json-0.10: Support for serialising Haskell to and from JSON
Safe HaskellSafe-Inferred
LanguageHaskell98

Text.JSON

Description

Serialising Haskell values to and from JSON values.

Synopsis

JSON Types

data JSValue #

JSON values

The type to which we encode Haskell values. There's a set of primitives, and a couple of heterogenous collection types.

Objects:

An object structure is represented as a pair of curly brackets surrounding zero or more name/value pairs (or members). A name is a string. A single colon comes after each name, separating the name from the value. A single comma separates a value from a following name.

Arrays:

An array structure is represented as square brackets surrounding zero or more values (or elements). Elements are separated by commas.

Only valid JSON can be constructed this way

Instances

Instances details
Eq JSValue # 
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Defined in Text.JSON.Types

Methods

(==) :: JSValue -> JSValue -> Bool #

(/=) :: JSValue -> JSValue -> Bool #

Ord JSValue # 
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Read JSValue # 
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Show JSValue # 
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IsString JSValue # 
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Methods

fromString :: String -> JSValue #

JSON JSValue #

To ensure we generate valid JSON, we map Haskell types to JSValue internally, then pretty print that.

Instance details

Defined in Text.JSON

Serialization to and from JSValues

class JSON a where #

The class of types serialisable to and from JSON

Minimal complete definition

readJSON, showJSON

Methods

readJSON :: JSValue -> Result a #

showJSON :: a -> JSValue #

readJSONs :: JSValue -> Result [a] #

showJSONs :: [a] -> JSValue #

Instances

Instances details
JSON Bool # 
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JSON Char # 
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JSON Double # 
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JSON Float # 
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JSON Int # 
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JSON Int8 # 
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JSON Int16 # 
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JSON Int32 # 
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JSON Int64 # 
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JSON Integer # 
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JSON Ordering # 
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JSON Word # 
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JSON Word8 # 
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JSON Word16 # 
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JSON Word32 # 
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JSON Word64 # 
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JSON () # 
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Methods

readJSON :: JSValue -> Result () #

showJSON :: () -> JSValue #

readJSONs :: JSValue -> Result [()] #

showJSONs :: [()] -> JSValue #

JSON ByteString # 
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JSON ByteString # 
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JSON IntSet # 
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JSON Text # 
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JSON JSString # 
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JSON JSValue #

To ensure we generate valid JSON, we map Haskell types to JSValue internally, then pretty print that.

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Defined in Text.JSON

JSON a => JSON [a] # 
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Methods

readJSON :: JSValue -> Result [a] #

showJSON :: [a] -> JSValue #

readJSONs :: JSValue -> Result [[a]] #

showJSONs :: [[a]] -> JSValue #

JSON a => JSON (Maybe a) # 
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JSON a => JSON (IntMap a) # 
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(Ord a, JSON a) => JSON (Set a) # 
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JSON a => JSON (JSObject a) # 
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(JSON a, JSON b) => JSON (Either a b) # 
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(JSON a, JSON b) => JSON (a, b) # 
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Methods

readJSON :: JSValue -> Result (a, b) #

showJSON :: (a, b) -> JSValue #

readJSONs :: JSValue -> Result [(a, b)] #

showJSONs :: [(a, b)] -> JSValue #

(Ix i, JSON i, JSON e) => JSON (Array i e) # 
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Defined in Text.JSON

Methods

readJSON :: JSValue -> Result (Array i e) #

showJSON :: Array i e -> JSValue #

readJSONs :: JSValue -> Result [Array i e] #

showJSONs :: [Array i e] -> JSValue #

(Ord a, JSON a, JSON b) => JSON (Map a b) # 
Instance details

Defined in Text.JSON

Methods

readJSON :: JSValue -> Result (Map a b) #

showJSON :: Map a b -> JSValue #

readJSONs :: JSValue -> Result [Map a b] #

showJSONs :: [Map a b] -> JSValue #

(JSON a, JSON b, JSON c) => JSON (a, b, c) # 
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Defined in Text.JSON

Methods

readJSON :: JSValue -> Result (a, b, c) #

showJSON :: (a, b, c) -> JSValue #

readJSONs :: JSValue -> Result [(a, b, c)] #

showJSONs :: [(a, b, c)] -> JSValue #

(JSON a, JSON b, JSON c, JSON d) => JSON (a, b, c, d) # 
Instance details

Defined in Text.JSON

Methods

readJSON :: JSValue -> Result (a, b, c, d) #

showJSON :: (a, b, c, d) -> JSValue #

readJSONs :: JSValue -> Result [(a, b, c, d)] #

showJSONs :: [(a, b, c, d)] -> JSValue #

Encoding and Decoding

data Result a #

A type for parser results

Constructors

Ok a 
Error String 

Instances

Instances details
Monad Result # 
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Methods

(>>=) :: Result a -> (a -> Result b) -> Result b #

(>>) :: Result a -> Result b -> Result b #

return :: a -> Result a #

Functor Result # 
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Methods

fmap :: (a -> b) -> Result a -> Result b #

(<$) :: a -> Result b -> Result a #

MonadFail Result # 
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Methods

fail :: String -> Result a #

Applicative Result # 
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pure :: a -> Result a #

(<*>) :: Result (a -> b) -> Result a -> Result b #

liftA2 :: (a -> b -> c) -> Result a -> Result b -> Result c #

(*>) :: Result a -> Result b -> Result b #

(<*) :: Result a -> Result b -> Result a #

Alternative Result # 
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Methods

empty :: Result a #

(<|>) :: Result a -> Result a -> Result a #

some :: Result a -> Result [a] #

many :: Result a -> Result [a] #

MonadPlus Result # 
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mzero :: Result a #

mplus :: Result a -> Result a -> Result a #

Eq a => Eq (Result a) # 
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Methods

(==) :: Result a -> Result a -> Bool #

(/=) :: Result a -> Result a -> Bool #

Show a => Show (Result a) # 
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Methods

showsPrec :: Int -> Result a -> ShowS #

show :: Result a -> String #

showList :: [Result a] -> ShowS #

encode :: JSON a => a -> String #

Encode a Haskell value into a string, in JSON format.

This is a superset of JSON, as types other than Array and Object are allowed at the top level.

decode :: JSON a => String -> Result a #

Decode a String representing a JSON value (either an object, array, bool, number, null)

This is a superset of JSON, as types other than Array and Object are allowed at the top level.

encodeStrict :: JSON a => a -> String #

Encode a value as a String in strict JSON format. This follows the spec, and requires all values at the top level to be wrapped in either an Array or Object. JSON types to be an Array or Object.

decodeStrict :: JSON a => String -> Result a #

Decode a String representing a strict JSON value. This follows the spec, and requires top level JSON types to be an Array or Object.

Wrapper Types

data JSString #

Strings can be represented a little more efficiently in JSON

Instances

Instances details
Eq JSString # 
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Defined in Text.JSON.Types

Ord JSString # 
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Read JSString # 
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Show JSString # 
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IsString JSString # 
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JSKey JSString # 
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JSON JSString # 
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toJSString :: String -> JSString #

Turn a Haskell string into a JSON string.

data JSObject e #

As can association lists

Instances

Instances details
Eq e => Eq (JSObject e) # 
Instance details

Defined in Text.JSON.Types

Methods

(==) :: JSObject e -> JSObject e -> Bool #

(/=) :: JSObject e -> JSObject e -> Bool #

Ord e => Ord (JSObject e) # 
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Defined in Text.JSON.Types

Methods

compare :: JSObject e -> JSObject e -> Ordering #

(<) :: JSObject e -> JSObject e -> Bool #

(<=) :: JSObject e -> JSObject e -> Bool #

(>) :: JSObject e -> JSObject e -> Bool #

(>=) :: JSObject e -> JSObject e -> Bool #

max :: JSObject e -> JSObject e -> JSObject e #

min :: JSObject e -> JSObject e -> JSObject e #

Read e => Read (JSObject e) # 
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Defined in Text.JSON.Types

Show e => Show (JSObject e) # 
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Methods

showsPrec :: Int -> JSObject e -> ShowS #

show :: JSObject e -> String #

showList :: [JSObject e] -> ShowS #

JSON a => JSON (JSObject a) # 
Instance details

Defined in Text.JSON

toJSObject :: [(String, a)] -> JSObject a #

Make JSON object out of an association list.

fromJSObject :: JSObject e -> [(String, e)] #

resultToEither :: Result a -> Either String a #

Map Results to Eithers

Serialization to and from Strings.

Reading JSON

readJSNull :: GetJSON JSValue #

Read the JSON null type

readJSBool :: GetJSON JSValue #

Read the JSON Bool type

readJSString :: GetJSON JSValue #

Read the JSON String type

readJSRational :: GetJSON Rational #

Read an Integer or Double in JSON format, returning a Rational

readJSArray :: GetJSON JSValue #

Read a list in JSON format

readJSObject :: GetJSON JSValue #

Read an object in JSON format

readJSValue :: GetJSON JSValue #

Read one of several possible JS types

Writing JSON

showJSNull :: ShowS #

Write the JSON null type

showJSBool :: Bool -> ShowS #

Write the JSON Bool type

showJSArray :: [JSValue] -> ShowS #

Show a list in JSON format

showJSRational :: Rational -> ShowS #

Show a Rational in JSON format

showJSObject :: JSObject JSValue -> ShowS #

Show an association list in JSON format

showJSValue :: JSValue -> ShowS #

Show JSON values

Instance helpers

valFromObj :: JSON a => String -> JSObject JSValue -> Result a #

Pull a value out of a JSON object.

class JSKey a where #

Haskell types that can be used as keys in JSON objects.

Methods

toJSKey :: a -> String #

fromJSKey :: String -> Maybe a #

Instances

Instances details
JSKey Int # 
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Defined in Text.JSON

JSKey String # 
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JSKey JSString # 
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encJSDict :: (JSKey a, JSON b) => [(a, b)] -> JSValue #

Encode an association list as JSObject value.

decJSDict :: (JSKey a, JSON b) => String -> JSValue -> Result [(a, b)] #

Decode a JSObject value into an association list.