{-# LANGUAGE CPP                 #-}
{-# LANGUAGE ScopedTypeVariables #-}
-- |
-- Copyright  : (c) Ivan Perez, 2017-2023
-- License    : BSD3
-- Maintainer : ivan.perez@keera.co.uk
--
-- QuickCheck generators for input streams.
--
-- Random stream generation can be customized usin three parameters:
--
-- - The distribution for the random time deltas ('Distribution').
-- - The maximum and minimum bounds for the time deltas ('Range').
-- - The maximum stream length ('Length').
--
-- The main function to generate streams is 'generateStream'. The specific time
-- deltas can be customized further using 'generateStreamWith'. Some helper
-- functions are provided to facilitate testing.
module FRP.Dunai.QuickCheck
    (
      -- * Random stream generation
      generateStream
    , generateStreamWith

      -- ** Parameters used to generate random input streams
    , Distribution(..)
    , Range
    , Length

      -- ** Helpers for common cases
    , uniDistStream
    , uniDistStreamMaxDT
    , fixedDelayStream
    , fixedDelayStreamWith
    )
  where

-- External imports
#if !MIN_VERSION_base(4,8,0)
import Control.Applicative (pure, (<$>))
#endif

import Data.Random.Normal  (normal')
import Test.QuickCheck     (Arbitrary, arbitrary, getPositive)
import Test.QuickCheck.Gen (Gen (MkGen), choose, suchThat)

-- Internal imports
import FRP.Dunai.Stream (DTime, SignalSampleStream, groupDeltas)

-- * Random stream generation

-- | Generate random stream.
generateStream :: Arbitrary a
               => Distribution
               -> Range
               -> Length
               -> Gen (SignalSampleStream a)
generateStream :: forall a.
Arbitrary a =>
Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStream = forall a.
(Int -> DTime -> Gen a)
-> Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStreamWith (\Int
_ DTime
_ -> forall a. Arbitrary a => Gen a
arbitrary)

-- | Generate random stream, parameterized by the value generator.
generateStreamWith :: (Int -> DTime -> Gen a)
                   -> Distribution
                   -> Range
                   -> Length
                   -> Gen (SignalSampleStream a)
generateStreamWith :: forall a.
(Int -> DTime -> Gen a)
-> Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStreamWith Int -> DTime -> Gen a
arb Distribution
DistConstant Range
range Length
len =
  forall a.
(Int -> DTime -> Gen a)
-> (DTime, Int) -> Gen (SignalSampleStream a)
generateConstantStream Int -> DTime -> Gen a
arb forall (m :: * -> *) a b. Monad m => (a -> m b) -> m a -> m b
=<< Range -> Length -> Gen (DTime, Int)
generateStreamLenDT Range
range Length
len
generateStreamWith Int -> DTime -> Gen a
arb Distribution
dist (Maybe DTime
m, Maybe DTime
n) Length
len = do
    [DTime]
ds <- Length -> Gen [DTime]
generateDeltas Length
len
    let l :: Int
l = forall (t :: * -> *) a. Foldable t => t a -> Int
length [DTime]
ds
    let f :: Int -> Gen a
f Int
n = Int -> DTime -> Gen a
arb Int
n ([DTime]
ds forall a. [a] -> Int -> a
!! (Int
n forall a. Num a => a -> a -> a
- Int
1))
    [a]
xs <- forall a. Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith Int
l Int -> Gen a
f

    a
x <- Int -> DTime -> Gen a
arb Int
0 DTime
0
    forall (m :: * -> *) a. Monad m => a -> m a
return forall a b. (a -> b) -> a -> b
$ forall a. [a] -> [DTime] -> SignalSampleStream a
groupDeltas (a
xforall a. a -> [a] -> [a]
:[a]
xs) [DTime]
ds

  where

    deltaF :: Gen DTime
    deltaF :: Gen DTime
deltaF = case Distribution
dist of
               Distribution
DistRandom -> Maybe DTime -> Maybe DTime -> Gen DTime
generateDelta Maybe DTime
m Maybe DTime
n
               DistNormal (DTime
avg, DTime
stddev) -> DTime -> DTime -> Maybe DTime -> Maybe DTime -> Gen DTime
generateDSNormal DTime
avg DTime
stddev Maybe DTime
m Maybe DTime
n
               Distribution
_ -> forall a. HasCallStack => [Char] -> a
error [Char]
"dunai-test: generateStreamWith"

    generateDeltas :: Length -> Gen [DTime]
    generateDeltas :: Length -> Gen [DTime]
generateDeltas Length
Nothing              = do Int
l <- forall a. Arbitrary a => Gen a
arbitrary
                                             forall a. Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith Int
l (\Int
_ -> Gen DTime
deltaF)
    generateDeltas (Just (Left Int
l))      = forall a. Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith Int
l (\Int
_ -> Gen DTime
deltaF)
    generateDeltas (Just (Right DTime
maxds)) = Gen DTime -> DTime -> Gen [DTime]
timeStampsUntilWith Gen DTime
deltaF DTime
maxds

-- | Generate arbitrary stream with fixed length and constant delta.
generateConstantStream :: (Int -> DTime -> Gen a)
                       -> (DTime, Int)
                       -> Gen (SignalSampleStream a)
generateConstantStream :: forall a.
(Int -> DTime -> Gen a)
-> (DTime, Int) -> Gen (SignalSampleStream a)
generateConstantStream Int -> DTime -> Gen a
arb (DTime
x, Int
length) = do
    [a]
ys <- forall a. Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith Int
length (Int -> DTime -> Gen a
`arb` DTime
x)
    forall (m :: * -> *) a. Monad m => a -> m a
return forall a b. (a -> b) -> a -> b
$ forall a. [a] -> [DTime] -> SignalSampleStream a
groupDeltas [a]
ys [DTime]
ds
  where
    ds :: [DTime]
ds = forall a. a -> [a]
repeat DTime
x

-- | Generate arbitrary stream
generateStreamLenDT :: (Maybe DTime, Maybe DTime)
                    -> Maybe (Either Int DTime)
                    -> Gen (DTime, Int)
generateStreamLenDT :: Range -> Length -> Gen (DTime, Int)
generateStreamLenDT Range
range Length
len = do
  DTime
x <- forall a b c. (a -> b -> c) -> (a, b) -> c
uncurry Maybe DTime -> Maybe DTime -> Gen DTime
generateDelta Range
range
  Int
l <- case Length
len of
         Length
Nothing         -> forall a. Positive a -> a
getPositive forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
<$> forall a. Arbitrary a => Gen a
arbitrary
         Just (Left Int
l)   -> forall (f :: * -> *) a. Applicative f => a -> f a
pure Int
l
         Just (Right DTime
ds) -> forall (f :: * -> *) a. Applicative f => a -> f a
pure (forall a b. (RealFrac a, Integral b) => a -> b
floor (DTime
ds forall a. Fractional a => a -> a -> a
/ DTime
x))
  forall (m :: * -> *) a. Monad m => a -> m a
return (DTime
x, Int
l)

-- ** Time delta generation

-- | Generate one random delta, possibly within a range.
generateDelta :: Maybe DTime -> Maybe DTime -> Gen DTime
generateDelta :: Maybe DTime -> Maybe DTime -> Gen DTime
generateDelta (Just DTime
x) (Just DTime
y) = forall a. Random a => (a, a) -> Gen a
choose (DTime
x, DTime
y)
generateDelta (Just DTime
x) Maybe DTime
Nothing  = (DTime
x forall a. Num a => a -> a -> a
+) forall b c a. (b -> c) -> (a -> b) -> a -> c
. forall a. Positive a -> a
getPositive forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
<$> forall a. Arbitrary a => Gen a
arbitrary
generateDelta Maybe DTime
Nothing  (Just DTime
y) = forall a. Random a => (a, a) -> Gen a
choose (DTime
2.2251e-308, DTime
y)
generateDelta Maybe DTime
Nothing  Maybe DTime
Nothing  = forall a. Positive a -> a
getPositive forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
<$> forall a. Arbitrary a => Gen a
arbitrary

-- | Generate a random delta following a normal distribution, and possibly
-- within a given range.
generateDSNormal :: DTime -> DTime -> Maybe DTime -> Maybe DTime -> Gen DTime
generateDSNormal :: DTime -> DTime -> Maybe DTime -> Maybe DTime -> Gen DTime
generateDSNormal DTime
avg DTime
stddev Maybe DTime
m Maybe DTime
n = forall a. Gen a -> (a -> Bool) -> Gen a
suchThat Gen DTime
gen (\DTime
x -> DTime -> Bool
mx DTime
x Bool -> Bool -> Bool
&& DTime -> Bool
mn DTime
x)
  where
    gen :: Gen DTime
gen = forall a. (QCGen -> Int -> a) -> Gen a
MkGen (\QCGen
r Int
_ -> forall a b. (a, b) -> a
fst forall a b. (a -> b) -> a -> b
$ forall g a.
(RandomGen g, Random a, Floating a) =>
(a, a) -> g -> (a, g)
normal' (DTime
avg, DTime
stddev) QCGen
r)
    mn :: DTime -> Bool
mn  = forall b a. b -> (a -> b) -> Maybe a -> b
maybe (forall a b. a -> b -> a
const Bool
True) forall a. Ord a => a -> a -> Bool
(<=) Maybe DTime
m
    mx :: DTime -> Bool
mx  = forall b a. b -> (a -> b) -> Maybe a -> b
maybe (forall a b. a -> b -> a
const Bool
True) forall a. Ord a => a -> a -> Bool
(>=) Maybe DTime
n

-- | Generate random samples up until a max time, with a given time delta
-- generation function.
timeStampsUntilWith :: Gen DTime -> DTime -> Gen [DTime]
timeStampsUntilWith :: Gen DTime -> DTime -> Gen [DTime]
timeStampsUntilWith Gen DTime
arb = Gen DTime -> [DTime] -> DTime -> Gen [DTime]
timeStampsUntilWith' Gen DTime
arb []
  where
    -- Generate random samples up until a max time, with a given time delta
    -- generation function, and an initial suffix of time deltas.
    timeStampsUntilWith' :: Gen DTime -> [DTime] -> DTime -> Gen [DTime]
    timeStampsUntilWith' :: Gen DTime -> [DTime] -> DTime -> Gen [DTime]
timeStampsUntilWith' Gen DTime
arb [DTime]
acc DTime
ds
      | DTime
ds forall a. Ord a => a -> a -> Bool
< DTime
0    = forall (m :: * -> *) a. Monad m => a -> m a
return [DTime]
acc
      | Bool
otherwise = do DTime
d <- Gen DTime
arb
                       let acc' :: [DTime]
acc' = [DTime]
acc seq :: forall a b. a -> b -> b
`seq` (DTime
dforall a. a -> [a] -> [a]
:[DTime]
acc)
                       [DTime]
acc' seq :: forall a b. a -> b -> b
`seq` Gen DTime -> [DTime] -> DTime -> Gen [DTime]
timeStampsUntilWith' Gen DTime
arb [DTime]
acc' (DTime
ds forall a. Num a => a -> a -> a
- DTime
d)

-- ** Parameters used to generate random input streams

-- | Distributions used for time delta (DT) generation.
data Distribution
  = DistConstant              -- ^ Constant DT for the whole stream.
  | DistNormal (DTime, DTime) -- ^ Variable DT following normal distribution,
                              --   with an average and a standard deviation.
  | DistRandom                -- ^ Completely random (positive) DT.

-- | Upper and lower bounds of time deltas for random DT generation.
type Range = (Maybe DTime, Maybe DTime)

-- | Optional maximum length for a stream, given as a time, or a number of
-- samples.
type Length = Maybe (Either Int DTime)

-- ** Helpers for common cases

-- | Generate a stream of values with uniformly distributed time deltas.
uniDistStream :: Arbitrary a => Gen (SignalSampleStream a)
uniDistStream :: forall a. Arbitrary a => Gen (SignalSampleStream a)
uniDistStream = forall a.
Arbitrary a =>
Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStream Distribution
DistRandom (forall a. Maybe a
Nothing, forall a. Maybe a
Nothing) forall a. Maybe a
Nothing

-- | Generate a stream of values with uniformly distributed time deltas, with a
-- max DT.
uniDistStreamMaxDT :: Arbitrary a => DTime -> Gen (SignalSampleStream a)
uniDistStreamMaxDT :: forall a. Arbitrary a => DTime -> Gen (SignalSampleStream a)
uniDistStreamMaxDT DTime
maxDT =
  forall a.
Arbitrary a =>
Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStream Distribution
DistRandom (forall a. Maybe a
Nothing, forall a. a -> Maybe a
Just DTime
maxDT) forall a. Maybe a
Nothing

-- | Generate a stream of values with a fixed time delta.
fixedDelayStream :: Arbitrary a => DTime -> Gen (SignalSampleStream a)
fixedDelayStream :: forall a. Arbitrary a => DTime -> Gen (SignalSampleStream a)
fixedDelayStream DTime
dt = forall a.
Arbitrary a =>
Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStream Distribution
DistConstant (forall a. a -> Maybe a
Just DTime
dt, forall a. a -> Maybe a
Just DTime
dt) forall a. Maybe a
Nothing

-- | Generate a stream of values with a fixed time delta.
fixedDelayStreamWith :: Arbitrary a
                     => (DTime -> a)
                     -> DTime
                     -> Gen (SignalSampleStream a)
fixedDelayStreamWith :: forall a.
Arbitrary a =>
(DTime -> a) -> DTime -> Gen (SignalSampleStream a)
fixedDelayStreamWith DTime -> a
f DTime
dt =
    forall a.
(Int -> DTime -> Gen a)
-> Distribution -> Range -> Length -> Gen (SignalSampleStream a)
generateStreamWith forall {m :: * -> *} {a}.
(Monad m, Integral a) =>
a -> DTime -> m a
f' Distribution
DistConstant (forall a. a -> Maybe a
Just DTime
dt, forall a. a -> Maybe a
Just DTime
dt) forall a. Maybe a
Nothing
  where
    f' :: a -> DTime -> m a
f' a
n DTime
t = forall (m :: * -> *) a. Monad m => a -> m a
return forall a b. (a -> b) -> a -> b
$ DTime -> a
f (forall a b. (Integral a, Num b) => a -> b
fromIntegral a
n forall a. Num a => a -> a -> a
* DTime
t)

-- * Extended quickcheck generator

-- | Generates a list of the given length.
vectorOfWith :: Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith :: forall a. Int -> (Int -> Gen a) -> Gen [a]
vectorOfWith Int
k Int -> Gen a
genF = forall (t :: * -> *) (m :: * -> *) a.
(Traversable t, Monad m) =>
t (m a) -> m (t a)
sequence [ Int -> Gen a
genF Int
i | Int
i <- [Int
1..Int
k] ]