606 lines
16 KiB
C++
606 lines
16 KiB
C++
/***
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Copyright (C) 2021 J Reece Wilson (a/k/a "Reece"). All rights reserved.
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File: AuProcess.cpp
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Date: 2021-8-20
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Author: Reece
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***/
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#include <Source/RuntimeInternal.hpp>
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#include "Process.hpp"
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#if defined(AURORA_IS_POSIX_DERIVED)
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#include <stdlib.h>
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#include <dlfcn.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <signal.h>
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#endif
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#if defined(AURORA_PLATFORM_WIN32)
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#include <Softpub.h>
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#include <wincrypt.h>
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#include <wintrust.h>
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#endif
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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#include "AuProcessSectionView.NT.hpp"
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#endif
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#include <Source/IO/FS/FS.hpp>
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#include <Source/IO/FS/Resources.hpp>
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#include "AuProcessMap.hpp"
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#if defined(AURORA_COMPILER_CLANG)
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// warning: enumeration values 'kEnumCount' and 'kEnumInvalid' not handled in switch [-Wswitch
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#pragma clang diagnostic ignored "-Wswitch"
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// Yea, I don't give a shit.
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#endif
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namespace Aurora::Process
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{
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static AuThreadPrimitives::SpinLock gSpinLock;
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static AuHashMap<AuString, void *> gModuleHandles;
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static const bool kIsMainSigned = false;
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void LoadProcessSectionViewSymbol();
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static constexpr const char *GetPlatformString(Build::EPlatform platform)
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{
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switch (platform)
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{
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case Build::EPlatform::ePlatformWin32:
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return ".Win32";
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case Build::EPlatform::ePlatformLinux:
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return ".Linux";
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case Build::EPlatform::ePlatformAndroid:
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return ".Android";
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case Build::EPlatform::ePlatformAppleMacOS:
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return ".Mac";
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case Build::EPlatform::ePlatformIos:
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return ".iOS";
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case Build::EPlatform::eKernelBsd:
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return ".BSD";
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default:
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return nullptr;
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}
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}
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static constexpr const char *GetPlatformExt(Build::EPlatform platform)
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{
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switch (platform)
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{
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case Build::EPlatform::ePlatformWin32:
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return ".dll";
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case Build::EPlatform::ePlatformLinux:
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case Build::EPlatform::ePlatformAndroid:
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case Build::EPlatform::eKernelBsd:
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return ".so";
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case Build::EPlatform::ePlatformAppleMacOS:
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case Build::EPlatform::ePlatformIos:
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return ".dylib";
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default:
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return nullptr;
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}
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}
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static constexpr const char *GetArchString(Build::EArchitecture architecture)
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{
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switch (architecture)
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{
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case Build::EArchitecture::eX86_32:
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return ".x86_32";
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case Build::EArchitecture::eX86_64:
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return ".x86_64";
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case Build::EArchitecture::eAArch64:
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return ".arm";
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default:
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return nullptr;
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}
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}
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static AuString ConstructAuDllSuffixUncached()
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{
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auto platform = GetPlatformString(Build::kCurrentPlatform);
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auto architecture = GetArchString(Build::kCurrentArchitecture);
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auto ext = GetPlatformExt(Build::kCurrentPlatform);
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AuString ret;
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#if defined(DEBUG)
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ret += ".Debug";
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#elif defined(STAGING)
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ret += ".Stage";
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#elif defined(SHIP)
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ret += ".Ship";
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#endif
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if (platform)
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{
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ret += platform;
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}
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if (architecture)
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{
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ret += architecture;
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}
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if (ext)
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{
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ret += ext;
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}
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return ret;
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}
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static const AuString& ConstructAuDllSuffix()
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{
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static AuString dllSuffixString {};
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if (dllSuffixString.empty()) dllSuffixString = ConstructAuDllSuffix();
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dllSuffixString = ConstructAuDllSuffixUncached();
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return dllSuffixString;
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}
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#if defined(AURORA_PLATFORM_WIN32)
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bool VerifyEmbeddedSignature(const wchar_t *path, HANDLE handle)
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{
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LONG lStatus;
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DWORD dwLastError;
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WINTRUST_FILE_INFO FileData;
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memset(&FileData, 0, sizeof(FileData));
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FileData.cbStruct = sizeof(WINTRUST_FILE_INFO);
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FileData.pcwszFilePath = path;
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FileData.hFile = handle;
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FileData.pgKnownSubject = NULL;
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GUID WVTPolicyGUID = WINTRUST_ACTION_GENERIC_VERIFY_V2;
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WINTRUST_DATA WinTrustData;
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// Initialize the WinVerifyTrust input data structure.
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// Default all fields to 0.
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memset(&WinTrustData, 0, sizeof(WinTrustData));
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WinTrustData.cbStruct = sizeof(WinTrustData);
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// Use default code signing EKU.
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WinTrustData.pPolicyCallbackData = NULL;
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// No data to pass to SIP.
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WinTrustData.pSIPClientData = NULL;
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// Disable WVT UI.
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WinTrustData.dwUIChoice = WTD_UI_NONE;
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// Revocation checking.constexpr
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WinTrustData.fdwRevocationChecks = WTD_REVOKE_WHOLECHAIN;
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// Verify an embedded signature on a file.
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WinTrustData.dwUnionChoice = WTD_CHOICE_FILE;
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// Verify action.
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WinTrustData.dwStateAction = WTD_STATEACTION_VERIFY;
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// Verification sets this value.
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WinTrustData.hWVTStateData = NULL;
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// Not used.
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WinTrustData.pwszURLReference = NULL;
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// This is not applicable if there is no UI because it changes
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// the UI to accommodate running applications instead of
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// installing applications.
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WinTrustData.dwUIContext = 0;
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// Set pFile.
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WinTrustData.pFile = &FileData;
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if (!pWinVerifyTrust)
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{
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return gRuntimeConfig.debug.bWin32VerifyTrustFailMissingAPI;
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}
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// WinVerifyTrust verifies signatures as specified by the GUID
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// and Wintrust_Data.
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lStatus = pWinVerifyTrust(
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NULL,
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&WVTPolicyGUID,
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&WinTrustData);
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bool status {};
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switch (lStatus)
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{
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case ERROR_SUCCESS:
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status = true;
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break;
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case TRUST_E_NOSIGNATURE:
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// The file was not signed or had a signature
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// that was not valid.
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// Get the reason for no signature.
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dwLastError = GetLastError();
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if (TRUST_E_NOSIGNATURE == dwLastError ||
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TRUST_E_SUBJECT_FORM_UNKNOWN == dwLastError ||
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TRUST_E_PROVIDER_UNKNOWN == dwLastError)
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{
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SysPushErrorCrypt("The file is not signed.");
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}
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else
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{
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SysPushErrorCrypt("An unknown error occurred trying to verify the signature of the file.");
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}
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break;
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case TRUST_E_EXPLICIT_DISTRUST:
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SysPushErrorCrypt("The signature is present, but specifically disallowed.");
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break;
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case TRUST_E_SUBJECT_NOT_TRUSTED:
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SysPushErrorCrypt("The signature is present, but not trusted.");
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break;
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case CRYPT_E_SECURITY_SETTINGS:
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SysPushErrorCrypt("CRYPT_E_SECURITY_SETTINGS - The hash "
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"representing the subject or the publisher wasn't "
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"explicitly trusted by the admin and admin policy "
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"has disabled user trust. No signature, publisher "
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"or timestamp errors.");
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break;
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default:
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SysPushErrorCrypt("Dependency Injection Error");
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break;
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}
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WinTrustData.dwStateAction = WTD_STATEACTION_CLOSE;
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if (!pWinVerifyTrust)
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{
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return gRuntimeConfig.debug.bWin32VerifyTrustFailMissingAPI;
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}
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lStatus = pWinVerifyTrust(
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NULL,
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&WVTPolicyGUID,
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&WinTrustData);
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return status;
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}
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#endif
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static bool LoadModule(const AuString &name, const AuString &path)
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{
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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if (!pLoadLibraryW)
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{
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return false;
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}
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auto handle = pLoadLibraryW(Locale::ConvertFromUTF8(path).c_str());
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if (handle == INVALID_HANDLE_VALUE)
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{
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SysPushErrorNested("Could't link dynamic library {}", path);
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return {};
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}
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#else
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auto handle = dlopen(path.c_str(), RTLD_DEEPBIND);
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if (handle == nullptr)
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{
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SysPushErrorNested("Could't link dynamic library {}", path);
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return {};
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}
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#endif
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gModuleHandles.insert(AuMakePair(name, (void *)handle));
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return true;
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}
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static bool TryLoadModule(const AuString &path,
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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const AuString &abs,
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#endif
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const ModuleLoadRequest &request,
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bool &fail
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)
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{
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fail = false;
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auto pathNrml = AuIOFS::NormalizePathRet(path);
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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auto widePath = Locale::ConvertFromUTF8(pathNrml);
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auto mitigateTimeOfUse = Win32Open(widePath.c_str(), GENERIC_READ, FILE_SHARE_READ, false, OPEN_EXISTING, 0, 0);
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if (mitigateTimeOfUse == INVALID_HANDLE_VALUE)
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{
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SysPushErrorNested("Couldn't open existing file. Race exploit?");
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fail = true;
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return false;
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}
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auto absPath = AuIOFS::NormalizePathRet(abs);
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#endif
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if (request.verify || (kIsMainSigned || request.enableMitigations))
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{
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#if defined(AURORA_PLATFORM_WIN32)
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if (!VerifyEmbeddedSignature(widePath.c_str(), mitigateTimeOfUse))
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{
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SysPushErrorNested("Couldn't verify file {}", path);
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fail = true;
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AuWin32CloseHandle(mitigateTimeOfUse);
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return false;
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}
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#else
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AuLogWarn("Can't verify {} on this platform", path);
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#endif
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}
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#if defined(AURORA_IS_POSIX_DERIVED)
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if (request.enableMitigations && request.unixCheckPlusX)
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{
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struct stat sb;
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if (stat(pathNrml.data(), &sb) != 0)
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{
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SysPushErrorNested("Couldn't open existing file. Race exploit?");
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fail = true;
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return false;
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}
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if ((sb.st_mode & S_IXUSR) == 0)
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{
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fail = true;
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return false;
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}
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}
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#endif
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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auto returnValue = LoadModule(absPath);
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#else
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auto returnValue = LoadModule(pathNrml);
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#endif
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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// Still doesnt stop hotswaps, and idc
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// Glitching would require software to time the attack
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// ...requiring a certain degree of access (code execution) + effort
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AuWin32CloseHandle(mitigateTimeOfUse);
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#endif
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return returnValue;
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}
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static bool TryLoadModule(const AuString &path, const AuString &auDll, const AuString &genericDll, const ModuleLoadRequest &request, bool &fail)
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{
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AuString a = path + "/" + auDll;
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AuString b = path + "/" + genericDll;
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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AuString aAbs = path + "/" + auDll + ".";
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AuString bAbs = path + "/" + genericDll + ".";
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#endif
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if (AuIOFS::FileExists(a))
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{
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return TryLoadModule(a,
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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aAbs,
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#endif
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request,
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fail
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);
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}
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if (AuIOFS::FileExists(b))
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{
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return TryLoadModule(b,
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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bAbs,
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#endif
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request,
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fail
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);
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}
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return {};
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}
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static bool TryLoadModule(EModulePath path, const AuString &auDll, const AuString &genericDll, const ModuleLoadRequest &request)
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{
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AuString pathA, pathB;
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switch (path)
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{
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case EModulePath::eModulePathCWD:
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if (!Process::GetWorkingDirectory(pathA)) return false;
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break;
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case EModulePath::eProcessDirectory:
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if (!Process::GetProcDirectory(pathA)) return false;
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break;
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case EModulePath::eModulePathSystemDir:
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pathA = AuIOFS::GetSystemLibPath().value_or(AuString {});
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pathB = AuIOFS::GetSystemLibPath2().value_or(AuString {});
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if (pathA.empty()) return false;
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break;
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case EModulePath::eModulePathUserDir:
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pathA = AuIOFS::GetUserLibPath().value_or(AuString {});
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pathB = AuIOFS::GetUserLibPath2().value_or(AuString {});
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if (pathA.empty()) return false;
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break;
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//case EModulePath::eOSSpecified:
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//
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// break;
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case EModulePath::eSpecified:
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break;
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}
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bool fail {};
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if (pathA.size())
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{
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if (TryLoadModule(pathA, auDll, genericDll, request, fail))
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{
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return true;
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}
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if (fail)
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{
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return false;
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}
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}
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if (pathB.size())
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{
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if (TryLoadModule(pathB, auDll, genericDll, request, fail))
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{
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return true;
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}
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if (fail)
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{
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return false;
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}
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}
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if (path == EModulePath::eSpecified && request.specifiedSearchPaths)
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{
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for (const auto &val : *request.specifiedSearchPaths)
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{
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if (TryLoadModule(val, auDll, genericDll, request, fail))
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{
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return true;
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}
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if (fail)
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{
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return false;
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}
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}
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}
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return {};
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}
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AUKN_SYM bool LoadModule(const ModuleLoadRequest &request)
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{
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AU_LOCK_GUARD(gSpinLock);
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auto h = gModuleHandles.find(request.mod);
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if (h != gModuleHandles.end())
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{
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return true;
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}
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auto au = request.mod + ConstructAuDllSuffix();
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auto base = request.mod;
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auto ext = GetPlatformExt(Build::kCurrentPlatform);
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if (ext && !Build::kIsNtDerived)
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{
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base += ext;
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}
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if (request.version.size())
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{
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au += "." + request.version;
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base += "." + request.version;
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}
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if (ext && Build::kIsNtDerived)
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{
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base += ext;
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}
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auto searchPath = request.searchPath ? request.searchPath : &kUserOverloadableSearchPath;
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for (EModulePath path : *searchPath)
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{
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if (TryLoadModule(path, au, base, request))
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{
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return true;
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}
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}
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return false;
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}
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AUKN_SYM AuMach GetProcAddress(AuString mod, AuString symbol)
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{
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AU_LOCK_GUARD(gSpinLock);
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auto h = gModuleHandles.find(mod);
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if (h == gModuleHandles.end())
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{
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SysPushErrorGen("Module {} is not loaded", mod);
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return {};
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}
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auto handle = h->second;
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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if (!pGetProcAddress)
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{
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return {};
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}
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auto ret = reinterpret_cast<AuMach>(pGetProcAddress(reinterpret_cast<HMODULE>(handle), symbol.c_str()));
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#else
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auto ret = reinterpret_cast<AuMach>(dlsym(handle, symbol.c_str()));
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#endif
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if (!ret)
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{
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SysPushErrorGen("Couldn't resolve symbol in module {} of mangled name '{}'", mod, symbol);
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}
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return ret;
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}
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AUKN_SYM void Exit(AuUInt32 exitcode)
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{
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Aurora::RuntimeShutdown();
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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TerminateProcess(GetCurrentProcess(), exitcode);
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Win32Terminate();
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#elif defined(AURORA_IS_POSIX_DERIVED)
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// TODO: if main thread, long jump back, and return exit code
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::kill(getpgrp(), SIGKILL);
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while (true)
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{
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::sched_yield();
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}
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#else
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// ???
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*(AuUInt32 *)0 = exitcode;
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*(AuUInt32 *)0xFFFF = exitcode;
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*(AuUInt32 *)0xFFFFFFFF = exitcode;
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#endif
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}
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void InitProcess()
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{
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// TODO (reece): test if self is signed -> xref kIsMainSigned
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InitProcessMap();
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#if defined(AURORA_IS_MODERNNT_DERIVED)
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LoadProcessSectionViewSymbol();
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#endif
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}
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void DeinitProcess()
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{
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DeinitProcessMap();
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}
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} |