java-topology/defects/micronaut/unit/MicronautTest.java
russell@unturf.com 8a85da480d micronaut-0004 + diamond-recursion CLEAN sweep: camel/hazelcast/tomcat/undertow/vertx/quarkus-0003 unit tests
micronaut-0004: AbstractAnnotationMetadataBuilder.processAnnotation O(2^D) diamond recursion
in meta-annotation stereotype traversal. isProcessed() guard tracks only current-path ancestors,
not globally visited nodes — diamond meta-annotation hierarchies cause exponential re-visits
of shared base annotations (e.g. @Transactional + @Retryable both extend @InterceptorBinding).
13x at D=8, 41x at D=10. 10/10 unit tests PASS.

quarkus-0003 unit tests: added to QuarkusTest.java for the existing quarkus-0003
BeanDeployment.recursiveBuild diamond defect. 9/9 PASS.

CLEAN markers: camel, hazelcast, tomcat, undertow, vertx — no diamond recursion pattern found.
Hazelcast uses proper Tarjan algorithm. Tomcat uses iterative constraint propagation.
2026-03-29 17:21:51 -04:00

396 lines
17 KiB
Java

package unit;
import java.util.ArrayList;
import java.util.Collections;
import java.util.HashMap;
import java.util.HashSet;
import java.util.LinkedHashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.concurrent.atomic.AtomicLong;
/**
* Unit test for Micronaut CWE-407 defects:
* micronaut-0001: ClassUtils.resolveHierarchy — hierarchy.contains (ArrayList) in while loop
* micronaut-0002: MutableAnnotationMetadata — annotationList.contains (ArrayList) in for loop
* micronaut-0003: EnvironmentPropertySource — includes/excludes.contains (List) in env loop
* micronaut-0004: AbstractAnnotationMetadataBuilder.processAnnotation — O(2^D) diamond recursion in meta-annotation traversal
*
* No JUnit. No external deps. Compile and run:
* javac -d . *.java && java -ea unit.MicronautTest
*/
public class MicronautTest {
// ---- micronaut-0001 simulation ----
// Simulates resolveHierarchy: builds hierarchy list while walking superclass chain,
// calling contains() to deduplicate. Also simulates populateHierarchyInterfaces recursion.
static long slowResolveHierarchy(int superclassCount, int interfacesPerClass) {
long ops = 0;
List<Integer> hierarchy = new ArrayList<>();
List<Integer> interfaces = new ArrayList<>();
// Walk superclass chain
for (int superclass = 0; superclass < superclassCount; superclass++) {
if (!hierarchy.contains(superclass)) { // O(H) ArrayList
ops += hierarchy.size() + 1;
hierarchy.add(superclass);
}
// Populate interfaces for this superclass
for (int iface = 0; iface < interfacesPerClass; iface++) {
int ifaceId = superclass * 100 + iface;
if (!interfaces.contains(ifaceId)) { // O(|interfaces|) ArrayList
ops += interfaces.size() + 1;
interfaces.add(ifaceId);
}
// Recursive: each interface may have parent interfaces
for (int parentIface = 0; parentIface < interfacesPerClass / 2; parentIface++) {
int parentId = ifaceId * 100 + parentIface;
if (!interfaces.contains(parentId)) { // O(|interfaces|)
ops += interfaces.size() + 1;
interfaces.add(parentId);
}
}
}
}
return ops;
}
static long fastResolveHierarchy(int superclassCount, int interfacesPerClass) {
long ops = 0;
Set<Integer> hierarchy = new LinkedHashSet<>();
Set<Integer> interfaces = new LinkedHashSet<>();
for (int superclass = 0; superclass < superclassCount; superclass++) {
if (!hierarchy.contains(superclass)) { // O(1) HashSet
ops += 1;
hierarchy.add(superclass);
}
for (int iface = 0; iface < interfacesPerClass; iface++) {
int ifaceId = superclass * 100 + iface;
if (!interfaces.contains(ifaceId)) { // O(1)
ops += 1;
interfaces.add(ifaceId);
}
for (int parentIface = 0; parentIface < interfacesPerClass / 2; parentIface++) {
int parentId = ifaceId * 100 + parentIface;
if (!interfaces.contains(parentId)) { // O(1)
ops += 1;
interfaces.add(parentId);
}
}
}
}
return ops;
}
// ---- micronaut-0002 simulation ----
// Simulates addRepeatableStereotype: for each parent in parents list,
// check annotationList.contains (ArrayList) before adding.
static long slowAddRepeatableStereotype(int parentCount, int existingAnnotations) {
long ops = 0;
List<String> annotationList = new ArrayList<>();
// Pre-populate with existingAnnotations
for (int i = 0; i < existingAnnotations; i++) {
annotationList.add("existing-" + i);
}
// Add parents
for (int i = 0; i < parentCount; i++) {
String parent = "parent-" + i;
if (!annotationList.contains(parent)) { // O(|annotationList|) ArrayList
ops += annotationList.size() + 1;
annotationList.add(parent);
}
}
return ops;
}
static long fastAddRepeatableStereotype(int parentCount, int existingAnnotations) {
long ops = 0;
Set<String> annotationSet = new LinkedHashSet<>();
for (int i = 0; i < existingAnnotations; i++) {
annotationSet.add("existing-" + i);
}
for (int i = 0; i < parentCount; i++) {
String parent = "parent-" + i;
if (!annotationSet.contains(parent)) { // O(1)
ops += 1;
annotationSet.add(parent);
}
}
return ops;
}
// ---- micronaut-0003 simulation ----
// Simulates getEnv: for each env var, check excludes.contains and includes.contains
static long slowEnvFilter(int envVarCount, int filterListSize) {
long ops = 0;
List<String> excludes = new ArrayList<>();
List<String> includes = new ArrayList<>();
for (int i = 0; i < filterListSize; i++) {
excludes.add("EXCLUDE_" + i);
includes.add("INCLUDE_" + i);
}
Map<String, String> env = new HashMap<>();
for (int i = 0; i < envVarCount; i++) {
env.put("ENV_VAR_" + i, "value");
}
for (String envVar : env.keySet()) {
if (excludes.contains(envVar)) { // O(filterListSize) ArrayList
ops += filterListSize;
continue;
}
if (!includes.contains(envVar)) { // O(filterListSize) ArrayList
ops += filterListSize;
continue;
}
ops += filterListSize * 2;
}
return ops;
}
static long fastEnvFilter(int envVarCount, int filterListSize) {
long ops = 0;
Set<String> excludes = new HashSet<>();
Set<String> includes = new HashSet<>();
for (int i = 0; i < filterListSize; i++) {
excludes.add("EXCLUDE_" + i);
includes.add("INCLUDE_" + i);
}
Map<String, String> env = new HashMap<>();
for (int i = 0; i < envVarCount; i++) {
env.put("ENV_VAR_" + i, "value");
}
for (String envVar : env.keySet()) {
if (excludes.contains(envVar)) { // O(1)
ops += 1;
continue;
}
if (!includes.contains(envVar)) { // O(1)
ops += 1;
continue;
}
ops += 2;
}
return ops;
}
public static void main(String[] args) {
int pass = 0;
int total = 0;
// --- micronaut-0001 tests ---
{
total++;
long slow = slowResolveHierarchy(20, 5);
long fast = fastResolveHierarchy(20, 5);
boolean ok = slow > fast * 5;
System.out.println("[micronaut-0001] C=20 I=5: slow_ops=" + slow + " fast_ops=" + fast +
" ratio=" + (slow / Math.max(fast, 1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
// Correctness: same unique elements discovered
List<Integer> slowHierarchy = new ArrayList<>();
Set<Integer> fastHierarchy = new LinkedHashSet<>();
for (int i = 0; i < 30; i++) {
int val = i % 15;
if (!slowHierarchy.contains(val)) slowHierarchy.add(val);
fastHierarchy.add(val);
}
boolean ok = slowHierarchy.size() == fastHierarchy.size();
System.out.println("[micronaut-0001] correctness: slow=" + slowHierarchy.size() +
" fast=" + fastHierarchy.size() + " " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
// --- micronaut-0002 tests ---
{
total++;
long slow = slowAddRepeatableStereotype(30, 10);
long fast = fastAddRepeatableStereotype(30, 10);
boolean ok = slow > fast * 3;
System.out.println("[micronaut-0002] P=30 existing=10: slow_ops=" + slow + " fast_ops=" + fast +
" ratio=" + (slow / Math.max(fast, 1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
long slow = slowAddRepeatableStereotype(100, 50);
long fast = fastAddRepeatableStereotype(100, 50);
boolean ok = slow > fast * 10;
System.out.println("[micronaut-0002] P=100 existing=50: slow_ops=" + slow + " fast_ops=" + fast +
" ratio=" + (slow / Math.max(fast, 1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
// Correctness: same dedup result
List<String> slowResult = new ArrayList<>();
Set<String> fastResult = new LinkedHashSet<>();
String[] parents = {"a", "b", "a", "c", "b", "d"};
for (String p : parents) {
if (!slowResult.contains(p)) slowResult.add(p);
fastResult.add(p);
}
boolean ok = slowResult.size() == fastResult.size() &&
new ArrayList<>(fastResult).equals(slowResult);
System.out.println("[micronaut-0002] dedup correctness: slow=" + slowResult.size() +
" fast=" + fastResult.size() + " " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
// --- micronaut-0003 tests ---
{
total++;
long slow = slowEnvFilter(500, 50);
long fast = fastEnvFilter(500, 50);
boolean ok = slow > fast * 10;
System.out.println("[micronaut-0003] E=500 N=50: slow_ops=" + slow + " fast_ops=" + fast +
" ratio=" + (slow / Math.max(fast, 1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
// Correctness: same env vars pass through filter
List<String> slowPassed = new ArrayList<>();
List<String> fastPassed = new ArrayList<>();
List<String> excludeList = new ArrayList<>();
Set<String> excludeSet = new HashSet<>();
List<String> includeList = new ArrayList<>();
Set<String> includeSet = new HashSet<>();
for (int i = 0; i < 5; i++) {
excludeList.add("EX_" + i); excludeSet.add("EX_" + i);
includeList.add("ENV_VAR_" + i); includeSet.add("ENV_VAR_" + i);
}
for (int i = 0; i < 10; i++) {
String v = "ENV_VAR_" + i;
if (!excludeList.contains(v) && includeList.contains(v)) slowPassed.add(v);
if (!excludeSet.contains(v) && includeSet.contains(v)) fastPassed.add(v);
}
boolean ok = slowPassed.size() == fastPassed.size();
System.out.println("[micronaut-0003] filter correctness: slow=" + slowPassed.size() +
" fast=" + fastPassed.size() + " " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
// --- micronaut-0004 tests ---
// Simulates AbstractAnnotationMetadataBuilder.processAnnotation diamond recursion.
// The guard context.isProcessed() only checks CURRENT PATH ancestors — not globally
// visited nodes — so a diamond meta-annotation graph causes O(2^D) re-visits.
//
// Model: annotation name → set of meta-annotations (stereotypes)
// processAnnotation(ctx, name): check if name in ctx.parentAnnotations; if not,
// recursively process each stereotype with ctx.withParent(name)
{
total++;
// Diamond depth=8: slow ~383 calls, fast ~29 calls, ratio ~13x
Map<String, Set<String>> stereotypes = buildMetaDiamond(8);
AtomicLong slowCalls = new AtomicLong(0);
slowProcessAnnotation("root", stereotypes, new HashSet<>(), slowCalls);
Map<String, Set<String>> stereotypes2 = buildMetaDiamond(8);
AtomicLong fastCalls = new AtomicLong(0);
fastProcessAnnotation("root", stereotypes2, new HashSet<>(), new HashSet<>(), fastCalls);
long sc = slowCalls.get(), fc = fastCalls.get();
boolean ok = sc > fc * 5;
System.out.println("[micronaut-0004] diamond D=8: slow=" + sc +
" fast=" + fc + " ratio=" + (sc/Math.max(fc,1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
// Diamond depth=10: slow ~1535 calls, fast ~37 calls, ratio ~41x
Map<String, Set<String>> stereotypes = buildMetaDiamond(10);
AtomicLong slowCalls = new AtomicLong(0);
slowProcessAnnotation("root", stereotypes, new HashSet<>(), slowCalls);
Map<String, Set<String>> stereotypes2 = buildMetaDiamond(10);
AtomicLong fastCalls = new AtomicLong(0);
fastProcessAnnotation("root", stereotypes2, new HashSet<>(), new HashSet<>(), fastCalls);
long sc = slowCalls.get(), fc = fastCalls.get();
boolean ok = sc > fc * 20;
System.out.println("[micronaut-0004] diamond D=10: slow=" + sc +
" fast=" + fc + " ratio=" + (sc/Math.max(fc,1)) + "x " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
{
total++;
// Correctness: fast traversal visits all nodes in diamond
Map<String, Set<String>> s2 = buildMetaDiamond(5);
Set<String> fastCollected = new HashSet<>();
AtomicLong fc = new AtomicLong(0);
fastProcessAnnotation("root", s2, new HashSet<>(), fastCollected, fc);
// All nodes should be visited: root, L1..L4 left/right pairs, leaf
boolean ok = fastCollected.contains("root") && fastCollected.contains("leaf")
&& fastCollected.size() == s2.size();
System.out.println("[micronaut-0004] correctness: visited=" + fastCollected.size() +
"/" + s2.size() + " nodes " + (ok ? "PASS" : "FAIL"));
if (ok) pass++;
}
System.out.println("\n" + pass + "/" + total + " PASS");
if (pass != total) {
System.exit(1);
}
}
// ---- micronaut-0004 helpers ----
// Build diamond meta-annotation graph of depth D.
// root → {left_1, right_1}; left_i → {left_{i+1}, right_{i+1}}; right_i → {left_{i+1}, right_{i+1}}; leaf → {}
static Map<String, Set<String>> buildMetaDiamond(int depth) {
Map<String, Set<String>> map = new HashMap<>();
String leaf = "leaf";
map.put(leaf, new HashSet<>());
String prevLeft = leaf, prevRight = null;
for (int level = depth - 1; level >= 1; level--) {
String left = "L" + level + "_left";
String right = "L" + level + "_right";
Set<String> children = new HashSet<>();
children.add(prevLeft);
if (prevRight != null) children.add(prevRight);
map.put(left, new HashSet<>(children));
map.put(right, new HashSet<>(children));
prevLeft = left;
prevRight = right;
}
Set<String> rootChildren = new HashSet<>();
rootChildren.add(prevLeft);
if (prevRight != null) rootChildren.add(prevRight);
map.put("root", rootChildren);
return map;
}
// Defect simulation: processAnnotation without global visited set.
// parentAnnotations = current-path ancestors only (isProcessed guard per the defect).
static void slowProcessAnnotation(String name, Map<String, Set<String>> stereotypesMap,
Set<String> parentAnnotations, AtomicLong callCount) {
callCount.incrementAndGet();
if (parentAnnotations.contains(name)) return; // cycle guard (current path only)
Set<String> stereotypes = stereotypesMap.getOrDefault(name, Collections.emptySet());
// withParent: add name to parent set for child calls
Set<String> newParents = new HashSet<>(parentAnnotations);
newParents.add(name);
for (String stereotype : new ArrayList<>(stereotypes)) {
slowProcessAnnotation(stereotype, stereotypesMap, newParents, callCount); // NO global visited
}
}
// Fixed: processAnnotation with global visited set.
static void fastProcessAnnotation(String name, Map<String, Set<String>> stereotypesMap,
Set<String> parentAnnotations, Set<String> globalVisited,
AtomicLong callCount) {
callCount.incrementAndGet();
if (parentAnnotations.contains(name)) return; // cycle guard
if (!globalVisited.add(name)) return; // global visited guard (FIX)
Set<String> stereotypes = stereotypesMap.getOrDefault(name, Collections.emptySet());
Set<String> newParents = new HashSet<>(parentAnnotations);
newParents.add(name);
for (String stereotype : new ArrayList<>(stereotypes)) {
fastProcessAnnotation(stereotype, stereotypesMap, newParents, globalVisited, callCount);
}
}
}