1 /* 2 * iperf, Copyright (c) 2014-2018, The Regents of the University of 3 * California, through Lawrence Berkeley National Laboratory (subject 4 * to receipt of any required approvals from the U.S. Dept. of 5 * Energy). All rights reserved. 6 * 7 * If you have questions about your rights to use or distribute this 8 * software, please contact Berkeley Lab's Technology Transfer 9 * Department at [email protected]. 10 * 11 * NOTICE. This software is owned by the U.S. Department of Energy. 12 * As such, the U.S. Government has been granted for itself and others 13 * acting on its behalf a paid-up, nonexclusive, irrevocable, 14 * worldwide license in the Software to reproduce, prepare derivative 15 * works, and perform publicly and display publicly. Beginning five 16 * (5) years after the date permission to assert copyright is obtained 17 * from the U.S. Department of Energy, and subject to any subsequent 18 * five (5) year renewals, the U.S. Government is granted for itself 19 * and others acting on its behalf a paid-up, nonexclusive, 20 * irrevocable, worldwide license in the Software to reproduce, 21 * prepare derivative works, distribute copies to the public, perform 22 * publicly and display publicly, and to permit others to do so. 23 * 24 * This code is distributed under a BSD style license, see the LICENSE file 25 * for complete information. 26 */ 27 28 #include "iperf_config.h" 29 30 #include <string.h> 31 #include <assert.h> 32 #include <time.h> 33 #include <sys/types.h> 34 /* FreeBSD needs _WITH_GETLINE to enable the getline() declaration */ 35 #define _WITH_GETLINE 36 #include <stdio.h> 37 #include <termios.h> 38 39 #if defined(HAVE_SSL) 40 41 #include <openssl/rsa.h> 42 #include <openssl/bio.h> 43 #include <openssl/pem.h> 44 #include <openssl/sha.h> 45 #include <openssl/buffer.h> 46 47 void sha256(const char *string, char outputBuffer[65]) 48 { 49 unsigned char hash[SHA256_DIGEST_LENGTH]; 50 SHA256_CTX sha256; 51 SHA256_Init(&sha256); 52 SHA256_Update(&sha256, string, strlen(string)); 53 SHA256_Final(hash, &sha256); 54 int i = 0; 55 for(i = 0; i < SHA256_DIGEST_LENGTH; i++) 56 { 57 sprintf(outputBuffer + (i * 2), "%02x", hash[i]); 58 } 59 outputBuffer[64] = 0; 60 } 61 62 int check_authentication(const char *username, const char *password, const time_t ts, const char *filename){ 63 time_t t = time(NULL); 64 time_t utc_seconds = mktime(localtime(&t)); 65 if ( (utc_seconds - ts) > 10 || (utc_seconds - ts) < -10 ) { 66 return 1; 67 } 68 69 char passwordHash[65]; 70 char salted[strlen(username) + strlen(password) + 3]; 71 sprintf(salted, "{%s}%s", username, password); 72 sha256(&salted[0], passwordHash); 73 74 char *s_username, *s_password; 75 int i; 76 FILE *ptr_file; 77 char buf[1024]; 78 79 ptr_file =fopen(filename,"r"); 80 if (!ptr_file) 81 return 2; 82 83 while (fgets(buf,1024, ptr_file)){ 84 //strip the \n or \r\n chars 85 for (i = 0; buf[i] != '\0'; i++){ 86 if (buf[i] == '\n' || buf[i] == '\r'){ 87 buf[i] = '\0'; 88 break; 89 } 90 } 91 //skip empty / not completed / comment lines 92 if (strlen(buf) == 0 || strchr(buf, ',') == NULL || buf[0] == '#'){ 93 continue; 94 } 95 s_username = strtok(buf, ","); 96 s_password = strtok(NULL, ","); 97 if (strcmp( username, s_username ) == 0 && strcmp( passwordHash, s_password ) == 0){ 98 return 0; 99 } 100 } 101 fclose(ptr_file); 102 return 3; 103 } 104 105 106 int Base64Encode(unsigned char* buffer, const size_t length, char** b64text) { //Encodes a binary safe base 64 string 107 BIO *bio, *b64; 108 BUF_MEM *bufferPtr; 109 110 b64 = BIO_new(BIO_f_base64()); 111 bio = BIO_new(BIO_s_mem()); 112 bio = BIO_push(b64, bio); 113 114 BIO_set_flags(bio, BIO_FLAGS_BASE64_NO_NL); //Ignore newlines - write everything in one line 115 BIO_write(bio, buffer, length); 116 BIO_flush(bio); 117 BIO_get_mem_ptr(bio, &bufferPtr); 118 BIO_set_close(bio, BIO_NOCLOSE); 119 BIO_free_all(bio); 120 121 *b64text=(*bufferPtr).data; 122 (*b64text)[(*bufferPtr).length] = '\0'; 123 return (0); //success 124 } 125 126 size_t calcDecodeLength(const char* b64input) { //Calculates the length of a decoded string 127 size_t len = strlen(b64input), padding = 0; 128 if (b64input[len-1] == '=' && b64input[len-2] == '=') //last two chars are = 129 padding = 2; 130 else if (b64input[len-1] == '=') //last char is = 131 padding = 1; 132 133 return (len*3)/4 - padding; 134 } 135 136 int Base64Decode(char* b64message, unsigned char** buffer, size_t* length) { //Decodes a base64 encoded string 137 BIO *bio, *b64; 138 139 int decodeLen = calcDecodeLength(b64message); 140 *buffer = (unsigned char*)malloc(decodeLen + 1); 141 (*buffer)[decodeLen] = '\0'; 142 143 bio = BIO_new_mem_buf(b64message, -1); 144 b64 = BIO_new(BIO_f_base64()); 145 bio = BIO_push(b64, bio); 146 147 BIO_set_flags(bio, BIO_FLAGS_BASE64_NO_NL); //Do not use newlines to flush buffer 148 *length = BIO_read(bio, *buffer, strlen(b64message)); 149 assert(*length == decodeLen); //length should equal decodeLen, else something went horribly wrong 150 BIO_free_all(bio); 151 152 return (0); //success 153 } 154 155 156 EVP_PKEY *load_pubkey(const char *file) { 157 BIO *key = NULL; 158 EVP_PKEY *pkey = NULL; 159 160 key = BIO_new_file(file, "r"); 161 pkey = PEM_read_bio_PUBKEY(key, NULL, NULL, NULL); 162 163 BIO_free(key); 164 return (pkey); 165 } 166 167 EVP_PKEY *load_key(const char *file) { 168 BIO *key = NULL; 169 EVP_PKEY *pkey = NULL; 170 171 key = BIO_new_file(file, "r"); 172 pkey = PEM_read_bio_PrivateKey(key, NULL, NULL, NULL); 173 174 BIO_free(key); 175 return (pkey); 176 } 177 178 179 int test_load_pubkey(const char *file){ 180 EVP_PKEY *key = load_pubkey(file); 181 if (key == NULL){ 182 return -1; 183 } 184 EVP_PKEY_free(key); 185 return 0; 186 } 187 188 int test_load_private_key(const char *file){ 189 EVP_PKEY *key = load_key(file); 190 if (key == NULL){ 191 return -1; 192 } 193 EVP_PKEY_free(key); 194 return 0; 195 } 196 197 int encrypt_rsa_message(const char *plaintext, const char *public_keyfile, unsigned char **encryptedtext) { 198 EVP_PKEY *public_key = NULL; 199 RSA *rsa = NULL; 200 unsigned char *rsa_buffer = NULL, pad = RSA_PKCS1_PADDING; 201 int keysize, encryptedtext_len, rsa_buffer_len; 202 203 public_key = load_pubkey(public_keyfile); 204 rsa = EVP_PKEY_get1_RSA(public_key); 205 EVP_PKEY_free(public_key); 206 207 keysize = RSA_size(rsa); 208 rsa_buffer = OPENSSL_malloc(keysize * 2); 209 *encryptedtext = (unsigned char*)OPENSSL_malloc(keysize); 210 211 BIO *bioBuff = BIO_new_mem_buf((void*)plaintext, (int)strlen(plaintext)); 212 rsa_buffer_len = BIO_read(bioBuff, rsa_buffer, keysize * 2); 213 encryptedtext_len = RSA_public_encrypt(rsa_buffer_len, rsa_buffer, *encryptedtext, rsa, pad); 214 215 RSA_free(rsa); 216 OPENSSL_free(rsa_buffer); 217 OPENSSL_free(bioBuff); 218 219 return encryptedtext_len; 220 } 221 222 int decrypt_rsa_message(const unsigned char *encryptedtext, const int encryptedtext_len, const char *private_keyfile, unsigned char **plaintext) { 223 EVP_PKEY *private_key = NULL; 224 RSA *rsa = NULL; 225 unsigned char *rsa_buffer = NULL, pad = RSA_PKCS1_PADDING; 226 int plaintext_len, rsa_buffer_len, keysize; 227 228 private_key = load_key(private_keyfile); 229 rsa = EVP_PKEY_get1_RSA(private_key); 230 EVP_PKEY_free(private_key); 231 232 keysize = RSA_size(rsa); 233 rsa_buffer = OPENSSL_malloc(keysize * 2); 234 *plaintext = (unsigned char*)OPENSSL_malloc(keysize); 235 236 BIO *bioBuff = BIO_new_mem_buf((void*)encryptedtext, encryptedtext_len); 237 rsa_buffer_len = BIO_read(bioBuff, rsa_buffer, keysize * 2); 238 plaintext_len = RSA_private_decrypt(rsa_buffer_len, rsa_buffer, *plaintext, rsa, pad); 239 240 RSA_free(rsa); 241 OPENSSL_free(rsa_buffer); 242 OPENSSL_free(bioBuff); 243 244 return plaintext_len; 245 } 246 247 int encode_auth_setting(const char *username, const char *password, const char *public_keyfile, char **authtoken){ 248 time_t t = time(NULL); 249 time_t utc_seconds = mktime(localtime(&t)); 250 char text[150]; 251 sprintf (text, "user: %s\npwd: %s\nts: %ld", username, password, utc_seconds); 252 unsigned char *encrypted = NULL; 253 int encrypted_len; 254 encrypted_len = encrypt_rsa_message(text, public_keyfile, &encrypted); 255 Base64Encode(encrypted, encrypted_len, authtoken); 256 return (0); //success 257 } 258 259 int decode_auth_setting(int enable_debug, char *authtoken, const char *private_keyfile, char **username, char **password, time_t *ts){ 260 unsigned char *encrypted_b64 = NULL; 261 size_t encrypted_len_b64; 262 Base64Decode(authtoken, &encrypted_b64, &encrypted_len_b64); 263 264 unsigned char *plaintext = NULL; 265 int plaintext_len; 266 plaintext_len = decrypt_rsa_message(encrypted_b64, encrypted_len_b64, private_keyfile, &plaintext); 267 plaintext[plaintext_len] = '\0'; 268 269 char s_username[20], s_password[20]; 270 sscanf ((char *)plaintext,"user: %s\npwd: %s\nts: %ld", s_username, s_password, ts); 271 if (enable_debug) { 272 printf("Auth Token Content:\n%s\n", plaintext); 273 printf("Auth Token Credentials:\n--> %s %s\n", s_username, s_password); 274 } 275 *username = (char *) calloc(21, sizeof(char)); 276 *password = (char *) calloc(21, sizeof(char)); 277 strncpy(*username, s_username, 20); 278 strncpy(*password, s_password, 20); 279 return (0); 280 } 281 282 #endif //HAVE_SSL 283 284 ssize_t iperf_getpass (char **lineptr, size_t *n, FILE *stream) { 285 struct termios old, new; 286 ssize_t nread; 287 288 /* Turn echoing off and fail if we can't. */ 289 if (tcgetattr (fileno (stream), &old) != 0) 290 return -1; 291 new = old; 292 new.c_lflag &= ~ECHO; 293 if (tcsetattr (fileno (stream), TCSAFLUSH, &new) != 0) 294 return -1; 295 296 /* Read the password. */ 297 printf("Password: "); 298 nread = getline (lineptr, n, stream); 299 300 /* Restore terminal. */ 301 (void) tcsetattr (fileno (stream), TCSAFLUSH, &old); 302 303 //strip the \n or \r\n chars 304 char *buf = *lineptr; 305 int i; 306 for (i = 0; buf[i] != '\0'; i++){ 307 if (buf[i] == '\n' || buf[i] == '\r'){ 308 buf[i] = '\0'; 309 break; 310 } 311 } 312 313 return nread; 314 } 315 316 317