2024-05-09 19:15:37 +00:00
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{-# LANGUAGE OverloadedStrings #-}
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module Zenith.Zcashd where
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import Control.Concurrent (threadDelay)
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import Control.Monad (when)
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import Data.Aeson
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import qualified Data.Array as A
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import qualified Data.ByteString as BS
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import qualified Data.ByteString.Base64 as B64
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import qualified Data.ByteString.Char8 as C
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import qualified Data.ByteString.Lazy as LBS
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import Data.Maybe
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import qualified Data.Scientific as Scientific
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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.Text.Encoding.Error (lenientDecode)
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import qualified Data.Text.IO as TIO
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import qualified Data.Vector as V
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import Network.HTTP.Simple
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import System.Clipboard
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import System.Exit
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import System.IO
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import Text.Read (readMaybe)
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import Text.Regex
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import Text.Regex.Base
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import ZcashHaskell.Types (RpcCall(..), RpcResponse(..))
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import Zenith.Types
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( AddressGroup
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, AddressSource(..)
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, NodeVersion(..)
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, OpResult(..)
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, UABalance(..)
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, ZcashAddress(..)
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, ZcashPool(..)
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, ZcashTx
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, encodeHexText'
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)
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import Zenith.Utils (displayZec, getAddresses, validateAddress)
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-- * RPC methods
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-- | List addresses
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listAddresses :: BS.ByteString -> BS.ByteString -> IO [ZcashAddress]
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listAddresses user pwd = do
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response <- makeZcashCall user pwd "listaddresses" []
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let rpcResp = decode response :: Maybe (RpcResponse [AddressGroup])
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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let addys = result res
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case addys of
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Nothing -> fail "Empty response"
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Just addys' -> do
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let addList = concatMap getAddresses addys'
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return addList
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-- | Get address balance
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getBalance :: BS.ByteString -> BS.ByteString -> ZcashAddress -> IO [Integer]
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getBalance user pwd zadd = do
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let a = account zadd
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case a of
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Nothing -> do
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response <-
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makeZcashCall
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user
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pwd
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"z_getbalance"
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[ String (addy zadd)
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, Number (Scientific.scientific 1 0)
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, Data.Aeson.Bool True
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]
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let rpcResp = decode response :: Maybe (RpcResponse Integer)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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case result res of
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Nothing -> return []
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Just r -> return [r]
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Just acct -> do
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response <-
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makeZcashCall
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user
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pwd
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"z_getbalanceforaccount"
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[Number (Scientific.scientific acct 0)]
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let rpcResp = decode response :: Maybe (RpcResponse UABalance)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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case result res of
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Nothing -> return [0, 0, 0]
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Just r -> return $ readUABalance r
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where readUABalance ua =
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[uatransparent ua, uasapling ua, uaorchard ua]
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-- | List transactions
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listTxs :: BS.ByteString -> BS.ByteString -> ZcashAddress -> IO [ZcashTx]
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listTxs user pwd zaddy = do
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response <-
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makeZcashCall user pwd "z_listreceivedbyaddress" [String $ addy zaddy]
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let rpcResp = decode response :: Maybe (RpcResponse [ZcashTx])
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case rpcResp of
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Nothing -> fail "listTxs: Couldn't parse node response"
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Just res -> do
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case result res of
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Nothing -> fail "listTxs: Empty response"
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Just res' -> return res'
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-- | Send Tx
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sendTx ::
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BS.ByteString
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-> BS.ByteString
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-> ZcashAddress
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-> T.Text
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-> Double
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-> Maybe T.Text
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-> IO ()
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sendTx user pwd fromAddy toAddy amount memo = do
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bal <- getBalance user pwd fromAddy
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let valAdd = validateAddress toAddy
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if sum bal - floor (amount * 100000000) >= 1000
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then do
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if source fromAddy /= ImportedWatchOnly
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then do
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let privacyPolicy
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| valAdd == Just TransparentPool = "AllowRevealedRecipients"
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| isNothing (account fromAddy) &&
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elem TransparentPool (pool fromAddy) =
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"AllowRevealedSenders"
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| otherwise = "AllowRevealedAmounts"
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let pd =
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case memo of
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Nothing ->
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[ Data.Aeson.String (addy fromAddy)
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, Data.Aeson.Array
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(V.fromList
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[object ["address" .= toAddy, "amount" .= amount]])
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, Data.Aeson.Number $ Scientific.scientific 1 1
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, Data.Aeson.Null
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, Data.Aeson.String privacyPolicy
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]
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Just memo' ->
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[ Data.Aeson.String (addy fromAddy)
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, Data.Aeson.Array
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(V.fromList
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[ object
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[ "address" .= toAddy
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, "amount" .= amount
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, "memo" .= encodeHexText' memo'
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]
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])
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, Data.Aeson.Number $ Scientific.scientific 1 1
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, Data.Aeson.Null
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, Data.Aeson.String privacyPolicy
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]
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response <- makeZcashCall user pwd "z_sendmany" pd
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let rpcResp = decode response :: Maybe (RpcResponse T.Text)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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putStr " Sending."
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checkOpResult user pwd (fromMaybe "" $ result res)
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else putStrLn "Error: Source address is view-only."
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else putStrLn "Error: Insufficient balance in source address."
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-- | Check Zcash full node server
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checkServer :: BS.ByteString -> BS.ByteString -> IO ()
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checkServer user pwd = do
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resp <- makeZcashCall user pwd "getinfo" []
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let rpcResp = decode resp :: Maybe (RpcResponse NodeVersion)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just myResp -> do
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let r = result myResp
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case r of
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Nothing -> fail "Empty node response"
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Just r' -> do
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if isNodeValid r'
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then putStrLn $ "Connected to Zcash Full Node (" <> show r <> ") :)"
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else do
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putStrLn "Deprecated Zcash Full Node version found. Exiting"
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exitFailure
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where isNodeValid (NodeVersion i) = i >= 5000000
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-- | Check for accounts
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checkAccounts :: BS.ByteString -> BS.ByteString -> IO Bool
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checkAccounts user pwd = do
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response <- makeZcashCall user pwd "z_listaccounts" []
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let rpcResp = decode response :: Maybe (RpcResponse [Object])
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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let r = result res
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return $ not (null r)
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-- | Add account to node
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createAccount :: BS.ByteString -> BS.ByteString -> IO ()
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createAccount user pwd = do
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response <- makeZcashCall user pwd "z_getnewaccount" []
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let rpcResp = decode response :: Maybe (RpcResponse Object)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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let r = result res
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putStrLn " Account created!"
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-- | Create new Unified Address
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createUnifiedAddress :: BS.ByteString -> BS.ByteString -> Bool -> Bool -> IO ()
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createUnifiedAddress user pwd tRec sRec = do
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let recs = getReceivers tRec sRec
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let pd = [Data.Aeson.Number $ Scientific.scientific 0 1, recs]
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newResp <- makeZcashCall user pwd "z_getaddressforaccount" pd
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let rpcResp = decode newResp :: Maybe (RpcResponse Object)
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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let r = result res
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putStrLn " New UA created!"
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where
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getReceivers t s
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| t && s =
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Data.Aeson.Array
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(V.fromList
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[ Data.Aeson.String "p2pkh"
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, Data.Aeson.String "sapling"
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, Data.Aeson.String "orchard"
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])
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| t =
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Data.Aeson.Array
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(V.fromList [Data.Aeson.String "p2pkh", Data.Aeson.String "orchard"])
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| s =
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Data.Aeson.Array
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(V.fromList [Data.Aeson.String "sapling", Data.Aeson.String "orchard"])
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| otherwise = Data.Aeson.Array (V.fromList [Data.Aeson.String "orchard"])
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-- | Verify operation result
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checkOpResult :: BS.ByteString -> BS.ByteString -> T.Text -> IO ()
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checkOpResult user pwd opid = do
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response <-
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makeZcashCall
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user
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pwd
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"z_getoperationstatus"
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[Data.Aeson.Array (V.fromList [Data.Aeson.String opid])]
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let rpcResp = decode response :: Maybe (RpcResponse [OpResult])
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case rpcResp of
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Nothing -> fail "Couldn't parse node response"
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Just res -> do
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let r = result res
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case r of
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Nothing -> fail "Empty node response"
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Just r' -> mapM_ showResult r'
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where
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showResult t =
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case opsuccess t of
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"success" ->
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putStrLn $ " Success! Tx ID: " ++ maybe "" T.unpack (optxid t)
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"executing" -> do
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putStr "."
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hFlush stdout
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threadDelay 1000000 >> checkOpResult user pwd opid
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_ -> putStrLn $ " Failed :( " ++ maybe "" T.unpack (opmessage t)
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-- | Make a Zcash RPC call
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makeZcashCall ::
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BS.ByteString
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-> BS.ByteString
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-> T.Text
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-> [Data.Aeson.Value]
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-> IO LBS.ByteString
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makeZcashCall username password m p = do
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let payload = RpcCall "1.0" "test" m p
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let myRequest =
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setRequestBodyJSON payload $
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setRequestPort 8232 $
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setRequestBasicAuth username password $
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setRequestMethod "POST" defaultRequest
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response <- httpLBS myRequest
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let respStatus = getResponseStatusCode response
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let body = getResponseBody response
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case respStatus of
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500 -> do
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let rpcResp = decode body :: Maybe (RpcResponse String)
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case rpcResp of
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Nothing -> fail $ "Unknown server error " ++ show response
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Just x -> fail (fromMaybe "" $ result x)
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401 -> fail "Incorrect full node credentials"
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200 -> return body
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_ -> fail "Unknown error"
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-- | Read ZIP-321 URI
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sendWithUri ::
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BS.ByteString -> BS.ByteString -> ZcashAddress -> String -> Bool -> IO ()
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sendWithUri user pwd fromAddy uri repTo = do
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let uriRegex = mkRegex "^zcash:(\\w+)\\?amount=(.*)\\&memo=(.*)$"
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if matchTest uriRegex uri
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then do
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let reg = matchAllText uriRegex uri
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let parsedAddress = fst $ head reg A.! 1
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let parsedAmount = fst $ head reg A.! 2
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let parsedEncodedMemo = fst $ head reg A.! 3
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let addType = validateAddress $ T.pack parsedAddress
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case addType of
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Nothing -> putStrLn " Invalid address"
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Just TransparentPool -> do
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putStrLn $ " Address is valid: " ++ parsedAddress
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case (readMaybe parsedAmount :: Maybe Double) of
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Nothing -> putStrLn " Invalid amount."
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Just amt -> do
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putStrLn $ " Valid ZEC amount: " ++ show amt
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sendTx user pwd fromAddy (T.pack parsedAddress) amt Nothing
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Just _ -> do
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putStrLn $ " Address is valid: " ++ parsedAddress
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case (readMaybe parsedAmount :: Maybe Double) of
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Nothing -> putStrLn " Invalid amount."
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Just amt -> do
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putStrLn $ " Valid ZEC amount: " ++ show amt
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let decodedMemo =
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E.decodeUtf8With lenientDecode $
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B64.decodeLenient $ C.pack parsedEncodedMemo
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TIO.putStrLn $ " Memo: " <> decodedMemo
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sendTx
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user
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pwd
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fromAddy
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(T.pack parsedAddress)
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amt
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(if repTo
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then Just $
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T.concat [decodedMemo, "\nReply-To:\n", addy fromAddy]
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else Just decodedMemo)
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else putStrLn "URI is not compliant with ZIP-321"
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-- | Display an address
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displayZcashAddress ::
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BS.ByteString -> BS.ByteString -> (Int, ZcashAddress) -> IO ()
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displayZcashAddress user pwd (idx, zaddy) = do
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zats <- getBalance user pwd zaddy
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putStr $ show idx ++ ": "
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putStr $ show zaddy
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when (source zaddy == ImportedWatchOnly) (putStr "[VK]")
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putStr " Balance: "
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mapM_ (putStr . displayZec) zats
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putStrLn ""
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