Compare commits
8
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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1f786815e6 | ||
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54ef6b5cc3 | ||
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d3518e8ff2 | ||
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e30a28c9ef | ||
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f7849ac889 | ||
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0a4b7dbb01 | ||
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88af6a3139 | ||
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055c02d0f2 |
+9
-6
@@ -1,6 +1,7 @@
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{ mkDerivation, aeson, annotated-exception, async, base, bytestring
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, containers, hedgehog, hspec, hspec-hedgehog, katip, lens
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, lens-aeson, lib, network, stm, text, time, uuid, websockets
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, containers, directory, ekg-core, hedgehog, hspec, hspec-hedgehog
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, katip, lens, lens-aeson, lib, network, process, stm, text, time
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, unordered-containers, uuid, websockets
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}:
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mkDerivation {
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pname = "home-assistant-controller";
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@@ -9,13 +10,15 @@ mkDerivation {
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isLibrary = true;
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isExecutable = true;
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libraryHaskellDepends = [
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aeson annotated-exception async base bytestring containers katip
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lens lens-aeson network stm text time uuid websockets
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aeson annotated-exception async base bytestring containers
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directory ekg-core katip lens lens-aeson network process stm text
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time unordered-containers uuid websockets
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];
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executableHaskellDepends = [ base ];
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testHaskellDepends = [
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aeson annotated-exception async base containers hedgehog hspec
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hspec-hedgehog katip stm text time uuid
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aeson annotated-exception async base containers directory ekg-core
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hedgehog hspec hspec-hedgehog katip process stm text time
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unordered-containers uuid
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];
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license = lib.meta.getLicenseFromSpdxId "BSD-3-Clause";
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mainProgram = "home-assistant-controller";
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@@ -20,7 +20,15 @@
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});
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});
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in rec {
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packages.home-assistant-controller = pkgs.haskell.lib.justStaticExecutables hp.home-assistant-controller;
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packages.home-assistant-controller = pkgs.symlinkJoin {
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name = "home-assistant-controller";
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paths = [ (pkgs.haskell.lib.justStaticExecutables hp.home-assistant-controller) ];
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nativeBuildInputs = [ pkgs.makeWrapper ];
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postBuild = ''
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wrapProgram $out/bin/home-assistant-controller \
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--set HA_RRDTOOL ${pkgs.lib.getBin pkgs.rrdtool}/bin/rrdtool
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'';
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};
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defaultPackage = packages.home-assistant-controller;
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devShell = hp.shellFor {
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packages = h: [h.home-assistant-controller];
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@@ -34,6 +42,8 @@
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hp.graphmod
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hp.haskell-language-server
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rrdtool
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];
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};
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}
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@@ -67,6 +67,7 @@ library
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, HomeAssistant.Runtime
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, HomeAssistant.Runtime.Bus
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, HomeAssistant.Runtime.Connection
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, HomeAssistant.Runtime.Metrics
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, HomeAssistant.Runtime.Supervisor
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-- Modules included in this library but not exported.
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@@ -91,6 +92,10 @@ library
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, uuid
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, katip
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, containers
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, ekg-core
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, unordered-containers
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, process
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, directory
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-- Directories containing source files.
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hs-source-dirs: src
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@@ -121,7 +126,7 @@ executable home-assistant-controller
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-- Base language which the package is written in.
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default-language: GHC2024
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ghc-options: -threaded
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ghc-options: -threaded -with-rtsopts=-T
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test-suite home-assistant-controller-test
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-- Import common warning flags.
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@@ -131,11 +136,13 @@ test-suite home-assistant-controller-test
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default-language: GHC2024
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-- Modules included in this executable, other than Main.
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other-modules: AFRPSpec
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other-modules: AFRPLawsSpec
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, AFRPSpec
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, BackoffProp
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, BedroomSpec
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, BusSpec
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, ConnectionSpec
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, MetricsSpec
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, RuntimeSpec
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, SupervisorSpec
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, Support
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@@ -167,4 +174,8 @@ test-suite home-assistant-controller-test
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time,
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uuid,
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katip,
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containers
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containers,
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ekg-core,
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unordered-containers,
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process,
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directory
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@@ -34,6 +34,9 @@ import Control.Monad.IO.Class (liftIO, MonadIO)
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import Control.Monad.Fix (MonadFix)
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import HomeAssistant.Controller.Ruuvi (ruuviController)
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import HomeAssistant.Controller.Children (schoolLightController)
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import Data.Maybe (fromMaybe)
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import qualified System.Metrics
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import qualified HomeAssistant.Runtime.Metrics
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step :: (MonadFix m, MonadIO m) => (forall x. eff x -> m x) -> UUID -> Mealy eff a b -> a -> m (Pair b (Mealy eff a b))
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step nt trace (Mealy _ f) a = do
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@@ -74,12 +77,17 @@ defaultMain = withSocketsDo $ do
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withBus severity $ \bus -> do
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token <- getEnv "HA_TOKEN"
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host <- getEnv "HA_HOST"
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store <- System.Metrics.newStore
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System.Metrics.registerGcMetrics store
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rrdPath <- fromMaybe "hass-controller.rrd" <$> lookupEnv "HA_RRD_PATH"
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rrdtool <- fromMaybe "rrdtool" <$> lookupEnv "HA_RRDTOOL"
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let active = [c | c@(Controller _ _ True) <- controllers]
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ents = foldMap (\(Controller _ m _) -> entities m) active
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workers =
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[ ("reader", readerAction host 8123 token ents bus)
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, ("writer", writerAction bus)
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] ++ [ (name, runController bus c) | c@(Controller name _ True) <- controllers ]
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++ [("metrics", HomeAssistant.Runtime.Metrics.metricsAction store rrdPath rrdtool)]
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as <- mapM (\(name, act) -> async (supervised name defaultBackoff act)) workers
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(_, v) <- waitAny as
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absurd v
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@@ -0,0 +1,119 @@
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{-# LANGUAGE OverloadedStrings #-}
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module HomeAssistant.Runtime.Metrics
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( DsType (..)
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, DsSpec (..)
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, dsTypeOf
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, sanitizeName
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, buildSchema
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, buildCreateArgs
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, buildUpdateArgs
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, ensureRrd
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, sampleAndUpdate
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, metricsAction
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) where
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||||
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||||
import Control.Concurrent (threadDelay)
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import Control.Monad (forever, unless)
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import Data.Char (ord)
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import Data.Int (Int64)
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import Data.List (intercalate, sortBy)
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import Data.Ord (comparing)
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import Data.Text (Text)
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import Data.Void (Void)
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import Numeric (showHex)
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import qualified Data.Text as T
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import qualified Data.HashMap.Strict as HM
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import qualified System.Metrics as M (Value (..), Sample, Store, sampleAll)
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import System.Directory (doesFileExist)
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import System.Process (callProcess)
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data DsType = Derive | Gauge
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deriving (Eq, Show)
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data DsSpec = DsSpec
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{ dsEkgName :: Text
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, dsName :: String
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, dsType :: DsType
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}
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deriving (Eq, Show)
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||||
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dsTypeOf :: M.Value -> Maybe DsType
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dsTypeOf (M.Counter _) = Just Derive
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dsTypeOf (M.Gauge _) = Just Gauge
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dsTypeOf _ = Nothing
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-- | Maps an ekg metric label to a valid rrd DS name (≤19 chars, [A-Za-z0-9_]).
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-- Long names keep the first 15 chars plus a 3-hex hash suffix for uniqueness.
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sanitizeName :: Text -> String
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sanitizeName name
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||||
| length sanitized <= 19 = sanitized
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| otherwise = take 15 sanitized ++ "_" ++ paddedHash
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where
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sanitized = T.unpack (T.replace "." "_" name)
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paddedHash = let h = showHex (sum (map ord sanitized) `mod` 4096) ""
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in replicate (3 - length h) '0' ++ h
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||||
|
||||
buildSchema :: M.Sample -> [DsSpec]
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buildSchema sample =
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||||
sortBy (comparing dsName)
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[ DsSpec ekgName (sanitizeName ekgName) dt
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| (ekgName, val) <- HM.toList sample
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, Just dt <- [dsTypeOf val]
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||||
]
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||||
|
||||
buildCreateArgs :: FilePath -> Int -> [(String, DsType)] -> [String]
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||||
buildCreateArgs path step specs =
|
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["create", path, "--step", show step]
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||||
++ concatMap dsArg specs
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||||
++ rras
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||||
where
|
||||
dsArg (name, Derive) = ["DS:" ++ name ++ ":DERIVE:20:0:U"]
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||||
dsArg (name, Gauge) = ["DS:" ++ name ++ ":GAUGE:20:0:U"]
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||||
rras =
|
||||
[ "RRA:AVERAGE:0.5:1:6000"
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||||
, "RRA:MAX:0.5:1:6000"
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||||
, "RRA:AVERAGE:0.5:360:1680"
|
||||
, "RRA:MAX:0.5:360:1680"
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||||
]
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||||
|
||||
buildUpdateArgs :: FilePath -> [String] -> [Maybe Int64] -> [String]
|
||||
buildUpdateArgs path names values =
|
||||
[ "update"
|
||||
, path
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||||
, "--template"
|
||||
, intercalate ":" names
|
||||
, "N:" ++ intercalate ":" (map renderValue values)
|
||||
]
|
||||
where
|
||||
renderValue Nothing = "U"
|
||||
renderValue (Just n) = show n
|
||||
|
||||
lookupValue :: M.Sample -> Text -> Maybe Int64
|
||||
lookupValue sample name = case HM.lookup name sample of
|
||||
Just (M.Counter n) -> Just n
|
||||
Just (M.Gauge n) -> Just n
|
||||
_ -> Nothing
|
||||
|
||||
ensureRrd :: FilePath -> FilePath -> [DsSpec] -> IO ()
|
||||
ensureRrd rrdtool rrdPath schema = do
|
||||
exists <- doesFileExist rrdPath
|
||||
unless exists $
|
||||
callProcess rrdtool (buildCreateArgs rrdPath 10 (map toPair schema))
|
||||
where
|
||||
toPair s = (dsName s, dsType s)
|
||||
|
||||
sampleAndUpdate :: M.Store -> FilePath -> FilePath -> [DsSpec] -> IO ()
|
||||
sampleAndUpdate store rrdtool rrdPath schema = do
|
||||
sample <- M.sampleAll store
|
||||
let names = map dsName schema
|
||||
values = map (lookupValue sample . dsEkgName) schema
|
||||
callProcess rrdtool (buildUpdateArgs rrdPath names values)
|
||||
|
||||
metricsAction :: M.Store -> FilePath -> FilePath -> IO Void
|
||||
metricsAction store rrdPath rrdtool = do
|
||||
schema <- buildSchema <$> M.sampleAll store
|
||||
ensureRrd rrdtool rrdPath schema
|
||||
forever $ do
|
||||
sampleAndUpdate store rrdtool rrdPath schema
|
||||
threadDelay 10000000
|
||||
@@ -0,0 +1,254 @@
|
||||
module AFRPLawsSpec (spec) where
|
||||
|
||||
import AFRP
|
||||
import Control.Arrow (arr, first, left, (***), (+++))
|
||||
import Control.Category ((>>>))
|
||||
import qualified Control.Category as Cat (id)
|
||||
import Data.Functor.Identity (Identity (..))
|
||||
import Hedgehog (Gen, PropertyT)
|
||||
import qualified Hedgehog.Gen as Gen
|
||||
import qualified Hedgehog.Range as Range
|
||||
import Support (fakeRequest)
|
||||
import Test.Hspec (Spec, describe, it)
|
||||
import Test.Hspec.Hedgehog (forAll, forAllWith, hedgehog, (===))
|
||||
|
||||
-- | Law tests for the Mealy instances. Two machines count as equal when
|
||||
-- they emit equal outputs on every input sequence, so each law runs both
|
||||
-- sides on generated inputs.
|
||||
|
||||
runPure :: Mealy Identity a b -> [a] -> [b]
|
||||
runPure _ [] = []
|
||||
runPure m (a : as) = case runIdentity (runMealy m id fakeRequest a) of
|
||||
Pair b m' -> b : runPure m' as
|
||||
|
||||
-- | Machines wrap functions and have no Show; name them for forAll instead.
|
||||
forAllMealy :: Gen (Mealy Identity a b) -> PropertyT IO (Mealy Identity a b)
|
||||
forAllMealy = forAllWith (const "<mealy>")
|
||||
|
||||
intGen :: Gen Int
|
||||
intGen = Gen.int (Range.linear (-5) 5)
|
||||
|
||||
ints :: Gen [Int]
|
||||
ints = Gen.list (Range.linear 0 30) intGen
|
||||
|
||||
intPairs :: Gen [(Int, Int)]
|
||||
intPairs = Gen.list (Range.linear 0 30) ((,) <$> intGen <*> intGen)
|
||||
|
||||
intEithers :: Gen [Either Int Int]
|
||||
intEithers = Gen.list (Range.linear 0 30) $
|
||||
Gen.choice [Left <$> intGen, Right <$> intGen]
|
||||
|
||||
nestedPairs :: Gen [((Int, Int), Int)]
|
||||
nestedPairs = Gen.list (Range.linear 0 30) ((,) <$> ((,) <$> intGen <*> intGen) <*> intGen)
|
||||
|
||||
nestedEithers :: Gen [Either (Either Int Int) Int]
|
||||
nestedEithers = Gen.list (Range.linear 0 30) $
|
||||
Gen.choice
|
||||
[ Left <$> Gen.choice [Left <$> intGen, Right <$> intGen]
|
||||
, Right <$> intGen
|
||||
]
|
||||
|
||||
-- | Stateful Int machines: the arrow variables of the laws.
|
||||
statefulGen :: Gen (Mealy Identity Int Int)
|
||||
statefulGen = Gen.choice
|
||||
[ (\k -> mapAccum (+) k id) <$> intGen
|
||||
, (\k -> preMapAccum (+) k id) <$> intGen
|
||||
, (\k -> mapAccum (*) 1 (+ k)) <$> intGen
|
||||
]
|
||||
|
||||
eventArrowGen :: Gen (Mealy Identity Int (Event Int))
|
||||
eventArrowGen = Gen.choice
|
||||
[ pure changes
|
||||
, (\k -> mapAccum (+) k Event) <$> intGen
|
||||
, (\k -> preMapAccum (+) k (Event . (* 2))) <$> intGen
|
||||
]
|
||||
|
||||
funArrowGen :: Gen (Mealy Identity Int (Int -> Int))
|
||||
funArrowGen = Gen.choice
|
||||
[ (\k -> mapAccum (+) k (*)) <$> intGen
|
||||
, pure (preMapAccum (*) 1 (+))
|
||||
]
|
||||
|
||||
spec :: Spec
|
||||
spec = describe "Mealy laws" $ do
|
||||
semigroupSpec
|
||||
monoidSpec
|
||||
categorySpec
|
||||
arrowSpec
|
||||
arrowChoiceSpec
|
||||
functorSpec
|
||||
applicativeSpec
|
||||
|
||||
semigroupSpec :: Spec
|
||||
semigroupSpec = describe "Semigroup (<>)" $ do
|
||||
it "(a <> b) <> c = a <> (b <> c)" $ hedgehog $ do
|
||||
a <- forAllMealy eventArrowGen
|
||||
b <- forAllMealy eventArrowGen
|
||||
c <- forAllMealy eventArrowGen
|
||||
xs <- forAll ints
|
||||
runPure ((a <> b) <> c) xs === runPure (a <> (b <> c)) xs
|
||||
|
||||
monoidSpec :: Spec
|
||||
monoidSpec = describe "Monoid" $ do
|
||||
it "mempty <> a = a" $ hedgehog $ do
|
||||
a <- forAllMealy eventArrowGen
|
||||
xs <- forAll ints
|
||||
runPure (mempty <> a) xs === runPure a xs
|
||||
|
||||
it "a <> mempty = a" $ hedgehog $ do
|
||||
a <- forAllMealy eventArrowGen
|
||||
xs <- forAll ints
|
||||
runPure (a <> mempty) xs === runPure a xs
|
||||
|
||||
categorySpec :: Spec
|
||||
categorySpec = describe "Category" $ do
|
||||
it "id >>> f = f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (Cat.id >>> f) xs === runPure f xs
|
||||
|
||||
it "f >>> id = f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (f >>> Cat.id) xs === runPure f xs
|
||||
|
||||
it "(f >>> g) >>> h = f >>> (g >>> h)" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
g <- forAllMealy statefulGen
|
||||
h <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure ((f >>> g) >>> h) xs === runPure (f >>> (g >>> h)) xs
|
||||
|
||||
arrowSpec :: Spec
|
||||
arrowSpec = describe "Arrow" $ do
|
||||
it "arr id = id" $ hedgehog $ do
|
||||
xs <- forAll ints
|
||||
runPure (arr id :: Mealy Identity Int Int) xs === runPure Cat.id xs
|
||||
|
||||
it "arr (f >>> g) = arr f >>> arr g" $ hedgehog $ do
|
||||
p <- forAll intGen
|
||||
q <- forAll intGen
|
||||
xs <- forAll ints
|
||||
let f = (+ p)
|
||||
g = (* q)
|
||||
runPure (arr (f >>> g)) xs === runPure (arr f >>> arr g) xs
|
||||
|
||||
it "first (arr f) = arr (first f)" $ hedgehog $ do
|
||||
p <- forAll intGen
|
||||
ps <- forAll intPairs
|
||||
let f = (+ p)
|
||||
runPure (first (arr f)) ps === runPure (arr (first f)) ps
|
||||
|
||||
it "first (f >>> g) = first f >>> first g" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
g <- forAllMealy statefulGen
|
||||
ps <- forAll intPairs
|
||||
runPure (first (f >>> g)) ps === runPure (first f >>> first g) ps
|
||||
|
||||
it "first f >>> arr fst = arr fst >>> f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
ps <- forAll intPairs
|
||||
runPure (first f >>> arr fst) ps === runPure (arr fst >>> f) ps
|
||||
|
||||
it "first f >>> arr (id *** g) = arr (id *** g) >>> first f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
p <- forAll intGen
|
||||
ps <- forAll intPairs
|
||||
let g = (* p)
|
||||
runPure (first f >>> arr (id *** g)) ps
|
||||
=== runPure (arr (id *** g) >>> first f) ps
|
||||
|
||||
it "first (first f) >>> arr assoc = arr assoc >>> first f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
ts <- forAll nestedPairs
|
||||
let assoc ((a, b), c) = (a, (b, c))
|
||||
runPure (first (first f) >>> arr assoc) ts
|
||||
=== runPure (arr assoc >>> first f) ts
|
||||
|
||||
arrowChoiceSpec :: Spec
|
||||
arrowChoiceSpec = describe "ArrowChoice" $ do
|
||||
it "left (arr f) = arr (left f)" $ hedgehog $ do
|
||||
p <- forAll intGen
|
||||
es <- forAll intEithers
|
||||
let f = (+ p)
|
||||
runPure (left (arr f)) es === runPure (arr (left f)) es
|
||||
|
||||
it "left (f >>> g) = left f >>> left g" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
g <- forAllMealy statefulGen
|
||||
es <- forAll intEithers
|
||||
runPure (left (f >>> g)) es === runPure (left f >>> left g) es
|
||||
|
||||
it "f >>> arr Left = arr Left >>> left f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (f >>> arr (Left @Int @Int)) xs
|
||||
=== runPure (arr (Left @Int @Int) >>> left f) xs
|
||||
|
||||
it "left f >>> arr (id +++ g) = arr (id +++ g) >>> left f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
p <- forAll intGen
|
||||
es <- forAll intEithers
|
||||
let g = (* p)
|
||||
runPure (left f >>> arr (id +++ g)) es
|
||||
=== runPure (arr (id +++ g) >>> left f) es
|
||||
|
||||
it "left (left f) >>> arr assocsum = arr assocsum >>> left f" $ hedgehog $ do
|
||||
f <- forAllMealy statefulGen
|
||||
es <- forAll nestedEithers
|
||||
let assocsum (Left (Left x)) = Left x
|
||||
assocsum (Left (Right y)) = Right (Left y)
|
||||
assocsum (Right z) = Right (Right z)
|
||||
runPure (left (left f) >>> arr assocsum) es
|
||||
=== runPure (arr assocsum >>> left f) es
|
||||
|
||||
functorSpec :: Spec
|
||||
functorSpec = describe "Functor" $ do
|
||||
it "fmap id = id" $ hedgehog $ do
|
||||
m <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (fmap id m) xs === runPure m xs
|
||||
|
||||
it "fmap (f . g) = fmap f . fmap g" $ hedgehog $ do
|
||||
m <- forAllMealy statefulGen
|
||||
p <- forAll intGen
|
||||
q <- forAll intGen
|
||||
xs <- forAll ints
|
||||
let f = (+ p)
|
||||
g = (* q)
|
||||
runPure (fmap (f . g) m) xs === runPure (fmap f (fmap g m)) xs
|
||||
|
||||
applicativeSpec :: Spec
|
||||
applicativeSpec = describe "Applicative" $ do
|
||||
it "pure id <*> v = v" $ hedgehog $ do
|
||||
v <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (pure id <*> v) xs === runPure v xs
|
||||
|
||||
it "pure f <*> pure x = pure (f x)" $ hedgehog $ do
|
||||
p <- forAll intGen
|
||||
x <- forAll intGen
|
||||
xs <- forAll ints
|
||||
let f = (+ p)
|
||||
runPure (pure f <*> pure x) xs === runPure (pure (f x)) xs
|
||||
|
||||
it "u <*> pure y = pure ($ y) <*> u" $ hedgehog $ do
|
||||
u <- forAllMealy funArrowGen
|
||||
y <- forAll intGen
|
||||
xs <- forAll ints
|
||||
runPure (u <*> pure y) xs === runPure (pure ($ y) <*> u) xs
|
||||
|
||||
it "pure (.) <*> u <*> v <*> w = u <*> (v <*> w)" $ hedgehog $ do
|
||||
u <- forAllMealy funArrowGen
|
||||
v <- forAllMealy funArrowGen
|
||||
w <- forAllMealy statefulGen
|
||||
xs <- forAll ints
|
||||
runPure (pure (.) <*> u <*> v <*> w) xs
|
||||
=== runPure (u <*> (v <*> w)) xs
|
||||
|
||||
it "fmap f x = pure f <*> x" $ hedgehog $ do
|
||||
x <- forAllMealy statefulGen
|
||||
p <- forAll intGen
|
||||
xs <- forAll ints
|
||||
let f = (+ p)
|
||||
runPure (fmap f x) xs === runPure (pure f <*> x) xs
|
||||
@@ -1,20 +1,24 @@
|
||||
module Main (main) where
|
||||
|
||||
import Test.Hspec (hspec)
|
||||
import qualified AFRPLawsSpec
|
||||
import qualified AFRPSpec
|
||||
import qualified BackoffProp
|
||||
import qualified BedroomSpec
|
||||
import qualified BusSpec
|
||||
import qualified ConnectionSpec
|
||||
import qualified MetricsSpec
|
||||
import qualified RuntimeSpec
|
||||
import qualified SupervisorSpec
|
||||
|
||||
main :: IO ()
|
||||
main = hspec $ do
|
||||
AFRPLawsSpec.spec
|
||||
AFRPSpec.spec
|
||||
BedroomSpec.spec
|
||||
BusSpec.spec
|
||||
ConnectionSpec.spec
|
||||
MetricsSpec.spec
|
||||
RuntimeSpec.spec
|
||||
SupervisorSpec.spec
|
||||
BackoffProp.spec
|
||||
|
||||
@@ -0,0 +1,150 @@
|
||||
{-# LANGUAGE OverloadedStrings #-}
|
||||
|
||||
module MetricsSpec (spec) where
|
||||
|
||||
import Data.HashMap.Strict (HashMap)
|
||||
import qualified Data.HashMap.Strict as HM
|
||||
import Data.Int (Int64)
|
||||
import Data.Text (Text)
|
||||
import HomeAssistant.Runtime.Metrics
|
||||
( DsType (..)
|
||||
, DsSpec (..)
|
||||
, dsTypeOf
|
||||
, sanitizeName
|
||||
, buildSchema
|
||||
, buildCreateArgs
|
||||
, buildUpdateArgs
|
||||
, ensureRrd
|
||||
, sampleAndUpdate
|
||||
, metricsAction
|
||||
)
|
||||
import qualified System.Metrics as M (Value (..))
|
||||
import Test.Hspec
|
||||
import Control.Exception (try, SomeException)
|
||||
import System.Directory (findExecutable, getTemporaryDirectory, removeFile)
|
||||
import System.Exit (ExitCode (ExitSuccess))
|
||||
import System.Process (readProcessWithExitCode)
|
||||
import qualified System.Metrics as Metrics
|
||||
import qualified System.Metrics.Counter as Counter
|
||||
import qualified System.Metrics.Gauge as Gauge
|
||||
|
||||
spec :: Spec
|
||||
spec = do
|
||||
describe "dsTypeOf" $ do
|
||||
it "maps Counter to Derive" $
|
||||
dsTypeOf (M.Counter 1000) `shouldBe` Just Derive
|
||||
|
||||
it "maps Gauge to Gauge" $
|
||||
dsTypeOf (M.Gauge 500) `shouldBe` Just Gauge
|
||||
|
||||
it "maps Label to Nothing" $
|
||||
dsTypeOf (M.Label "hello") `shouldBe` Nothing
|
||||
|
||||
describe "sanitizeName" $ do
|
||||
it "replaces dots with underscores for short names" $
|
||||
sanitizeName ("rts.gc.cpu_ms" :: Text) `shouldBe` "rts_gc_cpu_ms"
|
||||
|
||||
it "shortens names longer than 19 chars to 15 chars + _ + 3 hex" $ do
|
||||
let result = sanitizeName ("rts.gc.par_balanced_bytes_copied" :: Text)
|
||||
length result `shouldBe` 19
|
||||
take 15 result `shouldBe` "rts_gc_par_bala"
|
||||
drop 15 result `shouldBe` "_" ++ drop 16 result
|
||||
|
||||
it "is deterministic (same input -> same output)" $
|
||||
sanitizeName ("rts.gc.peak_megabytes_allocated" :: Text)
|
||||
`shouldBe` sanitizeName ("rts.gc.peak_megabytes_allocated" :: Text)
|
||||
|
||||
describe "buildSchema" $ do
|
||||
it "builds sorted DsSpecs from counters and gauges, skipping labels" $
|
||||
let sample :: HashMap Text M.Value
|
||||
sample = HM.fromList
|
||||
[ ("x.allocated", M.Counter 1000)
|
||||
, ("a.bytes_used", M.Gauge 500)
|
||||
, ("c.label_thing", M.Label "irrelevant")
|
||||
]
|
||||
in buildSchema sample `shouldBe`
|
||||
[ DsSpec "a.bytes_used" "a_bytes_used" Gauge
|
||||
, DsSpec "x.allocated" "x_allocated" Derive
|
||||
]
|
||||
|
||||
it "produces dsName <= 19 chars for long ekg GC metric names" $
|
||||
let sample :: HashMap Text M.Value
|
||||
sample = HM.fromList
|
||||
[ ("rts.gc.par_balanced_bytes_copied", M.Gauge 1)
|
||||
, ("rts.gc.peak_megabytes_allocated", M.Gauge 2)
|
||||
, ("rts.gc.cumulative_bytes_used", M.Counter 3)
|
||||
]
|
||||
in map (length . dsName) (buildSchema sample) `shouldSatisfy` all (<= 19)
|
||||
|
||||
describe "buildCreateArgs" $ do
|
||||
it "builds create argv with mixed DERIVE and GAUGE DSes and RRAs" $
|
||||
buildCreateArgs "test.rrd" 10
|
||||
[ ("ds1", Derive)
|
||||
, ("ds2", Gauge)
|
||||
]
|
||||
`shouldBe`
|
||||
[ "create"
|
||||
, "test.rrd"
|
||||
, "--step"
|
||||
, "10"
|
||||
, "DS:ds1:DERIVE:20:0:U"
|
||||
, "DS:ds2:GAUGE:20:0:U"
|
||||
, "RRA:AVERAGE:0.5:1:6000"
|
||||
, "RRA:MAX:0.5:1:6000"
|
||||
, "RRA:AVERAGE:0.5:360:1680"
|
||||
, "RRA:MAX:0.5:360:1680"
|
||||
]
|
||||
|
||||
describe "buildUpdateArgs" $ do
|
||||
it "builds update argv with numeric values" $
|
||||
buildUpdateArgs "test.rrd" ["ds1", "ds2"] [Just 100, Just 200]
|
||||
`shouldBe`
|
||||
[ "update"
|
||||
, "test.rrd"
|
||||
, "--template"
|
||||
, "ds1:ds2"
|
||||
, "N:100:200"
|
||||
]
|
||||
|
||||
it "renders Nothing as U (unknown)" $
|
||||
buildUpdateArgs "test.rrd" ["ds1", "ds2"] [Just 100, Nothing]
|
||||
`shouldBe`
|
||||
[ "update"
|
||||
, "test.rrd"
|
||||
, "--template"
|
||||
, "ds1:ds2"
|
||||
, "N:100:U"
|
||||
]
|
||||
|
||||
it "renders all-Nothing as all-U" $
|
||||
buildUpdateArgs "test.rrd" ["ds1"] [Nothing]
|
||||
`shouldBe`
|
||||
[ "update"
|
||||
, "test.rrd"
|
||||
, "--template"
|
||||
, "ds1"
|
||||
, "N:U"
|
||||
]
|
||||
|
||||
describe "end-to-end (rrdtool-gated)" $ do
|
||||
it "creates an rrd, samples, and updates it" $ do
|
||||
mRrdtool <- findExecutable "rrdtool"
|
||||
case mRrdtool of
|
||||
Nothing -> pendingWith "rrdtool not on PATH"
|
||||
Just rrdtool -> do
|
||||
store <- Metrics.newStore
|
||||
c <- Metrics.createCounter "test.counter" store
|
||||
g <- Metrics.createGauge "test.gauge" store
|
||||
Counter.inc c
|
||||
Gauge.set g 42
|
||||
tmp <- getTemporaryDirectory
|
||||
let rrdPath = tmp ++ "/hass-controller-metrics-test.rrd"
|
||||
_ <- try (removeFile rrdPath) :: IO (Either SomeException ())
|
||||
schema <- buildSchema <$> Metrics.sampleAll store
|
||||
ensureRrd rrdtool rrdPath schema
|
||||
sampleAndUpdate store rrdtool rrdPath schema
|
||||
(rc, out, _) <- readProcessWithExitCode rrdtool ["fetch", rrdPath, "AVERAGE"] ""
|
||||
rc `shouldBe` ExitSuccess
|
||||
length out `shouldSatisfy` (> 0)
|
||||
_ <- try (removeFile rrdPath) :: IO (Either SomeException ())
|
||||
return ()
|
||||
Reference in New Issue
Block a user