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(Optional; PDF 14) The current stroking alpha constant, specifying the constant shape or constant opacity value to be used for stroking operations in the transparent imaging model (see Source Shape and Opacity on page 421 and Constant Shape and Opacity on page 444) (Optional; PDF 14) Same as CA, but for nonstroking operations (Optional; PDF 14) The alpha source ag ( alpha is shape ), specifying whether the current soft mask and alpha constant are to be interpreted as shape values (true) or opacity values (false) (Optional; PDF 14) The text knockout ag, which determines the behavior of overlapping glyphs within a text object in the transparent imaging model (see Section 527, Text Knockout )
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Example 41 shows two graphics state parameter dictionaries In the rst, automatic stroke adjustment is turned on, and the dictionary includes a transfer function that inverts its value, f(x) = 1 x In the second, overprint is turned off, and the dictionary includes a parabolic transfer function, f(x) = (2x 1) 2, with a sample of 21 values The domain of the transfer function, [00 10], is mapped to [0 20], and the range of the sample values, [0 255], is mapped to the range of the transfer function, [00 10]
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Example 41 10 0 obj << /Type /Page /Parent 5 0 R /Resources 20 0 R /Contents 40 0 R >> endobj 20 0 obj << /ProcSet [/PDF /Text] /Font << /F1 25 0 R >> /ExtGState << /GS1 30 0 R /GS2 35 0 R >> >> endobj 30 0 obj << /Type /ExtGState /SA true /TR 31 0 R >> endobj 31 0 obj << /FunctionType 0 /Domain [00 10] /Range [00 10] /Size 2 /BitsPerSample 8 /Length 7 /Filter /ASCIIHexDecode >> % Page object
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stream 01 00 > endstream endobj 35 0 obj << /Type /ExtGState /OP false /TR 36 0 R >> endobj % Second graphics state parameter dictionary
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36 0 obj % Second transfer function << /FunctionType 0 /Domain [00 10] /Range [00 10] /Size 21 /BitsPerSample 8 /Length 63 /Filter /ASCIIHexDecode >> stream FF CE A3 7C 5B 3F 28 16 0A 02 00 02 0A 16 28 3F 5B 7C A3 CE FF > endstream endobj
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Paths de ne shapes, trajectories, and regions of all sorts They are used to draw lines, de ne the shapes of lled areas, and specify boundaries for clipping other graphics The graphics state includes a current clipping path that de nes the clipping boundary for the current page At the beginning of each page, the clipping path is initialized to include the entire page A path is composed of straight and curved line segments, which may connect to one another or may be disconnected A pair of segments are said to connect only if they are de ned consecutively, with the second segment starting where the rst one ends Thus the order in which the segments of a path are de ned is signi cant Nonconsecutive segments that meet or intersect fortuitously are not considered to connect
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A path is made up of one or more disconnected subpaths, each comprising a sequence of connected segments The topology of the path is unrestricted: it may be concave or convex, may contain multiple subpaths representing disjoint areas, and may intersect itself in arbitrary ways There is an operator, h, that explicitly connects the end of a subpath back to its starting point; such a subpath is said to be closed A subpath that has not been explicitly closed is open As discussed in Section 41, Graphics Objects, a path object is de ned by a sequence of operators to construct the path, followed by one or more operators to paint the path or to use it as a clipping boundary PDF path operators fall into three categories: