Files
whetstone_DSL/editor/tests/step603_test.cpp

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5.9 KiB
C++

// Step 603: Compliance Operational Readiness (12 tests)
#include "ComplianceOperationalReadiness.h"
#include <iostream>
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 ComplianceReadinessSnapshot healthySnapshot() {
return {4, 6, 3, 0, 2, 0};
}
void test_validate_input_success() {
TEST(validate_input_success);
ComplianceReadinessSnapshot s = healthySnapshot();
std::string error;
CHECK(ComplianceOperationalReadiness::validateInput(s, &error), "validation should succeed");
CHECK(error.empty(), "error should be empty");
PASS();
}
void test_validate_input_rejects_negative_controls_covered() {
TEST(validate_input_rejects_negative_controls_covered);
ComplianceReadinessSnapshot s = healthySnapshot();
s.controlsCovered = -1;
std::string error;
CHECK(!ComplianceOperationalReadiness::validateInput(s, &error), "validation should fail");
CHECK(error == "controls_covered_invalid", "wrong error");
PASS();
}
void test_validate_input_rejects_negative_artifact_count() {
TEST(validate_input_rejects_negative_artifact_count);
ComplianceReadinessSnapshot s = healthySnapshot();
s.artifactCount = -1;
std::string error;
CHECK(!ComplianceOperationalReadiness::validateInput(s, &error), "validation should fail");
CHECK(error == "artifact_count_invalid", "wrong error");
PASS();
}
void test_validate_input_rejects_negative_signed_attestations() {
TEST(validate_input_rejects_negative_signed_attestations);
ComplianceReadinessSnapshot s = healthySnapshot();
s.signedAttestations = -1;
std::string error;
CHECK(!ComplianceOperationalReadiness::validateInput(s, &error), "validation should fail");
CHECK(error == "signed_attestations_invalid", "wrong error");
PASS();
}
void test_validate_input_rejects_negative_expiring_soon() {
TEST(validate_input_rejects_negative_expiring_soon);
ComplianceReadinessSnapshot s = healthySnapshot();
s.expiringSoon = -1;
std::string error;
CHECK(!ComplianceOperationalReadiness::validateInput(s, &error), "validation should fail");
CHECK(error == "expiring_soon_invalid", "wrong error");
PASS();
}
void test_validate_input_rejects_negative_open_runbooks() {
TEST(validate_input_rejects_negative_open_runbooks);
ComplianceReadinessSnapshot s = healthySnapshot();
s.openRunbooks = -1;
std::string error;
CHECK(!ComplianceOperationalReadiness::validateInput(s, &error), "validation should fail");
CHECK(error == "open_runbooks_invalid", "wrong error");
PASS();
}
void test_readiness_score_increases_with_positive_signals() {
TEST(readiness_score_increases_with_positive_signals);
ComplianceReadinessSnapshot low = {1, 1, 0, 0, 0, 0};
ComplianceReadinessSnapshot high = {5, 8, 4, 0, 2, 0};
CHECK(ComplianceOperationalReadiness::readinessScore(high) >
ComplianceOperationalReadiness::readinessScore(low), "high score should be greater");
PASS();
}
void test_readiness_score_penalizes_risk_signals() {
TEST(readiness_score_penalizes_risk_signals);
ComplianceReadinessSnapshot clean = healthySnapshot();
ComplianceReadinessSnapshot risky = healthySnapshot();
risky.expiringSoon = 3;
risky.openRunbooks = 2;
CHECK(ComplianceOperationalReadiness::readinessScore(risky) <
ComplianceOperationalReadiness::readinessScore(clean), "risky score should be lower");
PASS();
}
void test_readiness_score_clamps_to_zero() {
TEST(readiness_score_clamps_to_zero);
ComplianceReadinessSnapshot s = {0, 0, 0, 9, 0, 9};
CHECK(ComplianceOperationalReadiness::readinessScore(s) == 0, "score should clamp to zero");
PASS();
}
void test_readiness_score_clamps_to_hundred() {
TEST(readiness_score_clamps_to_hundred);
ComplianceReadinessSnapshot s = {20, 20, 20, 0, 10, 0};
CHECK(ComplianceOperationalReadiness::readinessScore(s) == 100, "score should clamp to hundred");
PASS();
}
void test_blocking_findings_reports_expected_reasons() {
TEST(blocking_findings_reports_expected_reasons);
ComplianceReadinessSnapshot s = {0, 0, 0, 1, 0, 1};
const auto findings = ComplianceOperationalReadiness::blockingFindings(s);
CHECK(findings.size() == 5, "finding count mismatch");
PASS();
}
void test_release_eligibility_requires_no_blockers() {
TEST(release_eligibility_requires_no_blockers);
ComplianceReadinessSnapshot healthy = healthySnapshot();
ComplianceReadinessSnapshot blocked = healthySnapshot();
blocked.expiringSoon = 1;
CHECK(ComplianceOperationalReadiness::releaseEligible(healthy), "healthy snapshot should be eligible");
CHECK(!ComplianceOperationalReadiness::releaseEligible(blocked), "blocked snapshot should be ineligible");
PASS();
}
int main() {
std::cout << "Step 603: Compliance Operational Readiness\n";
test_validate_input_success(); // 1
test_validate_input_rejects_negative_controls_covered();// 2
test_validate_input_rejects_negative_artifact_count(); // 3
test_validate_input_rejects_negative_signed_attestations();// 4
test_validate_input_rejects_negative_expiring_soon(); // 5
test_validate_input_rejects_negative_open_runbooks(); // 6
test_readiness_score_increases_with_positive_signals(); // 7
test_readiness_score_penalizes_risk_signals(); // 8
test_readiness_score_clamps_to_zero(); // 9
test_readiness_score_clamps_to_hundred(); // 10
test_blocking_findings_reports_expected_reasons(); // 11
test_release_eligibility_requires_no_blockers(); // 12
std::cout << "\nResults: " << passed << "/" << (passed + failed) << " passed\n";
return failed == 0 ? 0 : 1;
}