void ComponentsUnitTests::testLcidFilters()
{
    Components components;
    ComponentPtr component_currentlcid(new MsiComponent());
    component_currentlcid->os_filter_lcid = L"1040";
    ComponentPtr component_anotherlcid(new MsiComponent());
    component_anotherlcid->os_filter_lcid = L"!1040";
    components.add(component_currentlcid);
    components.add(component_anotherlcid);
    Assert::IsTrue(components.size() == 2);
    Assert::IsTrue(components.GetSupportedComponents(LcidUser, SequenceInstall).size() == 1);
}
void ComponentsUnitTests::testPAFilters()
{
    Components components;
    ComponentPtr component_currentpa(new MsiComponent());
    component_currentpa->processor_architecture_filter = L"mips";
    ComponentPtr component_anotherpa(new MsiComponent());
    component_anotherpa->processor_architecture_filter = L"x86,x64";
    components.add(component_currentpa);
    components.add(component_anotherpa);
    Assert::IsTrue(components.size() == 2);
    Assert::IsTrue(components.GetSupportedComponents(LcidUser, SequenceInstall).size() == 1);
    Assert::IsTrue(get(components.GetSupportedComponents(LcidUser, SequenceInstall)[0]) == get(component_anotherpa));
}
void ComponentsUnitTests::testAdd()
{
    Components components;
    ComponentPtr component1(new CmdComponent());
    component1->id = DVLib::GenerateGUIDStringW();
    ComponentPtr component2(new CmdComponent());
    component2->id = DVLib::GenerateGUIDStringW();
    components.add(component1);
    components.add(component2);
    Assert::IsTrue(components.size() == 2);
    Assert::IsTrue(components.contains(component1->id));
    Assert::IsTrue(components.contains(component2->id));
    Assert::IsTrue(! components.contains(DVLib::GenerateGUIDStringW()));
}
Beispiel #4
0
TagWriter::TagWriter(const c2lang::SourceManager& SM_, const Components& components)
    : SM(SM_)
    , currentFile(0)
{
    for (unsigned c=0; c<components.size(); c++) {
        const ModuleList& mods = components[c]->getModules();
        for (unsigned m=0; m<mods.size(); m++) {
            const AstList& modFiles = mods[m]->getFiles();
            for (unsigned i=0; i<modFiles.size(); i++) {
                analyse(*modFiles[i]);
            }
        }
    }
}
void ComponentsUnitTests::testOsFilters()
{
    Components components;
    ComponentPtr component1(new MsiComponent());
    component1->os_filter = L"!winXP";
    ComponentPtr component2(new MsiComponent());
    component2->os_filter = L"winXPsp1";
    ComponentPtr component3(new MsiComponent());
    component3->os_filter = L"winXP";
    ComponentPtr component4(new MsiComponent());
    components.add(component1);
    components.add(component2);
    components.add(component3);
    components.add(component4);
    Assert::IsTrue(components.size() == 4);
    Assert::IsTrue(components.GetSupportedComponents(LcidUser, SequenceInstall).size() == 2);
}
Beispiel #6
0
int InstallerWindow::ExecOnThread()
{
	try
	{
		auto_any<htmlayout::dom::element *, html_disabled> btn_install(& button_install);
		htmlayout::queue::push(new html_set_attribute_task(& button_install, "disabled", L"disabled"), HtmlWindow::s_hwnd);
		auto_any<htmlayout::dom::element *, html_disabled> btn_skip(& button_skip);
		htmlayout::queue::push(new html_set_attribute_task(& button_skip, "disabled", L"disabled"), HtmlWindow::s_hwnd);

		ClearError();
		ClearProgress();

		InstallConfiguration * p_configuration = reinterpret_cast<InstallConfiguration *>(get(m_configuration));
		CHECK_BOOL(p_configuration != NULL, L"Invalid configuration");

		if (RestartElevated())
		{
			OnCancel();
			return 0;
		}

		Components components = p_configuration->GetSupportedComponents(
			InstallerSession::Instance->lcidtype, InstallerSession::Instance->sequence);

		SetProgressTotal(components.size() * 2);

		int rc = components.Exec(this);
		InstallerUI::AfterInstall(rc);
		return 0;
    }
    catch(std::exception& ex)
    {
		LOG(L"*** Failed to install one or more components: " << DVLib::string2wstring(ex.what()));
		ShowError(DVLib::string2wstring(ex.what()));
		RecordError();
    }
	catch(...)
	{
		LOG(L"*** Failed to install one or more components");
		ShowError(TEXT("Failed to install one or more components"));
		RecordError();
	}

	return 0;
}
void ComponentsUnitTests::testOsFiltersGreaterSmaller()
{
    Components components;
    ComponentPtr component1(new MsiComponent());
    component1->os_filter_min = winNone;
    component1->os_filter_max = winXPMax;
    ComponentPtr component2(new MsiComponent());
    component2->os_filter_min = winXP;
    component2->os_filter_max = winServer2003Max;
    ComponentPtr component3(new MsiComponent());
    component3->os_filter_min = winXP;
    component3->os_filter_max = winNone;
    components.add(component1);
    components.add(component2);
    components.add(component3);
    Assert::IsTrue(components.size() == 3);
    Assert::IsTrue(components.GetSupportedComponents(LcidUser, SequenceInstall).size() == 1);
}
Beispiel #8
0
auto search(uint32_t limit, const PrimeNumbers &primes) {
    const size_t iteration_limit = 10000;

    auto initial = initial_candidate(limit, primes);
    Components components = {initial, initial};

    for(size_t i=0;components.size() && i<iteration_limit;++i,components=next(components,initial,limit,primes)) {
        auto fraction = quotient(components);

        if(is_permuted_pair(fraction.p(),fraction.q())) {
            if(!util::test_mode()) {
                fmt::print("[{}] {}x{} -> {} ({})\n",i,
                                                *components[0],
                                                *components[1],
                                                 fraction,
                                                 static_cast<double>(fraction));
            }
            return std::make_tuple(true,fraction);
        };
    }

    return std::make_tuple(false,quotient(Components{}));
}
Beispiel #9
0
void DepGenerator::write(const Components& components, const std::string& title, const std::string& path) const {
    StringBuilder output;
    int indent = 0;
    output << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n";
    output << "<dsm name='" << title << "'>\n";
    indent += INDENT;
    output.indent(indent);
    output << "<model>\n";

    indent += INDENT;
    for (unsigned c=0; c<components.size(); c++) {
        const Component* C = components[c];
        if (!showExternals && C->isExternal()) continue;

        output.indent(indent);
        output << "<group name='" << C->getName() << "' full='component:" << C->getName() << "' collapsed='0'>\n";

        indent += INDENT;
        const ModuleList& mods = C->getModules();
        for (unsigned m=0; m<mods.size(); m++) {
            writeModule(*mods[m], output, indent);
        }
        indent -= INDENT;

        output.indent(indent);
        output << "</group>\n";
    }
    indent -= INDENT;

    output.indent(indent);
    output << "</model>\n";
    indent -= INDENT;
    output << "</dsm>\n";

    FileUtils::writeFile(path.c_str(), path + "deps.xml", output);
}