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* fix: initial checkin of v2 Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: slowly migrate IO Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: migrate MonadTraverseArray and TraverseArray Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: migrate traversal Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: complete migration of IO Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: migrate ioeither Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: refactorY Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: next step in migration Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: adjust IO generation code Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: get rid of more IO methods Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: get rid of more IO * fix: convert iooption Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: convert reader Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: convert a bit of reader Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: new build script Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: cleanup Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: reformat Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: simplify Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: some cleanup Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: adjust Pair to Haskell semantic Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: documentation and testcases Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: some performance optimizations Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: remove coverage Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> * fix: better doc Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com> --------- Signed-off-by: Dr. Carsten Leue <carsten.leue@de.ibm.com>
112 lines
3.7 KiB
Go
112 lines
3.7 KiB
Go
// Copyright (c) 2025 IBM Corp.
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// All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package option
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import (
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F "github.com/IBM/fp-go/v2/function"
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M "github.com/IBM/fp-go/v2/monoid"
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S "github.com/IBM/fp-go/v2/semigroup"
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)
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// Semigroup returns a function that lifts a Semigroup over type A to a Semigroup over Option[A].
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// The resulting semigroup combines two Options according to these rules:
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// - If both are Some, concatenates their values using the provided Semigroup
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// - If one is None, returns the other
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// - If both are None, returns None
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//
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// Example:
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//
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// intSemigroup := semigroup.MakeSemigroup(func(a, b int) int { return a + b })
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// optSemigroup := Semigroup[int]()(intSemigroup)
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// optSemigroup.Concat(Some(2), Some(3)) // Some(5)
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// optSemigroup.Concat(Some(2), None[int]()) // Some(2)
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// optSemigroup.Concat(None[int](), Some(3)) // Some(3)
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func Semigroup[A any]() func(S.Semigroup[A]) S.Semigroup[Option[A]] {
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return func(s S.Semigroup[A]) S.Semigroup[Option[A]] {
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concat := s.Concat
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return S.MakeSemigroup(
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func(x, y Option[A]) Option[A] {
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return MonadFold(x, F.Constant(y), func(left A) Option[A] {
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return MonadFold(y, F.Constant(x), func(right A) Option[A] {
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return Some(concat(left, right))
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})
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})
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},
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)
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}
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}
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// Monoid returns a function that lifts a Semigroup over type A to a Monoid over Option[A].
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// The monoid returns the left-most non-None value. If both operands are Some, their inner
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// values are concatenated using the provided Semigroup. The empty value is None.
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//
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// Truth table:
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//
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// | x | y | concat(x, y) |
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// | ------- | ------- | ------------------ |
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// | none | none | none |
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// | some(a) | none | some(a) |
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// | none | some(b) | some(b) |
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// | some(a) | some(b) | some(concat(a, b)) |
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//
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// Example:
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//
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// intSemigroup := semigroup.MakeSemigroup(func(a, b int) int { return a + b })
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// optMonoid := Monoid[int]()(intSemigroup)
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// optMonoid.Concat(Some(2), Some(3)) // Some(5)
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// optMonoid.Empty() // None
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func Monoid[A any]() func(S.Semigroup[A]) M.Monoid[Option[A]] {
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sg := Semigroup[A]()
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return func(s S.Semigroup[A]) M.Monoid[Option[A]] {
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return M.MakeMonoid(sg(s).Concat, None[A]())
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}
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}
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// AlternativeMonoid creates a Monoid for Option[A] using the alternative semantics.
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// This combines the applicative functor structure with the alternative (Alt) operation.
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//
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// Example:
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//
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// intMonoid := monoid.MakeMonoid(func(a, b int) int { return a + b }, 0)
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// optMonoid := AlternativeMonoid(intMonoid)
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// result := optMonoid.Concat(Some(2), Some(3)) // Some(5)
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func AlternativeMonoid[A any](m M.Monoid[A]) M.Monoid[Option[A]] {
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return M.AlternativeMonoid(
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Of[A],
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MonadMap[A, func(A) A],
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MonadAp[A, A],
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MonadAlt[A],
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m,
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)
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}
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// AltMonoid creates a Monoid for Option[A] using the Alt operation.
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// This monoid returns the first Some value, or None if both are None.
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// The empty value is None.
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//
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// Example:
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//
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// optMonoid := AltMonoid[int]()
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// optMonoid.Concat(Some(2), Some(3)) // Some(2) - returns first Some
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// optMonoid.Concat(None[int](), Some(3)) // Some(3)
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// optMonoid.Empty() // None
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func AltMonoid[A any]() M.Monoid[Option[A]] {
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return M.AltMonoid(
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None[A],
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MonadAlt[A],
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)
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}
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