irrlicht/examples/15.LoadIrrFile/tutorial.html
cutealien 2ae2a551a6 Merging r5975 through r6036 from trunk to ogl-es branch.
GLES drivers adapted, but only did make compile-tests.


git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/branches/ogl-es@6038 dfc29bdd-3216-0410-991c-e03cc46cb475
2020-01-03 19:05:16 +00:00

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<title>Irrlicht Engine Tutorial</title>
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<td bgcolor="#666699" width="10"><b><a href="http://irrlicht.sourceforge.net" target="_blank"><img src="../../media/irrlichtlogo.jpg" width="88" height="31" border="0"></a></b></td>
<td bgcolor="#666699" width="100%"> <div align="center"><b><font color="#FFFFFF"></font></b></div>
<b><font color="#FFFFFF">Tutorial 15. Load .irr File</font></b></td>
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<p>Since version 1.1, Irrlicht is able to save and load the full scene
graph into an .irr file, an xml based format. There is also an editor
available to edit those files, named irrEdit on <a href="http://www.ambiera.com/irredit" target="_blank">http://www.ambiera.com/irredit</a>,
which can also be used as world and particle editor. This tutorial shows
how to use .irr files.</p>
<p align="center"><img src="../../media/015shot.jpg" width="256" height="200"><br>
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<font color="#FFFFFF"><b>Lets start!</b></font></td>
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<p>Lets start: Create an Irrlicht device and setup the window.</p>
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<td> <pre>#include <irrlicht.h>
#include <iostream>
using namespace irr;
#pragma comment(lib, "Irrlicht.lib")
int main()
{
// ask user for driver
video::E_DRIVER_TYPE driverType;
printf("Please select the driver you want for this example:\n"\
" (a) Direct3D 9.0c\n (b) Direct3D 8.1\n (c) OpenGL 1.5\n"\
" (d) Software Renderer\n (e) Apfelbaum Software Renderer\n"\
" (f) NullDevice\n (otherKey) exit\n\n");
char i;
std::cin >> i;
switch(i)
{
case 'a': driverType = video::EDT_DIRECT3D9;break;
case 'b': driverType = video::EDT_DIRECT3D8;break;
case 'c': driverType = video::EDT_OPENGL; break;
case 'd': driverType = video::EDT_SOFTWARE; break;
case 'e': driverType = video::EDT_BURNINGSVIDEO;break;
case 'f': driverType = video::EDT_NULL; break;
default: return 1;
}
// create device and exit if creation failed
IrrlichtDevice* device =
createDevice(driverType, core::dimension2d<s32>(640, 480));
if (device == 0)
return 1; // could not create selected driver.
device->setWindowCaption(L"Load .irr file example");
video::IVideoDriver* driver = device->getVideoDriver();
scene::ISceneManager* smgr = device->getSceneManager();
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<p>Now load our .irr file. .irr files can store the whole scene graph
including animators, materials and particle systems. And there is also
the possibility to store arbitrary user data for every scene node in
that file. To keep this example simple, we are simply loading the scene
here. See the documentation at ISceneManager::loadScene and ISceneManager::saveScene
for more information. So to load and display a complicated huge scene,
we only need a single call to loadScene().</p>
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<td><pre>// load the scene<br>smgr-&gt;loadScene(&quot;../../media/example.irr&quot;); </pre></td>
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<p>That was it already. Now add a camera and draw the scene.</p>
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<td> <pre> // add a user controlled camera
smgr->addCameraSceneNodeFPS();
// and draw everything.
while(device->run())
if (device->isWindowActive())
{
driver->beginScene(true, true, video::SColor(0,200,200,200));
smgr->drawAll();
driver->endScene();
}
device->drop();
return 0;
}
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