선호하는 플로팅 도구를 사용하여 xkcd 그래프를 절차 적으로 재현


18

최근 꽤있어왔다 질문의 수 에 대한 레크 리 에이션XKCD 다음 하나 (같은 스타일의 그래프 1064 에서) 다양한 언어 .

http://xkcd.com/1064/

목표는 기존 xkcd 만화를 가능한 한 원본에 가깝게 재현하는 것입니다. 만화에는 최소한 하나의 간단한 그래프 나 원형 차트 또는 이와 유사한 요소가 있어야합니다.

첫 번째 유효한 답변 후 10 일이 지나지 않아 가장 높은 투표 응답이 승리 합니다.

항목에는 그래프 언어로 위에서 설명한대로 xkcd-comic을 표시하는 코드가 포함되어 있어야하며, 최소한 플로팅 도구 (Mathematica, MatLab 등)를 사용해야합니다.

  • 만화는 이미지로 저장되어서는 안되며 절차 적으로 생성되어야합니다.
  • 원본 웹 사이트, 웹 사이트의 미러 또는 하드 드라이브의 내용 등에 대한 링크가 없어야합니다.

투표는 결과와 솔루션의 아름다움에 대한 결과의 유사성을 평가해야합니다. 코드 골프는 없지만 가능한 한 짧고 간단한 해결책이 필요합니다.


3
대부분의 투표는 적절한 객관적인 승리 조건 이 아니며 부울 투표는 여러 요소를 다른 범위로 고려하는 방법은 무엇입니까? 이 질문은 코드 길이 또는 유사한 것으로 나눈 픽셀 당 평균 오류를 기반으로 객관적인 승리 조건을 가질 수 있다고 생각하지만, 사람들은 다른 스택에서 크게 반대되는 답변을 복사하여 붙여 넣기 만하면됩니다.
Peter Taylor

1
@PeterTaylor : 이것이 기존 xkcd 만화 여야한다고 지정한 이유 이므로 복사가 없습니다. 대부분의 upvotes 그렇지 않으면 거의 여기에서 문제를 찾을 것입니다, (나는 많은 것을 싫어하는 "최초의 솔루션"과 함께) 일반적으로 사용되는 기준 인 코드가 아닌 골프이다 (그리고 Golfscript로 승리되지 않음)
VSZ

답변:


8

찌르기입니다.

추신

[ 골프 질문이 아니기 때문에 삭제 된 횟수입니다. ]

xkcd1064

손으로 그린 ​​것처럼 보이도록 "스타일"섹션을 추가했습니다.

xkcd1064, 더 "손으로 그린"

편집 : Helvetica는 Courier보다 더 잘 응답합니다. 이 "스타일"섹션을 조정하고 향상 시켰습니다. 그리고 의견을 추가했습니다.

xkcd1064, 이전보다 훨씬 "손으로 그린"

%!

%futz with a coordinate pair
/f { 2 { rand 100 mod 100 div 1.47 mul
        dup .4 mul sub add
        exch } repeat } def

/op 2 array def %original point
/cp 2 array def %current point
/setcp { 2 copy cp astore pop } def %set current point
/difcp { cp aload pop %x' y' x y   %diff between cp and point on stack
    3 2 roll exch sub %x' x y'-y
    3 1 roll sub %y'-y x'-x
    exch %dx dy
} def
/scale2 { /n exch def  %scale two values
    n mul exch n mul exch
} def
/add2 {
    3 2 roll add
    3 1 roll add exch
} def
%futz with a path
/fpath {
    2 {
    %flattenpath
    % replace lines with curves
    [ { setcp cp op copy pop /moveto cvx }
        {
            %cp aload pop 4 2 roll 2 copy
            2 copy difcp %x3 y3 x30 y30
            2 copy 1 4 div scale2 %x3 y3 x30 y30 (1/3)x30 (1/3)y30
            cp aload pop add2 %x3 y3 x30 y30 x1 y1
            4 2 roll 3 4 div scale2 %x3 y3 x1 y1 (2/3)x30 (2/3)y30
            cp aload pop add2 %x3 y3 x1 y1 x2 y3
            6 4 roll %x1 y1 x2 y2 x3 y3
            setcp
            /curveto cvx }
        { setcp /curveto cvx }
        { op cp copy pop /closepath cvx } pathforall ] cvx newpath exec
    % chop the curves
    flattenpath
    % futz all the points
    [ { f
        /moveto cvx }
        { f
            /lineto cvx }
        { %f
            f 6 2 roll
            f 6 2 roll
            f 6 2 roll
            2 copy
            /curveto cvx
            3 1 roll
            3{f}repeat /lineto cvx % extra triple-futz'd line after each curve
        }
        { /closepath cvx } pathforall ] cvx newpath exec
    } repeat
} def

%futz with strokes
/oldstroke /stroke load def
/stroke { fpath oldstroke } def

%futz with fills
/oldfill /fill load def
/fill { fpath oldfill } def

%make sure rectstroke doesn't bypass being futzed with
/rectstroke {
    4 2 roll moveto
    1 index 0 rlineto
    0 exch rlineto
    neg 0 rlineto
    closepath
    stroke
} def

%futz with strings
%by making sure show uses our futz'd fill
/show { gsave currentpoint newpath moveto dup
    false charpath 1{fpath}repeat fill grestore stringwidth rmoveto } def

%fatter lines
1 setlinejoin %round joins
currentlinewidth 1.9 mul setlinewidth
%chop curves very small so there's lots of points for futzing
currentflat 6 div setflat

/Helvetica 10 selectfont

<<
/in{72 mul}
>>begin
1 in 1 in translate

0 0 6 in 4 in rectstroke
1 in 3 in moveto (WALKING BACK TO MY) show
1 in 2.8 in moveto (FRONT DOOR AT NIGHT:) show

36 3.5 in moveto
0 -2.8 in rlineto
5 in 0 rlineto
3.45 in .55 in moveto
0 20 rlineto
4.05 in .55 in moveto
0 20 rlineto
2.7 in .40 in moveto
(YARD  STEPS DOOR  INSIDE ) show
0 .05 in rmoveto
.4 in 0 rlineto
currentpoint
stroke
moveto
-10 3 rlineto
0 -6 rlineto fill

2.6 in .45 in moveto
-2 in 0 rlineto
currentpoint
stroke
moveto
10 3 rlineto
0 -6 rlineto fill

(FEAR) .9 in 2.3 in moveto show
(THAT THERE'S) .9 in 2.1 in moveto show
(SOMETHING) .9 in 1.9 in moveto show
(BEHIND ME) .9 in 1.7 in moveto show
1.8 in 1.86 in moveto
2 -26 rlineto
stroke

(FORWARD) 2.2 in 2.1 in moveto show
(SPEED) 2.2 in 1.9 in moveto show
2.75 in 2 in moveto
3 -13 rlineto
stroke

(EMBARRASSMENT) 4.5 in 2.5 in moveto show
4.6 in 2.65 in moveto
-2 20
-5 22
-27 25 rcurveto
stroke

.6 setgray %gray
40 1.6 in moveto
2.7 in 0
2.9 in 20
3.2 in 1.5 in rcurveto
10 20
20 20
30 0 rcurveto
15 -1.7 in
30 -1.8 in
1.4 in -2 in rcurveto
stroke

0 0 1 setrgbcolor %blue
40 1.2 in moveto
.9 in 27
.8 in 20
1.4 in 21 rcurveto
1 in -20
1.2 in 6
1.3 in 1.6 in rcurveto
    10 20
    20 20
    30 0 rcurveto
15 -1.8 in
30 -1.9 in
1.8 in -2.1 in rcurveto
stroke

1 0 0 setrgbcolor %red
40 .9 in moveto
3.3 in 0
3.5 in 20
3.6 in 1.5 in rcurveto
10 72
20 80
30 80 rcurveto
.7 in -10
.3 in -35
1.1 in -40 rcurveto
stroke

%thank you for scrolling all the way down to here. :)

"손으로 그린"양식을 추가 할 수 있습니까? :)
Sam Ax

예. 나는 처음에 그 측면을 완전히 간과했다. 그런 다음 링크를 따라갈 때 완전히 압도되었습니다. 뚱뚱한 선은 더 커서는 안됩니다. 그리고 Casselman으로부터 경로를 해석하는 방법이 있습니다. 만약 제가 그 수학 변환을 이해할 수 있다면, 그것들을 복제 할 수 있어야합니다. 내가 생각했던 것보다 훨씬 더 큰 일.
luser droog

이러한 특성이 없어도 매우 좋은 직업입니다.
Sam Ax

그리고 스타일링에 대한 훌륭한 일!
Sam Ax

7

HTML5

@font-face {
  font-family: 'Humor Sans';
  font-style: normal;
  font-weight: 400;
  src: local('Humor Sans'), local('Humor Sans-Regular'), 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<title>Front Door ( from xkcd.com 1064 )</title>
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<body><h1>Front Door <div class="h1d">( from xkcd.com 1064 )</div></h1>
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    <tspan x="100.15588" y="48.485607" id="tspan7010">WALKING BACK TO MY</tspan>
    <tspan x="100.15588" y="65.285591" id="tspan7012">FRONT DOOR AT NIGHT:</tspan></text>
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    <tspan x="0.23551519" y="0.22564805">ThAT there's</tspan>
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    <tspan x="0.23551519" y="0.2723147">behing me</tspan></text>
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    <tspan x="0.52267832" y="0.46812996">door</tspan>
    <tspan x="0.58878779" y="0.46812996">inside</tspan></text>
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    <tspan x="0.63905853" y="0.20506927">emBARRASSMENT</tspan></text>
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</body></html>


4

파이썬

matplotlib에서 약간 cheat-y xkcd 메소드를 사용합니다.

import numpy as np
import matplotlib.pyplot as plt
from scipy.ndimage.filters import gaussian_filter1d

plt.xkcd()

x = np.linspace(0,10,1000)
unit = np.linspace(0,1,100)

speed = np.r_[np.ones(500)*3,3+5*unit**4.,np.ones(100)*8,1+7*unit[::-1]**2,np.ones(200)]
speed = gaussian_filter1d(speed,18)

fear = np.r_[np.linspace(0.5,2,450),2+6*unit**4,np.ones(100)*8,8*unit[::-1]**2,np.zeros(250)+0.1]
fear = gaussian_filter1d(fear,18)
fear_gauss_bump = 0.8*np.exp(-np.power(x-2.5,2.)/(2*np.power(1, 2.)))
fear += fear_gauss_bump

embarrassment = np.r_[np.zeros(600)+0.1, 9.5*unit**2, 9.5-np.linspace(0,1.5,300)]
embarrassment = gaussian_filter1d(embarrassment,60)

plt.figure(figsize=(12,6))
plt.plot(x,speed,c="gray")
plt.plot(x,fear,c="#1E9FDB")
plt.plot(x,embarrassment,c="r")

plt.plot([2.5,2.7],[3.9,2.3],c='k')
plt.plot([4.3,4.5],[3.6,3.1],c='k')
plt.plot(np.linspace(7.3,7.8,15),(0.25-(np.linspace(7.3,7.8,15)-7.3)**2)**0.5+7,c='k')

ax = plt.gca()
ax.spines['top'].set_visible(False)
ax.spines['right'].set_visible(False)
ax.get_xaxis().tick_bottom()
ax.get_yaxis().tick_left()
#plt.ylim([0,10])
ax.set_xticks([6,7])
ax.set_xticklabels(["STEPS","DOOR"])
ax.set_yticks([])

ax.text(2,4,"FEAR\nTHAT THERE'S\nSOMETHING\nBEHIND ME",horizontalalignment='center')
ax.text(3.9,3.4,"FORWARD\nSPEED",horizontalalignment='center')
ax.text(7.4,6.6,"EMBARRASSMENT")
ax.text(1,8,"WALKING BACK TO MY\nFRONT DOOR AT NIGHT:",bbox={'facecolor':'none', 'edgecolor':'black'})
ax.annotate("YARD", xy=(0.5,-0.3), xytext=(4.5,-0.4),annotation_clip=False,arrowprops={'facecolor':'black', 'shrink':0.01, 'width':0.5})
ax.annotate("INSIDE", xy=(10,-0.3), xytext=(7.5,-0.4),annotation_clip=False,arrowprops={'facecolor':'black', 'shrink':0.01, 'width':0.5})

plt.show()

여기에 이미지 설명을 입력하십시오

당사 사이트를 사용함과 동시에 당사의 쿠키 정책개인정보 보호정책을 읽고 이해하였음을 인정하는 것으로 간주합니다.
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