如何在C#中使用迭代器反向读取文本文件


87

我需要处理一个大文件,大约40万行和200M。但是有时我必须从头开始处理。如何在这里使用迭代器(收益率回报)?基本上,我不喜欢将所有内容加载到内存中。我知道在.NET中使用迭代器效率更高。



一种可能性是从末尾读取足够大的数量,然后使用String.LastIndexOf进行向后搜索“ \ r \ n”。
user34660

Answers:


136

除非您使用固定大小的编码(例如ASCII),否则向后读取文本文件确实很棘手。使用可变大小的编码(例如UTF-8)时,在获取数据时,您将继续检查是否在字符中间。

该框架没有内置任何内容,我怀疑您必须为每种可变宽度编码分别进行硬编码。

编辑:这已经过一些测试-但这并不是说它仍然没有一些细微的错误。它使用了MiscUtil的StreamUtil,但我在底部仅包括了必要的(新)方法。哦,它需要重构-您会看到一种很重的方法:

using System;
using System.Collections;
using System.Collections.Generic;
using System.IO;
using System.Text;

namespace MiscUtil.IO
{
    /// <summary>
    /// Takes an encoding (defaulting to UTF-8) and a function which produces a seekable stream
    /// (or a filename for convenience) and yields lines from the end of the stream backwards.
    /// Only single byte encodings, and UTF-8 and Unicode, are supported. The stream
    /// returned by the function must be seekable.
    /// </summary>
    public sealed class ReverseLineReader : IEnumerable<string>
    {
        /// <summary>
        /// Buffer size to use by default. Classes with internal access can specify
        /// a different buffer size - this is useful for testing.
        /// </summary>
        private const int DefaultBufferSize = 4096;

        /// <summary>
        /// Means of creating a Stream to read from.
        /// </summary>
        private readonly Func<Stream> streamSource;

        /// <summary>
        /// Encoding to use when converting bytes to text
        /// </summary>
        private readonly Encoding encoding;

        /// <summary>
        /// Size of buffer (in bytes) to read each time we read from the
        /// stream. This must be at least as big as the maximum number of
        /// bytes for a single character.
        /// </summary>
        private readonly int bufferSize;

        /// <summary>
        /// Function which, when given a position within a file and a byte, states whether
        /// or not the byte represents the start of a character.
        /// </summary>
        private Func<long,byte,bool> characterStartDetector;

        /// <summary>
        /// Creates a LineReader from a stream source. The delegate is only
        /// called when the enumerator is fetched. UTF-8 is used to decode
        /// the stream into text.
        /// </summary>
        /// <param name="streamSource">Data source</param>
        public ReverseLineReader(Func<Stream> streamSource)
            : this(streamSource, Encoding.UTF8)
        {
        }

        /// <summary>
        /// Creates a LineReader from a filename. The file is only opened
        /// (or even checked for existence) when the enumerator is fetched.
        /// UTF8 is used to decode the file into text.
        /// </summary>
        /// <param name="filename">File to read from</param>
        public ReverseLineReader(string filename)
            : this(filename, Encoding.UTF8)
        {
        }

        /// <summary>
        /// Creates a LineReader from a filename. The file is only opened
        /// (or even checked for existence) when the enumerator is fetched.
        /// </summary>
        /// <param name="filename">File to read from</param>
        /// <param name="encoding">Encoding to use to decode the file into text</param>
        public ReverseLineReader(string filename, Encoding encoding)
            : this(() => File.OpenRead(filename), encoding)
        {
        }

        /// <summary>
        /// Creates a LineReader from a stream source. The delegate is only
        /// called when the enumerator is fetched.
        /// </summary>
        /// <param name="streamSource">Data source</param>
        /// <param name="encoding">Encoding to use to decode the stream into text</param>
        public ReverseLineReader(Func<Stream> streamSource, Encoding encoding)
            : this(streamSource, encoding, DefaultBufferSize)
        {
        }

        internal ReverseLineReader(Func<Stream> streamSource, Encoding encoding, int bufferSize)
        {
            this.streamSource = streamSource;
            this.encoding = encoding;
            this.bufferSize = bufferSize;
            if (encoding.IsSingleByte)
            {
                // For a single byte encoding, every byte is the start (and end) of a character
                characterStartDetector = (pos, data) => true;
            }
            else if (encoding is UnicodeEncoding)
            {
                // For UTF-16, even-numbered positions are the start of a character.
                // TODO: This assumes no surrogate pairs. More work required
                // to handle that.
                characterStartDetector = (pos, data) => (pos & 1) == 0;
            }
            else if (encoding is UTF8Encoding)
            {
                // For UTF-8, bytes with the top bit clear or the second bit set are the start of a character
                // See http://www.cl.cam.ac.uk/~mgk25/unicode.html
                characterStartDetector = (pos, data) => (data & 0x80) == 0 || (data & 0x40) != 0;
            }
            else
            {
                throw new ArgumentException("Only single byte, UTF-8 and Unicode encodings are permitted");
            }
        }

        /// <summary>
        /// Returns the enumerator reading strings backwards. If this method discovers that
        /// the returned stream is either unreadable or unseekable, a NotSupportedException is thrown.
        /// </summary>
        public IEnumerator<string> GetEnumerator()
        {
            Stream stream = streamSource();
            if (!stream.CanSeek)
            {
                stream.Dispose();
                throw new NotSupportedException("Unable to seek within stream");
            }
            if (!stream.CanRead)
            {
                stream.Dispose();
                throw new NotSupportedException("Unable to read within stream");
            }
            return GetEnumeratorImpl(stream);
        }

        private IEnumerator<string> GetEnumeratorImpl(Stream stream)
        {
            try
            {
                long position = stream.Length;

                if (encoding is UnicodeEncoding && (position & 1) != 0)
                {
                    throw new InvalidDataException("UTF-16 encoding provided, but stream has odd length.");
                }

                // Allow up to two bytes for data from the start of the previous
                // read which didn't quite make it as full characters
                byte[] buffer = new byte[bufferSize + 2];
                char[] charBuffer = new char[encoding.GetMaxCharCount(buffer.Length)];
                int leftOverData = 0;
                String previousEnd = null;
                // TextReader doesn't return an empty string if there's line break at the end
                // of the data. Therefore we don't return an empty string if it's our *first*
                // return.
                bool firstYield = true;

                // A line-feed at the start of the previous buffer means we need to swallow
                // the carriage-return at the end of this buffer - hence this needs declaring
                // way up here!
                bool swallowCarriageReturn = false;

                while (position > 0)
                {
                    int bytesToRead = Math.Min(position > int.MaxValue ? bufferSize : (int)position, bufferSize);

                    position -= bytesToRead;
                    stream.Position = position;
                    StreamUtil.ReadExactly(stream, buffer, bytesToRead);
                    // If we haven't read a full buffer, but we had bytes left
                    // over from before, copy them to the end of the buffer
                    if (leftOverData > 0 && bytesToRead != bufferSize)
                    {
                        // Buffer.BlockCopy doesn't document its behaviour with respect
                        // to overlapping data: we *might* just have read 7 bytes instead of
                        // 8, and have two bytes to copy...
                        Array.Copy(buffer, bufferSize, buffer, bytesToRead, leftOverData);
                    }
                    // We've now *effectively* read this much data.
                    bytesToRead += leftOverData;

                    int firstCharPosition = 0;
                    while (!characterStartDetector(position + firstCharPosition, buffer[firstCharPosition]))
                    {
                        firstCharPosition++;
                        // Bad UTF-8 sequences could trigger this. For UTF-8 we should always
                        // see a valid character start in every 3 bytes, and if this is the start of the file
                        // so we've done a short read, we should have the character start
                        // somewhere in the usable buffer.
                        if (firstCharPosition == 3 || firstCharPosition == bytesToRead)
                        {
                            throw new InvalidDataException("Invalid UTF-8 data");
                        }
                    }
                    leftOverData = firstCharPosition;

                    int charsRead = encoding.GetChars(buffer, firstCharPosition, bytesToRead - firstCharPosition, charBuffer, 0);
                    int endExclusive = charsRead;

                    for (int i = charsRead - 1; i >= 0; i--)
                    {
                        char lookingAt = charBuffer[i];
                        if (swallowCarriageReturn)
                        {
                            swallowCarriageReturn = false;
                            if (lookingAt == '\r')
                            {
                                endExclusive--;
                                continue;
                            }
                        }
                        // Anything non-line-breaking, just keep looking backwards
                        if (lookingAt != '\n' && lookingAt != '\r')
                        {
                            continue;
                        }
                        // End of CRLF? Swallow the preceding CR
                        if (lookingAt == '\n')
                        {
                            swallowCarriageReturn = true;
                        }
                        int start = i + 1;
                        string bufferContents = new string(charBuffer, start, endExclusive - start);
                        endExclusive = i;
                        string stringToYield = previousEnd == null ? bufferContents : bufferContents + previousEnd;
                        if (!firstYield || stringToYield.Length != 0)
                        {
                            yield return stringToYield;
                        }
                        firstYield = false;
                        previousEnd = null;
                    }

                    previousEnd = endExclusive == 0 ? null : (new string(charBuffer, 0, endExclusive) + previousEnd);

                    // If we didn't decode the start of the array, put it at the end for next time
                    if (leftOverData != 0)
                    {
                        Buffer.BlockCopy(buffer, 0, buffer, bufferSize, leftOverData);
                    }
                }
                if (leftOverData != 0)
                {
                    // At the start of the final buffer, we had the end of another character.
                    throw new InvalidDataException("Invalid UTF-8 data at start of stream");
                }
                if (firstYield && string.IsNullOrEmpty(previousEnd))
                {
                    yield break;
                }
                yield return previousEnd ?? "";
            }
            finally
            {
                stream.Dispose();
            }
        }

        IEnumerator IEnumerable.GetEnumerator()
        {
            return GetEnumerator();
        }
    }
}


// StreamUtil.cs:
public static class StreamUtil
{
    public static void ReadExactly(Stream input, byte[] buffer, int bytesToRead)
    {
        int index = 0;
        while (index < bytesToRead)
        {
            int read = input.Read(buffer, index, bytesToRead - index);
            if (read == 0)
            {
                throw new EndOfStreamException
                    (String.Format("End of stream reached with {0} byte{1} left to read.",
                                   bytesToRead - index,
                                   bytesToRead - index == 1 ? "s" : ""));
            }
            index += read;
        }
    }
}

反馈非常欢迎。这很有趣:)


Righto-我计划在大约一个小时内开始。我应该能够支持单字节编码,Encoding.Unicode和Encoding.UTF8。不支持其他dobule字节编码。我期望测试会很痛苦:(
Jon Skeet

4
哇!我知道它已经使用了三年多了,但是这段代码令人震惊!谢谢!!(ps我刚刚将File.OpenRead(filename)更改为File.Open(filename,FileMode.Open,FileAccess.Read,FileShare.ReadWrite),以使迭代器读取已打开的文件
Stefano,

1
@GrimaceofDespair:更多“因为那样的话我将不得不设计继承,这在设计时间和未来灵活性方面都增加了非常可观的成本”。通常,甚至还不清楚如何合理地将继承用于一种类型-最好在发现这种清晰度之前禁止使用它,IMO。
乔恩·斯基特

3
@rahularyansharma:我喜欢将问题分解为正交的方面。一旦您确定了如何打开文件,我希望我的代码对您有用。
乔恩·斯基特

1
如果有人希望能够与另一个进程共享文件,例如,当您想读取由父级打开以供写入的日志文件时,只需将File.OpenRead(filename)替换为:new FileStream(filename,FileMode)。打开,FileAccess.ReadWrite,FileShare.ReadWrite)
色域

9

注意:此方法无效(在EDIT中说明)

您可以使用File.ReadLines来获取行迭代器

foreach (var line in File.ReadLines(@"C:\temp\ReverseRead.txt").Reverse())
{
    if (noNeedToReadFurther)
        break;

    // process line here
    Console.WriteLine(line);
}

编辑:

阅读applejacks01的评论后,我运行了一些测试,看起来 .Reverse()确实加载了整个文件。

我曾经File.ReadLines()打印40MB文件的第一行,控制台应用程序的内存使用量是5MB。然后,用于File.ReadLines().Reverse()打印同一文件的最后一行-内存使用量为95MB

结论

无论“ Reverse()”在做什么,都不是读取大文件底部的好选择


3
我想知道对Reverse DOES的调用是否实际上将整个文件加载到内存中。是否需要首先建立Enumerable的终点?也就是说,在内部,该enumerable会完全枚举该文件以创建一个temp数组,然后将其反向,然后使用yield关键字逐一枚举,以便创建一个以相反顺序迭代的新Enumerable
applejacks01 '16

2
原始答案是错误的,但我在此处保留“已编辑”的答案,因为它可能会阻止其他人使用此方法。
罗曼·古德科夫

3

要创建文件迭代器,您可以执行以下操作:

编辑:

这是固定宽度的反向文件阅读器的固定版本:

public static IEnumerable<string> readFile()
{
    using (FileStream reader = new FileStream(@"c:\test.txt",FileMode.Open,FileAccess.Read))
    {
        int i=0;
        StringBuilder lineBuffer = new StringBuilder();
        int byteRead;
        while (-i < reader.Length)
        {
            reader.Seek(--i, SeekOrigin.End);
            byteRead = reader.ReadByte();
            if (byteRead == 10 && lineBuffer.Length > 0)
            {
                yield return Reverse(lineBuffer.ToString());
                lineBuffer.Remove(0, lineBuffer.Length);
            }
            lineBuffer.Append((char)byteRead);
        }
        yield return Reverse(lineBuffer.ToString());
        reader.Close();
    }
}

public static string Reverse(string str)
{
    char[] arr = new char[str.Length];
    for (int i = 0; i < str.Length; i++)
        arr[i] = str[str.Length - 1 - i];
    return new string(arr);
}

对于ISO-8859-1,这几乎是正确的,但是对于任何其他编码而言,这都不是正确的。编码使这个问题变得非常棘手:(
Jon Skeet

“接近于ISO-8859-1的正确性”是什么意思?还缺少什么?
Igor Zelaya

匹配“ \ r”,“ \ n”和“ \ r \ n”的操作不太正确,后者最终仅计为单个换行符。
乔恩·斯基特

1
它也永远不会产生空行-“ a \ n \ nb”应该产生“ a”,“”,“ b”
Jon Skeet

mmmmmm ...我仅在找到'\ n'(ASCII 10)时才产生lineBuffer。您是对的,我没有考虑accoun'\ r'。
Igor Zelaya

2

我将文件逐行放入列表中,然后使用List.Reverse();。

        StreamReader objReader = new StreamReader(filename);
        string sLine = "";
        ArrayList arrText = new ArrayList();

        while (sLine != null)
        {
            sLine = objReader.ReadLine();
            if (sLine != null)
                arrText.Add(sLine);
        }
        objReader.Close();


        arrText.Reverse();

        foreach (string sOutput in arrText)
        {

...


4
这不是大文件的最佳解决方案,因为您需要将其完全加载到RAM中。OP明确指定他不想完全加载它。
CodesInChaos

1

您可以一次向后读取一个字符并缓存所有字符,直到到达回车符和/或换行符为止。

然后,您反转所收集的字符串并将其屈服为一行。


4
但是很难一次向后读取一个字符的文件-因为您必须能够识别一个字符的开头。它的简单程度取决于编码。
乔恩·斯基特

1

我知道这篇文章已经很老了,但是由于我找不到如何使用投票最多的解决方案,我终于找到了这一点:这是我在VB和C#中以较低的内存成本找到的最佳答案

http://www.blakepell.com/2010-11-29-backward-file-reader-vb-csharp-source

希望我能帮上忙,因为我花了数小时才终于找到这篇文章!

[编辑]

这是c#代码:

//*********************************************************************************************************************************
//
//             Class:  BackwardReader
//      Initial Date:  11/29/2010
//     Last Modified:  11/29/2010
//     Programmer(s):  Original C# Source - the_real_herminator
//                     http://social.msdn.microsoft.com/forums/en-US/csharpgeneral/thread/9acdde1a-03cd-4018-9f87-6e201d8f5d09
//                     VB Converstion - Blake Pell
//
//*********************************************************************************************************************************

using System.Text;
using System.IO;
public class BackwardReader
{
    private string path;
    private FileStream fs = null;
    public BackwardReader(string path)
    {
        this.path = path;
        fs = new FileStream(path, FileMode.Open, FileAccess.Read, FileShare.ReadWrite);
        fs.Seek(0, SeekOrigin.End);
    }
    public string Readline()
    {
        byte[] line;
        byte[] text = new byte[1];
        long position = 0;
        int count;
        fs.Seek(0, SeekOrigin.Current);
        position = fs.Position;
        //do we have trailing rn?
        if (fs.Length > 1)
        {
            byte[] vagnretur = new byte[2];
            fs.Seek(-2, SeekOrigin.Current);
            fs.Read(vagnretur, 0, 2);
            if (ASCIIEncoding.ASCII.GetString(vagnretur).Equals("rn"))
            {
                //move it back
                fs.Seek(-2, SeekOrigin.Current);
                position = fs.Position;
            }
        }
        while (fs.Position > 0)
        {
            text.Initialize();
            //read one char
            fs.Read(text, 0, 1);
            string asciiText = ASCIIEncoding.ASCII.GetString(text);
            //moveback to the charachter before
            fs.Seek(-2, SeekOrigin.Current);
            if (asciiText.Equals("n"))
            {
                fs.Read(text, 0, 1);
                asciiText = ASCIIEncoding.ASCII.GetString(text);
                if (asciiText.Equals("r"))
                {
                    fs.Seek(1, SeekOrigin.Current);
                    break;
                }
            }
        }
        count = int.Parse((position - fs.Position).ToString());
        line = new byte[count];
        fs.Read(line, 0, count);
        fs.Seek(-count, SeekOrigin.Current);
        return ASCIIEncoding.ASCII.GetString(line);
    }
    public bool SOF
    {
        get
        {
            return fs.Position == 0;
        }
    }
    public void Close()
    {
        fs.Close();
    }
}

您应该在答案中包括链接中的相关部分,并添加该链接仅供参考,这样即使链接发生更改,您的答案仍会增加价值。
Thomas Flinkow

如果您有私有IDisposable字段,则也应该实现IDisposable,并正确处理这些字段。
thomasb

1

大型文件的非常快速的解决方案。使用带有Tail选项的powershell Get-Content cmdlet。调用powershell会带来一些开销,但是对于大文件来说,它毫无用处

using System.Management.Automation;

const string FILE_PATH = @"d:\temp\b_media_27_34_0000_25393.txt";
var ps = PowerShell.Create();
ps.AddCommand("Get-Content")
    .AddParameter("Path", FILE_PATH)
    .AddParameter("Tail", 1);
var psResults = ps.Invoke();
var lastLine = psResults.FirstOrDefault()?.BaseObject.ToString();

ps.Dispose();

所需的Powershell参考

C:\ Program Files(x86)\ Reference Assemblies \ Microsoft \ WindowsPowerShell \ 3.0 \ System.Management.Automation.dll


1

我也添加我的解决方案。在阅读了一些答案之后,没有什么适合我的情况了。我从后面逐字节读取,直到找到LineFeed,然后将收集的字节作为字符串重现,而没有使用buffering

用法:

var reader = new ReverseTextReader(path);
while (!reader.EndOfStream)
{
    Console.WriteLine(reader.ReadLine());  
}

实现方式:

public class ReverseTextReader
{
    private const int LineFeedLf = 10;
    private const int LineFeedCr = 13;
    private readonly Stream _stream;
    private readonly Encoding _encoding;

    public bool EndOfStream => _stream.Position == 0;

    public ReverseTextReader(Stream stream, Encoding encoding)
    {
        _stream = stream;
        _encoding = encoding;
        _stream.Position = _stream.Length;
    }

    public string ReadLine()
    {
        if (_stream.Position == 0) return null;

        var line = new List<byte>();
        var endOfLine = false;
        while (!endOfLine)
        {
            var b = _stream.ReadByteFromBehind();

            if (b == -1 || b == LineFeedLf)
            {
                endOfLine = true;
            } 
            line.Add(Convert.ToByte(b));
        }

        line.Reverse();
        return _encoding.GetString(line.ToArray());
    }
}

public static class StreamExtensions
{
    public static int ReadByteFromBehind(this Stream stream)
    {
        if (stream.Position == 0) return -1;

        stream.Position = stream.Position - 1;
        var value = stream.ReadByte();
        stream.Position = stream.Position - 1;
        return value;
    }
}

0

我想做类似的事情。这是我的代码。此类将创建包含大文件块的临时文件。这将避免内存膨胀。用户可以指定是否要撤消文件。因此,它将以相反的方式返回内容。

此类也可以用于在单个文件中写入大数据而不会浪费内存。

请提供反馈。

        using System;
        using System.Collections.Generic;
        using System.Diagnostics;
        using System.IO;
        using System.Linq;
        using System.Text;
        using System.Threading.Tasks;

        namespace BigFileService
        {    
            public class BigFileDumper
            {
                /// <summary>
                /// Buffer that will store the lines until it is full.
                /// Then it will dump it to temp files.
                /// </summary>
                public int CHUNK_SIZE = 1000;
                public bool ReverseIt { get; set; }
                public long TotalLineCount { get { return totalLineCount; } }
                private long totalLineCount;
                private int BufferCount = 0;
                private StreamWriter Writer;
                /// <summary>
                /// List of files that would store the chunks.
                /// </summary>
                private List<string> LstTempFiles;
                private string ParentDirectory;
                private char[] trimchars = { '/', '\\'};


                public BigFileDumper(string FolderPathToWrite)
                {
                    this.LstTempFiles = new List<string>();
                    this.ParentDirectory = FolderPathToWrite.TrimEnd(trimchars) + "\\" + "BIG_FILE_DUMP";
                    this.totalLineCount = 0;
                    this.BufferCount = 0;
                    this.Initialize();
                }

                private void Initialize()
                {
                    // Delete existing directory.
                    if (Directory.Exists(this.ParentDirectory))
                    {
                        Directory.Delete(this.ParentDirectory, true);
                    }

                    // Create a new directory.
                    Directory.CreateDirectory(this.ParentDirectory);
                }

                public void WriteLine(string line)
                {
                    if (this.BufferCount == 0)
                    {
                        string newFile = "DumpFile_" + LstTempFiles.Count();
                        LstTempFiles.Add(newFile);
                        Writer = new StreamWriter(this.ParentDirectory + "\\" + newFile);
                    }
                    // Keep on adding in the buffer as long as size is okay.
                    if (this.BufferCount < this.CHUNK_SIZE)
                    {
                        this.totalLineCount++; // main count
                        this.BufferCount++; // Chunk count.
                        Writer.WriteLine(line);
                    }
                    else
                    {
                        // Buffer is full, time to create a new file.
                        // Close the existing file first.
                        Writer.Close();
                        // Make buffer count 0 again.
                        this.BufferCount = 0;
                        this.WriteLine(line);
                    }
                }

                public void Close()
                {
                    if (Writer != null)
                        Writer.Close();
                }

                public string GetFullFile()
                {
                    if (LstTempFiles.Count <= 0)
                    {
                        Debug.Assert(false, "There are no files created.");
                        return "";
                    }
                    string returnFilename = this.ParentDirectory + "\\" + "FullFile";
                    if (File.Exists(returnFilename) == false)
                    {
                        // Create a consolidated file from the existing small dump files.
                        // Now this is interesting. We will open the small dump files one by one.
                        // Depending on whether the user require inverted file, we will read them in descending order & reverted, 
                        // or ascending order in normal way.

                        if (this.ReverseIt)
                            this.LstTempFiles.Reverse();

                        foreach (var fileName in LstTempFiles)
                        {
                            string fullFileName = this.ParentDirectory + "\\" + fileName;
// FileLines will use small memory depending on size of CHUNK. User has control.
                            var fileLines = File.ReadAllLines(fullFileName);

                            // Time to write in the writer.
                            if (this.ReverseIt)
                                fileLines = fileLines.Reverse().ToArray();

                            // Write the lines 
                            File.AppendAllLines(returnFilename, fileLines);
                        }
                    }

                    return returnFilename;
                }
            }
        }

该服务可以如下使用-

void TestBigFileDump_File(string BIG_FILE, string FOLDER_PATH_FOR_CHUNK_FILES)
        {
            // Start processing the input Big file.
            StreamReader reader = new StreamReader(BIG_FILE);
            // Create a dump file class object to handle efficient memory management.
            var bigFileDumper = new BigFileDumper(FOLDER_PATH_FOR_CHUNK_FILES);
            // Set to reverse the output file.
            bigFileDumper.ReverseIt = true;
            bigFileDumper.CHUNK_SIZE = 100; // How much at a time to keep in RAM before dumping to local file.

            while (reader.EndOfStream == false)
            {
                string line = reader.ReadLine();
                bigFileDumper.WriteLine(line);
            }
            bigFileDumper.Close();
            reader.Close();

            // Get back full reversed file.
            var reversedFilename = bigFileDumper.GetFullFile();
            Console.WriteLine("Check output file - " + reversedFilename);
        }

0

这里已经有了很好的答案,这是您可以使用的另一个与LINQ兼容的类,该类专注于性能和对大文件的支持。假定使用“ \ r \ n”行终止符。

用法

var reader = new ReverseTextReader(@"C:\Temp\ReverseTest.txt");
while (!reader.EndOfStream)
    Console.WriteLine(reader.ReadLine());

ReverseTextReader类

/// <summary>
/// Reads a text file backwards, line-by-line.
/// </summary>
/// <remarks>This class uses file seeking to read a text file of any size in reverse order.  This
/// is useful for needs such as reading a log file newest-entries first.</remarks>
public sealed class ReverseTextReader : IEnumerable<string>
{
    private const int BufferSize = 16384;   // The number of bytes read from the uderlying stream.
    private readonly Stream _stream;        // Stores the stream feeding data into this reader
    private readonly Encoding _encoding;    // Stores the encoding used to process the file
    private byte[] _leftoverBuffer;         // Stores the leftover partial line after processing a buffer
    private readonly Queue<string> _lines;  // Stores the lines parsed from the buffer

    #region Constructors

    /// <summary>
    /// Creates a reader for the specified file.
    /// </summary>
    /// <param name="filePath"></param>
    public ReverseTextReader(string filePath)
        : this(new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.Read), Encoding.Default)
    { }

    /// <summary>
    /// Creates a reader using the specified stream.
    /// </summary>
    /// <param name="stream"></param>
    public ReverseTextReader(Stream stream)
        : this(stream, Encoding.Default)
    { }

    /// <summary>
    /// Creates a reader using the specified path and encoding.
    /// </summary>
    /// <param name="filePath"></param>
    /// <param name="encoding"></param>
    public ReverseTextReader(string filePath, Encoding encoding)
        : this(new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.Read), encoding)
    { }

    /// <summary>
    /// Creates a reader using the specified stream and encoding.
    /// </summary>
    /// <param name="stream"></param>
    /// <param name="encoding"></param>
    public ReverseTextReader(Stream stream, Encoding encoding)
    {          
        _stream = stream;
        _encoding = encoding;
        _lines = new Queue<string>(128);            
        // The stream needs to support seeking for this to work
        if(!_stream.CanSeek)
            throw new InvalidOperationException("The specified stream needs to support seeking to be read backwards.");
        if (!_stream.CanRead)
            throw new InvalidOperationException("The specified stream needs to support reading to be read backwards.");
        // Set the current position to the end of the file
        _stream.Position = _stream.Length;
        _leftoverBuffer = new byte[0];
    }

    #endregion

    #region Overrides

    /// <summary>
    /// Reads the next previous line from the underlying stream.
    /// </summary>
    /// <returns></returns>
    public string ReadLine()
    {
        // Are there lines left to read? If so, return the next one
        if (_lines.Count != 0) return _lines.Dequeue();
        // Are we at the beginning of the stream? If so, we're done
        if (_stream.Position == 0) return null;

        #region Read and Process the Next Chunk

        // Remember the current position
        var currentPosition = _stream.Position;
        var newPosition = currentPosition - BufferSize;
        // Are we before the beginning of the stream?
        if (newPosition < 0) newPosition = 0;
        // Calculate the buffer size to read
        var count = (int)(currentPosition - newPosition);
        // Set the new position
        _stream.Position = newPosition;
        // Make a new buffer but append the previous leftovers
        var buffer = new byte[count + _leftoverBuffer.Length];
        // Read the next buffer
        _stream.Read(buffer, 0, count);
        // Move the position of the stream back
        _stream.Position = newPosition;
        // And copy in the leftovers from the last buffer
        if (_leftoverBuffer.Length != 0)
            Array.Copy(_leftoverBuffer, 0, buffer, count, _leftoverBuffer.Length);
        // Look for CrLf delimiters
        var end = buffer.Length - 1;
        var start = buffer.Length - 2;
        // Search backwards for a line feed
        while (start >= 0)
        {
            // Is it a line feed?
            if (buffer[start] == 10)
            {
                // Yes.  Extract a line and queue it (but exclude the \r\n)
                _lines.Enqueue(_encoding.GetString(buffer, start + 1, end - start - 2));
                // And reset the end
                end = start;
            }
            // Move to the previous character
            start--;
        }
        // What's left over is a portion of a line. Save it for later.
        _leftoverBuffer = new byte[end + 1];
        Array.Copy(buffer, 0, _leftoverBuffer, 0, end + 1);
        // Are we at the beginning of the stream?
        if (_stream.Position == 0)
            // Yes.  Add the last line.
            _lines.Enqueue(_encoding.GetString(_leftoverBuffer, 0, end - 1));

        #endregion

        // If we have something in the queue, return it
        return _lines.Count == 0 ? null : _lines.Dequeue();
    }

    #endregion

    #region IEnumerator<string> Interface

    public IEnumerator<string> GetEnumerator()
    {
        string line;
        // So long as the next line isn't null...
        while ((line = ReadLine()) != null)
            // Read and return it.
            yield return line;
    }

    IEnumerator IEnumerable.GetEnumerator()
    {
        throw new NotImplementedException();
    }

    #endregion
}

0

万一遇到其他人,我用以下PowerShell脚本解决了该问题,可以轻松地将其修改为C#脚本。

[System.IO.FileStream]$fileStream = [System.IO.File]::Open("C:\Name_of_very_large_file.log", [System.IO.FileMode]::Open, [System.IO.FileAccess]::Read, [System.IO.FileShare]::ReadWrite)
[System.IO.BufferedStream]$bs = New-Object System.IO.BufferedStream $fileStream;
[System.IO.StreamReader]$sr = New-Object System.IO.StreamReader $bs;


$buff = New-Object char[] 20;
$seek = $bs.Seek($fileStream.Length - 10000, [System.IO.SeekOrigin]::Begin);

while(($line = $sr.ReadLine()) -ne $null)
{
     $line;
}

这基本上是从文件的最后10,000个字符开始读取,并输出每一行。


这将从最后10,000个字节开始向前读取,而不是从头到尾开始向后读取。另外,为什么不只是.Seek(-10000, [System.IO.SeekOrigin]::End);呢?
AKX
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