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
This commit is contained in:
cutealien
2020-01-03 19:05:16 +00:00
commit 2ae2a551a6
2007 changed files with 635880 additions and 0 deletions

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# Makefile for Irrlicht Examples
# It's usually sufficient to change just the target name and source file list
# and be sure that CXX is set to a valid compiler
# Name of the executable created (.exe will be added automatically if necessary)
Target := 02.Quake3Map
# List of source files, separated by spaces
Sources := main.cpp
# Path to Irrlicht directory, should contain include/ and lib/
IrrlichtHome := ../..
# Path for the executable. Note that Irrlicht.dll should usually also be there for win32 systems
BinPath = ../../bin/$(SYSTEM)
# general compiler settings (might need to be set when compiling the lib, too)
CPPFLAGS += -I$(IrrlichtHome)/include -I/usr/X11R6/include
ifndef NDEBUG
CXXFLAGS += -g -Wall
else
CXXFLAGS += -O3
endif
#default target is Linux
all: all_linux
# target specific settings
all_linux all_win32 static_win32: LDFLAGS += -L$(IrrlichtHome)/lib/$(SYSTEM) -lIrrlicht
all_linux: LDFLAGS += -L/usr/X11R6/lib$(LIBSELECT) -lGL -lEGL -lGLESv1_CM -lGLESv2 -lXxf86vm -lXext -lX11 -lXcursor
all_linux clean_linux: SYSTEM=Linux
all_win32 clean_win32 static_win32: SYSTEM=Win32-gcc
all_win32 clean_win32 static_win32: SUF=.exe
static_win32: CPPFLAGS += -D_IRR_STATIC_LIB_
all_win32: LDFLAGS += -lopengl32 -lEGL -lGLESv1_CM -lGLESv2 -lm
static_win32: LDFLAGS += -lgdi32 -lwinspool -lcomdlg32 -lole32 -loleaut32 -luuid -lodbc32 -lodbccp32 -lopengl32 -lEGL -lGLESv1_CM -lGLESv2
# name of the binary - only valid for targets which set SYSTEM
DESTPATH = $(BinPath)/$(Target)$(SUF)
all_linux all_win32 static_win32:
$(warning Building...)
$(CXX) $(CPPFLAGS) $(CXXFLAGS) $(Sources) -o $(DESTPATH) $(LDFLAGS)
clean: clean_linux clean_win32
$(warning Cleaning...)
clean_linux clean_win32:
@$(RM) $(DESTPATH)
.PHONY: all all_win32 static_win32 clean clean_linux clean_win32
#multilib handling
ifeq ($(HOSTTYPE), x86_64)
LIBSELECT=64
endif
#solaris real-time features
ifeq ($(HOSTTYPE), sun4)
LDFLAGS += -lrt
endif

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<Option pch_mode="0" />
<Option compiler="gcc" />
<Build>
<Target title="Linux">
<Option platforms="Unix;" />
<Option output="../../bin/Linux/QuakeMap" prefix_auto="0" extension_auto="0" />
<Option type="1" />
<Option compiler="gcc" />
<Compiler>
<Add option="-g" />
<Add option="-D_IRR_STATIC_LIB_" />
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<Add library="GL" />
<Add library="EGL" />
<Add library="X11" />
<Add library="GLESv1_CM" />
<Add library="GLESv2" />
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<Target title="Windows">
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<Option type="1" />
<Option compiler="gcc" />
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</Compiler>
<Linker>
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</Target>
</Build>
<VirtualTargets>
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<Add directory="../../include" />
</Compiler>
<Linker>
<Add library="Irrlicht" />
</Linker>
<Unit filename="main.cpp" />
<Extensions>
<code_completion />
<debugger />
<envvars />
</Extensions>
</Project>
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/** Example 002 Quake3Map
This tutorial shows how to load a Quake 3 map into the engine, create a
SceneNode for optimizing the speed of rendering, and how to create a user
controlled camera.
Please note that you should know the basics of the engine before starting this
tutorial. Just take a short look at the first tutorial, if you haven't done
this yet: http://irrlicht.sourceforge.net/docu/example001.html
Lets start like the HelloWorld example: We include the irrlicht header files
and an additional file to be able to ask the user for a driver type using the
console.
*/
#include <irrlicht.h>
#include "driverChoice.h"
#include "exampleHelper.h"
/*
As already written in the HelloWorld example, in the Irrlicht Engine everything
can be found in the namespace 'irr'. To get rid of the irr:: in front of the
name of every class, we tell the compiler that we use that namespace from now
on, and we will not have to write that 'irr::'. There are 5 other sub
namespaces 'core', 'scene', 'video', 'io' and 'gui'. Unlike in the HelloWorld
example, we do not call 'using namespace' for these 5 other namespaces, because
in this way you will see what can be found in which namespace. But if you like,
you can also include the namespaces like in the previous example.
*/
using namespace irr;
/*
Again, to be able to use the Irrlicht.DLL file, we need to link with the
Irrlicht.lib. We could set this option in the project settings, but to make it
easy, we use a pragma comment lib:
*/
#ifdef _MSC_VER
#pragma comment(lib, "Irrlicht.lib")
#endif
/*
OK, lets start. Again, we use the main() method as start, not the WinMain().
*/
int main()
{
/*
Like in the HelloWorld example, we create an IrrlichtDevice with
createDevice(). The difference now is that we ask the user to select
which video driver to use. The Software device might be
too slow to draw a huge Quake 3 map, but just for the fun of it, we make
this decision possible, too.
*/
// ask user for driver
video::E_DRIVER_TYPE driverType=driverChoiceConsole(true);
if (driverType==video::EDT_COUNT)
return 1;
// create device and exit if creation failed
IrrlichtDevice *device =
createDevice(driverType, core::dimension2d<u32>(640, 480));
if (device == 0)
return 1; // could not create selected driver.
/*
Get a pointer to the video driver and the SceneManager so that
we do not always have to call irr::IrrlichtDevice::getVideoDriver() and
irr::IrrlichtDevice::getSceneManager().
*/
video::IVideoDriver* driver = device->getVideoDriver();
scene::ISceneManager* smgr = device->getSceneManager();
/*
To display the Quake 3 map, we first need to load it. Quake 3 maps
are packed into .pk3 files which are nothing else than .zip files.
So we add the .pk3 file to our irr::io::IFileSystem. After it was added,
we can read from the files in that archive as if they were stored on disk.
*/
device->getFileSystem()->addFileArchive(getExampleMediaPath() + "map-20kdm2.pk3");
/*
Now we can load the mesh by calling irr::scene::ISceneManager::getMesh().
We get a pointer returned to an irr::scene::IAnimatedMesh. Quake 3 maps are
not really animated, they are only a chunk of static geometry with
some materials attached. Hence the IAnimatedMesh consists of only one
frame, so we get the "first frame" of the "animation", which is our
quake level and create an Octree scene node with it, using
irr::scene::ISceneManager::addOctreeSceneNode().
The Octree optimizes the scene a little bit, trying to draw only geometry
which is currently visible. An alternative to the Octree would be a
irr::scene::IMeshSceneNode, which would always draw the complete
geometry of the mesh, without optimization. Try it: Use
irr::scene::ISceneManager::addMeshSceneNode() instead of
addOctreeSceneNode() and compare the primitives drawn by the video
driver. (There is a irr::video::IVideoDriver::getPrimitiveCountDrawn()
method in the irr::video::IVideoDriver class). Note that this
optimization with the Octree is only useful when drawing huge meshes
consisting of lots of geometry and if users can't see the whole scene at
once.
*/
scene::IAnimatedMesh* mesh = smgr->getMesh("20kdm2.bsp");
scene::ISceneNode* node = 0;
if (mesh)
node = smgr->addOctreeSceneNode(mesh->getMesh(0), 0, -1, 1024);
// node = smgr->addMeshSceneNode(mesh->getMesh(0));
/*
Because the level was not modeled around the origin (0,0,0), we
translate the whole level a little bit. This is done on
irr::scene::ISceneNode level using the methods
irr::scene::ISceneNode::setPosition() (in this case),
irr::scene::ISceneNode::setRotation(), and
irr::scene::ISceneNode::setScale().
*/
if (node)
node->setPosition(core::vector3df(-1300,-144,-1249));
/*
Now we need a camera to look at the Quake 3 map.
We want to create a user controlled camera. There are some
cameras available in the Irrlicht engine. For example the
MayaCamera which can be controlled like the camera in Maya:
Rotate with left mouse button pressed, Zoom with both buttons pressed,
translate with right mouse button pressed. This could be created with
irr::scene::ISceneManager::addCameraSceneNodeMaya(). But for this
example, we want to create a camera which behaves like the ones in
first person shooter games (FPS) and hence use
irr::scene::ISceneManager::addCameraSceneNodeFPS().
*/
smgr->addCameraSceneNodeFPS();
/*
The mouse cursor needs not be visible, so we hide it via the
irr::IrrlichtDevice::ICursorControl.
*/
device->getCursorControl()->setVisible(false);
/*
Everything is set up, so lets draw it. We also write the current
frames per second and the primitives drawn into the caption of the
window. The test for irr::IrrlichtDevice::isWindowActive() is optional,
but prevents the engine to grab the mouse cursor after task switching
when other programs are active. The call to irr::IrrlichtDevice::yield()
will avoid the busy loop to eat up all CPU cycles when the window is not
active.
*/
int lastFPS = -1;
while(device->run())
{
if (device->isWindowActive())
{
driver->beginScene(video::ECBF_COLOR | video::ECBF_DEPTH, video::SColor(255,200,200,200));
smgr->drawAll();
driver->endScene();
int fps = driver->getFPS();
if (lastFPS != fps)
{
core::stringw str = L"Irrlicht Engine - Quake 3 Map example [";
str += driver->getName();
str += "] FPS:";
str += fps;
device->setWindowCaption(str.c_str());
lastFPS = fps;
}
}
else
device->yield();
}
/*
In the end, delete the Irrlicht device.
*/
device->drop();
return 0;
}
/*
That's it. Compile and play around with the program.
**/

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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 2.Quake3Map</font></b></td>
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<p>This Tutorial shows how to load a Quake 3 map into the engine, create
a SceneNode for optimizing the speed of rendering and how to create
a user controlled camera. Please note that you should know the basics
of the engine before starting this tutorial, just take a short look
at the first tutorial, 1.HelloWorld, if you haven't done this yet.<br>
The result of this example will look like this:</p>
<p align="center"><img src="../../media/002shot.jpg" width="259" height="202"><br>
</p>
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<td bgcolor="#666699"> <div align="center"><b><font color="#000000"></font></b></div>
<font color="#FFFFFF"><b>Lets start!</b></font></td>
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<p>Lets start like the HelloWorld example: We include the irrlicht header
files and an additional file to be able<br>
to ask the user for a driver type using the console.</p>
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<td> <pre>#include &lt;irrlicht.h&gt;<br>#include &lt;iostream&gt;<br></pre></td>
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<p>As already written in the HelloWorld example, in the Irrlicht Engine,
everything can be found in the namespace 'irr'. To get rid of the irr::
in front of the name of every class, we tell the compiler that we use
that namespace from now on, and we will not have to write that 'irr::'.<br>
There are 5 other sub namespaces 'core', 'scene', 'video', 'io' and
'gui'. Unlike in the HelloWorld example, we do not a 'using namespace'
for these 5 other namespaces because in this way you will see what can
be found in which namespace. But if you like, you can also include the
namespaces like in the previous example. Code just like you want to.</p>
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<td> <pre>using namespace irr;</pre> </td>
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</table>
<p>Again, to be able to use the Irrlicht.DLL file, we need to link with
the Irrlicht.lib. We could set this option in the project settings,
but to make it easy, we use a pragma comment lib:</p>
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<td> <pre>#pragma comment(lib, &quot;Irrlicht.lib&quot;)</pre> </td>
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</table>
</div>
<p>Ok, lets start. Again, we use the main() method as start, not the WinMain(),
because its shorter to write.</p>
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<td> <pre>int main()<br>{</pre> </td>
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</table>
<p> Like in the HelloWorld example, we create an IrrlichtDevice with createDevice().
The difference now is that we ask the user to select which hardware accelerated
driver to use. The Software device would be too slow to draw a huge Quake
3 map, but just for the fun of it, we make this decision possible too.</p>
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<tr>
<td> <pre>// ask user for driver<br><br>video::E_DRIVER_TYPE driverType = video::EDT_DIRECT3D9;<br><br>printf(&quot;Please select the driver you want for this example:\n&quot;\<br> &quot; (a) Direct3D 9.0c\n (b) Direct3D 8.1\n (c) OpenGL 1.5\n&quot;\<br> &quot; (d) Software Renderer\n (e) Apfelbaum Software Renderer\n&quot;\<br> &quot; (f) NullDevice\n (otherKey) exit\n\n&quot;);<br>
char i;<br>std::cin &gt;&gt; i;<br><br>switch(i)<br>{<br> case 'a': driverType = video::EDT_DIRECT3D9;break;<br> case 'b': driverType = video::EDT_DIRECT3D8;break;<br> case 'c': driverType = video::EDT_OPENGL; break;<br> case 'd': driverType = video::EDT_SOFTWARE; break;<br> case 'e': driverType = video::EDT_BURNINGSVIDEO;break;<br> case 'f': driverType = video::EDT_NULL; break;<br> default: return 1;<br>} <br><br>// create device and exit if creation failed<br><br>IrrlichtDevice *device =<br> createDevice(driverType, core::dimension2d&lt;s32&gt;(640, 480));<br><br>if (device == 0)<br> return 1;</pre></td>
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</table>
<p>Get a pointer to the video driver and the SceneManager so that we do
not always have to write device-&gt;getVideoDriver() and device-&gt;getSceneManager().</p>
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<td> <pre>video::IVideoDriver* driver = device-&gt;getVideoDriver();
scene::ISceneManager* smgr = device-&gt;getSceneManager();</pre> </td>
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</table>
<p>To display the Quake 3 map, we first need to load it. Quake 3 maps are
packed into .pk3 files wich are nothing other than .zip files. So we add
the .pk3 file to our FileSystem. After it was added, we are able to read
from the files in that archive as they would directly be stored on disk.</p>
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<td> <pre>device-&gt;getFileSystem()-&gt;addZipFileArchive(&quot;../../media/map-20kdm2.pk3&quot;);</pre> </td>
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</table>
<p>Now we can load the mesh by calling getMesh(). We get a pointer returned
to a IAnimatedMesh. As you know, Quake 3 maps are not really animated,
they are only a huge chunk of static geometry with some materials attached.
Hence the IAnimated mesh consists of only one frame,<br>
so we get the &quot;first frame&quot; of the &quot;animation&quot;, which
is our quake level and create an OctTree scene node with it, using addOctTreeSceneNode().
The OctTree optimizes the scene a little bit, trying to draw only geometry
which is currently visible. An alternative to the OctTree would be a AnimatedMeshSceneNode,
which would draw always the complete geometry of the mesh, without optimization.
Try it out: Write addAnimatedMeshSceneNode instead of addOctTreeSceneNode
and compare the primitives drawed by the video driver. (There is a getPrimitiveCountDrawed()
method in the IVideoDriver class). Note that this optimization with the
Octree is only useful when drawing huge meshes consiting of lots of geometry.</p>
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<td> <pre>scene::IAnimatedMesh* mesh = smgr-&gt;getMesh(&quot;20kdm2.bsp&quot;);<br>scene::ISceneNode* node = 0;
if (mesh)<br> node = smgr-&gt;addOctTreeSceneNode(mesh-&gt;getMesh(0));</pre> </td>
</tr>
</table>
<p>Because the level was modelled not around the origin (0,0,0), we translate
the whole level a little bit.</p>
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<td> <pre>if (node)<br> node-&gt;setPosition(core::vector3df(-1300,-144,-1249));</pre> </td>
</tr>
</table>
<p>Now we only need a Camera to look at the Quake 3 map. And we want to
create a user controlled camera. There are some different cameras available
in the Irrlicht engine. For example the Maya Camera which can be controlled
compareable to the camera in Maya: Rotate with left mouse button pressed,
Zoom with both buttons pressed,<br>
translate with right mouse button pressed. This could be created with
addCameraSceneNodeMaya(). But for this example, we want to create a camera
which behaves like the ones in first person shooter games (FPS):</p>
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<td> <pre>smgr-&gt;addCameraSceneNodeFPS();</pre> </td>
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</table>
<p>The mouse cursor needs not to be visible, so we make it invisible. </p>
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<td> <pre>device-&gt;getCursorControl()-&gt;setVisible(false);</pre> </td>
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</table>
<p>We have done everything, so lets draw it. We also write the current frames
per second and the drawn primitives to the caption of the window. The
'if (device-&gt;isWindowActive())' line is optional, but prevents the
engine render to set the position of the mouse cursor after task switching
when other program are active.</p>
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<td> <pre>int lastFPS = -1;</pre>
<pre>while(device-&gt;run())
{
driver-&gt;beginScene(true, true, video::SColor(0,200,200,200));
smgr-&gt;drawAll();
driver-&gt;endScene();</pre>
<pre> int fps = driver-&gt;getFPS();</pre>
<pre> if (lastFPS != fps)
{
core::stringw str = L&quot;Irrlicht Engine - Quake 3 Map example [&quot;;<br> str += driver-&gt;getName();<br> str += &quot;] FPS:&quot;;<br> str += fps;<br> device-&gt;setWindowCaption(str.c_str());<br> lastFPS = fps;
}
}</pre> </td>
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<p>In the end, delete the Irrlicht device.</p>
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<td> <pre> device-&gt;drop();<br> return 0;<br>}</pre> </td>
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<p>That's it. Compile and play around with the program. </p></td>
</tr>
</table>
<p>&nbsp;</p>
<p>&nbsp;</p>
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