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webp-lossless-bitstream-spec: number all sections
this makes the structure more consistent Change-Id: Ie6c8b42506be73e565cfc4d39108eb4d8c038003
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@ -229,7 +229,7 @@ depends on the transform type. Next we describe the transform data for
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different types.
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### Predictor Transform
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### 4.1 Predictor Transform
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The predictor transform can be used to reduce entropy by exploiting the
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fact that neighboring pixels are often correlated. In the predictor
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@ -376,7 +376,7 @@ the modes \[0..13\] just like pixels not on the border, but the leftmost pixel
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on the same row as the current pixel is instead used as the TR-pixel.
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### Color Transform
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### 4.2 Color Transform
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\[AMENDED2\]
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@ -488,7 +488,7 @@ void InverseTransform(uint8 red, uint8 green, uint8 blue,
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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### Subtract Green Transform
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### 4.3 Subtract Green Transform
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The subtract green transform subtracts green values from red and blue
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values of each pixel. When this transform is present, the decoder needs
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@ -510,7 +510,7 @@ the subtract green transform can be coded using fewer bits than a
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full-blown color transform.
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### Color Indexing Transform
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### 4.4 Color Indexing Transform
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If there are not many unique pixel values, it may be more efficient to
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create a color index array and replace the pixel values by the array's
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@ -1079,7 +1079,7 @@ all details. End-of-image (EOI) is only implicitly coded into the number
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of pixels (xsize * ysize).
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#### Basic Structure
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#### 7.1 Basic Structure
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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<format> ::= <RIFF header><image size><image stream>
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@ -1087,7 +1087,7 @@ of pixels (xsize * ysize).
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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#### Structure of Transforms
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#### 7.2 Structure of Transforms
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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<optional-transform> ::= (1-bit value 1; <transform> <optional-transform>) |
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@ -1104,7 +1104,7 @@ of pixels (xsize * ysize).
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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#### Structure of the Image Data
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#### 7.3 Structure of the Image Data
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\[AMENDED2\]
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