NodeCache: write tests for lookup (#2)
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@ -68,13 +68,46 @@ spec = do
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}
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print nsReady
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describe "NodeCache" $ do
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it "entries can be added to a node cache" $ do
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let
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emptyCache = nodeCache exampleNodeState
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anotherNode = exampleNodeState { nid = toNodeID 2^(23::Integer)+1}
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newCache <- addCacheEntry exampleNodeState 0 =<< addCacheEntry anotherNode 10 emptyCache
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Map.size newCache - Map.size emptyCache `shouldBe` 2
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-- ToDo: query/ retrieve
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let
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emptyCache = nodeCache exampleNodeState
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exampleID = nid exampleNodeState
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anotherID = toNodeID 2^(230::Integer)+1
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anotherNode = exampleNodeState { nid = anotherID}
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maxNode = exampleNodeState { nid = maxBound}
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newCache = addCacheEntry exampleNodeState 0 =<< addCacheEntry anotherNode 10 emptyCache
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it "entries can be added to a node cache and looked up again" $ do
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nC <- newCache
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-- the cache includes 2 additional proxy elements right from the start
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Map.size nC - Map.size emptyCache `shouldBe` 2
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-- normal entry lookup
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nid . cacheGetNodeStateUnvalidated <$> cacheLookup anotherID nC `shouldBe` Just anotherID
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nid . cacheGetNodeStateUnvalidated <$> cacheLookup (anotherID+1) nC `shouldBe` Nothing
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-- initially, the proxy elements store nothing
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cacheLookup minBound emptyCache `shouldBe` Nothing
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cacheLookup maxBound emptyCache `shouldBe` Nothing
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-- now store a node at that ID
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cacheWithMaxNode <- addCacheEntry maxNode 0 =<< newCache
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nid . cacheGetNodeStateUnvalidated <$> cacheLookup maxBound cacheWithMaxNode `shouldBe` Just maxBound
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it "looking up predecessor and successor works like on a modular ring" $ do
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-- ignore empty proxy elements in initial cache
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupPred (exampleID + 10) emptyCache `shouldBe` Nothing
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupSucc exampleID emptyCache `shouldBe` Nothing
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nC <- newCache
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-- given situation: 0 < nid exampleNodeState < anotherNode < maxBound
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-- first try non-modular queries between the 2 stored nodes
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupPred (exampleID + 10) nC `shouldBe` Just exampleID
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupSucc exampleID nC `shouldBe` Just exampleID
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupSucc (exampleID + 10) nC `shouldBe` Just anotherID
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-- queries that require a (pseudo)modular structure
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupPred (exampleID - 2) nC `shouldBe` Just anotherID
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupSucc (anotherID + 2) nC `shouldBe` Just exampleID
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-- now store a node in one of the ProxyEntries
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cacheWithProxyNodeEntry <- addCacheEntry maxNode 0 =<< newCache
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupPred (exampleID - 2) cacheWithProxyNodeEntry `shouldBe` Just maxBound
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nid. cacheGetNodeStateUnvalidated <$> cacheLookupSucc (anotherID + 2) cacheWithProxyNodeEntry `shouldBe` Just maxBound
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describe "NodeCache query lookups" $ do
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let
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emptyCache = Map.empty :: NodeCache
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@ -90,13 +123,15 @@ spec = do
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incomingQuery exampleNodeState emptyCache 1 (toNodeID 2342) `shouldBe` FORWARD []
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it "work on a cache with less entries than needed" $ do
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c2 <- cacheWith2Entries
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print c2
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let (FORWARD nodelist) = incomingQuery exampleNodeState emptyCache 3 (toNodeID 2^(25::Integer))
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map (nid . cacheGetNodeStateUnvalidated) nodelist `shouldBe` []
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it "work on a cache with sufficient entries" $ do
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c4 <- cacheWith4Entries
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incomingQuery exampleNodeState c4 3 (toNodeID 2342) `shouldBe` FORWARD []
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incomingQuery exampleNodeState c4 1 (toNodeID 2342) `shouldBe` FORWARD []
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let
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(FORWARD nodelist1) = incomingQuery exampleNodeState c4 3 (toNodeID 2342)
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(FORWARD nodelist2) = incomingQuery exampleNodeState c4 1 (toNodeID 2342)
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map (nid . cacheGetNodeStateUnvalidated) nodelist1 `shouldBe` []
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map (nid . cacheGetNodeStateUnvalidated) nodelist2 `shouldBe` []
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-- some example data
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