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235 lines
6.3 KiB
Lua
235 lines
6.3 KiB
Lua
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--[[ $Id: x15.lua 9533 2009-02-16 22:18:37Z smekal $
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Shade plot demo.
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Copyright (C) 2008 Werner Smekal
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This file is part of PLplot.
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PLplot is free software you can redistribute it and/or modify
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it under the terms of the GNU General Library Public License as published
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by the Free Software Foundation either version 2 of the License, or
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(at your option) any later version.
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PLplot is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Library General Public License for more details.
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You should have received a copy of the GNU Library General Public License
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along with PLplot if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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--]]
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-- initialise Lua bindings for PLplot examples.
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dofile("plplot_examples.lua")
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XPTS = 35 -- Data points in x
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YPTS = 46 -- Data points in y
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z = {}
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-- Function prototypes
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----------------------------------------------------------------------------
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-- cmap1_init1
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--
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-- Initializes color map 1 in HLS space.
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----------------------------------------------------------------------------
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function cmap1_init1()
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i = { 0, 0,45, 0.55, 1 } -- left boundary, just before center,
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-- just after center, right boundary
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h = { 260, 260, 20, 20 } -- hue -- low: blue-violet, only change as we go over vertex
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-- hue -- high: red, keep fixed
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l = { 0.5, 0, 0, 0.5 } -- lightness -- low, lightness -- center
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-- lightness -- center, lightness -- high
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s = { 1, 1, 1, 1 } -- maximum saturation
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pl.scmap1l(0, i, h, l, s)
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end
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----------------------------------------------------------------------------
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-- cmap1_init2
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--
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-- Initializes color map 1 in HLS space.
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----------------------------------------------------------------------------
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function cmap1_init2()
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i = { 0, 0.45, 0.55, 1 } -- left boundary, just before center,
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-- just after center, right boundary
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h = { 260, 260, 20, 20 } -- hue -- low: blue-violet, only change as we go over vertex
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-- hue -- high: red, keep fixed
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l = { 0.6, 0, 0, 0.6 } -- lightness -- low, lightness -- center
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-- lightness -- center, lightness -- high
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s = { 1, 0.5, 0.5, 1 } -- saturation -- low, saturation -- center
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-- saturation -- center, saturation -- high
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pl.scmap1l(0, i, h, l, s)
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end
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----------------------------------------------------------------------------
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-- plot1
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--
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-- Illustrates a single shaded region.
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----------------------------------------------------------------------------
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function plot1()
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sh_cmap = 0
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pl.adv(0)
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pl.vpor(0.1, 0.9, 0.1, 0.9)
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pl.wind(-1, 1, -1, 1)
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-- Plot using identity transform
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shade_min = zmin + (zmax-zmin)*0.4
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shade_max = zmin + (zmax-zmin)*0.6
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sh_color = 7
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sh_width = 2
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min_color = 9
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max_color = 2
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min_width = 2
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max_width = 2
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pl.psty(8)
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pl.shade(z, -1, 1, -1, 1, shade_min, shade_max, sh_cmap, sh_color, sh_width,
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min_color, min_width, max_color, max_width, 1)
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pl.col0(1)
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pl.box("bcnst", 0, 0, "bcnstv", 0, 0)
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pl.col0(2)
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pl.lab("distance", "altitude", "Bogon flux")
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end
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----------------------------------------------------------------------------
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-- plot2
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--
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-- Illustrates multiple adjacent shaded regions, using different fill
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-- patterns for each region.
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----------------------------------------------------------------------------
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function plot2()
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sh_cmap = 0
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min_color = 0
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min_width = 0
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max_color = 0
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max_width = 0
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inc = { {450}, {-450}, {0}, {900}, {300},
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{450,-450}, {0, 900}, {0, 450}, {450, -450}, {0, 900} }
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del = { {2000}, {2000}, {2000}, {2000}, {2000},
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{2000, 2000}, {2000, 2000}, {2000, 2000}, {4000, 4000}, {4000, 2000} }
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sh_width = 2
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pl.adv(0)
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pl.vpor(0.1, 0.9, 0.1, 0.9)
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pl.wind(-1, 1, -1, 1)
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-- Plot using identity transform
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for i = 1, 10 do
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shade_min = zmin + (zmax - zmin) * (i-1)/10
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shade_max = zmin + (zmax - zmin) * i/10
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sh_color = i+5
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pl.pat(inc[i], del[i])
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pl.shade(z, -1, 1, -1, 1, shade_min, shade_max, sh_cmap, sh_color, sh_width,
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min_color, min_width, max_color, max_width, 1)
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end
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pl.col0(1)
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pl.box("bcnst", 0, 0, "bcnstv", 0, 0)
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pl.col0(2)
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pl.lab("distance", "altitude", "Bogon flux")
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end
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----------------------------------------------------------------------------
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-- plot3
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--
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-- Illustrates shaded regions in 3d, using a different fill pattern for
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-- each region.
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----------------------------------------------------------------------------
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function plot3()
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xx = { {-1, 1, 1, -1, -1}, {-1, 1, 1, -1, -1} }
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yy = { {1, 1, 0, 0, 1}, {-1, -1, 0, 0, -1} }
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zz = { {0, 0, 1, 1, 0}, {0, 0, 1, 1, 0} }
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pl.adv(0)
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pl.vpor(0.1, 0.9, 0.1, 0.9)
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pl.wind(-1, 1, -1, 1.)
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pl.w3d(1, 1, 1, -1, 1, -1, 1, 0, 1.5, 30, -40)
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-- Plot using identity transform
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pl.col0(1)
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pl.box3("bntu", "X", 0, 0, "bntu", "Y", 0, 0, "bcdfntu", "Z", 0.5, 0)
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pl.col0(2)
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pl.lab("","","3-d polygon filling")
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pl.col0(3)
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pl.psty(1)
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pl.line3(xx[1], yy[1], zz[1])
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pl.fill3(xx[1], yy[1], zz[1])
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pl.psty(2)
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pl.line3(xx[2], yy[2], zz[2])
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pl.fill3(xx[2], yy[2], zz[2])
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end
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----------------------------------------------------------------------------
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-- f2mnmx
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--
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-- Returns min & max of input 2d array.
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----------------------------------------------------------------------------
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function f2mnmx(f, nx, ny)
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fmax = f[1][1]
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fmin = fmax
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for i=1, nx do
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for j=1, ny do
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fmax = math.max(fmax, f[i][j])
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fmin = math.min(fmin, f[i][j])
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end
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end
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return fmin, fmax
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end
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----------------------------------------------------------------------------
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-- main
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--
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-- Does a variety of shade plots.
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----------------------------------------------------------------------------
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-- Parse and process command line arguments
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pl.parseopts(arg, pl.PL_PARSE_FULL)
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-- Set up color map 1
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cmap1_init2()
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-- Initialize plplot
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pl.init()
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-- Set up data array
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for i=1, XPTS do
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xx = ((i-1) - math.floor(XPTS/2))/math.floor(XPTS/2)
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z[i] = {}
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for j = 1, YPTS do
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yy = ((j-1) - math.floor(YPTS/2))/math.floor(YPTS/2) - 1
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z[i][j] = xx^2 - yy^2 + (xx - yy)/(xx^2+yy^2 + 0.1)
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end
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end
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zmin, zmax = f2mnmx(z, XPTS, YPTS)
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plot1()
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plot2()
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plot3()
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pl.plend()
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