Prism Helper

Tokens

Token Example
keyword
import { stuff } from 'some/where.js';
builtin
pi = round(float('3.14159'), 2)
class-name
class Wizard extends Human { /* ... */ }
function
function helloGrumpy(name) { /* ... */ }
helloGrumpy('Wizard');
parameter
function helloGrumpy(name) { /* ... */ }
boolean
const wizardsLikeBeer = false;
number
const favouriteNumber = 3.14159;
string
const hiGrumpy = 'Hi Grumpy!';
template-string, template-punctuation
const hiGrumpy = `Hi Grumpy!`;
interpolation, interpolation-punctuation
console.log(`Hi there ${name}.`);
char
symbol
regex
let entity = /&#x?[\da-f]{1,8};/;
url
body { background: url("wizard.png"); }
operator
x += (y + 4 >> -z === w) ? b ** c : ~a;
variable
DECLARE @MyCounter INT;
constant
const PI = 3.14159;
property
.grumpy > img { height: 100%; }
punctuation
import { stuff } from 'some/where.js';
important
.grumpy > img { height: 100% !important; }
comment
/* grump wizards */
tag
<h1>Grumpy Wizards</h1>
attr-name, attr-value
<h1 class="dangerous">Grumpy Wizards</h1>
namespace
throw new java.lang.UnsupportedOperationException();
prolog
<?xml version="1.0" encoding="utf-8"?>
doctype
<!DOCTYPE html>
cdata
<![CDATA[ grumpy wizards eat donuts ]]>
entity
&pound; &#163;
atrule
@media (prefers-reduced-motion: reduce) { /* no animations */ }
selector
.grumpy > img { /* ... */ }
null
{ "fritter": null }
color
background-color: rgba(0, 0, 0, 0.4);
border: 1px solid #cd2026;

Language Samples

// digital pin 2 has a pushbutton attached to it. Give it a name:
int pushButton = 2;

// the setup routine runs once when you press reset:
void setup() {
	// initialize serial communication at 9600 bits per second:
	Serial.begin(9600);
	// make the pushbutton's pin an input:
	pinMode(pushButton, INPUT);
}

// the loop routine runs over and over again forever:
void loop() {
	// read the input pin:
	int buttonState = digitalRead(pushButton);
	// print out the state of the button:
	Serial.println(buttonState);
	delay(1); // delay in between reads for stability
}

	AREA     ARMex, CODE, READONLY
                            ; Name this block of code ARMex
	ENTRY                   ; Mark first instruction to execute
start
	MOV      r0, #10        ; Set up parameters
	MOV      r1, #3
	ADD      r0, r0, r1     ; r0 = r0 + r1
stop
	MOV      r0, #0x18      ; angel_SWIreason_ReportException
	LDR      r1, =0x20026   ; ADP_Stopped_ApplicationExit
	SVC      #0x123456      ; ARM semihosting (formerly SWI)
	END                     ; Mark end of file
#!/bin/bash
if [ -d $directory ]; then
	echo "Directory exists"
else
	echo "Directory does not exists"
fi
#include <stdio.h>
int main() {
	char c;
	printf("Enter a character: ");
	scanf("%c", &c);

	// %d displays the integer value of a character
	// %c displays the actual character
	printf("ASCII value of %c = %d", c, c);

	return 0;
}
#include <iostream>
using namespace std;

int main()
{
	int divisor, dividend, quotient, remainder;

	cout << "Enter dividend: ";
	cin >> dividend;

	cout << "Enter divisor: ";
	cin >> divisor;

	quotient = dividend / divisor;
	remainder = dividend % divisor;

	cout << "Quotient = " << quotient << endl;
	cout << "Remainder = " << remainder;

	return 0;
}
using System;

namespace Method {

	class Program {

		// method declaration
		public void display() {
			Console.WriteLine("Hello World");
		}

		static void Main(string[] args) {

			// create class object
			Program p1 = new Program();

			//call method
			p1.display();

			Console.ReadLine();

		}
	}
}
.grumpy > img {
	background-image: url("smile.png");
	height: 100%;
	width: var(--some-var);
}
@font-face {
	font-family: 'Lato';
	font-style: normal;
	src: local('Lato Regular');
}
@media (prefers-reduced-motion: reduce) {
	:host([opened]), :host([opened-above]) {
		animation: none !important;
	}
}
{-# START_FILE main.hs #-}
import System.IO

main = do
	handle <- openFile "file.txt" ReadMode
	contents <- hGetContents handle
	putStr contents
	hClose handle

{-# START_FILE file.txt #-}
Hello, world!

import System.Random

main = (randomRIO (1, 100) :: IO Int) >>= print
public class VowelConsonant {

	public static void main(String[] args) {

		char ch = 'i';

		if(ch == 'a' || ch == 'e' || ch == 'i' || ch == 'o' || ch == 'u' )
			System.out.println(ch + " is vowel");
		else
			System.out.println(ch + " is consonant");

	}
}

/* grumpy javascript */

import { stuff } from 'some/where.js';

function helloGrumpy(name) {
	console.log(`Hi there ${name}.`);
}

class Wizard extends Human { }

const grumpy = new Wizard();

let wizardFoods = [...donuts, ... cakes, ...pies];

const wizardsLikeBeer = false;

const favouriteNumber = 3.14159;

const PI = 3.14159;

const regex = /[^\w\s]/g; // regex, regex-delimiter, regex-source, regex-flag
{
	"jinxed": "gnomes",
	"grumpy": [ "wizards" ],
	"jelly": 99,
	"donut": true,
	"fritter": null
}
fun main(args: Array) {

	val a = 2.3
	val b = 4
	val c = 5.6
	val root1: Double
	val root2: Double
	val output: String

	val determinant = b * b - 4.0 * a * c

	// condition for real and different roots
	if (determinant > 0) {
		root1 = (-b + Math.sqrt(determinant)) / (2 * a)
		root2 = (-b - Math.sqrt(determinant)) / (2 * a)

		output = "root1 = %.2f and root2 = %.2f".format(root1, root2)
	}
	// Condition for real and equal roots
	else if (determinant == 0.0) {
		root2 = -b / (2 * a)
		root1 = root2

		output = "root1 = root2 = %.2f;".format(root1)
	}
	// If roots are not real
	else {
		val realPart = -b / (2 * a)
		val imaginaryPart = Math.sqrt(-determinant) / (2 * a)

		output = "root1 = %.2f+%.2fi and root2 = %.2f-%.2fi".format(realPart, imaginaryPart, realPart, imaginaryPart)
	}

	println(output)
}

\begin{aligned} \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\ \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\ \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\ \nabla \cdot \vec{\mathbf{B}} & = 0 \end{aligned}

P(E) = {n \choose k} p^k (1-p)^{ n-k}

\begin{aligned} \dot{x} & = \sigma(y-x) \\ \dot{y} & = \rho x - y - xz \\ \dot{z} & = -\beta z + xy \end{aligned}
<!DOCTYPE html> <!-- doctype, doctype-tag, name -->
<html>
	<body class="typography">
		<![CDATA[ some cdata section ]]>
		<div style="color: blue;">
			&pound;
			&#163;
		</div>
	</body>
</html>
for n = 1:5
	x = n*0.1;
	z = myfunc2(x,2,3,7);
	fprintf('x = %4.2f f(x) = %8.4f \r',x,z)
end
# Program to check if a number is prime or not

num = 29

# To take input from the user
#num = int(input("Enter a number: "))

# define a flag variable
flag = False

# prime numbers are greater than 1
if num > 1:
    # check for factors
    for i in range(2, num):
        if (num % i) == 0:
            # if factor is found, set flag to True
            flag = True
            # break out of loop
            break

# check if flag is True
if flag:
    print(num, "is not a prime number")
else:
    print(num, "is a prime number")
# decimal variable
num = as.integer(readline(prompt = "Enter a number: "))
# num = 15
isPrime = 0
if (num > 1) {
	isPrime = 1
	for (i in 2: (num - 1)) {
		if ((num %% i) == 0) {
			isPrime = 0
			break
		}
	}
}
if (num == 2) isPrime = 1
if (isPrime == 1) {
	print(paste(num, "is a prime number"))
} else {
	print(paste(num, "is not a prime number"))
}
(define (rgb-maker mk)
  (lambda (sz)
    (vc-append (colorize (mk sz) "red")
               (colorize (mk sz) "green")
               (colorize (mk sz) "blue"))))
(\W|^)[\w.\-]{0,25}@(yahoo|hotmail|gmail)\.com(\W|$)
(\W|^)po[#\-]{0,1}\s{0,1}\d{2}[\s-]{0,1}\d{4}(\W|$)
^(19|20)\d\d[- /.](0[1-9]|1[012])[- /.](0[1-9]|[12][0-9]|3[01])$
\b(?:word1\W+(?:\w+\W+){1,6}?word2|word2\W+(?:\w+\W+){1,6}?word1)\b
^(?=.*?\bone\b)(?=.*?\btwo\b)(?=.*?\bthree\b).*$
DECLARE @MyCounter INT; /* keyword, variable, punctuation */

SELECT AVG(Calories) AS AverageCalories FROM Desserts;

SELECT * FROM Desserts

SET ROWCOUNT 4;

SET @Hidden = FALSE;

SET @Donuts = 'Yummy';
CloudDeploy[
 FormFunction[FormObject[{"ImageURL" -> "String"}],
  ImageEffect[
    ColorConvert[
     ImageMultiply[
      ColorConvert[
       ImageAdd[ImageAdjust[Import[#ImageURL], .2],
        RGBColor[.25, .25, -.1]], "HSB"], Hue[1, .7, 1]],
     "RGB"], {"PoissonNoise", .5}] &, "JPEG"],
 Permissions -> "Public"]

More Samples (Web Component Scope)