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https://port.numenaute.org/aleajactaest/khanat-opennel-code.git
synced 2024-11-11 09:49:05 +00:00
Create stereo render target, see #43
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5 changed files with 180 additions and 10 deletions
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@ -92,7 +92,7 @@ public:
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virtual ~IStereoDisplay();
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/// Sets driver and generates necessary render targets
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virtual void setDriver(NL3D::UDriver &driver) = 0;
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virtual void setDriver(NL3D::UDriver *driver) = 0;
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/// Gets the required screen resolution for this device
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virtual void getScreenResolution(uint &width, uint &height) = 0;
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@ -124,7 +124,7 @@ public:
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/// Returns non-NULL if a new render target was set
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virtual UTexture *beginRenderTarget(bool set) = 0;
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/// Returns true if a render target was fully drawn
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virtual bool endRenderTarget(bool render) = 0;
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virtual bool endRenderTarget(bool unset) = 0;
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static const char *getLibraryName(CStereoDeviceInfo::TStereoDeviceLibrary library);
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static void listDevices(std::vector<CStereoDeviceInfo> &devicesOut);
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@ -49,14 +49,18 @@
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// NeL includes
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#include <nel/misc/smart_ptr.h>
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#include <nel/misc/geom_ext.h>
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// Project includes
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#include <nel/3d/stereo_hmd.h>
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#include <nel/3d/frustum.h>
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#include <nel/3d/viewport.h>
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#include <nel/3d/u_material.h>
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namespace NL3D {
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class ITexture;
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class CTextureUser;
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class CStereoOVRDevicePtr;
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class CStereoOVRDeviceHandle;
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@ -75,7 +79,7 @@ public:
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virtual ~CStereoOVR();
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/// Sets driver and generates necessary render targets
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virtual void setDriver(NL3D::UDriver &driver);
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virtual void setDriver(NL3D::UDriver *driver);
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/// Gets the required screen resolution for this device
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virtual void getScreenResolution(uint &width, uint &height);
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@ -107,7 +111,7 @@ public:
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/// Returns non-NULL if a new render target was set, always NULL if not using render targets
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virtual UTexture *beginRenderTarget(bool set);
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/// Returns true if a render target was fully drawn, always false if not using render targets
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virtual bool endRenderTarget(bool render);
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virtual bool endRenderTarget(bool unset);
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/// Get the HMD orientation
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@ -138,6 +142,11 @@ private:
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CMatrix m_CameraMatrix[NL_STEREO_MAX_USER_CAMERAS];
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mutable bool m_OrientationCached;
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mutable NLMISC::CQuat m_OrientationCache;
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UDriver *m_Driver;
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NLMISC::CSmartPtr<NL3D::ITexture> m_BarrelTex;
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NL3D::CTextureUser *m_BarrelTexU;
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NL3D::UMaterial m_BarrelMat;
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NLMISC::CQuadUV m_BarrelQuad;
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}; /* class CStereoOVR */
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@ -692,6 +692,7 @@ SOURCE_GROUP(Stereo FILES
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stereo_hmd.cpp
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../../include/nel/3d/stereo_hmd.h
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stereo_ovr.cpp
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stereo_ovr_fp.cpp
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../../include/nel/3d/stereo_ovr.h)
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NL_TARGET_LIB(nel3d ${HEADERS} ${SRC})
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@ -53,6 +53,12 @@
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// NeL includes
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// #include <nel/misc/debug.h>
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#include <nel/3d/u_camera.h>
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#include <nel/3d/u_driver.h>
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#include <nel/3d/material.h>
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#include <nel/3d/texture_bloom.h>
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#include <nel/3d/texture_user.h>
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#include <nel/3d/driver_user.h>
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#include <nel/3d/u_texture.h>
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// Project includes
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@ -61,6 +67,8 @@ using namespace std;
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namespace NL3D {
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extern const char *g_StereoOVR_arbfp1;
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namespace {
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class CStereoOVRLog : public OVR::Log
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@ -155,7 +163,7 @@ public:
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OVR::HMDInfo HMDInfo;
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};
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CStereoOVR::CStereoOVR(const CStereoOVRDeviceHandle *handle) : m_Stage(0), m_SubStage(0), m_OrientationCached(false)
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CStereoOVR::CStereoOVR(const CStereoOVRDeviceHandle *handle) : m_Stage(0), m_SubStage(0), m_OrientationCached(false), m_BarrelTexU(NULL)
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{
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++s_DeviceCounter;
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m_DevicePtr = new CStereoOVRDevicePtr();
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@ -194,6 +202,17 @@ CStereoOVR::CStereoOVR(const CStereoOVRDeviceHandle *handle) : m_Stage(0), m_Sub
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CStereoOVR::~CStereoOVR()
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{
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if (!m_BarrelMat.empty())
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{
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m_BarrelMat.getObjectPtr()->setTexture(0, NULL);
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m_Driver->deleteMaterial(m_BarrelMat);
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}
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delete m_BarrelTexU;
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m_BarrelTexU = NULL;
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m_BarrelTex = NULL; // CSmartPtr
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m_Driver = NULL;
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if (m_DevicePtr->SensorDevice)
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m_DevicePtr->SensorDevice->Release();
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m_DevicePtr->SensorDevice.Clear();
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@ -206,9 +225,51 @@ CStereoOVR::~CStereoOVR()
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--s_DeviceCounter;
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}
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void CStereoOVR::setDriver(NL3D::UDriver &driver)
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void CStereoOVR::setDriver(NL3D::UDriver *driver)
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{
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// ...
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m_Driver = driver;
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// Do not allow weird stuff.
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uint32 width, height;
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driver->getWindowSize(width, height);
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nlassert(width == m_DevicePtr->HMDInfo.HResolution);
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nlassert(height == m_DevicePtr->HMDInfo.VResolution);
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NL3D::IDriver *drvInternal = (static_cast<CDriverUser *>(driver))->getDriver();
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m_BarrelTex = new CTextureBloom(); // lol bloom
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m_BarrelTex->setReleasable(false);
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m_BarrelTex->resize(width, height);
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m_BarrelTex->setFilterMode(ITexture::Linear, ITexture::LinearMipMapOff);
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m_BarrelTex->setWrapS(ITexture::Clamp);
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m_BarrelTex->setWrapT(ITexture::Clamp);
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m_BarrelTex->setRenderTarget(true);
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drvInternal->setupTexture(*m_BarrelTex);
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m_BarrelTexU = new CTextureUser(m_BarrelTex);
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m_BarrelMat = m_Driver->createMaterial();
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NL3D::CMaterial *barrelMat = m_BarrelMat.getObjectPtr();
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m_BarrelMat.initUnlit();
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m_BarrelMat.setColor(CRGBA::White);
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m_BarrelMat.setBlend (false);
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m_BarrelMat.setAlphaTest (false);
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barrelMat->setBlendFunc(CMaterial::one, CMaterial::zero);
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barrelMat->setZWrite(false);
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barrelMat->setZFunc(CMaterial::always);
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barrelMat->setDoubleSided(true);
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barrelMat->setTexture(0, m_BarrelTex);
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m_BarrelQuad.V0 = CVector(0.f, 0.f, 0.5f);
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m_BarrelQuad.V1 = CVector(1.f, 0.f, 0.5f);
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m_BarrelQuad.V2 = CVector(1.f, 1.f, 0.5f);
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m_BarrelQuad.V3 = CVector(0.f, 1.f, 0.5f);
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float newU = drvInternal->isTextureRectangle(m_BarrelTex) ? (float)width : 1.f;
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float newV = drvInternal->isTextureRectangle(m_BarrelTex) ? (float)height : 1.f;
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m_BarrelQuad.Uv0 = CUV(0.f, 0.f);
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m_BarrelQuad.Uv1 = CUV(newU, 0.f);
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m_BarrelQuad.Uv2 = CUV(newU, newV);
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m_BarrelQuad.Uv3 = CUV(0.f, newV);
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}
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void CStereoOVR::getScreenResolution(uint &width, uint &height)
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@ -391,15 +452,32 @@ bool CStereoOVR::wantInterface2D()
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UTexture *CStereoOVR::beginRenderTarget(bool set)
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{
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// render target always set before driver clear
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nlassert(m_SubStage == 1);
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// nlassert(m_SubStage <= 1);
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if (m_Stage == 1)
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{
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if (set)
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{
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(static_cast<CDriverUser *>(m_Driver))->setRenderTarget(*m_BarrelTexU, 0, 0, 0, 0);
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}
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return m_BarrelTexU;
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}
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return NULL;
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}
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/// Returns true if a render target was fully drawn
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bool CStereoOVR::endRenderTarget( bool render)
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bool CStereoOVR::endRenderTarget(bool unset)
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{
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// after rendering of course
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nlassert(m_SubStage > 1);
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// nlassert(m_SubStage > 1);
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if (m_Stage == 4)
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{
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if (unset)
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{
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CTextureUser cu;
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(static_cast<CDriverUser *>(m_Driver))->setRenderTarget(cu);
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}
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return true;
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}
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return false;
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}
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82
code/nel/src/3d/stereo_ovr_fp.cpp
Normal file
82
code/nel/src/3d/stereo_ovr_fp.cpp
Normal file
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@ -0,0 +1,82 @@
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/************************************************************************************
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Filename : stereo_ovf_fp.cpp
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Content : Barrel fragment program compiled to a blob of assembly
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Created : July 01, 2013
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Copyright : Copyright 2012 Oculus VR, Inc. All Rights reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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************************************************************************************/
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namespace NL3D {
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const char *g_StereoOVR_arbfp1 =
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"!!ARBfp1.0\n"
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//# cgc version 3.1.0013, build date Apr 18 2012
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//# command line args: -profile arbfp1
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//# source file: pp_oculus_vr.cg
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//#vendor NVIDIA Corporation
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//#version 3.1.0.13
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//#profile arbfp1
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//#program pp_oculus_vr
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//#semantic pp_oculus_vr.cLensCenter
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//#semantic pp_oculus_vr.cScreenCenter
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//#semantic pp_oculus_vr.cScale
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//#semantic pp_oculus_vr.cScaleIn
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//#semantic pp_oculus_vr.cHmdWarpParam
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//#semantic pp_oculus_vr.cTex0 : TEX0
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//#var float2 texCoord : $vin.TEXCOORD0 : TEX0 : 0 : 1
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//#var float2 cLensCenter : : c[0] : 1 : 1
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//#var float2 cScreenCenter : : c[1] : 2 : 1
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//#var float2 cScale : : c[2] : 3 : 1
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//#var float2 cScaleIn : : c[3] : 4 : 1
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//#var float4 cHmdWarpParam : : c[4] : 5 : 1
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//#var sampler2D cTex0 : TEX0 : texunit 0 : 6 : 1
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//#var float4 oCol : $vout.COLOR : COL : 7 : 1
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//#const c[5] = 0.25 0.5 0 1
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"PARAM c[6] = { program.local[0..4],\n"
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" { 0.25, 0.5, 0, 1 } };\n"
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"TEMP R0;\n"
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"TEMP R1;\n"
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"ADD R0.xy, fragment.texcoord[0], -c[0];\n"
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"MUL R0.xy, R0, c[3];\n"
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"MUL R0.z, R0.y, R0.y;\n"
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"MAD R0.z, R0.x, R0.x, R0;\n"
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"MUL R0.w, R0.z, c[4];\n"
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"MUL R0.w, R0, R0.z;\n"
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"MAD R1.y, R0.z, c[4], c[4].x;\n"
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"MUL R1.x, R0.z, c[4].z;\n"
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"MAD R1.x, R0.z, R1, R1.y;\n"
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"MAD R0.z, R0.w, R0, R1.x;\n"
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"MUL R0.xy, R0, R0.z;\n"
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"MOV R0.zw, c[5].xyxy;\n"
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"ADD R1.xy, R0.zwzw, c[1];\n"
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"MUL R0.xy, R0, c[2];\n"
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"ADD R0.xy, R0, c[0];\n"
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"MIN R1.xy, R1, R0;\n"
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"ADD R0.zw, -R0, c[1].xyxy;\n"
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"MAX R0.zw, R0, R1.xyxy;\n"
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"ADD R0.zw, R0, -R0.xyxy;\n"
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"ABS R0.zw, R0;\n"
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"CMP R0.zw, -R0, c[5].z, c[5].w;\n"
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"MUL R0.z, R0, R0.w;\n"
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"ABS R0.z, R0;\n"
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"CMP R0.z, -R0, c[5], c[5].w;\n"
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"ABS R1.x, R0.z;\n"
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"TEX R0, R0, texture[0], 2D;\n"
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"CMP R1.x, -R1, c[5].z, c[5].w;\n"
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"CMP result.color, -R1.x, R0, c[5].z;\n"
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"END\n";
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//# 28 instructions, 2 R-regs
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}
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