Use streaming to improve speed of generating cullbox
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@@ -15,8 +15,11 @@ cullBox :: Configuration -> World -> [Point2]
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--cullBox cfig w = farWallPoints cp w
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cullBox cfig w'
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| debugOn Bound_box_screen cfig = screenPolygon cfig w'
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| otherwise = let (n,s,e,w) = farWallDistDirection (_cameraCenter w') w'
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in map ((+.+ _cameraCenter w') . rotateV (_cameraRot w') ) $ rectNSWE n (negate s) (negate w) e
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| otherwise = let (n,s,e,w) = f $ farWallDistDirection (_cameraCenter w') w'
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in map ((+.+ _cameraCenter w') . rotateV (_cameraRot w') ) $ rectNSWE n ( s) ( w) e
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where
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f (Just a,Just b,Just c,Just d) = (max 0 a,min 0 b,max 0 c,min 0 d)
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f _ = (0,0,0,0)
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-- --mapMaybe (fmap (fst . _wlLine . snd) . f) $ screenPolygon cfig w
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-- where
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-- grs = filter (pointInOrOnPolygon cp . _grBound) (_gameRooms w)
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+26
-11
@@ -4,6 +4,7 @@ and the position that the character sees from: '_cameraViewFrom'. -}
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module Dodge.Update.Camera
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( updateCamera
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, farWallPoints
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-- , streamViewpoints
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, farWallDistDirection
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) where
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import Dodge.Data
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@@ -19,7 +20,7 @@ import LensHelp
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import qualified Data.Map.Strict as M
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--import qualified Data.List.NonEmpty as NEL
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--import Control.Applicative
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import Data.Foldable
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--import Data.Foldable
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import Data.Maybe
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import Control.Monad
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import qualified Data.Set as Set
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@@ -29,6 +30,7 @@ import qualified SDL
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--import Data.Semigroup
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import qualified Control.Foldl as L
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import qualified Streaming.Prelude as S
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import Streaming
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{- Update the screen camera rotation and position, including any in rold scope/remote camera modifiers;
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update where your avatar's view is from. -}
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updateCamera :: Configuration -> World -> World
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@@ -209,18 +211,31 @@ farWallDist p cfig w = (winFac /)
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wos = wallsOnScreen cfig w
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distFromEqmnt = foldr max 1 $ IM.mapMaybe (_eqViewDist . _eqEq. _itUse) $ getCrEquipment $ you w
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farWallDistDirection :: Point2 -> World -> (Float,Float,Float,Float)
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farWallDistDirection p w = foldl' (flip (m . f)) (0,0,0,0) vps
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streamViewpoints :: Monad m => Point2 -> World -> Stream (Of Point2) m ()
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{-# INLINE streamViewpoints #-}
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streamViewpoints p w = flip S.for (gameRoomViewpoints p)
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$ S.filter (pointInOrOnPolygon p . _grBound) $ S.each (_gameRooms w)
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gameRoomViewpoints :: Monad m => Point2 -> GameRoom -> Stream (Of Point2) m ()
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gameRoomViewpoints p gr = S.each (_grViewpoints gr)
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<> S.map extend (S.each (_grViewpointsEx gr) <> S.map addDir (S.each $ _grLinkDirs gr))
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where
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--f q = g $ rotateV (negate $ _cameraRot w) $ collidePointWallsFilt' wlIsOpaque p q wos -.- p
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f q = g $ rotateV (negate $ _cameraRot w)
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-- $ collidePointWallsFilt wlIsOpaque p q (wallsAlongLine p q w) -.- p
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-- $ L.purely S.fold_ (collidePointWallsL p q) (wallsAlongLineStream p q w) -.- p
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extend outp = p +.+ maxViewDistance *.* squashNormalizeV (outp -.- p)
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addDir a = p +.+ unitVectorAtAngle a
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farWallDistDirection :: Point2 -> World -> (Maybe Float,Maybe Float,Maybe Float,Maybe Float)
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farWallDistDirection p w = runIdentity $ L.purely S.fold_ ((,,,)
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<$> L.premap (^?! _2) L.maximum
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<*> L.premap (^?! _2) L.minimum
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<*> L.premap (^?! _1) L.maximum
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<*> L.premap (^?! _1) L.minimum
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)
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$ S.map f vps
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where
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f q = rotateV (negate $ _cameraRot w)
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$ runIdentity (L.purely S.fold_ (collidePointWallsL p q) (S.filter wlIsOpaque $ wallsAlongLineStream p q w)) -.- p
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g (V2 x y) = (y, negate y, x, negate x)
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m (a,b,c,d) (x,y,z,w') = (max a x, max b y, max c z, max d w')
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vps = concatMap _grViewpoints grs ++ extendedViewPoints p grs
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grs = filter (pointInOrOnPolygon p . _grBound) (_gameRooms w)
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vps = streamViewpoints p w
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extendedViewPoints :: Point2 -> [GameRoom] -> [Point2]
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extendedViewPoints p grs = map extend
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+2
-5
@@ -35,7 +35,7 @@ import qualified Streaming.Prelude as S
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import Streaming
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import Data.Maybe
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import Data.List
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import Data.IntMap.Merge.Strict
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--import Data.IntMap.Merge.Strict
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import qualified Data.IntMap.Strict as IM
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import qualified Data.IntSet as IS
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import Control.Lens
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@@ -176,11 +176,8 @@ wallsAlongLine a b w =
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Just val -> val
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_ -> IM.empty
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restrictIMIM :: IM.IntMap (IM.IntMap a) -> IM.IntMap IS.IntSet -> IM.IntMap (IM.IntMap a)
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restrictIMIM = merge dropMissing dropMissing (zipWithMatched $ const IM.restrictKeys)
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wallsAlongLineStream :: Monad m => Point2 -> Point2 -> World -> Stream (Of Wall) m ()
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wallsAlongLineStream sp ep w = flip S.for S.each $ S.mapMaybe f $ zoneOfLineStream sp ep
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wallsAlongLineStream sp ep w = S.concat $ S.mapMaybe f $ zoneOfLineStream sp ep
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where
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f (i,j) = w ^? wallsZone . znObjects . ix i . ix j
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