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Copy pathTests.cpp
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633 lines (532 loc) · 20.5 KB
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// Copyright (c) Microsoft Corporation.
// Licensed under the MIT License.
#include "pch.h"
#include "Tests.h"
#include "PackageManager.h"
using namespace std::string_view_literals;
using namespace winrt::Microsoft::Management::Deployment;
namespace
{
#define ADVANCE_ARG_PARAMETER if (++i >= argc) { winrt::throw_hresult(E_INVALIDARG); }
std::string ToLower(std::string_view in)
{
std::string result(in);
std::transform(result.begin(), result.end(), result.begin(),
[](unsigned char c) { return static_cast<char>(std::tolower(c)); });
return result;
}
#define BEGIN_ENUM_PARSE_FUNC(_type_) \
_type_ Parse ## _type_(const char* input) \
{ \
auto lower = ToLower(input); \
if (lower.empty()) {}
#define ITEM_ENUM_PARSE_FUNC(_type_, _value_) \
else if (ToLower(#_value_) == lower) \
{ \
return _type_ ## :: ## _value_; \
}
#define END_ENUM_PARSE_FUNC \
winrt::throw_hresult(E_INVALIDARG); \
}
#define BEGIN_ENUM_NAME_FUNC(_type_) \
std::string_view ToString(_type_); \
std::ostream& operator<<(std::ostream& o, _type_ input) { return (o << ToString(input)); } \
std::string_view ToString(_type_ input) \
{ \
switch (input) {
#define ITEM_ENUM_NAME_FUNC(_type_, _value_) \
case _type_ ## :: ## _value_: return #_value_;
#define END_ENUM_NAME_FUNC \
} \
return "Unknown"; \
}
BEGIN_ENUM_PARSE_FUNC(ComInitializationType)
ITEM_ENUM_PARSE_FUNC(ComInitializationType, STA)
ITEM_ENUM_PARSE_FUNC(ComInitializationType, MTA)
END_ENUM_PARSE_FUNC
BEGIN_ENUM_NAME_FUNC(ComInitializationType)
ITEM_ENUM_NAME_FUNC(ComInitializationType, STA)
ITEM_ENUM_NAME_FUNC(ComInitializationType, MTA)
END_ENUM_NAME_FUNC
BEGIN_ENUM_PARSE_FUNC(UnloadBehavior)
ITEM_ENUM_PARSE_FUNC(UnloadBehavior, Allow)
ITEM_ENUM_PARSE_FUNC(UnloadBehavior, AtUninitialize)
ITEM_ENUM_PARSE_FUNC(UnloadBehavior, Never)
END_ENUM_PARSE_FUNC
BEGIN_ENUM_NAME_FUNC(UnloadBehavior)
ITEM_ENUM_NAME_FUNC(UnloadBehavior, Allow)
ITEM_ENUM_NAME_FUNC(UnloadBehavior, AtUninitialize)
ITEM_ENUM_NAME_FUNC(UnloadBehavior, Never)
END_ENUM_NAME_FUNC
BEGIN_ENUM_PARSE_FUNC(ActivationType)
ITEM_ENUM_PARSE_FUNC(ActivationType, ClassName)
ITEM_ENUM_PARSE_FUNC(ActivationType, CoCreateInstance)
END_ENUM_PARSE_FUNC
BEGIN_ENUM_NAME_FUNC(ActivationType)
ITEM_ENUM_NAME_FUNC(ActivationType, ClassName)
ITEM_ENUM_NAME_FUNC(ActivationType, CoCreateInstance)
END_ENUM_NAME_FUNC
BOOL CALLBACK CheckForWinGetWindow(HWND hwnd, LPARAM param)
{
bool* result = reinterpret_cast<bool*>(param);
DWORD windowProcessId = 0;
GetWindowThreadProcessId(hwnd, &windowProcessId);
if (GetCurrentProcessId() == windowProcessId)
{
int textLength = GetWindowTextLengthW(hwnd) + 1;
std::wstring windowText(textLength, '\0');
textLength = GetWindowTextW(hwnd, &windowText[0], textLength);
windowText.resize(textLength);
if (L"WingetMessageOnlyWindow"sv == windowText)
{
*result = true;
return FALSE;
}
}
return TRUE;
}
// Look for the set of well known objects that should be present after we have spun everything up.
// Returns true if all well known objects are found in the expected state.
bool SearchForWellKnownObjects(bool expectExist, const Snapshot& snapshot)
{
bool result = true;
// Known modules in snapshot
bool knownModulesLoaded = snapshot.MicrosoftManagementDeploymentInProcLoaded && snapshot.WindowsPackageManagerLoaded;
if (knownModulesLoaded != expectExist)
{
std::cout << "Known modules were not in expected state [" << (expectExist ? "loaded" : "unloaded") << "]\n";
result = false;
}
auto coreApplicationProperties = winrt::Windows::ApplicationModel::Core::CoreApplication::Properties();
// COM statics
for (std::wstring_view item : {
L"WindowsPackageManager.CachedInstalledIndex"sv,
L"WindowsPackageManager.TerminationSignalHandler"sv,
})
{
bool present = coreApplicationProperties.HasKey(item);
if (present != expectExist)
{
std::cout << "CoreApplication property `" << winrt::to_string(item) << "` was not in expected state [" << (expectExist ? "should exist" : "should not exist") << "]\n";
result = false;
}
}
return result;
}
// Look for the set of termination signal monitoring objects that should be present after we have spun everything up.
// Returns true if all objects are found in the expected state.
bool SearchForTerminationSignalObjects(bool expectExist)
{
bool result = true;
// Shutdown monitoring window
bool foundWindow = false;
EnumWindows(CheckForWinGetWindow, reinterpret_cast<LPARAM>(&foundWindow));
if (foundWindow != expectExist)
{
std::cout << "WinGet Window `WingetMessageOnlyWindow` was not in expected state [" << (expectExist ? "should exist" : "should not exist") << "]\n";
result = false;
}
return result;
}
std::string GetBytesString(SIZE_T bytes)
{
constexpr SIZE_T s_kilo = 1024;
constexpr std::string_view s_sizes = "BKMG"sv;
size_t i = 0;
while ((i + 1) < s_sizes.size() && bytes > s_kilo)
{
bytes /= s_kilo;
++i;
}
return std::to_string(bytes) + s_sizes[i];
}
const CLSID CLSID_PackageManager = { 0x2DDE4456, 0x64D9, 0x4673, 0x8F, 0x7E, 0xA4, 0xF1, 0x9A, 0x2E, 0x6C, 0xC3 }; // 2DDE4456-64D9-4673-8F7E-A4F19A2E6CC3
const CLSID CLSID_FindPackagesOptions = { 0x96B9A53A, 0x9228, 0x4DA0, 0xB0, 0x13, 0xBB, 0x1B, 0x20, 0x31, 0xAB, 0x3D }; // 96B9A53A-9228-4DA0-B013-BB1B2031AB3D
const CLSID CLSID_CreateCompositePackageCatalogOptions = { 0x768318A6, 0x2EB5, 0x400D, 0x84, 0xD0, 0xDF, 0x35, 0x34, 0xC3, 0x0F, 0x5D }; // 768318A6-2EB5-400D-84D0-DF3534C30F5D
const CLSID CLSID_InstallOptions = { 0xE2AF3BA8, 0x8A88, 0x4766, 0x9D, 0xDA, 0xAE, 0x40, 0x13, 0xAD, 0xE2, 0x86 }; // E2AF3BA8-8A88-4766-9DDA-AE4013ADE286
const CLSID CLSID_UninstallOptions = { 0x869CB959, 0xEB54, 0x425C, 0xA1, 0xE4, 0x1A, 0x1C, 0x29, 0x1C, 0x64, 0xE9 }; // 869CB959-EB54-425C-A1E4-1A1C291C64E9
const CLSID CLSID_PackageMatchFilter = { 0x57DC8962, 0x7343, 0x42CD, 0xB9, 0x1C, 0x04, 0xF6, 0xA2, 0x5D, 0xB1, 0xD0 }; // 57DC8962-7343-42CD-B91C-04F6A25DB1D0
const CLSID CLSID_PackageManagerSettings = { 0x80CF9D63, 0x5505, 0x4342, 0xB9, 0xB4, 0xBB, 0x87, 0x89, 0x5C, 0xA8, 0xBB }; // 80CF9D63-5505-4342-B9B4-BB87895CA8BB
const CLSID CLSID_DownloadOptions = { 0x4288DF96, 0xFDC9, 0x4B68, 0xB4, 0x03, 0x19, 0x3D, 0xBB, 0xF5, 0x6A, 0x24 }; // 4288DF96-FDC9-4B68-B403-193DBBF56A24
const CLSID CLSID_AuthenticationArguments = { 0x8D593114, 0x1CF1, 0x43B9, 0x87, 0x22, 0x4D, 0xBB, 0x30, 0x10, 0x32, 0x96 }; // 8D593114-1CF1-43B9-8722-4DBB30103296
const CLSID CLSID_RepairOptions = { 0x30c024c4, 0x852c, 0x4dd4, 0x98, 0x10, 0x13, 0x48, 0xc5, 0x1e, 0xf9, 0xbb }; // {30C024C4-852C-4DD4-9810-1348C51EF9BB}
const CLSID CLSID_AddPackageCatalogOptions = { 0x24e6f1fa, 0xe4c3, 0x4acd, 0x96, 0x5d, 0xdf, 0x21, 0x3f, 0xd5, 0x8f, 0x15 }; // {24E6F1FA-E4C3-4ACD-965D-DF213FD58F15}
const CLSID CLSID_RemovePackageCatalogOptions = { 0x1125d3a6, 0xe2ce, 0x479a, 0x91, 0xd5, 0x71, 0xa3, 0xf6, 0xf8, 0xb0, 0xb }; // {1125D3A6-E2CE-479A-91D5-71A3F6F8B00B}
template <typename T>
T CreatePackageManagerObject(ActivationType activationType, const CLSID& clsid)
{
if (ActivationType::ClassName == activationType)
{
return T{};
}
else if (ActivationType::CoCreateInstance == activationType)
{
return winrt::create_instance<T>(clsid);
}
winrt::throw_hresult(E_UNEXPECTED);
}
}
TestParameters::TestParameters(int argc, const char** argv)
{
for (int i = 0; i < argc; ++i)
{
if ("-test"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
TestToRun = ToLower(argv[i]);
}
else if ("-com"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
ComInit = ParseComInitializationType(argv[i]);
}
else if ("-leak-com"sv == argv[i])
{
LeakCOM = true;
}
else if ("-itr"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
Iterations = atoi(argv[i]);
}
else if ("-pkg"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
PackageName = argv[i];
}
else if ("-src"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
SourceName = argv[i];
}
else if ("-url"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
SourceURL = argv[i];
}
else if ("-unload"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
UnloadBehavior = ParseUnloadBehavior(argv[i]);
}
else if ("-activation"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
ActivationType = ParseActivationType(argv[i]);
}
else if ("-keep-factories"sv == argv[i])
{
SkipClearFactories = true;
}
else if ("-work-test-sleep"sv == argv[i])
{
ADVANCE_ARG_PARAMETER
WorkTestSleepInterval = atoi(argv[i]);
}
else if ("-no-term"sv == argv[i])
{
DisableTerminationSignals = true;
}
}
}
void TestParameters::OutputDetails() const
{
std::cout << "Running inproc testbed with:\n"
" COM Init : " << ComInit << "\n"
" Activate : " << ActivationType << "\n"
" Clear : " << std::boolalpha << !SkipClearFactories << "\n"
" Leak COM : " << std::boolalpha << LeakCOM << "\n"
" Unload : " << UnloadBehavior << "\n"
" Expect : " << std::boolalpha << UnloadExpected() << "\n"
" Test : " << TestToRun << "\n"
" Sleep : " << WorkTestSleepInterval << "\n"
" Package : " << PackageName << "\n"
" Source : " << SourceName << "\n"
" URL : " << SourceURL << "\n"
" Passes : " << Iterations << std::endl;
}
bool TestParameters::InitializeTestState() const
{
HRESULT hr = S_OK;
if (ComInitializationType::STA == ComInit)
{
hr = RoInitialize(RO_INIT_SINGLETHREADED);
}
else if (ComInitializationType::MTA == ComInit)
{
hr = RoInitialize(RO_INIT_MULTITHREADED);
}
if (FAILED(hr))
{
std::cout << "RoInitialize returned " << hr << std::endl;
return false;
}
if (UnloadBehavior::Never == UnloadBehavior || UnloadBehavior::AtUninitialize == UnloadBehavior)
{
SetUnloadPreference(false);
}
return true;
}
bool TestParameters::InitializeIterationState() const
{
InitializePackageManagerGlobals();
if (DisableTerminationSignals)
{
SetDisableTerminationSignals(true);
}
return true;
}
std::unique_ptr<ITest> TestParameters::CreateTest() const
{
if ("unload_check"sv == TestToRun)
{
return std::make_unique<UnloadAndCheckForLeaks>(*this);
}
else if ("install_detect"sv == TestToRun)
{
return std::make_unique<InstallForSystem_DetectPresence>(*this);
}
return {};
}
void TestParameters::UninitializeTestState() const
{
if (UnloadBehavior::AtUninitialize == UnloadBehavior)
{
SetUnloadPreference(true);
}
if (!LeakCOM)
{
RoUninitialize();
}
}
bool TestParameters::UnloadExpected() const
{
bool shouldUnload = true;
if (UnloadBehavior::Never == UnloadBehavior || UnloadBehavior::AtUninitialize == UnloadBehavior ||
(ActivationType::ClassName == ActivationType && SkipClearFactories))
{
shouldUnload = false;
}
return shouldUnload;
}
PackageManager TestParameters::CreatePackageManager() const
{
return CreatePackageManagerObject<PackageManager>(ActivationType, CLSID_PackageManager);
}
CreateCompositePackageCatalogOptions TestParameters::CreateCreateCompositePackageCatalogOptions() const
{
return CreatePackageManagerObject<CreateCompositePackageCatalogOptions>(ActivationType, CLSID_CreateCompositePackageCatalogOptions);
}
PackageMatchFilter TestParameters::CreatePackageMatchFilter() const
{
return CreatePackageManagerObject<PackageMatchFilter>(ActivationType, CLSID_PackageMatchFilter);
}
FindPackagesOptions TestParameters::CreateFindPackagesOptions() const
{
return CreatePackageManagerObject<FindPackagesOptions>(ActivationType, CLSID_FindPackagesOptions);
}
DownloadOptions TestParameters::CreateDownloadOptions() const
{
return CreatePackageManagerObject<DownloadOptions>(ActivationType, CLSID_DownloadOptions);
}
AddPackageCatalogOptions TestParameters::CreateAddPackageCatalogOptions() const
{
return CreatePackageManagerObject<AddPackageCatalogOptions>(ActivationType, CLSID_AddPackageCatalogOptions);
}
InstallOptions TestParameters::CreateInstallOptions() const
{
return CreatePackageManagerObject<InstallOptions>(ActivationType, CLSID_InstallOptions);
}
Snapshot::Snapshot()
{
const DWORD processId = GetCurrentProcessId();
HANDLE snapshot = CreateToolhelp32Snapshot(TH32CS_SNAPTHREAD | TH32CS_SNAPMODULE, processId);
// Count threads in this process
THREADENTRY32 threadEntry{};
threadEntry.dwSize = sizeof(threadEntry);
if (Thread32First(snapshot, &threadEntry))
{
do
{
if (processId == threadEntry.th32OwnerProcessID)
{
++ThreadCount;
}
} while (Thread32Next(snapshot, &threadEntry));
}
// Count modules
MODULEENTRY32 moduleEntry{};
moduleEntry.dwSize = sizeof(moduleEntry);
if (Module32First(snapshot, &moduleEntry))
{
do
{
if (moduleEntry.szModule == L"Microsoft.Management.Deployment.InProc.dll"sv)
{
MicrosoftManagementDeploymentInProcLoaded = true;
}
else if (moduleEntry.szModule == L"WindowsPackageManager.dll"sv)
{
WindowsPackageManagerLoaded = true;
}
++ModuleCount;
} while (Module32Next(snapshot, &moduleEntry));
}
// Get memory stats
GetProcessMemoryInfo(GetCurrentProcess(), reinterpret_cast<PPROCESS_MEMORY_COUNTERS>(&Memory), sizeof(Memory));
CloseHandle(snapshot);
}
UnloadAndCheckForLeaks::UnloadAndCheckForLeaks(const TestParameters& parameters) : m_parameters(parameters)
{
}
bool UnloadAndCheckForLeaks::RunIterationWork()
{
std::cout << "UnloadAndCheckForLeaks::RunIterationWork\n";
return UsePackageManager(m_parameters);
}
bool UnloadAndCheckForLeaks::RunIterationTest()
{
std::cout << "UnloadAndCheckForLeaks::RunIterationTest\n";
Snapshot beforeUnload;
if (!SearchForWellKnownObjects(true, beforeUnload) ||
!SearchForTerminationSignalObjects(!m_parameters.DisableTerminationSignals))
{
return false;
}
CoFreeUnusedLibrariesEx(0, 0);
Snapshot afterUnload;
m_iterationSnapshots.emplace_back(beforeUnload, afterUnload);
if (!SearchForWellKnownObjects(!m_parameters.UnloadExpected(), afterUnload) ||
!SearchForTerminationSignalObjects(!m_parameters.UnloadExpected() && !m_parameters.DisableTerminationSignals))
{
return false;
}
return true;
}
bool UnloadAndCheckForLeaks::RunFinal()
{
constexpr std::streamsize s_columnWidth = 5;
bool result = true;
std::cout << "--- UnloadAndCheckForLeaks results ---\n";
std::cout << std::setfill(' ');
// --- Threads ---
std::cout << "Thread Count [Initial: " << m_initialSnapshot.ThreadCount << "]\n";
std::cout << "Iteration ";
for (size_t i = 0; i < m_iterationSnapshots.size(); ++i)
{
std::cout << std::setw(s_columnWidth) << (i + 1);
}
std::cout << '\n';
std::cout << "Pre Unload ";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << snapshot.first.ThreadCount;
}
std::cout << '\n';
std::cout << "Post Unload";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << snapshot.second.ThreadCount;
}
std::cout << '\n';
// Look for consistent increase in measured values
if (m_iterationSnapshots.size() > 1)
{
size_t previousValue = m_iterationSnapshots[0].second.ThreadCount;
bool consistentIncrease = true;
for (size_t i = 1; i < m_iterationSnapshots.size(); ++i)
{
size_t currentValue = m_iterationSnapshots[i].second.ThreadCount;
if (currentValue > previousValue)
{
previousValue = currentValue;
}
else
{
consistentIncrease = false;
break;
}
}
if (consistentIncrease)
{
std::cout << "Post unload thread count shows consistent increase; failing test.\n";
result = false;
}
}
// --- Modules ---
std::cout << "Module Count [Initial: " << m_initialSnapshot.ModuleCount << "]\n";
std::cout << "Iteration ";
for (size_t i = 0; i < m_iterationSnapshots.size(); ++i)
{
std::cout << std::setw(s_columnWidth) << (i + 1);
}
std::cout << '\n';
std::cout << "Pre Unload ";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << snapshot.first.ModuleCount;
}
std::cout << '\n';
std::cout << "Post Unload";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << snapshot.second.ModuleCount;
}
std::cout << '\n';
// Look for modules not unloading
if (m_parameters.UnloadExpected() && m_iterationSnapshots.size() > 1)
{
bool noUnloadFound = false;
for (size_t i = 0; i < m_iterationSnapshots.size(); ++i)
{
if (m_iterationSnapshots[i].first.ModuleCount == m_iterationSnapshots[i].second.ModuleCount)
{
noUnloadFound = true;
}
}
if (noUnloadFound)
{
std::cout << "Module count did not decrease during at least one iteration; failing test.\n";
result = false;
}
}
// --- Memory ---
std::cout << "Private Usage [Initial: " << GetBytesString(m_initialSnapshot.Memory.PrivateUsage) << "]\n";
std::cout << "Iteration ";
for (size_t i = 0; i < m_iterationSnapshots.size(); ++i)
{
std::cout << std::setw(s_columnWidth) << (i + 1);
}
std::cout << '\n';
std::cout << "Pre Unload ";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << GetBytesString(snapshot.first.Memory.PrivateUsage);
}
std::cout << '\n';
std::cout << "Post Unload";
for (const auto& snapshot : m_iterationSnapshots)
{
std::cout << std::setw(s_columnWidth) << GetBytesString(snapshot.second.Memory.PrivateUsage);
}
std::cout << '\n';
return result;
}
InstallForSystem_DetectPresence::InstallForSystem_DetectPresence(const TestParameters& parameters) : m_parameters(parameters)
{
}
bool InstallForSystem_DetectPresence::RunIterationWork()
{
std::cout << "Before installing, the detection state was: " << std::boolalpha << DetectForSystem(m_parameters) << '\n';
return InstallForSystem(m_parameters);
}
bool InstallForSystem_DetectPresence::RunIterationTest()
{
bool result = DetectForSystem(m_parameters);
std::cout << "After installing, the detection state was: " << std::boolalpha << result << '\n';
return result;
}
bool InstallForSystem_DetectPresence::RunFinal()
{
return true;
}