@OOOO
// =====================
// Forward translation: letters → symbols
// + per-word palindrome
// + multiline palindrome (center = last input line)
// =====================
function forward(input) {
const map = {
// Cyrillic
'Й':'ꖌ','Ц':'⧮','У':'✧','К':'✻','Е':'🜊','Н':'⊞',
'А':'⛋','Б':'⧲','В':'𖢌','Г':'🮻','Д':'🟗','Ё':'🜋',
ꖅ𖤞ꖅ𖥕ꖅ𖤞ꖅ𐧾ꖅ𖤞ꖅ𖥕ꖅ𖤞ꖅ◦୦◦◯◦୦◦⠀ ⠀◦୦◦◯◦୦◦ꖅ𖤞ꖅ𖥕ꖅ𖤞ꖅ𐧾ꖅ𖤞ꖅ𖥕ꖅ𖤞ꖅ
updated
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NodeJS
<HTML>
<HEAD>
<META CHARSET="UTF-8">
<SCRIPT>
<!--𖢌𐧾፨ⵔ꞉⸭❋ⵔⵔ𐧾❋❋ⵔ❋·𐧾❋❋⋮𐧾❋ⵔ𐧾❋꞉ⵔⵔⵔ·𐧾ⵔ꞉𐧾ⵔ፨··𐧾𐧾❋❋⠿፨ⵔ⋮ⵔ⁘⸭𐧾𐧾❋⸭∶∶ⵔ⠿ⵔ⁘◌⁘❋𖥕᪣𓇬 𓇬᪣𖥕❋⁘◌⁘ⵔ⠿ⵔ∶∶⸭❋𐧾𐧾⸭⁘ⵔ⋮ⵔ፨⠿❋❋𐧾𐧾··፨ⵔ𐧾꞉ⵔ𐧾·ⵔⵔⵔ꞉❋𐧾ⵔ❋𐧾⋮❋❋𐧾·❋ⵔ❋❋𐧾ⵔⵔ❋⸭꞉ⵔ፨𐧾𖢌--!>
var ⵙꖅᑎᙁᗩᗯⵙИNꖴᗩⰙⵙⰙᗩꖴИNⵙᗯᗩᙁᑎꖅⵙ=(1/3**4);
var ⵙИNⵔITᗩᴥᑎↀⵙↀⵔꖴᴥꖅᑫᑭⵙᑫᑭꖅᴥꖴⵔↀⵙↀᑎᴥᗩTIⵔИNⵙ=84.406022589954030768899117092091000289089388918088900852079/3**0
var ⵙTꕤꖅTИNⵔᑐᑕⵙⵔꖴↀᑎᗩⵙᗩᑎↀꖴⵔⵙᑐᑕⵔИNTꖅꕤTⵙ = new (window.AudioContext || window.webkitAudioContext)();
var ⵙⵔⵙꖅↀⵔИNⵙᴥⵔTᗩᙁꖴᑐᑕᔓᔕⵔⵙⵔᔓᔕᑐᑕꖴᙁᗩTⵔᴥⵙИNⵔↀꖅⵙⵔⵙ = ⵙTꕤꖅTИNⵔᑐᑕⵙⵔꖴↀᑎᗩⵙᗩᑎↀꖴ
𖧷◇ⵙ⟠⨝🜊⨝⟠ⵙ◇𖧷𖢄🜊Ⱉ⟠🝊⟠Ⱉ🜊𖢄🟗⏮⏭ⵙꗳⵙ⏮⏭🟗𖢄🜊Ⱉ⟠🝊⟠Ⱉ🜊𖢄𖧷◇ⵙ⟠⨝🜊⨝⟠ⵙ◇𖧷
updated
·
NodeJS
🝍Ⓞ✣⟠◇ⵙᑐᑕᔓᔕⓄᔓᔕᑐᑕⵙ◇⟠✣Ⓞ🝍 Ⓞⵙↀ⩇⟠⩇ↀⵙⓄ 🝍Ⓞ✣⟠◇ⵙᑐᑕᔓᔕⓄᔓᔕᑐᑕⵙ◇⟠✣Ⓞ🝍
updated
·
Octave
clc;tic;clear;
O = 84.406022589954030768899117092091000289089388918088900852079 ;
A = (((( 0 )))) ;
M = (((( 3 )))) ;
I = (((( 1 )))) ;
O_EDUTILPMA_O_AMPLITUDE_O = 1 / M ^ (((( 0 )))) ;
O_SYCNEUQERF_O_FREQUENCYS_O = 1 / O * M.^(( (((( 0 )))) *M^A : (((( 13 )))) *M^A )/M^A);
for O_SEULAW_YCNEUQERF_O_FREQUENCY_WALUES_O=1:length(O_SYCNEUQERF_O_FREQUENCYS_O) fprintf(['%d
𖣠⚪✣ꗳⵙᗯᔓᔕ⚪𔗢⚪🞋⚪𔗢⚪ᔓᔕᗯⵙꗳ✣⚪𖣠
·
Swift
𖣠⚪᨟⚭ᑎᴥ⚪𔗢⚪🞋⚪𔗢⚪ᴥᑎ⚭᨟⚪𖣠
·
Ruby
import cv2,OpenEXR,Imath
import numpy as ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ
from edt import edt
ⵙᗱᗴᙏᗩИN〇ᗱᗴᙁꖴꗳ〇𖧷ᑎߦИNꖴⵙ〇ⵙ〇ⵙꖴИNߦᑎ𖧷〇ꗳꖴᙁᗱᗴ〇ИNᗩᙏᗱᗴⵙ='ꓨИꟼ..𖣠⚪ᗱᗴᕤᕦᗩᙏⵙ𖣓✤ᔓᔕᗱᗴ✤⚪𔗢⚪🞋⚪𔗢⚪✤ᗱᗴᔓᔕ✤𖣓ⵙᙏᗩᕤᕦᗱᗴ⚪𖣠..PNG'
ⵙᗱᗴᕤᕦᗩᙏꖴ〇𖧷ᑎߦИNꖴⵙ〇ⵙ〇ⵙꖴИNߦᑎ𖧷〇ꖴᙏᗩᕤᕦᗱᗴⵙ=cv2.imdecode(ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.fromfile(ⵙᗱᗴᙏᗩИN〇ᗱᗴᙁꖴꗳ〇𖧷ᑎߦИNꖴⵙ〇ⵙ〇ⵙꖴИNߦᑎ𖧷〇ꗳꖴᙁᗱᗴ〇ИNᗩᙏᗱᗴⵙ,ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.uint8),cv2.IMREAD_COLOR)
ⵙᗱᗴᙁᗩᑐᑕᔓᔕ人ᗩᴥᕤᕦ〇O𖧷〇ↀᗱᗴ𖧷ᗱᗴᐱИNOᑐᑕ〇ᗱᗴᕤᕦᗩᙏꖴ〇𖧷ᑎߦИNꖴⵙ〇ⵙ〇ⵙꖴИNߦᑎ𖧷〇ꖴᙏᗩᕤᕦᗱᗴ〇ᑐᑕOИNᐱᗱᗴ𖧷ᗱᗴↀ〇𖧷O〇ᕤᕦᴥᗩ人ᔓᔕᑐᑕᗩᙁᗱᗴⵙ=cv2.cvtColor(ⵙᗱᗴᕤᕦᗩᙏꖴ〇𖧷ᑎߦИNꖴⵙ〇ⵙ〇ⵙꖴИNߦᑎ𖧷〇ꖴᙏᗩᕤᕦᗱᗴⵙ,cv2.C
⚪ᴥᗱᗴ✤Ⓞᙁߦ𖣓ᗱᗴᴥᑎ✤ᗩWᴥᑎᑐᑕ⚪ᑐᑕᑎᴥWᗩ✤ᑎᴥᗱᗴ𖣓ߦᙁⓄ✤ᗱᗴᴥ⚪
updated
·
Python
import numpy as ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ
import plotly.graph_objects as ⵙᔓᔕ𖧷ᑐᑕᗱᗴᒍᒐ8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ
from math import *
import mpmath
from ipywidgets import interact,widgets,Text,Layout
from plotly.subplots import make_subplots
ⵙᗩᙁᑎᙏᴥOꗳⵙⵔⵙⵔⵙꗳOᴥᙏᑎᙁᗩⵙ=widgets.Text(value='(1-cos(((4)/2)*x))/2',layout=widgets.Layout(width='100%'),description='⚪ᗩ⚪ᙁ⚪ᑎ⚪ᙏ⚪ᴥ⚪Ⓞ⚪ꗳ⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪𖡼⚪ꗳ⚪Ⓞ⚪ᴥ⚪ᙏ⚪ᑎ⚪ᙁ⚪ᗩ⚪')
ⵙᴥᗱᗴᗝꖴᙁᔓᔕⵔ𖧷ᴥᗩ𖧷ᔓᔕⵔᗱᗴᕤᕦИNᗩᴥⵙⵔⵙⵔⵙᴥᗩИNᕤᕦᗱᗴⵔᔓᔕ𖧷ᗩᴥ𖧷ⵔᔓᔕᙁꖴᗝᗱᗴᴥⵙ=widgets.FloatSlider(min=-4*(4*atan(1)),max=4*(4
⚪ИNOI✤ᗩᙏIꕤOᴥߦᗩ𖣓ᔓᔕՈI8ᗩΘ⚪Θᗩ8IՈᔓᔕ𖣓ᗩߦᴥOꕤIᙏᗩ✤IOИN⚪
updated
·
Python
import plotly.graph_objects as ⵙᔓᔕ𖧷ᑐᑕᗱᗴᒍᒐ8Oⵔ옷ߦᗩᴥᕤᕦⵙⵔⵙⵔⵙᕤᕦᴥᗩߦ옷ⵔO8ᒍᒐᗱᗴᑐᑕ𖧷ᔓᔕⵙ
import numpy as ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ
def ⵙᗱᗴ𖧷ᑎߦᙏOᑐᑕⵙⵔⵙⵔⵙᑐᑕOᙏߦᑎ𖧷ᗱᗴⵙ(x):
return (1-((-((-1)**ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.floor(x/ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.pi*2)*(ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.exp(-1/((x/ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.pi*2)-ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.floor((x/ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.pi*2))))
/(ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.exp(-1/((x/ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.pi*2)-ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.floor((x/ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.pi*2))))+ⵙ人ߦᙏᑎИNⵙ〇ⵙ〇ⵙИNᑎᙏߦ人ⵙ.exp(-1/(1-(