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{-# LANGUAGE TemplateHaskell #-}
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{-| Unittests for ganeti-htools.
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-}
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{-
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Copyright (C) 2009, 2010, 2011, 2012 Google Inc.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301, USA.
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-}
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module Ganeti.HTools.QC
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  ( testUtils
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  , testPeerMap
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  , testContainer
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  , testInstance
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  , testNode
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  , testText
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  , testSimu
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  , testOpCodes
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  , testJobs
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  , testCluster
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  , testLoader
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  , testTypes
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  , testCLI
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  ) where
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import Test.QuickCheck
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import Text.Printf (printf)
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import Data.List (findIndex, intercalate, nub, isPrefixOf)
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import qualified Data.Set as Set
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import Data.Maybe
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import Control.Monad
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import qualified System.Console.GetOpt as GetOpt
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import qualified Text.JSON as J
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import qualified Data.Map
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import qualified Data.IntMap as IntMap
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import qualified Ganeti.OpCodes as OpCodes
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import qualified Ganeti.Jobs as Jobs
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import qualified Ganeti.Luxi
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import qualified Ganeti.HTools.CLI as CLI
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import qualified Ganeti.HTools.Cluster as Cluster
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import qualified Ganeti.HTools.Container as Container
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import qualified Ganeti.HTools.ExtLoader
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import qualified Ganeti.HTools.IAlloc as IAlloc
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import qualified Ganeti.HTools.Instance as Instance
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import qualified Ganeti.HTools.JSON as JSON
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import qualified Ganeti.HTools.Loader as Loader
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import qualified Ganeti.HTools.Luxi
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import qualified Ganeti.HTools.Node as Node
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import qualified Ganeti.HTools.Group as Group
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import qualified Ganeti.HTools.PeerMap as PeerMap
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import qualified Ganeti.HTools.Rapi
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import qualified Ganeti.HTools.Simu as Simu
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import qualified Ganeti.HTools.Text as Text
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import qualified Ganeti.HTools.Types as Types
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import qualified Ganeti.HTools.Utils as Utils
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import qualified Ganeti.HTools.Version
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import qualified Ganeti.Constants as C
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import qualified Ganeti.HTools.Program as Program
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import qualified Ganeti.HTools.Program.Hail
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import qualified Ganeti.HTools.Program.Hbal
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import qualified Ganeti.HTools.Program.Hscan
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import qualified Ganeti.HTools.Program.Hspace
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import Ganeti.HTools.QCHelper (testSuite)
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-- * Constants
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-- | Maximum memory (1TiB, somewhat random value).
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maxMem :: Int
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maxMem = 1024 * 1024
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-- | Maximum disk (8TiB, somewhat random value).
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maxDsk :: Int
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maxDsk = 1024 * 1024 * 8
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-- | Max CPUs (1024, somewhat random value).
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maxCpu :: Int
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maxCpu = 1024
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-- | Max vcpu ratio (random value).
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maxVcpuRatio :: Double
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maxVcpuRatio = 1024.0
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-- | Max spindle ratio (random value).
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maxSpindleRatio :: Double
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maxSpindleRatio = 1024.0
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-- | All disk templates (used later)
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allDiskTemplates :: [Types.DiskTemplate]
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allDiskTemplates = [minBound..maxBound]
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-- | Null iPolicy, and by null we mean very liberal.
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nullIPolicy = Types.IPolicy
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  { Types.iPolicyMinSpec = Types.ISpec { Types.iSpecMemorySize = 0
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                                       , Types.iSpecCpuCount   = 0
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                                       , Types.iSpecDiskSize   = 0
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                                       , Types.iSpecDiskCount  = 0
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                                       , Types.iSpecNicCount   = 0
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                                       }
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  , Types.iPolicyMaxSpec = Types.ISpec { Types.iSpecMemorySize = maxBound
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                                       , Types.iSpecCpuCount   = maxBound
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                                       , Types.iSpecDiskSize   = maxBound
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                                       , Types.iSpecDiskCount  = C.maxDisks
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                                       , Types.iSpecNicCount   = C.maxNics
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                                       }
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  , Types.iPolicyStdSpec = Types.ISpec { Types.iSpecMemorySize = Types.unitMem
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                                       , Types.iSpecCpuCount   = Types.unitCpu
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                                       , Types.iSpecDiskSize   = Types.unitDsk
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                                       , Types.iSpecDiskCount  = 1
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                                       , Types.iSpecNicCount   = 1
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                                       }
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  , Types.iPolicyDiskTemplates = [Types.DTDrbd8, Types.DTPlain]
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  , Types.iPolicyVcpuRatio = maxVcpuRatio -- somewhat random value, high
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                                          -- enough to not impact us
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  , Types.iPolicySpindleRatio = maxSpindleRatio
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  }
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defGroup :: Group.Group
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defGroup = flip Group.setIdx 0 $
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             Group.create "default" Types.defaultGroupID Types.AllocPreferred
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                  nullIPolicy
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defGroupList :: Group.List
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defGroupList = Container.fromList [(Group.idx defGroup, defGroup)]
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defGroupAssoc :: Data.Map.Map String Types.Gdx
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defGroupAssoc = Data.Map.singleton (Group.uuid defGroup) (Group.idx defGroup)
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-- * Helper functions
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-- | Simple checker for whether OpResult is fail or pass.
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isFailure :: Types.OpResult a -> Bool
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isFailure (Types.OpFail _) = True
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isFailure _ = False
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-- | Checks for equality with proper annotation.
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(==?) :: (Show a, Eq a) => a -> a -> Property
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(==?) x y = printTestCase
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            ("Expected equality, but '" ++
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             show x ++ "' /= '" ++ show y ++ "'") (x == y)
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infix 3 ==?
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-- | Show a message and fail the test.
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failTest :: String -> Property
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failTest msg = printTestCase msg False
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-- | Update an instance to be smaller than a node.
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setInstanceSmallerThanNode node inst =
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  inst { Instance.mem = Node.availMem node `div` 2
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       , Instance.dsk = Node.availDisk node `div` 2
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       , Instance.vcpus = Node.availCpu node `div` 2
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       }
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-- | Create an instance given its spec.
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createInstance mem dsk vcpus =
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  Instance.create "inst-unnamed" mem dsk vcpus Types.Running [] True (-1) (-1)
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    Types.DTDrbd8
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-- | Create a small cluster by repeating a node spec.
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makeSmallCluster :: Node.Node -> Int -> Node.List
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makeSmallCluster node count =
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  let origname = Node.name node
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      origalias = Node.alias node
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      nodes = map (\idx -> node { Node.name = origname ++ "-" ++ show idx
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                                , Node.alias = origalias ++ "-" ++ show idx })
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              [1..count]
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      fn = flip Node.buildPeers Container.empty
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      namelst = map (\n -> (Node.name n, fn n)) nodes
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      (_, nlst) = Loader.assignIndices namelst
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  in nlst
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-- | Make a small cluster, both nodes and instances.
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makeSmallEmptyCluster :: Node.Node -> Int -> Instance.Instance
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                      -> (Node.List, Instance.List, Instance.Instance)
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makeSmallEmptyCluster node count inst =
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  (makeSmallCluster node count, Container.empty,
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   setInstanceSmallerThanNode node inst)
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-- | Checks if a node is "big" enough.
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isNodeBig :: Int -> Node.Node -> Bool
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isNodeBig size node = Node.availDisk node > size * Types.unitDsk
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                      && Node.availMem node > size * Types.unitMem
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                      && Node.availCpu node > size * Types.unitCpu
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canBalance :: Cluster.Table -> Bool -> Bool -> Bool -> Bool
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canBalance tbl dm im evac = isJust $ Cluster.tryBalance tbl dm im evac 0 0
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-- | Assigns a new fresh instance to a cluster; this is not
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-- allocation, so no resource checks are done.
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assignInstance :: Node.List -> Instance.List -> Instance.Instance ->
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                  Types.Idx -> Types.Idx ->
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                  (Node.List, Instance.List)
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assignInstance nl il inst pdx sdx =
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  let pnode = Container.find pdx nl
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      snode = Container.find sdx nl
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      maxiidx = if Container.null il
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                  then 0
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                  else fst (Container.findMax il) + 1
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      inst' = inst { Instance.idx = maxiidx,
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                     Instance.pNode = pdx, Instance.sNode = sdx }
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      pnode' = Node.setPri pnode inst'
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      snode' = Node.setSec snode inst'
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      nl' = Container.addTwo pdx pnode' sdx snode' nl
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      il' = Container.add maxiidx inst' il
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  in (nl', il')
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-- | Generates a list of a given size with non-duplicate elements.
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genUniquesList :: (Eq a, Arbitrary a) => Int -> Gen [a]
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genUniquesList cnt =
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  foldM (\lst _ -> do
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           newelem <- arbitrary `suchThat` (`notElem` lst)
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           return (newelem:lst)) [] [1..cnt]
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-- * Arbitrary instances
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-- | Defines a DNS name.
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newtype DNSChar = DNSChar { dnsGetChar::Char }
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instance Arbitrary DNSChar where
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  arbitrary = do
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    x <- elements (['a'..'z'] ++ ['0'..'9'] ++ "_-")
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    return (DNSChar x)
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-- | Generates a single name component.
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getName :: Gen String
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getName = do
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  n <- choose (1, 64)
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  dn <- vector n::Gen [DNSChar]
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  return (map dnsGetChar dn)
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-- | Generates an entire FQDN.
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getFQDN :: Gen String
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getFQDN = do
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  ncomps <- choose (1, 4)
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  names <- mapM (const getName) [1..ncomps::Int]
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  return $ intercalate "." names
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-- | Defines a tag type.
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newtype TagChar = TagChar { tagGetChar :: Char }
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-- | All valid tag chars. This doesn't need to match _exactly_
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-- Ganeti's own tag regex, just enough for it to be close.
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tagChar :: [Char]
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tagChar = ['a'..'z'] ++ ['A'..'Z'] ++ ['0'..'9'] ++ ".+*/:@-"
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instance Arbitrary TagChar where
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  arbitrary = do
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    c <- elements tagChar
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    return (TagChar c)
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-- | Generates a tag
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genTag :: Gen [TagChar]
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genTag = do
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  -- the correct value would be C.maxTagLen, but that's way too
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  -- verbose in unittests, and at the moment I don't see any possible
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  -- bugs with longer tags and the way we use tags in htools
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  n <- choose (1, 10)
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  vector n
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-- | Generates a list of tags (correctly upper bounded).
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genTags :: Gen [String]
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genTags = do
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  -- the correct value would be C.maxTagsPerObj, but per the comment
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  -- in genTag, we don't use tags enough in htools to warrant testing
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  -- such big values
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  n <- choose (0, 10::Int)
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  tags <- mapM (const genTag) [1..n]
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  return $ map (map tagGetChar) tags
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instance Arbitrary Types.InstanceStatus where
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    arbitrary = elements [minBound..maxBound]
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-- | Generates a random instance with maximum disk/mem/cpu values.
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genInstanceSmallerThan :: Int -> Int -> Int -> Gen Instance.Instance
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genInstanceSmallerThan lim_mem lim_dsk lim_cpu = do
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  name <- getFQDN
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  mem <- choose (0, lim_mem)
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  dsk <- choose (0, lim_dsk)
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  run_st <- arbitrary
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  pn <- arbitrary
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  sn <- arbitrary
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  vcpus <- choose (0, lim_cpu)
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  return $ Instance.create name mem dsk vcpus run_st [] True pn sn
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         Types.DTDrbd8
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-- | Generates an instance smaller than a node.
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genInstanceSmallerThanNode :: Node.Node -> Gen Instance.Instance
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genInstanceSmallerThanNode node =
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  genInstanceSmallerThan (Node.availMem node `div` 2)
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                         (Node.availDisk node `div` 2)
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                         (Node.availCpu node `div` 2)
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-- let's generate a random instance
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instance Arbitrary Instance.Instance where
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  arbitrary = genInstanceSmallerThan maxMem maxDsk maxCpu
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-- | Generas an arbitrary node based on sizing information.
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genNode :: Maybe Int -- ^ Minimum node size in terms of units
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        -> Maybe Int -- ^ Maximum node size (when Nothing, bounded
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                     -- just by the max... constants)
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        -> Gen Node.Node
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genNode min_multiplier max_multiplier = do
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  let (base_mem, base_dsk, base_cpu) =
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        case min_multiplier of
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          Just mm -> (mm * Types.unitMem,
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                      mm * Types.unitDsk,
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                      mm * Types.unitCpu)
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          Nothing -> (0, 0, 0)
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      (top_mem, top_dsk, top_cpu)  =
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        case max_multiplier of
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          Just mm -> (mm * Types.unitMem,
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                      mm * Types.unitDsk,
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                      mm * Types.unitCpu)
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          Nothing -> (maxMem, maxDsk, maxCpu)
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  name  <- getFQDN
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  mem_t <- choose (base_mem, top_mem)
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  mem_f <- choose (base_mem, mem_t)
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  mem_n <- choose (0, mem_t - mem_f)
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  dsk_t <- choose (base_dsk, top_dsk)
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  dsk_f <- choose (base_dsk, dsk_t)
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  cpu_t <- choose (base_cpu, top_cpu)
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  offl  <- arbitrary
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  let n = Node.create name (fromIntegral mem_t) mem_n mem_f
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          (fromIntegral dsk_t) dsk_f (fromIntegral cpu_t) offl 1 0
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      n' = Node.setPolicy nullIPolicy n
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  return $ Node.buildPeers n' Container.empty
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-- | Helper function to generate a sane node.
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genOnlineNode :: Gen Node.Node
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genOnlineNode = do
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  arbitrary `suchThat` (\n -> not (Node.offline n) &&
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                              not (Node.failN1 n) &&
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                              Node.availDisk n > 0 &&
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                              Node.availMem n > 0 &&
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                              Node.availCpu n > 0)
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-- and a random node
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instance Arbitrary Node.Node where
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  arbitrary = genNode Nothing Nothing
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-- replace disks
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instance Arbitrary OpCodes.ReplaceDisksMode where
364 e1bf27bb Agata Murawska
  arbitrary = elements [minBound..maxBound]
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instance Arbitrary OpCodes.OpCode where
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  arbitrary = do
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    op_id <- elements [ "OP_TEST_DELAY"
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                      , "OP_INSTANCE_REPLACE_DISKS"
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                      , "OP_INSTANCE_FAILOVER"
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                      , "OP_INSTANCE_MIGRATE"
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                      ]
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    case op_id of
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      "OP_TEST_DELAY" ->
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        liftM3 OpCodes.OpTestDelay arbitrary arbitrary arbitrary
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      "OP_INSTANCE_REPLACE_DISKS" ->
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        liftM5 OpCodes.OpInstanceReplaceDisks arbitrary arbitrary
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          arbitrary arbitrary arbitrary
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      "OP_INSTANCE_FAILOVER" ->
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        liftM3 OpCodes.OpInstanceFailover arbitrary arbitrary
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          arbitrary
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      "OP_INSTANCE_MIGRATE" ->
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        liftM5 OpCodes.OpInstanceMigrate arbitrary arbitrary
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          arbitrary arbitrary arbitrary
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      _ -> fail "Wrong opcode"
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instance Arbitrary Jobs.OpStatus where
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  arbitrary = elements [minBound..maxBound]
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instance Arbitrary Jobs.JobStatus where
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  arbitrary = elements [minBound..maxBound]
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newtype SmallRatio = SmallRatio Double deriving Show
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instance Arbitrary SmallRatio where
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  arbitrary = do
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    v <- choose (0, 1)
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    return $ SmallRatio v
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instance Arbitrary Types.AllocPolicy where
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  arbitrary = elements [minBound..maxBound]
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instance Arbitrary Types.DiskTemplate where
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  arbitrary = elements [minBound..maxBound]
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instance Arbitrary Types.FailMode where
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  arbitrary = elements [minBound..maxBound]
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instance Arbitrary Types.EvacMode where
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  arbitrary = elements [minBound..maxBound]
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instance Arbitrary a => Arbitrary (Types.OpResult a) where
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  arbitrary = arbitrary >>= \c ->
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              if c
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                then liftM Types.OpGood arbitrary
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                else liftM Types.OpFail arbitrary
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instance Arbitrary Types.ISpec where
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  arbitrary = do
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    mem_s <- arbitrary::Gen (NonNegative Int)
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    dsk_c <- arbitrary::Gen (NonNegative Int)
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    dsk_s <- arbitrary::Gen (NonNegative Int)
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    cpu_c <- arbitrary::Gen (NonNegative Int)
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    nic_c <- arbitrary::Gen (NonNegative Int)
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    return Types.ISpec { Types.iSpecMemorySize = fromIntegral mem_s
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                       , Types.iSpecCpuCount   = fromIntegral cpu_c
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                       , Types.iSpecDiskSize   = fromIntegral dsk_s
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                       , Types.iSpecDiskCount  = fromIntegral dsk_c
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                       , Types.iSpecNicCount   = fromIntegral nic_c
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                       }
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-- | Generates an ispec bigger than the given one.
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genBiggerISpec :: Types.ISpec -> Gen Types.ISpec
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genBiggerISpec imin = do
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  mem_s <- choose (Types.iSpecMemorySize imin, maxBound)
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  dsk_c <- choose (Types.iSpecDiskCount imin, maxBound)
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  dsk_s <- choose (Types.iSpecDiskSize imin, maxBound)
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  cpu_c <- choose (Types.iSpecCpuCount imin, maxBound)
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  nic_c <- choose (Types.iSpecNicCount imin, maxBound)
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  return Types.ISpec { Types.iSpecMemorySize = fromIntegral mem_s
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                     , Types.iSpecCpuCount   = fromIntegral cpu_c
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                     , Types.iSpecDiskSize   = fromIntegral dsk_s
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                     , Types.iSpecDiskCount  = fromIntegral dsk_c
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                     , Types.iSpecNicCount   = fromIntegral nic_c
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                     }
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instance Arbitrary Types.IPolicy where
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  arbitrary = do
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    imin <- arbitrary
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    istd <- genBiggerISpec imin
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    imax <- genBiggerISpec istd
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    num_tmpl <- choose (0, length allDiskTemplates)
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    dts  <- genUniquesList num_tmpl
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    vcpu_ratio <- choose (1.0, maxVcpuRatio)
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    spindle_ratio <- choose (1.0, maxSpindleRatio)
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    return Types.IPolicy { Types.iPolicyMinSpec = imin
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                         , Types.iPolicyStdSpec = istd
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                         , Types.iPolicyMaxSpec = imax
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                         , Types.iPolicyDiskTemplates = dts
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                         , Types.iPolicyVcpuRatio = vcpu_ratio
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                         , Types.iPolicySpindleRatio = spindle_ratio
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                         }
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-- * Actual tests
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-- ** Utils tests
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-- | Helper to generate a small string that doesn't contain commas.
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genNonCommaString = do
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  size <- choose (0, 20) -- arbitrary max size
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  vectorOf size (arbitrary `suchThat` ((/=) ','))
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-- | If the list is not just an empty element, and if the elements do
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-- not contain commas, then join+split should be idempotent.
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prop_Utils_commaJoinSplit =
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  forAll (choose (0, 20)) $ \llen ->
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  forAll (vectorOf llen genNonCommaString `suchThat` ((/=) [""])) $ \lst ->
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  Utils.sepSplit ',' (Utils.commaJoin lst) ==? lst
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-- | Split and join should always be idempotent.
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prop_Utils_commaSplitJoin s =
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  Utils.commaJoin (Utils.sepSplit ',' s) ==? s
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-- | fromObjWithDefault, we test using the Maybe monad and an integer
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-- value.
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prop_Utils_fromObjWithDefault def_value random_key =
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  -- a missing key will be returned with the default
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  JSON.fromObjWithDefault [] random_key def_value == Just def_value &&
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  -- a found key will be returned as is, not with default
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  JSON.fromObjWithDefault [(random_key, J.showJSON def_value)]
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       random_key (def_value+1) == Just def_value
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    where _types = def_value :: Integer
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493 bfe6c954 Guido Trotter
-- | Test that functional if' behaves like the syntactic sugar if.
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prop_Utils_if'if :: Bool -> Int -> Int -> Gen Prop
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prop_Utils_if'if cnd a b =
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  Utils.if' cnd a b ==? if cnd then a else b
497 bfe6c954 Guido Trotter
498 22fac87d Guido Trotter
-- | Test basic select functionality
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prop_Utils_select :: Int      -- ^ Default result
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                  -> [Int]    -- ^ List of False values
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                  -> [Int]    -- ^ List of True values
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                  -> Gen Prop -- ^ Test result
503 22fac87d Guido Trotter
prop_Utils_select def lst1 lst2 =
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  Utils.select def (flist ++ tlist) ==? expectedresult
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    where expectedresult = Utils.if' (null lst2) def (head lst2)
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          flist = zip (repeat False) lst1
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          tlist = zip (repeat True)  lst2
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509 22fac87d Guido Trotter
-- | Test basic select functionality with undefined default
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prop_Utils_select_undefd :: [Int]            -- ^ List of False values
511 22fac87d Guido Trotter
                         -> NonEmptyList Int -- ^ List of True values
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                         -> Gen Prop         -- ^ Test result
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prop_Utils_select_undefd lst1 (NonEmpty lst2) =
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  Utils.select undefined (flist ++ tlist) ==? head lst2
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    where flist = zip (repeat False) lst1
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          tlist = zip (repeat True)  lst2
517 22fac87d Guido Trotter
518 22fac87d Guido Trotter
-- | Test basic select functionality with undefined list values
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prop_Utils_select_undefv :: [Int]            -- ^ List of False values
520 22fac87d Guido Trotter
                         -> NonEmptyList Int -- ^ List of True values
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                         -> Gen Prop         -- ^ Test result
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prop_Utils_select_undefv lst1 (NonEmpty lst2) =
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  Utils.select undefined cndlist ==? head lst2
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    where flist = zip (repeat False) lst1
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          tlist = zip (repeat True)  lst2
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          cndlist = flist ++ tlist ++ [undefined]
527 bfe6c954 Guido Trotter
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prop_Utils_parseUnit (NonNegative n) =
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  Utils.parseUnit (show n) == Types.Ok n &&
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  Utils.parseUnit (show n ++ "m") == Types.Ok n &&
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  (case Utils.parseUnit (show n ++ "M") of
532 d5dfae0a Iustin Pop
     Types.Ok m -> if n > 0
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                     then m < n  -- for positive values, X MB is < than X MiB
534 d5dfae0a Iustin Pop
                     else m == 0 -- but for 0, 0 MB == 0 MiB
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     Types.Bad _ -> False) &&
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  Utils.parseUnit (show n ++ "g") == Types.Ok (n*1024) &&
537 d5dfae0a Iustin Pop
  Utils.parseUnit (show n ++ "t") == Types.Ok (n*1048576) &&
538 d5dfae0a Iustin Pop
  Types.isBad (Utils.parseUnit (show n ++ "x")::Types.Result Int)
539 1b0a6356 Iustin Pop
    where _types = n::Int
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-- | Test list for the Utils module.
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testSuite "Utils"
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            [ 'prop_Utils_commaJoinSplit
544 d5dfae0a Iustin Pop
            , 'prop_Utils_commaSplitJoin
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            , 'prop_Utils_fromObjWithDefault
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            , 'prop_Utils_if'if
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            , 'prop_Utils_select
548 d5dfae0a Iustin Pop
            , 'prop_Utils_select_undefd
549 d5dfae0a Iustin Pop
            , 'prop_Utils_select_undefv
550 d5dfae0a Iustin Pop
            , 'prop_Utils_parseUnit
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            ]
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-- ** PeerMap tests
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-- | Make sure add is idempotent.
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prop_PeerMap_addIdempotent pmap key em =
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  fn puniq ==? fn (fn puniq)
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    where _types = (pmap::PeerMap.PeerMap,
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                    key::PeerMap.Key, em::PeerMap.Elem)
560 fbb95f28 Iustin Pop
          fn = PeerMap.add key em
561 7bc82927 Iustin Pop
          puniq = PeerMap.accumArray const pmap
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-- | Make sure remove is idempotent.
564 15f4c8ca Iustin Pop
prop_PeerMap_removeIdempotent pmap key =
565 d5dfae0a Iustin Pop
  fn puniq ==? fn (fn puniq)
566 7bc82927 Iustin Pop
    where _types = (pmap::PeerMap.PeerMap, key::PeerMap.Key)
567 7bc82927 Iustin Pop
          fn = PeerMap.remove key
568 15f4c8ca Iustin Pop
          puniq = PeerMap.accumArray const pmap
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570 525bfb36 Iustin Pop
-- | Make sure a missing item returns 0.
571 15f4c8ca Iustin Pop
prop_PeerMap_findMissing pmap key =
572 d5dfae0a Iustin Pop
  PeerMap.find key (PeerMap.remove key puniq) ==? 0
573 7bc82927 Iustin Pop
    where _types = (pmap::PeerMap.PeerMap, key::PeerMap.Key)
574 15f4c8ca Iustin Pop
          puniq = PeerMap.accumArray const pmap
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576 525bfb36 Iustin Pop
-- | Make sure an added item is found.
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prop_PeerMap_addFind pmap key em =
578 d5dfae0a Iustin Pop
  PeerMap.find key (PeerMap.add key em puniq) ==? em
579 7bc82927 Iustin Pop
    where _types = (pmap::PeerMap.PeerMap,
580 fbb95f28 Iustin Pop
                    key::PeerMap.Key, em::PeerMap.Elem)
581 7bc82927 Iustin Pop
          puniq = PeerMap.accumArray const pmap
582 15f4c8ca Iustin Pop
583 525bfb36 Iustin Pop
-- | Manual check that maxElem returns the maximum indeed, or 0 for null.
584 15f4c8ca Iustin Pop
prop_PeerMap_maxElem pmap =
585 d5dfae0a Iustin Pop
  PeerMap.maxElem puniq ==? if null puniq then 0
586 72bb6b4e Iustin Pop
                              else (maximum . snd . unzip) puniq
587 7bc82927 Iustin Pop
    where _types = pmap::PeerMap.PeerMap
588 15f4c8ca Iustin Pop
          puniq = PeerMap.accumArray const pmap
589 15f4c8ca Iustin Pop
590 525bfb36 Iustin Pop
-- | List of tests for the PeerMap module.
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testSuite "PeerMap"
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            [ 'prop_PeerMap_addIdempotent
593 d5dfae0a Iustin Pop
            , 'prop_PeerMap_removeIdempotent
594 d5dfae0a Iustin Pop
            , 'prop_PeerMap_maxElem
595 d5dfae0a Iustin Pop
            , 'prop_PeerMap_addFind
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            , 'prop_PeerMap_findMissing
597 d5dfae0a Iustin Pop
            ]
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-- ** Container tests
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-- we silence the following due to hlint bug fixed in later versions
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{-# ANN prop_Container_addTwo "HLint: ignore Avoid lambda" #-}
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prop_Container_addTwo cdata i1 i2 =
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  fn i1 i2 cont == fn i2 i1 cont &&
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  fn i1 i2 cont == fn i1 i2 (fn i1 i2 cont)
606 095d7ac0 Iustin Pop
    where _types = (cdata::[Int],
607 095d7ac0 Iustin Pop
                    i1::Int, i2::Int)
608 095d7ac0 Iustin Pop
          cont = foldl (\c x -> Container.add x x c) Container.empty cdata
609 095d7ac0 Iustin Pop
          fn x1 x2 = Container.addTwo x1 x1 x2 x2
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prop_Container_nameOf node =
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  let nl = makeSmallCluster node 1
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      fnode = head (Container.elems nl)
614 72bb6b4e Iustin Pop
  in Container.nameOf nl (Node.idx fnode) ==? Node.name fnode
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616 525bfb36 Iustin Pop
-- | We test that in a cluster, given a random node, we can find it by
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-- its name and alias, as long as all names and aliases are unique,
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-- and that we fail to find a non-existing name.
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prop_Container_findByName node =
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  forAll (choose (1, 20)) $ \ cnt ->
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  forAll (choose (0, cnt - 1)) $ \ fidx ->
622 a2a0bcd8 Iustin Pop
  forAll (genUniquesList (cnt * 2)) $ \ allnames ->
623 a2a0bcd8 Iustin Pop
  forAll (arbitrary `suchThat` (`notElem` allnames)) $ \ othername ->
624 a2a0bcd8 Iustin Pop
  let names = zip (take cnt allnames) (drop cnt allnames)
625 a2a0bcd8 Iustin Pop
      nl = makeSmallCluster node cnt
626 5ef78537 Iustin Pop
      nodes = Container.elems nl
627 5ef78537 Iustin Pop
      nodes' = map (\((name, alias), nn) -> (Node.idx nn,
628 5ef78537 Iustin Pop
                                             nn { Node.name = name,
629 5ef78537 Iustin Pop
                                                  Node.alias = alias }))
630 5ef78537 Iustin Pop
               $ zip names nodes
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      nl' = Container.fromList nodes'
632 5ef78537 Iustin Pop
      target = snd (nodes' !! fidx)
633 5ef78537 Iustin Pop
  in Container.findByName nl' (Node.name target) == Just target &&
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     Container.findByName nl' (Node.alias target) == Just target &&
635 3603605a Iustin Pop
     isNothing (Container.findByName nl' othername)
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637 23fe06c2 Iustin Pop
testSuite "Container"
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            [ 'prop_Container_addTwo
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            , 'prop_Container_nameOf
640 d5dfae0a Iustin Pop
            , 'prop_Container_findByName
641 d5dfae0a Iustin Pop
            ]
642 095d7ac0 Iustin Pop
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-- ** Instance tests
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645 7bc82927 Iustin Pop
-- Simple instance tests, we only have setter/getters
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prop_Instance_creat inst =
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  Instance.name inst ==? Instance.alias inst
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650 7bc82927 Iustin Pop
prop_Instance_setIdx inst idx =
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  Instance.idx (Instance.setIdx inst idx) ==? idx
652 7bc82927 Iustin Pop
    where _types = (inst::Instance.Instance, idx::Types.Idx)
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654 7bc82927 Iustin Pop
prop_Instance_setName inst name =
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  Instance.name newinst == name &&
656 d5dfae0a Iustin Pop
  Instance.alias newinst == name
657 39d11971 Iustin Pop
    where _types = (inst::Instance.Instance, name::String)
658 39d11971 Iustin Pop
          newinst = Instance.setName inst name
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660 39d11971 Iustin Pop
prop_Instance_setAlias inst name =
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  Instance.name newinst == Instance.name inst &&
662 d5dfae0a Iustin Pop
  Instance.alias newinst == name
663 7bc82927 Iustin Pop
    where _types = (inst::Instance.Instance, name::String)
664 39d11971 Iustin Pop
          newinst = Instance.setAlias inst name
665 7bc82927 Iustin Pop
666 7bc82927 Iustin Pop
prop_Instance_setPri inst pdx =
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  Instance.pNode (Instance.setPri inst pdx) ==? pdx
668 7bc82927 Iustin Pop
    where _types = (inst::Instance.Instance, pdx::Types.Ndx)
669 7bc82927 Iustin Pop
670 7bc82927 Iustin Pop
prop_Instance_setSec inst sdx =
671 d5dfae0a Iustin Pop
  Instance.sNode (Instance.setSec inst sdx) ==? sdx
672 7bc82927 Iustin Pop
    where _types = (inst::Instance.Instance, sdx::Types.Ndx)
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674 7bc82927 Iustin Pop
prop_Instance_setBoth inst pdx sdx =
675 d5dfae0a Iustin Pop
  Instance.pNode si == pdx && Instance.sNode si == sdx
676 7bc82927 Iustin Pop
    where _types = (inst::Instance.Instance, pdx::Types.Ndx, sdx::Types.Ndx)
677 7bc82927 Iustin Pop
          si = Instance.setBoth inst pdx sdx
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prop_Instance_shrinkMG inst =
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  Instance.mem inst >= 2 * Types.unitMem ==>
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    case Instance.shrinkByType inst Types.FailMem of
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      Types.Ok inst' -> Instance.mem inst' == Instance.mem inst - Types.unitMem
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      _ -> False
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685 8fcf251f Iustin Pop
prop_Instance_shrinkMF inst =
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  forAll (choose (0, 2 * Types.unitMem - 1)) $ \mem ->
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    let inst' = inst { Instance.mem = mem}
688 41085bd3 Iustin Pop
    in Types.isBad $ Instance.shrinkByType inst' Types.FailMem
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prop_Instance_shrinkCG inst =
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  Instance.vcpus inst >= 2 * Types.unitCpu ==>
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    case Instance.shrinkByType inst Types.FailCPU of
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      Types.Ok inst' ->
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        Instance.vcpus inst' == Instance.vcpus inst - Types.unitCpu
695 d5dfae0a Iustin Pop
      _ -> False
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697 8fcf251f Iustin Pop
prop_Instance_shrinkCF inst =
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  forAll (choose (0, 2 * Types.unitCpu - 1)) $ \vcpus ->
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    let inst' = inst { Instance.vcpus = vcpus }
700 41085bd3 Iustin Pop
    in Types.isBad $ Instance.shrinkByType inst' Types.FailCPU
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prop_Instance_shrinkDG inst =
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  Instance.dsk inst >= 2 * Types.unitDsk ==>
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    case Instance.shrinkByType inst Types.FailDisk of
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      Types.Ok inst' ->
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        Instance.dsk inst' == Instance.dsk inst - Types.unitDsk
707 d5dfae0a Iustin Pop
      _ -> False
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709 8fcf251f Iustin Pop
prop_Instance_shrinkDF inst =
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  forAll (choose (0, 2 * Types.unitDsk - 1)) $ \dsk ->
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    let inst' = inst { Instance.dsk = dsk }
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    in Types.isBad $ Instance.shrinkByType inst' Types.FailDisk
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prop_Instance_setMovable inst m =
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  Instance.movable inst' ==? m
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    where inst' = Instance.setMovable inst m
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testSuite "Instance"
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            [ 'prop_Instance_creat
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            , 'prop_Instance_setIdx
721 d5dfae0a Iustin Pop
            , 'prop_Instance_setName
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            , 'prop_Instance_setAlias
723 d5dfae0a Iustin Pop
            , 'prop_Instance_setPri
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            , 'prop_Instance_setSec
725 d5dfae0a Iustin Pop
            , 'prop_Instance_setBoth
726 d5dfae0a Iustin Pop
            , 'prop_Instance_shrinkMG
727 d5dfae0a Iustin Pop
            , 'prop_Instance_shrinkMF
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            , 'prop_Instance_shrinkCG
729 d5dfae0a Iustin Pop
            , 'prop_Instance_shrinkCF
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            , 'prop_Instance_shrinkDG
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            , 'prop_Instance_shrinkDF
732 d5dfae0a Iustin Pop
            , 'prop_Instance_setMovable
733 d5dfae0a Iustin Pop
            ]
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-- ** Backends
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737 e1dde6ad Iustin Pop
-- *** Text backend tests
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-- Instance text loader tests
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741 a1cd7c1e Iustin Pop
prop_Text_Load_Instance name mem dsk vcpus status
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                        (NonEmpty pnode) snode
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                        (NonNegative pdx) (NonNegative sdx) autobal dt =
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  pnode /= snode && pdx /= sdx ==>
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  let vcpus_s = show vcpus
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      dsk_s = show dsk
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      mem_s = show mem
748 d5dfae0a Iustin Pop
      status_s = Types.instanceStatusToRaw status
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      ndx = if null snode
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              then [(pnode, pdx)]
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              else [(pnode, pdx), (snode, sdx)]
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      nl = Data.Map.fromList ndx
753 d5dfae0a Iustin Pop
      tags = ""
754 d5dfae0a Iustin Pop
      sbal = if autobal then "Y" else "N"
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      sdt = Types.diskTemplateToRaw dt
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      inst = Text.loadInst nl
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             [name, mem_s, dsk_s, vcpus_s, status_s,
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              sbal, pnode, snode, sdt, tags]
759 d5dfae0a Iustin Pop
      fail1 = Text.loadInst nl
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              [name, mem_s, dsk_s, vcpus_s, status_s,
761 d5dfae0a Iustin Pop
               sbal, pnode, pnode, tags]
762 d5dfae0a Iustin Pop
      _types = ( name::String, mem::Int, dsk::Int
763 d5dfae0a Iustin Pop
               , vcpus::Int, status::Types.InstanceStatus
764 d5dfae0a Iustin Pop
               , snode::String
765 d5dfae0a Iustin Pop
               , autobal::Bool)
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  in case inst of
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       Types.Bad msg -> failTest $ "Failed to load instance: " ++ msg
768 d5dfae0a Iustin Pop
       Types.Ok (_, i) -> printTestCase "Mismatch in some field while\
769 d5dfae0a Iustin Pop
                                        \ loading the instance" $
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               Instance.name i == name &&
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               Instance.vcpus i == vcpus &&
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               Instance.mem i == mem &&
773 d5dfae0a Iustin Pop
               Instance.pNode i == pdx &&
774 d5dfae0a Iustin Pop
               Instance.sNode i == (if null snode
775 d5dfae0a Iustin Pop
                                      then Node.noSecondary
776 d5dfae0a Iustin Pop
                                      else sdx) &&
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               Instance.autoBalance i == autobal &&
778 d5dfae0a Iustin Pop
               Types.isBad fail1
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780 39d11971 Iustin Pop
prop_Text_Load_InstanceFail ktn fields =
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  length fields /= 10 ==>
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    case Text.loadInst nl fields of
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      Types.Ok _ -> failTest "Managed to load instance from invalid data"
784 6429e8d8 Iustin Pop
      Types.Bad msg -> printTestCase ("Unrecognised error message: " ++ msg) $
785 6429e8d8 Iustin Pop
                       "Invalid/incomplete instance data: '" `isPrefixOf` msg
786 99b63608 Iustin Pop
    where nl = Data.Map.fromList ktn
787 39d11971 Iustin Pop
788 39d11971 Iustin Pop
prop_Text_Load_Node name tm nm fm td fd tc fo =
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  let conv v = if v < 0
790 d5dfae0a Iustin Pop
                 then "?"
791 d5dfae0a Iustin Pop
                 else show v
792 d5dfae0a Iustin Pop
      tm_s = conv tm
793 d5dfae0a Iustin Pop
      nm_s = conv nm
794 d5dfae0a Iustin Pop
      fm_s = conv fm
795 d5dfae0a Iustin Pop
      td_s = conv td
796 d5dfae0a Iustin Pop
      fd_s = conv fd
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      tc_s = conv tc
798 d5dfae0a Iustin Pop
      fo_s = if fo
799 39d11971 Iustin Pop
               then "Y"
800 39d11971 Iustin Pop
               else "N"
801 d5dfae0a Iustin Pop
      any_broken = any (< 0) [tm, nm, fm, td, fd, tc]
802 d5dfae0a Iustin Pop
      gid = Group.uuid defGroup
803 d5dfae0a Iustin Pop
  in case Text.loadNode defGroupAssoc
804 d5dfae0a Iustin Pop
       [name, tm_s, nm_s, fm_s, td_s, fd_s, tc_s, fo_s, gid] of
805 d5dfae0a Iustin Pop
       Nothing -> False
806 d5dfae0a Iustin Pop
       Just (name', node) ->
807 d5dfae0a Iustin Pop
         if fo || any_broken
808 d5dfae0a Iustin Pop
           then Node.offline node
809 d5dfae0a Iustin Pop
           else Node.name node == name' && name' == name &&
810 d5dfae0a Iustin Pop
                Node.alias node == name &&
811 d5dfae0a Iustin Pop
                Node.tMem node == fromIntegral tm &&
812 d5dfae0a Iustin Pop
                Node.nMem node == nm &&
813 d5dfae0a Iustin Pop
                Node.fMem node == fm &&
814 d5dfae0a Iustin Pop
                Node.tDsk node == fromIntegral td &&
815 d5dfae0a Iustin Pop
                Node.fDsk node == fd &&
816 d5dfae0a Iustin Pop
                Node.tCpu node == fromIntegral tc
817 39d11971 Iustin Pop
818 39d11971 Iustin Pop
prop_Text_Load_NodeFail fields =
819 d5dfae0a Iustin Pop
  length fields /= 8 ==> isNothing $ Text.loadNode Data.Map.empty fields
820 1ae7a904 Iustin Pop
821 50811e2c Iustin Pop
prop_Text_NodeLSIdempotent node =
822 d5dfae0a Iustin Pop
  (Text.loadNode defGroupAssoc.
823 487e1962 Iustin Pop
       Utils.sepSplit '|' . Text.serializeNode defGroupList) n ==?
824 d5dfae0a Iustin Pop
  Just (Node.name n, n)
825 50811e2c Iustin Pop
    -- override failN1 to what loadNode returns by default
826 487e1962 Iustin Pop
    where n = Node.setPolicy Types.defIPolicy $
827 487e1962 Iustin Pop
              node { Node.failN1 = True, Node.offline = False }
828 50811e2c Iustin Pop
829 bcd17bf0 Iustin Pop
prop_Text_ISpecIdempotent ispec =
830 bcd17bf0 Iustin Pop
  case Text.loadISpec "dummy" . Utils.sepSplit ',' .
831 bcd17bf0 Iustin Pop
       Text.serializeISpec $ ispec of
832 96bc2003 Iustin Pop
    Types.Bad msg -> failTest $ "Failed to load ispec: " ++ msg
833 bcd17bf0 Iustin Pop
    Types.Ok ispec' -> ispec ==? ispec'
834 bcd17bf0 Iustin Pop
835 bcd17bf0 Iustin Pop
prop_Text_IPolicyIdempotent ipol =
836 bcd17bf0 Iustin Pop
  case Text.loadIPolicy . Utils.sepSplit '|' $
837 bcd17bf0 Iustin Pop
       Text.serializeIPolicy owner ipol of
838 96bc2003 Iustin Pop
    Types.Bad msg -> failTest $ "Failed to load ispec: " ++ msg
839 bcd17bf0 Iustin Pop
    Types.Ok res -> (owner, ipol) ==? res
840 bcd17bf0 Iustin Pop
  where owner = "dummy"
841 bcd17bf0 Iustin Pop
842 dce9bbb3 Iustin Pop
-- | This property, while being in the text tests, does more than just
843 dce9bbb3 Iustin Pop
-- test end-to-end the serialisation and loading back workflow; it
844 dce9bbb3 Iustin Pop
-- also tests the Loader.mergeData and the actuall
845 dce9bbb3 Iustin Pop
-- Cluster.iterateAlloc (for well-behaving w.r.t. instance
846 dce9bbb3 Iustin Pop
-- allocations, not for the business logic). As such, it's a quite
847 dce9bbb3 Iustin Pop
-- complex and slow test, and that's the reason we restrict it to
848 dce9bbb3 Iustin Pop
-- small cluster sizes.
849 dce9bbb3 Iustin Pop
prop_Text_CreateSerialise =
850 dce9bbb3 Iustin Pop
  forAll genTags $ \ctags ->
851 dce9bbb3 Iustin Pop
  forAll (choose (1, 2)) $ \reqnodes ->
852 dce9bbb3 Iustin Pop
  forAll (choose (1, 20)) $ \maxiter ->
853 dce9bbb3 Iustin Pop
  forAll (choose (2, 10)) $ \count ->
854 dce9bbb3 Iustin Pop
  forAll genOnlineNode $ \node ->
855 59ed268d Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
856 59ed268d Iustin Pop
  let inst' = Instance.setMovable inst (reqnodes == 2)
857 dce9bbb3 Iustin Pop
      nl = makeSmallCluster node count
858 dce9bbb3 Iustin Pop
  in case Cluster.genAllocNodes defGroupList nl reqnodes True >>= \allocn ->
859 dce9bbb3 Iustin Pop
     Cluster.iterateAlloc nl Container.empty (Just maxiter) inst' allocn [] []
860 dce9bbb3 Iustin Pop
     of
861 96bc2003 Iustin Pop
       Types.Bad msg -> failTest $ "Failed to allocate: " ++ msg
862 dce9bbb3 Iustin Pop
       Types.Ok (_, _, _, [], _) -> printTestCase
863 dce9bbb3 Iustin Pop
                                    "Failed to allocate: no allocations" False
864 dce9bbb3 Iustin Pop
       Types.Ok (_, nl', il', _, _) ->
865 dce9bbb3 Iustin Pop
         let cdata = Loader.ClusterData defGroupList nl' il' ctags
866 dce9bbb3 Iustin Pop
                     Types.defIPolicy
867 dce9bbb3 Iustin Pop
             saved = Text.serializeCluster cdata
868 dce9bbb3 Iustin Pop
         in case Text.parseData saved >>= Loader.mergeData [] [] [] [] of
869 96bc2003 Iustin Pop
              Types.Bad msg -> failTest $ "Failed to load/merge: " ++ msg
870 dce9bbb3 Iustin Pop
              Types.Ok (Loader.ClusterData gl2 nl2 il2 ctags2 cpol2) ->
871 dce9bbb3 Iustin Pop
                ctags ==? ctags2 .&&.
872 dce9bbb3 Iustin Pop
                Types.defIPolicy ==? cpol2 .&&.
873 dce9bbb3 Iustin Pop
                il' ==? il2 .&&.
874 b37f4a76 Iustin Pop
                defGroupList ==? gl2 .&&.
875 b37f4a76 Iustin Pop
                nl' ==? nl2
876 dce9bbb3 Iustin Pop
877 23fe06c2 Iustin Pop
testSuite "Text"
878 d5dfae0a Iustin Pop
            [ 'prop_Text_Load_Instance
879 d5dfae0a Iustin Pop
            , 'prop_Text_Load_InstanceFail
880 d5dfae0a Iustin Pop
            , 'prop_Text_Load_Node
881 d5dfae0a Iustin Pop
            , 'prop_Text_Load_NodeFail
882 d5dfae0a Iustin Pop
            , 'prop_Text_NodeLSIdempotent
883 bcd17bf0 Iustin Pop
            , 'prop_Text_ISpecIdempotent
884 bcd17bf0 Iustin Pop
            , 'prop_Text_IPolicyIdempotent
885 dce9bbb3 Iustin Pop
            , 'prop_Text_CreateSerialise
886 d5dfae0a Iustin Pop
            ]
887 7dd5ee6c Iustin Pop
888 e1dde6ad Iustin Pop
-- *** Simu backend
889 e1dde6ad Iustin Pop
890 e1dde6ad Iustin Pop
-- | Generates a tuple of specs for simulation.
891 e1dde6ad Iustin Pop
genSimuSpec :: Gen (String, Int, Int, Int, Int)
892 e1dde6ad Iustin Pop
genSimuSpec = do
893 e1dde6ad Iustin Pop
  pol <- elements [C.allocPolicyPreferred,
894 e1dde6ad Iustin Pop
                   C.allocPolicyLastResort, C.allocPolicyUnallocable,
895 e1dde6ad Iustin Pop
                  "p", "a", "u"]
896 e1dde6ad Iustin Pop
 -- should be reasonable (nodes/group), bigger values only complicate
897 e1dde6ad Iustin Pop
 -- the display of failed tests, and we don't care (in this particular
898 e1dde6ad Iustin Pop
 -- test) about big node groups
899 e1dde6ad Iustin Pop
  nodes <- choose (0, 20)
900 e1dde6ad Iustin Pop
  dsk <- choose (0, maxDsk)
901 e1dde6ad Iustin Pop
  mem <- choose (0, maxMem)
902 e1dde6ad Iustin Pop
  cpu <- choose (0, maxCpu)
903 e1dde6ad Iustin Pop
  return (pol, nodes, dsk, mem, cpu)
904 e1dde6ad Iustin Pop
905 e1dde6ad Iustin Pop
-- | Checks that given a set of corrects specs, we can load them
906 e1dde6ad Iustin Pop
-- successfully, and that at high-level the values look right.
907 e1dde6ad Iustin Pop
prop_SimuLoad =
908 e1dde6ad Iustin Pop
  forAll (choose (0, 10)) $ \ngroups ->
909 e1dde6ad Iustin Pop
  forAll (replicateM ngroups genSimuSpec) $ \specs ->
910 e1dde6ad Iustin Pop
  let strspecs = map (\(p, n, d, m, c) -> printf "%s,%d,%d,%d,%d"
911 e1dde6ad Iustin Pop
                                          p n d m c::String) specs
912 e1dde6ad Iustin Pop
      totnodes = sum $ map (\(_, n, _, _, _) -> n) specs
913 e1dde6ad Iustin Pop
      mdc_in = concatMap (\(_, n, d, m, c) ->
914 e1dde6ad Iustin Pop
                            replicate n (fromIntegral m, fromIntegral d,
915 e1dde6ad Iustin Pop
                                         fromIntegral c,
916 e1dde6ad Iustin Pop
                                         fromIntegral m, fromIntegral d)) specs
917 e1dde6ad Iustin Pop
  in case Simu.parseData strspecs of
918 e1dde6ad Iustin Pop
       Types.Bad msg -> failTest $ "Failed to load specs: " ++ msg
919 e1dde6ad Iustin Pop
       Types.Ok (Loader.ClusterData gl nl il tags ipol) ->
920 e1dde6ad Iustin Pop
         let nodes = map snd $ IntMap.toAscList nl
921 e1dde6ad Iustin Pop
             nidx = map Node.idx nodes
922 e1dde6ad Iustin Pop
             mdc_out = map (\n -> (Node.tMem n, Node.tDsk n, Node.tCpu n,
923 e1dde6ad Iustin Pop
                                   Node.fMem n, Node.fDsk n)) nodes
924 e1dde6ad Iustin Pop
         in
925 e1dde6ad Iustin Pop
         Container.size gl ==? ngroups .&&.
926 e1dde6ad Iustin Pop
         Container.size nl ==? totnodes .&&.
927 e1dde6ad Iustin Pop
         Container.size il ==? 0 .&&.
928 e1dde6ad Iustin Pop
         length tags ==? 0 .&&.
929 e1dde6ad Iustin Pop
         ipol ==? Types.defIPolicy .&&.
930 e1dde6ad Iustin Pop
         nidx ==? [1..totnodes] .&&.
931 e1dde6ad Iustin Pop
         mdc_in ==? mdc_out .&&.
932 e1dde6ad Iustin Pop
         map Group.iPolicy (Container.elems gl) ==?
933 e1dde6ad Iustin Pop
             replicate ngroups Types.defIPolicy
934 e1dde6ad Iustin Pop
935 e1dde6ad Iustin Pop
testSuite "Simu"
936 e1dde6ad Iustin Pop
            [ 'prop_SimuLoad
937 e1dde6ad Iustin Pop
            ]
938 e1dde6ad Iustin Pop
939 525bfb36 Iustin Pop
-- ** Node tests
940 7dd5ee6c Iustin Pop
941 82ea2874 Iustin Pop
prop_Node_setAlias node name =
942 d5dfae0a Iustin Pop
  Node.name newnode == Node.name node &&
943 d5dfae0a Iustin Pop
  Node.alias newnode == name
944 82ea2874 Iustin Pop
    where _types = (node::Node.Node, name::String)
945 82ea2874 Iustin Pop
          newnode = Node.setAlias node name
946 82ea2874 Iustin Pop
947 82ea2874 Iustin Pop
prop_Node_setOffline node status =
948 d5dfae0a Iustin Pop
  Node.offline newnode ==? status
949 82ea2874 Iustin Pop
    where newnode = Node.setOffline node status
950 82ea2874 Iustin Pop
951 82ea2874 Iustin Pop
prop_Node_setXmem node xm =
952 d5dfae0a Iustin Pop
  Node.xMem newnode ==? xm
953 82ea2874 Iustin Pop
    where newnode = Node.setXmem node xm
954 82ea2874 Iustin Pop
955 82ea2874 Iustin Pop
prop_Node_setMcpu node mc =
956 487e1962 Iustin Pop
  Types.iPolicyVcpuRatio (Node.iPolicy newnode) ==? mc
957 82ea2874 Iustin Pop
    where newnode = Node.setMcpu node mc
958 82ea2874 Iustin Pop
959 525bfb36 Iustin Pop
-- | Check that an instance add with too high memory or disk will be
960 525bfb36 Iustin Pop
-- rejected.
961 d5dfae0a Iustin Pop
prop_Node_addPriFM node inst =
962 d5dfae0a Iustin Pop
  Instance.mem inst >= Node.fMem node && not (Node.failN1 node) &&
963 7959cbb9 Iustin Pop
  not (Instance.isOffline inst) ==>
964 d5dfae0a Iustin Pop
  case Node.addPri node inst'' of
965 d5dfae0a Iustin Pop
    Types.OpFail Types.FailMem -> True
966 d5dfae0a Iustin Pop
    _ -> False
967 d5dfae0a Iustin Pop
  where _types = (node::Node.Node, inst::Instance.Instance)
968 d5dfae0a Iustin Pop
        inst' = setInstanceSmallerThanNode node inst
969 d5dfae0a Iustin Pop
        inst'' = inst' { Instance.mem = Instance.mem inst }
970 d5dfae0a Iustin Pop
971 d5dfae0a Iustin Pop
prop_Node_addPriFD node inst =
972 d5dfae0a Iustin Pop
  Instance.dsk inst >= Node.fDsk node && not (Node.failN1 node) ==>
973 d5dfae0a Iustin Pop
    case Node.addPri node inst'' of
974 d5dfae0a Iustin Pop
      Types.OpFail Types.FailDisk -> True
975 d5dfae0a Iustin Pop
      _ -> False
976 8fcf251f Iustin Pop
    where _types = (node::Node.Node, inst::Instance.Instance)
977 8fcf251f Iustin Pop
          inst' = setInstanceSmallerThanNode node inst
978 8fcf251f Iustin Pop
          inst'' = inst' { Instance.dsk = Instance.dsk inst }
979 8fcf251f Iustin Pop
980 3c1e4af0 Iustin Pop
prop_Node_addPriFC =
981 3c1e4af0 Iustin Pop
  forAll (choose (1, maxCpu)) $ \extra ->
982 746b7aa6 Iustin Pop
  forAll genOnlineNode $ \node ->
983 7959cbb9 Iustin Pop
  forAll (arbitrary `suchThat` Instance.notOffline) $ \inst ->
984 746b7aa6 Iustin Pop
  let inst' = setInstanceSmallerThanNode node inst
985 746b7aa6 Iustin Pop
      inst'' = inst' { Instance.vcpus = Node.availCpu node + extra }
986 746b7aa6 Iustin Pop
  in case Node.addPri node inst'' of
987 746b7aa6 Iustin Pop
       Types.OpFail Types.FailCPU -> property True
988 746b7aa6 Iustin Pop
       v -> failTest $ "Expected OpFail FailCPU, but got " ++ show v
989 7bc82927 Iustin Pop
990 525bfb36 Iustin Pop
-- | Check that an instance add with too high memory or disk will be
991 525bfb36 Iustin Pop
-- rejected.
992 15f4c8ca Iustin Pop
prop_Node_addSec node inst pdx =
993 d5dfae0a Iustin Pop
  ((Instance.mem inst >= (Node.fMem node - Node.rMem node) &&
994 7959cbb9 Iustin Pop
    not (Instance.isOffline inst)) ||
995 d5dfae0a Iustin Pop
   Instance.dsk inst >= Node.fDsk node) &&
996 d5dfae0a Iustin Pop
  not (Node.failN1 node) ==>
997 d5dfae0a Iustin Pop
      isFailure (Node.addSec node inst pdx)
998 15f4c8ca Iustin Pop
        where _types = (node::Node.Node, inst::Instance.Instance, pdx::Int)
999 7dd5ee6c Iustin Pop
1000 45c4d54d Iustin Pop
-- | Check that an offline instance with reasonable disk size but
1001 45c4d54d Iustin Pop
-- extra mem/cpu can always be added.
1002 45c4d54d Iustin Pop
prop_Node_addOffline (NonNegative extra_mem) (NonNegative extra_cpu) pdx =
1003 a2a0bcd8 Iustin Pop
  forAll genOnlineNode $ \node ->
1004 45c4d54d Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1005 45c4d54d Iustin Pop
  let inst' = inst { Instance.runSt = Types.AdminOffline
1006 45c4d54d Iustin Pop
                   , Instance.mem = Node.availMem node + extra_mem
1007 45c4d54d Iustin Pop
                   , Instance.vcpus = Node.availCpu node + extra_cpu }
1008 45c4d54d Iustin Pop
  in case (Node.addPri node inst', Node.addSec node inst' pdx) of
1009 45c4d54d Iustin Pop
       (Types.OpGood _, Types.OpGood _) -> property True
1010 45c4d54d Iustin Pop
       v -> failTest $ "Expected OpGood/OpGood, but got: " ++ show v
1011 61bbbed7 Agata Murawska
1012 525bfb36 Iustin Pop
-- | Checks for memory reservation changes.
1013 752635d3 Iustin Pop
prop_Node_rMem inst =
1014 7959cbb9 Iustin Pop
  not (Instance.isOffline inst) ==>
1015 d5dfae0a Iustin Pop
  forAll (arbitrary `suchThat` ((> Types.unitMem) . Node.fMem)) $ \node ->
1016 d5dfae0a Iustin Pop
  -- ab = auto_balance, nb = non-auto_balance
1017 d5dfae0a Iustin Pop
  -- we use -1 as the primary node of the instance
1018 d5dfae0a Iustin Pop
  let inst' = inst { Instance.pNode = -1, Instance.autoBalance = True }
1019 d5dfae0a Iustin Pop
      inst_ab = setInstanceSmallerThanNode node inst'
1020 d5dfae0a Iustin Pop
      inst_nb = inst_ab { Instance.autoBalance = False }
1021 d5dfae0a Iustin Pop
      -- now we have the two instances, identical except the
1022 d5dfae0a Iustin Pop
      -- autoBalance attribute
1023 d5dfae0a Iustin Pop
      orig_rmem = Node.rMem node
1024 d5dfae0a Iustin Pop
      inst_idx = Instance.idx inst_ab
1025 d5dfae0a Iustin Pop
      node_add_ab = Node.addSec node inst_ab (-1)
1026 d5dfae0a Iustin Pop
      node_add_nb = Node.addSec node inst_nb (-1)
1027 d5dfae0a Iustin Pop
      node_del_ab = liftM (`Node.removeSec` inst_ab) node_add_ab
1028 d5dfae0a Iustin Pop
      node_del_nb = liftM (`Node.removeSec` inst_nb) node_add_nb
1029 d5dfae0a Iustin Pop
  in case (node_add_ab, node_add_nb, node_del_ab, node_del_nb) of
1030 d5dfae0a Iustin Pop
       (Types.OpGood a_ab, Types.OpGood a_nb,
1031 d5dfae0a Iustin Pop
        Types.OpGood d_ab, Types.OpGood d_nb) ->
1032 d5dfae0a Iustin Pop
         printTestCase "Consistency checks failed" $
1033 d5dfae0a Iustin Pop
           Node.rMem a_ab >  orig_rmem &&
1034 d5dfae0a Iustin Pop
           Node.rMem a_ab - orig_rmem == Instance.mem inst_ab &&
1035 d5dfae0a Iustin Pop
           Node.rMem a_nb == orig_rmem &&
1036 d5dfae0a Iustin Pop
           Node.rMem d_ab == orig_rmem &&
1037 d5dfae0a Iustin Pop
           Node.rMem d_nb == orig_rmem &&
1038 d5dfae0a Iustin Pop
           -- this is not related to rMem, but as good a place to
1039 d5dfae0a Iustin Pop
           -- test as any
1040 d5dfae0a Iustin Pop
           inst_idx `elem` Node.sList a_ab &&
1041 3603605a Iustin Pop
           inst_idx `notElem` Node.sList d_ab
1042 96bc2003 Iustin Pop
       x -> failTest $ "Failed to add/remove instances: " ++ show x
1043 9cbc1edb Iustin Pop
1044 525bfb36 Iustin Pop
-- | Check mdsk setting.
1045 8fcf251f Iustin Pop
prop_Node_setMdsk node mx =
1046 d5dfae0a Iustin Pop
  Node.loDsk node' >= 0 &&
1047 d5dfae0a Iustin Pop
  fromIntegral (Node.loDsk node') <= Node.tDsk node &&
1048 d5dfae0a Iustin Pop
  Node.availDisk node' >= 0 &&
1049 d5dfae0a Iustin Pop
  Node.availDisk node' <= Node.fDsk node' &&
1050 d5dfae0a Iustin Pop
  fromIntegral (Node.availDisk node') <= Node.tDsk node' &&
1051 d5dfae0a Iustin Pop
  Node.mDsk node' == mx'
1052 8fcf251f Iustin Pop
    where _types = (node::Node.Node, mx::SmallRatio)
1053 8fcf251f Iustin Pop
          node' = Node.setMdsk node mx'
1054 8fcf251f Iustin Pop
          SmallRatio mx' = mx
1055 8fcf251f Iustin Pop
1056 8fcf251f Iustin Pop
-- Check tag maps
1057 15e3d31c Iustin Pop
prop_Node_tagMaps_idempotent =
1058 15e3d31c Iustin Pop
  forAll genTags $ \tags ->
1059 d5dfae0a Iustin Pop
  Node.delTags (Node.addTags m tags) tags ==? m
1060 4a007641 Iustin Pop
    where m = Data.Map.empty
1061 8fcf251f Iustin Pop
1062 15e3d31c Iustin Pop
prop_Node_tagMaps_reject =
1063 15e3d31c Iustin Pop
  forAll (genTags `suchThat` (not . null)) $ \tags ->
1064 15e3d31c Iustin Pop
  let m = Node.addTags Data.Map.empty tags
1065 15e3d31c Iustin Pop
  in all (\t -> Node.rejectAddTags m [t]) tags
1066 8fcf251f Iustin Pop
1067 82ea2874 Iustin Pop
prop_Node_showField node =
1068 82ea2874 Iustin Pop
  forAll (elements Node.defaultFields) $ \ field ->
1069 82ea2874 Iustin Pop
  fst (Node.showHeader field) /= Types.unknownField &&
1070 82ea2874 Iustin Pop
  Node.showField node field /= Types.unknownField
1071 82ea2874 Iustin Pop
1072 d8bcd0a8 Iustin Pop
prop_Node_computeGroups nodes =
1073 d8bcd0a8 Iustin Pop
  let ng = Node.computeGroups nodes
1074 d8bcd0a8 Iustin Pop
      onlyuuid = map fst ng
1075 d8bcd0a8 Iustin Pop
  in length nodes == sum (map (length . snd) ng) &&
1076 d8bcd0a8 Iustin Pop
     all (\(guuid, ns) -> all ((== guuid) . Node.group) ns) ng &&
1077 d8bcd0a8 Iustin Pop
     length (nub onlyuuid) == length onlyuuid &&
1078 cc532bdd Iustin Pop
     (null nodes || not (null ng))
1079 d8bcd0a8 Iustin Pop
1080 eae69eee Iustin Pop
-- Check idempotence of add/remove operations
1081 eae69eee Iustin Pop
prop_Node_addPri_idempotent =
1082 eae69eee Iustin Pop
  forAll genOnlineNode $ \node ->
1083 eae69eee Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1084 eae69eee Iustin Pop
  case Node.addPri node inst of
1085 eae69eee Iustin Pop
    Types.OpGood node' -> Node.removePri node' inst ==? node
1086 eae69eee Iustin Pop
    _ -> failTest "Can't add instance"
1087 eae69eee Iustin Pop
1088 eae69eee Iustin Pop
prop_Node_addSec_idempotent =
1089 eae69eee Iustin Pop
  forAll genOnlineNode $ \node ->
1090 eae69eee Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1091 eae69eee Iustin Pop
  let pdx = Node.idx node + 1
1092 eae69eee Iustin Pop
      inst' = Instance.setPri inst pdx
1093 eae69eee Iustin Pop
  in case Node.addSec node inst' pdx of
1094 eae69eee Iustin Pop
       Types.OpGood node' -> Node.removeSec node' inst' ==? node
1095 eae69eee Iustin Pop
       _ -> failTest "Can't add instance"
1096 eae69eee Iustin Pop
1097 23fe06c2 Iustin Pop
testSuite "Node"
1098 d5dfae0a Iustin Pop
            [ 'prop_Node_setAlias
1099 d5dfae0a Iustin Pop
            , 'prop_Node_setOffline
1100 d5dfae0a Iustin Pop
            , 'prop_Node_setMcpu
1101 d5dfae0a Iustin Pop
            , 'prop_Node_setXmem
1102 d5dfae0a Iustin Pop
            , 'prop_Node_addPriFM
1103 d5dfae0a Iustin Pop
            , 'prop_Node_addPriFD
1104 d5dfae0a Iustin Pop
            , 'prop_Node_addPriFC
1105 d5dfae0a Iustin Pop
            , 'prop_Node_addSec
1106 45c4d54d Iustin Pop
            , 'prop_Node_addOffline
1107 d5dfae0a Iustin Pop
            , 'prop_Node_rMem
1108 d5dfae0a Iustin Pop
            , 'prop_Node_setMdsk
1109 d5dfae0a Iustin Pop
            , 'prop_Node_tagMaps_idempotent
1110 d5dfae0a Iustin Pop
            , 'prop_Node_tagMaps_reject
1111 d5dfae0a Iustin Pop
            , 'prop_Node_showField
1112 d5dfae0a Iustin Pop
            , 'prop_Node_computeGroups
1113 eae69eee Iustin Pop
            , 'prop_Node_addPri_idempotent
1114 eae69eee Iustin Pop
            , 'prop_Node_addSec_idempotent
1115 d5dfae0a Iustin Pop
            ]
1116 cf35a869 Iustin Pop
1117 525bfb36 Iustin Pop
-- ** Cluster tests
1118 cf35a869 Iustin Pop
1119 525bfb36 Iustin Pop
-- | Check that the cluster score is close to zero for a homogeneous
1120 525bfb36 Iustin Pop
-- cluster.
1121 8e4f6d56 Iustin Pop
prop_Score_Zero node =
1122 d5dfae0a Iustin Pop
  forAll (choose (1, 1024)) $ \count ->
1123 3a3c1eb4 Iustin Pop
    (not (Node.offline node) && not (Node.failN1 node) && (count > 0) &&
1124 2060348b Iustin Pop
     (Node.tDsk node > 0) && (Node.tMem node > 0)) ==>
1125 d5dfae0a Iustin Pop
  let fn = Node.buildPeers node Container.empty
1126 d5dfae0a Iustin Pop
      nlst = replicate count fn
1127 d5dfae0a Iustin Pop
      score = Cluster.compCVNodes nlst
1128 d5dfae0a Iustin Pop
  -- we can't say == 0 here as the floating point errors accumulate;
1129 d5dfae0a Iustin Pop
  -- this should be much lower than the default score in CLI.hs
1130 d5dfae0a Iustin Pop
  in score <= 1e-12
1131 cf35a869 Iustin Pop
1132 525bfb36 Iustin Pop
-- | Check that cluster stats are sane.
1133 d6f9f5bd Iustin Pop
prop_CStats_sane =
1134 d5dfae0a Iustin Pop
  forAll (choose (1, 1024)) $ \count ->
1135 d6f9f5bd Iustin Pop
  forAll genOnlineNode $ \node ->
1136 d5dfae0a Iustin Pop
  let fn = Node.buildPeers node Container.empty
1137 d5dfae0a Iustin Pop
      nlst = zip [1..] $ replicate count fn::[(Types.Ndx, Node.Node)]
1138 d5dfae0a Iustin Pop
      nl = Container.fromList nlst
1139 d5dfae0a Iustin Pop
      cstats = Cluster.totalResources nl
1140 d5dfae0a Iustin Pop
  in Cluster.csAdsk cstats >= 0 &&
1141 d5dfae0a Iustin Pop
     Cluster.csAdsk cstats <= Cluster.csFdsk cstats
1142 8fcf251f Iustin Pop
1143 3fea6959 Iustin Pop
-- | Check that one instance is allocated correctly, without
1144 525bfb36 Iustin Pop
-- rebalances needed.
1145 d6f9f5bd Iustin Pop
prop_ClusterAlloc_sane inst =
1146 d5dfae0a Iustin Pop
  forAll (choose (5, 20)) $ \count ->
1147 d6f9f5bd Iustin Pop
  forAll genOnlineNode $ \node ->
1148 3603605a Iustin Pop
  let (nl, il, inst') = makeSmallEmptyCluster node count inst
1149 d5dfae0a Iustin Pop
  in case Cluster.genAllocNodes defGroupList nl 2 True >>=
1150 d5dfae0a Iustin Pop
     Cluster.tryAlloc nl il inst' of
1151 d5dfae0a Iustin Pop
       Types.Bad _ -> False
1152 d5dfae0a Iustin Pop
       Types.Ok as ->
1153 d5dfae0a Iustin Pop
         case Cluster.asSolution as of
1154 d5dfae0a Iustin Pop
           Nothing -> False
1155 d5dfae0a Iustin Pop
           Just (xnl, xi, _, cv) ->
1156 d5dfae0a Iustin Pop
             let il' = Container.add (Instance.idx xi) xi il
1157 d5dfae0a Iustin Pop
                 tbl = Cluster.Table xnl il' cv []
1158 d5dfae0a Iustin Pop
             in not (canBalance tbl True True False)
1159 3fea6959 Iustin Pop
1160 3fea6959 Iustin Pop
-- | Checks that on a 2-5 node cluster, we can allocate a random
1161 3fea6959 Iustin Pop
-- instance spec via tiered allocation (whatever the original instance
1162 37483aa5 Iustin Pop
-- spec), on either one or two nodes. Furthermore, we test that
1163 37483aa5 Iustin Pop
-- computed allocation statistics are correct.
1164 d6f9f5bd Iustin Pop
prop_ClusterCanTieredAlloc inst =
1165 d5dfae0a Iustin Pop
  forAll (choose (2, 5)) $ \count ->
1166 d5dfae0a Iustin Pop
  forAll (choose (1, 2)) $ \rqnodes ->
1167 d6f9f5bd Iustin Pop
  forAll (genOnlineNode `suchThat` (isNodeBig 4)) $ \node ->
1168 d5dfae0a Iustin Pop
  let nl = makeSmallCluster node count
1169 d5dfae0a Iustin Pop
      il = Container.empty
1170 d5dfae0a Iustin Pop
      allocnodes = Cluster.genAllocNodes defGroupList nl rqnodes True
1171 d5dfae0a Iustin Pop
  in case allocnodes >>= \allocnodes' ->
1172 d5dfae0a Iustin Pop
    Cluster.tieredAlloc nl il (Just 1) inst allocnodes' [] [] of
1173 37483aa5 Iustin Pop
       Types.Bad msg -> failTest $ "Failed to tiered alloc: " ++ msg
1174 37483aa5 Iustin Pop
       Types.Ok (_, nl', il', ixes, cstats) ->
1175 37483aa5 Iustin Pop
         let (ai_alloc, ai_pool, ai_unav) =
1176 37483aa5 Iustin Pop
               Cluster.computeAllocationDelta
1177 37483aa5 Iustin Pop
                (Cluster.totalResources nl)
1178 37483aa5 Iustin Pop
                (Cluster.totalResources nl')
1179 37483aa5 Iustin Pop
             all_nodes = Container.elems nl
1180 37483aa5 Iustin Pop
         in property (not (null ixes)) .&&.
1181 37483aa5 Iustin Pop
            IntMap.size il' ==? length ixes .&&.
1182 37483aa5 Iustin Pop
            length ixes ==? length cstats .&&.
1183 37483aa5 Iustin Pop
            sum (map Types.allocInfoVCpus [ai_alloc, ai_pool, ai_unav]) ==?
1184 37483aa5 Iustin Pop
              sum (map Node.hiCpu all_nodes) .&&.
1185 37483aa5 Iustin Pop
            sum (map Types.allocInfoNCpus [ai_alloc, ai_pool, ai_unav]) ==?
1186 37483aa5 Iustin Pop
              sum (map Node.tCpu all_nodes) .&&.
1187 37483aa5 Iustin Pop
            sum (map Types.allocInfoMem [ai_alloc, ai_pool, ai_unav]) ==?
1188 37483aa5 Iustin Pop
              truncate (sum (map Node.tMem all_nodes)) .&&.
1189 37483aa5 Iustin Pop
            sum (map Types.allocInfoDisk [ai_alloc, ai_pool, ai_unav]) ==?
1190 37483aa5 Iustin Pop
              truncate (sum (map Node.tDsk all_nodes))
1191 3fea6959 Iustin Pop
1192 6a855aaa Iustin Pop
-- | Helper function to create a cluster with the given range of nodes
1193 6a855aaa Iustin Pop
-- and allocate an instance on it.
1194 6a855aaa Iustin Pop
genClusterAlloc count node inst =
1195 6a855aaa Iustin Pop
  let nl = makeSmallCluster node count
1196 d5dfae0a Iustin Pop
  in case Cluster.genAllocNodes defGroupList nl 2 True >>=
1197 6a855aaa Iustin Pop
     Cluster.tryAlloc nl Container.empty inst of
1198 6a855aaa Iustin Pop
       Types.Bad _ -> Types.Bad "Can't allocate"
1199 d5dfae0a Iustin Pop
       Types.Ok as ->
1200 d5dfae0a Iustin Pop
         case Cluster.asSolution as of
1201 6a855aaa Iustin Pop
           Nothing -> Types.Bad "Empty solution?"
1202 d5dfae0a Iustin Pop
           Just (xnl, xi, _, _) ->
1203 6a855aaa Iustin Pop
             let xil = Container.add (Instance.idx xi) xi Container.empty
1204 6a855aaa Iustin Pop
             in Types.Ok (xnl, xil, xi)
1205 6a855aaa Iustin Pop
1206 6a855aaa Iustin Pop
-- | Checks that on a 4-8 node cluster, once we allocate an instance,
1207 6a855aaa Iustin Pop
-- we can also relocate it.
1208 6a855aaa Iustin Pop
prop_ClusterAllocRelocate =
1209 6a855aaa Iustin Pop
  forAll (choose (4, 8)) $ \count ->
1210 6a855aaa Iustin Pop
  forAll (genOnlineNode `suchThat` (isNodeBig 4)) $ \node ->
1211 59ed268d Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1212 6a855aaa Iustin Pop
  case genClusterAlloc count node inst of
1213 6a855aaa Iustin Pop
    Types.Bad msg -> failTest msg
1214 6a855aaa Iustin Pop
    Types.Ok (nl, il, inst') ->
1215 6a855aaa Iustin Pop
      case IAlloc.processRelocate defGroupList nl il
1216 6a855aaa Iustin Pop
             (Instance.idx inst) 1 [Instance.sNode inst'] of
1217 6a855aaa Iustin Pop
        Types.Ok _ -> printTestCase "??" True  -- huh, how to make
1218 6a855aaa Iustin Pop
                                               -- this nicer...
1219 6a855aaa Iustin Pop
        Types.Bad msg -> failTest $ "Failed to relocate: " ++ msg
1220 6a855aaa Iustin Pop
1221 6a855aaa Iustin Pop
-- | Helper property checker for the result of a nodeEvac or
1222 6a855aaa Iustin Pop
-- changeGroup operation.
1223 6a855aaa Iustin Pop
check_EvacMode grp inst result =
1224 6a855aaa Iustin Pop
  case result of
1225 6a855aaa Iustin Pop
    Types.Bad msg -> failTest $ "Couldn't evacuate/change group:" ++ msg
1226 6a855aaa Iustin Pop
    Types.Ok (_, _, es) ->
1227 6a855aaa Iustin Pop
      let moved = Cluster.esMoved es
1228 6a855aaa Iustin Pop
          failed = Cluster.esFailed es
1229 6a855aaa Iustin Pop
          opcodes = not . null $ Cluster.esOpCodes es
1230 6a855aaa Iustin Pop
      in failmsg ("'failed' not empty: " ++ show failed) (null failed) .&&.
1231 6a855aaa Iustin Pop
         failmsg "'opcodes' is null" opcodes .&&.
1232 6a855aaa Iustin Pop
         case moved of
1233 6a855aaa Iustin Pop
           [(idx', gdx, _)] -> failmsg "invalid instance moved" (idx == idx')
1234 6a855aaa Iustin Pop
                               .&&.
1235 6a855aaa Iustin Pop
                               failmsg "wrong target group"
1236 6a855aaa Iustin Pop
                                         (gdx == Group.idx grp)
1237 6a855aaa Iustin Pop
           v -> failmsg  ("invalid solution: " ++ show v) False
1238 6a855aaa Iustin Pop
  where failmsg = \msg -> printTestCase ("Failed to evacuate: " ++ msg)
1239 6a855aaa Iustin Pop
        idx = Instance.idx inst
1240 6a855aaa Iustin Pop
1241 6a855aaa Iustin Pop
-- | Checks that on a 4-8 node cluster, once we allocate an instance,
1242 6a855aaa Iustin Pop
-- we can also node-evacuate it.
1243 6a855aaa Iustin Pop
prop_ClusterAllocEvacuate =
1244 6a855aaa Iustin Pop
  forAll (choose (4, 8)) $ \count ->
1245 6a855aaa Iustin Pop
  forAll (genOnlineNode `suchThat` (isNodeBig 4)) $ \node ->
1246 59ed268d Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1247 6a855aaa Iustin Pop
  case genClusterAlloc count node inst of
1248 6a855aaa Iustin Pop
    Types.Bad msg -> failTest msg
1249 6a855aaa Iustin Pop
    Types.Ok (nl, il, inst') ->
1250 6a855aaa Iustin Pop
      conjoin $ map (\mode -> check_EvacMode defGroup inst' $
1251 6a855aaa Iustin Pop
                              Cluster.tryNodeEvac defGroupList nl il mode
1252 6a855aaa Iustin Pop
                                [Instance.idx inst']) [minBound..maxBound]
1253 6a855aaa Iustin Pop
1254 6a855aaa Iustin Pop
-- | Checks that on a 4-8 node cluster with two node groups, once we
1255 6a855aaa Iustin Pop
-- allocate an instance on the first node group, we can also change
1256 6a855aaa Iustin Pop
-- its group.
1257 6a855aaa Iustin Pop
prop_ClusterAllocChangeGroup =
1258 6a855aaa Iustin Pop
  forAll (choose (4, 8)) $ \count ->
1259 6a855aaa Iustin Pop
  forAll (genOnlineNode `suchThat` (isNodeBig 4)) $ \node ->
1260 59ed268d Iustin Pop
  forAll (genInstanceSmallerThanNode node) $ \inst ->
1261 6a855aaa Iustin Pop
  case genClusterAlloc count node inst of
1262 6a855aaa Iustin Pop
    Types.Bad msg -> failTest msg
1263 6a855aaa Iustin Pop
    Types.Ok (nl, il, inst') ->
1264 6a855aaa Iustin Pop
      -- we need to add a second node group and nodes to the cluster
1265 6a855aaa Iustin Pop
      let nl2 = Container.elems $ makeSmallCluster node count
1266 6a855aaa Iustin Pop
          grp2 = Group.setIdx defGroup (Group.idx defGroup + 1)
1267 6a855aaa Iustin Pop
          maxndx = maximum . map Node.idx $ nl2
1268 6a855aaa Iustin Pop
          nl3 = map (\n -> n { Node.group = Group.idx grp2
1269 6a855aaa Iustin Pop
                             , Node.idx = Node.idx n + maxndx }) nl2
1270 6a855aaa Iustin Pop
          nl4 = Container.fromList . map (\n -> (Node.idx n, n)) $ nl3
1271 6a855aaa Iustin Pop
          gl' = Container.add (Group.idx grp2) grp2 defGroupList
1272 6a855aaa Iustin Pop
          nl' = IntMap.union nl nl4
1273 6a855aaa Iustin Pop
      in check_EvacMode grp2 inst' $
1274 6a855aaa Iustin Pop
         Cluster.tryChangeGroup gl' nl' il [] [Instance.idx inst']
1275 3fea6959 Iustin Pop
1276 3fea6959 Iustin Pop
-- | Check that allocating multiple instances on a cluster, then
1277 525bfb36 Iustin Pop
-- adding an empty node, results in a valid rebalance.
1278 00c75986 Iustin Pop
prop_ClusterAllocBalance =
1279 d5dfae0a Iustin Pop
  forAll (genNode (Just 5) (Just 128)) $ \node ->
1280 d5dfae0a Iustin Pop
  forAll (choose (3, 5)) $ \count ->
1281 d5dfae0a Iustin Pop
  not (Node.offline node) && not (Node.failN1 node) ==>
1282 d5dfae0a Iustin Pop
  let nl = makeSmallCluster node count
1283 d5dfae0a Iustin Pop
      (hnode, nl') = IntMap.deleteFindMax nl
1284 d5dfae0a Iustin Pop
      il = Container.empty
1285 d5dfae0a Iustin Pop
      allocnodes = Cluster.genAllocNodes defGroupList nl' 2 True
1286 d5dfae0a Iustin Pop
      i_templ = createInstance Types.unitMem Types.unitDsk Types.unitCpu
1287 d5dfae0a Iustin Pop
  in case allocnodes >>= \allocnodes' ->
1288 d5dfae0a Iustin Pop
    Cluster.iterateAlloc nl' il (Just 5) i_templ allocnodes' [] [] of
1289 96bc2003 Iustin Pop
       Types.Bad msg -> failTest $ "Failed to allocate: " ++ msg
1290 96bc2003 Iustin Pop
       Types.Ok (_, _, _, [], _) -> failTest "Failed to allocate: no instances"
1291 d5dfae0a Iustin Pop
       Types.Ok (_, xnl, il', _, _) ->
1292 d5dfae0a Iustin Pop
         let ynl = Container.add (Node.idx hnode) hnode xnl
1293 d5dfae0a Iustin Pop
             cv = Cluster.compCV ynl
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             tbl = Cluster.Table ynl il' cv []
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         in printTestCase "Failed to rebalance" $
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            canBalance tbl True True False
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-- | Checks consistency.
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prop_ClusterCheckConsistency node inst =
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  let nl = makeSmallCluster node 3
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      [node1, node2, node3] = Container.elems nl
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      node3' = node3 { Node.group = 1 }
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      nl' = Container.add (Node.idx node3') node3' nl
1304 32b8d9c0 Iustin Pop
      inst1 = Instance.setBoth inst (Node.idx node1) (Node.idx node2)
1305 32b8d9c0 Iustin Pop
      inst2 = Instance.setBoth inst (Node.idx node1) Node.noSecondary
1306 32b8d9c0 Iustin Pop
      inst3 = Instance.setBoth inst (Node.idx node1) (Node.idx node3)
1307 cb0c77ff Iustin Pop
      ccheck = Cluster.findSplitInstances nl' . Container.fromList
1308 32b8d9c0 Iustin Pop
  in null (ccheck [(0, inst1)]) &&
1309 32b8d9c0 Iustin Pop
     null (ccheck [(0, inst2)]) &&
1310 32b8d9c0 Iustin Pop
     (not . null $ ccheck [(0, inst3)])
1311 32b8d9c0 Iustin Pop
1312 525bfb36 Iustin Pop
-- | For now, we only test that we don't lose instances during the split.
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prop_ClusterSplitCluster node inst =
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  forAll (choose (0, 100)) $ \icnt ->
1315 f4161783 Iustin Pop
  let nl = makeSmallCluster node 2
1316 f4161783 Iustin Pop
      (nl', il') = foldl (\(ns, is) _ -> assignInstance ns is inst 0 1)
1317 f4161783 Iustin Pop
                   (nl, Container.empty) [1..icnt]
1318 f4161783 Iustin Pop
      gni = Cluster.splitCluster nl' il'
1319 f4161783 Iustin Pop
  in sum (map (Container.size . snd . snd) gni) == icnt &&
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     all (\(guuid, (nl'', _)) -> all ((== guuid) . Node.group)
1321 f4161783 Iustin Pop
                                 (Container.elems nl'')) gni
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-- | Helper function to check if we can allocate an instance on a
1324 00b70680 Iustin Pop
-- given node list.
1325 00b70680 Iustin Pop
canAllocOn :: Node.List -> Int -> Instance.Instance -> Bool
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canAllocOn nl reqnodes inst =
1327 00b70680 Iustin Pop
  case Cluster.genAllocNodes defGroupList nl reqnodes True >>=
1328 00b70680 Iustin Pop
       Cluster.tryAlloc nl (Container.empty) inst of
1329 00b70680 Iustin Pop
       Types.Bad _ -> False
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       Types.Ok as ->
1331 00b70680 Iustin Pop
         case Cluster.asSolution as of
1332 00b70680 Iustin Pop
           Nothing -> False
1333 00b70680 Iustin Pop
           Just _ -> True
1334 00b70680 Iustin Pop
1335 00b70680 Iustin Pop
-- | Checks that allocation obeys minimum and maximum instance
1336 00b70680 Iustin Pop
-- policies. The unittest generates a random node, duplicates it count
1337 00b70680 Iustin Pop
-- times, and generates a random instance that can be allocated on
1338 00b70680 Iustin Pop
-- this mini-cluster; it then checks that after applying a policy that
1339 00b70680 Iustin Pop
-- the instance doesn't fits, the allocation fails.
1340 00b70680 Iustin Pop
prop_ClusterAllocPolicy node =
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  -- rqn is the required nodes (1 or 2)
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  forAll (choose (1, 2)) $ \rqn ->
1343 00b70680 Iustin Pop
  forAll (choose (5, 20)) $ \count ->
1344 00b70680 Iustin Pop
  forAll (arbitrary `suchThat` (canAllocOn (makeSmallCluster node count) rqn))
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         $ \inst ->
1346 00b70680 Iustin Pop
  forAll (arbitrary `suchThat` (isFailure .
1347 00b70680 Iustin Pop
                                Instance.instMatchesPolicy inst)) $ \ipol ->
1348 00b70680 Iustin Pop
  let node' = Node.setPolicy ipol node
1349 00b70680 Iustin Pop
      nl = makeSmallCluster node' count
1350 00b70680 Iustin Pop
  in not $ canAllocOn nl rqn inst
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1352 23fe06c2 Iustin Pop
testSuite "Cluster"
1353 d5dfae0a Iustin Pop
            [ 'prop_Score_Zero
1354 d5dfae0a Iustin Pop
            , 'prop_CStats_sane
1355 d5dfae0a Iustin Pop
            , 'prop_ClusterAlloc_sane
1356 d5dfae0a Iustin Pop
            , 'prop_ClusterCanTieredAlloc
1357 6a855aaa Iustin Pop
            , 'prop_ClusterAllocRelocate
1358 6a855aaa Iustin Pop
            , 'prop_ClusterAllocEvacuate
1359 6a855aaa Iustin Pop
            , 'prop_ClusterAllocChangeGroup
1360 d5dfae0a Iustin Pop
            , 'prop_ClusterAllocBalance
1361 d5dfae0a Iustin Pop
            , 'prop_ClusterCheckConsistency
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            , 'prop_ClusterSplitCluster
1363 00b70680 Iustin Pop
            , 'prop_ClusterAllocPolicy
1364 d5dfae0a Iustin Pop
            ]
1365 88f25dd0 Iustin Pop
1366 525bfb36 Iustin Pop
-- ** OpCodes tests
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1368 525bfb36 Iustin Pop
-- | Check that opcode serialization is idempotent.
1369 88f25dd0 Iustin Pop
prop_OpCodes_serialization op =
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  case J.readJSON (J.showJSON op) of
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    J.Error e -> failTest $ "Cannot deserialise: " ++ e
1372 72bb6b4e Iustin Pop
    J.Ok op' -> op ==? op'
1373 4a007641 Iustin Pop
  where _types = op::OpCodes.OpCode
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1375 23fe06c2 Iustin Pop
testSuite "OpCodes"
1376 d5dfae0a Iustin Pop
            [ 'prop_OpCodes_serialization ]
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1378 525bfb36 Iustin Pop
-- ** Jobs tests
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1380 525bfb36 Iustin Pop
-- | Check that (queued) job\/opcode status serialization is idempotent.
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prop_OpStatus_serialization os =
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  case J.readJSON (J.showJSON os) of
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    J.Error e -> failTest $ "Cannot deserialise: " ++ e
1384 72bb6b4e Iustin Pop
    J.Ok os' -> os ==? os'
1385 db079755 Iustin Pop
  where _types = os::Jobs.OpStatus
1386 db079755 Iustin Pop
1387 db079755 Iustin Pop
prop_JobStatus_serialization js =
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  case J.readJSON (J.showJSON js) of
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    J.Error e -> failTest $ "Cannot deserialise: " ++ e
1390 72bb6b4e Iustin Pop
    J.Ok js' -> js ==? js'
1391 db079755 Iustin Pop
  where _types = js::Jobs.JobStatus
1392 db079755 Iustin Pop
1393 23fe06c2 Iustin Pop
testSuite "Jobs"
1394 d5dfae0a Iustin Pop
            [ 'prop_OpStatus_serialization
1395 d5dfae0a Iustin Pop
            , 'prop_JobStatus_serialization
1396 d5dfae0a Iustin Pop
            ]
1397 db079755 Iustin Pop
1398 525bfb36 Iustin Pop
-- ** Loader tests
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prop_Loader_lookupNode ktn inst node =
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  Loader.lookupNode nl inst node ==? Data.Map.lookup node nl
1402 d5dfae0a Iustin Pop
    where nl = Data.Map.fromList ktn
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prop_Loader_lookupInstance kti inst =
1405 72bb6b4e Iustin Pop
  Loader.lookupInstance il inst ==? Data.Map.lookup inst il
1406 d5dfae0a Iustin Pop
    where il = Data.Map.fromList kti
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1408 3074ccaf Iustin Pop
prop_Loader_assignIndices =
1409 3074ccaf Iustin Pop
  -- generate nodes with unique names
1410 3074ccaf Iustin Pop
  forAll (arbitrary `suchThat`
1411 3074ccaf Iustin Pop
          (\nodes ->
1412 3074ccaf Iustin Pop
             let names = map Node.name nodes
1413 3074ccaf Iustin Pop
             in length names == length (nub names))) $ \nodes ->
1414 3074ccaf Iustin Pop
  let (nassoc, kt) =
1415 3074ccaf Iustin Pop
        Loader.assignIndices (map (\n -> (Node.name n, n)) nodes)
1416 3074ccaf Iustin Pop
  in Data.Map.size nassoc == length nodes &&
1417 3074ccaf Iustin Pop
     Container.size kt == length nodes &&
1418 3074ccaf Iustin Pop
     if not (null nodes)
1419 3074ccaf Iustin Pop
       then maximum (IntMap.keys kt) == length nodes - 1
1420 3074ccaf Iustin Pop
       else True
1421 c088674b Iustin Pop
1422 c088674b Iustin Pop
-- | Checks that the number of primary instances recorded on the nodes
1423 525bfb36 Iustin Pop
-- is zero.
1424 c088674b Iustin Pop
prop_Loader_mergeData ns =
1425 cb0c77ff Iustin Pop
  let na = Container.fromList $ map (\n -> (Node.idx n, n)) ns
1426 2d1708e0 Guido Trotter
  in case Loader.mergeData [] [] [] []
1427 f4f6eb0b Iustin Pop
         (Loader.emptyCluster {Loader.cdNodes = na}) of
1428 c088674b Iustin Pop
    Types.Bad _ -> False
1429 71375ef7 Iustin Pop
    Types.Ok (Loader.ClusterData _ nl il _ _) ->
1430 c088674b Iustin Pop
      let nodes = Container.elems nl
1431 c088674b Iustin Pop
          instances = Container.elems il
1432 c088674b Iustin Pop
      in (sum . map (length . Node.pList)) nodes == 0 &&
1433 4a007641 Iustin Pop
         null instances
1434 c088674b Iustin Pop
1435 efe98965 Guido Trotter
-- | Check that compareNameComponent on equal strings works.
1436 efe98965 Guido Trotter
prop_Loader_compareNameComponent_equal :: String -> Bool
1437 efe98965 Guido Trotter
prop_Loader_compareNameComponent_equal s =
1438 efe98965 Guido Trotter
  Loader.compareNameComponent s s ==
1439 efe98965 Guido Trotter
    Loader.LookupResult Loader.ExactMatch s
1440 efe98965 Guido Trotter
1441 efe98965 Guido Trotter
-- | Check that compareNameComponent on prefix strings works.
1442 efe98965 Guido Trotter
prop_Loader_compareNameComponent_prefix :: NonEmptyList Char -> String -> Bool
1443 efe98965 Guido Trotter
prop_Loader_compareNameComponent_prefix (NonEmpty s1) s2 =
1444 efe98965 Guido Trotter
  Loader.compareNameComponent (s1 ++ "." ++ s2) s1 ==
1445 efe98965 Guido Trotter
    Loader.LookupResult Loader.PartialMatch s1
1446 efe98965 Guido Trotter
1447 23fe06c2 Iustin Pop
testSuite "Loader"
1448 d5dfae0a Iustin Pop
            [ 'prop_Loader_lookupNode
1449 d5dfae0a Iustin Pop
            , 'prop_Loader_lookupInstance
1450 d5dfae0a Iustin Pop
            , 'prop_Loader_assignIndices
1451 d5dfae0a Iustin Pop
            , 'prop_Loader_mergeData
1452 d5dfae0a Iustin Pop
            , 'prop_Loader_compareNameComponent_equal
1453 d5dfae0a Iustin Pop
            , 'prop_Loader_compareNameComponent_prefix
1454 d5dfae0a Iustin Pop
            ]
1455 3c002a13 Iustin Pop
1456 3c002a13 Iustin Pop
-- ** Types tests
1457 3c002a13 Iustin Pop
1458 0047d4e2 Iustin Pop
prop_Types_AllocPolicy_serialisation apol =
1459 d5dfae0a Iustin Pop
  case J.readJSON (J.showJSON apol) of
1460 aa1d552d Iustin Pop
    J.Ok p -> p ==? apol
1461 96bc2003 Iustin Pop
    J.Error s -> failTest $ "Failed to deserialise: " ++ s
1462 d5dfae0a Iustin Pop
      where _types = apol::Types.AllocPolicy
1463 0047d4e2 Iustin Pop
1464 0047d4e2 Iustin Pop
prop_Types_DiskTemplate_serialisation dt =
1465 d5dfae0a Iustin Pop
  case J.readJSON (J.showJSON dt) of
1466 aa1d552d Iustin Pop
    J.Ok p -> p ==? dt
1467 96bc2003 Iustin Pop
    J.Error s -> failTest $ "Failed to deserialise: " ++ s
1468 d5dfae0a Iustin Pop
      where _types = dt::Types.DiskTemplate
1469 0047d4e2 Iustin Pop
1470 aa1d552d Iustin Pop
prop_Types_ISpec_serialisation ispec =
1471 aa1d552d Iustin Pop
  case J.readJSON (J.showJSON ispec) of
1472 aa1d552d Iustin Pop
    J.Ok p -> p ==? ispec
1473 96bc2003 Iustin Pop
    J.Error s -> failTest $ "Failed to deserialise: " ++ s
1474 aa1d552d Iustin Pop
      where _types = ispec::Types.ISpec
1475 aa1d552d Iustin Pop
1476 aa1d552d Iustin Pop
prop_Types_IPolicy_serialisation ipol =
1477 aa1d552d Iustin Pop
  case J.readJSON (J.showJSON ipol) of
1478 aa1d552d Iustin Pop
    J.Ok p -> p ==? ipol
1479 96bc2003 Iustin Pop
    J.Error s -> failTest $ "Failed to deserialise: " ++ s
1480 aa1d552d Iustin Pop
      where _types = ipol::Types.IPolicy
1481 aa1d552d Iustin Pop
1482 aa1d552d Iustin Pop
prop_Types_EvacMode_serialisation em =
1483 aa1d552d Iustin Pop
  case J.readJSON (J.showJSON em) of
1484 aa1d552d Iustin Pop
    J.Ok p -> p ==? em
1485 96bc2003 Iustin Pop
    J.Error s -> failTest $ "Failed to deserialise: " ++ s
1486 aa1d552d Iustin Pop
      where _types = em::Types.EvacMode
1487 aa1d552d Iustin Pop
1488 0047d4e2 Iustin Pop
prop_Types_opToResult op =
1489 d5dfae0a Iustin Pop
  case op of
1490 d5dfae0a Iustin Pop
    Types.OpFail _ -> Types.isBad r
1491 d5dfae0a Iustin Pop
    Types.OpGood v -> case r of
1492 d5dfae0a Iustin Pop
                        Types.Bad _ -> False
1493 d5dfae0a Iustin Pop
                        Types.Ok v' -> v == v'
1494 d5dfae0a Iustin Pop
  where r = Types.opToResult op
1495 d5dfae0a Iustin Pop
        _types = op::Types.OpResult Int
1496 0047d4e2 Iustin Pop
1497 0047d4e2 Iustin Pop
prop_Types_eitherToResult ei =
1498 d5dfae0a Iustin Pop
  case ei of
1499 d5dfae0a Iustin Pop
    Left _ -> Types.isBad r
1500 d5dfae0a Iustin Pop
    Right v -> case r of
1501 d5dfae0a Iustin Pop
                 Types.Bad _ -> False
1502 d5dfae0a Iustin Pop
                 Types.Ok v' -> v == v'
1503 0047d4e2 Iustin Pop
    where r = Types.eitherToResult ei
1504 0047d4e2 Iustin Pop
          _types = ei::Either String Int
1505 3c002a13 Iustin Pop
1506 23fe06c2 Iustin Pop
testSuite "Types"
1507 d5dfae0a Iustin Pop
            [ 'prop_Types_AllocPolicy_serialisation
1508 d5dfae0a Iustin Pop
            , 'prop_Types_DiskTemplate_serialisation
1509 aa1d552d Iustin Pop
            , 'prop_Types_ISpec_serialisation
1510 aa1d552d Iustin Pop
            , 'prop_Types_IPolicy_serialisation
1511 aa1d552d Iustin Pop
            , 'prop_Types_EvacMode_serialisation
1512 d5dfae0a Iustin Pop
            , 'prop_Types_opToResult
1513 d5dfae0a Iustin Pop
            , 'prop_Types_eitherToResult
1514 d5dfae0a Iustin Pop
            ]
1515 8b5a517a Iustin Pop
1516 8b5a517a Iustin Pop
-- ** CLI tests
1517 8b5a517a Iustin Pop
1518 8b5a517a Iustin Pop
-- | Test correct parsing.
1519 8b5a517a Iustin Pop
prop_CLI_parseISpec descr dsk mem cpu =
1520 8b5a517a Iustin Pop
  let str = printf "%d,%d,%d" dsk mem cpu
1521 8b5a517a Iustin Pop
  in CLI.parseISpecString descr str ==? Types.Ok (Types.RSpec cpu mem dsk)
1522 8b5a517a Iustin Pop
1523 8b5a517a Iustin Pop
-- | Test parsing failure due to wrong section count.
1524 8b5a517a Iustin Pop
prop_CLI_parseISpecFail descr =
1525 8b5a517a Iustin Pop
  forAll (choose (0,100) `suchThat` ((/=) 3)) $ \nelems ->
1526 8b5a517a Iustin Pop
  forAll (replicateM nelems arbitrary) $ \values ->
1527 8b5a517a Iustin Pop
  let str = intercalate "," $ map show (values::[Int])
1528 8b5a517a Iustin Pop
  in case CLI.parseISpecString descr str of
1529 8b5a517a Iustin Pop
       Types.Ok v -> failTest $ "Expected failure, got " ++ show v
1530 8b5a517a Iustin Pop
       _ -> property True
1531 8b5a517a Iustin Pop
1532 a7ea861a Iustin Pop
-- | Test parseYesNo.
1533 a7ea861a Iustin Pop
prop_CLI_parseYesNo def testval val =
1534 a7ea861a Iustin Pop
  forAll (elements [val, "yes", "no"]) $ \actual_val ->
1535 a7ea861a Iustin Pop
  if testval
1536 a7ea861a Iustin Pop
    then CLI.parseYesNo def Nothing ==? Types.Ok def
1537 a7ea861a Iustin Pop
    else let result = CLI.parseYesNo def (Just actual_val)
1538 a7ea861a Iustin Pop
         in if actual_val `elem` ["yes", "no"]
1539 a7ea861a Iustin Pop
              then result ==? Types.Ok (actual_val == "yes")
1540 a7ea861a Iustin Pop
              else property $ Types.isBad result
1541 a7ea861a Iustin Pop
1542 89298c04 Iustin Pop
-- | Helper to check for correct parsing of string arg.
1543 89298c04 Iustin Pop
checkStringArg val (opt, fn) =
1544 89298c04 Iustin Pop
  let GetOpt.Option _ longs _ _ = opt
1545 89298c04 Iustin Pop
  in case longs of
1546 89298c04 Iustin Pop
       [] -> failTest "no long options?"
1547 89298c04 Iustin Pop
       cmdarg:_ ->
1548 89298c04 Iustin Pop
         case CLI.parseOptsInner ["--" ++ cmdarg ++ "=" ++ val] "prog" [opt] of
1549 89298c04 Iustin Pop
           Left e -> failTest $ "Failed to parse option: " ++ show e
1550 89298c04 Iustin Pop
           Right (options, _) -> fn options ==? Just val
1551 89298c04 Iustin Pop
1552 89298c04 Iustin Pop
-- | Test a few string arguments.
1553 89298c04 Iustin Pop
prop_CLI_StringArg argument =
1554 89298c04 Iustin Pop
  let args = [ (CLI.oDataFile,      CLI.optDataFile)
1555 89298c04 Iustin Pop
             , (CLI.oDynuFile,      CLI.optDynuFile)
1556 89298c04 Iustin Pop
             , (CLI.oSaveCluster,   CLI.optSaveCluster)
1557 89298c04 Iustin Pop
             , (CLI.oReplay,        CLI.optReplay)
1558 89298c04 Iustin Pop
             , (CLI.oPrintCommands, CLI.optShowCmds)
1559 89298c04 Iustin Pop
             , (CLI.oLuxiSocket,    CLI.optLuxi)
1560 89298c04 Iustin Pop
             ]
1561 89298c04 Iustin Pop
  in conjoin $ map (checkStringArg argument) args
1562 89298c04 Iustin Pop
1563 a292b4e0 Iustin Pop
-- | Helper to test that a given option is accepted OK with quick exit.
1564 a292b4e0 Iustin Pop
checkEarlyExit name options param =
1565 a292b4e0 Iustin Pop
  case CLI.parseOptsInner [param] name options of
1566 a292b4e0 Iustin Pop
    Left (code, _) -> if code == 0
1567 a292b4e0 Iustin Pop
                          then property True
1568 a292b4e0 Iustin Pop
                          else failTest $ "Program " ++ name ++
1569 a292b4e0 Iustin Pop
                                 " returns invalid code " ++ show code ++
1570 a292b4e0 Iustin Pop
                                 " for option " ++ param
1571 a292b4e0 Iustin Pop
    _ -> failTest $ "Program " ++ name ++ " doesn't consider option " ++
1572 a292b4e0 Iustin Pop
         param ++ " as early exit one"
1573 a292b4e0 Iustin Pop
1574 a292b4e0 Iustin Pop
-- | Test that all binaries support some common options. There is
1575 a292b4e0 Iustin Pop
-- nothing actually random about this test...
1576 a292b4e0 Iustin Pop
prop_CLI_stdopts =
1577 a292b4e0 Iustin Pop
  let params = ["-h", "--help", "-V", "--version"]
1578 a292b4e0 Iustin Pop
      opts = map (\(name, (_, o)) -> (name, o)) Program.personalities
1579 a292b4e0 Iustin Pop
      -- apply checkEarlyExit across the cartesian product of params and opts
1580 a292b4e0 Iustin Pop
  in conjoin [checkEarlyExit n o p | p <- params, (n, o) <- opts]
1581 a292b4e0 Iustin Pop
1582 8b5a517a Iustin Pop
testSuite "CLI"
1583 8b5a517a Iustin Pop
          [ 'prop_CLI_parseISpec
1584 8b5a517a Iustin Pop
          , 'prop_CLI_parseISpecFail
1585 a7ea861a Iustin Pop
          , 'prop_CLI_parseYesNo
1586 89298c04 Iustin Pop
          , 'prop_CLI_StringArg
1587 a292b4e0 Iustin Pop
          , 'prop_CLI_stdopts
1588 8b5a517a Iustin Pop
          ]