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LCEssentials/Documentation/Extensions.md

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# LCEssentials — Extensions
Foundation, value-type, string, collection, numeric, date, and crypto helpers, plus
the `LCEssentials` namespace itself. UIKit extensions live in
[UIKit.md](UIKit.md); SwiftUI helpers in [SwiftUI.md](SwiftUI.md).
Every section is a collapsible block — click a heading to expand it.
## Contents
- [API & Networking](#api--networking)
- [Strings & Text](#strings--text)
- [Collections & Sequences](#collections--sequences)
- [Numbers & Geometry](#numbers--geometry)
- [Date, Data & Files](#date-data--files)
- [Encoding & Errors](#encoding--errors)
- [Crypto](#crypto)
- [Core — the `LCEssentials` namespace](#core--the-lcessentials-namespace)
---
## API & Networking
`API` is an `actor` wrapping `URLSession` for typed JSON requests and multipart
uploads. This is a summary — the **[full guide is in API.md](API.md)** (all
parameters, error model, client certificates, custom body types, and the
rationale vs. a hand-rolled `URLSession`).
<details>
<summary><b>API</b> — typed async requests &amp; uploads</summary>
### `API.shared`
The shared `actor` instance. Every call is `await`; nothing runs on the main
thread unless you hop there yourself.
```swift
struct User: Decodable, Sendable { let id: Int; let name: String }
let user: User = try await API.shared.request(
url: "https://api.example.com/users/{id}",
method: .get,
pathParams: ["id": "42"]
)
```
### `request(url:method:body:pathParams:headers:debug:timeoutInterval:networkServiceType:persistConnection:)`
Sends a request and decodes the JSON response into `T: Decodable & Sendable`.
Non-2xx responses throw an `NSError` whose `code` is the HTTP status and whose
`localizedFailureReason` is the response body. When `T == String` the raw body
is returned without JSON decoding.
```swift
struct CreateUser: Encodable, Sendable { let name: String }
// JSON body
let created: User = try await API.shared.request(
url: "https://api.example.com/users",
method: .post,
body: jsonBody(CreateUser(name: "Ana"))
)
// form-url-encoded body
let token: Token = try await API.shared.request(
url: "https://api.example.com/oauth/token",
method: .post,
body: .form(["grant_type": "password", "username": "ana"])
)
```
### `upload(url:method:form:pathParams:headers:debug:timeoutInterval:networkServiceType:)` and its `onProgress:` overload
Uploads a `multipart/form-data` body serialised to a temp file (removed
afterwards) and streamed from disk, so large files never fully load into memory.
```swift
var form = MultipartForm()
form.field("caption", "Sunset")
form.file("photo", data: jpegData, filename: "p.jpg")
form.file("video", url: localVideoURL) // streamed from disk
let result: UploadResult = try await API.shared.upload(
url: "https://api.example.com/media",
form: form,
onProgress: { fraction in
Task { @MainActor in progressView.progress = Float(fraction) }
}
)
```
### Body types — `HTTPBody`
`jsonBody(_:)` wraps any `Encodable & Sendable`; `FormURLEncodedBody` (a.k.a.
`.form([:])`) percent-escapes every value and never drops one; `RawBody` lets you
supply the bytes and `Content-Type` yourself. Conform your own type to `HTTPBody`
and `API` accepts it with no change.
```swift
struct CSVBody: HTTPBody {
let rows: [[String]]
func encoded() throws -> (data: Data, contentType: String) {
let text = rows.map { $0.joined(separator: ",") }.joined(separator: "\n")
return (Data(text.utf8), "text/csv; charset=UTF-8")
}
}
```
### `await API.shared.setupCertification(certData:password:)`
Registers a client certificate (`.p12`) for mutual-TLS on subsequent requests.
```swift
let p12 = try Data(contentsOf: certURL)
await API.shared.setupCertification(certData: p12, password: "cert-pw")
```
</details>
## Strings & Text
<details>
<summary><b>String</b> — validation, parsing, formatting, masks, HTML, dates</summary>
### URLs
#### `var isValidUrl: Bool` / `var isValidHttpsUrl: Bool` / `var isValidHttpUrl: Bool`
`isValidUrl` is true when `URL(string:)` succeeds; the other two additionally
require the `https` / `http` scheme.
```swift
"https://google.com".isValidUrl // true
"https://google.com".isValidHttpsUrl // true
"http://google.com".isValidHttpsUrl // false
```
#### `var urlEncoded: String` / `var urlDecoded: String`
Percent-encode (host-allowed set) / decode. `urlDecoded` returns the original
string when it is not encoded.
```swift
"it's easy".urlEncoded // "it's%20easy"
"it's%20easy".urlDecoded // "it's easy"
```
#### `mutating func urlEncode() -> String` / `mutating func urlDecode() -> String`
In-place variants; also return the new value (`@discardableResult`).
```swift
var s = "a b"; s.urlEncode() // s == "a%20b"
```
#### `func stringByAddingPercentEncodingForRFC3986() -> String`
Percent-encodes for use as a query key/value, escaping `;/?:@&=+$,` and space.
```swift
"a&b=c".stringByAddingPercentEncodingForRFC3986() // "a%26b%3Dc"
```
#### `var url: String?`
First URL detected **inside** the string (via `NSDataDetector`), or `nil`.
```swift
"visit www.site.com.br now".url // "www.site.com.br"
```
#### `var toURL: NSURL?`
`NSURL(string:)` wrapper.
```swift
"https://x.com".toURL // NSURL
```
### Validation
#### `var isEmail: Bool`
Regex check for a syntactically valid email (TLD 220 chars).
```swift
"user@example.com".isEmail // true
"nope".isEmail // false
```
#### `var isCPF: Bool`
Validates a Brazilian CPF including both check digits. Strips formatting first
(`onlyNumbers`), requires 11 digits.
```swift
"123.456.789-09".isCPF // true when the check digits match
```
#### `var isValidCNPJ: Bool`
Validates a Brazilian CNPJ (14 digits, both check digits, rejects all-same-digit).
```swift
"11.222.333/0001-81".isValidCNPJ // true when valid
```
#### `var isAlphabetic: Bool`
Letters only, no digits.
```swift
"abc".isAlphabetic // true
"123abc".isAlphabetic // false
```
#### `var isAlphaNumeric: Bool`
Contains at least one letter **and** one digit and nothing else — handy for
password rules.
```swift
"123abc".isAlphaNumeric // true
"abc".isAlphaNumeric // false
```
#### `var isHTML: Bool`
True if the string contains an HTML tag.
```swift
"<b>hi</b>".isHTML // true
```
#### `func validateBolean(comparingBoolean: Bool = true) -> Bool`
Loose truthy/falsy check against a large set of EN/PT words. With
`comparingBoolean: true` returns whether the string means "true"
(`YES`, `ON`, `SIM`, `ATIVO`, `1`, `T`, …); with `false`, whether it means "false".
```swift
"SIM".validateBolean() // true
"nao".validateBolean(comparingBoolean: false) // true
```
### Conversion
#### `var bool: Bool?`
`"true"/"yes"/"1"``true`, `"false"/"no"/"0"``false`, else `nil` (trimmed, case-insensitive).
```swift
" YES ".bool // true
"maybe".bool // nil
```
#### `var int: Int?` / `var float: Float?` / `var double: Double?`
Plain `Int(self)` / `Float(self)` / `Double(self)`.
```swift
"101".int // 101
"1.5".double // 1.5
"x".int // nil
```
#### `func float(locale: Locale = .current) -> Float?` / `func double(locale:) -> Double?`
Locale-aware parsing via `NumberFormatter` (accepts grouping separators).
```swift
"1,5".double(locale: Locale(identifier: "pt_BR")) // 1.5
```
#### `var currencyStringToDouble: Double`
Parses a `pt_BR` currency string to `Double`, `0.0` on failure.
```swift
"R$ 1.234,56".currencyStringToDouble // 1234.56
```
#### `var btcToSats: Int` / `var bitcoinToSatoshis: Int`
Multiplies a BTC amount string by 100,000,000. `bitcoinToSatoshis` is an alias.
```swift
"0.0001".btcToSats // 10000
```
#### `var data: Data`
UTF-8 bytes.
```swift
"hi".data // 2 bytes
```
#### `var nsString: NSString` / `var fullNSRange: NSRange`
Bridge to `NSString`; `NSRange` spanning the whole string (UTF-16 aware).
```swift
"café".fullNSRange // {0, 4}
```
#### `func nsRange(from range: Range<String.Index>) -> NSRange?`
Convert a Swift `Range` to an `NSRange` in the UTF-16 view.
#### `var base64Encode: String?` / `var base64Decode: String?`
Base64 encode the UTF-8 bytes / decode a Base64 string back to text.
```swift
"hi".base64Encode // "aGk="
"aGk=".base64Decode // "hi"
```
#### `func date(withCurrFormatt:localeIdentifier:timeZone:) -> Date?`
Parse the string to `Date` using the given input format (default
`"yyyy-MM-dd HH:mm:ss"`, locale `pt-BR`, current time zone). A `" 0000"` suffix
is normalised to `" +0000"`.
```swift
"2026-08-29 14:30:00".date() // Date
```
#### `func date(withCurrFormatt:newFormatt:localeIdentifier:timeZone:) -> Date?`
Parse with one format and round-trip through another (normalises the value).
#### `var currentTimeZone: String`
Current time-zone offset string, e.g. `"-0300"`.
### Cleaning & filtering
#### `var withoutSpacesAndNewLines: String`
Removes every space and `\n`.
```swift
" a \n b ".withoutSpacesAndNewLines // "ab"
```
#### `var onlyNumbers: String` / `var numbers: String`
Digits only. `onlyNumbers` uses a `\D` regex; `numbers` uses `decimalDigits`.
```swift
"(11) 98765-4321".onlyNumbers // "11987654321"
```
#### `var letters: String` / `var lettersWithWhiteSpace: String`
Keep only letters (optionally keeping spaces).
```swift
"a1 b2".letters // "ab"
"a1 b2".lettersWithWhiteSpace // "a b"
```
#### `var alphanumeric: String` / `var alphanumericWithWhiteSpace: String`
Keep only alphanumerics (optionally keeping spaces).
```swift
"a-b_c 1".alphanumeric // "abc1"
```
#### `var removeSpecialChars: String`
Keeps `[A-Za-z0-9 -]` only.
```swift
"a@b#c".removeSpecialChars // "abc"
```
#### `var removeHTMLTags: String` / `var removeEmoji: String`
Strip HTML tags / strip emoji (`CharacterSet.symbols`).
```swift
"<p>hi</p>".removeHTMLTags // "hi"
"hi 😀".removeEmoji // "hi "
```
### Slicing & padding
#### `var first: String` / `var last: String`
First / last character **as a String** (`""` when empty).
#### `var uppercaseFirst: String`
Capitalises the first character only.
```swift
"hello".uppercaseFirst // "Hello"
```
#### `var firstCharacterAsString: String?` / `var lastCharacterAsString: String?`
Optional variants — `nil` when empty.
#### `func paddingStart(_ length: Int, with: String = " ") -> String` / `func paddingEnd(...)`
Pad to `length` with a repeating pad string at the start / end. No-op if already long enough.
```swift
"hue".paddingStart(10) // " hue"
"hue".paddingEnd(10, with: "br") // "huebrbrbrb"
```
#### `func truncated(toLength: Int, trailing: String? = "...") -> String`
Non-mutating truncation.
```swift
"This is long".truncated(toLength: 7) // "This is..."
```
#### `mutating func truncate(toLength: Int, trailing: String? = "...") -> String`
In-place truncation (`@discardableResult`).
#### `mutating func trim() -> String`
Trim leading/trailing whitespace and newlines, in place (`@discardableResult`).
```swift
var s = " hi \n"; s.trim() // s == "hi"
```
#### `mutating func reverse() -> String`
Reverse in place (`@discardableResult`).
#### `mutating func insertAtIndexEnd(string:ind:)` / `insertAtIndexStart(string:ind:)`
Insert `string` at an offset measured from `endIndex` (negative `ind` moves left).
```swift
var s = "abcd"; s.insertAtIndexEnd(string: "-", ind: -1) // "abc-d"
```
### Replacing
#### `func replace(from:to:)` / `func findAndReplace(from:to:)`
Simple substring replacement (`findAndReplace` is generic over `StringProtocol`).
```swift
"a.b.c".replace(from: ".", to: "-") // "a-b-c"
```
#### `func replacing(range: CountableClosedRange<Int>, with: String) -> String`
Replace by integer character range.
```swift
"abcdef".replacing(range: 1...3, with: "X") // "aXef"
```
#### `func replacingLastOccurrenceOfString(_:with:caseInsensitive: Bool = true) -> String`
Replace only the last match.
```swift
"a-b-c".replacingLastOccurrenceOfString("-", with: "+") // "a-b+c"
```
#### `func replaceAll(of pattern: String, with: String, options: = []) -> String`
Regex replace-all; returns the original on a bad pattern.
```swift
"a1b2c3".replaceAll(of: "[0-9]", with: "#") // "a#b#c#"
```
#### `@discardableResult func replaceURL(_ withDict: [String: Any]) -> String`
Substitute `{key}` placeholders — used by `API.request(pathParams:)`.
```swift
"/users/{id}/posts/{p}".replaceURL(["id": 7, "p": "x"]) // "/users/7/posts/x"
```
### Words & search
#### `func words() -> [String]` / `func wordCount() -> Int`
Split on whitespace + punctuation, dropping empties.
```swift
"Swift is amazing".words() // ["Swift", "is", "amazing"]
"Swift is amazing".wordCount() // 3
```
#### `func contains(_:caseSensitive: Bool = true) -> Bool`
Substring check with optional case-insensitivity.
```swift
"Hello".contains("ell") // true
"Hello".contains("HELLO", caseSensitive: false) // true
```
### Formatting helpers
#### `func applyMask(toText: String, mask: String) -> String`
Apply a `#`-placeholder mask; literal characters in the mask are inserted.
```swift
"11987654321".applyMask(toText: "11987654321", mask: "(##) #####-####")
// "(11) 98765-4321"
```
#### `func exponentize(str: String) -> String`
Turn `^`-prefixed digits into Unicode superscripts.
```swift
"x^2 + y^3".exponentize(str: "x^2 + y^3") // "x² + y³"
```
#### `func stringFromTimeInterval(_ interval: TimeInterval) -> NSString`
Format a `TimeInterval` as `HH:MM:SS.mmm`.
```swift
"".stringFromTimeInterval(3661.5) // "01:01:01.500"
```
#### `func toSlug() -> String`
Lowercase, de-accent, spaces → `-`, strip other punctuation.
```swift
"Olá Mundo!".toSlug() // "ola-mundo"
```
#### `func localized(comment: String = "") -> String`
`NSLocalizedString(self, comment:)`.
```swift
"welcome_title".localized()
```
### Generators & misc
#### `static func loremIpsum(ofLength length: Int = 445) -> String`
Lorem-ipsum text truncated to `length` (max 445).
```swift
String.loremIpsum(ofLength: 20) // "Lorem ipsum dolor si"
```
#### `func randomString(length: Int) -> String`
Random `[A-Za-z0-9]` string. (Instance method — the receiver is ignored.)
```swift
"".randomString(length: 8) // e.g. "a9Fk2Lp0"
```
#### `var JSONStringToDictionary: [String: Any]?`
Parse a JSON object string to a dictionary (`nil` + logs on failure).
```swift
#"{"a":1}"#.JSONStringToDictionary // ["a": 1]
```
#### `var convertToHTML: NSAttributedString?`
Render an HTML string to `NSAttributedString` (UIKit path uses the CSS converter below).
#### `func convertHtmlToAttributedStringWithCSS(font:csscolor:lineheight:csstextalign:customCSS:) -> NSAttributedString?` — *UIKit only*
HTML → `NSAttributedString` with an injected `<style>` block. Returns the plain
HTML rendering when `font` is `nil`.
```swift
"<b>Hi</b>".convertHtmlToAttributedStringWithCSS(
font: .systemFont(ofSize: 16), csscolor: "#333",
lineheight: 0, csstextalign: "left"
)
```
#### `func height(withConstrainedWidth:font:) -> CGFloat` / `func width(withConstraintedHeight:font:) -> CGFloat` — *UIKit only*
Measured bounding height/width for the string at a fixed width/height and font.
```swift
"Some label text".height(withConstrainedWidth: 200, font: .systemFont(ofSize: 14))
```
</details>
<details>
<summary><b>Character</b> — classification, conversion, repetition</summary>
### `var isEmoji: Bool`
True when the scalar falls in a known emoji range.
```swift
Character("😀").isEmoji // true
Character("a").isEmoji // false
```
### `var int: Int?` / `var string: String`
Digit value (or `nil`) / one-character `String`.
```swift
Character("7").int // 7
Character("A").int // nil
```
### `var lowercased: Character` / `var uppercased: Character`
Case-flipped character.
```swift
Character("a").uppercased // "A"
```
### `func unicodeScalarCodePoint() -> UInt32`
First Unicode scalar value.
```swift
Character("A").unicodeScalarCodePoint() // 65
```
### `static func randomAlphanumeric() -> Character`
Random `[A-Za-z0-9]` character.
```swift
Character.randomAlphanumeric() // e.g. "k"
```
### `static func * (Character, Int) -> String` / `static func * (Int, Character) -> String`
Repeat a character into a string.
```swift
Character("-") * 5 // "-----"
5 * Character("-") // "-----"
```
</details>
<details>
<summary><b>NSString</b></summary>
### `var string: String?`
`String(describing:)` of the `NSString`.
### `func randomAlphaNumericString(_ length: Int = 8) -> String`
Random `[A-Za-z0-9]` string of the given length.
```swift
("" as NSString).randomAlphaNumericString(12)
```
</details>
<details>
<summary><b>NSAttributedString / NSMutableAttributedString</b></summary>
### `NSAttributedString(html: String)` — *failable init*
Build an attributed string from an HTML fragment.
```swift
label.attributedText = NSAttributedString(html: "<b>Hello</b> world")
```
### `NSMutableAttributedString` builders — *UIKit only*, all `@discardableResult` and chainable
| Method | Effect |
|---|---|
| `customize(_:withFont:color:lineSpace:alignment:changeCurrentText:)` | append (or restyle) a run with font/color/spacing/alignment |
| `underline(_:withFont:color:changeCurrentText:)` | underlined run |
| `strikethrough(_:changeCurrentText:)` | strikethrough run |
| `linkTouch(_:url:withFont:color:changeCurrentText:)` | tappable link run |
| `supperscript(_:withFont:color:offset:changeCurrentText:)` | baseline-offset (superscript) run |
| `appendImageToText(_:)` | append an inline `UIImage` attachment |
| `normal(_:)` | append an unstyled run |
`changeCurrentText: true` restyles the first occurrence of the text already in
the string instead of appending.
```swift
let s = NSMutableAttributedString()
.customize("Total: ", withFont: .systemFont(ofSize: 14))
.customize("R$ 10", withFont: .boldSystemFont(ofSize: 14), color: .label)
.supperscript("00", withFont: .systemFont(ofSize: 9), offset: 6)
label.attributedText = s
```
### `func canSetAsLink(textToFind: String, linkURL: String) -> Bool`
Adds a `.link` attribute to the first match; returns whether it was found.
### `func attributtedString() -> NSAttributedString`
Immutable copy of the whole string.
### `func height(withConstrainedWidth:) -> CGFloat` / `func width(withConstrainedHeight:) -> CGFloat`
Bounding size for the attributed content.
</details>
<details>
<summary><b>Bytes</b> — <code>Sequence where Element == UInt8</code></summary>
### `var data: Data`
Wrap the byte sequence in `Data`.
### `var base64Decoded: Data?`
Interpret the bytes as Base64 text and decode.
### `var string: String?`
Decode the bytes as UTF-8.
```swift
let bytes: [UInt8] = [0x68, 0x69]
bytes.data // 2 bytes
bytes.string // "hi"
```
</details>
## Collections & Sequences
<details>
<summary><b>Array</b> — dedup, mutation helpers (<code>Element: Equatable</code>)</summary>
### `var unique: [Element]` / `func withoutDuplicates() -> [Element]`
New array with duplicates dropped, first occurrence kept (order preserved).
```swift
[1, 2, 2, 3].unique // [1, 2, 3]
```
### `mutating func removeDuplicates() -> [Element]`
In-place dedup (`@discardableResult`).
### `func withoutDuplicates<E: Equatable>(keyPath:) -> [Element]` / `<E: Hashable>(keyPath:)`
Dedup by a key path. The `Hashable` overload is O(n).
```swift
users.withoutDuplicates(keyPath: \.id)
```
### `var removeNilElements: [Element]`
`compactMap { $0 }` — only meaningful when `Element` is itself optional.
### `mutating func removeAll(_ item: Element) -> [Element]` / `removeAll(_ items: [Element])`
Remove every occurrence of one value / of any value in a list (`@discardableResult`).
```swift
var a = [1, 2, 2, 3]; a.removeAll(2) // [1, 3]
var b = [1, 2, 3, 4]; b.removeAll([2, 4]) // [1, 3]
```
### `mutating func prepend(_ newElement: Element)`
Insert at index 0.
### `mutating func safeSwap(from:to:)`
Swap two indices; silently no-ops if either is out of bounds or equal.
```swift
var a = [1, 2, 3]; a.safeSwap(from: 0, to: 2) // [3, 2, 1]
a.safeSwap(from: 0, to: 9) // unchanged
```
</details>
<details>
<summary><b>Collection</b> — safe indexing, chunking, indices, averages</summary>
### `var fullRange: Range<Index>`
`startIndex..<endIndex`.
### `subscript(safe index:) -> Element?` / `subscript(exist index:) -> Element?`
Bounds-checked access, `nil` instead of a crash.
```swift
let a = [1, 2, 3]
a[safe: 1] // 2
a[safe: 9] // nil
```
### `func group(by size: Int) -> [[Element]]?`
Split into chunks of `size` (last chunk may be shorter). `nil` when empty or `size <= 0`.
```swift
[0, 2, 4, 7, 6].group(by: 2) // [[0, 2], [4, 7], [6]]
```
### `func forEach(slice: Int, body: ([Element]) -> Void)`
Iterate in chunks without building the intermediate array.
```swift
[0, 2, 4, 7].forEach(slice: 2) { print($0) } // [0, 2] then [4, 7]
```
### `func indices(where condition:) -> [Index]?`
All indices matching a predicate, `nil` if none.
```swift
[1, 7, 1, 2, 1].indices(where: { $0 == 1 }) // [0, 2, 4]
```
### `func indices(of item: Element) -> [Index]` — *(`Element: Equatable`)*
All indices equal to `item`.
### `func adjacentPairs() -> AnySequence<(Element, Element)>`
Every unordered pair `(i, j)` with `i` before `j`.
```swift
Array([1, 2, 3].adjacentPairs()) // [(1, 2), (1, 3), (2, 3)]
```
### `func forEachInParallel(_:)`
`DispatchQueue.concurrentPerform` over the elements. No ordering guarantee.
### `func average() -> Double` *(`Element: BinaryInteger`)* / `func average() -> Element` *(`Element: FloatingPoint`)*
Mean, `0` for an empty collection.
```swift
[1, 2, 3, 4].average() // 2.5
[1.2, 2.3, 4.5].average() // 2.666…
```
</details>
<details>
<summary><b>BidirectionalCollection</b></summary>
### `subscript(offset distance: Int) -> Element`
Positive offset from the start, negative from the end.
```swift
let a = [1, 2, 3, 4, 5]
a[offset: 1] // 2
a[offset: -2] // 4
```
### `func last<T: Equatable>(where keyPath:, equals value:) -> Element?`
Last element whose key-path value equals `value`.
```swift
events.last(where: \.type, equals: .login)
```
</details>
<details>
<summary><b>Sequence</b> — predicates, key-path sorting, sums, dedup</summary>
### `func all(matching:)` / `func none(matching:)` / `func any(matching:)`
Whether the predicate holds for all / no / at least one element.
```swift
[2, 4, 6].all(matching: { $0 % 2 == 0 }) // true
[1, 3].any(matching: { $0 % 2 == 0 }) // false
```
### `func reject(where:) -> [Element]`
Inverse of `filter`.
```swift
[2, 3, 4, 7].reject(where: { $0 % 2 == 0 }) // [3, 7]
```
### `func count(where:) -> Int`
Number of elements matching a predicate.
### `func forEachReversed(_:)` / `func forEach(where:body:)`
Iterate right-to-left / iterate only matching elements.
### `func accumulate<U>(initial:next:) -> [U]`
Like `reduce` but returns every interim result.
```swift
[1, 2, 3].accumulate(initial: 0, next: +) // [1, 3, 6]
```
### `func filtered<T>(_ isIncluded:, map transform:) -> [T]`
`filter` + `map` in one lazy pass.
```swift
[1, 2, 3, 4].filtered({ $0 % 2 == 0 }, map: { "\($0)" }) // ["2", "4"]
```
### `func single(where:) -> Element?`
The one matching element, or `nil` if zero or more than one match.
```swift
[1, 4, 7].single(where: { $0 % 2 == 0 }) // 4
[2, 4].single(where: { $0 % 2 == 0 }) // nil
```
### `func divided(by condition:) -> (matching:, nonMatching:)`
Partition into two arrays.
```swift
let (even, odd) = [0, 1, 2, 3].divided { $0 % 2 == 0 } // ([0, 2], [1, 3])
```
### `func withoutDuplicates<T: Hashable>(transform:) -> [Element]`
Dedup by a derived hashable value.
```swift
[(1, "a"), (2, "b"), (1, "c")].withoutDuplicates { $0.0 } // [(1, "a"), (2, "b")]
```
### `func sorted(by keyPath:)` / `sorted(by keyPath:with:)` / `sorted(by:and:)` / `sorted(by:and:and:)`
Sort by one, two, or three key paths (later paths break ties). The `with:`
variant takes an explicit comparator.
```swift
people.sorted(by: \.lastName, and: \.firstName)
scores.sorted(by: \.value, with: >)
```
### `func sum() -> Element` *(`Element: AdditiveArithmetic`)* / `func sum<T: AdditiveArithmetic>(for keyPath:) -> T`
Total of the elements, or of a numeric property.
```swift
[1, 2, 3].sum() // 6
["ab", "cde"].sum(for: \.count) // 5
```
### `func first<T: Equatable>(where keyPath:, equals value:) -> Element?`
First element matching on a key path.
### `func contains(_ elements: [Element]) -> Bool` *(`Element: Equatable` or `Hashable`)*
Whether every element of `elements` is present (the `Hashable` overload is O(m+n)).
### `func containsDuplicates() -> Bool` / `func duplicates() -> [Element]` *(`Element: Hashable`)*
Whether any value repeats / the set of repeated values.
```swift
[1, 2, 2, 3, 3].duplicates().sorted() // [2, 3]
```
</details>
<details>
<summary><b>RangeReplaceableCollection</b> — rotate, take/skip, offset subscripts</summary>
### `init(expression:count:)`
Build a collection by evaluating an autoclosure `count` times.
```swift
Array(expression: Int.random(in: 0..<10), count: 3) // e.g. [4, 9, 1]
```
### `func rotated(by places: Int) -> Self` / `mutating func rotate(by:) -> Self`
Rotate elements; positive moves the tail to the front.
```swift
[1, 2, 3, 4].rotated(by: 1) // [4, 1, 2, 3]
[1, 2, 3, 4].rotated(by: -1) // [2, 3, 4, 1]
```
### `mutating func removeFirst(where:) -> Element?`
Remove and return the first match (`@discardableResult`).
### `mutating func removeRandomElement() -> Element?`
Remove and return a random element.
### `mutating func keep(while:) -> Self` / `func take(while:) -> Self` / `func skip(while:) -> Self`
`keep`/`take` return the leading run that matches; `skip` returns everything
after it.
```swift
[0, 2, 4, 7, 6].take(while: { $0 % 2 == 0 }) // [0, 2, 4]
[0, 2, 4, 7, 6].skip(while: { $0 % 2 == 0 }) // [7, 6]
```
### `mutating func removeDuplicates<E>(keyPath:)`
In-place dedup by an `Equatable` or `Hashable` key path.
### `subscript(offset: Int) -> Element` / `subscript<R: RangeExpression>(range:) -> SubSequence`
Get/set by integer offset or integer range.
```swift
var a = [10, 20, 30]; a[1] = 99 // [10, 99, 30]
a[0..<2] // [10, 99]
```
### `mutating func appendIfNonNil(_:)` / `appendIfNonNil(contentsOf:)`
Append only when the optional value / sequence is non-nil.
```swift
var a = [1]; a.appendIfNonNil(Optional<Int>.none) // [1]
a.appendIfNonNil(2) // [1, 2]
```
</details>
<details>
<summary><b>Dictionary</b> — key paths, JSON, key/value maps, merge operators</summary>
### `subscript(path path: [Key]) -> Any?`
Deep get/set through nested dictionaries.
```swift
var d: [String: Any] = ["a": ["b": ["c": 1]]]
d[path: ["a", "b", "c"]] // 1
d[path: ["a", "b", "c"]] = 2
```
### `var queryString: String`
`key=value&key=value` (no percent-encoding — encode yourself if needed).
```swift
["a": 1, "b": 2].queryString // "a=1&b=2" (order not guaranteed)
```
### `var convertToJSON: String`
Pretty-printed JSON, or an error description string on failure.
### `init(grouping sequence: by keyPath:)`
Group a sequence into `[Key: [Element]]` by a key path.
```swift
Dictionary(grouping: people, by: \.city)
```
### `func toObjetct<T: Codable & Sendable>() throws -> T`
Encode to JSON then decode into `T`. Throws `DecodingError` on a shape mismatch.
```swift
let user: User = try ["id": 1, "name": "Ana"].toObjetct()
```
### `func has(key:) -> Bool`
Key presence check.
### `mutating func removeAll<S: Sequence>(keys:)` / `static func - (lhs:keys:)` / `static func -= (lhs:keys:)`
Remove a set of keys — mutating, or as a new dictionary via `-` / `-=`.
```swift
var d = ["a": 1, "b": 2, "c": 3]
d -= ["a", "b"] // ["c": 3]
```
### `mutating func removeValueForRandomKey() -> Value?`
Remove and return one random entry's value.
### `func jsonData(prettify: Bool = false) -> Data?` / `func jsonString(prettify: Bool = false) -> String?`
Serialise to `Data` / `String`, `nil` if the dictionary isn't a valid JSON object.
### `func mapKeysAndValues<K, V>(_:) -> [K: V]` / `func compactMapKeysAndValues<K, V>(_:) -> [K: V]`
Transform both keys and values in one pass; the `compact` variant drops `nil` results.
```swift
["a": 1].mapKeysAndValues { ($0.key.uppercased(), $0.value * 10) } // ["A": 10]
```
### `func pick(keys: [Key]) -> [Key: Value]`
Sub-dictionary limited to the given keys.
### `static func + (lhs:rhs:)` / `static func += (lhs:rhs:)`
Merge two dictionaries (right wins on key clash).
### `func keys(forValue value:) -> [Key]` *(`Value: Equatable`)*
All keys mapping to a value.
### `mutating func lowercaseAllKeys()` *(`Key: StringProtocol`)*
Lowercase every key in place.
### `var uniqueValues: [Key: Value]` *(`Value: Hashable`)*
Keep only the first entry seen for each distinct value.
</details>
<details>
<summary><b>Optional</b> — safe unwrap, conditional assignment</summary>
### `func unwrapped(or defaultValue: Wrapped) -> Wrapped`
`self ?? defaultValue`, read nicely.
```swift
let name: String? = nil
name.unwrapped(or: "Guest") // "Guest"
```
### `func unwrapped(or error: Error) throws -> Wrapped`
Unwrap or throw a chosen error.
```swift
let id = try userId.unwrapped(or: AppError.missingID)
```
### `func run(_ block: (Wrapped) -> Void)`
Run a block only when non-nil (like `if let`, expression-style).
```swift
token.run { print("have token \($0)") }
```
### `static func ??= (lhs: inout Optional, rhs: Optional)`
Assign only if the right side is non-nil.
```swift
var params: String? = "a"; params ??= nil // still "a"
```
### `static func ?= (lhs: inout Optional, rhs: @autoclosure)`
Assign only if the left side is currently nil.
```swift
var text: String? = nil
text ?= "first" // "first"
text ?= "second" // still "first"
```
### `var isNilOrEmpty: Bool` / `var nonEmpty: Wrapped?` *(`Wrapped: Collection`)*
Nil-or-empty check; `nonEmpty` returns the collection only when it has content.
```swift
let list: [Int]? = []
list.isNilOrEmpty // true
list.nonEmpty // nil
```
### `static func == / != (Optional, Wrapped.RawValue?)` *(`Wrapped: RawRepresentable`)*
Compare an optional enum directly against an optional raw value.
```swift
let status: Status? = .active
status == "active" // true
```
</details>
<details>
<summary><b>Comparable</b></summary>
### `func isBetween(_ range: ClosedRange<Self>) -> Bool`
Range membership.
```swift
7.isBetween(6...12) // true
```
### `func clamped(to range: ClosedRange<Self>) -> Self`
Constrain a value to a range.
```swift
1.clamped(to: 3...8) // 3
0.32.clamped(to: 0.1...0.29) // 0.29
```
</details>
<details>
<summary><b>Bool</b></summary>
### `var int: Int` / `var string: String` / `var data: Data`
`1`/`0`, `"true"`/`"false"`, or a single-byte `Data`.
```swift
true.int // 1
false.string // "false"
```
</details>
## Numbers & Geometry
<details>
<summary><b>Int</b> — conversions, digits, primes, roman numerals, operators</summary>
### `var double: Double` / `var float: Float` / `var cgFloat: CGFloat` / `var uInt: UInt` / `var uInt32: UInt32` / `var uInt64: UInt64`
Straight numeric conversions (`uInt32`/`uInt64` truncate).
```swift
5.double // 5.0
(-1).uInt32 // 4294967295
```
### `var countableRange: CountableRange<Int>`
`0..<self`.
```swift
3.countableRange // 0..<3
```
### `var degreesToRadians: Double` / `var radiansToDegrees: Double`
Angle conversion.
```swift
180.degreesToRadians // 3.14159…
```
### `var digits: [Int]` / `var digitsCount: Int`
Decimal digits of `abs(self)`, and how many.
```swift
1234.digits // [1, 2, 3, 4]
1234.digitsCount // 4
```
### `var kFormatted: String`
Compact "k"/"kk" formatting for values ≥ 1000.
```swift
5300.kFormatted // "5k"
2_500_000.kFormatted // "25kk"
```
### `var timestampToDate: Date`
`Date(timeIntervalSince1970:)`.
```swift
1_700_000_000.timestampToDate // 2023-11-14 …
```
### `var satsToBTC: String` / `var convertToBTC: String` / `var toBTC: String`
Satoshis → BTC string, 8 decimal places. All three are the same.
```swift
150_000_000.satsToBTC // "1.50000000"
```
### `func isPrime() -> Bool`
Primality test (trial division up to √n).
```swift
7.isPrime() // true
9.isPrime() // false
```
### `func romanNumeral() -> String?`
Roman numerals for positive integers, `nil` for 0 or negative.
```swift
2024.romanNumeral() // "MMXXIV"
```
### `func roundToNearest(_ number: Int) -> Int`
Round to the closest multiple of `number`.
```swift
47.roundToNearest(10) // 50
```
### Operators
| Operator | Meaning | Example |
|---|---|---|
| `a ** b` | exponentiation → `Double` | `2 ** 3``8.0` |
| `√ n` (prefix) | square root → `Double` | `√ 9``3.0` |
| `a ± b` (infix) | `(a+b, a-b)` | `5 ± 3``(8, 2)` |
| `± n` (prefix) | `(n, -n)` | `± 2``(2, -2)` |
</details>
<details>
<summary><b>Float / Double</b></summary>
### `var int: Int` / `var double: Double` (Float) / `var float: Float` (Double) / `var cgFloat: CGFloat`
Numeric conversions.
### `var satsToBTC / convertToBTC / toBTC`
Satoshis → BTC (`Double` here, unlike `Int` which returns a `String`).
```swift
150_000_000.0.satsToBTC // 1.5
```
### `func rounded(toPlaces places: Int) -> Float` — *(Float only)*
Round to N decimal places.
```swift
Float(3.14159).rounded(toPlaces: 2) // 3.14
```
### Operator `a ** b`
Exponentiation, staying in the same type (`Float ** Float → Float`, `Double ** Double → Double`).
```swift
4.4 ** 0.5 // 2.0976…
```
</details>
<details>
<summary><b>Decimal</b></summary>
### `mutating func round(_ scale: Int, _ roundingMode:)` / `func rounded(_ scale:, _ roundingMode:) -> Decimal`
Decimal rounding via `NSDecimalRound` — mutating and non-mutating.
```swift
Decimal(2.567).rounded(2, .plain) // 2.57
```
</details>
<details>
<summary><b>BinaryInteger</b></summary>
### `var bytes: [UInt8]`
Big-endian raw byte representation.
```swift
Int16(-128).bytes // [255, 128]
```
### `init?(bytes: [UInt8])`
Reconstruct an integer from bytes (traps if the byte count exceeds the type size;
`nil` if the value doesn't fit exactly).
```swift
Int16(bytes: [0xFF, 0xFD]) // -3
```
</details>
<details>
<summary><b>BinaryFloatingPoint</b></summary>
### `func rounded(numberOfDecimalPlaces: Int, rule: FloatingPointRoundingRule) -> Self`
Round to N places with an explicit rule (negative places treated as 0).
```swift
3.1415927.rounded(numberOfDecimalPlaces: 3, rule: .up) // 3.142
```
</details>
<details>
<summary><b>SignedNumeric</b></summary>
### `var string: String`
`String(describing:)`.
### `var asLocaleCurrency: String?` / `func asCurrency(locale: Locale = pt_BR) -> String?`
Currency formatting in the current locale / a specified locale.
```swift
1234.5.asCurrency() // "R$ 1.234,50"
1234.5.asCurrency(locale: Locale(identifier: "en_US")) // "$1,234.50"
```
### `func spelledOutString(locale: Locale = .current) -> String?`
Number spelled out in words.
```swift
92.spelledOutString(locale: Locale(identifier: "en")) // "ninety-two"
```
</details>
<details>
<summary><b>CGFloat</b></summary>
### `var abs / ceil / floor` / `var int / float / double`
Math and numeric conversions.
```swift
CGFloat(-3.2).abs // 3.2
CGFloat(3.2).ceil // 4.0
```
### `var isPositive: Bool` / `var isNegative: Bool`
Sign checks.
### `var degreesToRadians: CGFloat` / `var radiansToDegrees: CGFloat`
Angle conversion.
</details>
<details>
<summary><b>CGRect</b></summary>
### `var center: CGPoint`
Rect centre.
### `init(center: CGPoint, size: CGSize)`
Build a rect from its centre and size.
```swift
CGRect(center: CGPoint(x: 50, y: 50), size: CGSize(width: 20, height: 10))
// origin (40, 45), size 20×10
```
### `func resizing(to size: CGSize, anchor: CGPoint = (0.5, 0.5)) -> CGRect`
Resize while keeping the given normalised anchor point fixed.
```swift
rect.resizing(to: CGSize(width: 100, height: 100), anchor: CGPoint(x: 0, y: 1))
// grows from the bottom-left corner
```
</details>
<details>
<summary><b>CGSize</b></summary>
### `var aspectRatio: CGFloat` / `var maxDimension: CGFloat` / `var minDimension: CGFloat`
`width / height` (0 when height is 0), and the larger / smaller side.
```swift
CGSize(width: 16, height: 9).aspectRatio // 1.777…
```
### `func aspectFit(to boundingSize:) -> CGSize` / `func aspectFill(to boundingSize:) -> CGSize`
Scale to fit inside / fill a bounding size, preserving ratio.
```swift
CGSize(width: 120, height: 80).aspectFit(to: CGSize(width: 100, height: 50))
// 75 × 50
```
### Operators
`+`, `-`, `*` and their `+=`/`-=`/`*=` forms, between two `CGSize`s, a `CGSize`
and a `(width, height)` tuple, or a `CGSize` and a scalar.
```swift
CGSize(width: 5, height: 10) + CGSize(width: 3, height: 4) // 8 × 14
CGSize(width: 5, height: 10) * 3 // 15 × 30
```
</details>
<details>
<summary><b>CGPoint / CGRect / CGSize — <code>Hashable</code></summary>
When SwiftUI is available, `CGPoint`, `CGRect`, and `CGSize` are made
`Hashable` (retroactive conformance) so they can be used as dictionary keys or
in `Set`s and as SwiftUI identifiers.
```swift
var seen: Set<CGPoint> = []
seen.insert(CGPoint(x: 1, y: 2))
```
</details>
## Date, Data & Files
<details>
<summary><b>Date</b> — components, comparisons, formatting, arithmetic, init</summary>
### Calendar-component accessors
Read (and, where noted, write) individual components using the user's current calendar.
| Property | Get | Set |
|---|---|---|
| `year` | ✅ | ✅ |
| `month` | ✅ | ✅ (clamped to valid range) |
| `day` | ✅ | ✅ (clamped) |
| `hour` / `minute` / `second` | ✅ | ✅ (clamped) |
| `nanosecond` / `millisecond` | ✅ | ✅ (clamped) |
| `weekday` / `weekOfMonth` / `weekOfYear` / `quarter` / `era` | ✅ | — |
| `calendar` | ✅ (`Calendar.current`) | — |
```swift
var d = Date()
d.year = 2030 // shifts the date to 2030, keeping everything else
d.minute = 0
Date().weekday // 1 = Sunday (Gregorian)
```
### Relative checks
`isInFuture`, `isInPast`, `isInToday`, `isInYesterday`, `isInTomorrow`,
`isInWeekend`, `isWorkday`, `isInCurrentWeek`, `isInCurrentMonth`, `isInCurrentYear`.
```swift
someDate.isInToday // Bool
someDate.isInWeekend // Bool
```
### `func isInCurrent(_ component: Calendar.Component) -> Bool`
Same granularity check, for an arbitrary component.
```swift
Date().isInCurrent(.year) // true
```
### `var iso8601String: String` / `var unixTimestamp: Double`
`yyyy-MM-dd'T'HH:mm:ss.SSS` + `Z` (GMT); seconds since 1970.
```swift
Date().iso8601String // "2026-08-29T14:51:29.574Z"
```
### Rounding
`nearestFiveMinutes`, `nearestTenMinutes`, `nearestQuarterHour`, `nearestHalfHour`, `nearestHour` — all return a new `Date`.
```swift
var d = Date(); d.minute = 44
d.nearestFiveMinutes // :45
d.nearestHour // rounds up because minute ≥ 30
```
### `var yesterday: Date` / `var tomorrow: Date`
±1 day.
### `func adding(_:value:) -> Date` / `mutating func add(_:value:)`
Add multiples of a calendar component.
```swift
Date().adding(.day, value: 7) // one week later
var d = Date(); d.add(.month, value: -1)
```
### `func changing(_:value:) -> Date?`
Set one component to a specific value (validated; `nil` if out of range).
```swift
Date().changing(.hour, value: 9) // 9am today
```
### `func beginning(of component:) -> Date?` / `func end(of component:) -> Date?`
Start / end instant of the enclosing `.day` / `.month` / `.year` / `.hour` / week, etc.
```swift
Date().beginning(of: .month) // 1st, 00:00:00
Date().end(of: .day) // 23:59:59
```
### Differences
`secondsSince(_:)`, `minutesSince(_:)`, `hoursSince(_:)`, `daysSince(_:)` — signed `Double`.
```swift
endDate.hoursSince(startDate) // e.g. 3.5
```
### `func isBetween(_ start: Date, _ end: Date, includeBounds: Bool = false) -> Bool`
Range check.
### `func isWithin(_ value: UInt, _ component: Calendar.Component, of date: Date) -> Bool`
Whether two dates are within N components of each other.
```swift
a.isWithin(3, .day, of: b) // true if ≤ 3 days apart
```
### Formatting
| Method | Example output |
|---|---|
| `string(withFormat: String = "dd/MM/yyyy HH:mm")` | `"29/08/2026 14:30"` |
| `dateString(ofStyle: .medium)` | `"Aug 29, 2026"` |
| `dateTimeString(ofStyle: .short)` | `"8/29/26, 2:30 PM"` |
| `timeString(ofStyle: .short)` | `"2:30 PM"` |
| `dayName(ofStyle: .full / .threeLetters / .oneLetter)` | `"Saturday"` / `"Sat"` / `"S"` |
| `monthName(ofStyle: .full / .threeLetters / .oneLetter)` | `"August"` / `"Aug"` / `"A"` |
```swift
Date().string(withFormat: "yyyy-MM-dd") // "2026-08-29"
Date().dayName(ofStyle: .threeLetters) // "Sat"
```
### Random dates
`static func random(in: Range<Date>) -> Date`, plus `ClosedRange` and
`using generator:` variants.
```swift
Date.random(in: startDate...endDate)
```
### Initializers
- `init?(calendar:timeZone:era:year:month:day:hour:minute:second:nanosecond:)` — every field defaults to "now".
- `init?(iso8601String:)` — parse `yyyy-MM-dd'T'HH:mm:ss.SSSZ`.
- `init(unixTimestamp:)` — seconds since 1970.
- `init?(integerLiteral:)` — parse a packed `yyyyMMdd` integer.
```swift
Date(year: 2010, month: 1, day: 12)
Date(iso8601String: "2026-01-12T16:48:00.959Z")
Date(integerLiteral: 2026_12_25)
```
</details>
<details>
<summary><b>Data</b> — JSON, hashing, hex, XOR, decoding</summary>
### `var prettyJson: String?`
Pretty-printed JSON if the data is a valid JSON value.
```swift
responseData.prettyJson
```
### `var toDictionay: [String: Any]?`
Parse a JSON object to a dictionary (note the spelling — `toDictionay`).
### `var toHexString: String` / `func toHexadecimalString() -> String`
Lower-case hex representation of the bytes.
```swift
Data([0x0f, 0xa0]).toHexString // "0fa0"
```
### `var bool: Bool`
`first != 0`.
### `init?(hexString:)`
Parse a hex string (spaces allowed) to bytes; `nil` on an invalid nibble.
```swift
Data(hexString: "0f a0") // 2 bytes
```
### `func SHA256() -> Data` / `func SHA512() -> Data`
CommonCrypto digests (empty `Data` if CommonCrypto is unavailable).
```swift
Data("abc".utf8).SHA256().toHexString
```
### `func HMACSHA512(key: Data) -> Data` — *iOS 13+*
CryptoKit HMAC-SHA512.
```swift
message.HMACSHA512(key: secret)
```
### `func XOR(with other: Data) -> Data`
Byte-wise XOR (result length = shorter of the two).
```swift
a.XOR(with: pad)
```
### `static func MD5(string:) -> Data` — *iOS 13+*
MD5 of a string (insecure — legacy interop only). Returns the hex digest **as UTF-8 bytes**.
```swift
Data.MD5(string: "Hello").toHexString
```
### `func object<T: Codable & Sendable>() -> T?`
Decode JSON data to `T`, `nil` + logs on failure.
```swift
let user: User? = responseData.object()
```
</details>
<details>
<summary><b>URL</b></summary>
### `var params: [String: String]`
Query items as a dictionary (missing values become `""`).
```swift
URL(string: "https://x.com?a=1&b=2")!.params // ["a": "1", "b": "2"]
```
</details>
<details>
<summary><b>FileManager</b> — Documents-directory helpers</summary>
### `func createDirectory(_ directoryName: String) -> URL?`
Create (if missing) a folder under Documents; returns its URL.
```swift
let dir = FileManager.default.createDirectory("cache")
```
### `func retrieveFile(_ directoryAndFile: String) -> URL`
Build a `file://` URL under Documents for the given relative path (no existence check).
### `func convertToURL(path: String) -> URL?`
Directory URL under Documents, or `nil` if it can't be listed.
### `func saveFileToDirectory(_ sourceURL: URL, toPathURL: URL) -> Bool`
`moveItem(at:to:)`, returning success.
### `func saveImageToDirectory(_ imageWithPath: String, imagem: UIImage) -> Bool` — *UIKit only*
Write a `UIImage` as PNG to an absolute path.
```swift
FileManager.default.saveImageToDirectory(path, imagem: photo)
```
### `func removeFile(_ directoryAndFile: String) -> Bool`
`removeItem(atPath:)`, returning success.
### `func retrieveAllFilesFromDirectory(directoryName: String) -> [String]?`
File names in a Documents sub-folder (`.DS_Store` filtered out).
### `func directoryExistsAtPath(_ path: String) -> Bool`
Exists **and** is a directory.
</details>
<details>
<summary><b>UserDefaults</b> — Codable storage, common flags (<code>@MainActor</code>)</summary>
### `var isLoggedIn: Bool` / `var isFirstTimeOnApp: Bool`
Ready-made boolean flags (keys `"isLoggedIn"` / `"isFirstTimeOnApp"`), auto-`synchronize()` on set.
```swift
UserDefaults.standard.isFirstTimeOnApp = false
```
### `func set<T: Codable>(object: T, forKey key: String, usingEncoder: = JSONEncoder())`
Encode and store any `Codable` value.
### `func object<T: Codable>(_ type: T.Type, with key: String, usingDecoder: = JSONDecoder()) -> T?`
Decode a stored `Codable` value.
```swift
UserDefaults.standard.set(object: user, forKey: "user")
let user = UserDefaults.standard.object(User.self, with: "user")
```
### `func removeSavedObject(forKey:) -> Bool`
Remove a value **only if it is a String**; returns whether it removed anything.
### `func removeAllSaved()`
Wipe the app's entire persistent domain.
### `func showEverything() -> [String: Any]`
Full `dictionaryRepresentation()` — handy for debugging.
</details>
## Encoding & Errors
<!-- batch 7 -->
## Crypto
<details>
<summary><b>RIPEMD_160</b> — RIPEMD-160 digest</summary>
### `static func hash(_ message: Data) -> Data`
Returns the 20-byte RIPEMD-160 digest of `message`. Pure Swift, no system
dependency. Mainly useful for Bitcoin-style address hashing (`RIPEMD160(SHA256(x))`).
```swift
let digest = RIPEMD_160.hash(Data("abc".utf8))
digest.count // 20
digest.map { String(format: "%02x", $0) }.joined()
// "8eb208f7e05d987a9b044a8e98c6b087f15a0bfc"
```
</details>
<details>
<summary><b>LCECryptoKitManager</b> — OTP / peppered-login bridge (needs the <code>LCECryptoKit</code> binary)</summary>
A thin facade over the optional `LCECryptoKit` binary product (enabled by the
`LCE_ENABLE_CRYPTO_BINARY` build flag). **When the binary is not linked every
method is a no-op** returning `nil` / `""` / `false`, so calling code still
compiles and runs.
### `init()` / `init(privateKey:)`
Create a manager. The `privateKey` (a.k.a. "hash key") is only needed by the
`*WithKey` methods.
```swift
let crypto = LCECryptoKitManager()
let keyed = LCECryptoKitManager(privateKey: serverHashKey)
```
### `static func generateKey() -> String`
Generates a random AES key string.
```swift
let key = LCECryptoKitManager.generateKey()
```
### `func encodeTP(email:password:) -> String?` / `func decodeOTP(_:) -> String?`
Encode an email+password pair into an OTP seed hash, and decode it back.
```swift
let hash = crypto.encodeTP(email: "ana@x.com", password: "s3cr3t")
let back = crypto.decodeOTP(hash ?? "")
```
### `func encodeOTPWithKey(email:password:) -> String?` / `func decodeOTPWithKey(_:) -> Bool`
Same as above but bound to the instance's `privateKey`; `decodeOTPWithKey`
returns whether the hash validates against that key rather than the decoded value.
```swift
let keyed = LCECryptoKitManager(privateKey: serverHashKey)
let hash = keyed.encodeOTPWithKey(email: "ana@x.com", password: "s3cr3t")
let ok = keyed.decodeOTPWithKey(hash ?? "") // Bool
```
### `static func generateSalt() -> String`
Random salt for the salted/iterated/peppered login flow.
```swift
let salt = LCECryptoKitManager.generateSalt()
```
### `static func computeClientHash(email:password:salt:) -> String`
Client-side hash of the credentials with the given salt — sent to the server
instead of the raw password.
```swift
let clientHash = LCECryptoKitManager.computeClientHash(
email: "ana@x.com", password: "s3cr3t", salt: salt
)
```
### `static func computeLoginBearerToken(userId:clientHash:) -> String?`
Derives the login bearer token from a user id and the client hash.
```swift
let token = LCECryptoKitManager.computeLoginBearerToken(userId: "42", clientHash: clientHash)
```
### `static func otpEncode(_:) -> String?` / `static func otpDecode(_:) -> String?`
One-time-pad encode/decode of an arbitrary string.
```swift
let enc = LCECryptoKitManager.otpEncode("secret-value")
let dec = LCECryptoKitManager.otpDecode(enc ?? "") // "secret-value"
```
</details>
## Core — the `LCEssentials` namespace
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