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hydra-pg-0.18.0: src/main/haskell/Hydra/Pg/Tinkerpop/Language.hs

-- Note: this is an automatically generated file. Do not edit.

-- | Language constraints based on TinkerPop Graph.Features

module Hydra.Pg.Tinkerpop.Language where

import qualified Hydra.Core.Ast as Ast
import qualified Hydra.Core.Coders as Coders
import qualified Hydra.Core.Diff as Diff
import qualified Hydra.Core.Docs as Docs
import qualified Hydra.Core.Error.Checking as Checking
import qualified Hydra.Core.Error.File as ErrorFile
import qualified Hydra.Core.Error.Model as ErrorModel
import qualified Hydra.Core.Error.Packaging as ErrorPackaging
import qualified Hydra.Core.Error.System as ErrorSystem
import qualified Hydra.Core.Errors as Errors
import qualified Hydra.Core.File as File
import qualified Hydra.Core.Graph as Graph
import qualified Hydra.Core.Json.Model as JsonModel
import qualified Hydra.Core.Overlay.Haskell.Lib.Logic as Logic
import qualified Hydra.Core.Overlay.Haskell.Lib.Optionals as Optionals
import qualified Hydra.Core.Overlay.Haskell.Lib.Sets as Sets
import qualified Hydra.Core.Markdown as Markdown
import qualified Hydra.Core.Model as Model
import qualified Hydra.Core.Packaging as Packaging
import qualified Hydra.Core.Parsing as Parsing
import qualified Hydra.Core.Paths as Paths
import qualified Hydra.Core.Query as Query
import qualified Hydra.Core.Regex as Regex
import qualified Hydra.Core.Relational as Relational
import qualified Hydra.Core.Strip as Strip
import qualified Hydra.Core.System as System
import qualified Hydra.Core.Tabular as Tabular
import qualified Hydra.Core.Testing as Testing
import qualified Hydra.Core.Time as Time
import qualified Hydra.Core.Topology as Topology
import qualified Hydra.Core.Typed as Typed
import qualified Hydra.Core.Typing as Typing
import qualified Hydra.Core.Util as Util
import qualified Hydra.Core.Validation as Validation
import qualified Hydra.Core.Variants as Variants
import qualified Hydra.Pg.Tinkerpop.Features as Features
import Prelude hiding  (Enum, Ordering, decodeFloat, encodeFloat, fail, lines, map, pure, sum, unlines)
import qualified Data.Scientific as Sci
import Data.Void

-- | Populate language constraints based on TinkerPop Graph.Features
tinkerpopLanguage :: Coders.LanguageName -> Features.Features -> Features.ExtraFeatures t0 -> Coders.Language
tinkerpopLanguage name features extras =

      let vpFeatures =
              Features.vertexPropertyFeaturesDataTypeFeatures (Features.vertexFeaturesProperties (Features.featuresVertex features))
          cond = \v -> \b -> Logic.ifElse b (Optionals.given v) Nothing
          supportsLists =
                  Logic.or (Features.dataTypeFeaturesSupportsBooleanArrayValues vpFeatures) (Logic.or (Features.dataTypeFeaturesSupportsByteArrayValues vpFeatures) (Logic.or (Features.dataTypeFeaturesSupportsDoubleArrayValues vpFeatures) (Logic.or (Features.dataTypeFeaturesSupportsFloatArrayValues vpFeatures) (Logic.or (Features.dataTypeFeaturesSupportsIntegerArrayValues vpFeatures) (Logic.or (Features.dataTypeFeaturesSupportsLongArrayValues vpFeatures) (Features.dataTypeFeaturesSupportsStringArrayValues vpFeatures))))))
          supportsLiterals = True
          supportsMaps = Features.dataTypeFeaturesSupportsMapValues vpFeatures
          literalVariants =
                  Sets.fromList (Optionals.givens [
                    cond Variants.LiteralVariantBinary (Features.dataTypeFeaturesSupportsByteArrayValues vpFeatures),
                    (cond Variants.LiteralVariantBoolean (Features.dataTypeFeaturesSupportsBooleanValues vpFeatures)),
                    (cond Variants.LiteralVariantFloat (Logic.or (Features.dataTypeFeaturesSupportsFloatValues vpFeatures) (Features.dataTypeFeaturesSupportsDoubleValues vpFeatures))),
                    (cond Variants.LiteralVariantInteger (Logic.or (Features.dataTypeFeaturesSupportsIntegerValues vpFeatures) (Features.dataTypeFeaturesSupportsLongValues vpFeatures))),
                    (cond Variants.LiteralVariantString (Features.dataTypeFeaturesSupportsStringValues vpFeatures))])
          floatTypes =
                  Sets.fromList (Optionals.givens [
                    cond Model.FloatTypeFloat32 (Features.dataTypeFeaturesSupportsFloatValues vpFeatures),
                    (cond Model.FloatTypeFloat64 (Features.dataTypeFeaturesSupportsDoubleValues vpFeatures))])
          integerTypes =
                  Sets.fromList (Optionals.givens [
                    cond Model.IntegerTypeInt32 (Features.dataTypeFeaturesSupportsIntegerValues vpFeatures),
                    (cond Model.IntegerTypeInt64 (Features.dataTypeFeaturesSupportsLongValues vpFeatures))])
          termVariants =
                  Sets.fromList (Optionals.givens [
                    cond Variants.TermVariantList supportsLists,
                    (cond Variants.TermVariantLiteral supportsLiterals),
                    (cond Variants.TermVariantMap supportsMaps),
                    (Optionals.given Variants.TermVariantOptional)])
          typeVariants =
                  Sets.fromList (Optionals.givens [
                    cond Variants.TypeVariantList supportsLists,
                    (cond Variants.TypeVariantLiteral supportsLiterals),
                    (cond Variants.TypeVariantMap supportsMaps),
                    (Optionals.given Variants.TypeVariantOptional),
                    (Optionals.given Variants.TypeVariantWrap)])
          typePredicate =
                  \typ ->
                    let dt = Strip.deannotateType typ
                    in case dt of
                      Model.TypeList v0 -> case (Strip.deannotateType v0) of
                        Model.TypeLiteral v1 -> case v1 of
                          Model.LiteralTypeBoolean -> Features.dataTypeFeaturesSupportsBooleanArrayValues vpFeatures
                          Model.LiteralTypeFloat v2 -> case v2 of
                            Model.FloatTypeFloat64 -> Features.dataTypeFeaturesSupportsDoubleArrayValues vpFeatures
                            Model.FloatTypeFloat32 -> Features.dataTypeFeaturesSupportsFloatArrayValues vpFeatures
                            _ -> False
                          Model.LiteralTypeInteger v2 -> case v2 of
                            Model.IntegerTypeUint8 -> Features.dataTypeFeaturesSupportsByteArrayValues vpFeatures
                            Model.IntegerTypeInt32 -> Features.dataTypeFeaturesSupportsIntegerArrayValues vpFeatures
                            Model.IntegerTypeInt64 -> Features.dataTypeFeaturesSupportsLongArrayValues vpFeatures
                            _ -> False
                          Model.LiteralTypeString -> Features.dataTypeFeaturesSupportsStringArrayValues vpFeatures
                          _ -> False
                        _ -> False
                      Model.TypeLiteral _ -> True
                      Model.TypeMap v0 -> Features.extraFeaturesSupportsMapKey extras (Model.mapTypeKeys v0)
                      Model.TypeWrap _ -> True
                      Model.TypeOptional v0 -> case (Strip.deannotateType v0) of
                        Model.TypeLiteral _ -> True
                        _ -> False
                      _ -> True
      in Coders.Language {
        Coders.languageName = name,
        Coders.languageConstraints = Coders.LanguageConstraints {
          Coders.languageConstraintsLiteralVariants = literalVariants,
          Coders.languageConstraintsFloatTypes = floatTypes,
          Coders.languageConstraintsIntegerTypes = integerTypes,
          Coders.languageConstraintsTermVariants = termVariants,
          Coders.languageConstraintsTypeVariants = typeVariants,
          Coders.languageConstraintsTypes = typePredicate},
        Coders.languageSupportedFeatures = (Sets.fromList [
          Coders.LanguageFeaturePartialApplication,
          Coders.LanguageFeatureNestedCaseStatements,
          Coders.LanguageFeatureNestedPolymorphicLetBindings]),
        Coders.languageCaseConventions = Coders.CaseConventions {
          Coders.caseConventionsConstant = Util.CaseConventionUpperSnake,
          Coders.caseConventionsDirectory = Util.CaseConventionLowerSnake,
          Coders.caseConventionsEnumValue = Util.CaseConventionPascal,
          Coders.caseConventionsField = Util.CaseConventionCamel,
          Coders.caseConventionsFile = Util.CaseConventionLowerSnake,
          Coders.caseConventionsModule = Util.CaseConventionLowerSnake,
          Coders.caseConventionsTerm = Util.CaseConventionCamel,
          Coders.caseConventionsTermVariable = Util.CaseConventionCamel,
          Coders.caseConventionsType = Util.CaseConventionPascal,
          Coders.caseConventionsTypeVariable = Util.CaseConventionPascal},
        Coders.languageDefaultFileExtension = (File.FileExtension "groovy")}