mirror of
https://github.com/ilyakooo0/urbit.git
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308 lines
10 KiB
Haskell
308 lines
10 KiB
Haskell
{-|
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Use etherium to access PKI information.
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-}
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module Urbit.Vere.Dawn where
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import Urbit.Arvo.Common
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import Urbit.Arvo.Event hiding (Address)
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import Urbit.Prelude hiding (Call, rights, to)
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import Data.Bits (xor)
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import Data.List (nub)
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import Data.Text (splitOn)
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import Network.Ethereum.Account
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import Network.Ethereum.Api.Eth
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import Network.Ethereum.Api.Provider
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import Network.Ethereum.Api.Types hiding (blockNumber)
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import Network.Ethereum.Web3
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import Network.HTTP.Client.TLS
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import qualified Crypto.Hash.SHA256 as SHA256
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import qualified Crypto.Hash.SHA512 as SHA512
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import qualified Crypto.Sign.Ed25519 as Ed
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import qualified Data.Binary as B
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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 qualified Data.ByteString.Char8 as C
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import qualified Network.Ethereum.Ens as Ens
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import qualified Network.HTTP.Client as C
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import qualified Urbit.Azimuth as AZ
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import qualified Urbit.Ob as Ob
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-- During boot, use the infura provider
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provider = HttpProvider
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"https://mainnet.infura.io/v3/196a7f37c7d54211b4a07904ec73ad87"
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-- Conversion Utilities --------------------------------------------------------
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-- Takes the web3's bytes representation and changes the endianness.
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bytes32ToBS :: BytesN 32 -> ByteString
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bytes32ToBS = reverse . BA.pack . BA.unpack
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toBloq :: Quantity -> Bloq
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toBloq = fromIntegral . unQuantity
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passFromEth :: BytesN 32 -> BytesN 32 -> UIntN 32 -> Pass
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passFromEth enc aut sut | sut /= 1 =
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Pass (Ed.PublicKey mempty) (Ed.PublicKey mempty)
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passFromEth enc aut sut =
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Pass (decode aut) (decode enc)
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where
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decode = Ed.PublicKey . bytes32ToBS
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clanFromShip :: Ship -> Ob.Class
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clanFromShip = Ob.clan . Ob.patp . fromIntegral
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shipSein :: Ship -> Ship
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shipSein = Ship . fromIntegral . Ob.fromPatp . Ob.sein . Ob.patp . fromIntegral
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renderShip :: Ship -> Text
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renderShip = Ob.renderPatp . Ob.patp . fromIntegral
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-- Data Validation -------------------------------------------------------------
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-- Derive public key structure from the key derivation seed structure
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ringToPass :: Ring -> Pass
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ringToPass Ring{..} = Pass{..}
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where
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passCrypt = decode ringCrypt
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passSign = decode ringSign
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decode = fst . fromJust . Ed.createKeypairFromSeed_
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fromJust = \case
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Nothing -> error "Invalid seed passed to createKeypairFromSeed"
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Just x -> x
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-- Azimuth Functions -----------------------------------------------------------
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-- Perform a request to azimuth at a certain block number
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withAzimuth :: Quantity
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-> Address
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-> DefaultAccount Web3 a
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-> Web3 a
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withAzimuth bloq azimuth action =
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withAccount () $
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withParam (to .~ azimuth) $
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withParam (block .~ BlockWithNumber bloq)
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action
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-- Retrieves the EthPoint information for an individual point.
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retrievePoint :: Quantity -> Address -> Ship -> Web3 EthPoint
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retrievePoint bloq azimuth ship =
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withAzimuth bloq azimuth $ do
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(encryptionKey,
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authenticationKey,
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hasSponsor,
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active,
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escapeRequested,
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sponsor,
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escapeTo,
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cryptoSuite,
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keyRevision,
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continuityNum) <- AZ.points (fromIntegral ship)
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let escapeState = if escapeRequested
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then Just $ Ship $ fromIntegral escapeTo
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else Nothing
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-- The hoon version also sets this to all 0s and then does nothing with it.
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let epOwn = (0, 0, 0, 0)
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let epNet = if not active
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then Nothing
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else Just
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( fromIntegral keyRevision
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, passFromEth encryptionKey authenticationKey cryptoSuite
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, fromIntegral continuityNum
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, (hasSponsor, Ship (fromIntegral sponsor))
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, escapeState
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)
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-- TODO: wtf?
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let epKid = case clanFromShip ship of
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Ob.Galaxy -> Just (0, setToHoonSet mempty)
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Ob.Star -> Just (0, setToHoonSet mempty)
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_ -> Nothing
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pure EthPoint{..}
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-- Retrieves information about all the galaxies from Ethereum.
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retrieveGalaxyTable :: Quantity -> Address -> Web3 (Map Ship (Rift, Life, Pass))
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retrieveGalaxyTable bloq azimuth =
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withAzimuth bloq azimuth $ mapFromList <$> mapM getRow [0..255]
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where
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getRow idx = do
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(encryptionKey, authenticationKey, _, _, _, _, _, cryptoSuite,
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keyRev, continuity) <- AZ.points idx
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pure ( fromIntegral idx
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, ( fromIntegral continuity
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, fromIntegral keyRev
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, passFromEth encryptionKey authenticationKey cryptoSuite
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)
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)
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-- Reads the three Ames domains from Ethereum, removing duplicates
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readAmesDomains :: Quantity -> Address -> Web3 [Turf]
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readAmesDomains bloq azimuth =
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withAzimuth bloq azimuth $ nub <$> mapM getTurf [0..2]
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where
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getTurf idx =
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Turf . fmap Cord . reverse . splitOn "." <$> AZ.dnsDomains idx
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validateShipAndGetImmediateSponsor :: Quantity -> Address -> Seed -> Web3 Ship
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validateShipAndGetImmediateSponsor block azimuth (Seed ship life ring oaf) =
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case clanFromShip ship of
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Ob.Comet -> validateComet
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Ob.Moon -> validateMoon
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_ -> validateRest
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where
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validateComet = do
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-- A comet address is the fingerprint of the keypair
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let shipFromPass = cometFingerprint $ ringToPass ring
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when (ship /= shipFromPass) $
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fail ("comet name doesn't match fingerprint " ++ show ship ++ " vs " ++
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show shipFromPass)
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when (life /= 1) $
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fail ("comet can never be re-keyed")
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pure (shipSein ship)
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validateMoon = do
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-- TODO: The current code in zuse does nothing, but we should be able to
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-- try to validate the oath against the current as exists planet on
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-- chain.
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pure $ shipSein ship
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validateRest = do
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putStrLn ("boot: retrieving " ++ renderShip ship ++ "'s public keys")
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whoP <- retrievePoint block azimuth ship
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case epNet whoP of
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Nothing -> fail "ship not keyed"
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Just (netLife, pass, contNum, (hasSponsor, who), _) -> do
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when (netLife /= life) $
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fail ("keyfile life mismatch; keyfile claims life " ++
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show life ++ ", but Azimuth claims life " ++
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show netLife)
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when ((ringToPass ring) /= pass) $
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fail "keyfile does not match blockchain"
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-- TODO: The hoon code does a breach check, but the C code never
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-- supplies the data necessary for it to function.
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pure who
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-- Walk through the sponsorship chain retrieving the actual sponsorship chain
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-- as it exists on Ethereum.
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getSponsorshipChain :: Quantity -> Address -> Ship -> Web3 [(Ship,EthPoint)]
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getSponsorshipChain block azimuth = loop
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where
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loop ship = do
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putStrLn ("boot: retrieving keys for sponsor " ++ renderShip ship)
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ethPoint <- retrievePoint block azimuth ship
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case (clanFromShip ship, epNet ethPoint) of
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(Ob.Comet, _) -> fail "Comets cannot be sponsors"
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(Ob.Moon, _) -> fail "Moons cannot be sponsors"
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(_, Nothing) ->
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fail $ unpack ("Ship " ++ renderShip ship ++ " not booted")
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(Ob.Galaxy, Just _) -> pure [(ship, ethPoint)]
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(_, Just (_, _, _, (False, _), _)) ->
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fail $ unpack ("Ship " ++ renderShip ship ++ " has no sponsor")
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(_, Just (_, _, _, (True, sponsor), _)) -> do
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chain <- loop sponsor
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pure $ chain ++ [(ship, ethPoint)]
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-- Produces either an error or a validated boot event structure.
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dawnVent :: Seed -> RIO e (Either Text Dawn)
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dawnVent dSeed@(Seed ship life ring oaf) = do
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ret <- runWeb3' provider $ do
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block <- blockNumber
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putStrLn ("boot: ethereum block #" ++ tshow block)
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putStrLn "boot: retrieving azimuth contract"
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azimuth <- withAccount () $ Ens.resolve "azimuth.eth"
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immediateSponsor <- validateShipAndGetImmediateSponsor block azimuth dSeed
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dSponsor <- getSponsorshipChain block azimuth immediateSponsor
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putStrLn "boot: retrieving galaxy table"
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dCzar <- mapToHoonMap <$> retrieveGalaxyTable block azimuth
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putStrLn "boot: retrieving network domains"
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dTurf <- readAmesDomains block azimuth
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let dBloq = toBloq block
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let dNode = Nothing
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pure $ MkDawn{..}
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case ret of
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Left x -> pure $ Left $ tshow x
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Right y -> pure $ Right y
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dawnCometList :: RIO e [Ship]
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dawnCometList = do
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-- Get the jamfile with the list of stars accepting comets right now.
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manager <- io $ C.newManager tlsManagerSettings
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request <- io $ C.parseRequest "https://bootstrap.urbit.org/comet-stars.jam"
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response <- io $ C.httpLbs (C.setRequestCheckStatus request) manager
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let body = toStrict $ C.responseBody response
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noun <- cueBS body & either throwIO pure
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fromNounErr noun & either (throwIO . uncurry ParseErr) pure
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-- Comet Mining ----------------------------------------------------------------
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mix :: BS.ByteString -> BS.ByteString -> BS.ByteString
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mix a b = BS.pack $ loop (BS.unpack a) (BS.unpack b)
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where
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loop [] [] = []
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loop a [] = a
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loop [] b = b
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loop (x:xs) (y:ys) = (xor x y) : loop xs ys
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shas :: BS.ByteString -> BS.ByteString -> BS.ByteString
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shas salt = SHA256.hash . mix salt . SHA256.hash
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shaf :: BS.ByteString -> BS.ByteString -> BS.ByteString
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shaf salt ruz = (mix a b)
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where
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haz = shas salt ruz
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a = (take 16 haz)
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b = (drop 16 haz)
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cometFingerprintBS :: Pass -> ByteString
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cometFingerprintBS = (shaf $ C.pack "bfig") . passToBS
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cometFingerprint :: Pass -> Ship
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cometFingerprint = Ship . B.decode . fromStrict . reverse . cometFingerprintBS
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tryMineComet :: Set Ship -> Word64 -> Maybe Seed
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tryMineComet ships seed =
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if member shipSponsor ships
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then Just $ Seed shipName 1 ring Nothing
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else Nothing
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where
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-- Hash the incoming seed into a 64 bytes.
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baseHash = SHA512.hash $ toStrict $ B.encode seed
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signSeed = (take 32 baseHash)
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ringSeed = (drop 32 baseHash)
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ring = Ring signSeed ringSeed
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pass = ringToPass ring
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shipName = cometFingerprint pass
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shipSponsor = shipSein shipName
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mineComet :: Set Ship -> Word64 -> Seed
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mineComet ships = loop
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where
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loop eny =
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case (tryMineComet ships eny) of
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Nothing -> loop (eny + 1)
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Just x -> x
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