// dllmain.cpp : Defines the entry point for the DLL application. #include "pch.h" #include "ANSMOT.h" #include "ANSByteTrackNCNN.h" #include "ANSByteTrack.h" #include "ANSByteTrackEigen.h" #include "ANSOCSortTrack.h" #include "ANSUCMC.h" #include #include #include #include // Handle registry with refcount — prevents use-after-free when // ReleaseANSMOTHandle is called while an operation is still running. static std::unordered_map& MOTHandleRegistry() { static std::unordered_map s; return s; } static std::mutex& MOTHandleRegistryMutex() { static std::mutex m; return m; } static std::condition_variable& MOTHandleRegistryCV() { static std::condition_variable cv; return cv; } static void RegisterMOTHandle(ANSCENTER::ANSMOT* h) { std::lock_guard lk(MOTHandleRegistryMutex()); MOTHandleRegistry()[h] = 1; } static ANSCENTER::ANSMOT* AcquireMOTHandle(ANSCENTER::ANSMOT* h) { std::lock_guard lk(MOTHandleRegistryMutex()); auto it = MOTHandleRegistry().find(h); if (it == MOTHandleRegistry().end()) return nullptr; it->second++; return h; } static bool ReleaseMOTHandleRef(ANSCENTER::ANSMOT* h) { std::lock_guard lk(MOTHandleRegistryMutex()); auto it = MOTHandleRegistry().find(h); if (it == MOTHandleRegistry().end()) return false; it->second--; if (it->second <= 0) { MOTHandleRegistry().erase(it); MOTHandleRegistryCV().notify_all(); return true; } return false; } static bool UnregisterMOTHandle(ANSCENTER::ANSMOT* h) { std::unique_lock lk(MOTHandleRegistryMutex()); auto it = MOTHandleRegistry().find(h); if (it == MOTHandleRegistry().end()) return false; it->second--; bool ok = MOTHandleRegistryCV().wait_for(lk, std::chrono::seconds(30), [&]() { auto it2 = MOTHandleRegistry().find(h); return it2 == MOTHandleRegistry().end() || it2->second <= 0; }); if (!ok) { OutputDebugStringA("WARNING: UnregisterMOTHandle timed out waiting for in-flight operations\n"); } MOTHandleRegistry().erase(h); return true; } // RAII guard — ensures ReleaseMOTHandleRef is always called class MOTHandleGuard { ANSCENTER::ANSMOT* engine; public: explicit MOTHandleGuard(ANSCENTER::ANSMOT* e) : engine(e) {} ~MOTHandleGuard() { if (engine) ReleaseMOTHandleRef(engine); } ANSCENTER::ANSMOT* get() const { return engine; } explicit operator bool() const { return engine != nullptr; } MOTHandleGuard(const MOTHandleGuard&) = delete; MOTHandleGuard& operator=(const MOTHandleGuard&) = delete; }; BOOL APIENTRY DllMain( HMODULE hModule, DWORD ul_reason_for_call, LPVOID lpReserved ) { switch (ul_reason_for_call) { case DLL_PROCESS_ATTACH: case DLL_THREAD_ATTACH: case DLL_THREAD_DETACH: case DLL_PROCESS_DETACH: break; } return TRUE; } /* enum MOTEType { BYTETRACKNCNN = 0, BYTETRACK = 1, BYTETRACKEIGEN=2, OCSORT=3 }; */ extern "C" __declspec(dllexport) int __cdecl CreateANSMOTHandle(ANSCENTER::ANSMOT **Handle, int motType) { if (Handle == nullptr) return 0; try { // Release existing handle if called twice (prevents leak from LabVIEW) if (*Handle) { if (UnregisterMOTHandle(*Handle)) { (*Handle)->Destroy(); delete *Handle; } *Handle = nullptr; } switch (motType) { case 0: //BYTETRACKNCNN =0 (*Handle) = new ANSCENTER::ANSByteTrack();// ANSByteTrackNCNN(); break; case 1: //BYTETRACK = 1 (*Handle) = new ANSCENTER::ANSByteTrack(); break; case 2://BYTETRACKEIGEN = 2 (*Handle) = new ANSCENTER::ANSByteTrack();// ANSByteTrackEigen(); break; case 3://UCMC = 3 (*Handle) = new ANSCENTER::ANSUCMCTrack(); break; case 4://OCSORT = 4 (*Handle) = new ANSCENTER::ANSOCSortTrack(); break; default: (*Handle) = new ANSCENTER::ANSByteTrack();// ANSByteTrackNCNN(); break; } if (*Handle == nullptr) { return 0; } else { RegisterMOTHandle(*Handle); return 1; } } catch (std::exception& e) { return 0; } catch (...) { return 0; } } static int ReleaseANSMOTHandle_Impl(ANSCENTER::ANSMOT** Handle) { try { if (!Handle || !*Handle) return 1; if (!UnregisterMOTHandle(*Handle)) { *Handle = nullptr; return 1; } (*Handle)->Destroy(); delete *Handle; *Handle = nullptr; return 1; } catch (...) { if (Handle) *Handle = nullptr; return 0; } } extern "C" __declspec(dllexport) int __cdecl ReleaseANSMOTHandle(ANSCENTER::ANSMOT **Handle) { __try { return ReleaseANSMOTHandle_Impl(Handle); } __except (EXCEPTION_EXECUTE_HANDLER) { if (Handle) *Handle = nullptr; return 0; } } extern "C" __declspec(dllexport) int __cdecl UpdateANSMOTParameters(ANSCENTER::ANSMOT * *Handle, const char* trackerParameter) { if (Handle == nullptr || *Handle == nullptr) return -1; MOTHandleGuard guard(AcquireMOTHandle(*Handle)); if (!guard) return -1; try { bool result = guard.get()->UpdateParameters(trackerParameter); if (result) return 1; else return 0; } catch (std::exception& e) { return 0; } catch (...) { return 0; } } extern "C" __declspec(dllexport) int __cdecl UpdateANSMOT(ANSCENTER::ANSMOT * *Handle, int modelId, const char* detectionData, std::string & result) { if (Handle == nullptr || *Handle == nullptr) return -1; MOTHandleGuard guard(AcquireMOTHandle(*Handle)); if (!guard) return -1; try { result = guard.get()->Update(modelId, detectionData); if (result.empty())return 0; else return 1; } catch (std::exception& e) { return 0; } catch (...) { return 0; } } extern "C" __declspec(dllexport) int __cdecl UpdateANSMOT_LV(ANSCENTER::ANSMOT * *Handle, int modelId, const char* detectionData, LStrHandle trackerResult) { if (Handle == nullptr || *Handle == nullptr) return -1; MOTHandleGuard guard(AcquireMOTHandle(*Handle)); if (!guard) return -1; try { std::string st = guard.get()->Update(modelId, detectionData); int size = static_cast(st.length()); MgErr error; error = DSSetHandleSize(trackerResult, sizeof(int32) + size * sizeof(uChar)); if (error == noErr) { (*trackerResult)->cnt = size; memcpy((*trackerResult)->str, st.c_str(), size); return 1; } else return 0; } catch (std::exception& e) { return 0; } catch (...) { return 0; } } extern "C" __declspec(dllexport) int __cdecl UpdateANSMOTTracker(ANSCENTER::ANSMOT** Handle, int modelId, const std::vector& detectionObjects, std::vector& trackedObjects) { if (Handle == nullptr || *Handle == nullptr) return -1; MOTHandleGuard guard(AcquireMOTHandle(*Handle)); if (!guard) return -1; try { trackedObjects = guard.get()->UpdateTracker(modelId, detectionObjects); if (trackedObjects.empty()) return 0; else return 1; } catch (std::exception& e) { return 0; } catch (...) { return 0; } } // ============================================================================ // V2 LabVIEW API — Accept handle as uint64_t by value. // Eliminates Handle** pointer-to-pointer instability when LabVIEW calls // concurrently from multiple tasks. // LabVIEW CLFN: set Handle parameter to Numeric / Unsigned Pointer-sized Integer / Pass: Value // ============================================================================ extern "C" __declspec(dllexport) int __cdecl UpdateANSMOT_LV_V2(uint64_t handleVal, int modelId, const char* detectionData, LStrHandle trackerResult) { ANSCENTER::ANSMOT* directHandle = reinterpret_cast(handleVal); if (directHandle == nullptr) return -1; MOTHandleGuard guard(AcquireMOTHandle(directHandle)); if (!guard) return -1; try { std::string st = guard.get()->Update(modelId, detectionData); int size = static_cast(st.length()); MgErr error = DSSetHandleSize(trackerResult, sizeof(int32) + size * sizeof(uChar)); if (error == noErr) { (*trackerResult)->cnt = size; memcpy((*trackerResult)->str, st.c_str(), size); return 1; } else return 0; } catch (...) { return 0; } }