Mercurial > dropbear
annotate fuzz/fuzz-common.c @ 1938:77bc00dcc19f default tip main master
Bump version to 2022.82
author | Matt Johnston <matt@ucc.asn.au> |
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date | Fri, 01 Apr 2022 14:43:27 +0800 |
parents | 19b28d2fbe30 |
children |
rev | line source |
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1 #define FUZZ_NO_REPLACE_STDERR |
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2 #define FUZZ_NO_REPLACE_GETPW |
1348 | 3 #include "includes.h" |
4 | |
5 #include "includes.h" | |
6 #include "dbutil.h" | |
7 #include "runopts.h" | |
1353 | 8 #include "crypto_desc.h" |
9 #include "session.h" | |
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10 #include "dbrandom.h" |
1457 | 11 #include "bignum.h" |
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12 #include "atomicio.h" |
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13 #include "fuzz-wrapfd.h" |
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14 #include "fuzz.h" |
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15 |
1348 | 16 struct dropbear_fuzz_options fuzz; |
17 | |
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18 static void fuzz_dropbear_log(int UNUSED(priority), const char* format, va_list param); |
1348 | 19 static void load_fixed_hostkeys(void); |
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20 static void load_fixed_client_key(void); |
1348 | 21 |
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22 // This runs automatically before main, due to contructor attribute in fuzz.h |
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23 void fuzz_early_setup(void) { |
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24 /* Set stderr to point to normal stderr by default */ |
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25 fuzz.fake_stderr = stderr; |
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26 } |
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27 |
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28 void fuzz_common_setup(void) { |
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29 disallow_core(); |
1348 | 30 fuzz.fuzzing = 1; |
1357 | 31 fuzz.wrapfds = 1; |
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32 fuzz.do_jmp = 1; |
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33 fuzz.input = m_malloc(sizeof(buffer)); |
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34 _dropbear_log = fuzz_dropbear_log; |
1350 | 35 crypto_init(); |
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36 fuzz_seed("start", 5); |
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37 /* let any messages get flushed */ |
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38 setlinebuf(stdout); |
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39 #if DEBUG_TRACE |
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40 if (debug_trace) |
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41 { |
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42 fprintf(stderr, "Dropbear fuzzer: -v specified, not disabling stderr output\n"); |
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43 } |
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44 else |
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45 #endif |
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46 if (getenv("DROPBEAR_KEEP_STDERR")) { |
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47 fprintf(stderr, "Dropbear fuzzer: DROPBEAR_KEEP_STDERR, not disabling stderr output\n"); |
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48 } |
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49 else |
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50 { |
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51 fprintf(stderr, "Dropbear fuzzer: Disabling stderr output\n"); |
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52 fuzz.fake_stderr = fopen("/dev/null", "w"); |
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53 assert(fuzz.fake_stderr); |
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54 } |
1348 | 55 } |
56 | |
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57 int fuzz_set_input(const uint8_t *Data, size_t Size) { |
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58 |
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59 fuzz.input->data = (unsigned char*)Data; |
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60 fuzz.input->size = Size; |
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61 fuzz.input->len = Size; |
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62 fuzz.input->pos = 0; |
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63 |
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64 memset(&ses, 0x0, sizeof(ses)); |
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65 memset(&svr_ses, 0x0, sizeof(svr_ses)); |
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66 memset(&cli_ses, 0x0, sizeof(cli_ses)); |
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67 wrapfd_setup(fuzz.input); |
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68 // printhex("input", fuzz.input->data, fuzz.input->len); |
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69 |
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70 fuzz_seed(fuzz.input->data, MIN(fuzz.input->len, 16)); |
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71 |
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72 return DROPBEAR_SUCCESS; |
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73 } |
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74 |
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75 #if DEBUG_TRACE |
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76 static void fuzz_dropbear_log(int UNUSED(priority), const char* format, va_list param) { |
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77 if (debug_trace) { |
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78 char printbuf[1024]; |
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79 vsnprintf(printbuf, sizeof(printbuf), format, param); |
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80 fprintf(stderr, "%s\n", printbuf); |
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81 } |
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82 } |
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83 #else |
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84 static void fuzz_dropbear_log(int UNUSED(priority), const char* UNUSED(format), va_list UNUSED(param)) { |
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85 /* No print */ |
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86 } |
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87 #endif /* DEBUG_TRACE */ |
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88 |
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89 void fuzz_svr_setup(void) { |
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90 fuzz_common_setup(); |
1353 | 91 |
92 _dropbear_exit = svr_dropbear_exit; | |
1348 | 93 |
94 char *argv[] = { | |
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95 "dropbear", |
1348 | 96 "-E", |
97 }; | |
98 | |
99 int argc = sizeof(argv) / sizeof(*argv); | |
100 svr_getopts(argc, argv); | |
101 | |
102 load_fixed_hostkeys(); | |
103 } | |
104 | |
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105 void fuzz_svr_hook_preloop() { |
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106 if (fuzz.svr_postauth) { |
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107 ses.authstate.authdone = 1; |
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108 fill_passwd("root"); |
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109 } |
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110 } |
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111 |
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112 void fuzz_cli_setup(void) { |
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113 fuzz_common_setup(); |
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114 |
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115 _dropbear_exit = cli_dropbear_exit; |
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116 _dropbear_log = cli_dropbear_log; |
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117 |
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118 char *argv[] = { |
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119 "dbclient", |
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120 "-y", |
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121 "localhost", |
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122 "uptime" |
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123 }; |
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124 |
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125 int argc = sizeof(argv) / sizeof(*argv); |
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126 cli_getopts(argc, argv); |
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127 |
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128 load_fixed_client_key(); |
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129 /* Avoid password prompt */ |
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130 setenv(DROPBEAR_PASSWORD_ENV, "password", 1); |
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131 } |
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132 |
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133 #include "fuzz-hostkeys.c" |
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134 |
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135 static void load_fixed_client_key(void) { |
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136 |
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137 buffer *b = buf_new(3000); |
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138 sign_key *key; |
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139 enum signkey_type keytype; |
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140 |
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141 key = new_sign_key(); |
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142 keytype = DROPBEAR_SIGNKEY_ANY; |
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143 buf_putbytes(b, keyed25519, keyed25519_len); |
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144 buf_setpos(b, 0); |
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145 if (buf_get_priv_key(b, key, &keytype) == DROPBEAR_FAILURE) { |
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146 dropbear_exit("failed fixed ed25519 hostkey"); |
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147 } |
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148 list_append(cli_opts.privkeys, key); |
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149 |
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150 buf_free(b); |
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151 } |
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152 |
1348 | 153 static void load_fixed_hostkeys(void) { |
154 | |
155 buffer *b = buf_new(3000); | |
156 enum signkey_type type; | |
157 | |
158 TRACE(("load fixed hostkeys")) | |
159 | |
160 svr_opts.hostkey = new_sign_key(); | |
161 | |
162 buf_setlen(b, 0); | |
163 buf_putbytes(b, keyr, keyr_len); | |
164 buf_setpos(b, 0); | |
165 type = DROPBEAR_SIGNKEY_RSA; | |
166 if (buf_get_priv_key(b, svr_opts.hostkey, &type) == DROPBEAR_FAILURE) { | |
167 dropbear_exit("failed fixed rsa hostkey"); | |
168 } | |
169 | |
170 buf_setlen(b, 0); | |
171 buf_putbytes(b, keyd, keyd_len); | |
172 buf_setpos(b, 0); | |
173 type = DROPBEAR_SIGNKEY_DSS; | |
174 if (buf_get_priv_key(b, svr_opts.hostkey, &type) == DROPBEAR_FAILURE) { | |
175 dropbear_exit("failed fixed dss hostkey"); | |
176 } | |
177 | |
178 buf_setlen(b, 0); | |
179 buf_putbytes(b, keye, keye_len); | |
180 buf_setpos(b, 0); | |
181 type = DROPBEAR_SIGNKEY_ECDSA_NISTP256; | |
182 if (buf_get_priv_key(b, svr_opts.hostkey, &type) == DROPBEAR_FAILURE) { | |
183 dropbear_exit("failed fixed ecdsa hostkey"); | |
184 } | |
185 | |
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186 buf_setlen(b, 0); |
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187 buf_putbytes(b, keyed25519, keyed25519_len); |
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188 buf_setpos(b, 0); |
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189 type = DROPBEAR_SIGNKEY_ED25519; |
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190 if (buf_get_priv_key(b, svr_opts.hostkey, &type) == DROPBEAR_FAILURE) { |
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191 dropbear_exit("failed fixed ed25519 hostkey"); |
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192 } |
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193 |
1348 | 194 buf_free(b); |
195 } | |
196 | |
1357 | 197 void fuzz_kex_fakealgos(void) { |
198 ses.newkeys->recv.crypt_mode = &dropbear_mode_none; | |
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199 ses.newkeys->recv.algo_mac = &dropbear_nohash; |
1357 | 200 } |
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201 |
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202 void fuzz_get_socket_address(int UNUSED(fd), char **local_host, char **local_port, |
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203 char **remote_host, char **remote_port, int UNUSED(host_lookup)) { |
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204 if (local_host) { |
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205 *local_host = m_strdup("fuzzlocalhost"); |
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206 } |
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207 if (local_port) { |
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208 *local_port = m_strdup("1234"); |
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209 } |
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210 if (remote_host) { |
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211 *remote_host = m_strdup("fuzzremotehost"); |
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212 } |
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213 if (remote_port) { |
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214 *remote_port = m_strdup("9876"); |
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215 } |
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216 } |
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217 |
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218 /* cut down version of svr_send_msg_kexdh_reply() that skips slow maths. Still populates structures */ |
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219 void fuzz_fake_send_kexdh_reply(void) { |
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220 assert(!ses.dh_K); |
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221 m_mp_alloc_init_multi(&ses.dh_K, NULL); |
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222 mp_set_ul(ses.dh_K, 12345678uL); |
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223 finish_kexhashbuf(); |
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224 } |
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225 |
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226 /* fake version of spawn_command() */ |
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227 int fuzz_spawn_command(int *ret_writefd, int *ret_readfd, int *ret_errfd, pid_t *ret_pid) { |
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228 *ret_writefd = wrapfd_new_dummy(); |
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229 *ret_readfd = wrapfd_new_dummy(); |
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230 if (ret_errfd) { |
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231 *ret_errfd = wrapfd_new_dummy(); |
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232 } |
1802
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233 if (*ret_writefd == -1 || *ret_readfd == -1 || (ret_errfd && *ret_errfd == -1)) { |
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234 m_close(*ret_writefd); |
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235 m_close(*ret_readfd); |
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236 if (ret_errfd) { |
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237 m_close(*ret_errfd); |
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238 } |
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239 return DROPBEAR_FAILURE; |
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240 } else { |
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241 *ret_pid = 999; |
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242 return DROPBEAR_SUCCESS; |
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243 |
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244 } |
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245 } |
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246 |
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247 /* Fake dropbear_listen, always returns failure for now. |
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248 TODO make it sometimes return success with wrapfd_new_dummy() sockets. |
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249 Making the listeners fake a new incoming connection will be harder. */ |
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250 /* Listen on address:port. |
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251 * Special cases are address of "" listening on everything, |
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252 * and address of NULL listening on localhost only. |
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253 * Returns the number of sockets bound on success, or -1 on failure. On |
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254 * failure, if errstring wasn't NULL, it'll be a newly malloced error |
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255 * string.*/ |
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256 int fuzz_dropbear_listen(const char* UNUSED(address), const char* UNUSED(port), |
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257 int *UNUSED(socks), unsigned int UNUSED(sockcount), char **errstring, int *UNUSED(maxfd)) { |
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258 if (errstring) { |
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259 *errstring = m_strdup("fuzzing can't listen (yet)"); |
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260 } |
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261 return -1; |
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262 } |
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263 |
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264 int fuzz_run_server(const uint8_t *Data, size_t Size, int skip_kexmaths, int postauth) { |
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265 static int once = 0; |
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266 if (!once) { |
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267 fuzz_svr_setup(); |
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268 fuzz.skip_kexmaths = skip_kexmaths; |
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269 once = 1; |
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270 } |
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271 |
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272 fuzz.svr_postauth = postauth; |
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273 |
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274 if (fuzz_set_input(Data, Size) == DROPBEAR_FAILURE) { |
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275 return 0; |
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276 } |
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277 |
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278 uint32_t wrapseed; |
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279 genrandom((void*)&wrapseed, sizeof(wrapseed)); |
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280 wrapfd_setseed(wrapseed); |
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281 |
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282 int fakesock = wrapfd_new_fuzzinput(); |
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283 |
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284 m_malloc_set_epoch(1); |
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285 fuzz.do_jmp = 1; |
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286 if (setjmp(fuzz.jmp) == 0) { |
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287 svr_session(fakesock, fakesock); |
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288 m_malloc_free_epoch(1, 0); |
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289 } else { |
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290 fuzz.do_jmp = 0; |
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291 m_malloc_free_epoch(1, 1); |
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292 TRACE(("dropbear_exit longjmped")) |
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293 /* dropbear_exit jumped here */ |
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294 } |
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295 |
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296 return 0; |
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297 } |
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298 |
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299 int fuzz_run_client(const uint8_t *Data, size_t Size, int skip_kexmaths) { |
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300 static int once = 0; |
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301 if (!once) { |
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302 fuzz_cli_setup(); |
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303 fuzz.skip_kexmaths = skip_kexmaths; |
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304 once = 1; |
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305 } |
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306 |
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307 if (fuzz_set_input(Data, Size) == DROPBEAR_FAILURE) { |
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308 return 0; |
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309 } |
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310 |
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311 // Allow to proceed sooner |
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312 ses.kexstate.donefirstkex = 1; |
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313 |
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314 uint32_t wrapseed; |
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315 genrandom((void*)&wrapseed, sizeof(wrapseed)); |
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316 wrapfd_setseed(wrapseed); |
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317 |
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318 int fakesock = wrapfd_new_fuzzinput(); |
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319 |
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320 m_malloc_set_epoch(1); |
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321 fuzz.do_jmp = 1; |
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322 if (setjmp(fuzz.jmp) == 0) { |
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323 cli_session(fakesock, fakesock, NULL, 0); |
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324 m_malloc_free_epoch(1, 0); |
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325 } else { |
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326 fuzz.do_jmp = 0; |
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327 m_malloc_free_epoch(1, 1); |
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328 TRACE(("dropbear_exit longjmped")) |
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329 /* dropbear_exit jumped here */ |
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330 } |
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331 |
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332 return 0; |
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333 } |
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334 |
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335 const void* fuzz_get_algo(const algo_type *algos, const char* name) { |
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336 const algo_type *t; |
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337 for (t = algos; t->name; t++) { |
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338 if (strcmp(t->name, name) == 0) { |
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339 return t->data; |
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340 } |
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341 } |
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342 assert(0); |
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343 } |
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344 |
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345 void fuzz_dump(const unsigned char* data, size_t len) { |
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346 if (fuzz.dumping) { |
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|
347 TRACE(("dump %zu", len)) |
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348 assert(atomicio(vwrite, fuzz.recv_dumpfd, (void*)data, len) == len); |
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349 } |
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350 } |
1779
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351 |
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|
352 static struct passwd pwd_root = { |
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353 .pw_name = "root", |
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354 .pw_passwd = "!", |
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355 .pw_uid = 0, |
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356 .pw_gid = 0, |
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357 .pw_dir = "/root", |
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358 .pw_shell = "/bin/sh", |
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|
359 }; |
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|
360 |
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|
361 static struct passwd pwd_other = { |
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362 .pw_name = "other", |
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|
363 .pw_passwd = "!", |
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364 .pw_uid = 100, |
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|
365 .pw_gid = 100, |
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|
366 .pw_dir = "/home/other", |
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|
367 .pw_shell = "/bin/sh", |
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|
368 }; |
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|
369 |
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|
370 |
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|
371 /* oss-fuzz runs fuzzers under minijail, without /etc/passwd. |
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372 We provide sufficient values for the fuzzers to run */ |
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|
373 struct passwd* fuzz_getpwnam(const char *login) { |
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|
374 if (!fuzz.fuzzing) { |
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|
375 return getpwnam(login); |
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|
376 } |
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|
377 if (strcmp(login, pwd_other.pw_name) == 0) { |
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|
378 return &pwd_other; |
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|
379 } |
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|
380 if (strcmp(login, pwd_root.pw_name) == 0) { |
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|
381 return &pwd_root; |
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|
382 } |
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|
383 return NULL; |
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|
384 } |
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|
385 |
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|
386 struct passwd* fuzz_getpwuid(uid_t uid) { |
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|
387 if (!fuzz.fuzzing) { |
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|
388 return getpwuid(uid); |
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|
389 } |
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|
390 if (uid == pwd_other.pw_uid) { |
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|
391 return &pwd_other; |
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|
392 } |
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|
393 if (uid == pwd_root.pw_uid) { |
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|
394 return &pwd_root; |
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|
395 } |
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|
396 return NULL; |
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changeset
|
397 } |
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changeset
|
398 |