1# 使用ECDSA密钥对签名验签(ArkTS) 2 3对应的算法规格请查看[签名验签算法规格:ECDSA](crypto-sign-sig-verify-overview.md#ecdsa)。 4 5**签名** 6 71. 调用[cryptoFramework.createAsyKeyGenerator](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#cryptoframeworkcreateasykeygenerator)、[AsyKeyGenerator.generateKeyPair](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#generatekeypair-1),生成非对称密钥算法为ECC、密钥长度为256的密钥对(KeyPair)。 8 9 如何生成ECC非对称密钥,开发者可参考下文示例,并结合[非对称密钥生成和转换规格:ECC](crypto-asym-key-generation-conversion-spec.md#ecc)和[随机生成非对称密钥对](crypto-generate-asym-key-pair-randomly.md)理解,参考文档与当前示例可能存在入参差异,请在阅读时注意区分。 10 112. 调用[cryptoFramework.createSign](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#cryptoframeworkcreatesign),指定字符串参数'ECC256|SHA256',创建非对称密钥类型为ECC256、摘要算法为SHA256的Sign实例,用于完成签名操作。 12 133. 调用[Sign.init](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#init-3),使用私钥(PriKey)初始化Sign实例。 14 154. 调用[Sign.update](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#update-3),传入待签名的数据。当前单次update长度没有限制,开发者可以根据数据量判断如何调用update。 16 175. 调用[Sign.sign](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#sign-1),生成数据签名。 18 19**验签** 20 211. 调用[cryptoFramework.createVerify](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#cryptoframeworkcreateverify),指定字符串参数'ECC256|SHA256',创建非对称密钥类型为ECC256、摘要算法为SHA256的Verify实例,用于完成验签操作。 22 232. 调用[Verify.init](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#init-5),使用公钥(PubKey)初始化Verify实例。 24 253. 调用[Verify.update](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#update-5),传入待验证的数据。当前单次update长度没有限制,开发者可以根据数据量判断如何调用update。 26 274. 调用[Verify.verify](../../reference/apis-crypto-architecture-kit/js-apis-cryptoFramework.md#verify-1),对数据进行验签。 28 29- 异步方法示例: 30 31 ```ts 32 import { cryptoFramework } from '@kit.CryptoArchitectureKit'; 33 import { buffer } from '@kit.ArkTS'; 34 // 完整的明文被拆分为input1和input2。 35 let input1: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan1", 'utf-8').buffer) }; 36 let input2: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan2", 'utf-8').buffer) }; 37 async function signMessagePromise(priKey: cryptoFramework.PriKey) { 38 let signAlg = "ECC256|SHA256"; 39 let signer = cryptoFramework.createSign(signAlg); 40 await signer.init(priKey); 41 await signer.update(input1); // 如果明文较短,可以直接调用sign接口一次性传入。 42 let signData = await signer.sign(input2); 43 return signData; 44 } 45 async function verifyMessagePromise(signMessageBlob: cryptoFramework.DataBlob, pubKey: cryptoFramework.PubKey) { 46 let verifyAlg = "ECC256|SHA256"; 47 let verifier = cryptoFramework.createVerify(verifyAlg); 48 await verifier.init(pubKey); 49 await verifier.update(input1); // 如果明文较短,可以直接调用verify接口一次性传入。 50 let res = await verifier.verify(input2, signMessageBlob); 51 console.info("verify result is " + res); 52 return res; 53 } 54 async function main() { 55 let keyGenAlg = "ECC256"; 56 let generator = cryptoFramework.createAsyKeyGenerator(keyGenAlg); 57 let keyPair = await generator.generateKeyPair(); 58 let signData = await signMessagePromise(keyPair.priKey); 59 let verifyResult = await verifyMessagePromise(signData, keyPair.pubKey); 60 if (verifyResult === true) { 61 console.info('verify success'); 62 } else { 63 console.error('verify failed'); 64 } 65 } 66 ``` 67 68- 同步方法示例: 69 70 ```ts 71 import { cryptoFramework } from '@kit.CryptoArchitectureKit'; 72 import { buffer } from '@kit.ArkTS'; 73 // 完整的明文被拆分为input1和input2。 74 let input1: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan1", 'utf-8').buffer) }; 75 let input2: cryptoFramework.DataBlob = { data: new Uint8Array(buffer.from("This is Sign test plan2", 'utf-8').buffer) }; 76 function signMessagePromise(priKey: cryptoFramework.PriKey) { 77 let signAlg = "ECC256|SHA256"; 78 let signer = cryptoFramework.createSign(signAlg); 79 signer.initSync(priKey); 80 signer.updateSync(input1); // 如果明文较短,可以直接调用sign接口一次性传入。 81 let signData = signer.signSync(input2); 82 return signData; 83 } 84 function verifyMessagePromise(signMessageBlob: cryptoFramework.DataBlob, pubKey: cryptoFramework.PubKey) { 85 let verifyAlg = "ECC256|SHA256"; 86 let verifier = cryptoFramework.createVerify(verifyAlg); 87 verifier.initSync(pubKey); 88 verifier.updateSync(input1); // 如果明文较短,可以直接调用verify接口一次性传入。 89 let res = verifier.verifySync(input2, signMessageBlob); 90 console.info("verify result is " + res); 91 return res; 92 } 93 function main() { 94 let keyGenAlg = "ECC256"; 95 let generator = cryptoFramework.createAsyKeyGenerator(keyGenAlg); 96 let keyPair = generator.generateKeyPairSync(); 97 let signData = signMessagePromise(keyPair.priKey); 98 let verifyResult = verifyMessagePromise(signData, keyPair.pubKey); 99 if (verifyResult === true) { 100 console.info('verify success'); 101 } else { 102 console.error('verify failed'); 103 } 104 } 105 ```