Added support to glBlendEquation for renderes implementing GL2, and material loading support
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@ -120,6 +120,92 @@ public class RenderState implements Cloneable, Savable {
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*/
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Always,}
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/**
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* <code>BlendEquation</code> specifies the blending equation to combine
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* pixels.
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*/
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public enum BlendEquation {
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/**
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* Sets the blend equation so that the source and destination data are
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* added. (Default) Clamps to [0,1] Useful for things like antialiasing
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* and transparency.
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*/
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Add,
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/**
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* Sets the blend equation so that the source and destination data are
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* subtracted (Src - Dest). Clamps to [0,1] Falls back to Add if
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* supportsSubtract is false.
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*/
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Subtract,
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/**
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* Same as Subtract, but the order is reversed (Dst - Src). Clamps to
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* [0,1] Falls back to Add if supportsSubtract is false.
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*/
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ReverseSubtract,
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/**
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* Sets the blend equation so that each component of the result color is
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* the minimum of the corresponding components of the source and
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* destination colors. This and Max are useful for applications that
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* analyze image data (image thresholding against a constant color, for
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* example). Falls back to Add if supportsMinMax is false.
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*/
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Min,
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/**
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* Sets the blend equation so that each component of the result color is
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* the maximum of the corresponding components of the source and
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* destination colors. This and Min are useful for applications that
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* analyze image data (image thresholding against a constant color, for
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* example). Falls back to Add if supportsMinMax is false.
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*/
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Max
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}
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/**
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* <code>BlendEquationAlpha</code> specifies the blending equation to
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* combine pixels for the alpha component.
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*/
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public enum BlendEquationAlpha {
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/**
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* Sets the blend equation to be the same as the one defined by
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* {@link #blendEquation}.
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*
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*/
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InheritColor,
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/**
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* Sets the blend equation so that the source and destination data are
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* added. (Default) Clamps to [0,1] Useful for things like antialiasing
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* and transparency.
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*/
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Add,
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/**
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* Sets the blend equation so that the source and destination data are
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* subtracted (Src - Dest). Clamps to [0,1] Falls back to Add if
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* supportsSubtract is false.
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*/
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Subtract,
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/**
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* Same as Subtract, but the order is reversed (Dst - Src). Clamps to
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* [0,1] Falls back to Add if supportsSubtract is false.
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*/
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ReverseSubtract,
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/**
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* Sets the blend equation so that the result alpha is the minimum of
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* the source alpha and destination alpha. This and Max are useful for
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* applications that analyze image data (image thresholding against a
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* constant color, for example). Falls back to Add if supportsMinMax is
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* false.
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*/
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Min,
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/**
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* sSets the blend equation so that the result alpha is the maximum of
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* the source alpha and destination alpha. This and Min are useful for
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* applications that analyze image data (image thresholding against a
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* constant color, for example). Falls back to Add if supportsMinMax is
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* false.
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*/
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Max
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}
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/**
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* <code>BlendMode</code> specifies the blending operation to use.
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*
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@ -282,6 +368,8 @@ public class RenderState implements Cloneable, Savable {
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ADDITIONAL.applyDepthWrite = false;
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ADDITIONAL.applyDepthTest = false;
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ADDITIONAL.applyColorWrite = false;
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ADDITIONAL.applyBlendEquation = false;
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ADDITIONAL.applyBlendEquationAlpha = false;
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ADDITIONAL.applyBlendMode = false;
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ADDITIONAL.applyAlphaTest = false;
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ADDITIONAL.applyAlphaFallOff = false;
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@ -299,6 +387,10 @@ public class RenderState implements Cloneable, Savable {
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boolean applyDepthTest = true;
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boolean colorWrite = true;
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boolean applyColorWrite = true;
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BlendEquation blendEquation = BlendEquation.Add;
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boolean applyBlendEquation = true;
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BlendEquationAlpha blendEquationAlpha = BlendEquationAlpha.InheritColor;
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boolean applyBlendEquationAlpha = true;
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BlendMode blendMode = BlendMode.Off;
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boolean applyBlendMode = true;
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boolean alphaTest = false;
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@ -352,6 +444,8 @@ public class RenderState implements Cloneable, Savable {
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oc.write(backStencilDepthPassOperation, "backStencilDepthPassOperation", StencilOperation.Keep);
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oc.write(frontStencilFunction, "frontStencilFunction", TestFunction.Always);
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oc.write(backStencilFunction, "backStencilFunction", TestFunction.Always);
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oc.write(blendEquation, "blendEquation", BlendEquation.Add);
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oc.write(blendEquationAlpha, "blendEquationAlpha", BlendEquationAlpha.InheritColor);
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oc.write(depthFunc, "depthFunc", TestFunction.LessOrEqual);
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oc.write(alphaFunc, "alphaFunc", TestFunction.Greater);
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oc.write(lineWidth, "lineWidth", 1);
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@ -363,6 +457,8 @@ public class RenderState implements Cloneable, Savable {
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oc.write(applyDepthWrite, "applyDepthWrite", true);
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oc.write(applyDepthTest, "applyDepthTest", true);
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oc.write(applyColorWrite, "applyColorWrite", true);
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oc.write(applyBlendEquation, "applyBlendEquation", true);
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oc.write(applyBlendEquationAlpha, "applyBlendEquationAlpha", true);
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oc.write(applyBlendMode, "applyBlendMode", true);
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oc.write(applyAlphaTest, "applyAlphaTest", true);
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oc.write(applyAlphaFallOff, "applyAlphaFallOff", true);
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@ -396,6 +492,8 @@ public class RenderState implements Cloneable, Savable {
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backStencilDepthPassOperation = ic.readEnum("backStencilDepthPassOperation", StencilOperation.class, StencilOperation.Keep);
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frontStencilFunction = ic.readEnum("frontStencilFunction", TestFunction.class, TestFunction.Always);
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backStencilFunction = ic.readEnum("backStencilFunction", TestFunction.class, TestFunction.Always);
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blendEquation = ic.readEnum("blendEquation", BlendEquation.class, BlendEquation.Add);
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blendEquationAlpha = ic.readEnum("blendEquationAlpha", BlendEquationAlpha.class, BlendEquationAlpha.InheritColor);
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depthFunc = ic.readEnum("depthFunc", TestFunction.class, TestFunction.LessOrEqual);
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alphaFunc = ic.readEnum("alphaFunc", TestFunction.class, TestFunction.Greater);
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lineWidth = ic.readFloat("lineWidth", 1);
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@ -407,6 +505,8 @@ public class RenderState implements Cloneable, Savable {
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applyDepthWrite = ic.readBoolean("applyDepthWrite", true);
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applyDepthTest = ic.readBoolean("applyDepthTest", true);
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applyColorWrite = ic.readBoolean("applyColorWrite", true);
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applyBlendEquation = ic.readBoolean("applyBlendEquation", true);
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applyBlendEquationAlpha = ic.readBoolean("applyBlendEquationAlpha", true);
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applyBlendMode = ic.readBoolean("applyBlendMode", true);
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applyAlphaTest = ic.readBoolean("applyAlphaTest", true);
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applyAlphaFallOff = ic.readBoolean("applyAlphaFallOff", true);
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@ -433,8 +533,8 @@ public class RenderState implements Cloneable, Savable {
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}
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/**
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* returns true if the given renderState is equall to this one
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* @param o the renderState to compate to
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* returns true if the given renderState is equal to this one
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* @param o the renderState to compare to
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* @return true if the renderStates are equal
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*/
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@Override
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@ -475,6 +575,14 @@ public class RenderState implements Cloneable, Savable {
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return false;
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}
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if (blendEquation != rs.blendEquation) {
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return false;
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}
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if (blendEquationAlpha != rs.blendEquationAlpha) {
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return false;
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}
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if (blendMode != rs.blendMode) {
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return false;
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}
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@ -663,6 +771,61 @@ public class RenderState implements Cloneable, Savable {
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cachedHashCode = -1;
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}
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/**
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* Set the blending equation.
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* <p>
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* When blending is enabled, (<code>blendMode</code> is not
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* {@link BlendMode#Off}) the input pixel will be blended with the pixel
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* already in the color buffer. The blending equation is determined by the
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* {@link BlendEquation}. For example, the mode {@link BlendMode#Additive}
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* and {@link BlendEquation#Add} will add the input pixel's color to the
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* color already in the color buffer:
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* <br/>
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* <code>Result = Source Color + Destination Color</code>
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* <br/>
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* However, the mode {@link BlendMode#Additive}
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* and {@link BlendEquation#Subtract} will subtract the input pixel's color to the
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* color already in the color buffer:
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* <br/>
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* <code>Result = Source Color - Destination Color</code>
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*
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* @param blendEquation The blend equation to use.
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*/
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public void setBlendEquation(BlendEquation blendEquation) {
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applyBlendEquation = true;
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this.blendEquation = blendEquation;
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cachedHashCode = -1;
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}
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/**
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* Set the blending equation for the alpha component.
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* <p>
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* When blending is enabled, (<code>blendMode</code> is not
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* {@link BlendMode#Off}) the input pixel will be blended with the pixel
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* already in the color buffer. The blending equation is determined by the
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* {@link BlendEquation} and can be overrode for the alpha component using
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* the {@link BlendEquationAlpha} . For example, the mode
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* {@link BlendMode#Additive} and {@link BlendEquationAlpha#Add} will add
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* the input pixel's alpha to the alpha component already in the color
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* buffer:
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* <br/>
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* <code>Result = Source Alpha + Destination Alpha</code>
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* <br/>
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* However, the mode {@link BlendMode#Additive} and
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* {@link BlendEquationAlpha#Subtract} will subtract the input pixel's alpha
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* to the alpha component already in the color buffer:
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* <br/>
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* <code>Result = Source Alpha - Destination Alpha</code>
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*
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* @param blendEquationAlpha The blend equation to use for the alpha
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* component.
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*/
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public void setBlendEquationAlpha(BlendEquationAlpha blendEquationAlpha) {
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applyBlendEquationAlpha = true;
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this.blendEquationAlpha = blendEquationAlpha;
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cachedHashCode = -1;
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}
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/**
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* Enable depth testing.
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*
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@ -991,6 +1154,24 @@ public class RenderState implements Cloneable, Savable {
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return backStencilFunction;
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}
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/**
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* Retrieve the blend equation.
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*
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* @return the blend equation.
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*/
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public BlendEquation getBlendEquation() {
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return blendEquation;
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}
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/**
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* Retrieve the blend equation used for the alpha component.
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*
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* @return the blend equation for the alpha component.
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*/
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public BlendEquationAlpha getBlendEquationAlpha() {
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return blendEquationAlpha;
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}
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/**
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* Retrieve the blend mode.
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*
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@ -1165,6 +1346,14 @@ public class RenderState implements Cloneable, Savable {
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return applyBlendMode;
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}
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public boolean isApplyBlendEquation() {
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return applyBlendEquation;
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}
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public boolean isApplyBlendEquationAlpha() {
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return applyBlendEquationAlpha;
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}
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public boolean isApplyColorWrite() {
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return applyColorWrite;
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}
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@ -1219,6 +1408,8 @@ public class RenderState implements Cloneable, Savable {
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hash = 79 * hash + (this.depthFunc != null ? this.depthFunc.hashCode() : 0);
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hash = 79 * hash + (this.colorWrite ? 1 : 0);
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hash = 79 * hash + (this.blendMode != null ? this.blendMode.hashCode() : 0);
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hash = 79 * hash + (this.blendEquation != null ? this.blendEquation.hashCode() : 0);
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hash = 79 * hash + (this.blendEquationAlpha != null ? this.blendEquationAlpha.hashCode() : 0);
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hash = 79 * hash + (this.alphaTest ? 1 : 0);
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hash = 79 * hash + (this.alphaFunc != null ? this.alphaFunc.hashCode() : 0);
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hash = 79 * hash + Float.floatToIntBits(this.alphaFallOff);
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@ -1302,6 +1493,16 @@ public class RenderState implements Cloneable, Savable {
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} else {
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state.colorWrite = colorWrite;
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}
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if (additionalState.applyBlendEquation) {
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state.blendEquation = additionalState.blendEquation;
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} else {
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state.blendEquation = blendEquation;
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}
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if (additionalState.applyBlendEquationAlpha) {
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state.blendEquationAlpha = additionalState.blendEquationAlpha;
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} else {
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state.blendEquation = blendEquation;
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}
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if (additionalState.applyBlendMode) {
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state.blendMode = additionalState.blendMode;
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} else {
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@ -1389,6 +1590,8 @@ public class RenderState implements Cloneable, Savable {
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backStencilDepthPassOperation = state.backStencilDepthPassOperation;
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frontStencilFunction = state.frontStencilFunction;
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backStencilFunction = state.backStencilFunction;
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blendEquationAlpha = state.blendEquationAlpha;
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blendEquation = state.blendEquation;
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depthFunc = state.depthFunc;
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alphaFunc = state.alphaFunc;
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lineWidth = state.lineWidth;
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@ -1399,6 +1602,8 @@ public class RenderState implements Cloneable, Savable {
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applyDepthWrite = true;
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applyDepthTest = true;
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applyColorWrite = true;
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applyBlendEquation = true;
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applyBlendEquationAlpha = true;
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applyBlendMode = true;
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applyAlphaTest = true;
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applyAlphaFallOff = true;
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@ -1424,6 +1629,9 @@ public class RenderState implements Cloneable, Savable {
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+ "\napplyDepthTest=" + applyDepthTest
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+ "\ncolorWrite=" + colorWrite
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+ "\napplyColorWrite=" + applyColorWrite
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+ "\nblendEquation=" + blendEquation
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+ "\napplyBlendEquation=" + applyBlendEquation
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+ "\napplyBlendEquationAlpha=" + applyBlendEquationAlpha
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+ "\nblendMode=" + blendMode
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+ "\napplyBlendMode=" + applyBlendMode
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+ "\nalphaTest=" + alphaTest
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@ -110,6 +110,16 @@ public class RenderContext {
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*/
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public RenderState.BlendMode blendMode = RenderState.BlendMode.Off;
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/**
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* @see RenderState#setBlendEquation(com.jme3.material.RenderState.BlendEquation)
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*/
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public RenderState.BlendEquation blendEquation = RenderState.BlendEquation.Add;
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/**
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* @see RenderState#setBlendEquationAlpha(com.jme3.material.RenderState.BlendEquationAlpha)
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*/
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public RenderState.BlendEquationAlpha blendEquationAlpha = RenderState.BlendEquationAlpha.InheritColor;
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/**
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* @see RenderState#setWireframe(boolean)
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*/
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@ -270,6 +280,8 @@ public class RenderContext {
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polyOffsetUnits = 0;
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pointSize = 1;
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blendMode = RenderState.BlendMode.Off;
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blendEquation = RenderState.BlendEquation.Add;
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blendEquationAlpha = RenderState.BlendEquationAlpha.InheritColor;
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wireframe = false;
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boundShaderProgram = 0;
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boundShader = null;
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@ -71,8 +71,14 @@ public interface GL2 extends GL {
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public static final int GL_TEXTURE_WRAP_R = 0x8072;
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public static final int GL_VERTEX_PROGRAM_POINT_SIZE = 0x8642;
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public static final int GL_UNSIGNED_INT_8_8_8_8 = 0x8035;
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public static final int GL_FUNC_ADD = 0x8006;
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public static final int GL_FUNC_SUBTRACT = 0x800A;
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public static final int GL_FUNC_REVERSE_SUBTRACT = 0x800B;
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public static final int GL_MIN = 0x8007;
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public static final int GL_MAX = 0x8008;
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public void glAlphaFunc(int func, float ref);
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public void glBlendEquationSeparate(int colorMode, int alphaMode);
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public void glPointSize(float size);
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public void glPolygonMode(int face, int mode);
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public void glDrawBuffer(int mode);
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@ -100,4 +100,9 @@ public class GLDebugDesktop extends GLDebugES implements GL2, GL3, GL4 {
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gl3.glFramebufferTextureLayer(param1, param2, param3, param4, param5);
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checkError();
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}
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public void glBlendEquationSeparate(int colorMode, int alphaMode) {
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gl2.glBlendEquationSeparate(colorMode, alphaMode);
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checkError();
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}
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}
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@ -746,6 +746,18 @@ public final class GLRenderer implements Renderer {
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throw new UnsupportedOperationException("Unrecognized blend mode: "
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+ state.getBlendMode());
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}
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if (gl2 != null && (state.getBlendEquation() != context.blendEquation || state.getBlendEquationAlpha() != context.blendEquationAlpha)) {
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int colorMode = convertBlendEquation(state.getBlendEquation());
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int alphaMode;
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if (state.getBlendEquationAlpha() == RenderState.BlendEquationAlpha.InheritColor) {
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alphaMode = colorMode;
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} else {
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alphaMode = convertBlendEquationAlpha(state.getBlendEquationAlpha());
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}
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gl2.glBlendEquationSeparate(colorMode, alphaMode);
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context.blendEquation = state.getBlendEquation();
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}
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}
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context.blendMode = state.getBlendMode();
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@ -796,6 +808,41 @@ public final class GLRenderer implements Renderer {
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}
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}
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private int convertBlendEquation(RenderState.BlendEquation blendEquation) {
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switch (blendEquation) {
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case Add:
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return GL2.GL_FUNC_ADD;
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case Subtract:
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return GL2.GL_FUNC_SUBTRACT;
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case ReverseSubtract:
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return GL2.GL_FUNC_REVERSE_SUBTRACT;
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case Min:
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return GL2.GL_MIN;
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case Max:
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return GL2.GL_MAX;
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default:
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throw new UnsupportedOperationException("Unrecognized blend operation: " + blendEquation);
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}
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}
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private int convertBlendEquationAlpha(RenderState.BlendEquationAlpha blendEquationAlpha) {
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//Note: InheritColor mode should already be handled, that is why it does not belong the the switch case.
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switch (blendEquationAlpha) {
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case Add:
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return GL2.GL_FUNC_ADD;
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case Subtract:
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return GL2.GL_FUNC_SUBTRACT;
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case ReverseSubtract:
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return GL2.GL_FUNC_REVERSE_SUBTRACT;
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case Min:
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return GL2.GL_MIN;
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case Max:
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return GL2.GL_MAX;
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default:
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throw new UnsupportedOperationException("Unrecognized alpha blend operation: " + blendEquationAlpha);
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}
|
||||
}
|
||||
|
||||
private int convertStencilOperation(StencilOperation stencilOp) {
|
||||
switch (stencilOp) {
|
||||
case Keep:
|
||||
|
@ -36,6 +36,7 @@ import com.jme3.material.logic.SinglePassLightingLogic;
|
||||
import com.jme3.material.logic.DefaultTechniqueDefLogic;
|
||||
import com.jme3.asset.*;
|
||||
import com.jme3.material.*;
|
||||
import com.jme3.material.RenderState.BlendEquation;
|
||||
import com.jme3.material.RenderState.BlendMode;
|
||||
import com.jme3.material.RenderState.FaceCullMode;
|
||||
import com.jme3.material.TechniqueDef.LightMode;
|
||||
@ -452,6 +453,10 @@ public class J3MLoader implements AssetLoader {
|
||||
renderState.setDepthTest(parseBoolean(split[1]));
|
||||
}else if (split[0].equals("Blend")){
|
||||
renderState.setBlendMode(BlendMode.valueOf(split[1]));
|
||||
}else if (split[0].equals("BlendEquation")){
|
||||
renderState.setBlendEquation(BlendEquation.valueOf(split[1]));
|
||||
}else if (split[0].equals("BlendEquationAlpha")){
|
||||
renderState.setBlendEquationAlpha(RenderState.BlendEquationAlpha.valueOf(split[1]));
|
||||
}else if (split[0].equals("AlphaTestFalloff")){
|
||||
renderState.setAlphaTest(true);
|
||||
renderState.setAlphaFallOff(Float.parseFloat(split[1]));
|
||||
|
@ -78,6 +78,11 @@ public class JoglGL implements GL, GL2, GL3, GL4 {
|
||||
GLContext.getCurrentGL().glBindTexture(param1, param2);
|
||||
}
|
||||
|
||||
@Override
|
||||
public void glBlendEquationSeparate(int colorMode, int alphaMode){
|
||||
GLContext.getCurrentGL().glBlendEquationSeparate(colorMode, alphaMode);
|
||||
}
|
||||
|
||||
@Override
|
||||
public void glBlendFunc(int param1, int param2) {
|
||||
GLContext.getCurrentGL().glBlendFunc(param1, param2);
|
||||
|
@ -50,6 +50,10 @@ public final class LwjglGL implements GL, GL2, GL3, GL4 {
|
||||
GL11.glBindTexture(param1, param2);
|
||||
}
|
||||
|
||||
public void glBlendEquationSeparate(int colorMode, int alphaMode){
|
||||
GL20.glBlendEquationSeparate(colorMode,alphaMode);
|
||||
}
|
||||
|
||||
public void glBlendFunc(int param1, int param2) {
|
||||
GL11.glBlendFunc(param1, param2);
|
||||
}
|
||||
|
@ -79,6 +79,10 @@ public class LwjglGL implements GL, GL2, GL3, GL4 {
|
||||
GL11.glBindTexture(param1, param2);
|
||||
}
|
||||
|
||||
public void glBlendEquationSeparate(int colorMode, int alphaMode){
|
||||
GL20.glBlendEquationSeparate(colorMode,alphaMode);
|
||||
}
|
||||
|
||||
public void glBlendFunc(int param1, int param2) {
|
||||
GL11.glBlendFunc(param1, param2);
|
||||
}
|
||||
|
Loading…
x
Reference in New Issue
Block a user