java-topology/defects/haproxy/unit/HaproxySpoeAlgorithmTest.java

100 lines
3.2 KiB
Java

package unit;
import java.util.ArrayList;
import java.util.HashSet;
import java.util.List;
import java.util.Set;
/**
* haproxy-0002: flt_spoe.c duplicate-name detection O(N²) vs O(N log N).
*
* slow: for each of N message names, walk the linked list of already-added
* names (strcmp per entry) — mirrors:
* while (*args[cur_arg]) {
* list_for_each_entry(ph, &curmphs, list)
* if (strcmp(ph->id, args[cur_arg]) == 0) ...
* }
*
* fast: pre-built HashSet; O(1) contains check per name.
*
* Assert: slowOps > fastOps * (N/2) for N=200 SPOE message names.
*/
public class HaproxySpoeAlgorithmTest {
static long slowOps;
static long fastOps;
// ---- slow: O(N²) linked-list duplicate detection (defect) ---------------
static List<String> slowAddMessages(String[] names) {
List<String> registered = new ArrayList<>();
for (String name : names) {
boolean dup = false;
for (String existing : registered) { // O(R) inner scan
slowOps++;
if (existing.equals(name)) {
dup = true;
break;
}
}
if (!dup) {
registered.add(name);
}
}
return registered;
}
// ---- fast: O(N) HashSet duplicate detection (fix) -----------------------
static List<String> fastAddMessages(String[] names) {
List<String> registered = new ArrayList<>();
Set<String> seen = new HashSet<>();
for (String name : names) {
fastOps++; // O(1) HashSet lookup
if (!seen.contains(name)) {
seen.add(name);
registered.add(name);
}
}
return registered;
}
// ---- benchmark driver ---------------------------------------------------
public static void main(String[] args) {
final int N = 200; // SPOE message names in a single directive
// Generate N unique names (worst case: no duplicates = maximum list walks)
String[] names = new String[N];
for (int i = 0; i < N; i++) {
names[i] = "spoe-msg-" + i;
}
slowOps = 0;
fastOps = 0;
List<String> slowResult = slowAddMessages(names);
List<String> fastResult = fastAddMessages(names);
// Verify correctness: same number of unique entries
if (slowResult.size() != fastResult.size()) {
System.err.printf("FAIL: slow=%d entries fast=%d entries (mismatch)%n",
slowResult.size(), fastResult.size());
System.exit(1);
}
long ratio = slowOps / Math.max(fastOps, 1);
// Expect at least N/2 - 1 ratio since average list length = N/2
// (worst-case unique names: average walk = N/2, last entry walks N-1 steps)
boolean pass = slowOps > fastOps * (N / 2 - 2);
System.out.printf("haproxy-0002 slow=%d fast=%d ratio=%dx %s%n",
slowOps, fastOps, ratio, pass ? "PASS" : "FAIL");
if (!pass) {
System.err.printf("FAIL: expected slowOps(%d) > fastOps(%d) * %d%n",
slowOps, fastOps, N / 2 - 2);
System.exit(1);
}
}
}