{-# LANGUAGE GADTs #-}
{-# LANGUAGE OverloadedStrings #-}
module Duckling.Quantity.KO.Rules
( rules ) where
import Prelude
import Data.String
import Duckling.Dimensions.Types
import Duckling.Numeral.Types (NumeralData (..))
import qualified Duckling.Numeral.Types as TNumeral
import Duckling.Quantity.Helpers
import qualified Duckling.Quantity.Types as TQuantity
import Duckling.Regex.Types
import Duckling.Types
ruleQuantityOfProduct :: Rule
ruleQuantityOfProduct :: Rule
ruleQuantityOfProduct = Rule :: Text -> Pattern -> Production -> Rule
Rule
{ name :: Text
name = Text
"<quantity> of product"
, pattern :: Pattern
pattern =
[ Dimension QuantityData -> PatternItem
forall a. Typeable a => Dimension a -> PatternItem
dimension Dimension QuantityData
Quantity
, String -> PatternItem
regex String
"의 (삼겹살|콜라)"
]
, prod :: Production
prod = \[Token]
tokens -> case [Token]
tokens of
(Token Dimension a
Quantity a
qd:
Token Dimension a
RegexMatch (GroupMatch (match:_)):
[Token]
_) -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Text -> QuantityData -> QuantityData
withProduct Text
match a
QuantityData
qd
[Token]
_ -> Maybe Token
forall a. Maybe a
Nothing
}
ruleQuantityOfProduct2 :: Rule
ruleQuantityOfProduct2 :: Rule
ruleQuantityOfProduct2 = Rule :: Text -> Pattern -> Production -> Rule
Rule
{ name :: Text
name = Text
"<quantity> of product"
, pattern :: Pattern
pattern =
[ String -> PatternItem
regex String
"(삼겹살|콜라)"
, Dimension QuantityData -> PatternItem
forall a. Typeable a => Dimension a -> PatternItem
dimension Dimension QuantityData
Quantity
]
, prod :: Production
prod = \[Token]
tokens -> case [Token]
tokens of
(Token Dimension a
RegexMatch (GroupMatch (match:_)):
Token Dimension a
Quantity a
qd:
[Token]
_) -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Text -> QuantityData -> QuantityData
withProduct Text
match a
QuantityData
qd
[Token]
_ -> Maybe Token
forall a. Maybe a
Nothing
}
ruleNumeralUnits :: Rule
ruleNumeralUnits :: Rule
ruleNumeralUnits = Rule :: Text -> Pattern -> Production -> Rule
Rule
{ name :: Text
name = Text
"<number> <units>"
, pattern :: Pattern
pattern =
[ Dimension NumeralData -> PatternItem
forall a. Typeable a => Dimension a -> PatternItem
dimension Dimension NumeralData
Numeral
, String -> PatternItem
regex String
"(개|판|그(램|람)|근|파운(드|즈)|접1시|그릇|컵)"
]
, prod :: Production
prod = \[Token]
tokens -> case [Token]
tokens of
(Token Dimension a
Numeral NumeralData {TNumeral.value = v}:
Token Dimension a
RegexMatch (GroupMatch (match:_)):
[Token]
_) -> case Text
match of
Text
"개" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Unnamed Double
v
Text
"판" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity (Text -> Unit
TQuantity.Custom Text
"판") Double
v
Text
"근" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity (Text -> Unit
TQuantity.Custom Text
"근") Double
v
Text
"그램" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Gram Double
v
Text
"그람" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Gram Double
v
Text
"파운드" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Pound Double
v
Text
"파운즈" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Pound Double
v
Text
"접1시" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Dish Double
v
Text
"그릇" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Bowl Double
v
Text
"컵" -> Token -> Maybe Token
forall a. a -> Maybe a
Just (Token -> Maybe Token)
-> (QuantityData -> Token) -> QuantityData -> Maybe Token
forall b c a. (b -> c) -> (a -> b) -> a -> c
. Dimension QuantityData -> QuantityData -> Token
forall a.
(Resolve a, Eq a, Hashable a, Show a, NFData a) =>
Dimension a -> a -> Token
Token Dimension QuantityData
Quantity (QuantityData -> Maybe Token) -> QuantityData -> Maybe Token
forall a b. (a -> b) -> a -> b
$ Unit -> Double -> QuantityData
quantity Unit
TQuantity.Cup Double
v
Text
_ -> Maybe Token
forall a. Maybe a
Nothing
[Token]
_ -> Maybe Token
forall a. Maybe a
Nothing
}
rules :: [Rule]
rules :: [Rule]
rules =
[ Rule
ruleNumeralUnits
, Rule
ruleQuantityOfProduct
, Rule
ruleQuantityOfProduct2
]