// file : build2/function.test.cxx -*- C++ -*- // copyright : Copyright (c) 2014-2019 Code Synthesis Ltd // license : MIT; see accompanying LICENSE file #include #include #include #include #include #include #include #include using namespace std; namespace build2 { static const optional arg_bool[1] = { &value_traits::value_type }; static dir_path scoped (const scope*, dir_path d) { return d; } static void scoped_void (const scope*, dir_path) { } int main (int, char* argv[]) { init (argv[0], 1); // Fake build system driver, default verbosity. reset (strings ()); // No command line variables. function_family f ("dummy"); f["fail"] = []() {fail << "failed" << endf;}; f["fail_arg"] = [](names a) {return convert (move (a[0]));}; f["nullable"] = [](names* a) {return a == nullptr;}; f["optional"] = [](optional a) {return !a;}; f["dummy0"] = []() {return "abc";}; f["dummy1"] = [](string s) {return s;}; f["dummy2"] = [](uint64_t x, uint64_t y) {return x + y;}; f["ambig"] = [](names a, optional) {return a;}; f["ambig"] = [](names a, optional) {return a;}; f["reverse"] = [](names a) {return a;}; f["scoped"] = [](const scope*, names a) {return a;}; f["scoped_void"] = [](const scope*, names) {}; f["scoped"] = &scoped; f["scoped_void"] = &scoped_void; f[".qual"] = []() {return "abc";}; f[".length"] = &path::size; // Member function. f[".type"] = &name::type; // Data member. f[".abs"] = [](dir_path d) {return d.absolute ();}; // Variadic function with first required argument of type bool. Returns // number of arguments passed. // functions.insert ( "variadic", function_overload ( nullptr, 1, function_overload::arg_variadic, function_overload::types (arg_bool, 1), [] (const scope*, vector_view args, const function_overload&) { return value (static_cast (args.size ())); })); // Dump arguments. // functions.insert ( "dump", function_overload ( nullptr, 0, function_overload::arg_variadic, function_overload::types (), [] (const scope*, vector_view args, const function_overload&) { for (value& a: args) { if (a.null) cout << "[null]"; else if (!a.empty ()) { names storage; cout << reverse (a, storage); } cout << endl; } return value (nullptr); })); try { scope& s (*scope::global_); parser p; p.parse_buildfile (cin, path ("buildfile"), s, s); } catch (const failed&) { return 1; } return 0; } } int main (int argc, char* argv[]) { return build2::main (argc, argv); }