NCEndToEndEncryption.m 15 KB

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  1. //
  2. // NCEndToEndEncryption.m
  3. // Nextcloud
  4. //
  5. // Created by Marino Faggiana on 19/09/17.
  6. // Copyright © 2017 TWS. All rights reserved.
  7. //
  8. // Author Marino Faggiana <m.faggiana@twsweb.it>
  9. //
  10. // This program is free software: you can redistribute it and/or modify
  11. // it under the terms of the GNU General Public License as published by
  12. // the Free Software Foundation, either version 3 of the License, or
  13. // (at your option) any later version.
  14. //
  15. // This program is distributed in the hope that it will be useful,
  16. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  18. // GNU General Public License for more details.
  19. //
  20. // You should have received a copy of the GNU General Public License
  21. // along with this program. If not, see <http://www.gnu.org/licenses/>.
  22. //
  23. #import "NCEndToEndEncryption.h"
  24. #import "NCBridgeSwift.h"
  25. #import "CCUtility.h"
  26. #import <CommonCrypto/CommonDigest.h>
  27. #import <CommonCrypto/CommonKeyDerivation.h>
  28. #import <openssl/x509.h>
  29. #import <openssl/bio.h>
  30. #import <openssl/err.h>
  31. #import <openssl/pem.h>
  32. #import <openssl/rsa.h>
  33. #import <openssl/pkcs12.h>
  34. #import <openssl/ssl.h>
  35. #import <openssl/err.h>
  36. #import <openssl/bn.h>
  37. #define addName(field, value) X509_NAME_add_entry_by_txt(name, field, MBSTRING_ASC, (unsigned char *)value, -1, -1, 0); NSLog(@"%s: %s", field, value);
  38. #define AES_KEY_LENGTH 16
  39. #define AES_IVEC_LENGTH 16
  40. #define AES_GCM_TAG_LENGTH 16
  41. #define fileNameCertificate @"e2e_cert.pem"
  42. #define fileNameCSR @"e2e_csr.pem"
  43. #define fileNamePrivateKey @"e2e_privateKey.pem"
  44. //#define AES_KEY_LENGTH_BITS 128
  45. @implementation NCEndToEndEncryption
  46. //Singleton
  47. + (id)sharedManager {
  48. static NCEndToEndEncryption *NCEndToEndEncryption = nil;
  49. static dispatch_once_t onceToken;
  50. dispatch_once(&onceToken, ^{
  51. NCEndToEndEncryption = [self new];
  52. });
  53. return NCEndToEndEncryption;
  54. }
  55. #
  56. #pragma mark - Generate Certificate X509 - CSR - Private Key
  57. #
  58. - (BOOL)generateCertificateX509WithUserID:(NSString *)userID directoryUser:(NSString *)directoryUser
  59. {
  60. OPENSSL_init_ssl(0, NULL);
  61. OPENSSL_init_crypto(0, NULL);
  62. X509 *x509;
  63. x509 = X509_new();
  64. EVP_PKEY *pkey;
  65. NSError *keyError;
  66. pkey = [self generateRSAKey:&keyError];
  67. if (keyError) {
  68. return NO;
  69. }
  70. X509_set_pubkey(x509, pkey);
  71. EVP_PKEY_free(pkey);
  72. // Set Serial Number
  73. ASN1_INTEGER_set(X509_get_serialNumber(x509), 123);
  74. // Set Valididity Date Range
  75. long notBefore = [[NSDate date] timeIntervalSinceDate:[NSDate date]];
  76. long notAfter = [[[NSDate date] dateByAddingTimeInterval:60*60*24*365*10] timeIntervalSinceDate:[NSDate date]]; // 10 year
  77. X509_gmtime_adj((ASN1_TIME *)X509_get0_notBefore(x509), notBefore);
  78. X509_gmtime_adj((ASN1_TIME *)X509_get0_notAfter(x509), notAfter);
  79. X509_NAME *name = X509_get_subject_name(x509);
  80. // Now to add the subject name fields to the certificate
  81. // I use a macro here to make it cleaner.
  82. const unsigned char *cUserID = (const unsigned char *) [userID cStringUsingEncoding:NSUTF8StringEncoding];
  83. // Common Name = UserID.
  84. addName("CN", cUserID);
  85. // The organizational unit for the cert. Usually this is a department.
  86. addName("OU", "Certificate Authority");
  87. // The organization of the cert.
  88. addName("O", "Nextcloud");
  89. // The city of the organization.
  90. addName("L", "Vicenza");
  91. // The state/province of the organization.
  92. addName("S", "Italy");
  93. // The country (ISO 3166) of the organization
  94. addName("C", "IT");
  95. X509_set_issuer_name(x509, name);
  96. /*
  97. for (SANObject * san in self.options.sans) {
  98. if (!san.value || san.value.length <= 0) {
  99. continue;
  100. }
  101. NSString * prefix = san.type == SANObjectTypeIP ? @"IP:" : @"DNS:";
  102. NSString * value = [NSString stringWithFormat:@"%@%@", prefix, san.value];
  103. NSLog(@"Add subjectAltName %@", value);
  104. X509_EXTENSION * extension = NULL;
  105. ASN1_STRING * asnValue = ASN1_STRING_new();
  106. ASN1_STRING_set(asnValue, (const unsigned char *)[value UTF8String], (int)value.length);
  107. X509_EXTENSION_create_by_NID(&extension, NID_subject_alt_name, 0, asnValue);
  108. X509_add_ext(x509, extension, -1);
  109. }
  110. */
  111. // Specify the encryption algorithm of the signature.
  112. // SHA256 should suit your needs.
  113. if (X509_sign(x509, pkey, EVP_sha256()) < 0) {
  114. return NO;
  115. }
  116. X509_print_fp(stdout, x509);
  117. [self savePEMWithCert:x509 key:pkey directoryUser:directoryUser];
  118. return YES;
  119. }
  120. - (EVP_PKEY *)generateRSAKey:(NSError **)error
  121. {
  122. EVP_PKEY *pkey = EVP_PKEY_new();
  123. if (!pkey) {
  124. return NULL;
  125. }
  126. BIGNUM *bigNumber = BN_new();
  127. int exponent = RSA_F4;
  128. RSA *rsa = RSA_new();
  129. if (BN_set_word(bigNumber, exponent) < 0) {
  130. goto cleanup;
  131. }
  132. if (RSA_generate_key_ex(rsa, 2048, bigNumber, NULL) < 0) {
  133. goto cleanup;
  134. }
  135. if (!EVP_PKEY_set1_RSA(pkey, rsa)) {
  136. goto cleanup;
  137. }
  138. cleanup:
  139. RSA_free(rsa);
  140. BN_free(bigNumber);
  141. return pkey;
  142. }
  143. - (BOOL)savePEMWithCert:(X509 *)x509 key:(EVP_PKEY *)pkey directoryUser:(NSString *)directoryUser
  144. {
  145. NSString *certPath = [NSString stringWithFormat:@"%@/%@", directoryUser, fileNamePrivateKey];
  146. NSString *keyPath = [NSString stringWithFormat:@"%@/%@", directoryUser, fileNameCertificate];
  147. NSString *csrPath = [NSString stringWithFormat:@"%@/%@", directoryUser, fileNameCSR];
  148. // Here you write the private key (pkey) to disk. OpenSSL will encrypt the
  149. // file using the password and cipher you provide.
  150. //if (PEM_write_PrivateKey(f, pkey, EVP_des_ede3_cbc(), (unsigned char *)[password UTF8String], (int)password.length, NULL, NULL) < 0) {
  151. FILE *f = fopen([keyPath fileSystemRepresentation], "wb");
  152. if (PEM_write_PrivateKey(f, pkey, NULL, NULL, 0, NULL, NULL) < 0) {
  153. // Error encrypting or writing to disk.
  154. fclose(f);
  155. return NO;
  156. }
  157. NSLog(@"Saved key to %@", keyPath);
  158. fclose(f);
  159. // Here you write the certificate to the disk. No encryption is needed here since this is public facing information
  160. f = fopen([certPath fileSystemRepresentation], "wb");
  161. if (PEM_write_X509(f, x509) < 0) {
  162. // Error writing to disk.
  163. fclose(f);
  164. return NO;
  165. }
  166. NSLog(@"Saved cert to %@", certPath);
  167. fclose(f);
  168. // CSR Request sha256
  169. f = fopen([csrPath fileSystemRepresentation], "wb");
  170. X509_REQ *certreq = X509_to_X509_REQ(x509, pkey, EVP_sha256());
  171. if (PEM_write_X509_REQ(f, certreq) < 0) {
  172. // Error writing to disk.
  173. fclose(f);
  174. return NO;
  175. }
  176. NSLog(@"Saved csr to %@", csrPath);
  177. fclose(f);
  178. return YES;
  179. }
  180. /*
  181. - (BOOL)saveP12WithCert:(X509 *)x509 key:(EVP_PKEY *)pkey directoryUser:(NSString *)directoryUser finished:(void (^)(NSError *))finished
  182. {
  183. //PKCS12 * p12 = PKCS12_create([password UTF8String], NULL, pkey, x509, NULL, 0, 0, PKCS12_DEFAULT_ITER, 1, NID_key_usage);
  184. PKCS12 *p12 = PKCS12_create(NULL, NULL, pkey, x509, NULL, 0, 0, PKCS12_DEFAULT_ITER, 1, NID_key_usage);
  185. NSString *path = [NSString stringWithFormat:@"%@/certificate.p12", directoryUser];
  186. FILE *f = fopen([path fileSystemRepresentation], "wb");
  187. if (i2d_PKCS12_fp(f, p12) != 1) {
  188. fclose(f);
  189. return NO;
  190. }
  191. NSLog(@"Saved p12 to %@", path);
  192. fclose(f);
  193. return YES;
  194. }
  195. */
  196. - (NSString *)createEndToEndPublicKey:(NSString *)userID directoryUser:(NSString *)directoryUser
  197. {
  198. NSString *csrEncodeURL;
  199. BOOL result = [self generateCertificateX509WithUserID:userID directoryUser:directoryUser];
  200. if (result) {
  201. NSError *error;
  202. NSString *fileNamePath = [NSString stringWithFormat:@"%@/%@", directoryUser, fileNameCSR];
  203. NSString *csr = [NSString stringWithContentsOfFile:fileNamePath encoding:NSUTF8StringEncoding error:&error];
  204. // encode URL
  205. csrEncodeURL = [CCUtility URLEncodeStringFromString:csr];
  206. csrEncodeURL = [csr stringByAddingPercentEncodingWithAllowedCharacters:[NSCharacterSet URLFragmentAllowedCharacterSet]];
  207. } else {
  208. return nil;
  209. }
  210. return csrEncodeURL;
  211. }
  212. - (NSString *)createEndToEndPrivateKey:(NSString *)userID directoryUser:(NSString *)directoryUser mnemonic:(NSString *)mnemonic
  213. {
  214. NSMutableData *secretKey = [NSMutableData dataWithLength:256];
  215. NSData *salt = [@"$4$YmBjm3hk$Qb74D5IUYwghUmzsMqeNFx5z0/8$" dataUsingEncoding:NSUTF8StringEncoding];
  216. CCKeyDerivationPBKDF(kCCPBKDF2, mnemonic.UTF8String, mnemonic.length, salt.bytes,salt.length, kCCPRFHmacAlgSHA1, 1024, secretKey.mutableBytes, secretKey.length);
  217. NSString* skey = [secretKey base64EncodedStringWithOptions:0];
  218. NSLog(@"key %@",secretKey);
  219. return nil;
  220. }
  221. #
  222. #pragma mark - Encrypt/Decrypt AES/GCM/NoPadding as cipher (128 bit key size)
  223. #
  224. - (void)encryptMetadata:(tableMetadata *)metadata activeUrl:(NSString *)activeUrl
  225. {
  226. NSMutableData *cipherData;
  227. NSData *tagData;
  228. NSString* authenticationTag;
  229. NSData *plainData = [[NSFileManager defaultManager] contentsAtPath:[NSString stringWithFormat:@"%@/%@", activeUrl, metadata.fileID]];
  230. NSData *keyData = [[NSData alloc] initWithBase64EncodedString:@"WANM0gRv+DhaexIsI0T3Lg==" options:0];
  231. NSData *initVectorData = [[NSData alloc] initWithBase64EncodedString:@"gKm3n+mJzeY26q4OfuZEqg==" options:0];
  232. BOOL result = [self aes256gcmEncrypt:plainData cipherData:&cipherData keyData:keyData initVectorData:initVectorData tagData:&tagData];
  233. if (cipherData != nil && result) {
  234. [cipherData writeToFile:[NSString stringWithFormat:@"%@/%@", activeUrl, @"encrypted.dms"] atomically:YES];
  235. authenticationTag = [tagData base64EncodedStringWithOptions:0];
  236. }
  237. }
  238. - (void)decryptMetadata:(tableMetadata *)metadata activeUrl:(NSString *)activeUrl
  239. {
  240. NSMutableData *plainData;
  241. NSData *cipherData = [[NSFileManager defaultManager] contentsAtPath:[NSString stringWithFormat:@"%@/%@", activeUrl, metadata.fileID]];
  242. NSData *keyData = [[NSData alloc] initWithBase64EncodedString:@"WANM0gRv+DhaexIsI0T3Lg==" options:0];
  243. NSData *initVectorData = [[NSData alloc] initWithBase64EncodedString:@"gKm3n+mJzeY26q4OfuZEqg==" options:0];
  244. NSString *tag = @"PboI9tqHHX3QeAA22PIu4w==";
  245. BOOL result = [self aes256gcmDecrypt:cipherData plainData:&plainData keyData:keyData initVectorData:initVectorData tag:tag];
  246. if (plainData != nil && result) {
  247. [plainData writeToFile:[NSString stringWithFormat:@"%@/%@", activeUrl, @"decrypted"] atomically:YES];
  248. }
  249. }
  250. // encrypt plain data
  251. - (BOOL)aes256gcmEncrypt:(NSData*)plainData cipherData:(NSMutableData **)cipherData keyData:(NSData *)keyData initVectorData:(NSData *)initVectorData tagData:(NSData **)tagData
  252. {
  253. int status = 0;
  254. *cipherData = [NSMutableData dataWithLength:[plainData length]];
  255. // set up key
  256. unsigned char cKey[AES_KEY_LENGTH];
  257. bzero(cKey, sizeof(cKey));
  258. [keyData getBytes:cKey length:AES_KEY_LENGTH];
  259. // set up ivec
  260. unsigned char cIv[AES_IVEC_LENGTH];
  261. bzero(cIv, AES_IVEC_LENGTH);
  262. [initVectorData getBytes:cIv length:AES_IVEC_LENGTH];
  263. // set up to Encrypt AES 128 GCM
  264. int numberOfBytes = 0;
  265. EVP_CIPHER_CTX *ctx = EVP_CIPHER_CTX_new();
  266. EVP_EncryptInit_ex (ctx, EVP_aes_128_gcm(), NULL, NULL, NULL);
  267. // set the key and ivec
  268. EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_GCM_SET_IVLEN, AES_IVEC_LENGTH, NULL);
  269. EVP_EncryptInit_ex (ctx, NULL, NULL, cKey, cIv);
  270. unsigned char * ctBytes = [*cipherData mutableBytes];
  271. EVP_EncryptUpdate (ctx, ctBytes, &numberOfBytes, [plainData bytes], (int)[plainData length]);
  272. status = EVP_EncryptFinal_ex (ctx, ctBytes+numberOfBytes, &numberOfBytes);
  273. if (status && tagData) {
  274. unsigned char cTag[AES_GCM_TAG_LENGTH];
  275. bzero(cTag, AES_GCM_TAG_LENGTH);
  276. status = EVP_CIPHER_CTX_ctrl (ctx, EVP_CTRL_GCM_GET_TAG, AES_GCM_TAG_LENGTH, cTag);
  277. *tagData = [NSData dataWithBytes:cTag length:AES_GCM_TAG_LENGTH];
  278. }
  279. EVP_CIPHER_CTX_free(ctx);
  280. return (status != 0); // OpenSSL uses 1 for success
  281. }
  282. // decrypt cipher data
  283. - (BOOL)aes256gcmDecrypt:(NSData *)cipherData plainData:(NSMutableData **)plainData keyData:(NSData *)keyData initVectorData:(NSData *)initVectorData tag:(NSString *)tag
  284. {
  285. int status = 0;
  286. int numberOfBytes = 0;
  287. *plainData = [NSMutableData dataWithLength:[cipherData length]];
  288. // set up key
  289. unsigned char cKey[AES_KEY_LENGTH];
  290. bzero(cKey, sizeof(cKey));
  291. [keyData getBytes:cKey length:AES_KEY_LENGTH];
  292. // set up ivec
  293. unsigned char cIv[AES_IVEC_LENGTH];
  294. bzero(cIv, AES_IVEC_LENGTH);
  295. [initVectorData getBytes:cIv length:AES_IVEC_LENGTH];
  296. // set up tag
  297. //unsigned char cTag[AES_GCM_TAG_LENGTH];
  298. //bzero(cTag, AES_GCM_TAG_LENGTH);
  299. //[tagData getBytes:cTag length:AES_GCM_TAG_LENGTH];
  300. /* verify tag */
  301. NSData *authenticationTagData = [cipherData subdataWithRange:NSMakeRange([cipherData length] - AES_GCM_TAG_LENGTH, AES_GCM_TAG_LENGTH)];
  302. NSString *authenticationTag = [authenticationTagData base64EncodedStringWithOptions:0];
  303. if (![authenticationTag isEqualToString:tag])
  304. return NO;
  305. /* Create and initialise the context */
  306. EVP_CIPHER_CTX *ctx = EVP_CIPHER_CTX_new();
  307. /* Initialise the decryption operation. */
  308. status = EVP_DecryptInit_ex (ctx, EVP_aes_128_gcm(), NULL, NULL, NULL);
  309. if (! status)
  310. return NO;
  311. /* Set IV length. Not necessary if this is 12 bytes (96 bits) */
  312. status = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_GCM_SET_IVLEN, AES_IVEC_LENGTH, NULL);
  313. if (! status)
  314. return NO;
  315. /* Initialise key and IV */
  316. status = EVP_DecryptInit_ex (ctx, NULL, NULL, cKey, cIv);
  317. if (! status)
  318. return NO;
  319. /* Provide the message to be decrypted, and obtain the plaintext output. */
  320. unsigned char * ctBytes = [*plainData mutableBytes];
  321. status = EVP_DecryptUpdate (ctx, ctBytes, &numberOfBytes, [cipherData bytes], (int)[cipherData length]);
  322. if (! status)
  323. return NO;
  324. /* Set expected tag value. Works in OpenSSL 1.0.1d and later */
  325. //status = EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_GCM_SET_TAG, AES_GCM_TAG_LENGTH, cTag);
  326. //if (!status)
  327. // return NO;
  328. /* Finalise the decryption. A positive return value indicates success, anything else is a failure - the plaintext is n trustworthy. */
  329. //status = EVP_EncryptFinal_ex (ctx, ctBytes+numberOfBytes, &numberOfBytes);
  330. //if (!status)
  331. // return NO;
  332. // Without test Final
  333. EVP_DecryptFinal_ex (ctx, NULL, &numberOfBytes);
  334. EVP_CIPHER_CTX_free(ctx);
  335. return status; // OpenSSL uses 1 for success
  336. }
  337. #
  338. #pragma mark - Utility
  339. #
  340. - (NSString *)createSHA512:(NSString *)string
  341. {
  342. const char *cstr = [string cStringUsingEncoding:NSUTF8StringEncoding];
  343. NSData *data = [NSData dataWithBytes:cstr length:string.length];
  344. uint8_t digest[CC_SHA512_DIGEST_LENGTH];
  345. CC_SHA512(data.bytes, (unsigned int)data.length, digest);
  346. NSMutableString* output = [NSMutableString stringWithCapacity:CC_SHA512_DIGEST_LENGTH * 2];
  347. for(int i = 0; i < CC_SHA512_DIGEST_LENGTH; i++)
  348. [output appendFormat:@"%02x", digest[i]];
  349. return output;
  350. }
  351. @end