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https://github.com/NixOS/nix
synced 2025-06-27 00:11:17 +02:00
libarchive proof of concept
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parent
3b9c9d34e5
commit
9ff5f6492f
8 changed files with 124 additions and 27 deletions
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@ -6,6 +6,6 @@ libutil_DIR := $(d)
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libutil_SOURCES := $(wildcard $(d)/*.cc)
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libutil_LDFLAGS = $(LIBLZMA_LIBS) -lbz2 -pthread $(OPENSSL_LIBS) $(LIBBROTLI_LIBS) $(BOOST_LDFLAGS) -lboost_context
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libutil_LDFLAGS = $(LIBLZMA_LIBS) -lbz2 -pthread $(OPENSSL_LIBS) $(LIBBROTLI_LIBS) $(LIBARCHIVE_LIBS) $(BOOST_LDFLAGS) -lboost_context
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libutil_LIBS = libnixrust
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@ -1,5 +1,8 @@
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#include "rust-ffi.hh"
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#include "compression.hh"
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#include <archive.h>
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#include <archive_entry.h>
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#include "finally.hh"
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extern "C" {
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rust::Result<std::tuple<>> *
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@ -8,29 +11,123 @@ extern "C" {
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namespace nix {
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std::shared_ptr<struct archive> archive_read_ptr() {
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return std::shared_ptr<struct archive>(archive_read_new(),
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[](auto p) {
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archive_read_close(p);
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archive_read_free(p);
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});
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}
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void archive_read_open_source(std::shared_ptr<struct archive> a, Source& s, unsigned int bufsize = 1024) {
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std::shared_ptr<unsigned char> buffer((unsigned char*)malloc(bufsize), [](auto p) { free(p); });
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typedef struct {
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decltype(buffer) buf;
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Source& src;
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unsigned int bs;
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} St;
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St* state = new St({buffer, s, bufsize});
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if (archive_read_open(a.get(), state,
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NULL /* open */,
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([] (struct archive*, void* sptr, const void** buf) -> long int {
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St& s = *(static_cast<St*>(sptr));
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*buf = s.buf.get();
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try {
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return s.src.read(s.buf.get(), s.bs);
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} catch (EndOfFile &) {
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return 0;
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}
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/* TODO: I don't know what happens if anything else is thrown here */
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}), [] (struct archive*, void* sptr) {
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delete static_cast<St*>(sptr);
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return ARCHIVE_OK;
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})) {
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throw Error("archive is corrupt (%s)", archive_error_string(a.get()));
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}
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}
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std::shared_ptr<struct archive> archive_write_ptr() {
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return std::shared_ptr<struct archive>(archive_write_disk_new(),
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[](auto p) {
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archive_write_close(p);
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archive_write_free(p);
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});
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}
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static void copy_data(std::shared_ptr<struct archive> ar, std::shared_ptr<struct archive> aw)
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{
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int r;
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const void *buff;
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size_t size;
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la_int64_t offset;
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for (;;) {
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r = archive_read_data_block(ar.get(), &buff, &size, &offset);
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if (r == ARCHIVE_EOF) return;
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if (r < ARCHIVE_OK) {
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throw Error("archive is corrupt (%s)", archive_error_string(ar.get()));
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}
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r = archive_write_data_block(aw.get(), buff, size, offset);
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if (r < ARCHIVE_OK) {
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throw Error("could not write archive output (%s)", archive_error_string(aw.get()));
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}
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}
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}
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static void extract_archive(std::shared_ptr<struct archive> a, const Path & destDir) {
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char * cwd = getcwd(0, 0);
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if (!cwd) throw SysError("getting current directory");
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Finally freeCwd([&]() { free(cwd); });
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int r = chdir(destDir.c_str());
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if (r != 0) throw SysError("setting directory to tar output path");
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struct archive_entry *entry;
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r = archive_read_next_header(a.get(), &entry);
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if (r != ARCHIVE_OK) {
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throw Error("archive is corrupt (%s)", archive_error_string(a.get()));
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}
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int flags = 0;
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auto ext = archive_write_ptr();
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flags |= ARCHIVE_EXTRACT_PERM;
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flags |= ARCHIVE_EXTRACT_FFLAGS;
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archive_write_disk_set_options(ext.get(), flags);
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archive_write_disk_set_standard_lookup(ext.get());
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for(;;) {
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r = archive_read_next_header(a.get(), &entry);
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if (r == ARCHIVE_EOF) break;
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if (r == ARCHIVE_WARN) {
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std::cerr << "warning: " << archive_error_string(a.get());
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} else if (r < ARCHIVE_WARN) {
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throw Error("archive is corrupt (%s)", archive_error_string(a.get()));
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}
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r = archive_write_header(ext.get(), entry);
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if (r != ARCHIVE_OK) {
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throw Error("could not write archive output (%s)", archive_error_string(ext.get()));
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}
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if (archive_entry_size(entry) > 0) {
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copy_data(a, ext);
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}
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archive_write_finish_entry(ext.get());
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}
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r = chdir(cwd);
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if (r != 0) throw SysError("resetting directory after archive extraction");
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}
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void unpackTarfile(Source & source, const Path & destDir)
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{
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rust::Source source2(source);
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rust::CBox(unpack_tarfile(source2, destDir))->unwrap();
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auto a = archive_read_ptr();
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archive_read_support_filter_all(a.get());
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archive_read_support_format_all(a.get());
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archive_read_open_source(a, source);
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createDirs(destDir);
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extract_archive(a, destDir);
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}
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void unpackTarfile(const Path & tarFile, const Path & destDir,
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std::optional<std::string> baseName)
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void unpackTarfile(const Path & tarFile, const Path & destDir)
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{
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if (!baseName) baseName = baseNameOf(tarFile);
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auto source = sinkToSource([&](Sink & sink) {
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// FIXME: look at first few bytes to determine compression type.
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auto decompressor =
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// FIXME: add .gz support
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hasSuffix(*baseName, ".bz2") ? makeDecompressionSink("bzip2", sink) :
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hasSuffix(*baseName, ".xz") ? makeDecompressionSink("xz", sink) :
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makeDecompressionSink("none", sink);
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readFile(tarFile, *decompressor);
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decompressor->finish();
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});
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unpackTarfile(*source, destDir);
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auto a = archive_read_ptr();
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archive_read_support_filter_all(a.get());
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archive_read_support_format_all(a.get());
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int r = archive_read_open_filename(a.get(), tarFile.c_str(), 16384);
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if (r != ARCHIVE_OK) {
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throw Error("archive is corrupt (%s)", archive_error_string(a.get()));
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}
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createDirs(destDir);
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extract_archive(a, destDir);
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}
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}
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@ -4,7 +4,6 @@ namespace nix {
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void unpackTarfile(Source & source, const Path & destDir);
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void unpackTarfile(const Path & tarFile, const Path & destDir,
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std::optional<std::string> baseName = {});
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void unpackTarfile(const Path & tarFile, const Path & destDir);
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}
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