mirror of
https://github.com/privatevoid-net/nix-super.git
synced 2024-11-24 14:56:15 +02:00
491 lines
16 KiB
Perl
491 lines
16 KiB
Perl
package Nix::Manifest;
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use utf8;
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use strict;
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use DBI;
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use DBD::SQLite;
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use Cwd;
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use File::stat;
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use File::Path;
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use Fcntl ':flock';
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use MIME::Base64;
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use Nix::Config;
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use Nix::Store;
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our @ISA = qw(Exporter);
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our @EXPORT = qw(readManifest writeManifest updateManifestDB addPatch deleteOldManifests parseNARInfo fingerprintPath);
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sub addNAR {
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my ($narFiles, $storePath, $info) = @_;
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$$narFiles{$storePath} = []
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unless defined $$narFiles{$storePath};
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my $narFileList = $$narFiles{$storePath};
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my $found = 0;
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foreach my $narFile (@{$narFileList}) {
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$found = 1 if $narFile->{url} eq $info->{url};
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}
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push @{$narFileList}, $info if !$found;
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}
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sub addPatch {
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my ($patches, $storePath, $patch) = @_;
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$$patches{$storePath} = []
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unless defined $$patches{$storePath};
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my $patchList = $$patches{$storePath};
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my $found = 0;
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foreach my $patch2 (@{$patchList}) {
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$found = 1 if
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$patch2->{url} eq $patch->{url} &&
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$patch2->{basePath} eq $patch->{basePath};
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}
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push @{$patchList}, $patch if !$found;
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return !$found;
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}
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sub readManifest_ {
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my ($manifest, $addNAR, $addPatch) = @_;
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# Decompress the manifest if necessary.
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if ($manifest =~ /\.bz2$/) {
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open MANIFEST, "$Nix::Config::bzip2 -d < $manifest |"
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or die "cannot decompress ‘$manifest’: $!";
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} else {
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open MANIFEST, "<$manifest"
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or die "cannot open ‘$manifest’: $!";
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}
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my $inside = 0;
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my $type;
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my $manifestVersion = 2;
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my ($storePath, $url, $hash, $size, $basePath, $baseHash, $patchType);
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my ($narHash, $narSize, $references, $deriver, $copyFrom, $system, $compressionType);
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while (<MANIFEST>) {
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chomp;
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s/\#.*$//g;
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next if (/^$/);
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if (!$inside) {
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if (/^\s*(\w*)\s*\{$/) {
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$type = $1;
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$type = "narfile" if $type eq "";
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$inside = 1;
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undef $storePath;
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undef $url;
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undef $hash;
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undef $size;
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undef $narHash;
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undef $narSize;
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undef $basePath;
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undef $baseHash;
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undef $patchType;
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undef $system;
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$references = "";
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$deriver = "";
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$compressionType = "bzip2";
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}
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} else {
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if (/^\}$/) {
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$inside = 0;
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if ($type eq "narfile") {
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&$addNAR($storePath,
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{ url => $url, hash => $hash, size => $size
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, narHash => $narHash, narSize => $narSize
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, references => $references
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, deriver => $deriver
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, system => $system
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, compressionType => $compressionType
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});
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}
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elsif ($type eq "patch") {
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&$addPatch($storePath,
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{ url => $url, hash => $hash, size => $size
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, basePath => $basePath, baseHash => $baseHash
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, narHash => $narHash, narSize => $narSize
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, patchType => $patchType
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});
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}
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}
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elsif (/^\s*StorePath:\s*(\/\S+)\s*$/) { $storePath = $1; }
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elsif (/^\s*CopyFrom:\s*(\/\S+)\s*$/) { $copyFrom = $1; }
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elsif (/^\s*Hash:\s*(\S+)\s*$/) { $hash = $1; }
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elsif (/^\s*URL:\s*(\S+)\s*$/) { $url = $1; }
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elsif (/^\s*Compression:\s*(\S+)\s*$/) { $compressionType = $1; }
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elsif (/^\s*Size:\s*(\d+)\s*$/) { $size = $1; }
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elsif (/^\s*BasePath:\s*(\/\S+)\s*$/) { $basePath = $1; }
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elsif (/^\s*BaseHash:\s*(\S+)\s*$/) { $baseHash = $1; }
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elsif (/^\s*Type:\s*(\S+)\s*$/) { $patchType = $1; }
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elsif (/^\s*NarHash:\s*(\S+)\s*$/) { $narHash = $1; }
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elsif (/^\s*NarSize:\s*(\d+)\s*$/) { $narSize = $1; }
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elsif (/^\s*References:\s*(.*)\s*$/) { $references = $1; }
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elsif (/^\s*Deriver:\s*(\S+)\s*$/) { $deriver = $1; }
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elsif (/^\s*ManifestVersion:\s*(\d+)\s*$/) { $manifestVersion = $1; }
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elsif (/^\s*System:\s*(\S+)\s*$/) { $system = $1; }
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# Compatibility;
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elsif (/^\s*NarURL:\s*(\S+)\s*$/) { $url = $1; }
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elsif (/^\s*MD5:\s*(\S+)\s*$/) { $hash = "md5:$1"; }
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}
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}
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close MANIFEST;
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return $manifestVersion;
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}
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sub readManifest {
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my ($manifest, $narFiles, $patches) = @_;
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readManifest_($manifest,
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sub { addNAR($narFiles, @_); },
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sub { addPatch($patches, @_); } );
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}
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sub writeManifest {
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my ($manifest, $narFiles, $patches, $noCompress) = @_;
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open MANIFEST, ">$manifest.tmp"; # !!! check exclusive
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print MANIFEST "version {\n";
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print MANIFEST " ManifestVersion: 3\n";
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print MANIFEST "}\n";
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foreach my $storePath (sort (keys %{$narFiles})) {
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my $narFileList = $$narFiles{$storePath};
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foreach my $narFile (@{$narFileList}) {
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print MANIFEST "{\n";
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print MANIFEST " StorePath: $storePath\n";
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print MANIFEST " NarURL: $narFile->{url}\n";
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print MANIFEST " Compression: $narFile->{compressionType}\n";
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print MANIFEST " Hash: $narFile->{hash}\n" if defined $narFile->{hash};
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print MANIFEST " Size: $narFile->{size}\n" if defined $narFile->{size};
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print MANIFEST " NarHash: $narFile->{narHash}\n";
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print MANIFEST " NarSize: $narFile->{narSize}\n" if $narFile->{narSize};
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print MANIFEST " References: $narFile->{references}\n"
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if defined $narFile->{references} && $narFile->{references} ne "";
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print MANIFEST " Deriver: $narFile->{deriver}\n"
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if defined $narFile->{deriver} && $narFile->{deriver} ne "";
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print MANIFEST " System: $narFile->{system}\n" if defined $narFile->{system};
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print MANIFEST "}\n";
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}
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}
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foreach my $storePath (sort (keys %{$patches})) {
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my $patchList = $$patches{$storePath};
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foreach my $patch (@{$patchList}) {
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print MANIFEST "patch {\n";
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print MANIFEST " StorePath: $storePath\n";
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print MANIFEST " NarURL: $patch->{url}\n";
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print MANIFEST " Hash: $patch->{hash}\n";
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print MANIFEST " Size: $patch->{size}\n";
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print MANIFEST " NarHash: $patch->{narHash}\n";
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print MANIFEST " NarSize: $patch->{narSize}\n" if $patch->{narSize};
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print MANIFEST " BasePath: $patch->{basePath}\n";
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print MANIFEST " BaseHash: $patch->{baseHash}\n";
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print MANIFEST " Type: $patch->{patchType}\n";
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print MANIFEST "}\n";
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}
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}
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close MANIFEST;
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rename("$manifest.tmp", $manifest)
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or die "cannot rename $manifest.tmp: $!";
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# Create a bzipped manifest.
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unless (defined $noCompress) {
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system("$Nix::Config::bzip2 < $manifest > $manifest.bz2.tmp") == 0
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or die "cannot compress manifest";
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rename("$manifest.bz2.tmp", "$manifest.bz2")
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or die "cannot rename $manifest.bz2.tmp: $!";
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}
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}
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sub updateManifestDB {
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my $manifestDir = $Nix::Config::manifestDir;
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my @manifests = glob "$manifestDir/*.nixmanifest";
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return undef if scalar @manifests == 0;
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mkpath($manifestDir);
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unlink "$manifestDir/cache.sqlite"; # remove obsolete cache
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my $dbPath = "$manifestDir/cache-v2.sqlite";
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# Open/create the database.
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our $dbh = DBI->connect("dbi:SQLite:dbname=$dbPath", "", "")
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or die "cannot open database ‘$dbPath’";
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$dbh->{RaiseError} = 1;
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$dbh->{PrintError} = 0;
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$dbh->do("pragma foreign_keys = on");
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$dbh->do("pragma synchronous = off"); # we can always reproduce the cache
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$dbh->do("pragma journal_mode = truncate");
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# Initialise the database schema, if necessary.
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$dbh->do(<<EOF);
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create table if not exists Manifests (
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id integer primary key autoincrement not null,
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path text unique not null,
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timestamp integer not null
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);
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EOF
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$dbh->do(<<EOF);
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create table if not exists NARs (
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id integer primary key autoincrement not null,
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manifest integer not null,
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storePath text not null,
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url text not null,
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compressionType text not null,
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hash text,
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size integer,
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narHash text,
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narSize integer,
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refs text,
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deriver text,
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system text,
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foreign key (manifest) references Manifests(id) on delete cascade
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);
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EOF
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$dbh->do("create index if not exists NARs_storePath on NARs(storePath)");
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$dbh->do(<<EOF);
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create table if not exists Patches (
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id integer primary key autoincrement not null,
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manifest integer not null,
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storePath text not null,
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basePath text not null,
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baseHash text not null,
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url text not null,
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hash text,
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size integer,
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narHash text,
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narSize integer,
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patchType text not null,
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foreign key (manifest) references Manifests(id) on delete cascade
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);
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EOF
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$dbh->do("create index if not exists Patches_storePath on Patches(storePath)");
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# Acquire an exclusive lock to ensure that only one process
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# updates the DB at the same time. This isn't really necessary,
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# but it prevents work duplication and lock contention in SQLite.
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my $lockFile = "$manifestDir/cache.lock";
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open MAINLOCK, ">>$lockFile" or die "unable to acquire lock ‘$lockFile’: $!\n";
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flock(MAINLOCK, LOCK_EX) or die;
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our $insertNAR = $dbh->prepare(
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"insert into NARs(manifest, storePath, url, compressionType, hash, size, narHash, " .
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"narSize, refs, deriver, system) values (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)") or die;
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our $insertPatch = $dbh->prepare(
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"insert into Patches(manifest, storePath, basePath, baseHash, url, hash, " .
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"size, narHash, narSize, patchType) values (?, ?, ?, ?, ?, ?, ?, ?, ?, ?)");
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$dbh->begin_work;
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# Read each manifest in $manifestDir and add it to the database,
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# unless we've already done so on a previous run.
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my %seen;
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for my $manifestLink (@manifests) {
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my $manifest = Cwd::abs_path($manifestLink);
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next unless -f $manifest;
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my $timestamp = lstat($manifest)->mtime;
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$seen{$manifest} = 1;
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next if scalar @{$dbh->selectcol_arrayref(
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"select 1 from Manifests where path = ? and timestamp = ?",
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{}, $manifest, $timestamp)} == 1;
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print STDERR "caching $manifest...\n";
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$dbh->do("delete from Manifests where path = ?", {}, $manifest);
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$dbh->do("insert into Manifests(path, timestamp) values (?, ?)",
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{}, $manifest, $timestamp);
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our $id = $dbh->last_insert_id("", "", "", "");
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sub addNARToDB {
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my ($storePath, $narFile) = @_;
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$insertNAR->execute(
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$id, $storePath, $narFile->{url}, $narFile->{compressionType}, $narFile->{hash},
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$narFile->{size}, $narFile->{narHash}, $narFile->{narSize}, $narFile->{references},
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$narFile->{deriver}, $narFile->{system});
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};
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sub addPatchToDB {
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my ($storePath, $patch) = @_;
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$insertPatch->execute(
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$id, $storePath, $patch->{basePath}, $patch->{baseHash}, $patch->{url},
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$patch->{hash}, $patch->{size}, $patch->{narHash}, $patch->{narSize},
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$patch->{patchType});
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};
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my $version = readManifest_($manifest, \&addNARToDB, \&addPatchToDB);
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if ($version < 3) {
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die "you have an old-style or corrupt manifest ‘$manifestLink’; please delete it\n";
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}
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if ($version >= 10) {
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die "manifest ‘$manifestLink’ is too new; please delete it or upgrade Nix\n";
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}
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}
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# Removed cached information for removed manifests from the DB.
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foreach my $manifest (@{$dbh->selectcol_arrayref("select path from Manifests")}) {
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next if defined $seen{$manifest};
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$dbh->do("delete from Manifests where path = ?", {}, $manifest);
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}
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$dbh->commit;
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close MAINLOCK;
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return $dbh;
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}
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# Delete all old manifests downloaded from a given URL.
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sub deleteOldManifests {
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my ($url, $curUrlFile) = @_;
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for my $urlFile (glob "$Nix::Config::manifestDir/*.url") {
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next if defined $curUrlFile && $urlFile eq $curUrlFile;
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open URL, "<$urlFile" or die;
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my $url2 = <URL>;
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chomp $url2;
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close URL;
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next unless $url eq $url2;
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my $base = $urlFile; $base =~ s/.url$//;
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unlink "${base}.url";
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unlink "${base}.nixmanifest";
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}
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}
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# Return a fingerprint of a store path to be used in binary cache
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# signatures. It contains the store path, the base-32 SHA-256 hash of
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# the contents of the path, and the references.
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sub fingerprintPath {
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my ($storePath, $narHash, $narSize, $references) = @_;
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die if substr($storePath, 0, length($Nix::Config::storeDir)) ne $Nix::Config::storeDir;
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die if substr($narHash, 0, 7) ne "sha256:";
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# Convert hash from base-16 to base-32, if necessary.
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$narHash = "sha256:" . convertHash("sha256", substr($narHash, 7), 1)
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if length($narHash) == 71;
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die if length($narHash) != 59;
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foreach my $ref (@{$references}) {
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die if substr($ref, 0, length($Nix::Config::storeDir)) ne $Nix::Config::storeDir;
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}
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return "1;" . $storePath . ";" . $narHash . ";" . $narSize . ";" . join(",", @{$references});
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}
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# Parse a NAR info file.
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sub parseNARInfo {
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my ($storePath, $content, $requireValidSig, $location) = @_;
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my ($storePath2, $url, $fileHash, $fileSize, $narHash, $narSize, $deriver, $system, $sig);
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my $compression = "bzip2";
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my @refs;
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foreach my $line (split "\n", $content) {
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return undef unless $line =~ /^(.*): (.*)$/;
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if ($1 eq "StorePath") { $storePath2 = $2; }
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elsif ($1 eq "URL") { $url = $2; }
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elsif ($1 eq "Compression") { $compression = $2; }
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elsif ($1 eq "FileHash") { $fileHash = $2; }
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elsif ($1 eq "FileSize") { $fileSize = int($2); }
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elsif ($1 eq "NarHash") { $narHash = $2; }
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elsif ($1 eq "NarSize") { $narSize = int($2); }
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elsif ($1 eq "References") { @refs = split / /, $2; }
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elsif ($1 eq "Deriver") { $deriver = $2; }
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elsif ($1 eq "System") { $system = $2; }
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elsif ($1 eq "Sig") { $sig = $2; }
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}
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return undef if $storePath ne $storePath2 || !defined $url || !defined $narHash;
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my $res =
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{ url => $url
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, compression => $compression
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, fileHash => $fileHash
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, fileSize => $fileSize
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, narHash => $narHash
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, narSize => $narSize
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, refs => [ @refs ]
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, deriver => $deriver
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, system => $system
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};
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if ($requireValidSig) {
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# FIXME: might be useful to support multiple signatures per .narinfo.
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if (!defined $sig) {
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warn "NAR info file ‘$location’ lacks a signature; ignoring\n";
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return undef;
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}
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my ($keyName, $sig64) = split ":", $sig;
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return undef unless defined $keyName && defined $sig64;
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my $publicKey = $Nix::Config::binaryCachePublicKeys{$keyName};
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if (!defined $publicKey) {
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warn "NAR info file ‘$location’ is signed by unknown key ‘$keyName’; ignoring\n";
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return undef;
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}
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my $fingerprint;
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eval {
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$fingerprint = fingerprintPath(
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$storePath, $narHash, $narSize,
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[ map { "$Nix::Config::storeDir/$_" } @refs ]);
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};
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if ($@) {
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warn "cannot compute fingerprint of ‘$location’; ignoring\n";
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return undef;
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}
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if (!checkSignature($publicKey, decode_base64($sig64), $fingerprint)) {
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warn "NAR info file ‘$location’ has an incorrect signature; ignoring\n";
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return undef;
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}
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$res->{signedBy} = $keyName;
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}
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return $res;
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}
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return 1;
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