// Copyright 2024 The Hugo Authors. All rights reserved. // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. package predicate_test import ( "testing" qt "github.com/frankban/quicktest" "github.com/gobwas/glob" "github.com/gohugoio/hugo/common/predicate" ) func TestPredicate(t *testing.T) { c := qt.New(t) n := func() predicate.PR[int] { var pr predicate.PR[int] return pr } var pr predicate.PR[int] p := pr.BoolFunc() c.Assert(p(1), qt.IsFalse) pr = n().Or(intP1).Or(intP2) p = pr.BoolFunc() c.Assert(p(1), qt.IsTrue) // true || false c.Assert(p(2), qt.IsTrue) // false || true c.Assert(p(3), qt.IsFalse) // false || false pr = pr.And(intP3) p = pr.BoolFunc() c.Assert(p(2), qt.IsFalse) // true || true && false c.Assert(pr(10), qt.IsTrue) // true || true && true pr = pr.And(intP4) p = pr.BoolFunc() c.Assert(p(10), qt.IsTrue) // true || true && true && true c.Assert(p(2), qt.IsFalse) // true || true && false && false c.Assert(p(1), qt.IsFalse) // true || false && false && false c.Assert(p(3), qt.IsFalse) // false || false && false && false c.Assert(p(4), qt.IsFalse) // false || false && false && false c.Assert(p(42), qt.IsFalse) // false || false && false && false pr = n().And(intP1).And(intP2).And(intP3).And(intP4) p = pr.BoolFunc() c.Assert(p(1), qt.IsFalse) c.Assert(p(2), qt.IsFalse) c.Assert(p(10), qt.IsTrue) pr = n().And(intP1).And(intP2).And(intP3).And(intP4) p = pr.BoolFunc() c.Assert(p(1), qt.IsFalse) c.Assert(p(2), qt.IsFalse) c.Assert(p(10), qt.IsTrue) pr = n().Or(intP1).Or(intP2).Or(intP3) p = pr.BoolFunc() c.Assert(p(1), qt.IsTrue) c.Assert(p(10), qt.IsTrue) c.Assert(p(4), qt.IsFalse) } func TestFilter(t *testing.T) { c := qt.New(t) var p predicate.PR[int] p = p.Or(intP1).Or(intP2) ints := []int{1, 2, 3, 4, 1, 6, 7, 8, 2} c.Assert(p.Filter(ints), qt.DeepEquals, []int{1, 2, 1, 2}) c.Assert(ints, qt.DeepEquals, []int{1, 2, 1, 2, 1, 6, 7, 8, 2}) } func TestFilterCopy(t *testing.T) { c := qt.New(t) var p predicate.PR[int] p = p.Or(intP1).Or(intP2) ints := []int{1, 2, 3, 4, 1, 6, 7, 8, 2} c.Assert(p.FilterCopy(ints), qt.DeepEquals, []int{1, 2, 1, 2}) c.Assert(ints, qt.DeepEquals, []int{1, 2, 3, 4, 1, 6, 7, 8, 2}) } var intP1 = func(i int) predicate.Match { if i == 10 { return predicate.True } return predicate.BoolMatch(i == 1) } var intP2 = func(i int) predicate.Match { if i == 10 { return predicate.True } return predicate.BoolMatch(i == 2) } var intP3 = func(i int) predicate.Match { if i == 10 { return predicate.True } return predicate.BoolMatch(i == 3) } var intP4 = func(i int) predicate.Match { if i == 10 { return predicate.True } return predicate.BoolMatch(i == 4) } func TestNewStringPredicateFromGlobs(t *testing.T) { c := qt.New(t) getGlob := func(pattern string) (glob.Glob, error) { return glob.Compile(pattern) } n := func(patterns ...string) predicate.P[string] { p, err := predicate.NewStringPredicateFromGlobs(patterns, getGlob) c.Assert(err, qt.IsNil) return p } m := n("a", "! ab*", "abc") c.Assert(m("a"), qt.IsTrue) c.Assert(m("ab"), qt.IsFalse) c.Assert(m("abc"), qt.IsFalse) m = n() c.Assert(m("anything"), qt.IsFalse) } func BenchmarkPredicate(b *testing.B) { b.Run("and or no match", func(b *testing.B) { var p predicate.PR[int] = intP1 p = p.And(intP2).Or(intP3) for b.Loop() { _ = p(3).OK() } }) b.Run("and and no match", func(b *testing.B) { var p predicate.PR[int] = intP1 p = p.And(intP2) for b.Loop() { _ = p(3).OK() } }) b.Run("and and match", func(b *testing.B) { var p predicate.PR[int] = intP1 p = p.And(intP2) for b.Loop() { _ = p(10).OK() } }) b.Run("or or match", func(b *testing.B) { var p predicate.PR[int] = intP1 p = p.Or(intP2).Or(intP3) for b.Loop() { _ = p(2).OK() } }) }