/usr/include/OGRE/OgreGpuProgramUsage.h is in libogre-1.9-dev 1.9.0+dfsg1-7+b4.
This file is owned by root:root, with mode 0o644.
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-----------------------------------------------------------------------------
This source file is part of OGRE
(Object-oriented Graphics Rendering Engine)
For the latest info, see http://www.ogre3d.org/
Copyright (c) 2000-2013 Torus Knot Software Ltd
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
-----------------------------------------------------------------------------
*/
#ifndef __GpuProgramUsage_H__
#define __GpuProgramUsage_H__
#include "OgrePrerequisites.h"
#include "OgreGpuProgram.h"
#include "OgreHeaderPrefix.h"
namespace Ogre
{
class Pass;
/** \addtogroup Core
* @{
*/
/** \addtogroup Materials
* @{
*/
/** This class makes the usage of a vertex and fragment programs (low-level or high-level),
with a given set of parameters, explicit.
@remarks
Using a vertex or fragment program can get fairly complex; besides the fairly rudimentary
process of binding a program to the GPU for rendering, managing usage has few
complications, such as:
<ul>
<li>Programs can be high level (e.g. Cg, RenderMonkey) or low level (assembler). Using
either should be relatively seamless, although high-level programs give you the advantage
of being able to use named parameters, instead of just indexed registers</li>
<li>Programs and parameters can be shared between multiple usages, in order to save
memory</li>
<li>When you define a user of a program, such as a material, you often want to be able to
set up the definition but not load / compile / assemble the program at that stage, because
it is not needed just yet. The program should be loaded when it is first needed, or
earlier if specifically requested. The program may not be defined at this time, you
may want to have scripts that can set up the definitions independent of the order in which
those scripts are loaded.</li>
</ul>
This class packages up those details so you don't have to worry about them. For example,
this class lets you define a high-level program and set up the parameters for it, without
having loaded the program (which you normally could not do). When the program is loaded and
compiled, this class will then validate the parameters you supplied earlier and turn them
into runtime parameters.
@par
Just incase it wasn't clear from the above, this class provides linkage to both
GpuProgram and HighLevelGpuProgram, despite its name.
*/
class _OgreExport GpuProgramUsage : public Resource::Listener, public PassAlloc
{
protected:
GpuProgramType mType;
Pass* mParent;
/// The program link
GpuProgramPtr mProgram;
/// Program parameters
GpuProgramParametersSharedPtr mParameters;
/// Whether to recreate parameters next load
bool mRecreateParams;
void recreateParameters();
public:
/** Default constructor.
@param gptype The type of program to link to
*/
GpuProgramUsage(GpuProgramType gptype, Pass* parent);
/** Copy constructor */
GpuProgramUsage(const GpuProgramUsage& rhs, Pass* newparent);
~GpuProgramUsage();
/** Gets the type of program we're trying to link to. */
GpuProgramType getType(void) const { return mType; }
/** Sets the name of the program to use.
@param name The name of the program to use
@param resetParams
If true, this will create a fresh set of parameters from the
new program being linked, so if you had previously set parameters
you will have to set them again. If you set this to false, you must
be absolutely sure that the parameters match perfectly, and in the
case of named parameters refers to the indexes underlying them,
not just the names.
*/
void setProgramName(const String& name, bool resetParams = true);
/** Sets the program to use.
@remarks
Note that this will create a fresh set of parameters from the
new program being linked, so if you had previously set parameters
you will have to set them again.
*/
void setProgram(GpuProgramPtr& prog);
/** Gets the program being used. */
const GpuProgramPtr& getProgram() const { return mProgram; }
/** Gets the program being used. */
const String& getProgramName(void) const { return mProgram->getName(); }
/** Sets the program parameters that should be used; because parameters can be
shared between multiple usages for efficiency, this method is here for you
to register externally created parameter objects. Otherwise, the parameters
will be created for you when a program is linked.
*/
void setParameters(GpuProgramParametersSharedPtr params);
/** Gets the parameters being used here.
*/
GpuProgramParametersSharedPtr getParameters(void);
/// Load this usage (and ensure program is loaded)
void _load(void);
/// Unload this usage
void _unload(void);
size_t calculateSize(void) const;
// Resource Listener
void unloadingComplete(Resource* prog);
void loadingComplete(Resource* prog);
};
/** @} */
/** @} */
}
#include "OgreHeaderSuffix.h"
#endif
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