json-autotype: Automatic type declaration for JSON input data

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Generates datatype declarations with Aeson's FromJSON instances from a set of example ".json" files.

To get started you need to install the package, and run "json-autotype" binary on an input ".json" file. That will generate a new Aeson-based JSON parser.

"$ json-autotype input.json -o JSONTypes.hs"

Feel free to tweak the by changing types of the fields - any field type that is instance of FromJSON should work.

You may immediately test the parser by calling it as a script:

"$ runghc JSONTypes.hs input.json"

See introduction on https://github.com/mgajda/json-autotype for details.


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Change log changelog.md
Dependencies aeson (>=0.7 && <0.9), base (>=4.3 && <4.9), bytestring (>=0.9 && <0.11), containers (>=0.3 && <0.6), filepath (>=1.3 && <1.4), GenericPretty (>=1.2 && <1.3), hashable (>=1.2 && <1.3), hflags (>=0.4 && <0.5), lens (>=4.1 && <4.7), MissingH (>=1.2 && <1.4), mtl (>=2.1 && <2.3), pretty (>=1.1 && <1.3), process (>=1.2 && <1.4), scientific (>=0.3 && <0.5), text (>=1.1 && <1.3), uniplate (>=1.6 && <1.7), unordered-containers (>=0.2 && <0.3), vector (>=0.9 && <0.11) [details]
Tested with ghc ==7.6.3, ghc ==7.8.3
License BSD-3-Clause
Copyright Copyright by Michal J. Gajda '2014
Author Michal J. Gajda
Maintainer mjgajda@gmail.com
Category Web
Home page https://github.com/mgajda/json-autotype
Bug tracker https://github.com/mgajda/json-autotype/issues
Source repo head: git clone https://github.com/mgajda/json-autotype.git
Uploaded by MichalGajda at 2014-12-28T06:20:42Z
Distributions
Reverse Dependencies 5 direct, 0 indirect [details]
Executables json-autotype
Downloads 34405 total (136 in the last 30 days)
Rating 2.5 (votes: 3) [estimated by Bayesian average]
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Status Docs uploaded by user
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Readme for json-autotype-0.2.5.3

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json-autotype

Takes a JSON format input, and generates automatic Haskell type declarations.

Parser and printer instances are derived using Aeson.

The program uses union type unification to trim output declarations. The types of same attribute tag and similar attribute set, are automatically unified using recognition by attribute set matching. (This option can be optionally turned off, or a set of unified types may be given explicitly.) Either alternatives is used to assure that all JSON inputs seen in example input file are handled correctly.

I should probably write a short paper to explain the methodology.

Build Status Hackage

Details on official releases are on Hackage

USAGE:

After installing with cabal install json-autotype, you might generate stub code for the parser:

    json-autotype input.json -o MyFormat.hs

Then you might test the parser by running it on an input file:

    runghc MyFormat.hs input.json

If everything is correct, then feel free to inspect the data structure generated automatically for you! The goal of this program is to make it easy for users of big JSON APIs to generate entries from example data.

Occasionally you might find a valid JSON for which json-autotype doesn't generate a correct parser. You may either edit the resulting file and send it to the author as a test case for future release.

Patches and suggestions are welcome.

EXAMPLES:

The most simple example:

    {
        "colorsArray":[{
                "colorName":"red",
                "hexValue":"#f00"
            },
            {
                "colorName":"green",
                "hexValue":"#0f0"
            },
            {
                "colorName":"blue",
                "hexValue":"#00f"
            }
        ]
    }

It will produce the module with the following datatypes and TH calls for JSON parser derivations:

    data ColorsArray = ColorsArray {
        colorsArrayHexValue    :: Text,
        colorsArrayColorName :: Text
      } deriving (Show,Eq)

    data TopLevel = TopLevel {
        topLevelColorsArray :: ColorsArray
      } deriving (Show,Eq)

Note that attribute names match the names of JSON dictionary keys.

Another example with ambiguous types:

    {
        "parameter":[{
                "parameterName":"apiVersion",
                "parameterValue":1
            },
            {
                "parameterName":"failOnWarnings",
                "parameterValue":false
            },
            {
                "parameterName":"caller",
                "parameterValue":"site API"
            }]
    }

It will produce quite intuitive result (plus extra parentheses, and class derivations):

    data Parameter = Parameter {
        parameterParameterValue :: Either Bool (Either Int Text),
        parameterParameterName :: Text
      }

    data TopLevel = TopLevel {
        topLevelParameter :: Parameter
      }

Real-world use case examples are provided in the package source repository.