forked from Mirrorlandia_minetest/minetest
586 lines
16 KiB
C++
586 lines
16 KiB
C++
/*
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Minetest
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Copyright (C) 2010-2013 celeron55, Perttu Ahola <celeron55@gmail.com>
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Copyright (C) 2017 nerzhul, Loic Blot <loic.blot@unix-experience.fr>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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the Free Software Foundation; either version 2.1 of the License, or
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(at your option) any later version.
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This program 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 Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include <IrrlichtDevice.h>
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#include <irrlicht.h>
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#include "fontengine.h"
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#include "client.h"
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#include "clouds.h"
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#include "util/numeric.h"
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#include "guiscalingfilter.h"
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#include "localplayer.h"
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#include "client/hud.h"
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#include "camera.h"
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#include "minimap.h"
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#include "clientmap.h"
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#include "renderingengine.h"
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#include "render/core.h"
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#include "render/factory.h"
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#include "inputhandler.h"
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#include "gettext.h"
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#if !defined(_WIN32) && !defined(__APPLE__) && !defined(__ANDROID__) && \
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!defined(SERVER) && !defined(__HAIKU__)
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#define XORG_USED
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#endif
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#ifdef XORG_USED
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#include <X11/Xlib.h>
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#include <X11/Xutil.h>
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#endif
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#ifdef __ANDROID__
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#include "filesys.h"
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#endif
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RenderingEngine *RenderingEngine::s_singleton = nullptr;
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RenderingEngine::RenderingEngine(IEventReceiver *receiver)
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{
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sanity_check(!s_singleton);
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// Resolution selection
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bool fullscreen = g_settings->getBool("fullscreen");
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u16 screen_w = g_settings->getU16("screen_w");
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u16 screen_h = g_settings->getU16("screen_h");
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// bpp, fsaa, vsync
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bool vsync = g_settings->getBool("vsync");
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u16 bits = g_settings->getU16("fullscreen_bpp");
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u16 fsaa = g_settings->getU16("fsaa");
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// stereo buffer required for pageflip stereo
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bool stereo_buffer = g_settings->get("3d_mode") == "pageflip";
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// Determine driver
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video::E_DRIVER_TYPE driverType = video::EDT_OPENGL;
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const std::string &driverstring = g_settings->get("video_driver");
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std::vector<video::E_DRIVER_TYPE> drivers =
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RenderingEngine::getSupportedVideoDrivers();
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u32 i;
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for (i = 0; i != drivers.size(); i++) {
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if (!strcasecmp(driverstring.c_str(),
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RenderingEngine::getVideoDriverName(drivers[i]))) {
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driverType = drivers[i];
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break;
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}
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}
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if (i == drivers.size()) {
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errorstream << "Invalid video_driver specified; "
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"defaulting to opengl"
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<< std::endl;
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}
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SIrrlichtCreationParameters params = SIrrlichtCreationParameters();
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params.DriverType = driverType;
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params.WindowSize = core::dimension2d<u32>(screen_w, screen_h);
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params.Bits = bits;
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params.AntiAlias = fsaa;
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params.Fullscreen = fullscreen;
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params.Stencilbuffer = false;
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params.Stereobuffer = stereo_buffer;
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params.Vsync = vsync;
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params.EventReceiver = receiver;
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params.HighPrecisionFPU = g_settings->getBool("high_precision_fpu");
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params.ZBufferBits = 24;
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#ifdef __ANDROID__
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// clang-format off
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params.PrivateData = porting::app_global;
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params.OGLES2ShaderPath = std::string(porting::path_user + DIR_DELIM + "media" +
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DIR_DELIM + "Shaders" + DIR_DELIM).c_str();
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// clang-format on
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#endif
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m_device = createDeviceEx(params);
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driver = m_device->getVideoDriver();
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s_singleton = this;
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}
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RenderingEngine::~RenderingEngine()
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{
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core.reset();
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m_device->drop();
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s_singleton = nullptr;
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}
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v2u32 RenderingEngine::getWindowSize() const
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{
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if (core)
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return core->getVirtualSize();
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return m_device->getVideoDriver()->getScreenSize();
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}
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void RenderingEngine::setResizable(bool resize)
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{
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m_device->setResizable(resize);
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}
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bool RenderingEngine::print_video_modes()
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{
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IrrlichtDevice *nulldevice;
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bool vsync = g_settings->getBool("vsync");
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u16 fsaa = g_settings->getU16("fsaa");
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MyEventReceiver *receiver = new MyEventReceiver();
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SIrrlichtCreationParameters params = SIrrlichtCreationParameters();
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params.DriverType = video::EDT_NULL;
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params.WindowSize = core::dimension2d<u32>(640, 480);
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params.Bits = 24;
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params.AntiAlias = fsaa;
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params.Fullscreen = false;
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params.Stencilbuffer = false;
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params.Vsync = vsync;
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params.EventReceiver = receiver;
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params.HighPrecisionFPU = g_settings->getBool("high_precision_fpu");
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nulldevice = createDeviceEx(params);
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if (!nulldevice) {
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delete receiver;
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return false;
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}
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std::cout << _("Available video modes (WxHxD):") << std::endl;
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video::IVideoModeList *videomode_list = nulldevice->getVideoModeList();
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if (videomode_list != NULL) {
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s32 videomode_count = videomode_list->getVideoModeCount();
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core::dimension2d<u32> videomode_res;
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s32 videomode_depth;
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for (s32 i = 0; i < videomode_count; ++i) {
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videomode_res = videomode_list->getVideoModeResolution(i);
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videomode_depth = videomode_list->getVideoModeDepth(i);
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std::cout << videomode_res.Width << "x" << videomode_res.Height
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<< "x" << videomode_depth << std::endl;
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}
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std::cout << _("Active video mode (WxHxD):") << std::endl;
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videomode_res = videomode_list->getDesktopResolution();
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videomode_depth = videomode_list->getDesktopDepth();
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std::cout << videomode_res.Width << "x" << videomode_res.Height << "x"
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<< videomode_depth << std::endl;
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}
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nulldevice->drop();
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delete receiver;
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return videomode_list != NULL;
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}
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void RenderingEngine::setXorgClassHint(
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const video::SExposedVideoData &video_data, const std::string &name)
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{
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#ifdef XORG_USED
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if (video_data.OpenGLLinux.X11Display == NULL)
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return;
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XClassHint *classhint = XAllocClassHint();
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classhint->res_name = (char *)name.c_str();
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classhint->res_class = (char *)name.c_str();
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XSetClassHint((Display *)video_data.OpenGLLinux.X11Display,
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video_data.OpenGLLinux.X11Window, classhint);
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XFree(classhint);
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#endif
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}
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bool RenderingEngine::setWindowIcon()
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{
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#if defined(XORG_USED)
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#if RUN_IN_PLACE
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return setXorgWindowIconFromPath(
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porting::path_share + "/misc/" PROJECT_NAME "-xorg-icon-128.png");
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#else
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// We have semi-support for reading in-place data if we are
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// compiled with RUN_IN_PLACE. Don't break with this and
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// also try the path_share location.
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return setXorgWindowIconFromPath(
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ICON_DIR "/hicolor/128x128/apps/" PROJECT_NAME ".png") ||
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setXorgWindowIconFromPath(porting::path_share + "/misc/" PROJECT_NAME
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"-xorg-icon-128.png");
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#endif
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#elif defined(_WIN32)
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const video::SExposedVideoData exposedData = driver->getExposedVideoData();
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HWND hWnd; // Window handle
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switch (driver->getDriverType()) {
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case video::EDT_DIRECT3D8:
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hWnd = reinterpret_cast<HWND>(exposedData.D3D8.HWnd);
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break;
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case video::EDT_DIRECT3D9:
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hWnd = reinterpret_cast<HWND>(exposedData.D3D9.HWnd);
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break;
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case video::EDT_OPENGL:
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hWnd = reinterpret_cast<HWND>(exposedData.OpenGLWin32.HWnd);
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break;
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default:
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return false;
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}
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// Load the ICON from resource file
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const HICON hicon = LoadIcon(GetModuleHandle(NULL),
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MAKEINTRESOURCE(130) // The ID of the ICON defined in
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// winresource.rc
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);
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if (hicon) {
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SendMessage(hWnd, WM_SETICON, ICON_BIG, reinterpret_cast<LPARAM>(hicon));
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SendMessage(hWnd, WM_SETICON, ICON_SMALL,
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reinterpret_cast<LPARAM>(hicon));
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return true;
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}
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return false;
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#else
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return false;
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#endif
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}
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bool RenderingEngine::setXorgWindowIconFromPath(const std::string &icon_file)
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{
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#ifdef XORG_USED
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video::IImageLoader *image_loader = NULL;
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u32 cnt = driver->getImageLoaderCount();
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for (u32 i = 0; i < cnt; i++) {
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if (driver->getImageLoader(i)->isALoadableFileExtension(
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icon_file.c_str())) {
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image_loader = driver->getImageLoader(i);
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break;
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}
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}
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if (!image_loader) {
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warningstream << "Could not find image loader for file '" << icon_file
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<< "'" << std::endl;
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return false;
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}
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io::IReadFile *icon_f =
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m_device->getFileSystem()->createAndOpenFile(icon_file.c_str());
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if (!icon_f) {
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warningstream << "Could not load icon file '" << icon_file << "'"
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<< std::endl;
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return false;
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}
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video::IImage *img = image_loader->loadImage(icon_f);
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if (!img) {
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warningstream << "Could not load icon file '" << icon_file << "'"
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<< std::endl;
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icon_f->drop();
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return false;
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}
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u32 height = img->getDimension().Height;
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u32 width = img->getDimension().Width;
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size_t icon_buffer_len = 2 + height * width;
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long *icon_buffer = new long[icon_buffer_len];
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icon_buffer[0] = width;
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icon_buffer[1] = height;
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for (u32 x = 0; x < width; x++) {
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for (u32 y = 0; y < height; y++) {
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video::SColor col = img->getPixel(x, y);
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long pixel_val = 0;
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pixel_val |= (u8)col.getAlpha() << 24;
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pixel_val |= (u8)col.getRed() << 16;
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pixel_val |= (u8)col.getGreen() << 8;
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pixel_val |= (u8)col.getBlue();
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icon_buffer[2 + x + y * width] = pixel_val;
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}
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}
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img->drop();
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icon_f->drop();
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const video::SExposedVideoData &video_data = driver->getExposedVideoData();
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Display *x11_dpl = (Display *)video_data.OpenGLLinux.X11Display;
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if (x11_dpl == NULL) {
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warningstream << "Could not find x11 display for setting its icon."
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<< std::endl;
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delete[] icon_buffer;
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return false;
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}
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Window x11_win = (Window)video_data.OpenGLLinux.X11Window;
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Atom net_wm_icon = XInternAtom(x11_dpl, "_NET_WM_ICON", False);
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Atom cardinal = XInternAtom(x11_dpl, "CARDINAL", False);
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XChangeProperty(x11_dpl, x11_win, net_wm_icon, cardinal, 32, PropModeReplace,
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(const unsigned char *)icon_buffer, icon_buffer_len);
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delete[] icon_buffer;
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#endif
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return true;
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}
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/*
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Draws a screen with a single text on it.
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Text will be removed when the screen is drawn the next time.
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Additionally, a progressbar can be drawn when percent is set between 0 and 100.
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*/
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void RenderingEngine::_draw_load_screen(const std::wstring &text,
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gui::IGUIEnvironment *guienv, ITextureSource *tsrc, float dtime,
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int percent, bool clouds)
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{
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v2u32 screensize = RenderingEngine::get_instance()->getWindowSize();
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v2s32 textsize(g_fontengine->getTextWidth(text), g_fontengine->getLineHeight());
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v2s32 center(screensize.X / 2, screensize.Y / 2);
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core::rect<s32> textrect(center - textsize / 2, center + textsize / 2);
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gui::IGUIStaticText *guitext =
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guienv->addStaticText(text.c_str(), textrect, false, false);
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guitext->setTextAlignment(gui::EGUIA_CENTER, gui::EGUIA_UPPERLEFT);
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bool cloud_menu_background = clouds && g_settings->getBool("menu_clouds");
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if (cloud_menu_background) {
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g_menuclouds->step(dtime * 3);
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g_menuclouds->render();
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get_video_driver()->beginScene(
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true, true, video::SColor(255, 140, 186, 250));
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g_menucloudsmgr->drawAll();
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} else
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get_video_driver()->beginScene(true, true, video::SColor(255, 0, 0, 0));
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// draw progress bar
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if ((percent >= 0) && (percent <= 100)) {
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video::ITexture *progress_img = tsrc->getTexture("progress_bar.png");
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video::ITexture *progress_img_bg =
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tsrc->getTexture("progress_bar_bg.png");
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if (progress_img && progress_img_bg) {
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#ifndef __ANDROID__
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const core::dimension2d<u32> &img_size =
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progress_img_bg->getSize();
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u32 imgW = rangelim(img_size.Width, 200, 600);
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u32 imgH = rangelim(img_size.Height, 24, 72);
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#else
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const core::dimension2d<u32> img_size(256, 48);
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float imgRatio = (float)img_size.Height / img_size.Width;
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u32 imgW = screensize.X / 2.2f;
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u32 imgH = floor(imgW * imgRatio);
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#endif
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v2s32 img_pos((screensize.X - imgW) / 2,
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(screensize.Y - imgH) / 2);
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draw2DImageFilterScaled(get_video_driver(), progress_img_bg,
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core::rect<s32>(img_pos.X, img_pos.Y,
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img_pos.X + imgW,
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img_pos.Y + imgH),
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core::rect<s32>(0, 0, img_size.Width,
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img_size.Height),
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0, 0, true);
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draw2DImageFilterScaled(get_video_driver(), progress_img,
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core::rect<s32>(img_pos.X, img_pos.Y,
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img_pos.X + (percent * imgW) / 100,
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img_pos.Y + imgH),
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core::rect<s32>(0, 0,
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(percent * img_size.Width) / 100,
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img_size.Height),
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0, 0, true);
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}
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}
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guienv->drawAll();
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get_video_driver()->endScene();
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guitext->remove();
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}
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/*
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Draws the menu scene including (optional) cloud background.
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*/
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void RenderingEngine::_draw_menu_scene(gui::IGUIEnvironment *guienv,
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float dtime, bool clouds)
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{
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bool cloud_menu_background = clouds && g_settings->getBool("menu_clouds");
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if (cloud_menu_background) {
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g_menuclouds->step(dtime * 3);
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g_menuclouds->render();
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get_video_driver()->beginScene(
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true, true, video::SColor(255, 140, 186, 250));
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g_menucloudsmgr->drawAll();
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} else
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get_video_driver()->beginScene(true, true, video::SColor(255, 0, 0, 0));
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guienv->drawAll();
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get_video_driver()->endScene();
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}
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std::vector<core::vector3d<u32>> RenderingEngine::getSupportedVideoModes()
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{
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IrrlichtDevice *nulldevice = createDevice(video::EDT_NULL);
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sanity_check(nulldevice);
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std::vector<core::vector3d<u32>> mlist;
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video::IVideoModeList *modelist = nulldevice->getVideoModeList();
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s32 num_modes = modelist->getVideoModeCount();
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for (s32 i = 0; i != num_modes; i++) {
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core::dimension2d<u32> mode_res = modelist->getVideoModeResolution(i);
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u32 mode_depth = (u32)modelist->getVideoModeDepth(i);
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mlist.emplace_back(mode_res.Width, mode_res.Height, mode_depth);
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}
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nulldevice->drop();
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return mlist;
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}
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std::vector<irr::video::E_DRIVER_TYPE> RenderingEngine::getSupportedVideoDrivers()
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{
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std::vector<irr::video::E_DRIVER_TYPE> drivers;
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for (int i = 0; i != irr::video::EDT_COUNT; i++) {
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if (irr::IrrlichtDevice::isDriverSupported((irr::video::E_DRIVER_TYPE)i))
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drivers.push_back((irr::video::E_DRIVER_TYPE)i);
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}
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return drivers;
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}
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void RenderingEngine::_initialize(Client *client, Hud *hud)
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{
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const std::string &draw_mode = g_settings->get("3d_mode");
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core.reset(createRenderingCore(draw_mode, m_device, client, hud));
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core->initialize();
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}
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void RenderingEngine::_finalize()
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{
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core.reset();
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}
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void RenderingEngine::_draw_scene(video::SColor skycolor, bool show_hud,
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bool show_minimap, bool draw_wield_tool, bool draw_crosshair)
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{
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core->draw(skycolor, show_hud, show_minimap, draw_wield_tool, draw_crosshair);
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}
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const char *RenderingEngine::getVideoDriverName(irr::video::E_DRIVER_TYPE type)
|
|
{
|
|
static const char *driver_ids[] = {
|
|
"null",
|
|
"software",
|
|
"burningsvideo",
|
|
"direct3d8",
|
|
"direct3d9",
|
|
"opengl",
|
|
"ogles1",
|
|
"ogles2",
|
|
};
|
|
|
|
return driver_ids[type];
|
|
}
|
|
|
|
const char *RenderingEngine::getVideoDriverFriendlyName(irr::video::E_DRIVER_TYPE type)
|
|
{
|
|
static const char *driver_names[] = {
|
|
"NULL Driver",
|
|
"Software Renderer",
|
|
"Burning's Video",
|
|
"Direct3D 8",
|
|
"Direct3D 9",
|
|
"OpenGL",
|
|
"OpenGL ES1",
|
|
"OpenGL ES2",
|
|
};
|
|
|
|
return driver_names[type];
|
|
}
|
|
|
|
#ifndef __ANDROID__
|
|
#ifdef XORG_USED
|
|
|
|
static float calcDisplayDensity()
|
|
{
|
|
const char *current_display = getenv("DISPLAY");
|
|
|
|
if (current_display != NULL) {
|
|
Display *x11display = XOpenDisplay(current_display);
|
|
|
|
if (x11display != NULL) {
|
|
/* try x direct */
|
|
float dpi_height = floor(
|
|
DisplayHeight(x11display, 0) /
|
|
(DisplayHeightMM(x11display, 0) *
|
|
0.039370) +
|
|
0.5);
|
|
float dpi_width = floor(
|
|
DisplayWidth(x11display, 0) /
|
|
(DisplayWidthMM(x11display, 0) *
|
|
0.039370) +
|
|
0.5);
|
|
|
|
XCloseDisplay(x11display);
|
|
|
|
return std::max(dpi_height, dpi_width) / 96.0;
|
|
}
|
|
}
|
|
|
|
/* return manually specified dpi */
|
|
return g_settings->getFloat("screen_dpi") / 96.0;
|
|
}
|
|
|
|
float RenderingEngine::getDisplayDensity()
|
|
{
|
|
static float cached_display_density = calcDisplayDensity();
|
|
return cached_display_density;
|
|
}
|
|
|
|
#else // XORG_USED
|
|
float RenderingEngine::getDisplayDensity()
|
|
{
|
|
return g_settings->getFloat("screen_dpi") / 96.0;
|
|
}
|
|
#endif // XORG_USED
|
|
|
|
v2u32 RenderingEngine::getDisplaySize()
|
|
{
|
|
IrrlichtDevice *nulldevice = createDevice(video::EDT_NULL);
|
|
|
|
core::dimension2d<u32> deskres =
|
|
nulldevice->getVideoModeList()->getDesktopResolution();
|
|
nulldevice->drop();
|
|
|
|
return deskres;
|
|
}
|
|
|
|
#else // __ANDROID__
|
|
float RenderingEngine::getDisplayDensity()
|
|
{
|
|
return porting::getDisplayDensity();
|
|
}
|
|
|
|
v2u32 RenderingEngine::getDisplaySize()
|
|
{
|
|
return porting::getDisplaySize();
|
|
}
|
|
#endif // __ANDROID__
|