_by_actor_filters_entries(); // 9
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test_average_risk_score_computed(); // 10
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test_average_risk_zero_when_empty(); // 11
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test_denied_count_tracks_deny_decisions(); // 12
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std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n";
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return failed == 0 ? 0 : 1;
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}
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