// Step 895: Runtime compatibility risk report (8 tests) #include "graduation/RuntimeCompatibilityRiskReport.h" #include static int p=0,f=0; #define T(n) { std::cout << " " << #n << "... "; } #define P() { std::cout << "PASS\n"; ++p; } #define F(m) { std::cout << "FAIL: " << m << "\n"; ++f; } #define C(c,m) if(!(c)){F(m);return;} void t1(){T(both_packs_no_missing); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",true,true); C(!r.missingPackData,"no missing");P();} void t2(){T(missing_source_pack_flagged); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",false,true); C(r.missingPackData,"missing");P();} void t3(){T(missing_target_pack_flagged); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",true,false); C(r.missingPackData,"missing");P();} void t4(){T(missing_pack_adds_risk_item); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",false,true); C(!r.riskItems.empty(),"item");P();} void t5(){T(missing_pack_medium_risk_label); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",false,true); C(r.riskLabel=="medium","medium");P();} void t6(){T(both_packs_no_risk_items); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",true,true); C(r.riskItems.empty(),"empty");P();} void t7(){T(both_packs_low_risk_label); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",true,true); C(r.riskLabel=="low","low");P();} void t8(){T(to_json_has_risk_label); auto r=RuntimeCompatibilityRiskReport::generate("p1","jvm11","cpython3",true,true); auto j=RuntimeCompatibilityRiskReport::toJson(r); C(j.contains("risk_label")&&j.contains("overall_risk"),"json");P();} int main(){ std::cout<<"Step 895: Runtime compatibility risk report\n"; t1();t2();t3();t4();t5();t6();t7();t8(); std::cout<<"\nResults: "<