{-# LANGUAGE TemplateHaskell #-}
{-# OPTIONS_GHC -fno-warn-orphans #-}

{-| Unittests for ganeti-htools.

-}

{-

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module Test.Ganeti.HTools.CLI (testHTools_CLI) where

import Test.HUnit
import Test.QuickCheck

import Control.Monad
import Data.List
import Text.Printf (printf)

import Test.Ganeti.TestHelper
import Test.Ganeti.TestCommon
import Test.Ganeti.Common

import Ganeti.BasicTypes
import Ganeti.HTools.CLI as CLI
import qualified Ganeti.HTools.Program.Main as Program
import qualified Ganeti.HTools.Types as Types

{-# ANN module "HLint: ignore Use camelCase" #-}

-- | Test correct parsing.
prop_parseISpec :: String -> Int -> Int -> Int -> Maybe Int -> Property
prop_parseISpec descr dsk mem cpu spn =
  let (str, spn') = case spn of
                      Nothing -> (printf "%d,%d,%d" dsk mem cpu::String, 1)
                      Just spn'' ->
                        (printf "%d,%d,%d,%d" dsk mem cpu spn''::String, spn'')
  in parseISpecString descr str ==? Ok (Types.RSpec cpu mem dsk spn')

-- | Test parsing failure due to wrong section count.
prop_parseISpecFail :: String -> Property
prop_parseISpecFail descr =
  forAll (choose (0,100) `suchThat` (not . flip elem [3, 4])) $ \nelems ->
  forAll (replicateM nelems arbitrary) $ \values ->
  let str = intercalate "," $ map show (values::[Int])
  in case parseISpecString descr str of
       Ok v -> failTest $ "Expected failure, got " ++ show v
       _ -> passTest

-- | Test a few string arguments.
prop_string_arg :: String -> Property
prop_string_arg argument =
  let args = [ (oDataFile,      optDataFile)
             , (oDynuFile,      optDynuFile)
             , (oSaveCluster,   optSaveCluster)
             , (oPrintCommands, optShowCmds)
             , (genOLuxiSocket "", optLuxi)
             , (oIAllocSrc,     optIAllocSrc)
             ]
  in conjoin $ map (\(o, opt) ->
                      checkOpt Just defaultOptions
                      failTest (const (==?)) Just (argument, o, opt)) args

-- | Test a few positive arguments.
prop_numeric_arg :: Positive Double -> Property
prop_numeric_arg (Positive argument) =
  let args = [ (oMaxCpu,     optMcpu)
             , (oMinDisk,    Just . optMdsk)
             , (oMinGain,    Just . optMinGain)
             , (oMinGainLim, Just . optMinGainLim)
             , (oMinScore,   Just . optMinScore)
             ]
  in conjoin $
     map (\(x, y) -> checkOpt (Just . show) defaultOptions
                     failTest (const (==?)) Just (argument, x, y)) args

-- | Test a few boolean arguments.
case_bool_arg :: Assertion
case_bool_arg =
  mapM_ (checkOpt (const Nothing) defaultOptions assertFailure
                  assertEqual id)
        [ (False, oDiskMoves,    optDiskMoves)
        , (False, oInstMoves,    optInstMoves)
        , (True,  oEvacMode,     optEvacMode)
        , (True,  oExecJobs,     optExecJobs)
        , (True,  oNoHeaders,    optNoHeaders)
        , (True,  oNoSimulation, optNoSimulation)
        ]

-- | Tests a few invalid arguments.
case_wrong_arg :: Assertion
case_wrong_arg =
  mapM_ (passFailOpt defaultOptions assertFailure (return ()))
        [ (oSpindleUse,   "-1", "1")
        , (oSpindleUse,   "a",  "1")
        , (oMaxCpu,       "-1", "1")
        , (oMinDisk,      "a",  "1")
        , (oMinGainLim,   "a",  "1")
        , (oMaxSolLength, "x",  "10")
        , (oStdSpec,      "no-such-spec", "1,1,1")
        , (oTieredSpec,   "no-such-spec", "1,1,1")
        ]

-- | Test that all binaries support some common options.
case_stdopts :: Assertion
case_stdopts =
  mapM_ (\(name, (_, o, a, _)) -> do
           o' <- o
           checkEarlyExit defaultOptions name
             (o' ++ genericOpts) a) Program.personalities

testSuite "HTools/CLI"
          [ 'prop_parseISpec
          , 'prop_parseISpecFail
          , 'prop_string_arg
          , 'prop_numeric_arg
          , 'case_bool_arg
          , 'case_wrong_arg
          , 'case_stdopts
          ]