xref: /iperf/src/iperf_auth.c (revision ff1ea4e5)
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