Package org.infinispan.container.entries

Examples of org.infinispan.container.entries.TransientMortalCacheEntry$Externalizer


         } else {
            if (maxIdle < 0) {
               return new MortalCacheEntry(ice.getKey(), ice.getValue(), lifespan, timeService.wallClockTime());
            } else {
               long ctm = timeService.wallClockTime();
               return new TransientMortalCacheEntry(ice.getKey(), ice.getValue(), maxIdle, lifespan, ctm, ctm);
            }
         }
      } else if (ice instanceof MortalCacheEntry) {
         if (lifespan < 0) {
            if (maxIdle < 0) {
               return new ImmortalCacheEntry(ice.getKey(), ice.getValue());
            } else {
               return new TransientCacheEntry(ice.getKey(), ice.getValue(), maxIdle, timeService.wallClockTime());
            }
         } else {
            if (maxIdle < 0) {
               ((MortalCacheEntry) ice).setLifespan(lifespan);
               return ice;
            } else {
               long ctm = timeService.wallClockTime();
               return new TransientMortalCacheEntry(ice.getKey(), ice.getValue(), maxIdle, lifespan, ctm, ctm);
            }
         }
      } else if (ice instanceof TransientCacheEntry) {
         if (lifespan < 0) {
            if (maxIdle < 0) {
               return new ImmortalCacheEntry(ice.getKey(), ice.getValue());
            } else {
               ((TransientCacheEntry) ice).setMaxIdle(maxIdle);
               return ice;
            }
         } else {
            if (maxIdle < 0) {
               return new MortalCacheEntry(ice.getKey(), ice.getValue(), lifespan, timeService.wallClockTime());
            } else {
               long ctm = timeService.wallClockTime();
               return new TransientMortalCacheEntry(ice.getKey(), ice.getValue(), maxIdle, lifespan, ctm, ctm);
            }
         }
      } else if (ice instanceof TransientMortalCacheEntry) {
         if (lifespan < 0) {
            if (maxIdle < 0) {
               return new ImmortalCacheEntry(ice.getKey(), ice.getValue());
            } else {
               return new TransientCacheEntry(ice.getKey(), ice.getValue(), maxIdle, timeService.wallClockTime());
            }
         } else {
            if (maxIdle < 0) {
               return new MortalCacheEntry(ice.getKey(), ice.getValue(), lifespan, timeService.wallClockTime());
            } else {
               TransientMortalCacheEntry transientMortalEntry = (TransientMortalCacheEntry) ice;
               transientMortalEntry.setLifespan(lifespan);
               transientMortalEntry.setMaxIdle(maxIdle);
               return ice;
            }
         }
      }
      return ice;
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      marshallAndAssertEquality(entry2);

      TransientCacheEntry entry3 = (TransientCacheEntry) TestInternalCacheEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), 4000000);
      marshallAndAssertEquality(entry3);

      TransientMortalCacheEntry entry4 = (TransientMortalCacheEntry) TestInternalCacheEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), 4000000);
      marshallAndAssertEquality(entry4);
   }
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   public void testMetadataAvailable() {
      final List<CacheEntry<String, String>> initialValues = new ArrayList<CacheEntry<String, String>>(10);
      for (int i = 0; i < 10; i++) {
         String key = "key-" + i;
         String value = "value-" + i;
         initialValues.add(new TransientMortalCacheEntry(key, value, i, -1, System.currentTimeMillis()));
      }

      // Note we don't actually use the filter/converter to retrieve values since it is being mocked, thus we can assert
      // the filter/converter are not used by us
      when(retriever.retrieveEntries(any(KeyValueFilter.class), any(Converter.class),anySetOf(Flag.class),
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*/
@Immutable
public class TransientMortalCacheEntryExternalizer implements Externalizer {

   public void writeObject(ObjectOutput output, Object subject) throws IOException {
      TransientMortalCacheEntry ice = (TransientMortalCacheEntry) subject;
      output.writeObject(ice.getKey());
      output.writeObject(ice.getValue());
      UnsignedNumeric.writeUnsignedLong(output, ice.getCreated());
      output.writeLong(ice.getLifespan()); // could be negative so should not use unsigned longs
      UnsignedNumeric.writeUnsignedLong(output, ice.getLastUsed());
      output.writeLong(ice.getMaxIdle()); // could be negative so should not use unsigned longs
   }
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      marshallAndAssertEquality(entry2);

      TransientCacheEntry entry3 = (TransientCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), 4000000);
      marshallAndAssertEquality(entry3);

      TransientMortalCacheEntry entry4 = (TransientMortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), 4000000);
      marshallAndAssertEquality(entry4);
   }
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   public void testBucketMarshalling() throws Exception {
      ImmortalCacheEntry entry1 = (ImmortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), -1);
      MortalCacheEntry entry2 = (MortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), -1);
      TransientCacheEntry entry3 = (TransientCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), 4000000);
      TransientMortalCacheEntry entry4 = (TransientMortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), 4000000);
      Bucket b = new Bucket();
      b.setBucketName("mybucket");
      b.addEntry(entry1);
      b.addEntry(entry2);
      b.addEntry(entry3);
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      checkEqualityAndSize(entry2);

      TransientCacheEntry entry3 = (TransientCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), 4000000);
      checkEqualityAndSize(entry3);

      TransientMortalCacheEntry entry4 = (TransientMortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), 4000000);
      checkEqualityAndSize(entry4);
   }
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   public void testBucketMarshalling() throws Exception {
      ImmortalCacheEntry entry1 = (ImmortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), -1);
      MortalCacheEntry entry2 = (MortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), -1);
      TransientCacheEntry entry3 = (TransientCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, -1, System.currentTimeMillis(), 4000000);
      TransientMortalCacheEntry entry4 = (TransientMortalCacheEntry) InternalEntryFactory.create("key", "value", System.currentTimeMillis() - 1000, 200000, System.currentTimeMillis(), 4000000);
      Bucket b = new Bucket();
      b.setBucketName("mybucket");
      b.addEntry(entry1);
      b.addEntry(entry2);
      b.addEntry(entry3);
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   @Override
   public InternalCacheEntry create(Object key, Object value, EntryVersion ignored, long created, long lifespan, long lastUsed, long maxIdle) {
      if (lifespan < 0 && maxIdle < 0) return new ImmortalCacheEntry(key, value);
      if (lifespan > -1 && maxIdle < 0) return new MortalCacheEntry(key, value, lifespan, created);
      if (lifespan < 0 && maxIdle > -1) return new TransientCacheEntry(key, value, maxIdle, lastUsed);
      return new TransientMortalCacheEntry(key, value, maxIdle, lifespan, lastUsed, created);
   }
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   public InternalCacheEntry create(Object key, Object value, EntryVersion ignored, long lifespan, long maxIdle) {
      if (lifespan < 0 && maxIdle < 0) return new ImmortalCacheEntry(key, value);
      if (lifespan > -1 && maxIdle < 0) return new MortalCacheEntry(key, value, lifespan);
      if (lifespan < 0 && maxIdle > -1) return new TransientCacheEntry(key, value, maxIdle);

      return new TransientMortalCacheEntry(key, value, maxIdle, lifespan);
   }
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