-- Copyright (c) 2016-present, Facebook, Inc. -- All rights reserved. -- -- This source code is licensed under the BSD-style license found in the -- LICENSE file in the root directory of this source tree. {-# LANGUAGE GADTs #-} {-# LANGUAGE LambdaCase #-} {-# LANGUAGE OverloadedStrings #-} module Duckling.Ordinal.PT.Rules ( rules ) where import Data.HashMap.Strict (HashMap) import Data.String import Data.Text (Text) import Prelude import qualified Data.HashMap.Strict as HashMap import qualified Data.Text as Text import Duckling.Dimensions.Types import Duckling.Ordinal.Helpers import Duckling.Ordinal.Types (OrdinalData (..)) import Duckling.Regex.Types (GroupMatch (..)) import Duckling.Types import qualified Duckling.Ordinal.Types as TOrdinal ordinalsMap :: HashMap Text Int ordinalsMap = HashMap.fromList [ ( "primeir", 1 ) , ( "segund", 2 ) , ( "terceir", 3 ) , ( "quart", 4 ) , ( "quint", 5 ) , ( "sext", 6 ) , ( "setim", 7 ) , ( "sétim", 7 ) , ( "oitav", 8 ) , ( "non", 9 ) , ( "decim", 10 ) , ( "décim", 10 ) ] ruleOrdinals :: Rule ruleOrdinals = Rule { name = "ordinals (1..10)" , pattern = [ regex "(primeir|segund|terceir|quart|quint|sext|s[ée]tim|oitav|non|d[ée]cim)[ao]s?" ] , prod = \case (Token RegexMatch (GroupMatch (match:_)):_) -> ordinal <$> HashMap.lookup (Text.toLower match) ordinalsMap _ -> Nothing } cardinalsMap :: HashMap Text Int cardinalsMap = HashMap.fromList [ ( "vi", 20 ) , ( "tri", 30 ) , ( "quadra", 40 ) , ( "qüinqua", 50 ) , ( "quinqua", 50 ) , ( "sexa", 60 ) , ( "septua", 70 ) , ( "octo", 80 ) , ( "nona", 90 ) ] ruleCardinals :: Rule ruleCardinals = Rule { name = "cardinals (20 .. 90)" , pattern = [ regex "(vi|tri|quadra|q[üu]inqua|sexa|septua|octo|nona)g[ée]sim[ao]s?" ] , prod = \case (Token RegexMatch (GroupMatch (match:_)):_) -> ordinal <$> HashMap.lookup (Text.toLower match) cardinalsMap _ -> Nothing } ruleCompositeOrdinals :: Rule ruleCompositeOrdinals = Rule { name = "ordinals (11..19)" , pattern = [ oneOf [10, 20 .. 90] , oneOf [1..9] ] , prod = \case (Token Ordinal OrdinalData{TOrdinal.value = t}: Token Ordinal OrdinalData{TOrdinal.value = u}: _) -> Just $ ordinal $ t + u _ -> Nothing } rules :: [Rule] rules = [ ruleOrdinals , ruleCardinals , ruleCompositeOrdinals ]