本篇只讲(AES-128-ECB)的实现
//加密
+(NSString *)AES128Encrypt:(NSString *)plainText key:(NSString *)key
{
char keyPtr[kCCKeySizeAES128+1];
memset(keyPtr, 0, sizeof(keyPtr));
[key getCString:keyPtr maxLength:sizeof(keyPtr) encoding:NSUTF8StringEncoding];
NSData* data = [plainText dataUsingEncoding:NSUTF8StringEncoding];
NSUInteger dataLength = [data length];
size_t bufferSize = dataLength + kCCBlockSizeAES128;
void *buffer = malloc(bufferSize);
size_t numBytesEncrypted = 0;
CCCryptorStatus cryptStatus = CCCrypt(kCCEncrypt,
kCCAlgorithmAES128,
kCCOptionPKCS7Padding|kCCOptionECBMode,
keyPtr,
kCCBlockSizeAES128,
NULL,
[data bytes],
dataLength,
buffer,
bufferSize,
&numBytesEncrypted);
if (cryptStatus == kCCSuccess) {
NSData *resultData = [NSData dataWithBytesNoCopy:buffer length:numBytesEncrypted];
//return [GTMBase64 stringByEncodingData:resultData];
return [self hexStringFromData:resultData];
}
free(buffer);
return nil;
}
//解密
+(NSString *)AES128Decrypt:(NSString *)encryptText key:(NSString *)key
{
char keyPtr[kCCKeySizeAES128 + 1];
memset(keyPtr, 0, sizeof(keyPtr));
[key getCString:keyPtr maxLength:sizeof(keyPtr) encoding:NSUTF8StringEncoding];
//NSData *data = [GTMBase64 decodeData:[encryptText dataUsingEncoding:NSUTF8StringEncoding]];
NSData *data=[self dataForHexString:encryptText];
NSUInteger dataLength = [data length];
size_t bufferSize = dataLength + kCCBlockSizeAES128;
void *buffer = malloc(bufferSize);
size_t numBytesCrypted = 0;
CCCryptorStatus cryptStatus = CCCrypt(kCCDecrypt,
kCCAlgorithmAES128,
kCCOptionPKCS7Padding|kCCOptionECBMode,
keyPtr,
kCCBlockSizeAES128,
NULL,
[data bytes],
dataLength,
buffer,
bufferSize,
&numBytesCrypted);
if (cryptStatus == kCCSuccess) {
NSData *resultData = [NSData dataWithBytesNoCopy:buffer length:numBytesCrypted];
return [[[NSString alloc] initWithData:resultData encoding:NSUTF8StringEncoding] autorelease];
}
free(buffer);
return nil;
}
// 普通字符串转换为十六进
+ (NSString *)hexStringFromData:(NSData *)data {
Byte *bytes = (Byte *)[data bytes];
// 下面是Byte 转换为16进制。
NSString *hexStr = @"";
for(int i=0; i<[data length]; i++) {
NSString *newHexStr = [NSString stringWithFormat:@"%x",bytes[i] & 0xff]; //16进制数
newHexStr = [newHexStr uppercaseString];
if([newHexStr length] == 1) {
newHexStr = [NSString stringWithFormat:@"0%@",newHexStr];
}
hexStr = [hexStr stringByAppendingString:newHexStr];
}
return hexStr;
}
//十六进制转Data
//十六进制转Data
+ (NSData*)dataForHexString:(NSString*)hexString
{
if (hexString == nil) {
return nil;
}
const char* ch = [[hexString lowercaseString] cStringUsingEncoding:NSUTF8StringEncoding];
NSMutableData* data = [NSMutableData data];
while (*ch) {
if (*ch == ' ') {
continue;
}
char byte = 0;
if ('0' <= *ch && *ch <= '9') {
byte = *ch - '0';
}else if ('a' <= *ch && *ch <= 'f') {
byte = *ch - 'a' + 10;
}else if ('A' <= *ch && *ch <= 'F') {
byte = *ch - 'A' + 10;
}
ch++;
byte = byte << 4;
if (*ch) {
if ('0' <= *ch && *ch <= '9') {
byte += *ch - '0';
} else if ('a' <= *ch && *ch <= 'f') {
byte += *ch - 'a' + 10;
}else if('A' <= *ch && *ch <= 'F'){
byte += *ch - 'A' + 10;
}
ch++;
}
[data appendBytes:&byte length:1];
}
return data;
}