mirror of
https://github.com/ThePhD/sol2.git
synced 2024-03-22 13:10:44 +08:00
7aae1aaaaa
- Add a flag to allow size_t(-1) and similar shenanigans (SOL_ALL_INTEGER_VALUES_FIT) - Half-fix, but not fully, for #1183, #1072, #1038, #965 - Fix #1126 - Prepare for #1061
726 lines
21 KiB
C++
726 lines
21 KiB
C++
// sol2
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// The MIT License (MIT)
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// Copyright (c) 2013-2021 Rapptz, ThePhD and contributors
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// Permission is hereby granted, free of charge, to any person obtaining a copy of
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// this software and associated documentation files (the "Software"), to deal in
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// the Software without restriction, including without limitation the rights to
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// use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
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// the Software, and to permit persons to whom the Software is furnished to do so,
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// subject to the following conditions:
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// The above copyright notice and this permission notice shall be included in all
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// copies or substantial portions of the Software.
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
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// FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
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// COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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// IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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// CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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#include "sol_test.hpp"
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#include <catch2/catch.hpp>
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#include <iostream>
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#include <fstream>
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#include <chrono>
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#include <thread>
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#include <mutex>
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#include <atomic>
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template <typename Name, typename Data>
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void write_file_attempt(Name&& filename, Data&& data) {
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bool success = false;
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for (std::size_t i = 0; i < 20; ++i) {
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try {
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std::ofstream file(std::forward<Name>(filename), std::ios::out);
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file.exceptions(std::ios_base::badbit | std::ios_base::failbit);
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file << std::forward<Data>(data) << std::endl;
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file.close();
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}
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catch (const std::exception&) {
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std::this_thread::sleep_for(std::chrono::milliseconds(10));
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continue;
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}
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success = true;
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break;
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}
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if (!success) {
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throw std::runtime_error("cannot open file or write out");
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}
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}
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struct write_file_attempt_object {
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template <typename... Args>
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void operator()(Args&&... args) {
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write_file_attempt(std::forward<Args>(args)...);
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}
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};
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struct string_reader_load {
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const std::string& str;
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std::size_t reads;
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string_reader_load(const std::string& s) : str(s), reads(0) {
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}
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};
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const char* string_reader(lua_State* L, void* vpstr, size_t* sz) {
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(void)L;
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string_reader_load& srl = *static_cast<string_reader_load*>(vpstr);
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if (srl.reads++ > 0) {
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*sz = 0;
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return NULL;
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}
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*sz = static_cast<size_t>(srl.str.size());
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return srl.str.c_str();
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}
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TEST_CASE("state/require_file", "opening files as 'requires'") {
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static const char file_require_file[] = "./tmp_thingy.lua";
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static const char file_require_file_user[] = "./tmp_thingy_user.lua";
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static const char require_file_code[] = "return { modfunc = function () return 221 end }";
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static const char require_file_user_code[] = "return { modfunc = function () return foo.new(221) end }";
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static std::atomic<int> finished(0);
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static std::once_flag flag_file = {}, flag_file_user = {};
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std::call_once(flag_file, write_file_attempt_object(), file_require_file, require_file_code);
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std::call_once(flag_file_user, write_file_attempt_object(), file_require_file_user, require_file_user_code);
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auto clean_files = []() {
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if (finished.fetch_add(1) < 1) {
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return;
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}
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std::remove(file_require_file);
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std::remove(file_require_file_user);
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};
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SECTION("with usertypes") {
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struct foo {
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foo(int bar) : bar(bar) {
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}
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const int bar;
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};
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sol::state lua;
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lua.open_libraries(sol::lib::base);
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lua.new_usertype<foo>("foo", sol::constructors<sol::types<int>> {}, "bar", &foo::bar);
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const sol::table thingy1 = lua.require_file("thingy", file_require_file_user);
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REQUIRE(thingy1.valid());
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const foo foo_v = thingy1["modfunc"]();
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int val1 = foo_v.bar;
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REQUIRE(val1 == 221);
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clean_files();
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}
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SECTION("simple") {
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sol::state lua;
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lua.open_libraries(sol::lib::base);
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const sol::table thingy1 = lua.require_file("thingy", file_require_file);
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const sol::table thingy2 = lua.require_file("thingy", file_require_file);
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REQUIRE(thingy1.valid());
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REQUIRE(thingy2.valid());
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int val1 = thingy1["modfunc"]();
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int val2 = thingy2["modfunc"]();
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REQUIRE(val1 == 221);
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REQUIRE(val2 == 221);
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// must have loaded the same table
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REQUIRE((thingy1 == thingy2));
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clean_files();
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}
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}
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TEST_CASE("state/require_script", "opening strings as 'requires' clauses") {
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const std::string code = "return { modfunc = function () return 221 end }";
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sol::state lua;
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sol::stack_guard luasg(lua);
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sol::table thingy1 = lua.require_script("thingy", code);
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sol::table thingy2 = lua.require_script("thingy", code);
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int val1 = thingy1["modfunc"]();
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int val2 = thingy2["modfunc"]();
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REQUIRE(val1 == 221);
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REQUIRE(val2 == 221);
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// must have loaded the same table
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REQUIRE((thingy1 == thingy2));
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}
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TEST_CASE("state/require_script empty", "opening strings as 'requires' clauses that return nothing insert a bogus value") {
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sol::state lua;
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lua.open_libraries(sol::lib::package, sol::lib::base);
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lua.set_function("print_to_console", [](std::string const& message) { std::cout << message << std::endl; });
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const std::string code = "print_to_console('hello from required file') i = 20";
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{
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int begintop = 0, endtop = 0;
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test_stack_guard guard(lua, begintop, endtop);
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lua.require_script("require_test", code, false);
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}
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sol::optional<sol::error> maybe_error = lua.safe_script(R"(
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require ("require_test")
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print_to_console("hello from script")
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assert(i == 20)
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)",
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sol::script_pass_on_error);
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REQUIRE_FALSE(maybe_error.has_value());
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}
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TEST_CASE("state/require", "require using a function") {
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struct open {
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static int open_func(lua_State* L) {
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sol::state_view lua = L;
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return sol::stack::push(L, lua.create_table_with("modfunc", sol::as_function([]() { return 221; })));
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}
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};
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sol::state lua;
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sol::stack_guard luasg(lua);
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sol::table thingy1 = lua.require("thingy", open::open_func);
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sol::table thingy2 = lua.require("thingy", open::open_func);
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int val1 = thingy1["modfunc"]();
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int val2 = thingy2["modfunc"]();
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REQUIRE(val1 == 221);
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REQUIRE(val2 == 221);
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// THIS IS ONLY REQUIRED IN LUA 5.3, FOR SOME REASON
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// must have loaded the same table
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// REQUIRE(thingy1 == thingy2);
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}
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TEST_CASE("state/multi require", "make sure that requires transfers across hand-rolled script implementation and standard requiref") {
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struct open {
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static int open_func(lua_State* L) {
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sol::state_view lua = L;
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return sol::stack::push(L, lua.create_table_with("modfunc", sol::as_function([]() { return 221; })));
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}
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};
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std::string code = "return { modfunc = function () return 221 end }";
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sol::state lua;
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sol::table thingy1 = lua.require("thingy", open::open_func);
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sol::table thingy2 = lua.require("thingy", open::open_func);
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sol::table thingy3 = lua.require_script("thingy", code);
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int val1 = thingy1["modfunc"]();
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int val2 = thingy2["modfunc"]();
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int val3 = thingy3["modfunc"]();
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REQUIRE(val1 == 221);
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REQUIRE(val2 == 221);
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REQUIRE(val3 == 221);
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// must have loaded the same table
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// Lua is not obliged to give a shit. Thanks, Lua
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// REQUIRE(thingy1 == thingy2);
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// But we care, thankfully
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// REQUIRE(thingy1 == thingy3);
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REQUIRE((thingy2 == thingy3));
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}
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TEST_CASE("state/require-safety", "make sure unrelated modules aren't harmed in using requires") {
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sol::state lua;
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lua.open_libraries();
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std::string t1 = lua.safe_script(R"(require 'io'
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return 'test1')");
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sol::object ot2 = lua.require_script("test2", R"(require 'io'
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return 'test2')");
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std::string t2 = ot2.as<std::string>();
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std::string t3 = lua.safe_script(R"(require 'io'
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return 'test3')");
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REQUIRE(t1 == "test1");
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REQUIRE(t2 == "test2");
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REQUIRE(t3 == "test3");
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}
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TEST_CASE("state/leak check", "make sure there are no humongous memory leaks in iteration") {
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#if 0
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sol::state lua;
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lua.safe_script(R"(
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record = {}
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for i=1,256 do
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record[i] = i
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end
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function run()
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for i=1,25000 do
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fun(record)
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end
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end
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function run2()
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for i=1,50000 do
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fun(record)
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end
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end
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)");
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lua["fun"] = [](const sol::table &t) {
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//removing the for loop fixes the memory leak
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auto b = t.begin();
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auto e = t.end();
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for (; b != e; ++b) {
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}
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};
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size_t beforewarmup = lua.memory_used();
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lua["run"]();
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size_t beforerun = lua.memory_used();
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lua["run"]();
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size_t afterrun = lua.memory_used();
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lua["run2"]();
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size_t afterrun2 = lua.memory_used();
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// Less memory used before the warmup
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REQUIRE(beforewarmup <= beforerun);
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// Iteration size and such does not bloat or affect memory
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// (these are weak checks but they'll warn us nonetheless if something goes wrong)
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REQUIRE(beforerun == afterrun);
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REQUIRE(afterrun == afterrun2);
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#else
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REQUIRE(true);
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#endif
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}
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TEST_CASE("state/script returns", "make sure script returns are done properly") {
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std::string script =
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R"(
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local example =
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{
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str = "this is a string",
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num = 1234,
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func = function(self)
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print(self.str)
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return "fstr"
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end
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}
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return example;
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)";
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auto bar = [&script](sol::this_state l) {
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sol::state_view lua = l;
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sol::table data = lua.safe_script(script);
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std::string str = data["str"];
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int num = data["num"];
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std::string fstr = data["func"](data);
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REQUIRE(str == "this is a string");
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REQUIRE(fstr == "fstr");
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REQUIRE(num == 1234);
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};
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auto foo = [&script](int, sol::this_state l) {
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sol::state_view lua = l;
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sol::table data = lua.safe_script(script);
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std::string str = data["str"];
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int num = data["num"];
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std::string fstr = data["func"](data);
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REQUIRE(str == "this is a string");
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REQUIRE(fstr == "fstr");
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REQUIRE(num == 1234);
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};
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auto bar2 = [&script](sol::this_state l) {
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sol::state_view lua = l;
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sol::table data = lua.do_string(script);
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std::string str = data["str"];
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int num = data["num"];
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std::string fstr = data["func"](data);
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REQUIRE(str == "this is a string");
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REQUIRE(fstr == "fstr");
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REQUIRE(num == 1234);
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};
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auto foo2 = [&script](int, sol::this_state l) {
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sol::state_view lua = l;
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sol::table data = lua.do_string(script);
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std::string str = data["str"];
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int num = data["num"];
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std::string fstr = data["func"](data);
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REQUIRE(str == "this is a string");
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REQUIRE(fstr == "fstr");
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REQUIRE(num == 1234);
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};
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sol::state lua;
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sol::stack_guard luasg(lua);
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lua.open_libraries();
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lua.set_function("foo", foo);
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lua.set_function("foo2", foo2);
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lua.set_function("bar", bar);
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lua.set_function("bar2", bar2);
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lua.safe_script("bar() bar2() foo(1) foo2(1)");
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}
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TEST_CASE("state/copy and move", "ensure state can be properly copied and moved") {
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sol::state lua;
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lua["a"] = 1;
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sol::state lua2(std::move(lua));
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int a2 = lua2["a"];
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REQUIRE(a2 == 1);
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lua = std::move(lua2);
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int a = lua["a"];
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REQUIRE(a == 1);
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}
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TEST_CASE("state/requires-reload", "ensure that reloading semantics do not cause a crash") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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lua.open_libraries();
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lua.safe_script("require 'io'\nreturn 'test1'");
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lua.require_script("test2", "require 'io'\nreturn 'test2'");
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lua.safe_script("require 'io'\nreturn 'test3'");
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}
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TEST_CASE("state/script, do, and load", "test success and failure cases for loading and running scripts") {
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const static std::string bad_syntax = "weird\n%$@symb\nols";
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static const char file_bad_syntax[] = "./temp.bad_syntax.lua";
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const static std::string bad_runtime = "bad.code = 20";
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static const char file_bad_runtime[] = "./temp.bad_runtime.lua";
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const static std::string good = "a = 21\nreturn a";
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static const char file_good[] = "./temp.good.lua";
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static std::once_flag flag_file_bs = {}, flag_file_br = {}, flag_file_g = {};
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static std::atomic<int> finished(0);
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std::call_once(flag_file_bs, write_file_attempt_object(), file_bad_syntax, bad_syntax);
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std::call_once(flag_file_br, write_file_attempt_object(), file_bad_runtime, bad_runtime);
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std::call_once(flag_file_g, write_file_attempt_object(), file_good, good);
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auto clean_files = []() {
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if (finished.fetch_add(1) < 14) {
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return;
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}
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std::remove(file_bad_syntax);
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std::remove(file_bad_runtime);
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std::remove(file_good);
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};
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SECTION("script") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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int ar = lua.safe_script(good);
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int a = lua["a"];
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("unsafe_script") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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int ar = lua.unsafe_script(good);
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int a = lua["a"];
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("script-handler") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbs = lua.safe_script(bad_syntax, sol::script_pass_on_error);
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REQUIRE(!errbs.valid());
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auto errbr = lua.safe_script(bad_runtime, sol::script_pass_on_error);
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REQUIRE(!errbr.valid());
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auto result = lua.safe_script(good, sol::script_pass_on_error);
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("do_string") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbs = lua.do_string(bad_syntax);
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REQUIRE(!errbs.valid());
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auto errbr = lua.do_string(bad_runtime);
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REQUIRE(!errbr.valid());
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auto result = lua.do_string(good);
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load_string") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbsload = lua.load(bad_syntax);
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REQUIRE(!errbsload.valid());
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sol::load_result errbrload = lua.load(bad_runtime);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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sol::load_result resultload = lua.load(good);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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string_reader_load bssrl(bad_syntax);
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void* vpbssrl = static_cast<void*>(&bssrl);
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auto errbsload = lua.load(&string_reader, vpbssrl, bad_syntax);
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REQUIRE(!errbsload.valid());
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string_reader_load brsrl(bad_runtime);
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void* vpbrsrl = static_cast<void*>(&brsrl);
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sol::load_result errbrload = lua.load(&string_reader, vpbrsrl, bad_runtime);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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string_reader_load gsrl(good);
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void* vpgsrl = static_cast<void*>(&gsrl);
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sol::load_result resultload = lua.load(&string_reader, vpgsrl, good);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load_string (text)") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbsload = lua.load(bad_syntax, bad_syntax, sol::load_mode::text);
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REQUIRE(!errbsload.valid());
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sol::load_result errbrload = lua.load(bad_runtime, bad_runtime, sol::load_mode::text);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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sol::load_result resultload = lua.load(good, good, sol::load_mode::text);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load (text)") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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string_reader_load bssrl(bad_syntax);
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void* vpbssrl = static_cast<void*>(&bssrl);
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auto errbsload = lua.load(&string_reader, vpbssrl, bad_syntax, sol::load_mode::text);
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REQUIRE(!errbsload.valid());
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string_reader_load brsrl(bad_runtime);
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void* vpbrsrl = static_cast<void*>(&brsrl);
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sol::load_result errbrload = lua.load(&string_reader, vpbrsrl, bad_runtime, sol::load_mode::text);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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string_reader_load gsrl(good);
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void* vpgsrl = static_cast<void*>(&gsrl);
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sol::load_result resultload = lua.load(&string_reader, vpgsrl, good, sol::load_mode::text);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("script_file") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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int ar = lua.safe_script_file(file_good);
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int a = lua["a"];
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("unsafe_script_file") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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int ar = lua.unsafe_script_file(file_good);
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int a = lua["a"];
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("script_file-handler") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbs = lua.safe_script_file(file_bad_syntax, sol::script_pass_on_error);
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REQUIRE(!errbs.valid());
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auto errbr = lua.safe_script_file(file_bad_runtime, sol::script_pass_on_error);
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REQUIRE(!errbr.valid());
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auto result = lua.safe_script_file(file_good, sol::script_pass_on_error);
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("safe_script_file-handler") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbs = lua.safe_script_file(file_bad_syntax, sol::script_pass_on_error);
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REQUIRE(!errbs.valid());
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auto errbr = lua.safe_script_file(file_bad_runtime, sol::script_pass_on_error);
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REQUIRE(!errbr.valid());
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auto result = lua.safe_script_file(file_good, sol::script_pass_on_error);
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("do_file") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbs = lua.do_file(file_bad_syntax);
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REQUIRE(!errbs.valid());
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auto errbr = lua.do_file(file_bad_runtime);
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REQUIRE(!errbr.valid());
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auto result = lua.do_file(file_good);
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load_file") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbsload = lua.load_file(file_bad_syntax);
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REQUIRE(!errbsload.valid());
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sol::load_result errbrload = lua.load_file(file_bad_runtime);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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sol::load_result resultload = lua.load_file(file_good);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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SECTION("load_file (text)") {
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sol::state lua;
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sol::stack_guard luasg(lua);
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auto errbsload = lua.load_file(file_bad_syntax, sol::load_mode::text);
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REQUIRE(!errbsload.valid());
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sol::load_result errbrload = lua.load_file(file_bad_runtime, sol::load_mode::text);
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REQUIRE(errbrload.valid());
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sol::protected_function errbrpf = errbrload.get<sol::protected_function>();
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auto errbr = errbrpf();
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REQUIRE(!errbr.valid());
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sol::load_result resultload = lua.load_file(file_good, sol::load_mode::text);
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REQUIRE(resultload.valid());
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sol::protected_function resultpf = resultload.get<sol::protected_function>();
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auto result = resultpf();
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int a = lua["a"];
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int ar = result;
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REQUIRE(result.valid());
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REQUIRE(a == 21);
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REQUIRE(ar == 21);
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clean_files();
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}
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}
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TEST_CASE("state/script return converts", "make sure that script return values are convertable from one to another") {
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sol::state lua;
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sol::protected_function_result r1 = lua.unsafe_script("return 2");
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sol::unsafe_function_result r2 = lua.safe_script("return 3");
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int v1 = r1;
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int v2 = r2;
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REQUIRE(v1 == 2);
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REQUIRE(v2 == 3);
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}
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TEST_CASE("state/script function returns", "make sure that returned functions are converitble from a result to a function") {
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SECTION("from result move constructor") {
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sol::state lua;
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|
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sol::protected_function pf = lua.safe_script("return function () return 2 end", sol::script_pass_on_error);
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REQUIRE(pf.valid());
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int v1 = pf();
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REQUIRE(v1 == 2);
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}
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SECTION("from result operator=") {
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sol::state lua;
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|
|
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sol::protected_function_result r1 = lua.safe_script("return function () return 1 end", sol::script_pass_on_error);
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REQUIRE(r1.valid());
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sol::protected_function pf = r1.get<sol::protected_function>();
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int v1 = pf();
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REQUIRE(v1 == 1);
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}
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}
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