org.das2.graph.GraphUtil

Utilities for drawing graphics and establishing standard behavior. This provides functions to get a 16x16 icon for a color, getting a Path from a series of data points, and a "visualize" method for simply looking at some data.

GraphUtil( )


FILL_TEXTURE_CROSSHASH


FILL_TEXTURE_HASH


FILL_TEXTURE_BACKHASH


FILL_TEXTURE_SOLID


FILL_TEXTURE_NONE


CONNECT_MODE_HISTOGRAM

draw the lines in histogram mode, horizontal to the half-way point, then vertical, then horizontal the rest of the way.


CONNECT_MODE_SCATTER

don't draw connecting lines.


CONNECT_MODE_SERIES

the normal connecting mode from point-to-point in a series.


MAX_TICKS

limit the number of ticks which are computed


blurImage

blurImage( java.awt.image.BufferedImage im, int size ) → BufferedImage

blur the image with a Guassian blur.

Parameters

im - a BufferedImage
size - the size of the blur, roughly in pixels.

Returns:

image

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calculateAT

calculateAT( org.das2.graph.DasAxis xaxis0, org.das2.graph.DasAxis yaxis0, org.das2.graph.DasAxis xaxis1, org.das2.graph.DasAxis yaxis1 ) → AffineTransform

calculates the AffineTransform between two sets of x and y axes, if possible.

Parameters

xaxis0 - the original reference frame x axis
yaxis0 - the original reference frame y axis
xaxis1 - the new reference frame x axis
yaxis1 - the new reference frame y axis

Returns:

an AffineTransform that transforms data positioned with xaxis0 and yaxis0 on xaxis1 and yaxis1, or null if no such transform exists.

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calculateAT( DatumRange xaxis0, DatumRange yaxis0, org.das2.graph.DasAxis xaxis1, org.das2.graph.DasAxis yaxis1 ) → AffineTransform

calculateManualTicks

calculateManualTicks( String lticks, DatumRange dr, boolean log ) → TickVDescriptor

calculate a TickVDescriptor for the ticks. Example specifications:

Parameters

lticks - the specification
dr - the range to cover
log - a boolean

Returns:

null if the string can't be parsed, or the TickVDescriptor

See Also:

https://github.com/autoplot/dev/blob/master/demos/2021/20211130/demoCalculateManualTicks.jy
MAX_TICKS the maximum number of minor or major ticks calculated the maximum number of minor or major ticks calculated


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clipPath

clipPath( java.awt.geom.PathIterator it, java.awt.geom.GeneralPath result, java.awt.Rectangle clip ) → int

clip the path to within the clip rectangle. Note this may introduce breaks where the path was continuous before. Note this does not work with quadTo etc. This was motivated by an old version of Adobe Illustrator which didn't respect the clip set in the PDF, and with the journal Nature, which apparently uses an old version of Illustrator.

Parameters

it - a PathIterator
result - a GeneralPath
clip - a Rectangle

Returns:

an int

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colorIcon

colorIcon( java.awt.Color iconColor, int w, int h ) → Icon

return an icon block with the color and size.

Parameters

iconColor - the color
w - the width in pixels
h - the height in pixels

Returns:

an icon.

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colorImageIcon

colorImageIcon( java.awt.Color iconColor, int w, int h ) → ImageIcon

return an ImageIcon with the color and size.

Parameters

iconColor - a Color
w - an int
h - an int

Returns:

a javax.swing.ImageIcon

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copyAxis

copyAxis( org.das2.graph.DasAxis a ) → DasAxis

return a copy of the plot. It does not have the row and column set to its own row and column.

Parameters

a - a DasAxis

Returns:

an org.das2.graph.DasAxis

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copyColorBar

copyColorBar( org.das2.graph.DasColorBar a ) → DasColorBar

return a copy of the plot. It does not have the row and column set to its own row and column.

Parameters

a - a DasColorBar

Returns:

an org.das2.graph.DasColorBar

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copyPlot

copyPlot( org.das2.graph.DasPlot p ) → DasPlot

return a copy of the plot. This will include the Renderers and the data they contain. The plot is not attached to a canvas or row and column.

 
   cnvsNew= new DasCanvas(500,500);
   row= new DasRow(cnvsNew,0.2,0.8);
   column= new DasColumn(cnvsNew,0.2,0.8);
   p= GraphUtil.copyPlot(dp); 
   cnvsNew.add(p,row,column); 
 
 

Parameters

p - a DasPlot

Returns:

an org.das2.graph.DasPlot

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describe

describe( java.awt.geom.GeneralPath path, boolean enumeratePoints ) → String

describe the path for debugging.

Parameters

path - the Path to describe
enumeratePoints - if true, print all the points as well.

Returns:

String description.

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fillWithTexture

fillWithTexture( java.awt.Graphics2D g, java.awt.geom.GeneralPath pbox, java.awt.Color fillColor, String fillTexture ) → void

fill the region using the specified fillTexture.

Parameters

g - the graphics context
pbox - a general path
fillColor - if non-null, set this color to fill and return to the original color
fillTexture - one of the enumerations: none, hash, crosshash, backhash, and solid (and "" is an alias for solid)

Returns:

void (returns nothing)

See Also:

Renderer#CONTROL_KEY_FILL_TEXTURE


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getATScaleTranslateString

getATScaleTranslateString( java.awt.geom.AffineTransform at ) → String

return a string representation of the affine transforms used in DasPlot for debugging.

Parameters

at - the affine transform

Returns:

a string representation of the affine transforms used in DasPlot for debugging.

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getFontConverter

getFontConverter( org.das2.graph.DasCanvasComponent dcc, String fallbackFont ) → Converter

converts forward from relative font spec to point size, used by the annotation and axis nodes.

Parameters

dcc - the canvas component.
fallbackFont - the font to use when a font is not available, like "sans-8"

Returns:

the converter that converts between strings like "1em" and the font.

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getGaussianBlurFilter

getGaussianBlurFilter( int radius, boolean horizontal ) → ConvolveOp

return a Gaussian filter for blurring images.

Parameters

radius - the radius filter in pixels.
horizontal - true if horizontal blur.

Returns:

the ConvolveOp

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getPath

getPath( org.das2.graph.DasAxis xAxis, org.das2.graph.DasAxis yAxis, QDataSet ds, boolean histogram, boolean clip ) → GeneralPath

get the path for the points, checking for breaks in the data from fill values.

Parameters

xAxis - the x axis.
yAxis - the y axis.
ds - the y values. SemanticOps.xtagsDataSet is used to extract the x values.
histogram - if true, use histogram (stair-step) mode
clip - limit path to what's visible for each axis.

Returns:

the GeneralPath.

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getPath( org.das2.graph.DasAxis xAxis, org.das2.graph.DasAxis yAxis, QDataSet xds, QDataSet yds, boolean histogram, boolean clip ) → GeneralPath
getPath( org.das2.graph.DasAxis xAxis, org.das2.graph.DasAxis yAxis, QDataSet xds, QDataSet yds, String mode, boolean clip ) → GeneralPath

getRicePaperColor

getRicePaperColor( ) → Color

return translucent white color for indicating the application is busy.

Returns:

translucent white color

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getSegNameFor

getSegNameFor( int type ) → String

print the name for the segment type

Parameters

type - an int

Returns:

"SEG_MOVETO", etc or "SEG_???"

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getSlopeIntercept

getSlopeIntercept( double x0, double y0, double x1, double y1 ) → double[]

calculates the slope and intercept of a line going through two points.

Parameters

x0 - the first point x
y0 - the first point y
x1 - the second point x
y1 - the second point y

Returns:

a double array with two elements [ slope, intercept ].

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guessPlot

guessPlot( QDataSet ds ) → DasPlot

get a plot and renderer for the dataset.

Parameters

ds - the dataset

Returns:

a plot with a renderer for the dataset.

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guessRenderer

guessRenderer( QDataSet ds ) → Renderer

legacy guess that is used who-knows-where. Autoplot has much better code for guessing, refer to it.

Parameters

ds - a QDataSet

Returns:

an org.das2.graph.Renderer

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guessXAxis

guessXAxis( QDataSet ds ) → DasAxis

Parameters

ds - a QDataSet

Returns:

org.das2.graph.DasAxis

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guessYAxis

guessYAxis( QDataSet dsz ) → DasAxis

Parameters

dsz - a QDataSet

Returns:

org.das2.graph.DasAxis

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guessZAxis

guessZAxis( QDataSet dsz ) → DasAxis

Parameters

dsz - a QDataSet

Returns:

org.das2.graph.DasAxis

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invTransformRange

invTransformRange( org.das2.graph.DasAxis axis, double x1, double x2 ) → DatumRange

Parameters

axis - a DasAxis
x1 - a double
x2 - a double

Returns:

org.das2.datum.DatumRange

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lineIntersection

lineIntersection( java.awt.geom.Line2D line1, java.awt.geom.Line2D line2, boolean noBoundsCheck ) → Point2D

returns the point where the two line segments intersect, or null.

Parameters

line1 - a Line2D
line2 - a Line2D
noBoundsCheck - if true, then do not check the segment bounds.

Returns:

a java.awt.geom.Point2D

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lineRectangleIntersection

lineRectangleIntersection( java.awt.geom.Point2D p0, java.awt.geom.Point2D p1, java.awt.geom.Rectangle2D r0 ) → Point2D

return the intersection of a line segment and the edge of a rectangle, where one point is outside of the rectangle and one is inside.

Parameters

p0 - a Point2D
p1 - a Point2D
r0 - a Rectangle2D

Returns:

null or the point along the rectangle

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lineRectangleMask

lineRectangleMask( java.awt.geom.Point2D p0, java.awt.geom.Point2D p1, java.awt.geom.Rectangle2D r ) → Line2D

return the line segment which is within the rectangle mask.

Parameters

p0 - the first point
p1 - the second point
r - the rectangle

Returns:

null when they do not intersect, or the segment

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newDasPlot

newDasPlot( org.das2.graph.DasCanvas canvas, DatumRange x, DatumRange y ) → DasPlot

create a plot for the canvas, along with the row and column for layout.

Parameters

canvas - the canvas parent for the plot.
x - the x range
y - the y range

Returns:

the plot.

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newGrannyTextEditor

newGrannyTextEditor( ) → GrannyTextEditor

return a GrannyTextEditor with the Das2Core extras added.

Returns:

an org.das2.components.GrannyTextEditor

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newGrannyTextRenderer

newGrannyTextRenderer( ) → GrannyTextRenderer

return a GrannyTextEditor with the Das2Core extras added. Examples include:

Returns:

an org.das2.util.GrannyTextRenderer

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parseLayoutLength

parseLayoutLength( String s, double totalWidth, double em ) → double

parse strings like "14em+2pt" into a length in pixels.

Parameters

s - the string specifying ems and pxs
totalWidth - the total with for the normalized length.
em - the size of an em in pixels.

Returns:

the length in pixels

See Also:

DasDevicePosition#parseLayoutStr(java.lang.String)


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perpendicularLine

perpendicularLine( java.awt.geom.Line2D line, java.awt.Point p, double len ) → Line2D

create a line perpendicular to the line segment line, which would go through p, and have length abs(len). If len is negative, then line.p1,line.p2,p is counter-clockwise. This is left unimplemented as it's a nice student project.

Parameters

line - a line segment.
p - a point, whose projection is necessarily within the line segment.
len - the length of the resulting line, or

Returns:

line colinear with p and having length abs(len).

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pointsAlongCurve

pointsAlongCurve( java.awt.geom.PathIterator it, double[][] pathlen, java.awt.geom.Point2D.Double[][] result, double[][] orientation, boolean stopAtMoveTo ) → double

return the points along a curve. Used by ContourRenderer. The returned result is the remaining path length. Elements of pathlen that are beyond the total path length are not computed, and the result points will be null. Note that CUBICTO and QUADTO are not supported.

Parameters

it - PathIterator first point is used to start the length.
pathlen - monotonically increasing path lengths at which the position is to be located. May be null if only the total path length is desired.
result - the resultant points will be put into this array. This array should have the same number of elements as pathlen
orientation - the local orientation, in radians, of the point at will be put into this array. This array should have the same number of elements as pathlen
stopAtMoveTo - treat SEG_MOVETO as the end of the path. The pathIterator will be left at this point.

Returns:

the remaining length. Note null may be used for pathlen, result, and orientation and this will simply return the total path length.

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pointsAlongCurve( java.awt.geom.PathIterator it, double[][] pathlen, java.awt.geom.Point2D.Double[][] result, double[][] orientation, boolean stopAtMoveTo, java.util.Map props ) → double

reducePath

reducePath( java.awt.geom.PathIterator it, java.awt.geom.GeneralPath result ) → int

Returns the input GeneralPath filled with new points which will be rendered identically to the input path, but contains a minimal number of points. We bin average the points within a cell, because discretization would mess up the label orientation in contour plotting. a new GeneralPath which will be rendered identically to the input path, but contains a minimal number of points.

Parameters

it - A path iterator with minute details that will be lost when rendering.
result - A GeneralPath to put the result into.

Returns:

the number of "points" (LINE_TOs) in the result.

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reducePath( java.awt.geom.PathIterator it, java.awt.geom.GeneralPath result, int res ) → int

reducePath20140622

reducePath20140622( java.awt.geom.PathIterator it, java.awt.geom.GeneralPath result, int resn, int resd ) → int

New ReducePath reduces a path by keeping track of vertically collinear points, and reducing them to an entry point, an exit point, min and max. This can be all four in one point. We also limit the resolution and combine points that are basically the same value, using resn and resd (numerator and denominator). For example (1/5) would mean that points within x of 1/5 of one another are considered vertically collinear.

Parameters

it - input path.
result - output path.
resn - the resolution numerator (e.g. 1)
resd - the resolution denominator (e.g. 5)

Returns:

the number of points.

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shortenLine

shortenLine( java.awt.geom.Line2D line, double l1, double l2 ) → Line2D

return line shorted by so many pixels at each end.

Parameters

line - the line
l1 - number of units to adjust the first point, towards the center
l2 - number of units to adjust the second point, towards the center

Returns:

the new line

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shrinkRectangle

shrinkRectangle( java.awt.Rectangle bounds, int percent ) → Rectangle

return rectangle with same center that is percent/100 of the original width and height.

Parameters

bounds - the original rectangle.
percent - the percent to increase (110% is 10% bigger)

Returns:

a rectangle with same center that is percent/100. of the original width and height.

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transformRange

transformRange( org.das2.graph.DasAxis axis, DatumRange range ) → double[]

returns pixel range of the datum range, guarenteeing that the first element will be less than or equal to the second.

Parameters

axis - a DasAxis
range - a DatumRange

Returns:

a double[][]

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visualize

visualize( QDataSet ds ) → DasPlot

get a plot and add it to a JFrame.

Parameters

ds - a QDataSet

Returns:

an org.das2.graph.DasPlot

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