blob: e38cc54942dbf298dd1b880e3eabf5a9f2af29e6 [file] [log] [blame]
Kees Cookc99ee512015-06-16 10:54:14 -07001/*
2 * Copyright (c) 2012 The Chromium OS Authors. All rights reserved.
3 * Use of this source code is governed by the GPLv2 license.
4 *
5 * Test code for seccomp bpf.
6 */
7
8#include <asm/siginfo.h>
9#define __have_siginfo_t 1
10#define __have_sigval_t 1
11#define __have_sigevent_t 1
12
13#include <errno.h>
14#include <linux/filter.h>
15#include <sys/prctl.h>
16#include <sys/ptrace.h>
Michael Ellerman5d83c2b2015-07-23 20:21:11 +100017#include <sys/types.h>
Kees Cookc99ee512015-06-16 10:54:14 -070018#include <sys/user.h>
19#include <linux/prctl.h>
20#include <linux/ptrace.h>
21#include <linux/seccomp.h>
Kees Cookc99ee512015-06-16 10:54:14 -070022#include <pthread.h>
23#include <semaphore.h>
24#include <signal.h>
25#include <stddef.h>
26#include <stdbool.h>
27#include <string.h>
Kees Cook256d0af2015-10-06 12:30:25 -070028#include <time.h>
Kees Cookc99ee512015-06-16 10:54:14 -070029#include <linux/elf.h>
30#include <sys/uio.h>
Kees Cook256d0af2015-10-06 12:30:25 -070031#include <sys/utsname.h>
Robert Sesekfd88d162015-11-02 15:28:49 -050032#include <sys/fcntl.h>
33#include <sys/mman.h>
34#include <sys/times.h>
Kees Cookc99ee512015-06-16 10:54:14 -070035
36#define _GNU_SOURCE
37#include <unistd.h>
38#include <sys/syscall.h>
39
40#include "test_harness.h"
41
42#ifndef PR_SET_PTRACER
43# define PR_SET_PTRACER 0x59616d61
44#endif
45
46#ifndef PR_SET_NO_NEW_PRIVS
47#define PR_SET_NO_NEW_PRIVS 38
48#define PR_GET_NO_NEW_PRIVS 39
49#endif
50
51#ifndef PR_SECCOMP_EXT
52#define PR_SECCOMP_EXT 43
53#endif
54
55#ifndef SECCOMP_EXT_ACT
56#define SECCOMP_EXT_ACT 1
57#endif
58
59#ifndef SECCOMP_EXT_ACT_TSYNC
60#define SECCOMP_EXT_ACT_TSYNC 1
61#endif
62
63#ifndef SECCOMP_MODE_STRICT
64#define SECCOMP_MODE_STRICT 1
65#endif
66
67#ifndef SECCOMP_MODE_FILTER
68#define SECCOMP_MODE_FILTER 2
69#endif
70
71#ifndef SECCOMP_RET_KILL
72#define SECCOMP_RET_KILL 0x00000000U /* kill the task immediately */
73#define SECCOMP_RET_TRAP 0x00030000U /* disallow and force a SIGSYS */
74#define SECCOMP_RET_ERRNO 0x00050000U /* returns an errno */
75#define SECCOMP_RET_TRACE 0x7ff00000U /* pass to a tracer or disallow */
76#define SECCOMP_RET_ALLOW 0x7fff0000U /* allow */
77
78/* Masks for the return value sections. */
79#define SECCOMP_RET_ACTION 0x7fff0000U
80#define SECCOMP_RET_DATA 0x0000ffffU
81
82struct seccomp_data {
83 int nr;
84 __u32 arch;
85 __u64 instruction_pointer;
86 __u64 args[6];
87};
88#endif
89
Michael Ellermanc385d0d2015-07-23 20:21:10 +100090#if __BYTE_ORDER == __LITTLE_ENDIAN
Kees Cookc99ee512015-06-16 10:54:14 -070091#define syscall_arg(_n) (offsetof(struct seccomp_data, args[_n]))
Michael Ellermanc385d0d2015-07-23 20:21:10 +100092#elif __BYTE_ORDER == __BIG_ENDIAN
93#define syscall_arg(_n) (offsetof(struct seccomp_data, args[_n]) + sizeof(__u32))
94#else
95#error "wut? Unknown __BYTE_ORDER?!"
96#endif
Kees Cookc99ee512015-06-16 10:54:14 -070097
98#define SIBLING_EXIT_UNKILLED 0xbadbeef
99#define SIBLING_EXIT_FAILURE 0xbadface
100#define SIBLING_EXIT_NEWPRIVS 0xbadfeed
101
102TEST(mode_strict_support)
103{
104 long ret;
105
106 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_STRICT, NULL, NULL, NULL);
107 ASSERT_EQ(0, ret) {
108 TH_LOG("Kernel does not support CONFIG_SECCOMP");
109 }
110 syscall(__NR_exit, 1);
111}
112
113TEST_SIGNAL(mode_strict_cannot_call_prctl, SIGKILL)
114{
115 long ret;
116
117 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_STRICT, NULL, NULL, NULL);
118 ASSERT_EQ(0, ret) {
119 TH_LOG("Kernel does not support CONFIG_SECCOMP");
120 }
121 syscall(__NR_prctl, PR_SET_SECCOMP, SECCOMP_MODE_FILTER,
122 NULL, NULL, NULL);
123 EXPECT_FALSE(true) {
124 TH_LOG("Unreachable!");
125 }
126}
127
128/* Note! This doesn't test no new privs behavior */
129TEST(no_new_privs_support)
130{
131 long ret;
132
133 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
134 EXPECT_EQ(0, ret) {
135 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
136 }
137}
138
139/* Tests kernel support by checking for a copy_from_user() fault on * NULL. */
140TEST(mode_filter_support)
141{
142 long ret;
143
144 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, NULL, 0, 0);
145 ASSERT_EQ(0, ret) {
146 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
147 }
148 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, NULL, NULL, NULL);
149 EXPECT_EQ(-1, ret);
150 EXPECT_EQ(EFAULT, errno) {
151 TH_LOG("Kernel does not support CONFIG_SECCOMP_FILTER!");
152 }
153}
154
155TEST(mode_filter_without_nnp)
156{
157 struct sock_filter filter[] = {
158 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
159 };
160 struct sock_fprog prog = {
161 .len = (unsigned short)ARRAY_SIZE(filter),
162 .filter = filter,
163 };
164 long ret;
165
166 ret = prctl(PR_GET_NO_NEW_PRIVS, 0, NULL, 0, 0);
167 ASSERT_LE(0, ret) {
168 TH_LOG("Expected 0 or unsupported for NO_NEW_PRIVS");
169 }
170 errno = 0;
171 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
172 /* Succeeds with CAP_SYS_ADMIN, fails without */
173 /* TODO(wad) check caps not euid */
174 if (geteuid()) {
175 EXPECT_EQ(-1, ret);
176 EXPECT_EQ(EACCES, errno);
177 } else {
178 EXPECT_EQ(0, ret);
179 }
180}
181
182#define MAX_INSNS_PER_PATH 32768
183
184TEST(filter_size_limits)
185{
186 int i;
187 int count = BPF_MAXINSNS + 1;
188 struct sock_filter allow[] = {
189 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
190 };
191 struct sock_filter *filter;
192 struct sock_fprog prog = { };
193 long ret;
194
195 filter = calloc(count, sizeof(*filter));
196 ASSERT_NE(NULL, filter);
197
198 for (i = 0; i < count; i++)
199 filter[i] = allow[0];
200
201 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
202 ASSERT_EQ(0, ret);
203
204 prog.filter = filter;
205 prog.len = count;
206
207 /* Too many filter instructions in a single filter. */
208 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
209 ASSERT_NE(0, ret) {
210 TH_LOG("Installing %d insn filter was allowed", prog.len);
211 }
212
213 /* One less is okay, though. */
214 prog.len -= 1;
215 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
216 ASSERT_EQ(0, ret) {
217 TH_LOG("Installing %d insn filter wasn't allowed", prog.len);
218 }
219}
220
221TEST(filter_chain_limits)
222{
223 int i;
224 int count = BPF_MAXINSNS;
225 struct sock_filter allow[] = {
226 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
227 };
228 struct sock_filter *filter;
229 struct sock_fprog prog = { };
230 long ret;
231
232 filter = calloc(count, sizeof(*filter));
233 ASSERT_NE(NULL, filter);
234
235 for (i = 0; i < count; i++)
236 filter[i] = allow[0];
237
238 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
239 ASSERT_EQ(0, ret);
240
241 prog.filter = filter;
242 prog.len = 1;
243
244 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
245 ASSERT_EQ(0, ret);
246
247 prog.len = count;
248
249 /* Too many total filter instructions. */
250 for (i = 0; i < MAX_INSNS_PER_PATH; i++) {
251 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
252 if (ret != 0)
253 break;
254 }
255 ASSERT_NE(0, ret) {
256 TH_LOG("Allowed %d %d-insn filters (total with penalties:%d)",
257 i, count, i * (count + 4));
258 }
259}
260
261TEST(mode_filter_cannot_move_to_strict)
262{
263 struct sock_filter filter[] = {
264 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
265 };
266 struct sock_fprog prog = {
267 .len = (unsigned short)ARRAY_SIZE(filter),
268 .filter = filter,
269 };
270 long ret;
271
272 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
273 ASSERT_EQ(0, ret);
274
275 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
276 ASSERT_EQ(0, ret);
277
278 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_STRICT, NULL, 0, 0);
279 EXPECT_EQ(-1, ret);
280 EXPECT_EQ(EINVAL, errno);
281}
282
283
284TEST(mode_filter_get_seccomp)
285{
286 struct sock_filter filter[] = {
287 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
288 };
289 struct sock_fprog prog = {
290 .len = (unsigned short)ARRAY_SIZE(filter),
291 .filter = filter,
292 };
293 long ret;
294
295 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
296 ASSERT_EQ(0, ret);
297
298 ret = prctl(PR_GET_SECCOMP, 0, 0, 0, 0);
299 EXPECT_EQ(0, ret);
300
301 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
302 ASSERT_EQ(0, ret);
303
304 ret = prctl(PR_GET_SECCOMP, 0, 0, 0, 0);
305 EXPECT_EQ(2, ret);
306}
307
308
309TEST(ALLOW_all)
310{
311 struct sock_filter filter[] = {
312 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
313 };
314 struct sock_fprog prog = {
315 .len = (unsigned short)ARRAY_SIZE(filter),
316 .filter = filter,
317 };
318 long ret;
319
320 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
321 ASSERT_EQ(0, ret);
322
323 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
324 ASSERT_EQ(0, ret);
325}
326
327TEST(empty_prog)
328{
329 struct sock_filter filter[] = {
330 };
331 struct sock_fprog prog = {
332 .len = (unsigned short)ARRAY_SIZE(filter),
333 .filter = filter,
334 };
335 long ret;
336
337 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
338 ASSERT_EQ(0, ret);
339
340 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
341 EXPECT_EQ(-1, ret);
342 EXPECT_EQ(EINVAL, errno);
343}
344
345TEST_SIGNAL(unknown_ret_is_kill_inside, SIGSYS)
346{
347 struct sock_filter filter[] = {
348 BPF_STMT(BPF_RET|BPF_K, 0x10000000U),
349 };
350 struct sock_fprog prog = {
351 .len = (unsigned short)ARRAY_SIZE(filter),
352 .filter = filter,
353 };
354 long ret;
355
356 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
357 ASSERT_EQ(0, ret);
358
359 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
360 ASSERT_EQ(0, ret);
361 EXPECT_EQ(0, syscall(__NR_getpid)) {
362 TH_LOG("getpid() shouldn't ever return");
363 }
364}
365
366/* return code >= 0x80000000 is unused. */
367TEST_SIGNAL(unknown_ret_is_kill_above_allow, SIGSYS)
368{
369 struct sock_filter filter[] = {
370 BPF_STMT(BPF_RET|BPF_K, 0x90000000U),
371 };
372 struct sock_fprog prog = {
373 .len = (unsigned short)ARRAY_SIZE(filter),
374 .filter = filter,
375 };
376 long ret;
377
378 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
379 ASSERT_EQ(0, ret);
380
381 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
382 ASSERT_EQ(0, ret);
383 EXPECT_EQ(0, syscall(__NR_getpid)) {
384 TH_LOG("getpid() shouldn't ever return");
385 }
386}
387
388TEST_SIGNAL(KILL_all, SIGSYS)
389{
390 struct sock_filter filter[] = {
391 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
392 };
393 struct sock_fprog prog = {
394 .len = (unsigned short)ARRAY_SIZE(filter),
395 .filter = filter,
396 };
397 long ret;
398
399 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
400 ASSERT_EQ(0, ret);
401
402 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
403 ASSERT_EQ(0, ret);
404}
405
406TEST_SIGNAL(KILL_one, SIGSYS)
407{
408 struct sock_filter filter[] = {
409 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
410 offsetof(struct seccomp_data, nr)),
411 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 0, 1),
412 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
413 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
414 };
415 struct sock_fprog prog = {
416 .len = (unsigned short)ARRAY_SIZE(filter),
417 .filter = filter,
418 };
419 long ret;
420 pid_t parent = getppid();
421
422 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
423 ASSERT_EQ(0, ret);
424
425 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
426 ASSERT_EQ(0, ret);
427
428 EXPECT_EQ(parent, syscall(__NR_getppid));
429 /* getpid() should never return. */
430 EXPECT_EQ(0, syscall(__NR_getpid));
431}
432
433TEST_SIGNAL(KILL_one_arg_one, SIGSYS)
434{
Robert Sesekfd88d162015-11-02 15:28:49 -0500435 void *fatal_address;
Kees Cookc99ee512015-06-16 10:54:14 -0700436 struct sock_filter filter[] = {
437 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
438 offsetof(struct seccomp_data, nr)),
Robert Sesekfd88d162015-11-02 15:28:49 -0500439 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_times, 1, 0),
Kees Cookc99ee512015-06-16 10:54:14 -0700440 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
441 /* Only both with lower 32-bit for now. */
442 BPF_STMT(BPF_LD|BPF_W|BPF_ABS, syscall_arg(0)),
Robert Sesekfd88d162015-11-02 15:28:49 -0500443 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K,
444 (unsigned long)&fatal_address, 0, 1),
Kees Cookc99ee512015-06-16 10:54:14 -0700445 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
446 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
447 };
448 struct sock_fprog prog = {
449 .len = (unsigned short)ARRAY_SIZE(filter),
450 .filter = filter,
451 };
452 long ret;
453 pid_t parent = getppid();
Robert Sesekfd88d162015-11-02 15:28:49 -0500454 struct tms timebuf;
455 clock_t clock = times(&timebuf);
Kees Cookc99ee512015-06-16 10:54:14 -0700456
457 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
458 ASSERT_EQ(0, ret);
459
460 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
461 ASSERT_EQ(0, ret);
462
463 EXPECT_EQ(parent, syscall(__NR_getppid));
Robert Sesekfd88d162015-11-02 15:28:49 -0500464 EXPECT_LE(clock, syscall(__NR_times, &timebuf));
465 /* times() should never return. */
466 EXPECT_EQ(0, syscall(__NR_times, &fatal_address));
Kees Cookc99ee512015-06-16 10:54:14 -0700467}
468
469TEST_SIGNAL(KILL_one_arg_six, SIGSYS)
470{
Robert Sesekfd88d162015-11-02 15:28:49 -0500471#ifndef __NR_mmap2
472 int sysno = __NR_mmap;
473#else
474 int sysno = __NR_mmap2;
475#endif
Kees Cookc99ee512015-06-16 10:54:14 -0700476 struct sock_filter filter[] = {
477 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
478 offsetof(struct seccomp_data, nr)),
Robert Sesekfd88d162015-11-02 15:28:49 -0500479 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, sysno, 1, 0),
Kees Cookc99ee512015-06-16 10:54:14 -0700480 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
481 /* Only both with lower 32-bit for now. */
482 BPF_STMT(BPF_LD|BPF_W|BPF_ABS, syscall_arg(5)),
483 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, 0x0C0FFEE, 0, 1),
484 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
485 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
486 };
487 struct sock_fprog prog = {
488 .len = (unsigned short)ARRAY_SIZE(filter),
489 .filter = filter,
490 };
491 long ret;
492 pid_t parent = getppid();
Robert Sesekfd88d162015-11-02 15:28:49 -0500493 int fd;
494 void *map1, *map2;
Kees Cookc99ee512015-06-16 10:54:14 -0700495
496 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
497 ASSERT_EQ(0, ret);
498
499 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
500 ASSERT_EQ(0, ret);
501
Robert Sesekfd88d162015-11-02 15:28:49 -0500502 fd = open("/dev/zero", O_RDONLY);
503 ASSERT_NE(-1, fd);
504
Kees Cookc99ee512015-06-16 10:54:14 -0700505 EXPECT_EQ(parent, syscall(__NR_getppid));
Robert Sesekfd88d162015-11-02 15:28:49 -0500506 map1 = (void *)syscall(sysno,
507 NULL, PAGE_SIZE, PROT_READ, MAP_PRIVATE, fd, PAGE_SIZE);
508 EXPECT_NE(MAP_FAILED, map1);
509 /* mmap2() should never return. */
510 map2 = (void *)syscall(sysno,
511 NULL, PAGE_SIZE, PROT_READ, MAP_PRIVATE, fd, 0x0C0FFEE);
512 EXPECT_EQ(MAP_FAILED, map2);
513
514 /* The test failed, so clean up the resources. */
515 munmap(map1, PAGE_SIZE);
516 munmap(map2, PAGE_SIZE);
517 close(fd);
Kees Cookc99ee512015-06-16 10:54:14 -0700518}
519
520/* TODO(wad) add 64-bit versus 32-bit arg tests. */
521TEST(arg_out_of_range)
522{
523 struct sock_filter filter[] = {
524 BPF_STMT(BPF_LD|BPF_W|BPF_ABS, syscall_arg(6)),
525 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
526 };
527 struct sock_fprog prog = {
528 .len = (unsigned short)ARRAY_SIZE(filter),
529 .filter = filter,
530 };
531 long ret;
532
533 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
534 ASSERT_EQ(0, ret);
535
536 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
537 EXPECT_EQ(-1, ret);
538 EXPECT_EQ(EINVAL, errno);
539}
540
541TEST(ERRNO_valid)
542{
543 struct sock_filter filter[] = {
544 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
545 offsetof(struct seccomp_data, nr)),
546 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 0, 1),
547 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ERRNO | E2BIG),
548 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
549 };
550 struct sock_fprog prog = {
551 .len = (unsigned short)ARRAY_SIZE(filter),
552 .filter = filter,
553 };
554 long ret;
555 pid_t parent = getppid();
556
557 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
558 ASSERT_EQ(0, ret);
559
560 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
561 ASSERT_EQ(0, ret);
562
563 EXPECT_EQ(parent, syscall(__NR_getppid));
564 EXPECT_EQ(-1, read(0, NULL, 0));
565 EXPECT_EQ(E2BIG, errno);
566}
567
568TEST(ERRNO_zero)
569{
570 struct sock_filter filter[] = {
571 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
572 offsetof(struct seccomp_data, nr)),
573 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 0, 1),
574 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ERRNO | 0),
575 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
576 };
577 struct sock_fprog prog = {
578 .len = (unsigned short)ARRAY_SIZE(filter),
579 .filter = filter,
580 };
581 long ret;
582 pid_t parent = getppid();
583
584 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
585 ASSERT_EQ(0, ret);
586
587 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
588 ASSERT_EQ(0, ret);
589
590 EXPECT_EQ(parent, syscall(__NR_getppid));
591 /* "errno" of 0 is ok. */
592 EXPECT_EQ(0, read(0, NULL, 0));
593}
594
595TEST(ERRNO_capped)
596{
597 struct sock_filter filter[] = {
598 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
599 offsetof(struct seccomp_data, nr)),
600 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 0, 1),
601 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ERRNO | 4096),
602 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
603 };
604 struct sock_fprog prog = {
605 .len = (unsigned short)ARRAY_SIZE(filter),
606 .filter = filter,
607 };
608 long ret;
609 pid_t parent = getppid();
610
611 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
612 ASSERT_EQ(0, ret);
613
614 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog);
615 ASSERT_EQ(0, ret);
616
617 EXPECT_EQ(parent, syscall(__NR_getppid));
618 EXPECT_EQ(-1, read(0, NULL, 0));
619 EXPECT_EQ(4095, errno);
620}
621
622FIXTURE_DATA(TRAP) {
623 struct sock_fprog prog;
624};
625
626FIXTURE_SETUP(TRAP)
627{
628 struct sock_filter filter[] = {
629 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
630 offsetof(struct seccomp_data, nr)),
631 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 0, 1),
632 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRAP),
633 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
634 };
635
636 memset(&self->prog, 0, sizeof(self->prog));
637 self->prog.filter = malloc(sizeof(filter));
638 ASSERT_NE(NULL, self->prog.filter);
639 memcpy(self->prog.filter, filter, sizeof(filter));
640 self->prog.len = (unsigned short)ARRAY_SIZE(filter);
641}
642
643FIXTURE_TEARDOWN(TRAP)
644{
645 if (self->prog.filter)
646 free(self->prog.filter);
647}
648
649TEST_F_SIGNAL(TRAP, dfl, SIGSYS)
650{
651 long ret;
652
653 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
654 ASSERT_EQ(0, ret);
655
656 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog);
657 ASSERT_EQ(0, ret);
658 syscall(__NR_getpid);
659}
660
661/* Ensure that SIGSYS overrides SIG_IGN */
662TEST_F_SIGNAL(TRAP, ign, SIGSYS)
663{
664 long ret;
665
666 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
667 ASSERT_EQ(0, ret);
668
669 signal(SIGSYS, SIG_IGN);
670
671 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog);
672 ASSERT_EQ(0, ret);
673 syscall(__NR_getpid);
674}
675
676static struct siginfo TRAP_info;
677static volatile int TRAP_nr;
678static void TRAP_action(int nr, siginfo_t *info, void *void_context)
679{
680 memcpy(&TRAP_info, info, sizeof(TRAP_info));
681 TRAP_nr = nr;
682}
683
684TEST_F(TRAP, handler)
685{
686 int ret, test;
687 struct sigaction act;
688 sigset_t mask;
689
690 memset(&act, 0, sizeof(act));
691 sigemptyset(&mask);
692 sigaddset(&mask, SIGSYS);
693
694 act.sa_sigaction = &TRAP_action;
695 act.sa_flags = SA_SIGINFO;
696 ret = sigaction(SIGSYS, &act, NULL);
697 ASSERT_EQ(0, ret) {
698 TH_LOG("sigaction failed");
699 }
700 ret = sigprocmask(SIG_UNBLOCK, &mask, NULL);
701 ASSERT_EQ(0, ret) {
702 TH_LOG("sigprocmask failed");
703 }
704
705 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
706 ASSERT_EQ(0, ret);
707 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog);
708 ASSERT_EQ(0, ret);
709 TRAP_nr = 0;
710 memset(&TRAP_info, 0, sizeof(TRAP_info));
711 /* Expect the registers to be rolled back. (nr = error) may vary
712 * based on arch. */
713 ret = syscall(__NR_getpid);
714 /* Silence gcc warning about volatile. */
715 test = TRAP_nr;
716 EXPECT_EQ(SIGSYS, test);
717 struct local_sigsys {
718 void *_call_addr; /* calling user insn */
719 int _syscall; /* triggering system call number */
720 unsigned int _arch; /* AUDIT_ARCH_* of syscall */
721 } *sigsys = (struct local_sigsys *)
722#ifdef si_syscall
723 &(TRAP_info.si_call_addr);
724#else
725 &TRAP_info.si_pid;
726#endif
727 EXPECT_EQ(__NR_getpid, sigsys->_syscall);
728 /* Make sure arch is non-zero. */
729 EXPECT_NE(0, sigsys->_arch);
730 EXPECT_NE(0, (unsigned long)sigsys->_call_addr);
731}
732
733FIXTURE_DATA(precedence) {
734 struct sock_fprog allow;
735 struct sock_fprog trace;
736 struct sock_fprog error;
737 struct sock_fprog trap;
738 struct sock_fprog kill;
739};
740
741FIXTURE_SETUP(precedence)
742{
743 struct sock_filter allow_insns[] = {
744 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
745 };
746 struct sock_filter trace_insns[] = {
747 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
748 offsetof(struct seccomp_data, nr)),
749 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 1, 0),
750 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
751 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE),
752 };
753 struct sock_filter error_insns[] = {
754 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
755 offsetof(struct seccomp_data, nr)),
756 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 1, 0),
757 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
758 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ERRNO),
759 };
760 struct sock_filter trap_insns[] = {
761 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
762 offsetof(struct seccomp_data, nr)),
763 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 1, 0),
764 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
765 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRAP),
766 };
767 struct sock_filter kill_insns[] = {
768 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
769 offsetof(struct seccomp_data, nr)),
770 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 1, 0),
771 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
772 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
773 };
774
775 memset(self, 0, sizeof(*self));
776#define FILTER_ALLOC(_x) \
777 self->_x.filter = malloc(sizeof(_x##_insns)); \
778 ASSERT_NE(NULL, self->_x.filter); \
779 memcpy(self->_x.filter, &_x##_insns, sizeof(_x##_insns)); \
780 self->_x.len = (unsigned short)ARRAY_SIZE(_x##_insns)
781 FILTER_ALLOC(allow);
782 FILTER_ALLOC(trace);
783 FILTER_ALLOC(error);
784 FILTER_ALLOC(trap);
785 FILTER_ALLOC(kill);
786}
787
788FIXTURE_TEARDOWN(precedence)
789{
790#define FILTER_FREE(_x) if (self->_x.filter) free(self->_x.filter)
791 FILTER_FREE(allow);
792 FILTER_FREE(trace);
793 FILTER_FREE(error);
794 FILTER_FREE(trap);
795 FILTER_FREE(kill);
796}
797
798TEST_F(precedence, allow_ok)
799{
800 pid_t parent, res = 0;
801 long ret;
802
803 parent = getppid();
804 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
805 ASSERT_EQ(0, ret);
806
807 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
808 ASSERT_EQ(0, ret);
809 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
810 ASSERT_EQ(0, ret);
811 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
812 ASSERT_EQ(0, ret);
813 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trap);
814 ASSERT_EQ(0, ret);
815 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->kill);
816 ASSERT_EQ(0, ret);
817 /* Should work just fine. */
818 res = syscall(__NR_getppid);
819 EXPECT_EQ(parent, res);
820}
821
822TEST_F_SIGNAL(precedence, kill_is_highest, SIGSYS)
823{
824 pid_t parent, res = 0;
825 long ret;
826
827 parent = getppid();
828 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
829 ASSERT_EQ(0, ret);
830
831 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
832 ASSERT_EQ(0, ret);
833 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
834 ASSERT_EQ(0, ret);
835 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
836 ASSERT_EQ(0, ret);
837 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trap);
838 ASSERT_EQ(0, ret);
839 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->kill);
840 ASSERT_EQ(0, ret);
841 /* Should work just fine. */
842 res = syscall(__NR_getppid);
843 EXPECT_EQ(parent, res);
844 /* getpid() should never return. */
845 res = syscall(__NR_getpid);
846 EXPECT_EQ(0, res);
847}
848
849TEST_F_SIGNAL(precedence, kill_is_highest_in_any_order, SIGSYS)
850{
851 pid_t parent;
852 long ret;
853
854 parent = getppid();
855 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
856 ASSERT_EQ(0, ret);
857
858 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
859 ASSERT_EQ(0, ret);
860 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->kill);
861 ASSERT_EQ(0, ret);
862 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
863 ASSERT_EQ(0, ret);
864 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
865 ASSERT_EQ(0, ret);
866 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trap);
867 ASSERT_EQ(0, ret);
868 /* Should work just fine. */
869 EXPECT_EQ(parent, syscall(__NR_getppid));
870 /* getpid() should never return. */
871 EXPECT_EQ(0, syscall(__NR_getpid));
872}
873
874TEST_F_SIGNAL(precedence, trap_is_second, SIGSYS)
875{
876 pid_t parent;
877 long ret;
878
879 parent = getppid();
880 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
881 ASSERT_EQ(0, ret);
882
883 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
884 ASSERT_EQ(0, ret);
885 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
886 ASSERT_EQ(0, ret);
887 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
888 ASSERT_EQ(0, ret);
889 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trap);
890 ASSERT_EQ(0, ret);
891 /* Should work just fine. */
892 EXPECT_EQ(parent, syscall(__NR_getppid));
893 /* getpid() should never return. */
894 EXPECT_EQ(0, syscall(__NR_getpid));
895}
896
897TEST_F_SIGNAL(precedence, trap_is_second_in_any_order, SIGSYS)
898{
899 pid_t parent;
900 long ret;
901
902 parent = getppid();
903 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
904 ASSERT_EQ(0, ret);
905
906 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
907 ASSERT_EQ(0, ret);
908 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trap);
909 ASSERT_EQ(0, ret);
910 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
911 ASSERT_EQ(0, ret);
912 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
913 ASSERT_EQ(0, ret);
914 /* Should work just fine. */
915 EXPECT_EQ(parent, syscall(__NR_getppid));
916 /* getpid() should never return. */
917 EXPECT_EQ(0, syscall(__NR_getpid));
918}
919
920TEST_F(precedence, errno_is_third)
921{
922 pid_t parent;
923 long ret;
924
925 parent = getppid();
926 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
927 ASSERT_EQ(0, ret);
928
929 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
930 ASSERT_EQ(0, ret);
931 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
932 ASSERT_EQ(0, ret);
933 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
934 ASSERT_EQ(0, ret);
935 /* Should work just fine. */
936 EXPECT_EQ(parent, syscall(__NR_getppid));
937 EXPECT_EQ(0, syscall(__NR_getpid));
938}
939
940TEST_F(precedence, errno_is_third_in_any_order)
941{
942 pid_t parent;
943 long ret;
944
945 parent = getppid();
946 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
947 ASSERT_EQ(0, ret);
948
949 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->error);
950 ASSERT_EQ(0, ret);
951 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
952 ASSERT_EQ(0, ret);
953 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
954 ASSERT_EQ(0, ret);
955 /* Should work just fine. */
956 EXPECT_EQ(parent, syscall(__NR_getppid));
957 EXPECT_EQ(0, syscall(__NR_getpid));
958}
959
960TEST_F(precedence, trace_is_fourth)
961{
962 pid_t parent;
963 long ret;
964
965 parent = getppid();
966 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
967 ASSERT_EQ(0, ret);
968
969 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
970 ASSERT_EQ(0, ret);
971 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
972 ASSERT_EQ(0, ret);
973 /* Should work just fine. */
974 EXPECT_EQ(parent, syscall(__NR_getppid));
975 /* No ptracer */
976 EXPECT_EQ(-1, syscall(__NR_getpid));
977}
978
979TEST_F(precedence, trace_is_fourth_in_any_order)
980{
981 pid_t parent;
982 long ret;
983
984 parent = getppid();
985 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
986 ASSERT_EQ(0, ret);
987
988 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->trace);
989 ASSERT_EQ(0, ret);
990 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->allow);
991 ASSERT_EQ(0, ret);
992 /* Should work just fine. */
993 EXPECT_EQ(parent, syscall(__NR_getppid));
994 /* No ptracer */
995 EXPECT_EQ(-1, syscall(__NR_getpid));
996}
997
998#ifndef PTRACE_O_TRACESECCOMP
999#define PTRACE_O_TRACESECCOMP 0x00000080
1000#endif
1001
1002/* Catch the Ubuntu 12.04 value error. */
1003#if PTRACE_EVENT_SECCOMP != 7
1004#undef PTRACE_EVENT_SECCOMP
1005#endif
1006
1007#ifndef PTRACE_EVENT_SECCOMP
1008#define PTRACE_EVENT_SECCOMP 7
1009#endif
1010
1011#define IS_SECCOMP_EVENT(status) ((status >> 16) == PTRACE_EVENT_SECCOMP)
1012bool tracer_running;
1013void tracer_stop(int sig)
1014{
1015 tracer_running = false;
1016}
1017
1018typedef void tracer_func_t(struct __test_metadata *_metadata,
1019 pid_t tracee, int status, void *args);
1020
1021void tracer(struct __test_metadata *_metadata, int fd, pid_t tracee,
1022 tracer_func_t tracer_func, void *args)
1023{
1024 int ret = -1;
1025 struct sigaction action = {
1026 .sa_handler = tracer_stop,
1027 };
1028
1029 /* Allow external shutdown. */
1030 tracer_running = true;
1031 ASSERT_EQ(0, sigaction(SIGUSR1, &action, NULL));
1032
1033 errno = 0;
1034 while (ret == -1 && errno != EINVAL)
1035 ret = ptrace(PTRACE_ATTACH, tracee, NULL, 0);
1036 ASSERT_EQ(0, ret) {
1037 kill(tracee, SIGKILL);
1038 }
1039 /* Wait for attach stop */
1040 wait(NULL);
1041
1042 ret = ptrace(PTRACE_SETOPTIONS, tracee, NULL, PTRACE_O_TRACESECCOMP);
1043 ASSERT_EQ(0, ret) {
1044 TH_LOG("Failed to set PTRACE_O_TRACESECCOMP");
1045 kill(tracee, SIGKILL);
1046 }
1047 ptrace(PTRACE_CONT, tracee, NULL, 0);
1048
1049 /* Unblock the tracee */
1050 ASSERT_EQ(1, write(fd, "A", 1));
1051 ASSERT_EQ(0, close(fd));
1052
1053 /* Run until we're shut down. Must assert to stop execution. */
1054 while (tracer_running) {
1055 int status;
1056
1057 if (wait(&status) != tracee)
1058 continue;
1059 if (WIFSIGNALED(status) || WIFEXITED(status))
1060 /* Child is dead. Time to go. */
1061 return;
1062
1063 /* Make sure this is a seccomp event. */
1064 ASSERT_EQ(true, IS_SECCOMP_EVENT(status));
1065
1066 tracer_func(_metadata, tracee, status, args);
1067
1068 ret = ptrace(PTRACE_CONT, tracee, NULL, NULL);
1069 ASSERT_EQ(0, ret);
1070 }
1071 /* Directly report the status of our test harness results. */
1072 syscall(__NR_exit, _metadata->passed ? EXIT_SUCCESS : EXIT_FAILURE);
1073}
1074
1075/* Common tracer setup/teardown functions. */
1076void cont_handler(int num)
1077{ }
1078pid_t setup_trace_fixture(struct __test_metadata *_metadata,
1079 tracer_func_t func, void *args)
1080{
1081 char sync;
1082 int pipefd[2];
1083 pid_t tracer_pid;
1084 pid_t tracee = getpid();
1085
1086 /* Setup a pipe for clean synchronization. */
1087 ASSERT_EQ(0, pipe(pipefd));
1088
1089 /* Fork a child which we'll promote to tracer */
1090 tracer_pid = fork();
1091 ASSERT_LE(0, tracer_pid);
1092 signal(SIGALRM, cont_handler);
1093 if (tracer_pid == 0) {
1094 close(pipefd[0]);
1095 tracer(_metadata, pipefd[1], tracee, func, args);
1096 syscall(__NR_exit, 0);
1097 }
1098 close(pipefd[1]);
1099 prctl(PR_SET_PTRACER, tracer_pid, 0, 0, 0);
1100 read(pipefd[0], &sync, 1);
1101 close(pipefd[0]);
1102
1103 return tracer_pid;
1104}
1105void teardown_trace_fixture(struct __test_metadata *_metadata,
1106 pid_t tracer)
1107{
1108 if (tracer) {
1109 int status;
1110 /*
1111 * Extract the exit code from the other process and
1112 * adopt it for ourselves in case its asserts failed.
1113 */
1114 ASSERT_EQ(0, kill(tracer, SIGUSR1));
1115 ASSERT_EQ(tracer, waitpid(tracer, &status, 0));
1116 if (WEXITSTATUS(status))
1117 _metadata->passed = 0;
1118 }
1119}
1120
1121/* "poke" tracer arguments and function. */
1122struct tracer_args_poke_t {
1123 unsigned long poke_addr;
1124};
1125
1126void tracer_poke(struct __test_metadata *_metadata, pid_t tracee, int status,
1127 void *args)
1128{
1129 int ret;
1130 unsigned long msg;
1131 struct tracer_args_poke_t *info = (struct tracer_args_poke_t *)args;
1132
1133 ret = ptrace(PTRACE_GETEVENTMSG, tracee, NULL, &msg);
1134 EXPECT_EQ(0, ret);
1135 /* If this fails, don't try to recover. */
1136 ASSERT_EQ(0x1001, msg) {
1137 kill(tracee, SIGKILL);
1138 }
1139 /*
1140 * Poke in the message.
1141 * Registers are not touched to try to keep this relatively arch
1142 * agnostic.
1143 */
1144 ret = ptrace(PTRACE_POKEDATA, tracee, info->poke_addr, 0x1001);
1145 EXPECT_EQ(0, ret);
1146}
1147
1148FIXTURE_DATA(TRACE_poke) {
1149 struct sock_fprog prog;
1150 pid_t tracer;
1151 long poked;
1152 struct tracer_args_poke_t tracer_args;
1153};
1154
1155FIXTURE_SETUP(TRACE_poke)
1156{
1157 struct sock_filter filter[] = {
1158 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
1159 offsetof(struct seccomp_data, nr)),
1160 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 0, 1),
1161 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE | 0x1001),
1162 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1163 };
1164
1165 self->poked = 0;
1166 memset(&self->prog, 0, sizeof(self->prog));
1167 self->prog.filter = malloc(sizeof(filter));
1168 ASSERT_NE(NULL, self->prog.filter);
1169 memcpy(self->prog.filter, filter, sizeof(filter));
1170 self->prog.len = (unsigned short)ARRAY_SIZE(filter);
1171
1172 /* Set up tracer args. */
1173 self->tracer_args.poke_addr = (unsigned long)&self->poked;
1174
1175 /* Launch tracer. */
1176 self->tracer = setup_trace_fixture(_metadata, tracer_poke,
1177 &self->tracer_args);
1178}
1179
1180FIXTURE_TEARDOWN(TRACE_poke)
1181{
1182 teardown_trace_fixture(_metadata, self->tracer);
1183 if (self->prog.filter)
1184 free(self->prog.filter);
1185}
1186
1187TEST_F(TRACE_poke, read_has_side_effects)
1188{
1189 ssize_t ret;
1190
1191 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1192 ASSERT_EQ(0, ret);
1193
1194 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog, 0, 0);
1195 ASSERT_EQ(0, ret);
1196
1197 EXPECT_EQ(0, self->poked);
1198 ret = read(-1, NULL, 0);
1199 EXPECT_EQ(-1, ret);
1200 EXPECT_EQ(0x1001, self->poked);
1201}
1202
1203TEST_F(TRACE_poke, getpid_runs_normally)
1204{
1205 long ret;
1206
1207 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1208 ASSERT_EQ(0, ret);
1209
1210 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog, 0, 0);
1211 ASSERT_EQ(0, ret);
1212
1213 EXPECT_EQ(0, self->poked);
1214 EXPECT_NE(0, syscall(__NR_getpid));
1215 EXPECT_EQ(0, self->poked);
1216}
1217
1218#if defined(__x86_64__)
1219# define ARCH_REGS struct user_regs_struct
1220# define SYSCALL_NUM orig_rax
1221# define SYSCALL_RET rax
1222#elif defined(__i386__)
1223# define ARCH_REGS struct user_regs_struct
1224# define SYSCALL_NUM orig_eax
1225# define SYSCALL_RET eax
1226#elif defined(__arm__)
1227# define ARCH_REGS struct pt_regs
1228# define SYSCALL_NUM ARM_r7
1229# define SYSCALL_RET ARM_r0
1230#elif defined(__aarch64__)
1231# define ARCH_REGS struct user_pt_regs
1232# define SYSCALL_NUM regs[8]
1233# define SYSCALL_RET regs[0]
Michael Ellerman5d83c2b2015-07-23 20:21:11 +10001234#elif defined(__powerpc__)
1235# define ARCH_REGS struct pt_regs
1236# define SYSCALL_NUM gpr[0]
1237# define SYSCALL_RET gpr[3]
Kees Cookb623c4d2015-08-21 11:22:35 -07001238#elif defined(__s390__)
1239# define ARCH_REGS s390_regs
1240# define SYSCALL_NUM gprs[2]
1241# define SYSCALL_RET gprs[2]
Kees Cookc99ee512015-06-16 10:54:14 -07001242#else
1243# error "Do not know how to find your architecture's registers and syscalls"
1244#endif
1245
1246/* Architecture-specific syscall fetching routine. */
1247int get_syscall(struct __test_metadata *_metadata, pid_t tracee)
1248{
1249 struct iovec iov;
1250 ARCH_REGS regs;
1251
1252 iov.iov_base = &regs;
1253 iov.iov_len = sizeof(regs);
1254 EXPECT_EQ(0, ptrace(PTRACE_GETREGSET, tracee, NT_PRSTATUS, &iov)) {
1255 TH_LOG("PTRACE_GETREGSET failed");
1256 return -1;
1257 }
1258
1259 return regs.SYSCALL_NUM;
1260}
1261
1262/* Architecture-specific syscall changing routine. */
1263void change_syscall(struct __test_metadata *_metadata,
1264 pid_t tracee, int syscall)
1265{
1266 struct iovec iov;
1267 int ret;
1268 ARCH_REGS regs;
1269
1270 iov.iov_base = &regs;
1271 iov.iov_len = sizeof(regs);
1272 ret = ptrace(PTRACE_GETREGSET, tracee, NT_PRSTATUS, &iov);
1273 EXPECT_EQ(0, ret);
1274
Kees Cook256d0af2015-10-06 12:30:25 -07001275#if defined(__x86_64__) || defined(__i386__) || defined(__powerpc__) || \
1276 defined(__s390__)
Kees Cookc99ee512015-06-16 10:54:14 -07001277 {
1278 regs.SYSCALL_NUM = syscall;
1279 }
1280
1281#elif defined(__arm__)
1282# ifndef PTRACE_SET_SYSCALL
1283# define PTRACE_SET_SYSCALL 23
1284# endif
1285 {
1286 ret = ptrace(PTRACE_SET_SYSCALL, tracee, NULL, syscall);
1287 EXPECT_EQ(0, ret);
1288 }
1289
Kees Cook256d0af2015-10-06 12:30:25 -07001290#elif defined(__aarch64__)
1291# ifndef NT_ARM_SYSTEM_CALL
1292# define NT_ARM_SYSTEM_CALL 0x404
1293# endif
1294 {
1295 iov.iov_base = &syscall;
1296 iov.iov_len = sizeof(syscall);
1297 ret = ptrace(PTRACE_SETREGSET, tracee, NT_ARM_SYSTEM_CALL,
1298 &iov);
1299 EXPECT_EQ(0, ret);
1300 }
1301
Kees Cookc99ee512015-06-16 10:54:14 -07001302#else
1303 ASSERT_EQ(1, 0) {
1304 TH_LOG("How is the syscall changed on this architecture?");
1305 }
1306#endif
1307
1308 /* If syscall is skipped, change return value. */
1309 if (syscall == -1)
1310 regs.SYSCALL_RET = 1;
1311
Kees Cook256d0af2015-10-06 12:30:25 -07001312 iov.iov_base = &regs;
1313 iov.iov_len = sizeof(regs);
Kees Cookc99ee512015-06-16 10:54:14 -07001314 ret = ptrace(PTRACE_SETREGSET, tracee, NT_PRSTATUS, &iov);
1315 EXPECT_EQ(0, ret);
1316}
1317
1318void tracer_syscall(struct __test_metadata *_metadata, pid_t tracee,
1319 int status, void *args)
1320{
1321 int ret;
1322 unsigned long msg;
1323
1324 /* Make sure we got the right message. */
1325 ret = ptrace(PTRACE_GETEVENTMSG, tracee, NULL, &msg);
1326 EXPECT_EQ(0, ret);
1327
Kees Cookb623c4d2015-08-21 11:22:35 -07001328 /* Validate and take action on expected syscalls. */
Kees Cookc99ee512015-06-16 10:54:14 -07001329 switch (msg) {
1330 case 0x1002:
1331 /* change getpid to getppid. */
Kees Cookb623c4d2015-08-21 11:22:35 -07001332 EXPECT_EQ(__NR_getpid, get_syscall(_metadata, tracee));
Kees Cookc99ee512015-06-16 10:54:14 -07001333 change_syscall(_metadata, tracee, __NR_getppid);
1334 break;
1335 case 0x1003:
1336 /* skip gettid. */
Kees Cookb623c4d2015-08-21 11:22:35 -07001337 EXPECT_EQ(__NR_gettid, get_syscall(_metadata, tracee));
Kees Cookc99ee512015-06-16 10:54:14 -07001338 change_syscall(_metadata, tracee, -1);
1339 break;
1340 case 0x1004:
1341 /* do nothing (allow getppid) */
Kees Cookb623c4d2015-08-21 11:22:35 -07001342 EXPECT_EQ(__NR_getppid, get_syscall(_metadata, tracee));
Kees Cookc99ee512015-06-16 10:54:14 -07001343 break;
1344 default:
1345 EXPECT_EQ(0, msg) {
1346 TH_LOG("Unknown PTRACE_GETEVENTMSG: 0x%lx", msg);
1347 kill(tracee, SIGKILL);
1348 }
1349 }
1350
1351}
1352
1353FIXTURE_DATA(TRACE_syscall) {
1354 struct sock_fprog prog;
1355 pid_t tracer, mytid, mypid, parent;
1356};
1357
1358FIXTURE_SETUP(TRACE_syscall)
1359{
1360 struct sock_filter filter[] = {
1361 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
1362 offsetof(struct seccomp_data, nr)),
1363 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getpid, 0, 1),
1364 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE | 0x1002),
1365 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_gettid, 0, 1),
1366 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE | 0x1003),
1367 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_getppid, 0, 1),
1368 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE | 0x1004),
1369 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1370 };
1371
1372 memset(&self->prog, 0, sizeof(self->prog));
1373 self->prog.filter = malloc(sizeof(filter));
1374 ASSERT_NE(NULL, self->prog.filter);
1375 memcpy(self->prog.filter, filter, sizeof(filter));
1376 self->prog.len = (unsigned short)ARRAY_SIZE(filter);
1377
1378 /* Prepare some testable syscall results. */
1379 self->mytid = syscall(__NR_gettid);
1380 ASSERT_GT(self->mytid, 0);
1381 ASSERT_NE(self->mytid, 1) {
1382 TH_LOG("Running this test as init is not supported. :)");
1383 }
1384
1385 self->mypid = getpid();
1386 ASSERT_GT(self->mypid, 0);
1387 ASSERT_EQ(self->mytid, self->mypid);
1388
1389 self->parent = getppid();
1390 ASSERT_GT(self->parent, 0);
1391 ASSERT_NE(self->parent, self->mypid);
1392
1393 /* Launch tracer. */
1394 self->tracer = setup_trace_fixture(_metadata, tracer_syscall, NULL);
1395}
1396
1397FIXTURE_TEARDOWN(TRACE_syscall)
1398{
1399 teardown_trace_fixture(_metadata, self->tracer);
1400 if (self->prog.filter)
1401 free(self->prog.filter);
1402}
1403
1404TEST_F(TRACE_syscall, syscall_allowed)
1405{
1406 long ret;
1407
1408 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1409 ASSERT_EQ(0, ret);
1410
1411 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog, 0, 0);
1412 ASSERT_EQ(0, ret);
1413
1414 /* getppid works as expected (no changes). */
1415 EXPECT_EQ(self->parent, syscall(__NR_getppid));
1416 EXPECT_NE(self->mypid, syscall(__NR_getppid));
1417}
1418
1419TEST_F(TRACE_syscall, syscall_redirected)
1420{
1421 long ret;
1422
1423 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1424 ASSERT_EQ(0, ret);
1425
1426 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog, 0, 0);
1427 ASSERT_EQ(0, ret);
1428
1429 /* getpid has been redirected to getppid as expected. */
1430 EXPECT_EQ(self->parent, syscall(__NR_getpid));
1431 EXPECT_NE(self->mypid, syscall(__NR_getpid));
1432}
1433
1434TEST_F(TRACE_syscall, syscall_dropped)
1435{
1436 long ret;
1437
1438 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1439 ASSERT_EQ(0, ret);
1440
1441 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &self->prog, 0, 0);
1442 ASSERT_EQ(0, ret);
1443
1444 /* gettid has been skipped and an altered return value stored. */
1445 EXPECT_EQ(1, syscall(__NR_gettid));
1446 EXPECT_NE(self->mytid, syscall(__NR_gettid));
1447}
1448
1449#ifndef __NR_seccomp
1450# if defined(__i386__)
1451# define __NR_seccomp 354
1452# elif defined(__x86_64__)
1453# define __NR_seccomp 317
1454# elif defined(__arm__)
1455# define __NR_seccomp 383
1456# elif defined(__aarch64__)
1457# define __NR_seccomp 277
Michael Ellerman5d83c2b2015-07-23 20:21:11 +10001458# elif defined(__powerpc__)
1459# define __NR_seccomp 358
Kees Cookb623c4d2015-08-21 11:22:35 -07001460# elif defined(__s390__)
1461# define __NR_seccomp 348
Kees Cookc99ee512015-06-16 10:54:14 -07001462# else
1463# warning "seccomp syscall number unknown for this architecture"
1464# define __NR_seccomp 0xffff
1465# endif
1466#endif
1467
1468#ifndef SECCOMP_SET_MODE_STRICT
1469#define SECCOMP_SET_MODE_STRICT 0
1470#endif
1471
1472#ifndef SECCOMP_SET_MODE_FILTER
1473#define SECCOMP_SET_MODE_FILTER 1
1474#endif
1475
1476#ifndef SECCOMP_FLAG_FILTER_TSYNC
1477#define SECCOMP_FLAG_FILTER_TSYNC 1
1478#endif
1479
1480#ifndef seccomp
1481int seccomp(unsigned int op, unsigned int flags, struct sock_fprog *filter)
1482{
1483 errno = 0;
1484 return syscall(__NR_seccomp, op, flags, filter);
1485}
1486#endif
1487
1488TEST(seccomp_syscall)
1489{
1490 struct sock_filter filter[] = {
1491 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1492 };
1493 struct sock_fprog prog = {
1494 .len = (unsigned short)ARRAY_SIZE(filter),
1495 .filter = filter,
1496 };
1497 long ret;
1498
1499 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0);
1500 ASSERT_EQ(0, ret) {
1501 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1502 }
1503
1504 /* Reject insane operation. */
1505 ret = seccomp(-1, 0, &prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001506 ASSERT_NE(ENOSYS, errno) {
1507 TH_LOG("Kernel does not support seccomp syscall!");
1508 }
Kees Cookc99ee512015-06-16 10:54:14 -07001509 EXPECT_EQ(EINVAL, errno) {
1510 TH_LOG("Did not reject crazy op value!");
1511 }
1512
1513 /* Reject strict with flags or pointer. */
1514 ret = seccomp(SECCOMP_SET_MODE_STRICT, -1, NULL);
1515 EXPECT_EQ(EINVAL, errno) {
1516 TH_LOG("Did not reject mode strict with flags!");
1517 }
1518 ret = seccomp(SECCOMP_SET_MODE_STRICT, 0, &prog);
1519 EXPECT_EQ(EINVAL, errno) {
1520 TH_LOG("Did not reject mode strict with uargs!");
1521 }
1522
1523 /* Reject insane args for filter. */
1524 ret = seccomp(SECCOMP_SET_MODE_FILTER, -1, &prog);
1525 EXPECT_EQ(EINVAL, errno) {
1526 TH_LOG("Did not reject crazy filter flags!");
1527 }
1528 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, NULL);
1529 EXPECT_EQ(EFAULT, errno) {
1530 TH_LOG("Did not reject NULL filter!");
1531 }
1532
1533 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &prog);
1534 EXPECT_EQ(0, errno) {
1535 TH_LOG("Kernel does not support SECCOMP_SET_MODE_FILTER: %s",
1536 strerror(errno));
1537 }
1538}
1539
1540TEST(seccomp_syscall_mode_lock)
1541{
1542 struct sock_filter filter[] = {
1543 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1544 };
1545 struct sock_fprog prog = {
1546 .len = (unsigned short)ARRAY_SIZE(filter),
1547 .filter = filter,
1548 };
1549 long ret;
1550
1551 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, NULL, 0, 0);
1552 ASSERT_EQ(0, ret) {
1553 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1554 }
1555
1556 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001557 ASSERT_NE(ENOSYS, errno) {
1558 TH_LOG("Kernel does not support seccomp syscall!");
1559 }
Kees Cookc99ee512015-06-16 10:54:14 -07001560 EXPECT_EQ(0, ret) {
1561 TH_LOG("Could not install filter!");
1562 }
1563
1564 /* Make sure neither entry point will switch to strict. */
1565 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_STRICT, 0, 0, 0);
1566 EXPECT_EQ(EINVAL, errno) {
1567 TH_LOG("Switched to mode strict!");
1568 }
1569
1570 ret = seccomp(SECCOMP_SET_MODE_STRICT, 0, NULL);
1571 EXPECT_EQ(EINVAL, errno) {
1572 TH_LOG("Switched to mode strict!");
1573 }
1574}
1575
1576TEST(TSYNC_first)
1577{
1578 struct sock_filter filter[] = {
1579 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1580 };
1581 struct sock_fprog prog = {
1582 .len = (unsigned short)ARRAY_SIZE(filter),
1583 .filter = filter,
1584 };
1585 long ret;
1586
1587 ret = prctl(PR_SET_NO_NEW_PRIVS, 1, NULL, 0, 0);
1588 ASSERT_EQ(0, ret) {
1589 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1590 }
1591
1592 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
1593 &prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001594 ASSERT_NE(ENOSYS, errno) {
1595 TH_LOG("Kernel does not support seccomp syscall!");
1596 }
Kees Cookc99ee512015-06-16 10:54:14 -07001597 EXPECT_EQ(0, ret) {
1598 TH_LOG("Could not install initial filter with TSYNC!");
1599 }
1600}
1601
1602#define TSYNC_SIBLINGS 2
1603struct tsync_sibling {
1604 pthread_t tid;
1605 pid_t system_tid;
1606 sem_t *started;
1607 pthread_cond_t *cond;
1608 pthread_mutex_t *mutex;
1609 int diverge;
1610 int num_waits;
1611 struct sock_fprog *prog;
1612 struct __test_metadata *metadata;
1613};
1614
1615FIXTURE_DATA(TSYNC) {
1616 struct sock_fprog root_prog, apply_prog;
1617 struct tsync_sibling sibling[TSYNC_SIBLINGS];
1618 sem_t started;
1619 pthread_cond_t cond;
1620 pthread_mutex_t mutex;
1621 int sibling_count;
1622};
1623
1624FIXTURE_SETUP(TSYNC)
1625{
1626 struct sock_filter root_filter[] = {
1627 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1628 };
1629 struct sock_filter apply_filter[] = {
1630 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
1631 offsetof(struct seccomp_data, nr)),
1632 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 0, 1),
1633 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
1634 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1635 };
1636
1637 memset(&self->root_prog, 0, sizeof(self->root_prog));
1638 memset(&self->apply_prog, 0, sizeof(self->apply_prog));
1639 memset(&self->sibling, 0, sizeof(self->sibling));
1640 self->root_prog.filter = malloc(sizeof(root_filter));
1641 ASSERT_NE(NULL, self->root_prog.filter);
1642 memcpy(self->root_prog.filter, &root_filter, sizeof(root_filter));
1643 self->root_prog.len = (unsigned short)ARRAY_SIZE(root_filter);
1644
1645 self->apply_prog.filter = malloc(sizeof(apply_filter));
1646 ASSERT_NE(NULL, self->apply_prog.filter);
1647 memcpy(self->apply_prog.filter, &apply_filter, sizeof(apply_filter));
1648 self->apply_prog.len = (unsigned short)ARRAY_SIZE(apply_filter);
1649
1650 self->sibling_count = 0;
1651 pthread_mutex_init(&self->mutex, NULL);
1652 pthread_cond_init(&self->cond, NULL);
1653 sem_init(&self->started, 0, 0);
1654 self->sibling[0].tid = 0;
1655 self->sibling[0].cond = &self->cond;
1656 self->sibling[0].started = &self->started;
1657 self->sibling[0].mutex = &self->mutex;
1658 self->sibling[0].diverge = 0;
1659 self->sibling[0].num_waits = 1;
1660 self->sibling[0].prog = &self->root_prog;
1661 self->sibling[0].metadata = _metadata;
1662 self->sibling[1].tid = 0;
1663 self->sibling[1].cond = &self->cond;
1664 self->sibling[1].started = &self->started;
1665 self->sibling[1].mutex = &self->mutex;
1666 self->sibling[1].diverge = 0;
1667 self->sibling[1].prog = &self->root_prog;
1668 self->sibling[1].num_waits = 1;
1669 self->sibling[1].metadata = _metadata;
1670}
1671
1672FIXTURE_TEARDOWN(TSYNC)
1673{
1674 int sib = 0;
1675
1676 if (self->root_prog.filter)
1677 free(self->root_prog.filter);
1678 if (self->apply_prog.filter)
1679 free(self->apply_prog.filter);
1680
1681 for ( ; sib < self->sibling_count; ++sib) {
1682 struct tsync_sibling *s = &self->sibling[sib];
1683 void *status;
1684
1685 if (!s->tid)
1686 continue;
1687 if (pthread_kill(s->tid, 0)) {
1688 pthread_cancel(s->tid);
1689 pthread_join(s->tid, &status);
1690 }
1691 }
1692 pthread_mutex_destroy(&self->mutex);
1693 pthread_cond_destroy(&self->cond);
1694 sem_destroy(&self->started);
1695}
1696
1697void *tsync_sibling(void *data)
1698{
1699 long ret = 0;
1700 struct tsync_sibling *me = data;
1701
1702 me->system_tid = syscall(__NR_gettid);
1703
1704 pthread_mutex_lock(me->mutex);
1705 if (me->diverge) {
1706 /* Just re-apply the root prog to fork the tree */
1707 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER,
1708 me->prog, 0, 0);
1709 }
1710 sem_post(me->started);
1711 /* Return outside of started so parent notices failures. */
1712 if (ret) {
1713 pthread_mutex_unlock(me->mutex);
1714 return (void *)SIBLING_EXIT_FAILURE;
1715 }
1716 do {
1717 pthread_cond_wait(me->cond, me->mutex);
1718 me->num_waits = me->num_waits - 1;
1719 } while (me->num_waits);
1720 pthread_mutex_unlock(me->mutex);
1721
1722 ret = prctl(PR_GET_NO_NEW_PRIVS, 0, 0, 0, 0);
1723 if (!ret)
1724 return (void *)SIBLING_EXIT_NEWPRIVS;
1725 read(0, NULL, 0);
1726 return (void *)SIBLING_EXIT_UNKILLED;
1727}
1728
1729void tsync_start_sibling(struct tsync_sibling *sibling)
1730{
1731 pthread_create(&sibling->tid, NULL, tsync_sibling, (void *)sibling);
1732}
1733
1734TEST_F(TSYNC, siblings_fail_prctl)
1735{
1736 long ret;
1737 void *status;
1738 struct sock_filter filter[] = {
1739 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
1740 offsetof(struct seccomp_data, nr)),
1741 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_prctl, 0, 1),
1742 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ERRNO | EINVAL),
1743 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
1744 };
1745 struct sock_fprog prog = {
1746 .len = (unsigned short)ARRAY_SIZE(filter),
1747 .filter = filter,
1748 };
1749
1750 ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
1751 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1752 }
1753
1754 /* Check prctl failure detection by requesting sib 0 diverge. */
1755 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001756 ASSERT_NE(ENOSYS, errno) {
1757 TH_LOG("Kernel does not support seccomp syscall!");
1758 }
Kees Cookc99ee512015-06-16 10:54:14 -07001759 ASSERT_EQ(0, ret) {
1760 TH_LOG("setting filter failed");
1761 }
1762
1763 self->sibling[0].diverge = 1;
1764 tsync_start_sibling(&self->sibling[0]);
1765 tsync_start_sibling(&self->sibling[1]);
1766
1767 while (self->sibling_count < TSYNC_SIBLINGS) {
1768 sem_wait(&self->started);
1769 self->sibling_count++;
1770 }
1771
1772 /* Signal the threads to clean up*/
1773 pthread_mutex_lock(&self->mutex);
1774 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1775 TH_LOG("cond broadcast non-zero");
1776 }
1777 pthread_mutex_unlock(&self->mutex);
1778
1779 /* Ensure diverging sibling failed to call prctl. */
1780 pthread_join(self->sibling[0].tid, &status);
1781 EXPECT_EQ(SIBLING_EXIT_FAILURE, (long)status);
1782 pthread_join(self->sibling[1].tid, &status);
1783 EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
1784}
1785
1786TEST_F(TSYNC, two_siblings_with_ancestor)
1787{
1788 long ret;
1789 void *status;
1790
1791 ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
1792 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1793 }
1794
1795 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &self->root_prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001796 ASSERT_NE(ENOSYS, errno) {
1797 TH_LOG("Kernel does not support seccomp syscall!");
1798 }
Kees Cookc99ee512015-06-16 10:54:14 -07001799 ASSERT_EQ(0, ret) {
1800 TH_LOG("Kernel does not support SECCOMP_SET_MODE_FILTER!");
1801 }
1802 tsync_start_sibling(&self->sibling[0]);
1803 tsync_start_sibling(&self->sibling[1]);
1804
1805 while (self->sibling_count < TSYNC_SIBLINGS) {
1806 sem_wait(&self->started);
1807 self->sibling_count++;
1808 }
1809
1810 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
1811 &self->apply_prog);
1812 ASSERT_EQ(0, ret) {
1813 TH_LOG("Could install filter on all threads!");
1814 }
1815 /* Tell the siblings to test the policy */
1816 pthread_mutex_lock(&self->mutex);
1817 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1818 TH_LOG("cond broadcast non-zero");
1819 }
1820 pthread_mutex_unlock(&self->mutex);
1821 /* Ensure they are both killed and don't exit cleanly. */
1822 pthread_join(self->sibling[0].tid, &status);
1823 EXPECT_EQ(0x0, (long)status);
1824 pthread_join(self->sibling[1].tid, &status);
1825 EXPECT_EQ(0x0, (long)status);
1826}
1827
1828TEST_F(TSYNC, two_sibling_want_nnp)
1829{
1830 void *status;
1831
1832 /* start siblings before any prctl() operations */
1833 tsync_start_sibling(&self->sibling[0]);
1834 tsync_start_sibling(&self->sibling[1]);
1835 while (self->sibling_count < TSYNC_SIBLINGS) {
1836 sem_wait(&self->started);
1837 self->sibling_count++;
1838 }
1839
1840 /* Tell the siblings to test no policy */
1841 pthread_mutex_lock(&self->mutex);
1842 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1843 TH_LOG("cond broadcast non-zero");
1844 }
1845 pthread_mutex_unlock(&self->mutex);
1846
1847 /* Ensure they are both upset about lacking nnp. */
1848 pthread_join(self->sibling[0].tid, &status);
1849 EXPECT_EQ(SIBLING_EXIT_NEWPRIVS, (long)status);
1850 pthread_join(self->sibling[1].tid, &status);
1851 EXPECT_EQ(SIBLING_EXIT_NEWPRIVS, (long)status);
1852}
1853
1854TEST_F(TSYNC, two_siblings_with_no_filter)
1855{
1856 long ret;
1857 void *status;
1858
1859 /* start siblings before any prctl() operations */
1860 tsync_start_sibling(&self->sibling[0]);
1861 tsync_start_sibling(&self->sibling[1]);
1862 while (self->sibling_count < TSYNC_SIBLINGS) {
1863 sem_wait(&self->started);
1864 self->sibling_count++;
1865 }
1866
1867 ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
1868 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1869 }
1870
1871 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
1872 &self->apply_prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001873 ASSERT_NE(ENOSYS, errno) {
1874 TH_LOG("Kernel does not support seccomp syscall!");
1875 }
Kees Cookc99ee512015-06-16 10:54:14 -07001876 ASSERT_EQ(0, ret) {
1877 TH_LOG("Could install filter on all threads!");
1878 }
1879
1880 /* Tell the siblings to test the policy */
1881 pthread_mutex_lock(&self->mutex);
1882 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1883 TH_LOG("cond broadcast non-zero");
1884 }
1885 pthread_mutex_unlock(&self->mutex);
1886
1887 /* Ensure they are both killed and don't exit cleanly. */
1888 pthread_join(self->sibling[0].tid, &status);
1889 EXPECT_EQ(0x0, (long)status);
1890 pthread_join(self->sibling[1].tid, &status);
1891 EXPECT_EQ(0x0, (long)status);
1892}
1893
1894TEST_F(TSYNC, two_siblings_with_one_divergence)
1895{
1896 long ret;
1897 void *status;
1898
1899 ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
1900 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1901 }
1902
1903 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &self->root_prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001904 ASSERT_NE(ENOSYS, errno) {
1905 TH_LOG("Kernel does not support seccomp syscall!");
1906 }
Kees Cookc99ee512015-06-16 10:54:14 -07001907 ASSERT_EQ(0, ret) {
1908 TH_LOG("Kernel does not support SECCOMP_SET_MODE_FILTER!");
1909 }
1910 self->sibling[0].diverge = 1;
1911 tsync_start_sibling(&self->sibling[0]);
1912 tsync_start_sibling(&self->sibling[1]);
1913
1914 while (self->sibling_count < TSYNC_SIBLINGS) {
1915 sem_wait(&self->started);
1916 self->sibling_count++;
1917 }
1918
1919 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
1920 &self->apply_prog);
1921 ASSERT_EQ(self->sibling[0].system_tid, ret) {
1922 TH_LOG("Did not fail on diverged sibling.");
1923 }
1924
1925 /* Wake the threads */
1926 pthread_mutex_lock(&self->mutex);
1927 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1928 TH_LOG("cond broadcast non-zero");
1929 }
1930 pthread_mutex_unlock(&self->mutex);
1931
1932 /* Ensure they are both unkilled. */
1933 pthread_join(self->sibling[0].tid, &status);
1934 EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
1935 pthread_join(self->sibling[1].tid, &status);
1936 EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
1937}
1938
1939TEST_F(TSYNC, two_siblings_not_under_filter)
1940{
1941 long ret, sib;
1942 void *status;
1943
1944 ASSERT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
1945 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
1946 }
1947
1948 /*
1949 * Sibling 0 will have its own seccomp policy
1950 * and Sibling 1 will not be under seccomp at
1951 * all. Sibling 1 will enter seccomp and 0
1952 * will cause failure.
1953 */
1954 self->sibling[0].diverge = 1;
1955 tsync_start_sibling(&self->sibling[0]);
1956 tsync_start_sibling(&self->sibling[1]);
1957
1958 while (self->sibling_count < TSYNC_SIBLINGS) {
1959 sem_wait(&self->started);
1960 self->sibling_count++;
1961 }
1962
1963 ret = seccomp(SECCOMP_SET_MODE_FILTER, 0, &self->root_prog);
Kees Cookb623c4d2015-08-21 11:22:35 -07001964 ASSERT_NE(ENOSYS, errno) {
1965 TH_LOG("Kernel does not support seccomp syscall!");
1966 }
Kees Cookc99ee512015-06-16 10:54:14 -07001967 ASSERT_EQ(0, ret) {
1968 TH_LOG("Kernel does not support SECCOMP_SET_MODE_FILTER!");
1969 }
1970
1971 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
1972 &self->apply_prog);
1973 ASSERT_EQ(ret, self->sibling[0].system_tid) {
1974 TH_LOG("Did not fail on diverged sibling.");
1975 }
1976 sib = 1;
1977 if (ret == self->sibling[0].system_tid)
1978 sib = 0;
1979
1980 pthread_mutex_lock(&self->mutex);
1981
1982 /* Increment the other siblings num_waits so we can clean up
1983 * the one we just saw.
1984 */
1985 self->sibling[!sib].num_waits += 1;
1986
1987 /* Signal the thread to clean up*/
1988 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
1989 TH_LOG("cond broadcast non-zero");
1990 }
1991 pthread_mutex_unlock(&self->mutex);
1992 pthread_join(self->sibling[sib].tid, &status);
1993 EXPECT_EQ(SIBLING_EXIT_UNKILLED, (long)status);
1994 /* Poll for actual task death. pthread_join doesn't guarantee it. */
1995 while (!kill(self->sibling[sib].system_tid, 0))
1996 sleep(0.1);
1997 /* Switch to the remaining sibling */
1998 sib = !sib;
1999
2000 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
2001 &self->apply_prog);
2002 ASSERT_EQ(0, ret) {
2003 TH_LOG("Expected the remaining sibling to sync");
2004 };
2005
2006 pthread_mutex_lock(&self->mutex);
2007
2008 /* If remaining sibling didn't have a chance to wake up during
2009 * the first broadcast, manually reduce the num_waits now.
2010 */
2011 if (self->sibling[sib].num_waits > 1)
2012 self->sibling[sib].num_waits = 1;
2013 ASSERT_EQ(0, pthread_cond_broadcast(&self->cond)) {
2014 TH_LOG("cond broadcast non-zero");
2015 }
2016 pthread_mutex_unlock(&self->mutex);
2017 pthread_join(self->sibling[sib].tid, &status);
2018 EXPECT_EQ(0, (long)status);
2019 /* Poll for actual task death. pthread_join doesn't guarantee it. */
2020 while (!kill(self->sibling[sib].system_tid, 0))
2021 sleep(0.1);
2022
2023 ret = seccomp(SECCOMP_SET_MODE_FILTER, SECCOMP_FLAG_FILTER_TSYNC,
2024 &self->apply_prog);
2025 ASSERT_EQ(0, ret); /* just us chickens */
2026}
2027
2028/* Make sure restarted syscalls are seen directly as "restart_syscall". */
2029TEST(syscall_restart)
2030{
2031 long ret;
2032 unsigned long msg;
2033 pid_t child_pid;
2034 int pipefd[2];
2035 int status;
2036 siginfo_t info = { };
2037 struct sock_filter filter[] = {
2038 BPF_STMT(BPF_LD|BPF_W|BPF_ABS,
2039 offsetof(struct seccomp_data, nr)),
2040
2041#ifdef __NR_sigreturn
2042 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_sigreturn, 6, 0),
2043#endif
2044 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_read, 5, 0),
2045 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_exit, 4, 0),
2046 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_rt_sigreturn, 3, 0),
Kees Cook256d0af2015-10-06 12:30:25 -07002047 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_nanosleep, 4, 0),
Kees Cookc99ee512015-06-16 10:54:14 -07002048 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_restart_syscall, 4, 0),
2049
2050 /* Allow __NR_write for easy logging. */
2051 BPF_JUMP(BPF_JMP|BPF_JEQ|BPF_K, __NR_write, 0, 1),
2052 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_ALLOW),
2053 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_KILL),
Kees Cook256d0af2015-10-06 12:30:25 -07002054 /* The nanosleep jump target. */
2055 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE|0x100),
2056 /* The restart_syscall jump target. */
2057 BPF_STMT(BPF_RET|BPF_K, SECCOMP_RET_TRACE|0x200),
Kees Cookc99ee512015-06-16 10:54:14 -07002058 };
2059 struct sock_fprog prog = {
2060 .len = (unsigned short)ARRAY_SIZE(filter),
2061 .filter = filter,
2062 };
Kees Cook256d0af2015-10-06 12:30:25 -07002063#if defined(__arm__)
2064 struct utsname utsbuf;
2065#endif
Kees Cookc99ee512015-06-16 10:54:14 -07002066
2067 ASSERT_EQ(0, pipe(pipefd));
2068
2069 child_pid = fork();
2070 ASSERT_LE(0, child_pid);
2071 if (child_pid == 0) {
2072 /* Child uses EXPECT not ASSERT to deliver status correctly. */
2073 char buf = ' ';
Kees Cook256d0af2015-10-06 12:30:25 -07002074 struct timespec timeout = { };
Kees Cookc99ee512015-06-16 10:54:14 -07002075
2076 /* Attach parent as tracer and stop. */
2077 EXPECT_EQ(0, ptrace(PTRACE_TRACEME));
2078 EXPECT_EQ(0, raise(SIGSTOP));
2079
2080 EXPECT_EQ(0, close(pipefd[1]));
2081
2082 EXPECT_EQ(0, prctl(PR_SET_NO_NEW_PRIVS, 1, 0, 0, 0)) {
2083 TH_LOG("Kernel does not support PR_SET_NO_NEW_PRIVS!");
2084 }
2085
2086 ret = prctl(PR_SET_SECCOMP, SECCOMP_MODE_FILTER, &prog, 0, 0);
2087 EXPECT_EQ(0, ret) {
2088 TH_LOG("Failed to install filter!");
2089 }
2090
2091 EXPECT_EQ(1, read(pipefd[0], &buf, 1)) {
2092 TH_LOG("Failed to read() sync from parent");
2093 }
2094 EXPECT_EQ('.', buf) {
2095 TH_LOG("Failed to get sync data from read()");
2096 }
2097
Kees Cook256d0af2015-10-06 12:30:25 -07002098 /* Start nanosleep to be interrupted. */
2099 timeout.tv_sec = 1;
Kees Cookc99ee512015-06-16 10:54:14 -07002100 errno = 0;
Kees Cook256d0af2015-10-06 12:30:25 -07002101 EXPECT_EQ(0, nanosleep(&timeout, NULL)) {
2102 TH_LOG("Call to nanosleep() failed (errno %d)", errno);
Kees Cookc99ee512015-06-16 10:54:14 -07002103 }
2104
2105 /* Read final sync from parent. */
2106 EXPECT_EQ(1, read(pipefd[0], &buf, 1)) {
2107 TH_LOG("Failed final read() from parent");
2108 }
2109 EXPECT_EQ('!', buf) {
2110 TH_LOG("Failed to get final data from read()");
2111 }
2112
2113 /* Directly report the status of our test harness results. */
2114 syscall(__NR_exit, _metadata->passed ? EXIT_SUCCESS
2115 : EXIT_FAILURE);
2116 }
2117 EXPECT_EQ(0, close(pipefd[0]));
2118
2119 /* Attach to child, setup options, and release. */
2120 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2121 ASSERT_EQ(true, WIFSTOPPED(status));
2122 ASSERT_EQ(0, ptrace(PTRACE_SETOPTIONS, child_pid, NULL,
2123 PTRACE_O_TRACESECCOMP));
2124 ASSERT_EQ(0, ptrace(PTRACE_CONT, child_pid, NULL, 0));
2125 ASSERT_EQ(1, write(pipefd[1], ".", 1));
2126
Kees Cook256d0af2015-10-06 12:30:25 -07002127 /* Wait for nanosleep() to start. */
Kees Cookc99ee512015-06-16 10:54:14 -07002128 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2129 ASSERT_EQ(true, WIFSTOPPED(status));
2130 ASSERT_EQ(SIGTRAP, WSTOPSIG(status));
2131 ASSERT_EQ(PTRACE_EVENT_SECCOMP, (status >> 16));
2132 ASSERT_EQ(0, ptrace(PTRACE_GETEVENTMSG, child_pid, NULL, &msg));
2133 ASSERT_EQ(0x100, msg);
Kees Cook256d0af2015-10-06 12:30:25 -07002134 EXPECT_EQ(__NR_nanosleep, get_syscall(_metadata, child_pid));
Kees Cookc99ee512015-06-16 10:54:14 -07002135
2136 /* Might as well check siginfo for sanity while we're here. */
2137 ASSERT_EQ(0, ptrace(PTRACE_GETSIGINFO, child_pid, NULL, &info));
2138 ASSERT_EQ(SIGTRAP, info.si_signo);
2139 ASSERT_EQ(SIGTRAP | (PTRACE_EVENT_SECCOMP << 8), info.si_code);
2140 EXPECT_EQ(0, info.si_errno);
2141 EXPECT_EQ(getuid(), info.si_uid);
2142 /* Verify signal delivery came from child (seccomp-triggered). */
2143 EXPECT_EQ(child_pid, info.si_pid);
2144
Kees Cook256d0af2015-10-06 12:30:25 -07002145 /* Interrupt nanosleep with SIGSTOP (which we'll need to handle). */
Kees Cookc99ee512015-06-16 10:54:14 -07002146 ASSERT_EQ(0, kill(child_pid, SIGSTOP));
2147 ASSERT_EQ(0, ptrace(PTRACE_CONT, child_pid, NULL, 0));
2148 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2149 ASSERT_EQ(true, WIFSTOPPED(status));
2150 ASSERT_EQ(SIGSTOP, WSTOPSIG(status));
2151 /* Verify signal delivery came from parent now. */
2152 ASSERT_EQ(0, ptrace(PTRACE_GETSIGINFO, child_pid, NULL, &info));
2153 EXPECT_EQ(getpid(), info.si_pid);
2154
Kees Cook256d0af2015-10-06 12:30:25 -07002155 /* Restart nanosleep with SIGCONT, which triggers restart_syscall. */
Kees Cookc99ee512015-06-16 10:54:14 -07002156 ASSERT_EQ(0, kill(child_pid, SIGCONT));
2157 ASSERT_EQ(0, ptrace(PTRACE_CONT, child_pid, NULL, 0));
2158 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2159 ASSERT_EQ(true, WIFSTOPPED(status));
2160 ASSERT_EQ(SIGCONT, WSTOPSIG(status));
2161 ASSERT_EQ(0, ptrace(PTRACE_CONT, child_pid, NULL, 0));
2162
2163 /* Wait for restart_syscall() to start. */
2164 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2165 ASSERT_EQ(true, WIFSTOPPED(status));
2166 ASSERT_EQ(SIGTRAP, WSTOPSIG(status));
2167 ASSERT_EQ(PTRACE_EVENT_SECCOMP, (status >> 16));
2168 ASSERT_EQ(0, ptrace(PTRACE_GETEVENTMSG, child_pid, NULL, &msg));
Kees Cook256d0af2015-10-06 12:30:25 -07002169
Kees Cookc99ee512015-06-16 10:54:14 -07002170 ASSERT_EQ(0x200, msg);
2171 ret = get_syscall(_metadata, child_pid);
2172#if defined(__arm__)
Kees Cook256d0af2015-10-06 12:30:25 -07002173 /*
2174 * FIXME:
2175 * - native ARM registers do NOT expose true syscall.
2176 * - compat ARM registers on ARM64 DO expose true syscall.
2177 */
2178 ASSERT_EQ(0, uname(&utsbuf));
2179 if (strncmp(utsbuf.machine, "arm", 3) == 0) {
2180 EXPECT_EQ(__NR_nanosleep, ret);
2181 } else
Kees Cookc99ee512015-06-16 10:54:14 -07002182#endif
Kees Cook256d0af2015-10-06 12:30:25 -07002183 {
2184 EXPECT_EQ(__NR_restart_syscall, ret);
2185 }
Kees Cookc99ee512015-06-16 10:54:14 -07002186
Kees Cook256d0af2015-10-06 12:30:25 -07002187 /* Write again to end test. */
Kees Cookc99ee512015-06-16 10:54:14 -07002188 ASSERT_EQ(0, ptrace(PTRACE_CONT, child_pid, NULL, 0));
2189 ASSERT_EQ(1, write(pipefd[1], "!", 1));
2190 EXPECT_EQ(0, close(pipefd[1]));
2191
2192 ASSERT_EQ(child_pid, waitpid(child_pid, &status, 0));
2193 if (WIFSIGNALED(status) || WEXITSTATUS(status))
2194 _metadata->passed = 0;
2195}
2196
2197/*
2198 * TODO:
2199 * - add microbenchmarks
2200 * - expand NNP testing
2201 * - better arch-specific TRACE and TRAP handlers.
2202 * - endianness checking when appropriate
2203 * - 64-bit arg prodding
2204 * - arch value testing (x86 modes especially)
2205 * - ...
2206 */
2207
2208TEST_HARNESS_MAIN