2024-03-11 22:22:53 +08:00
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using Canon.Core.Enums;
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using Canon.Core.GrammarParser;
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using Canon.Core.LexicalParser;
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using Xunit.Abstractions;
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namespace Canon.Tests.GrammarParserTests;
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public class SimpleGrammarWithEmptyTests(ITestOutputHelper testOutputHelper)
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{
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/// <summary>
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/// 带有空产生式的简单语法(课后题4.18)
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/// S -> A
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/// A -> BA | ε
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/// B -> aB | a
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/// 为了方便测试指定
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/// A ProgramStruct
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/// B ProgramBody
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/// a Identifier
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/// </summary>
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// private readonly ITestOutputHelper _testOutputHelper;
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private readonly ITestOutputHelper _testOutputHelper = testOutputHelper;
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private static readonly Dictionary<NonTerminator, List<List<TerminatorBase>>> s_simpleGrammar = new()
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{
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{
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new NonTerminator(NonTerminatorType.StartNonTerminator), [
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[new NonTerminator(NonTerminatorType.ProgramStruct)]
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]
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},
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{
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new NonTerminator(NonTerminatorType.ProgramStruct), [
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[
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new NonTerminator(NonTerminatorType.ProgramBody),
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new NonTerminator(NonTerminatorType.ProgramStruct)
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],
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[Terminator.EmptyTerminator]
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]
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},
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{
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new NonTerminator(NonTerminatorType.ProgramBody), [
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[
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Terminator.IdentifierTerminator,
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new NonTerminator(NonTerminatorType.ProgramBody)
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],
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[Terminator.IdentifierTerminator]
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]
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}
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};
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[Fact]
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public void FirstSetTest()
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{
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GrammarBuilder builder = new()
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{
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Generators = s_simpleGrammar, Begin = new NonTerminator(NonTerminatorType.StartNonTerminator)
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};
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builder.Build();
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Assert.Contains(builder.FirstSet, pair =>
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{
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if (pair.Key == new NonTerminator(NonTerminatorType.StartNonTerminator))
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{
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Assert.Equal(2, pair.Value.Count);
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Assert.Contains(Terminator.IdentifierTerminator, pair.Value);
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Assert.Contains(Terminator.EmptyTerminator, pair.Value);
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return true;
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}
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return false;
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});
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Assert.Contains(builder.FirstSet, pair =>
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{
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if (pair.Key == new NonTerminator(NonTerminatorType.ProgramStruct))
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{
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Assert.Equal(2, pair.Value.Count);
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Assert.Contains(Terminator.IdentifierTerminator, pair.Value);
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Assert.Contains(Terminator.EmptyTerminator, pair.Value);
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return true;
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}
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return true;
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});
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Assert.Contains(builder.FirstSet, pair =>
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{
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if (pair.Key == new NonTerminator(NonTerminatorType.ProgramBody))
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{
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Assert.Single(pair.Value);
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Assert.Contains(Terminator.IdentifierTerminator, pair.Value);
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return true;
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}
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return false;
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});
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}
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[Fact]
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public void StatesTest()
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{
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GrammarBuilder builder = new()
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{
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Generators = s_simpleGrammar, Begin = new NonTerminator(NonTerminatorType.StartNonTerminator)
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};
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Grammar grammar = builder.Build();
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Assert.Equal(6, builder.Automation.Count);
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Assert.Contains(new NonTerminator(NonTerminatorType.ProgramStruct), grammar.BeginState.Transformer.Keys);
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Assert.Contains(new NonTerminator(NonTerminatorType.ProgramBody), grammar.BeginState.Transformer.Keys);
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Assert.Contains(Terminator.IdentifierTerminator, grammar.BeginState.Transformer.Keys);
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Assert.Equal(7, grammar.BeginState.Expressions.Count);
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_testOutputHelper.WriteLine("--- 0 ---");
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_testOutputHelper.WriteLine(grammar.BeginState.ToString());
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LrState state1 =
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grammar.BeginState.Transformer[new NonTerminator(NonTerminatorType.ProgramStruct)];
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Assert.Single(state1.Expressions);
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_testOutputHelper.WriteLine("--- 1 ---");
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_testOutputHelper.WriteLine(state1.ToString());
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LrState state2 =
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grammar.BeginState.Transformer[new NonTerminator(NonTerminatorType.ProgramBody)];
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Assert.Contains(new NonTerminator(NonTerminatorType.ProgramStruct), state2.Transformer.Keys);
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Assert.Contains(new NonTerminator(NonTerminatorType.ProgramBody), state2.Transformer.Keys);
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Assert.Contains(Terminator.IdentifierTerminator, state2.Transformer.Keys);
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Assert.Equal(7, state2.Expressions.Count);
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_testOutputHelper.WriteLine("--- 2 ---");
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_testOutputHelper.WriteLine(state2.ToString());
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LrState state3 =
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grammar.BeginState.Transformer[Terminator.IdentifierTerminator];
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Assert.Contains(new NonTerminator(NonTerminatorType.ProgramBody), state3.Transformer.Keys);
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Assert.Contains(Terminator.IdentifierTerminator, state3.Transformer.Keys);
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Assert.Equal(8, state3.Expressions.Count);
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_testOutputHelper.WriteLine("--- 3 ---");
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_testOutputHelper.WriteLine(state3.ToString());
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LrState state4 = state2.Transformer[new NonTerminator(NonTerminatorType.ProgramStruct)];
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Assert.Empty(state4.Transformer);
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Assert.Single(state4.Expressions);
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_testOutputHelper.WriteLine("--- 4 ---");
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_testOutputHelper.WriteLine(state4.ToString());
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LrState state5 = state3.Transformer[new NonTerminator(NonTerminatorType.ProgramBody)];
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Assert.Empty(state5.Transformer);
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Assert.Equal(2, state5.Expressions.Count);
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_testOutputHelper.WriteLine("--- 5 ---");
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_testOutputHelper.WriteLine(state5.ToString());
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}
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[Fact]
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public void AnalyseSingleSentenceTest()
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{
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GrammarBuilder builder = new()
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{
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Generators = s_simpleGrammar, Begin = new NonTerminator(NonTerminatorType.StartNonTerminator)
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};
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Grammar grammar = builder.Build();
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List<SemanticToken> tokens =
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[
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new IdentifierSemanticToken { LinePos = 0, CharacterPos = 0, LiteralValue = "a" },
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new IdentifierSemanticToken { LinePos = 0, CharacterPos = 0, LiteralValue = "a" },
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SemanticToken.End
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];
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SyntaxNode root = grammar.Analyse(tokens);
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Assert.False(root.IsTerminated);
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Assert.Equal(NonTerminatorType.ProgramStruct, root.GetNonTerminatorType());
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Assert.Equal(7, root.Count());
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}
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}
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