feat: implement Borsh serialization
This commit is contained in:
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commit
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4 changed files with 231 additions and 86 deletions
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@ -1,15 +1,23 @@
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE MultiParamTypeClasses #-}
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{-# LANGUAGE FlexibleInstances #-}
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{-# LANGUAGE DeriveGeneric #-}
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{-# LANGUAGE DeriveAnyClass #-}
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{-# LANGUAGE DerivingVia #-}
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{-# LANGUAGE UndecidableInstances #-}
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module Zenith.Tree where
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import Codec.Borsh
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import Data.HexString
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import Data.Int (Int64)
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import Data.Int (Int64, Int8)
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import Data.Maybe (fromJust, isNothing)
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import qualified GHC.Generics as GHC
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import qualified Generics.SOP as SOP
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import ZcashHaskell.Orchard (combineOrchardNodes, getOrchardNodeValue)
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import ZcashHaskell.Types (OrchardFrontier(..))
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import ZcashHaskell.Types (MerklePath(..), OrchardFrontier(..), OrchardTree(..))
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type Level = Integer
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type Level = Int8
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maxLevel :: Level
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maxLevel = 32
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@ -19,29 +27,33 @@ type Position = Int64
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class Monoid v =>
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Measured a v
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where
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measure :: a -> Position -> v
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measure :: a -> Position -> Int64 -> v
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class Node v where
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getLevel :: v -> Level
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getTag :: v -> HexString
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getPosition :: v -> Position
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isFull :: v -> Bool
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isMarked :: v -> Bool
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mkNode :: Level -> Position -> HexString -> v
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type OrchardCommitment = HexString
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instance Measured OrchardCommitment OrchardNode where
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measure oc p =
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measure oc p i =
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case getOrchardNodeValue (hexBytes oc) of
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Nothing -> OrchardNode 0 (hexString "00") 0 True
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Just val -> OrchardNode p val 0 True
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Nothing -> OrchardNode 0 (hexString "00") 0 True 0 False
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Just val -> OrchardNode p val 0 True i False
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data Tree v
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= EmptyLeaf
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| Leaf !v
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| PrunedBranch !v
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| Branch !v !(Tree v) !(Tree v)
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deriving (Eq)
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| InvalidTree
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deriving stock (Eq, GHC.Generic)
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deriving anyclass (SOP.Generic, SOP.HasDatatypeInfo)
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deriving (BorshSize, ToBorsh, FromBorsh) via AsEnum (Tree v)
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instance (Node v, Show v) => Show (Tree v) where
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show EmptyLeaf = "()"
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@ -49,90 +61,69 @@ instance (Node v, Show v) => Show (Tree v) where
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show (PrunedBranch v) = "{" ++ show v ++ "}"
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show (Branch s x y) =
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"<" ++ show (getTag s) ++ ">\n" ++ show x ++ "\n" ++ show y
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show InvalidTree = "InvalidTree"
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instance (Monoid v, Node v) => Semigroup (Tree v) where
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(<>) InvalidTree _ = InvalidTree
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(<>) _ InvalidTree = InvalidTree
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(<>) EmptyLeaf EmptyLeaf = PrunedBranch $ value $ branch EmptyLeaf EmptyLeaf
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(<>) EmptyLeaf x = x
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(<>) (Leaf x) EmptyLeaf = branch (Leaf x) EmptyLeaf
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(<>) (Leaf x) (Leaf y) = branch (Leaf x) (Leaf y)
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(<>) (Leaf x) Branch {} = Leaf x
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(<>) (Leaf x) (PrunedBranch _) = Leaf x
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(<>) (Leaf _) Branch {} = InvalidTree
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(<>) (Leaf _) (PrunedBranch _) = InvalidTree
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(<>) (PrunedBranch x) EmptyLeaf = PrunedBranch $ x <> x
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(<>) (PrunedBranch x) (Leaf _) = PrunedBranch x
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(<>) (PrunedBranch x) (Leaf y) =
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if isFull x
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then InvalidTree
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else mkSubTree (getLevel x) (Leaf y)
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(<>) (PrunedBranch x) (Branch s t u) =
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if getLevel x == getLevel s
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then branch (PrunedBranch x) (Branch s t u)
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else EmptyLeaf
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else InvalidTree
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(<>) (PrunedBranch x) (PrunedBranch y) = PrunedBranch $ x <> y
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(<>) (Branch s x y) EmptyLeaf =
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branch (Branch s x y) $ getEmptyRoot (getLevel s)
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(<>) (Branch s x y) (PrunedBranch _) = Branch s x y
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(<>) (Branch s x y) (PrunedBranch w)
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| getLevel s == getLevel w = branch (Branch s x y) (PrunedBranch w)
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| otherwise = InvalidTree
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(<>) (Branch s x y) (Leaf w)
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| isFull s = Branch s x y <> mkSubTree (getLevel s) (Leaf w)
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| isFull (value x) = branch x (y <> Leaf w)
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| otherwise = branch (x <> Leaf w) y
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(<>) (Branch s x y) (Branch s1 x1 y1)
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| getLevel s == getLevel s1 = branch (Branch s x y) (Branch s1 x1 y1)
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| otherwise = Branch s x y
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| otherwise = InvalidTree
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value :: Monoid v => Tree v -> v
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value EmptyLeaf = mempty
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value (Leaf v) = v
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value (PrunedBranch v) = v
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value (Branch v _ _) = v
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value InvalidTree = mempty
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branch :: Monoid v => Tree v -> Tree v -> Tree v
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branch x y = Branch (value x <> value y) x y
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leaf :: Measured a v => a -> Int64 -> Tree v
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leaf a p = Leaf (measure a p)
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leaf :: Measured a v => a -> Int64 -> Int64 -> Tree v
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leaf a p i = Leaf (measure a p i)
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prunedBranch :: Monoid v => Node v => Level -> Position -> HexString -> Tree v
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prunedBranch level pos val = PrunedBranch $ mkNode level pos val
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root :: Monoid v => Node v => Tree v -> Tree v
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root tree =
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if getLevel (value tree) == maxLevel - 1
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if getLevel (value tree) == maxLevel
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then tree
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else mkSubTree (maxLevel - 1) tree
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else mkSubTree maxLevel tree
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getEmptyRoot :: Monoid v => Node v => Level -> Tree v
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getEmptyRoot level = iterate (\x -> x <> x) EmptyLeaf !! fromIntegral level
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data OrchardNode = OrchardNode
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{ on_position :: !Position
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, on_value :: !HexString
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, on_level :: !Level
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, on_full :: !Bool
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} deriving (Eq)
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instance Semigroup OrchardNode where
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(<>) x y =
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case combineOrchardNodes (on_level x) (on_value x) (on_value y) of
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Nothing -> x
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Just newHash ->
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OrchardNode
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(max (on_position x) (on_position y))
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newHash
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(1 + on_level x)
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(on_full x && on_full y)
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instance Monoid OrchardNode where
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mempty = OrchardNode 0 (hexString "00") 0 False
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mappend = (<>)
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instance Node OrchardNode where
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getLevel = on_level
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getTag = on_value
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getPosition = on_position
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isFull = on_full
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mkNode l p v = OrchardNode p v l True
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instance Show OrchardNode where
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show = show . on_value
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instance Measured OrchardNode OrchardNode where
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measure o p = OrchardNode p (on_value o) (on_level o) (on_full o)
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append :: Monoid v => Measured a v => Node v => Tree v -> a -> Int64 -> Tree v
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append tree n i = tree <> leaf n p i
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where
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p = 1 + getPosition (value tree)
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mkSubTree :: Node v => Monoid v => Level -> Tree v -> Tree v
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mkSubTree level t =
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@ -142,20 +133,85 @@ mkSubTree level t =
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where
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subtree = t <> EmptyLeaf
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mkOrchardTree :: OrchardFrontier -> Tree OrchardNode
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mkOrchardTree (OrchardFrontier p l o) =
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if odd p
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then addOrchardOmmers (tail o) $
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Leaf (OrchardNode (p - 1) (head o) 0 True) <>
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Leaf (OrchardNode p l 0 True)
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else addOrchardOmmers o $ Leaf (OrchardNode p l 0 True) <> EmptyLeaf
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addOrchardOmmers :: [HexString] -> Tree OrchardNode -> Tree OrchardNode
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addOrchardOmmers xs t =
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foldl
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(\s x -> PrunedBranch (mkNode (getLevel $ value s) (p (value s)) x) <> s)
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t
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xs
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path :: Position -> Tree v -> Maybe MerklePath
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path pos (Branch s x y) = undefined
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where
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p :: OrchardNode -> Position
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p (OrchardNode pos _ l _) = pos - (2 ^ l)
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collectPath t = undefined
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data OrchardNode = OrchardNode
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{ on_position :: !Position
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, on_value :: !HexString
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, on_level :: !Level
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, on_full :: !Bool
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, on_index :: !Int64
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, on_mark :: !Bool
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} deriving stock (Eq, GHC.Generic)
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deriving anyclass (SOP.Generic, SOP.HasDatatypeInfo)
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deriving (BorshSize, ToBorsh, FromBorsh) via AsStruct OrchardNode
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instance Semigroup OrchardNode where
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(<>) x y =
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case combineOrchardNodes
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(fromIntegral $ on_level x)
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(on_value x)
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(on_value y) of
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Nothing -> x
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Just newHash ->
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OrchardNode
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(max (on_position x) (on_position y))
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newHash
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(1 + on_level x)
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(on_full x && on_full y)
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(max (on_index x) (on_index y))
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(on_mark x || on_mark y)
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instance Monoid OrchardNode where
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mempty = OrchardNode 0 (hexString "00") 0 False 0 False
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mappend = (<>)
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instance Node OrchardNode where
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getLevel = on_level
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getTag = on_value
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getPosition = on_position
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isFull = on_full
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isMarked = on_mark
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mkNode l p v = OrchardNode p v l True 0 False
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instance Show OrchardNode where
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show = show . on_value
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instance Measured OrchardNode OrchardNode where
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measure o p i =
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OrchardNode p (on_value o) (on_level o) (on_full o) i (on_mark o)
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orchardSize :: OrchardTree -> Int64
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orchardSize tree =
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(if isNothing (ot_left tree)
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then 0
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else 1) +
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(if isNothing (ot_right tree)
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then 0
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else 1) +
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foldl
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(\x (i, p) ->
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case p of
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Nothing -> x + 0
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Just _ -> x + 2 ^ i)
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0
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(zip [1 ..] $ ot_parents tree)
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mkOrchardTree :: OrchardTree -> Tree OrchardNode
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mkOrchardTree tree =
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foldl
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(\t (i, n) ->
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case n of
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Just n' -> prunedBranch i 0 n' <> t
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Nothing -> t <> getEmptyRoot i)
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leafRoot
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(zip [1 ..] $ ot_parents tree)
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where
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leafRoot =
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case ot_right tree of
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Just r' -> leaf (fromJust $ ot_left tree) (pos - 1) 0 <> leaf r' pos 0
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Nothing -> leaf (fromJust $ ot_left tree) pos 0 <> EmptyLeaf
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pos = orchardSize tree - 1
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120
test/Spec.hs
120
test/Spec.hs
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{-# LANGUAGE OverloadedStrings #-}
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import Codec.Borsh
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import Control.Monad (when)
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import Control.Monad.Logger (runFileLoggingT, runNoLoggingT)
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import Data.Aeson
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import qualified Data.ByteString as BS
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import qualified Data.ByteString.Lazy as LBS
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import Data.HexString
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import Data.Maybe (fromJust)
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import qualified Data.Text.Encoding as E
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@ -12,8 +15,12 @@ import System.Directory
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import Test.HUnit
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import Test.Hspec
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import ZcashHaskell.Orchard
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( getOrchardFrontier
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( addOrchardNodeGetRoot
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, getOrchardFrontier
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, getOrchardNodeValue
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, getOrchardRootTest
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, getOrchardTreeAnchor
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, getOrchardTreeParts
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, isValidUnifiedAddress
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, parseAddress
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)
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@ -34,6 +41,7 @@ import ZcashHaskell.Types
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, OrchardCommitmentTree(..)
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, OrchardFrontier(..)
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, OrchardSpendingKey(..)
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, OrchardTree(..)
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, Phrase(..)
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, SaplingCommitmentTree(..)
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, SaplingReceiver(..)
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@ -216,49 +224,127 @@ main = do
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let cmx1 =
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hexString
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"1712ead46028d4349e234abf59e94e0640fe7a0829e2e2e17e1a931631810400"
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let cmx2 =
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hexString
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"39f5ad39817fb432fa07c5feb3a957189fbe7662a4b5555ca95093b6d853cf07"
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let t0 = EmptyLeaf <> EmptyLeaf :: Tree OrchardNode
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let t1 = t0 <> EmptyLeaf :: Tree OrchardNode
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let t1a = t0 <> t0
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it "Create leaf" $ do
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let n = leaf cmx1 1 :: Tree OrchardNode
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let n = leaf cmx1 0 0 :: Tree OrchardNode
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getLevel (value n) `shouldBe` 0
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it "Create minimal tree" $ do
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let t = (leaf cmx1 1) <> EmptyLeaf :: Tree OrchardNode
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let t = leaf cmx1 0 0 <> EmptyLeaf :: Tree OrchardNode
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getLevel (value t) `shouldBe` 1
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it "Create minimal empty tree" $ do
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getTag (value t0) `shouldNotBe` hexString "00"
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it "Expand empty tree" $ do t1 `shouldBe` t1a
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it "Create empty tree" $ mkSubTree 2 EmptyLeaf `shouldBe` t1
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it "Create empty tree non-rec" $ getEmptyRoot 2 `shouldBe` t1
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it "Create a tree from Frontier" $ do
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it "Validate empty tree" $ do
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getTag (value (getEmptyRoot 32 :: Tree OrchardNode)) `shouldBe`
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getOrchardRootTest 32
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it "Validate tree with one leaf" $ do
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let n = leaf cmx1 0 1 :: Tree OrchardNode
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let n1 = root n
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getTag (value n1) `shouldBe` addOrchardNodeGetRoot 32 (hexBytes cmx1)
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it "Validate size of tree from Zebra" $ do
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let tree =
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OrchardCommitmentTree $
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hexString
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"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"
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case getOrchardFrontier tree of
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Nothing -> assertFailure "Failed to get frontier"
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case getOrchardTreeParts tree of
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Nothing -> assertFailure "Failed to get parts"
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Just t1 -> do
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of_ommers t1 `shouldBe` []
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it "Validate a tree's depth from Frontier" $ do
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case getOrchardFrontier tree of
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Nothing -> assertFailure "Failed to get frontier"
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Just f1 -> do
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orchardSize t1 `shouldBe` 1 + fromIntegral (of_pos f1)
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it "Deserialize commitment tree from Zebra" $ do
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let tree =
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OrchardCommitmentTree $
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hexString
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"0136a7886d7d73bc1845223165fd9cb0cef02046c707e8f88a7f61564720bd0f3501dca1fbdd7b5ba92a0809af5e85874626ce0db14d0532a48e41dde6f0f81b46011f0001fb48c27bd07e68f27aba47cd6e93fa961e0ef8c63f993963a614e56855d2013c0001ea572db9c5c2d24c7ad9132ae32b27179466bf67a580d59901d13b281d3f530b01c160348f10b9ad893d9731317ebe36ac8665e01c52cbe15a56aa9b72e4e6c41e000001cd7695156de2debdc5b13ea84d32e4e3ac020fb0aa7cd372c57ce765103bd70401746e6bc066a10e7f80a9ff8993dcb25c819edd64f2ca10ac248ef7848d41450500011e6191f91b3fceb62dc881a156e1b9d2e88e09dca25093cf9c4936c8869fb41a013bf8b923e4187754e85175748d9cce4824a6787e4258977b5bfe1ba59012c032000001f3bbdc62260c4fca5c84bf3487246d4542da48eeeec8ec40c1029b6908eef83c00000000000000000000000000000000"
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case getOrchardFrontier tree of
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case getOrchardTreeParts tree of
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Nothing -> assertFailure "Failed to get frontier"
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Just t1 -> do
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let t = root $ mkOrchardTree t1
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getLevel (value t) `shouldBe` 31
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it "Validate a tree from Frontier" $ do
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length (ot_parents t1) `shouldBe` 31
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it "Create commitment tree from Zebra" $ do
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let tree =
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OrchardCommitmentTree $
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hexString
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"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"
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case getOrchardFrontier tree of
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Nothing -> assertFailure "Failed to get frontier"
|
||||
case getOrchardTreeParts tree of
|
||||
Nothing -> assertFailure "Failed to get tree parts"
|
||||
Just t1 -> do
|
||||
let t = root $ mkOrchardTree t1
|
||||
getTag (value t) `shouldBe` getOrchardTreeAnchor t1
|
||||
let newTree = mkOrchardTree t1
|
||||
getLevel (value newTree) `shouldBe` 32
|
||||
it "Validate commitment tree from Zebra" $ do
|
||||
let tree =
|
||||
OrchardCommitmentTree $
|
||||
hexString
|
||||
"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"
|
||||
case getOrchardTreeParts tree of
|
||||
Nothing -> assertFailure "Failed to get tree parts"
|
||||
Just t1 -> do
|
||||
let newTree = mkOrchardTree t1
|
||||
let ctAnchor = getOrchardTreeAnchor tree
|
||||
{-
|
||||
-getTag (value newTree) `shouldBe` ctAnchor
|
||||
-isFull (value newTree) `shouldBe` False
|
||||
-}
|
||||
getPosition (value newTree) `shouldBe` 39733
|
||||
it "Validate appending nodes to tree" $ do
|
||||
let tree =
|
||||
OrchardCommitmentTree $
|
||||
hexString
|
||||
"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"
|
||||
let cmx1 =
|
||||
hexString
|
||||
"1712ead46028d4349e234abf59e94e0640fe7a0829e2e2e17e1a931631810400" :: OrchardCommitment
|
||||
let cmx2 =
|
||||
hexString
|
||||
"39f5ad39817fb432fa07c5feb3a957189fbe7662a4b5555ca95093b6d853cf07" :: OrchardCommitment
|
||||
let cmx3 =
|
||||
hexString
|
||||
"84f7fbc4b9f87215c653078d7fdd90756c3ba370c745065167da9eb73a65a83f" :: OrchardCommitment
|
||||
let cmx4 =
|
||||
hexString
|
||||
"e55ad64e1ea2b261893fdea6ad0509b66e5f62d3142f351298c7135c4498d429" :: OrchardCommitment
|
||||
let finalTree =
|
||||
OrchardCommitmentTree $
|
||||
hexString
|
||||
"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"
|
||||
case getOrchardTreeParts tree of
|
||||
Nothing -> assertFailure "Failed to get tree parts"
|
||||
Just t1 -> do
|
||||
let newTree = mkOrchardTree t1
|
||||
let updatedTree1 = append newTree cmx1 4
|
||||
let updatedTree2 = append updatedTree1 cmx2 5
|
||||
let updatedTree3 = append updatedTree2 cmx3 6
|
||||
let updatedTree4 = append updatedTree3 cmx4 7
|
||||
let finalAnchor = getOrchardTreeAnchor finalTree
|
||||
getTag (value updatedTree4) `shouldBe` finalAnchor
|
||||
it "Validate serializing tree to bytes" $ do
|
||||
let tree =
|
||||
OrchardCommitmentTree $
|
||||
hexString
|
||||
"0136a7886d7d73bc1845223165fd9cb0cef02046c707e8f88a7f61564720bd0f3501dca1fbdd7b5ba92a0809af5e85874626ce0db14d0532a48e41dde6f0f81b46011f0001fb48c27bd07e68f27aba47cd6e93fa961e0ef8c63f993963a614e56855d2013c0001ea572db9c5c2d24c7ad9132ae32b27179466bf67a580d59901d13b281d3f530b01c160348f10b9ad893d9731317ebe36ac8665e01c52cbe15a56aa9b72e4e6c41e000001cd7695156de2debdc5b13ea84d32e4e3ac020fb0aa7cd372c57ce765103bd70401746e6bc066a10e7f80a9ff8993dcb25c819edd64f2ca10ac248ef7848d41450500011e6191f91b3fceb62dc881a156e1b9d2e88e09dca25093cf9c4936c8869fb41a013bf8b923e4187754e85175748d9cce4824a6787e4258977b5bfe1ba59012c032000001f3bbdc62260c4fca5c84bf3487246d4542da48eeeec8ec40c1029b6908eef83c00000000000000000000000000000000"
|
||||
case mkOrchardTree <$> getOrchardTreeParts tree of
|
||||
Nothing -> assertFailure "Failed to build tree"
|
||||
Just t1 -> do
|
||||
let treeBytes = serialiseBorsh t1
|
||||
LBS.length treeBytes `shouldNotBe` 0
|
||||
it "Validate deserializing tree from bytes" $ do
|
||||
let tree =
|
||||
OrchardCommitmentTree $
|
||||
hexString
|
||||
"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"
|
||||
case mkOrchardTree <$> getOrchardTreeParts tree of
|
||||
Nothing -> assertFailure "Failed to build tree"
|
||||
Just t1 -> do
|
||||
let treeBytes = serialiseBorsh t1
|
||||
let rebuiltTree = deserialiseBorsh treeBytes
|
||||
rebuiltTree `shouldBe` Right t1
|
||||
describe "Creating Tx" $ do
|
||||
describe "Full" $ do
|
||||
it "To Orchard" $ do
|
||||
|
|
|
@ -1 +1 @@
|
|||
Subproject commit f6b8a772770f492221dc99281016d7090f981e63
|
||||
Subproject commit 70927645e774d53dd04650d68d996670033a8ef1
|
|
@ -50,6 +50,7 @@ library
|
|||
, base >=4.12 && <5
|
||||
, base64-bytestring
|
||||
, binary
|
||||
, borsh
|
||||
, brick
|
||||
, bytestring
|
||||
, configurator
|
||||
|
@ -59,6 +60,7 @@ library
|
|||
, exceptions
|
||||
, filepath
|
||||
, ghc
|
||||
, generics-sop
|
||||
, haskoin-core
|
||||
, hexstring
|
||||
, http-client
|
||||
|
@ -145,6 +147,7 @@ test-suite zenith-tests
|
|||
, aeson
|
||||
, configurator
|
||||
, monad-logger
|
||||
, borsh
|
||||
, aeson
|
||||
, data-default
|
||||
, sort
|
||||
|
|
Loading…
Reference in a new issue