349 lines
12 KiB
JavaScript
349 lines
12 KiB
JavaScript
/**
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* Logarithm Graph Creator - Create graphs with logarithm scales.
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* Copyright (C) 2020 Ad5001
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program 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 General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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.pragma library
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var powerpos = {
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"-": "⁻",
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"+": "⁺",
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"=": "⁼",
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" ": " ",
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"(": "⁽",
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")": "⁾",
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"0": "⁰",
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"1": "¹",
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"2": "²",
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"3": "³",
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"4": "⁴",
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"5": "⁵",
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"6": "⁶",
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"7": "⁷",
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"8": "⁸",
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"9": "⁹",
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"a": "ᵃ",
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"b": "ᵇ",
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"c": "ᶜ",
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"d": "ᵈ",
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"e": "ᵉ",
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"f": "ᶠ",
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"g": "ᵍ",
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"h": "ʰ",
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"i": "ⁱ",
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"j": "ʲ",
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"k": "ᵏ",
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"l": "ˡ",
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"m": "ᵐ",
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"n": "ⁿ",
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"o": "ᵒ",
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"p": "ᵖ",
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"r": "ʳ",
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"s": "ˢ",
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"t": "ᵗ",
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"u": "ᵘ",
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"v": "ᵛ",
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"w": "ʷ",
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"x": "ˣ",
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"y": "ʸ",
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"z": "ᶻ"
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}
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var indicepos = {
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"-": "₋",
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"+": "₊",
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"=": "₌",
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"(": "₍",
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")": "₎",
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" ": " ",
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"0": "₀",
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"1": "₁",
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"2": "₂",
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"3": "₃",
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"4": "₄",
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"5": "₅",
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"6": "₆",
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"7": "₇",
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"8": "₈",
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"9": "₉",
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"a": "ₐ",
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"e": "ₑ",
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"h": "ₕ",
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"i": "ᵢ",
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"j": "ⱼ",
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"k": "ₖ",
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"l": "ₗ",
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"m": "ₘ",
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"n": "ₙ",
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"o": "ₒ",
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"p": "ₚ",
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"r": "ᵣ",
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"s": "ₛ",
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"t": "ₜ",
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"u": "ᵤ",
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"v": "ᵥ",
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"x": "ₓ",
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}
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// Put a text in sup position
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function textsup(text) {
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var ret = ""
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text = text.toString()
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for (var i = 0; i < text.length; i++) {
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if(Object.keys(powerpos).indexOf(text[i]) >= 0) {
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ret += powerpos[text[i]]
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} else {
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ret += text[i]
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}
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}
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return ret
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}
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// Put a text in sub position
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function textsub(text) {
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var ret = ""
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text = text.toString()
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for (var i = 0; i < text.length; i++) {
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if(Object.keys(indicepos).indexOf(text[i]) >= 0) {
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ret += indicepos[text[i]]
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} else {
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ret += text[i]
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}
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}
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return ret
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}
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function simplifyExpression(str) {
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var replacements = [
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// Operations not done by parser.
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[// Decomposition way 2
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/(^.?|[+-] |\()([-.\d\w]+) ([*/]) \((([-.\d\w] [*/] )?[-\d\w.]+) ([+\-]) (([-.\d\w] [*/] )?[\d\w.+]+)\)(.?$| [+-]|\))/g,
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"$1$2 $3 $4 $6 $2 $3 $7$9"
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],
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[ // Decomposition way 2
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/(^.?|[+-] |\()\((([-.\d\w] [*/] )?[-\d\w.]+) ([+\-]) (([-.\d\w] [*/] )?[\d\w.+]+)\) ([*/]) ([-.\d\w]+)(.?$| [+-]|\))/g,
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"$1$8 $7 $2 $4 $8 $7 $5$9"
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],
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[ // Factorisation of π elements.
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/(([-\d\w.]+ [*/] )*)(pi|π)(( [/*] [-\d\w.]+)*) ([+-]) (([-\d\w.]+ [*/] )*)(pi|π)(( [/*] [-\d\w.]+)*)?/g,
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function(match, m1, n1, pi1, m2, ope2, n2, opeM, m3, n3, pi2, m4, ope4, n4) {
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// g1, g2, g3 , g4, g5, g6, g7, g8, g9, g10, g11,g12 , g13
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// We don't care about mx & pix, ope2 & ope4 are either / or * for n2 & n4.
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// n1 & n3 are multiplied, opeM is the main operation (- or +).
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// Putting all n in form of number
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//n2 = n2 == undefined ? 1 : parseFloat(n)
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n1 = m1 == undefined ? 1 : eval(m1 + '1')
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n2 = m2 == undefined ? 1 : eval('1' + m2)
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n3 = m3 == undefined ? 1 : eval(m3 + '1')
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n4 = m4 == undefined ? 1 : eval('1' + m4)
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//var [n1, n2, n3, n4] = [n1, n2, n3, n4].map(n => n == undefined ? 1 : parseFloat(n))
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// Falling back to * in case it does not exist (the corresponding n would be 1)
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var [ope2, ope4] = [ope2, ope4].map(ope => ope == '/' ? '/' : '*')
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var coeff1 = n1*n2
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var coeff2 = n3*n4
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var coefficient = coeff1+coeff2-(opeM == '-' ? 2*coeff2 : 0)
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return `${coefficient} * π`
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}
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],
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[ // Removing parenthesis when content is only added from both sides.
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/(^.?|[+-] |\()\(([^)(]+)\)(.?$| [+-]|\))/g,
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function(match, b4, middle, after) {return `${b4}${middle}${after}`}
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],
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[ // Removing parenthesis when content is only multiplied.
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/(^.?|[*\/] |\()\(([^)(+-]+)\)(.?$| [*\/+-]|\))/g,
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function(match, b4, middle, after) {return `${b4}${middle}${after}`}
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],
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[ // Removing parenthesis when content is only multiplied.
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/(^.?|[*\/-+] |\()\(([^)(+-]+)\)(.?$| [*\/]|\))/g,
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function(match, b4, middle, after) {return `${b4}${middle}${after}`}
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],
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[// Simplification additions/substractions.
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/(^.?|[^*\/] |\()([-.\d]+) (\+|\-) (\([^)(]+\)|[^)(]+) (\+|\-) ([-.\d]+)(.?$| [^*\/]|\))/g,
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function(match, b4, n1, op1, middle, op2, n2, after) {
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var total
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if(op2 == '+') {
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total = parseFloat(n1) + parseFloat(n2)
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} else {
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total = parseFloat(n1) - parseFloat(n2)
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}
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return `${b4}${total} ${op1} ${middle}${after}`
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}
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],
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[// Simplification multiplications/divisions.
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/([-.\d]+) (\*|\/) (\([^)(]+\)|[^)(+-]+) (\*|\/) ([-.\d]+)/g,
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function(match, n1, op1, middle, op2, n2) {
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if(parseInt(n1) == n1 && parseInt(n2) == n2 && op2 == '/' &&
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(parseInt(n1) / parseInt(n2)) % 1 != 0) {
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// Non int result for int division.
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return `(${n1} / ${n2}) ${op1} ${middle}`
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} else {
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if(op2 == '*') {
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return `${parseFloat(n1) * parseFloat(n2)} ${op1} ${middle}`
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} else {
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return `${parseFloat(n1) / parseFloat(n2)} ${op1} ${middle}`
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}
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}
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}
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],
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[// Starting & ending parenthesis if not needed.
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/^\((.*)\)$/g,
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function(match, middle) {
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var str = middle
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// Replace all groups
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while(/\([^)(]+\)/g.test(str))
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str = str.replace(/\([^)(]+\)/g, '')
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// There shouldn't be any more parenthesis
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// If there is, that means the 2 parenthesis are needed.
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if(!str.includes(')') && !str.includes('(')) {
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return middle
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} else {
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return `(${middle})`
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}
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}
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],
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// Simple simplifications
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[/(\s|^|\()0(\.0+)? \* (\([^)(]+\))/g, '$10'],
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[/(\s|^|\()0(\.0+)? \* ([^)(+-]+)/g, '$10'],
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[/(\([^)(]\)) \* 0(\.0+)?(\s|$|\))/g, '0$3'],
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[/([^)(+-]) \* 0(\.0+)?(\s|$|\))/g, '0$3'],
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[/(\s|^|\()1(\.0+)? (\*|\/) /g, '$1'],
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[/(\s|^|\()0(\.0+)? (\+|\-) /g, '$1'],
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[/ (\*|\/) 1(\.0+)?(\s|$|\))/g, '$3'],
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[/ (\+|\-) 0(\.0+)?(\s|$|\))/g, '$3'],
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[/(^| |\() /g, '$1'],
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[/ ($|\))/g, '$1'],
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]
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// Replacements
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var found
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do {
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found = false
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for(var replacement of replacements)
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while(replacement[0].test(str)) {
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found = true
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str = str.replace(replacement[0], replacement[1])
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}
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} while(found)
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return str
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}
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function makeExpressionReadable(str) {
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var replacements = [
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// variables
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[/pi/g, 'π'],
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[/Infinity/g, '∞'],
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[/inf/g, '∞'],
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// Other
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[/ \* /g, '×'],
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[/ \^ /g, '^'],
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[/\^\(([^\^]+)\)/g, function(match, p1) { return textsup(p1) }],
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[/\^([^ "]+)/g, function(match, p1) { return textsup(p1) }],
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[/_\(([^_]+)\)/g, function(match, p1) { return textsub(p1) }],
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[/_([^ "]+)/g, function(match, p1) { return textsub(p1) }],
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[/\[([^\[\]]+)\]/g, function(match, p1) { return textsub(p1) }],
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[/(\d|\))×/g, '$1'],
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//[/×(\d|\()/g, '$1'],
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[/\(([^)(+.\/-]+)\)/g, "$1"],
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[/integral\((.+), ?(.+), ?("|')(.+)("|'), ?("|')(.+)("|')\)/g, function(match, a, b, p1, body, p2, p3, by, p4) {
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if(a.length < b.length) {
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return `∫${textsub(a)}${textsup(b)} ${body} d${by}`
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} else {
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return `∫${textsup(b)}${textsub(a)} ${body} d${by}`
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}
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}],
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[/derivative\(?("|')(.+)("|'), ?("|')(.+)("|'), ?(.+)\)?/g, function(match, p1, body, p2, p3, by, p4, x) {
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return `d(${body.replace(new RegExp(by, 'g'), 'x')})/dx`
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}]
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]
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str = simplifyExpression(str)
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// Replacements
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for(var replacement of replacements)
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while(replacement[0].test(str))
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str = str.replace(replacement[0], replacement[1])
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return str
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}
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function parseName(str, removeUnallowed = true) {
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var replacements = [
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// Greek letters
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[/([^a-z]|^)al(pha)?([^a-z]|$)/g, '$1α$3'],
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[/([^a-z]|^)be(ta)?([^a-z]|$)/g, '$1β$3'],
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[/([^a-z]|^)ga(mma)?([^a-z]|$)/g, '$1γ$3'],
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[/([^a-z]|^)de(lta)?([^a-z]|$)/g, '$1δ$3'],
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[/([^a-z]|^)ep(silon)?([^a-z]|$)/g, '$1ε$3'],
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[/([^a-z]|^)ze(ta)?([^a-z]|$)/g, '$1ζ$3'],
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[/([^a-z]|^)et(a)?([^a-z]|$)/g, '$1η$3'],
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[/([^a-z]|^)th(eta)?([^a-z]|$)/g, '$1θ$3'],
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[/([^a-z]|^)io(ta)?([^a-z]|$)/g, '$1ι$3'],
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[/([^a-z]|^)ka(ppa)([^a-z]|$)?/g, '$1κ$3'],
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[/([^a-z]|^)la(mbda)?([^a-z]|$)/g, '$1λ$3'],
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[/([^a-z]|^)mu([^a-z]|$)/g, '$1μ$2'],
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[/([^a-z]|^)nu([^a-z]|$)/g, '$1ν$2'],
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[/([^a-z]|^)xi([^a-z]|$)/g, '$1ξ$2'],
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[/([^a-z]|^)rh(o)?([^a-z]|$)/g, '$1ρ$3'],
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[/([^a-z]|^)si(gma)?([^a-z]|$)/g, '$1σ$3'],
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[/([^a-z]|^)ta(u)?([^a-z]|$)/g, '$1τ$3'],
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[/([^a-z]|^)up(silon)?([^a-z]|$)/g, '$1υ$3'],
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[/([^a-z]|^)ph(i)?([^a-z]|$)/g, '$1φ$3'],
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[/([^a-z]|^)ch(i)?([^a-z]|$)/g, '$1χ$3'],
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[/([^a-z]|^)ps(i)?([^a-z]|$)/g, '$1ψ$3'],
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[/([^a-z]|^)om(ega)?([^a-z]|$)/g, '$1ω$3'],
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// Capital greek letters
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[/([^a-z]|^)gga(mma)?([^a-z]|$)/g, '$1Γ$3'],
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[/([^a-z]|^)gde(lta)?([^a-z]|$)/g, '$1Δ$3'],
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[/([^a-z]|^)gth(eta)?([^a-z]|$)/g, '$1Θ$3'],
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[/([^a-z]|^)gla(mbda)?([^a-z]|$)/g, '$1Λ$3'],
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[/([^a-z]|^)gxi([^a-z]|$)/g, '$1Ξ$2'],
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[/([^a-z]|^)gpi([^a-z]|$)/g, '$1Π$2'],
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[/([^a-z]|^)gsi(gma)([^a-z]|$)?/g, '$1Σ$3'],
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[/([^a-z]|^)gph(i)?([^a-z]|$)/g, '$1Φ$3'],
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[/([^a-z]|^)gps(i)?([^a-z]|$)/g, '$1Ψ$3'],
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[/([^a-z]|^)gom(ega)?([^a-z]|$)/g, '$1Ω$3'],
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// Underscores
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[/_\(([^_]+)\)/g, function(match, p1) { return textsub(p1) }],
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[/_([^" ]+)/g, function(match, p1) { return textsub(p1) }],
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// Array elements
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[/\[([^\]\[]+)\]/g, function(match, p1) { return textsub(p1) }],
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// Removing
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[/[xπℝℕ\\∪∩\]\[ ()^/÷*×+=\d-]/g , ''],
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]
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if(!removeUnallowed) replacements.pop()
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// Replacements
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for(var replacement of replacements)
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str = str.replace(replacement[0], replacement[1])
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return str
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}
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String.prototype.toLatinUppercase = function() {
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return this.replace(/[a-z]/g, function(match){return match.toUpperCase()})
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}
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function camelCase2readable(label) {
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var parsed = parseName(label, false)
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return parsed.charAt(0).toLatinUppercase() + parsed.slice(1).replace(/([A-Z])/g," $1")
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}
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function getRandomColor() {
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var clrs = '0123456789ABCDEF';
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var color = '#';
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for(var i = 0; i < 6; i++) {
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color += clrs[Math.floor(Math.random() * (16-5*(i%2==0)))];
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}
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return color;
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}
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