mirror of https://github.com/AxioDL/metaforce.git
229 lines
7.9 KiB
C++
229 lines
7.9 KiB
C++
#include "logvisor/logvisor.hpp"
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#include "boo/boo.hpp"
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#include "specter/specter.hpp"
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#include "hecl/CVarManager.hpp"
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#include "Runtime/CBasics.hpp"
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#include "ViewManager.hpp"
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#include "hecl/hecl.hpp"
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#include "hecl/CVarCommons.hpp"
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#include "hecl/Console.hpp"
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static logvisor::Module AthenaLog("Athena");
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static void AthenaExc(athena::error::Level level, const char* file, const char*, int line,
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fmt::string_view fmt, fmt::format_args args) {
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AthenaLog.vreport(logvisor::Level(level), fmt, args);
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}
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namespace urde {
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static logvisor::Module Log{"URDE"};
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static hecl::SystemString CPUFeatureString(const zeus::CPUInfo& cpuInf) {
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hecl::SystemString features;
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auto AddFeature = [&features](const hecl::SystemChar* str) {
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if (!features.empty())
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features += _SYS_STR(", ");
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features += str;
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};
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if (cpuInf.AESNI)
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AddFeature(_SYS_STR("AES-NI"));
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if (cpuInf.SSE1)
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AddFeature(_SYS_STR("SSE"));
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if (cpuInf.SSE2)
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AddFeature(_SYS_STR("SSE2"));
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if (cpuInf.SSE3)
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AddFeature(_SYS_STR("SSE3"));
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if (cpuInf.SSSE3)
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AddFeature(_SYS_STR("SSSE3"));
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if (cpuInf.SSE4a)
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AddFeature(_SYS_STR("SSE4a"));
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if (cpuInf.SSE41)
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AddFeature(_SYS_STR("SSE4.1"));
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if (cpuInf.SSE42)
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AddFeature(_SYS_STR("SSE4.2"));
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if (cpuInf.AVX)
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AddFeature(_SYS_STR("AVX"));
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if (cpuInf.AVX2)
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AddFeature(_SYS_STR("AVX2"));
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return features;
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}
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struct Application : boo::IApplicationCallback {
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hecl::Runtime::FileStoreManager m_fileMgr;
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hecl::CVarManager m_cvarManager;
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hecl::CVarCommons m_cvarCommons;
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std::unique_ptr<ViewManager> m_viewManager;
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std::atomic_bool m_running = {true};
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Application() : m_fileMgr(_SYS_STR("urde")), m_cvarManager(m_fileMgr), m_cvarCommons(m_cvarManager),
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m_viewManager(std::make_unique<ViewManager>(m_fileMgr, m_cvarManager)) {}
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virtual ~Application() = default;
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int appMain(boo::IApplication* app) {
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initialize(app);
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m_viewManager->init(app);
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while (m_running.load()) {
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if (!m_viewManager->proc())
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break;
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}
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m_viewManager->stop();
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m_viewManager->projectManager().saveProject();
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m_cvarManager.serialize();
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m_viewManager.reset();
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return 0;
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}
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void appQuitting(boo::IApplication*) { m_running.store(false); }
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void appFilesOpen(boo::IApplication*, const std::vector<boo::SystemString>& paths) {
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for (const auto& path : paths) {
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hecl::ProjectRootPath projPath = hecl::SearchForProject(path);
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if (projPath) {
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m_viewManager->deferOpenProject(path);
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break;
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}
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}
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}
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void initialize(boo::IApplication* app) {
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zeus::detectCPU();
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createGlobalCVars();
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for (const boo::SystemString& arg : app->getArgs()) {
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if (arg.find(_SYS_STR("--verbosity=")) == 0 || arg.find(_SYS_STR("-v=")) == 0) {
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hecl::SystemUTF8Conv utf8Arg(arg.substr(arg.find_last_of('=') + 1));
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hecl::VerbosityLevel = atoi(utf8Arg.c_str());
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hecl::LogModule.report(logvisor::Info, fmt("Set verbosity level to {}"), hecl::VerbosityLevel);
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}
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}
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m_cvarManager.parseCommandLine(app->getArgs());
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const zeus::CPUInfo& cpuInf = zeus::cpuFeatures();
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Log.report(logvisor::Info, fmt("CPU Name: {}"), cpuInf.cpuBrand);
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Log.report(logvisor::Info, fmt("CPU Vendor: {}"), cpuInf.cpuVendor);
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Log.report(logvisor::Info, fmt(_SYS_STR("CPU Features: {}")), CPUFeatureString(cpuInf));
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}
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std::string getGraphicsApi() const { return m_cvarCommons.getGraphicsApi(); }
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uint32_t getSamples() const { return m_cvarCommons.getSamples(); }
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uint32_t getAnisotropy() const { return m_cvarCommons.getAnisotropy(); }
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bool getDeepColor() const { return m_cvarCommons.getDeepColor(); }
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void createGlobalCVars() {
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m_cvarManager.findOrMakeCVar("debugOverlay.playerInfo"sv,
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"Displays information about the player, such as location and orientation"sv, false,
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hecl::CVar::EFlags::Game | hecl::CVar::EFlags::Archive | hecl::CVar::EFlags::ReadOnly);
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m_cvarManager.findOrMakeCVar("debugOverlay.worldInfo"sv,
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"Displays information about the current world, such as world asset ID, and areaId"sv,
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false,
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hecl::CVar::EFlags::Game | hecl::CVar::EFlags::Archive | hecl::CVar::EFlags::ReadOnly);
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m_cvarManager.findOrMakeCVar(
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"debugOverlay.areaInfo"sv,
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"Displays information about the current area, such as asset ID, object/layer counts, and active layer bits"sv,
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false, hecl::CVar::EFlags::Game | hecl::CVar::EFlags::Archive | hecl::CVar::EFlags::ReadOnly);
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m_cvarManager.findOrMakeCVar("debugOverlay.showFrameCounter"sv, "Displays the current frame index"sv, false,
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hecl::CVar::EFlags::Game | hecl::CVar::EFlags::Archive | hecl::CVar::EFlags::ReadOnly);
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}
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};
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} // namespace urde
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static hecl::SystemChar CwdBuf[1024];
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hecl::SystemString ExeDir;
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static void SetupBasics(bool logging) {
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auto result = zeus::validateCPU();
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if (!result.first) {
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#if _WIN32 && !WINDOWS_STORE
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std::string msg = fmt::format(fmt("ERROR: This build of URDE requires the following CPU features:\n{}\n"),
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urde::CPUFeatureString(result.second));
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MessageBoxA(nullptr, msg.c_str(), "CPU error", MB_OK | MB_ICONERROR);
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#else
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fmt::print(stderr, fmt("ERROR: This build of URDE requires the following CPU features:\n{}\n"),
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urde::CPUFeatureString(result.second));
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#endif
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exit(1);
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}
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logvisor::RegisterStandardExceptions();
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if (logging)
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logvisor::RegisterConsoleLogger();
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atSetExceptionHandler(AthenaExc);
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}
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static bool IsClientLoggingEnabled(int argc, const boo::SystemChar** argv) {
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for (int i = 1; i < argc; ++i)
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if (!hecl::StrNCmp(argv[i], _SYS_STR("-l"), 2))
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return true;
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return false;
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}
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#if !WINDOWS_STORE
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#if _WIN32
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int wmain(int argc, const boo::SystemChar** argv)
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#else
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int main(int argc, const boo::SystemChar** argv)
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#endif
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{
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if (argc > 1 && !hecl::StrCmp(argv[1], _SYS_STR("--dlpackage"))) {
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fmt::print(fmt("{}\n"), URDE_DLPACKAGE);
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return 100;
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}
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SetupBasics(IsClientLoggingEnabled(argc, argv));
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if (hecl::SystemChar* cwd = hecl::Getcwd(CwdBuf, 1024)) {
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if (hecl::PathRelative(argv[0]))
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ExeDir = hecl::SystemString(cwd) + _SYS_STR('/');
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hecl::SystemString Argv0(argv[0]);
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hecl::SystemString::size_type lastIdx = Argv0.find_last_of(_SYS_STR("/\\"));
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if (lastIdx != hecl::SystemString::npos)
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ExeDir.insert(ExeDir.end(), Argv0.begin(), Argv0.begin() + lastIdx);
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}
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/* Handle -j argument */
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hecl::SetCpuCountOverride(argc, argv);
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urde::Application appCb;
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int ret = boo::ApplicationRun(boo::IApplication::EPlatformType::Auto, appCb, _SYS_STR("urde"), _SYS_STR("URDE"), argc,
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argv, appCb.getGraphicsApi(), appCb.getSamples(), appCb.getAnisotropy(),
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appCb.getDeepColor(), false);
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// printf("IM DYING!!\n");
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return ret;
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}
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#endif
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#if WINDOWS_STORE
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#include "boo/UWPViewProvider.hpp"
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using namespace Windows::ApplicationModel::Core;
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[Platform::MTAThread] int WINAPIV main(Platform::Array<Platform::String ^> ^ params) {
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SetupBasics(false);
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urde::Application appCb;
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auto viewProvider =
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ref new boo::ViewProvider(appCb, _SYS_STR("urde"), _SYS_STR("URDE"), _SYS_STR("urde"), params, false);
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CoreApplication::Run(viewProvider);
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return 0;
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}
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#elif _WIN32
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int APIENTRY wWinMain(HINSTANCE hInstance, HINSTANCE, LPWSTR lpCmdLine, int) {
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int argc = 0;
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const boo::SystemChar** argv;
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if (lpCmdLine[0])
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argv = (const wchar_t**)(CommandLineToArgvW(lpCmdLine, &argc));
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static boo::SystemChar selfPath[1024];
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GetModuleFileNameW(nullptr, selfPath, 1024);
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static const boo::SystemChar* booArgv[32] = {};
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booArgv[0] = selfPath;
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for (int i = 0; i < argc; ++i)
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booArgv[i + 1] = argv[i];
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if (IsClientLoggingEnabled(argc + 1, booArgv))
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logvisor::CreateWin32Console();
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return wmain(argc + 1, booArgv);
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}
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#endif
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