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application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth();
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth(); let version = auth.getVersion(); console.info(`auth version = ${version}`);
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth(); let checkCode = auth.getAvailableStatus(userAuth.UserAuthType.FACE, userAuth.AuthTrustLevel.ATL1); if (checkCode == userAuth.ResultCode.SUCCESS) { console.info('check auth support success'); } else { console.error(`check aut...
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth(); let challenge = new Uint8Array([]); auth.auth(challenge, userAuth.UserAuthType.FACE, userAuth.AuthTrustLevel.ATL1, { onResult: (result, extraInfo) => { try { console.info(`auth onResult result = ${result}`); co...
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; // contextId can be obtained via auth(). In this example, it is defined here. let contextId = new Uint8Array([0, 1, 2, 3, 4, 5, 6, 7]); let auth = new userAuth.UserAuth(); let cancelCode = auth.cancelAuth(contextId); if (cancelCode == userAuth.ResultCode.SUCCESS) ...
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth(); let challenge = new Uint8Array([]); auth.auth(challenge, userAuth.UserAuthType.FACE, userAuth.AuthTrustLevel.ATL1, { onResult: (result, extraInfo) => { try { console.info(`auth onResult result = ${result}`); co...
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let auth = new userAuth.UserAuth(); let challenge = new Uint8Array([]); auth.auth(challenge, userAuth.UserAuthType.FACE, userAuth.AuthTrustLevel.ATL1, { onResult: (result, extraInfo) => { try { console.info(`auth onResult result = ${result}`); co...
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let authenticator = userAuth.getAuthenticator();
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; let authenticator = userAuth.getAuthenticator(); authenticator.execute('FACE_ONLY', 'S2', (error, code)=>{ if (code === userAuth.ResultCode.SUCCESS) { console.info('auth success'); return; } console.error(`auth fail, code = ${code}`); });
application-dev\reference\apis-user-authentication-kit\js-apis-useriam-userauth.md
import { userAuth } from '@kit.UserAuthenticationKit'; try { let authenticator = userAuth.getAuthenticator(); authenticator.execute('FACE_ONLY', 'S2').then((code)=>{ console.info('auth success'); }) } catch (error) { console.error(`auth fail, code = ${error}`); }
application-dev\reference\apis-user-authentication-kit\ohos-useriam-userauthicon.md
import { userAuth, UserAuthIcon } from '@kit.UserAuthenticationKit';
application-dev\reference\apis-user-authentication-kit\ohos-useriam-userauthicon.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { userAuth, UserAuthIcon } from '@kit.UserAuthenticationKit'; @Entry @Component struct Index { rand = cryptoFramework.createRandom(); len: number = 16; randData: Uint8Array = this.rand?.generateRandomSync(this.len)?.data; authParam: userAuth....
application-dev\reference\common\js-apis-logs.md
console.traceHybridStack(); // TraceHybridStack: // xxxxxxxxxxxxx (information about the current hybrid stack of the calling thread)
application-dev\reference\common\js-apis-timer.md
setTimeout(() => { console.info('delay 1s'); }, 1000);
application-dev\reference\common\js-apis-timer.md
function myFunction(param1: string, param2: string) { console.info(param1, param2); } setTimeout(myFunction, 1000, 'Hello', 'World');
application-dev\reference\common\js-apis-timer.md
function foo() { console.info('OH test foo is called') } setTimeout(foo, 0); console.info('After OH test setTimeout') // output After OH test setTimeout OH test foo is called
application-dev\reference\native-lib\vulkan-guidelines.md
XComponent({ id: 'xcomponentId', type: 'surface', libraryname: 'entry' }) .margin({ bottom: 20 }) .width(360) .height(360)
application-dev\security\AccessToken\pastebutton.md
import { pasteboard } from '@kit.BasicServicesKit';
application-dev\security\AccessToken\pastebutton.md
import { pasteboard, BusinessError } from '@kit.BasicServicesKit'; @Entry @Component struct Index { @State message: string = ''; build() { Row() { Column({ space: 10 }) { TextInput({placeholder: 'Please enter the verification code.', text: this.message}) ...
application-dev\security\AccessToken\request-user-authorization-second.md
import { abilityAccessCtrl, Context, common } from '@kit.AbilityKit'; import { BusinessError } from '@kit.BasicServicesKit'; let atManager: abilityAccessCtrl.AtManager = abilityAccessCtrl.createAtManager(); let context: Context = this.getUIContext().getHostContext() as common.UIAbilityContext; atManager.requestPermiss...
application-dev\security\AccessToken\request-user-authorization.md
import { abilityAccessCtrl, bundleManager, Permissions } from '@kit.AbilityKit'; import { BusinessError } from '@kit.BasicServicesKit'; async function checkPermissionGrant(permission: Permissions): Promise<abilityAccessCtrl.GrantStatus> { let atManager: abilityAccessCtrl.AtManager = abilityAccessCtrl.cre...
application-dev\security\AccessToken\request-user-authorization.md
import { abilityAccessCtrl, common, Permissions, UIAbility } from '@kit.AbilityKit'; import { window } from '@kit.ArkUI'; import { BusinessError } from '@kit.BasicServicesKit'; const permissions: Array<Permissions> = ['ohos.permission.LOCATION','ohos.permission.APPROXIMATELY_LOCATION']; f...
application-dev\security\AccessToken\request-user-authorization.md
import { abilityAccessCtrl, common, Permissions } from '@kit.AbilityKit'; import { BusinessError } from '@kit.BasicServicesKit'; const permissions: Array<Permissions> = ['ohos.permission.LOCATION','ohos.permission.APPROXIMATELY_LOCATION']; function reqPermissionsFromUser(permissions: Array<Perm...
application-dev\security\AccessToken\savebutton.md
import { photoAccessHelper } from '@kit.MediaLibraryKit'; import { fileIo } from '@kit.CoreFileKit';
application-dev\security\AccessToken\savebutton.md
import { photoAccessHelper } from '@kit.MediaLibraryKit'; import { fileIo } from '@kit.CoreFileKit'; import { common } from '@kit.AbilityKit'; import { promptAction } from '@kit.ArkUI'; import { BusinessError } from '@kit.BasicServicesKit'; async function savePhotoToGallery(context: common.UIAbilityC...
application-dev\security\CryptoArchitectureKit\crypto-3des-sym-encrypt-decrypt-ecb.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // Encrypt the message. async function encryptMessagePromise(symKey: cryptoFramework.SymKey, plainText: cryptoFramework.DataBlob) { // If CBC, CTR, OFB, or CFB is used, modify the cipher mode and set the IV. ...
application-dev\security\CryptoArchitectureKit\crypto-3des-sym-encrypt-decrypt-ecb.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // Encrypt the message. function encryptMessage(symKey: cryptoFramework.SymKey, plainText: cryptoFramework.DataBlob) { // If CBC, CTR, OFB, or CFB is used, modify the cipher mode and set the IV. let cipher ...
application-dev\security\CryptoArchitectureKit\crypto-3des-sym-encrypt-decrypt-ecb.md
function genIvParamsSpec() { let ivBlob = generateRandom (8); // The IV for 3DES CBC, CFB, OFB, or CTR is of 8 bytes. let ivParamsSpec: cryptoFramework.IvParamsSpec = { algName: "IvParamsSpec", iv: ivBlob }; return ivParamsSpec; } let iv = genIvParamsSpec(); let cipher = cryptoFramewor...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-cbc.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genIvParamsSpec() { let ...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-cbc.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genIvParamsSpec() { let ...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-ccm.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genCcmParamsSpec() { let rand: cryptoFramework.Random = cryptoFramework.createRandom(); let ivBlob: cryptoFramework.DataBlob = rand.generateRandomSync(7); let aadBlob: cryptoFramework.DataBlob = ...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-ccm.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genCcmParamsSpec() { let rand: cryptoFramework.Random = cryptoFramework.createRandom(); let ivBlob: cryptoFramework.DataBlob = rand.generateRandomSync(7); let aadBlob: cryptoFramework.D...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-ecb.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // Encrypt the message. async function encryptMessagePromise(symKey: cryptoFramework.SymKey, plainText: cryptoFramework.DataBlob) { let cipher = cryptoFramework.createCipher('AES128|ECB|PKCS7'); await ciphe...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-ecb.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // Encrypt the message. function encryptMessage(symKey: cryptoFramework.SymKey, plainText: cryptoFramework.DataBlob) { let cipher = cryptoFramework.createCipher('AES128|ECB|PKCS7'); cipher.initSync(cryptoFr...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-gcm-by-segment.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genGcmParamsSpec() { let...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-gcm-by-segment.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genGcmParamsSpec() { l...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-gcm.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genGcmParamsSpec() { let...
application-dev\security\CryptoArchitectureKit\crypto-aes-sym-encrypt-decrypt-gcm.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function generateRandom(len: number) { let rand = cryptoFramework.createRandom(); let generateRandSync = rand.generateRandomSync(len); return generateRandSync; } function genGcmParamsSpec() { let...
application-dev\security\CryptoArchitectureKit\crypto-compute-cmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('AES128'); let symKey = a...
application-dev\security\CryptoArchitectureKit\crypto-compute-cmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('AES128'); let symKey = aesGen...
application-dev\security\CryptoArchitectureKit\crypto-compute-cmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('AES128'); let symKey = a...
application-dev\security\CryptoArchitectureKit\crypto-compute-cmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('AES128'); let symKey = aesGene...
application-dev\security\CryptoArchitectureKit\crypto-compute-hmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('HMAC'); let symKey = awa...
application-dev\security\CryptoArchitectureKit\crypto-compute-hmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('HMAC'); let symKey = aesGener...
application-dev\security\CryptoArchitectureKit\crypto-compute-hmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('HMAC'); let symKey = awa...
application-dev\security\CryptoArchitectureKit\crypto-compute-hmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('HMAC'); let symKey = aesGenera...
application-dev\security\CryptoArchitectureKit\crypto-compute-hmac.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function genSymKeyByData(symKeyData: Uint8Array) { let symKeyBlob: cryptoFramework.DataBlob = { data: symKeyData }; let aesGenerator = cryptoFramework.createSymKeyGenerator('HMAC'); let symKey = awa...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertAsyKey() { let rsaGenerator = cryptoFramework.createAsyKeyGenerator('RSA1024'); let pkVal = new Uint8Array([48, 129, 159, 48, 13, 6, 9, 42, 134, 72, 134, 247, 13, 1, 1, 1, 5, 0, 3, 129, 141, 0, 48, 129, 137, 2, 129, 129, 0, 174, 20...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertAsyKeySync() { let rsaGenerator = cryptoFramework.createAsyKeyGenerator('RSA1024'); let pkVal = new Uint8Array([48, 129, 159, 48, 13, 6, 9, 42, 134, 72, 134, 247, 13, 1, 1, 1, 5, 0, 3, 129, 141, 0, 48, 129, 137, 2, 129, 129, 0, 174...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertEccAsyKey() { let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 134, 72, 206, 61, 3, 1, 7, 3, 66, 0, 4, 83, 96, 142, 9, 86, 214, 126, 106, 247, 233, 92, 125, 4, 128, 138, 105, 246, 162, 215, ...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertECCAsyKeySync() { let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 134, 72, 206, 61, 3, 1, 7, 3, 66, 0, 4, 83, 96, 142, 9, 86, 214, 126, 106, 247, 233, 92, 125, 4, 128, 138, 105, 246, 162, 2...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function main() { // Create an AsyKeyGenerator instance. let eccGenerator = cryptoFramework.createAsyKeyGenerator('ECC256'); // Use AsyKeyGenerator to randomly generate an asymmetric key pair. let keyGenPromise = eccGenerator.generat...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertSM2AsyKey() { let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 129, 28, 207, 85, 1, 130, 45, 3, 66, 0, 4, 90, 3, 58, 157, 190, 248, 76, 7, 132, 200, 151, 208, 112, 230, 96, 140, 90, 238, 211...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function convertSM2AsyKeySync() { let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 129, 28, 207, 85, 1, 130, 45, 3, 66, 0, 4, 90, 3, 58, 157, 190, 248, 76, 7, 132, 200, 151, 208, 112, 230, 96, 140, 90, 238,...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-sym-key.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; function genKeyMaterialBlob(): cryptoFramework.DataBlob { let arr = [ 0xba, 0x3d, 0xc2, 0x71, 0x21, 0x1e, 0x30, 0x56, 0xad, 0x47, 0xfc, 0x5a, 0x46, 0x39, 0xee, 0x7c, 0xba, 0x3b...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-sym-key.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function genKeyMaterialBlob(): cryptoFramework.DataBlob { let arr = [ 0xba, 0x3d, 0xc2, 0x71, 0x21, 0x1e, 0x30, 0x56, 0xad, 0x47, 0xfc, 0x5a, 0x46, 0x39, 0xee, 0x7c, 0xba, 0x3b, 0xc2, 0x71, 0xab, 0xa0, 0x30, 0x72]; // The key length ...
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-sym-key.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function testConvertHmacKey() { // The symmetric key length is 64 bytes (512 bits). let keyMessage = '12345678abcdefgh12345678abcdefgh12345678abcdefgh12345678abcdefgh'; let keyBlob: cryptoFramework....
application-dev\security\CryptoArchitectureKit\crypto-convert-binary-data-to-sym-key.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function testConvertKeySync() { // The symmetric key length is 64 bytes (512 bits). let keyMessage = '12345678abcdefgh12345678abcdefgh12345678abcdefgh12345678abcdefgh'; let keyBlob: cryptoFramework.DataBl...
application-dev\security\CryptoArchitectureKit\crypto-convert-compressed-or-uncompressed-ECC-point.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function eccPointUncompressedToCompressed() { let pkData = new Uint8Array([4, 143, 39, 57, 249, 145, 50, 63, 222, 35, 70, 178, 121, 202, 154, 21, 146, 129, 75, 76, 63, 8, 195, 157, 111, 40, 217, 215, 148, 120, 224, 205, 82, 83, 92, 185, 21, 211, 184, 5, 1...
application-dev\security\CryptoArchitectureKit\crypto-convert-compressed-or-uncompressed-ECC-point.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function eccPointCompressedToPoint() { let pkData = new Uint8Array([2, 143, 39, 57, 249, 145, 50, 63, 222, 35, 70, 178, 121, 202, 154, 21, 146, 129, 75, 76, 63, 8, 195, 157, 111, 40, 217, 215, 148, 120, 224, 205, 82]); let returnPoint = cryptoFram...
application-dev\security\CryptoArchitectureKit\crypto-convert-compressed-or-uncompressed-ECC-pubkey.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function eccPubUncompressedToCompressed() { let pkData = new Uint8Array([48, 90, 48, 20, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 9, 43, 36, 3, 3, 2, 8, 1, 1, 7, 3, 66, 0, 4, 143, 39, 57, 249, 145, 50, 63, 222, 35, 70, 178, 121, 202, 154, 21, 146, 129, ...
application-dev\security\CryptoArchitectureKit\crypto-convert-string-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; let priKeyPkcs1Str1024: string = "-----BEGIN RSA PRIVATE KEY-----\n" + "MIICXQIBAAKBgQCwIN3mr21+N96ToxnVnaS+xyK9cNRAHiHGgrbjHw6RAj3V+l+W\n" + "Y68IhIe3DudVlzE9oMjeOQwkMkq//HCxNlIlFR6O6pa0mrXSwPRE7YKG97CeKk2g\n" + "YOS8YEh8toAvm7xKbiLkXuuM...
application-dev\security\CryptoArchitectureKit\crypto-convert-string-data-to-asym-key-pair.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; let priKeyPkcs1Str1024: string = "-----BEGIN RSA PRIVATE KEY-----\n" + "MIICXQIBAAKBgQCwIN3mr21+N96ToxnVnaS+xyK9cNRAHiHGgrbjHw6RAj3V+l+W\n" + "Y68IhIe3DudVlzE9oMjeOQwkMkq//HCxNlIlFR6O6pa0mrXSwPRE7YKG97CeKk2g\n" + "YOS8YEh8toAvm7xKbiLkXuuM...
application-dev\security\CryptoArchitectureKit\crypto-ecdsa-sign-sig-verify.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // The plaintext is split into input1 and input2. let input1: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan1", 'utf-8').buffer) }; let input2: cryptoFramework.DataBlob = { d...
application-dev\security\CryptoArchitectureKit\crypto-ecdsa-sign-sig-verify.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; // The plaintext is split into input1 and input2. let input1: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan1", 'utf-8').buffer) }; let input2: cryptoFramework.DataBlob = { d...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; // Generate an RSA public key parameter (RsaPubKeySpec). function genRsaPubKeySpec(nIn: bigint, eIn: bigint): cryptoFramework.RSAPubKeySpec { let rsaCommSpec: cryptoFramework.RSACommonParamsSpec = { n: nIn, algName: 'RSA', specType:...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; // Generate an RSA public key parameter (RsaPubKeySpec). function genRsaPubKeySpec(nIn: bigint, eIn: bigint): cryptoFramework.RSAPubKeySpec { let rsaCommSpec: cryptoFramework.RSACommonParamsSpec = { n: nIn, algName: 'RSA', specType:...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; // Print bigint information. function showBigIntInfo(bnName: string, bnValue: bigint | string | number) { if (typeof bnValue === 'string') { console.error('type is string'); return...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function showBigIntInfo(bnName: string, bnValue: bigint | string | number) { if (typeof bnValue === 'string') { console.error('type is string'); return; } if (typeof bnValue === 'number') { console.error('type is number'); ...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function genSM2KeyPairSpec() { let sm2CommonParamsSpec = cryptoFramework.ECCKeyUtil.genECCCommonParamsSpec('NID_sm2'); let sm2KeyPairSpec: cryptoFramework.ECCKeyPairSpec = { algName: "SM2", specType: cryptoFramework.AsyKeySpecType.KEY_...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-from-key-spec.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function genSM2KeyPairSpec() { let sm2CommonParamsSpec = cryptoFramework.ECCKeyUtil.genECCCommonParamsSpec('NID_sm2'); let sm2KeyPairSpec: cryptoFramework.ECCKeyPairSpec = { algName: "SM2", specType: cryptoFramework.AsyKeySpecType.KEY_...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function generateAsyKey() { // Create an AsyKeyGenerator instance. let rsaGenerator = cryptoFramework.createAsyKeyGenerator('RSA1024|PRIMES_2'); // Use AsyKeyGenerator to randomly generate an asymmetric key pair. let keyGenPromise = rsaGen...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function generateAsyKeySync() { // Create an AsyKeyGenerator instance. let rsaGenerator = cryptoFramework.createAsyKeyGenerator('RSA1024|PRIMES_2'); // Use AsyKeyGenerator to randomly generate an asymmetric key pair. try { let keyPai...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function generateSM2Key() { // Create an AsyKeyGenerator instance. let sm2Generator = cryptoFramework.createAsyKeyGenerator('SM2_256'); // Use AsyKeyGenerator to randomly generate an asymmetric key pair. let keyGenPromise = sm2Generator.ge...
application-dev\security\CryptoArchitectureKit\crypto-generate-asym-key-pair-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function generateSM2KeySync() { // Create an AsyKeyGenerator instance. let rsaGenerator = cryptoFramework.createAsyKeyGenerator('SM2_256'); // Use AsyKeyGenerator to randomly generate an asymmetric key pair. try { let keyPair = rsaGe...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest-md5.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function doMd() { let mdAlgName = 'MD5'; // MD algorithm to use. let message = 'mdTestMessage'; // Message to be digested. let md = cryptoFramework.createMd(mdAlgName); // If there is a small am...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest-md5.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function doMdBySync() { let mdAlgName = 'MD5'; // MD algorithm to use. let message = 'mdTestMessage'; // Message to be digested. let md = cryptoFramework.createMd(mdAlgName); // If there is a small am...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest-md5.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function doLoopMd() { let mdAlgName = 'MD5'; // MD algorithm to use. let md = cryptoFramework.createMd(mdAlgName); // In this example, the message is of 43 bytes. After decoded in UTF-8 format, the ...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest-md5.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function doLoopMdBySync() { let mdAlgName = 'MD5'; // MD algorithm to use. let md = cryptoFramework.createMd(mdAlgName); // In this example, the message is of 43 bytes. After decoded in UTF-8 format, the ...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function doSha256() { let mdAlgName = "SHA256"; // Algorithm to use. let message = 'mdTestMessage'; // Message to be digested. let md = cryptoFramework.createMd(mdAlgName); // If there is a smal...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function doSha256BySync() { let mdAlgName = "SHA256"; // Algorithm to use. let message = 'mdTestMessage'; // Message to be digested. let md = cryptoFramework.createMd(mdAlgName); // If there is a smal...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function doLoopSha256() { let mdAlgName = "SHA256"; // Algorithm to use. let md = cryptoFramework.createMd(mdAlgName); // In this example, the message is of 43 bytes. After decoded in UTF-8 format, ...
application-dev\security\CryptoArchitectureKit\crypto-generate-message-digest.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; function doLoopSha256BySync() { let mdAlgName = "SHA256"; // Algorithm to use. let md = cryptoFramework.createMd(mdAlgName); // In this example, the message is of 43 bytes. After decoded in UTF-8 format, ...
application-dev\security\CryptoArchitectureKit\crypto-generate-random-number.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function doRand() { let rand = cryptoFramework.createRandom(); let seed = new Uint8Array([1, 2, 3]); rand.setSeed({ data: seed }); let len = 12; let randOutput = await rand.generateRandom(len); console.info('rand output:' +...
application-dev\security\CryptoArchitectureKit\crypto-generate-random-number.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; function doRandBySync() { let rand = cryptoFramework.createRandom(); let len = 24; // Generate a 24-byte random number. try { let randData = rand.generateRandomSync(len); i...
application-dev\security\CryptoArchitectureKit\crypto-generate-sym-key-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function testGenerateAesKey() { // Create a SymKeyGenerator instance. let symKeyGenerator = cryptoFramework.createSymKeyGenerator('AES256'); // Use SymKeyGenerator to randomly generate a symmetric key. let promiseSymKey = symKeyGenerator.g...
application-dev\security\CryptoArchitectureKit\crypto-generate-sym-key-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function testSyncGenerateAesKey() { // Create a SymKeyGenerator instance. let symKeyGenerator = cryptoFramework.createSymKeyGenerator('AES256'); // Use SymKeyGenerator to randomly generate a symmetric key. let promiseSymKey = symKeyGenerat...
application-dev\security\CryptoArchitectureKit\crypto-generate-sym-key-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function testGenerateSM4Key() { // Create a SymKeyGenerator instance. let symKeyGenerator = cryptoFramework.createSymKeyGenerator('SM4_128'); // Use SymKeyGenerator to randomly generate a symmetric key. let promiseSymKey = symKeyGenerator....
application-dev\security\CryptoArchitectureKit\crypto-generate-sym-key-randomly.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function testSyncGenerateSm4Key() { // Create a SymKeyGenerator instance. let symKeyGenerator = cryptoFramework.createSymKeyGenerator('SM4_128'); // Use SymKeyGenerator to randomly generate a symmetric key. let promiseSymKey = symKeyGenera...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-dh.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function dhAwait() { let keyGen = cryptoFramework.createAsyKeyGenerator('DH_modp1536'); // Randomly generate public-private key pair A. let keyPairA = await keyGen.generateKeyPair(); // Randomly generate public-private key pair B wit...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-dh.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function dhAgreementSync() { let keyGen = cryptoFramework.createAsyKeyGenerator('DH_modp1536'); // Randomly generate public-private key pair A. let keyPairA = keyGen.generateKeyPairSync(); // Randomly generate public-private key pair B wit...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-ecdh.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function ecdhAwait() { // The public and private key pair data is transferred from an external system. let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 134, 72, 206, 61, 3, 1, 7, 3, 66, 0, 4, 83, ...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-ecdh.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function ecdhAwait() { // The public and private key pair data is transferred from an external system. let pubKeyArray = new Uint8Array([48, 89, 48, 19, 6, 7, 42, 134, 72, 206, 61, 2, 1, 6, 8, 42, 134, 72, 206, 61, 3, 1, 7, 3, 66, 0, 4, 83, 96, 14...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-x25519.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function x25519Await() { // The public and private key pair data is transferred from an external system. let pubKeyArray = new Uint8Array([48, 42, 48, 5, 6, 3, 43, 101, 110, 3, 33, 0, 36, 98, 216, 106, 74, 99, 179, 203, 81, 145, 147, 101, 13...
application-dev\security\CryptoArchitectureKit\crypto-key-agreement-using-x25519.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; function x25519AgreementSync() { // The public and private key pair data is transferred from an external system. let pubKeyArray = new Uint8Array([48, 42, 48, 5, 6, 3, 43, 101, 110, 3, 33, 0, 36, 98, 216, 106, 74, 99, 179, 203, 81, 145, 147, 101, ...
application-dev\security\CryptoArchitectureKit\crypto-key-derivation-using-hkdf.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { buffer } from '@kit.ArkTS'; async function kdfAwait() { let keyData = new Uint8Array(buffer.from("012345678901234567890123456789", "utf-8").buffer); let saltData = new Uint8Array(buffer.from("0123456789", "utf-8").buffer); let infoD...
application-dev\security\CryptoArchitectureKit\crypto-key-derivation-using-hkdf.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; import { buffer } from '@kit.ArkTS'; function kdfPromise() { let keyData = new Uint8Array(buffer.from("012345678901234567890123456789", "utf-8").buffer); let saltData = new Uint8Array(buff...
application-dev\security\CryptoArchitectureKit\crypto-key-derivation-using-hkdf.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; import { buffer } from '@kit.ArkTS'; function kdfSync() { let keyData = new Uint8Array(buffer.from("012345678901234567890123456789", "utf-8").buffer); let saltData = new Uint8Array(buffe...
application-dev\security\CryptoArchitectureKit\crypto-key-derivation-using-pbkdf2.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; async function kdfAwait() { let spec: cryptoFramework.PBKDF2Spec = { algName: 'PBKDF2', password: '123456', salt: new Uint8Array(16), iterations: 10000, keySize: 32 }; let kdf = cryptoFramework.createKdf('PBKDF2...
application-dev\security\CryptoArchitectureKit\crypto-key-derivation-using-pbkdf2.md
import { cryptoFramework } from '@kit.CryptoArchitectureKit'; import { BusinessError } from '@kit.BasicServicesKit'; function kdfPromise() { let spec: cryptoFramework.PBKDF2Spec = { algName: 'PBKDF2', password: '123456', salt: new Uint8Array(16), iterations: 10000, keySize: 32 ...