Unified Address Generation tests #31
9 changed files with 227 additions and 155 deletions
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@ -10,4 +10,4 @@ source-repository-package
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source-repository-package
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type: git
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location: https://git.vergara.tech/Vergara_Tech/haskell-hexstring.git
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tag: fd1ddce73c0ad18a2a4509a299c6e93f8c6c383d
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tag: 39d8da7b11a80269454c2f134a5c834e0f3cb9a7
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@ -99,7 +99,7 @@ constraints: any.Cabal ==3.8.1.0,
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hashable +integer-gmp -random-initial-seed,
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any.haskell-lexer ==1.1.1,
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any.haskoin-core ==1.0.4,
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any.hexstring ==0.12.0,
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any.hexstring ==0.12.1.0,
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any.hourglass ==0.2.12,
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any.hsc2hs ==0.68.10,
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hsc2hs -in-ghc-tree,
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@ -641,7 +641,7 @@ pub extern "C" fn rust_wrapper_sapling_spendingkey(
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let extsk_bytes = extsk.to_bytes().to_vec();
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marshall_to_haskell_var(&extsk_bytes, out, out_len, RW);
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} else {
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let child_sk = extsk.derive_child(ChildIndex::from_index(ix));
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let child_sk = extsk.derive_child(ChildIndex::from_index(ix + (1 << 31)));
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marshall_to_haskell_var(&child_sk.to_bytes().to_vec(), out, out_len, RW);
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}
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}
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@ -655,6 +655,18 @@ pub extern "C" fn rust_wrapper_sapling_paymentaddress(
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out_len: &mut usize
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){
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let extspk: Vec<u8> = marshall_from_haskell_var(extspk, extspk_len, RW);
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if div_ix == 0 {
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let sp_key = ExtendedSpendingKey::from_bytes(&extspk);
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match sp_key {
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Ok(sp_key_x) => {
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let (def_div, def_address) = sp_key_x.default_address();
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marshall_to_haskell_var(&def_address.to_bytes().to_vec(), out, out_len, RW);
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},
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Err(_e) => {
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marshall_to_haskell_var(&vec![0], out, out_len, RW);
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}
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}
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} else {
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let expsk = ExpandedSpendingKey::from_spending_key(&extspk);
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let fvk = SaplingFullViewingKey::from_expanded_spending_key(&expsk);
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let dk = DiversifierKey::master(&extspk);
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@ -668,6 +680,7 @@ pub extern "C" fn rust_wrapper_sapling_paymentaddress(
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}
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}
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}
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}
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#[no_mangle]
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pub extern "C" fn rust_wrapper_derive_orchard_spending_key(
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@ -27,6 +27,7 @@ import C.Zcash
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)
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import qualified Data.ByteString as BS
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import qualified Data.ByteString.Char8 as C
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import Data.HexString (fromRawBytes, toBytes)
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import qualified Data.Text as T
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import qualified Data.Text.Encoding as E
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import Data.Word
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@ -83,9 +84,9 @@ isValidUnifiedAddress str =
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then Just (raw_s x)
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else Nothing)
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(if not (BS.null (raw_t x))
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then Just $ TransparentAddress P2PKH whichNet (raw_t x)
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then Just $ TransparentAddress P2PKH (fromRawBytes $ raw_t x)
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else if not (BS.null (raw_to x))
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then Just $ TransparentAddress P2SH whichNet (raw_to x)
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then Just $ TransparentAddress P2SH (fromRawBytes $ raw_to x)
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else Nothing)
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-- | Encode a 'UnifiedAddress' per [ZIP-316](https://zips.z.cash/zip-0316)
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@ -102,8 +103,8 @@ encodeUnifiedAddress ua = encodeBech32m (E.encodeUtf8 hr) b
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Nothing -> BS.empty
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Just t ->
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case ta_type t of
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P2SH -> packReceiver 0x01 $ Just $ ta_bytes t
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P2PKH -> packReceiver 0x00 $ Just $ ta_bytes t
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P2SH -> packReceiver 0x01 $ Just $ toBytes $ ta_bytes t
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P2PKH -> packReceiver 0x00 $ Just $ toBytes $ ta_bytes t
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sReceiver = packReceiver 0x02 $ s_rec ua
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oReceiver = packReceiver 0x03 $ o_rec ua
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padding = E.encodeUtf8 $ T.justifyLeft 16 '\NUL' hr
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@ -106,15 +106,15 @@ genSaplingSpendingKey seed i = do
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(rustWrapperSaplingSpendingkey seed (fromIntegral i))
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-- | Attempts to generate a sapling Payment Address using an ExtendedSpendingKey and a Diversifier Index
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genSaplingPaymentAddress :: SaplingSpendingKey -> Int -> Maybe SaplingReceiver
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genSaplingPaymentAddress extspk i =
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genSaplingPaymentAddress :: Int -> SaplingSpendingKey -> Maybe SaplingReceiver
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genSaplingPaymentAddress i extspk =
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if BS.length res == 43
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then Just res
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else Nothing
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where
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res =
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withPureBorshVarBuffer
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(rustWrapperSaplingPaymentAddress extspk (fromIntegral i))
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(rustWrapperSaplingPaymentAddress extspk (fromIntegral (i * 111)))
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-- | Generate an internal Sapling address
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genSaplingInternalAddress :: SaplingSpendingKey -> Maybe SaplingInternalReceiver
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@ -15,13 +15,13 @@
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--
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module ZcashHaskell.Transparent where
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import Control.Exception (throwIO)
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import Crypto.Hash
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import qualified Data.ByteArray as BA
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import qualified Data.ByteString as BS
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import Data.ByteString.Base58 (bitcoinAlphabet, encodeBase58)
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import qualified Data.Text as T
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import qualified Data.Text.Encoding as E
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import Data.Word
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import ZcashHaskell.Types
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( TransparentAddress(..)
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, TransparentType(..)
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@ -29,13 +29,17 @@ import ZcashHaskell.Types
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, getTransparentPrefix
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)
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import Haskoin.Crypto.Keys.Extended
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import Data.Word
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import Crypto.Secp256k1
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import Data.HexString
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import Data.Word
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import Haskoin.Address (Address(..))
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import qualified Haskoin.Crypto.Hash as H
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import Haskoin.Crypto.Keys.Extended
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encodeTransparent :: TransparentAddress -> T.Text
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encodeTransparent t =
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encodeTransparent' (getTransparentPrefix (ta_net t) (ta_type t)) $ ta_bytes t
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encodeTransparent :: ZcashNet -> TransparentAddress -> T.Text
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encodeTransparent zNet t =
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encodeTransparent' (getTransparentPrefix zNet (ta_type t)) $
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toBytes $ ta_bytes t
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where
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encodeTransparent' :: (Word8, Word8) -> BS.ByteString -> T.Text
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encodeTransparent' (a, b) h =
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@ -47,17 +51,22 @@ encodeTransparent t =
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checksum = sha256 $ sha256 digest
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-- | Attempts to generate an Extended Private Key from a known HDSeed.
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genTransparentPrvKey ::
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BS.ByteString -> XPrvKey
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genTransparentPrvKey :: BS.ByteString -> XPrvKey
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genTransparentPrvKey hdseed = do
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makeXPrvKey hdseed
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-- | Attempts to obtain an Extended Public Key from a known Extended Private Key
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genTransparentPubKey ::
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XPrvKey -> IO XPubKey
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genTransparentPubKey :: XPrvKey -> IO XPubKey
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genTransparentPubKey xpvk = do
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ioCtx <- createContext
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let xpubk = deriveXPubKey ioCtx xpvk
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return xpubk
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genTransparentReceiver :: XPubKey -> IO TransparentAddress
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genTransparentReceiver xpubk = do
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ioCtx <- createContext
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let x = xPubAddr ioCtx xpubk
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case x of
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PubKeyAddress k -> return $ TransparentAddress P2PKH $ fromBinary k
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ScriptAddress j -> return $ TransparentAddress P2SH $ fromBinary j
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_anyOtherKind -> throwIO $ userError "Unsupported transparent address type"
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@ -36,6 +36,7 @@ import qualified Data.Text.Encoding as E
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import Data.Word
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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 Haskoin.Address (Address)
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-- * General
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--
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@ -45,21 +46,6 @@ type Seed = C.ByteString
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-- | A mnemonic phrase used to derive seeds
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type Phrase = BS.ByteString
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-- | A spending key for Sapling
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type SaplingSpendingKey = BS.ByteString
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-- | A spending key for Orchard
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type OrchardSpendingKey = BS.ByteString
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-- | A Sapling receiver
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type SaplingReceiver = BS.ByteString
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-- | A Sapling internal receiver
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type SaplingInternalReceiver = BS.ByteString
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-- | An Orchard receiver
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type OrchardReceiver = BS.ByteString
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-- | Type to represent data after Bech32 decoding
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data RawData = RawData
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{ hrp :: !BS.ByteString -- ^ Human-readable part of the Bech32 encoding
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@ -250,11 +236,19 @@ data TransparentType
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-- | Type to represent a transparent Zcash addresses
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data TransparentAddress = TransparentAddress
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{ ta_type :: !TransparentType
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, ta_net :: !ZcashNet
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, ta_bytes :: !BS.ByteString
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, ta_bytes :: !HexString
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} deriving (Eq, Prelude.Show, Read)
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-- * Sapling
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-- | A spending key for Sapling
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type SaplingSpendingKey = BS.ByteString
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-- | A Sapling receiver
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type SaplingReceiver = BS.ByteString
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-- | A Sapling internal receiver
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type SaplingInternalReceiver = BS.ByteString
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-- | Type to represent a Sapling Shielded Output as provided by the @getrawtransaction@ RPC method of @zcashd@.
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data ShieldedOutput = ShieldedOutput
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{ s_cv :: !HexString -- ^ Value commitment to the input note
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@ -280,6 +274,12 @@ instance FromJSON ShieldedOutput where
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pure $ ShieldedOutput cv cmu ephKey encText outText p
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-- * Orchard
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-- | A spending key for Orchard
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type OrchardSpendingKey = BS.ByteString
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-- | An Orchard receiver
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type OrchardReceiver = BS.ByteString
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-- | Type to represent a Unified Address
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data UnifiedAddress = UnifiedAddress
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{ ua_net :: !ZcashNet
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97
test/Spec.hs
97
test/Spec.hs
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@ -66,6 +66,7 @@ import ZcashHaskell.Types
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, ShieldedOutput(..)
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, UnifiedAddress(..)
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, UnifiedFullViewingKey(..)
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, ZcashNet(..)
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, decodeHexText
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, getValue
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)
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@ -470,27 +471,6 @@ main = do
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describe "Wallet seed phrase" $ do
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prop "Generated phrases are valid" $ again prop_PhraseLength
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prop "Derived seeds are valid" $ again prop_SeedLength
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before getSeed $
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describe "Optimized spending key tests" $ do
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it "Sapling spending keys are valid" $ \s ->
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property $ prop_SaplingSpendingKey s
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it "Sapling receivers are valid" $ \s ->
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property $ prop_SaplingReceiver s
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it "Sapling receivers are not the same" $ \s ->
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property $ prop_SaplingRecRepeated s
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it "Orchard spending keys are valid" $ \s ->
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property $ prop_OrchardSpendingKey s
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it "Orchard receivers are valid" $ \s ->
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property $ prop_OrchardReceiver s
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describe "Address tests" $ do
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it "Encode transparent" $ do
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let ua =
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"u17n7hpwaujyq7ux8f9jpyymtnk5urw7pyrf60smp5mawy7jgz325hfvz3jn3zsfya8yxryf9q7ldk8nu8df0emra5wne28zq9d9nm2pu4x6qwjha565av9aze0xgujgslz74ufkj0c0cylqwjyrh9msjfh7jzal6d3qzrnhkkqy3pqm8j63y07jxj7txqeac982778rmt64f32aum94x"
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let msg =
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case isValidUnifiedAddress ua of
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Nothing -> "Bad UA"
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Just u -> maybe "No transparent" encodeTransparent $ t_rec u
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msg `shouldBe` "t1LPWuQnjCRH7JAeEErSXKixcUteLJRJjKD"
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describe "Transparent Private and Public Key Generation" $ do
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it "Obtain a transparent extended private key from HDSeed" $ do
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let hdseed =
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@ -587,6 +567,69 @@ main = do
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xtpubk <- xtpubkIO
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---print $ show xtpubk
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xtpubk `shouldBe` testpbk
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before getSeed $
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describe "Optimized spending key tests" $ do
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it "Sapling spending keys are valid" $ \s ->
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property $ prop_SaplingSpendingKey s
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it "Sapling receivers are valid" $ \s ->
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property $ prop_SaplingReceiver s
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it "Sapling receivers are distinct" $ \s ->
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property $ prop_SaplingRecRepeated s
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it "Orchard spending keys are valid" $ \s ->
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property $ prop_OrchardSpendingKey s
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it "Orchard receivers are valid" $ \s ->
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property $ prop_OrchardReceiver s
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it "Orchard receivers are distinct" $ \s ->
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property $ prop_OrchardRecRepeated s
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describe "Address tests" $ do
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it "Encode transparent" $ do
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let ua =
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"u17n7hpwaujyq7ux8f9jpyymtnk5urw7pyrf60smp5mawy7jgz325hfvz3jn3zsfya8yxryf9q7ldk8nu8df0emra5wne28zq9d9nm2pu4x6qwjha565av9aze0xgujgslz74ufkj0c0cylqwjyrh9msjfh7jzal6d3qzrnhkkqy3pqm8j63y07jxj7txqeac982778rmt64f32aum94x"
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let msg =
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case isValidUnifiedAddress ua of
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Nothing -> "Bad UA"
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Just u ->
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maybe "No transparent" (encodeTransparent (ua_net u)) $
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t_rec u
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msg `shouldBe` "t1LPWuQnjCRH7JAeEErSXKixcUteLJRJjKD"
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it "Recover UA from YWallet" $
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ioProperty $ do
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let p =
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"security expect junk hour people bind law hub between topic wink cliff spirit scissors auction idle figure option wide useful swift prison cushion round"
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let targetUA =
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isValidUnifiedAddress
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"u1qsylqauvnhw8tsfe3cldcsj3mjrfqzgaf3mt8yzlkjuvsf5wzj223yvrt8q66qukfqcc80x3z0mk6ym6pm2f0hukzkp6t4wj78h85t6kfr2u9mqsfhdd73g3sc7ezy2ut3rtq5jmejatwv4xqqd6l8tt9fycer8kdw0gz6e607nkssqsc7kd7nk2yfz2hpvpqhdg39wxalpjzhe34j7"
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let s = getWalletSeed p
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case s of
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Nothing -> return $ expectationFailure "Failed to generate seed"
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Just s' -> do
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let oK = genOrchardSpendingKey s' MainNetCoin 0
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let sK = genSaplingSpendingKey s' 0
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let tK = genTransparentPrvKey s'
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let oR = genOrchardReceiver 0 =<< oK
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let sR = genSaplingPaymentAddress 0 =<< sK
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tR <- genTransparentReceiver =<< genTransparentPubKey tK
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let newUA = UnifiedAddress MainNet oR sR $ Just tR
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return $ Just newUA `shouldBe` targetUA
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it "Recover UA from Zingo" $
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ioProperty $ do
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let p =
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"cloth swing left trap random tornado have great onion element until make shy dad success art tuition canvas thunder apple decade elegant struggle invest"
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let targetUA =
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isValidUnifiedAddress
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"u1trd8cvc6265ywwj4mmvuznsye5ghe2dhhn3zy8kcuyg4vx3svskw9r2dedp5hu6m740vylkqc34t4w9eqkl9fyu5uyzn3af72jg235440ke6tu5cf994eq85n97x69x9824hqejmwz3d8qqthtesrd6gerjupdymldhl9xccejjwfj0dhh9mt4rw4kytp325twlutsxd20rfqhzxu3m"
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let s = getWalletSeed p
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case s of
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Nothing -> return $ expectationFailure "Failed to generate seed"
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Just s' -> do
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let oK = genOrchardSpendingKey s' MainNetCoin 0
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let sK = genSaplingSpendingKey s' 0
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let tK = genTransparentPrvKey s'
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let oR = genOrchardReceiver 0 =<< oK
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let sR = genSaplingPaymentAddress 0 =<< sK
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tR <- genTransparentReceiver =<< genTransparentPubKey tK
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let newUA = UnifiedAddress MainNet oR sR $ Just tR
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return $ Just newUA `shouldBe` targetUA
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-- | Properties
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prop_PhraseLength :: Property
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@ -617,13 +660,19 @@ prop_SaplingSpendingKey s (NonNegative i) =
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prop_SaplingReceiver :: Seed -> NonNegative Int -> NonNegative Int -> Property
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prop_SaplingReceiver s (NonNegative i) (NonNegative j) =
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genSaplingPaymentAddress (fromMaybe "" $ genSaplingSpendingKey s j) i =/=
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genSaplingPaymentAddress i (fromMaybe "" $ genSaplingSpendingKey s j) =/=
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Nothing
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prop_SaplingRecRepeated :: Seed -> NonNegative Int -> Property
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prop_SaplingRecRepeated s (NonNegative i) =
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genSaplingPaymentAddress (fromMaybe "" $ genSaplingSpendingKey s 1) i =/=
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genSaplingPaymentAddress (fromMaybe "" $ genSaplingSpendingKey s 1) (i + 1)
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genSaplingPaymentAddress i (fromMaybe "" $ genSaplingSpendingKey s 1) =/=
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genSaplingPaymentAddress (i + 1) (fromMaybe "" $ genSaplingSpendingKey s 1)
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prop_OrchardRecRepeated ::
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Seed -> CoinType -> NonNegative Int -> NonNegative Int -> Property
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prop_OrchardRecRepeated s c (NonNegative i) (NonNegative j) =
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genOrchardReceiver j (fromMaybe "" $ genOrchardSpendingKey s c i) =/=
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genOrchardReceiver (j + 1) (fromMaybe "" $ genOrchardSpendingKey s c i)
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-- | Generators
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genOrcArgs :: Gen (CoinType, Int, Int)
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|
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@ -51,7 +51,7 @@ library
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, cryptonite
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, foreign-rust
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, generics-sop
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, hexstring >=0.12
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, hexstring >=0.12.1
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, http-conduit
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, memory
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, text
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@ -72,7 +72,7 @@ test-suite zcash-haskell-test
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, base >=4.7 && <5
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, bytestring
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, haskoin-core
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, hexstring
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, hexstring >= 0.12.1
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, hspec
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, QuickCheck
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, quickcheck-transformer
|
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|
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