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Implement topsort for commits and apply to graph
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3 changed files with 124 additions and 8 deletions
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@ -16,7 +16,15 @@
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-- | Git repo tools using the @hit@ package.
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module Data.Git.Local
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( loadCommits
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, NodeLabel
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, EdgeLabel
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, CommitGraph
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, rootN
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, loadCommitGraphByRef
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, loadCommitGraphByNameMaybe
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, loadCommitGraphByName
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, loadCommitsTopsort
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, loadCommitsTopsortList
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)
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where
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@ -25,14 +33,20 @@ import Prelude
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import Control.Monad.IO.Class
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import Data.Foldable (foldl', foldlM)
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import Data.Git.Ref (Ref, toBinary)
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import Data.Git.Repository (getCommit)
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import Data.Git.Repository (getCommit, resolveRevision)
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import Data.Git.Revision (Revision (..))
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import Data.Git.Storage (Git)
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import Data.Git.Types (Commit (..))
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import Data.Graph.Inductive.Graph (Graph (mkGraph))
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import Data.Graph.Inductive.Graph (Graph (mkGraph), Node)
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import Data.Graph.Inductive.PatriciaTree (Gr)
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import Data.Hashable (Hashable (..))
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import Data.Ord (Down (..))
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import qualified Data.DList as D
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import qualified Data.HashMap.Strict as M
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import Data.Graph.Inductive.Local
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instance Hashable Ref where
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hashWithSalt salt = hashWithSalt salt . toBinary
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hash = hash . toBinary
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@ -83,18 +97,29 @@ loadCommits git func val ref mcmt = readCommitMaybe ref mcmt >>= go val ref
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--ps <- mapM readRefCommit rs
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--foldlM (step (r, c)) v rs
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-- | Each node in the commit graph represents a commit.
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type NodeLabel = (Ref, Commit)
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type EdgeLabel = ()
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-- | Edges are tagged by numbers defining the order of parents of a commit. For
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-- each commit, the out-edges pointing to its parents are numbered according to
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-- the order in which the parents were specified in the 'commitParents' field.
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--
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-- The 'Down' wrapper reverses the comparison (the 'Ord' instance), so that
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-- merged-from branches are inserted earlier into the sorted list than
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-- merged-to branches.
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type EdgeLabel = Down Int
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type CommitGraph g = g NodeLabel EdgeLabel
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-- | The node number of the root node in loaded commit graphs.
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rootN :: Node
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rootN = 1
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-- | Use 'loadCommits' to build a directed acyclic graph of commits. There is a
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-- single root node, which is the ref passed to this function.
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loadCommitGraphByRef :: Graph g => Git -> Ref -> IO (CommitGraph g)
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loadCommitGraphByRef git ref = do
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let rootN = 1
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visit (_rChild, _cChild) rParent v@(nextNode, commits) =
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let visit (_rChild, _cChild) rParent v@(nextNode, commits) =
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if rParent `M.member` commits
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then return (v, Nothing)
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else do
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@ -107,7 +132,54 @@ loadCommitGraphByRef git ref = do
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nodeOf r = maybe (error "ref has no node") snd $ M.lookup r commits'
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mkNode l r (c, n) = (n, (r, c)) : l
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nodes = M.foldlWithKey' mkNode [] commits'
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mkEdge n l r = (n, nodeOf r, ()) : l
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mkEdges l (c, n) = foldl' (mkEdge n) l $ commitParents c
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mkEdge n l (r, e) = (n, nodeOf r, e) : l
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edgeNums = map Down [1..]
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mkEdges l (c, n) = foldl' (mkEdge n) l $ zip (commitParents c) edgeNums
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edges = M.foldl' mkEdges [] commits'
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return $ mkGraph nodes edges
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-- | Like 'loadCommitGraphByRef', but lets you specify a named ref, such as a
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-- branch or tag name. Returns 'Nothing' if ref isn't found.
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loadCommitGraphByNameMaybe ::
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Graph g => Git -> String -> IO (Maybe (CommitGraph g))
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loadCommitGraphByNameMaybe git name = do
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mref <- resolveRevision git $ Revision name []
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case mref of
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Nothing -> return Nothing
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Just ref -> Just <$> loadCommitGraphByRef git ref
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-- | Like 'loadCommitGraphByNameMaybe', but throws an exception if the ref name
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-- can't be resolved.
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loadCommitGraphByName :: Graph g => Git -> String -> IO (CommitGraph g)
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loadCommitGraphByName git name = do
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mg <- loadCommitGraphByNameMaybe git name
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case mg of
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Nothing -> error ""
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Just g -> return g
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-- | Load a commit graph and topsort the commits. The resulting list starts
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-- with the last commit in the repo and ends with the initial commit.
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loadCommitsTopsort
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:: (ResultList l, Functor l)
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=> Git
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-> String
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-> IO (l (Ref, Commit))
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loadCommitsTopsort git name = do
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let load :: IO (CommitGraph Gr)
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load = loadCommitGraphByName git name
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graph <- load
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let mnodes = topsortUnmixOrder graph (NodeStack [rootN])
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nodes = case mnodes of
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Nothing -> error "commit graph contains a cycle"
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Just ns -> ns
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return $ fmap (nodeLabel graph) nodes
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instance ResultList D.DList where
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emptyList = D.empty
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appendItem = flip D.snoc
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-- | Runs 'loadCommitsTopsort' with a 'D.DList', then converts to list and
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-- returns it. At least at the time of writing, DList mapping and folding goes
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-- through a regular list anyway.
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loadCommitsTopsortList :: Git -> String -> IO [(Ref, Commit)]
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loadCommitsTopsortList git name = D.toList <$> loadCommitsTopsort git name
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@ -15,10 +15,14 @@
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-- | Graph tools for use with the @fgl@ package.
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module Data.Graph.Inductive.Local
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( NodeSet (..)
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( nodeLabel
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, NodeSet (..)
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, TraversalOrder (..)
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, ResultList (..)
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, topsortKahn
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, NodeStack (..)
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, topsortUnmix
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, topsortUnmixOrder
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)
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where
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@ -28,6 +32,14 @@ import Data.Foldable (foldl')
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import Data.Graph.Inductive.Graph
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import Data.List (sortBy)
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-- | Find the label for a 'Node', assuming you know the node exists in the
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-- graph. If the node isn't found, an exception is thrown.
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nodeLabel :: Graph g => g a b -> Node -> a
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nodeLabel g n =
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case lab g n of
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Nothing -> error "node not found in graph"
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Just l -> l
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-- | A graph node container to be used with Kanh's topsort algorithm.
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class NodeSet s where
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-- | Take a graph node and a container, insert the node into it and return
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@ -131,3 +143,34 @@ topsortKahn graph set order = f graph set emptyList
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children = map fst $ sort $ lsuc g n
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(g', s'') = foldl' (visit n) (g, s') children
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in f g' s'' l'
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newtype NodeStack = NodeStack [Node]
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instance NodeSet NodeStack where
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insertNode n (NodeStack l) = NodeStack $ n : l
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extractNode (NodeStack l) =
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case l of
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[] -> Nothing
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(n:ns) -> Just (n, NodeStack ns)
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-- | Topologically sort commits so that parallel lines of work, e.g. a master
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-- branch and a short topic branch merged into it, don't get their commits
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-- mixed in the sorted order.
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topsortUnmix
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:: (DynGraph g, ResultList l)
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=> g a b
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-> NodeStack
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-> TraversalOrder b
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-> Maybe (l Node)
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topsortUnmix = topsortKahn
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-- | Adds an additioal constraint to 'topsortUnmix': When traversing a node's
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-- outgoing edges, do so using the 'Ord' instance of the labels of the edges.
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topsortUnmixOrder
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:: (Ord b, DynGraph g, ResultList l)
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=> g a b
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-> NodeStack
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-> Maybe (l Node)
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topsortUnmixOrder graph stack =
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let order (_, i) (_, j) = compare i j
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in topsortUnmix graph stack (SortedOrder order)
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@ -97,6 +97,7 @@ library
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, containers
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, data-default
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, directory >= 1.1 && < 1.3
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, dlist
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, esqueleto
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, fast-logger >= 2.2 && < 2.5
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, fgl
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