480 lines
16 KiB
C++
480 lines
16 KiB
C++
#include "RemovableDriveManager.hpp"
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#include <libslic3r/libslic3r.h>
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#include <boost/nowide/convert.hpp>
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#include <boost/log/trivial.hpp>
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#if _WIN32
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#include <windows.h>
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#include <tchar.h>
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#include <winioctl.h>
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#include <shlwapi.h>
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#include <Dbt.h>
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#else
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// unix, linux & OSX includes
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#include <errno.h>
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#include <sys/mount.h>
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#include <sys/stat.h>
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#include <glob.h>
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#include <pwd.h>
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#include <boost/filesystem.hpp>
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#include <boost/filesystem/convenience.hpp>
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#include <boost/process.hpp>
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#endif
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namespace Slic3r {
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namespace GUI {
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wxDEFINE_EVENT(EVT_REMOVABLE_DRIVE_EJECTED, RemovableDriveEjectEvent);
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wxDEFINE_EVENT(EVT_REMOVABLE_DRIVES_CHANGED, RemovableDrivesChangedEvent);
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#if _WIN32
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std::vector<DriveData> RemovableDriveManager::search_for_removable_drives() const
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{
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// Get logical drives flags by letter in alphabetical order.
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DWORD drives_mask = ::GetLogicalDrives();
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// Allocate the buffers before the loop.
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std::wstring volume_name;
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std::wstring file_system_name;
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// Iterate the Windows drives from 'C' to 'Z'
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std::vector<DriveData> current_drives;
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// Skip A and B drives.
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drives_mask >>= 2;
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for (char drive = 'C'; drive <= 'Z'; ++ drive, drives_mask >>= 1)
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if (drives_mask & 1) {
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std::string path { drive, ':' };
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UINT drive_type = ::GetDriveTypeA(path.c_str());
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// DRIVE_REMOVABLE on W are sd cards and usb thumbnails (not usb harddrives)
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if (drive_type == DRIVE_REMOVABLE) {
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// get name of drive
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std::wstring wpath = boost::nowide::widen(path);
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volume_name.resize(MAX_PATH + 1);
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file_system_name.resize(MAX_PATH + 1);
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BOOL error = ::GetVolumeInformationW(wpath.c_str(), volume_name.data(), sizeof(volume_name), nullptr, nullptr, nullptr, file_system_name.data(), sizeof(file_system_name));
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if (error != 0) {
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volume_name.erase(volume_name.begin() + wcslen(volume_name.c_str()), volume_name.end());
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if (! file_system_name.empty()) {
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ULARGE_INTEGER free_space;
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::GetDiskFreeSpaceExW(wpath.c_str(), &free_space, nullptr, nullptr);
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if (free_space.QuadPart > 0) {
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path += "\\";
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current_drives.emplace_back(DriveData{ boost::nowide::narrow(volume_name), path });
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}
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}
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}
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}
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}
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return current_drives;
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}
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// Called from UI therefore it blocks the UI thread.
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// It also blocks updates at the worker thread.
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// Win32 implementation.
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void RemovableDriveManager::eject_drive()
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{
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if (m_last_save_path.empty())
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return;
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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auto it_drive_data = this->find_last_save_path_drive_data();
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if (it_drive_data != m_current_drives.end()) {
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// get handle to device
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std::string mpath = "\\\\.\\" + m_last_save_path;
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mpath = mpath.substr(0, mpath.size() - 1);
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HANDLE handle = CreateFileW(boost::nowide::widen(mpath).c_str(), GENERIC_READ | GENERIC_WRITE, FILE_SHARE_READ | FILE_SHARE_WRITE, nullptr, OPEN_EXISTING, 0, nullptr);
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if (handle == INVALID_HANDLE_VALUE) {
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std::cerr << "Ejecting " << mpath << " failed " << GetLastError() << " \n";
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDriveEjectEvent(EVT_REMOVABLE_DRIVE_EJECTED, std::pair<DriveData, bool>(*it_drive_data, false)));
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return;
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}
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DWORD deviceControlRetVal(0);
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//these 3 commands should eject device safely but they dont, the device does disappear from file explorer but the "device was safely remove" notification doesnt trigger.
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//sd cards does trigger WM_DEVICECHANGE messege, usb drives dont
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DeviceIoControl(handle, FSCTL_LOCK_VOLUME, nullptr, 0, nullptr, 0, &deviceControlRetVal, nullptr);
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DeviceIoControl(handle, FSCTL_DISMOUNT_VOLUME, nullptr, 0, nullptr, 0, &deviceControlRetVal, nullptr);
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// some implemenatations also calls IOCTL_STORAGE_MEDIA_REMOVAL here but it returns error to me
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BOOL error = DeviceIoControl(handle, IOCTL_STORAGE_EJECT_MEDIA, nullptr, 0, nullptr, 0, &deviceControlRetVal, nullptr);
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if (error == 0) {
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CloseHandle(handle);
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BOOST_LOG_TRIVIAL(error) << "Ejecting " << mpath << " failed " << deviceControlRetVal << " " << GetLastError() << " \n";
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDriveEjectEvent(EVT_REMOVABLE_DRIVE_EJECTED, std::pair<DriveData, bool>(*it_drive_data, false)));
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return;
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}
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CloseHandle(handle);
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDriveEjectEvent(EVT_REMOVABLE_DRIVE_EJECTED, std::pair< DriveData, bool >(std::move(*it_drive_data), true)));
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m_current_drives.erase(it_drive_data);
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}
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}
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std::string RemovableDriveManager::get_removable_drive_path(const std::string &path)
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{
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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if (m_current_drives.empty())
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return std::string();
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std::size_t found = path.find_last_of("\\");
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std::string new_path = path.substr(0, found);
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int letter = PathGetDriveNumberW(boost::nowide::widen(new_path).c_str());
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for (const DriveData &drive_data : m_current_drives) {
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char drive = drive_data.path[0];
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if (drive == 'A' + letter)
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return path;
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}
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return m_current_drives.front().path;
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}
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std::string RemovableDriveManager::get_removable_drive_from_path(const std::string& path)
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{
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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std::size_t found = path.find_last_of("\\");
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std::string new_path = path.substr(0, found);
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int letter = PathGetDriveNumberW(boost::nowide::widen(new_path).c_str());
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for (const DriveData &drive_data : m_current_drives) {
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assert(! drive_data.path.empty());
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if (drive_data.path.front() == 'A' + letter)
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return drive_data.path;
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}
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return std::string();
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}
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// Called by Win32 Volume arrived / detached callback.
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void RemovableDriveManager::volumes_changed()
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{
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if (m_initialized) {
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// Signal the worker thread to wake up and enumerate removable drives.
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m_wakeup = true;
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m_thread_stop_condition.notify_all();
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}
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}
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#else
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namespace search_for_drives_internal
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{
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static bool compare_filesystem_id(const std::string &path_a, const std::string &path_b)
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{
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struct stat buf;
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stat(path_a.c_str() ,&buf);
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dev_t id_a = buf.st_dev;
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stat(path_b.c_str() ,&buf);
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dev_t id_b = buf.st_dev;
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return id_a == id_b;
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}
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void inspect_file(const std::string &path, const std::string &parent_path, std::vector<DriveData> &out)
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{
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//confirms if the file is removable drive and adds it to vector
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//if not same file system - could be removable drive
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if (! compare_filesystem_id(path, parent_path)) {
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//free space
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boost::filesystem::space_info si = boost::filesystem::space(path);
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if (si.available != 0) {
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//user id
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struct stat buf;
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stat(path.c_str(), &buf);
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uid_t uid = buf.st_uid;
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std::string username(std::getenv("USER"));
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struct passwd *pw = getpwuid(uid);
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if (pw != 0 && pw->pw_name == username)
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out.emplace_back(DriveData{ boost::filesystem::basename(boost::filesystem::path(path)), path });
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}
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}
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}
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static void search_path(const std::string &path, const std::string &parent_path, std::vector<DriveData> &out)
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{
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glob_t globbuf;
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globbuf.gl_offs = 2;
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int error = glob(path.c_str(), GLOB_TILDE, NULL, &globbuf);
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if (error == 0) {
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for (size_t i = 0; i < globbuf.gl_pathc; ++ i)
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inspect_file(globbuf.gl_pathv[i], parent_path, out);
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} else {
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//if error - path probably doesnt exists so function just exits
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//std::cout<<"glob error "<< error<< "\n";
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}
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globfree(&globbuf);
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}
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}
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std::vector<DriveData> RemovableDriveManager::search_for_removable_drives() const
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{
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std::vector<DriveData> current_drives;
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#if __APPLE__
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this->list_devices(current_drives);
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#else
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//search /media/* folder
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search_for_drives_internal::search_path("/media/*", "/media", current_drives);
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//search_path("/Volumes/*", "/Volumes");
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std::string path(std::getenv("USER"));
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std::string pp(path);
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//search /media/USERNAME/* folder
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pp = "/media/"+pp;
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path = "/media/" + path + "/*";
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search_for_drives_internal::search_path(path, pp, current_drives);
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//search /run/media/USERNAME/* folder
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path = "/run" + path;
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pp = "/run"+pp;
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search_for_drives_internal::search_path(path, pp, current_drives);
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#endif
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return current_drives;
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}
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// Called from UI therefore it blocks the UI thread.
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// It also blocks updates at the worker thread.
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// Unix & OSX implementation.
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void RemovableDriveManager::eject_drive()
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{
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if (m_last_save_path.empty())
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return;
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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auto it_drive_data = this->find_last_save_path_drive_data();
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if (it_drive_data != m_current_drives.end()) {
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std::string correct_path(m_last_save_path);
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#ifndef __APPLE__
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for (size_t i = 0; i < correct_path.size(); ++i)
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if (correct_path[i]==' ') {
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correct_path = correct_path.insert(i,1,'\\');
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++ i;
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}
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#endif
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//std::cout<<"Ejecting "<<(*it).name<<" from "<< correct_path<<"\n";
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// there is no usable command in c++ so terminal command is used instead
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// but neither triggers "succesful safe removal messege"
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BOOST_LOG_TRIVIAL(info) << "Ejecting started";
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boost::process::ipstream istd_err;
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boost::process::child child(
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#if __APPLE__
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boost::process::search_path("diskutil"), "eject", correct_path.c_str(), (boost::process::std_out & boost::process::std_err) > istd_err);
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//Another option how to eject at mac. Currently not working.
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//used insted of system() command;
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//this->eject_device(correct_path);
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#else
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boost::process::search_path("umount"), correct_path.c_str(), (boost::process::std_out & boost::process::std_err) > istd_err);
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#endif
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std::string line;
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while (child.running() && std::getline(istd_err, line)) {
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BOOST_LOG_TRIVIAL(trace) << line;
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}
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// wait for command to finnish (blocks ui thread)
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child.wait();
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int err = child.exit_code();
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if (err) {
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BOOST_LOG_TRIVIAL(error) << "Ejecting failed";
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDriveEjectEvent(EVT_REMOVABLE_DRIVE_EJECTED, std::pair<DriveData, bool>(*it_drive_data, false)));
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return;
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}
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BOOST_LOG_TRIVIAL(info) << "Ejecting finished";
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDriveEjectEvent(EVT_REMOVABLE_DRIVE_EJECTED, std::pair<DriveData, bool>(std::move(*it_drive_data), true)));
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m_current_drives.erase(it_drive_data);
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}
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}
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std::string RemovableDriveManager::get_removable_drive_path(const std::string &path)
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{
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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std::size_t found = path.find_last_of("/");
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std::string new_path = found == path.size() - 1 ? path.substr(0, found) : path;
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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for (const DriveData &data : m_current_drives)
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if (search_for_drives_internal::compare_filesystem_id(new_path, data.path))
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return path;
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return m_current_drives.empty() ? std::string() : m_current_drives.front().path;
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}
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std::string RemovableDriveManager::get_removable_drive_from_path(const std::string& path)
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{
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std::size_t found = path.find_last_of("/");
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std::string new_path = found == path.size() - 1 ? path.substr(0, found) : path;
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// trim the filename
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found = new_path.find_last_of("/");
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new_path = new_path.substr(0, found);
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// check if same filesystem
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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for (const DriveData &drive_data : m_current_drives)
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if (search_for_drives_internal::compare_filesystem_id(new_path, drive_data.path))
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return drive_data.path;
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return std::string();
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}
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#endif
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void RemovableDriveManager::init(wxEvtHandler *callback_evt_handler)
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{
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assert(! m_initialized);
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assert(m_callback_evt_handler == nullptr);
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if (m_initialized)
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return;
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m_initialized = true;
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m_callback_evt_handler = callback_evt_handler;
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#if __APPLE__
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this->register_window_osx();
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#endif
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#ifdef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#else // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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// Don't call update() manually, as the UI triggered APIs call this->update() anyways.
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m_thread = boost::thread((boost::bind(&RemovableDriveManager::thread_proc, this)));
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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}
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void RemovableDriveManager::shutdown()
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{
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#if __APPLE__
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this->unregister_window_osx();
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#endif
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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if (m_thread.joinable()) {
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// Stop the worker thread, if running.
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{
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// Notify the worker thread to cancel wait on detection polling.
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std::lock_guard<std::mutex> lck(m_thread_stop_mutex);
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m_stop = true;
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}
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m_thread_stop_condition.notify_all();
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// Wait for the worker thread to stop.
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m_thread.join();
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m_stop = false;
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}
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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m_initialized = false;
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m_callback_evt_handler = nullptr;
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}
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bool RemovableDriveManager::set_and_verify_last_save_path(const std::string &path)
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{
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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this->update();
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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m_last_save_path = this->get_removable_drive_from_path(path);
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m_exporting_finished = false;
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return ! m_last_save_path.empty();
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}
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RemovableDriveManager::RemovableDrivesStatus RemovableDriveManager::status()
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{
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RemovableDriveManager::RemovableDrivesStatus out;
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{
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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out.has_eject = this->find_last_save_path_drive_data() != m_current_drives.end();
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out.has_removable_drives = ! m_current_drives.empty();
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}
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if (! out.has_eject)
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m_last_save_path.clear();
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out.has_eject = out.has_eject && m_exporting_finished;
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return out;
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}
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// Update is called from thread_proc() and from most of the public methods on demand.
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void RemovableDriveManager::update()
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{
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tbb::mutex::scoped_lock inside_update_lock;
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#ifdef _WIN32
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// All wake up calls up to now are now consumed when the drive enumeration starts.
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m_wakeup = false;
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#endif // _WIN32
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if (inside_update_lock.try_acquire(m_inside_update_mutex)) {
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// Got the lock without waiting. That means, the update was not running.
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// Run the update.
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std::vector<DriveData> current_drives = this->search_for_removable_drives();
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// Post update events.
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tbb::mutex::scoped_lock lock(m_drives_mutex);
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std::sort(current_drives.begin(), current_drives.end());
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if (current_drives != m_current_drives) {
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assert(m_callback_evt_handler);
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if (m_callback_evt_handler)
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wxPostEvent(m_callback_evt_handler, RemovableDrivesChangedEvent(EVT_REMOVABLE_DRIVES_CHANGED));
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}
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m_current_drives = std::move(current_drives);
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} else {
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// Acquiring the m_iniside_update lock failed, therefore another update is running.
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// Just block until the other instance of update() finishes.
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inside_update_lock.acquire(m_inside_update_mutex);
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}
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}
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#ifndef REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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void RemovableDriveManager::thread_proc()
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{
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// Signal the worker thread to update initially.
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#ifdef _WIN32
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m_wakeup = true;
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#endif // _WIN32
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for (;;) {
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// Wait for 2 seconds before running the disk enumeration.
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// Cancellable.
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{
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std::unique_lock<std::mutex> lck(m_thread_stop_mutex);
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#ifdef _WIN32
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// Reacting to updates by WM_DEVICECHANGE and WM_USER_MEDIACHANGED
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m_thread_stop_condition.wait(lck, [this]{ return m_stop || m_wakeup; });
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#else
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m_thread_stop_condition.wait_for(lck, std::chrono::seconds(2), [this]{ return m_stop; });
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#endif
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}
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if (m_stop)
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// Stop the worker thread.
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break;
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// Update m_current drives and send out update events.
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this->update();
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}
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}
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#endif // REMOVABLE_DRIVE_MANAGER_OS_CALLBACKS
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std::vector<DriveData>::const_iterator RemovableDriveManager::find_last_save_path_drive_data() const
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{
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return Slic3r::binary_find_by_predicate(m_current_drives.begin(), m_current_drives.end(),
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[this](const DriveData &data){ return data.path < m_last_save_path; },
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[this](const DriveData &data){ return data.path == m_last_save_path; });
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}
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}} // namespace Slic3r::GUI
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