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streaming-commons 0.1.19 → 0.2.3.1

raw patch · 33 files changed

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ChangeLog.md view
@@ -1,3 +1,54 @@+# ChangeLog for streaming-commons++## 0.2.3.1++* Fix `!6` host preference incorrectly allows IPv4 connections (https://github.com/fpco/streaming-commons/pull/83)+* Fix case of windows header files to allow cross-compilation from linux to windows (https://github.com/fpco/streaming-commons/pull/84)++## 0.2.3.0++* Allow Unix sockets on Windows (https://github.com/fpco/streaming-commons/pull/80)++## 0.2.2.6++* Remove the zlib headers [#72](https://github.com/fpco/streaming-commons/issues/72)++## 0.2.2.4++* Fix docstrings for text 2.0++## 0.2.2.3++* Support text 2.0 [#65](https://github.com/fpco/streaming-commons/pull/65)++## 0.2.2.2++* Support GHC 9.2 [#62](https://github.com/fpco/streaming-commons/pull/62)++## 0.2.2.1++* Fix test suite compilation issue [stackage#5528](https://github.com/commercialhaskell/stackage/issues/5528)++## 0.2.2.0++* Remove `AI_ADDRCONFIG` [#58](https://github.com/fpco/streaming-commons/issues/58)++## 0.2.1.2++* Update `defaultReadBufferSize` to use system default instead of hardcoded value [#54](https://github.com/fpco/streaming-commons/issues/54)++## 0.2.1.1++* Fix a failing test case (invalid `ByteString` copying), does not affect library itself++## 0.2.1.0++* Change `bindRandomPortGen` to use binding to port 0++## 0.2.0++* Drop `blaze-builder` dependency+ ## 0.1.19  * Update `getAddrInfo` hints to allow hostnames and portnames [#46](https://github.com/fpco/streaming-commons/issues/46)
− Data/Streaming/Blaze.hs
@@ -1,150 +0,0 @@-{-# LANGUAGE CPP #-}-{-# LANGUAGE FlexibleContexts #-}-{-# LANGUAGE BangPatterns #-}-{-# LANGUAGE RankNTypes #-}--- | Convert a stream of blaze-builder @Builder@s into a stream of @ByteString@s.------ Adapted from blaze-builder-enumerator, written by myself and Simon Meier.------ Note: if you have blaze-builder >= 0.4, 'newBlazeRecv' just calls--- 'Data.Streaming.ByteString.Builder.newByteStringBuilderRecv'---- Note that the functions here can work in any monad built on top of @IO@ or--- @ST@.-module Data.Streaming.Blaze-    ( BlazeRecv-    , BlazePopper-    , BlazeFinish-    , newBlazeRecv--  -- * Buffers-  , Buffer--  -- ** Status information-  , freeSize-  , sliceSize-  , bufferSize--  -- ** Creation and modification-  , allocBuffer-  , reuseBuffer-  , nextSlice--  -- ** Conversion to bytestings-  , unsafeFreezeBuffer-  , unsafeFreezeNonEmptyBuffer--  -- * Buffer allocation strategies-  , BufferAllocStrategy-  , allNewBuffersStrategy-  , reuseBufferStrategy-  , defaultStrategy-    ) where--import Blaze.ByteString.Builder-import qualified Data.ByteString as S--#if MIN_VERSION_blaze_builder(0,4,0)--import Data.Streaming.ByteString.Builder--newBlazeRecv :: BufferAllocStrategy -> IO (BlazeRecv, BlazeFinish)-newBlazeRecv = newByteStringBuilderRecv-{-# INLINE newBlazeRecv #-}--#else /* !MIN_VERSION_blaze_builder(0,4,0) */--import Blaze.ByteString.Builder.Internal hiding (insertByteString)-import Blaze.ByteString.Builder.Internal.Types hiding (insertByteString)-import Blaze.ByteString.Builder.Internal.Buffer (execBuildStep)-import Data.IORef--import Data.Streaming.ByteString.Builder.Buffer--newBlazeRecv :: BufferAllocStrategy -> IO (BlazeRecv, BlazeFinish)-newBlazeRecv (ioBufInit, nextBuf) = do-    refBuf <- newIORef ioBufInit-    return (push refBuf, finish refBuf)-  where-    finish refBuf = do-        ioBuf <- readIORef refBuf-        buf <- ioBuf-        return $ unsafeFreezeNonEmptyBuffer buf--    push refBuf builder = do-        refStep <- newIORef $ Left $ unBuilder builder (buildStep finalStep)-        return $ popper refBuf refStep-      where-        finalStep !(BufRange pf _) = return $ Done pf ()--    popper refBuf refStep = do-        ioBuf <- readIORef refBuf-        ebStep <- readIORef refStep-        case ebStep of-            Left bStep -> do-                !buf   <- ioBuf-                signal <- execBuildStep bStep buf-                case signal of-                    Done op' _ -> do-                        writeIORef refBuf $ return $ updateEndOfSlice buf op'-                        return S.empty-                    BufferFull minSize op' bStep' -> do-                        let buf' = updateEndOfSlice buf op'-                            {-# INLINE cont #-}-                            cont mbs = do-                                -- sequencing the computation of the next buffer-                                -- construction here ensures that the reference to the-                                -- foreign pointer `fp` is lost as soon as possible.-                                ioBuf' <- nextBuf minSize buf'-                                writeIORef refBuf ioBuf'-                                writeIORef refStep $ Left bStep'-                                case mbs of-                                    Just bs | not $ S.null bs -> return bs-                                    _ -> popper refBuf refStep-                        cont $ unsafeFreezeNonEmptyBuffer buf'-                    InsertByteString op' bs bStep' -> do-                        let buf' = updateEndOfSlice buf op'-                        let yieldBS = do-                                nextBuf 1 buf' >>= writeIORef refBuf-                                writeIORef refStep $ Left bStep'-                                if S.null bs-                                    then popper refBuf refStep-                                    else return bs-                        case unsafeFreezeNonEmptyBuffer buf' of-                            Nothing -> yieldBS-                            Just bs' -> do-                                writeIORef refStep $ Right yieldBS-                                return bs'-            Right action -> action--{--helper :: (MonadBase base m, PrimMonad base, Monad (t m), MonadTrans t)-       => t m (Maybe (Flush Builder))-       -> (Flush S.ByteString -> t m ())-       -> BufferAllocStrategy-       -> t m ()-helper await' yield' (ioBufInit, nextBuf) =-    loop ioBufInit-  where-    loop ioBuf = do-        await' >>= maybe (close ioBuf) (cont' ioBuf)--    cont' ioBuf Flush = push ioBuf flush $ \ioBuf' -> yield' Flush >> loop ioBuf'-    cont' ioBuf (Chunk builder) = push ioBuf builder loop--    close ioBuf = do-        buf <- lift $ unsafeLiftIO $ ioBuf-        maybe (return ()) (yield' . Chunk) (unsafeFreezeNonEmptyBuffer buf)--}--#endif /* !MIN_VERSION_blaze_builder(0,4,0) */---- | Provides a series of @ByteString@s until empty, at which point it provides--- an empty @ByteString@.------ Since 0.1.2-type BlazePopper = IO S.ByteString--type BlazeRecv = Builder -> IO BlazePopper--type BlazeFinish = IO (Maybe S.ByteString)
Data/Streaming/ByteString/Builder.hs view
@@ -19,6 +19,7 @@     ( BuilderRecv     , BuilderPopper     , BuilderFinish+    , newBuilderRecv     , newByteStringBuilderRecv      -- * toByteStringIO@@ -74,6 +75,10 @@ type BuilderRecv = Builder -> IO BuilderPopper  type BuilderFinish = IO (Maybe S.ByteString)++newBuilderRecv :: BufferAllocStrategy -> IO (BuilderRecv, BuilderFinish)+newBuilderRecv = newByteStringBuilderRecv+{-# INLINE newBuilderRecv #-}  newByteStringBuilderRecv :: BufferAllocStrategy -> IO (BuilderRecv, BuilderFinish) newByteStringBuilderRecv (ioBufInit, nextBuf) = do
Data/Streaming/ByteString/Builder/Buffer.hs view
@@ -40,8 +40,6 @@  import Data.ByteString.Lazy.Internal (defaultChunkSize) -#if MIN_VERSION_blaze_builder(0,4,0)- import qualified Data.ByteString as S import qualified Data.ByteString.Internal as S import Foreign (Word8, ForeignPtr, Ptr, plusPtr, minusPtr)@@ -196,13 +194,6 @@     tryReuseBuffer reqSize buf       | bufferSize buf >= reqSize = return $ return (reuseBuffer buf)       | otherwise                 = return $ allocBuffer reqSize---#else  /* !MIN_VERSION_blaze_builder(0,4,0) */--import Blaze.ByteString.Builder.Internal.Buffer--#endif /* !MIN_VERSION_blaze_builder(0,4,0) */  defaultStrategy :: BufferAllocStrategy defaultStrategy = allNewBuffersStrategy defaultChunkSize
− Data/Streaming/ByteString/Builder/Class.hs
@@ -1,43 +0,0 @@-{-# LANGUAGE CPP #-}--- | Typeclass to stream blaze-builder and bytestring(-builder) @Builder@s.------ Since 0.1.10.0----module Data.Streaming.ByteString.Builder.Class-    ( StreamingBuilder (..)-    , module Data.Streaming.ByteString.Builder-    ) where--import qualified Data.ByteString.Builder-import qualified Data.ByteString.Builder.Internal-import Data.Monoid (Monoid)--import Data.Streaming.ByteString.Builder hiding (newByteStringBuilderRecv)-import qualified Data.Streaming.ByteString.Builder--#if !MIN_VERSION_blaze_builder(0,4,0)--import qualified Blaze.ByteString.Builder--import Data.Streaming.Blaze--instance StreamingBuilder Blaze.ByteString.Builder.Builder where-    newBuilderRecv = newBlazeRecv-    builderFlush   = Blaze.ByteString.Builder.flush--#endif /* !MIN_VERSION_blaze_builder(0,4,0) */---- | Typeclass to stream blaze-builder (< 0.4) and bytestring(-builder) @Builder@s.--- This is primarily to aid the transition from blaze-builder to bytestring @Builder@s--- (if using blaze-builder >= 0.4, there is only one instance, since the @Builder@--- type is shared).------ Since 0.1.10.0----class Data.Monoid.Monoid b => StreamingBuilder b where-    newBuilderRecv :: BufferAllocStrategy -> IO (b -> IO BuilderPopper, BuilderFinish)-    builderFlush   :: b--instance StreamingBuilder Data.ByteString.Builder.Builder where-    newBuilderRecv = Data.Streaming.ByteString.Builder.newByteStringBuilderRecv-    builderFlush   = Data.ByteString.Builder.Internal.flush
Data/Streaming/Network.hs view
@@ -8,30 +8,24 @@     , HostPreference     , Message (..)     , AppData-#if !WINDOWS     , ServerSettingsUnix     , ClientSettingsUnix     , AppDataUnix-#endif       -- ** Smart constructors     , serverSettingsTCP     , serverSettingsTCPSocket     , clientSettingsTCP     , serverSettingsUDP     , clientSettingsUDP-#if !WINDOWS     , serverSettingsUnix     , clientSettingsUnix-#endif     , message       -- ** Classes     , HasPort (..)     , HasAfterBind (..)     , HasReadWrite (..)     , HasReadBufferSize (..)-#if !WINDOWS     , HasPath (..)-#endif       -- ** Setters     , setPort     , setHost@@ -39,9 +33,7 @@     , setAfterBind     , setNeedLocalAddr     , setReadBufferSize-#if !WINDOWS     , setPath-#endif       -- ** Getters     , getPort     , getHost@@ -49,9 +41,7 @@     , getAfterBind     , getNeedLocalAddr     , getReadBufferSize-#if !WINDOWS     , getPath-#endif     , appRead     , appWrite     , appSockAddr@@ -82,19 +72,17 @@     , bindPortUDP     , bindRandomPortUDP     , getSocketUDP-#if !WINDOWS       -- ** Unix     , bindPath     , getSocketUnix     , runUnixServer     , runUnixClient-#endif     ) where  import qualified Network.Socket as NS import Data.Streaming.Network.Internal import Control.Concurrent (threadDelay)-import Control.Exception (IOException, try, SomeException, throwIO, bracketOnError)+import Control.Exception (IOException, try, SomeException, throwIO, bracketOnError, bracket) import Network.Socket (Socket, AddrInfo, SocketType) import Network.Socket.ByteString (recv, sendAll) import System.IO.Error (isDoesNotExistError)@@ -108,7 +96,7 @@ import Control.Monad (forever) import Data.IORef (IORef, newIORef, atomicModifyIORef) import Data.Array.Unboxed ((!), UArray, listArray)-import System.IO.Unsafe (unsafePerformIO)+import System.IO.Unsafe (unsafePerformIO, unsafeDupablePerformIO) import System.Random (randomRIO) import System.IO.Error (isFullErrorType, ioeGetErrorType) #if WINDOWS@@ -120,8 +108,7 @@     NS.getAddrInfo (Just hints) (Just host') (Just $ show port')   where     hints = NS.defaultHints {-                NS.addrFlags = [NS.AI_ADDRCONFIG]-              , NS.addrSocketType = sockettype+                NS.addrSocketType = sockettype               , NS.addrFamily = af               } @@ -157,9 +144,7 @@ bindPortGenEx :: [(NS.SocketOption, Int)] -> SocketType -> Int -> HostPreference -> IO Socket bindPortGenEx sockOpts sockettype p s = do     let hints = NS.defaultHints-            { NS.addrFlags = [ NS.AI_PASSIVE-                             , NS.AI_ADDRCONFIG-                             ]+            { NS.addrFlags = [NS.AI_PASSIVE]             , NS.addrSocketType = sockettype             }         host =@@ -177,9 +162,11 @@                 HostIPv4     -> addrs4 ++ addrs6                 HostIPv4Only -> addrs4                 HostIPv6     -> addrs6 ++ addrs4-                HostIPv6Only -> addrs6+                HostIPv6Only -> addrs6 -- this isn't enough, IPv6Only socket option must also be set                 _ -> addrs +        sockOpts' = if s == HostIPv6Only then ((NS.IPv6Only,1):sockOpts) else sockOpts+         tryAddrs (addr1:rest@(_:_)) =                                       E.catch                                       (theBody addr1)@@ -192,7 +179,7 @@           (NS.socket (NS.addrFamily addr) (NS.addrSocketType addr) (NS.addrProtocol addr))           NS.close           (\sock -> do-              mapM_ (\(opt,v) -> NS.setSocketOption sock opt v) sockOpts+              mapM_ (\(opt,v) -> NS.setSocketOption sock opt v) sockOpts'               NS.bind sock (NS.addrAddress addr)               return sock           )@@ -200,29 +187,12 @@  -- | Bind to a random port number. Especially useful for writing network tests. ----- This will attempt 30 different port numbers before giving up and throwing an--- exception.--- -- Since 0.1.1 bindRandomPortGen :: SocketType -> HostPreference -> IO (Int, Socket)-bindRandomPortGen sockettype s =-    loop (30 :: Int)-  where-    loop cnt = do-        port <- getUnassignedPort-        esocket <- try $ bindPortGen sockettype port s-        case esocket :: Either IOException Socket of-            Left e-                | cnt <= 1 -> error $ concat-                    [ "Data.Streaming.Network.bindRandomPortGen: Could not get port. Last attempted: "-                    , show port-                    , ". Exception was: "-                    , show e-                    ]-                | otherwise -> do-                    skipUnassigned 50-                    loop $! cnt - 1-            Right socket -> return (port, socket)+bindRandomPortGen sockettype s = do+  socket <- bindPortGen sockettype 0 s+  port <- NS.socketPort socket+  return (fromIntegral port, socket)  -- | Top 10 Largest IANA unassigned port ranges with no unauthorized uses known unassignedPortsList :: [Int]@@ -263,14 +233,6 @@         | i > unassignedPortsMax = (succ unassignedPortsMin, unassignedPorts ! unassignedPortsMin)         | otherwise = (succ i, unassignedPorts ! i) --- | Skip ahead in the unassigned ports list by the given number-skipUnassigned :: Int -> IO ()-skipUnassigned i = do-    !() <- atomicModifyIORef nextUnusedPort $ \j ->-        let k = i + j `mod` unassignedPortsMax-         in k `seq` (k, ())-    return ()- -- | Attempt to connect to the given host/port. getSocketUDP :: String -> Int -> IO (Socket, AddrInfo) getSocketUDP = getSocketGen NS.Datagram@@ -288,10 +250,11 @@ bindRandomPortUDP :: HostPreference -> IO (Int, Socket) bindRandomPortUDP = bindRandomPortGen NS.Datagram +{-# NOINLINE defaultReadBufferSize #-} defaultReadBufferSize :: Int-defaultReadBufferSize = 32768+defaultReadBufferSize = unsafeDupablePerformIO $+  bracket (NS.socket NS.AF_INET NS.Stream 0) NS.close (\sock -> NS.getSocketOption sock NS.RecvBuffer) -#if !WINDOWS -- | Attempt to connect to the given Unix domain socket path. getSocketUnix :: FilePath -> IO Socket getSocketUnix path = do@@ -343,7 +306,6 @@     { clientPath = path     , clientReadBufferSizeUnix = defaultReadBufferSize     }-#endif  #if defined(__GLASGOW_HASKELL__) && WINDOWS -- Socket recv and accept calls on Windows platform cannot be interrupted when compiled with -threaded.@@ -521,7 +483,6 @@ getAddrFamily :: ClientSettings -> NS.Family getAddrFamily = clientAddrFamily -#if !WINDOWS class HasPath a where     pathLens :: Functor f => (FilePath -> f FilePath) -> a -> f a instance HasPath ServerSettingsUnix where@@ -534,7 +495,6 @@  setPath :: HasPath a => FilePath -> a -> a setPath p = runIdentity . pathLens (const (Identity p))-#endif  setNeedLocalAddr :: Bool -> ServerSettings -> ServerSettings setNeedLocalAddr x y = y { serverNeedLocalAddr = x }@@ -546,10 +506,8 @@     afterBindLens :: Functor f => ((Socket -> IO ()) -> f (Socket -> IO ())) -> a -> f a instance HasAfterBind ServerSettings where     afterBindLens f ss = fmap (\p -> ss { serverAfterBind = p }) (f (serverAfterBind ss))-#if !WINDOWS instance HasAfterBind ServerSettingsUnix where     afterBindLens f ss = fmap (\p -> ss { serverAfterBindUnix = p }) (f (serverAfterBindUnix ss))-#endif  getAfterBind :: HasAfterBind a => a -> (Socket -> IO ()) getAfterBind = getConstant . afterBindLens Constant@@ -566,14 +524,12 @@ -- | Since 0.1.13 instance HasReadBufferSize ClientSettings where     readBufferSizeLens f cs = fmap (\p -> cs { clientReadBufferSize = p }) (f (clientReadBufferSize cs))-#if !WINDOWS -- | Since 0.1.13 instance HasReadBufferSize ServerSettingsUnix where     readBufferSizeLens f ss = fmap (\p -> ss { serverReadBufferSizeUnix = p }) (f (serverReadBufferSizeUnix ss)) -- | Since 0.1.14 instance HasReadBufferSize ClientSettingsUnix where     readBufferSizeLens f ss = fmap (\p -> ss { clientReadBufferSizeUnix = p }) (f (clientReadBufferSizeUnix ss))-#endif  -- | Get buffer size used when reading from socket. --@@ -666,11 +622,9 @@ instance HasReadWrite AppData where     readLens f a = fmap (\x -> a { appRead' = x }) (f (appRead' a))     writeLens f a = fmap (\x -> a { appWrite' = x }) (f (appWrite' a))-#if !WINDOWS instance HasReadWrite AppDataUnix where     readLens f a = fmap (\x -> a { appReadUnix = x }) (f (appReadUnix a))     writeLens f a = fmap (\x -> a { appWriteUnix = x }) (f (appWriteUnix a))-#endif  appRead :: HasReadWrite a => a -> IO ByteString appRead = getConstant . readLens Constant@@ -678,7 +632,6 @@ appWrite :: HasReadWrite a => a -> ByteString -> IO () appWrite = getConstant . writeLens Constant -#if !WINDOWS -- | Run an @Application@ with the given settings. This function will create a -- new listening socket, accept connections on it, and spawn a new thread for -- each connection.@@ -712,4 +665,3 @@         { appReadUnix = safeRecv sock readBufferSize         , appWriteUnix = sendAll sock         })-#endif
Data/Streaming/Network/Internal.hs view
@@ -5,11 +5,9 @@     , HostPreference (..)     , Message (..)     , AppData (..)-#if !WINDOWS     , ServerSettingsUnix (..)     , ClientSettingsUnix (..)     , AppDataUnix (..)-#endif     ) where  import Data.String (IsString (..))@@ -73,7 +71,6 @@     fromString "!6" = HostIPv6Only     fromString s = Host s -#if !WINDOWS -- | Settings for a Unix domain sockets server. data ServerSettingsUnix = ServerSettingsUnix     { serverPath :: !FilePath@@ -92,7 +89,6 @@     { appReadUnix :: !(IO ByteString)     , appWriteUnix :: !(ByteString -> IO ())     }-#endif  -- | Representation of a single UDP message data Message = Message { msgData :: {-# UNPACK #-} !ByteString
Data/Streaming/Process.hs view
@@ -79,6 +79,9 @@  -- | Close the stream with the child process. --+-- You usually do not want to use this, as it will leave the corresponding file+-- descriptor unassigned and hence available for re-use in the child process.+-- -- Since 0.1.4 data ClosedStream = ClosedStream 
Data/Streaming/Text.hs view
@@ -4,6 +4,7 @@ {-# LANGUAGE GeneralizedNewtypeDeriving #-} {-# LANGUAGE MagicHash                  #-} {-# LANGUAGE Rank2Types                 #-}+{-# LANGUAGE ScopedTypeVariables        #-} {-# LANGUAGE UnliftedFFITypes           #-}  --@@ -48,7 +49,7 @@  import           Control.Monad.ST                  (ST, runST) import           Control.Monad.ST.Unsafe           (unsafeIOToST, unsafeSTToIO)-import           Data.Bits                         ((.|.))+import           Data.Bits                         ((.|.), shiftL) import qualified Data.ByteString                   as B import           Data.ByteString.Internal          (ByteString (PS)) import qualified Data.ByteString.Unsafe            as B@@ -59,10 +60,8 @@ import qualified Data.Text.Internal.Encoding.Utf16 as U16 import qualified Data.Text.Internal.Encoding.Utf32 as U32 import qualified Data.Text.Internal.Encoding.Utf8  as U8-import           Data.Text.Internal.Unsafe.Char    (unsafeChr, unsafeChr32,+import           Data.Text.Internal.Unsafe.Char    (unsafeWrite, unsafeChr32,                                                     unsafeChr8)-import           Data.Text.Internal.Unsafe.Char    (unsafeWrite)-import           Data.Text.Internal.Unsafe.Shift   (shiftL) import           Data.Word                         (Word32, Word8) import           Foreign.C.Types                   (CSize (..)) import           Foreign.ForeignPtr                (withForeignPtr)@@ -72,6 +71,17 @@ import           Foreign.Storable                  (Storable, peek, poke) import           GHC.Base                          (MutableByteArray#) +#if MIN_VERSION_text(2,0,0)+import           Control.Exception                 (try, evaluate)+import qualified Data.Text.Encoding                as TE+import qualified Data.Text.Encoding.Error          as TE+import           Data.Text.Internal.Unsafe.Char    (unsafeChr16)+import           System.IO.Unsafe                  (unsafePerformIO)+#else+import           Data.Text.Internal.Unsafe.Char    (unsafeChr)+unsafeChr16 = unsafeChr+#endif+ data S = S0        | S1 {-# UNPACK #-} !Word8        | S2 {-# UNPACK #-} !Word8 {-# UNPACK #-} !Word8@@ -108,6 +118,20 @@ -- | /O(n)/ Convert a 'ByteString' into a 'Stream Char', using -- UTF-8 encoding. decodeUtf8 :: B.ByteString -> DecodeResult+#if MIN_VERSION_text(2,0,0)+decodeUtf8 = go mempty TE.streamDecodeUtf8+  where+    go :: B.ByteString -> (B.ByteString -> TE.Decoding) -> B.ByteString -> DecodeResult+    go prev decoder curr = case unsafePerformIO (try (evaluate (decoder curr))) of+      -- Caught exception does not allow to reconstruct 'DecodeResultFailure',+      -- so delegating this to 'decodeUtf8Pure'+      Left (_ :: TE.UnicodeException) -> decodeUtf8Pure (prev <> curr)+      Right (TE.Some decoded undecoded cont)+          -- An empty bytestring indicates end-of-input, if we still have undecoded bytes that+          -- becomes a failure.+          | B.null curr && not (B.null undecoded) -> DecodeResultFailure decoded undecoded+          | otherwise -> DecodeResultSuccess decoded (go undecoded cont)+#else decodeUtf8 = decodeChunk B.empty 0 0  where   decodeChunkCheck :: B.ByteString -> CodePoint -> DecoderState -> B.ByteString -> DecodeResult@@ -158,6 +182,7 @@                   return $! DecodeResultSuccess chunkText                          $! decodeChunkCheck unused codepoint state         in loop (ptr `plusPtr` off)+#endif  -- | /O(n)/ Convert a 'ByteString' into a 'Stream Char', using -- UTF-8 encoding.@@ -172,7 +197,13 @@             _  -> DecodeResultFailure T.empty $ toBS s     beginChunk s0 ps = runST $ do         let initLen = B.length ps+#if MIN_VERSION_text(2,0,0)+        -- Worst-case scenario: the very first byte finishes a 4-byte sequence,+        -- so decoding results in 4 + (initLen - 1) bytes.+        marr <- A.new (initLen + 3)+#else         marr <- A.new (initLen + 1)+#endif         let start !i !j                 | i >= len = do                     t <- getText j marr@@ -237,12 +268,18 @@             _  -> DecodeResultFailure T.empty $ toBS s     beginChunk s0 ps = runST $ do         let initLen = B.length ps-        marr <- A.new (initLen + 1)+#if MIN_VERSION_text(2,0,0)+        -- Worst-case scenario: each Word16 in UTF16 gives three Word8 in UTF8+        -- and left-over from a previous chunk gives four Word8 in UTF8+        marr <- A.new ((initLen `div` 2) * 3 + 4) -- of Word8+#else+        marr <- A.new (initLen + 1) -- of Word16+#endif         let start !i !j                 | i >= len = do                     t <- getText j marr                     return $! DecodeResultSuccess t (beginChunk S0)-                | i + 1 < len && U16.validate1 x1    = addChar' 2 (unsafeChr x1)+                | i + 1 < len && U16.validate1 x1    = addChar' 2 (unsafeChr16 x1)                 | i + 3 < len && U16.validate2 x1 x2 = addChar' 4 (U16.chr2 x1 x2)                 | i + 3 < len = do                     t <- getText j marr@@ -271,7 +308,7 @@                     S1 a ->                         let x1 = combine a x                          in if U16.validate1 x1-                                then addChar' (unsafeChr x1)+                                then addChar' (unsafeChr16 x1)                                 else checkCont (S2 a x) (i + 1)                     S2 a b -> checkCont (S3 a b x) (i + 1)                     S3 a b c ->@@ -306,12 +343,18 @@             _  -> DecodeResultFailure T.empty $ toBS s     beginChunk s0 ps = runST $ do         let initLen = B.length ps-        marr <- A.new (initLen + 1)+#if MIN_VERSION_text(2,0,0)+        -- Worst-case scenario: each Word16 in UTF16 gives three Word8 in UTF8+        -- and left-over from a previous chunk gives four Word8 in UTF8+        marr <- A.new ((initLen `div` 2) * 3 + 4) -- of Word8+#else+        marr <- A.new (initLen + 1) -- of Word16+#endif         let start !i !j                 | i >= len = do                     t <- getText j marr                     return $! DecodeResultSuccess t (beginChunk S0)-                | i + 1 < len && U16.validate1 x1    = addChar' 2 (unsafeChr x1)+                | i + 1 < len && U16.validate1 x1    = addChar' 2 (unsafeChr16 x1)                 | i + 3 < len && U16.validate2 x1 x2 = addChar' 4 (U16.chr2 x1 x2)                 | i + 3 < len = do                     t <- getText j marr@@ -340,7 +383,7 @@                     S1 a ->                         let x1 = combine a x                          in if U16.validate1 x1-                                then addChar' (unsafeChr x1)+                                then addChar' (unsafeChr16 x1)                                 else checkCont (S2 a x) (i + 1)                     S2 a b -> checkCont (S3 a b x) (i + 1)                     S3 a b c ->@@ -375,7 +418,14 @@             _  -> DecodeResultFailure T.empty $ toBS s     beginChunk s0 ps = runST $ do         let initLen = B.length ps `div` 2-        marr <- A.new (initLen + 1)+#if MIN_VERSION_text(2,0,0)+        -- Worst-case scenario: the very first byte finishes a 4-byte UTF8 sequence,+        -- and other codepoints have 4-byte UTF8 representation as well.+        -- This gives 4 + (B.length ps - 1), or (for odd B.length) initLen * 2 + 4.+        marr <- A.new (initLen * 2 + 4) -- of Word8+#else+        marr <- A.new (initLen + 1) -- of Word16+#endif         let start !i !j                 | i >= len = do                     t <- getText j marr@@ -441,7 +491,14 @@             _  -> DecodeResultFailure T.empty $ toBS s     beginChunk s0 ps = runST $ do         let initLen = B.length ps `div` 2-        marr <- A.new (initLen + 1)+#if MIN_VERSION_text(2,0,0)+        -- Worst-case scenario: the very first byte finishes a 4-byte UTF8 sequence,+        -- and other codepoints have 4-byte UTF8 representation as well.+        -- This gives 4 + (B.length ps - 1), or (for odd B.length) initLen * 2 + 4.+        marr <- A.new (initLen * 2 + 4) -- of Word8+#else+        marr <- A.new (initLen + 1) -- of Word16+#endif         let start !i !j                 | i >= len = do                     t <- getText j marr
Data/Streaming/Zlib/Lowlevel.hs view
@@ -23,6 +23,7 @@     , c_call_inflate_set_dictionary     ) where +import Data.Functor (void) import Foreign.C import Foreign.Ptr import Codec.Compression.Zlib (WindowBits (WindowBits))@@ -43,19 +44,19 @@  foreign import ccall unsafe "streaming_commons_deflate_init2"     c_deflateInit2 :: ZStream' -> CInt -> CInt -> CInt -> CInt-                   -> IO ()+                   -> IO CInt  deflateInit2 :: ZStream' -> Int -> WindowBits -> Int -> Strategy -> IO ()-deflateInit2 zstream level windowBits memlevel strategy =+deflateInit2 zstream level windowBits memlevel strategy = void $     c_deflateInit2 zstream (fromIntegral level) (wbToInt windowBits)                    (fromIntegral memlevel)                    (fromIntegral $ fromEnum strategy)  foreign import ccall unsafe "streaming_commons_inflate_init2"-    c_inflateInit2 :: ZStream' -> CInt -> IO ()+    c_inflateInit2 :: ZStream' -> CInt -> IO CInt  inflateInit2 :: ZStream' -> WindowBits -> IO ()-inflateInit2 zstream wb = c_inflateInit2 zstream (wbToInt wb)+inflateInit2 zstream wb = void $ c_inflateInit2 zstream (wbToInt wb)  foreign import ccall unsafe "&streaming_commons_free_z_stream_inflate"     c_free_z_stream_inflate :: FunPtr (ZStream' -> IO ())@@ -94,10 +95,10 @@     c_call_deflate_full_flush :: ZStream' -> IO CInt  foreign import ccall unsafe "streaming_commons_deflate_set_dictionary"-    c_call_deflate_set_dictionary :: ZStream' -> Ptr CChar -> CUInt -> IO ()+    c_call_deflate_set_dictionary :: ZStream' -> Ptr CChar -> CUInt -> IO CInt  foreign import ccall unsafe "streaming_commons_inflate_set_dictionary"-    c_call_inflate_set_dictionary :: ZStream' -> Ptr CChar -> CUInt -> IO ()+    c_call_inflate_set_dictionary :: ZStream' -> Ptr CChar -> CUInt -> IO CInt  wbToInt :: WindowBits -> CInt wbToInt (WindowBits i) = fromIntegral i
− Data/Text/Internal/Encoding/Utf16.hs
@@ -1,45 +0,0 @@-{-# LANGUAGE MagicHash, BangPatterns #-}---- |--- Module      : Data.Text.Internal.Encoding.Utf16--- Copyright   : (c) 2008, 2009 Tom Harper,---               (c) 2009 Bryan O'Sullivan,---               (c) 2009 Duncan Coutts------ License     : BSD-style--- Maintainer  : bos@serpentine.com--- Stability   : experimental--- Portability : GHC------ /Warning/: this is an internal module, and does not have a stable--- API or name. Functions in this module may not check or enforce--- preconditions expected by public modules. Use at your own risk!------ Basic UTF-16 validation and character manipulation.-module Data.Text.Internal.Encoding.Utf16-    (-      chr2-    , validate1-    , validate2-    ) where--import GHC.Exts-import GHC.Word (Word16(..))--chr2 :: Word16 -> Word16 -> Char-chr2 (W16# a#) (W16# b#) = C# (chr# (upper# +# lower# +# 0x10000#))-    where-      !x# = word2Int# a#-      !y# = word2Int# b#-      !upper# = uncheckedIShiftL# (x# -# 0xD800#) 10#-      !lower# = y# -# 0xDC00#-{-# INLINE chr2 #-}--validate1    :: Word16 -> Bool-validate1 x1 = x1 < 0xD800 || x1 > 0xDFFF-{-# INLINE validate1 #-}--validate2       ::  Word16 -> Word16 -> Bool-validate2 x1 x2 = x1 >= 0xD800 && x1 <= 0xDBFF &&-                  x2 >= 0xDC00 && x2 <= 0xDFFF-{-# INLINE validate2 #-}
− Data/Text/Internal/Encoding/Utf32.hs
@@ -1,26 +0,0 @@--- |--- Module      : Data.Text.Internal.Encoding.Utf32--- Copyright   : (c) 2008, 2009 Tom Harper,---               (c) 2009, 2010 Bryan O'Sullivan,---               (c) 2009 Duncan Coutts------ License     : BSD-style--- Maintainer  : bos@serpentine.com--- Stability   : experimental--- Portability : portable------ /Warning/: this is an internal module, and does not have a stable--- API or name. Functions in this module may not check or enforce--- preconditions expected by public modules. Use at your own risk!------ Basic UTF-32 validation.-module Data.Text.Internal.Encoding.Utf32-    (-      validate-    ) where--import Data.Word (Word32)--validate    :: Word32 -> Bool-validate x1 = x1 < 0xD800 || (x1 > 0xDFFF && x1 <= 0x10FFFF)-{-# INLINE validate #-}
− Data/Text/Internal/Encoding/Utf8.hs
@@ -1,168 +0,0 @@-{-# LANGUAGE CPP, MagicHash, BangPatterns #-}---- |--- Module      : Data.Text.Internal.Encoding.Utf8--- Copyright   : (c) 2008, 2009 Tom Harper,---               (c) 2009, 2010 Bryan O'Sullivan,---               (c) 2009 Duncan Coutts------ License     : BSD-style--- Maintainer  : bos@serpentine.com--- Stability   : experimental--- Portability : GHC------ /Warning/: this is an internal module, and does not have a stable--- API or name. Functions in this module may not check or enforce--- preconditions expected by public modules. Use at your own risk!------ Basic UTF-8 validation and character manipulation.-module Data.Text.Internal.Encoding.Utf8-    (-    -- Decomposition-      ord2-    , ord3-    , ord4-    -- Construction-    , chr2-    , chr3-    , chr4-    -- * Validation-    , validate1-    , validate2-    , validate3-    , validate4-    ) where--#if defined(TEST_SUITE)-# undef ASSERTS-#endif--#if defined(ASSERTS)-import Control.Exception (assert)-#endif-import Data.Bits ((.&.))-import Data.Text.Internal.Unsafe.Char (ord)-import Data.Text.Internal.Unsafe.Shift (shiftR)-import GHC.Exts-import GHC.Word (Word8(..))--default(Int)--between :: Word8                -- ^ byte to check-        -> Word8                -- ^ lower bound-        -> Word8                -- ^ upper bound-        -> Bool-between x y z = x >= y && x <= z-{-# INLINE between #-}--ord2 :: Char -> (Word8,Word8)-ord2 c =-#if defined(ASSERTS)-    assert (n >= 0x80 && n <= 0x07ff)-#endif-    (x1,x2)-    where-      n  = ord c-      x1 = fromIntegral $ (n `shiftR` 6) + 0xC0-      x2 = fromIntegral $ (n .&. 0x3F)   + 0x80--ord3 :: Char -> (Word8,Word8,Word8)-ord3 c =-#if defined(ASSERTS)-    assert (n >= 0x0800 && n <= 0xffff)-#endif-    (x1,x2,x3)-    where-      n  = ord c-      x1 = fromIntegral $ (n `shiftR` 12) + 0xE0-      x2 = fromIntegral $ ((n `shiftR` 6) .&. 0x3F) + 0x80-      x3 = fromIntegral $ (n .&. 0x3F) + 0x80--ord4 :: Char -> (Word8,Word8,Word8,Word8)-ord4 c =-#if defined(ASSERTS)-    assert (n >= 0x10000)-#endif-    (x1,x2,x3,x4)-    where-      n  = ord c-      x1 = fromIntegral $ (n `shiftR` 18) + 0xF0-      x2 = fromIntegral $ ((n `shiftR` 12) .&. 0x3F) + 0x80-      x3 = fromIntegral $ ((n `shiftR` 6) .&. 0x3F) + 0x80-      x4 = fromIntegral $ (n .&. 0x3F) + 0x80--chr2 :: Word8 -> Word8 -> Char-chr2 (W8# x1#) (W8# x2#) = C# (chr# (z1# +# z2#))-    where-      !y1# = word2Int# x1#-      !y2# = word2Int# x2#-      !z1# = uncheckedIShiftL# (y1# -# 0xC0#) 6#-      !z2# = y2# -# 0x80#-{-# INLINE chr2 #-}--chr3 :: Word8 -> Word8 -> Word8 -> Char-chr3 (W8# x1#) (W8# x2#) (W8# x3#) = C# (chr# (z1# +# z2# +# z3#))-    where-      !y1# = word2Int# x1#-      !y2# = word2Int# x2#-      !y3# = word2Int# x3#-      !z1# = uncheckedIShiftL# (y1# -# 0xE0#) 12#-      !z2# = uncheckedIShiftL# (y2# -# 0x80#) 6#-      !z3# = y3# -# 0x80#-{-# INLINE chr3 #-}--chr4             :: Word8 -> Word8 -> Word8 -> Word8 -> Char-chr4 (W8# x1#) (W8# x2#) (W8# x3#) (W8# x4#) =-    C# (chr# (z1# +# z2# +# z3# +# z4#))-    where-      !y1# = word2Int# x1#-      !y2# = word2Int# x2#-      !y3# = word2Int# x3#-      !y4# = word2Int# x4#-      !z1# = uncheckedIShiftL# (y1# -# 0xF0#) 18#-      !z2# = uncheckedIShiftL# (y2# -# 0x80#) 12#-      !z3# = uncheckedIShiftL# (y3# -# 0x80#) 6#-      !z4# = y4# -# 0x80#-{-# INLINE chr4 #-}--validate1 :: Word8 -> Bool-validate1 x1 = x1 <= 0x7F-{-# INLINE validate1 #-}--validate2 :: Word8 -> Word8 -> Bool-validate2 x1 x2 = between x1 0xC2 0xDF && between x2 0x80 0xBF-{-# INLINE validate2 #-}--validate3 :: Word8 -> Word8 -> Word8 -> Bool-{-# INLINE validate3 #-}-validate3 x1 x2 x3 = validate3_1 || validate3_2 || validate3_3 || validate3_4-  where-    validate3_1 = (x1 == 0xE0) &&-                  between x2 0xA0 0xBF &&-                  between x3 0x80 0xBF-    validate3_2 = between x1 0xE1 0xEC &&-                  between x2 0x80 0xBF &&-                  between x3 0x80 0xBF-    validate3_3 = x1 == 0xED &&-                  between x2 0x80 0x9F &&-                  between x3 0x80 0xBF-    validate3_4 = between x1 0xEE 0xEF &&-                  between x2 0x80 0xBF &&-                  between x3 0x80 0xBF--validate4 :: Word8 -> Word8 -> Word8 -> Word8 -> Bool-{-# INLINE validate4 #-}-validate4 x1 x2 x3 x4 = validate4_1 || validate4_2 || validate4_3-  where-    validate4_1 = x1 == 0xF0 &&-                  between x2 0x90 0xBF &&-                  between x3 0x80 0xBF &&-                  between x4 0x80 0xBF-    validate4_2 = between x1 0xF1 0xF3 &&-                  between x2 0x80 0xBF &&-                  between x3 0x80 0xBF &&-                  between x4 0x80 0xBF-    validate4_3 = x1 == 0xF4 &&-                  between x2 0x80 0x8F &&-                  between x3 0x80 0xBF &&-                  between x4 0x80 0xBF
− Data/Text/Internal/Unsafe/Char.hs
@@ -1,95 +0,0 @@-{-# LANGUAGE CPP, MagicHash #-}---- |--- Module      : Data.Text.Internal.Unsafe.Char--- Copyright   : (c) 2008, 2009 Tom Harper,---               (c) 2009, 2010 Bryan O'Sullivan,---               (c) 2009 Duncan Coutts------ License     : BSD-style--- Maintainer  : bos@serpentine.com--- Stability   : experimental--- Portability : GHC------ /Warning/: this is an internal module, and does not have a stable--- API or name. Functions in this module may not check or enforce--- preconditions expected by public modules. Use at your own risk!------ Fast character manipulation functions.-module Data.Text.Internal.Unsafe.Char-    (-      ord-    , unsafeChr-    , unsafeChr8-    , unsafeChr32-    , unsafeWrite-    -- , unsafeWriteRev-    ) where--#ifdef ASSERTS-import Control.Exception (assert)-#endif-import Control.Monad.ST (ST)-import Data.Bits ((.&.))-import Data.Text.Internal.Unsafe.Shift (shiftR)-import GHC.Exts (Char(..), Int(..), chr#, ord#, word2Int#)-import GHC.Word (Word8(..), Word16(..), Word32(..))-import qualified Data.Text.Array as A--ord :: Char -> Int-ord (C# c#) = I# (ord# c#)-{-# INLINE ord #-}--unsafeChr :: Word16 -> Char-unsafeChr (W16# w#) = C# (chr# (word2Int# w#))-{-# INLINE unsafeChr #-}--unsafeChr8 :: Word8 -> Char-unsafeChr8 (W8# w#) = C# (chr# (word2Int# w#))-{-# INLINE unsafeChr8 #-}--unsafeChr32 :: Word32 -> Char-unsafeChr32 (W32# w#) = C# (chr# (word2Int# w#))-{-# INLINE unsafeChr32 #-}---- | Write a character into the array at the given offset.  Returns--- the number of 'Word16's written.-unsafeWrite :: A.MArray s -> Int -> Char -> ST s Int-unsafeWrite marr i c-    | n < 0x10000 = do-#if defined(ASSERTS)-        assert (i >= 0) . assert (i < A.length marr) $ return ()-#endif-        A.unsafeWrite marr i (fromIntegral n)-        return 1-    | otherwise = do-#if defined(ASSERTS)-        assert (i >= 0) . assert (i < A.length marr - 1) $ return ()-#endif-        A.unsafeWrite marr i lo-        A.unsafeWrite marr (i+1) hi-        return 2-    where n = ord c-          m = n - 0x10000-          lo = fromIntegral $ (m `shiftR` 10) + 0xD800-          hi = fromIntegral $ (m .&. 0x3FF) + 0xDC00-{-# INLINE unsafeWrite #-}--{--unsafeWriteRev :: A.MArray s Word16 -> Int -> Char -> ST s Int-unsafeWriteRev marr i c-    | n < 0x10000 = do-        assert (i >= 0) . assert (i < A.length marr) $-          A.unsafeWrite marr i (fromIntegral n)-        return (i-1)-    | otherwise = do-        assert (i >= 1) . assert (i < A.length marr) $-          A.unsafeWrite marr (i-1) lo-        A.unsafeWrite marr i hi-        return (i-2)-    where n = ord c-          m = n - 0x10000-          lo = fromIntegral $ (m `shiftR` 10) + 0xD800-          hi = fromIntegral $ (m .&. 0x3FF) + 0xDC00-{-# INLINE unsafeWriteRev #-}--}
− Data/Text/Internal/Unsafe/Shift.hs
@@ -1,72 +0,0 @@-{-# LANGUAGE MagicHash #-}---- |--- Module      : Data.Text.Internal.Unsafe.Shift--- Copyright   : (c) Bryan O'Sullivan 2009------ License     : BSD-style--- Maintainer  : bos@serpentine.com--- Stability   : experimental--- Portability : GHC------ /Warning/: this is an internal module, and does not have a stable--- API or name. Functions in this module may not check or enforce--- preconditions expected by public modules. Use at your own risk!------ Fast, unchecked bit shifting functions.--module Data.Text.Internal.Unsafe.Shift-    (-      UnsafeShift(..)-    ) where---- import qualified Data.Bits as Bits-import GHC.Base-import GHC.Word---- | This is a workaround for poor optimisation in GHC 6.8.2.  It--- fails to notice constant-width shifts, and adds a test and branch--- to every shift.  This imposes about a 10% performance hit.------ These functions are undefined when the amount being shifted by is--- greater than the size in bits of a machine Int#.-class UnsafeShift a where-    shiftL :: a -> Int -> a-    shiftR :: a -> Int -> a--instance UnsafeShift Word16 where-    {-# INLINE shiftL #-}-    shiftL (W16# x#) (I# i#) = W16# (narrow16Word# (x# `uncheckedShiftL#` i#))--    {-# INLINE shiftR #-}-    shiftR (W16# x#) (I# i#) = W16# (x# `uncheckedShiftRL#` i#)--instance UnsafeShift Word32 where-    {-# INLINE shiftL #-}-    shiftL (W32# x#) (I# i#) = W32# (narrow32Word# (x# `uncheckedShiftL#` i#))--    {-# INLINE shiftR #-}-    shiftR (W32# x#) (I# i#) = W32# (x# `uncheckedShiftRL#` i#)--instance UnsafeShift Word64 where-    {-# INLINE shiftL #-}-    shiftL (W64# x#) (I# i#) = W64# (x# `uncheckedShiftL64#` i#)--    {-# INLINE shiftR #-}-    shiftR (W64# x#) (I# i#) = W64# (x# `uncheckedShiftRL64#` i#)--instance UnsafeShift Int where-    {-# INLINE shiftL #-}-    shiftL (I# x#) (I# i#) = I# (x# `iShiftL#` i#)--    {-# INLINE shiftR #-}-    shiftR (I# x#) (I# i#) = I# (x# `iShiftRA#` i#)--{--instance UnsafeShift Integer where-    {-# INLINE shiftL #-}-    shiftL = Bits.shiftL--    {-# INLINE shiftR #-}-    shiftR = Bits.shiftR--}
README.md view
@@ -4,8 +4,7 @@ Common lower-level functions needed by various streaming data libraries. Intended to be shared by libraries like conduit and pipes. -[![Build Status](https://travis-ci.org/fpco/streaming-commons.svg)](https://travis-ci.org/fpco/streaming-commons)-[![Build status](https://ci.appveyor.com/api/projects/status/gn0gn4po97su2iyk/branch/master?svg=true)](https://ci.appveyor.com/project/snoyberg/streaming-commons/branch/master)+[![Build status](https://github.com/fpco/streaming-commons/actions/workflows/ci.yml/badge.svg)](https://github.com/fpco/streaming-commons/actions/workflows/ci.yml)  Dependencies ------------
System/Win32File.hsc view
@@ -31,8 +31,8 @@   #include <fcntl.h>-#include <Share.h>-#include <SYS/Stat.h>+#include <share.h>+#include <sys/stat.h> #include <errno.h>  newtype OFlag = OFlag CInt
cbits/text-helper.c view
@@ -14,13 +14,17 @@ void _hs_streaming_commons_memcpy(void *dest, size_t doff, const void *src, size_t soff, 		     size_t n) {-  memcpy(dest + (doff<<1), src + (soff<<1), n<<1);+  char *cdest = dest;+  const char *csrc = src;+  memcpy(cdest + (doff<<1), csrc + (soff<<1), n<<1); }  int _hs_streaming_commons_memcmp(const void *a, size_t aoff, const void *b, size_t boff, 		    size_t n) {-  return memcmp(a + (aoff<<1), b + (boff<<1), n<<1);+  const char *ca = a;+  const char *cb = b;+  return memcmp(ca + (aoff<<1), cb + (boff<<1), n<<1); }  #define UTF8_ACCEPT 0@@ -68,8 +72,8 @@  * an UTF16 array  */ void-_hs_streaming_commons_decode_latin1(uint16_t *dest, const uint8_t const *src,-                       const uint8_t const *srcend)+_hs_streaming_commons_decode_latin1(uint16_t *dest, const uint8_t *src,+                       const uint8_t *srcend) {   const uint8_t *p = src; @@ -130,14 +134,14 @@ #if defined(__GNUC__) || defined(__clang__) static inline uint8_t const * _hs_streaming_commons_decode_utf8_int(uint16_t *const dest, size_t *destoff,-			 const uint8_t const **src, const uint8_t const *srcend,+			 const uint8_t **src, const uint8_t *srcend, 			 uint32_t *codepoint0, uint32_t *state0)   __attribute((always_inline)); #endif  static inline uint8_t const * _hs_streaming_commons_decode_utf8_int(uint16_t *const dest, size_t *destoff,-			 const uint8_t const **src, const uint8_t const *srcend,+			 const uint8_t **src, const uint8_t *srcend, 			 uint32_t *codepoint0, uint32_t *state0) {   uint16_t *d = dest + *destoff;@@ -158,7 +162,7 @@      if (state == UTF8_ACCEPT) {       while (s < srcend - 4) {-	codepoint = *((uint32_t *) s);+	codepoint = *((const uint32_t *) s); 	if ((codepoint & 0x80808080) != 0) 	  break; 	s += 4;@@ -202,8 +206,8 @@  uint8_t const * _hs_streaming_commons_decode_utf8_state(uint16_t *const dest, size_t *destoff,-                           const uint8_t const **src,-			   const uint8_t const *srcend,+                           const uint8_t **src,+			   const uint8_t *srcend,                            uint32_t *codepoint0, uint32_t *state0) {   uint8_t const *ret = _hs_streaming_commons_decode_utf8_int(dest, destoff, src, srcend,@@ -243,7 +247,7 @@  ascii: #if defined(__x86_64__)   while (srcend - src >= 4) {-    uint64_t w = *((uint64_t *) src);+    uint64_t w = *((const uint64_t *) src);      if (w & 0xFF80FF80FF80FF80ULL) {       if (!(w & 0x000000000000FF80ULL)) {
cbits/zlib-helper.c view
@@ -27,14 +27,14 @@ 	return deflateInit2(stream, level, Z_DEFLATED, methodBits, memlevel, strategy); } -int streaming_commons_inflate_set_dictionary(z_stream *stream, const char* dictionary, +int streaming_commons_inflate_set_dictionary(z_stream *stream, const char* dictionary,                             unsigned int dictLength) {-        return inflateSetDictionary(stream, dictionary, dictLength);+        return inflateSetDictionary(stream, (const Bytef *)dictionary, dictLength); } -int streaming_commons_deflate_set_dictionary(z_stream *stream, const char* dictionary, +int streaming_commons_deflate_set_dictionary(z_stream *stream, const char* dictionary,                             unsigned int dictLength) {-        return deflateSetDictionary(stream, dictionary, dictLength);+        return deflateSetDictionary(stream, (const Bytef *)dictionary, dictLength); }  void streaming_commons_free_z_stream_inflate (z_stream *stream)@@ -45,13 +45,13 @@  void streaming_commons_set_avail_in (z_stream *stream, char *buff, unsigned int avail) {-	stream->next_in = buff;+	stream->next_in = (Bytef *)buff; 	stream->avail_in = avail; }  void streaming_commons_set_avail_out (z_stream *stream, char *buff, unsigned int avail) {-	stream->next_out = buff;+	stream->next_out = (Bytef *)buff; 	stream->avail_out = avail; } @@ -72,7 +72,7 @@  char* streaming_commons_get_next_in (z_stream *stream) {-	return stream->next_in;+	return (char *)stream->next_in; }  void streaming_commons_free_z_stream_deflate (z_stream *stream)
− include/crc32.h
@@ -1,441 +0,0 @@-/* crc32.h -- tables for rapid CRC calculation- * Generated automatically by crc32.c- */--local const unsigned long FAR crc_table[TBLS][256] =-{-  {-    0x00000000UL, 0x77073096UL, 0xee0e612cUL, 0x990951baUL, 0x076dc419UL,-    0x706af48fUL, 0xe963a535UL, 0x9e6495a3UL, 0x0edb8832UL, 0x79dcb8a4UL,-    0xe0d5e91eUL, 0x97d2d988UL, 0x09b64c2bUL, 0x7eb17cbdUL, 0xe7b82d07UL,-    0x90bf1d91UL, 0x1db71064UL, 0x6ab020f2UL, 0xf3b97148UL, 0x84be41deUL,-    0x1adad47dUL, 0x6ddde4ebUL, 0xf4d4b551UL, 0x83d385c7UL, 0x136c9856UL,-    0x646ba8c0UL, 0xfd62f97aUL, 0x8a65c9ecUL, 0x14015c4fUL, 0x63066cd9UL,-    0xfa0f3d63UL, 0x8d080df5UL, 0x3b6e20c8UL, 0x4c69105eUL, 0xd56041e4UL,-    0xa2677172UL, 0x3c03e4d1UL, 0x4b04d447UL, 0xd20d85fdUL, 0xa50ab56bUL,-    0x35b5a8faUL, 0x42b2986cUL, 0xdbbbc9d6UL, 0xacbcf940UL, 0x32d86ce3UL,-    0x45df5c75UL, 0xdcd60dcfUL, 0xabd13d59UL, 0x26d930acUL, 0x51de003aUL,-    0xc8d75180UL, 0xbfd06116UL, 0x21b4f4b5UL, 0x56b3c423UL, 0xcfba9599UL,-    0xb8bda50fUL, 0x2802b89eUL, 0x5f058808UL, 0xc60cd9b2UL, 0xb10be924UL,-    0x2f6f7c87UL, 0x58684c11UL, 0xc1611dabUL, 0xb6662d3dUL, 0x76dc4190UL,-    0x01db7106UL, 0x98d220bcUL, 0xefd5102aUL, 0x71b18589UL, 0x06b6b51fUL,-    0x9fbfe4a5UL, 0xe8b8d433UL, 0x7807c9a2UL, 0x0f00f934UL, 0x9609a88eUL,-    0xe10e9818UL, 0x7f6a0dbbUL, 0x086d3d2dUL, 0x91646c97UL, 0xe6635c01UL,-    0x6b6b51f4UL, 0x1c6c6162UL, 0x856530d8UL, 0xf262004eUL, 0x6c0695edUL,-    0x1b01a57bUL, 0x8208f4c1UL, 0xf50fc457UL, 0x65b0d9c6UL, 0x12b7e950UL,-    0x8bbeb8eaUL, 0xfcb9887cUL, 0x62dd1ddfUL, 0x15da2d49UL, 0x8cd37cf3UL,-    0xfbd44c65UL, 0x4db26158UL, 0x3ab551ceUL, 0xa3bc0074UL, 0xd4bb30e2UL,-    0x4adfa541UL, 0x3dd895d7UL, 0xa4d1c46dUL, 0xd3d6f4fbUL, 0x4369e96aUL,-    0x346ed9fcUL, 0xad678846UL, 0xda60b8d0UL, 0x44042d73UL, 0x33031de5UL,-    0xaa0a4c5fUL, 0xdd0d7cc9UL, 0x5005713cUL, 0x270241aaUL, 0xbe0b1010UL,-    0xc90c2086UL, 0x5768b525UL, 0x206f85b3UL, 0xb966d409UL, 0xce61e49fUL,-    0x5edef90eUL, 0x29d9c998UL, 0xb0d09822UL, 0xc7d7a8b4UL, 0x59b33d17UL,-    0x2eb40d81UL, 0xb7bd5c3bUL, 0xc0ba6cadUL, 0xedb88320UL, 0x9abfb3b6UL,-    0x03b6e20cUL, 0x74b1d29aUL, 0xead54739UL, 0x9dd277afUL, 0x04db2615UL,-    0x73dc1683UL, 0xe3630b12UL, 0x94643b84UL, 0x0d6d6a3eUL, 0x7a6a5aa8UL,-    0xe40ecf0bUL, 0x9309ff9dUL, 0x0a00ae27UL, 0x7d079eb1UL, 0xf00f9344UL,-    0x8708a3d2UL, 0x1e01f268UL, 0x6906c2feUL, 0xf762575dUL, 0x806567cbUL,-    0x196c3671UL, 0x6e6b06e7UL, 0xfed41b76UL, 0x89d32be0UL, 0x10da7a5aUL,-    0x67dd4accUL, 0xf9b9df6fUL, 0x8ebeeff9UL, 0x17b7be43UL, 0x60b08ed5UL,-    0xd6d6a3e8UL, 0xa1d1937eUL, 0x38d8c2c4UL, 0x4fdff252UL, 0xd1bb67f1UL,-    0xa6bc5767UL, 0x3fb506ddUL, 0x48b2364bUL, 0xd80d2bdaUL, 0xaf0a1b4cUL,-    0x36034af6UL, 0x41047a60UL, 0xdf60efc3UL, 0xa867df55UL, 0x316e8eefUL,-    0x4669be79UL, 0xcb61b38cUL, 0xbc66831aUL, 0x256fd2a0UL, 0x5268e236UL,-    0xcc0c7795UL, 0xbb0b4703UL, 0x220216b9UL, 0x5505262fUL, 0xc5ba3bbeUL,-    0xb2bd0b28UL, 0x2bb45a92UL, 0x5cb36a04UL, 0xc2d7ffa7UL, 0xb5d0cf31UL,-    0x2cd99e8bUL, 0x5bdeae1dUL, 0x9b64c2b0UL, 0xec63f226UL, 0x756aa39cUL,-    0x026d930aUL, 0x9c0906a9UL, 0xeb0e363fUL, 0x72076785UL, 0x05005713UL,-    0x95bf4a82UL, 0xe2b87a14UL, 0x7bb12baeUL, 0x0cb61b38UL, 0x92d28e9bUL,-    0xe5d5be0dUL, 0x7cdcefb7UL, 0x0bdbdf21UL, 0x86d3d2d4UL, 0xf1d4e242UL,-    0x68ddb3f8UL, 0x1fda836eUL, 0x81be16cdUL, 0xf6b9265bUL, 0x6fb077e1UL,-    0x18b74777UL, 0x88085ae6UL, 0xff0f6a70UL, 0x66063bcaUL, 0x11010b5cUL,-    0x8f659effUL, 0xf862ae69UL, 0x616bffd3UL, 0x166ccf45UL, 0xa00ae278UL,-    0xd70dd2eeUL, 0x4e048354UL, 0x3903b3c2UL, 0xa7672661UL, 0xd06016f7UL,-    0x4969474dUL, 0x3e6e77dbUL, 0xaed16a4aUL, 0xd9d65adcUL, 0x40df0b66UL,-    0x37d83bf0UL, 0xa9bcae53UL, 0xdebb9ec5UL, 0x47b2cf7fUL, 0x30b5ffe9UL,-    0xbdbdf21cUL, 0xcabac28aUL, 0x53b39330UL, 0x24b4a3a6UL, 0xbad03605UL,-    0xcdd70693UL, 0x54de5729UL, 0x23d967bfUL, 0xb3667a2eUL, 0xc4614ab8UL,-    0x5d681b02UL, 0x2a6f2b94UL, 0xb40bbe37UL, 0xc30c8ea1UL, 0x5a05df1bUL,-    0x2d02ef8dUL-#ifdef BYFOUR-  },-  {-    0x00000000UL, 0x191b3141UL, 0x32366282UL, 0x2b2d53c3UL, 0x646cc504UL,-    0x7d77f445UL, 0x565aa786UL, 0x4f4196c7UL, 0xc8d98a08UL, 0xd1c2bb49UL,-    0xfaefe88aUL, 0xe3f4d9cbUL, 0xacb54f0cUL, 0xb5ae7e4dUL, 0x9e832d8eUL,-    0x87981ccfUL, 0x4ac21251UL, 0x53d92310UL, 0x78f470d3UL, 0x61ef4192UL,-    0x2eaed755UL, 0x37b5e614UL, 0x1c98b5d7UL, 0x05838496UL, 0x821b9859UL,-    0x9b00a918UL, 0xb02dfadbUL, 0xa936cb9aUL, 0xe6775d5dUL, 0xff6c6c1cUL,-    0xd4413fdfUL, 0xcd5a0e9eUL, 0x958424a2UL, 0x8c9f15e3UL, 0xa7b24620UL,-    0xbea97761UL, 0xf1e8e1a6UL, 0xe8f3d0e7UL, 0xc3de8324UL, 0xdac5b265UL,-    0x5d5daeaaUL, 0x44469febUL, 0x6f6bcc28UL, 0x7670fd69UL, 0x39316baeUL,-    0x202a5aefUL, 0x0b07092cUL, 0x121c386dUL, 0xdf4636f3UL, 0xc65d07b2UL,-    0xed705471UL, 0xf46b6530UL, 0xbb2af3f7UL, 0xa231c2b6UL, 0x891c9175UL,-    0x9007a034UL, 0x179fbcfbUL, 0x0e848dbaUL, 0x25a9de79UL, 0x3cb2ef38UL,-    0x73f379ffUL, 0x6ae848beUL, 0x41c51b7dUL, 0x58de2a3cUL, 0xf0794f05UL,-    0xe9627e44UL, 0xc24f2d87UL, 0xdb541cc6UL, 0x94158a01UL, 0x8d0ebb40UL,-    0xa623e883UL, 0xbf38d9c2UL, 0x38a0c50dUL, 0x21bbf44cUL, 0x0a96a78fUL,-    0x138d96ceUL, 0x5ccc0009UL, 0x45d73148UL, 0x6efa628bUL, 0x77e153caUL,-    0xbabb5d54UL, 0xa3a06c15UL, 0x888d3fd6UL, 0x91960e97UL, 0xded79850UL,-    0xc7cca911UL, 0xece1fad2UL, 0xf5facb93UL, 0x7262d75cUL, 0x6b79e61dUL,-    0x4054b5deUL, 0x594f849fUL, 0x160e1258UL, 0x0f152319UL, 0x243870daUL,-    0x3d23419bUL, 0x65fd6ba7UL, 0x7ce65ae6UL, 0x57cb0925UL, 0x4ed03864UL,-    0x0191aea3UL, 0x188a9fe2UL, 0x33a7cc21UL, 0x2abcfd60UL, 0xad24e1afUL,-    0xb43fd0eeUL, 0x9f12832dUL, 0x8609b26cUL, 0xc94824abUL, 0xd05315eaUL,-    0xfb7e4629UL, 0xe2657768UL, 0x2f3f79f6UL, 0x362448b7UL, 0x1d091b74UL,-    0x04122a35UL, 0x4b53bcf2UL, 0x52488db3UL, 0x7965de70UL, 0x607eef31UL,-    0xe7e6f3feUL, 0xfefdc2bfUL, 0xd5d0917cUL, 0xcccba03dUL, 0x838a36faUL,-    0x9a9107bbUL, 0xb1bc5478UL, 0xa8a76539UL, 0x3b83984bUL, 0x2298a90aUL,-    0x09b5fac9UL, 0x10aecb88UL, 0x5fef5d4fUL, 0x46f46c0eUL, 0x6dd93fcdUL,-    0x74c20e8cUL, 0xf35a1243UL, 0xea412302UL, 0xc16c70c1UL, 0xd8774180UL,-    0x9736d747UL, 0x8e2de606UL, 0xa500b5c5UL, 0xbc1b8484UL, 0x71418a1aUL,-    0x685abb5bUL, 0x4377e898UL, 0x5a6cd9d9UL, 0x152d4f1eUL, 0x0c367e5fUL,-    0x271b2d9cUL, 0x3e001cddUL, 0xb9980012UL, 0xa0833153UL, 0x8bae6290UL,-    0x92b553d1UL, 0xddf4c516UL, 0xc4eff457UL, 0xefc2a794UL, 0xf6d996d5UL,-    0xae07bce9UL, 0xb71c8da8UL, 0x9c31de6bUL, 0x852aef2aUL, 0xca6b79edUL,-    0xd37048acUL, 0xf85d1b6fUL, 0xe1462a2eUL, 0x66de36e1UL, 0x7fc507a0UL,-    0x54e85463UL, 0x4df36522UL, 0x02b2f3e5UL, 0x1ba9c2a4UL, 0x30849167UL,-    0x299fa026UL, 0xe4c5aeb8UL, 0xfdde9ff9UL, 0xd6f3cc3aUL, 0xcfe8fd7bUL,-    0x80a96bbcUL, 0x99b25afdUL, 0xb29f093eUL, 0xab84387fUL, 0x2c1c24b0UL,-    0x350715f1UL, 0x1e2a4632UL, 0x07317773UL, 0x4870e1b4UL, 0x516bd0f5UL,-    0x7a468336UL, 0x635db277UL, 0xcbfad74eUL, 0xd2e1e60fUL, 0xf9ccb5ccUL,-    0xe0d7848dUL, 0xaf96124aUL, 0xb68d230bUL, 0x9da070c8UL, 0x84bb4189UL,-    0x03235d46UL, 0x1a386c07UL, 0x31153fc4UL, 0x280e0e85UL, 0x674f9842UL,-    0x7e54a903UL, 0x5579fac0UL, 0x4c62cb81UL, 0x8138c51fUL, 0x9823f45eUL,-    0xb30ea79dUL, 0xaa1596dcUL, 0xe554001bUL, 0xfc4f315aUL, 0xd7626299UL,-    0xce7953d8UL, 0x49e14f17UL, 0x50fa7e56UL, 0x7bd72d95UL, 0x62cc1cd4UL,-    0x2d8d8a13UL, 0x3496bb52UL, 0x1fbbe891UL, 0x06a0d9d0UL, 0x5e7ef3ecUL,-    0x4765c2adUL, 0x6c48916eUL, 0x7553a02fUL, 0x3a1236e8UL, 0x230907a9UL,-    0x0824546aUL, 0x113f652bUL, 0x96a779e4UL, 0x8fbc48a5UL, 0xa4911b66UL,-    0xbd8a2a27UL, 0xf2cbbce0UL, 0xebd08da1UL, 0xc0fdde62UL, 0xd9e6ef23UL,-    0x14bce1bdUL, 0x0da7d0fcUL, 0x268a833fUL, 0x3f91b27eUL, 0x70d024b9UL,-    0x69cb15f8UL, 0x42e6463bUL, 0x5bfd777aUL, 0xdc656bb5UL, 0xc57e5af4UL,-    0xee530937UL, 0xf7483876UL, 0xb809aeb1UL, 0xa1129ff0UL, 0x8a3fcc33UL,-    0x9324fd72UL-  },-  {-    0x00000000UL, 0x01c26a37UL, 0x0384d46eUL, 0x0246be59UL, 0x0709a8dcUL,-    0x06cbc2ebUL, 0x048d7cb2UL, 0x054f1685UL, 0x0e1351b8UL, 0x0fd13b8fUL,-    0x0d9785d6UL, 0x0c55efe1UL, 0x091af964UL, 0x08d89353UL, 0x0a9e2d0aUL,-    0x0b5c473dUL, 0x1c26a370UL, 0x1de4c947UL, 0x1fa2771eUL, 0x1e601d29UL,-    0x1b2f0bacUL, 0x1aed619bUL, 0x18abdfc2UL, 0x1969b5f5UL, 0x1235f2c8UL,-    0x13f798ffUL, 0x11b126a6UL, 0x10734c91UL, 0x153c5a14UL, 0x14fe3023UL,-    0x16b88e7aUL, 0x177ae44dUL, 0x384d46e0UL, 0x398f2cd7UL, 0x3bc9928eUL,-    0x3a0bf8b9UL, 0x3f44ee3cUL, 0x3e86840bUL, 0x3cc03a52UL, 0x3d025065UL,-    0x365e1758UL, 0x379c7d6fUL, 0x35dac336UL, 0x3418a901UL, 0x3157bf84UL,-    0x3095d5b3UL, 0x32d36beaUL, 0x331101ddUL, 0x246be590UL, 0x25a98fa7UL,-    0x27ef31feUL, 0x262d5bc9UL, 0x23624d4cUL, 0x22a0277bUL, 0x20e69922UL,-    0x2124f315UL, 0x2a78b428UL, 0x2bbade1fUL, 0x29fc6046UL, 0x283e0a71UL,-    0x2d711cf4UL, 0x2cb376c3UL, 0x2ef5c89aUL, 0x2f37a2adUL, 0x709a8dc0UL,-    0x7158e7f7UL, 0x731e59aeUL, 0x72dc3399UL, 0x7793251cUL, 0x76514f2bUL,-    0x7417f172UL, 0x75d59b45UL, 0x7e89dc78UL, 0x7f4bb64fUL, 0x7d0d0816UL,-    0x7ccf6221UL, 0x798074a4UL, 0x78421e93UL, 0x7a04a0caUL, 0x7bc6cafdUL,-    0x6cbc2eb0UL, 0x6d7e4487UL, 0x6f38fadeUL, 0x6efa90e9UL, 0x6bb5866cUL,-    0x6a77ec5bUL, 0x68315202UL, 0x69f33835UL, 0x62af7f08UL, 0x636d153fUL,-    0x612bab66UL, 0x60e9c151UL, 0x65a6d7d4UL, 0x6464bde3UL, 0x662203baUL,-    0x67e0698dUL, 0x48d7cb20UL, 0x4915a117UL, 0x4b531f4eUL, 0x4a917579UL,-    0x4fde63fcUL, 0x4e1c09cbUL, 0x4c5ab792UL, 0x4d98dda5UL, 0x46c49a98UL,-    0x4706f0afUL, 0x45404ef6UL, 0x448224c1UL, 0x41cd3244UL, 0x400f5873UL,-    0x4249e62aUL, 0x438b8c1dUL, 0x54f16850UL, 0x55330267UL, 0x5775bc3eUL,-    0x56b7d609UL, 0x53f8c08cUL, 0x523aaabbUL, 0x507c14e2UL, 0x51be7ed5UL,-    0x5ae239e8UL, 0x5b2053dfUL, 0x5966ed86UL, 0x58a487b1UL, 0x5deb9134UL,-    0x5c29fb03UL, 0x5e6f455aUL, 0x5fad2f6dUL, 0xe1351b80UL, 0xe0f771b7UL,-    0xe2b1cfeeUL, 0xe373a5d9UL, 0xe63cb35cUL, 0xe7fed96bUL, 0xe5b86732UL,-    0xe47a0d05UL, 0xef264a38UL, 0xeee4200fUL, 0xeca29e56UL, 0xed60f461UL,-    0xe82fe2e4UL, 0xe9ed88d3UL, 0xebab368aUL, 0xea695cbdUL, 0xfd13b8f0UL,-    0xfcd1d2c7UL, 0xfe976c9eUL, 0xff5506a9UL, 0xfa1a102cUL, 0xfbd87a1bUL,-    0xf99ec442UL, 0xf85cae75UL, 0xf300e948UL, 0xf2c2837fUL, 0xf0843d26UL,-    0xf1465711UL, 0xf4094194UL, 0xf5cb2ba3UL, 0xf78d95faUL, 0xf64fffcdUL,-    0xd9785d60UL, 0xd8ba3757UL, 0xdafc890eUL, 0xdb3ee339UL, 0xde71f5bcUL,-    0xdfb39f8bUL, 0xddf521d2UL, 0xdc374be5UL, 0xd76b0cd8UL, 0xd6a966efUL,-    0xd4efd8b6UL, 0xd52db281UL, 0xd062a404UL, 0xd1a0ce33UL, 0xd3e6706aUL,-    0xd2241a5dUL, 0xc55efe10UL, 0xc49c9427UL, 0xc6da2a7eUL, 0xc7184049UL,-    0xc25756ccUL, 0xc3953cfbUL, 0xc1d382a2UL, 0xc011e895UL, 0xcb4dafa8UL,-    0xca8fc59fUL, 0xc8c97bc6UL, 0xc90b11f1UL, 0xcc440774UL, 0xcd866d43UL,-    0xcfc0d31aUL, 0xce02b92dUL, 0x91af9640UL, 0x906dfc77UL, 0x922b422eUL,-    0x93e92819UL, 0x96a63e9cUL, 0x976454abUL, 0x9522eaf2UL, 0x94e080c5UL,-    0x9fbcc7f8UL, 0x9e7eadcfUL, 0x9c381396UL, 0x9dfa79a1UL, 0x98b56f24UL,-    0x99770513UL, 0x9b31bb4aUL, 0x9af3d17dUL, 0x8d893530UL, 0x8c4b5f07UL,-    0x8e0de15eUL, 0x8fcf8b69UL, 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0x8ca1450bUL, 0x620ef019UL, 0x07694ca1UL, 0xbe519b3cUL,-    0xdb362784UL, 0x35999296UL, 0x50fe2e2eUL, 0x99b95426UL, 0xfcdee89eUL,-    0x12715d8cUL, 0x7716e134UL, 0xce2e36a9UL, 0xab498a11UL, 0x45e63f03UL,-    0x208183bbUL, 0x7691e0e3UL, 0x13f65c5bUL, 0xfd59e949UL, 0x983e55f1UL,-    0x2106826cUL, 0x44613ed4UL, 0xaace8bc6UL, 0xcfa9377eUL, 0x38417fd6UL,-    0x5d26c36eUL, 0xb389767cUL, 0xd6eecac4UL, 0x6fd61d59UL, 0x0ab1a1e1UL,-    0xe41e14f3UL, 0x8179a84bUL, 0xd769cb13UL, 0xb20e77abUL, 0x5ca1c2b9UL,-    0x39c67e01UL, 0x80fea99cUL, 0xe5991524UL, 0x0b36a036UL, 0x6e511c8eUL,-    0xa7166686UL, 0xc271da3eUL, 0x2cde6f2cUL, 0x49b9d394UL, 0xf0810409UL,-    0x95e6b8b1UL, 0x7b490da3UL, 0x1e2eb11bUL, 0x483ed243UL, 0x2d596efbUL,-    0xc3f6dbe9UL, 0xa6916751UL, 0x1fa9b0ccUL, 0x7ace0c74UL, 0x9461b966UL,-    0xf10605deUL-#endif-  }-};
− include/deflate.h
@@ -1,331 +0,0 @@-/* deflate.h -- internal compression state- * Copyright (C) 1995-2004 Jean-loup Gailly- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* WARNING: this file should *not* be used by applications. It is-   part of the implementation of the compression library and is-   subject to change. Applications should only use zlib.h.- */--/* @(#) $Id$ */--#ifndef DEFLATE_H-#define DEFLATE_H--#include "zutil.h"--/* define NO_GZIP when compiling if you want to disable gzip header and-   trailer creation by deflate().  NO_GZIP would be used to avoid linking in-   the crc code when it is not needed.  For shared libraries, gzip encoding-   should be left enabled. */-#ifndef NO_GZIP-#  define GZIP-#endif--/* ===========================================================================- * Internal compression state.- */--#define LENGTH_CODES 29-/* number of length codes, not counting the special END_BLOCK code */--#define LITERALS  256-/* number of literal bytes 0..255 */--#define L_CODES (LITERALS+1+LENGTH_CODES)-/* number of Literal or Length codes, including the END_BLOCK code */--#define D_CODES   30-/* number of distance codes */--#define BL_CODES  19-/* number of codes used to transfer the bit lengths */--#define HEAP_SIZE (2*L_CODES+1)-/* maximum heap size */--#define MAX_BITS 15-/* All codes must not exceed MAX_BITS bits */--#define INIT_STATE    42-#define EXTRA_STATE   69-#define NAME_STATE    73-#define COMMENT_STATE 91-#define HCRC_STATE   103-#define BUSY_STATE   113-#define FINISH_STATE 666-/* Stream status */---/* Data structure describing a single value and its code string. */-typedef struct ct_data_s {-    union {-        ush  freq;       /* frequency count */-        ush  code;       /* bit string */-    } fc;-    union {-        ush  dad;        /* father node in Huffman tree */-        ush  len;        /* length of bit string */-    } dl;-} FAR ct_data;--#define Freq fc.freq-#define Code fc.code-#define Dad  dl.dad-#define Len  dl.len--typedef struct static_tree_desc_s  static_tree_desc;--typedef struct tree_desc_s {-    ct_data *dyn_tree;           /* the dynamic tree */-    int     max_code;            /* largest code with non zero frequency */-    static_tree_desc *stat_desc; /* the corresponding static tree */-} FAR tree_desc;--typedef ush Pos;-typedef Pos FAR Posf;-typedef unsigned IPos;--/* A Pos is an index in the character window. We use short instead of int to- * save space in the various tables. IPos is used only for parameter passing.- */--typedef struct internal_state {-    z_streamp strm;      /* pointer back to this zlib stream */-    int   status;        /* as the name implies */-    Bytef *pending_buf;  /* output still pending */-    ulg   pending_buf_size; /* size of pending_buf */-    Bytef *pending_out;  /* next pending byte to output to the stream */-    uInt   pending;      /* nb of bytes in the pending buffer */-    int   wrap;          /* bit 0 true for zlib, bit 1 true for gzip */-    gz_headerp  gzhead;  /* gzip header information to write */-    uInt   gzindex;      /* where in extra, name, or comment */-    Byte  method;        /* STORED (for zip only) or DEFLATED */-    int   last_flush;    /* value of flush param for previous deflate call */--                /* used by deflate.c: */--    uInt  w_size;        /* LZ77 window size (32K by default) */-    uInt  w_bits;        /* log2(w_size)  (8..16) */-    uInt  w_mask;        /* w_size - 1 */--    Bytef *window;-    /* Sliding window. Input bytes are read into the second half of the window,-     * and move to the first half later to keep a dictionary of at least wSize-     * bytes. With this organization, matches are limited to a distance of-     * wSize-MAX_MATCH bytes, but this ensures that IO is always-     * performed with a length multiple of the block size. Also, it limits-     * the window size to 64K, which is quite useful on MSDOS.-     * To do: use the user input buffer as sliding window.-     */--    ulg window_size;-    /* Actual size of window: 2*wSize, except when the user input buffer-     * is directly used as sliding window.-     */--    Posf *prev;-    /* Link to older string with same hash index. To limit the size of this-     * array to 64K, this link is maintained only for the last 32K strings.-     * An index in this array is thus a window index modulo 32K.-     */--    Posf *head; /* Heads of the hash chains or NIL. */--    uInt  ins_h;          /* hash index of string to be inserted */-    uInt  hash_size;      /* number of elements in hash table */-    uInt  hash_bits;      /* log2(hash_size) */-    uInt  hash_mask;      /* hash_size-1 */--    uInt  hash_shift;-    /* Number of bits by which ins_h must be shifted at each input-     * step. It must be such that after MIN_MATCH steps, the oldest-     * byte no longer takes part in the hash key, that is:-     *   hash_shift * MIN_MATCH >= hash_bits-     */--    long block_start;-    /* Window position at the beginning of the current output block. Gets-     * negative when the window is moved backwards.-     */--    uInt match_length;           /* length of best match */-    IPos prev_match;             /* previous match */-    int match_available;         /* set if previous match exists */-    uInt strstart;               /* start of string to insert */-    uInt match_start;            /* start of matching string */-    uInt lookahead;              /* number of valid bytes ahead in window */--    uInt prev_length;-    /* Length of the best match at previous step. Matches not greater than this-     * are discarded. This is used in the lazy match evaluation.-     */--    uInt max_chain_length;-    /* To speed up deflation, hash chains are never searched beyond this-     * length.  A higher limit improves compression ratio but degrades the-     * speed.-     */--    uInt max_lazy_match;-    /* Attempt to find a better match only when the current match is strictly-     * smaller than this value. This mechanism is used only for compression-     * levels >= 4.-     */-#   define max_insert_length  max_lazy_match-    /* Insert new strings in the hash table only if the match length is not-     * greater than this length. This saves time but degrades compression.-     * max_insert_length is used only for compression levels <= 3.-     */--    int level;    /* compression level (1..9) */-    int strategy; /* favor or force Huffman coding*/--    uInt good_match;-    /* Use a faster search when the previous match is longer than this */--    int nice_match; /* Stop searching when current match exceeds this */--                /* used by trees.c: */-    /* Didn't use ct_data typedef below to supress compiler warning */-    struct ct_data_s dyn_ltree[HEAP_SIZE];   /* literal and length tree */-    struct ct_data_s dyn_dtree[2*D_CODES+1]; /* distance tree */-    struct ct_data_s bl_tree[2*BL_CODES+1];  /* Huffman tree for bit lengths */--    struct tree_desc_s l_desc;               /* desc. for literal tree */-    struct tree_desc_s d_desc;               /* desc. for distance tree */-    struct tree_desc_s bl_desc;              /* desc. for bit length tree */--    ush bl_count[MAX_BITS+1];-    /* number of codes at each bit length for an optimal tree */--    int heap[2*L_CODES+1];      /* heap used to build the Huffman trees */-    int heap_len;               /* number of elements in the heap */-    int heap_max;               /* element of largest frequency */-    /* The sons of heap[n] are heap[2*n] and heap[2*n+1]. heap[0] is not used.-     * The same heap array is used to build all trees.-     */--    uch depth[2*L_CODES+1];-    /* Depth of each subtree used as tie breaker for trees of equal frequency-     */--    uchf *l_buf;          /* buffer for literals or lengths */--    uInt  lit_bufsize;-    /* Size of match buffer for literals/lengths.  There are 4 reasons for-     * limiting lit_bufsize to 64K:-     *   - frequencies can be kept in 16 bit counters-     *   - if compression is not successful for the first block, all input-     *     data is still in the window so we can still emit a stored block even-     *     when input comes from standard input.  (This can also be done for-     *     all blocks if lit_bufsize is not greater than 32K.)-     *   - if compression is not successful for a file smaller than 64K, we can-     *     even emit a stored file instead of a stored block (saving 5 bytes).-     *     This is applicable only for zip (not gzip or zlib).-     *   - creating new Huffman trees less frequently may not provide fast-     *     adaptation to changes in the input data statistics. (Take for-     *     example a binary file with poorly compressible code followed by-     *     a highly compressible string table.) Smaller buffer sizes give-     *     fast adaptation but have of course the overhead of transmitting-     *     trees more frequently.-     *   - I can't count above 4-     */--    uInt last_lit;      /* running index in l_buf */--    ushf *d_buf;-    /* Buffer for distances. To simplify the code, d_buf and l_buf have-     * the same number of elements. To use different lengths, an extra flag-     * array would be necessary.-     */--    ulg opt_len;        /* bit length of current block with optimal trees */-    ulg static_len;     /* bit length of current block with static trees */-    uInt matches;       /* number of string matches in current block */-    int last_eob_len;   /* bit length of EOB code for last block */--#ifdef DEBUG-    ulg compressed_len; /* total bit length of compressed file mod 2^32 */-    ulg bits_sent;      /* bit length of compressed data sent mod 2^32 */-#endif--    ush bi_buf;-    /* Output buffer. bits are inserted starting at the bottom (least-     * significant bits).-     */-    int bi_valid;-    /* Number of valid bits in bi_buf.  All bits above the last valid bit-     * are always zero.-     */--} FAR deflate_state;--/* Output a byte on the stream.- * IN assertion: there is enough room in pending_buf.- */-#define put_byte(s, c) {s->pending_buf[s->pending++] = (c);}---#define MIN_LOOKAHEAD (MAX_MATCH+MIN_MATCH+1)-/* Minimum amount of lookahead, except at the end of the input file.- * See deflate.c for comments about the MIN_MATCH+1.- */--#define MAX_DIST(s)  ((s)->w_size-MIN_LOOKAHEAD)-/* In order to simplify the code, particularly on 16 bit machines, match- * distances are limited to MAX_DIST instead of WSIZE.- */--        /* in trees.c */-void _tr_init         OF((deflate_state *s));-int  _tr_tally        OF((deflate_state *s, unsigned dist, unsigned lc));-void _tr_flush_block  OF((deflate_state *s, charf *buf, ulg stored_len,-                          int eof));-void _tr_align        OF((deflate_state *s));-void _tr_stored_block OF((deflate_state *s, charf *buf, ulg stored_len,-                          int eof));--#define d_code(dist) \-   ((dist) < 256 ? _dist_code[dist] : _dist_code[256+((dist)>>7)])-/* Mapping from a distance to a distance code. dist is the distance - 1 and- * must not have side effects. _dist_code[256] and _dist_code[257] are never- * used.- */--#ifndef DEBUG-/* Inline versions of _tr_tally for speed: */--#if defined(GEN_TREES_H) || !defined(STDC)-  extern uch _length_code[];-  extern uch _dist_code[];-#else-  extern const uch _length_code[];-  extern const uch _dist_code[];-#endif--# define _tr_tally_lit(s, c, flush) \-  { uch cc = (c); \-    s->d_buf[s->last_lit] = 0; \-    s->l_buf[s->last_lit++] = cc; \-    s->dyn_ltree[cc].Freq++; \-    flush = (s->last_lit == s->lit_bufsize-1); \-   }-# define _tr_tally_dist(s, distance, length, flush) \-  { uch len = (length); \-    ush dist = (distance); \-    s->d_buf[s->last_lit] = dist; \-    s->l_buf[s->last_lit++] = len; \-    dist--; \-    s->dyn_ltree[_length_code[len]+LITERALS+1].Freq++; \-    s->dyn_dtree[d_code(dist)].Freq++; \-    flush = (s->last_lit == s->lit_bufsize-1); \-  }-#else-# define _tr_tally_lit(s, c, flush) flush = _tr_tally(s, 0, c)-# define _tr_tally_dist(s, distance, length, flush) \-              flush = _tr_tally(s, distance, length)-#endif--#endif /* DEFLATE_H */
− include/inffast.h
@@ -1,11 +0,0 @@-/* inffast.h -- header to use inffast.c- * Copyright (C) 1995-2003 Mark Adler- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* WARNING: this file should *not* be used by applications. It is-   part of the implementation of the compression library and is-   subject to change. Applications should only use zlib.h.- */--void inflate_fast OF((z_streamp strm, unsigned start));
− include/inffixed.h
@@ -1,94 +0,0 @@-    /* inffixed.h -- table for decoding fixed codes-     * Generated automatically by makefixed().-     */--    /* WARNING: this file should *not* be used by applications. It-       is part of the implementation of the compression library and-       is subject to change. Applications should only use zlib.h.-     */--    static const code lenfix[512] = {-        {96,7,0},{0,8,80},{0,8,16},{20,8,115},{18,7,31},{0,8,112},{0,8,48},-        {0,9,192},{16,7,10},{0,8,96},{0,8,32},{0,9,160},{0,8,0},{0,8,128},-        {0,8,64},{0,9,224},{16,7,6},{0,8,88},{0,8,24},{0,9,144},{19,7,59},-        {0,8,120},{0,8,56},{0,9,208},{17,7,17},{0,8,104},{0,8,40},{0,9,176},-        {0,8,8},{0,8,136},{0,8,72},{0,9,240},{16,7,4},{0,8,84},{0,8,20},-        {21,8,227},{19,7,43},{0,8,116},{0,8,52},{0,9,200},{17,7,13},{0,8,100},-        {0,8,36},{0,9,168},{0,8,4},{0,8,132},{0,8,68},{0,9,232},{16,7,8},-        {0,8,92},{0,8,28},{0,9,152},{20,7,83},{0,8,124},{0,8,60},{0,9,216},-        {18,7,23},{0,8,108},{0,8,44},{0,9,184},{0,8,12},{0,8,140},{0,8,76},-        {0,9,248},{16,7,3},{0,8,82},{0,8,18},{21,8,163},{19,7,35},{0,8,114},-        {0,8,50},{0,9,196},{17,7,11},{0,8,98},{0,8,34},{0,9,164},{0,8,2},-        {0,8,130},{0,8,66},{0,9,228},{16,7,7},{0,8,90},{0,8,26},{0,9,148},-        {20,7,67},{0,8,122},{0,8,58},{0,9,212},{18,7,19},{0,8,106},{0,8,42},-        {0,9,180},{0,8,10},{0,8,138},{0,8,74},{0,9,244},{16,7,5},{0,8,86},-        {0,8,22},{64,8,0},{19,7,51},{0,8,118},{0,8,54},{0,9,204},{17,7,15},-        {0,8,102},{0,8,38},{0,9,172},{0,8,6},{0,8,134},{0,8,70},{0,9,236},-        {16,7,9},{0,8,94},{0,8,30},{0,9,156},{20,7,99},{0,8,126},{0,8,62},-        {0,9,220},{18,7,27},{0,8,110},{0,8,46},{0,9,188},{0,8,14},{0,8,142},-        {0,8,78},{0,9,252},{96,7,0},{0,8,81},{0,8,17},{21,8,131},{18,7,31},-        {0,8,113},{0,8,49},{0,9,194},{16,7,10},{0,8,97},{0,8,33},{0,9,162},-        {0,8,1},{0,8,129},{0,8,65},{0,9,226},{16,7,6},{0,8,89},{0,8,25},-        {0,9,146},{19,7,59},{0,8,121},{0,8,57},{0,9,210},{17,7,17},{0,8,105},-        {0,8,41},{0,9,178},{0,8,9},{0,8,137},{0,8,73},{0,9,242},{16,7,4},-        {0,8,85},{0,8,21},{16,8,258},{19,7,43},{0,8,117},{0,8,53},{0,9,202},-        {17,7,13},{0,8,101},{0,8,37},{0,9,170},{0,8,5},{0,8,133},{0,8,69},-        {0,9,234},{16,7,8},{0,8,93},{0,8,29},{0,9,154},{20,7,83},{0,8,125},-        {0,8,61},{0,9,218},{18,7,23},{0,8,109},{0,8,45},{0,9,186},{0,8,13},-        {0,8,141},{0,8,77},{0,9,250},{16,7,3},{0,8,83},{0,8,19},{21,8,195},-        {19,7,35},{0,8,115},{0,8,51},{0,9,198},{17,7,11},{0,8,99},{0,8,35},-        {0,9,166},{0,8,3},{0,8,131},{0,8,67},{0,9,230},{16,7,7},{0,8,91},-        {0,8,27},{0,9,150},{20,7,67},{0,8,123},{0,8,59},{0,9,214},{18,7,19},-        {0,8,107},{0,8,43},{0,9,182},{0,8,11},{0,8,139},{0,8,75},{0,9,246},-        {16,7,5},{0,8,87},{0,8,23},{64,8,0},{19,7,51},{0,8,119},{0,8,55},-        {0,9,206},{17,7,15},{0,8,103},{0,8,39},{0,9,174},{0,8,7},{0,8,135},-        {0,8,71},{0,9,238},{16,7,9},{0,8,95},{0,8,31},{0,9,158},{20,7,99},-        {0,8,127},{0,8,63},{0,9,222},{18,7,27},{0,8,111},{0,8,47},{0,9,190},-        {0,8,15},{0,8,143},{0,8,79},{0,9,254},{96,7,0},{0,8,80},{0,8,16},-        {20,8,115},{18,7,31},{0,8,112},{0,8,48},{0,9,193},{16,7,10},{0,8,96},-        {0,8,32},{0,9,161},{0,8,0},{0,8,128},{0,8,64},{0,9,225},{16,7,6},-        {0,8,88},{0,8,24},{0,9,145},{19,7,59},{0,8,120},{0,8,56},{0,9,209},-        {17,7,17},{0,8,104},{0,8,40},{0,9,177},{0,8,8},{0,8,136},{0,8,72},-        {0,9,241},{16,7,4},{0,8,84},{0,8,20},{21,8,227},{19,7,43},{0,8,116},-        {0,8,52},{0,9,201},{17,7,13},{0,8,100},{0,8,36},{0,9,169},{0,8,4},-        {0,8,132},{0,8,68},{0,9,233},{16,7,8},{0,8,92},{0,8,28},{0,9,153},-        {20,7,83},{0,8,124},{0,8,60},{0,9,217},{18,7,23},{0,8,108},{0,8,44},-        {0,9,185},{0,8,12},{0,8,140},{0,8,76},{0,9,249},{16,7,3},{0,8,82},-        {0,8,18},{21,8,163},{19,7,35},{0,8,114},{0,8,50},{0,9,197},{17,7,11},-        {0,8,98},{0,8,34},{0,9,165},{0,8,2},{0,8,130},{0,8,66},{0,9,229},-        {16,7,7},{0,8,90},{0,8,26},{0,9,149},{20,7,67},{0,8,122},{0,8,58},-        {0,9,213},{18,7,19},{0,8,106},{0,8,42},{0,9,181},{0,8,10},{0,8,138},-        {0,8,74},{0,9,245},{16,7,5},{0,8,86},{0,8,22},{64,8,0},{19,7,51},-        {0,8,118},{0,8,54},{0,9,205},{17,7,15},{0,8,102},{0,8,38},{0,9,173},-        {0,8,6},{0,8,134},{0,8,70},{0,9,237},{16,7,9},{0,8,94},{0,8,30},-        {0,9,157},{20,7,99},{0,8,126},{0,8,62},{0,9,221},{18,7,27},{0,8,110},-        {0,8,46},{0,9,189},{0,8,14},{0,8,142},{0,8,78},{0,9,253},{96,7,0},-        {0,8,81},{0,8,17},{21,8,131},{18,7,31},{0,8,113},{0,8,49},{0,9,195},-        {16,7,10},{0,8,97},{0,8,33},{0,9,163},{0,8,1},{0,8,129},{0,8,65},-        {0,9,227},{16,7,6},{0,8,89},{0,8,25},{0,9,147},{19,7,59},{0,8,121},-        {0,8,57},{0,9,211},{17,7,17},{0,8,105},{0,8,41},{0,9,179},{0,8,9},-        {0,8,137},{0,8,73},{0,9,243},{16,7,4},{0,8,85},{0,8,21},{16,8,258},-        {19,7,43},{0,8,117},{0,8,53},{0,9,203},{17,7,13},{0,8,101},{0,8,37},-        {0,9,171},{0,8,5},{0,8,133},{0,8,69},{0,9,235},{16,7,8},{0,8,93},-        {0,8,29},{0,9,155},{20,7,83},{0,8,125},{0,8,61},{0,9,219},{18,7,23},-        {0,8,109},{0,8,45},{0,9,187},{0,8,13},{0,8,141},{0,8,77},{0,9,251},-        {16,7,3},{0,8,83},{0,8,19},{21,8,195},{19,7,35},{0,8,115},{0,8,51},-        {0,9,199},{17,7,11},{0,8,99},{0,8,35},{0,9,167},{0,8,3},{0,8,131},-        {0,8,67},{0,9,231},{16,7,7},{0,8,91},{0,8,27},{0,9,151},{20,7,67},-        {0,8,123},{0,8,59},{0,9,215},{18,7,19},{0,8,107},{0,8,43},{0,9,183},-        {0,8,11},{0,8,139},{0,8,75},{0,9,247},{16,7,5},{0,8,87},{0,8,23},-        {64,8,0},{19,7,51},{0,8,119},{0,8,55},{0,9,207},{17,7,15},{0,8,103},-        {0,8,39},{0,9,175},{0,8,7},{0,8,135},{0,8,71},{0,9,239},{16,7,9},-        {0,8,95},{0,8,31},{0,9,159},{20,7,99},{0,8,127},{0,8,63},{0,9,223},-        {18,7,27},{0,8,111},{0,8,47},{0,9,191},{0,8,15},{0,8,143},{0,8,79},-        {0,9,255}-    };--    static const code distfix[32] = {-        {16,5,1},{23,5,257},{19,5,17},{27,5,4097},{17,5,5},{25,5,1025},-        {21,5,65},{29,5,16385},{16,5,3},{24,5,513},{20,5,33},{28,5,8193},-        {18,5,9},{26,5,2049},{22,5,129},{64,5,0},{16,5,2},{23,5,385},-        {19,5,25},{27,5,6145},{17,5,7},{25,5,1537},{21,5,97},{29,5,24577},-        {16,5,4},{24,5,769},{20,5,49},{28,5,12289},{18,5,13},{26,5,3073},-        {22,5,193},{64,5,0}-    };
− include/inflate.h
@@ -1,115 +0,0 @@-/* inflate.h -- internal inflate state definition- * Copyright (C) 1995-2004 Mark Adler- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* WARNING: this file should *not* be used by applications. It is-   part of the implementation of the compression library and is-   subject to change. Applications should only use zlib.h.- */--/* define NO_GZIP when compiling if you want to disable gzip header and-   trailer decoding by inflate().  NO_GZIP would be used to avoid linking in-   the crc code when it is not needed.  For shared libraries, gzip decoding-   should be left enabled. */-#ifndef NO_GZIP-#  define GUNZIP-#endif--/* Possible inflate modes between inflate() calls */-typedef enum {-    HEAD,       /* i: waiting for magic header */-    FLAGS,      /* i: waiting for method and flags (gzip) */-    TIME,       /* i: waiting for modification time (gzip) */-    OS,         /* i: waiting for extra flags and operating system (gzip) */-    EXLEN,      /* i: waiting for extra length (gzip) */-    EXTRA,      /* i: waiting for extra bytes (gzip) */-    NAME,       /* i: waiting for end of file name (gzip) */-    COMMENT,    /* i: waiting for end of comment (gzip) */-    HCRC,       /* i: waiting for header crc (gzip) */-    DICTID,     /* i: waiting for dictionary check value */-    DICT,       /* waiting for inflateSetDictionary() call */-        TYPE,       /* i: waiting for type bits, including last-flag bit */-        TYPEDO,     /* i: same, but skip check to exit inflate on new block */-        STORED,     /* i: waiting for stored size (length and complement) */-        COPY,       /* i/o: waiting for input or output to copy stored block */-        TABLE,      /* i: waiting for dynamic block table lengths */-        LENLENS,    /* i: waiting for code length code lengths */-        CODELENS,   /* i: waiting for length/lit and distance code lengths */-            LEN,        /* i: waiting for length/lit code */-            LENEXT,     /* i: waiting for length extra bits */-            DIST,       /* i: waiting for distance code */-            DISTEXT,    /* i: waiting for distance extra bits */-            MATCH,      /* o: waiting for output space to copy string */-            LIT,        /* o: waiting for output space to write literal */-    CHECK,      /* i: waiting for 32-bit check value */-    LENGTH,     /* i: waiting for 32-bit length (gzip) */-    DONE,       /* finished check, done -- remain here until reset */-    BAD,        /* got a data error -- remain here until reset */-    MEM,        /* got an inflate() memory error -- remain here until reset */-    SYNC        /* looking for synchronization bytes to restart inflate() */-} inflate_mode;--/*-    State transitions between above modes ---    (most modes can go to the BAD or MEM mode -- not shown for clarity)--    Process header:-        HEAD -> (gzip) or (zlib)-        (gzip) -> FLAGS -> TIME -> OS -> EXLEN -> EXTRA -> NAME-        NAME -> COMMENT -> HCRC -> TYPE-        (zlib) -> DICTID or TYPE-        DICTID -> DICT -> TYPE-    Read deflate blocks:-            TYPE -> STORED or TABLE or LEN or CHECK-            STORED -> COPY -> TYPE-            TABLE -> LENLENS -> CODELENS -> LEN-    Read deflate codes:-                LEN -> LENEXT or LIT or TYPE-                LENEXT -> DIST -> DISTEXT -> MATCH -> LEN-                LIT -> LEN-    Process trailer:-        CHECK -> LENGTH -> DONE- */--/* state maintained between inflate() calls.  Approximately 7K bytes. */-struct inflate_state {-    inflate_mode mode;          /* current inflate mode */-    int last;                   /* true if processing last block */-    int wrap;                   /* bit 0 true for zlib, bit 1 true for gzip */-    int havedict;               /* true if dictionary provided */-    int flags;                  /* gzip header method and flags (0 if zlib) */-    unsigned dmax;              /* zlib header max distance (INFLATE_STRICT) */-    unsigned long check;        /* protected copy of check value */-    unsigned long total;        /* protected copy of output count */-    gz_headerp head;            /* where to save gzip header information */-        /* sliding window */-    unsigned wbits;             /* log base 2 of requested window size */-    unsigned wsize;             /* window size or zero if not using window */-    unsigned whave;             /* valid bytes in the window */-    unsigned write;             /* window write index */-    unsigned char FAR *window;  /* allocated sliding window, if needed */-        /* bit accumulator */-    unsigned long hold;         /* input bit accumulator */-    unsigned bits;              /* number of bits in "in" */-        /* for string and stored block copying */-    unsigned length;            /* literal or length of data to copy */-    unsigned offset;            /* distance back to copy string from */-        /* for table and code decoding */-    unsigned extra;             /* extra bits needed */-        /* fixed and dynamic code tables */-    code const FAR *lencode;    /* starting table for length/literal codes */-    code const FAR *distcode;   /* starting table for distance codes */-    unsigned lenbits;           /* index bits for lencode */-    unsigned distbits;          /* index bits for distcode */-        /* dynamic table building */-    unsigned ncode;             /* number of code length code lengths */-    unsigned nlen;              /* number of length code lengths */-    unsigned ndist;             /* number of distance code lengths */-    unsigned have;              /* number of code lengths in lens[] */-    code FAR *next;             /* next available space in codes[] */-    unsigned short lens[320];   /* temporary storage for code lengths */-    unsigned short work[288];   /* work area for code table building */-    code codes[ENOUGH];         /* space for code tables */-};
− include/inftrees.h
@@ -1,55 +0,0 @@-/* inftrees.h -- header to use inftrees.c- * Copyright (C) 1995-2005 Mark Adler- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* WARNING: this file should *not* be used by applications. It is-   part of the implementation of the compression library and is-   subject to change. Applications should only use zlib.h.- */--/* Structure for decoding tables.  Each entry provides either the-   information needed to do the operation requested by the code that-   indexed that table entry, or it provides a pointer to another-   table that indexes more bits of the code.  op indicates whether-   the entry is a pointer to another table, a literal, a length or-   distance, an end-of-block, or an invalid code.  For a table-   pointer, the low four bits of op is the number of index bits of-   that table.  For a length or distance, the low four bits of op-   is the number of extra bits to get after the code.  bits is-   the number of bits in this code or part of the code to drop off-   of the bit buffer.  val is the actual byte to output in the case-   of a literal, the base length or distance, or the offset from-   the current table to the next table.  Each entry is four bytes. */-typedef struct {-    unsigned char op;           /* operation, extra bits, table bits */-    unsigned char bits;         /* bits in this part of the code */-    unsigned short val;         /* offset in table or code value */-} code;--/* op values as set by inflate_table():-    00000000 - literal-    0000tttt - table link, tttt != 0 is the number of table index bits-    0001eeee - length or distance, eeee is the number of extra bits-    01100000 - end of block-    01000000 - invalid code- */--/* Maximum size of dynamic tree.  The maximum found in a long but non--   exhaustive search was 1444 code structures (852 for length/literals-   and 592 for distances, the latter actually the result of an-   exhaustive search).  The true maximum is not known, but the value-   below is more than safe. */-#define ENOUGH 2048-#define MAXD 592--/* Type of code to build for inftable() */-typedef enum {-    CODES,-    LENS,-    DISTS-} codetype;--extern int inflate_table OF((codetype type, unsigned short FAR *lens,-                             unsigned codes, code FAR * FAR *table,-                             unsigned FAR *bits, unsigned short FAR *work));
− include/trees.h
@@ -1,128 +0,0 @@-/* header created automatically with -DGEN_TREES_H */--local const ct_data static_ltree[L_CODES+2] = {-{{ 12},{  8}}, {{140},{  8}}, {{ 76},{  8}}, {{204},{  8}}, {{ 44},{  8}},-{{172},{  8}}, {{108},{  8}}, {{236},{  8}}, {{ 28},{  8}}, {{156},{  8}},-{{ 92},{  8}}, {{220},{  8}}, {{ 60},{  8}}, {{188},{  8}}, {{124},{  8}},-{{252},{  8}}, {{  2},{  8}}, {{130},{  8}}, {{ 66},{  8}}, {{194},{  8}},-{{ 34},{  8}}, {{162},{  8}}, {{ 98},{  8}}, {{226},{  8}}, {{ 18},{  8}},-{{146},{  8}}, {{ 82},{  8}}, {{210},{  8}}, {{ 50},{  8}}, {{178},{  8}},-{{114},{  8}}, {{242},{  8}}, {{ 10},{  8}}, {{138},{  8}}, {{ 74},{  8}},-{{202},{  8}}, {{ 42},{  8}}, {{170},{  8}}, {{106},{  8}}, {{234},{  8}},-{{ 26},{  8}}, {{154},{  8}}, {{ 90},{  8}}, {{218},{  8}}, {{ 58},{  8}},-{{186},{  8}}, {{122},{  8}}, {{250},{  8}}, {{  6},{  8}}, {{134},{  8}},-{{ 70},{  8}}, {{198},{  8}}, {{ 38},{  8}}, {{166},{  8}}, {{102},{  8}},-{{230},{  8}}, {{ 22},{  8}}, {{150},{  8}}, {{ 86},{  8}}, {{214},{  8}},-{{ 54},{  8}}, {{182},{  8}}, {{118},{  8}}, {{246},{  8}}, {{ 14},{  8}},-{{142},{  8}}, {{ 78},{  8}}, {{206},{  8}}, {{ 46},{  8}}, {{174},{  8}},-{{110},{  8}}, {{238},{  8}}, {{ 30},{  8}}, {{158},{  8}}, {{ 94},{  8}},-{{222},{  8}}, {{ 62},{  8}}, {{190},{  8}}, {{126},{  8}}, {{254},{  8}},-{{  1},{  8}}, {{129},{  8}}, {{ 65},{  8}}, {{193},{  8}}, {{ 33},{  8}},-{{161},{  8}}, {{ 97},{  8}}, {{225},{  8}}, {{ 17},{  8}}, {{145},{  8}},-{{ 81},{  8}}, {{209},{  8}}, {{ 49},{  8}}, {{177},{  8}}, {{113},{  8}},-{{241},{  8}}, {{  9},{  8}}, {{137},{  8}}, {{ 73},{  8}}, {{201},{  8}},-{{ 41},{  8}}, {{169},{  8}}, {{105},{  8}}, {{233},{  8}}, {{ 25},{  8}},-{{153},{  8}}, {{ 89},{  8}}, {{217},{  8}}, {{ 57},{  8}}, {{185},{  8}},-{{121},{  8}}, {{249},{  8}}, {{  5},{  8}}, {{133},{  8}}, {{ 69},{  8}},-{{197},{  8}}, {{ 37},{  8}}, {{165},{  8}}, {{101},{  8}}, {{229},{  8}},-{{ 21},{  8}}, {{149},{  8}}, {{ 85},{  8}}, {{213},{  8}}, {{ 53},{  8}},-{{181},{  8}}, {{117},{  8}}, {{245},{  8}}, {{ 13},{  8}}, {{141},{  8}},-{{ 77},{  8}}, {{205},{  8}}, {{ 45},{  8}}, {{173},{  8}}, {{109},{  8}},-{{237},{  8}}, {{ 29},{  8}}, {{157},{  8}}, {{ 93},{  8}}, {{221},{  8}},-{{ 61},{  8}}, {{189},{  8}}, {{125},{  8}}, {{253},{  8}}, {{ 19},{  9}},-{{275},{  9}}, {{147},{  9}}, {{403},{  9}}, {{ 83},{  9}}, {{339},{  9}},-{{211},{  9}}, {{467},{  9}}, {{ 51},{  9}}, {{307},{  9}}, {{179},{  9}},-{{435},{  9}}, {{115},{  9}}, {{371},{  9}}, {{243},{  9}}, {{499},{  9}},-{{ 11},{  9}}, {{267},{  9}}, {{139},{  9}}, {{395},{  9}}, {{ 75},{  9}},-{{331},{  9}}, {{203},{  9}}, {{459},{  9}}, {{ 43},{  9}}, {{299},{  9}},-{{171},{  9}}, {{427},{  9}}, {{107},{  9}}, {{363},{  9}}, {{235},{  9}},-{{491},{  9}}, {{ 27},{  9}}, {{283},{  9}}, {{155},{  9}}, {{411},{  9}},-{{ 91},{  9}}, {{347},{  9}}, {{219},{  9}}, {{475},{  9}}, {{ 59},{  9}},-{{315},{  9}}, {{187},{  9}}, {{443},{  9}}, {{123},{  9}}, {{379},{  9}},-{{251},{  9}}, {{507},{  9}}, {{  7},{  9}}, {{263},{  9}}, {{135},{  9}},-{{391},{  9}}, {{ 71},{  9}}, {{327},{  9}}, {{199},{  9}}, {{455},{  9}},-{{ 39},{  9}}, {{295},{  9}}, {{167},{  9}}, {{423},{  9}}, {{103},{  9}},-{{359},{  9}}, {{231},{  9}}, {{487},{  9}}, {{ 23},{  9}}, {{279},{  9}},-{{151},{  9}}, {{407},{  9}}, {{ 87},{  9}}, {{343},{  9}}, {{215},{  9}},-{{471},{  9}}, {{ 55},{  9}}, {{311},{  9}}, {{183},{  9}}, {{439},{  9}},-{{119},{  9}}, {{375},{  9}}, {{247},{  9}}, {{503},{  9}}, {{ 15},{  9}},-{{271},{  9}}, {{143},{  9}}, {{399},{  9}}, {{ 79},{  9}}, {{335},{  9}},-{{207},{  9}}, {{463},{  9}}, {{ 47},{  9}}, {{303},{  9}}, {{175},{  9}},-{{431},{  9}}, {{111},{  9}}, {{367},{  9}}, {{239},{  9}}, {{495},{  9}},-{{ 31},{  9}}, {{287},{  9}}, {{159},{  9}}, {{415},{  9}}, {{ 95},{  9}},-{{351},{  9}}, {{223},{  9}}, {{479},{  9}}, {{ 63},{  9}}, {{319},{  9}},-{{191},{  9}}, {{447},{  9}}, {{127},{  9}}, {{383},{  9}}, {{255},{  9}},-{{511},{  9}}, {{  0},{  7}}, {{ 64},{  7}}, {{ 32},{  7}}, {{ 96},{  7}},-{{ 16},{  7}}, {{ 80},{  7}}, {{ 48},{  7}}, {{112},{  7}}, {{  8},{  7}},-{{ 72},{  7}}, {{ 40},{  7}}, {{104},{  7}}, {{ 24},{  7}}, {{ 88},{  7}},-{{ 56},{  7}}, {{120},{  7}}, {{  4},{  7}}, {{ 68},{  7}}, {{ 36},{  7}},-{{100},{  7}}, {{ 20},{  7}}, {{ 84},{  7}}, {{ 52},{  7}}, {{116},{  7}},-{{  3},{  8}}, {{131},{  8}}, {{ 67},{  8}}, {{195},{  8}}, {{ 35},{  8}},-{{163},{  8}}, {{ 99},{  8}}, {{227},{  8}}-};--local const ct_data static_dtree[D_CODES] = {-{{ 0},{ 5}}, {{16},{ 5}}, {{ 8},{ 5}}, {{24},{ 5}}, {{ 4},{ 5}},-{{20},{ 5}}, {{12},{ 5}}, {{28},{ 5}}, {{ 2},{ 5}}, {{18},{ 5}},-{{10},{ 5}}, {{26},{ 5}}, {{ 6},{ 5}}, {{22},{ 5}}, {{14},{ 5}},-{{30},{ 5}}, {{ 1},{ 5}}, {{17},{ 5}}, {{ 9},{ 5}}, {{25},{ 5}},-{{ 5},{ 5}}, {{21},{ 5}}, {{13},{ 5}}, {{29},{ 5}}, {{ 3},{ 5}},-{{19},{ 5}}, {{11},{ 5}}, {{27},{ 5}}, {{ 7},{ 5}}, {{23},{ 5}}-};--const uch _dist_code[DIST_CODE_LEN] = {- 0,  1,  2,  3,  4,  4,  5,  5,  6,  6,  6,  6,  7,  7,  7,  7,  8,  8,  8,  8,- 8,  8,  8,  8,  9,  9,  9,  9,  9,  9,  9,  9, 10, 10, 10, 10, 10, 10, 10, 10,-10, 10, 10, 10, 10, 10, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11,-11, 11, 11, 11, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12,-12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 13, 13, 13, 13,-13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13,-13, 13, 13, 13, 13, 13, 13, 13, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14,-14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14,-14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14,-14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 15, 15, 15, 15, 15, 15, 15, 15,-15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15,-15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15,-15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15,  0,  0, 16, 17,-18, 18, 19, 19, 20, 20, 20, 20, 21, 21, 21, 21, 22, 22, 22, 22, 22, 22, 22, 22,-23, 23, 23, 23, 23, 23, 23, 23, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24,-24, 24, 24, 24, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25,-26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26,-26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 27, 27, 27, 27, 27, 27, 27, 27,-27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27,-27, 27, 27, 27, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28,-28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28,-28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28,-28, 28, 28, 28, 28, 28, 28, 28, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29,-29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29,-29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29,-29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29-};--const uch _length_code[MAX_MATCH-MIN_MATCH+1]= {- 0,  1,  2,  3,  4,  5,  6,  7,  8,  8,  9,  9, 10, 10, 11, 11, 12, 12, 12, 12,-13, 13, 13, 13, 14, 14, 14, 14, 15, 15, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16,-17, 17, 17, 17, 17, 17, 17, 17, 18, 18, 18, 18, 18, 18, 18, 18, 19, 19, 19, 19,-19, 19, 19, 19, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20, 20,-21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 21, 22, 22, 22, 22,-22, 22, 22, 22, 22, 22, 22, 22, 22, 22, 22, 22, 23, 23, 23, 23, 23, 23, 23, 23,-23, 23, 23, 23, 23, 23, 23, 23, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24,-24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24, 24,-25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25,-25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 25, 26, 26, 26, 26, 26, 26, 26, 26,-26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26,-26, 26, 26, 26, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27,-27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 28-};--local const int base_length[LENGTH_CODES] = {-0, 1, 2, 3, 4, 5, 6, 7, 8, 10, 12, 14, 16, 20, 24, 28, 32, 40, 48, 56,-64, 80, 96, 112, 128, 160, 192, 224, 0-};--local const int base_dist[D_CODES] = {-    0,     1,     2,     3,     4,     6,     8,    12,    16,    24,-   32,    48,    64,    96,   128,   192,   256,   384,   512,   768,- 1024,  1536,  2048,  3072,  4096,  6144,  8192, 12288, 16384, 24576-};-
− include/zconf.h
@@ -1,332 +0,0 @@-/* zconf.h -- configuration of the zlib compression library- * Copyright (C) 1995-2005 Jean-loup Gailly.- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* @(#) $Id$ */--#ifndef ZCONF_H-#define ZCONF_H--/*- * If you *really* need a unique prefix for all types and library functions,- * compile with -DZ_PREFIX. The "standard" zlib should be compiled without it.- */-#ifdef Z_PREFIX-#  define deflateInit_          z_deflateInit_-#  define deflate               z_deflate-#  define deflateEnd            z_deflateEnd-#  define inflateInit_          z_inflateInit_-#  define inflate               z_inflate-#  define inflateEnd            z_inflateEnd-#  define deflateInit2_         z_deflateInit2_-#  define deflateSetDictionary  z_deflateSetDictionary-#  define deflateCopy           z_deflateCopy-#  define deflateReset          z_deflateReset-#  define deflateParams         z_deflateParams-#  define deflateBound          z_deflateBound-#  define deflatePrime          z_deflatePrime-#  define inflateInit2_         z_inflateInit2_-#  define inflateSetDictionary  z_inflateSetDictionary-#  define inflateSync           z_inflateSync-#  define inflateSyncPoint      z_inflateSyncPoint-#  define inflateCopy           z_inflateCopy-#  define inflateReset          z_inflateReset-#  define inflateBack           z_inflateBack-#  define inflateBackEnd        z_inflateBackEnd-#  define compress              z_compress-#  define compress2             z_compress2-#  define compressBound         z_compressBound-#  define uncompress            z_uncompress-#  define adler32               z_adler32-#  define crc32                 z_crc32-#  define get_crc_table         z_get_crc_table-#  define zError                z_zError--#  define alloc_func            z_alloc_func-#  define free_func             z_free_func-#  define in_func               z_in_func-#  define out_func              z_out_func-#  define Byte                  z_Byte-#  define uInt                  z_uInt-#  define uLong                 z_uLong-#  define Bytef                 z_Bytef-#  define charf                 z_charf-#  define intf                  z_intf-#  define uIntf                 z_uIntf-#  define uLongf                z_uLongf-#  define voidpf                z_voidpf-#  define voidp                 z_voidp-#endif--#if defined(__MSDOS__) && !defined(MSDOS)-#  define MSDOS-#endif-#if (defined(OS_2) || defined(__OS2__)) && !defined(OS2)-#  define OS2-#endif-#if defined(_WINDOWS) && !defined(WINDOWS)-#  define WINDOWS-#endif-#if defined(_WIN32) || defined(_WIN32_WCE) || defined(__WIN32__)-#  ifndef WIN32-#    define WIN32-#  endif-#endif-#if (defined(MSDOS) || defined(OS2) || defined(WINDOWS)) && !defined(WIN32)-#  if !defined(__GNUC__) && !defined(__FLAT__) && !defined(__386__)-#    ifndef SYS16BIT-#      define SYS16BIT-#    endif-#  endif-#endif--/*- * Compile with -DMAXSEG_64K if the alloc function cannot allocate more- * than 64k bytes at a time (needed on systems with 16-bit int).- */-#ifdef SYS16BIT-#  define MAXSEG_64K-#endif-#ifdef MSDOS-#  define UNALIGNED_OK-#endif--#ifdef __STDC_VERSION__-#  ifndef STDC-#    define STDC-#  endif-#  if __STDC_VERSION__ >= 199901L-#    ifndef STDC99-#      define STDC99-#    endif-#  endif-#endif-#if !defined(STDC) && (defined(__STDC__) || defined(__cplusplus))-#  define STDC-#endif-#if !defined(STDC) && (defined(__GNUC__) || defined(__BORLANDC__))-#  define STDC-#endif-#if !defined(STDC) && (defined(MSDOS) || defined(WINDOWS) || defined(WIN32))-#  define STDC-#endif-#if !defined(STDC) && (defined(OS2) || defined(__HOS_AIX__))-#  define STDC-#endif--#if defined(__OS400__) && !defined(STDC)    /* iSeries (formerly AS/400). */-#  define STDC-#endif--#ifndef STDC-#  ifndef const /* cannot use !defined(STDC) && !defined(const) on Mac */-#    define const       /* note: need a more gentle solution here */-#  endif-#endif--/* Some Mac compilers merge all .h files incorrectly: */-#if defined(__MWERKS__)||defined(applec)||defined(THINK_C)||defined(__SC__)-#  define NO_DUMMY_DECL-#endif--/* Maximum value for memLevel in deflateInit2 */-#ifndef MAX_MEM_LEVEL-#  ifdef MAXSEG_64K-#    define MAX_MEM_LEVEL 8-#  else-#    define MAX_MEM_LEVEL 9-#  endif-#endif--/* Maximum value for windowBits in deflateInit2 and inflateInit2.- * WARNING: reducing MAX_WBITS makes minigzip unable to extract .gz files- * created by gzip. (Files created by minigzip can still be extracted by- * gzip.)- */-#ifndef MAX_WBITS-#  define MAX_WBITS   15 /* 32K LZ77 window */-#endif--/* The memory requirements for deflate are (in bytes):-            (1 << (windowBits+2)) +  (1 << (memLevel+9))- that is: 128K for windowBits=15  +  128K for memLevel = 8  (default values)- plus a few kilobytes for small objects. For example, if you want to reduce- the default memory requirements from 256K to 128K, compile with-     make CFLAGS="-O -DMAX_WBITS=14 -DMAX_MEM_LEVEL=7"- Of course this will generally degrade compression (there's no free lunch).--   The memory requirements for inflate are (in bytes) 1 << windowBits- that is, 32K for windowBits=15 (default value) plus a few kilobytes- for small objects.-*/--                        /* Type declarations */--#ifndef OF /* function prototypes */-#  ifdef STDC-#    define OF(args)  args-#  else-#    define OF(args)  ()-#  endif-#endif--/* The following definitions for FAR are needed only for MSDOS mixed- * model programming (small or medium model with some far allocations).- * This was tested only with MSC; for other MSDOS compilers you may have- * to define NO_MEMCPY in zutil.h.  If you don't need the mixed model,- * just define FAR to be empty.- */-#ifdef SYS16BIT-#  if defined(M_I86SM) || defined(M_I86MM)-     /* MSC small or medium model */-#    define SMALL_MEDIUM-#    ifdef _MSC_VER-#      define FAR _far-#    else-#      define FAR far-#    endif-#  endif-#  if (defined(__SMALL__) || defined(__MEDIUM__))-     /* Turbo C small or medium model */-#    define SMALL_MEDIUM-#    ifdef __BORLANDC__-#      define FAR _far-#    else-#      define FAR far-#    endif-#  endif-#endif--#if defined(WINDOWS) || defined(WIN32)-   /* If building or using zlib as a DLL, define ZLIB_DLL.-    * This is not mandatory, but it offers a little performance increase.-    */-#  ifdef ZLIB_DLL-#    if defined(WIN32) && (!defined(__BORLANDC__) || (__BORLANDC__ >= 0x500))-#      ifdef ZLIB_INTERNAL-#        define ZEXTERN extern __declspec(dllexport)-#      else-#        define ZEXTERN extern __declspec(dllimport)-#      endif-#    endif-#  endif  /* ZLIB_DLL */-   /* If building or using zlib with the WINAPI/WINAPIV calling convention,-    * define ZLIB_WINAPI.-    * Caution: the standard ZLIB1.DLL is NOT compiled using ZLIB_WINAPI.-    */-#  ifdef ZLIB_WINAPI-#    ifdef FAR-#      undef FAR-#    endif-#    include <windows.h>-     /* No need for _export, use ZLIB.DEF instead. */-     /* For complete Windows compatibility, use WINAPI, not __stdcall. */-#    define ZEXPORT WINAPI-#    ifdef WIN32-#      define ZEXPORTVA WINAPIV-#    else-#      define ZEXPORTVA FAR CDECL-#    endif-#  endif-#endif--#if defined (__BEOS__)-#  ifdef ZLIB_DLL-#    ifdef ZLIB_INTERNAL-#      define ZEXPORT   __declspec(dllexport)-#      define ZEXPORTVA __declspec(dllexport)-#    else-#      define ZEXPORT   __declspec(dllimport)-#      define ZEXPORTVA __declspec(dllimport)-#    endif-#  endif-#endif--#ifndef ZEXTERN-#  define ZEXTERN extern-#endif-#ifndef ZEXPORT-#  define ZEXPORT-#endif-#ifndef ZEXPORTVA-#  define ZEXPORTVA-#endif--#ifndef FAR-#  define FAR-#endif--#if !defined(__MACTYPES__)-typedef unsigned char  Byte;  /* 8 bits */-#endif-typedef unsigned int   uInt;  /* 16 bits or more */-typedef unsigned long  uLong; /* 32 bits or more */--#ifdef SMALL_MEDIUM-   /* Borland C/C++ and some old MSC versions ignore FAR inside typedef */-#  define Bytef Byte FAR-#else-   typedef Byte  FAR Bytef;-#endif-typedef char  FAR charf;-typedef int   FAR intf;-typedef uInt  FAR uIntf;-typedef uLong FAR uLongf;--#ifdef STDC-   typedef void const *voidpc;-   typedef void FAR   *voidpf;-   typedef void       *voidp;-#else-   typedef Byte const *voidpc;-   typedef Byte FAR   *voidpf;-   typedef Byte       *voidp;-#endif--#if 1           /* HAVE_UNISTD_H -- this line is updated by ./configure */-#  include <sys/types.h> /* for off_t */-#  include <unistd.h>    /* for SEEK_* and off_t */-#  ifdef VMS-#    include <unixio.h>   /* for off_t */-#  endif-#  define z_off_t off_t-#endif-#ifndef SEEK_SET-#  define SEEK_SET        0       /* Seek from beginning of file.  */-#  define SEEK_CUR        1       /* Seek from current position.  */-#  define SEEK_END        2       /* Set file pointer to EOF plus "offset" */-#endif-#ifndef z_off_t-#  define z_off_t long-#endif--#if defined(__OS400__)-#  define NO_vsnprintf-#endif--#if defined(__MVS__)-#  define NO_vsnprintf-#  ifdef FAR-#    undef FAR-#  endif-#endif--/* MVS linker does not support external names larger than 8 bytes */-#if defined(__MVS__)-#   pragma map(deflateInit_,"DEIN")-#   pragma map(deflateInit2_,"DEIN2")-#   pragma map(deflateEnd,"DEEND")-#   pragma map(deflateBound,"DEBND")-#   pragma map(inflateInit_,"ININ")-#   pragma map(inflateInit2_,"ININ2")-#   pragma map(inflateEnd,"INEND")-#   pragma map(inflateSync,"INSY")-#   pragma map(inflateSetDictionary,"INSEDI")-#   pragma map(compressBound,"CMBND")-#   pragma map(inflate_table,"INTABL")-#   pragma map(inflate_fast,"INFA")-#   pragma map(inflate_copyright,"INCOPY")-#endif--#endif /* ZCONF_H */
− include/zlib.h
@@ -1,1357 +0,0 @@-/* zlib.h -- interface of the 'zlib' general purpose compression library-  version 1.2.3, July 18th, 2005--  Copyright (C) 1995-2005 Jean-loup Gailly and Mark Adler--  This software is provided 'as-is', without any express or implied-  warranty.  In no event will the authors be held liable for any damages-  arising from the use of this software.--  Permission is granted to anyone to use this software for any purpose,-  including commercial applications, and to alter it and redistribute it-  freely, subject to the following restrictions:--  1. The origin of this software must not be misrepresented; you must not-     claim that you wrote the original software. If you use this software-     in a product, an acknowledgment in the product documentation would be-     appreciated but is not required.-  2. Altered source versions must be plainly marked as such, and must not be-     misrepresented as being the original software.-  3. This notice may not be removed or altered from any source distribution.--  Jean-loup Gailly        Mark Adler-  jloup@gzip.org          madler@alumni.caltech.edu---  The data format used by the zlib library is described by RFCs (Request for-  Comments) 1950 to 1952 in the files http://www.ietf.org/rfc/rfc1950.txt-  (zlib format), rfc1951.txt (deflate format) and rfc1952.txt (gzip format).-*/--#ifndef ZLIB_H-#define ZLIB_H--#include "zconf.h"--#ifdef __cplusplus-extern "C" {-#endif--#define ZLIB_VERSION "1.2.3"-#define ZLIB_VERNUM 0x1230--/*-     The 'zlib' compression library provides in-memory compression and-  decompression functions, including integrity checks of the uncompressed-  data.  This version of the library supports only one compression method-  (deflation) but other algorithms will be added later and will have the same-  stream interface.--     Compression can be done in a single step if the buffers are large-  enough (for example if an input file is mmap'ed), or can be done by-  repeated calls of the compression function.  In the latter case, the-  application must provide more input and/or consume the output-  (providing more output space) before each call.--     The compressed data format used by default by the in-memory functions is-  the zlib format, which is a zlib wrapper documented in RFC 1950, wrapped-  around a deflate stream, which is itself documented in RFC 1951.--     The library also supports reading and writing files in gzip (.gz) format-  with an interface similar to that of stdio using the functions that start-  with "gz".  The gzip format is different from the zlib format.  gzip is a-  gzip wrapper, documented in RFC 1952, wrapped around a deflate stream.--     This library can optionally read and write gzip streams in memory as well.--     The zlib format was designed to be compact and fast for use in memory-  and on communications channels.  The gzip format was designed for single--  file compression on file systems, has a larger header than zlib to maintain-  directory information, and uses a different, slower check method than zlib.--     The library does not install any signal handler. The decoder checks-  the consistency of the compressed data, so the library should never-  crash even in case of corrupted input.-*/--typedef voidpf (*alloc_func) OF((voidpf opaque, uInt items, uInt size));-typedef void   (*free_func)  OF((voidpf opaque, voidpf address));--struct internal_state;--typedef struct z_stream_s {-    Bytef    *next_in;  /* next input byte */-    uInt     avail_in;  /* number of bytes available at next_in */-    uLong    total_in;  /* total nb of input bytes read so far */--    Bytef    *next_out; /* next output byte should be put there */-    uInt     avail_out; /* remaining free space at next_out */-    uLong    total_out; /* total nb of bytes output so far */--    char     *msg;      /* last error message, NULL if no error */-    struct internal_state FAR *state; /* not visible by applications */--    alloc_func zalloc;  /* used to allocate the internal state */-    free_func  zfree;   /* used to free the internal state */-    voidpf     opaque;  /* private data object passed to zalloc and zfree */--    int     data_type;  /* best guess about the data type: binary or text */-    uLong   adler;      /* adler32 value of the uncompressed data */-    uLong   reserved;   /* reserved for future use */-} z_stream;--typedef z_stream FAR *z_streamp;--/*-     gzip header information passed to and from zlib routines.  See RFC 1952-  for more details on the meanings of these fields.-*/-typedef struct gz_header_s {-    int     text;       /* true if compressed data believed to be text */-    uLong   time;       /* modification time */-    int     xflags;     /* extra flags (not used when writing a gzip file) */-    int     os;         /* operating system */-    Bytef   *extra;     /* pointer to extra field or Z_NULL if none */-    uInt    extra_len;  /* extra field length (valid if extra != Z_NULL) */-    uInt    extra_max;  /* space at extra (only when reading header) */-    Bytef   *name;      /* pointer to zero-terminated file name or Z_NULL */-    uInt    name_max;   /* space at name (only when reading header) */-    Bytef   *comment;   /* pointer to zero-terminated comment or Z_NULL */-    uInt    comm_max;   /* space at comment (only when reading header) */-    int     hcrc;       /* true if there was or will be a header crc */-    int     done;       /* true when done reading gzip header (not used-                           when writing a gzip file) */-} gz_header;--typedef gz_header FAR *gz_headerp;--/*-   The application must update next_in and avail_in when avail_in has-   dropped to zero. It must update next_out and avail_out when avail_out-   has dropped to zero. The application must initialize zalloc, zfree and-   opaque before calling the init function. All other fields are set by the-   compression library and must not be updated by the application.--   The opaque value provided by the application will be passed as the first-   parameter for calls of zalloc and zfree. This can be useful for custom-   memory management. The compression library attaches no meaning to the-   opaque value.--   zalloc must return Z_NULL if there is not enough memory for the object.-   If zlib is used in a multi-threaded application, zalloc and zfree must be-   thread safe.--   On 16-bit systems, the functions zalloc and zfree must be able to allocate-   exactly 65536 bytes, but will not be required to allocate more than this-   if the symbol MAXSEG_64K is defined (see zconf.h). WARNING: On MSDOS,-   pointers returned by zalloc for objects of exactly 65536 bytes *must*-   have their offset normalized to zero. The default allocation function-   provided by this library ensures this (see zutil.c). To reduce memory-   requirements and avoid any allocation of 64K objects, at the expense of-   compression ratio, compile the library with -DMAX_WBITS=14 (see zconf.h).--   The fields total_in and total_out can be used for statistics or-   progress reports. After compression, total_in holds the total size of-   the uncompressed data and may be saved for use in the decompressor-   (particularly if the decompressor wants to decompress everything in-   a single step).-*/--                        /* constants */--#define Z_NO_FLUSH      0-#define Z_PARTIAL_FLUSH 1 /* will be removed, use Z_SYNC_FLUSH instead */-#define Z_SYNC_FLUSH    2-#define Z_FULL_FLUSH    3-#define Z_FINISH        4-#define Z_BLOCK         5-/* Allowed flush values; see deflate() and inflate() below for details */--#define Z_OK            0-#define Z_STREAM_END    1-#define Z_NEED_DICT     2-#define Z_ERRNO        (-1)-#define Z_STREAM_ERROR (-2)-#define Z_DATA_ERROR   (-3)-#define Z_MEM_ERROR    (-4)-#define Z_BUF_ERROR    (-5)-#define Z_VERSION_ERROR (-6)-/* Return codes for the compression/decompression functions. Negative- * values are errors, positive values are used for special but normal events.- */--#define Z_NO_COMPRESSION         0-#define Z_BEST_SPEED             1-#define Z_BEST_COMPRESSION       9-#define Z_DEFAULT_COMPRESSION  (-1)-/* compression levels */--#define Z_FILTERED            1-#define Z_HUFFMAN_ONLY        2-#define Z_RLE                 3-#define Z_FIXED               4-#define Z_DEFAULT_STRATEGY    0-/* compression strategy; see deflateInit2() below for details */--#define Z_BINARY   0-#define Z_TEXT     1-#define Z_ASCII    Z_TEXT   /* for compatibility with 1.2.2 and earlier */-#define Z_UNKNOWN  2-/* Possible values of the data_type field (though see inflate()) */--#define Z_DEFLATED   8-/* The deflate compression method (the only one supported in this version) */--#define Z_NULL  0  /* for initializing zalloc, zfree, opaque */--#define zlib_version zlibVersion()-/* for compatibility with versions < 1.0.2 */--                        /* basic functions */--ZEXTERN const char * ZEXPORT zlibVersion OF((void));-/* The application can compare zlibVersion and ZLIB_VERSION for consistency.-   If the first character differs, the library code actually used is-   not compatible with the zlib.h header file used by the application.-   This check is automatically made by deflateInit and inflateInit.- */--/*-ZEXTERN int ZEXPORT deflateInit OF((z_streamp strm, int level));--     Initializes the internal stream state for compression. The fields-   zalloc, zfree and opaque must be initialized before by the caller.-   If zalloc and zfree are set to Z_NULL, deflateInit updates them to-   use default allocation functions.--     The compression level must be Z_DEFAULT_COMPRESSION, or between 0 and 9:-   1 gives best speed, 9 gives best compression, 0 gives no compression at-   all (the input data is simply copied a block at a time).-   Z_DEFAULT_COMPRESSION requests a default compromise between speed and-   compression (currently equivalent to level 6).--     deflateInit returns Z_OK if success, Z_MEM_ERROR if there was not-   enough memory, Z_STREAM_ERROR if level is not a valid compression level,-   Z_VERSION_ERROR if the zlib library version (zlib_version) is incompatible-   with the version assumed by the caller (ZLIB_VERSION).-   msg is set to null if there is no error message.  deflateInit does not-   perform any compression: this will be done by deflate().-*/---ZEXTERN int ZEXPORT deflate OF((z_streamp strm, int flush));-/*-    deflate compresses as much data as possible, and stops when the input-  buffer becomes empty or the output buffer becomes full. It may introduce some-  output latency (reading input without producing any output) except when-  forced to flush.--    The detailed semantics are as follows. deflate performs one or both of the-  following actions:--  - Compress more input starting at next_in and update next_in and avail_in-    accordingly. If not all input can be processed (because there is not-    enough room in the output buffer), next_in and avail_in are updated and-    processing will resume at this point for the next call of deflate().--  - Provide more output starting at next_out and update next_out and avail_out-    accordingly. This action is forced if the parameter flush is non zero.-    Forcing flush frequently degrades the compression ratio, so this parameter-    should be set only when necessary (in interactive applications).-    Some output may be provided even if flush is not set.--  Before the call of deflate(), the application should ensure that at least-  one of the actions is possible, by providing more input and/or consuming-  more output, and updating avail_in or avail_out accordingly; avail_out-  should never be zero before the call. The application can consume the-  compressed output when it wants, for example when the output buffer is full-  (avail_out == 0), or after each call of deflate(). If deflate returns Z_OK-  and with zero avail_out, it must be called again after making room in the-  output buffer because there might be more output pending.--    Normally the parameter flush is set to Z_NO_FLUSH, which allows deflate to-  decide how much data to accumualte before producing output, in order to-  maximize compression.--    If the parameter flush is set to Z_SYNC_FLUSH, all pending output is-  flushed to the output buffer and the output is aligned on a byte boundary, so-  that the decompressor can get all input data available so far. (In particular-  avail_in is zero after the call if enough output space has been provided-  before the call.)  Flushing may degrade compression for some compression-  algorithms and so it should be used only when necessary.--    If flush is set to Z_FULL_FLUSH, all output is flushed as with-  Z_SYNC_FLUSH, and the compression state is reset so that decompression can-  restart from this point if previous compressed data has been damaged or if-  random access is desired. Using Z_FULL_FLUSH too often can seriously degrade-  compression.--    If deflate returns with avail_out == 0, this function must be called again-  with the same value of the flush parameter and more output space (updated-  avail_out), until the flush is complete (deflate returns with non-zero-  avail_out). In the case of a Z_FULL_FLUSH or Z_SYNC_FLUSH, make sure that-  avail_out is greater than six to avoid repeated flush markers due to-  avail_out == 0 on return.--    If the parameter flush is set to Z_FINISH, pending input is processed,-  pending output is flushed and deflate returns with Z_STREAM_END if there-  was enough output space; if deflate returns with Z_OK, this function must be-  called again with Z_FINISH and more output space (updated avail_out) but no-  more input data, until it returns with Z_STREAM_END or an error. After-  deflate has returned Z_STREAM_END, the only possible operations on the-  stream are deflateReset or deflateEnd.--    Z_FINISH can be used immediately after deflateInit if all the compression-  is to be done in a single step. In this case, avail_out must be at least-  the value returned by deflateBound (see below). If deflate does not return-  Z_STREAM_END, then it must be called again as described above.--    deflate() sets strm->adler to the adler32 checksum of all input read-  so far (that is, total_in bytes).--    deflate() may update strm->data_type if it can make a good guess about-  the input data type (Z_BINARY or Z_TEXT). In doubt, the data is considered-  binary. This field is only for information purposes and does not affect-  the compression algorithm in any manner.--    deflate() returns Z_OK if some progress has been made (more input-  processed or more output produced), Z_STREAM_END if all input has been-  consumed and all output has been produced (only when flush is set to-  Z_FINISH), Z_STREAM_ERROR if the stream state was inconsistent (for example-  if next_in or next_out was NULL), Z_BUF_ERROR if no progress is possible-  (for example avail_in or avail_out was zero). Note that Z_BUF_ERROR is not-  fatal, and deflate() can be called again with more input and more output-  space to continue compressing.-*/---ZEXTERN int ZEXPORT deflateEnd OF((z_streamp strm));-/*-     All dynamically allocated data structures for this stream are freed.-   This function discards any unprocessed input and does not flush any-   pending output.--     deflateEnd returns Z_OK if success, Z_STREAM_ERROR if the-   stream state was inconsistent, Z_DATA_ERROR if the stream was freed-   prematurely (some input or output was discarded). In the error case,-   msg may be set but then points to a static string (which must not be-   deallocated).-*/---/*-ZEXTERN int ZEXPORT inflateInit OF((z_streamp strm));--     Initializes the internal stream state for decompression. The fields-   next_in, avail_in, zalloc, zfree and opaque must be initialized before by-   the caller. If next_in is not Z_NULL and avail_in is large enough (the exact-   value depends on the compression method), inflateInit determines the-   compression method from the zlib header and allocates all data structures-   accordingly; otherwise the allocation will be deferred to the first call of-   inflate.  If zalloc and zfree are set to Z_NULL, inflateInit updates them to-   use default allocation functions.--     inflateInit returns Z_OK if success, Z_MEM_ERROR if there was not enough-   memory, Z_VERSION_ERROR if the zlib library version is incompatible with the-   version assumed by the caller.  msg is set to null if there is no error-   message. inflateInit does not perform any decompression apart from reading-   the zlib header if present: this will be done by inflate().  (So next_in and-   avail_in may be modified, but next_out and avail_out are unchanged.)-*/---ZEXTERN int ZEXPORT inflate OF((z_streamp strm, int flush));-/*-    inflate decompresses as much data as possible, and stops when the input-  buffer becomes empty or the output buffer becomes full. It may introduce-  some output latency (reading input without producing any output) except when-  forced to flush.--  The detailed semantics are as follows. inflate performs one or both of the-  following actions:--  - Decompress more input starting at next_in and update next_in and avail_in-    accordingly. If not all input can be processed (because there is not-    enough room in the output buffer), next_in is updated and processing-    will resume at this point for the next call of inflate().--  - Provide more output starting at next_out and update next_out and avail_out-    accordingly.  inflate() provides as much output as possible, until there-    is no more input data or no more space in the output buffer (see below-    about the flush parameter).--  Before the call of inflate(), the application should ensure that at least-  one of the actions is possible, by providing more input and/or consuming-  more output, and updating the next_* and avail_* values accordingly.-  The application can consume the uncompressed output when it wants, for-  example when the output buffer is full (avail_out == 0), or after each-  call of inflate(). If inflate returns Z_OK and with zero avail_out, it-  must be called again after making room in the output buffer because there-  might be more output pending.--    The flush parameter of inflate() can be Z_NO_FLUSH, Z_SYNC_FLUSH,-  Z_FINISH, or Z_BLOCK. Z_SYNC_FLUSH requests that inflate() flush as much-  output as possible to the output buffer. Z_BLOCK requests that inflate() stop-  if and when it gets to the next deflate block boundary. When decoding the-  zlib or gzip format, this will cause inflate() to return immediately after-  the header and before the first block. When doing a raw inflate, inflate()-  will go ahead and process the first block, and will return when it gets to-  the end of that block, or when it runs out of data.--    The Z_BLOCK option assists in appending to or combining deflate streams.-  Also to assist in this, on return inflate() will set strm->data_type to the-  number of unused bits in the last byte taken from strm->next_in, plus 64-  if inflate() is currently decoding the last block in the deflate stream,-  plus 128 if inflate() returned immediately after decoding an end-of-block-  code or decoding the complete header up to just before the first byte of the-  deflate stream. The end-of-block will not be indicated until all of the-  uncompressed data from that block has been written to strm->next_out.  The-  number of unused bits may in general be greater than seven, except when-  bit 7 of data_type is set, in which case the number of unused bits will be-  less than eight.--    inflate() should normally be called until it returns Z_STREAM_END or an-  error. However if all decompression is to be performed in a single step-  (a single call of inflate), the parameter flush should be set to-  Z_FINISH. In this case all pending input is processed and all pending-  output is flushed; avail_out must be large enough to hold all the-  uncompressed data. (The size of the uncompressed data may have been saved-  by the compressor for this purpose.) The next operation on this stream must-  be inflateEnd to deallocate the decompression state. The use of Z_FINISH-  is never required, but can be used to inform inflate that a faster approach-  may be used for the single inflate() call.--     In this implementation, inflate() always flushes as much output as-  possible to the output buffer, and always uses the faster approach on the-  first call. So the only effect of the flush parameter in this implementation-  is on the return value of inflate(), as noted below, or when it returns early-  because Z_BLOCK is used.--     If a preset dictionary is needed after this call (see inflateSetDictionary-  below), inflate sets strm->adler to the adler32 checksum of the dictionary-  chosen by the compressor and returns Z_NEED_DICT; otherwise it sets-  strm->adler to the adler32 checksum of all output produced so far (that is,-  total_out bytes) and returns Z_OK, Z_STREAM_END or an error code as described-  below. At the end of the stream, inflate() checks that its computed adler32-  checksum is equal to that saved by the compressor and returns Z_STREAM_END-  only if the checksum is correct.--    inflate() will decompress and check either zlib-wrapped or gzip-wrapped-  deflate data.  The header type is detected automatically.  Any information-  contained in the gzip header is not retained, so applications that need that-  information should instead use raw inflate, see inflateInit2() below, or-  inflateBack() and perform their own processing of the gzip header and-  trailer.--    inflate() returns Z_OK if some progress has been made (more input processed-  or more output produced), Z_STREAM_END if the end of the compressed data has-  been reached and all uncompressed output has been produced, Z_NEED_DICT if a-  preset dictionary is needed at this point, Z_DATA_ERROR if the input data was-  corrupted (input stream not conforming to the zlib format or incorrect check-  value), Z_STREAM_ERROR if the stream structure was inconsistent (for example-  if next_in or next_out was NULL), Z_MEM_ERROR if there was not enough memory,-  Z_BUF_ERROR if no progress is possible or if there was not enough room in the-  output buffer when Z_FINISH is used. Note that Z_BUF_ERROR is not fatal, and-  inflate() can be called again with more input and more output space to-  continue decompressing. If Z_DATA_ERROR is returned, the application may then-  call inflateSync() to look for a good compression block if a partial recovery-  of the data is desired.-*/---ZEXTERN int ZEXPORT inflateEnd OF((z_streamp strm));-/*-     All dynamically allocated data structures for this stream are freed.-   This function discards any unprocessed input and does not flush any-   pending output.--     inflateEnd returns Z_OK if success, Z_STREAM_ERROR if the stream state-   was inconsistent. In the error case, msg may be set but then points to a-   static string (which must not be deallocated).-*/--                        /* Advanced functions */--/*-    The following functions are needed only in some special applications.-*/--/*-ZEXTERN int ZEXPORT deflateInit2 OF((z_streamp strm,-                                     int  level,-                                     int  method,-                                     int  windowBits,-                                     int  memLevel,-                                     int  strategy));--     This is another version of deflateInit with more compression options. The-   fields next_in, zalloc, zfree and opaque must be initialized before by-   the caller.--     The method parameter is the compression method. It must be Z_DEFLATED in-   this version of the library.--     The windowBits parameter is the base two logarithm of the window size-   (the size of the history buffer). It should be in the range 8..15 for this-   version of the library. Larger values of this parameter result in better-   compression at the expense of memory usage. The default value is 15 if-   deflateInit is used instead.--     windowBits can also be -8..-15 for raw deflate. In this case, -windowBits-   determines the window size. deflate() will then generate raw deflate data-   with no zlib header or trailer, and will not compute an adler32 check value.--     windowBits can also be greater than 15 for optional gzip encoding. Add-   16 to windowBits to write a simple gzip header and trailer around the-   compressed data instead of a zlib wrapper. The gzip header will have no-   file name, no extra data, no comment, no modification time (set to zero),-   no header crc, and the operating system will be set to 255 (unknown).  If a-   gzip stream is being written, strm->adler is a crc32 instead of an adler32.--     The memLevel parameter specifies how much memory should be allocated-   for the internal compression state. memLevel=1 uses minimum memory but-   is slow and reduces compression ratio; memLevel=9 uses maximum memory-   for optimal speed. The default value is 8. See zconf.h for total memory-   usage as a function of windowBits and memLevel.--     The strategy parameter is used to tune the compression algorithm. Use the-   value Z_DEFAULT_STRATEGY for normal data, Z_FILTERED for data produced by a-   filter (or predictor), Z_HUFFMAN_ONLY to force Huffman encoding only (no-   string match), or Z_RLE to limit match distances to one (run-length-   encoding). Filtered data consists mostly of small values with a somewhat-   random distribution. In this case, the compression algorithm is tuned to-   compress them better. The effect of Z_FILTERED is to force more Huffman-   coding and less string matching; it is somewhat intermediate between-   Z_DEFAULT and Z_HUFFMAN_ONLY. Z_RLE is designed to be almost as fast as-   Z_HUFFMAN_ONLY, but give better compression for PNG image data. The strategy-   parameter only affects the compression ratio but not the correctness of the-   compressed output even if it is not set appropriately.  Z_FIXED prevents the-   use of dynamic Huffman codes, allowing for a simpler decoder for special-   applications.--      deflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough-   memory, Z_STREAM_ERROR if a parameter is invalid (such as an invalid-   method). msg is set to null if there is no error message.  deflateInit2 does-   not perform any compression: this will be done by deflate().-*/--ZEXTERN int ZEXPORT deflateSetDictionary OF((z_streamp strm,-                                             const Bytef *dictionary,-                                             uInt  dictLength));-/*-     Initializes the compression dictionary from the given byte sequence-   without producing any compressed output. This function must be called-   immediately after deflateInit, deflateInit2 or deflateReset, before any-   call of deflate. The compressor and decompressor must use exactly the same-   dictionary (see inflateSetDictionary).--     The dictionary should consist of strings (byte sequences) that are likely-   to be encountered later in the data to be compressed, with the most commonly-   used strings preferably put towards the end of the dictionary. Using a-   dictionary is most useful when the data to be compressed is short and can be-   predicted with good accuracy; the data can then be compressed better than-   with the default empty dictionary.--     Depending on the size of the compression data structures selected by-   deflateInit or deflateInit2, a part of the dictionary may in effect be-   discarded, for example if the dictionary is larger than the window size in-   deflate or deflate2. Thus the strings most likely to be useful should be-   put at the end of the dictionary, not at the front. In addition, the-   current implementation of deflate will use at most the window size minus-   262 bytes of the provided dictionary.--     Upon return of this function, strm->adler is set to the adler32 value-   of the dictionary; the decompressor may later use this value to determine-   which dictionary has been used by the compressor. (The adler32 value-   applies to the whole dictionary even if only a subset of the dictionary is-   actually used by the compressor.) If a raw deflate was requested, then the-   adler32 value is not computed and strm->adler is not set.--     deflateSetDictionary returns Z_OK if success, or Z_STREAM_ERROR if a-   parameter is invalid (such as NULL dictionary) or the stream state is-   inconsistent (for example if deflate has already been called for this stream-   or if the compression method is bsort). deflateSetDictionary does not-   perform any compression: this will be done by deflate().-*/--ZEXTERN int ZEXPORT deflateCopy OF((z_streamp dest,-                                    z_streamp source));-/*-     Sets the destination stream as a complete copy of the source stream.--     This function can be useful when several compression strategies will be-   tried, for example when there are several ways of pre-processing the input-   data with a filter. The streams that will be discarded should then be freed-   by calling deflateEnd.  Note that deflateCopy duplicates the internal-   compression state which can be quite large, so this strategy is slow and-   can consume lots of memory.--     deflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not-   enough memory, Z_STREAM_ERROR if the source stream state was inconsistent-   (such as zalloc being NULL). msg is left unchanged in both source and-   destination.-*/--ZEXTERN int ZEXPORT deflateReset OF((z_streamp strm));-/*-     This function is equivalent to deflateEnd followed by deflateInit,-   but does not free and reallocate all the internal compression state.-   The stream will keep the same compression level and any other attributes-   that may have been set by deflateInit2.--      deflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent (such as zalloc or state being NULL).-*/--ZEXTERN int ZEXPORT deflateParams OF((z_streamp strm,-                                      int level,-                                      int strategy));-/*-     Dynamically update the compression level and compression strategy.  The-   interpretation of level and strategy is as in deflateInit2.  This can be-   used to switch between compression and straight copy of the input data, or-   to switch to a different kind of input data requiring a different-   strategy. If the compression level is changed, the input available so far-   is compressed with the old level (and may be flushed); the new level will-   take effect only at the next call of deflate().--     Before the call of deflateParams, the stream state must be set as for-   a call of deflate(), since the currently available input may have to-   be compressed and flushed. In particular, strm->avail_out must be non-zero.--     deflateParams returns Z_OK if success, Z_STREAM_ERROR if the source-   stream state was inconsistent or if a parameter was invalid, Z_BUF_ERROR-   if strm->avail_out was zero.-*/--ZEXTERN int ZEXPORT deflateTune OF((z_streamp strm,-                                    int good_length,-                                    int max_lazy,-                                    int nice_length,-                                    int max_chain));-/*-     Fine tune deflate's internal compression parameters.  This should only be-   used by someone who understands the algorithm used by zlib's deflate for-   searching for the best matching string, and even then only by the most-   fanatic optimizer trying to squeeze out the last compressed bit for their-   specific input data.  Read the deflate.c source code for the meaning of the-   max_lazy, good_length, nice_length, and max_chain parameters.--     deflateTune() can be called after deflateInit() or deflateInit2(), and-   returns Z_OK on success, or Z_STREAM_ERROR for an invalid deflate stream.- */--ZEXTERN uLong ZEXPORT deflateBound OF((z_streamp strm,-                                       uLong sourceLen));-/*-     deflateBound() returns an upper bound on the compressed size after-   deflation of sourceLen bytes.  It must be called after deflateInit()-   or deflateInit2().  This would be used to allocate an output buffer-   for deflation in a single pass, and so would be called before deflate().-*/--ZEXTERN int ZEXPORT deflatePrime OF((z_streamp strm,-                                     int bits,-                                     int value));-/*-     deflatePrime() inserts bits in the deflate output stream.  The intent-  is that this function is used to start off the deflate output with the-  bits leftover from a previous deflate stream when appending to it.  As such,-  this function can only be used for raw deflate, and must be used before the-  first deflate() call after a deflateInit2() or deflateReset().  bits must be-  less than or equal to 16, and that many of the least significant bits of-  value will be inserted in the output.--      deflatePrime returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent.-*/--ZEXTERN int ZEXPORT deflateSetHeader OF((z_streamp strm,-                                         gz_headerp head));-/*-      deflateSetHeader() provides gzip header information for when a gzip-   stream is requested by deflateInit2().  deflateSetHeader() may be called-   after deflateInit2() or deflateReset() and before the first call of-   deflate().  The text, time, os, extra field, name, and comment information-   in the provided gz_header structure are written to the gzip header (xflag is-   ignored -- the extra flags are set according to the compression level).  The-   caller must assure that, if not Z_NULL, name and comment are terminated with-   a zero byte, and that if extra is not Z_NULL, that extra_len bytes are-   available there.  If hcrc is true, a gzip header crc is included.  Note that-   the current versions of the command-line version of gzip (up through version-   1.3.x) do not support header crc's, and will report that it is a "multi-part-   gzip file" and give up.--      If deflateSetHeader is not used, the default gzip header has text false,-   the time set to zero, and os set to 255, with no extra, name, or comment-   fields.  The gzip header is returned to the default state by deflateReset().--      deflateSetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent.-*/--/*-ZEXTERN int ZEXPORT inflateInit2 OF((z_streamp strm,-                                     int  windowBits));--     This is another version of inflateInit with an extra parameter. The-   fields next_in, avail_in, zalloc, zfree and opaque must be initialized-   before by the caller.--     The windowBits parameter is the base two logarithm of the maximum window-   size (the size of the history buffer).  It should be in the range 8..15 for-   this version of the library. The default value is 15 if inflateInit is used-   instead. windowBits must be greater than or equal to the windowBits value-   provided to deflateInit2() while compressing, or it must be equal to 15 if-   deflateInit2() was not used. If a compressed stream with a larger window-   size is given as input, inflate() will return with the error code-   Z_DATA_ERROR instead of trying to allocate a larger window.--     windowBits can also be -8..-15 for raw inflate. In this case, -windowBits-   determines the window size. inflate() will then process raw deflate data,-   not looking for a zlib or gzip header, not generating a check value, and not-   looking for any check values for comparison at the end of the stream. This-   is for use with other formats that use the deflate compressed data format-   such as zip.  Those formats provide their own check values. If a custom-   format is developed using the raw deflate format for compressed data, it is-   recommended that a check value such as an adler32 or a crc32 be applied to-   the uncompressed data as is done in the zlib, gzip, and zip formats.  For-   most applications, the zlib format should be used as is. Note that comments-   above on the use in deflateInit2() applies to the magnitude of windowBits.--     windowBits can also be greater than 15 for optional gzip decoding. Add-   32 to windowBits to enable zlib and gzip decoding with automatic header-   detection, or add 16 to decode only the gzip format (the zlib format will-   return a Z_DATA_ERROR).  If a gzip stream is being decoded, strm->adler is-   a crc32 instead of an adler32.--     inflateInit2 returns Z_OK if success, Z_MEM_ERROR if there was not enough-   memory, Z_STREAM_ERROR if a parameter is invalid (such as a null strm). msg-   is set to null if there is no error message.  inflateInit2 does not perform-   any decompression apart from reading the zlib header if present: this will-   be done by inflate(). (So next_in and avail_in may be modified, but next_out-   and avail_out are unchanged.)-*/--ZEXTERN int ZEXPORT inflateSetDictionary OF((z_streamp strm,-                                             const Bytef *dictionary,-                                             uInt  dictLength));-/*-     Initializes the decompression dictionary from the given uncompressed byte-   sequence. This function must be called immediately after a call of inflate,-   if that call returned Z_NEED_DICT. The dictionary chosen by the compressor-   can be determined from the adler32 value returned by that call of inflate.-   The compressor and decompressor must use exactly the same dictionary (see-   deflateSetDictionary).  For raw inflate, this function can be called-   immediately after inflateInit2() or inflateReset() and before any call of-   inflate() to set the dictionary.  The application must insure that the-   dictionary that was used for compression is provided.--     inflateSetDictionary returns Z_OK if success, Z_STREAM_ERROR if a-   parameter is invalid (such as NULL dictionary) or the stream state is-   inconsistent, Z_DATA_ERROR if the given dictionary doesn't match the-   expected one (incorrect adler32 value). inflateSetDictionary does not-   perform any decompression: this will be done by subsequent calls of-   inflate().-*/--ZEXTERN int ZEXPORT inflateSync OF((z_streamp strm));-/*-    Skips invalid compressed data until a full flush point (see above the-  description of deflate with Z_FULL_FLUSH) can be found, or until all-  available input is skipped. No output is provided.--    inflateSync returns Z_OK if a full flush point has been found, Z_BUF_ERROR-  if no more input was provided, Z_DATA_ERROR if no flush point has been found,-  or Z_STREAM_ERROR if the stream structure was inconsistent. In the success-  case, the application may save the current current value of total_in which-  indicates where valid compressed data was found. In the error case, the-  application may repeatedly call inflateSync, providing more input each time,-  until success or end of the input data.-*/--ZEXTERN int ZEXPORT inflateCopy OF((z_streamp dest,-                                    z_streamp source));-/*-     Sets the destination stream as a complete copy of the source stream.--     This function can be useful when randomly accessing a large stream.  The-   first pass through the stream can periodically record the inflate state,-   allowing restarting inflate at those points when randomly accessing the-   stream.--     inflateCopy returns Z_OK if success, Z_MEM_ERROR if there was not-   enough memory, Z_STREAM_ERROR if the source stream state was inconsistent-   (such as zalloc being NULL). msg is left unchanged in both source and-   destination.-*/--ZEXTERN int ZEXPORT inflateReset OF((z_streamp strm));-/*-     This function is equivalent to inflateEnd followed by inflateInit,-   but does not free and reallocate all the internal decompression state.-   The stream will keep attributes that may have been set by inflateInit2.--      inflateReset returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent (such as zalloc or state being NULL).-*/--ZEXTERN int ZEXPORT inflatePrime OF((z_streamp strm,-                                     int bits,-                                     int value));-/*-     This function inserts bits in the inflate input stream.  The intent is-  that this function is used to start inflating at a bit position in the-  middle of a byte.  The provided bits will be used before any bytes are used-  from next_in.  This function should only be used with raw inflate, and-  should be used before the first inflate() call after inflateInit2() or-  inflateReset().  bits must be less than or equal to 16, and that many of the-  least significant bits of value will be inserted in the input.--      inflatePrime returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent.-*/--ZEXTERN int ZEXPORT inflateGetHeader OF((z_streamp strm,-                                         gz_headerp head));-/*-      inflateGetHeader() requests that gzip header information be stored in the-   provided gz_header structure.  inflateGetHeader() may be called after-   inflateInit2() or inflateReset(), and before the first call of inflate().-   As inflate() processes the gzip stream, head->done is zero until the header-   is completed, at which time head->done is set to one.  If a zlib stream is-   being decoded, then head->done is set to -1 to indicate that there will be-   no gzip header information forthcoming.  Note that Z_BLOCK can be used to-   force inflate() to return immediately after header processing is complete-   and before any actual data is decompressed.--      The text, time, xflags, and os fields are filled in with the gzip header-   contents.  hcrc is set to true if there is a header CRC.  (The header CRC-   was valid if done is set to one.)  If extra is not Z_NULL, then extra_max-   contains the maximum number of bytes to write to extra.  Once done is true,-   extra_len contains the actual extra field length, and extra contains the-   extra field, or that field truncated if extra_max is less than extra_len.-   If name is not Z_NULL, then up to name_max characters are written there,-   terminated with a zero unless the length is greater than name_max.  If-   comment is not Z_NULL, then up to comm_max characters are written there,-   terminated with a zero unless the length is greater than comm_max.  When-   any of extra, name, or comment are not Z_NULL and the respective field is-   not present in the header, then that field is set to Z_NULL to signal its-   absence.  This allows the use of deflateSetHeader() with the returned-   structure to duplicate the header.  However if those fields are set to-   allocated memory, then the application will need to save those pointers-   elsewhere so that they can be eventually freed.--      If inflateGetHeader is not used, then the header information is simply-   discarded.  The header is always checked for validity, including the header-   CRC if present.  inflateReset() will reset the process to discard the header-   information.  The application would need to call inflateGetHeader() again to-   retrieve the header from the next gzip stream.--      inflateGetHeader returns Z_OK if success, or Z_STREAM_ERROR if the source-   stream state was inconsistent.-*/--/*-ZEXTERN int ZEXPORT inflateBackInit OF((z_streamp strm, int windowBits,-                                        unsigned char FAR *window));--     Initialize the internal stream state for decompression using inflateBack()-   calls.  The fields zalloc, zfree and opaque in strm must be initialized-   before the call.  If zalloc and zfree are Z_NULL, then the default library--   derived memory allocation routines are used.  windowBits is the base two-   logarithm of the window size, in the range 8..15.  window is a caller-   supplied buffer of that size.  Except for special applications where it is-   assured that deflate was used with small window sizes, windowBits must be 15-   and a 32K byte window must be supplied to be able to decompress general-   deflate streams.--     See inflateBack() for the usage of these routines.--     inflateBackInit will return Z_OK on success, Z_STREAM_ERROR if any of-   the paramaters are invalid, Z_MEM_ERROR if the internal state could not-   be allocated, or Z_VERSION_ERROR if the version of the library does not-   match the version of the header file.-*/--typedef unsigned (*in_func) OF((void FAR *, unsigned char FAR * FAR *));-typedef int (*out_func) OF((void FAR *, unsigned char FAR *, unsigned));--ZEXTERN int ZEXPORT inflateBack OF((z_streamp strm,-                                    in_func in, void FAR *in_desc,-                                    out_func out, void FAR *out_desc));-/*-     inflateBack() does a raw inflate with a single call using a call-back-   interface for input and output.  This is more efficient than inflate() for-   file i/o applications in that it avoids copying between the output and the-   sliding window by simply making the window itself the output buffer.  This-   function trusts the application to not change the output buffer passed by-   the output function, at least until inflateBack() returns.--     inflateBackInit() must be called first to allocate the internal state-   and to initialize the state with the user-provided window buffer.-   inflateBack() may then be used multiple times to inflate a complete, raw-   deflate stream with each call.  inflateBackEnd() is then called to free-   the allocated state.--     A raw deflate stream is one with no zlib or gzip header or trailer.-   This routine would normally be used in a utility that reads zip or gzip-   files and writes out uncompressed files.  The utility would decode the-   header and process the trailer on its own, hence this routine expects-   only the raw deflate stream to decompress.  This is different from the-   normal behavior of inflate(), which expects either a zlib or gzip header and-   trailer around the deflate stream.--     inflateBack() uses two subroutines supplied by the caller that are then-   called by inflateBack() for input and output.  inflateBack() calls those-   routines until it reads a complete deflate stream and writes out all of the-   uncompressed data, or until it encounters an error.  The function's-   parameters and return types are defined above in the in_func and out_func-   typedefs.  inflateBack() will call in(in_desc, &buf) which should return the-   number of bytes of provided input, and a pointer to that input in buf.  If-   there is no input available, in() must return zero--buf is ignored in that-   case--and inflateBack() will return a buffer error.  inflateBack() will call-   out(out_desc, buf, len) to write the uncompressed data buf[0..len-1].  out()-   should return zero on success, or non-zero on failure.  If out() returns-   non-zero, inflateBack() will return with an error.  Neither in() nor out()-   are permitted to change the contents of the window provided to-   inflateBackInit(), which is also the buffer that out() uses to write from.-   The length written by out() will be at most the window size.  Any non-zero-   amount of input may be provided by in().--     For convenience, inflateBack() can be provided input on the first call by-   setting strm->next_in and strm->avail_in.  If that input is exhausted, then-   in() will be called.  Therefore strm->next_in must be initialized before-   calling inflateBack().  If strm->next_in is Z_NULL, then in() will be called-   immediately for input.  If strm->next_in is not Z_NULL, then strm->avail_in-   must also be initialized, and then if strm->avail_in is not zero, input will-   initially be taken from strm->next_in[0 .. strm->avail_in - 1].--     The in_desc and out_desc parameters of inflateBack() is passed as the-   first parameter of in() and out() respectively when they are called.  These-   descriptors can be optionally used to pass any information that the caller--   supplied in() and out() functions need to do their job.--     On return, inflateBack() will set strm->next_in and strm->avail_in to-   pass back any unused input that was provided by the last in() call.  The-   return values of inflateBack() can be Z_STREAM_END on success, Z_BUF_ERROR-   if in() or out() returned an error, Z_DATA_ERROR if there was a format-   error in the deflate stream (in which case strm->msg is set to indicate the-   nature of the error), or Z_STREAM_ERROR if the stream was not properly-   initialized.  In the case of Z_BUF_ERROR, an input or output error can be-   distinguished using strm->next_in which will be Z_NULL only if in() returned-   an error.  If strm->next is not Z_NULL, then the Z_BUF_ERROR was due to-   out() returning non-zero.  (in() will always be called before out(), so-   strm->next_in is assured to be defined if out() returns non-zero.)  Note-   that inflateBack() cannot return Z_OK.-*/--ZEXTERN int ZEXPORT inflateBackEnd OF((z_streamp strm));-/*-     All memory allocated by inflateBackInit() is freed.--     inflateBackEnd() returns Z_OK on success, or Z_STREAM_ERROR if the stream-   state was inconsistent.-*/--ZEXTERN uLong ZEXPORT zlibCompileFlags OF((void));-/* Return flags indicating compile-time options.--    Type sizes, two bits each, 00 = 16 bits, 01 = 32, 10 = 64, 11 = other:-     1.0: size of uInt-     3.2: size of uLong-     5.4: size of voidpf (pointer)-     7.6: size of z_off_t--    Compiler, assembler, and debug options:-     8: DEBUG-     9: ASMV or ASMINF -- use ASM code-     10: ZLIB_WINAPI -- exported functions use the WINAPI calling convention-     11: 0 (reserved)--    One-time table building (smaller code, but not thread-safe if true):-     12: BUILDFIXED -- build static block decoding tables when needed-     13: DYNAMIC_CRC_TABLE -- build CRC calculation tables when needed-     14,15: 0 (reserved)--    Library content (indicates missing functionality):-     16: NO_GZCOMPRESS -- gz* functions cannot compress (to avoid linking-                          deflate code when not needed)-     17: NO_GZIP -- deflate can't write gzip streams, and inflate can't detect-                    and decode gzip streams (to avoid linking crc code)-     18-19: 0 (reserved)--    Operation variations (changes in library functionality):-     20: PKZIP_BUG_WORKAROUND -- slightly more permissive inflate-     21: FASTEST -- deflate algorithm with only one, lowest compression level-     22,23: 0 (reserved)--    The sprintf variant used by gzprintf (zero is best):-     24: 0 = vs*, 1 = s* -- 1 means limited to 20 arguments after the format-     25: 0 = *nprintf, 1 = *printf -- 1 means gzprintf() not secure!-     26: 0 = returns value, 1 = void -- 1 means inferred string length returned--    Remainder:-     27-31: 0 (reserved)- */---                        /* utility functions */--/*-     The following utility functions are implemented on top of the-   basic stream-oriented functions. To simplify the interface, some-   default options are assumed (compression level and memory usage,-   standard memory allocation functions). The source code of these-   utility functions can easily be modified if you need special options.-*/--ZEXTERN int ZEXPORT compress OF((Bytef *dest,   uLongf *destLen,-                                 const Bytef *source, uLong sourceLen));-/*-     Compresses the source buffer into the destination buffer.  sourceLen is-   the byte length of the source buffer. Upon entry, destLen is the total-   size of the destination buffer, which must be at least the value returned-   by compressBound(sourceLen). Upon exit, destLen is the actual size of the-   compressed buffer.-     This function can be used to compress a whole file at once if the-   input file is mmap'ed.-     compress returns Z_OK if success, Z_MEM_ERROR if there was not-   enough memory, Z_BUF_ERROR if there was not enough room in the output-   buffer.-*/--ZEXTERN int ZEXPORT compress2 OF((Bytef *dest,   uLongf *destLen,-                                  const Bytef *source, uLong sourceLen,-                                  int level));-/*-     Compresses the source buffer into the destination buffer. The level-   parameter has the same meaning as in deflateInit.  sourceLen is the byte-   length of the source buffer. Upon entry, destLen is the total size of the-   destination buffer, which must be at least the value returned by-   compressBound(sourceLen). Upon exit, destLen is the actual size of the-   compressed buffer.--     compress2 returns Z_OK if success, Z_MEM_ERROR if there was not enough-   memory, Z_BUF_ERROR if there was not enough room in the output buffer,-   Z_STREAM_ERROR if the level parameter is invalid.-*/--ZEXTERN uLong ZEXPORT compressBound OF((uLong sourceLen));-/*-     compressBound() returns an upper bound on the compressed size after-   compress() or compress2() on sourceLen bytes.  It would be used before-   a compress() or compress2() call to allocate the destination buffer.-*/--ZEXTERN int ZEXPORT uncompress OF((Bytef *dest,   uLongf *destLen,-                                   const Bytef *source, uLong sourceLen));-/*-     Decompresses the source buffer into the destination buffer.  sourceLen is-   the byte length of the source buffer. Upon entry, destLen is the total-   size of the destination buffer, which must be large enough to hold the-   entire uncompressed data. (The size of the uncompressed data must have-   been saved previously by the compressor and transmitted to the decompressor-   by some mechanism outside the scope of this compression library.)-   Upon exit, destLen is the actual size of the compressed buffer.-     This function can be used to decompress a whole file at once if the-   input file is mmap'ed.--     uncompress returns Z_OK if success, Z_MEM_ERROR if there was not-   enough memory, Z_BUF_ERROR if there was not enough room in the output-   buffer, or Z_DATA_ERROR if the input data was corrupted or incomplete.-*/---typedef voidp gzFile;--ZEXTERN gzFile ZEXPORT gzopen  OF((const char *path, const char *mode));-/*-     Opens a gzip (.gz) file for reading or writing. The mode parameter-   is as in fopen ("rb" or "wb") but can also include a compression level-   ("wb9") or a strategy: 'f' for filtered data as in "wb6f", 'h' for-   Huffman only compression as in "wb1h", or 'R' for run-length encoding-   as in "wb1R". (See the description of deflateInit2 for more information-   about the strategy parameter.)--     gzopen can be used to read a file which is not in gzip format; in this-   case gzread will directly read from the file without decompression.--     gzopen returns NULL if the file could not be opened or if there was-   insufficient memory to allocate the (de)compression state; errno-   can be checked to distinguish the two cases (if errno is zero, the-   zlib error is Z_MEM_ERROR).  */--ZEXTERN gzFile ZEXPORT gzdopen  OF((int fd, const char *mode));-/*-     gzdopen() associates a gzFile with the file descriptor fd.  File-   descriptors are obtained from calls like open, dup, creat, pipe or-   fileno (in the file has been previously opened with fopen).-   The mode parameter is as in gzopen.-     The next call of gzclose on the returned gzFile will also close the-   file descriptor fd, just like fclose(fdopen(fd), mode) closes the file-   descriptor fd. If you want to keep fd open, use gzdopen(dup(fd), mode).-     gzdopen returns NULL if there was insufficient memory to allocate-   the (de)compression state.-*/--ZEXTERN int ZEXPORT gzsetparams OF((gzFile file, int level, int strategy));-/*-     Dynamically update the compression level or strategy. See the description-   of deflateInit2 for the meaning of these parameters.-     gzsetparams returns Z_OK if success, or Z_STREAM_ERROR if the file was not-   opened for writing.-*/--ZEXTERN int ZEXPORT    gzread  OF((gzFile file, voidp buf, unsigned len));-/*-     Reads the given number of uncompressed bytes from the compressed file.-   If the input file was not in gzip format, gzread copies the given number-   of bytes into the buffer.-     gzread returns the number of uncompressed bytes actually read (0 for-   end of file, -1 for error). */--ZEXTERN int ZEXPORT    gzwrite OF((gzFile file,-                                   voidpc buf, unsigned len));-/*-     Writes the given number of uncompressed bytes into the compressed file.-   gzwrite returns the number of uncompressed bytes actually written-   (0 in case of error).-*/--ZEXTERN int ZEXPORTVA   gzprintf OF((gzFile file, const char *format, ...));-/*-     Converts, formats, and writes the args to the compressed file under-   control of the format string, as in fprintf. gzprintf returns the number of-   uncompressed bytes actually written (0 in case of error).  The number of-   uncompressed bytes written is limited to 4095. The caller should assure that-   this limit is not exceeded. If it is exceeded, then gzprintf() will return-   return an error (0) with nothing written. In this case, there may also be a-   buffer overflow with unpredictable consequences, which is possible only if-   zlib was compiled with the insecure functions sprintf() or vsprintf()-   because the secure snprintf() or vsnprintf() functions were not available.-*/--ZEXTERN int ZEXPORT gzputs OF((gzFile file, const char *s));-/*-      Writes the given null-terminated string to the compressed file, excluding-   the terminating null character.-      gzputs returns the number of characters written, or -1 in case of error.-*/--ZEXTERN char * ZEXPORT gzgets OF((gzFile file, char *buf, int len));-/*-      Reads bytes from the compressed file until len-1 characters are read, or-   a newline character is read and transferred to buf, or an end-of-file-   condition is encountered.  The string is then terminated with a null-   character.-      gzgets returns buf, or Z_NULL in case of error.-*/--ZEXTERN int ZEXPORT    gzputc OF((gzFile file, int c));-/*-      Writes c, converted to an unsigned char, into the compressed file.-   gzputc returns the value that was written, or -1 in case of error.-*/--ZEXTERN int ZEXPORT    gzgetc OF((gzFile file));-/*-      Reads one byte from the compressed file. gzgetc returns this byte-   or -1 in case of end of file or error.-*/--ZEXTERN int ZEXPORT    gzungetc OF((int c, gzFile file));-/*-      Push one character back onto the stream to be read again later.-   Only one character of push-back is allowed.  gzungetc() returns the-   character pushed, or -1 on failure.  gzungetc() will fail if a-   character has been pushed but not read yet, or if c is -1. The pushed-   character will be discarded if the stream is repositioned with gzseek()-   or gzrewind().-*/--ZEXTERN int ZEXPORT    gzflush OF((gzFile file, int flush));-/*-     Flushes all pending output into the compressed file. The parameter-   flush is as in the deflate() function. The return value is the zlib-   error number (see function gzerror below). gzflush returns Z_OK if-   the flush parameter is Z_FINISH and all output could be flushed.-     gzflush should be called only when strictly necessary because it can-   degrade compression.-*/--ZEXTERN z_off_t ZEXPORT    gzseek OF((gzFile file,-                                      z_off_t offset, int whence));-/*-      Sets the starting position for the next gzread or gzwrite on the-   given compressed file. The offset represents a number of bytes in the-   uncompressed data stream. The whence parameter is defined as in lseek(2);-   the value SEEK_END is not supported.-     If the file is opened for reading, this function is emulated but can be-   extremely slow. If the file is opened for writing, only forward seeks are-   supported; gzseek then compresses a sequence of zeroes up to the new-   starting position.--      gzseek returns the resulting offset location as measured in bytes from-   the beginning of the uncompressed stream, or -1 in case of error, in-   particular if the file is opened for writing and the new starting position-   would be before the current position.-*/--ZEXTERN int ZEXPORT    gzrewind OF((gzFile file));-/*-     Rewinds the given file. This function is supported only for reading.--   gzrewind(file) is equivalent to (int)gzseek(file, 0L, SEEK_SET)-*/--ZEXTERN z_off_t ZEXPORT    gztell OF((gzFile file));-/*-     Returns the starting position for the next gzread or gzwrite on the-   given compressed file. This position represents a number of bytes in the-   uncompressed data stream.--   gztell(file) is equivalent to gzseek(file, 0L, SEEK_CUR)-*/--ZEXTERN int ZEXPORT gzeof OF((gzFile file));-/*-     Returns 1 when EOF has previously been detected reading the given-   input stream, otherwise zero.-*/--ZEXTERN int ZEXPORT gzdirect OF((gzFile file));-/*-     Returns 1 if file is being read directly without decompression, otherwise-   zero.-*/--ZEXTERN int ZEXPORT    gzclose OF((gzFile file));-/*-     Flushes all pending output if necessary, closes the compressed file-   and deallocates all the (de)compression state. The return value is the zlib-   error number (see function gzerror below).-*/--ZEXTERN const char * ZEXPORT gzerror OF((gzFile file, int *errnum));-/*-     Returns the error message for the last error which occurred on the-   given compressed file. errnum is set to zlib error number. If an-   error occurred in the file system and not in the compression library,-   errnum is set to Z_ERRNO and the application may consult errno-   to get the exact error code.-*/--ZEXTERN void ZEXPORT gzclearerr OF((gzFile file));-/*-     Clears the error and end-of-file flags for file. This is analogous to the-   clearerr() function in stdio. This is useful for continuing to read a gzip-   file that is being written concurrently.-*/--                        /* checksum functions */--/*-     These functions are not related to compression but are exported-   anyway because they might be useful in applications using the-   compression library.-*/--ZEXTERN uLong ZEXPORT adler32 OF((uLong adler, const Bytef *buf, uInt len));-/*-     Update a running Adler-32 checksum with the bytes buf[0..len-1] and-   return the updated checksum. If buf is NULL, this function returns-   the required initial value for the checksum.-   An Adler-32 checksum is almost as reliable as a CRC32 but can be computed-   much faster. Usage example:--     uLong adler = adler32(0L, Z_NULL, 0);--     while (read_buffer(buffer, length) != EOF) {-       adler = adler32(adler, buffer, length);-     }-     if (adler != original_adler) error();-*/--ZEXTERN uLong ZEXPORT adler32_combine OF((uLong adler1, uLong adler2,-                                          z_off_t len2));-/*-     Combine two Adler-32 checksums into one.  For two sequences of bytes, seq1-   and seq2 with lengths len1 and len2, Adler-32 checksums were calculated for-   each, adler1 and adler2.  adler32_combine() returns the Adler-32 checksum of-   seq1 and seq2 concatenated, requiring only adler1, adler2, and len2.-*/--ZEXTERN uLong ZEXPORT crc32   OF((uLong crc, const Bytef *buf, uInt len));-/*-     Update a running CRC-32 with the bytes buf[0..len-1] and return the-   updated CRC-32. If buf is NULL, this function returns the required initial-   value for the for the crc. Pre- and post-conditioning (one's complement) is-   performed within this function so it shouldn't be done by the application.-   Usage example:--     uLong crc = crc32(0L, Z_NULL, 0);--     while (read_buffer(buffer, length) != EOF) {-       crc = crc32(crc, buffer, length);-     }-     if (crc != original_crc) error();-*/--ZEXTERN uLong ZEXPORT crc32_combine OF((uLong crc1, uLong crc2, z_off_t len2));--/*-     Combine two CRC-32 check values into one.  For two sequences of bytes,-   seq1 and seq2 with lengths len1 and len2, CRC-32 check values were-   calculated for each, crc1 and crc2.  crc32_combine() returns the CRC-32-   check value of seq1 and seq2 concatenated, requiring only crc1, crc2, and-   len2.-*/---                        /* various hacks, don't look :) */--/* deflateInit and inflateInit are macros to allow checking the zlib version- * and the compiler's view of z_stream:- */-ZEXTERN int ZEXPORT deflateInit_ OF((z_streamp strm, int level,-                                     const char *version, int stream_size));-ZEXTERN int ZEXPORT inflateInit_ OF((z_streamp strm,-                                     const char *version, int stream_size));-ZEXTERN int ZEXPORT deflateInit2_ OF((z_streamp strm, int  level, int  method,-                                      int windowBits, int memLevel,-                                      int strategy, const char *version,-                                      int stream_size));-ZEXTERN int ZEXPORT inflateInit2_ OF((z_streamp strm, int  windowBits,-                                      const char *version, int stream_size));-ZEXTERN int ZEXPORT inflateBackInit_ OF((z_streamp strm, int windowBits,-                                         unsigned char FAR *window,-                                         const char *version,-                                         int stream_size));-#define deflateInit(strm, level) \-        deflateInit_((strm), (level),       ZLIB_VERSION, sizeof(z_stream))-#define inflateInit(strm) \-        inflateInit_((strm),                ZLIB_VERSION, sizeof(z_stream))-#define deflateInit2(strm, level, method, windowBits, memLevel, strategy) \-        deflateInit2_((strm),(level),(method),(windowBits),(memLevel),\-                      (strategy),           ZLIB_VERSION, sizeof(z_stream))-#define inflateInit2(strm, windowBits) \-        inflateInit2_((strm), (windowBits), ZLIB_VERSION, sizeof(z_stream))-#define inflateBackInit(strm, windowBits, window) \-        inflateBackInit_((strm), (windowBits), (window), \-        ZLIB_VERSION, sizeof(z_stream))---#if !defined(ZUTIL_H) && !defined(NO_DUMMY_DECL)-    struct internal_state {int dummy;}; /* hack for buggy compilers */-#endif--ZEXTERN const char   * ZEXPORT zError           OF((int));-ZEXTERN int            ZEXPORT inflateSyncPoint OF((z_streamp z));-ZEXTERN const uLongf * ZEXPORT get_crc_table    OF((void));--#ifdef __cplusplus-}-#endif--#endif /* ZLIB_H */
− include/zutil.h
@@ -1,269 +0,0 @@-/* zutil.h -- internal interface and configuration of the compression library- * Copyright (C) 1995-2005 Jean-loup Gailly.- * For conditions of distribution and use, see copyright notice in zlib.h- */--/* WARNING: this file should *not* be used by applications. It is-   part of the implementation of the compression library and is-   subject to change. Applications should only use zlib.h.- */--/* @(#) $Id$ */--#ifndef ZUTIL_H-#define ZUTIL_H--#define ZLIB_INTERNAL-#include "zlib.h"--#ifdef STDC-#  ifndef _WIN32_WCE-#    include <stddef.h>-#  endif-#  include <string.h>-#  include <stdlib.h>-#endif-#ifdef NO_ERRNO_H-#   ifdef _WIN32_WCE-      /* The Microsoft C Run-Time Library for Windows CE doesn't have-       * errno.  We define it as a global variable to simplify porting.-       * Its value is always 0 and should not be used.  We rename it to-       * avoid conflict with other libraries that use the same workaround.-       */-#     define errno z_errno-#   endif-    extern int errno;-#else-#  ifndef _WIN32_WCE-#    include <errno.h>-#  endif-#endif--#ifndef local-#  define local static-#endif-/* compile with -Dlocal if your debugger can't find static symbols */--typedef unsigned char  uch;-typedef uch FAR uchf;-typedef unsigned short ush;-typedef ush FAR ushf;-typedef unsigned long  ulg;--extern const char * const z_errmsg[10]; /* indexed by 2-zlib_error */-/* (size given to avoid silly warnings with Visual C++) */--#define ERR_MSG(err) z_errmsg[Z_NEED_DICT-(err)]--#define ERR_RETURN(strm,err) \-  return (strm->msg = (char*)ERR_MSG(err), (err))-/* To be used only when the state is known to be valid */--        /* common constants */--#ifndef DEF_WBITS-#  define DEF_WBITS MAX_WBITS-#endif-/* default windowBits for decompression. MAX_WBITS is for compression only */--#if MAX_MEM_LEVEL >= 8-#  define DEF_MEM_LEVEL 8-#else-#  define DEF_MEM_LEVEL  MAX_MEM_LEVEL-#endif-/* default memLevel */--#define STORED_BLOCK 0-#define STATIC_TREES 1-#define DYN_TREES    2-/* The three kinds of block type */--#define MIN_MATCH  3-#define MAX_MATCH  258-/* The minimum and maximum match lengths */--#define PRESET_DICT 0x20 /* preset dictionary flag in zlib header */--        /* target dependencies */--#if defined(MSDOS) || (defined(WINDOWS) && !defined(WIN32))-#  define OS_CODE  0x00-#  if defined(__TURBOC__) || defined(__BORLANDC__)-#    if(__STDC__ == 1) && (defined(__LARGE__) || defined(__COMPACT__))-       /* Allow compilation with ANSI keywords only enabled */-       void _Cdecl farfree( void *block );-       void *_Cdecl farmalloc( unsigned long nbytes );-#    else-#      include <alloc.h>-#    endif-#  else /* MSC or DJGPP */-#    include <malloc.h>-#  endif-#endif--#ifdef AMIGA-#  define OS_CODE  0x01-#endif--#if defined(VAXC) || defined(VMS)-#  define OS_CODE  0x02-#  define F_OPEN(name, mode) \-     fopen((name), (mode), "mbc=60", "ctx=stm", "rfm=fix", "mrs=512")-#endif--#if defined(ATARI) || defined(atarist)-#  define OS_CODE  0x05-#endif--#ifdef OS2-#  define OS_CODE  0x06-#  ifdef M_I86-     #include <malloc.h>-#  endif-#endif--#if defined(MACOS) || defined(TARGET_OS_MAC)-#  define OS_CODE  0x07-#  if defined(__MWERKS__) && __dest_os != __be_os && __dest_os != __win32_os-#    include <unix.h> /* for fdopen */-#  else-#    ifndef fdopen-#      define fdopen(fd,mode) NULL /* No fdopen() */-#    endif-#  endif-#endif--#ifdef TOPS20-#  define OS_CODE  0x0a-#endif--#ifdef WIN32-#  ifndef __CYGWIN__  /* Cygwin is Unix, not Win32 */-#    define OS_CODE  0x0b-#  endif-#endif--#ifdef __50SERIES /* Prime/PRIMOS */-#  define OS_CODE  0x0f-#endif--#if defined(_BEOS_) || defined(RISCOS)-#  define fdopen(fd,mode) NULL /* No fdopen() */-#endif--#if (defined(_MSC_VER) && (_MSC_VER > 600))-#  if defined(_WIN32_WCE)-#    define fdopen(fd,mode) NULL /* No fdopen() */-#    ifndef _PTRDIFF_T_DEFINED-       typedef int ptrdiff_t;-#      define _PTRDIFF_T_DEFINED-#    endif-#  else-#    define fdopen(fd,type)  _fdopen(fd,type)-#  endif-#endif--        /* common defaults */--#ifndef OS_CODE-#  define OS_CODE  0x03  /* assume Unix */-#endif--#ifndef F_OPEN-#  define F_OPEN(name, mode) fopen((name), (mode))-#endif--         /* functions */--#if defined(STDC99) || (defined(__TURBOC__) && __TURBOC__ >= 0x550)-#  ifndef HAVE_VSNPRINTF-#    define HAVE_VSNPRINTF-#  endif-#endif-#if defined(__CYGWIN__)-#  ifndef HAVE_VSNPRINTF-#    define HAVE_VSNPRINTF-#  endif-#endif-#ifndef HAVE_VSNPRINTF-#  ifdef MSDOS-     /* vsnprintf may exist on some MS-DOS compilers (DJGPP?),-        but for now we just assume it doesn't. */-#    define NO_vsnprintf-#  endif-#  ifdef __TURBOC__-#    define NO_vsnprintf-#  endif-#  ifdef WIN32-     /* In Win32, vsnprintf is available as the "non-ANSI" _vsnprintf. */-#    if !defined(vsnprintf) && !defined(NO_vsnprintf)-#      define vsnprintf _vsnprintf-#    endif-#  endif-#  ifdef __SASC-#    define NO_vsnprintf-#  endif-#endif-#ifdef VMS-#  define NO_vsnprintf-#endif--#if defined(pyr)-#  define NO_MEMCPY-#endif-#if defined(SMALL_MEDIUM) && !defined(_MSC_VER) && !defined(__SC__)- /* Use our own functions for small and medium model with MSC <= 5.0.-  * You may have to use the same strategy for Borland C (untested).-  * The __SC__ check is for Symantec.-  */-#  define NO_MEMCPY-#endif-#if defined(STDC) && !defined(HAVE_MEMCPY) && !defined(NO_MEMCPY)-#  define HAVE_MEMCPY-#endif-#ifdef HAVE_MEMCPY-#  ifdef SMALL_MEDIUM /* MSDOS small or medium model */-#    define zmemcpy _fmemcpy-#    define zmemcmp _fmemcmp-#    define zmemzero(dest, len) _fmemset(dest, 0, len)-#  else-#    define zmemcpy memcpy-#    define zmemcmp memcmp-#    define zmemzero(dest, len) memset(dest, 0, len)-#  endif-#else-   extern void zmemcpy  OF((Bytef* dest, const Bytef* source, uInt len));-   extern int  zmemcmp  OF((const Bytef* s1, const Bytef* s2, uInt len));-   extern void zmemzero OF((Bytef* dest, uInt len));-#endif--/* Diagnostic functions */-#ifdef DEBUG-#  include <stdio.h>-   extern int z_verbose;-   extern void z_error    OF((char *m));-#  define Assert(cond,msg) {if(!(cond)) z_error(msg);}-#  define Trace(x) {if (z_verbose>=0) fprintf x ;}-#  define Tracev(x) {if (z_verbose>0) fprintf x ;}-#  define Tracevv(x) {if (z_verbose>1) fprintf x ;}-#  define Tracec(c,x) {if (z_verbose>0 && (c)) fprintf x ;}-#  define Tracecv(c,x) {if (z_verbose>1 && (c)) fprintf x ;}-#else-#  define Assert(cond,msg)-#  define Trace(x)-#  define Tracev(x)-#  define Tracevv(x)-#  define Tracec(c,x)-#  define Tracecv(c,x)-#endif---voidpf zcalloc OF((voidpf opaque, unsigned items, unsigned size));-void   zcfree  OF((voidpf opaque, voidpf ptr));--#define ZALLOC(strm, items, size) \-           (*((strm)->zalloc))((strm)->opaque, (items), (size))-#define ZFREE(strm, addr)  (*((strm)->zfree))((strm)->opaque, (voidpf)(addr))-#define TRY_FREE(s, p) {if (p) ZFREE(s, p);}--#endif /* ZUTIL_H */
streaming-commons.cabal view
@@ -1,5 +1,5 @@ name:                streaming-commons-version:             0.1.19+version:             0.2.3.1 synopsis:            Common lower-level functions needed by various streaming data libraries description:         Provides low-dependency functionality commonly needed by various streaming data libraries, such as conduit and pipes. homepage:            https://github.com/fpco/streaming-commons@@ -10,7 +10,7 @@ -- copyright: category:            Data build-type:          Simple-cabal-version:       >=1.8+cabal-version:       >=1.10 extra-source-files:     test/filesystem/*.txt     test/filesystem/bin/*.txt@@ -25,10 +25,9 @@   default: False  library-  exposed-modules:     Data.Streaming.Blaze-                       Data.Streaming.ByteString.Builder+  default-language: Haskell2010+  exposed-modules:     Data.Streaming.ByteString.Builder                        Data.Streaming.ByteString.Builder.Buffer-                       Data.Streaming.ByteString.Builder.Class                        Data.Streaming.FileRead                        Data.Streaming.Filesystem                        Data.Streaming.Network@@ -39,25 +38,16 @@                        Data.Streaming.Zlib                        Data.Streaming.Zlib.Lowlevel -  -- Due to cabal bugs, not making inclusion of this dependent on text version.-  -- For more information, see: https://github.com/fpco/text-stream-decode/issues/1-  other-modules:       Data.Text.Internal.Unsafe.Char-                       Data.Text.Internal.Unsafe.Shift-                       Data.Text.Internal.Encoding.Utf8-                       Data.Text.Internal.Encoding.Utf16-                       Data.Text.Internal.Encoding.Utf32--  build-depends:       base >= 4.7 && < 5+  build-depends:       base >= 4.12 && < 5                      , array                      , async-                     , blaze-builder >= 0.3 && < 0.5                      , bytestring                      , directory                      , network >= 2.4.0.0                      , random                      , process                      , stm-                     , text+                     , text >= 1.2 && < 1.3 || >= 2.0 && < 2.2                      , transformers                      , zlib @@ -80,12 +70,12 @@     build-depends:     bytestring >= 0.10.2.0  test-suite test+    default-language: Haskell2010     hs-source-dirs: test     main-is:        Spec.hs     type:           exitcode-stdio-1.0     ghc-options:    -Wall -threaded     other-modules:  Data.Streaming.ByteString.BuilderSpec-                    Data.Streaming.BlazeSpec                     Data.Streaming.FileReadSpec                     Data.Streaming.FilesystemSpec                     Data.Streaming.NetworkSpec@@ -99,25 +89,27 @@                   , QuickCheck                   , array                   , async-                  , blaze-builder                   , bytestring                   , deepseq                   , network >= 2.4.0.0                   , text                   , zlib+    build-tool-depends:+        hspec-discover:hspec-discover -  if flag(use-bytestring-builder)-    build-depends:     bytestring < 0.10.2.0-                     , bytestring-builder-  else-    build-depends:     bytestring >= 0.10.2.0+    if flag(use-bytestring-builder)+      build-depends:     bytestring < 0.10.2.0+                       , bytestring-builder+    else+      build-depends:     bytestring >= 0.10.2.0 -  if os(windows)-    cpp-options:       -DWINDOWS-  else-    build-depends:     unix+    if os(windows)+      cpp-options:       -DWINDOWS+    else+      build-depends:     unix  benchmark count-chars+    default-language: Haskell2010     type: exitcode-stdio-1.0     hs-source-dirs: bench     build-depends:  base@@ -129,6 +121,7 @@     ghc-options:    -Wall -O2  benchmark decode-memory-usage+    default-language: Haskell2010     type: exitcode-stdio-1.0     hs-source-dirs: bench     build-depends:  base@@ -139,22 +132,22 @@     ghc-options:    -Wall -O2 -with-rtsopts=-s  benchmark builder-to-bytestring-io+    default-language: Haskell2010     type: exitcode-stdio-1.0     hs-source-dirs: bench     main-is:        builder-to-bytestring-io.hs     ghc-options:    -Wall -O2     build-depends:  base-                  , blaze-builder                   , bytestring >= 0.10.2                   , gauge                   , deepseq                   , streaming-commons -  if flag(use-bytestring-builder)-    build-depends:     bytestring < 0.10.2.0-                     , bytestring-builder-  else-    build-depends:     bytestring >= 0.10.2.0+    if flag(use-bytestring-builder)+      build-depends:     bytestring < 0.10.2.0+                       , bytestring-builder+    else+      build-depends:     bytestring >= 0.10.2.0  source-repository head   type:     git
− test/Data/Streaming/BlazeSpec.hs
@@ -1,16 +0,0 @@-{-# LANGUAGE OverloadedStrings #-}-module Data.Streaming.BlazeSpec (spec) where--import Test.Hspec-import qualified Blaze.ByteString.Builder as B-import Data.Streaming.ByteString.BuilderSpec hiding (spec)--spec :: Spec-spec = do-    describe "Data.Streaming.Blaze" $ builderSpec BuilderFunctions-        { bfFromByteString       = B.fromByteString-        , bfInsertLazyByteString = B.insertLazyByteString-        , bfToLazyByteString     = B.toLazyByteString-        , bfInsertByteString     = B.insertByteString-        , bfCopyByteString       = B.copyByteString-        }
test/Data/Streaming/ByteString/BuilderSpec.hs view
@@ -3,14 +3,12 @@ {-# LANGUAGE ScopedTypeVariables #-} module Data.Streaming.ByteString.BuilderSpec     ( spec-    , builderSpec-    , BuilderFunctions(..)     ) where  import qualified Data.ByteString as S import Data.ByteString.Char8 ()-import qualified Data.ByteString.Unsafe as S import qualified Data.ByteString.Builder as B+import Data.ByteString.Builder (Builder) import qualified Data.ByteString.Builder.Internal as B import qualified Data.ByteString.Lazy as L import Data.ByteString.Lazy.Char8 ()@@ -21,17 +19,8 @@ import Test.Hspec.QuickCheck (prop)  import Data.Streaming.ByteString.Builder-import Data.Streaming.ByteString.Builder.Class -data BuilderFunctions b = BuilderFunctions-    { bfFromByteString       :: S.ByteString -> b-    , bfInsertLazyByteString :: L.ByteString -> b-    , bfToLazyByteString     :: b -> L.ByteString-    , bfInsertByteString     :: S.ByteString -> b-    , bfCopyByteString       :: S.ByteString -> b-    }--tester :: StreamingBuilder b => BufferAllocStrategy -> [b] -> IO [S.ByteString]+tester :: BufferAllocStrategy -> [Builder] -> IO [S.ByteString] tester strat builders0 = do     (recv, finish) <- newBuilderRecv strat     let loop front [] = do@@ -47,15 +36,14 @@             go front0     loop id builders0 -testerFlush :: StreamingBuilder b-            => BufferAllocStrategy -> [Maybe b] -> IO [Maybe S.ByteString]+testerFlush :: BufferAllocStrategy -> [Maybe Builder] -> IO [Maybe S.ByteString] testerFlush strat builders0 = do     (recv, finish) <- newBuilderRecv strat     let loop front [] = do             mbs <- finish             return $ front $ maybe [] (return . Just) mbs         loop front0 (mbu:bus) = do-            popper <- recv $ fromMaybe builderFlush mbu+            popper <- recv $ fromMaybe B.flush mbu             let go front = do                     bs <- popper                     if S.null bs@@ -67,55 +55,48 @@             go front0     loop id builders0 -builderSpec :: forall b. StreamingBuilder b => BuilderFunctions b -> Spec-builderSpec BuilderFunctions{..} = do+builderSpec :: Spec+builderSpec = do     prop "idempotent to toLazyByteString" $ \bss' -> do         let bss = map S.pack bss'-        let builders :: [b]-            builders = map bfFromByteString bss-        let lbs = bfToLazyByteString $ mconcat builders+        let builders = map B.byteString bss+        let lbs = B.toLazyByteString $ mconcat builders         outBss <- tester defaultStrategy builders         L.fromChunks outBss `shouldBe` lbs      it "works for large input" $ do-        let builders :: [b]-            builders = replicate 10000 (bfFromByteString "hello world!" :: b)-        let lbs = bfToLazyByteString $ mconcat builders+        let builders = replicate 10000 (B.byteString "hello world!")+        let lbs = B.toLazyByteString $ mconcat builders         outBss <- tester defaultStrategy builders         L.fromChunks outBss `shouldBe` lbs      it "works for lazy bytestring insertion" $ do-        let builders :: [b]-            builders = replicate 10000 (bfInsertLazyByteString "hello world!")-        let lbs = bfToLazyByteString $ mconcat builders+        let builders = replicate 10000 (B.lazyByteStringInsert "hello world!")+        let lbs = B.toLazyByteString $ mconcat builders         outBss <- tester defaultStrategy builders         L.fromChunks outBss `shouldBe` lbs      prop "works for strict bytestring insertion" $ \bs' -> do         let bs = S.pack bs'-        let builders :: [b]-            builders = replicate 10000 (bfCopyByteString bs `Data.Monoid.mappend` bfInsertByteString bs)-        let lbs = bfToLazyByteString $ mconcat builders+        let builders = replicate 10000 (B.byteStringCopy bs `Data.Monoid.mappend` B.byteStringInsert bs)+        let lbs = B.toLazyByteString $ mconcat builders         outBss <- tester defaultStrategy builders         L.fromChunks outBss `shouldBe` lbs      it "flush shouldn't bring in empty strings." $ do         let dat = ["hello", "world"]-            builders :: [b]-            builders = map ((`mappend` builderFlush) . bfFromByteString) dat+            builders = map ((`mappend` B.flush) . B.byteString) dat         out <- tester defaultStrategy builders         dat `shouldBe` out      prop "flushing" $ \bss' -> do         let bss = concatMap (\bs -> [Just $ S.pack bs, Nothing]) $ filter (not . null) bss'-        let builders :: [Maybe b]-            builders = map (fmap bfFromByteString) bss+        let builders = map (fmap B.byteString) bss         outBss <- testerFlush defaultStrategy builders         outBss `shouldBe` bss     it "large flush input" $ do         let lbs = L.pack $ concat $ replicate 100000 [0..255]-            chunks :: [Maybe b]-            chunks = map (Just . bfFromByteString) (L.toChunks lbs)+            chunks = map (Just . B.byteString) (L.toChunks lbs)         bss <- testerFlush defaultStrategy chunks         L.fromChunks (catMaybes bss) `shouldBe` lbs @@ -123,20 +104,22 @@ spec =     describe "Data.Streaming.ByteString.Builder" $ do -        builderSpec BuilderFunctions-            { bfFromByteString       = B.byteString-            , bfInsertLazyByteString = B.lazyByteStringInsert-            , bfToLazyByteString     = B.toLazyByteString-            , bfInsertByteString     = B.byteStringInsert-            , bfCopyByteString       = B.byteStringCopy-            }+        builderSpec -        prop "toByteStringIO idempotent to toLazyByteString" $ \bss' -> do-            let bss = mconcat (map (B.byteString . S.pack) bss')-            ior <- newIORef []-            toByteStringIOWith 16-                               (\s -> do s' <- S.useAsCStringLen s S.unsafePackCStringLen-                                         modifyIORef ior (s' :))-                               bss-            chunks <- readIORef ior-            L.fromChunks (reverse chunks) `shouldBe` B.toLazyByteString bss+        let prop_idempotent i bss' = do+              let bss = mconcat (map (B.byteString . S.pack) bss')+              ior <- newIORef []+              toByteStringIOWith 16+                                 (\s -> do let s' = S.copy s+                                           s' `seq` modifyIORef ior (s' :))+                                 bss+              chunks <- readIORef ior+              let have = L.unpack (L.fromChunks (reverse chunks))+                  want = L.unpack (B.toLazyByteString bss)+              (i, have) `shouldBe` (i, want)++        prop "toByteStringIO idempotent to toLazyByteString" (prop_idempotent (0::Int))++        it "toByteStringIO idempotent to toLazyBytestring, specific case" $ do+            let bss' = replicate 10 [0..255]+            mapM_ (\i -> prop_idempotent i bss') [(1::Int)..100]
test/Data/Streaming/NetworkSpec.hs view
@@ -14,6 +14,10 @@  spec :: Spec spec = do+    describe "getDefaultReadBufferSize" $ do+        it "sanity" $ do+            getReadBufferSize (clientSettingsTCP 8080 "localhost") >= 4096 `shouldBe` True+     describe "getUnassignedPort" $ do         it "sanity" $ replicateM_ 100000 $ do             port <- getUnassignedPort