refactor: Use hasql-dynamic on RPC/POST/PUT/PATCH
Change callProc/createWriteStatement to H.Snippet. Parametrize the inputs on the same SQLFragments by taking advantage of hasql-dynamic-statements. It's not necessary to parametrize every input, inlining with pgFmtLit can still be used for queries that can't be parametrized(like SET LOCALs). Also adds hasql-dynamic-statements to Nix and stack.
This commit is contained in:
committed by
Steve Chavez
parent
b13e95aefb
commit
8e58b56d5c
+30
-24
@@ -1,13 +1,15 @@
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module Main where
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import Control.Lens ((^?))
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import qualified Data.Aeson.Lens as L
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import qualified Hasql.Decoders as HD
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import qualified Hasql.Encoders as HE
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import qualified Hasql.Pool as P
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import qualified Hasql.Statement as H
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import qualified Hasql.Transaction as HT
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import qualified Hasql.Transaction.Sessions as HT
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import Control.Lens ((^?))
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import qualified Data.Aeson.Lens as L
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import qualified Hasql.Decoders as HD
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import qualified Hasql.DynamicStatements.Snippet as H
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import qualified Hasql.DynamicStatements.Statement as H
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import qualified Hasql.Encoders as HE
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import qualified Hasql.Pool as P
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import qualified Hasql.Statement as H
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import qualified Hasql.Transaction as HT
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import qualified Hasql.Transaction.Sessions as HT
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import Text.Heredoc
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import Protolude hiding (get, toS)
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@@ -28,49 +30,53 @@ main = do
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hspec $ describe "QueryCost" $
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context "call proc query" $ do
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it "should not exceed cost when calling setof composite proc" $ do
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cost <- exec pool [str| {"id": 3} |] $
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requestToCallProcQuery (QualifiedIdentifier "test" "get_projects_below") [PgArg "id" "int" True False] False Nothing []
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cost <- exec pool $
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requestToCallProcQuery (QualifiedIdentifier "test" "get_projects_below") [PgArg "id" "int" True False]
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(Just $ RawJSON [str| {"id": 3} |]) False Nothing []
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liftIO $
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cost `shouldSatisfy` (< Just 40)
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it "should not exceed cost when calling setof composite proc with empty params" $ do
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cost <- exec pool mempty $
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requestToCallProcQuery (QualifiedIdentifier "test" "getallprojects") [] False Nothing []
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cost <- exec pool $
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requestToCallProcQuery (QualifiedIdentifier "test" "getallprojects") [] Nothing False Nothing []
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liftIO $
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cost `shouldSatisfy` (< Just 30)
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it "should not exceed cost when calling scalar proc" $ do
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cost <- exec pool [str| {"a": 3, "b": 4} |] $
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requestToCallProcQuery (QualifiedIdentifier "test" "add_them") [PgArg "a" "int" True False, PgArg "b" "int" True False] True Nothing []
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cost <- exec pool $
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requestToCallProcQuery (QualifiedIdentifier "test" "add_them") [PgArg "a" "int" True False, PgArg "b" "int" True False]
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(Just $ RawJSON [str| {"a": 3, "b": 4} |]) True Nothing []
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liftIO $
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cost `shouldSatisfy` (< Just 10)
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context "params=multiple-objects" $ do
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it "should not exceed cost when calling setof composite proc" $ do
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cost <- exec pool [str| [{"id": 1}, {"id": 4}] |] $
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requestToCallProcQuery (QualifiedIdentifier "test" "get_projects_below") [PgArg "id" "int" True False] False (Just MultipleObjects) []
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cost <- exec pool $
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requestToCallProcQuery (QualifiedIdentifier "test" "get_projects_below") [PgArg "id" "int" True False]
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(Just $ RawJSON [str| [{"id": 1}, {"id": 4}] |]) False (Just MultipleObjects) []
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liftIO $ do
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-- lower bound needed for now to make sure that cost is not Nothing
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cost `shouldSatisfy` (> Just 2000)
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cost `shouldSatisfy` (< Just 2100)
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it "should not exceed cost when calling scalar proc" $ do
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cost <- exec pool [str| [{"a": 3, "b": 4}, {"a": 1, "b": 2}, {"a": 8, "b": 7}] |] $
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requestToCallProcQuery (QualifiedIdentifier "test" "add_them") [PgArg "a" "int" True False, PgArg "b" "int" True False] True Nothing []
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cost <- exec pool $
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requestToCallProcQuery (QualifiedIdentifier "test" "add_them") [PgArg "a" "int" True False, PgArg "b" "int" True False]
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(Just $ RawJSON [str| [{"a": 3, "b": 4}, {"a": 1, "b": 2}, {"a": 8, "b": 7}] |]) True Nothing []
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liftIO $
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cost `shouldSatisfy` (< Just 10)
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exec :: P.Pool -> ByteString -> SqlQuery -> IO (Maybe Int64)
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exec pool input query =
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exec :: P.Pool -> H.Snippet -> IO (Maybe Int64)
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exec pool query =
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join . rightToMaybe <$>
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P.use pool (HT.transaction HT.ReadCommitted HT.Read $ HT.statement input $ explainCost query)
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P.use pool (HT.transaction HT.ReadCommitted HT.Read $ HT.statement mempty $ explainCost query)
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explainCost :: SqlQuery -> H.Statement ByteString (Maybe Int64)
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explainCost :: H.Snippet -> H.Statement () (Maybe Int64)
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explainCost query =
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H.Statement sql (HE.param $ HE.nonNullable HE.unknown) decodeExplain False
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H.dynamicallyParameterized snippet decodeExplain False
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where
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sql = "EXPLAIN (FORMAT JSON) " <> query
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snippet = "EXPLAIN (FORMAT JSON) " <> query
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decodeExplain :: HD.Result (Maybe Int64)
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decodeExplain =
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let row = HD.singleRow $ HD.column $ HD.nonNullable HD.bytea in
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