reduce warning.

git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/trunk@6208 dfc29bdd-3216-0410-991c-e03cc46cb475
master
engineer_apple 2021-04-17 23:02:44 +00:00 committed by MoNTE48
parent 07b8f28c2d
commit 9ecabbfa92
10 changed files with 21 additions and 19 deletions

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@ -74,13 +74,13 @@ namespace scene
virtual E_BONE_ANIMATION_MODE getAnimationMode() const = 0; virtual E_BONE_ANIMATION_MODE getAnimationMode() const = 0;
//! Get the axis aligned bounding box of this node //! Get the axis aligned bounding box of this node
virtual const core::aabbox3d<f32>& getBoundingBox() const = 0; virtual const core::aabbox3d<f32>& getBoundingBox() const _IRR_OVERRIDE_ = 0;
//! Returns the relative transformation of the scene node. //! Returns the relative transformation of the scene node.
//virtual core::matrix4 getRelativeTransformation() const = 0; //virtual core::matrix4 getRelativeTransformation() const = 0;
//! The animation method. //! The animation method.
virtual void OnAnimate(u32 timeMs) =0; virtual void OnAnimate(u32 timeMs) _IRR_OVERRIDE_ =0;
//! The render method. //! The render method.
/** Does nothing as bones are not visible. */ /** Does nothing as bones are not visible. */

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@ -90,7 +90,7 @@ namespace scene
bindTargetAndRotation() ) then calling this will also change bindTargetAndRotation() ) then calling this will also change
the camera's target to match the rotation. the camera's target to match the rotation.
\param rotation New rotation of the node in degrees. */ \param rotation New rotation of the node in degrees. */
virtual void setRotation(const core::vector3df& rotation) =0; virtual void setRotation(const core::vector3df& rotation) _IRR_OVERRIDE_ =0;
//! Gets the current look at target of the camera //! Gets the current look at target of the camera
/** \return The current look at target of the camera, in world co-ordinates */ /** \return The current look at target of the camera, in world co-ordinates */

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@ -36,7 +36,7 @@ public:
kerning value. For example, EGFT_BITMAP will add the right kerning value of previousLetter to the kerning value. For example, EGFT_BITMAP will add the right kerning value of previousLetter to the
left side kerning value of thisLetter, then add the global value. left side kerning value of thisLetter, then add the global value.
*/ */
virtual s32 getKerningWidth(const wchar_t* thisLetter=0, const wchar_t* previousLetter=0) const = 0; virtual s32 getKerningWidth(const wchar_t* thisLetter=0, const wchar_t* previousLetter=0) const _IRR_OVERRIDE_ = 0;
}; };
} // end namespace gui } // end namespace gui

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@ -31,22 +31,22 @@ namespace video
~CNSOGLManager(); ~CNSOGLManager();
// Initialize // Initialize
bool initialize(const SIrrlichtCreationParameters& params, const SExposedVideoData& data); bool initialize(const SIrrlichtCreationParameters& params, const SExposedVideoData& data) _IRR_OVERRIDE_;
// Terminate // Terminate
void terminate(); void terminate() _IRR_OVERRIDE_;
// Create surface. // Create surface.
bool generateSurface(); bool generateSurface() _IRR_OVERRIDE_;
// Destroy surface. // Destroy surface.
void destroySurface(); void destroySurface() _IRR_OVERRIDE_;
// Create context. // Create context.
bool generateContext(); bool generateContext() _IRR_OVERRIDE_;
// Destroy EGL context. // Destroy EGL context.
void destroyContext(); void destroyContext() _IRR_OVERRIDE_;
//! Get current context //! Get current context
const SExposedVideoData& getContext() const; const SExposedVideoData& getContext() const;
@ -55,7 +55,7 @@ namespace video
bool activateContext(const SExposedVideoData& videoData, bool restorePrimaryOnZero) _IRR_OVERRIDE_; bool activateContext(const SExposedVideoData& videoData, bool restorePrimaryOnZero) _IRR_OVERRIDE_;
// Swap buffers. // Swap buffers.
bool swapBuffers(); bool swapBuffers() _IRR_OVERRIDE_;
private: private:
SIrrlichtCreationParameters Params; SIrrlichtCreationParameters Params;

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@ -748,9 +748,11 @@ bool CBurningVideoDriver::setRenderTargetEx(IRenderTarget* target, u16 clearFlag
return true; return true;
} }
/*
static inline f32 map_value(f32 x, f32 in_min, f32 in_max, f32 out_min, f32 out_max) { static inline f32 map_value(f32 x, f32 in_min, f32 in_max, f32 out_min, f32 out_max) {
return (x - in_min) * (out_max - out_min) / (f32)(in_max - in_min) + out_min; return (x - in_min) * (out_max - out_min) / (f32)(in_max - in_min) + out_min;
} }
*/
//! sets a render target //! sets a render target
void CBurningVideoDriver::setRenderTargetImage2(video::IImage* color, video::IImage* depth, video::IImage* stencil) void CBurningVideoDriver::setRenderTargetImage2(video::IImage* color, video::IImage* depth, video::IImage* stencil)
@ -2166,8 +2168,8 @@ void CBurningVideoDriver::drawVertexPrimitiveList(const void* vertices, u32 vert
{ {
// if primitive fully outside or outside on same side // if primitive fully outside or outside on same side
continue; continue;
vOut = 0; //vOut = 0;
vertex_from_clipper = 0; //vertex_from_clipper = 0;
} }
else if (clipMask_o == VERTEX4D_INSIDE) else if (clipMask_o == VERTEX4D_INSIDE)
{ {

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@ -277,7 +277,7 @@ void CSoftwareTexture2::regenerateMipMapLevels(void* data)
} }
} }
#if 0
//visualize mipmap //visualize mipmap
for (i = 1; i < 0 && i < array_size(MipMap); ++i) for (i = 1; i < 0 && i < array_size(MipMap); ++i)
{ {
@ -327,7 +327,7 @@ void CSoftwareTexture2::regenerateMipMapLevels(void* data)
} }
} }
} }
#endif
calcDerivative(); calcDerivative();
} }

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@ -84,7 +84,7 @@ public:
//! draws an indexed triangle list //! draws an indexed triangle list
virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_; virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_;
virtual bool canWireFrame () { return true; } virtual bool canWireFrame () _IRR_OVERRIDE_ { return true; }
protected: protected:
virtual void fragmentShader(); virtual void fragmentShader();

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@ -85,7 +85,7 @@ public:
//! draws an indexed triangle list //! draws an indexed triangle list
virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_; virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_;
virtual bool canWireFrame () { return true; } virtual bool canWireFrame () _IRR_OVERRIDE_ { return true; }
protected: protected:
virtual void fragmentShader(); virtual void fragmentShader();

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@ -103,7 +103,7 @@ public:
//! draws an indexed triangle list //! draws an indexed triangle list
virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_; virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_;
virtual bool canWireFrame () { return true; } virtual bool canWireFrame () _IRR_OVERRIDE_ { return true; }
private: private:

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@ -9,7 +9,7 @@ public:
//! draws an indexed triangle list //! draws an indexed triangle list
virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_; virtual void drawTriangle(const s4DVertex* burning_restrict a, const s4DVertex* burning_restrict b, const s4DVertex* burning_restrict c) _IRR_OVERRIDE_;
virtual bool canWireFrame() { return true; } virtual bool canWireFrame() _IRR_OVERRIDE_ { return true; }
virtual void OnSetMaterial(const SBurningShaderMaterial& material) _IRR_OVERRIDE_; virtual void OnSetMaterial(const SBurningShaderMaterial& material) _IRR_OVERRIDE_;