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https://github.com/krzyzanowskim/CryptoSwift.git
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- Replace direct Foundation imports with conditional imports across sources and tests to use FoundationEssentials when present. - No functional changes; improves compatibility with the new Foundation stack (Swift 6, non-ObjC platforms) and environments where only FoundationEssentials is available.
145 lines
4.5 KiB
Swift
145 lines
4.5 KiB
Swift
//
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// CryptoSwift
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//
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// Copyright (C) 2014-2025 Marcin Krzyżanowski <marcin@krzyzanowskim.com>
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// This software is provided 'as-is', without any express or implied warranty.
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//
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// In no event will the authors be held liable for any damages arising from the use of this software.
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//
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// Permission is granted to anyone to use this software for any purpose, including commercial applications, and to alter it and redistribute it freely, subject to the following restrictions:
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//
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// - The origin of this software must not be misrepresented; you must not claim that you wrote the original software. If you use this software in a product, an acknowledgment in the product documentation is required.
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// - Altered source versions must be plainly marked as such, and must not be misrepresented as being the original software.
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// - This notice may not be removed or altered from any source or binary distribution.
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//
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#if canImport(FoundationEssentials)
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import FoundationEssentials
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#else
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import Foundation
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#endif
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import XCTest
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@testable import CryptoSwift
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final class ExtensionsTest: XCTestCase {
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func testBytes() {
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let size = MemoryLayout<UInt32>.size // 32 or 64 bit
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let i: UInt32 = 1024
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var bytes = i.bytes()
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XCTAssertTrue(bytes.count == size, "Invalid bytes length = \(bytes.count)")
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// test padding
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bytes = i.bytes(totalBytes: 16)
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XCTAssertTrue(bytes.count == 16, "Invalid return type \(bytes.count)")
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XCTAssertTrue(bytes[14] == 4, "Invalid return type \(bytes.count)")
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}
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func testToUInt32Array() {
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let chunk: ArraySlice<UInt8> = [0x8, 0x7, 0x6, 0x5, 0x4, 0x3, 0x2, 0x1]
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let result = chunk.toUInt32Array()
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XCTAssert(result.count == 2, "Invalid conversion")
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XCTAssertEqual(result[0], 0x5060708)
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XCTAssertEqual(result[1], 0x1020304)
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}
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func testToUInt32Performance() {
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let len = 1_000_000
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let a = [UInt8](unsafeUninitializedCapacity: len) { buf, count in
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for i in 0..<len {
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buf[i] = UInt8.random(in: 0...UInt8.max)
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}
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count = len
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}
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self.measure {
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_ = a.toUInt32Array()
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}
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}
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func testToUInt64Performance() {
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let len = 1_000_000
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let a = [UInt8](unsafeUninitializedCapacity: len) { buf, count in
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for i in 0..<len {
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buf[i] = UInt8.random(in: 0...UInt8.max)
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}
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count = len
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}
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self.measure {
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_ = a.toUInt64Array()
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}
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}
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func testDataInit() {
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let data = Data( [0x01, 0x02, 0x03])
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XCTAssert(data.count == 3, "Invalid data")
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}
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func testStringEncrypt() {
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do {
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let encryptedHex = try "my secret string".encrypt(cipher: AES(key: "secret0key000000", iv: "0123456789012345"))
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XCTAssertEqual(encryptedHex, "68f7ff8bdb61f625febdfe3d791ecf624daaed2e719a6de39112de8e0cc7349b")
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} catch {
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XCTFail(error.localizedDescription)
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}
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}
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func testEmptyStringEncrypt() {
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do {
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let cipher = try AES(key: "secret0key000000".bytes.md5(), blockMode: ECB())
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let encrypted = try "".encryptToBase64(cipher: cipher)
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let decrypted = try encrypted.decryptBase64ToString(cipher: cipher)
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XCTAssertEqual("", decrypted)
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XCTAssertThrowsError(try "".decryptBase64(cipher: cipher))
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} catch {
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XCTFail(error.localizedDescription)
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}
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}
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func testStringDecryptBase64() {
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let encryptedBase64 = "aPf/i9th9iX+vf49eR7PYk2q7S5xmm3jkRLejgzHNJs="
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let decrypted = try! encryptedBase64.decryptBase64ToString(cipher: AES(key: "secret0key000000", iv: "0123456789012345"))
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XCTAssertEqual(decrypted, "my secret string")
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}
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func testArrayInitHex() {
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let bytes = Array<UInt8>(hex: "0xb1b1b2b2")
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XCTAssertEqual(bytes, [177, 177, 178, 178])
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let str = "b1b2b3b3b3b3b3b3b1b2b3b3b3b3b3b3"
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let array = Array<UInt8>(hex: str)
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let hex = array.toHexString()
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XCTAssertEqual(str, hex)
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}
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func testToHexStringPerformance() {
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let len = 100000
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let a = [UInt8](unsafeUninitializedCapacity: len) { buf, count in
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for i in 0..<len {
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buf[i] = UInt8.random(in: 0...UInt8.max)
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}
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count = len
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}
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self.measure {
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_ = a.toHexString()
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}
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}
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}
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extension ExtensionsTest {
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static func allTests() -> [(String, (ExtensionsTest) -> () -> Void)] {
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let tests = [
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("testBytes", testBytes),
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("testToUInt32Array", testToUInt32Array),
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("testDataInit", testDataInit),
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("testStringEncrypt", testStringEncrypt),
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("testStringDecryptBase64", testStringDecryptBase64),
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("testEmptyStringEncrypt", testEmptyStringEncrypt),
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("testArrayInitHex", testArrayInitHex)
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]
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return tests
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}
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}
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