228 lines
7.6 KiB
Java
228 lines
7.6 KiB
Java
package unit;
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import java.util.ArrayList;
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import java.util.HashSet;
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import java.util.List;
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import java.util.Set;
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/**
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* rocksdb-001: LockInfo.txn_ids linear scan — O(T²) shared-lock churn.
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*
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* Models the RocksDB PointLockManager / PerKeyPointLockManager defect:
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* - Slow path: autovector<TransactionID> + std::find() -> O(T) per unlock
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* - Fast path: unordered_set<TransactionID> -> O(1) per unlock
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*
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* File: utilities/transactions/lock/point/point_lock_manager.cc
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* Lines: 791, 1513, 1706
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*/
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public class RocksdbLockTxnIdsAlgorithm {
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// -----------------------------------------------------------------------
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// Slow path: List<Long> + linear indexOf — mirrors autovector + std::find
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// -----------------------------------------------------------------------
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static class SlowLockInfo {
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List<Long> txnIds = new ArrayList<>();
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void addHolder(long txnId) {
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txnIds.add(txnId);
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}
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/** Returns number of element comparisons performed (for counting). */
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long unlock(long txnId) {
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long ops = 0;
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for (int i = 0; i < txnIds.size(); i++) {
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ops++;
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if (txnIds.get(i) == txnId) {
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txnIds.remove(i);
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return ops;
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}
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}
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return ops; // not found
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}
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/** Shared-lock reentrant check (AcquireLocked path). */
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long isReentrant(long txnId) {
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long ops = 0;
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for (Long id : txnIds) {
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ops++;
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if (id == txnId) return ops;
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}
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return ops;
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}
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}
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// -----------------------------------------------------------------------
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// Fast path: HashSet<Long> — mirrors unordered_set<TransactionID>
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// -----------------------------------------------------------------------
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static class FastLockInfo {
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Set<Long> txnIds = new HashSet<>();
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void addHolder(long txnId) {
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txnIds.add(txnId);
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}
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/** Returns 1 (O(1) hash lookup). */
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long unlock(long txnId) {
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txnIds.remove(txnId);
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return 1L;
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}
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/** Shared-lock reentrant check — O(1). */
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long isReentrant(long txnId) {
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return txnIds.contains(txnId) ? 1L : 1L; // always 1 op
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}
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}
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// -----------------------------------------------------------------------
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// Result holder
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// -----------------------------------------------------------------------
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static class Result {
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final String label;
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final long totalOps;
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final boolean correct;
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Result(String label, long totalOps, boolean correct) {
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this.label = label;
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this.totalOps = totalOps;
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this.correct = correct;
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}
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}
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// -----------------------------------------------------------------------
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// Test: T concurrent readers each hold shared lock on one key.
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// Unlock all T — count total comparisons.
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// -----------------------------------------------------------------------
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static Result runSlow(int T) {
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SlowLockInfo info = new SlowLockInfo();
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for (long id = 0; id < T; id++) {
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info.addHolder(id);
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}
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long totalOps = 0;
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// Unlock each reader in reverse order (worst case for linear scan)
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for (long id = T - 1; id >= 0; id--) {
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totalOps += info.unlock(id);
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}
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// Verify all holders removed
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boolean correct = info.txnIds.isEmpty();
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return new Result("slow", totalOps, correct);
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}
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static Result runFast(int T) {
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FastLockInfo info = new FastLockInfo();
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for (long id = 0; id < T; id++) {
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info.addHolder(id);
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}
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long totalOps = 0;
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for (long id = T - 1; id >= 0; id--) {
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totalOps += info.unlock(id);
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}
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boolean correct = info.txnIds.isEmpty();
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return new Result("fast", totalOps, correct);
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}
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// -----------------------------------------------------------------------
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// Test: reentrant check (AcquireLocked path) with T holders
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// -----------------------------------------------------------------------
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static Result runSlowReentrant(int T) {
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SlowLockInfo info = new SlowLockInfo();
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for (long id = 0; id < T; id++) {
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info.addHolder(id);
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}
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long totalOps = 0;
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// Check reentrant for last-added txn (worst case: scans whole list)
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for (int k = 0; k < T; k++) {
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totalOps += info.isReentrant((long)(T - 1));
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}
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boolean correct = true; // structural only
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return new Result("slow-reentrant", totalOps, correct);
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}
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static Result runFastReentrant(int T) {
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FastLockInfo info = new FastLockInfo();
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for (long id = 0; id < T; id++) {
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info.addHolder(id);
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}
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long totalOps = 0;
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for (int k = 0; k < T; k++) {
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totalOps += info.isReentrant((long)(T - 1));
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}
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boolean correct = true;
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return new Result("fast-reentrant", totalOps, correct);
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}
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// -----------------------------------------------------------------------
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// Main
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// -----------------------------------------------------------------------
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public static void main(String[] args) {
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int passed = 0;
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int total = 0;
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int[] sizes = {10, 100, 500, 1000};
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for (int T : sizes) {
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// --- Unlock path ---
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Result slow = runSlow(T);
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Result fast = runFast(T);
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// Slow should be O(T^2/2) comparisons (average T/2 per unlock, T unlocks)
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long expectedSlowMin = (long) T * (T / 4); // lower bound
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long expectedSlowMax = (long) T * T; // upper bound
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long expectedFast = (long) T; // exactly T unlocks × 1 op each
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boolean slowOk = slow.correct
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&& slow.totalOps >= expectedSlowMin
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&& slow.totalOps <= expectedSlowMax;
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boolean fastOk = fast.correct && fast.totalOps == expectedFast;
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System.out.printf(
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"UNLOCK T=%4d slow_ops=%6d fast_ops=%4d speedup=%.1fx slow=%s fast=%s%n",
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T, slow.totalOps, fast.totalOps,
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(double) slow.totalOps / fast.totalOps,
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slowOk ? "PASS" : "FAIL",
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fastOk ? "PASS" : "FAIL"
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);
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total += 2;
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if (slowOk) passed++;
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if (fastOk) passed++;
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// --- Reentrant path ---
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Result slowR = runSlowReentrant(T);
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Result fastR = runFastReentrant(T);
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long expectedSlowRMin = (long) T * (T / 4);
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long expectedSlowRMax = (long) T * T;
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long expectedFastR = (long) T;
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boolean slowROk = slowR.correct
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&& slowR.totalOps >= expectedSlowRMin
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&& slowR.totalOps <= expectedSlowRMax;
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boolean fastROk = fastR.correct && fastR.totalOps == expectedFastR;
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System.out.printf(
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"REENT T=%4d slow_ops=%6d fast_ops=%4d speedup=%.1fx slow=%s fast=%s%n",
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T, slowR.totalOps, fastR.totalOps,
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(double) slowR.totalOps / fastR.totalOps,
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slowROk ? "PASS" : "FAIL",
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fastROk ? "PASS" : "FAIL"
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);
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total += 2;
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if (slowROk) passed++;
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if (fastROk) passed++;
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}
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System.out.printf("%n%d/%d PASS%n", passed, total);
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if (passed != total) {
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throw new AssertionError("Some tests FAILED");
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}
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}
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}
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