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Is there a way to check if a string in JS is one single emoji?

The question is simple: I have a string str, how do I check if str is one single emoji, and nothing else? Additionally I would prefer not using another library.

Match "🍎", "β›ΉπŸΏβ€β™‚οΈ", "3️⃣" but not "πŸ“a", "𝕒", "πŸŒπŸ€"

I'm having trouble finding a solution but here are some things I've tried so far:


Attempted Solution 1 - Play around lengths and ... operator

I learned that emojis occupy more than one byte, some even occupy 4 bytes, or more... and we can measure that via the string's length property:

console.log("🍎".length); // 2
console.log("πŸ›‘οΈ".length); // 3
console.log("β›ΉπŸΏβ€β™‚οΈ".length); // 6

Then I found out that the ... operator takes this into account and correctly separates emojis in the array - I could then see the resulting array's length property and detect if they were different.

str = "β›ΉπŸΏβ€β™‚οΈ";
if (str.length !== [...str].length) {
  // is emoji?
} else {
  // is not emoji
}

But this doesn't check for other multi-byte characters such as 𝕑 whose length is 2. Plus some emojis were still getting separated in a weird.


Attempted Solution 2 - Regex, regular expressions

Of course regex would be a thing to look into but I've yet to find a viable solution.

This answer's regex \u00a9|\u00ae|[\u2000-\u3300]|\ud83c[\ud000-\udfff]|\ud83d[\ud000-\udfff]|\ud83e[\ud000-\udfff] works perfectly fine to detect if a string has any emojis, but applied to my situation it produces a lot of problems. Here are my tests:

Part A - Without start/end of string regex (^ and $)

  • 2A.1 str.match(regex) is very inconsistent, it breaks down some emojis and some other unusable. I don't see a way to find out if it even contains non-emoji characters or if it contains more than one emoji:
let regex = /(\u00a9|\u00ae|[\u2000-\u3300]|\ud83c[\ud000-\udfff]|\ud83d[\ud000-\udfff]|\ud83e[\ud000-\udfff])/;

console.log("5️⃣".match(regex)); // [ '⃣', '⃣', index: 2, input: '5️⃣' ]
console.log("πŸ’‘".match(regex)); // [ 'πŸ’‘', 'πŸ’‘', index: 0, input: 'πŸ’‘' ]
console.log("🌑️🌑️".match(regex)); // [ '🌑', '🌑', index: 0, input: '🌑️🌑️' ]
console.log("aβ›…".match(regex)); // [ 'β›…', 'β›…', index: 1, input: 'aβ›…' ]
  • 2A.2 regex.test(str) returns true whenever an emoji is included in the string, which isn't the behaviour I'm looking for:
let regex = /(\u00a9|\u00ae|[\u2000-\u3300]|\ud83c[\ud000-\udfff]|\ud83d[\ud000-\udfff]|\ud83e[\ud000-\udfff])/;

console.log(regex.test("5️⃣")); // true - correct
console.log(regex.test("a")); // false - correct
console.log(regex.test("🌑️🌑️")); // true - should be false
console.log(regex.test("hello β›…!")); // true - should be false

Part B - With start/end of string regex (^ and $)

  • 2B.1 str.match(regex) returns null on certain emojis for some reason. I have no clue why but I'm assuming it has some relation as to why str.match(regex) would break down these emojis in Part A:
let regex = /^(\u00a9|\u00ae|[\u2000-\u3300]|\ud83c[\ud000-\udfff]|\ud83d[\ud000-\udfff]|\ud83e[\ud000-\udfff])$/;

console.log("5️⃣".match(regex)); // null
console.log("πŸ’‘".match(regex)); // [ 'πŸ’‘', 'πŸ’‘', index: 0, input: 'πŸ’‘' ]
console.log("🌑️".match(regex)); // null
console.log("β›…".match(regex)); // [ 'β›…', 'β›…', index: 1, input: 'aβ›…' ]
console.log("πŸŒπŸ€".match(regex)); // null
  • 2B.2 regex.test(str) will return false on the same emojis where it would return null on str.match(regex):
let regex = /^(\u00a9|\u00ae|[\u2000-\u3300]|\ud83c[\ud000-\udfff]|\ud83d[\ud000-\udfff]|\ud83e[\ud000-\udfff])$/;

console.log(regex.test("5️⃣")); // false - should be true
console.log(regex.test("πŸ’‘")); // true - correct
console.log(regex.test("🌑️")); // false - should be true
console.log(regex.test("β›…")); // true - correct
console.log(regex.test("πŸŒπŸ€")); // false - correct

Part C - Other regular expressions

  • I found this one but it gives similar inconsistencies, although not the same /(?:[\u2700-\u27bf]|(?:\ud83c[\udde6-\uddff]){2}|[\ud800-\udbff][\udc00-\udfff]|[\u0023-\u0039]\ufe0f?\u20e3|\u3299|\u3297|\u303d|\u3030|\u24c2|\ud83c[\udd70-\udd71]|\ud83c[\udd7e-\udd7f]|\ud83c\udd8e|\ud83c[\udd91-\udd9a]|\ud83c[\udde6-\uddff]|[\ud83c[\ude01\uddff]|\ud83c[\ude01-\ude02]|\ud83c\ude1a|\ud83c\ude2f|[\ud83c[\ude32\ude02]|\ud83c\ude1a|\ud83c\ude2f|\ud83c[\ude32-\ude3a]|[\ud83c[\ude50\ude3a]|\ud83c[\ude50-\ude51]|\u203c|\u2049|[\u25aa-\u25ab]|\u25b6|\u25c0|[\u25fb-\u25fe]|\u00a9|\u00ae|\u2122|\u2139|\ud83c\udc04|[\u2600-\u26FF]|\u2b05|\u2b06|\u2b07|\u2b1b|\u2b1c|\u2b50|\u2b55|\u231a|\u231b|\u2328|\u23cf|[\u23e9-\u23f3]|[\u23f8-\u23fa]|\ud83c\udccf|\u2934|\u2935|[\u2190-\u21ff])/g:
let regex = /^(?:[\u2700-\u27bf]|(?:\ud83c[\udde6-\uddff]){2}|[\ud800-\udbff][\udc00-\udfff]|[\u0023-\u0039]\ufe0f?\u20e3|\u3299|\u3297|\u303d|\u3030|\u24c2|\ud83c[\udd70-\udd71]|\ud83c[\udd7e-\udd7f]|\ud83c\udd8e|\ud83c[\udd91-\udd9a]|\ud83c[\udde6-\uddff]|[\ud83c[\ude01\uddff]|\ud83c[\ude01-\ude02]|\ud83c\ude1a|\ud83c\ude2f|[\ud83c[\ude32\ude02]|\ud83c\ude1a|\ud83c\ude2f|\ud83c[\ude32-\ude3a]|[\ud83c[\ude50\ude3a]|\ud83c[\ude50-\ude51]|\u203c|\u2049|[\u25aa-\u25ab]|\u25b6|\u25c0|[\u25fb-\u25fe]|\u00a9|\u00ae|\u2122|\u2139|\ud83c\udc04|[\u2600-\u26FF]|\u2b05|\u2b06|\u2b07|\u2b1b|\u2b1c|\u2b50|\u2b55|\u231a|\u231b|\u2328|\u23cf|[\u23e9-\u23f3]|[\u23f8-\u23fa]|\ud83c\udccf|\u2934|\u2935|[\u2190-\u21ff])$/g

console.log(regex.test("5️⃣")); // true - correct
console.log(regex.test("πŸ’‘")); // false - should be true
console.log(regex.test("🌑️")); // false - should be true
console.log(regex.test("β›…")); // true - correct
console.log(regex.test("πŸŒπŸ€")); // false - correct
  • Also this breaks horribly (second test changes based on first test?)
let regex = /^(?:[\u2700-\u27bf]|(?:\ud83c[\udde6-\uddff]){2}|[\ud800-\udbff][\udc00-\udfff]|[\u0023-\u0039]\ufe0f?\u20e3|\u3299|\u3297|\u303d|\u3030|\u24c2|\ud83c[\udd70-\udd71]|\ud83c[\udd7e-\udd7f]|\ud83c\udd8e|\ud83c[\udd91-\udd9a]|\ud83c[\udde6-\uddff]|[\ud83c[\ude01\uddff]|\ud83c[\ude01-\ude02]|\ud83c\ude1a|\ud83c\ude2f|[\ud83c[\ude32\ude02]|\ud83c\ude1a|\ud83c\ude2f|\ud83c[\ude32-\ude3a]|[\ud83c[\ude50\ude3a]|\ud83c[\ude50-\ude51]|\u203c|\u2049|[\u25aa-\u25ab]|\u25b6|\u25c0|[\u25fb-\u25fe]|\u00a9|\u00ae|\u2122|\u2139|\ud83c\udc04|[\u2600-\u26FF]|\u2b05|\u2b06|\u2b07|\u2b1b|\u2b1c|\u2b50|\u2b55|\u231a|\u231b|\u2328|\u23cf|[\u23e9-\u23f3]|[\u23f8-\u23fa]|\ud83c\udccf|\u2934|\u2935|[\u2190-\u21ff])$/g

console.log(regex.test("β›ΉπŸΏβ€β™‚οΈ")); // false
console.log(regex.test("β›…")); // true
let regex = /^(?:[\u2700-\u27bf]|(?:\ud83c[\udde6-\uddff]){2}|[\ud800-\udbff][\udc00-\udfff]|[\u0023-\u0039]\ufe0f?\u20e3|\u3299|\u3297|\u303d|\u3030|\u24c2|\ud83c[\udd70-\udd71]|\ud83c[\udd7e-\udd7f]|\ud83c\udd8e|\ud83c[\udd91-\udd9a]|\ud83c[\udde6-\uddff]|[\ud83c[\ude01\uddff]|\ud83c[\ude01-\ude02]|\ud83c\ude1a|\ud83c\ude2f|[\ud83c[\ude32\ude02]|\ud83c\ude1a|\ud83c\ude2f|\ud83c[\ude32-\ude3a]|[\ud83c[\ude50\ude3a]|\ud83c[\ude50-\ude51]|\u203c|\u2049|[\u25aa-\u25ab]|\u25b6|\u25c0|[\u25fb-\u25fe]|\u00a9|\u00ae|\u2122|\u2139|\ud83c\udc04|[\u2600-\u26FF]|\u2b05|\u2b06|\u2b07|\u2b1b|\u2b1c|\u2b50|\u2b55|\u231a|\u231b|\u2328|\u23cf|[\u23e9-\u23f3]|[\u23f8-\u23fa]|\ud83c\udccf|\u2934|\u2935|[\u2190-\u21ff])$/g;

console.log(regex.test("β›Ή")); // true
console.log(regex.test("β›…")); // false

Is there a way around all this emoji/unicode/regex mess? Are libraries/apis the only way? How do they do it?

like image 565
luxmiyu Avatar asked Nov 19 '19 20:11

luxmiyu


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2 Answers

Using this library: https://github.com/foliojs/grapheme-breaker try this:

var str = "β›ΉπŸΏβ€β™‚οΈ";
var Grapheme = require('grapheme-splitter');
var splitter = new Grapheme();
console.log(splitter.splitGraphemes(str).length);

and the length should return 1.

like image 71
Daniel Vickers Avatar answered Oct 23 '22 09:10

Daniel Vickers


Emojis are specified in UAX #51. The property \p{Emoji} should work, but doesn't.

Do it the hard way. Parse emoji-*.txt:

perl -C -lne'
    if (my ($c) = $_ =~ /^((?:(?:[[:xdigit:]]+ )|[[:xdigit:]]+\.\.)[[:xdigit:]]+)/) {
        if ($c =~ /\.\./) { # ranges
             my ($f, $t) = map { hex } split /\.\./, $c;
             print for map { chr } $f..$t;
        } else { # sequences
             print join "", map { chr hex } split /\s+/, $c;
        }
    }
' emoji-*.txt

This gives us a newline separated list of all emojis. Using Regexp::Assemble::Compressed, the result is

/^(?:[\u{23EB}\u{23EC}\u{23F0}\u{2607}-\u{260D}\u{260F}\u{2610}\u{2616}\u{2617}\u{2619}-\u{261C}\u{261E}\u{261F}\u{2624}\u{2625}\u{2627}-\u{2629}\u{262B}-\u{262D}\u{2630}-\u{2637}\u{263B}-\u{263F}\u{2643}-\u{2647}\u{2654}-\u{265E}\u{2661}\u{2662}\u{2669}-\u{267A}\u{267C}\u{267D}\u{2680}-\u{2685}\u{2690}\u{2691}\u{269D}-\u{269F}\u{26A2}-\u{26A9}\u{26AC}-\u{26AF}\u{26B2}-\u{26BC}\u{26BF}-\u{26C3}\u{26C6}\u{26C7}\u{26C9}-\u{26CE}\u{26D5}-\u{26E8}\u{26EB}-\u{26EF}\u{26FB}\u{26FC}\u{26FE}-\u{2701}\u{2703}\u{2704}\u{2710}\u{2711}\u{2754}\u{2755}\u{2765}-\u{2767}\u{2795}-\u{2797}\u{1F000}-\u{1F003}\u{1F005}-\u{1F0CE}\u{1F0D0}-\u{1F0FF}\u{1F10D}-\u{1F10F}\u{1F16C}-\u{1F16F}\u{1F191}-\u{1F19A}\u{1F1AD}-\u{1F1E5}\u{1F201}\u{1F203}-\u{1F20F}\u{1F232}-\u{1F236}\u{1F238}-\u{1F23A}\u{1F23C}-\u{1F23F}\u{1F249}-\u{1F30C}\u{1F310}-\u{1F314}\u{1F316}-\u{1F31B}\u{1F31D}-\u{1F320}\u{1F322}\u{1F323}\u{1F32D}-\u{1F335}\u{1F337}-\u{1F377}\u{1F379}-\u{1F37C}\u{1F37E}-\u{1F384}\u{1F386}-\u{1F392}\u{1F394}\u{1F395}\u{1F39C}\u{1F39D}\u{1F3A0}-\u{1F3A6}\u{1F3A8}-\u{1F3AB}\u{1F3AF}-\u{1F3C1}\u{1F3C5}\u{1F3C8}\u{1F3C9}\u{1F3CF}-\u{1F3D3}\u{1F3E1}-\u{1F3EC}\u{1F3EE}-\u{1F3F2}\u{1F3F8}-\u{1F407}\u{1F409}-\u{1F414}\u{1F416}-\u{1F41E}\u{1F420}-\u{1F425}\u{1F427}-\u{1F43E}\u{1F440}\u{1F444}\u{1F445}\u{1F451}\u{1F452}\u{1F454}-\u{1F465}\u{1F479}-\u{1F47B}\u{1F47E}-\u{1F480}\u{1F484}\u{1F488}-\u{1F4A2}\u{1F4A4}-\u{1F4A9}\u{1F4AB}-\u{1F4AF}\u{1F4B1}\u{1F4B2}\u{1F4B4}-\u{1F4BA}\u{1F4BC}-\u{1F4BE}\u{1F4C0}-\u{1F4CA}\u{1F4CC}-\u{1F4D9}\u{1F4DB}-\u{1F4DE}\u{1F4E0}-\u{1F4E3}\u{1F4E7}-\u{1F4E9}\u{1F4EE}-\u{1F4F6}\u{1F4F8}\u{1F4FC}\u{1F4FF}-\u{1F507}\u{1F509}-\u{1F50C}\u{1F50E}-\u{1F511}\u{1F514}-\u{1F53D}\u{1F546}-\u{1F548}\u{1F54B}-\u{1F54E}\u{1F568}-\u{1F56E}\u{1F571}\u{1F572}\u{1F57B}-\u{1F586}\u{1F588}\u{1F589}\u{1F58E}\u{1F58F}\u{1F591}-\u{1F594}\u{1F597}-\u{1F5A3}\u{1F5A6}\u{1F5A7}\u{1F5A9}-\u{1F5B0}\u{1F5B3}-\u{1F5BB}\u{1F5BD}-\u{1F5C1}\u{1F5C5}-\u{1F5D0}\u{1F5D4}-\u{1F5DB}\u{1F5DF}\u{1F5E0}\u{1F5E4}-\u{1F5E7}\u{1F5E9}-\u{1F5EE}\u{1F5F0}-\u{1F5F2}\u{1F5F4}-\u{1F5F9}\u{1F5FB}-\u{1F60F}\u{1F611}-\u{1F644}\u{1F648}-\u{1F64A}\u{1F680}-\u{1F686}\u{1F688}-\u{1F68C}\u{1F68E}-\u{1F690}\u{1F692}\u{1F693}\u{1F695}-\u{1F697}\u{1F699}-\u{1F6A2}\u{1F6A4}-\u{1F6AC}\u{1F6AE}-\u{1F6B1}\u{1F6B3}\u{1F6B7}\u{1F6B8}\u{1F6BB}\u{1F6BD}-\u{1F6BF}\u{1F6C1}-\u{1F6CA}\u{1F6D0}-\u{1F6D4}\u{1F6D6}-\u{1F6DF}\u{1F6E6}-\u{1F6E8}\u{1F6EB}-\u{1F6EF}\u{1F6F1}\u{1F6F2}\u{1F6F4}-\u{1F6F8}\u{1F6FB}-\u{1F6FF}\u{1F774}-\u{1F77F}\u{1F7D5}-\u{1F7FF}\u{1F80C}-\u{1F80F}\u{1F848}-\u{1F84F}\u{1F85A}-\u{1F85F}\u{1F888}-\u{1F88F}\u{1F8AE}-\u{1F8FF}\u{1F90D}\u{1F90E}\u{1F910}-\u{1F917}\u{1F91D}\u{1F920}-\u{1F925}\u{1F927}-\u{1F92F}\u{1F93A}\u{1F940}-\u{1F945}\u{1F947}-\u{1F94B}\u{1F94D}-\u{1F970}\u{1F973}-\u{1F979}\u{1F97C}-\u{1F9B4}\u{1F9B7}\u{1F9BA}\u{1F9BC}-\u{1F9BF}\u{1F9C1}-\u{1F9CC}\u{1F9D0}\u{1F9E0}-\u{1FFFD}\u{E0020}-\u{E007F}]|\u{1F1F2}[\u{1F1E6}\u{1F1E8}-\u{1F1ED}\u{1F1F0}-\u{1F1FF}]?|\u{1F1E7}[\u{1F1E6}\u{1F1E7}\u{1F1E9}-\u{1F1EF}\u{1F1F1}-\u{1F1F4}\u{1F1F6}-\u{1F1F9}\u{1F1FB}\u{1F1FC}\u{1F1FE}\u{1F1FF}]?|\u{1F1F8}[\u{1F1E6}-\u{1F1EA}\u{1F1EC}-\u{1F1F4}\u{1F1F7}-\u{1F1F9}\u{1F1FB}\u{1F1FD}-\u{1F1FF}]?|\u{1F1E8}[\u{1F1E6}\u{1F1E8}\u{1F1E9}\u{1F1EB}-\u{1F1EE}\u{1F1F0}-\u{1F1F5}\u{1F1F7}\u{1F1FA}-\u{1F1FF}]?|\u{1F1EC}[\u{1F1E6}\u{1F1E7}\u{1F1E9}-\u{1F1EE}\u{1F1F1}-\u{1F1F3}\u{1F1F5}-\u{1F1FA}\u{1F1FC}\u{1F1FE}]?|\u{1F1E6}[\u{1F1E8}-\u{1F1EC}\u{1F1EE}\u{1F1F1}\u{1F1F2}\u{1F1F4}\u{1F1F6}-\u{1F1FA}\u{1F1FC}\u{1F1FD}\u{1F1FF}]?|\u{1F1F9}[\u{1F1E6}\u{1F1E8}\u{1F1E9}\u{1F1EB}-\u{1F1ED}\u{1F1EF}-\u{1F1F4}\u{1F1F7}\u{1F1F9}\u{1F1FB}\u{1F1FC}\u{1F1FF}]?|\u{1F1F5}[\u{1F1E6}\u{1F1EA}-\u{1F1ED}\u{1F1F0}-\u{1F1F3}\u{1F1F7}-\u{1F1F9}\u{1F1FC}\u{1F1FE}]?|\u{1F1F3}[\u{1F1E6}\u{1F1E8}\u{1F1EA}-\u{1F1EC}\u{1F1EE}\u{1F1F1}\u{1F1F4}\u{1F1F5}\u{1F1F7}\u{1F1FA}\u{1F1FF}]?|\u{1F1EE}[\u{1F1E8}-\u{1F1EA}\u{1F1F1}-\u{1F1F4}\u{1F1F6}-\u{1F1F9}]?|\u{1F1F0}[\u{1F1EA}\u{1F1EC}-\u{1F1EE}\u{1F1F2}\u{1F1F3}\u{1F1F5}\u{1F1F7}\u{1F1FC}\u{1F1FE}\u{1F1FF}]?|\u{1F1F1}[\u{1F1E6}-\u{1F1E8}\u{1F1EE}\u{1F1F0}\u{1F1F7}-\u{1F1FB}\u{1F1FE}]?|\u{1F1EA}[\u{1F1E6}\u{1F1E8}\u{1F1EA}\u{1F1EC}\u{1F1ED}\u{1F1F7}-\u{1F1FA}]?|\u{26F9}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F3C4}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F3CA}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F3CB}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F3CC}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F575}[\u{200D}\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{270C}[\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{270D}[\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F1E9}[\u{1F1EA}\u{1F1EC}\u{1F1EF}\u{1F1F0}\u{1F1F2}\u{1F1F4}\u{1F1FF}]?|\u{1F1FA}[\u{1F1E6}\u{1F1EC}\u{1F1F2}\u{1F1F3}\u{1F1F8}\u{1F1FE}\u{1F1FF}]?|\u{1F1FB}[\u{1F1E6}\u{1F1E8}\u{1F1EA}\u{1F1EC}\u{1F1EE}\u{1F1F3}\u{1F1FA}]?|\u{1F3C2}[\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F442}[\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F446}[\u{FE0E}\u{FE0F}\u{1F3FB}-\u{1F3FF}]?|\u{1F447}[\u{FE0E}\u{FE0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}\u{FE0F}]?|\u{1F554}[\u{FE0E}\u{FE0F}]?|\u{1F555}[\u{FE0E}\u{FE0F}]?|\u{1F556}[\u{FE0E}\u{FE0F}]?|\u{1F557}[\u{FE0E}\u{FE0F}]?|\u{1F558}[\u{FE0E}\u{FE0F}]?|\u{1F559}[\u{FE0E}\u{FE0F}]?|\u{1F55A}[\u{FE0E}\u{FE0F}]?|\u{1F55B}[\u{FE0E}\u{FE0F}]?|\u{1F55C}[\u{FE0E}\u{FE0F}]?|\u{1F55D}[\u{FE0E}\u{FE0F}]?|\u{1F55E}[\u{FE0E}\u{FE0F}]?|\u{1F55F}[\u{FE0E}\u{FE0F}]?|\u{1F560}[\u{FE0E}\u{FE0F}]?|\u{1F561}[\u{FE0E}\u{FE0F}]?|\u{1F562}[\u{FE0E}\u{FE0F}]?|\u{1F563}[\u{FE0E}\u{FE0F}]?|\u{1F564}[\u{FE0E}\u{FE0F}]?|\u{1F565}[\u{FE0E}\u{FE0F}]?|\u{1F566}[\u{FE0E}\u{FE0F}]?|\u{1F567}[\u{FE0E}\u{FE0F}]?|\u{1F56F}[\u{FE0E}\u{FE0F}]?|\u{1F570}[\u{FE0E}\u{FE0F}]?|\u{1F573}[\u{FE0E}\u{FE0F}]?|\u{1F576}[\u{FE0E}\u{FE0F}]?|\u{1F577}[\u{FE0E}\u{FE0F}]?|\u{1F578}[\u{FE0E}\u{FE0F}]?|\u{1F579}[\u{FE0E}\u{FE0F}]?|\u{1F58A}[\u{FE0E}\u{FE0F}]?|\u{1F58B}[\u{FE0E}\u{FE0F}]?|\u{1F58C}[\u{FE0E}\u{FE0F}]?|\u{1F58D}[\u{FE0E}\u{FE0F}]?|\u{1F5B1}[\u{FE0E}\u{FE0F}]?|\u{1F5B2}[\u{FE0E}\u{FE0F}]?|\u{1F5C2}[\u{FE0E}\u{FE0F}]?|\u{1F5C3}[\u{FE0E}\u{FE0F}]?|\u{1F5C4}[\u{FE0E}\u{FE0F}]?|\u{1F5D1}[\u{FE0E}\u{FE0F}]?|\u{1F5D2}[\u{FE0E}\u{FE0F}]?|\u{1F5D3}[\u{FE0E}\u{FE0F}]?|\u{1F5DC}[\u{FE0E}\u{FE0F}]?|\u{1F5DD}[\u{FE0E}\u{FE0F}]?|\u{1F5DE}[\u{FE0E}\u{FE0F}]?|\u{1F5FA}[\u{FE0E}\u{FE0F}]?|\u{1F610}[\u{FE0E}\u{FE0F}]?|\u{1F687}[\u{FE0E}\u{FE0F}]?|\u{1F68D}[\u{FE0E}\u{FE0F}]?|\u{1F691}[\u{FE0E}\u{FE0F}]?|\u{1F694}[\u{FE0E}\u{FE0F}]?|\u{1F698}[\u{FE0E}\u{FE0F}]?|\u{1F6AD}[\u{FE0E}\u{FE0F}]?|\u{1F6B2}[\u{FE0E}\u{FE0F}]?|\u{1F6B9}[\u{FE0E}\u{FE0F}]?|\u{1F6BA}[\u{FE0E}\u{FE0F}]?|\u{1F6BC}[\u{FE0E}\u{FE0F}]?|\u{1F6CB}[\u{FE0E}\u{FE0F}]?|\u{1F6CD}[\u{FE0E}\u{FE0F}]?|\u{1F6CE}[\u{FE0E}\u{FE0F}]?|\u{1F6CF}[\u{FE0E}\u{FE0F}]?|\u{1F6E0}[\u{FE0E}\u{FE0F}]?|\u{1F6E1}[\u{FE0E}\u{FE0F}]?|\u{1F6E2}[\u{FE0E}\u{FE0F}]?|\u{1F6E3}[\u{FE0E}\u{FE0F}]?|\u{1F6E4}[\u{FE0E}\u{FE0F}]?|\u{1F6E5}[\u{FE0E}\u{FE0F}]?|\uA9[\u{FE0E}\u{FE0F}]|\uAE[\u{FE0E}\u{FE0F}]|\u{203C}[\u{FE0E}\u{FE0F}]|\u{2049}[\u{FE0E}\u{FE0F}]|\u{2122}[\u{FE0E}\u{FE0F}]|\u{2139}[\u{FE0E}\u{FE0F}]|\u{2328}[\u{FE0E}\u{FE0F}]|\u{23CF}[\u{FE0E}\u{FE0F}]|\u{24C2}[\u{FE0E}\u{FE0F}]|\u{25B6}[\u{FE0E}\u{FE0F}]|\u{25C0}[\u{FE0E}\u{FE0F}]|\u{260E}[\u{FE0E}\u{FE0F}]|\u{2611}[\u{FE0E}\u{FE0F}]|\u{2618}[\u{FE0E}\u{FE0F}]|\u{2620}[\u{FE0E}\u{FE0F}]|\u{2626}[\u{FE0E}\u{FE0F}]|\u{262A}[\u{FE0E}\u{FE0F}]|\u{2640}[\u{FE0E}\u{FE0F}]|\u{2642}[\u{FE0E}\u{FE0F}]|\u{265F}[\u{FE0E}\u{FE0F}]|\u{2660}[\u{FE0E}\u{FE0F}]|\u{2663}[\u{FE0E}\u{FE0F}]|\u{2668}[\u{FE0E}\u{FE0F}]|\u{267B}[\u{FE0E}\u{FE0F}]|\u{267E}[\u{FE0E}\u{FE0F}]|\u{267F}[\u{FE0E}\u{FE0F}]|\u{2695}[\u{FE0E}\u{FE0F}]|\u{2699}[\u{FE0E}\u{FE0F}]|\u{26C8}[\u{FE0E}\u{FE0F}]|\u{26D1}[\u{FE0E}\u{FE0F}]|\u{26FD}[\u{FE0E}\u{FE0F}]|\u{2702}[\u{FE0E}\u{FE0F}]|\u{270F}[\u{FE0E}\u{FE0F}]|\u{2712}[\u{FE0E}\u{FE0F}]|\u{2714}[\u{FE0E}\u{FE0F}]|\u{2716}[\u{FE0E}\u{FE0F}]|\u{271D}[\u{FE0E}\u{FE0F}]|\u{2721}[\u{FE0E}\u{FE0F}]|\u{2744}[\u{FE0E}\u{FE0F}]|\u{2747}[\u{FE0E}\u{FE0F}]|\u{2757}[\u{FE0E}\u{FE0F}]|\u{27A1}[\u{FE0E}\u{FE0F}]|\u{2B50}[\u{FE0E}\u{FE0F}]|\u{2B55}[\u{FE0E}\u{FE0F}]|\u{3030}[\u{FE0E}\u{FE0F}]|\u{303D}[\u{FE0E}\u{FE0F}]|\u{3297}[\u{FE0E}\u{FE0F}]|\u{3299}[\u{FE0E}\u{FE0F}]|\u{1F004}[\u{FE0E}\u{FE0F}]|\u{1F21A}[\u{FE0E}\u{FE0F}]|\u{1F22F}[\u{FE0E}\u{FE0F}]|\u{1F587}[\u{FE0E}\u{FE0F}]|\u{1F5A5}[\u{FE0E}\u{FE0F}]|\u{1F5A8}[\u{FE0E}\u{FE0F}]|\u{1F5BC}[\u{FE0E}\u{FE0F}]|\u{1F5E1}[\u{FE0E}\u{FE0F}]|\u{1F5E3}[\u{FE0E}\u{FE0F}]|\u{1F5E8}[\u{FE0E}\u{FE0F}]|\u{1F5EF}[\u{FE0E}\u{FE0F}]|\u{1F5F3}[\u{FE0E}\u{FE0F}]|\u{1F6E9}[\u{FE0E}\u{FE0F}]|\u{1F6F0}[\u{FE0E}\u{FE0F}]|\u{1F6F3}[\u{FE0E}\u{FE0F}]|\u{1F1F4}\u{1F1F2}?|\u{1F1F6}\u{1F1E6}?|\u{1F1FD}\u{1F1F0}?|\u{1F46F}\u{200D}?|\u{1F93C}\u{200D}?|\u{1F9DE}\u{200D}?|\u{1F9DF}\u{200D}?)$/u
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daxim Avatar answered Oct 23 '22 10:10

daxim