Eight consecutive pixels can fit into a single byte when a monochrome screen is recorded as a single array of bytes. No byte will be divided across rows since the screen's width, w, is an integer that may be divided by 8 (w). Of course, using the array's length and breadth, one may determine the screen's height. Draw a horizontal line using a function from (xl, y) (x2, y). The method signature need to resemble: drawLine(byte[] screen, int width, int xl, int x2, int y) (byte[] screen, int width, int xl, int x2, int y)
Eight consecutive pixels can fit into a single byte when a monochrome screen is recorded as a single array of bytes. No byte will be divided across rows since the screen's width, w, is an integer that may be divided by 8 (w). Of course, using the array's length and breadth, one may determine the screen's height. Draw a horizontal line using a function from (xl, y) (x2, y). The method signature need to resemble: drawLine(byte[] screen, int width, int xl, int x2, int y) (byte[] screen, int width, int xl, int x2, int y)
Chapter9: Advanced Array Concepts
Section: Chapter Questions
Problem 7PE
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Eight consecutive pixels can fit into a single byte when a monochrome screen is recorded as a single array of bytes. No byte will be divided across rows since the screen's width, w, is an integer that may be divided by 8 (w). Of course, using the array's length and breadth, one may determine the screen's height. Draw a horizontal line using a function from (xl, y) (x2, y).
The method signature need to resemble:
drawLine(byte[] screen, int width, int xl, int x2, int y) (byte[] screen, int width, int xl, int x2, int y)
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