LPSecureData.m 7.8 KB

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  1. //
  2. // LPSecureData.m
  3. // zhimi
  4. //
  5. // Created by 张灿 on 2019/1/22.
  6. // Copyright © 2019年 caiPro. All rights reserved.
  7. //
  8. #import "LPSecureData.h"
  9. #import <CommonCrypto/CommonCryptor.h>
  10. #define LocalStr_None @""
  11. static const char encodingTable[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  12. @implementation LPSecureData
  13. + (NSString*)getRadomStr:(int)count{
  14. NSString *string = [[NSString alloc]init];
  15. for (int i = 0; i < count; i++) {
  16. int number = arc4random() % 36;
  17. if (number < 10) {
  18. int figure = arc4random() % 10;
  19. NSString *tempString = [NSString stringWithFormat:@"%d", figure];
  20. string = [string stringByAppendingString:tempString];
  21. }else {
  22. int figure = (arc4random() % 26) + 97;
  23. char character = figure;
  24. NSString *tempString = [NSString stringWithFormat:@"%c", character];
  25. string = [string stringByAppendingString:tempString];
  26. }
  27. }
  28. NSLog(@"%@", string);
  29. return string;
  30. }
  31. //将字典进行AES128加密
  32. + (NSString*)setSecureWithDict:(NSDictionary*)dict{
  33. NSString* jsonStr = [dict mj_JSONString];
  34. // NSString* newStr = [jsonStr stringByAppendingString:[self getRadomStr:4]];
  35. NSData *data = [jsonStr dataUsingEncoding:NSUTF8StringEncoding];
  36. NSData* aesdata = [self AES128operation:kCCEncrypt data:data key:kJiaMiKey iv:kJiaMiKey];
  37. NSLog(@"加密后的字符串为%@",[self base64EncodedStringFrom:aesdata]);
  38. return [self base64EncodedStringFrom:aesdata];
  39. }
  40. //将字符串解密为字典
  41. + (NSDictionary*)getDictWithSecureString:(NSString*)str{
  42. NSData *data = [self dataWithBase64EncodedString:str];
  43. NSData *aesData = [self AES128operation:kCCDecrypt
  44. data:data
  45. key:kJiaMiKey
  46. iv:kJiaMiKey];
  47. NSDictionary* dict = [aesData mj_JSONObject];
  48. return dict;
  49. }
  50. + (NSData *)AES128operation:(CCOperation)operation data:(NSData *)data key:(NSString *)key iv:(NSString *)iv {
  51. char keyPtr[kCCKeySizeAES128 + 1]; //kCCKeySizeAES128是加密位数 可以替换成256位的
  52. bzero(keyPtr, sizeof(keyPtr));
  53. [key getCString:keyPtr maxLength:sizeof(keyPtr) encoding:NSUTF8StringEncoding];
  54. // IV
  55. char ivPtr[kCCBlockSizeAES128 + 1];
  56. bzero(ivPtr, sizeof(ivPtr));
  57. [iv getCString:ivPtr maxLength:sizeof(ivPtr) encoding:NSUTF8StringEncoding];
  58. size_t bufferSize = [data length] + kCCBlockSizeAES128;
  59. void *buffer = malloc(bufferSize);
  60. size_t numBytesEncrypted = 0;
  61. CCCryptorStatus cryptorStatus = CCCrypt(operation, kCCAlgorithmAES128, kCCOptionPKCS7Padding|kCCOptionECBMode,
  62. keyPtr, kCCKeySizeAES128,
  63. ivPtr,
  64. [data bytes], [data length],
  65. buffer, bufferSize,
  66. &numBytesEncrypted);
  67. if(cryptorStatus == kCCSuccess) {
  68. NSLog(@"Success");
  69. return [NSData dataWithBytesNoCopy:buffer length:numBytesEncrypted];
  70. } else {
  71. NSLog(@"Error");
  72. }
  73. free(buffer);
  74. return nil;
  75. }
  76. //base64字符串转二进制
  77. + (NSData *)dataWithBase64EncodedString:(NSString *)string{
  78. if (string == nil)
  79. return [NSData data];
  80. if ([string length] == 0)
  81. return [NSData data];
  82. static char *decodingTable = NULL;
  83. if (decodingTable == NULL)
  84. {
  85. decodingTable = malloc(256);
  86. if (decodingTable == NULL)
  87. return nil;
  88. memset(decodingTable, CHAR_MAX, 256);
  89. NSUInteger i;
  90. for (i = 0; i < 64; i++)
  91. decodingTable[(short)encodingTable[i]] = i;
  92. }
  93. const char *characters = [string cStringUsingEncoding:NSASCIIStringEncoding];
  94. if (characters == NULL) // Not an ASCII string!
  95. return nil;
  96. char *bytes = malloc((([string length] + 3) / 4) * 3);
  97. if (bytes == NULL)
  98. return nil;
  99. NSUInteger length = 0;
  100. NSUInteger i = 0;
  101. while (YES)
  102. {
  103. char buffer[4];
  104. short bufferLength;
  105. for (bufferLength = 0; bufferLength < 4; i++)
  106. {
  107. if (characters[i] == '\0')
  108. break;
  109. if (isspace(characters[i]) || characters[i] == '=')
  110. continue;
  111. buffer[bufferLength] = decodingTable[(short)characters[i]];
  112. if (buffer[bufferLength++] == CHAR_MAX) // Illegal character!
  113. {
  114. free(bytes);
  115. return nil;
  116. }
  117. }
  118. if (bufferLength == 0)
  119. break;
  120. if (bufferLength == 1) // At least two characters are needed to produce one byte!
  121. {
  122. free(bytes);
  123. return nil;
  124. }
  125. // Decode the characters in the buffer to bytes.
  126. bytes[length++] = (buffer[0] << 2) | (buffer[1] >> 4);
  127. if (bufferLength > 2)
  128. bytes[length++] = (buffer[1] << 4) | (buffer[2] >> 2);
  129. if (bufferLength > 3)
  130. bytes[length++] = (buffer[2] << 6) | buffer[3];
  131. }
  132. bytes = realloc(bytes, length);
  133. return [NSData dataWithBytesNoCopy:bytes length:length];
  134. }
  135. //NSData转base64字符串
  136. + (NSString *)base64EncodedStringFrom:(NSData *)data{
  137. if ([data length] == 0)
  138. return @"";
  139. char *characters = malloc((([data length] + 2) / 3) * 4);
  140. if (characters == NULL)
  141. return nil;
  142. NSUInteger length = 0;
  143. NSUInteger i = 0;
  144. while (i < [data length])
  145. {
  146. char buffer[3] = {0,0,0};
  147. short bufferLength = 0;
  148. while (bufferLength < 3 && i < [data length])
  149. buffer[bufferLength++] = ((char *)[data bytes])[i++];
  150. // Encode the bytes in the buffer to four characters, including padding "=" characters if necessary.
  151. characters[length++] = encodingTable[(buffer[0] & 0xFC) >> 2];
  152. characters[length++] = encodingTable[((buffer[0] & 0x03) << 4) | ((buffer[1] & 0xF0) >> 4)];
  153. if (bufferLength > 1)
  154. characters[length++] = encodingTable[((buffer[1] & 0x0F) << 2) | ((buffer[2] & 0xC0) >> 6)];
  155. else characters[length++] = '=';
  156. if (bufferLength > 2)
  157. characters[length++] = encodingTable[buffer[2] & 0x3F];
  158. else characters[length++] = '=';
  159. }
  160. return [[NSString alloc] initWithBytesNoCopy:characters length:length encoding:NSASCIIStringEncoding freeWhenDone:YES];
  161. }
  162. //普通字符串转base64
  163. + (NSString *)base64StringFromText:(NSString *)text {
  164. NSData *data = [text dataUsingEncoding:NSUTF8StringEncoding];
  165. NSString *base64String = [data base64EncodedStringWithOptions:0];
  166. return base64String;
  167. }
  168. //base64转普通字符串
  169. + (NSString *)textFromBase64String:(NSString *)base64 {
  170. if (!base64) { return @""; }
  171. NSData *data = [[NSData alloc] initWithBase64EncodedString:base64 options:0];
  172. NSString *text = [[NSString alloc] initWithData:data encoding:NSUTF8StringEncoding];
  173. return text;
  174. }
  175. //将字符串解密为字符串
  176. + (NSString*)getStrWithSecureString:(NSString*)str {
  177. NSData *data = [self dataWithBase64EncodedString:str];
  178. NSData *aesData = [self AES128operation:kCCDecrypt
  179. data:data
  180. key:kJiaMiKey
  181. iv:kJiaMiKey];//AES解密
  182. NSString *base64 = [[NSString alloc] initWithData:aesData encoding:NSUTF8StringEncoding];
  183. if (!base64) {
  184. NSLog(@"AES加密解析失败");
  185. return @"";
  186. }
  187. NSData *base64Data = [[NSData alloc] initWithBase64EncodedString:base64 options:0];//base64解密
  188. NSString *text = [[NSString alloc] initWithData:base64Data encoding:NSUTF8StringEncoding];
  189. return text;
  190. }
  191. @end