365 lines
16 KiB
C#
365 lines
16 KiB
C#
// Copyright (C) 2025, The Duplicati Team
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// https://duplicati.com, hello@duplicati.com
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the "Software"),
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// to deal in the Software without restriction, including without limitation
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// the rights to use, copy, modify, merge, publish, distribute, sublicense,
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// and/or sell copies of the Software, and to permit persons to whom the
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// Software is furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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// DEALINGS IN THE SOFTWARE.
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using Duplicati.Library.Common.IO;
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using Duplicati.Library.Interface;
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using System;
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using System.Collections.Generic;
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using System.CommandLine;
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using System.CommandLine.Invocation;
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using System.IO;
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using System.Linq;
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using System.Threading;
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using System.Threading.Tasks;
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namespace RemoteSynchronization
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{
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public class Program
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{
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private const bool DEFAULT_DRY_RUN = false;
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private const bool DEFAULT_VERIFY = false;
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private const int DEFAULT_RETRY = 3;
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private const bool DEFAULT_FORCE = false;
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public static async Task<int> Main(string[] args)
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{
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var src_arg = new Argument<string>(name: "backend_src", description: "The source backend string");
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var dst_arg = new Argument<string>(name: "backend_dst", description: "The destination backend string");
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var dry_run_opt = new Option<bool>(aliases: ["--dry-run", "-d"], description: "Do not actually write or delete files", getDefaultValue: () => DEFAULT_DRY_RUN);
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var src_opts = OptionWithMultipleTokens(aliases: ["--src-options"], description: "Options for the source backend");
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var dst_opts = OptionWithMultipleTokens(aliases: ["--dst-options"], description: "Options for the destination backend");
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var verify_opt = new Option<bool>(aliases: ["--verify"], description: "Verify the files after copying", getDefaultValue: () => DEFAULT_VERIFY);
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var retry_opt = new Option<int>(aliases: ["--retry"], description: "Number of times to retry on errors", getDefaultValue: () => DEFAULT_RETRY) { Arity = ArgumentArity.ExactlyOne };
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var force_opt = new Option<bool>(aliases: ["--force"], description: "Force the synchronization", getDefaultValue: () => DEFAULT_FORCE);
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var root_cmd = new RootCommand("Remote Synchronization Tool");
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root_cmd.AddArgument(src_arg);
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root_cmd.AddArgument(dst_arg);
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root_cmd.AddOption(dry_run_opt);
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root_cmd.AddOption(src_opts);
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root_cmd.AddOption(dst_opts);
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root_cmd.AddOption(verify_opt);
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root_cmd.AddOption(retry_opt);
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root_cmd.AddOption(force_opt);
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root_cmd.SetHandler((InvocationContext ctx) =>
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{
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var parsed = ctx.ParseResult;
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Dictionary<string, object?> options = parsed.CommandResult.Command.Options.ToDictionary(x => x.Name, x => parsed.GetValueForOption(x));
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Run(parsed.GetValueForArgument(src_arg), parsed.GetValueForArgument(dst_arg), options).Wait();
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});
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return await root_cmd.InvokeAsync(args);
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}
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private static async Task<int> Run(string src, string dst, Dictionary<string, object?> options)
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{
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var dry_run = options["dry-run"] as bool? ?? DEFAULT_DRY_RUN;
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var verify = options["verify"] as bool? ?? DEFAULT_VERIFY;
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var retries = options["retry"] as int? ?? DEFAULT_RETRY;
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var force = options["force"] as bool? ?? DEFAULT_FORCE;
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var duplicati_options = new Dictionary<string, string>()
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{
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["dry-run"] = dry_run.ToString()
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};
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Dictionary<string, string> src_opts = (options["src-options"] as List<string>)
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?.Select(x => x.Split("="))
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.ToDictionary(x => x[0], x => x[1])
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?? [];
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Dictionary<string, string> dst_opts = (options["dst-options"] as List<string>)
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?.Select(x => x.Split("="))
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.ToDictionary(x => x[0], x => x[1])
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?? [];
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foreach (var x in duplicati_options)
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src_opts[x.Key] = dst_opts[x.Key] = x.Value;
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using var b1 = Duplicati.Library.DynamicLoader.BackendLoader.GetBackend(src, src_opts);
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var b1s = b1 as IStreamingBackend;
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System.Diagnostics.Debug.Assert(b1s != null);
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using var b2 = Duplicati.Library.DynamicLoader.BackendLoader.GetBackend(dst, dst_opts);
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var b2s = b2 as IStreamingBackend;
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System.Diagnostics.Debug.Assert(b2s != null);
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var (to_copy, to_delete, to_verify) = PrepareFileLists(b1s, b2s, force);
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// TODO if confirm is not set, present the plan to the user and ask for confirmation
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var deleted = await DeleteAsync(b2s, to_delete, dry_run);
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Console.WriteLine($"Deleted {deleted} files from {dst}");
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var (copied, copy_errors) = await CopyAsync(b1s, b2s, to_copy, dry_run, verify);
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Console.WriteLine($"Copied {copied} files from {src} to {dst}");
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if (copy_errors.Any())
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{
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if (retries > 0)
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{
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Console.WriteLine($"Retrying {retries} more times to copy the {copy_errors.Count()} files that failed");
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for (int i = 0; i < retries; i++)
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{
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Thread.Sleep(5000); // Wait 5 seconds before retrying
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(copied, copy_errors) = await CopyAsync(b1s, b2s, copy_errors, dry_run, verify);
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Console.WriteLine($"Copied {copied} files from {src} to {dst}");
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if (!copy_errors.Any())
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break;
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}
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}
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if (copy_errors.Any())
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{
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Console.WriteLine($"Could not copy {copy_errors.Count()} files: {string.Join(", ", copy_errors)}");
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return copy_errors.Count();
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}
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}
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if (verify)
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{
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var not_verified = await VerifyAsync(b1s, b2s, to_verify);
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Console.WriteLine($"Could not verify {not_verified.Count()} files: {string.Join(", ", not_verified)}");
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return not_verified.Count();
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}
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Console.WriteLine("Done");
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return 0;
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}
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// TODO maximum retention?: don't delete files, only rename old ones.
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// TODO have concurrency parameters: uploaders, downloaders
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// TODO low memory mode, where things aren't kept in memory. Maybe utilize SQLite?
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// TODO Progress reporting
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// TODO Logging
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// check database consistency. I.e. have both databases, check that the block, volume, files, etc match up.
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// introduce these checks as a post processing step? Especially the database consistency check, as that is often recreated from the index files.
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// TODO This tool shouldn't handle it, but for convenience, it should support making the seperate call to the regular Duplicati on the destination backend, which alread carries this functionality.
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// Forcefully synchronize the remote backends
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private static async Task<(long, IEnumerable<IFileEntry>)> CopyAsync(IStreamingBackend b_src, IStreamingBackend b_dst, IEnumerable<IFileEntry> files, bool dry_run, bool verify)
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{
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long successful_copies = 0;
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List<IFileEntry> errors = [];
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using var s_src = new MemoryStream();
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using var s_dst = new MemoryStream();
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foreach (var f in files)
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{
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try
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{
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await b_src.GetAsync(f.Name, s_src, CancellationToken.None);
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if (dry_run)
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{
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Console.WriteLine($"Would write {s_src.Length} bytes of {f.Name} to {b_dst.DisplayName}");
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}
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else
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{
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await b_dst.PutAsync(f.Name, s_src, CancellationToken.None);
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if (verify)
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{
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await b_dst.GetAsync(f.Name, s_dst, CancellationToken.None);
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if (s_src.Length != s_dst.Length || !s_src.ToArray().SequenceEqual(s_dst.ToArray()))
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{
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Console.WriteLine($"Error verifying {f.Name}: The file was not copied correctly");
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errors.Add(f);
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}
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s_dst.SetLength(0);
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}
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}
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s_src.SetLength(0);
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successful_copies++;
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}
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catch (Exception e)
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{
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Console.WriteLine($"Error copying {f.Name}: {e.Message}");
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errors.Add(f);
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}
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}
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return (successful_copies, errors);
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}
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private static async Task<long> DeleteAsync(IStreamingBackend b, IEnumerable<IFileEntry> files, bool dry_run)
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{
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long successful_deletes = 0;
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foreach (var f in files)
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{
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try
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{
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if (dry_run)
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{
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Console.WriteLine($"Would delete {f.Name} from {b.DisplayName}");
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}
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else
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{
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await b.DeleteAsync(f.Name, CancellationToken.None);
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}
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successful_deletes++;
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}
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catch (Exception e)
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{
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Console.WriteLine($"Error deleting {f.Name}: {e.Message}");
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}
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}
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return successful_deletes;
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}
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private static Option<List<string>> OptionWithMultipleTokens(string[] aliases, string description)
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{
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return new Option<List<string>>(aliases: aliases, description: description)
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{
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Arity = ArgumentArity.OneOrMore,
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AllowMultipleArgumentsPerToken = true
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};
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}
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private static (IEnumerable<IFileEntry>, IEnumerable<IFileEntry>, IEnumerable<IFileEntry>) PrepareFileLists(IStreamingBackend b_src, IStreamingBackend b_dst, bool force)
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{
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var files_src = b_src.List();
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var files_dst = b_dst.List();
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// Shortcut for force
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if (force)
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{
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return (files_src, files_dst, []);
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}
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// Shortcut for empty destination
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if (!files_dst.Any())
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{
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return (files_src, [], []);
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}
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var lookup_src = files_src.ToDictionary(x => x.Name);
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var lookup_dst = files_dst.ToDictionary(x => x.Name);
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var to_copy = new List<IFileEntry>();
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var to_delete = new HashSet<string>();
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var to_verify = new List<IFileEntry>();
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// Find all of the files in src that are not in dst, have a different size or have a more recent modification date
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foreach (var f_src in files_src)
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{
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if (lookup_dst.TryGetValue(f_src.Name, out var f_dst))
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{
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if (f_src.Size != f_dst.Size || f_src.LastModification > f_dst.LastModification)
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{
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// The file is different, so we need to copy it
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to_copy.Add(f_src);
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to_delete.Add(f_dst.Name);
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}
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else
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{
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// The file seems to be the same, so we need to verify it if the user wants to
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to_verify.Add(f_src);
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}
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}
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else
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{
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// The file is not in the destination, so we need to copy it
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to_copy.Add(f_src);
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}
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}
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// Find all of the files in dst that are not in src
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foreach (var f_dst in files_dst)
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{
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if (to_delete.Contains(f_dst.Name))
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continue;
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if (!lookup_src.ContainsKey(f_dst.Name))
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{
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to_delete.Add(f_dst.Name);
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}
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}
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return (to_copy, to_delete.Select(x => lookup_dst[x]), to_verify);
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}
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private static async Task<long> RenameAsync(IStreamingBackend b, IEnumerable<FileEntry> files, bool dry_run)
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{
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long successful_renames = 0;
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string suffix = $"{DateTime.Now:yyyyMMddHHmmss}.old";
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using var downloaded = new MemoryStream();
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foreach (var f in files)
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{
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try
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{
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await b.GetAsync(f.Name, downloaded, CancellationToken.None);
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if (dry_run)
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{
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Console.WriteLine($"Would rename {f.Name} to {f.Name}.{suffix} by deleting and re-uploading {downloaded.Length} bytes to {b.DisplayName}");
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}
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else
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{
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await b.PutAsync($"{f.Name}.{suffix}", downloaded, CancellationToken.None);
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await b.DeleteAsync(f.Name, CancellationToken.None);
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}
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downloaded.SetLength(0);
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successful_renames++;
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}
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catch (Exception e)
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{
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Console.WriteLine($"Error renaming {f.Name}: {e.Message}");
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}
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}
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return successful_renames;
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}
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// Post comparison
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private static async Task<IEnumerable<string>> VerifyAsync(IStreamingBackend b_src, IStreamingBackend b_dst, IEnumerable<IFileEntry> files)
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{
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var errors = new List<string>();
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using var s_src = new MemoryStream();
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using var s_dst = new MemoryStream();
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foreach (var f in files)
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{
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try
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{
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// Get both files
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var fs = b_src.GetAsync(f.Name, s_src, CancellationToken.None);
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var ds = b_dst.GetAsync(f.Name, s_dst, CancellationToken.None);
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await Task.WhenAll(fs, ds);
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// Compare the contents
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if (s_src.Length != s_dst.Length || !s_src.ToArray().SequenceEqual(s_dst.ToArray()))
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{
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errors.Add(f.Name);
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}
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// Reset the streams
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s_src.SetLength(0);
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s_dst.SetLength(0);
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}
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catch (Exception e)
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{
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errors.Add($"{f.Name}");
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Console.WriteLine($"Error verifying {f.Name}: {e.Message}");
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}
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}
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return errors;
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}
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}
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}
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