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317 lines
13 KiB
C#
317 lines
13 KiB
C#
using System;
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using Microsoft.CodeAnalysis;
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using Microsoft.CodeAnalysis.CSharp;
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using System.IO;
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using System.Linq;
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using Semmle.Extraction.CSharp.Populators;
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using System.Collections.Generic;
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using System.Threading.Tasks;
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using System.Diagnostics;
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using Semmle.Util.Logging;
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namespace Semmle.Extraction.CSharp
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{
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/// <summary>
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/// Encapsulates a C# analysis task.
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/// </summary>
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public class Analyser : IDisposable
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{
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protected Extraction.Extractor? extractor;
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protected CSharpCompilation? compilation;
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protected Layout? layout;
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protected CommonOptions? options;
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private readonly object progressMutex = new object();
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// The bulk of the extraction work, potentially executed in parallel.
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protected readonly List<Action> extractionTasks = new List<Action>();
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private int taskCount = 0;
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private readonly Stopwatch stopWatch = new Stopwatch();
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private readonly IProgressMonitor progressMonitor;
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public ILogger Logger { get; }
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protected readonly bool addAssemblyTrapPrefix;
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public PathTransformer PathTransformer { get; }
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protected Analyser(IProgressMonitor pm, ILogger logger, bool addAssemblyTrapPrefix, PathTransformer pathTransformer)
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{
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Logger = logger;
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this.addAssemblyTrapPrefix = addAssemblyTrapPrefix;
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Logger.Log(Severity.Info, "EXTRACTION STARTING at {0}", DateTime.Now);
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stopWatch.Start();
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progressMonitor = pm;
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PathTransformer = pathTransformer;
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}
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/// <summary>
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/// Perform an analysis on a source file/syntax tree.
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/// </summary>
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/// <param name="tree">Syntax tree to analyse.</param>
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public void AnalyseTree(SyntaxTree tree)
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{
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extractionTasks.Add(() => DoExtractTree(tree));
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}
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#nullable disable warnings
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/// <summary>
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/// Enqueue all reference analysis tasks.
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/// </summary>
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public void AnalyseReferences()
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{
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foreach (var assembly in compilation.References.OfType<PortableExecutableReference>())
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{
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// CIL first - it takes longer.
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if (options.CIL)
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extractionTasks.Add(() => DoExtractCIL(assembly));
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extractionTasks.Add(() => DoAnalyseReferenceAssembly(assembly));
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}
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}
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/// <summary>
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/// Constructs the map from assembly string to its filename.
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///
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/// Roslyn doesn't record the relationship between a filename and its assembly
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/// information, so we need to retrieve this information manually.
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/// </summary>
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protected void SetReferencePaths()
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{
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foreach (var reference in compilation.References.OfType<PortableExecutableReference>())
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{
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try
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{
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var refPath = reference.FilePath!;
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/* This method is significantly faster and more lightweight than using
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* System.Reflection.Assembly.ReflectionOnlyLoadFrom. It is also allows
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* loading the same assembly from different locations.
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*/
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using var pereader = new System.Reflection.PortableExecutable.PEReader(new FileStream(refPath, FileMode.Open, FileAccess.Read, FileShare.Read));
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var metadata = pereader.GetMetadata();
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string assemblyIdentity;
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unsafe
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{
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var reader = new System.Reflection.Metadata.MetadataReader(metadata.Pointer, metadata.Length);
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var def = reader.GetAssemblyDefinition();
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assemblyIdentity = reader.GetString(def.Name) + " " + def.Version;
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}
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extractor.SetAssemblyFile(assemblyIdentity, refPath);
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}
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catch (Exception ex) // lgtm[cs/catch-of-all-exceptions]
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{
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extractor.Message(new Message("Exception reading reference file", reference.FilePath, null, ex.StackTrace));
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}
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}
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}
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/// <summary>
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/// Extract an assembly to a new trap file.
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/// If the trap file exists, skip extraction to avoid duplicating
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/// extraction within the snapshot.
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/// </summary>
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/// <param name="r">The assembly to extract.</param>
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private void DoAnalyseReferenceAssembly(PortableExecutableReference r)
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{
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try
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{
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var stopwatch = new Stopwatch();
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stopwatch.Start();
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var assemblyPath = r.FilePath!;
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var transformedAssemblyPath = PathTransformer.Transform(assemblyPath);
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var projectLayout = layout.LookupProjectOrDefault(transformedAssemblyPath);
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using var trapWriter = projectLayout.CreateTrapWriter(Logger, transformedAssemblyPath, options.TrapCompression, discardDuplicates: true);
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var skipExtraction = options.Cache && File.Exists(trapWriter.TrapFile);
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if (!skipExtraction)
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{
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/* Note on parallel builds:
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*
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* The trap writer and source archiver both perform atomic moves
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* of the file to the final destination.
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*
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* If the same source file or trap file are generated concurrently
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* (by different parallel invocations of the extractor), then
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* last one wins.
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*
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* Specifically, if two assemblies are analysed concurrently in a build,
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* then there is a small amount of duplicated work but the output should
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* still be correct.
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*/
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// compilation.Clone() reduces memory footprint by allowing the symbols
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// in c to be garbage collected.
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Compilation c = compilation.Clone();
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if (c.GetAssemblyOrModuleSymbol(r) is IAssemblySymbol assembly)
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{
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var cx = new Context(extractor, c, trapWriter, new AssemblyScope(assembly, assemblyPath), addAssemblyTrapPrefix);
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foreach (var module in assembly.Modules)
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{
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AnalyseNamespace(cx, module.GlobalNamespace);
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}
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Entities.Attribute.ExtractAttributes(cx, assembly, Entities.Assembly.Create(cx, assembly.GetSymbolLocation()));
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cx.PopulateAll();
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}
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}
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ReportProgress(assemblyPath, trapWriter.TrapFile, stopwatch.Elapsed, skipExtraction ? AnalysisAction.UpToDate : AnalysisAction.Extracted);
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}
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catch (Exception ex) // lgtm[cs/catch-of-all-exceptions]
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{
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Logger.Log(Severity.Error, " Unhandled exception analyzing {0}: {1}", r.FilePath, ex);
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}
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}
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private void DoExtractCIL(PortableExecutableReference r)
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{
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var stopwatch = new Stopwatch();
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stopwatch.Start();
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CIL.Analyser.ExtractCIL(layout, r.FilePath!, Logger, !options.Cache, options.PDB, options.TrapCompression, out var trapFile, out var extracted);
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stopwatch.Stop();
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ReportProgress(r.FilePath, trapFile, stopwatch.Elapsed, extracted ? AnalysisAction.Extracted : AnalysisAction.UpToDate);
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}
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private void DoExtractTree(SyntaxTree tree)
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{
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try
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{
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var stopwatch = new Stopwatch();
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stopwatch.Start();
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var sourcePath = tree.FilePath;
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var transformedSourcePath = PathTransformer.Transform(sourcePath);
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var projectLayout = layout.LookupProjectOrNull(transformedSourcePath);
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var excluded = projectLayout is null;
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var trapPath = excluded ? "" : projectLayout!.GetTrapPath(Logger, transformedSourcePath, options.TrapCompression);
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var upToDate = false;
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if (!excluded)
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{
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// compilation.Clone() is used to allow symbols to be garbage collected.
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using var trapWriter = projectLayout!.CreateTrapWriter(Logger, transformedSourcePath, options.TrapCompression, discardDuplicates: false);
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upToDate = options.Fast && FileIsUpToDate(sourcePath, trapWriter.TrapFile);
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if (!upToDate)
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{
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var cx = new Context(extractor, compilation.Clone(), trapWriter, new SourceScope(tree), addAssemblyTrapPrefix);
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// Ensure that the file itself is populated in case the source file is totally empty
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var root = tree.GetRoot();
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Entities.File.Create(cx, root.SyntaxTree.FilePath);
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var csNode = (CSharpSyntaxNode)root;
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var directiveVisitor = new DirectiveVisitor(cx);
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csNode.Accept(directiveVisitor);
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foreach (var branch in directiveVisitor.BranchesTaken)
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{
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cx.TrapStackSuffix.Add(branch);
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}
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csNode.Accept(new CompilationUnitVisitor(cx));
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cx.PopulateAll();
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CommentPopulator.ExtractCommentBlocks(cx, cx.CommentGenerator);
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cx.PopulateAll();
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}
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}
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ReportProgress(sourcePath, trapPath, stopwatch.Elapsed, excluded
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? AnalysisAction.Excluded
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: upToDate
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? AnalysisAction.UpToDate
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: AnalysisAction.Extracted);
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}
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catch (Exception ex) // lgtm[cs/catch-of-all-exceptions]
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{
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extractor.Message(new Message($"Unhandled exception processing syntax tree. {ex.Message}", tree.FilePath, null, ex.StackTrace));
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}
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}
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#nullable restore warnings
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private static bool FileIsUpToDate(string src, string dest)
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{
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return File.Exists(dest) &&
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File.GetLastWriteTime(dest) >= File.GetLastWriteTime(src);
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}
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private void AnalyseNamespace(Context cx, INamespaceSymbol ns)
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{
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foreach (var memberNamespace in ns.GetNamespaceMembers())
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{
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AnalyseNamespace(cx, memberNamespace);
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}
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foreach (var memberType in ns.GetTypeMembers())
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{
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Entities.Type.Create(cx, memberType).ExtractRecursive();
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}
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}
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private void ReportProgress(string src, string output, TimeSpan time, AnalysisAction action)
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{
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lock (progressMutex)
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progressMonitor.Analysed(++taskCount, extractionTasks.Count, src, output, time, action);
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}
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/// <summary>
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/// Run all extraction tasks.
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/// </summary>
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/// <param name="numberOfThreads">The number of threads to use.</param>
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public void PerformExtraction(int numberOfThreads)
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{
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Parallel.Invoke(
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new ParallelOptions { MaxDegreeOfParallelism = numberOfThreads },
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extractionTasks.ToArray());
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}
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public virtual void Dispose()
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{
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stopWatch.Stop();
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Logger.Log(Severity.Info, " Peak working set = {0} MB", Process.GetCurrentProcess().PeakWorkingSet64 / (1024 * 1024));
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if (TotalErrors > 0)
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Logger.Log(Severity.Info, "EXTRACTION FAILED with {0} error{1} in {2}", TotalErrors, TotalErrors == 1 ? "" : "s", stopWatch.Elapsed);
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else
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Logger.Log(Severity.Info, "EXTRACTION SUCCEEDED in {0}", stopWatch.Elapsed);
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Logger.Dispose();
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}
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/// <summary>
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/// Number of errors encountered during extraction.
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/// </summary>
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private int ExtractorErrors => extractor?.Errors ?? 0;
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/// <summary>
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/// Number of errors encountered by the compiler.
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/// </summary>
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public int CompilationErrors { get; set; }
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/// <summary>
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/// Total number of errors reported.
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/// </summary>
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public int TotalErrors => CompilationErrors + ExtractorErrors;
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/// <summary>
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/// Logs information about the extractor.
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/// </summary>
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public void LogExtractorInfo(string extractorVersion)
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{
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Logger.Log(Severity.Info, " Extractor: {0}", Environment.GetCommandLineArgs().First());
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Logger.Log(Severity.Info, " Extractor version: {0}", extractorVersion);
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Logger.Log(Severity.Info, " Current working directory: {0}", Directory.GetCurrentDirectory());
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}
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}
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}
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