forked from the-distro/channel-scripts
297e7999a0
git-svn-id: https://nixos.org/repos/nix/release/trunk/channels@34742 70bd8c7a-acb8-0310-9f0d-9cc1c95dcdbb
222 lines
7.5 KiB
Perl
222 lines
7.5 KiB
Perl
# This script mirrors a remote Nix channel in the local filesystem.
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# It downloads the remote manifest, then any NAR files that are not
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# already available in the target directory.
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use strict;
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use Nix::Manifest;
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use Nix::GeneratePatches;
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use Nix::Utils;
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use Nix::Store;
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use File::Basename;
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use File::stat;
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use Net::Amazon::S3;
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use List::MoreUtils qw(part);
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use Forks::Super 'bg_eval';
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if (scalar @ARGV < 4 || scalar @ARGV > 6) {
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print STDERR "Syntax: perl mirror-channel.pl <src-channel-url> <dst-channel-dir> <bucket-name> <nar-url> [<all-patches-manifest [<nix-exprs-url>]]\n";
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exit 1;
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}
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my $curl = "curl --location --silent --show-error --fail";
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my $nrProcesses = 8;
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my $srcChannelURL = $ARGV[0];
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my $dstChannelPath = $ARGV[1];
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my $bucketName = $ARGV[2];
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my $cacheURL = $ARGV[3]; die if $cacheURL =~ /\/$/;
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my $allPatchesManifest = $ARGV[4] || "";
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my $nixexprsURL = $ARGV[5];
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die "$dstChannelPath doesn't exist\n" unless -d $dstChannelPath;
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my $manifestPath = "$dstChannelPath/MANIFEST";
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# S3 setup.
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my $aws_access_key_id = $ENV{'AWS_ACCESS_KEY_ID'} or die;
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my $aws_secret_access_key = $ENV{'AWS_SECRET_ACCESS_KEY'} or die;
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my $s3 = Net::Amazon::S3->new(
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{ aws_access_key_id => $aws_access_key_id,
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aws_secret_access_key => $aws_secret_access_key,
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retry => 1,
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});
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my $bucket = $s3->bucket($bucketName) or die;
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# Fetch the manifest.
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system("$curl '$srcChannelURL/MANIFEST' > $dstChannelPath/MANIFEST") == 0 or die;
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if (defined $nixexprsURL) {
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# Mirror nixexprs.tar.xz.
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system("$curl '$nixexprsURL' > $dstChannelPath/nixexprs.tar.xz") == 0 or die "cannot download `$nixexprsURL'";
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# Generate nixexprs.tar.bz2 for backwards compatibility.
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system("xz -d < $dstChannelPath/nixexprs.tar.xz | bzip2 > $dstChannelPath/nixexprs.tar.bz2") == 0 or die "cannot recompress nixexprs.tar";
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}
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# Advertise a binary cache.
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open FILE, ">$dstChannelPath/binary-cache-url" or die;
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print FILE $cacheURL or die;
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close FILE or die;
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# Read the manifest.
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my (%narFiles, %patches);
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readManifest("$dstChannelPath/MANIFEST", \%narFiles, \%patches);
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%patches = (); # not supported yet
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my $size = scalar (keys %narFiles);
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print STDERR "$size store paths in manifest\n";
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# Protect against Hydra problems that leave the channel empty.
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die "cowardly refusing to mirror an empty channel" if $size == 0;
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sub permute {
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my @list = @_;
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for (my $n = scalar @list - 1; $n > 0; $n--) {
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my $k = int(rand($n + 1)); # 0 <= $k <= $n
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@list[$n, $k] = @list[$k, $n];
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}
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return @list;
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}
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sub queryPathHash16 {
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my ($storePath) = @_;
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my ($deriver, $narHash, $time, $narSize, $refs) = queryPathInfo($storePath, 0);
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return $narHash;
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}
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# Download every file that we don't already have, and update every URL
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# to point to the mirror. Also fill in the size and hash fields in
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# the manifest in order to be compatible with Nix < 0.13.
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sub mirrorStorePath {
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my ($storePath, $res) = @_;
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my $nars = $narFiles{$storePath};
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die if scalar @{$nars} != 1;
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my $nar = $$nars[0];
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my $pathHash = substr(basename($storePath), 0, 32);
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my $narInfoFile = "$pathHash.narinfo";
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#print STDERR "$$: checking $narInfoFile\n";
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my $get = $bucket->get_key("$pathHash.narinfo", "GET");
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my $narInfo;
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if (defined $get) {
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$narInfo = parseNARInfo($storePath, $get->{value});
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#if (!defined $bucket->head_key("$narInfo->{url}", "GET")) {
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# print STDERR "missing NAR $narInfo->{url}!\n";
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# $bucket->delete_key("$pathHash.narinfo");
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# goto recreate;
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#}
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$nar->{hash} = $narInfo->{fileHash};
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$nar->{size} = $narInfo->{fileSize};
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$nar->{narHash} = $narInfo->{narHash};
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$nar->{narSize} = $narInfo->{narSize};
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$nar->{compressionType} = $narInfo->{compression};
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$nar->{url} = "$cacheURL/$narInfo->{url}";
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} else {
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recreate:
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my $dstFileTmp = "/tmp/nar.$$";
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my $ext;
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if (isValidPath($storePath) && queryPathHash16($storePath) eq $nar->{narHash}) {
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print STDERR "copying $storePath instead of downloading $nar->{url}\n";
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# Verify that $storePath hasn't been corrupted and compress it at the same time.
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$ext = "xz";
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my $narHash = `bash -c 'exec 4>&1; nix-store --dump $storePath | tee >(nix-hash --type sha256 --flat /dev/stdin >&4) | xz -7 > $dstFileTmp'`;
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chomp $narHash;
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die "hash mismatch in `$storePath'" if "sha256:$narHash" ne $nar->{narHash};
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} else {
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print STDERR "downloading $nar->{url}\n";
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system("$curl '$nar->{url}' > $dstFileTmp") == 0 or die "failed to download `$nar->{url}'";
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# Verify whether the downloaded file is a bzipped NAR file
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# that matches the NAR hash given in the manifest.
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$ext = "bz2";
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my $narHash = `bunzip2 < $dstFileTmp | nix-hash --type sha256 --flat /dev/stdin` or die;
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chomp $narHash;
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die "hash mismatch in downloaded file `$nar->{url}'" if "sha256:$narHash" ne $nar->{narHash};
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}
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# Compute the hash of the compressed NAR (Hydra doesn't provide one).
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my $fileHash = hashFile("sha256", 1, $dstFileTmp);
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my $dstFile = "nar/$fileHash.nar.$ext";
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$nar->{url} = "$cacheURL/$dstFile";
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$nar->{hash} = "sha256:$fileHash";
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$nar->{size} = stat($dstFileTmp)->size;
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if (!defined $bucket->head_key($dstFile)) {
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print STDERR "uploading $dstFile ($nar->{size} bytes)\n";
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$bucket->add_key_filename($dstFile, $dstFileTmp) or die "failed to upload $dstFile to S3\n";
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}
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unlink($dstFileTmp) or die;
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# Write the .narinfo.
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my $info;
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$info .= "StorePath: $storePath\n";
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$info .= "URL: nar/$fileHash.nar.$ext\n";
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$info .= "Compression: " . ($ext eq "xz" ? "xz" : "bzip2") . "\n";
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$info .= "FileHash: $nar->{hash}\n";
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$info .= "FileSize: $nar->{size}\n";
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$info .= "NarHash: $nar->{narHash}\n";
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$info .= "NarSize: $nar->{narSize}\n";
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$info .= "References: " . join(" ", map { basename $_ } (split " ", $nar->{references})) . "\n";
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$info .= "Deriver: " . basename $nar->{deriver} . "\n" if $nar->{deriver} ne "";
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$info .= "System: $nar->{system}\n" if defined $nar->{system};
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$bucket->add_key($narInfoFile, $info) or die "failed to upload $narInfoFile to S3\n";
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}
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$res->{$storePath} = $nar;
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}
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# Spawn a bunch of children to mirror paths in parallel.
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my $i = 0;
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my @filesPerProcess = part { $i++ % $nrProcesses } permute(keys %narFiles);
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my @results;
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for (my $n = 0; $n < $nrProcesses; $n++) {
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push @results, bg_eval { my $res = {}; mirrorStorePath($_, $res) foreach @{$filesPerProcess[$n]}; return $res; }
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}
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# Get the updated NAR info from the children so we can update the manifest.
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foreach my $r (@results) {
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while (my ($storePath, $nar) = each %$r) {
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$narFiles{$storePath} = [$nar];
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}
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}
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# Read all the old patches and propagate the useful ones. We use the
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# file "all-patches" to keep track of all patches that have been
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# generated in the past, so that patches are not lost if (for
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# instance) a package temporarily disappears from the source channel,
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# or if multiple instances of this script are running concurrently.
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my (%dummy, %allPatches);
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readManifest($allPatchesManifest, \%dummy, \%allPatches)
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if $allPatchesManifest ne "" && -f $allPatchesManifest;
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propagatePatches \%allPatches, \%narFiles, \%patches;
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# Make the temporary manifest available.
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writeManifest("$dstChannelPath/MANIFEST", \%narFiles, \%patches);
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