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https://github.com/FEX-Emu/FEX.git
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I made the assumption from some bad historical knowledge that the kernel will canonicalize relative filenames and symlinks for applications that execute through execve. This turns out to not be true. In fact it passes pathname untouched to the interpreter. So we need to do an additional fix up on relative paths to ensure glibc doesn't break. Fixes a major bug that breaks a bunch of games.
195 lines
8.5 KiB
C++
195 lines
8.5 KiB
C++
#include "Common/ArgumentLoader.h"
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#include "Common/Config.h"
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#include <FEXCore/Config/Config.h>
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#include <FEXHeaderUtils/SymlinkChecks.h>
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#include <cstring>
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#include <filesystem>
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#include <fstream>
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#include <map>
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#include <linux/limits.h>
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#include <list>
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#include <unordered_map>
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#include <utility>
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#include <json-maker.h>
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namespace FEX::Config {
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static const std::map<FEXCore::Config::ConfigOption, std::string> ConfigToNameLookup = {{
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#define OPT_BASE(type, group, enum, json, default) {FEXCore::Config::ConfigOption::CONFIG_##enum, #json},
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#include <FEXCore/Config/ConfigValues.inl>
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}};
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void SaveLayerToJSON(const std::string& Filename, FEXCore::Config::Layer *const Layer) {
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char Buffer[4096];
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char *Dest{};
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Dest = json_objOpen(Buffer, nullptr);
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Dest = json_objOpen(Dest, "Config");
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for (auto &it : Layer->GetOptionMap()) {
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auto &Name = ConfigToNameLookup.find(it.first)->second;
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for (auto &var : it.second) {
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Dest = json_str(Dest, Name.c_str(), var.c_str());
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}
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}
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Dest = json_objClose(Dest);
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Dest = json_objClose(Dest);
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json_end(Dest);
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std::ofstream Output (Filename, std::ios::out | std::ios::binary);
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if (Output.is_open()) {
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Output.write(Buffer, strlen(Buffer));
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Output.close();
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}
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}
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std::string RecoverGuestProgramFilename(std::string Program, bool ExecFDInterp, const std::string_view ProgramFDFromEnv) {
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// If executed with a FEX FD then the Program argument might be empty.
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// In this case we need to scan the FD node to recover the application binary that exists on disk.
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// Only do this if the Program argument is empty, since we would prefer the application's expectation
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// of application name.
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if (!ProgramFDFromEnv.empty() && Program.empty()) {
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// Get the `dev` node of the execveat fd string.
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Program = "/dev/fd/";
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Program += ProgramFDFromEnv;
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}
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// If we were provided a relative path then we need to canonicalize it to become absolute.
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// If the program name isn't resolved to an absolute path then glibc breaks inside it's `_dl_get_origin` function.
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// This is because we rewrite `/proc/self/exe` to the absolute program path calculated in here.
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if (!Program.starts_with('/')) {
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Program = std::filesystem::canonical(std::move(Program)).string();
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}
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// If FEX was invoked through an FD path (either binfmt_misc or execveat) then we need to check the
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// Program to see if it is a symlink to find the real path.
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//
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// binfmt_misc: Arg[0] is actually the execve `pathname` argument or `/dev/fd/<FD>` path
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// - `pathname` with execve (See Side Note)
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// - FD path with execveat and FD doesn't have an existing file on the disk
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//
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// ProgramFDFromEnv: Arg[0] is Application provided data or `/dev/fd/<FD>` from above fix-up.
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// - execveat was either passed no arguments (argv=NULL) or the first argument is an empty string (argv[0]="").
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// - FD path with execveat and FD doesn't have an existing file on the disk
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//
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// Side Note:
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// The `execve` syscall doesn't take an FD but binfmt_misc will give FEX an FD to execute still.
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// Arg[0] will always contain the `pathname` argument provided to execve.
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// It does not resolve symlinks, and it does not convert the path to absolute.
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//
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// Examples:
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// - Regular execve. Application must exist on disk.
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// execve binfmt_misc args layout: `FEXInterpreter <Path provided to execve pathname> <user provided argv[0]> <user provided argv[n]>...`
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// - Regular execveat with FD. FD is backed by application on disk.
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// execveat binfmt_misc args layout: `FEXInterpreter <Path provided to execve pathname> <user provided argv[0]> <user provided argv[n]>...`
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// - Regular execveat with FD. FD points to file on disk that has been deleted.
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// execveat binfmt_misc args layout: `FEXInterpreter /dev/fd/<FD> <user provided argv[0]> <user provided argv[n]>...`
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if (ExecFDInterp || !ProgramFDFromEnv.empty()) {
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// Only in the case that FEX is executing an FD will the program argument potentially be a symlink.
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// This symlink will be in the style of `/dev/fd/<FD>`.
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//
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// If the argument /is/ a symlink then resolve its path to get the original application name.
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if (FHU::Symlinks::IsSymlink(Program)) {
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char Filename[PATH_MAX];
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auto SymlinkPath = FHU::Symlinks::ResolveSymlink(Program, Filename);
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if (SymlinkPath.starts_with('/')) {
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// This file was executed through an FD.
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// Remove the ` (deleted)` text if the file was deleted after the fact.
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// Otherwise just get the symlink without the deleted text.
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return std::string{SymlinkPath.substr(0, SymlinkPath.rfind(" (deleted)"))};
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}
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}
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}
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return Program;
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}
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ApplicationNames LoadConfig(
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bool NoFEXArguments,
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bool LoadProgramConfig,
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int argc,
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char **argv,
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char **const envp,
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bool ExecFDInterp,
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const std::string_view ProgramFDFromEnv) {
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FEXCore::Config::Initialize();
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FEXCore::Config::AddLayer(FEXCore::Config::CreateGlobalMainLayer());
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FEXCore::Config::AddLayer(FEXCore::Config::CreateMainLayer());
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if (NoFEXArguments) {
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FEX::ArgLoader::LoadWithoutArguments(argc, argv);
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}
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else {
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FEXCore::Config::AddLayer(std::make_unique<FEX::ArgLoader::ArgLoader>(argc, argv));
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}
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FEXCore::Config::AddLayer(FEXCore::Config::CreateEnvironmentLayer(envp));
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FEXCore::Config::Load();
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auto Args = FEX::ArgLoader::Get();
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if (LoadProgramConfig) {
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if (Args.empty()) {
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// Early exit if we weren't passed an argument
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return {};
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}
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Args[0] = RecoverGuestProgramFilename(std::move(Args[0]), ExecFDInterp, ProgramFDFromEnv);
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std::string& Program = Args[0];
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bool Wine = false;
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std::filesystem::path ProgramName;
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for (size_t CurrentProgramNameIndex = 0; CurrentProgramNameIndex < Args.size(); ++CurrentProgramNameIndex) {
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auto CurrentProgramName = std::filesystem::path(Args[CurrentProgramNameIndex]).filename();
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if (CurrentProgramName == "wine-preloader" ||
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CurrentProgramName == "wine64-preloader") {
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// Wine preloader is required to be in the format of `wine-preloader <wine executable>`
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// The preloader doesn't execve the executable, instead maps it directly itself
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// Skip the next argument since we know it is wine (potentially with custom wine executable name)
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++CurrentProgramNameIndex;
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Wine = true;
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}
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else if(CurrentProgramName == "wine" ||
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CurrentProgramName == "wine64") {
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// Next argument, this isn't the program we want
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//
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// If we are running wine or wine64 then we should check the next argument for the application name instead.
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// wine will change the active program name with `setprogname` or `prctl(PR_SET_NAME`.
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// Since FEX needs this data far earlier than libraries we need a different check.
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Wine = true;
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}
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else {
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if (Wine == true) {
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// If this was path separated with '\' then we need to check that.
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auto WinSeparator = CurrentProgramName.string().find_last_of('\\');
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if (WinSeparator != CurrentProgramName.string().npos) {
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// Used windows separators
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CurrentProgramName = CurrentProgramName.string().substr(WinSeparator + 1);
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}
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}
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ProgramName = CurrentProgramName;
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// Past any wine program names
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break;
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}
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}
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FEXCore::Config::AddLayer(FEXCore::Config::CreateAppLayer(ProgramName, FEXCore::Config::LayerType::LAYER_GLOBAL_APP));
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FEXCore::Config::AddLayer(FEXCore::Config::CreateAppLayer(ProgramName, FEXCore::Config::LayerType::LAYER_LOCAL_APP));
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auto SteamID = getenv("SteamAppId");
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if (SteamID) {
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// If a SteamID exists then let's search for Steam application configs as well.
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// We want to key off both the SteamAppId number /and/ the executable since we may not want to thunk all binaries.
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auto SteamAppName = fmt::format("Steam_{}_{}", SteamID, ProgramName.string());
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FEXCore::Config::AddLayer(FEXCore::Config::CreateAppLayer(SteamAppName, FEXCore::Config::LayerType::LAYER_GLOBAL_STEAM_APP));
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FEXCore::Config::AddLayer(FEXCore::Config::CreateAppLayer(SteamAppName, FEXCore::Config::LayerType::LAYER_LOCAL_STEAM_APP));
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}
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return ApplicationNames{std::move(Program), std::move(ProgramName)};
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}
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return {};
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}
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}
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