forked from lix-project/lix
Merge changes Ia1481da4,Ifca1d74d into main
* changes: archive: refactor bad mutable-state API in the NAR parse listener archive: rename ParseSink to NARParseVisitor
This commit is contained in:
commit
8f88590d13
6 changed files with 199 additions and 114 deletions
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@ -1216,7 +1216,7 @@ void LocalStore::addToStore(const ValidPathInfo & info, Source & source,
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bool narRead = false;
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Finally cleanup = [&]() {
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if (!narRead) {
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ParseSink sink;
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NARParseVisitor sink;
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try {
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parseDump(sink, source);
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} catch (...) {
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@ -2,6 +2,7 @@
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#include "archive.hh"
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#include <map>
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#include <memory>
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#include <stack>
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#include <algorithm>
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@ -33,7 +34,7 @@ struct NarAccessor : public FSAccessor
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NarMember root;
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struct NarIndexer : ParseSink, Source
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struct NarIndexer : NARParseVisitor, Source
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{
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NarAccessor & acc;
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Source & source;
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@ -44,11 +45,12 @@ struct NarAccessor : public FSAccessor
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uint64_t pos = 0;
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public:
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NarIndexer(NarAccessor & acc, Source & source)
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: acc(acc), source(source)
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{ }
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void createMember(const Path & path, NarMember member)
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NarMember & createMember(const Path & path, NarMember member)
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{
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size_t level = std::count(path.begin(), path.end(), '/');
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while (parents.size() > level) parents.pop();
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@ -62,6 +64,8 @@ struct NarAccessor : public FSAccessor
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auto result = parents.top()->children.emplace(baseNameOf(path), std::move(member));
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parents.push(&result.first->second);
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}
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return *parents.top();
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}
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void createDirectory(const Path & path) override
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@ -69,28 +73,17 @@ struct NarAccessor : public FSAccessor
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createMember(path, {FSAccessor::Type::tDirectory, false, 0, 0});
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}
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void createRegularFile(const Path & path) override
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std::unique_ptr<FileHandle> createRegularFile(const Path & path, uint64_t size, bool executable) override
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{
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createMember(path, {FSAccessor::Type::tRegular, false, 0, 0});
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}
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auto & memb = createMember(path, {FSAccessor::Type::tRegular, false, 0, 0});
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void closeRegularFile() override
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{ }
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void isExecutable() override
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{
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parents.top()->isExecutable = true;
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}
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void preallocateContents(uint64_t size) override
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{
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assert(size <= std::numeric_limits<uint64_t>::max());
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parents.top()->size = (uint64_t) size;
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parents.top()->start = pos;
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}
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memb.size = (uint64_t) size;
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memb.start = pos;
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memb.isExecutable = executable;
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void receiveContents(std::string_view data) override
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{ }
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return std::make_unique<FileHandle>();
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}
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void createSymlink(const Path & path, const std::string & target) override
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{
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@ -379,6 +379,48 @@ void Store::addMultipleToStore(
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}
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}
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namespace {
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/**
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* If the NAR archive contains a single file at top-level, then save
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* the contents of the file to `s`. Otherwise assert.
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*/
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struct RetrieveRegularNARVisitor : NARParseVisitor
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{
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struct MyFileHandle : public FileHandle
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{
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Sink & sink;
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void receiveContents(std::string_view data) override
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{
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sink(data);
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}
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private:
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MyFileHandle(Sink & sink) : sink(sink) {}
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friend struct RetrieveRegularNARVisitor;
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};
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Sink & sink;
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RetrieveRegularNARVisitor(Sink & sink) : sink(sink) { }
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std::unique_ptr<FileHandle> createRegularFile(const Path & path, uint64_t size, bool executable) override
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{
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return std::unique_ptr<MyFileHandle>(new MyFileHandle{sink});
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}
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void createDirectory(const Path & path) override
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{
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assert(false && "RetrieveRegularNARVisitor::createDirectory must not be called");
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}
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void createSymlink(const Path & path, const std::string & target) override
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{
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assert(false && "RetrieveRegularNARVisitor::createSymlink must not be called");
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}
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};
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}
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/*
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The aim of this function is to compute in one pass the correct ValidPathInfo for
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@ -413,7 +455,7 @@ ValidPathInfo Store::addToStoreSlow(std::string_view name, const Path & srcPath,
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/* Note that fileSink and unusualHashTee must be mutually exclusive, since
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they both write to caHashSink. Note that that requisite is currently true
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because the former is only used in the flat case. */
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RetrieveRegularNARSink fileSink { caHashSink };
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RetrieveRegularNARVisitor fileSink { caHashSink };
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TeeSink unusualHashTee { narHashSink, caHashSink };
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auto & narSink = method == FileIngestionMethod::Recursive && hashAlgo != HashType::SHA256
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@ -429,7 +471,7 @@ ValidPathInfo Store::addToStoreSlow(std::string_view name, const Path & srcPath,
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information to narSink. */
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TeeSource tapped { fileSource, narSink };
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ParseSink blank;
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NARParseVisitor blank;
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auto & parseSink = method == FileIngestionMethod::Flat
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? fileSink
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: blank;
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@ -334,7 +334,7 @@ Generator<Entry> parse(Source & source)
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}
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static WireFormatGenerator restore(ParseSink & sink, Generator<nar::Entry> nar)
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static WireFormatGenerator restore(NARParseVisitor & sink, Generator<nar::Entry> nar)
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{
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while (auto entry = nar.next()) {
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co_yield std::visit(
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@ -347,16 +347,13 @@ static WireFormatGenerator restore(ParseSink & sink, Generator<nar::Entry> nar)
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},
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[&](nar::File f) {
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return [](auto f, auto & sink) -> WireFormatGenerator {
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sink.createRegularFile(f.path);
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sink.preallocateContents(f.size);
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if (f.executable) {
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sink.isExecutable();
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}
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auto handle = sink.createRegularFile(f.path, f.size, f.executable);
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while (auto block = f.contents.next()) {
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sink.receiveContents(std::string_view{block->data(), block->size()});
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handle->receiveContents(std::string_view{block->data(), block->size()});
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co_yield *block;
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}
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sink.closeRegularFile();
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handle->close();
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}(std::move(f), sink);
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},
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[&](nar::Symlink sl) {
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@ -377,12 +374,12 @@ static WireFormatGenerator restore(ParseSink & sink, Generator<nar::Entry> nar)
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}
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}
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WireFormatGenerator parseAndCopyDump(ParseSink & sink, Source & source)
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WireFormatGenerator parseAndCopyDump(NARParseVisitor & sink, Source & source)
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{
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return restore(sink, nar::parse(source));
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}
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void parseDump(ParseSink & sink, Source & source)
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void parseDump(NARParseVisitor & sink, Source & source)
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{
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auto parser = parseAndCopyDump(sink, source);
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while (parser.next()) {
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@ -390,11 +387,99 @@ void parseDump(ParseSink & sink, Source & source)
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}
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}
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struct RestoreSink : ParseSink
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/*
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* Note [NAR restoration security]:
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* It's *critical* that NAR restoration will never overwrite anything even if
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* duplicate filenames are passed in. It is inevitable that not all NARs are
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* fit to actually successfully restore to the target filesystem; errors may
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* occur due to collisions, and this *must* cause the NAR to be rejected.
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*
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* Although the filenames are blocked from being *the same bytes* by a higher
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* layer, filesystems have other ideas on every platform:
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* - The store may be on a case-insensitive filesystem like APFS, ext4 with
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* casefold directories, zfs with casesensitivity=insensitive
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* - The store may be on a Unicode normalizing (or normalization-insensitive)
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* filesystem like APFS (where files are looked up by
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* hash(normalize(fname))), HFS+ (where file names are always normalized to
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* approximately NFD), or zfs with normalization=formC, etc.
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*
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* It is impossible to know the version of Unicode being used by the underlying
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* filesystem, thus it is *impossible* to stop these collisions.
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*
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* Overwriting files as a result of invalid NARs will cause a security bug like
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* CppNix's CVE-2024-45593 (GHSA-h4vv-h3jq-v493)
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*/
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/**
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* This code restores NARs from disk.
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*
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* See Note [NAR restoration security] for security invariants in this procedure.
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*
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*/
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struct NARRestoreVisitor : NARParseVisitor
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{
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Path dstPath;
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AutoCloseFD fd;
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private:
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class MyFileHandle : public FileHandle
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{
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AutoCloseFD fd;
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MyFileHandle(AutoCloseFD && fd, uint64_t size, bool executable) : FileHandle(), fd(std::move(fd))
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{
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if (executable) {
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makeExecutable();
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}
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maybePreallocateContents(size);
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}
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void makeExecutable()
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{
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struct stat st;
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if (fstat(fd.get(), &st) == -1)
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throw SysError("fstat");
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if (fchmod(fd.get(), st.st_mode | (S_IXUSR | S_IXGRP | S_IXOTH)) == -1)
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throw SysError("fchmod");
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}
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void maybePreallocateContents(uint64_t len)
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{
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if (!archiveSettings.preallocateContents)
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return;
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#if HAVE_POSIX_FALLOCATE
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if (len) {
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errno = posix_fallocate(fd.get(), 0, len);
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/* Note that EINVAL may indicate that the underlying
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filesystem doesn't support preallocation (e.g. on
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OpenSolaris). Since preallocation is just an
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optimisation, ignore it. */
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if (errno && errno != EINVAL && errno != EOPNOTSUPP && errno != ENOSYS)
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throw SysError("preallocating file of %1% bytes", len);
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}
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#endif
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}
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public:
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~MyFileHandle() = default;
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virtual void close() override
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{
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/* Call close explicitly to make sure the error is checked */
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fd.close();
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}
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void receiveContents(std::string_view data) override
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{
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writeFull(fd.get(), data);
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}
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friend struct NARRestoreVisitor;
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};
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public:
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void createDirectory(const Path & path) override
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{
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Path p = dstPath + path;
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@ -402,49 +487,13 @@ struct RestoreSink : ParseSink
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throw SysError("creating directory '%1%'", p);
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};
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void createRegularFile(const Path & path) override
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std::unique_ptr<FileHandle> createRegularFile(const Path & path, uint64_t size, bool executable) override
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{
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Path p = dstPath + path;
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fd = AutoCloseFD{open(p.c_str(), O_CREAT | O_EXCL | O_WRONLY | O_CLOEXEC, 0666)};
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AutoCloseFD fd = AutoCloseFD{open(p.c_str(), O_CREAT | O_EXCL | O_WRONLY | O_CLOEXEC, 0666)};
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if (!fd) throw SysError("creating file '%1%'", p);
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}
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void closeRegularFile() override
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{
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/* Call close explicitly to make sure the error is checked */
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fd.close();
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}
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void isExecutable() override
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{
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struct stat st;
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if (fstat(fd.get(), &st) == -1)
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throw SysError("fstat");
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if (fchmod(fd.get(), st.st_mode | (S_IXUSR | S_IXGRP | S_IXOTH)) == -1)
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throw SysError("fchmod");
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}
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void preallocateContents(uint64_t len) override
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{
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if (!archiveSettings.preallocateContents)
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return;
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#if HAVE_POSIX_FALLOCATE
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if (len) {
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errno = posix_fallocate(fd.get(), 0, len);
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/* Note that EINVAL may indicate that the underlying
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filesystem doesn't support preallocation (e.g. on
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OpenSolaris). Since preallocation is just an
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optimisation, ignore it. */
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if (errno && errno != EINVAL && errno != EOPNOTSUPP && errno != ENOSYS)
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throw SysError("preallocating file of %1% bytes", len);
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}
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#endif
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}
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void receiveContents(std::string_view data) override
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{
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writeFull(fd.get(), data);
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return std::unique_ptr<MyFileHandle>(new MyFileHandle(std::move(fd), size, executable));
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}
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void createSymlink(const Path & path, const std::string & target) override
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@ -457,7 +506,7 @@ struct RestoreSink : ParseSink
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void restorePath(const Path & path, Source & source)
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{
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RestoreSink sink;
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NARRestoreVisitor sink;
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sink.dstPath = path;
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parseDump(sink, source);
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}
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@ -468,10 +517,9 @@ WireFormatGenerator copyNAR(Source & source)
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// FIXME: if 'source' is the output of dumpPath() followed by EOF,
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// we should just forward all data directly without parsing.
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static ParseSink parseSink; /* null sink; just parse the NAR */
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static NARParseVisitor parseSink; /* null sink; just parse the NAR */
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return parseAndCopyDump(parseSink, source);
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}
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}
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@ -76,45 +76,47 @@ WireFormatGenerator dumpString(std::string_view s);
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/**
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* \todo Fix this API, it sucks.
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* A visitor for NAR parsing that performs filesystem (or virtual-filesystem)
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* actions to restore a NAR.
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*
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* Methods of this may arbitrarily fail due to filename collisions.
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*/
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struct ParseSink
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struct NARParseVisitor
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{
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virtual void createDirectory(const Path & path) { };
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virtual void createRegularFile(const Path & path) { };
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virtual void closeRegularFile() { };
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virtual void isExecutable() { };
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virtual void preallocateContents(uint64_t size) { };
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virtual void receiveContents(std::string_view data) { };
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virtual void createSymlink(const Path & path, const std::string & target) { };
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};
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/**
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* If the NAR archive contains a single file at top-level, then save
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* the contents of the file to `s`. Otherwise barf.
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*/
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struct RetrieveRegularNARSink : ParseSink
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{
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bool regular = true;
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Sink & sink;
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RetrieveRegularNARSink(Sink & sink) : sink(sink) { }
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void createDirectory(const Path & path) override
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/**
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* A type-erased file handle specific to this particular NARParseVisitor.
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*/
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struct FileHandle
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{
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regular = false;
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FileHandle() {}
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FileHandle(FileHandle const &) = delete;
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FileHandle & operator=(FileHandle &) = delete;
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/** Puts one block of data into the file */
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virtual void receiveContents(std::string_view data) { }
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/**
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* Explicitly closes the file. Further operations may throw an assert.
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* This exists so that closing can fail and throw an exception without doing so in a destructor.
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*/
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virtual void close() { }
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virtual ~FileHandle() = default;
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};
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virtual void createDirectory(const Path & path) { }
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/**
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* Creates a regular file in the extraction output with the given size and executable flag.
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* The size is guaranteed to be the true size of the file.
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*/
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[[nodiscard]]
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virtual std::unique_ptr<FileHandle> createRegularFile(const Path & path, uint64_t size, bool executable)
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{
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return std::make_unique<FileHandle>();
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}
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void receiveContents(std::string_view data) override
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{
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sink(data);
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}
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void createSymlink(const Path & path, const std::string & target) override
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{
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regular = false;
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}
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virtual void createSymlink(const Path & path, const std::string & target) { }
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};
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namespace nar {
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|
@ -160,8 +162,8 @@ Generator<Entry> parse(Source & source);
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}
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WireFormatGenerator parseAndCopyDump(ParseSink & sink, Source & source);
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void parseDump(ParseSink & sink, Source & source);
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WireFormatGenerator parseAndCopyDump(NARParseVisitor & sink, Source & source);
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void parseDump(NARParseVisitor & sink, Source & source);
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void restorePath(const Path & path, Source & source);
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@ -210,7 +210,7 @@ inline Paths createDirs(PathView path)
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}
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/**
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* Create a symlink.
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* Create a symlink. Throws if the symlink exists.
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*/
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void createSymlink(const Path & target, const Path & link);
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