mirror of
https://github.com/mkxp-z/mkxp-z.git
synced 2025-08-23 15:23:44 +02:00
306 lines
11 KiB
C++
306 lines
11 KiB
C++
/*
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** binding-sandbox.cpp
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**
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** This file is part of mkxp.
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**
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** Copyright (C) 2013 - 2021 Amaryllis Kulla <ancurio@mapleshrine.eu>
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**
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** mkxp is free software: you can redistribute it and/or modify
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** it under the terms of the GNU General Public License as published by
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** the Free Software Foundation, either version 2 of the License, or
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** (at your option) any later version.
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**
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** mkxp is distributed in the hope that it will be useful,
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** but WITHOUT ANY WARRANTY; without even the implied warranty of
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** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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** GNU General Public License for more details.
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**
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** You should have received a copy of the GNU General Public License
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** along with mkxp. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "binding-sandbox.h"
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#include <zlib.h>
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#include "sharedstate.h"
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#include "audio-binding.h"
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#include "bitmap-binding.h"
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#include "etc-binding.h"
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#include "font-binding.h"
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#include "graphics-binding.h"
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#include "input-binding.h"
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#include "plane-binding.h"
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#include "sprite-binding.h"
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#include "table-binding.h"
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#include "tilemap-binding.h"
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#include "tilemapvx-binding.h"
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#include "viewport-binding.h"
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#include "window-binding.h"
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#include "windowvx-binding.h"
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using namespace mkxp_sandbox;
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extern const char module_rpg1[];
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extern const char module_rpg2[];
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extern const char module_rpg3[];
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struct eval_script : boost::asio::coroutine {
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typedef decl_slots<ID> slots;
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void operator()(VALUE string, VALUE filename) {
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BOOST_ASIO_CORO_REENTER (this) {
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SANDBOX_AWAIT_S(0, rb_intern, "eval");
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SANDBOX_AWAIT(rb_funcall, SANDBOX_NIL, SANDBOX_SLOT(0), 3, string, SANDBOX_NIL, filename);
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}
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}
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};
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// Runs the game scripts.
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struct run_rmxp_scripts : boost::asio::coroutine {
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typedef decl_slots<VALUE, VALUE, wasm_size_t, wasm_size_t, VALUE, wasm_ptr_t, wasm_ptr_t, wasm_size_t, wasm_size_t, VALUE, VALUE> slots;
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void operator()() {
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BOOST_ASIO_CORO_REENTER (this) {
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// Unmarshal the script array into slot 1
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if (rgssVer == 1) {
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SANDBOX_AWAIT_S(0, rb_file_open, "Data/Scripts.rxdata", "rb");
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} else if (rgssVer == 2) {
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SANDBOX_AWAIT_S(0, rb_file_open, "Data/Scripts.rvdata", "rb");
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} else if (rgssVer == 3) {
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SANDBOX_AWAIT_S(0, rb_file_open, "Data/Scripts.rvdata2", "rb");
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} else {
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std::abort();
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}
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SANDBOX_AWAIT_S(1, rb_marshal_load, SANDBOX_SLOT(0));
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SANDBOX_AWAIT(rb_io_close, SANDBOX_SLOT(0));
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// Assign it to the "$RGSS_SCRIPTS" global variable
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SANDBOX_AWAIT(rb_gv_set, "$RGSS_SCRIPTS", SANDBOX_SLOT(1));
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// Get the number of scripts into slot 2
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SANDBOX_AWAIT_S(2, get_length, SANDBOX_SLOT(1));
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sb().script_decode_buffer.resize(0x1000);
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for (SANDBOX_SLOT(3) = 0; SANDBOX_SLOT(3) < SANDBOX_SLOT(2); ++SANDBOX_SLOT(3)) {
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// Get the script into slot 4
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SANDBOX_AWAIT_S(4, rb_ary_entry, SANDBOX_SLOT(1), SANDBOX_SLOT(3));
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// Skip this script object if it's not an array
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SANDBOX_AWAIT_S(0, rb_obj_is_kind_of, SANDBOX_SLOT(4), sb()->rb_cArray());
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if (!SANDBOX_VALUE_TO_BOOL(SANDBOX_SLOT(0))) {
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continue;
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}
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// Get the name of the script, the zlib-compressed script contents of the script and the length of said contents into slots 5, 6 and 7, respectively
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SANDBOX_AWAIT_S(0, rb_ary_entry, SANDBOX_SLOT(4), 1);
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SANDBOX_AWAIT_S(5, rb_string_value_cstr, &SANDBOX_SLOT(0));
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SANDBOX_AWAIT_S(0, rb_ary_entry, SANDBOX_SLOT(4), 2);
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SANDBOX_AWAIT_S(6, rb_string_value_ptr, &SANDBOX_SLOT(0));
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SANDBOX_AWAIT_S(7, get_bytesize, SANDBOX_SLOT(0));
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// Decompress the script contents
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{
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int zlib_result = Z_OK;
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unsigned long buffer_len = sb().script_decode_buffer.size() - 1;
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while (true) {
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zlib_result = uncompress(
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sb().script_decode_buffer.data(),
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&buffer_len,
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(const unsigned char *)sb()->str(SANDBOX_SLOT(6)),
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SANDBOX_SLOT(7)
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);
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sb().script_decode_buffer[buffer_len] = 0;
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if (zlib_result != Z_BUF_ERROR) {
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break;
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}
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if (2UL * (unsigned long)sb().script_decode_buffer.size() <= (unsigned long)sb().script_decode_buffer.size()) {
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MKXPZ_THROW(std::bad_alloc());
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}
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sb().script_decode_buffer.resize(2 * sb().script_decode_buffer.size());
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buffer_len = sb().script_decode_buffer.size() - 1;
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}
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if (zlib_result != Z_OK) {
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mkxp_retro::log_printf(RETRO_LOG_ERROR, "Error decoding script %zu: '%s'\n", SANDBOX_SLOT(3), sb()->str(SANDBOX_SLOT(5)));
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break;
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}
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}
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SANDBOX_AWAIT_S(0, rb_utf8_str_new_cstr, (const char *)sb().script_decode_buffer.data());
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SANDBOX_AWAIT(rb_ary_store, SANDBOX_SLOT(4), 3, SANDBOX_SLOT(0));
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}
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sb().script_decode_buffer.clear();
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// TODO: preload scripts
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while (true) {
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for (SANDBOX_SLOT(3) = 0; SANDBOX_SLOT(3) < SANDBOX_SLOT(2); ++SANDBOX_SLOT(3)) {
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// Get the script into slot 4
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SANDBOX_AWAIT_S(4, rb_ary_entry, SANDBOX_SLOT(1), SANDBOX_SLOT(3));
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// Skip this script object if it's not an array
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SANDBOX_AWAIT_S(0, rb_obj_is_kind_of, SANDBOX_SLOT(4), sb()->rb_cArray());
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if (!SANDBOX_VALUE_TO_BOOL(SANDBOX_SLOT(0))) {
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continue;
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}
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SANDBOX_AWAIT_S(9, rb_ary_entry, SANDBOX_SLOT(4), 3);
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SANDBOX_AWAIT_S(10, rb_ary_entry, SANDBOX_SLOT(4), 1);
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SANDBOX_AWAIT(eval_script, SANDBOX_SLOT(9), SANDBOX_SLOT(10));
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}
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// Stop unless a reset was requested
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SANDBOX_AWAIT_S(0, rb_gv_get, "$!");
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SANDBOX_AWAIT_S(0, rb_obj_class, SANDBOX_SLOT(0));
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if (SANDBOX_SLOT(0) != reset_class) {
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break;
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}
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SANDBOX_AWAIT(audio_reset);
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SANDBOX_AWAIT(graphics_reset);
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}
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}
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}
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~run_rmxp_scripts() {
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sb().script_decode_buffer.clear();
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}
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};
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static VALUE load_data(VALUE self, VALUE path) {
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struct coro : boost::asio::coroutine {
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typedef decl_slots<wasm_ptr_t, VALUE, VALUE> slots;
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VALUE operator()(VALUE path) {
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BOOST_ASIO_CORO_REENTER (this) {
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SANDBOX_AWAIT_S(0, rb_string_value_cstr, &path);
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SANDBOX_AWAIT_S(1, rb_file_open, sb()->str(SANDBOX_SLOT(0)), "rb");
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SANDBOX_AWAIT_S(2, rb_marshal_load, SANDBOX_SLOT(1));
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SANDBOX_AWAIT(rb_io_close, SANDBOX_SLOT(1));
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}
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return SANDBOX_SLOT(2);
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}
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};
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return sb()->bind<struct coro>()()(path);
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}
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static VALUE rgss_main(VALUE self) {
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struct coro : boost::asio::coroutine {
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static VALUE func(VALUE block) {
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struct coro : boost::asio::coroutine {
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typedef decl_slots<ID> slots;
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VALUE operator()(VALUE block) {
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BOOST_ASIO_CORO_REENTER (this) {
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SANDBOX_AWAIT_S(0, rb_intern, "call");
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SANDBOX_AWAIT(rb_funcall, block, SANDBOX_SLOT(0), 0);
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}
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return SANDBOX_UNDEF;
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}
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};
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return sb()->bind<struct coro>()()(block);
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}
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static VALUE rescue(VALUE arg, VALUE exception) {
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return exception;
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}
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typedef decl_slots<VALUE, VALUE> slots;
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VALUE operator()(VALUE self) {
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BOOST_ASIO_CORO_REENTER (this) {
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while (true) {
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SANDBOX_AWAIT_S(0, rb_block_proc);
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SANDBOX_AWAIT_S(1, rb_rescue2, func, SANDBOX_SLOT(0), rescue, SANDBOX_NIL, sb()->rb_eException(), 0);
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if (SANDBOX_SLOT(1) == SANDBOX_UNDEF) {
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return SANDBOX_NIL;
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}
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SANDBOX_AWAIT_S(0, rb_gv_get, "$!");
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SANDBOX_AWAIT_S(0, rb_obj_class, SANDBOX_SLOT(0));
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if (SANDBOX_SLOT(0) == reset_class) {
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SANDBOX_AWAIT(audio_reset);
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SANDBOX_AWAIT(graphics_reset);
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} else {
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SANDBOX_AWAIT(rb_exc_raise, SANDBOX_SLOT(1));
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}
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}
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}
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return SANDBOX_NIL;
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}
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};
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return sb()->bind<struct coro>()()(self);
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}
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static VALUE rgss_stop(VALUE self) {
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struct coro : boost::asio::coroutine {
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typedef decl_slots<VALUE> slots;
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VALUE operator()(VALUE self) {
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BOOST_ASIO_CORO_REENTER (this) {
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while (true) {
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SANDBOX_GUARD_L(SANDBOX_SLOT(0) = shState->graphics().update(sb().e));
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if (SANDBOX_SLOT(0)) {
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SANDBOX_YIELD;
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}
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}
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}
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return SANDBOX_NIL;
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}
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};
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return sb()->bind<struct coro>()()(self);
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}
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void sandbox_binding_init::operator()() {
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BOOST_ASIO_CORO_REENTER (this) {
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SANDBOX_AWAIT(exception_binding_init);
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SANDBOX_AWAIT(table_binding_init);
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SANDBOX_AWAIT(etc_binding_init);
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SANDBOX_AWAIT(font_binding_init);
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SANDBOX_AWAIT(bitmap_binding_init);
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SANDBOX_AWAIT(sprite_binding_init);
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SANDBOX_AWAIT(viewport_binding_init);
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SANDBOX_AWAIT(plane_binding_init);
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if (rgssVer == 1) {
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SANDBOX_AWAIT(window_binding_init);
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SANDBOX_AWAIT(tilemap_binding_init);
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} else {
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SANDBOX_AWAIT(windowvx_binding_init);
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SANDBOX_AWAIT(tilemapvx_binding_init);
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}
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SANDBOX_AWAIT(input_binding_init);
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SANDBOX_AWAIT(audio_binding_init);
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SANDBOX_AWAIT(graphics_binding_init);
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SANDBOX_AWAIT(rb_define_module_function, sb()->rb_mKernel(), "load_data", (VALUE (*)(ANYARGS))load_data, 1);
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if (rgssVer >= 3) {
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SANDBOX_AWAIT(rb_define_module_function, sb()->rb_mKernel(), "rgss_main", (VALUE (*)(ANYARGS))rgss_main, 0);
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SANDBOX_AWAIT(rb_define_module_function, sb()->rb_mKernel(), "rgss_stop", (VALUE (*)(ANYARGS))rgss_stop, 0);
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}
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if (rgssVer == 1) {
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SANDBOX_AWAIT(rb_eval_string, module_rpg1);
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} else if (rgssVer == 2) {
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SANDBOX_AWAIT(rb_eval_string, module_rpg2);
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} else if (rgssVer == 3) {
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SANDBOX_AWAIT(rb_eval_string, module_rpg3);
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} else {
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std::abort();
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}
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SANDBOX_AWAIT(run_rmxp_scripts);
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}
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}
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