Merge branch 'master' of https://git.ad5001.eu/Ad5001/LogarithmPlotter
This commit is contained in:
commit
add2ab42a7
5 changed files with 217 additions and 29 deletions
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@ -1,5 +1,7 @@
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// https://silentmatt.com/javascript-expression-evaluator/
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.pragma library
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var INUMBER = 'INUMBER';
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var IOP1 = 'IOP1';
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var IOP2 = 'IOP2';
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@ -20,6 +20,8 @@
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.import "reference.js" as Reference
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const DERIVATION_PRECISION = 0.01
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const OPERATION_PRIORITY = {
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"+": 10, "-": 10,
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"*": 20, "/": 20
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@ -32,7 +34,8 @@ enum ASEType {
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STRING,
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FUNCTION,
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CONSTANT,
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OPERATION
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OPERATION,
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NEGATION // Example: -x.
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}
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class AbstractSyntaxElement {
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@ -44,7 +47,7 @@ class AbstractSyntaxElement {
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simplify() {
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return this;
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}
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derivative(variable) {
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derivate(variable) {
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return this;
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}
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integrate(variable) {
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@ -76,7 +79,7 @@ class Variable extends AbstractSyntaxElement {
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}
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}
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derivative(variable) {
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derivate(variable) {
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if(variable == this.varName)
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return new NumberElement(1);
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return this;
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@ -157,7 +160,7 @@ class Constant extends Variable {
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}
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}
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derivative(variable) {
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derivate(variable) {
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if(variable == this.varName)
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return new NumberElement(0);
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return this;
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@ -187,7 +190,7 @@ class NumberElement extends AbstractSyntaxElement {
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this.value = parseFloat(number);
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}
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derivative(variable) {
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derivate(variable) {
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return new NumberElement(0);
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}
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@ -219,7 +222,7 @@ class StringElement extends AbstractSyntaxElement {
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return this.str
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}
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derivative(variable) {
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derivate(variable) {
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return this;
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}
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@ -249,7 +252,11 @@ class FunctionElement extends AbstractSyntaxElement {
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}
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execute(variables) {
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if(Reference.FUNCTIONS_LIST.includes(this.function)) {
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if(this.function == "derivate") {
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return executeDerivative(variables)
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} else if(this.function == "integrate") {
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return executeIntegral(variables)
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} else if(Reference.FUNCTIONS_LIST.includes(this.function)) {
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let args = this.args.map(arg => arg.execute(variables));
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return Reference.FUNCTIONS[this.function](...args);
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} else {
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@ -257,6 +264,63 @@ class FunctionElement extends AbstractSyntaxElement {
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}
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}
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executeDerivative(variables) {
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// Calculate derivation.
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if(this.args.length == 2)
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if(this.args[1] instanceof Variable) {
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let d = this.args[1].varName; // derivative variable name.
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if(Object.keys(variables).includes(d)) {
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let plus = this.args[0].execute(Object.assign({}, variables, {d: variables[d]+DERIVATION_PRECISION/2}));
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let min = this.args[0].execute(Object.assign({}, variables, {d: variables[d]-DERIVATION_PRECISION/2}));
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return (plus-min)/DERIVATION_PRECISION
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} else
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throw new EvalError("Undefined variable " + d + ".");
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} else
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throw new EvalError(`Argument 1 of function derivate must be a variable.`)
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else
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throw new EvalError(`Function 'derivate' can only have 2 arguments. ${this.args.length} provided.`)
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}
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executeIntegral(variables) {
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// Calculate integral.
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// Using simons rule
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// https://en.wikipedia.org/wiki/Simpson%27s_rule
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let d, f, a, b;
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if(this.args.length == 2)
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// Integral(f,var) integral of f by var.
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if(this.args[1] instanceof Variable)
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if(Object.keys(variables).includes(d)) {
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d = this.args[1].varName; // derivative variable name.
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if(!Object.keys(variables).includes(d))
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throw new EvalError("Undefined variable " + d + ".")
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a = 0;
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b = variables[d];
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f = this.args[0].execute;
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} else
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else
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throw new EvalError(`Argument 2 of function derivate must be a variable.`)
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else if(this.args.length == 4)
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// Integral(a,b,f,var) integral from a to b of f by var.
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if(this.args[3] instanceof Variable)
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if(Object.keys(variables).includes(d)) {
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a = this.args[0].execute(variables);
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b = this.args[1].execute(variables);
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f = this.args[2].execute;
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d = this.args[3].varName; // derivative variable name.
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if(!Object.keys(variables).includes(d))
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throw new EvalError("Undefined variable " + d + ".");
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}
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else
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throw new EvalError(`Argument 4 of function derivate must be a variable.`)
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else
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throw new EvalError(`Function 'derivate' can only have 2 or 4 arguments. ${this.args.length} provided.`)
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// (b-a)/6*(f(a)+4*f((a+b)/2)+f(b))
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let f_a = f(Object.assign({}, variables, {d: a})), f_b = f(Object.assign({}, variables, {d: b}));
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let f_m = f(Object.assign({}, variables, {d: (a+b)/2}))
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return (b-a)/6*(f_a+4*f_m+f_b);
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}
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simplify() {
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let args = this.args.map(arg => arg.simplify(variables));
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let newFunc = new FunctionElement(this.function, args);
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@ -268,14 +332,14 @@ class FunctionElement extends AbstractSyntaxElement {
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}
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}
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derivative(variable) {
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derivate(variable) {
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//TODO: Use DERIVATIVES elements in reference.
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return new FunctionElement("derivative", this.toEditableString());
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return new FunctionElement("derivate", this, variable);
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}
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integrate(variable) {
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//TODO: Use INTEGRALS elements in reference.
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return new FunctionElement("integrate", this.toEditableString());
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return new FunctionElement("integrate", this, variable);
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}
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toEditableString() {
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@ -298,6 +362,11 @@ class FunctionElement extends AbstractSyntaxElement {
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}
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isConstant() {
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if(this.function == "derivate")
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return this.args[0].isConstant();
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else if(this.function == "integrate")
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return this.args.length == 4 && this.args[0].isConstant() && this.args[1].isConstant() && this.args[2].isConstant();
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else
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return this.args.every(x => x.isConstant());
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}
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}
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@ -334,7 +403,7 @@ class Operation extends AbstractSyntaxElement {
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let leftHand = this.leftHand.simplify();
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let rightHand = this.rightHand.simplify();
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let newOpe = new Operation(leftHand, this.ope, rightHand);
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if(leftHand.type == ASEType.NUMBER && rightHand.type == ASEType.NUMBER && Math.abs(newOpe.value) < 1000000) {
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if(leftHand.isConstant() && rightHand.isConstant() && Math.abs(newOpe.execute({})) < 1000000) {
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// Do not simplify to too big numbers
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switch(this.ope) {
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case '+':
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@ -342,10 +411,10 @@ class Operation extends AbstractSyntaxElement {
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case '*':
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case '^':
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case '%':
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return new NumberElement(newOpe.value);
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return new NumberElement(newOpe.execute({}));
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case '/':
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if(result % 1 == 0)
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return new NumberElement(newOpe.value);
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return new NumberElement(newOpe.execute({}));
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else {
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let simplified = simplifyFraction(leftHand.number, rightHand.number)
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return new Operation(new NumberElement(simplified[0]), '/', new NumberElement(simplified[1]))
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@ -370,7 +439,7 @@ class Operation extends AbstractSyntaxElement {
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case '*':
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if((leftHand.type == ASEType.NUMBER && leftHand.value == 0) || (rightHand.type == ASEType.NUMBER && rightHand.value == 0))
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return new NumberElement(0);
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else if(leftHand.type == ASEType.NUMBER && leftHand.value == 0)
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else if(leftHand.type == ASEType.NUMBER && leftHand.value == 1)
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return rightHand;
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else if(rightHand.type == ASEType.NUMBER && rightHand.value == 1)
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return leftHand;
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@ -396,26 +465,30 @@ class Operation extends AbstractSyntaxElement {
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}
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}
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derivative(variable) {
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derivate(variable) {
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switch(this.ope) {
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case '-':
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case '+':
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return new Operation(this.leftHand.derivative(variable), this.ope, this.rightHand.derivative(variable));
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return new Operation(this.leftHand.derivate(variable), this.ope, this.rightHand.derivate(variable));
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case '*':
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return new Operation(
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new Operation(this.leftHand.derivative(variable), '*', this.rightHand),
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new Operation(this.leftHand, '*', this.rightHand.derivate(variable)),
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'+',
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new Operation(this.leftHand, '*', this.rightHand.derivative(variable))
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new Operation(this.leftHand.derivate(variable), '*', this.rightHand),
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);
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case '/':
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return new Operation(
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new Operation(this.leftHand.derivative(variable), '*', this.rightHand),
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'+',
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new Operation(this.leftHand, '*', this.rightHand.derivative(variable))
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new Operation(
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new Operation(this.leftHand, '*', this.rightHand.derivate(variable)),
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'-',
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new Operation(this.leftHand.derivate(variable), '*', this.rightHand),
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),
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'/',
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new Operation(this.rightHand, '^', new NumberElement(2))
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);
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case '^':
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case '%':
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return new FunctionElement("integrate", this.toEditableString());
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return new FunctionElement("derivate", this.toEditableString());
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default:
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throw new EvalError("Unknown operator " + ope + ".");
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}
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@ -428,15 +501,15 @@ class Operation extends AbstractSyntaxElement {
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return new Operation(this.leftHand.integrate(variable), this.ope, this.rightHand.integrate(variable));
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case '*':
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return new Operation(
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new Operation(this.leftHand.derivative(variable), '*', this.rightHand),
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new Operation(this.leftHand.derivate(variable), '*', this.rightHand),
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'+',
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new Operation(this.leftHand, '*', this.rightHand.derivative(variable))
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new Operation(this.leftHand, '*', this.rightHand.derivate(variable))
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);
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case '/':
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return new Operation(
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new Operation(this.leftHand.derivative(variable), '*', this.rightHand),
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new Operation(this.leftHand.derivate(variable), '*', this.rightHand),
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'+',
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new Operation(this.leftHand, '*', this.rightHand.derivative(variable))
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new Operation(this.leftHand, '*', this.rightHand.derivate(variable))
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);
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case '^':
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case '%':
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@ -501,4 +574,90 @@ function simplifyFraction(num,den) {
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return [num*mult/gcd, den*mult/gcd]
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}
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class Negation extends AbstractSyntaxElement {
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type = ASEType.NEGATION;
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constructor(variableName) {
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this.varName = variableName;
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}
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execute(variables) {
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if(variables.includes(this.varName)) {
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return variables[this.varName];
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} else {
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throw new EvalError("Unknown variable " + this.varName + ".");
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}
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}
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derivate(variable) {
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if(variable == this.varName)
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return new NumberElement(1);
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return this;
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}
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integrate(variable) {
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if(variable == this.varName)
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// <var>^2/2
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return new Operation(new Operation(this, '^', new NumberElement(2)), '/', new NumberElement(2));
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return this;
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}
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toEditableString() {
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return this.varName;
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}
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toLatex() {
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return this.varName;
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}
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isConstant() {
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return false;
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}
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}
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class Negation extends AbstractSyntaxElement {
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type = ASEType.NEGATION;
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constructor(expression) {
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this.expression = expression;
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}
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execute(variables) {
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if(variables.includes(this.arrayName)) {
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let index = this.astIndex.execute(variables)
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if(index % 1 != 0 || index < 0) { // Float index.
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throw new EvalError("Non-integer array index " + index + " used as array index for " + this.varName + ".");
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} else if(variables[this.arrayName].length <= index) {
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throw new EvalError("Out-of-range index " + index + " used as array index for " + this.varName + ".");
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} else {
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return variables[this.arrayName][index];
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}
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} else {
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throw new EvalError("Unknown variable " + this.varName + ".");
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}
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toLatex() {
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return this.varName;
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}
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}
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simplify() {
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return new Negation(this.expression.simplify());
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}
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derivate(variable) {
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return new Negation(this.expression.derivate(variable));
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}
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integrate(variable) {
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return new Negation(this.expression.integrate(variable));
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}
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toLatex() {
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return '-' + this.expression.toLatex();
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}
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isConstant() {
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return this.expression.isConstant();
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}
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}
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@ -18,3 +18,30 @@
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.pragma library
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import "ast.js" as AST
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import "tokenizer.js" as TK
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class ExpressionBuilder {
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constructor(tokenizer) {
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this.tokenizer = tokenizer;
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}
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parseExpression(delimitors = '') {
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// Parse a sequence of operations, and orders them based on OPERATION_PRIORITY.
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let elements = []
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let operators = []
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let firstToken = this.tokenizer.peek();
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if(firstToken.type == TK.TokenType.OPERATOR) // First operations.
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if(firstToken.value == "-") {
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// TODO: Set initial argument.
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this.tokenizer.skip(TK.TokenType.OPERATOR)
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} else
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tokenizer.input.raise(`Invalid operator ${firstToken.value} at begining of statement.`)
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else {
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}
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}
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parseOperation()`
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}
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|
|
|
@ -63,7 +63,7 @@ const FUNCTIONS = {
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"sqrt": Math.sqrt,
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"tan": Math.tan,
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"tanh": Math.tanh,
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"trunc": Math.trunc
|
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"trunc": Math.trunc,
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}
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const FUNCTIONS_LIST = Object.keys(FUNCTIONS);
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// TODO: Complete
|
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|
|
|
@ -7,7 +7,7 @@ description: |
|
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It's primary use is to quickly create [asymptotic Bode plots](https://en.wikipedia.org/wiki/Bode_plot), but it's extensible nature and ability to switch to non-logarithmic scales allow it to create other things with it, like sequences or statistical repartition functions.
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confinement: strict
|
||||
base: core20
|
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grade: devel
|
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grade: stable
|
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icon: LogarithmPlotter/logarithmplotter.svg
|
||||
adopt-info: linuxfiles
|
||||
license: GPL-3.0+
|
||||
|
|
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Reference in a new issue