kern_veriexec.c revision 1.6 1 1.4 maxv /* $NetBSD: kern_veriexec.c,v 1.6 2015/04/26 09:16:06 maxv Exp $ */
2 1.1 maxv
3 1.1 maxv /*-
4 1.1 maxv * Copyright (c) 2005, 2006 Elad Efrat <elad (at) NetBSD.org>
5 1.1 maxv * Copyright (c) 2005, 2006 Brett Lymn <blymn (at) NetBSD.org>
6 1.1 maxv * All rights reserved.
7 1.1 maxv *
8 1.1 maxv * Redistribution and use in source and binary forms, with or without
9 1.1 maxv * modification, are permitted provided that the following conditions
10 1.1 maxv * are met:
11 1.1 maxv * 1. Redistributions of source code must retain the above copyright
12 1.1 maxv * notice, this list of conditions and the following disclaimer.
13 1.1 maxv * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 maxv * notice, this list of conditions and the following disclaimer in the
15 1.1 maxv * documentation and/or other materials provided with the distribution.
16 1.1 maxv * 3. The name of the authors may not be used to endorse or promote products
17 1.1 maxv * derived from this software without specific prior written permission.
18 1.1 maxv *
19 1.1 maxv * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
20 1.1 maxv * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 maxv * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 maxv * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 maxv * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 1.1 maxv * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 1.1 maxv * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 1.1 maxv * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 1.1 maxv * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 1.1 maxv * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 1.1 maxv */
30 1.1 maxv
31 1.1 maxv #include <sys/cdefs.h>
32 1.4 maxv __KERNEL_RCSID(0, "$NetBSD: kern_veriexec.c,v 1.6 2015/04/26 09:16:06 maxv Exp $");
33 1.1 maxv
34 1.1 maxv #include "opt_veriexec.h"
35 1.1 maxv
36 1.1 maxv #include <sys/param.h>
37 1.1 maxv #include <sys/mount.h>
38 1.1 maxv #include <sys/kmem.h>
39 1.1 maxv #include <sys/vnode.h>
40 1.1 maxv #include <sys/namei.h>
41 1.1 maxv #include <sys/exec.h>
42 1.1 maxv #include <sys/once.h>
43 1.1 maxv #include <sys/proc.h>
44 1.1 maxv #include <sys/rwlock.h>
45 1.1 maxv #include <sys/syslog.h>
46 1.1 maxv #include <sys/sysctl.h>
47 1.1 maxv #include <sys/inttypes.h>
48 1.1 maxv #include <sys/verified_exec.h>
49 1.1 maxv #if defined(__FreeBSD__)
50 1.1 maxv # include <sys/systm.h>
51 1.1 maxv # include <sys/imgact.h>
52 1.1 maxv # include <crypto/sha1.h>
53 1.1 maxv # include <crypto/sha2/sha2.h>
54 1.1 maxv # include <crypto/ripemd160/rmd160.h>
55 1.1 maxv #else
56 1.1 maxv # include <sys/sha1.h>
57 1.1 maxv # include <sys/sha2.h>
58 1.1 maxv # include <sys/rmd160.h>
59 1.1 maxv #endif
60 1.1 maxv #include <sys/md5.h>
61 1.1 maxv #include <uvm/uvm_extern.h>
62 1.1 maxv #include <sys/fileassoc.h>
63 1.1 maxv #include <sys/kauth.h>
64 1.1 maxv #include <sys/conf.h>
65 1.1 maxv #include <miscfs/specfs/specdev.h>
66 1.1 maxv #include <prop/proplib.h>
67 1.1 maxv #include <sys/fcntl.h>
68 1.1 maxv
69 1.1 maxv /* Readable values for veriexec_file_report(). */
70 1.1 maxv #define REPORT_ALWAYS 0x01 /* Always print */
71 1.1 maxv #define REPORT_VERBOSE 0x02 /* Print when verbose >= 1 */
72 1.1 maxv #define REPORT_DEBUG 0x04 /* Print when verbose >= 2 (debug) */
73 1.1 maxv #define REPORT_PANIC 0x08 /* Call panic() */
74 1.1 maxv #define REPORT_ALARM 0x10 /* Alarm - also print pid/uid/.. */
75 1.1 maxv #define REPORT_LOGMASK (REPORT_ALWAYS|REPORT_VERBOSE|REPORT_DEBUG)
76 1.1 maxv
77 1.1 maxv /* state of locking for veriexec_file_verify */
78 1.1 maxv #define VERIEXEC_UNLOCKED 0x00 /* Nothing locked, callee does it */
79 1.1 maxv #define VERIEXEC_LOCKED 0x01 /* Global op lock held */
80 1.1 maxv
81 1.3 maxv /* state of file locking for veriexec_file_verify */
82 1.3 maxv #define VERIEXEC_FILE_UNLOCKED 0x02 /* Nothing locked, callee does it */
83 1.3 maxv #define VERIEXEC_FILE_LOCKED 0x04 /* File locked */
84 1.1 maxv
85 1.1 maxv #define VERIEXEC_RW_UPGRADE(lock) while((rw_tryupgrade(lock)) == 0){};
86 1.1 maxv
87 1.1 maxv struct veriexec_fpops {
88 1.1 maxv const char *type;
89 1.1 maxv size_t hash_len;
90 1.1 maxv size_t context_size;
91 1.1 maxv veriexec_fpop_init_t init;
92 1.1 maxv veriexec_fpop_update_t update;
93 1.1 maxv veriexec_fpop_final_t final;
94 1.1 maxv LIST_ENTRY(veriexec_fpops) entries;
95 1.1 maxv };
96 1.1 maxv
97 1.1 maxv /* Veriexec per-file entry data. */
98 1.1 maxv struct veriexec_file_entry {
99 1.1 maxv krwlock_t lock; /* r/w lock */
100 1.1 maxv u_char *filename; /* File name. */
101 1.1 maxv u_char type; /* Entry type. */
102 1.1 maxv u_char status; /* Evaluation status. */
103 1.1 maxv u_char page_fp_status; /* Per-page FP status. */
104 1.1 maxv u_char *fp; /* Fingerprint. */
105 1.1 maxv void *page_fp; /* Per-page fingerprints */
106 1.1 maxv size_t npages; /* Number of pages. */
107 1.1 maxv size_t last_page_size; /* To support < PAGE_SIZE */
108 1.1 maxv struct veriexec_fpops *ops; /* Fingerprint ops vector*/
109 1.1 maxv size_t filename_len; /* Length of filename. */
110 1.1 maxv };
111 1.1 maxv
112 1.1 maxv /* Veriexec per-table data. */
113 1.1 maxv struct veriexec_table_entry {
114 1.1 maxv uint64_t vte_count; /* Number of Veriexec entries. */
115 1.1 maxv const struct sysctlnode *vte_node;
116 1.1 maxv };
117 1.1 maxv
118 1.1 maxv static int veriexec_verbose;
119 1.1 maxv static int veriexec_strict;
120 1.1 maxv static int veriexec_bypass = 1;
121 1.1 maxv
122 1.1 maxv static char *veriexec_fp_names = NULL;
123 1.1 maxv static size_t veriexec_name_max = 0;
124 1.1 maxv
125 1.1 maxv static const struct sysctlnode *veriexec_count_node;
126 1.1 maxv
127 1.1 maxv static fileassoc_t veriexec_hook;
128 1.1 maxv static specificdata_key_t veriexec_mountspecific_key;
129 1.1 maxv
130 1.1 maxv static LIST_HEAD(, veriexec_fpops) veriexec_fpops_list =
131 1.1 maxv LIST_HEAD_INITIALIZER(veriexec_fpops_list);
132 1.1 maxv
133 1.1 maxv static int veriexec_raw_cb(kauth_cred_t, kauth_action_t, void *,
134 1.1 maxv void *, void *, void *, void *);
135 1.1 maxv static struct veriexec_fpops *veriexec_fpops_lookup(const char *);
136 1.1 maxv static void veriexec_file_free(struct veriexec_file_entry *);
137 1.1 maxv
138 1.1 maxv static unsigned int veriexec_tablecount = 0;
139 1.1 maxv
140 1.1 maxv /*
141 1.1 maxv * Veriexec operations global lock - most ops hold this as a read
142 1.1 maxv * lock, it is upgraded to a write lock when destroying veriexec file
143 1.1 maxv * table entries.
144 1.1 maxv */
145 1.1 maxv static krwlock_t veriexec_op_lock;
146 1.1 maxv
147 1.1 maxv /*
148 1.1 maxv * Sysctl helper routine for Veriexec.
149 1.1 maxv */
150 1.1 maxv static int
151 1.1 maxv sysctl_kern_veriexec_algorithms(SYSCTLFN_ARGS)
152 1.1 maxv {
153 1.1 maxv size_t len;
154 1.1 maxv int error;
155 1.1 maxv const char *p;
156 1.1 maxv
157 1.1 maxv if (newp != NULL)
158 1.1 maxv return EPERM;
159 1.1 maxv
160 1.1 maxv if (namelen != 0)
161 1.1 maxv return EINVAL;
162 1.1 maxv
163 1.1 maxv p = veriexec_fp_names == NULL ? "" : veriexec_fp_names;
164 1.1 maxv
165 1.1 maxv len = strlen(p) + 1;
166 1.1 maxv
167 1.1 maxv if (*oldlenp < len && oldp)
168 1.1 maxv return ENOMEM;
169 1.1 maxv
170 1.1 maxv if (oldp && (error = copyout(p, oldp, len)) != 0)
171 1.1 maxv return error;
172 1.1 maxv
173 1.1 maxv *oldlenp = len;
174 1.1 maxv return 0;
175 1.1 maxv }
176 1.1 maxv
177 1.1 maxv static int
178 1.1 maxv sysctl_kern_veriexec_strict(SYSCTLFN_ARGS)
179 1.1 maxv {
180 1.1 maxv struct sysctlnode node;
181 1.1 maxv int error, newval;
182 1.1 maxv
183 1.1 maxv node = *rnode;
184 1.1 maxv node.sysctl_data = &newval;
185 1.1 maxv
186 1.1 maxv newval = veriexec_strict;
187 1.1 maxv error = sysctl_lookup(SYSCTLFN_CALL(&node));
188 1.1 maxv if (error || newp == NULL)
189 1.1 maxv return error;
190 1.1 maxv
191 1.1 maxv if (newval < veriexec_strict)
192 1.1 maxv return EPERM;
193 1.1 maxv
194 1.1 maxv veriexec_strict = newval;
195 1.1 maxv
196 1.1 maxv return 0;
197 1.1 maxv }
198 1.1 maxv
199 1.1 maxv SYSCTL_SETUP(sysctl_kern_veriexec_setup, "sysctl kern.veriexec setup")
200 1.1 maxv {
201 1.1 maxv const struct sysctlnode *rnode = NULL;
202 1.1 maxv
203 1.1 maxv sysctl_createv(clog, 0, NULL, &rnode,
204 1.1 maxv CTLFLAG_PERMANENT,
205 1.1 maxv CTLTYPE_NODE, "veriexec",
206 1.1 maxv SYSCTL_DESCR("Veriexec"),
207 1.1 maxv NULL, 0, NULL, 0,
208 1.1 maxv CTL_KERN, CTL_CREATE, CTL_EOL);
209 1.1 maxv
210 1.1 maxv sysctl_createv(clog, 0, &rnode, NULL,
211 1.1 maxv CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
212 1.1 maxv CTLTYPE_INT, "verbose",
213 1.1 maxv SYSCTL_DESCR("Veriexec verbose level"),
214 1.1 maxv NULL, 0, &veriexec_verbose, 0,
215 1.1 maxv CTL_CREATE, CTL_EOL);
216 1.1 maxv sysctl_createv(clog, 0, &rnode, NULL,
217 1.1 maxv CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
218 1.1 maxv CTLTYPE_INT, "strict",
219 1.1 maxv SYSCTL_DESCR("Veriexec strict level"),
220 1.1 maxv sysctl_kern_veriexec_strict, 0, NULL, 0,
221 1.1 maxv CTL_CREATE, CTL_EOL);
222 1.1 maxv sysctl_createv(clog, 0, &rnode, NULL,
223 1.1 maxv CTLFLAG_PERMANENT,
224 1.1 maxv CTLTYPE_STRING, "algorithms",
225 1.1 maxv SYSCTL_DESCR("Veriexec supported hashing "
226 1.1 maxv "algorithms"),
227 1.1 maxv sysctl_kern_veriexec_algorithms, 0, NULL, 0,
228 1.1 maxv CTL_CREATE, CTL_EOL);
229 1.1 maxv sysctl_createv(clog, 0, &rnode, &veriexec_count_node,
230 1.1 maxv CTLFLAG_PERMANENT,
231 1.1 maxv CTLTYPE_NODE, "count",
232 1.1 maxv SYSCTL_DESCR("Number of fingerprints on mount(s)"),
233 1.1 maxv NULL, 0, NULL, 0,
234 1.1 maxv CTL_CREATE, CTL_EOL);
235 1.1 maxv }
236 1.1 maxv
237 1.1 maxv /*
238 1.1 maxv * Add ops to the fignerprint ops vector list.
239 1.1 maxv */
240 1.1 maxv int
241 1.1 maxv veriexec_fpops_add(const char *fp_type, size_t hash_len, size_t ctx_size,
242 1.1 maxv veriexec_fpop_init_t init, veriexec_fpop_update_t update,
243 1.1 maxv veriexec_fpop_final_t final)
244 1.1 maxv {
245 1.1 maxv struct veriexec_fpops *ops;
246 1.1 maxv
247 1.1 maxv /* Sanity check all parameters. */
248 1.1 maxv if ((fp_type == NULL) || (hash_len == 0) || (ctx_size == 0) ||
249 1.1 maxv (init == NULL) || (update == NULL) || (final == NULL))
250 1.1 maxv return (EFAULT);
251 1.1 maxv
252 1.1 maxv if (veriexec_fpops_lookup(fp_type) != NULL)
253 1.1 maxv return (EEXIST);
254 1.1 maxv
255 1.1 maxv ops = kmem_alloc(sizeof(*ops), KM_SLEEP);
256 1.1 maxv
257 1.1 maxv ops->type = fp_type;
258 1.1 maxv ops->hash_len = hash_len;
259 1.1 maxv ops->context_size = ctx_size;
260 1.1 maxv ops->init = init;
261 1.1 maxv ops->update = update;
262 1.1 maxv ops->final = final;
263 1.1 maxv
264 1.1 maxv LIST_INSERT_HEAD(&veriexec_fpops_list, ops, entries);
265 1.1 maxv
266 1.1 maxv /*
267 1.1 maxv * If we don't have space for any names, allocate enough for six
268 1.1 maxv * which should be sufficient. (it's also enough for all algorithms
269 1.1 maxv * we can support at the moment)
270 1.1 maxv */
271 1.1 maxv if (veriexec_fp_names == NULL) {
272 1.1 maxv veriexec_name_max = 64;
273 1.1 maxv veriexec_fp_names = kmem_zalloc(veriexec_name_max, KM_SLEEP);
274 1.1 maxv }
275 1.1 maxv
276 1.1 maxv /*
277 1.1 maxv * If we're running out of space for storing supported algorithms,
278 1.1 maxv * extend the buffer with space for four names.
279 1.1 maxv */
280 1.1 maxv while (veriexec_name_max - (strlen(veriexec_fp_names) + 1) <
281 1.1 maxv strlen(fp_type)) {
282 1.1 maxv char *newp;
283 1.1 maxv unsigned int new_max;
284 1.1 maxv
285 1.1 maxv /* Add space for four algorithm names. */
286 1.1 maxv new_max = veriexec_name_max + 64;
287 1.1 maxv newp = kmem_zalloc(new_max, KM_SLEEP);
288 1.1 maxv strlcpy(newp, veriexec_fp_names, new_max);
289 1.1 maxv kmem_free(veriexec_fp_names, veriexec_name_max);
290 1.1 maxv veriexec_fp_names = newp;
291 1.1 maxv veriexec_name_max = new_max;
292 1.1 maxv }
293 1.1 maxv
294 1.1 maxv if (*veriexec_fp_names != '\0')
295 1.1 maxv strlcat(veriexec_fp_names, " ", veriexec_name_max);
296 1.1 maxv
297 1.1 maxv strlcat(veriexec_fp_names, fp_type, veriexec_name_max);
298 1.1 maxv
299 1.1 maxv return (0);
300 1.1 maxv }
301 1.1 maxv
302 1.1 maxv static void
303 1.1 maxv veriexec_mountspecific_dtor(void *v)
304 1.1 maxv {
305 1.1 maxv struct veriexec_table_entry *vte = v;
306 1.1 maxv
307 1.1 maxv if (vte == NULL) {
308 1.1 maxv return;
309 1.1 maxv }
310 1.1 maxv sysctl_free(__UNCONST(vte->vte_node));
311 1.1 maxv veriexec_tablecount--;
312 1.1 maxv kmem_free(vte, sizeof(*vte));
313 1.1 maxv }
314 1.1 maxv
315 1.1 maxv static int
316 1.1 maxv veriexec_listener_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
317 1.1 maxv void *arg0, void *arg1, void *arg2, void *arg3)
318 1.1 maxv {
319 1.1 maxv int result;
320 1.1 maxv enum kauth_system_req req;
321 1.1 maxv
322 1.1 maxv if (action != KAUTH_SYSTEM_VERIEXEC)
323 1.1 maxv return KAUTH_RESULT_DEFER;
324 1.1 maxv
325 1.1 maxv result = KAUTH_RESULT_DEFER;
326 1.1 maxv req = (enum kauth_system_req)arg0;
327 1.1 maxv
328 1.1 maxv if (req == KAUTH_REQ_SYSTEM_VERIEXEC_MODIFY &&
329 1.1 maxv veriexec_strict > VERIEXEC_LEARNING) {
330 1.1 maxv log(LOG_WARNING, "Veriexec: Strict mode, modifying "
331 1.1 maxv "tables not permitted.\n");
332 1.1 maxv
333 1.1 maxv result = KAUTH_RESULT_DENY;
334 1.1 maxv }
335 1.1 maxv
336 1.1 maxv return result;
337 1.1 maxv }
338 1.1 maxv
339 1.1 maxv /*
340 1.1 maxv * Initialise Veriexec.
341 1.1 maxv */
342 1.1 maxv void
343 1.1 maxv veriexec_init(void)
344 1.1 maxv {
345 1.1 maxv int error;
346 1.1 maxv
347 1.1 maxv /* Register a fileassoc for Veriexec. */
348 1.1 maxv error = fileassoc_register("veriexec",
349 1.1 maxv (fileassoc_cleanup_cb_t)veriexec_file_free, &veriexec_hook);
350 1.1 maxv if (error)
351 1.1 maxv panic("Veriexec: Can't register fileassoc: error=%d", error);
352 1.1 maxv
353 1.1 maxv /* Register listener to handle raw disk access. */
354 1.1 maxv if (kauth_listen_scope(KAUTH_SCOPE_DEVICE, veriexec_raw_cb, NULL) ==
355 1.1 maxv NULL)
356 1.1 maxv panic("Veriexec: Can't listen on device scope");
357 1.1 maxv
358 1.1 maxv error = mount_specific_key_create(&veriexec_mountspecific_key,
359 1.1 maxv veriexec_mountspecific_dtor);
360 1.1 maxv if (error)
361 1.1 maxv panic("Veriexec: Can't create mountspecific key");
362 1.1 maxv
363 1.1 maxv if (kauth_listen_scope(KAUTH_SCOPE_SYSTEM, veriexec_listener_cb,
364 1.1 maxv NULL) == NULL)
365 1.1 maxv panic("Veriexec: Can't listen on system scope");
366 1.1 maxv
367 1.1 maxv rw_init(&veriexec_op_lock);
368 1.1 maxv
369 1.1 maxv #define FPOPS_ADD(a, b, c, d, e, f) \
370 1.1 maxv veriexec_fpops_add(a, b, c, (veriexec_fpop_init_t)d, \
371 1.1 maxv (veriexec_fpop_update_t)e, (veriexec_fpop_final_t)f)
372 1.1 maxv
373 1.1 maxv #ifdef VERIFIED_EXEC_FP_RMD160
374 1.1 maxv FPOPS_ADD("RMD160", RMD160_DIGEST_LENGTH, sizeof(RMD160_CTX),
375 1.1 maxv RMD160Init, RMD160Update, RMD160Final);
376 1.1 maxv #endif /* VERIFIED_EXEC_FP_RMD160 */
377 1.1 maxv
378 1.1 maxv #ifdef VERIFIED_EXEC_FP_SHA256
379 1.1 maxv FPOPS_ADD("SHA256", SHA256_DIGEST_LENGTH, sizeof(SHA256_CTX),
380 1.1 maxv SHA256_Init, SHA256_Update, SHA256_Final);
381 1.1 maxv #endif /* VERIFIED_EXEC_FP_SHA256 */
382 1.1 maxv
383 1.1 maxv #ifdef VERIFIED_EXEC_FP_SHA384
384 1.1 maxv FPOPS_ADD("SHA384", SHA384_DIGEST_LENGTH, sizeof(SHA384_CTX),
385 1.1 maxv SHA384_Init, SHA384_Update, SHA384_Final);
386 1.1 maxv #endif /* VERIFIED_EXEC_FP_SHA384 */
387 1.1 maxv
388 1.1 maxv #ifdef VERIFIED_EXEC_FP_SHA512
389 1.1 maxv FPOPS_ADD("SHA512", SHA512_DIGEST_LENGTH, sizeof(SHA512_CTX),
390 1.1 maxv SHA512_Init, SHA512_Update, SHA512_Final);
391 1.1 maxv #endif /* VERIFIED_EXEC_FP_SHA512 */
392 1.1 maxv
393 1.1 maxv #ifdef VERIFIED_EXEC_FP_SHA1
394 1.1 maxv FPOPS_ADD("SHA1", SHA1_DIGEST_LENGTH, sizeof(SHA1_CTX),
395 1.1 maxv SHA1Init, SHA1Update, SHA1Final);
396 1.1 maxv #endif /* VERIFIED_EXEC_FP_SHA1 */
397 1.1 maxv
398 1.1 maxv #ifdef VERIFIED_EXEC_FP_MD5
399 1.1 maxv FPOPS_ADD("MD5", MD5_DIGEST_LENGTH, sizeof(MD5_CTX),
400 1.1 maxv MD5Init, MD5Update, MD5Final);
401 1.1 maxv #endif /* VERIFIED_EXEC_FP_MD5 */
402 1.1 maxv
403 1.1 maxv #undef FPOPS_ADD
404 1.1 maxv }
405 1.1 maxv
406 1.1 maxv static struct veriexec_fpops *
407 1.1 maxv veriexec_fpops_lookup(const char *name)
408 1.1 maxv {
409 1.1 maxv struct veriexec_fpops *ops;
410 1.1 maxv
411 1.1 maxv if (name == NULL)
412 1.1 maxv return (NULL);
413 1.1 maxv
414 1.1 maxv LIST_FOREACH(ops, &veriexec_fpops_list, entries) {
415 1.1 maxv if (strcasecmp(name, ops->type) == 0)
416 1.1 maxv return (ops);
417 1.1 maxv }
418 1.1 maxv
419 1.1 maxv return (NULL);
420 1.1 maxv }
421 1.1 maxv
422 1.1 maxv /*
423 1.1 maxv * Calculate fingerprint. Information on hash length and routines used is
424 1.1 maxv * extracted from veriexec_hash_list according to the hash type.
425 1.1 maxv *
426 1.1 maxv * NOTE: vfe is assumed to be locked for writing on entry.
427 1.1 maxv */
428 1.1 maxv static int
429 1.3 maxv veriexec_fp_calc(struct lwp *l, struct vnode *vp, int file_lock_state,
430 1.1 maxv struct veriexec_file_entry *vfe, u_char *fp)
431 1.1 maxv {
432 1.1 maxv struct vattr va;
433 1.1 maxv void *ctx, *page_ctx;
434 1.1 maxv u_char *buf, *page_fp;
435 1.1 maxv off_t offset, len;
436 1.1 maxv size_t resid, npages;
437 1.1 maxv int error, do_perpage, pagen;
438 1.1 maxv
439 1.3 maxv KASSERT((file_lock_state != VERIEXEC_LOCKED) &&
440 1.3 maxv (file_lock_state != VERIEXEC_UNLOCKED));
441 1.3 maxv
442 1.3 maxv if (file_lock_state == VERIEXEC_FILE_UNLOCKED)
443 1.1 maxv vn_lock(vp, LK_SHARED | LK_RETRY);
444 1.1 maxv error = VOP_GETATTR(vp, &va, l->l_cred);
445 1.3 maxv if (file_lock_state == VERIEXEC_FILE_UNLOCKED)
446 1.1 maxv VOP_UNLOCK(vp);
447 1.1 maxv if (error)
448 1.1 maxv return (error);
449 1.1 maxv
450 1.1 maxv #ifdef notyet /* XXX - for now */
451 1.1 maxv if ((vfe->type & VERIEXEC_UNTRUSTED) &&
452 1.1 maxv (vfe->page_fp_status == PAGE_FP_NONE))
453 1.1 maxv do_perpage = 1;
454 1.1 maxv else
455 1.1 maxv #endif /* notyet */
456 1.1 maxv do_perpage = 0;
457 1.1 maxv
458 1.1 maxv ctx = kmem_alloc(vfe->ops->context_size, KM_SLEEP);
459 1.1 maxv buf = kmem_alloc(PAGE_SIZE, KM_SLEEP);
460 1.1 maxv
461 1.1 maxv page_ctx = NULL;
462 1.1 maxv page_fp = NULL;
463 1.1 maxv npages = 0;
464 1.1 maxv if (do_perpage) {
465 1.1 maxv npages = (va.va_size >> PAGE_SHIFT) + 1;
466 1.1 maxv page_fp = kmem_alloc(vfe->ops->hash_len * npages, KM_SLEEP);
467 1.1 maxv vfe->page_fp = page_fp;
468 1.1 maxv page_ctx = kmem_alloc(vfe->ops->context_size, KM_SLEEP);
469 1.1 maxv }
470 1.1 maxv
471 1.1 maxv (vfe->ops->init)(ctx);
472 1.1 maxv
473 1.1 maxv len = 0;
474 1.1 maxv error = 0;
475 1.1 maxv pagen = 0;
476 1.1 maxv for (offset = 0; offset < va.va_size; offset += PAGE_SIZE) {
477 1.1 maxv len = ((va.va_size - offset) < PAGE_SIZE) ?
478 1.1 maxv (va.va_size - offset) : PAGE_SIZE;
479 1.1 maxv
480 1.1 maxv error = vn_rdwr(UIO_READ, vp, buf, len, offset,
481 1.1 maxv UIO_SYSSPACE,
482 1.3 maxv ((file_lock_state == VERIEXEC_FILE_LOCKED)?
483 1.1 maxv IO_NODELOCKED : 0),
484 1.1 maxv l->l_cred, &resid, NULL);
485 1.1 maxv
486 1.1 maxv if (error) {
487 1.1 maxv if (do_perpage) {
488 1.1 maxv kmem_free(vfe->page_fp,
489 1.1 maxv vfe->ops->hash_len * npages);
490 1.1 maxv vfe->page_fp = NULL;
491 1.1 maxv }
492 1.1 maxv
493 1.1 maxv goto bad;
494 1.1 maxv }
495 1.1 maxv
496 1.1 maxv (vfe->ops->update)(ctx, buf, (unsigned int) len);
497 1.1 maxv
498 1.1 maxv if (do_perpage) {
499 1.1 maxv (vfe->ops->init)(page_ctx);
500 1.1 maxv (vfe->ops->update)(page_ctx, buf, (unsigned int)len);
501 1.1 maxv (vfe->ops->final)(page_fp, page_ctx);
502 1.1 maxv
503 1.1 maxv if (veriexec_verbose >= 2) {
504 1.1 maxv int i;
505 1.1 maxv
506 1.1 maxv printf("hash for page %d: ", pagen);
507 1.1 maxv for (i = 0; i < vfe->ops->hash_len; i++)
508 1.1 maxv printf("%02x", page_fp[i]);
509 1.1 maxv printf("\n");
510 1.1 maxv }
511 1.1 maxv
512 1.1 maxv page_fp += vfe->ops->hash_len;
513 1.1 maxv pagen++;
514 1.1 maxv }
515 1.1 maxv
516 1.1 maxv if (len != PAGE_SIZE)
517 1.1 maxv break;
518 1.1 maxv }
519 1.1 maxv
520 1.1 maxv (vfe->ops->final)(fp, ctx);
521 1.1 maxv
522 1.1 maxv if (do_perpage) {
523 1.1 maxv vfe->last_page_size = len;
524 1.1 maxv vfe->page_fp_status = PAGE_FP_READY;
525 1.1 maxv vfe->npages = npages;
526 1.1 maxv }
527 1.1 maxv
528 1.1 maxv bad:
529 1.1 maxv if (do_perpage)
530 1.1 maxv kmem_free(page_ctx, vfe->ops->context_size);
531 1.1 maxv
532 1.1 maxv kmem_free(ctx, vfe->ops->context_size);
533 1.1 maxv kmem_free(buf, PAGE_SIZE);
534 1.1 maxv
535 1.1 maxv return (error);
536 1.1 maxv }
537 1.1 maxv
538 1.1 maxv /* Compare two fingerprints of the same type. */
539 1.1 maxv static int
540 1.1 maxv veriexec_fp_cmp(struct veriexec_fpops *ops, u_char *fp1, u_char *fp2)
541 1.1 maxv {
542 1.1 maxv if (veriexec_verbose >= 2) {
543 1.1 maxv int i;
544 1.1 maxv
545 1.1 maxv printf("comparing hashes...\n");
546 1.1 maxv printf("fp1: ");
547 1.1 maxv for (i = 0; i < ops->hash_len; i++) {
548 1.1 maxv printf("%02x", fp1[i]);
549 1.1 maxv }
550 1.1 maxv printf("\nfp2: ");
551 1.1 maxv for (i = 0; i < ops->hash_len; i++) {
552 1.1 maxv printf("%02x", fp2[i]);
553 1.1 maxv }
554 1.1 maxv printf("\n");
555 1.1 maxv }
556 1.1 maxv
557 1.1 maxv return (memcmp(fp1, fp2, ops->hash_len));
558 1.1 maxv }
559 1.1 maxv
560 1.4 maxv static int
561 1.4 maxv veriexec_fp_status(struct lwp *l, struct vnode *vp, int file_lock_state,
562 1.4 maxv struct veriexec_file_entry *vfe, u_char *status)
563 1.4 maxv {
564 1.4 maxv size_t hash_len = vfe->ops->hash_len;
565 1.4 maxv u_char *digest;
566 1.4 maxv int error = 0;
567 1.4 maxv
568 1.4 maxv digest = kmem_zalloc(hash_len, KM_SLEEP);
569 1.4 maxv
570 1.4 maxv error = veriexec_fp_calc(l, vp, file_lock_state, vfe, digest);
571 1.4 maxv if (error)
572 1.4 maxv goto out;
573 1.4 maxv
574 1.4 maxv /* Compare fingerprint with loaded data. */
575 1.4 maxv if (veriexec_fp_cmp(vfe->ops, vfe->fp, digest) == 0)
576 1.4 maxv *status = FINGERPRINT_VALID;
577 1.4 maxv else
578 1.4 maxv *status = FINGERPRINT_NOMATCH;
579 1.4 maxv
580 1.4 maxv out:
581 1.4 maxv kmem_free(digest, hash_len);
582 1.4 maxv return error;
583 1.4 maxv }
584 1.4 maxv
585 1.4 maxv
586 1.1 maxv static struct veriexec_table_entry *
587 1.1 maxv veriexec_table_lookup(struct mount *mp)
588 1.1 maxv {
589 1.1 maxv /* XXX: From raidframe init */
590 1.1 maxv if (mp == NULL)
591 1.1 maxv return NULL;
592 1.1 maxv
593 1.1 maxv return mount_getspecific(mp, veriexec_mountspecific_key);
594 1.1 maxv }
595 1.1 maxv
596 1.1 maxv static struct veriexec_file_entry *
597 1.1 maxv veriexec_get(struct vnode *vp)
598 1.1 maxv {
599 1.1 maxv return (fileassoc_lookup(vp, veriexec_hook));
600 1.1 maxv }
601 1.1 maxv
602 1.1 maxv bool
603 1.1 maxv veriexec_lookup(struct vnode *vp)
604 1.1 maxv {
605 1.1 maxv return (veriexec_get(vp) == NULL ? false : true);
606 1.1 maxv }
607 1.1 maxv
608 1.1 maxv /*
609 1.1 maxv * Routine for maintaining mostly consistent message formats in Veriexec.
610 1.1 maxv */
611 1.1 maxv static void
612 1.1 maxv veriexec_file_report(struct veriexec_file_entry *vfe, const u_char *msg,
613 1.1 maxv const u_char *filename, struct lwp *l, int f)
614 1.1 maxv {
615 1.1 maxv if (vfe != NULL && vfe->filename != NULL)
616 1.1 maxv filename = vfe->filename;
617 1.1 maxv
618 1.1 maxv if (filename == NULL)
619 1.1 maxv return;
620 1.1 maxv
621 1.1 maxv if (((f & REPORT_LOGMASK) >> 1) <= veriexec_verbose) {
622 1.1 maxv if (!(f & REPORT_ALARM) || (l == NULL))
623 1.1 maxv log(LOG_NOTICE, "Veriexec: %s [%s]\n", msg,
624 1.1 maxv filename);
625 1.1 maxv else
626 1.1 maxv log(LOG_ALERT, "Veriexec: %s [%s, prog=%s pid=%u, "
627 1.1 maxv "uid=%u, gid=%u]\n", msg, filename,
628 1.1 maxv l->l_proc->p_comm, l->l_proc->p_pid,
629 1.1 maxv kauth_cred_getuid(l->l_cred),
630 1.1 maxv kauth_cred_getgid(l->l_cred));
631 1.1 maxv }
632 1.1 maxv
633 1.1 maxv if (f & REPORT_PANIC)
634 1.1 maxv panic("Veriexec: Unrecoverable error.");
635 1.1 maxv }
636 1.1 maxv
637 1.1 maxv /*
638 1.1 maxv * Verify the fingerprint of the given file. If we're called directly from
639 1.1 maxv * sys_execve(), 'flag' will be VERIEXEC_DIRECT. If we're called from
640 1.1 maxv * exec_script(), 'flag' will be VERIEXEC_INDIRECT. If we are called from
641 1.1 maxv * vn_open(), 'flag' will be VERIEXEC_FILE.
642 1.1 maxv *
643 1.3 maxv * 'veriexec_op_lock' must be locked (and remains locked).
644 1.3 maxv *
645 1.1 maxv * NOTE: The veriexec file entry pointer (vfep) will be returned LOCKED
646 1.1 maxv * on no error.
647 1.1 maxv */
648 1.1 maxv static int
649 1.1 maxv veriexec_file_verify(struct lwp *l, struct vnode *vp, const u_char *name,
650 1.3 maxv int flag, int file_lock_state, struct veriexec_file_entry **vfep)
651 1.1 maxv {
652 1.1 maxv struct veriexec_file_entry *vfe;
653 1.4 maxv int error = 0;
654 1.1 maxv
655 1.3 maxv KASSERT(rw_lock_held(&veriexec_op_lock));
656 1.3 maxv KASSERT((file_lock_state != VERIEXEC_LOCKED) &&
657 1.3 maxv (file_lock_state != VERIEXEC_UNLOCKED));
658 1.3 maxv
659 1.1 maxv #define VFE_NEEDS_EVAL(vfe) ((vfe->status == FINGERPRINT_NOTEVAL) || \
660 1.1 maxv (vfe->type & VERIEXEC_UNTRUSTED))
661 1.1 maxv
662 1.1 maxv if (vfep != NULL)
663 1.1 maxv *vfep = NULL;
664 1.1 maxv
665 1.1 maxv if (vp->v_type != VREG)
666 1.1 maxv return (0);
667 1.1 maxv
668 1.1 maxv /* Lookup veriexec table entry, save pointer if requested. */
669 1.1 maxv vfe = veriexec_get(vp);
670 1.1 maxv if (vfep != NULL)
671 1.1 maxv *vfep = vfe;
672 1.1 maxv
673 1.4 maxv /* No entry in the veriexec tables. */
674 1.4 maxv if (vfe == NULL) {
675 1.4 maxv veriexec_file_report(NULL, "No entry.", name,
676 1.4 maxv l, REPORT_VERBOSE);
677 1.4 maxv
678 1.4 maxv /*
679 1.4 maxv * Lockdown mode: Deny access to non-monitored files.
680 1.4 maxv * IPS mode: Deny execution of non-monitored files.
681 1.4 maxv */
682 1.4 maxv if ((veriexec_strict >= VERIEXEC_LOCKDOWN) ||
683 1.4 maxv ((veriexec_strict >= VERIEXEC_IPS) &&
684 1.4 maxv (flag != VERIEXEC_FILE)))
685 1.4 maxv return (EPERM);
686 1.4 maxv
687 1.4 maxv return (0);
688 1.4 maxv }
689 1.1 maxv
690 1.1 maxv /*
691 1.1 maxv * Grab the lock for the entry, if we need to do an evaluation
692 1.1 maxv * then the lock is a write lock, after we have the write
693 1.1 maxv * lock, check if we really need it - some other thread may
694 1.1 maxv * have already done the work for us.
695 1.1 maxv */
696 1.1 maxv if (VFE_NEEDS_EVAL(vfe)) {
697 1.1 maxv rw_enter(&vfe->lock, RW_WRITER);
698 1.1 maxv if (!VFE_NEEDS_EVAL(vfe))
699 1.1 maxv rw_downgrade(&vfe->lock);
700 1.1 maxv } else
701 1.1 maxv rw_enter(&vfe->lock, RW_READER);
702 1.1 maxv
703 1.1 maxv /* Evaluate fingerprint if needed. */
704 1.1 maxv if (VFE_NEEDS_EVAL(vfe)) {
705 1.4 maxv u_char status;
706 1.1 maxv
707 1.4 maxv error = veriexec_fp_status(l, vp, file_lock_state, vfe, &status);
708 1.1 maxv if (error) {
709 1.1 maxv veriexec_file_report(vfe, "Fingerprint calculation error.",
710 1.1 maxv name, NULL, REPORT_ALWAYS);
711 1.1 maxv rw_exit(&vfe->lock);
712 1.1 maxv return (error);
713 1.1 maxv }
714 1.4 maxv vfe->status = status;
715 1.1 maxv rw_downgrade(&vfe->lock);
716 1.1 maxv }
717 1.1 maxv
718 1.1 maxv if (!(vfe->type & flag)) {
719 1.1 maxv veriexec_file_report(vfe, "Incorrect access type.", name, l,
720 1.1 maxv REPORT_ALWAYS|REPORT_ALARM);
721 1.1 maxv
722 1.1 maxv /* IPS mode: Enforce access type. */
723 1.1 maxv if (veriexec_strict >= VERIEXEC_IPS) {
724 1.1 maxv rw_exit(&vfe->lock);
725 1.1 maxv return (EPERM);
726 1.1 maxv }
727 1.1 maxv }
728 1.1 maxv
729 1.2 maxv switch (vfe->status) {
730 1.1 maxv case FINGERPRINT_NOTEVAL:
731 1.1 maxv /* Should not happen. */
732 1.1 maxv rw_exit(&vfe->lock);
733 1.1 maxv veriexec_file_report(vfe, "Not-evaluated status "
734 1.1 maxv "post evaluation; inconsistency detected.", name,
735 1.1 maxv NULL, REPORT_ALWAYS|REPORT_PANIC);
736 1.2 maxv /* NOTREACHED */
737 1.1 maxv
738 1.1 maxv case FINGERPRINT_VALID:
739 1.1 maxv /* Valid fingerprint. */
740 1.1 maxv veriexec_file_report(vfe, "Match.", name, NULL,
741 1.1 maxv REPORT_VERBOSE);
742 1.1 maxv
743 1.1 maxv break;
744 1.1 maxv
745 1.1 maxv case FINGERPRINT_NOMATCH:
746 1.1 maxv /* Fingerprint mismatch. */
747 1.1 maxv veriexec_file_report(vfe, "Mismatch.", name,
748 1.1 maxv NULL, REPORT_ALWAYS|REPORT_ALARM);
749 1.1 maxv
750 1.1 maxv /* IDS mode: Deny access on fingerprint mismatch. */
751 1.1 maxv if (veriexec_strict >= VERIEXEC_IDS) {
752 1.1 maxv rw_exit(&vfe->lock);
753 1.1 maxv error = EPERM;
754 1.1 maxv }
755 1.1 maxv
756 1.1 maxv break;
757 1.1 maxv
758 1.1 maxv default:
759 1.1 maxv /* Should never happen. */
760 1.1 maxv rw_exit(&vfe->lock);
761 1.1 maxv veriexec_file_report(vfe, "Invalid status "
762 1.1 maxv "post evaluation.", name, NULL, REPORT_ALWAYS|REPORT_PANIC);
763 1.2 maxv /* NOTREACHED */
764 1.2 maxv }
765 1.1 maxv
766 1.1 maxv return (error);
767 1.1 maxv }
768 1.1 maxv
769 1.1 maxv int
770 1.1 maxv veriexec_verify(struct lwp *l, struct vnode *vp, const u_char *name, int flag,
771 1.1 maxv bool *found)
772 1.1 maxv {
773 1.1 maxv struct veriexec_file_entry *vfe;
774 1.1 maxv int r;
775 1.1 maxv
776 1.1 maxv if (veriexec_bypass && (veriexec_strict == VERIEXEC_LEARNING))
777 1.1 maxv return 0;
778 1.1 maxv
779 1.3 maxv rw_enter(&veriexec_op_lock, RW_READER);
780 1.3 maxv r = veriexec_file_verify(l, vp, name, flag, VERIEXEC_FILE_UNLOCKED,
781 1.3 maxv &vfe);
782 1.3 maxv rw_exit(&veriexec_op_lock);
783 1.1 maxv
784 1.1 maxv if ((r == 0) && (vfe != NULL))
785 1.1 maxv rw_exit(&vfe->lock);
786 1.1 maxv
787 1.1 maxv if (found != NULL)
788 1.1 maxv *found = (vfe != NULL) ? true : false;
789 1.1 maxv
790 1.1 maxv return (r);
791 1.1 maxv }
792 1.1 maxv
793 1.1 maxv #ifdef notyet
794 1.1 maxv /*
795 1.1 maxv * Evaluate per-page fingerprints.
796 1.1 maxv */
797 1.1 maxv int
798 1.1 maxv veriexec_page_verify(struct veriexec_file_entry *vfe, struct vm_page *pg,
799 1.1 maxv size_t idx, struct lwp *l)
800 1.1 maxv {
801 1.1 maxv void *ctx;
802 1.1 maxv u_char *fp;
803 1.1 maxv u_char *page_fp;
804 1.1 maxv int error;
805 1.1 maxv vaddr_t kva;
806 1.1 maxv
807 1.1 maxv if (vfe->page_fp_status == PAGE_FP_NONE)
808 1.1 maxv return (0);
809 1.1 maxv
810 1.1 maxv if (vfe->page_fp_status == PAGE_FP_FAIL)
811 1.1 maxv return (EPERM);
812 1.1 maxv
813 1.1 maxv if (idx >= vfe->npages)
814 1.1 maxv return (0);
815 1.1 maxv
816 1.1 maxv ctx = kmem_alloc(vfe->ops->context_size, KM_SLEEP);
817 1.1 maxv fp = kmem_alloc(vfe->ops->hash_len, KM_SLEEP);
818 1.1 maxv kva = uvm_km_alloc(kernel_map, PAGE_SIZE, VM_PGCOLOR_BUCKET(pg),
819 1.1 maxv UVM_KMF_COLORMATCH | UVM_KMF_VAONLY | UVM_KMF_WAITVA);
820 1.1 maxv pmap_kenter_pa(kva, VM_PAGE_TO_PHYS(pg), VM_PROT_READ, 0);
821 1.1 maxv pmap_update(pmap_kernel());
822 1.1 maxv
823 1.1 maxv page_fp = (u_char *) vfe->page_fp + (vfe->ops->hash_len * idx);
824 1.1 maxv (vfe->ops->init)(ctx);
825 1.1 maxv (vfe->ops->update)(ctx, (void *) kva,
826 1.1 maxv ((vfe->npages - 1) == idx) ? vfe->last_page_size
827 1.1 maxv : PAGE_SIZE);
828 1.1 maxv (vfe->ops->final)(fp, ctx);
829 1.1 maxv
830 1.1 maxv pmap_kremove(kva, PAGE_SIZE);
831 1.1 maxv pmap_update(pmap_kernel());
832 1.1 maxv uvm_km_free(kernel_map, kva, PAGE_SIZE, UVM_KMF_VAONLY);
833 1.1 maxv
834 1.1 maxv error = veriexec_fp_cmp(vfe->ops, page_fp, fp);
835 1.1 maxv if (error) {
836 1.1 maxv const char *msg;
837 1.1 maxv
838 1.1 maxv if (veriexec_strict > VERIEXEC_LEARNING) {
839 1.1 maxv msg = "Pages modified: Killing process.";
840 1.1 maxv } else {
841 1.1 maxv msg = "Pages modified.";
842 1.1 maxv error = 0;
843 1.1 maxv }
844 1.1 maxv
845 1.1 maxv veriexec_file_report(msg, "[page_in]", l,
846 1.1 maxv REPORT_ALWAYS|REPORT_ALARM);
847 1.1 maxv
848 1.1 maxv if (error) {
849 1.1 maxv ksiginfo_t ksi;
850 1.1 maxv
851 1.1 maxv KSI_INIT(&ksi);
852 1.1 maxv ksi.ksi_signo = SIGKILL;
853 1.1 maxv ksi.ksi_code = SI_NOINFO;
854 1.1 maxv ksi.ksi_pid = l->l_proc->p_pid;
855 1.1 maxv ksi.ksi_uid = 0;
856 1.1 maxv
857 1.1 maxv kpsignal(l->l_proc, &ksi, NULL);
858 1.1 maxv }
859 1.1 maxv }
860 1.1 maxv
861 1.1 maxv kmem_free(ctx, vfe->ops->context_size);
862 1.1 maxv kmem_free(fp, vfe->ops->hash_len);
863 1.1 maxv
864 1.1 maxv return (error);
865 1.1 maxv }
866 1.1 maxv #endif /* notyet */
867 1.1 maxv
868 1.1 maxv /*
869 1.1 maxv * Veriexec remove policy code.
870 1.1 maxv */
871 1.1 maxv int
872 1.1 maxv veriexec_removechk(struct lwp *l, struct vnode *vp, const char *pathbuf)
873 1.1 maxv {
874 1.1 maxv struct veriexec_file_entry *vfe;
875 1.1 maxv int error;
876 1.1 maxv
877 1.1 maxv if (veriexec_bypass && (veriexec_strict == VERIEXEC_LEARNING))
878 1.1 maxv return 0;
879 1.1 maxv
880 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
881 1.1 maxv vfe = veriexec_get(vp);
882 1.1 maxv rw_exit(&veriexec_op_lock);
883 1.1 maxv
884 1.1 maxv if (vfe == NULL) {
885 1.1 maxv /* Lockdown mode: Deny access to non-monitored files. */
886 1.1 maxv if (veriexec_strict >= VERIEXEC_LOCKDOWN)
887 1.1 maxv return (EPERM);
888 1.1 maxv
889 1.1 maxv return (0);
890 1.1 maxv }
891 1.1 maxv
892 1.1 maxv veriexec_file_report(vfe, "Remove request.", pathbuf, l,
893 1.1 maxv REPORT_ALWAYS|REPORT_ALARM);
894 1.1 maxv
895 1.1 maxv /* IDS mode: Deny removal of monitored files. */
896 1.1 maxv if (veriexec_strict >= VERIEXEC_IDS)
897 1.1 maxv error = EPERM;
898 1.1 maxv else
899 1.1 maxv error = veriexec_file_delete(l, vp);
900 1.1 maxv
901 1.1 maxv return error;
902 1.1 maxv }
903 1.1 maxv
904 1.1 maxv /*
905 1.1 maxv * Veriexec rename policy.
906 1.1 maxv *
907 1.1 maxv * XXX: Once there's a way to hook after a successful rename, it would be
908 1.1 maxv * XXX: nice to update vfe->filename to the new name if it's not NULL and
909 1.1 maxv * XXX: the new name is absolute (ie., starts with a slash).
910 1.1 maxv */
911 1.1 maxv int
912 1.1 maxv veriexec_renamechk(struct lwp *l, struct vnode *fromvp, const char *fromname,
913 1.1 maxv struct vnode *tovp, const char *toname)
914 1.1 maxv {
915 1.5 maxv struct veriexec_file_entry *fvfe = NULL, *tvfe = NULL;
916 1.1 maxv
917 1.1 maxv if (veriexec_bypass && (veriexec_strict == VERIEXEC_LEARNING))
918 1.1 maxv return 0;
919 1.1 maxv
920 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
921 1.1 maxv
922 1.1 maxv if (veriexec_strict >= VERIEXEC_LOCKDOWN) {
923 1.1 maxv log(LOG_ALERT, "Veriexec: Preventing rename of `%s' to "
924 1.1 maxv "`%s', uid=%u, pid=%u: Lockdown mode.\n", fromname, toname,
925 1.1 maxv kauth_cred_geteuid(l->l_cred), l->l_proc->p_pid);
926 1.1 maxv rw_exit(&veriexec_op_lock);
927 1.1 maxv return (EPERM);
928 1.1 maxv }
929 1.1 maxv
930 1.5 maxv fvfe = veriexec_get(fromvp);
931 1.1 maxv if (tovp != NULL)
932 1.1 maxv tvfe = veriexec_get(tovp);
933 1.1 maxv
934 1.5 maxv if ((fvfe == NULL) && (tvfe == NULL)) {
935 1.5 maxv /* None of them is monitored */
936 1.5 maxv rw_exit(&veriexec_op_lock);
937 1.5 maxv return 0;
938 1.5 maxv }
939 1.1 maxv
940 1.5 maxv if (veriexec_strict >= VERIEXEC_IPS) {
941 1.5 maxv log(LOG_ALERT, "Veriexec: Preventing rename of `%s' "
942 1.5 maxv "to `%s', uid=%u, pid=%u: IPS mode, %s "
943 1.5 maxv "monitored.\n", fromname, toname,
944 1.5 maxv kauth_cred_geteuid(l->l_cred),
945 1.5 maxv l->l_proc->p_pid, (fvfe != NULL && tvfe != NULL) ?
946 1.5 maxv "files" : "file");
947 1.5 maxv rw_exit(&veriexec_op_lock);
948 1.5 maxv return (EPERM);
949 1.5 maxv }
950 1.1 maxv
951 1.5 maxv if (fvfe != NULL) {
952 1.1 maxv /*
953 1.1 maxv * Monitored file is renamed; filename no longer relevant.
954 1.5 maxv */
955 1.5 maxv
956 1.5 maxv /*
957 1.1 maxv * XXX: We could keep the buffer, and when (and if) updating the
958 1.1 maxv * XXX: filename post-rename, re-allocate it only if it's not
959 1.1 maxv * XXX: big enough for the new filename.
960 1.1 maxv */
961 1.1 maxv
962 1.5 maxv /* XXX: Get write lock on fvfe here? */
963 1.1 maxv
964 1.5 maxv VERIEXEC_RW_UPGRADE(&veriexec_op_lock);
965 1.5 maxv /* once we have the op lock in write mode
966 1.5 maxv * there should be no locks on any file
967 1.5 maxv * entries so we can destroy the object.
968 1.5 maxv */
969 1.5 maxv
970 1.5 maxv if (fvfe->filename_len > 0)
971 1.5 maxv kmem_free(fvfe->filename, fvfe->filename_len);
972 1.1 maxv
973 1.5 maxv fvfe->filename = NULL;
974 1.5 maxv fvfe->filename_len = 0;
975 1.1 maxv
976 1.5 maxv rw_downgrade(&veriexec_op_lock);
977 1.5 maxv }
978 1.1 maxv
979 1.5 maxv log(LOG_NOTICE, "Veriexec: %s file `%s' renamed to "
980 1.5 maxv "%s file `%s', uid=%u, pid=%u.\n", (fvfe != NULL) ?
981 1.5 maxv "Monitored" : "Non-monitored", fromname, (tvfe != NULL) ?
982 1.5 maxv "monitored" : "non-monitored", toname,
983 1.5 maxv kauth_cred_geteuid(l->l_cred), l->l_proc->p_pid);
984 1.1 maxv
985 1.5 maxv rw_exit(&veriexec_op_lock);
986 1.1 maxv
987 1.5 maxv if (tvfe != NULL) {
988 1.1 maxv /*
989 1.1 maxv * Monitored file is overwritten. Remove the entry.
990 1.1 maxv */
991 1.5 maxv (void)veriexec_file_delete(l, tovp);
992 1.5 maxv }
993 1.1 maxv
994 1.1 maxv return (0);
995 1.1 maxv }
996 1.1 maxv
997 1.1 maxv static void
998 1.1 maxv veriexec_file_free(struct veriexec_file_entry *vfe)
999 1.1 maxv {
1000 1.1 maxv if (vfe != NULL) {
1001 1.1 maxv if (vfe->fp != NULL)
1002 1.1 maxv kmem_free(vfe->fp, vfe->ops->hash_len);
1003 1.1 maxv if (vfe->page_fp != NULL)
1004 1.1 maxv kmem_free(vfe->page_fp, vfe->ops->hash_len);
1005 1.1 maxv if (vfe->filename != NULL)
1006 1.1 maxv kmem_free(vfe->filename, vfe->filename_len);
1007 1.1 maxv rw_destroy(&vfe->lock);
1008 1.1 maxv kmem_free(vfe, sizeof(*vfe));
1009 1.1 maxv }
1010 1.1 maxv }
1011 1.1 maxv
1012 1.1 maxv static void
1013 1.1 maxv veriexec_file_purge(struct veriexec_file_entry *vfe, int have_lock)
1014 1.1 maxv {
1015 1.1 maxv if (vfe == NULL)
1016 1.1 maxv return;
1017 1.1 maxv
1018 1.1 maxv if (have_lock == VERIEXEC_UNLOCKED)
1019 1.1 maxv rw_enter(&vfe->lock, RW_WRITER);
1020 1.1 maxv else
1021 1.1 maxv VERIEXEC_RW_UPGRADE(&vfe->lock);
1022 1.1 maxv
1023 1.1 maxv vfe->status = FINGERPRINT_NOTEVAL;
1024 1.1 maxv if (have_lock == VERIEXEC_UNLOCKED)
1025 1.1 maxv rw_exit(&vfe->lock);
1026 1.1 maxv else
1027 1.1 maxv rw_downgrade(&vfe->lock);
1028 1.1 maxv }
1029 1.1 maxv
1030 1.1 maxv static void
1031 1.1 maxv veriexec_file_purge_cb(struct veriexec_file_entry *vfe, void *cookie)
1032 1.1 maxv {
1033 1.1 maxv veriexec_file_purge(vfe, VERIEXEC_UNLOCKED);
1034 1.1 maxv }
1035 1.1 maxv
1036 1.1 maxv /*
1037 1.1 maxv * Invalidate a Veriexec file entry.
1038 1.1 maxv * XXX: This should be updated when per-page fingerprints are added.
1039 1.1 maxv */
1040 1.1 maxv void
1041 1.1 maxv veriexec_purge(struct vnode *vp)
1042 1.1 maxv {
1043 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
1044 1.1 maxv veriexec_file_purge(veriexec_get(vp), VERIEXEC_UNLOCKED);
1045 1.1 maxv rw_exit(&veriexec_op_lock);
1046 1.1 maxv }
1047 1.1 maxv
1048 1.1 maxv /*
1049 1.1 maxv * Enforce raw disk access policy.
1050 1.1 maxv *
1051 1.1 maxv * IDS mode: Invalidate fingerprints on a mount if it's opened for writing.
1052 1.1 maxv * IPS mode: Don't allow raw writing to disks we monitor.
1053 1.1 maxv * Lockdown mode: Don't allow raw writing to all disks.
1054 1.1 maxv *
1055 1.1 maxv * XXX: This is bogus. There's an obvious race condition between the time
1056 1.1 maxv * XXX: the disk is open for writing, in which an attacker can access a
1057 1.1 maxv * XXX: monitored file to get its signature cached again, and when the raw
1058 1.1 maxv * XXX: file is overwritten on disk.
1059 1.1 maxv * XXX:
1060 1.1 maxv * XXX: To solve this, we need something like the following:
1061 1.1 maxv * XXX: open raw disk:
1062 1.1 maxv * XXX: - raise refcount,
1063 1.1 maxv * XXX: - invalidate fingerprints,
1064 1.1 maxv * XXX: - mark all entries for that disk with "no cache" flag
1065 1.1 maxv * XXX:
1066 1.1 maxv * XXX: veriexec_verify:
1067 1.1 maxv * XXX: - if "no cache", don't cache evaluation result
1068 1.1 maxv * XXX:
1069 1.1 maxv * XXX: close raw disk:
1070 1.1 maxv * XXX: - lower refcount,
1071 1.1 maxv * XXX: - if refcount == 0, remove "no cache" flag from all entries
1072 1.1 maxv */
1073 1.1 maxv static int
1074 1.1 maxv veriexec_raw_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
1075 1.1 maxv void *arg0, void *arg1, void *arg2, void *arg3)
1076 1.1 maxv {
1077 1.1 maxv int result;
1078 1.1 maxv enum kauth_device_req req;
1079 1.1 maxv struct veriexec_table_entry *vte;
1080 1.1 maxv
1081 1.1 maxv result = KAUTH_RESULT_DENY;
1082 1.1 maxv req = (enum kauth_device_req)arg0;
1083 1.1 maxv
1084 1.1 maxv switch (action) {
1085 1.1 maxv case KAUTH_DEVICE_RAWIO_SPEC: {
1086 1.1 maxv struct vnode *vp, *bvp;
1087 1.1 maxv int error;
1088 1.1 maxv
1089 1.1 maxv if (req == KAUTH_REQ_DEVICE_RAWIO_SPEC_READ) {
1090 1.1 maxv result = KAUTH_RESULT_DEFER;
1091 1.1 maxv break;
1092 1.1 maxv }
1093 1.1 maxv
1094 1.1 maxv vp = arg1;
1095 1.1 maxv KASSERT(vp != NULL);
1096 1.1 maxv
1097 1.1 maxv /* Handle /dev/mem and /dev/kmem. */
1098 1.1 maxv if (iskmemvp(vp)) {
1099 1.1 maxv if (veriexec_strict < VERIEXEC_IPS)
1100 1.1 maxv result = KAUTH_RESULT_DEFER;
1101 1.1 maxv
1102 1.1 maxv break;
1103 1.1 maxv }
1104 1.1 maxv
1105 1.1 maxv error = rawdev_mounted(vp, &bvp);
1106 1.1 maxv if (error == EINVAL) {
1107 1.1 maxv result = KAUTH_RESULT_DEFER;
1108 1.1 maxv break;
1109 1.1 maxv }
1110 1.1 maxv
1111 1.1 maxv /*
1112 1.1 maxv * XXX: See vfs_mountedon() comment in rawdev_mounted().
1113 1.1 maxv */
1114 1.1 maxv vte = veriexec_table_lookup(bvp->v_mount);
1115 1.1 maxv if (vte == NULL) {
1116 1.1 maxv result = KAUTH_RESULT_DEFER;
1117 1.1 maxv break;
1118 1.1 maxv }
1119 1.1 maxv
1120 1.1 maxv switch (veriexec_strict) {
1121 1.1 maxv case VERIEXEC_LEARNING:
1122 1.1 maxv case VERIEXEC_IDS:
1123 1.1 maxv result = KAUTH_RESULT_DEFER;
1124 1.1 maxv
1125 1.1 maxv rw_enter(&veriexec_op_lock, RW_WRITER);
1126 1.1 maxv fileassoc_table_run(bvp->v_mount, veriexec_hook,
1127 1.1 maxv (fileassoc_cb_t)veriexec_file_purge_cb, NULL);
1128 1.1 maxv rw_exit(&veriexec_op_lock);
1129 1.1 maxv
1130 1.1 maxv break;
1131 1.1 maxv case VERIEXEC_IPS:
1132 1.1 maxv result = KAUTH_RESULT_DENY;
1133 1.1 maxv break;
1134 1.1 maxv case VERIEXEC_LOCKDOWN:
1135 1.1 maxv result = KAUTH_RESULT_DENY;
1136 1.1 maxv break;
1137 1.1 maxv }
1138 1.1 maxv
1139 1.1 maxv break;
1140 1.1 maxv }
1141 1.1 maxv
1142 1.1 maxv case KAUTH_DEVICE_RAWIO_PASSTHRU:
1143 1.1 maxv /* XXX What can we do here? */
1144 1.1 maxv if (veriexec_strict < VERIEXEC_IPS)
1145 1.1 maxv result = KAUTH_RESULT_DEFER;
1146 1.1 maxv
1147 1.1 maxv break;
1148 1.1 maxv
1149 1.1 maxv default:
1150 1.1 maxv result = KAUTH_RESULT_DEFER;
1151 1.1 maxv break;
1152 1.1 maxv }
1153 1.1 maxv
1154 1.1 maxv return (result);
1155 1.1 maxv }
1156 1.1 maxv
1157 1.1 maxv /*
1158 1.1 maxv * Create a new Veriexec table.
1159 1.1 maxv */
1160 1.1 maxv static struct veriexec_table_entry *
1161 1.1 maxv veriexec_table_add(struct lwp *l, struct mount *mp)
1162 1.1 maxv {
1163 1.1 maxv struct veriexec_table_entry *vte;
1164 1.1 maxv u_char buf[16];
1165 1.1 maxv
1166 1.1 maxv vte = kmem_zalloc(sizeof(*vte), KM_SLEEP);
1167 1.1 maxv mount_setspecific(mp, veriexec_mountspecific_key, vte);
1168 1.1 maxv
1169 1.1 maxv snprintf(buf, sizeof(buf), "table%u", veriexec_tablecount++);
1170 1.1 maxv sysctl_createv(NULL, 0, &veriexec_count_node, &vte->vte_node,
1171 1.1 maxv 0, CTLTYPE_NODE, buf, NULL, NULL, 0, NULL,
1172 1.1 maxv 0, CTL_CREATE, CTL_EOL);
1173 1.1 maxv
1174 1.1 maxv sysctl_createv(NULL, 0, &vte->vte_node, NULL,
1175 1.1 maxv CTLFLAG_READONLY, CTLTYPE_STRING, "mntpt",
1176 1.1 maxv NULL, NULL, 0, mp->mnt_stat.f_mntonname,
1177 1.1 maxv 0, CTL_CREATE, CTL_EOL);
1178 1.1 maxv sysctl_createv(NULL, 0, &vte->vte_node, NULL,
1179 1.1 maxv CTLFLAG_READONLY, CTLTYPE_STRING, "fstype",
1180 1.1 maxv NULL, NULL, 0, mp->mnt_stat.f_fstypename,
1181 1.1 maxv 0, CTL_CREATE, CTL_EOL);
1182 1.1 maxv sysctl_createv(NULL, 0, &vte->vte_node, NULL,
1183 1.1 maxv CTLFLAG_READONLY, CTLTYPE_QUAD, "nentries",
1184 1.1 maxv NULL, NULL, 0, &vte->vte_count, 0, CTL_CREATE, CTL_EOL);
1185 1.1 maxv
1186 1.1 maxv return (vte);
1187 1.1 maxv }
1188 1.1 maxv
1189 1.1 maxv /*
1190 1.1 maxv * Add a file to be monitored by Veriexec.
1191 1.1 maxv *
1192 1.1 maxv * Expected elements in dict: file, fp, fp-type, entry-type.
1193 1.1 maxv */
1194 1.1 maxv int
1195 1.1 maxv veriexec_file_add(struct lwp *l, prop_dictionary_t dict)
1196 1.1 maxv {
1197 1.1 maxv struct veriexec_table_entry *vte;
1198 1.6 maxv struct veriexec_file_entry *vfe = NULL;
1199 1.1 maxv struct vnode *vp;
1200 1.1 maxv const char *file, *fp_type;
1201 1.1 maxv int error;
1202 1.1 maxv
1203 1.1 maxv if (!prop_dictionary_get_cstring_nocopy(dict, "file", &file))
1204 1.1 maxv return (EINVAL);
1205 1.1 maxv
1206 1.1 maxv error = namei_simple_kernel(file, NSM_FOLLOW_NOEMULROOT, &vp);
1207 1.1 maxv if (error)
1208 1.1 maxv return (error);
1209 1.1 maxv
1210 1.1 maxv /* Add only regular files. */
1211 1.1 maxv if (vp->v_type != VREG) {
1212 1.1 maxv log(LOG_ERR, "Veriexec: Not adding `%s': Not a regular file.\n",
1213 1.1 maxv file);
1214 1.1 maxv error = EBADF;
1215 1.1 maxv goto out;
1216 1.1 maxv }
1217 1.1 maxv
1218 1.1 maxv vfe = kmem_zalloc(sizeof(*vfe), KM_SLEEP);
1219 1.1 maxv rw_init(&vfe->lock);
1220 1.1 maxv
1221 1.1 maxv /* Lookup fingerprint hashing algorithm. */
1222 1.1 maxv fp_type = prop_string_cstring_nocopy(prop_dictionary_get(dict,
1223 1.1 maxv "fp-type"));
1224 1.1 maxv if ((vfe->ops = veriexec_fpops_lookup(fp_type)) == NULL) {
1225 1.1 maxv log(LOG_ERR, "Veriexec: Invalid or unknown fingerprint type "
1226 1.1 maxv "`%s' for file `%s'.\n", fp_type, file);
1227 1.1 maxv error = EOPNOTSUPP;
1228 1.1 maxv goto out;
1229 1.1 maxv }
1230 1.1 maxv
1231 1.1 maxv if (prop_data_size(prop_dictionary_get(dict, "fp")) !=
1232 1.1 maxv vfe->ops->hash_len) {
1233 1.1 maxv log(LOG_ERR, "Veriexec: Bad fingerprint length for `%s'.\n",
1234 1.1 maxv file);
1235 1.1 maxv error = EINVAL;
1236 1.1 maxv goto out;
1237 1.1 maxv }
1238 1.1 maxv
1239 1.1 maxv vfe->fp = kmem_alloc(vfe->ops->hash_len, KM_SLEEP);
1240 1.1 maxv memcpy(vfe->fp, prop_data_data_nocopy(prop_dictionary_get(dict, "fp")),
1241 1.1 maxv vfe->ops->hash_len);
1242 1.1 maxv
1243 1.1 maxv rw_enter(&veriexec_op_lock, RW_WRITER);
1244 1.1 maxv
1245 1.6 maxv if (veriexec_get(vp)) {
1246 1.6 maxv /* We already have an entry for this file. */
1247 1.6 maxv error = EEXIST;
1248 1.1 maxv goto unlock_out;
1249 1.1 maxv }
1250 1.1 maxv
1251 1.1 maxv /* Continue entry initialization. */
1252 1.1 maxv if (prop_dictionary_get_uint8(dict, "entry-type", &vfe->type) == FALSE)
1253 1.1 maxv vfe->type = 0;
1254 1.1 maxv else {
1255 1.1 maxv uint8_t extra_flags;
1256 1.1 maxv
1257 1.1 maxv extra_flags = vfe->type & ~(VERIEXEC_DIRECT |
1258 1.1 maxv VERIEXEC_INDIRECT | VERIEXEC_FILE | VERIEXEC_UNTRUSTED);
1259 1.1 maxv if (extra_flags) {
1260 1.1 maxv log(LOG_NOTICE, "Veriexec: Contaminated flags `0x%x' "
1261 1.1 maxv "for `%s', skipping.\n", extra_flags, file);
1262 1.1 maxv error = EINVAL;
1263 1.1 maxv goto unlock_out;
1264 1.1 maxv }
1265 1.1 maxv }
1266 1.1 maxv if (!(vfe->type & (VERIEXEC_DIRECT | VERIEXEC_INDIRECT |
1267 1.1 maxv VERIEXEC_FILE)))
1268 1.1 maxv vfe->type |= VERIEXEC_DIRECT;
1269 1.1 maxv
1270 1.1 maxv vfe->status = FINGERPRINT_NOTEVAL;
1271 1.1 maxv if (prop_bool_true(prop_dictionary_get(dict, "keep-filename"))) {
1272 1.1 maxv vfe->filename_len = strlen(file) + 1;
1273 1.1 maxv vfe->filename = kmem_alloc(vfe->filename_len, KM_SLEEP);
1274 1.1 maxv strlcpy(vfe->filename, file, vfe->filename_len);
1275 1.1 maxv } else
1276 1.1 maxv vfe->filename = NULL;
1277 1.1 maxv
1278 1.1 maxv vfe->page_fp = NULL;
1279 1.1 maxv vfe->page_fp_status = PAGE_FP_NONE;
1280 1.1 maxv vfe->npages = 0;
1281 1.1 maxv vfe->last_page_size = 0;
1282 1.1 maxv
1283 1.1 maxv if (prop_bool_true(prop_dictionary_get(dict, "eval-on-load")) ||
1284 1.1 maxv (vfe->type & VERIEXEC_UNTRUSTED)) {
1285 1.4 maxv u_char status;
1286 1.1 maxv
1287 1.4 maxv error = veriexec_fp_status(l, vp, VERIEXEC_FILE_UNLOCKED,
1288 1.4 maxv vfe, &status);
1289 1.4 maxv if (error)
1290 1.1 maxv goto unlock_out;
1291 1.4 maxv vfe->status = status;
1292 1.1 maxv }
1293 1.1 maxv
1294 1.1 maxv vte = veriexec_table_lookup(vp->v_mount);
1295 1.1 maxv if (vte == NULL)
1296 1.1 maxv vte = veriexec_table_add(l, vp->v_mount);
1297 1.1 maxv
1298 1.1 maxv /* XXX if we bail below this, we might want to gc newly created vtes. */
1299 1.1 maxv
1300 1.1 maxv error = fileassoc_add(vp, veriexec_hook, vfe);
1301 1.1 maxv if (error)
1302 1.1 maxv goto unlock_out;
1303 1.1 maxv
1304 1.1 maxv vte->vte_count++;
1305 1.1 maxv
1306 1.1 maxv veriexec_file_report(NULL, "New entry.", file, NULL, REPORT_DEBUG);
1307 1.1 maxv veriexec_bypass = 0;
1308 1.1 maxv
1309 1.1 maxv unlock_out:
1310 1.1 maxv rw_exit(&veriexec_op_lock);
1311 1.1 maxv
1312 1.1 maxv out:
1313 1.1 maxv vrele(vp);
1314 1.1 maxv if (error)
1315 1.1 maxv veriexec_file_free(vfe);
1316 1.1 maxv
1317 1.1 maxv return (error);
1318 1.1 maxv }
1319 1.1 maxv
1320 1.1 maxv int
1321 1.5 maxv veriexec_table_delete(struct lwp *l, struct mount *mp)
1322 1.5 maxv {
1323 1.1 maxv struct veriexec_table_entry *vte;
1324 1.1 maxv
1325 1.1 maxv vte = veriexec_table_lookup(mp);
1326 1.1 maxv if (vte == NULL)
1327 1.1 maxv return (ENOENT);
1328 1.1 maxv
1329 1.1 maxv veriexec_mountspecific_dtor(vte);
1330 1.1 maxv mount_setspecific(mp, veriexec_mountspecific_key, NULL);
1331 1.1 maxv
1332 1.1 maxv return (fileassoc_table_clear(mp, veriexec_hook));
1333 1.1 maxv }
1334 1.1 maxv
1335 1.1 maxv int
1336 1.5 maxv veriexec_file_delete(struct lwp *l, struct vnode *vp)
1337 1.5 maxv {
1338 1.1 maxv struct veriexec_table_entry *vte;
1339 1.1 maxv int error;
1340 1.1 maxv
1341 1.1 maxv vte = veriexec_table_lookup(vp->v_mount);
1342 1.1 maxv if (vte == NULL)
1343 1.1 maxv return (ENOENT);
1344 1.1 maxv
1345 1.1 maxv rw_enter(&veriexec_op_lock, RW_WRITER);
1346 1.1 maxv error = fileassoc_clear(vp, veriexec_hook);
1347 1.1 maxv rw_exit(&veriexec_op_lock);
1348 1.5 maxv if (!error) {
1349 1.5 maxv KASSERT(vte->vte_count > 0);
1350 1.1 maxv vte->vte_count--;
1351 1.5 maxv }
1352 1.1 maxv
1353 1.1 maxv return (error);
1354 1.1 maxv }
1355 1.1 maxv
1356 1.1 maxv /*
1357 1.1 maxv * Convert Veriexec entry data to a dictionary readable by userland tools.
1358 1.1 maxv */
1359 1.1 maxv static void
1360 1.1 maxv veriexec_file_convert(struct veriexec_file_entry *vfe, prop_dictionary_t rdict)
1361 1.1 maxv {
1362 1.1 maxv if (vfe->filename)
1363 1.1 maxv prop_dictionary_set(rdict, "file",
1364 1.1 maxv prop_string_create_cstring(vfe->filename));
1365 1.1 maxv prop_dictionary_set_uint8(rdict, "entry-type", vfe->type);
1366 1.1 maxv prop_dictionary_set_uint8(rdict, "status", vfe->status);
1367 1.1 maxv prop_dictionary_set(rdict, "fp-type",
1368 1.1 maxv prop_string_create_cstring(vfe->ops->type));
1369 1.1 maxv prop_dictionary_set(rdict, "fp",
1370 1.1 maxv prop_data_create_data(vfe->fp, vfe->ops->hash_len));
1371 1.1 maxv }
1372 1.1 maxv
1373 1.1 maxv int
1374 1.1 maxv veriexec_convert(struct vnode *vp, prop_dictionary_t rdict)
1375 1.1 maxv {
1376 1.1 maxv struct veriexec_file_entry *vfe;
1377 1.1 maxv
1378 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
1379 1.1 maxv
1380 1.1 maxv vfe = veriexec_get(vp);
1381 1.1 maxv if (vfe == NULL) {
1382 1.1 maxv rw_exit(&veriexec_op_lock);
1383 1.1 maxv return (ENOENT);
1384 1.1 maxv }
1385 1.1 maxv
1386 1.1 maxv rw_enter(&vfe->lock, RW_READER);
1387 1.1 maxv veriexec_file_convert(vfe, rdict);
1388 1.2 maxv rw_exit(&vfe->lock);
1389 1.1 maxv
1390 1.1 maxv rw_exit(&veriexec_op_lock);
1391 1.1 maxv return (0);
1392 1.1 maxv }
1393 1.1 maxv
1394 1.1 maxv int
1395 1.1 maxv veriexec_unmountchk(struct mount *mp)
1396 1.1 maxv {
1397 1.1 maxv int error;
1398 1.1 maxv
1399 1.1 maxv if ((veriexec_bypass && (veriexec_strict == VERIEXEC_LEARNING))
1400 1.1 maxv || doing_shutdown)
1401 1.1 maxv return (0);
1402 1.1 maxv
1403 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
1404 1.1 maxv
1405 1.1 maxv switch (veriexec_strict) {
1406 1.1 maxv case VERIEXEC_LEARNING:
1407 1.1 maxv error = 0;
1408 1.1 maxv break;
1409 1.1 maxv
1410 1.1 maxv case VERIEXEC_IDS:
1411 1.1 maxv if (veriexec_table_lookup(mp) != NULL) {
1412 1.1 maxv log(LOG_INFO, "Veriexec: IDS mode, allowing unmount "
1413 1.1 maxv "of \"%s\".\n", mp->mnt_stat.f_mntonname);
1414 1.1 maxv }
1415 1.1 maxv
1416 1.1 maxv error = 0;
1417 1.1 maxv break;
1418 1.1 maxv
1419 1.1 maxv case VERIEXEC_IPS: {
1420 1.1 maxv struct veriexec_table_entry *vte;
1421 1.1 maxv
1422 1.1 maxv vte = veriexec_table_lookup(mp);
1423 1.1 maxv if ((vte != NULL) && (vte->vte_count > 0)) {
1424 1.1 maxv log(LOG_ALERT, "Veriexec: IPS mode, preventing"
1425 1.1 maxv " unmount of \"%s\" with monitored files.\n",
1426 1.1 maxv mp->mnt_stat.f_mntonname);
1427 1.1 maxv
1428 1.1 maxv error = EPERM;
1429 1.1 maxv } else
1430 1.1 maxv error = 0;
1431 1.1 maxv break;
1432 1.1 maxv }
1433 1.1 maxv
1434 1.1 maxv case VERIEXEC_LOCKDOWN:
1435 1.1 maxv default:
1436 1.1 maxv log(LOG_ALERT, "Veriexec: Lockdown mode, preventing unmount "
1437 1.1 maxv "of \"%s\".\n", mp->mnt_stat.f_mntonname);
1438 1.1 maxv error = EPERM;
1439 1.1 maxv break;
1440 1.1 maxv }
1441 1.1 maxv
1442 1.1 maxv rw_exit(&veriexec_op_lock);
1443 1.1 maxv return (error);
1444 1.1 maxv }
1445 1.1 maxv
1446 1.1 maxv int
1447 1.1 maxv veriexec_openchk(struct lwp *l, struct vnode *vp, const char *path, int fmode)
1448 1.1 maxv {
1449 1.1 maxv struct veriexec_file_entry *vfe = NULL;
1450 1.1 maxv int error = 0;
1451 1.1 maxv
1452 1.1 maxv if (veriexec_bypass && (veriexec_strict == VERIEXEC_LEARNING))
1453 1.1 maxv return 0;
1454 1.1 maxv
1455 1.1 maxv if (vp == NULL) {
1456 1.1 maxv /* If no creation requested, let this fail normally. */
1457 1.1 maxv if (!(fmode & O_CREAT))
1458 1.1 maxv goto out;
1459 1.1 maxv
1460 1.1 maxv /* Lockdown mode: Prevent creation of new files. */
1461 1.1 maxv if (veriexec_strict >= VERIEXEC_LOCKDOWN) {
1462 1.1 maxv log(LOG_ALERT, "Veriexec: Preventing new file "
1463 1.1 maxv "creation in `%s'.\n", path);
1464 1.1 maxv error = EPERM;
1465 1.1 maxv }
1466 1.1 maxv
1467 1.1 maxv goto out;
1468 1.1 maxv }
1469 1.1 maxv
1470 1.1 maxv rw_enter(&veriexec_op_lock, RW_READER);
1471 1.1 maxv error = veriexec_file_verify(l, vp, path, VERIEXEC_FILE,
1472 1.3 maxv VERIEXEC_FILE_LOCKED, &vfe);
1473 1.1 maxv
1474 1.1 maxv if (error) {
1475 1.1 maxv rw_exit(&veriexec_op_lock);
1476 1.1 maxv goto out;
1477 1.1 maxv }
1478 1.1 maxv
1479 1.1 maxv if ((vfe != NULL) && ((fmode & FWRITE) || (fmode & O_TRUNC))) {
1480 1.1 maxv veriexec_file_report(vfe, "Write access request.", path, l,
1481 1.1 maxv REPORT_ALWAYS | REPORT_ALARM);
1482 1.1 maxv
1483 1.1 maxv /* IPS mode: Deny write access to monitored files. */
1484 1.1 maxv if (veriexec_strict >= VERIEXEC_IPS)
1485 1.1 maxv error = EPERM;
1486 1.1 maxv else
1487 1.1 maxv veriexec_file_purge(vfe, VERIEXEC_LOCKED);
1488 1.1 maxv }
1489 1.1 maxv
1490 1.1 maxv if (vfe != NULL)
1491 1.1 maxv rw_exit(&vfe->lock);
1492 1.1 maxv
1493 1.1 maxv rw_exit(&veriexec_op_lock);
1494 1.1 maxv out:
1495 1.1 maxv return (error);
1496 1.1 maxv }
1497 1.1 maxv
1498 1.1 maxv static void
1499 1.1 maxv veriexec_file_dump(struct veriexec_file_entry *vfe, prop_array_t entries)
1500 1.1 maxv {
1501 1.1 maxv prop_dictionary_t entry;
1502 1.1 maxv
1503 1.1 maxv /* If we don't have a filename, this is meaningless. */
1504 1.1 maxv if (vfe->filename == NULL)
1505 1.1 maxv return;
1506 1.1 maxv
1507 1.1 maxv entry = prop_dictionary_create();
1508 1.1 maxv
1509 1.1 maxv veriexec_file_convert(vfe, entry);
1510 1.1 maxv
1511 1.1 maxv prop_array_add(entries, entry);
1512 1.1 maxv }
1513 1.1 maxv
1514 1.1 maxv int
1515 1.1 maxv veriexec_dump(struct lwp *l, prop_array_t rarray)
1516 1.1 maxv {
1517 1.1 maxv struct mount *mp, *nmp;
1518 1.1 maxv
1519 1.1 maxv mutex_enter(&mountlist_lock);
1520 1.1 maxv for (mp = TAILQ_FIRST(&mountlist); mp != NULL; mp = nmp) {
1521 1.1 maxv /* If it fails, the file-system is [being] unmounted. */
1522 1.1 maxv if (vfs_busy(mp, &nmp) != 0)
1523 1.1 maxv continue;
1524 1.1 maxv
1525 1.1 maxv fileassoc_table_run(mp, veriexec_hook,
1526 1.1 maxv (fileassoc_cb_t)veriexec_file_dump, rarray);
1527 1.1 maxv
1528 1.1 maxv vfs_unbusy(mp, false, &nmp);
1529 1.1 maxv }
1530 1.1 maxv mutex_exit(&mountlist_lock);
1531 1.1 maxv
1532 1.1 maxv return (0);
1533 1.1 maxv }
1534 1.1 maxv
1535 1.1 maxv int
1536 1.1 maxv veriexec_flush(struct lwp *l)
1537 1.1 maxv {
1538 1.1 maxv struct mount *mp, *nmp;
1539 1.1 maxv int error = 0;
1540 1.1 maxv
1541 1.1 maxv mutex_enter(&mountlist_lock);
1542 1.1 maxv for (mp = TAILQ_FIRST(&mountlist); mp != NULL; mp = nmp) {
1543 1.1 maxv int lerror;
1544 1.1 maxv
1545 1.1 maxv /* If it fails, the file-system is [being] unmounted. */
1546 1.1 maxv if (vfs_busy(mp, &nmp) != 0)
1547 1.1 maxv continue;
1548 1.1 maxv
1549 1.1 maxv lerror = veriexec_table_delete(l, mp);
1550 1.1 maxv if (lerror && lerror != ENOENT)
1551 1.1 maxv error = lerror;
1552 1.1 maxv
1553 1.1 maxv vfs_unbusy(mp, false, &nmp);
1554 1.1 maxv }
1555 1.1 maxv mutex_exit(&mountlist_lock);
1556 1.1 maxv
1557 1.1 maxv return (error);
1558 1.1 maxv }
1559