256 lines
7.5 KiB
Haskell
256 lines
7.5 KiB
Haskell
{-# LANGUAGE TypeFamilies #-}
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-- Copyright (C) 2010 John Millikin <jmillikin@gmail.com>
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--
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-- This program is free software: you can redistribute it and/or modify
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-- it under the terms of the GNU General Public License as published by
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-- the Free Software Foundation, either version 3 of the License, or
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-- any later version.
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--
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-- This program is distributed in the hope that it will be useful,
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-- but WITHOUT ANY WARRANTY; without even the implied warranty of
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-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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-- GNU General Public License for more details.
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--
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-- You should have received a copy of the GNU General Public License
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-- along with this program. If not, see <http://www.gnu.org/licenses/>.
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module Network.Protocol.TLS.GNU
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( TLS
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, Session
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, Error (..)
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, runTLS
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, runClient
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, getSession
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, handshake
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, rehandshake
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, putBytes
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, getBytes
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, checkPending
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-- * Settings
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, Transport (..)
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, handleTransport
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, Credentials
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, setCredentials
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, certificateCredentials
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, Prioritised
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, setPriority
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, CertificateType (..)
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) where
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import qualified Control.Concurrent.MVar as M
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import Control.Monad (when, foldM, foldM_)
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import qualified Control.Monad.Error as E
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import Control.Monad.Error (ErrorType)
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import qualified Control.Monad.Reader as R
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import Control.Monad.Trans (MonadIO, liftIO)
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import qualified Data.ByteString as B
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import qualified Data.ByteString.Lazy as BL
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import qualified Data.ByteString.Unsafe as B
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import qualified Foreign as F
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import qualified Foreign.C as F
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import Foreign.Concurrent as FC
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import qualified System.IO as IO
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import System.IO.Unsafe (unsafePerformIO)
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import Network.Protocol.TLS.GNU.ErrorT
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import qualified Network.Protocol.TLS.GNU.Foreign as F
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data Error = Error Integer
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deriving (Show)
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globalInitMVar :: M.MVar ()
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{-# NOINLINE globalInitMVar #-}
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globalInitMVar = unsafePerformIO $ M.newMVar ()
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newtype GlobalState = GlobalState (F.ForeignPtr ())
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globalInit :: ErrorT Error IO GlobalState
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globalInit = do
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let init_ = M.withMVar globalInitMVar $ \_ -> F.gnutls_global_init
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let deinit = M.withMVar globalInitMVar $ \_ -> F.gnutls_global_deinit
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F.ReturnCode rc <- liftIO init_
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when (rc < 0) $ E.throwError $ mapError rc
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fp <- liftIO $ FC.newForeignPtr F.nullPtr deinit
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return $ GlobalState fp
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data Session = Session
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{ sessionPtr :: F.ForeignPtr F.Session
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, sessionGlobalState :: GlobalState
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}
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newtype TLS a = TLS { unTLS :: ErrorT Error (R.ReaderT Session IO) a }
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instance Functor TLS where
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fmap f = TLS . fmap f . unTLS
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instance Monad TLS where
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return = TLS . return
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m >>= f = TLS $ unTLS m >>= unTLS . f
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instance MonadIO TLS where
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liftIO = TLS . liftIO
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instance E.MonadError TLS where
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type ErrorType TLS = Error
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throwError = TLS . E.throwError
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catchError m h = TLS $ E.catchError (unTLS m) (unTLS . h)
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runTLS :: Session -> TLS a -> IO (Either Error a)
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runTLS s tls = R.runReaderT (runErrorT (unTLS tls)) s
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runClient :: Transport -> TLS a -> IO (Either Error a)
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runClient transport tls = do
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eitherSession <- newSession transport (F.ConnectionEnd 2)
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case eitherSession of
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Left err -> return (Left err)
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Right session -> runTLS session tls
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newSession :: Transport -> F.ConnectionEnd -> IO (Either Error Session)
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newSession transport end = F.alloca $ \sPtr -> runErrorT $ do
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global <- globalInit
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F.ReturnCode rc <- liftIO $ F.gnutls_init sPtr end
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when (rc < 0) $ E.throwError $ mapError rc
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liftIO $ do
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ptr <- F.peek sPtr
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let session = F.Session ptr
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push <- F.wrapTransportFunc (pushImpl transport)
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pull <- F.wrapTransportFunc (pullImpl transport)
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F.gnutls_transport_set_push_function session push
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F.gnutls_transport_set_pull_function session pull
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_ <- F.gnutls_set_default_priority session
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fp <- FC.newForeignPtr ptr $ do
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F.gnutls_deinit session
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F.freeHaskellFunPtr push
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F.freeHaskellFunPtr pull
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return $ Session fp global
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getSession :: TLS Session
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getSession = TLS R.ask
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handshake :: TLS ()
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handshake = withSession F.gnutls_handshake >>= checkRC
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rehandshake :: TLS ()
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rehandshake = withSession F.gnutls_rehandshake >>= checkRC
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putBytes :: BL.ByteString -> TLS ()
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putBytes = putChunks . BL.toChunks where
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putChunks chunks = do
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maybeErr <- withSession $ \s -> foldM (putChunk s) Nothing chunks
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case maybeErr of
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Nothing -> return ()
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Just err -> E.throwError $ mapError $ fromIntegral err
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putChunk s Nothing chunk = B.unsafeUseAsCStringLen chunk $ uncurry loop where
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loop ptr len = do
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let len' = fromIntegral len
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sent <- F.gnutls_record_send s ptr len'
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let sent' = fromIntegral sent
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case len - sent' of
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0 -> return Nothing
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x | x > 0 -> loop (F.plusPtr ptr sent') x
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| otherwise -> return $ Just x
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putChunk _ err _ = return err
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getBytes :: Integer -> TLS BL.ByteString
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getBytes count = do
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(mbytes, len) <- withSession $ \s ->
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F.allocaBytes (fromInteger count) $ \ptr -> do
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len <- F.gnutls_record_recv s ptr (fromInteger count)
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bytes <- if len >= 0
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then do
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chunk <- B.packCStringLen (ptr, fromIntegral len)
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return $ Just $ BL.fromChunks [chunk]
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else return Nothing
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return (bytes, len)
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case mbytes of
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Just bytes -> return bytes
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Nothing -> E.throwError $ mapError $ fromIntegral len
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checkPending :: TLS Integer
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checkPending = withSession $ \s -> do
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pending <- F.gnutls_record_check_pending s
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return $ toInteger pending
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data Transport = Transport
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{ transportPush :: BL.ByteString -> IO ()
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, transportPull :: Integer -> IO BL.ByteString
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}
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pullImpl :: Transport -> F.TransportFunc
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pullImpl t _ buf bufSize = do
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bytes <- transportPull t $ toInteger bufSize
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let loop ptr chunk =
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B.unsafeUseAsCStringLen chunk $ \(cstr, len) -> do
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F.copyArray (F.castPtr ptr) cstr len
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return $ F.plusPtr ptr len
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foldM_ loop buf $ BL.toChunks bytes
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return $ fromIntegral $ BL.length bytes
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pushImpl :: Transport -> F.TransportFunc
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pushImpl t _ buf bufSize = do
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let buf' = F.castPtr buf
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bytes <- B.unsafePackCStringLen (buf', fromIntegral bufSize)
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transportPush t $ BL.fromChunks [bytes]
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return bufSize
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handleTransport :: IO.Handle -> Transport
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handleTransport h = Transport (BL.hPut h) (BL.hGet h . fromInteger)
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data Credentials = Credentials F.CredentialsType (F.ForeignPtr F.Credentials)
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setCredentials :: Credentials -> TLS ()
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setCredentials (Credentials ctype fp) = do
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rc <- withSession $ \s ->
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F.withForeignPtr fp $ \ptr -> do
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F.gnutls_credentials_set s ctype ptr
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checkRC rc
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certificateCredentials :: TLS Credentials
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certificateCredentials = do
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(rc, ptr) <- liftIO $ F.alloca $ \ptr -> do
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rc <- F.gnutls_certificate_allocate_credentials ptr
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ptr' <- if F.unRC rc < 0
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then return F.nullPtr
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else F.peek ptr
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return (rc, ptr')
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checkRC rc
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fp <- liftIO $ F.newForeignPtr F.gnutls_certificate_free_credentials_funptr ptr
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return $ Credentials (F.CredentialsType 1) fp
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class Prioritised a where
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priorityInt :: a -> F.CInt
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priorityProc :: a -> F.Session -> F.Ptr F.CInt -> IO F.ReturnCode
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data CertificateType = X509 | OpenPGP
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deriving (Show)
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instance Prioritised CertificateType where
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priorityProc = const F.gnutls_certificate_type_set_priority
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priorityInt x = case x of
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X509 -> 1
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OpenPGP -> 2
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setPriority :: Prioritised a => [a] -> TLS ()
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setPriority xs = do
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let fake = head $ [undefined] ++ xs
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rc <- withSession $ F.withArray0 0 (map priorityInt xs) . priorityProc fake
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checkRC rc
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withSession :: (F.Session -> IO a) -> TLS a
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withSession io = do
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s <- getSession
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liftIO $ F.withForeignPtr (sessionPtr s) $ io . F.Session
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checkRC :: F.ReturnCode -> TLS ()
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checkRC (F.ReturnCode x) = when (x < 0) $ E.throwError $ mapError x
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mapError :: F.CInt -> Error
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mapError = Error . toInteger
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