以下成員源於類 Qt3DExtras 被棄用。 提供它們是為使舊源代碼能繼續工作。強烈建議不要在新代碼中使用它們。
(棄用)
class
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QDiffuseMapMaterial |
(棄用)
class
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QDiffuseSpecularMapMaterial |
(棄用)
class
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QNormalDiffuseMapAlphaMaterial |
(棄用)
class
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QNormalDiffuseMapMaterial |
(棄用)
class
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QNormalDiffuseSpecularMapMaterial |
(棄用)
class
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QPhongAlphaMaterial |
(棄用)
class
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QPhongMaterial |
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use Qt3DExtras::QDiffuseSpecularMaterial 代替。
The specular lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use Qt3DExtras::QDiffuseSpecularMaterial 代替。
The specular lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use Qt3DExtras::QDiffuseSpecularMaterial 代替。
The specular lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use QDiffuseSpecularMaterial 代替。
The specular lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use QDiffuseSpecularMaterial 代替。
The specular lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use QDiffuseSpecularMaterial 代替。
The phong lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.
This class is deprecated. We strongly advise against using it in new code.
This class is deprecated; use QDiffuseSpecularMaterial 代替。
The phong lighting effect is based on the combination of 3 lighting components ambient, diffuse and specular. The relative strengths of these components are controlled by means of their reflectivity coefficients which are modelled as RGB triplets:
This material uses an effect with a single render pass approach and performs per fragment lighting. Techniques are provided for OpenGL 2, OpenGL 3 or above as well as OpenGL ES 2.