1# 使用SM4对称密钥(GCM模式)加解密(C/C++)
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3
4对应的算法规格请查看[对称密钥加解密算法规格:SM4](crypto-sym-encrypt-decrypt-spec.md#sm4)。
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6
7## 在CMake脚本中链接相关动态库
8```txt
9   target_link_libraries(entry PUBLIC libohcrypto.so)
10```
11
12**加密**
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14
151. 调用[OH_CryptoSymKeyGenerator_Create](../../reference/apis-crypto-architecture-kit/_crypto_sym_key_api.md#oh_cryptosymkeygenerator_create)、[OH_CryptoSymKeyGenerator_Generate](../../reference/apis-crypto-architecture-kit/_crypto_sym_key_api.md#oh_cryptosymkeygenerator_generate),生成密钥算法为SM4、密钥长度为128位的对称密钥(OH_CryptoSymKey)。
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17   如何生成SM4对称密钥,开发者可参考下文示例,并结合[对称密钥生成和转换规格:SM4](crypto-sym-key-generation-conversion-spec.md#sm4)和[随机生成对称密钥](crypto-generate-sym-key-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。
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192. 调用[OH_CryptoSymCipher_Create](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_create),指定字符串参数'SM4_128|GCM|PKCS7',创建对称密钥类型为SM4_128、分组模式为GCM、填充模式为PKCS7的Cipher实例,用于完成加解密操作。
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213. 调用[OH_CryptoSymCipherParams_Create](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipherparams_create)创建参数对象,调用[OH_CryptoSymCipherParams_SetParam](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipherparams_setparam)设置对应的加密参数。
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234. 调用[OH_CryptoSymCipher_Init](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_init),设置模式为加密(CRYPTO_ENCRYPT_MODE),指定加密密钥(OH_CryptoSymKey)和GCM模式对应的加密参数(OH_CryptoSymCipherParams),初始化加密Cipher实例。
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255. 调用[OH_CryptoSymCipher_Update](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_update),更新数据(明文)。
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27   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。
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29   - 当数据量较小时,可以在init完成后直接调用final。
30   - 当数据量较大时,可以多次调用update,即分段加解密。
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326. 调用[OH_CryptoSymCipher_Final](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_final),获取加密后的数据。
33   - 由于已使用update传入数据,此处data传入null。
34   - final输出结果可能为null,在访问具体数据前,需要先判断结果是否为null,避免产生异常。
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367. 使用[OH_CryptoSymCipherParams_Create](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipherparams_create)创建Params,使用[OH_CryptoSymCipherParams_SetParam](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipherparams_setparam)设置authTag,作为解密的认证信息。在GCM模式下,需要从加密后的数据中取出末尾16字节,作为解密时初始化的认证信息。示例中authTag恰好为16字节。
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388. 调用[OH_CryptoSymKeyGenerator_Destroy](../../reference/apis-crypto-architecture-kit/_crypto_sym_key_api.md#oh_cryptosymkeygenerator_destroy)、[OH_CryptoSymCipher_Destroy](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_destroy)、[OH_CryptoSymCipherParams_Destroy](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipherparams_destroy)销毁各对象。
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40
41**解密**
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441. 调用[OH_CryptoSymCipher_Init](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_init),设置模式为解密(CRYPTO_DECRYPT_MODE),指定解密密钥(OH_CryptoSymKey)和GCM模式对应的解密参数(OH_CryptoSymCipherParams),初始化解密Cipher实例。
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462. 调用[OH_CryptoSymCipher_Update](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_update),更新数据(密文)。
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483. 调用[OH_CryptoSymCipher_Final](../../reference/apis-crypto-architecture-kit/_crypto_sym_cipher_api.md#oh_cryptosymcipher_final),获取解密后的数据。
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50
51- 示例:
52
53```c++
54#include "CryptoArchitectureKit/crypto_common.h"
55#include "CryptoArchitectureKit/crypto_sym_cipher.h"
56#include <string.h>
57
58static OH_Crypto_ErrCode doTestSm4Gcm()
59{
60    OH_CryptoSymKeyGenerator *genCtx = nullptr;
61    OH_CryptoSymCipher *encCtx = nullptr;
62    OH_CryptoSymCipher *decCtx = nullptr;
63    OH_CryptoSymKey *keyCtx = nullptr;
64    OH_CryptoSymCipherParams *params = nullptr;
65
66    Crypto_DataBlob outUpdate = {.data = nullptr, .len = 0};
67    Crypto_DataBlob decUpdate = {.data = nullptr, .len = 0};
68
69    uint8_t aad[8] = {1, 2, 3, 4, 5, 6, 7, 8};
70    uint8_t tag[16] = {0};
71    uint8_t iv[12] = {1, 2, 4, 12, 3, 4, 2, 3, 3, 2, 0, 4}; // iv使用安全随机数生成
72    Crypto_DataBlob ivData = {.data = iv, .len = sizeof(iv)};
73    Crypto_DataBlob aadData = {.data = aad, .len = sizeof(aad)};
74    Crypto_DataBlob tagData = {.data = tag, .len = sizeof(tag)};
75    Crypto_DataBlob tagOutPut = {.data = nullptr, .len = 0};
76    char *plainText = const_cast<char *>("this is test!");
77    Crypto_DataBlob msgBlob = {.data = (uint8_t *)(plainText), .len = strlen(plainText)};
78    // 生成对称密钥
79    OH_Crypto_ErrCode ret;
80    ret = OH_CryptoSymKeyGenerator_Create("SM4_128", &genCtx);
81    if (ret != CRYPTO_SUCCESS) {
82        goto end;
83    }
84    ret = OH_CryptoSymKeyGenerator_Generate(genCtx, &keyCtx);
85    if (ret != CRYPTO_SUCCESS) {
86        goto end;
87    }
88
89    // 设置参数
90    ret = OH_CryptoSymCipherParams_Create(&params);
91    if (ret != CRYPTO_SUCCESS) {
92        goto end;
93    }
94    ret = OH_CryptoSymCipherParams_SetParam(params, CRYPTO_IV_DATABLOB, &ivData);
95    if (ret != CRYPTO_SUCCESS) {
96        goto end;
97    }
98    ret = OH_CryptoSymCipherParams_SetParam(params, CRYPTO_AAD_DATABLOB, &aadData);
99    if (ret != CRYPTO_SUCCESS) {
100        goto end;
101    }
102    ret = OH_CryptoSymCipherParams_SetParam(params, CRYPTO_TAG_DATABLOB, &tagData);
103    if (ret != CRYPTO_SUCCESS) {
104        goto end;
105    }
106
107    // 加密
108    ret = OH_CryptoSymCipher_Create("SM4_128|GCM|PKCS7", &encCtx);
109    if (ret != CRYPTO_SUCCESS) {
110        goto end;
111    }
112    ret = OH_CryptoSymCipher_Init(encCtx, CRYPTO_ENCRYPT_MODE, keyCtx, params);
113    if (ret != CRYPTO_SUCCESS) {
114        goto end;
115    }
116    ret = OH_CryptoSymCipher_Update(encCtx, &msgBlob, &outUpdate);
117    if (ret != CRYPTO_SUCCESS) {
118        goto end;
119    }
120    ret = OH_CryptoSymCipher_Final(encCtx, nullptr, &tagOutPut);
121    if (ret != CRYPTO_SUCCESS) {
122        goto end;
123    }
124
125    // 解密
126    ret = OH_CryptoSymCipher_Create("SM4_128|GCM|PKCS7", &decCtx);
127    if (ret != CRYPTO_SUCCESS) {
128        goto end;
129    }
130    ret = OH_CryptoSymCipherParams_SetParam(params, CRYPTO_TAG_DATABLOB, &tagOutPut);
131    if (ret != CRYPTO_SUCCESS) {
132        goto end;
133    }
134    ret = OH_CryptoSymCipher_Init(decCtx, CRYPTO_DECRYPT_MODE, keyCtx, params);
135    if (ret != CRYPTO_SUCCESS) {
136        goto end;
137    }
138    ret = OH_CryptoSymCipher_Final(decCtx, &outUpdate, &decUpdate);
139    if (ret != CRYPTO_SUCCESS) {
140        goto end;
141    }
142
143    // 释放资源
144end:
145    OH_CryptoSymCipherParams_Destroy(params);
146    OH_CryptoSymCipher_Destroy(encCtx);
147    OH_CryptoSymCipher_Destroy(decCtx);
148    OH_CryptoSymKeyGenerator_Destroy(genCtx);
149    OH_CryptoSymKey_Destroy(keyCtx);
150    OH_Crypto_FreeDataBlob(&outUpdate);
151    OH_Crypto_FreeDataBlob(&decUpdate);
152    OH_Crypto_FreeDataBlob(&tagOutPut);
153    return ret;
154}
155```
156