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OrcaSlicer/src/libslic3r/miniz_extension.cpp
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HanifKoh 8a6377f087 Add Missing Includes Across src/libslic3r (#16068)
* Add Missing Includes Across src/libslic3r

Every libslic3r source and header now directly includes the headers declaring what it uses, rather than relying on the precompiled header or transitive includes. Generated with clang-tidy misc-include-cleaner, with libslic3r headers spelled libslic3r/... so they resolve outside the library's private include paths. MultiMaterialSegmentation.hpp, Support/SupportParameters.hpp and Format/STEP.hpp are made self-contained by hand.

* Make the libslic3r Headers Compile on Their Own

Each now includes, or forward-declares, what it uses instead of relying on what its includers happened to include first. Left out: I18N.hpp, which errors on purpose when included from GUI code, and VoxelizeCSGMesh.hpp and SLA/bicubic.h, which nothing includes and which no longer compile at all.

* Add the Includes Missing From the Hand-Fixed libslic3r Headers

clang-tidy would not edit these headers while they failed to compile on their own, so the first pass skipped them. With the headers now self-contained, a second pass adds the rest.

* Keep Windows Setup Ahead of the Added libslic3r Includes

Print.cpp and Thread.cpp open with a _WIN32 block that has to come first; without the precompiled header, Print.cpp otherwise reaches windows.h through OCCT with NONLS defined and boost/regex fails. OpenVDBUtils.cpp and SLA/SupportTreeBuilder.cpp had includes inside #ifndef NOMINMAX, which libslic3r defines on Windows, so those were skipped there. .clang-tidy also ignores the MSVC STL and UCRT internals, Boost.Multiprecision's fwd.hpp and CPython's Windows include directory.

* Re-Add libslic3r Includes After the Clipper2 2.0.1 Migration

Rebasing onto main took main's version of the files the Clipper2 migration rewrote, so their added includes are restored here, along with includes for main's new code. Clipper2's individual headers are now ignored by clang-tidy: they only build the Z variant through clipper2_z.hpp, which defines USINGZ first, so including clipper.core.h and the like directly broke ClipperZUtils.cpp.
2026-10-03 15:31:11 +08:00

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C++

#include <cstddef>
#include <cstdio>
#include <boost/filesystem/path.hpp>
#include <boost/filesystem/operations.hpp>
#include <boost/filesystem/file_status.hpp>
#include <exception>
#include <cstdint>
#include "miniz_extension.hpp"
#include "Utils.hpp"
#include <boost/filesystem.hpp>
#include <boost/log/trivial.hpp>
#include <string>
#include <miniz.h>
#include <stdio.h>
#if defined(_MSC_VER) || defined(__MINGW64__)
#include "boost/nowide/cstdio.hpp"
#endif
#include "I18N.hpp"
//! macro used to mark string used at localization,
//! return same string
#define L(s) Slic3r::I18N::translate(s)
namespace Slic3r {
namespace {
std::string decode_zip_unicode_path_extra_field(const std::string& extra, const std::string& path)
{
size_t offset = 0;
const mz_uint32 path_crc = mz_crc32(0, reinterpret_cast<const unsigned char*>(path.data()), path.size());
while (offset + 4 <= extra.size()) {
const unsigned char* field = reinterpret_cast<const unsigned char*>(extra.data() + offset);
const std::uint16_t len = field[2] | (static_cast<std::uint16_t>(field[3]) << 8);
if (offset + 4 + len > extra.size())
break;
if (field[0] == 0x75 && field[1] == 0x70 && len >= 5 && field[4] == 0x01) {
const mz_uint32 stored_crc =
static_cast<mz_uint32>(field[5]) |
(static_cast<mz_uint32>(field[6]) << 8) |
(static_cast<mz_uint32>(field[7]) << 16) |
(static_cast<mz_uint32>(field[8]) << 24);
if (stored_crc == path_crc)
return std::string(extra.data() + offset + 9, extra.data() + offset + 4 + len);
}
offset += 4 + len;
}
return Slic3r::decode_path(path.c_str());
}
bool open_zip(mz_zip_archive *zip, const char *fname, bool isread)
{
if (!zip) return false;
const char *mode = isread ? "rb" : "wb";
FILE *f = nullptr;
#if defined(_MSC_VER) || defined(__MINGW64__)
f = boost::nowide::fopen(fname, mode);
#elif defined(__GNUC__) && defined(_LARGEFILE64_SOURCE)
f = fopen64(fname, mode);
#else
f = fopen(fname, mode);
#endif
if (!f) {
zip->m_last_error = MZ_ZIP_FILE_OPEN_FAILED;
return false;
}
bool res = false;
if (isread)
{
res = mz_zip_reader_init_cfile(zip, f, 0, 0);
if (!res)
// if we get here it means we tried to open a non-zip file
// we need to close the file here because the call to mz_zip_get_cfile() made into close_zip() returns a null pointer
// see: https://github.com/prusa3d/PrusaSlicer/issues/3536
fclose(f);
}
else
res = mz_zip_writer_init_cfile(zip, f, 0);
return res;
}
bool close_zip(mz_zip_archive *zip, bool isread)
{
bool ret = false;
if (zip) {
FILE *f = mz_zip_get_cfile(zip);
ret = bool(isread ? mz_zip_reader_end(zip)
: mz_zip_writer_end(zip));
if (f) fclose(f);
}
return ret;
}
}
bool open_zip_reader(mz_zip_archive *zip, const std::string &fname)
{
return open_zip(zip, fname.c_str(), true);
}
bool open_zip_writer(mz_zip_archive *zip, const std::string &fname)
{
return open_zip(zip, fname.c_str(), false);
}
bool close_zip_reader(mz_zip_archive *zip) { return close_zip(zip, true); }
bool close_zip_writer(mz_zip_archive *zip) { return close_zip(zip, false); }
std::string decode_archive_entry_path(mz_zip_archive *zip, const mz_zip_archive_file_stat &stat)
{
if (stat.m_is_utf8)
return stat.m_filename;
std::string extra(1024, 0);
const size_t extra_size = mz_zip_reader_get_extra(zip, stat.m_file_index, extra.data(), extra.size());
return decode_zip_unicode_path_extra_field(extra.substr(0, extra_size > 0 ? extra_size - 1 : 0), stat.m_filename);
}
bool extract_archive_confined(const std::string &zip_path_utf8, const std::string &dest_dir)
{
mz_zip_archive archive;
mz_zip_zero_struct(&archive);
if (!open_zip_reader(&archive, zip_path_utf8)) {
BOOST_LOG_TRIVIAL(error) << "Unable to open zip reader for " << zip_path_utf8;
return false;
}
const mz_uint num_entries = mz_zip_reader_get_num_files(&archive);
mz_zip_archive_file_stat stat;
// Validate every entry first so an archive with a single escaping entry leaves no partial output behind.
const boost::filesystem::path root(dest_dir);
for (mz_uint i = 0; i < num_entries; ++i) {
if (mz_zip_reader_file_stat(&archive, i, &stat) && !is_path_within_root(stat.m_filename, root)) {
BOOST_LOG_TRIVIAL(error) << "Unzip: rejecting " << zip_path_utf8 << ", entry " << stat.m_filename << " resolves outside " << dest_dir;
close_zip_reader(&archive);
return false;
}
}
for (mz_uint i = 0; i < num_entries; ++i) {
if (!mz_zip_reader_file_stat(&archive, i, &stat)) {
BOOST_LOG_TRIVIAL(warning) << "Unzip: read file stat failed";
continue;
}
const std::string dest_file = dest_dir + "/" + stat.m_filename;
try {
if (stat.m_is_directory) {
const boost::filesystem::path dest_path(dest_file);
if (!boost::filesystem::exists(dest_path))
boost::filesystem::create_directories(dest_path);
continue;
}
if (stat.m_uncomp_size == 0) {
BOOST_LOG_TRIVIAL(warning) << "Unzip: invalid size for file " << stat.m_filename;
continue;
}
// Replace a symlink at the destination rather than writing through it.
const boost::filesystem::path dest_path(dest_file);
if (boost::filesystem::is_symlink(boost::filesystem::symlink_status(dest_path)))
boost::filesystem::remove(dest_path);
if (!mz_zip_reader_extract_to_file(&archive, stat.m_file_index, dest_file.c_str(), 0)) {
BOOST_LOG_TRIVIAL(error) << "Unzip: extract file " << stat.m_filename << " to dest " << dest_file << " failed";
close_zip_reader(&archive);
return false;
}
BOOST_LOG_TRIVIAL(info) << "Unzip: successfully extract file " << stat.m_file_index << " to " << dest_file;
} catch (const std::exception &e) {
close_zip_reader(&archive);
BOOST_LOG_TRIVIAL(error) << "Unzip: archive read exception: " << e.what();
return false;
}
}
close_zip_reader(&archive);
return true;
}
MZ_Archive::MZ_Archive()
{
mz_zip_zero_struct(&arch);
}
std::string MZ_Archive::get_errorstr(mz_zip_error mz_err)
{
switch (mz_err)
{
case MZ_ZIP_NO_ERROR:
return "no error";
case MZ_ZIP_UNDEFINED_ERROR:
return L("undefined error");
case MZ_ZIP_TOO_MANY_FILES:
return L("too many files");
case MZ_ZIP_FILE_TOO_LARGE:
return L("File too large");
case MZ_ZIP_UNSUPPORTED_METHOD:
return L("unsupported method");
case MZ_ZIP_UNSUPPORTED_ENCRYPTION:
return L("unsupported encryption");
case MZ_ZIP_UNSUPPORTED_FEATURE:
return L("unsupported feature");
case MZ_ZIP_FAILED_FINDING_CENTRAL_DIR:
return L("failed finding central directory");
case MZ_ZIP_NOT_AN_ARCHIVE:
return L("not a ZIP archive");
case MZ_ZIP_INVALID_HEADER_OR_CORRUPTED:
return L("invalid header or corrupted");
case MZ_ZIP_UNSUPPORTED_MULTIDISK:
return L("Saving to RAID is not supported.");
case MZ_ZIP_DECOMPRESSION_FAILED:
return L("decompression failed");
case MZ_ZIP_COMPRESSION_FAILED:
return L("compression failed");
case MZ_ZIP_UNEXPECTED_DECOMPRESSED_SIZE:
return L("unexpected decompressed size");
case MZ_ZIP_CRC_CHECK_FAILED:
return L("CRC check failed");
case MZ_ZIP_UNSUPPORTED_CDIR_SIZE:
return L("unsupported central directory size");
case MZ_ZIP_ALLOC_FAILED:
return L("allocation failed");
case MZ_ZIP_FILE_OPEN_FAILED:
return L("file open failed");
case MZ_ZIP_FILE_CREATE_FAILED:
return L("file create failed");
case MZ_ZIP_FILE_WRITE_FAILED:
return L("file write failed");
case MZ_ZIP_FILE_READ_FAILED:
return L("file read failed");
case MZ_ZIP_FILE_CLOSE_FAILED:
return L("file close failed");
case MZ_ZIP_FILE_SEEK_FAILED:
return L("file seek failed");
case MZ_ZIP_FILE_STAT_FAILED:
return L("file stat failed");
case MZ_ZIP_INVALID_PARAMETER:
return L("invalid parameter");
case MZ_ZIP_INVALID_FILENAME:
return L("invalid filename");
case MZ_ZIP_BUF_TOO_SMALL:
return L("Buffer too small");
case MZ_ZIP_INTERNAL_ERROR:
return L("internal error");
case MZ_ZIP_FILE_NOT_FOUND:
return L("file not found");
case MZ_ZIP_ARCHIVE_TOO_LARGE:
return L("Archive too large");
case MZ_ZIP_VALIDATION_FAILED:
return L("validation failed");
case MZ_ZIP_WRITE_CALLBACK_FAILED:
return L("write callback failed");
default:
break;
}
return "unknown error";
}
} // namespace Slic3r