xref: /linux/tools/testing/selftests/nolibc/nolibc-test.c (revision 67f8bc848ee31831336bd478e57d2f993551902e)
1 /* SPDX-License-Identifier: GPL-2.0 */
2 
3 #define _GNU_SOURCE
4 #define _LARGEFILE64_SOURCE
5 #define _FILE_OFFSET_BITS 64
6 
7 /* libc-specific include files
8  * The program may be built in 3 ways:
9  *   $(CC) -nostdlib -include /path/to/nolibc.h => NOLIBC already defined
10  *   $(CC) -nostdlib -I/path/to/nolibc/sysroot  => _NOLIBC_* guards are present
11  *   $(CC) with default libc                    => NOLIBC* never defined
12  */
13 #include <stdio.h>
14 #include <stdlib.h>
15 #include <string.h>
16 #include <sys/auxv.h>
17 #include <sys/ioctl.h>
18 #include <sys/mman.h>
19 #include <sys/mount.h>
20 #include <sys/prctl.h>
21 #include <sys/ptrace.h>
22 #include <sys/random.h>
23 #include <sys/reboot.h>
24 #include <sys/resource.h>
25 #include <sys/stat.h>
26 #include <sys/syscall.h>
27 #include <sys/sysmacros.h>
28 #include <sys/time.h>
29 #include <sys/timerfd.h>
30 #include <sys/uio.h>
31 #include <sys/utsname.h>
32 #include <sys/wait.h>
33 #include <dirent.h>
34 #include <errno.h>
35 #include <fcntl.h>
36 #include <poll.h>
37 #include <sched.h>
38 #include <signal.h>
39 #include <stdarg.h>
40 #include <stddef.h>
41 #include <stdint.h>
42 #include <time.h>
43 #include <unistd.h>
44 #include <limits.h>
45 #include <ctype.h>
46 #include <stdbool.h>
47 #include <byteswap.h>
48 #include <endian.h>
49 #include <alloca.h>
50 
51 #pragma GCC diagnostic ignored "-Wmissing-prototypes"
52 
53 #include "nolibc-test-linkage.h"
54 
55 /* for the type of int_fast16_t and int_fast32_t, musl differs from glibc and nolibc */
56 #define SINT_MAX_OF_TYPE(type) (((type)1 << (sizeof(type) * 8 - 2)) - (type)1 + ((type)1 << (sizeof(type) * 8 - 2)))
57 #define SINT_MIN_OF_TYPE(type) (-SINT_MAX_OF_TYPE(type) - 1)
58 
59 /* will be used to test initialization of environ */
60 static char **test_envp;
61 
62 /* will be used to test initialization of argv */
63 static char **test_argv;
64 
65 /* will be used to test initialization of argc */
66 static int test_argc;
67 
68 /* will be used by some test cases as readable file, please don't write it */
69 static const char *argv0;
70 
71 /* will be used by constructor tests */
72 static int constructor_test_value;
73 
74 static const int is_le = __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__;
75 
76 static const int is_nolibc =
77 #ifdef NOLIBC
78 	1
79 #else
80 	0
81 #endif
82 ;
83 
84 static const int is_glibc =
85 #ifdef __GLIBC__
86 	1
87 #else
88 	0
89 #endif
90 ;
91 
92 #if !defined(NOLIBC)
93 /* Some disabled tests may not compile. */
94 
95 /* strlcat() and strlcpy() may not be in the system headers. */
96 #undef strlcat
97 #undef strlcpy
98 #define strlcat(d, s, l) 0
99 #define strlcpy(d, s, l) 0
100 
101 /* readdir_r() is likely to be marked deprecated */
102 #undef readdir_r
103 #define readdir_r(dir, dirent, result) ((errno = EINVAL), -1)
104 
105 #define _syscall(...) 0
106 #endif
107 
108 /* definition of a series of tests */
109 struct test {
110 	const char *name;              /* test name */
111 	int (*func)(int min, int max); /* handler */
112 };
113 
114 #ifndef _NOLIBC_STDLIB_H
115 char *itoa(int i)
116 {
117 	static char buf[12];
118 	int ret;
119 
120 	ret = snprintf(buf, sizeof(buf), "%d", i);
121 	return (ret >= 0 && ret < sizeof(buf)) ? buf : "#err";
122 }
123 #endif
124 
125 #define CASE_ERR(err) \
126 	case err: return #err
127 
128 /* returns the error name (e.g. "ENOENT") for common errors, "SUCCESS" for 0,
129  * or the decimal value for less common ones.
130  */
131 static const char *errorname(int err)
132 {
133 	switch (err) {
134 	case 0: return "SUCCESS";
135 	CASE_ERR(EPERM);
136 	CASE_ERR(ENOENT);
137 	CASE_ERR(ESRCH);
138 	CASE_ERR(EINTR);
139 	CASE_ERR(EIO);
140 	CASE_ERR(ENXIO);
141 	CASE_ERR(E2BIG);
142 	CASE_ERR(ENOEXEC);
143 	CASE_ERR(EBADF);
144 	CASE_ERR(ECHILD);
145 	CASE_ERR(EAGAIN);
146 	CASE_ERR(ENOMEM);
147 	CASE_ERR(EACCES);
148 	CASE_ERR(EFAULT);
149 	CASE_ERR(ENOTBLK);
150 	CASE_ERR(EBUSY);
151 	CASE_ERR(EEXIST);
152 	CASE_ERR(EXDEV);
153 	CASE_ERR(ENODEV);
154 	CASE_ERR(ENOTDIR);
155 	CASE_ERR(EISDIR);
156 	CASE_ERR(EINVAL);
157 	CASE_ERR(ENFILE);
158 	CASE_ERR(EMFILE);
159 	CASE_ERR(ENOTTY);
160 	CASE_ERR(ETXTBSY);
161 	CASE_ERR(EFBIG);
162 	CASE_ERR(ENOSPC);
163 	CASE_ERR(ESPIPE);
164 	CASE_ERR(EROFS);
165 	CASE_ERR(EMLINK);
166 	CASE_ERR(EPIPE);
167 	CASE_ERR(EDOM);
168 	CASE_ERR(ERANGE);
169 	CASE_ERR(ENOSYS);
170 	CASE_ERR(EOVERFLOW);
171 	default:
172 		return itoa(err);
173 	}
174 }
175 
176 enum RESULT {
177 	OK,
178 	FAIL,
179 	SKIPPED,
180 };
181 
182 static void result(int llen, enum RESULT r)
183 {
184 	const char *msg;
185 
186 	if (r == OK)
187 		msg = "  [OK]";
188 	else if (r == SKIPPED)
189 		msg = "[SKIPPED]";
190 	else
191 		msg = " [FAIL]";
192 
193 	llen = 64 - llen;
194 	if (llen < 0)
195 		llen = 0;
196 	printf("%*s%s\n", llen, "", msg);
197 }
198 
199 /* The tests below are intended to be used by the macroes, which evaluate
200  * expression <expr>, print the status to stdout, and update the "ret"
201  * variable to count failures. The functions themselves return the number
202  * of failures, thus either 0 or 1.
203  */
204 
205 #define EXPECT_ZR(cond, expr)				\
206 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_zr(expr, llen); } while (0)
207 
208 static __attribute__((unused))
209 int expect_zr(int expr, int llen)
210 {
211 	int ret = !(expr == 0);
212 
213 	llen += printf(" = %d ", expr);
214 	result(llen, ret ? FAIL : OK);
215 	return ret;
216 }
217 
218 
219 #define EXPECT_NZ(cond, expr)				\
220 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_nz(expr, llen); } while (0)
221 
222 static __attribute__((unused))
223 int expect_nz(int expr, int llen)
224 {
225 	int ret = !(expr != 0);
226 
227 	llen += printf(" = %d ", expr);
228 	result(llen, ret ? FAIL : OK);
229 	return ret;
230 }
231 
232 
233 #define EXPECT_EQ(cond, expr, val)				\
234 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_eq(expr, llen, val); } while (0)
235 
236 static __attribute__((unused))
237 int expect_eq(uint64_t expr, int llen, uint64_t val)
238 {
239 	int ret = !(expr == val);
240 
241 	llen += printf(" = %lld ", (long long)expr);
242 	result(llen, ret ? FAIL : OK);
243 	return ret;
244 }
245 
246 
247 #define EXPECT_NE(cond, expr, val)				\
248 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ne(expr, llen, val); } while (0)
249 
250 static __attribute__((unused))
251 int expect_ne(int expr, int llen, int val)
252 {
253 	int ret = !(expr != val);
254 
255 	llen += printf(" = %d ", expr);
256 	result(llen, ret ? FAIL : OK);
257 	return ret;
258 }
259 
260 
261 #define EXPECT_GE(cond, expr, val)				\
262 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ge(expr, llen, val); } while (0)
263 
264 static __attribute__((unused))
265 int expect_ge(int expr, int llen, int val)
266 {
267 	int ret = !(expr >= val);
268 
269 	llen += printf(" = %d ", expr);
270 	result(llen, ret ? FAIL : OK);
271 	return ret;
272 }
273 
274 
275 #define EXPECT_GT(cond, expr, val)				\
276 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_gt(expr, llen, val); } while (0)
277 
278 static __attribute__((unused))
279 int expect_gt(int expr, int llen, int val)
280 {
281 	int ret = !(expr > val);
282 
283 	llen += printf(" = %d ", expr);
284 	result(llen, ret ? FAIL : OK);
285 	return ret;
286 }
287 
288 
289 #define EXPECT_LE(cond, expr, val)				\
290 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_le(expr, llen, val); } while (0)
291 
292 static __attribute__((unused))
293 int expect_le(int expr, int llen, int val)
294 {
295 	int ret = !(expr <= val);
296 
297 	llen += printf(" = %d ", expr);
298 	result(llen, ret ? FAIL : OK);
299 	return ret;
300 }
301 
302 
303 #define EXPECT_LT(cond, expr, val)				\
304 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_lt(expr, llen, val); } while (0)
305 
306 static __attribute__((unused))
307 int expect_lt(int expr, int llen, int val)
308 {
309 	int ret = !(expr < val);
310 
311 	llen += printf(" = %d ", expr);
312 	result(llen, ret ? FAIL : OK);
313 	return ret;
314 }
315 
316 
317 #define EXPECT_SYSZR(cond, expr)				\
318 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syszr(expr, llen); } while (0)
319 
320 static __attribute__((unused))
321 int expect_syszr(int expr, int llen)
322 {
323 	int ret = 0;
324 
325 	if (expr) {
326 		ret = 1;
327 		llen += printf(" = %d %s ", expr, errorname(errno));
328 		result(llen, FAIL);
329 	} else {
330 		llen += printf(" = %d ", expr);
331 		result(llen, OK);
332 	}
333 	return ret;
334 }
335 
336 
337 #define EXPECT_SYSEQ(cond, expr, val)				\
338 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syseq(expr, llen, val); } while (0)
339 
340 static __attribute__((unused))
341 int expect_syseq(int expr, int llen, int val)
342 {
343 	int ret = 0;
344 
345 	if (expr != val) {
346 		ret = 1;
347 		llen += printf(" = %d %s ", expr, errorname(errno));
348 		result(llen, FAIL);
349 	} else {
350 		llen += printf(" = %d ", expr);
351 		result(llen, OK);
352 	}
353 	return ret;
354 }
355 
356 
357 #define EXPECT_SYSNE(cond, expr, val)				\
358 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_sysne(expr, llen, val); } while (0)
359 
360 static __attribute__((unused))
361 int expect_sysne(int expr, int llen, int val)
362 {
363 	int ret = 0;
364 
365 	if (expr == val) {
366 		ret = 1;
367 		llen += printf(" = %d %s ", expr, errorname(errno));
368 		result(llen, FAIL);
369 	} else {
370 		llen += printf(" = %d ", expr);
371 		result(llen, OK);
372 	}
373 	return ret;
374 }
375 
376 
377 #define EXPECT_SYSER2(cond, expr, expret, experr1, experr2)		\
378 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_syserr2(expr, expret, experr1, experr2, llen); } while (0)
379 
380 #define EXPECT_SYSER(cond, expr, expret, experr)			\
381 	EXPECT_SYSER2(cond, expr, expret, experr, 0)
382 
383 static __attribute__((unused))
384 int expect_syserr2(int expr, int expret, int experr1, int experr2, int llen)
385 {
386 	int ret = 0;
387 	int _errno = errno;
388 
389 	llen += printf(" = %d %s ", expr, errorname(_errno));
390 	if (expr != expret || (_errno != experr1 && _errno != experr2)) {
391 		ret = 1;
392 		if (experr2 == 0)
393 			llen += printf(" != (%d %s) ", expret, errorname(experr1));
394 		else
395 			llen += printf(" != (%d %s %s) ", expret, errorname(experr1), errorname(experr2));
396 		result(llen, FAIL);
397 	} else {
398 		result(llen, OK);
399 	}
400 	return ret;
401 }
402 
403 
404 #define EXPECT_PTRZR(cond, expr)				\
405 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrzr(expr, llen); } while (0)
406 
407 static __attribute__((unused))
408 int expect_ptrzr(const void *expr, int llen)
409 {
410 	int ret = 0;
411 
412 	llen += printf(" = <%p> ", expr);
413 	if (expr) {
414 		ret = 1;
415 		result(llen, FAIL);
416 	} else {
417 		result(llen, OK);
418 	}
419 	return ret;
420 }
421 
422 
423 #define EXPECT_PTRNZ(cond, expr)				\
424 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrnz(expr, llen); } while (0)
425 
426 static __attribute__((unused))
427 int expect_ptrnz(const void *expr, int llen)
428 {
429 	int ret = 0;
430 
431 	llen += printf(" = <%p> ", expr);
432 	if (!expr) {
433 		ret = 1;
434 		result(llen, FAIL);
435 	} else {
436 		result(llen, OK);
437 	}
438 	return ret;
439 }
440 
441 #define EXPECT_PTREQ(cond, expr, cmp)				\
442 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptreq(expr, llen, cmp); } while (0)
443 
444 static __attribute__((unused))
445 int expect_ptreq(const void *expr, int llen, const void *cmp)
446 {
447 	int ret = 0;
448 
449 	llen += printf(" = <%p> ", expr);
450 	if (expr != cmp) {
451 		ret = 1;
452 		result(llen, FAIL);
453 	} else {
454 		result(llen, OK);
455 	}
456 	return ret;
457 }
458 
459 #define EXPECT_PTRNE(cond, expr, cmp)				\
460 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrne(expr, llen, cmp); } while (0)
461 
462 static __attribute__((unused))
463 int expect_ptrne(const void *expr, int llen, const void *cmp)
464 {
465 	int ret = 0;
466 
467 	llen += printf(" = <%p> ", expr);
468 	if (expr == cmp) {
469 		ret = 1;
470 		result(llen, FAIL);
471 	} else {
472 		result(llen, OK);
473 	}
474 	return ret;
475 }
476 
477 #define EXPECT_PTRGE(cond, expr, cmp)				\
478 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrge(expr, llen, cmp); } while (0)
479 
480 static __attribute__((unused))
481 int expect_ptrge(const void *expr, int llen, const void *cmp)
482 {
483 	int ret = !(expr >= cmp);
484 
485 	llen += printf(" = <%p> ", expr);
486 	result(llen, ret ? FAIL : OK);
487 	return ret;
488 }
489 
490 #define EXPECT_PTRGT(cond, expr, cmp)				\
491 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrgt(expr, llen, cmp); } while (0)
492 
493 static __attribute__((unused))
494 int expect_ptrgt(const void *expr, int llen, const void *cmp)
495 {
496 	int ret = !(expr > cmp);
497 
498 	llen += printf(" = <%p> ", expr);
499 	result(llen, ret ? FAIL : OK);
500 	return ret;
501 }
502 
503 
504 #define EXPECT_PTRLE(cond, expr, cmp)				\
505 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrle(expr, llen, cmp); } while (0)
506 
507 static __attribute__((unused))
508 int expect_ptrle(const void *expr, int llen, const void *cmp)
509 {
510 	int ret = !(expr <= cmp);
511 
512 	llen += printf(" = <%p> ", expr);
513 	result(llen, ret ? FAIL : OK);
514 	return ret;
515 }
516 
517 
518 #define EXPECT_PTRLT(cond, expr, cmp)				\
519 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrlt(expr, llen, cmp); } while (0)
520 
521 static __attribute__((unused))
522 int expect_ptrlt(const void *expr, int llen, const void *cmp)
523 {
524 	int ret = !(expr < cmp);
525 
526 	llen += printf(" = <%p> ", expr);
527 	result(llen, ret ? FAIL : OK);
528 	return ret;
529 }
530 
531 #define EXPECT_PTRER2(cond, expr, expret, experr1, experr2)		\
532 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_ptrerr2(expr, expret, experr1, experr2, llen); } while (0)
533 
534 #define EXPECT_PTRER(cond, expr, expret, experr)			\
535 	EXPECT_PTRER2(cond, expr, expret, experr, 0)
536 
537 static __attribute__((unused))
538 int expect_ptrerr2(const void *expr, const void *expret, int experr1, int experr2, int llen)
539 {
540 	int ret = 0;
541 	int _errno = errno;
542 
543 	llen += printf(" = <%p> %s ", expr, errorname(_errno));
544 	if (expr != expret || (_errno != experr1 && _errno != experr2)) {
545 		ret = 1;
546 		if (experr2 == 0)
547 			llen += printf(" != (<%p> %s) ", expret, errorname(experr1));
548 		else
549 			llen += printf(" != (<%p> %s %s) ", expret, errorname(experr1), errorname(experr2));
550 		result(llen, FAIL);
551 	} else {
552 		result(llen, OK);
553 	}
554 	return ret;
555 }
556 
557 #define EXPECT_STRZR(cond, expr)				\
558 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strzr(expr, llen); } while (0)
559 
560 static __attribute__((unused))
561 int expect_strzr(const char *expr, int llen)
562 {
563 	int ret = 0;
564 
565 	llen += printf(" = <%s> ", expr ? expr : "(null)");
566 	if (expr) {
567 		ret = 1;
568 		result(llen, FAIL);
569 	} else {
570 		result(llen, OK);
571 	}
572 	return ret;
573 }
574 
575 
576 #define EXPECT_STRNZ(cond, expr)				\
577 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strnz(expr, llen); } while (0)
578 
579 static __attribute__((unused))
580 int expect_strnz(const char *expr, int llen)
581 {
582 	int ret = 0;
583 
584 	llen += printf(" = <%s> ", expr ? expr : "(null)");
585 	if (!expr) {
586 		ret = 1;
587 		result(llen, FAIL);
588 	} else {
589 		result(llen, OK);
590 	}
591 	return ret;
592 }
593 
594 
595 #define EXPECT_STREQ(cond, expr, cmp)				\
596 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_streq(expr, llen, cmp); } while (0)
597 
598 static __attribute__((unused))
599 int expect_streq(const char *expr, int llen, const char *cmp)
600 {
601 	int ret = 0;
602 
603 	llen += printf(" = <%s> ", expr);
604 	if (strcmp(expr, cmp) != 0) {
605 		ret = 1;
606 		result(llen, FAIL);
607 	} else {
608 		result(llen, OK);
609 	}
610 	return ret;
611 }
612 
613 
614 #define EXPECT_STRNE(cond, expr, cmp)				\
615 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strne(expr, llen, cmp); } while (0)
616 
617 static __attribute__((unused))
618 int expect_strne(const char *expr, int llen, const char *cmp)
619 {
620 	int ret = 0;
621 
622 	llen += printf(" = <%s> ", expr);
623 	if (strcmp(expr, cmp) == 0) {
624 		ret = 1;
625 		result(llen, FAIL);
626 	} else {
627 		result(llen, OK);
628 	}
629 	return ret;
630 }
631 
632 #define EXPECT_STRBUFEQ(cond, expr, buf, val, cmp)				\
633 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_str_buf_eq(expr, buf, val, llen, cmp); } while (0)
634 
635 static __attribute__((unused))
636 int expect_str_buf_eq(size_t expr, const char *buf, size_t val, int llen, const char *cmp)
637 {
638 	llen += printf(" = %lu <%s> ", (unsigned long)expr, buf);
639 	if (strcmp(buf, cmp) != 0) {
640 		result(llen, FAIL);
641 		return 1;
642 	}
643 	if (expr != val) {
644 		result(llen, FAIL);
645 		return 1;
646 	}
647 
648 	result(llen, OK);
649 	return 0;
650 }
651 
652 enum strtox_func {
653 	strtox_func_strtol,
654 	strtox_func_strtoul,
655 };
656 
657 #define EXPECT_STRTOX(cond, func, input, base, expected, chars, expected_errno)				\
658 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_strtox(llen, strtox_func_ ## func, input, base, expected, chars, expected_errno); } while (0)
659 
660 static __attribute__((unused))
661 int expect_strtox(int llen, enum strtox_func func, const char *input, int base, intmax_t expected, int expected_chars, int expected_errno)
662 {
663 	char *endptr;
664 	int actual_errno, actual_chars;
665 	intmax_t r;
666 
667 	errno = 0;
668 	if (func == strtox_func_strtol) {
669 		r = strtol(input, &endptr, base);
670 	} else if (func == strtox_func_strtoul) {
671 		r = strtoul(input, &endptr, base);
672 	} else {
673 		result(llen, FAIL);
674 		return 1;
675 	}
676 	actual_errno = errno;
677 	actual_chars = endptr - input;
678 
679 	llen += printf(" %lld = %lld", (long long)expected, (long long)r);
680 	if (r != expected) {
681 		result(llen, FAIL);
682 		return 1;
683 	}
684 	if (expected_chars == -1) {
685 		if (*endptr != '\0') {
686 			result(llen, FAIL);
687 			return 1;
688 		}
689 	} else if (expected_chars != actual_chars) {
690 		result(llen, FAIL);
691 		return 1;
692 	}
693 	if (actual_errno != expected_errno) {
694 		result(llen, FAIL);
695 		return 1;
696 	}
697 
698 	result(llen, OK);
699 	return 0;
700 }
701 
702 /* declare tests based on line numbers. There must be exactly one test per line. */
703 #define CASE_TEST(name) \
704 	case __LINE__: llen += printf("%d %s", test, #name);
705 
706 __attribute__((constructor))
707 static void constructor1(void)
708 {
709 	constructor_test_value |= 1 << 0;
710 }
711 
712 __attribute__((constructor))
713 static void constructor2(int argc, char **argv, char **envp)
714 {
715 	if (argc && argv && envp)
716 		constructor_test_value |= 1 << 1;
717 }
718 
719 int test_program_invocation_name(void)
720 {
721 	char buf[100];
722 	char *dirsep;
723 	ssize_t r;
724 	int fd;
725 
726 	fd = open("/proc/self/cmdline", O_RDONLY);
727 	if (fd == -1)
728 		return 1;
729 
730 	r = read(fd, buf, sizeof(buf));
731 	close(fd);
732 	if (r < 1 || r == sizeof(buf))
733 		return 1;
734 
735 	buf[r - 1] = '\0';
736 
737 	if (strcmp(program_invocation_name, buf) != 0)
738 		return 1;
739 
740 	dirsep = strrchr(buf, '/');
741 	if (!dirsep || dirsep[1] == '\0')
742 		return 1;
743 
744 	if (strcmp(program_invocation_short_name, dirsep + 1) != 0)
745 		return 1;
746 
747 	return 0;
748 }
749 
750 int run_startup(int min, int max)
751 {
752 	int test;
753 	int ret = 0;
754 	/* kernel at least passes HOME and TERM, shell passes more */
755 	int env_total = 2;
756 	/* checking NULL for argv/argv0, environ and _auxv is not enough, let's compare with sbrk(0) or &end */
757 	extern char end;
758 	char *brk = sbrk(0) != (void *)-1 ? sbrk(0) : &end;
759 #if defined(__alpha__)
760 	/* the ordering above does not work on an alpha kernel due to STACK_TOP != TASK_SIZE */
761 	brk = NULL;
762 #endif
763 	/* differ from nolibc, both glibc and musl have no global _auxv */
764 	const unsigned long *test_auxv = (void *)-1;
765 #ifdef NOLIBC
766 	test_auxv = _auxv;
767 #endif
768 	bool proc = access("/proc", R_OK) == 0;
769 
770 	for (test = min; test >= 0 && test <= max; test++) {
771 		int llen = 0; /* line length */
772 
773 		/* avoid leaving empty lines below, this will insert holes into
774 		 * test numbers.
775 		 */
776 		switch (test + __LINE__ + 1) {
777 		CASE_TEST(argc);             EXPECT_GE(1, test_argc, 1); break;
778 		CASE_TEST(argv_addr);        EXPECT_PTRGT(1, test_argv, brk); break;
779 		CASE_TEST(argv_environ);     EXPECT_PTRLT(1, test_argv, environ); break;
780 		CASE_TEST(argv_total);       EXPECT_EQ(1, environ - test_argv - 1, test_argc ?: 1); break;
781 		CASE_TEST(argv0_addr);       EXPECT_PTRGT(1, argv0, brk); break;
782 		CASE_TEST(argv0_str);        EXPECT_STRNZ(1, argv0 > brk ? argv0 : NULL); break;
783 		CASE_TEST(argv0_len);        EXPECT_GE(1,  argv0 > brk ? strlen(argv0) : 0, 1); break;
784 		CASE_TEST(environ_addr);     EXPECT_PTRGT(1, environ, brk); break;
785 		CASE_TEST(environ_envp);     EXPECT_PTREQ(1, environ, test_envp); break;
786 		CASE_TEST(environ_auxv);     EXPECT_PTRLT(test_auxv != (void *)-1, environ, test_auxv); break;
787 		CASE_TEST(environ_total);    EXPECT_GE(test_auxv != (void *)-1, (void *)test_auxv - (void *)environ - 1, env_total); break;
788 		CASE_TEST(environ_HOME);     EXPECT_PTRNZ(1, getenv("HOME")); break;
789 		CASE_TEST(auxv_addr);        EXPECT_PTRGT(test_auxv != (void *)-1, test_auxv, brk); break;
790 		CASE_TEST(auxv_AT_UID);      EXPECT_EQ(1, getauxval(AT_UID), getuid()); break;
791 		CASE_TEST(constructor);      EXPECT_EQ(is_nolibc, constructor_test_value, 0x3); break;
792 		CASE_TEST(linkage_errno);    EXPECT_PTREQ(1, linkage_test_errno_addr(), &errno); break;
793 		CASE_TEST(linkage_constr);   EXPECT_EQ(1, linkage_test_constructor_test_value, 0x3); break;
794 		CASE_TEST(prog_name);        EXPECT_ZR(proc, test_program_invocation_name()); break;
795 		case __LINE__:
796 			return ret; /* must be last */
797 		/* note: do not set any defaults so as to permit holes above */
798 		}
799 	}
800 	return ret;
801 }
802 
803 
804 /* used by some syscall tests below */
805 int test_getdents64(const char *dir)
806 {
807 	char buffer[4096];
808 	int fd, ret;
809 	int err;
810 
811 	ret = fd = open(dir, O_RDONLY | O_DIRECTORY);
812 	if (ret < 0)
813 		return ret;
814 
815 	ret = getdents64(fd, (void *)buffer, sizeof(buffer));
816 	err = errno;
817 	close(fd);
818 
819 	errno = err;
820 	return ret;
821 }
822 
823 static int test_dirent(void)
824 {
825 	int comm = 0, cmdline = 0;
826 	struct dirent dirent, *result;
827 	DIR *dir;
828 	int ret;
829 
830 	dir = opendir("/proc/self");
831 	if (!dir)
832 		return 1;
833 
834 	while (1) {
835 		errno = 0;
836 		ret = readdir_r(dir, &dirent, &result);
837 		if (ret != 0)
838 			return 1;
839 		if (!result)
840 			break;
841 
842 		if (strcmp(dirent.d_name, "comm") == 0)
843 			comm++;
844 		else if (strcmp(dirent.d_name, "cmdline") == 0)
845 			cmdline++;
846 	}
847 
848 	if (errno)
849 		return 1;
850 
851 	ret = closedir(dir);
852 	if (ret)
853 		return 1;
854 
855 	if (comm != 1 || cmdline != 1)
856 		return 1;
857 
858 	return 0;
859 }
860 
861 int test_getcwd(void)
862 {
863 	char cwd_syscall[PATH_MAX];
864 	char cwd_proc[PATH_MAX];
865 	ssize_t len;
866 
867 	/* Read where the link /proc/self/cwd points */
868 	len = readlink("/proc/self/cwd", cwd_proc, sizeof(cwd_proc) - 1);
869 	if (len <= 0)
870 		return __LINE__;
871 
872 	/* Terminate the string from readlink() */
873 	cwd_proc[len] = '\0';
874 
875 	/* Get the cwd via syscall */
876 	if (getcwd(cwd_syscall, sizeof(cwd_syscall)) == NULL)
877 		return __LINE__;
878 
879 	/* Fail if they aren't the same */
880 	if (strcmp(cwd_proc, cwd_syscall) != 0)
881 		return __LINE__;
882 
883 	/* Try getcwd() with NULL for the buffer,
884 	 * should return NULL and an error in errno.
885 	 * Other libc's allow this by allocating a buffer
886 	 * internally.
887 	 */
888 	if (is_nolibc) {
889 		errno = 0;
890 		if (getcwd(NULL, 0) != NULL || !errno)
891 			return __LINE__;
892 	}
893 
894 	/* Try getcwd() with a buffer but make the size 0,
895 	 * should return NULL and an error in errno.
896 	 */
897 	errno = 0;
898 	if (getcwd(cwd_syscall, 0) != NULL || !errno)
899 		return __LINE__;
900 
901 	/* Try getcwd() with a buffer but make the size 1,
902 	 * should return NULL and an error in errno because
903 	 * the string written to the buffer is terminated
904 	 * so you need at least 2 bytes even for "/".
905 	 */
906 	errno = 0;
907 	if (getcwd(cwd_syscall, 1) != NULL || !errno)
908 		return __LINE__;
909 
910 	return 0;
911 }
912 
913 int test_getrandom(void)
914 {
915 	uint64_t rng = 0;
916 	ssize_t ret;
917 
918 	ret = getrandom(&rng, sizeof(rng), GRND_NONBLOCK);
919 	if (ret == -1 && errno == EAGAIN)
920 		return 0; /* No entropy available yet */
921 
922 	if (ret != sizeof(rng))
923 		return ret;
924 
925 	if (!rng) {
926 		errno = EINVAL;
927 		return -1;
928 	}
929 
930 	return 0;
931 }
932 
933 int test_getpagesize(void)
934 {
935 	int x = getpagesize();
936 	int c;
937 
938 	if (x < 0)
939 		return x;
940 
941 #if defined(__x86_64__) || defined(__i386__) || defined(__i486__) || defined(__i586__) || defined(__i686__)
942 	/*
943 	 * x86 family is always 4K page.
944 	 */
945 	c = (x == 4096);
946 #elif defined(__aarch64__)
947 	/*
948 	 * Linux aarch64 supports three values of page size: 4K, 16K, and 64K
949 	 * which are selected at kernel compilation time.
950 	 */
951 	c = (x == 4096 || x == (16 * 1024) || x == (64 * 1024));
952 #else
953 	/*
954 	 * Assuming other architectures must have at least 4K page.
955 	 */
956 	c = (x >= 4096);
957 #endif
958 
959 	return !c;
960 }
961 
962 int test_file_stream(void)
963 {
964 	FILE *f;
965 	int r;
966 
967 	f = fopen("/dev/null", "r");
968 	if (!f)
969 		return -1;
970 
971 	errno = 0;
972 	r = fwrite("foo", 1, 3, f);
973 	if (r != 0 || ((is_nolibc || is_glibc) && errno != EBADF)) {
974 		fclose(f);
975 		return -1;
976 	}
977 
978 	r = fclose(f);
979 	if (r == EOF)
980 		return -1;
981 
982 	return 0;
983 }
984 
985 int test_file_stream_wsr(void)
986 {
987 	const char dataout[] = "foo";
988 	const size_t datasz = sizeof(dataout);
989 	char datain[datasz];
990 	int fd, r;
991 	FILE *f;
992 
993 	fd = open("/tmp", O_TMPFILE | O_RDWR, 0644);
994 	if (fd == -1)
995 		return -1;
996 
997 	f = fdopen(fd, "w+");
998 	if (!f)
999 		return -1;
1000 
1001 	errno = 0;
1002 	r = fwrite(dataout, 1, datasz, f);
1003 	if (r != datasz)
1004 		return -1;
1005 
1006 	/* Attempt to read from the file without rewinding,
1007 	 * we should read 0 items.
1008 	 */
1009 	r = fread(datain, 1, datasz, f);
1010 	if (r)
1011 		return -1;
1012 
1013 	/* Rewind the file to the start */
1014 	r = fseek(f, 0, SEEK_SET);
1015 	if (r)
1016 		return -1;
1017 
1018 	/* Attempt to read back more than was written to
1019 	 * make sure we handle short reads properly.
1020 	 * fread() should return the number of complete items.
1021 	 */
1022 	r = fread(datain, 1, datasz + 1, f);
1023 	if (r != datasz)
1024 		return -1;
1025 
1026 	/* Data we read should match the data we just wrote */
1027 	if (memcmp(datain, dataout, datasz) != 0)
1028 		return -1;
1029 
1030 	r = fclose(f);
1031 	if (r)
1032 		return -1;
1033 
1034 	return 0;
1035 }
1036 
1037 enum fork_type {
1038 	FORK_STANDARD,
1039 	FORK_VFORK,
1040 };
1041 
1042 int test_fork(enum fork_type type)
1043 {
1044 	int status;
1045 	pid_t pid;
1046 
1047 	/* flush the printf buffer to avoid child flush it */
1048 	fflush(stdout);
1049 	fflush(stderr);
1050 
1051 	switch (type) {
1052 	case FORK_STANDARD:
1053 		pid = fork();
1054 		break;
1055 	case FORK_VFORK:
1056 		pid = vfork();
1057 		break;
1058 	default:
1059 		return 1;
1060 	}
1061 
1062 	switch (pid) {
1063 	case -1:
1064 		return 1;
1065 
1066 	case 0:
1067 		_exit(123);
1068 
1069 	default:
1070 		pid = waitpid(pid, &status, 0);
1071 
1072 		return pid == -1 || !WIFEXITED(status) || WEXITSTATUS(status) != 123;
1073 	}
1074 }
1075 
1076 int test_ftruncate(void)
1077 {
1078 	struct stat stat_buf;
1079 	int ret, fd;
1080 
1081 	ret = ftruncate(-1, 0);
1082 	if (ret != -1 || errno != EBADF) {
1083 		errno = EINVAL;
1084 		return __LINE__;
1085 	}
1086 
1087 	fd = memfd_create(__func__, 0);
1088 	if (fd == -1)
1089 		return __LINE__;
1090 
1091 	/*
1092 	 * This also tests that the high 32-bit half is passed through correctly.
1093 	 * If it gets lost, the kernel will see a positive number and not fail.
1094 	 */
1095 	ret = ftruncate(fd, -1);
1096 	if (!(ret == -1 && errno == EINVAL)) {
1097 		if (ret == 0)
1098 			errno = EINVAL;
1099 		ret = __LINE__;
1100 		goto end;
1101 	}
1102 
1103 	ret = ftruncate(fd, 42);
1104 	if (ret != 0) {
1105 		ret = __LINE__;
1106 		goto end;
1107 	}
1108 
1109 	ret = fstat(fd, &stat_buf);
1110 	if (ret != 0) {
1111 		ret = __LINE__;
1112 		goto end;
1113 	}
1114 
1115 	if (stat_buf.st_size != 42) {
1116 		errno = EINVAL;
1117 		ret = __LINE__;
1118 		goto end;
1119 	}
1120 
1121 end:
1122 	close(fd);
1123 
1124 	return ret;
1125 }
1126 
1127 int test_stat_timestamps(void)
1128 {
1129 	struct stat st;
1130 
1131 	if (sizeof(st.st_atim.tv_sec) != sizeof(st.st_atime))
1132 		return 1;
1133 
1134 	if (stat("/proc/self/", &st) && stat(argv0, &st) && stat("/", &st))
1135 		return 1;
1136 
1137 	if (st.st_atim.tv_sec != st.st_atime || st.st_atim.tv_nsec > 1000000000)
1138 		return 1;
1139 
1140 	if (st.st_mtim.tv_sec != st.st_mtime || st.st_mtim.tv_nsec > 1000000000)
1141 		return 1;
1142 
1143 	if (st.st_ctim.tv_sec != st.st_ctime || st.st_ctim.tv_nsec > 1000000000)
1144 		return 1;
1145 
1146 	return 0;
1147 }
1148 
1149 int test_timer(void)
1150 {
1151 	struct itimerspec timerspec;
1152 	struct sigevent evp;
1153 	timer_t timer;
1154 	int ret;
1155 
1156 	evp.sigev_notify = SIGEV_NONE;
1157 
1158 	ret = timer_create(CLOCK_MONOTONIC, &evp, &timer);
1159 	if (ret)
1160 		return ret;
1161 
1162 	timerspec = (struct itimerspec) {
1163 		.it_value.tv_sec = 1000000,
1164 	};
1165 	ret = timer_settime(timer, 0, &timerspec, NULL);
1166 	if (ret)
1167 		goto err;
1168 
1169 	timerspec = (struct itimerspec) {
1170 		.it_value.tv_sec = -1,
1171 		.it_value.tv_nsec = -1,
1172 		.it_interval.tv_sec = -1,
1173 		.it_interval.tv_nsec = -1,
1174 	};
1175 	ret = timer_gettime(timer, &timerspec);
1176 	if (ret)
1177 		goto err;
1178 
1179 	errno = EINVAL;
1180 	ret = -1;
1181 
1182 	if (timerspec.it_interval.tv_sec || timerspec.it_interval.tv_nsec)
1183 		goto err;
1184 
1185 	if (timerspec.it_value.tv_sec > 1000000)
1186 		goto err;
1187 
1188 	ret = timer_delete(timer);
1189 	if (ret)
1190 		return ret;
1191 
1192 	return 0;
1193 
1194 err:
1195 	timer_delete(timer);
1196 	return ret;
1197 }
1198 
1199 int test_timerfd(void)
1200 {
1201 	struct itimerspec timerspec;
1202 	int timer, ret;
1203 
1204 	timer = timerfd_create(CLOCK_MONOTONIC, 0);
1205 	if (timer == -1)
1206 		return -1;
1207 
1208 	timerspec = (struct itimerspec) {
1209 		.it_value.tv_sec = 1000000,
1210 	};
1211 	ret = timerfd_settime(timer, 0, &timerspec, NULL);
1212 	if (ret)
1213 		goto err;
1214 
1215 	timerspec = (struct itimerspec) {
1216 		.it_value.tv_sec = -1,
1217 		.it_value.tv_nsec = -1,
1218 		.it_interval.tv_sec = -1,
1219 		.it_interval.tv_nsec = -1,
1220 	};
1221 	ret = timerfd_gettime(timer, &timerspec);
1222 	if (ret)
1223 		goto err;
1224 
1225 	errno = EINVAL;
1226 	ret = -1;
1227 
1228 	if (timerspec.it_interval.tv_sec || timerspec.it_interval.tv_nsec)
1229 		goto err;
1230 
1231 	if (timerspec.it_value.tv_sec > 1000000)
1232 		goto err;
1233 
1234 	ret = close(timer);
1235 	if (ret)
1236 		return ret;
1237 
1238 	return 0;
1239 
1240 err:
1241 	close(timer);
1242 	return ret;
1243 }
1244 
1245 int test_uname(void)
1246 {
1247 	struct utsname buf;
1248 	char osrelease[sizeof(buf.release)];
1249 	ssize_t r;
1250 	int fd;
1251 
1252 	memset(&buf.domainname, 'P', sizeof(buf.domainname));
1253 
1254 	if (uname(&buf))
1255 		return 1;
1256 
1257 	if (strncmp("Linux", buf.sysname, sizeof(buf.sysname)))
1258 		return 1;
1259 
1260 	fd = open("/proc/sys/kernel/osrelease", O_RDONLY);
1261 	if (fd == -1)
1262 		return 1;
1263 
1264 	r = read(fd, osrelease, sizeof(osrelease));
1265 	if (r == -1)
1266 		return 1;
1267 
1268 	close(fd);
1269 
1270 	if (osrelease[r - 1] == '\n')
1271 		r--;
1272 
1273 	/* Validate one of the later fields to ensure field sizes are correct */
1274 	if (strncmp(osrelease, buf.release, r))
1275 		return 1;
1276 
1277 	/* Ensure the field domainname is set, it is missing from struct old_utsname */
1278 	if (strnlen(buf.domainname, sizeof(buf.domainname)) == sizeof(buf.domainname))
1279 		return 1;
1280 
1281 	return 0;
1282 }
1283 
1284 int test_mmap_munmap(void)
1285 {
1286 	int ret, fd, i, page_size;
1287 	void *mem;
1288 	size_t file_size, length, mem_length;
1289 	off_t offset, pa_offset;
1290 	struct stat stat_buf;
1291 	const char * const files[] = {
1292 		"/dev/zero",
1293 		"/proc/1/exe", "/proc/self/exe",
1294 		argv0,
1295 		NULL
1296 	};
1297 
1298 	page_size = getpagesize();
1299 	if (page_size < 0)
1300 		return 1;
1301 
1302 	/* find a right file to mmap, existed and accessible */
1303 	for (i = 0; files[i] != NULL; i++) {
1304 		ret = fd = open(files[i], O_RDONLY);
1305 		if (ret == -1)
1306 			continue;
1307 		else
1308 			break;
1309 	}
1310 	if (ret == -1)
1311 		return 1;
1312 
1313 	ret = stat(files[i], &stat_buf);
1314 	if (ret == -1)
1315 		goto end;
1316 
1317 	/* file size of the special /dev/zero is 0, let's assign one manually */
1318 	if (i == 0)
1319 		file_size = 3*page_size;
1320 	else
1321 		file_size = stat_buf.st_size;
1322 
1323 	offset = file_size - 1;
1324 	if (offset < 0)
1325 		offset = 0;
1326 	length = file_size - offset;
1327 	pa_offset = offset & ~(page_size - 1);
1328 	mem_length = length + offset - pa_offset;
1329 
1330 	mem = mmap(NULL, mem_length, PROT_READ, MAP_SHARED, fd, pa_offset);
1331 	if (mem == MAP_FAILED) {
1332 		ret = 1;
1333 		goto end;
1334 	}
1335 
1336 	mem = mremap(mem, mem_length, mem_length * 2, MREMAP_MAYMOVE, 0);
1337 	if (mem == MAP_FAILED) {
1338 		munmap(mem, mem_length);
1339 		ret = 1;
1340 		goto end;
1341 	}
1342 
1343 	ret = munmap(mem, mem_length * 2);
1344 
1345 end:
1346 	close(fd);
1347 	return !!ret;
1348 }
1349 
1350 int test_pipe(void)
1351 {
1352 	const char *const msg = "hello, nolibc";
1353 	int pipefd[2];
1354 	char buf[32];
1355 	size_t len;
1356 
1357 	if (pipe(pipefd) == -1)
1358 		return 1;
1359 
1360 	write(pipefd[1], msg, strlen(msg));
1361 	close(pipefd[1]);
1362 	len = read(pipefd[0], buf, sizeof(buf));
1363 	close(pipefd[0]);
1364 
1365 	if (len != strlen(msg))
1366 		return 1;
1367 
1368 	return !!memcmp(buf, msg, len);
1369 }
1370 
1371 int test_rlimit(void)
1372 {
1373 	struct rlimit rlim = {
1374 		.rlim_cur = 1 << 20,
1375 		.rlim_max = 1 << 21,
1376 	};
1377 	int ret;
1378 
1379 	ret = setrlimit(RLIMIT_CORE, &rlim);
1380 	if (ret)
1381 		return -1;
1382 
1383 	rlim.rlim_cur = 0;
1384 	rlim.rlim_max = 0;
1385 
1386 	ret = getrlimit(RLIMIT_CORE, &rlim);
1387 	if (ret)
1388 		return -1;
1389 
1390 	if (rlim.rlim_cur != 1 << 20)
1391 		return -1;
1392 	if (rlim.rlim_max != 1 << 21)
1393 		return -1;
1394 
1395 	return 0;
1396 }
1397 
1398 int test_openat(void)
1399 {
1400 	int dev, null;
1401 
1402 	dev = openat(AT_FDCWD, "/dev", O_DIRECTORY);
1403 	if (dev < 0)
1404 		return -1;
1405 
1406 	null = openat(dev, "null", O_RDONLY);
1407 	close(dev);
1408 	if (null < 0)
1409 		return -1;
1410 
1411 	close(null);
1412 	return 0;
1413 }
1414 
1415 int test_open_mode(void)
1416 {
1417 	const mode_t mode = 0444;
1418 	struct stat stat_buf;
1419 	int fd, ret;
1420 
1421 	fd = open("/tmp", O_TMPFILE | O_RDWR, mode);
1422 	if (fd == -1)
1423 		return -1;
1424 
1425 	ret = fstat(fd, &stat_buf);
1426 	close(fd);
1427 
1428 	if (ret == -1)
1429 		return -1;
1430 
1431 	if ((stat_buf.st_mode & 0777) != mode)
1432 		return -1;
1433 
1434 	return 0;
1435 }
1436 
1437 int test_nolibc_enosys(void)
1438 {
1439 	if (true)
1440 		return 0;
1441 
1442 #if defined(NOLIBC)
1443 	/*
1444 	 * __nolibc_enosys() will fail the compilation.
1445 	 * Make sure it can be optimized away if not actually called.
1446 	 */
1447 	if (__nolibc_enosys("something") != -ENOSYS)
1448 		return 1;
1449 #endif
1450 
1451 	return 0;
1452 }
1453 
1454 int test_namespace(void)
1455 {
1456 	int original_ns, new_ns, ret;
1457 	ino_t original_ns_ino;
1458 	struct stat stat_buf;
1459 
1460 	original_ns = open("/proc/self/ns/uts", O_RDONLY);
1461 	if (original_ns == -1)
1462 		return -1;
1463 
1464 	ret = fstat(original_ns, &stat_buf);
1465 	if (ret)
1466 		goto out;
1467 
1468 	original_ns_ino = stat_buf.st_ino;
1469 
1470 	ret = unshare(CLONE_NEWUTS);
1471 	if (ret)
1472 		goto out;
1473 
1474 	new_ns = open("/proc/self/ns/uts", O_RDONLY);
1475 	if (new_ns == -1) {
1476 		ret = new_ns;
1477 		goto out;
1478 	}
1479 
1480 	ret = fstat(new_ns, &stat_buf);
1481 	close(new_ns);
1482 	if (ret)
1483 		goto out;
1484 
1485 	if (stat_buf.st_ino == original_ns_ino) {
1486 		errno = EINVAL;
1487 		ret = -1;
1488 		goto out;
1489 	}
1490 
1491 	ret = setns(original_ns, CLONE_NEWUTS);
1492 	if (ret)
1493 		goto out;
1494 
1495 	new_ns = open("/proc/self/ns/uts", O_RDONLY);
1496 	if (new_ns == -1) {
1497 		ret = new_ns;
1498 		goto out;
1499 	}
1500 
1501 	ret = fstat(new_ns, &stat_buf);
1502 	if (ret)
1503 		goto out;
1504 
1505 	close(new_ns);
1506 
1507 	if (stat_buf.st_ino != original_ns_ino) {
1508 		errno = EINVAL;
1509 		ret = -1;
1510 		goto out;
1511 	}
1512 
1513 	ret = 0;
1514 
1515 out:
1516 	close(original_ns);
1517 	return ret;
1518 }
1519 
1520 int test_large_file(void)
1521 {
1522 	off_t large_seek = ((off_t)UINT32_MAX) + 100;
1523 	int fd, ret, saved_errno;
1524 	ssize_t written;
1525 	off_t off;
1526 
1527 #if defined(__mips__) && defined(_ABIN32)
1528 	/* https://lore.kernel.org/qemu-devel/fed03914-a95a-4522-a432-f129264cb2ac@t-8ch.de/ */
1529 	if (getpid() != 1)
1530 		return 0;
1531 #endif
1532 
1533 	if (large_seek < UINT32_MAX) {
1534 		errno = EOVERFLOW;
1535 		return -1;
1536 	}
1537 
1538 	fd = open("/tmp", O_TMPFILE | O_RDWR, 0644);
1539 	if (fd == -1)
1540 		return -1;
1541 
1542 	off = lseek(fd, large_seek, SEEK_CUR);
1543 	if (off == -1) {
1544 		ret = off;
1545 		goto out;
1546 	} else if (off != large_seek) {
1547 		errno = ERANGE;
1548 		ret = -1;
1549 		goto out;
1550 	}
1551 
1552 	written = write(fd, "1", 1);
1553 	if (written == -1) {
1554 		ret = written;
1555 		goto out;
1556 	}
1557 
1558 	ret = 0;
1559 out:
1560 	saved_errno = errno;
1561 	close(fd);
1562 	errno = saved_errno;
1563 	return ret;
1564 }
1565 
1566 /* Run syscall tests between IDs <min> and <max>.
1567  * Return 0 on success, non-zero on failure.
1568  */
1569 int run_syscall(int min, int max)
1570 {
1571 	struct timeval tv;
1572 	struct timezone tz;
1573 	struct timespec ts;
1574 	struct stat stat_buf;
1575 	int euid0;
1576 	int proc;
1577 	int test;
1578 	int tmp;
1579 	struct iovec iov_one = {
1580 		.iov_base = &tmp,
1581 		.iov_len = 1,
1582 	};
1583 	int ret = 0;
1584 	void *p1, *p2;
1585 	int has_gettid = 1;
1586 	int has_brk;
1587 
1588 	/* <proc> indicates whether or not /proc is mounted */
1589 	proc = stat("/proc", &stat_buf) == 0;
1590 
1591 	/* this will be used to skip certain tests that can't be run unprivileged */
1592 	euid0 = geteuid() == 0;
1593 
1594 	/* from 2.30, glibc provides gettid() */
1595 #if defined(__GLIBC_MINOR__) && defined(__GLIBC__)
1596 	has_gettid = __GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 30);
1597 #endif
1598 
1599 	/* on musl setting brk()/sbrk() always fails */
1600 	has_brk = brk(0) == 0;
1601 
1602 	for (test = min; test >= 0 && test <= max; test++) {
1603 		int llen = 0; /* line length */
1604 
1605 		/* avoid leaving empty lines below, this will insert holes into
1606 		 * test numbers.
1607 		 */
1608 		switch (test + __LINE__ + 1) {
1609 		CASE_TEST(access);            EXPECT_SYSZR(proc, access("/proc/self", R_OK)); break;
1610 		CASE_TEST(access_bad);        EXPECT_SYSER(proc, access("/proc/self", W_OK), -1, EPERM); break;
1611 		CASE_TEST(clock_getres);      EXPECT_SYSZR(1, clock_getres(CLOCK_MONOTONIC, &ts)); break;
1612 		CASE_TEST(clock_gettime);     EXPECT_SYSZR(1, clock_gettime(CLOCK_MONOTONIC, &ts)); break;
1613 		CASE_TEST(clock_settime);     EXPECT_SYSER(1, clock_settime(CLOCK_MONOTONIC, &ts), -1, EINVAL); break;
1614 		CASE_TEST(getcwd);            EXPECT_SYSZR(proc, test_getcwd()); break;
1615 		CASE_TEST(getpid);            EXPECT_SYSNE(1, getpid(), -1); break;
1616 		CASE_TEST(getppid);           EXPECT_SYSNE(1, getppid(), -1); break;
1617 		CASE_TEST(gettid);            EXPECT_SYSNE(has_gettid, gettid(), -1); break;
1618 		CASE_TEST(getpgid_self);      EXPECT_SYSNE(1, getpgid(0), -1); break;
1619 		CASE_TEST(getpgid_bad);       EXPECT_SYSER(1, getpgid(-1), -1, ESRCH); break;
1620 		CASE_TEST(kill_0);            EXPECT_SYSZR(1, kill(getpid(), 0)); break;
1621 		CASE_TEST(kill_CONT);         EXPECT_SYSZR(1, kill(getpid(), 0)); break;
1622 		CASE_TEST(kill_BADPID);       EXPECT_SYSER(1, kill(INT_MAX, 0), -1, ESRCH); break;
1623 		CASE_TEST(sbrk_0);            EXPECT_PTRNE(has_brk, sbrk(0), (void *)-1); break;
1624 		CASE_TEST(sbrk);              if ((p1 = p2 = sbrk(4096)) != (void *)-1) p2 = sbrk(-4096); EXPECT_SYSZR(has_brk, (p2 == (void *)-1) || p2 == p1); break;
1625 		CASE_TEST(brk);               EXPECT_SYSZR(has_brk, brk(sbrk(0))); break;
1626 		CASE_TEST(chdir_root);        EXPECT_SYSZR(1, chdir("/")); chdir(getenv("PWD")); break;
1627 		CASE_TEST(chdir_dot);         EXPECT_SYSZR(1, chdir(".")); break;
1628 		CASE_TEST(chdir_blah);        EXPECT_SYSER(1, chdir("/blah"), -1, ENOENT); break;
1629 		CASE_TEST(chmod_argv0);       EXPECT_SYSZR(1, chmod(argv0, 0555)); break;
1630 		CASE_TEST(chmod_self);        EXPECT_SYSER(proc, chmod("/proc/self", 0555), -1, EPERM); break;
1631 		CASE_TEST(chown_self);        EXPECT_SYSER(proc, chown("/proc/self", 0, 0), -1, EPERM); break;
1632 		CASE_TEST(chroot_root);       EXPECT_SYSZR(euid0, chroot("/")); break;
1633 		CASE_TEST(chroot_blah);       EXPECT_SYSER(1, chroot("/proc/self/blah"), -1, ENOENT); break;
1634 		CASE_TEST(chroot_exe);        EXPECT_SYSER(1, chroot(argv0), -1, ENOTDIR); break;
1635 		CASE_TEST(clock_nanosleep);   ts.tv_nsec = -1; EXPECT_EQ(1, EINVAL, clock_nanosleep(CLOCK_REALTIME, 0, &ts, NULL)); break;
1636 		CASE_TEST(close_m1);          EXPECT_SYSER(1, close(-1), -1, EBADF); break;
1637 		CASE_TEST(close_dup);         EXPECT_SYSZR(1, close(dup(0))); break;
1638 		CASE_TEST(dup_0);             tmp = dup(0);  EXPECT_SYSNE(1, tmp, -1); close(tmp); break;
1639 		CASE_TEST(dup_m1);            tmp = dup(-1); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break;
1640 		CASE_TEST(dup2_0);            tmp = dup2(0, 100);  EXPECT_SYSNE(1, tmp, -1); close(tmp); break;
1641 		CASE_TEST(dup2_m1);           tmp = dup2(-1, 100); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break;
1642 		CASE_TEST(dup3_0);            tmp = dup3(0, 100, 0);  EXPECT_SYSNE(1, tmp, -1); close(tmp); break;
1643 		CASE_TEST(dup3_m1);           tmp = dup3(-1, 100, 0); EXPECT_SYSER(1, tmp, -1, EBADF); if (tmp != -1) close(tmp); break;
1644 		CASE_TEST(execve_root);       EXPECT_SYSER(1, execve("/", (char*[]){ [0] = (char []){"/"}, [1] = NULL }, NULL), -1, EACCES); break;
1645 		CASE_TEST(fchdir_stdin);      EXPECT_SYSER(1, fchdir(STDIN_FILENO), -1, ENOTDIR); break;
1646 		CASE_TEST(fchdir_badfd);      EXPECT_SYSER(1, fchdir(-1), -1, EBADF); break;
1647 		CASE_TEST(file_stream);       EXPECT_SYSZR(1, test_file_stream()); break;
1648 		CASE_TEST(file_stream_wsr);   EXPECT_SYSZR(1, test_file_stream_wsr()); break;
1649 		CASE_TEST(fork);              EXPECT_SYSZR(1, test_fork(FORK_STANDARD)); break;
1650 		CASE_TEST(ftruncate);         EXPECT_SYSZR(1, test_ftruncate()); break;
1651 		CASE_TEST(getdents64_root);   EXPECT_SYSNE(1, test_getdents64("/"), -1); break;
1652 		CASE_TEST(getdents64_null);   EXPECT_SYSER(1, test_getdents64("/dev/null"), -1, ENOTDIR); break;
1653 		CASE_TEST(directories);       EXPECT_SYSZR(is_nolibc && proc, test_dirent()); break;
1654 		CASE_TEST(getrandom);         EXPECT_SYSZR(1, test_getrandom()); break;
1655 		CASE_TEST(gettimeofday_tv);   EXPECT_SYSZR(1, gettimeofday(&tv, NULL)); break;
1656 		CASE_TEST(gettimeofday_tv_tz);EXPECT_SYSZR(1, gettimeofday(&tv, &tz)); break;
1657 		CASE_TEST(getpagesize);       EXPECT_SYSZR(1, test_getpagesize()); break;
1658 		CASE_TEST(ioctl_tiocinq);     EXPECT_SYSZR(1, ioctl(0, TIOCINQ, &tmp)); break;
1659 		CASE_TEST(link_root1);        EXPECT_SYSER(1, link("/", "/"), -1, EEXIST); break;
1660 		CASE_TEST(link_blah);         EXPECT_SYSER(1, link("/proc/self/blah", "/blah"), -1, ENOENT); break;
1661 		CASE_TEST(link_dir);          EXPECT_SYSER(euid0, link("/", "/blah"), -1, EPERM); break;
1662 		CASE_TEST(link_cross);        EXPECT_SYSER(proc, link("/proc/self/cmdline", "/blah"), -1, EXDEV); break;
1663 		CASE_TEST(lseek_m1);          EXPECT_SYSER(1, lseek(-1, 0, SEEK_SET), -1, EBADF); break;
1664 		CASE_TEST(lseek_0);           EXPECT_SYSER(1, lseek(0, 0, SEEK_SET), -1, ESPIPE); break;
1665 		CASE_TEST(mkdir_root);        EXPECT_SYSER(1, mkdir("/", 0755), -1, EEXIST); break;
1666 		CASE_TEST(mmap_bad);          EXPECT_PTRER(1, mmap(NULL, 0, PROT_READ, MAP_PRIVATE, 0, 0), MAP_FAILED, EINVAL); break;
1667 		CASE_TEST(munmap_bad);        EXPECT_SYSER(1, munmap(NULL, 0), -1, EINVAL); break;
1668 		CASE_TEST(mmap_munmap_good);  EXPECT_SYSZR(1, test_mmap_munmap()); break;
1669 		CASE_TEST(nanosleep);         ts.tv_nsec = -1; EXPECT_SYSER(1, nanosleep(&ts, NULL), -1, EINVAL); break;
1670 		CASE_TEST(nolibc_enosys);     EXPECT_ZR(is_nolibc, test_nolibc_enosys()); break;
1671 		CASE_TEST(open_tty);          EXPECT_SYSNE(1, tmp = open("/dev/null", O_RDONLY), -1); if (tmp != -1) close(tmp); break;
1672 		CASE_TEST(open_blah);         EXPECT_SYSER(1, tmp = open("/proc/self/blah", O_RDONLY), -1, ENOENT); if (tmp != -1) close(tmp); break;
1673 		CASE_TEST(openat_dir);        EXPECT_SYSZR(1, test_openat()); break;
1674 		CASE_TEST(open_mode);         EXPECT_SYSZR(1, test_open_mode()); break;
1675 		CASE_TEST(pipe);              EXPECT_SYSZR(1, test_pipe()); break;
1676 		CASE_TEST(poll_null);         EXPECT_SYSZR(1, poll(NULL, 0, 0)); break;
1677 		CASE_TEST(poll_stdout);       EXPECT_SYSNE(1, ({ struct pollfd fds = { 1, POLLOUT, 0}; poll(&fds, 1, 0); }), -1); break;
1678 		CASE_TEST(poll_fault);        EXPECT_SYSER(1, poll(NULL, 1, 0), -1, EFAULT); break;
1679 		CASE_TEST(prctl);             EXPECT_SYSER(1, prctl(PR_SET_NAME, (unsigned long)NULL, 0, 0, 0), -1, EFAULT); break;
1680 		CASE_TEST(read_badf);         EXPECT_SYSER(1, read(-1, &tmp, 1), -1, EBADF); break;
1681 		CASE_TEST(rlimit);            EXPECT_SYSZR(1, test_rlimit()); break;
1682 		CASE_TEST(rmdir_blah);        EXPECT_SYSER(1, rmdir("/blah"), -1, ENOENT); break;
1683 		CASE_TEST(sched_yield);       EXPECT_SYSZR(1, sched_yield()); break;
1684 		CASE_TEST(select_null);       EXPECT_SYSZR(1, ({ struct timeval tv = { 0 }; select(0, NULL, NULL, NULL, &tv); })); break;
1685 		CASE_TEST(select_stdout);     EXPECT_SYSNE(1, ({ fd_set fds; FD_ZERO(&fds); FD_SET(1, &fds); select(2, NULL, &fds, NULL, NULL); }), -1); break;
1686 		CASE_TEST(select_fault);      EXPECT_SYSER(1, select(1, (void *)1, NULL, NULL, 0), -1, EFAULT); break;
1687 		CASE_TEST(stat_blah);         EXPECT_SYSER(1, stat("/proc/self/blah", &stat_buf), -1, ENOENT); break;
1688 		CASE_TEST(stat_fault);        EXPECT_SYSER(1, stat(NULL, &stat_buf), -1, EFAULT); break;
1689 		CASE_TEST(stat_rdev);         EXPECT_SYSZR(1, ({ int ret = stat("/dev/null", &stat_buf); ret ?: stat_buf.st_rdev != makedev(1, 3); })); break;
1690 		CASE_TEST(stat_timestamps);   EXPECT_SYSZR(1, test_stat_timestamps()); break;
1691 		CASE_TEST(symlink_root);      EXPECT_SYSER(1, symlink("/", "/"), -1, EEXIST); break;
1692 		CASE_TEST(timer);             EXPECT_SYSZR(1, test_timer()); break;
1693 		CASE_TEST(timerfd);           EXPECT_SYSZR(1, test_timerfd()); break;
1694 		CASE_TEST(uname);             EXPECT_SYSZR(proc, test_uname()); break;
1695 		CASE_TEST(uname_fault);       EXPECT_SYSER(1, uname(NULL), -1, EFAULT); break;
1696 		CASE_TEST(unlink_root);       EXPECT_SYSER(1, unlink("/"), -1, EISDIR); break;
1697 		CASE_TEST(unlink_blah);       EXPECT_SYSER(1, unlink("/proc/self/blah"), -1, ENOENT); break;
1698 		CASE_TEST(vfork);             EXPECT_SYSZR(1, test_fork(FORK_VFORK)); break;
1699 		CASE_TEST(wait_child);        EXPECT_SYSER(1, wait(&tmp), -1, ECHILD); break;
1700 		CASE_TEST(waitpid_min);       EXPECT_SYSER(1, waitpid(INT_MIN, &tmp, WNOHANG), -1, ESRCH); break;
1701 		CASE_TEST(waitpid_child);     EXPECT_SYSER(1, waitpid(getpid(), &tmp, WNOHANG), -1, ECHILD); break;
1702 		CASE_TEST(write_badf);        EXPECT_SYSER(1, write(-1, &tmp, 1), -1, EBADF); break;
1703 		CASE_TEST(write_zero);        EXPECT_SYSZR(1, write(1, &tmp, 0)); break;
1704 		CASE_TEST(readv_badf);        EXPECT_SYSER(1, readv(-1, &iov_one, 1), -1, EBADF); break;
1705 		CASE_TEST(readv_zero);        EXPECT_SYSZR(1, readv(0, NULL, 0)); break;
1706 		CASE_TEST(writev_badf);       EXPECT_SYSER(1, writev(-1, &iov_one, 1), -1, EBADF); break;
1707 		CASE_TEST(writev_zero);       EXPECT_SYSZR(1, writev(1, NULL, 0)); break;
1708 		CASE_TEST(ptrace);            tmp = ptrace(PTRACE_CONT, getpid(), NULL, NULL); EXPECT_SYSER(tmp != -1 && errno != ENOSYS, tmp, -1, EFAULT); break;
1709 		CASE_TEST(syscall_noargs);    EXPECT_SYSEQ(1, syscall(__NR_getpid), getpid()); break;
1710 		CASE_TEST(syscall_args);      EXPECT_SYSER(1, syscall(__NR_statx, 0, NULL, 0, 0, NULL), -1, EFAULT); break;
1711 		CASE_TEST(_syscall_noargs);   EXPECT_SYSEQ(is_nolibc, _syscall(__NR_getpid), getpid()); break;
1712 		CASE_TEST(_syscall_args);     EXPECT_SYSEQ(is_nolibc, _syscall(__NR_statx, 0, NULL, 0, 0, NULL), -EFAULT); break;
1713 		CASE_TEST(namespace);         EXPECT_SYSZR(euid0 && proc, test_namespace()); break;
1714 		CASE_TEST(largefile);         EXPECT_SYSZR(1, test_large_file()); break;
1715 		case __LINE__:
1716 			return ret; /* must be last */
1717 		/* note: do not set any defaults so as to permit holes above */
1718 		}
1719 	}
1720 	return ret;
1721 }
1722 
1723 int test_alloca(void)
1724 {
1725 	uint64_t *x;
1726 
1727 	x = alloca(sizeof(*x));
1728 
1729 	*x = 0x1234;
1730 	__asm__ ("" : "+r" (x));
1731 
1732 	return *x - 0x1234;
1733 }
1734 
1735 int test_difftime(void)
1736 {
1737 	if (difftime(200., 100.) != 100.)
1738 		return 1;
1739 
1740 	if (difftime(100., 200.) != -100.)
1741 		return 1;
1742 
1743 	return 0;
1744 }
1745 
1746 int test_time_types(void)
1747 {
1748 #ifdef NOLIBC
1749 	struct __kernel_timespec kts;
1750 	struct timespec ts;
1751 
1752 	if (!__builtin_types_compatible_p(time_t, __kernel_time64_t))
1753 		return 1;
1754 
1755 	if (sizeof(ts) != sizeof(kts))
1756 		return 1;
1757 
1758 	if (!__builtin_types_compatible_p(__typeof__(ts.tv_sec), __typeof__(kts.tv_sec)))
1759 		return 1;
1760 
1761 	if (!__builtin_types_compatible_p(__typeof__(ts.tv_nsec), __typeof__(kts.tv_nsec)))
1762 		return 1;
1763 
1764 	if (offsetof(__typeof__(ts), tv_sec) != offsetof(__typeof__(kts), tv_sec))
1765 		return 1;
1766 
1767 	if (offsetof(__typeof__(ts), tv_nsec) != offsetof(__typeof__(kts), tv_nsec))
1768 		return 1;
1769 #endif /* NOLIBC */
1770 
1771 	return 0;
1772 }
1773 
1774 int test_malloc(void)
1775 {
1776 	size_t sz_array1, sz_array2, sz_array3;
1777 	int *array1, *array2, *array3;
1778 	int pagesize = getpagesize();
1779 	size_t idx;
1780 
1781 	if (pagesize < 0)
1782 		return 1;
1783 
1784 	/* Dependent on the page size, as that is the granularity of our allocator. */
1785 	sz_array1 = pagesize / 2;
1786 	array1 = malloc(sz_array1 * sizeof(*array1));
1787 	if (!array1)
1788 		return 2;
1789 
1790 	for (idx = 0; idx < sz_array1; idx++)
1791 		array1[idx] = idx;
1792 
1793 	sz_array2 = pagesize * 2;
1794 	array2 = calloc(sz_array2, sizeof(*array2));
1795 	if (!array2) {
1796 		free(array1);
1797 		return 3;
1798 	}
1799 
1800 	for (idx = 0; idx < sz_array2; idx++) {
1801 		if (array2[idx] != 0) {
1802 			free(array2);
1803 			return 4;
1804 		}
1805 		array2[idx] = idx + sz_array1;
1806 	}
1807 
1808 	/* Resize array1 into array3 and append array2 at the end. */
1809 	sz_array3 = sz_array1 + sz_array2;
1810 	array3 = realloc(array1, sz_array3 * sizeof(*array3));
1811 	if (!array3) {
1812 		free(array2);
1813 		free(array1);
1814 		return 5;
1815 	}
1816 	memcpy(array3 + sz_array1, array2, sizeof(*array2) * sz_array2);
1817 	free(array2);
1818 
1819 	/* The contents must be contiguous now. */
1820 	for (idx = 0; idx < sz_array3; idx++)
1821 		if (array3[idx] != (int)idx)
1822 			return 6;
1823 
1824 	free(array3);
1825 	return 0;
1826 }
1827 
1828 int run_stdlib(int min, int max)
1829 {
1830 	int test;
1831 	int ret = 0;
1832 
1833 	for (test = min; test >= 0 && test <= max; test++) {
1834 		int llen = 0; /* line length */
1835 
1836 		/* For functions that take a long buffer, like strlcat()
1837 		 * Add some more chars after the \0, to test functions that overwrite the buffer set
1838 		 * the \0 at the exact right position.
1839 		 */
1840 		char buf[11] = "test123456";
1841 		buf[4] = '\0';
1842 
1843 
1844 		/* avoid leaving empty lines below, this will insert holes into
1845 		 * test numbers.
1846 		 */
1847 		switch (test + __LINE__ + 1) {
1848 		CASE_TEST(getenv_TERM);        EXPECT_STRNZ(1, getenv("TERM")); break;
1849 		CASE_TEST(getenv_blah);        EXPECT_STRZR(1, getenv("blah")); break;
1850 		CASE_TEST(setcmp_blah_blah);   EXPECT_EQ(1, strcmp("blah", "blah"), 0); break;
1851 		CASE_TEST(setcmp_blah_blah2);  EXPECT_NE(1, strcmp("blah", "blah2"), 0); break;
1852 		CASE_TEST(setncmp_blah_blah);  EXPECT_EQ(1, strncmp("blah", "blah", 10), 0); break;
1853 		CASE_TEST(setncmp_blah_blah4); EXPECT_EQ(1, strncmp("blah", "blah4", 4), 0); break;
1854 		CASE_TEST(setncmp_blah_blah5); EXPECT_NE(1, strncmp("blah", "blah5", 5), 0); break;
1855 		CASE_TEST(setncmp_blah_blah6); EXPECT_NE(1, strncmp("blah", "blah6", 6), 0); break;
1856 		CASE_TEST(strchr_foobar_o);    EXPECT_STREQ(1, strchr("foobar", 'o'), "oobar"); break;
1857 		CASE_TEST(strchr_foobar_z);    EXPECT_STRZR(1, strchr("foobar", 'z')); break;
1858 		CASE_TEST(strrchr_foobar_o);   EXPECT_STREQ(1, strrchr("foobar", 'o'), "obar"); break;
1859 		CASE_TEST(strrchr_foobar_z);   EXPECT_STRZR(1, strrchr("foobar", 'z')); break;
1860 		CASE_TEST(strlcat_0);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 0), buf, 3, "test"); break;
1861 		CASE_TEST(strlcat_1);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 1), buf, 4, "test"); break;
1862 		CASE_TEST(strlcat_5);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 5), buf, 7, "test"); break;
1863 		CASE_TEST(strlcat_6);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 6), buf, 7, "testb"); break;
1864 		CASE_TEST(strlcat_7);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 7), buf, 7, "testba"); break;
1865 		CASE_TEST(strlcat_8);          EXPECT_STRBUFEQ(is_nolibc, strlcat(buf, "bar", 8), buf, 7, "testbar"); break;
1866 		CASE_TEST(strlcpy_0);          EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 0), buf, 3, "test"); break;
1867 		CASE_TEST(strlcpy_1);          EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 1), buf, 3, ""); break;
1868 		CASE_TEST(strlcpy_2);          EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 2), buf, 3, "b"); break;
1869 		CASE_TEST(strlcpy_3);          EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 3), buf, 3, "ba"); break;
1870 		CASE_TEST(strlcpy_4);          EXPECT_STRBUFEQ(is_nolibc, strlcpy(buf, "bar", 4), buf, 3, "bar"); break;
1871 		CASE_TEST(strstr_foobar_foo);  EXPECT_STREQ(1, strstr("foobar", "foo"), "foobar"); break;
1872 		CASE_TEST(strstr_foobar_bar);  EXPECT_STREQ(1, strstr("foobar", "bar"), "bar"); break;
1873 		CASE_TEST(strstr_foobar_baz);  EXPECT_PTREQ(1, strstr("foobar", "baz"), NULL); break;
1874 		CASE_TEST(memcmp_20_20);       EXPECT_EQ(1, memcmp("aaa\x20", "aaa\x20", 4), 0); break;
1875 		CASE_TEST(memcmp_20_60);       EXPECT_LT(1, memcmp("aaa\x20", "aaa\x60", 4), 0); break;
1876 		CASE_TEST(memcmp_60_20);       EXPECT_GT(1, memcmp("aaa\x60", "aaa\x20", 4), 0); break;
1877 		CASE_TEST(memcmp_20_e0);       EXPECT_LT(1, memcmp("aaa\x20", "aaa\xe0", 4), 0); break;
1878 		CASE_TEST(memcmp_e0_20);       EXPECT_GT(1, memcmp("aaa\xe0", "aaa\x20", 4), 0); break;
1879 		CASE_TEST(memcmp_80_e0);       EXPECT_LT(1, memcmp("aaa\x80", "aaa\xe0", 4), 0); break;
1880 		CASE_TEST(memcmp_e0_80);       EXPECT_GT(1, memcmp("aaa\xe0", "aaa\x80", 4), 0); break;
1881 		CASE_TEST(limit_int8_max);          EXPECT_EQ(1, INT8_MAX,         (int8_t)          0x7f); break;
1882 		CASE_TEST(limit_int8_min);          EXPECT_EQ(1, INT8_MIN,         (int8_t)          0x80); break;
1883 		CASE_TEST(limit_uint8_max);         EXPECT_EQ(1, UINT8_MAX,        (uint8_t)         0xff); break;
1884 		CASE_TEST(limit_int16_max);         EXPECT_EQ(1, INT16_MAX,        (int16_t)         0x7fff); break;
1885 		CASE_TEST(limit_int16_min);         EXPECT_EQ(1, INT16_MIN,        (int16_t)         0x8000); break;
1886 		CASE_TEST(limit_uint16_max);        EXPECT_EQ(1, UINT16_MAX,       (uint16_t)        0xffff); break;
1887 		CASE_TEST(limit_int32_max);         EXPECT_EQ(1, INT32_MAX,        (int32_t)         0x7fffffff); break;
1888 		CASE_TEST(limit_int32_min);         EXPECT_EQ(1, INT32_MIN,        (int32_t)         0x80000000); break;
1889 		CASE_TEST(limit_uint32_max);        EXPECT_EQ(1, UINT32_MAX,       (uint32_t)        0xffffffff); break;
1890 		CASE_TEST(limit_int64_max);         EXPECT_EQ(1, INT64_MAX,        (int64_t)         0x7fffffffffffffff); break;
1891 		CASE_TEST(limit_int64_min);         EXPECT_EQ(1, INT64_MIN,        (int64_t)         0x8000000000000000); break;
1892 		CASE_TEST(limit_uint64_max);        EXPECT_EQ(1, UINT64_MAX,       (uint64_t)        0xffffffffffffffff); break;
1893 		CASE_TEST(limit_int_least8_max);    EXPECT_EQ(1, INT_LEAST8_MAX,   (int_least8_t)    0x7f); break;
1894 		CASE_TEST(limit_int_least8_min);    EXPECT_EQ(1, INT_LEAST8_MIN,   (int_least8_t)    0x80); break;
1895 		CASE_TEST(limit_uint_least8_max);   EXPECT_EQ(1, UINT_LEAST8_MAX,  (uint_least8_t)   0xff); break;
1896 		CASE_TEST(limit_int_least16_max);   EXPECT_EQ(1, INT_LEAST16_MAX,  (int_least16_t)   0x7fff); break;
1897 		CASE_TEST(limit_int_least16_min);   EXPECT_EQ(1, INT_LEAST16_MIN,  (int_least16_t)   0x8000); break;
1898 		CASE_TEST(limit_uint_least16_max);  EXPECT_EQ(1, UINT_LEAST16_MAX, (uint_least16_t)  0xffff); break;
1899 		CASE_TEST(limit_int_least32_max);   EXPECT_EQ(1, INT_LEAST32_MAX,  (int_least32_t)   0x7fffffff); break;
1900 		CASE_TEST(limit_int_least32_min);   EXPECT_EQ(1, INT_LEAST32_MIN,  (int_least32_t)   0x80000000); break;
1901 		CASE_TEST(limit_uint_least32_max);  EXPECT_EQ(1, UINT_LEAST32_MAX, (uint_least32_t)  0xffffffffU); break;
1902 		CASE_TEST(limit_int_least64_min);   EXPECT_EQ(1, INT_LEAST64_MIN,  (int_least64_t)   0x8000000000000000LL); break;
1903 		CASE_TEST(limit_int_least64_max);   EXPECT_EQ(1, INT_LEAST64_MAX,  (int_least64_t)   0x7fffffffffffffffLL); break;
1904 		CASE_TEST(limit_uint_least64_max);  EXPECT_EQ(1, UINT_LEAST64_MAX, (uint_least64_t)  0xffffffffffffffffULL); break;
1905 		CASE_TEST(limit_int_fast8_max);     EXPECT_EQ(1, INT_FAST8_MAX,    (int_fast8_t)     0x7f); break;
1906 		CASE_TEST(limit_int_fast8_min);     EXPECT_EQ(1, INT_FAST8_MIN,    (int_fast8_t)     0x80); break;
1907 		CASE_TEST(limit_uint_fast8_max);    EXPECT_EQ(1, UINT_FAST8_MAX,   (uint_fast8_t)    0xff); break;
1908 		CASE_TEST(limit_int_fast16_min);    EXPECT_EQ(1, INT_FAST16_MIN,   (int_fast16_t)    SINT_MIN_OF_TYPE(int_fast16_t)); break;
1909 		CASE_TEST(limit_int_fast16_max);    EXPECT_EQ(1, INT_FAST16_MAX,   (int_fast16_t)    SINT_MAX_OF_TYPE(int_fast16_t)); break;
1910 		CASE_TEST(limit_uint_fast16_max);   EXPECT_EQ(1, UINT_FAST16_MAX,  (uint_fast16_t)   UINTPTR_MAX); break;
1911 		CASE_TEST(limit_int_fast32_min);    EXPECT_EQ(1, INT_FAST32_MIN,   (int_fast32_t)    SINT_MIN_OF_TYPE(int_fast32_t)); break;
1912 		CASE_TEST(limit_int_fast32_max);    EXPECT_EQ(1, INT_FAST32_MAX,   (int_fast32_t)    SINT_MAX_OF_TYPE(int_fast32_t)); break;
1913 		CASE_TEST(limit_uint_fast32_max);   EXPECT_EQ(1, UINT_FAST32_MAX,  (uint_fast32_t)   UINTPTR_MAX); break;
1914 		CASE_TEST(limit_int_fast64_min);    EXPECT_EQ(1, INT_FAST64_MIN,   (int_fast64_t)    INT64_MIN); break;
1915 		CASE_TEST(limit_int_fast64_max);    EXPECT_EQ(1, INT_FAST64_MAX,   (int_fast64_t)    INT64_MAX); break;
1916 		CASE_TEST(limit_uint_fast64_max);   EXPECT_EQ(1, UINT_FAST64_MAX,  (uint_fast64_t)   UINT64_MAX); break;
1917 		CASE_TEST(sizeof_long_sane);        EXPECT_EQ(1, sizeof(long) == 8 || sizeof(long) == 4, 1); break;
1918 		CASE_TEST(limit_intptr_min);        EXPECT_EQ(1, INTPTR_MIN,  sizeof(long) == 8 ? (intptr_t)  0x8000000000000000LL  : (intptr_t)  0x80000000); break;
1919 		CASE_TEST(limit_intptr_max);        EXPECT_EQ(1, INTPTR_MAX,  sizeof(long) == 8 ? (intptr_t)  0x7fffffffffffffffLL  : (intptr_t)  0x7fffffff); break;
1920 		CASE_TEST(limit_uintptr_max);       EXPECT_EQ(1, UINTPTR_MAX, sizeof(long) == 8 ? (uintptr_t) 0xffffffffffffffffULL : (uintptr_t) 0xffffffffU); break;
1921 		CASE_TEST(limit_ptrdiff_min);       EXPECT_EQ(1, PTRDIFF_MIN, sizeof(long) == 8 ? (ptrdiff_t) 0x8000000000000000LL  : (ptrdiff_t) 0x80000000); break;
1922 		CASE_TEST(limit_ptrdiff_max);       EXPECT_EQ(1, PTRDIFF_MAX, sizeof(long) == 8 ? (ptrdiff_t) 0x7fffffffffffffffLL  : (ptrdiff_t) 0x7fffffff); break;
1923 		CASE_TEST(limit_size_max);          EXPECT_EQ(1, SIZE_MAX,    sizeof(long) == 8 ? (size_t)    0xffffffffffffffffULL : (size_t)    0xffffffffU); break;
1924 		CASE_TEST(strtol_simple);           EXPECT_STRTOX(1, strtol, "35", 10, 35, -1, 0); break;
1925 		CASE_TEST(strtol_positive);         EXPECT_STRTOX(1, strtol, "+35", 10, 35, -1, 0); break;
1926 		CASE_TEST(strtol_negative);         EXPECT_STRTOX(1, strtol, "-35", 10, -35, -1, 0); break;
1927 		CASE_TEST(strtol_hex_auto);         EXPECT_STRTOX(1, strtol, "0xFF", 0, 255, -1, 0); break;
1928 		CASE_TEST(strtol_base36);           EXPECT_STRTOX(1, strtol, "12yZ", 36, 50507, -1, 0); break;
1929 		CASE_TEST(strtol_cutoff);           EXPECT_STRTOX(1, strtol, "1234567890", 8, 342391, 7, 0); break;
1930 		CASE_TEST(strtol_octal_auto);       EXPECT_STRTOX(1, strtol, "011", 0, 9, -1, 0); break;
1931 		CASE_TEST(strtol_hex_00);           EXPECT_STRTOX(1, strtol, "0x00", 16, 0, -1, 0); break;
1932 		CASE_TEST(strtol_hex_FF);           EXPECT_STRTOX(1, strtol, "FF", 16, 255, -1, 0); break;
1933 		CASE_TEST(strtol_hex_ff);           EXPECT_STRTOX(1, strtol, "ff", 16, 255, -1, 0); break;
1934 		CASE_TEST(strtol_hex_prefix);       EXPECT_STRTOX(1, strtol, "0xFF", 16, 255, -1, 0); break;
1935 		CASE_TEST(strtol_trailer);          EXPECT_STRTOX(1, strtol, "35foo", 10, 35, 2, 0); break;
1936 		CASE_TEST(strtol_overflow);         EXPECT_STRTOX(1, strtol, "0x8000000000000000", 16, LONG_MAX, -1, ERANGE); break;
1937 		CASE_TEST(strtol_underflow);        EXPECT_STRTOX(1, strtol, "-0x8000000000000001", 16, LONG_MIN, -1, ERANGE); break;
1938 		CASE_TEST(strtoul_negative);        EXPECT_STRTOX(1, strtoul, "-0x1", 16, ULONG_MAX, 4, 0); break;
1939 		CASE_TEST(strtoul_overflow);        EXPECT_STRTOX(1, strtoul, "0x10000000000000000", 16, ULONG_MAX, -1, ERANGE); break;
1940 		CASE_TEST(strerror_success);        EXPECT_STREQ(is_nolibc, strerror(0), "errno=0"); break;
1941 		CASE_TEST(strerror_EINVAL);         EXPECT_STREQ(is_nolibc, strerror(EINVAL), "errno=22"); break;
1942 		CASE_TEST(strerror_int_max);        EXPECT_STREQ(is_nolibc, strerror(INT_MAX), "errno=2147483647"); break;
1943 		CASE_TEST(strerror_int_min);        EXPECT_STREQ(is_nolibc, strerror(INT_MIN), "errno=-2147483648"); break;
1944 		CASE_TEST(tolower);                 EXPECT_EQ(1, tolower('A'), 'a'); break;
1945 		CASE_TEST(tolower_noop);            EXPECT_EQ(1, tolower('a'), 'a'); break;
1946 		CASE_TEST(toupper);                 EXPECT_EQ(1, toupper('a'), 'A'); break;
1947 		CASE_TEST(toupper_noop);            EXPECT_EQ(1, toupper('A'), 'A'); break;
1948 		CASE_TEST(abs);                     EXPECT_EQ(1, abs(-10), 10); break;
1949 		CASE_TEST(abs_noop);                EXPECT_EQ(1, abs(10), 10); break;
1950 		CASE_TEST(alloca);                  EXPECT_ZR(1, test_alloca()); break;
1951 		CASE_TEST(difftime);                EXPECT_ZR(1, test_difftime()); break;
1952 		CASE_TEST(memchr_foobar6_o);        EXPECT_STREQ(1, memchr("foobar", 'o', 6), "oobar"); break;
1953 		CASE_TEST(memchr_foobar3_b);        EXPECT_STRZR(1, memchr("foobar", 'b', 3)); break;
1954 		CASE_TEST(time_types);              EXPECT_ZR(is_nolibc, test_time_types()); break;
1955 		CASE_TEST(makedev);                 EXPECT_EQ(1, makedev(0x12, 0x34), 0x1234); break;
1956 		CASE_TEST(major);                   EXPECT_EQ(1, major(0x1234), 0x12); break;
1957 		CASE_TEST(minor);                   EXPECT_EQ(1, minor(0x1234), 0x34); break;
1958 		CASE_TEST(makedev_big);             EXPECT_EQ(1, makedev(0x11223344, 0x55667788), 0x1122355667734488); break;
1959 		CASE_TEST(major_big);               EXPECT_EQ(1, major(0x1122355667734488), 0x11223344); break;
1960 		CASE_TEST(minor_big);               EXPECT_EQ(1, minor(0x1122355667734488), 0x55667788); break;
1961 		CASE_TEST(malloc);                  EXPECT_ZR(1, test_malloc()); break;
1962 		CASE_TEST(bswap_16);                EXPECT_EQ(1, bswap_16(0x0123), 0x2301); break;
1963 		CASE_TEST(bswap_32);                EXPECT_EQ(1, bswap_32(0x01234567), 0x67452301); break;
1964 		CASE_TEST(bswap_64);                EXPECT_EQ(1, bswap_64(0x0123456789abcdef), 0xefcdab8967452301); break;
1965 		CASE_TEST(htobe16);                 EXPECT_EQ(1, htobe16(is_le ? 0x0123 : 0x2301), 0x2301); break;
1966 		CASE_TEST(htole16);                 EXPECT_EQ(1, htole16(is_le ? 0x0123 : 0x2301), 0x0123); break;
1967 		CASE_TEST(htobe32);                 EXPECT_EQ(1, htobe32(is_le ? 0x01234567 : 0x67452301), 0x67452301); break;
1968 		CASE_TEST(htole32);                 EXPECT_EQ(1, htole32(is_le ? 0x01234567 : 0x67452301), 0x01234567); break;
1969 		CASE_TEST(htobe64);                 EXPECT_EQ(1, htobe64(is_le ? 0x0123456789000000 : 0x8967452301), 0x8967452301); break;
1970 		CASE_TEST(htole64);                 EXPECT_EQ(1, htole64(is_le ? 0x0123456789 : 0x8967452301000000), 0x0123456789); break;
1971 
1972 		case __LINE__:
1973 			return ret; /* must be last */
1974 		/* note: do not set any defaults so as to permit holes above */
1975 		}
1976 	}
1977 	return ret;
1978 }
1979 
1980 #define EXPECT_VFPRINTF(cond, expected, fmt, ...)				\
1981 	do { if (!(cond)) result(llen, SKIPPED); else ret += expect_vfprintf(llen, expected, fmt, ##__VA_ARGS__); } while (0)
1982 
1983 #define VFPRINTF_LEN 25
1984 static int expect_vfprintf(int llen, const char *expected, const char *fmt, ...)
1985 {
1986 	char buf[VFPRINTF_LEN + 80];
1987 	unsigned int cmp_len;
1988 	va_list args;
1989 	ssize_t written, expected_len;
1990 
1991 	/* Fill and terminate buf[] to check for overlong/absent writes */
1992 	memset(buf, 0xa5, sizeof(buf) - 1);
1993 	buf[sizeof(buf) - 1] = 0;
1994 
1995 	va_start(args, fmt);
1996 	/* Limit buffer length to test truncation */
1997 	written = vsnprintf(buf, VFPRINTF_LEN + 1, fmt, args);
1998 	va_end(args);
1999 
2000 	llen += printf(" \"%s\"", buf);
2001 
2002 	expected_len = strlen(expected);
2003 	if (expected_len > VFPRINTF_LEN) {
2004 		/* Indicate truncated in test output */
2005 		llen += printf("+");
2006 		cmp_len = VFPRINTF_LEN;
2007 	} else {
2008 		cmp_len = expected_len;
2009 	}
2010 
2011 	if (memcmp(expected, buf, cmp_len) || buf[cmp_len]) {
2012 		llen += printf(" should be \"%.*s\"", VFPRINTF_LEN, expected);
2013 		result(llen, FAIL);
2014 		return 1;
2015 	}
2016 
2017 	if (written != expected_len) {
2018 		llen += printf(" written(%d) != %d", (int)written, (int)expected_len);
2019 		result(llen, FAIL);
2020 		return 1;
2021 	}
2022 
2023 	/* Check for any overwrites after the actual data. */
2024 	while (++cmp_len < sizeof(buf) - 1) {
2025 		if ((unsigned char)buf[cmp_len] != 0xa5) {
2026 			llen += printf(" overwrote buf[%d] with 0x%x", cmp_len, buf[cmp_len]);
2027 			result(llen, FAIL);
2028 			return 1;
2029 		}
2030 	}
2031 
2032 	result(llen, OK);
2033 	return 0;
2034 }
2035 
2036 static int test_scanf(void)
2037 {
2038 	unsigned long long ull;
2039 	unsigned long ul;
2040 	unsigned int u;
2041 	long long ll;
2042 	long l;
2043 	void *p;
2044 	int i;
2045 
2046 	/* return __LINE__ to point to the specific failure */
2047 
2048 	/* test EOF */
2049 	if (sscanf("", "foo") != EOF)
2050 		return __LINE__;
2051 
2052 	/* test simple literal without placeholder */
2053 	if (sscanf("foo", "foo") != 0)
2054 		return __LINE__;
2055 
2056 	/* test single placeholder */
2057 	if (sscanf("123", "%d", &i) != 1)
2058 		return __LINE__;
2059 
2060 	if (i != 123)
2061 		return __LINE__;
2062 
2063 	/* test multiple place holders and separators */
2064 	if (sscanf("a123b456c0x90", "a%db%uc%p", &i, &u, &p) != 3)
2065 		return __LINE__;
2066 
2067 	if (i != 123)
2068 		return __LINE__;
2069 
2070 	if (u != 456)
2071 		return __LINE__;
2072 
2073 	if (p != (void *)0x90)
2074 		return __LINE__;
2075 
2076 	/* test space handling */
2077 	if (sscanf("a    b1", "a b%d", &i) != 1)
2078 		return __LINE__;
2079 
2080 	if (i != 1)
2081 		return __LINE__;
2082 
2083 	/* test literal percent */
2084 	if (sscanf("a%1", "a%%%d", &i) != 1)
2085 		return __LINE__;
2086 
2087 	if (i != 1)
2088 		return __LINE__;
2089 
2090 	/* test stdint.h types */
2091 	if (sscanf("1|2|3|4|5|6",
2092 		   "%d|%ld|%lld|%u|%lu|%llu",
2093 		   &i, &l, &ll, &u, &ul, &ull) != 6)
2094 		return __LINE__;
2095 
2096 	if (i != 1 || l != 2 || ll != 3 ||
2097 	    u != 4 || ul != 5 || ull != 6)
2098 		return __LINE__;
2099 
2100 	return 0;
2101 }
2102 
2103 static int test_printf_error(void)
2104 {
2105 	int fd, ret, saved_errno;
2106 
2107 	fd = open("/dev/full", O_RDWR);
2108 	if (fd == -1)
2109 		return 1;
2110 
2111 	errno = 0;
2112 	ret = dprintf(fd, "foo");
2113 	saved_errno = errno;
2114 	close(fd);
2115 
2116 	if (ret != -1)
2117 		return 2;
2118 
2119 	if (saved_errno != ENOSPC)
2120 		return 3;
2121 
2122 	return 0;
2123 }
2124 
2125 int test_asprintf(void)
2126 {
2127 	char *str;
2128 	int ret;
2129 
2130 	ret = asprintf(&str, "foo%s", "bar");
2131 	if (ret == -1)
2132 		return 1;
2133 
2134 	if (ret != 6) {
2135 		free(str);
2136 		return 2;
2137 	}
2138 
2139 	if (memcmp(str, "foobar", 6) != 0) {
2140 		free(str);
2141 		return 3;
2142 	}
2143 
2144 	free(str);
2145 	return 0;
2146 }
2147 
2148 static int run_printf(int min, int max)
2149 {
2150 	int test;
2151 	int ret = 0;
2152 
2153 	for (test = min; test >= 0 && test <= max; test++) {
2154 		int llen = 0; /* line length */
2155 
2156 		/* avoid leaving empty lines below, this will insert holes into
2157 		 * test numbers.
2158 		 */
2159 		switch (test + __LINE__ + 1) {
2160 		CASE_TEST(empty);        EXPECT_VFPRINTF(1, "", ""); break;
2161 		CASE_TEST(simple);       EXPECT_VFPRINTF(1, "foo", "foo"); break;
2162 		CASE_TEST(string);       EXPECT_VFPRINTF(1, "foo", "%s", "foo"); break;
2163 		CASE_TEST(number);       EXPECT_VFPRINTF(1, "1234", "%d", 1234); break;
2164 		CASE_TEST(negnumber);    EXPECT_VFPRINTF(1, "-1234", "%d", -1234); break;
2165 		CASE_TEST(num_sign);     EXPECT_VFPRINTF(1, "| 1|+2|+3|+4|5|", "|% d|%+d|% +d|%+ d|%#d|", 1, 2, 3, 4, 5); break;
2166 		CASE_TEST(unsigned);     EXPECT_VFPRINTF(1, "12345", "%u", 12345); break;
2167 		CASE_TEST(signed_max);   EXPECT_VFPRINTF(1, "2147483647", "%i", ~0u >> 1); break;
2168 		CASE_TEST(signed_min);   EXPECT_VFPRINTF(1, "-2147483648", "%i", (~0u >> 1) + 1); break;
2169 		CASE_TEST(unsigned_max); EXPECT_VFPRINTF(1, "4294967295", "%u", ~0u); break;
2170 		CASE_TEST(char);         EXPECT_VFPRINTF(1, "|c|d|   e|", "|%c|%.0c|%4c|", 'c', 'd', 'e'); break;
2171 		CASE_TEST(octal);        EXPECT_VFPRINTF(1, "|17|  0033||", "|%o|%6.4o|%.0o|", 017, 033, 0); break;
2172 		CASE_TEST(octal_max);    EXPECT_VFPRINTF(1, "1777777777777777777777", "%llo", ~0ULL); break;
2173 		CASE_TEST(octal_alt);    EXPECT_VFPRINTF(1, "|0|01|02|034|0|0|", "|%#o|%#o|%#02o|%#02o|%#.0o|%0-#o|", 0, 1, 2, 034, 0, 0); break;
2174 		CASE_TEST(hex_nolibc);   EXPECT_VFPRINTF(is_nolibc, "|f|d|", "|%x|%X|", 0xf, 0xd); break;
2175 		CASE_TEST(hex_libc);     EXPECT_VFPRINTF(!is_nolibc, "|f|D|", "|%x|%X|", 0xf, 0xd); break;
2176 		CASE_TEST(hex_alt);      EXPECT_VFPRINTF(1, "|0x1|  0x2|    0|", "|%#x|%#5x|%#5x|", 1, 2, 0); break;
2177 		CASE_TEST(hex_alt_prec); EXPECT_VFPRINTF(1, "| 0x02|0x03| 0x123|", "|%#5.2x|%#04x|%#6.2x|", 2, 3, 0x123); break;
2178 		CASE_TEST(hex_0_alt);    EXPECT_VFPRINTF(1, "|0|0000|   00|", "|%#x|%#04x|%#5.2x|", 0, 0, 0); break;
2179 		CASE_TEST(pointer);      EXPECT_VFPRINTF(1, "0x1", "%p", (void *) 0x1); break;
2180 		CASE_TEST(pointer_NULL); EXPECT_VFPRINTF(is_nolibc || is_glibc, "|(nil)|(nil)|", "|%p|%.4p|", (void *)0, (void *)0); break;
2181 		CASE_TEST(string_NULL);  EXPECT_VFPRINTF(is_nolibc || is_glibc, "|(null)||(null)|", "|%s|%.5s|%.6s|", (void *)0, (void *)0, (void *)0); break;
2182 		CASE_TEST(percent);      EXPECT_VFPRINTF(1, "a%d42%69%", "a%%d%d%%%d%%", 42, 69); break;
2183 		CASE_TEST(perc_qual);    EXPECT_VFPRINTF(is_nolibc || is_glibc, "a%d2", "a%-14l%d%d", 2); break;
2184 		CASE_TEST(invalid);      EXPECT_VFPRINTF(is_nolibc || is_glibc, "a%12yx3%y42%P", "a%12yx%d%y%d%P", 3, 42); break;
2185 		CASE_TEST(intmax_max);   EXPECT_VFPRINTF(1, "9223372036854775807", "%lld", ~0ULL >> 1); break;
2186 		CASE_TEST(intmax_min);   EXPECT_VFPRINTF(is_nolibc || is_glibc, "-9223372036854775808", "%Li", (~0ULL >> 1) + 1); break;
2187 		CASE_TEST(uintmax_max);  EXPECT_VFPRINTF(1, "18446744073709551615", "%ju", ~0ULL); break;
2188 		CASE_TEST(truncation);   EXPECT_VFPRINTF(1, "012345678901234567890123456789", "%s", "012345678901234567890123456789"); break;
2189 		CASE_TEST(string_width); EXPECT_VFPRINTF(1, "         1", "%10s", "1"); break;
2190 		CASE_TEST(string_trunc); EXPECT_VFPRINTF(1, "     12345", "%10.5s", "1234567890"); break;
2191 		CASE_TEST(string_var);   EXPECT_VFPRINTF(1, "| ab|ef | ij|kl |", "|%*.*s|%*.*s|%*.*s|%*.*s|", 3, 2, "abcd", -3, 2, "efgh", 3, -1, "ij", -3, -1, "kl"); break;
2192 		CASE_TEST(number_width); EXPECT_VFPRINTF(1, "         1", "%10d", 1); break;
2193 		CASE_TEST(number_left);  EXPECT_VFPRINTF(1, "|-5      |", "|%-8d|", -5); break;
2194 		CASE_TEST(string_align); EXPECT_VFPRINTF(1, "|foo     |", "|%-8s|", "foo"); break;
2195 		CASE_TEST(width_trunc);  EXPECT_VFPRINTF(1, "                             1", "%30d", 1); break;
2196 		CASE_TEST(width_tr_lft); EXPECT_VFPRINTF(1, "1                             ", "%-30d", 1); break;
2197 		CASE_TEST(number_pad);   EXPECT_VFPRINTF(1, "0000000005", "%010d", 5); break;
2198 		CASE_TEST(number_pad);   EXPECT_VFPRINTF(1, "|0000000005|0x1234|", "|%010d|%#01x|", 5, 0x1234); break;
2199 		CASE_TEST(num_pad_neg);  EXPECT_VFPRINTF(1, "-000000005", "%010d", -5); break;
2200 		CASE_TEST(num_pad_hex);  EXPECT_VFPRINTF(1, "00fffffffb", "%010x", -5); break;
2201 		CASE_TEST(num_pad_trunc);EXPECT_VFPRINTF(is_nolibc, "    0000000000000000000000000000005", "%035d", 5); break;  /* max 31 '0' can be added */
2202 		CASE_TEST(num_p_tr_libc);EXPECT_VFPRINTF(!is_nolibc, "00000000000000000000000000000000005", "%035d", 5); break;
2203 		CASE_TEST(number_prec);  EXPECT_VFPRINTF(1, "     00005", "%10.5d", 5); break;
2204 		CASE_TEST(num_prec_neg); EXPECT_VFPRINTF(1, "    -00005", "%10.5d", -5); break;
2205 		CASE_TEST(number_var);   EXPECT_VFPRINTF(1, "|    -00005|5 |", "|%*.*d|%*.*d|", 10, 5, -5, -2, -10, 5); break;
2206 		CASE_TEST(num_0_prec_0); EXPECT_VFPRINTF(1, "|| |+||||", "|%.0d|% .0d|%+.0d|%.0u|%.0x|%#.0x|", 0, 0, 0, 0, 0, 0); break;
2207 		CASE_TEST(errno);        errno = 22; EXPECT_VFPRINTF(is_nolibc, "errno=22", "%m"); break;
2208 		CASE_TEST(errno-neg);    errno = -22; EXPECT_VFPRINTF(is_nolibc, "errno=-22   ", "%-12m"); break;
2209 		CASE_TEST(scanf);        EXPECT_ZR(1, test_scanf()); break;
2210 		CASE_TEST(printf_error); EXPECT_ZR(1, test_printf_error()); break;
2211 		CASE_TEST(asprintf);     EXPECT_ZR(1, test_asprintf()); break;
2212 		case __LINE__:
2213 			return ret; /* must be last */
2214 		/* note: do not set any defaults so as to permit holes above */
2215 		}
2216 	}
2217 	return ret;
2218 }
2219 
2220 __attribute__((no_sanitize("undefined")))
2221 static int smash_stack(void)
2222 {
2223 	char buf[100];
2224 	volatile char *ptr = buf;
2225 	size_t i;
2226 
2227 	for (i = 0; i < 200; i++)
2228 		ptr[i] = 'P';
2229 
2230 	return 1;
2231 }
2232 
2233 static int run_protection(int min __attribute__((unused)),
2234 			  int max __attribute__((unused)))
2235 {
2236 	pid_t pid;
2237 	int llen = 0, status;
2238 	struct rlimit rlimit = { 0, 0 };
2239 
2240 	llen += printf("0 -fstackprotector ");
2241 
2242 #if !defined(_NOLIBC_STACKPROTECTOR)
2243 	llen += printf("not supported");
2244 	result(llen, SKIPPED);
2245 	return 0;
2246 #endif
2247 
2248 #if defined(_NOLIBC_STACKPROTECTOR)
2249 	if (!__stack_chk_guard) {
2250 		llen += printf("__stack_chk_guard not initialized");
2251 		result(llen, FAIL);
2252 		return 1;
2253 	}
2254 #endif
2255 
2256 	pid = -1;
2257 	pid = fork();
2258 
2259 	switch (pid) {
2260 	case -1:
2261 		llen += printf("fork()");
2262 		result(llen, FAIL);
2263 		return 1;
2264 
2265 	case 0:
2266 		close(STDOUT_FILENO);
2267 		close(STDERR_FILENO);
2268 
2269 		prctl(PR_SET_DUMPABLE, 0, 0, 0, 0);
2270 		setrlimit(RLIMIT_CORE, &rlimit);
2271 		smash_stack();
2272 		return 1;
2273 
2274 	default:
2275 		pid = waitpid(pid, &status, 0);
2276 
2277 		if (pid == -1 || !WIFSIGNALED(status) || WTERMSIG(status) != SIGABRT) {
2278 			llen += printf("waitpid()");
2279 			result(llen, FAIL);
2280 			return 1;
2281 		}
2282 		result(llen, OK);
2283 		return 0;
2284 	}
2285 }
2286 
2287 /* prepare what needs to be prepared for pid 1 (stdio, /dev, /proc, etc) */
2288 int prepare(void)
2289 {
2290 	struct stat stat_buf;
2291 
2292 	/* It's possible that /dev doesn't even exist or was not mounted, so
2293 	 * we'll try to create it, mount it, or create minimal entries into it.
2294 	 * We want at least /dev/null and /dev/console.
2295 	 */
2296 	if (stat("/dev/.", &stat_buf) == 0 || mkdir("/dev", 0755) == 0) {
2297 		if (stat("/dev/console", &stat_buf) != 0 ||
2298 		    stat("/dev/null", &stat_buf) != 0 ||
2299 		    stat("/dev/zero", &stat_buf) != 0 ||
2300 		    stat("/dev/full", &stat_buf) != 0) {
2301 			/* try devtmpfs first, otherwise fall back to manual creation */
2302 			if (mount("/dev", "/dev", "devtmpfs", 0, 0) != 0) {
2303 				mknod("/dev/console", 0600 | S_IFCHR, makedev(5, 1));
2304 				mknod("/dev/null",    0666 | S_IFCHR, makedev(1, 3));
2305 				mknod("/dev/zero",    0666 | S_IFCHR, makedev(1, 5));
2306 				mknod("/dev/full",    0666 | S_IFCHR, makedev(1, 7));
2307 			}
2308 		}
2309 	}
2310 
2311 	/* If no /dev/console was found before calling init, stdio is closed so
2312 	 * we need to reopen it from /dev/console. If it failed above, it will
2313 	 * still fail here and we cannot emit a message anyway.
2314 	 */
2315 	if (close(dup(1)) == -1) {
2316 		int fd = open("/dev/console", O_RDWR);
2317 
2318 		if (fd >= 0) {
2319 			if (fd != 0)
2320 				dup2(fd, 0);
2321 			if (fd != 1)
2322 				dup2(fd, 1);
2323 			if (fd != 2)
2324 				dup2(fd, 2);
2325 			if (fd > 2)
2326 				close(fd);
2327 			puts("\nSuccessfully reopened /dev/console.");
2328 		}
2329 	}
2330 
2331 	/* try to mount /proc if not mounted. Silently fail otherwise */
2332 	if (stat("/proc/.", &stat_buf) == 0 || mkdir("/proc", 0755) == 0) {
2333 		if (stat("/proc/self", &stat_buf) != 0) {
2334 			/* If not mountable, remove /proc completely to avoid misuse */
2335 			if (mount("none", "/proc", "proc", 0, 0) != 0)
2336 				rmdir("/proc");
2337 		}
2338 	}
2339 
2340 	/* some tests rely on a writable /tmp */
2341 	mkdir("/tmp", 0755);
2342 
2343 	return 0;
2344 }
2345 
2346 /* This is the definition of known test names, with their functions */
2347 static const struct test test_names[] = {
2348 	/* add new tests here */
2349 	{ .name = "startup",    .func = run_startup    },
2350 	{ .name = "syscall",    .func = run_syscall    },
2351 	{ .name = "stdlib",     .func = run_stdlib     },
2352 	{ .name = "printf",     .func = run_printf     },
2353 	{ .name = "protection", .func = run_protection },
2354 	{ 0 }
2355 };
2356 
2357 static int is_setting_valid(char *test)
2358 {
2359 	int idx, len, test_len, valid = 0;
2360 	char delimiter;
2361 
2362 	if (!test)
2363 		return valid;
2364 
2365 	test_len = strlen(test);
2366 
2367 	for (idx = 0; test_names[idx].name; idx++) {
2368 		len = strlen(test_names[idx].name);
2369 		if (test_len < len)
2370 			continue;
2371 
2372 		if (strncmp(test, test_names[idx].name, len) != 0)
2373 			continue;
2374 
2375 		delimiter = test[len];
2376 		if (delimiter != ':' && delimiter != ',' && delimiter != '\0')
2377 			continue;
2378 
2379 		valid = 1;
2380 		break;
2381 	}
2382 
2383 	return valid;
2384 }
2385 
2386 int main(int argc, char **argv, char **envp)
2387 {
2388 	int min = 0;
2389 	int max = INT_MAX;
2390 	int ret = 0;
2391 	int err;
2392 	int idx;
2393 	char *test;
2394 
2395 	argv0 = argv[0];
2396 	test_argc = argc;
2397 	test_argv = argv;
2398 	test_envp = envp;
2399 
2400 	/* when called as init, it's possible that no console was opened, for
2401 	 * example if no /dev file system was provided. We'll check that fd#1
2402 	 * was opened, and if not we'll attempt to create and open /dev/console
2403 	 * and /dev/null that we'll use for later tests.
2404 	 */
2405 	if (getpid() == 1)
2406 		prepare();
2407 
2408 	/* the definition of a series of tests comes from either argv[1] or the
2409 	 * "NOLIBC_TEST" environment variable. It's made of a comma-delimited
2410 	 * series of test names and optional ranges:
2411 	 *    syscall:5-15[:.*],stdlib:8-10
2412 	 */
2413 	test = argv[1];
2414 	if (!is_setting_valid(test))
2415 		test = getenv("NOLIBC_TEST");
2416 
2417 	if (is_setting_valid(test)) {
2418 		char *comma, *colon, *dash, *value;
2419 
2420 		do {
2421 			comma = strchr(test, ',');
2422 			if (comma)
2423 				*(comma++) = '\0';
2424 
2425 			colon = strchr(test, ':');
2426 			if (colon)
2427 				*(colon++) = '\0';
2428 
2429 			for (idx = 0; test_names[idx].name; idx++) {
2430 				if (strcmp(test, test_names[idx].name) == 0)
2431 					break;
2432 			}
2433 
2434 			if (test_names[idx].name) {
2435 				/* The test was named, it will be called at least
2436 				 * once. We may have an optional range at <colon>
2437 				 * here, which defaults to the full range.
2438 				 */
2439 				do {
2440 					min = 0; max = INT_MAX;
2441 					value = colon;
2442 					if (value && *value) {
2443 						colon = strchr(value, ':');
2444 						if (colon)
2445 							*(colon++) = '\0';
2446 
2447 						dash = strchr(value, '-');
2448 						if (dash)
2449 							*(dash++) = '\0';
2450 
2451 						/* support :val: :min-max: :min-: :-max: */
2452 						if (*value)
2453 							min = atoi(value);
2454 						if (!dash)
2455 							max = min;
2456 						else if (*dash)
2457 							max = atoi(dash);
2458 
2459 						value = colon;
2460 					}
2461 
2462 					/* now's time to call the test */
2463 					printf("Running test '%s'\n", test_names[idx].name);
2464 					err = test_names[idx].func(min, max);
2465 					ret += err;
2466 					printf("Errors during this test: %d\n\n", err);
2467 				} while (colon && *colon);
2468 			} else
2469 				printf("Ignoring unknown test name '%s'\n", test);
2470 
2471 			test = comma;
2472 		} while (test && *test);
2473 	} else {
2474 		/* no test mentioned, run everything */
2475 		for (idx = 0; test_names[idx].name; idx++) {
2476 			printf("Running test '%s'\n", test_names[idx].name);
2477 			err = test_names[idx].func(min, max);
2478 			ret += err;
2479 			printf("Errors during this test: %d\n\n", err);
2480 		}
2481 	}
2482 
2483 	printf("Total number of errors: %d\n", ret);
2484 
2485 	if (getpid() == 1) {
2486 		/* we're running as init, there's no other process on the
2487 		 * system, thus likely started from a VM for a quick check.
2488 		 * Exiting will provoke a kernel panic that may be reported
2489 		 * as an error by Qemu or the hypervisor, while stopping
2490 		 * cleanly will often be reported as a success. This allows
2491 		 * to use the output of this program for bisecting kernels.
2492 		 */
2493 		printf("Leaving init with final status: %d\n", !!ret);
2494 		if (ret == 0)
2495 			reboot(RB_POWER_OFF);
2496 #if defined(__x86_64__)
2497 		/* QEMU started with "-device isa-debug-exit -no-reboot" will
2498 		 * exit with status code 2N+1 when N is written to 0x501. We
2499 		 * hard-code the syscall here as it's arch-dependent.
2500 		 */
2501 		else if (syscall(__NR_ioperm, 0x501, 1, 1) == 0)
2502 			__asm__ volatile ("outb %%al, %%dx" :: "d"(0x501), "a"(0));
2503 		/* if it does nothing, fall back to the regular panic */
2504 #endif
2505 	}
2506 
2507 	printf("Exiting with status %d\n", !!ret);
2508 	return !!ret;
2509 }
2510