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1 {-|
2 Module : Gargantext.Text.Metrics.FrequentItemSet
3 Description : Ngrams tools
4 Copyright : (c) CNRS, 2018
5 License : AGPL + CECILL v3
6 Maintainer : team@gargantext.org
7 Stability : experimental
8 Portability : POSIX
9
10 Domain Specific Language to manage Frequent Item Set (FIS)
11
12 -}
13
14 {-# LANGUAGE NoImplicitPrelude #-}
15
16 module Gargantext.Text.Metrics.FrequentItemSet
17 ( Fis, Size(..)
18 , occ_hlcm, cooc_hlcm
19 , allFis, between
20 , fisWithSize
21 , fisWith
22 , fisWithSizePoly
23 , fisWithSizePoly2
24 , fisWithSizePolyMap
25 , module HLCM
26 )
27 where
28
29 import Prelude (Functor(..)) -- TODO
30 import qualified Data.Map.Strict as Map
31 import Data.Map.Strict (Map)
32 import qualified Data.Set as Set
33 import Data.Set (Set)
34 import qualified Data.Vector as V
35
36 import Data.List (filter, concat, null)
37 import Data.Maybe (catMaybes)
38
39 import HLCM
40
41 import Gargantext.Prelude
42
43 data Size = Point Int | Segment Int Int
44
45 ------------------------------------------------------------------------
46 -- | Occurrence is Frequent Item Set of size 1
47 occ_hlcm :: Frequency -> [[Item]] -> [Fis]
48 occ_hlcm = fisWithSize (Point 1)
49
50 -- | Cooccurrence is Frequent Item Set of size 2
51 cooc_hlcm :: Frequency -> [[Item]] -> [Fis]
52 cooc_hlcm = fisWithSize (Point 2)
53
54 allFis :: Frequency -> [[Item]] -> [Fis]
55 allFis = fisWith Nothing
56
57 ------------------------------------------------------------------------
58 between :: (Int, Int) -> Frequency -> [[Item]] -> [Fis]
59 between (x,y) = fisWithSize (Segment x y)
60
61 --maximum :: Int -> Frequency -> [[Item]] -> [Fis]
62 --maximum m = between (0,m)
63
64
65 ------------------------------------------------------------------------
66 ------------------------------------------------------------------------
67 -- | Data type to type the Frequent Item Set
68 -- TODO replace List with Set in fisItemSet
69 -- be careful : risks to erase HLCM behavior
70 type Fis = Fis' Item
71 data Fis' a = Fis' { _fisCount :: Int
72 , _fisItemSet :: [a]
73 } deriving (Show)
74
75 instance Functor Fis' where
76 fmap f (Fis' c is) = Fis' c (fmap f is)
77
78 -- | Sugar from items to FIS
79 items2fis :: [Item] -> Maybe Fis
80 items2fis [] = Nothing
81 items2fis (i:is) = Just $ Fis' i is
82
83 ------------------------------------------------------------------------
84 ------------------------------------------------------------------------
85
86 fisWithSize :: Size -> Frequency -> [[Item]] -> [Fis]
87 fisWithSize n f is = case n of
88 Point n' -> fisWith (Just (\x -> length x == (n'+1) )) f is
89 Segment a b -> fisWith (Just (\x -> cond a (length x) b)) f is
90 where
91 cond a' x b' = a' <= x && x <= b'
92
93
94 --- Filter on Fis and not on [Item]
95 fisWith :: Maybe ([Item] -> Bool) -> Frequency -> [[Item]] -> [Fis]
96 fisWith s f is = case filter (not . null) is of
97 [] -> []
98 js -> catMaybes $ map items2fis $ filter' $ runLCMmatrix js f
99 -- drop unMaybe
100 where
101 filter' = case s of
102 Nothing -> identity
103 Just fun -> filter fun
104
105 -- Here the sole purpose to take the keys as a Set is tell we do not want
106 -- duplicates.
107 fisWithSizePoly :: Ord a => Size -> Frequency -> Set a -> [[a]] -> [Fis' a]
108 fisWithSizePoly n f ks = map (fmap fromItem) . fisWithSize n f . map (map toItem)
109 where
110 ksv = V.fromList $ Set.toList ks
111 ksm = Map.fromList . flip zip [0..] $ V.toList ksv
112 toItem = (ksm Map.!)
113 fromItem = (ksv V.!)
114
115 fisWithSizePoly2 :: Ord a => Size -> Frequency -> [[a]] -> [Fis' a]
116 fisWithSizePoly2 n f is = fisWithSizePoly n f ks is
117 where
118 ks = Set.fromList $ concat is
119
120 fisWithSizePolyMap :: Ord a => Size -> Frequency -> [[a]] -> Map (Set a) Int
121 fisWithSizePolyMap n f is =
122 Map.fromList $ (\i -> (Set.fromList (_fisItemSet i), _fisCount i)) <$> fisWithSizePoly2 n f is
123
124
125 ------------------------------------------------------------------------
126 ------------------------------------------------------------------------
127
128
129 --
130 ---- | /!\ indexes are not the same:
131 --
132 ---- | Index ngrams from Map
133 ----indexNgram :: Ord a => Map a Occ -> Map Index a
134 ----indexNgram m = fromList (zip [1..] (keys m))
135 --
136 ---- | Index ngrams from Map
137 ----ngramIndex :: Ord a => Map a Occ -> Map a Index
138 ----ngramIndex m = fromList (zip (keys m) [1..])
139 --
140 --indexWith :: Ord a => Map a Occ -> [a] -> [Int]
141 --indexWith m xs = unMaybe $ map (\x -> lookupIndex x m) xs
142 --
143 --indexIt :: Ord a => [[a]] -> (Map a Int, [[Int]])
144 --indexIt xs = (m, is)
145 -- where
146 -- m = sumOcc (map occ xs)
147 -- is = map (indexWith m) xs
148 --
149 --list2fis :: Ord a => FIS.Frequency -> [[a]] -> (Map a Int, [FIS.Fis])
150 --list2fis n xs = (m', fs)
151 -- where
152 -- (m, is) = indexIt xs
153 -- m' = M.filter (>50000) m
154 -- fs = FIS.all n is
155 --
156 --text2fis :: FIS.Frequency -> [Text] -> (Map Text Int, [FIS.Fis])
157 --text2fis n xs = list2fis n (map terms xs)
158 --
159 ----text2fisWith :: FIS.Size -> FIS.Frequency -> [Text] -> (Map Text Int, [FIS.Fis])
160 ----text2fisWith = undefined
161 --
162