mirror of
https://github.com/TorqueGameEngines/Torque3D.git
synced 2026-01-20 12:44:46 +00:00
354 lines
12 KiB
C++
354 lines
12 KiB
C++
//-----------------------------------------------------------------------------
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// Copyright (c) 2012 GarageGames, LLC
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to
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// deal in the Software without restriction, including without limitation the
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// rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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// sell copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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// IN THE SOFTWARE.
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//-----------------------------------------------------------------------------
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#include "console/console.h"
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#include "gfx/gl/tGL/tGL.h"
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#include "math/mRect.h"
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#include "gfx/gl/gfxGLTextureObject.h"
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#include "gfx/gfxDevice.h"
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#include "gfx/gl/gfxGLEnumTranslate.h"
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#include "gfx/gl/gfxGLTextureManager.h"
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#include "gfx/gl/gfxGLUtils.h"
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#include "gfx/gfxCardProfile.h"
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GFXGLTextureObject::GFXGLTextureObject(GFXDevice * aDevice, GFXTextureProfile *profile) :
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GFXTextureObject(aDevice, profile),
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mBinding(GL_TEXTURE_2D),
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mBytesPerTexel(4),
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mLockedRectRect(0, 0, 0, 0),
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mGLDevice(static_cast<GFXGLDevice*>(mDevice)),
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mZombieCache(NULL),
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mNeedInitSamplerState(true),
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mFrameAllocatorMark(0),
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mFrameAllocatorPtr(NULL)
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{
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AssertFatal(dynamic_cast<GFXGLDevice*>(mDevice), "GFXGLTextureObject::GFXGLTextureObject - Invalid device type, expected GFXGLDevice!");
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glGenTextures(1, &mHandle);
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glGenBuffers(1, &mBuffer);
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}
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GFXGLTextureObject::~GFXGLTextureObject()
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{
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glDeleteTextures(1, &mHandle);
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glDeleteBuffers(1, &mBuffer);
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delete[] mZombieCache;
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kill();
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}
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GFXLockedRect* GFXGLTextureObject::lock(U32 mipLevel, RectI *inRect)
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{
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AssertFatal(mBinding != GL_TEXTURE_3D, "GFXGLTextureObject::lock - We don't support locking 3D textures yet");
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U32 width = mTextureSize.x >> mipLevel;
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U32 height = mTextureSize.y >> mipLevel;
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if(inRect)
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{
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if((inRect->point.x + inRect->extent.x > width) || (inRect->point.y + inRect->extent.y > height))
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AssertFatal(false, "GFXGLTextureObject::lock - Rectangle too big!");
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mLockedRectRect = *inRect;
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}
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else
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{
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mLockedRectRect = RectI(0, 0, width, height);
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}
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mLockedRect.pitch = mLockedRectRect.extent.x * mBytesPerTexel;
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// CodeReview [ags 12/19/07] This one texel boundary is necessary to keep the clipmap code from crashing. Figure out why.
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U32 size = (mLockedRectRect.extent.x + 1) * (mLockedRectRect.extent.y + 1) * mBytesPerTexel;
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AssertFatal(!mFrameAllocatorMark && !mFrameAllocatorPtr, "");
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mFrameAllocatorMark = FrameAllocator::getWaterMark();
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mFrameAllocatorPtr = (U8*)FrameAllocator::alloc( size );
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mLockedRect.bits = mFrameAllocatorPtr;
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#if TORQUE_DEBUG
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mFrameAllocatorMarkGuard = FrameAllocator::getWaterMark();
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#endif
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if( !mLockedRect.bits )
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return NULL;
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return &mLockedRect;
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}
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void GFXGLTextureObject::unlock(U32 mipLevel)
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{
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if(!mLockedRect.bits)
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return;
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// I know this is in unlock, but in GL we actually do our submission in unlock.
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PROFILE_SCOPE(GFXGLTextureObject_lockRT);
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PRESERVE_TEXTURE(mBinding);
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glBindTexture(mBinding, mHandle);
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glBindBuffer(GL_PIXEL_UNPACK_BUFFER_ARB, mBuffer);
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glBufferData(GL_PIXEL_UNPACK_BUFFER_ARB, (mLockedRectRect.extent.x + 1) * (mLockedRectRect.extent.y + 1) * mBytesPerTexel, mFrameAllocatorPtr, GL_STREAM_DRAW);
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if(mBinding == GL_TEXTURE_2D)
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glTexSubImage2D(mBinding, mipLevel, mLockedRectRect.point.x, mLockedRectRect.point.y,
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mLockedRectRect.extent.x, mLockedRectRect.extent.y, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], NULL);
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else if(mBinding == GL_TEXTURE_1D)
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glTexSubImage1D(mBinding, mipLevel, (mLockedRectRect.point.x > 1 ? mLockedRectRect.point.x : mLockedRectRect.point.y),
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(mLockedRectRect.extent.x > 1 ? mLockedRectRect.extent.x : mLockedRectRect.extent.y), GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], NULL);
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glBindBuffer(GL_PIXEL_UNPACK_BUFFER_ARB, 0);
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mLockedRect.bits = NULL;
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#if TORQUE_DEBUG
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AssertFatal(mFrameAllocatorMarkGuard == FrameAllocator::getWaterMark(), "");
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#endif
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FrameAllocator::setWaterMark(mFrameAllocatorMark);
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mFrameAllocatorMark = 0;
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mFrameAllocatorPtr = NULL;
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}
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void GFXGLTextureObject::release()
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{
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glDeleteTextures(1, &mHandle);
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glDeleteBuffers(1, &mBuffer);
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mHandle = 0;
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mBuffer = 0;
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}
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void GFXGLTextureObject::reInit()
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{
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AssertFatal(!mHandle && !mBuffer,"Must release before reInit");
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glGenTextures(1, &mHandle);
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glGenBuffers(1, &mBuffer);
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}
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bool GFXGLTextureObject::copyToBmp(GBitmap * bmp)
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{
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PROFILE_SCOPE(GFXGLTextureObject_copyToBmp);
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if (!bmp)
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return false;
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// check format limitations
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// at the moment we only support RGBA for the source (other 4 byte formats should
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// be easy to add though)
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AssertFatal(mFormat == GFXFormatR8G8B8A8, "GFXGLTextureObject::copyToBmp - invalid format");
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AssertFatal(bmp->getFormat() == GFXFormatR8G8B8A8 || bmp->getFormat() == GFXFormatR8G8B8, "GFXGLTextureObject::copyToBmp - invalid format");
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if(mFormat != GFXFormatR8G8B8A8)
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return false;
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if(bmp->getFormat() != GFXFormatR8G8B8A8 && bmp->getFormat() != GFXFormatR8G8B8)
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return false;
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AssertFatal(bmp->getWidth() == getWidth(), "GFXGLTextureObject::copyToBmp - invalid size");
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AssertFatal(bmp->getHeight() == getHeight(), "GFXGLTextureObject::copyToBmp - invalid size");
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PROFILE_SCOPE(GFXGLTextureObject_copyToBmp);
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PRESERVE_TEXTURE(mBinding);
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glBindTexture(mBinding, mHandle);
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U8 dstBytesPerPixel = GFXFormat_getByteSize( bmp->getFormat() );
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U8 srcBytesPerPixel = GFXFormat_getByteSize( mFormat );
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if(dstBytesPerPixel == srcBytesPerPixel)
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{
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glGetTexImage(mBinding, 0, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], bmp->getWritableBits());
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return true;
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}
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FrameAllocatorMarker mem;
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U32 srcPixelCount = mTextureSize.x * mTextureSize.y;
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U8 *dest = bmp->getWritableBits();
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U8 *orig = (U8*)mem.alloc(srcPixelCount * srcBytesPerPixel);
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glGetTexImage(mBinding, 0, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], orig);
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PROFILE_START(GFXGLTextureObject_copyToBmp_pixCopy);
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for(int i = 0; i < srcPixelCount; ++i)
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{
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dest[0] = orig[0];
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dest[1] = orig[1];
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dest[2] = orig[2];
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if(dstBytesPerPixel == 4)
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dest[3] = orig[3];
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orig += srcBytesPerPixel;
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dest += dstBytesPerPixel;
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}
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PROFILE_END();
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return true;
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}
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void GFXGLTextureObject::initSamplerState(const GFXSamplerStateDesc &ssd)
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{
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glTexParameteri(mBinding, GL_TEXTURE_MIN_FILTER, minificationFilter(ssd.minFilter, ssd.mipFilter, mMipLevels));
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glTexParameteri(mBinding, GL_TEXTURE_MAG_FILTER, GFXGLTextureFilter[ssd.magFilter]);
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_S, !mIsNPoT2 ? GFXGLTextureAddress[ssd.addressModeU] : GL_CLAMP_TO_EDGE);
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_T, !mIsNPoT2 ? GFXGLTextureAddress[ssd.addressModeV] : GL_CLAMP_TO_EDGE);
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if(mBinding == GL_TEXTURE_3D)
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_R, GFXGLTextureAddress[ssd.addressModeW]);
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if(static_cast< GFXGLDevice* >( GFX )->supportsAnisotropic() )
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glTexParameterf(mBinding, GL_TEXTURE_MAX_ANISOTROPY_EXT, ssd.maxAnisotropy);
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mNeedInitSamplerState = false;
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mSampler = ssd;
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}
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void GFXGLTextureObject::bind(U32 textureUnit)
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{
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glActiveTexture(GL_TEXTURE0 + textureUnit);
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glBindTexture(mBinding, mHandle);
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GFXGL->getOpenglCache()->setCacheBindedTex(textureUnit, mBinding, mHandle);
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if( gglHasExtension(ARB_sampler_objects) )
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return;
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GFXGLStateBlockRef sb = mGLDevice->getCurrentStateBlock();
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AssertFatal(sb, "GFXGLTextureObject::bind - No active stateblock!");
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if (!sb)
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return;
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const GFXSamplerStateDesc ssd = sb->getDesc().samplers[textureUnit];
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if(mNeedInitSamplerState)
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{
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initSamplerState(ssd);
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return;
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}
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if(mSampler.minFilter != ssd.minFilter || mSampler.mipFilter != ssd.mipFilter)
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glTexParameteri(mBinding, GL_TEXTURE_MIN_FILTER, minificationFilter(ssd.minFilter, ssd.mipFilter, mMipLevels));
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if(mSampler.magFilter != ssd.magFilter)
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glTexParameteri(mBinding, GL_TEXTURE_MAG_FILTER, GFXGLTextureFilter[ssd.magFilter]);
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if(mSampler.addressModeU != ssd.addressModeU)
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_S, !mIsNPoT2 ? GFXGLTextureAddress[ssd.addressModeU] : GL_CLAMP_TO_EDGE);
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if(mSampler.addressModeV != ssd.addressModeV)
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_T, !mIsNPoT2 ? GFXGLTextureAddress[ssd.addressModeV] : GL_CLAMP_TO_EDGE);
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if(mBinding == GL_TEXTURE_3D && mSampler.addressModeW != ssd.addressModeW )
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glTexParameteri(mBinding, GL_TEXTURE_WRAP_R, GFXGLTextureAddress[ssd.addressModeW]);
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if(mSampler.maxAnisotropy != ssd.maxAnisotropy && static_cast< GFXGLDevice* >( GFX )->supportsAnisotropic() )
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glTexParameterf(mBinding, GL_TEXTURE_MAX_ANISOTROPY_EXT, ssd.maxAnisotropy);
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mSampler = ssd;
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}
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U8* GFXGLTextureObject::getTextureData( U32 mip )
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{
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AssertFatal( mMipLevels, "");
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mip = (mip < mMipLevels) ? mip : 0;
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const U32 dataSize = isCompressedFormat(mFormat)
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? getCompressedSurfaceSize( mFormat, mTextureSize.x, mTextureSize.y, mip )
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: (mTextureSize.x >> mip) * (mTextureSize.y >> mip) * mBytesPerTexel;
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U8* data = new U8[dataSize];
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PRESERVE_TEXTURE(mBinding);
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glBindTexture(mBinding, mHandle);
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if( isCompressedFormat(mFormat) )
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glGetCompressedTexImage( mBinding, mip, data );
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else
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glGetTexImage(mBinding, mip, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], data);
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return data;
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}
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void GFXGLTextureObject::copyIntoCache()
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{
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PRESERVE_TEXTURE(mBinding);
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glBindTexture(mBinding, mHandle);
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U32 cacheSize = mTextureSize.x * mTextureSize.y;
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if(mBinding == GL_TEXTURE_3D)
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cacheSize *= mTextureSize.z;
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cacheSize *= mBytesPerTexel;
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mZombieCache = new U8[cacheSize];
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glGetTexImage(mBinding, 0, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], mZombieCache);
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}
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void GFXGLTextureObject::reloadFromCache()
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{
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if(!mZombieCache)
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return;
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if(mBinding == GL_TEXTURE_3D)
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{
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static_cast<GFXGLTextureManager*>(TEXMGR)->_loadTexture(this, mZombieCache);
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delete[] mZombieCache;
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mZombieCache = NULL;
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return;
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}
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PRESERVE_TEXTURE(mBinding);
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glBindTexture(mBinding, mHandle);
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if(mBinding == GL_TEXTURE_2D)
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glTexSubImage2D(mBinding, 0, 0, 0, mTextureSize.x, mTextureSize.y, GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], mZombieCache);
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else if(mBinding == GL_TEXTURE_1D)
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glTexSubImage1D(mBinding, 0, 0, (mTextureSize.x > 1 ? mTextureSize.x : mTextureSize.y), GFXGLTextureFormat[mFormat], GFXGLTextureType[mFormat], mZombieCache);
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if(GFX->getCardProfiler()->queryProfile("GL::Workaround::needsExplicitGenerateMipmap") && mMipLevels != 1)
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glGenerateMipmapEXT(mBinding);
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delete[] mZombieCache;
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mZombieCache = NULL;
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mIsZombie = false;
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}
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void GFXGLTextureObject::zombify()
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{
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if(mIsZombie)
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return;
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mIsZombie = true;
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if(!mProfile->doStoreBitmap() && !mProfile->isRenderTarget() && !mProfile->isDynamic() && !mProfile->isZTarget())
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copyIntoCache();
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release();
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}
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void GFXGLTextureObject::resurrect()
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{
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if(!mIsZombie)
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return;
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glGenTextures(1, &mHandle);
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glGenBuffers(1, &mBuffer);
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}
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F32 GFXGLTextureObject::getMaxUCoord() const
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{
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return mBinding == GL_TEXTURE_2D ? 1.0f : (F32)getWidth();
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}
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F32 GFXGLTextureObject::getMaxVCoord() const
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{
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return mBinding == GL_TEXTURE_2D ? 1.0f : (F32)getHeight();
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}
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const String GFXGLTextureObject::describeSelf() const
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{
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String ret = Parent::describeSelf();
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ret += String::ToString(" GL Handle: %i", mHandle);
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return ret;
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}
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