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7 changed files with 88 additions and 57 deletions
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@ -11,6 +11,8 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
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- CHANGELOG.md
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- Stack integration
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- Borsh serialization for `HexString`
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- `Read` implementation for `HexString`
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### Changed
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@ -1,9 +1,4 @@
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haskell-hexstring
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=================
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[![Build Status](https://travis-ci.org/solatis/haskell-hexstring.png?branch=master)](https://travis-ci.org/solatis/haskell-hexstring)
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[![Coverage Status](https://coveralls.io/repos/solatis/haskell-hexstring/badge.svg?branch=master)](https://coveralls.io/r/solatis/haskell-hexstring?branch=master)
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[![MIT](http://b.repl.ca/v1/license-MIT-blue.png)](http://en.wikipedia.org/wiki/MIT_License)
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[![Haskell](http://b.repl.ca/v1/language-haskell-lightgrey.png)](http://haskell.org)
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Fast and safe representation of a hex string
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@ -5,7 +5,7 @@ cabal-version: 1.12
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-- see: https://github.com/sol/hpack
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name: hexstring
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version: 0.12.0
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version: 0.12.1.0
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synopsis: Fast and safe representation of a hex string
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description: Provides an interface for converting any object that has a 'Binary' instance to and from a hexadecimal Text representation.
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author: Rene Vergara,
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@ -35,7 +35,10 @@ library
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, base >=4.7 && <5
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, base16-bytestring
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, binary
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, borsh >=0.2
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, bytestring
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, foreign-rust
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, generics-sop
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, text
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default-language: Haskell2010
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@ -1,5 +1,5 @@
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name: hexstring
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version: 0.12.0
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version: 0.12.1.0
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git: "https://git.vergara.tech/Vergara_Tech/haskell-hexstring"
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license: MIT
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author:
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@ -27,6 +27,9 @@ library:
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- bytestring
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- base16-bytestring
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- aeson
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- generics-sop
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- borsh >= 0.2
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- foreign-rust
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tests:
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hextring-test:
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@ -1,69 +1,91 @@
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module Data.HexString ( HexString
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, hexString
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, fromBinary
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, toBinary
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, fromBytes
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, toBytes
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, toText ) where
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{-# LANGUAGE DeriveGeneric #-}
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{-# LANGUAGE DuplicateRecordFields #-}
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{-# LANGUAGE DeriveAnyClass #-}
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{-# LANGUAGE DerivingVia #-}
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{-# LANGUAGE UndecidableInstances #-}
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{-# LANGUAGE OverloadedStrings #-}
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import Control.Applicative (pure)
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module Data.HexString
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( HexString(..)
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, hexString
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, fromRawBytes
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, fromBinary
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, toBytes
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, fromText
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, toText
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) where
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import Data.Aeson
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import Data.Word (Word8)
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import Codec.Borsh
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import Control.Applicative (pure)
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import qualified Data.ByteString as BS
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import qualified Data.ByteString.Base16 as BS16 (decodeLenient, encode)
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import qualified Data.ByteString.Lazy as BSL
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import Data.Aeson
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import Data.Word (Word8)
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import qualified Data.Text as T
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import qualified Data.Text.Encoding as TE
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import qualified Data.ByteString as BS
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import qualified Data.ByteString.Base16 as BS16 (decode, decodeLenient, encode)
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import qualified Data.ByteString.Lazy as BSL
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import qualified Data.Binary as B (Binary, decode, encode)
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import Data.Structured
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import qualified Data.Text as T
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import qualified Data.Text.Encoding as TE
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import qualified Data.Binary as B (Binary, decode, encode)
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import qualified GHC.Generics as GHC
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import qualified Generics.SOP as SOP
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import Text.Read
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-- | Represents a Hex string. Guarantees that all characters it contains
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-- are valid hex characters.
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data HexString =
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HexString BS.ByteString
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deriving ( Show, Eq, Ord )
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newtype HexString = HexString
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{ hexBytes :: BS.ByteString
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} deriving stock (Eq, GHC.Generic)
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deriving anyclass (SOP.Generic, SOP.HasDatatypeInfo)
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deriving anyclass (Data.Structured.Show)
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deriving (BorshSize, ToBorsh, FromBorsh) via AsStruct HexString
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instance Prelude.Show HexString where
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show = T.unpack . toText
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instance Read HexString where
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readsPrec _ s = [((fromText . T.pack) s, "")]
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instance FromJSON HexString where
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parseJSON = withText "HexString" $ pure . hexString . TE.encodeUtf8
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instance ToJSON HexString where
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toJSON = String . toText
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toJSON = Data.Aeson.String . toText
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-- | Smart constructor which validates that all the text are actually
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-- hexadecimal characters.
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hexString :: BS.ByteString -> HexString
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hexString bs =
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let isValidHex :: Word8 -> Bool
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isValidHex c
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| (48 <= c) && (c < 58) = True
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| (97 <= c) && (c < 103) = True
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| otherwise = False
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in if BS.all isValidHex bs
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then HexString bs
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else error ("Not a valid hex string: " ++ show bs)
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case BS16.decode bs of
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Right s -> HexString s
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Left e -> error e
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-- | Converts a 'B.Binary' to a 'HexString' value
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fromBinary :: B.Binary a => a -> HexString
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fromBinary = hexString . BS16.encode . BSL.toStrict . B.encode
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fromBinary :: B.Binary a => a -> HexString
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fromBinary = HexString . BSL.toStrict . B.encode
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-- | Converts a 'HexString' to a 'B.Binary' value
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toBinary :: B.Binary a => HexString -> a
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toBinary (HexString bs) = B.decode . BSL.fromStrict . BS16.decodeLenient $ bs
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toBinary (HexString bs) = (B.decode . BSL.fromStrict) bs
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-- | Reads a 'BS.ByteString' as raw bytes and converts to hex representation. We
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-- cannot use the instance Binary of 'BS.ByteString' because it provides
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-- a leading length, which is not what we want when dealing with raw bytes.
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fromBytes :: BS.ByteString -> HexString
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fromBytes = hexString . BS16.encode
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fromRawBytes :: BS.ByteString -> HexString
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fromRawBytes = HexString
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-- | Access to the raw bytes in a 'BS.ByteString' format.
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toBytes :: HexString -> BS.ByteString
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toBytes (HexString bs) = BS16.decodeLenient bs
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toBytes (HexString bs) = bs
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-- | Reads a human-readable hex string into a `HexString`
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fromText :: T.Text -> HexString
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fromText = hexString . TE.encodeUtf8
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-- | Access to a 'T.Text' representation of the 'HexString'
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toText :: HexString -> T.Text
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toText (HexString bs) = TE.decodeUtf8 bs
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toText (HexString bs) = (TE.decodeUtf8 . BS16.encode) bs
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@ -2,3 +2,9 @@ resolver: lts-21.22
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packages:
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- .
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extra-deps:
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- git: https://github.com/well-typed/borsh.git
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commit: d2fcfa159e0a844b1ec5e8ed3e232d4b380fa831
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- git: https://git.vergara.tech/Vergara_Tech/haskell-foreign-rust.git
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commit: 787c2e813eb3a5d16c375d4b37dfefbd2adcdf05
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@ -1,27 +1,27 @@
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{-# LANGUAGE OverloadedStrings #-}
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module Data.HexStringSpec where
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import Data.HexString ( hexString
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, fromBytes
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, toBytes )
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import Data.HexString (fromRawBytes, fromText, hexString, toBytes, toText)
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import qualified Data.ByteString.Char8 as BS8
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import Test.Hspec
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import Test.Hspec
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spec :: Spec
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spec = do
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describe "when constructing a hex string" $ do
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it "should accept strings that fall within a valid range" $
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hexString (BS8.pack "0123456789abcdef") `shouldBe` hexString (BS8.pack "0123456789abcdef")
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it "should reject strings outside the range" $ do
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putStrLn (show (hexString (BS8.pack "/"))) `shouldThrow` anyErrorCall
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putStrLn (show (hexString (BS8.pack ":"))) `shouldThrow` anyErrorCall
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putStrLn (show (hexString (BS8.pack "`"))) `shouldThrow` anyErrorCall
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putStrLn (show (hexString (BS8.pack "g"))) `shouldThrow` anyErrorCall
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print (hexString (BS8.pack "/")) `shouldThrow` anyErrorCall
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print (hexString (BS8.pack ":")) `shouldThrow` anyErrorCall
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print (hexString (BS8.pack "`")) `shouldThrow` anyErrorCall
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print (hexString (BS8.pack "g")) `shouldThrow` anyErrorCall
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describe "when interpreting a hex string" $ do
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it "should convert the hex string properly when interpreting as bytes" $
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toBytes (hexString (BS8.pack "ffff")) `shouldBe` BS8.pack "\255\255"
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toBytes (hexString "ffff") `shouldBe` BS8.pack "\255\255"
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it "should convert bytes to the proper hex string" $
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fromBytes (BS8.pack "\255\255") `shouldBe` hexString (BS8.pack "ffff")
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fromRawBytes (BS8.pack "\255\255") `shouldBe` hexString (BS8.pack "ffff")
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it "should convert the hex string to text" $
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toText (hexString "ffff") `shouldBe` "ffff"
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it "should read text into the hex string" $
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fromText "ffff" `shouldBe` hexString (BS8.pack "ffff")
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