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Sine pattern

DigitalMicrograph Script

Demonstrate the usage of icol and irow and setting a different color lookup table.

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/////////////////////////////////////////////////////////////////////
// (c) Gatan Inc.
/////////////////////////////////////////////////////////////////////
// This scripts generates an image using the "sin" function.
// In addition, use of the icol and irow intrinsic variables are demonstrated.
// Finally, the image is displayed using the temperature color look-up table.
//////////////////////////////////////////////////////////////////////
//	last modified 08-July-2014 BS (comments only)

// Create constants to define the x and y size (in pixels) of the generated image
number sizeX = 400, sizeY = 400

// Create the 2D image sinePattern, of data type Real 4-byte
// with dimensions sizeX by sizeY and title "Sine pattern"
image sinePattern := RealImage("Sine Pattern", 4, sizeX, sizeY)

// Define the values of the constants spacingX and spacingY, 
// whose purpose will be clear in the next step
// Also, set a value for pi 
number spacingX = sizeX/2., spacingY = sizeY/2.
number pi = 3.1415926

// Now, create the sine pattern using the function below
// The intrinsic variables icol and irow are extremely useful.
// They take on context specific values
// icol refers to the image column number (for N columns this ranges from 0 to N-1)
// and irow refers to the image row number. Hence one can use icol and irow as running
// "X" and "Y" variable in an equation.
// Use of these varaibles avoids use of FOR loops, and, as a result of the way
// DM performs calculations, image size operations can be performed far more efficiently this way
sinePattern = sin( 2*pi*(icol/spacingX + irow/spacingY) ) * sin(pi*icol/sizeX) * sin(pi*irow/sizeY)

// Set the color mode to use when displaying the image
// The possible values for mode are 1=greyscale, 3=rainbow, 4=temperature. 
// Note the use of dot notation - the expression could also be written as
// SetColorMode( SinePattern, 4 )
SinePattern.SetColorMode( 4 )

//Finally, display the image 'SinePattern'
ShowImage(SinePattern)

/*	Note the use of the := operator when creating the image. 
	This operator denotes that the image 'sinePattern' refers implicitly
	to the image created on the right hand side of the expression. 
	If the = operator had been used, SinePattern would have been a 
	copy of the defined image.
	As a result, the image title information would have been lost 
	and the image would have been displayed as "Untitled".  
*/