Contributing
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12 changed files with 180 additions and 84 deletions
77
.stylish-haskell.yaml
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77
.stylish-haskell.yaml
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# stylish-haskell configuration file
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# ==================================
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# The stylish-haskell tool is mainly configured by specifying steps. These steps
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# are a list, so they have an order, and one specific step may appear more than
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# once (if needed). Each file is processed by these steps in the given order.
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steps:
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# Convert some ASCII sequences to their Unicode equivalents. This is disabled
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# by default.
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# - unicode_syntax:
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# # In order to make this work, we also need to insert the UnicodeSyntax
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# # language pragma. If this flag is set to true, we insert it when it's
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# # not already present. You may want to disable it if you configure
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# # language extensions using some other method than pragmas. Default:
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# # true.
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# add_language_pragma: true
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# Import cleanup
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- imports:
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# There are different ways we can align names and lists.
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#
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# - global: Align the import names and import list throughout the entire
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# file.
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#
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# - file: Like global, but don't add padding when there are no qualified
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# imports in the file.
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#
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# - group: Only align the imports per group (a group is formed by adjacent
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# import lines).
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#
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# - none: Do not perform any alignment.
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#
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# Default: global.
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align: global
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# Language pragmas
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- language_pragmas:
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# We can generate different styles of language pragma lists.
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#
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# - vertical: Vertical-spaced language pragmas, one per line.
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#
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# - compact: A more compact style.
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#
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# - compact_line: Similar to compact, but wrap each line with
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# `{-#LANGUAGE #-}'.
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#
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# Default: vertical.
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style: vertical
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# stylish-haskell can detect redundancy of some language pragmas. If this
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# is set to true, it will remove those redundant pragmas. Default: true.
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remove_redundant: true
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# Align the types in record declarations
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- records: {}
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# Replace tabs by spaces. This is disabled by default.
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# - tabs:
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# # Number of spaces to use for each tab. Default: 8, as specified by the
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# # Haskell report.
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# spaces: 8
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# Remove trailing whitespace
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- trailing_whitespace: {}
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# A common setting is the number of columns (parts of) code will be wrapped
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# to. Different steps take this into account. Default: 80.
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columns: 80
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# Sometimes, language extensions are specified in a cabal file or from the
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# command line instead of using language pragmas in the file. stylish-haskell
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# needs to be aware of these, so it can parse the file correctly.
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#
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# No language extensions are enabled by default.
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language_extensions:
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- TemplateHaskell
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- QuasiQuotes
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6
HLint.hs
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6
HLint.hs
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import "hint" HLint.Default
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ignore "Redundant do"
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ignore "Parse error"
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ignore "Use list comprehension"
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ignore "Use liftM"
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53
README.md
53
README.md
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@ -5,17 +5,56 @@
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![servant](https://raw.githubusercontent.com/haskell-servant/servant/master/servant.png)
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These libraries provides a family of combinators to define webservices and automatically generate the documentation and client-side querying functions for each endpoint.
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These libraries provides a family of combinators to define webservices and
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automatically generate the documentation and client-side querying functions for
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each endpoint.
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In order to minimize the dependencies depending on your needs, we provide these features under different packages.
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In order to minimize the dependencies depending on your needs, we provide these
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features under different packages.
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- `servant`, which contains everything you need to *declare* a webservice API.
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- `servant-server`, which lets you *implement* an HTTP server with handlers for each endpoint of an API.
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- `servant-client`, which lets you derive automatically Haskell functions that let you query each endpoint of a `servant` webservice.
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- `servant-server`, which lets you *implement* an HTTP server with handlers for
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each endpoint of an API.
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- `servant-client`, which lets you derive automatically Haskell functions that
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let you query each endpoint of a `servant` webservice.
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- `servant-docs`, which lets you generate API docs for your webservice.
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- `servant-js`, which lets you derive Javascript functions (using vanilla JS ajax requests, angular or jquery) to query your API's endpoints, in the same spirit as `servant-client`.
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- `servant-blaze` and `servant-lucid` provide easy HTML rendering of your data as an `HTML` content-type "combinator".
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- `servant-js`, which lets you derive Javascript functions (using vanilla JS
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ajax requests, angular or jquery) to query your API's endpoints, in the same
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spirit as `servant-client`.
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- `servant-blaze` and `servant-lucid` provide easy HTML rendering of your data
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as an `HTML` content-type "combinator".
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## Tutorial
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We have a [tutorial](http://haskell-servant.github.io/tutorial) guide that introduces the core types and features of servant. After this article, you should be able to write your first servant webservices, learning the rest from the haddocks' examples.
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We have a [tutorial](http://haskell-servant.github.io/tutorial) guide that
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introduces the core types and features of servant. After this article, you
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should be able to write your first servant webservices, learning the rest from
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the haddocks' examples.
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## Contributing
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Contributions are very welcome! To hack on the github version, clone the
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repository. You can use `cabal`:
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```shell
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./scripts/start-sandbox.sh # Initialize the sandbox and add-source the packages
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./scripts/test-all.sh # Run all the tests
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```
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`stack`:
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```shell
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stack build # Install and build packages
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stack test # Run all the tests
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```
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Or `nix`:
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```shell
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./scripts/update-nix-files.sh # Get up-to-date shell.nix files
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```
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Though we aren't sticklers for style, the `.stylish-haskel.yaml` and `HLint.hs`
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files in the repository provide a good baseline for consistency.
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Please include a description of the changes in your PR in the `CHANGELOG.md` of
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the packages you've changed. And of course, write tests!
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@ -99,7 +99,7 @@ setRQBody b t req = req { reqBody = Just (b, t) }
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reqToRequest :: (Functor m, MonadThrow m) => Req -> BaseUrl -> m Request
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reqToRequest req (BaseUrl reqScheme reqHost reqPort) =
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fmap (setheaders . setAccept . setrqb . setQS ) $ parseUrl url
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setheaders . setAccept . setrqb . setQS <$> parseUrl url
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where url = show $ nullURI { uriScheme = case reqScheme of
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Http -> "http:"
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@ -141,8 +141,8 @@ toValidFunctionName (x:xs) = [setFirstChar x] <> filter remainder xs
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setFirstChar c = if firstChar c
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then c
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else '_'
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firstChar c = (prefixOK c) || (or . map (Set.member c) $ firstLetterOK)
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remainder c = (prefixOK c) || (or . map (Set.member c) $ remainderOK)
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firstChar c = prefixOK c || any (Set.member c) firstLetterOK
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remainder c = prefixOK c || any (Set.member c) remainderOK
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-- Valid prefixes
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prefixOK c = c `elem` ['$','_']
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-- Unicode character sets
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@ -9,12 +9,12 @@ import Data.Monoid
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-- to make the AJAX calls. Uses 'defCommonGeneratorOptions'
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-- for the generator options.
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jquery :: JavaScriptGenerator
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jquery = concat . map generateJQueryJS
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jquery = concatMap generateJQueryJS
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-- | Generate javascript functions that use the /jQuery/ library
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-- to make the AJAX calls. Lets you specify your own 'CommonGeneratorOptions'.
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jqueryWith :: CommonGeneratorOptions -> JavaScriptGenerator
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jqueryWith opts = concat . map (generateJQueryJSWith opts)
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jqueryWith opts = concatMap (generateJQueryJSWith opts)
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-- | js codegen using JQuery using default options
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generateJQueryJS :: AjaxReq -> String
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@ -9,13 +9,13 @@ import Data.Monoid
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-- to your API, using /XMLHttpRequest/. Uses 'defCommonGeneratorOptions'
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-- for the 'CommonGeneratorOptions'.
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vanillaJS :: JavaScriptGenerator
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vanillaJS = concat . map generateVanillaJS
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vanillaJS = concatMap generateVanillaJS
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-- | Generate vanilla javascript functions to make AJAX requests
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-- to your API, using /XMLHttpRequest/. Lets you specify your
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-- own options.
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vanillaJSWith :: CommonGeneratorOptions -> JavaScriptGenerator
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vanillaJSWith opts = concat . map (generateVanillaJSWith opts)
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vanillaJSWith opts = concatMap (generateVanillaJSWith opts)
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-- | js codegen using XmlHttpRequest using default generation options
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generateVanillaJS :: AjaxReq -> String
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@ -102,7 +102,7 @@ axiosSpec = describe specLabel $ do
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cookieOpts = AX.defAxiosOptions { AX.xsrfCookieName = Just "MyXSRFcookie" }
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headerOpts = AX.defAxiosOptions { AX.xsrfHeaderName = Just "MyXSRFheader" }
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genJS :: AxiosOptions -> [AjaxReq] -> String
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genJS opts req = concat $ map (AX.generateAxiosJS opts) req
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genJS opts req = concatMap (AX.generateAxiosJS opts) req
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angularSpec :: TestNames -> Spec
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angularSpec test = describe specLabel $ do
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generateJSSpec :: TestNames -> (AjaxReq -> String) -> Spec
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generateJSSpec n gen = describe specLabel $ do
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it "should generate valid javascript" $ do
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let s = jsForAPI (Proxy :: Proxy TestAPI) (concat . map gen)
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let s = jsForAPI (Proxy :: Proxy TestAPI) (concatMap gen)
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parseFromString s `shouldSatisfy` isRight
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it "should use non-empty function names" $ do
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jsText `shouldContain` (header n "X-WhatsForDinner" $ "\"I would like \" + headerXWhatsForDinner + \" with a cherry on top.\"")
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it "can generate the whole javascript code string at once with jsForAPI" $ do
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let jsStr = jsForAPI (Proxy :: Proxy TestAPI) (concat . map gen)
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let jsStr = jsForAPI (Proxy :: Proxy TestAPI) (concatMap gen)
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parseFromString jsStr `shouldSatisfy` isRight
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where
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specLabel = "generateJS(" ++ (show n) ++ ")"
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{-# LANGUAGE CPP #-}
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{-# LANGUAGE DataKinds #-}
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{-# LANGUAGE TypeFamilies #-}
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{-# LANGUAGE TypeOperators #-}
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{-# LANGUAGE FlexibleContexts #-}
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{-# LANGUAGE FlexibleInstances #-}
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{-# LANGUAGE CPP #-}
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{-# LANGUAGE DataKinds #-}
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{-# LANGUAGE FlexibleContexts #-}
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{-# LANGUAGE FlexibleInstances #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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{-# LANGUAGE TypeFamilies #-}
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{-# LANGUAGE TypeOperators #-}
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-- |
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-- Module : Servant.Mock
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-- Copyright : 2015 Alp Mestanogullari
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module Servant.Mock ( HasMock(..) ) where
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#if !MIN_VERSION_base(4,8,0)
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import Control.Applicative
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import Control.Applicative
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#endif
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import Control.Monad.IO.Class
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import Data.ByteString.Lazy.Char8 (pack)
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import Data.Proxy
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import GHC.TypeLits
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import Network.HTTP.Types.Status
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import Network.Wai
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import Servant
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import Servant.API.ContentTypes
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import Test.QuickCheck.Arbitrary (Arbitrary(..), vector)
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import Test.QuickCheck.Gen (Gen, generate)
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import Control.Monad.IO.Class
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import Data.ByteString.Lazy.Char8 (pack)
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import Data.Proxy
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import GHC.TypeLits
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import Network.HTTP.Types.Status
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import Network.Wai
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import Servant
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import Servant.API.ContentTypes
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import Test.QuickCheck.Arbitrary (Arbitrary (..), vector)
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import Test.QuickCheck.Gen (Gen, generate)
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-- | 'HasMock' defines an interpretation of API types
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-- than turns them into random-response-generating
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bdy <- genBody
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respond $ responseLBS status200 [] bdy
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where genBody = fmap pack $ generate (vector 100 :: Gen [Char])
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where genBody = pack <$> generate (vector 100 :: Gen [Char])
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mockArbitrary :: (MonadIO m, Arbitrary a) => m a
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mockArbitrary = liftIO (generate arbitrary)
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@ -137,9 +137,7 @@ processMethodRouter handleA status method headers request = case handleA of
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Nothing -> failWith UnsupportedMediaType
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Just (contentT, body) -> succeedWith $ responseLBS status hdrs bdy
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where
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bdy = case allowedMethodHead method request of
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True -> ""
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False -> body
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bdy = if allowedMethodHead method request then "" else body
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hdrs = (hContentType, cs contentT) : (fromMaybe [] headers)
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methodRouter :: (AllCTRender ctypes a)
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-- named "foo" or "foo[]" and call fromText on the
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-- corresponding values
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parameters = filter looksLikeParam querytext
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values = catMaybes $ map (convert . snd) parameters
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values = mapMaybe (convert . snd) parameters
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in route (Proxy :: Proxy sublayout) (feedTo subserver values)
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where paramname = cs $ symbolVal (Proxy :: Proxy sym)
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looksLikeParam (name, _) = name == paramname || name == (paramname <> "[]")
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-- named "foo" or "foo[]" and call fromText on the
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-- corresponding values
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parameters = filter looksLikeParam matrixtext
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values = catMaybes $ map (convert . snd) parameters
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values = mapMaybe (convert . snd) parameters
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route (Proxy :: Proxy sublayout) (feedTo subserver values)
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_ -> route (Proxy :: Proxy sublayout) (feedTo subserver [])
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where paramname = cs $ symbolVal (Proxy :: Proxy sym)
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@ -1,24 +0,0 @@
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{ mkDerivation, aeson, attoparsec, base, bytestring
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, bytestring-conversion, case-insensitive, directory, doctest
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, filemanip, filepath, hspec, http-media, http-types, network-uri
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, parsec, QuickCheck, quickcheck-instances, stdenv
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, string-conversions, text, url, vault
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}:
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mkDerivation {
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pname = "servant";
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version = "0.5";
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src = ./.;
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buildDepends = [
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aeson attoparsec base bytestring bytestring-conversion
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case-insensitive http-media http-types network-uri
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string-conversions text vault
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];
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testDepends = [
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aeson attoparsec base bytestring directory doctest filemanip
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filepath hspec parsec QuickCheck quickcheck-instances
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string-conversions text url
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];
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homepage = "http://haskell-servant.github.io/";
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description = "A family of combinators for defining webservices APIs";
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license = stdenv.lib.licenses.bsd3;
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}
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let p = Proxy :: Proxy FormUrlEncoded
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it "has mimeUnrender reverse mimeRender" $ do
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property $ \x -> all (/= mempty) x
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property $ \x -> mempty `notElem` x
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==> mimeUnrender p (mimeRender p x) == Right (x::[(TextS.Text,TextS.Text)])
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it "has mimeUnrender reverse exportParams (Network.URL)" $ do
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property $ \x -> all (/= mempty) x
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property $ \x -> mempty `notElem` x
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==> (mimeUnrender p . cs . exportParams . map (cs *** cs) $ x) == Right (x::[(TextS.Text,TextS.Text)])
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it "has importParams (Network.URL) reverse mimeRender" $ do
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property $ \x -> all (/= mempty) x
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property $ \x -> mempty `notElem` x
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==> (fmap (map (cs *** cs)) . importParams . cs . mimeRender p $ x) == Just (x::[(TextS.Text,TextS.Text)])
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describe "The PlainText Content-Type type" $ do
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