blob: 8847c4cd0a8721ebdfbecb6f958fd99595895e54 [file] [log] [blame]
Tom Rini10e47792018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Simon Glasscd0684f2011-10-03 19:26:44 +00002/*
3 * Copyright (c) 2011 The Chromium OS Authors.
Simon Glasscd0684f2011-10-03 19:26:44 +00004 */
5
Heinrich Schuchardt28eb5092020-11-12 00:29:56 +01006#define _GNU_SOURCE
7
Simon Glassf1c45c82012-12-26 09:53:34 +00008#include <dirent.h>
Simon Glasse8015a62012-01-10 15:54:05 -08009#include <errno.h>
Simon Glasscd0684f2011-10-03 19:26:44 +000010#include <fcntl.h>
Andrew Scull2b40f802022-05-30 10:00:11 +000011#include <pthread.h>
Simon Glass8a3e0352012-02-15 15:51:16 -080012#include <getopt.h>
Simon Glass5dccd152018-05-16 09:42:22 -060013#include <setjmp.h>
Rasmus Villemoes2b72ad22020-02-14 10:58:37 +000014#include <signal.h>
Heinrich Schuchardtbb63ea82022-04-04 22:45:03 +020015#include <stdarg.h>
Simon Glassf1c45c82012-12-26 09:53:34 +000016#include <stdio.h>
Simon Glassfb4b4e82013-05-19 16:45:35 -070017#include <stdint.h>
Simon Glasscd0684f2011-10-03 19:26:44 +000018#include <stdlib.h>
Simon Glassf1c45c82012-12-26 09:53:34 +000019#include <string.h>
Mike Frysingera5baaee2011-10-26 00:21:29 +000020#include <termios.h>
Matthias Weisser0d3dd142011-11-29 12:16:40 +010021#include <time.h>
Heinrich Schuchardt28eb5092020-11-12 00:29:56 +010022#include <ucontext.h>
Simon Glasse8015a62012-01-10 15:54:05 -080023#include <unistd.h>
Matthias Weisserb5f7b472011-11-05 11:40:34 +010024#include <sys/mman.h>
Simon Glasse8015a62012-01-10 15:54:05 -080025#include <sys/stat.h>
Simon Glass17064c02012-01-10 15:54:06 -080026#include <sys/time.h>
Simon Glasse8015a62012-01-10 15:54:05 -080027#include <sys/types.h>
Heinrich Schuchardt28eb5092020-11-12 00:29:56 +010028#include <linux/compiler_attributes.h>
Matthias Weisser0d3dd142011-11-29 12:16:40 +010029#include <linux/types.h>
Simon Glasscd0684f2011-10-03 19:26:44 +000030
Andrew Scull2b40f802022-05-30 10:00:11 +000031#include <asm/fuzzing_engine.h>
Simon Glass8a3e0352012-02-15 15:51:16 -080032#include <asm/getopt.h>
Andrew Scullca5d1372022-05-30 10:00:10 +000033#include <asm/main.h>
Simon Glass8a3e0352012-02-15 15:51:16 -080034#include <asm/sections.h>
35#include <asm/state.h>
Simon Glasscd0684f2011-10-03 19:26:44 +000036#include <os.h>
Simon Glass504548f2015-04-20 12:37:22 -060037#include <rtc_def.h>
Simon Glasscd0684f2011-10-03 19:26:44 +000038
Heinrich Schuchardtc0d1a002020-12-30 18:07:48 +010039/* Environment variable for time offset */
40#define ENV_TIME_OFFSET "UBOOT_SB_TIME_OFFSET"
41
Simon Glasscd0684f2011-10-03 19:26:44 +000042/* Operating System Interface */
43
Simon Glass1e6594c2013-11-10 10:26:57 -070044struct os_mem_hdr {
45 size_t length; /* number of bytes in the block */
46};
47
Simon Glasscd0684f2011-10-03 19:26:44 +000048ssize_t os_read(int fd, void *buf, size_t count)
49{
50 return read(fd, buf, count);
51}
52
53ssize_t os_write(int fd, const void *buf, size_t count)
54{
55 return write(fd, buf, count);
56}
57
Heinrich Schuchardtbb63ea82022-04-04 22:45:03 +020058int os_printf(const char *fmt, ...)
59{
60 va_list args;
61 int i;
62
63 va_start(args, fmt);
64 i = vfprintf(stdout, fmt, args);
65 va_end(args);
66
67 return i;
68}
69
Mike Frysinger60addac2011-10-25 13:02:58 +020070off_t os_lseek(int fd, off_t offset, int whence)
71{
72 if (whence == OS_SEEK_SET)
73 whence = SEEK_SET;
74 else if (whence == OS_SEEK_CUR)
75 whence = SEEK_CUR;
76 else if (whence == OS_SEEK_END)
77 whence = SEEK_END;
78 else
79 os_exit(1);
80 return lseek(fd, offset, whence);
81}
82
Simon Glass3196d752012-02-20 23:56:58 -050083int os_open(const char *pathname, int os_flags)
Simon Glasscd0684f2011-10-03 19:26:44 +000084{
Simon Glass3196d752012-02-20 23:56:58 -050085 int flags;
86
87 switch (os_flags & OS_O_MASK) {
88 case OS_O_RDONLY:
89 default:
90 flags = O_RDONLY;
91 break;
92
93 case OS_O_WRONLY:
94 flags = O_WRONLY;
95 break;
96
97 case OS_O_RDWR:
98 flags = O_RDWR;
99 break;
100 }
101
102 if (os_flags & OS_O_CREAT)
103 flags |= O_CREAT;
Simon Glassce55a112018-10-01 11:55:07 -0600104 if (os_flags & OS_O_TRUNC)
105 flags |= O_TRUNC;
Heinrich Schuchardtfc96df62020-10-27 20:29:24 +0100106 /*
107 * During a cold reset execv() is used to relaunch the U-Boot binary.
108 * We must ensure that all files are closed in this case.
109 */
110 flags |= O_CLOEXEC;
Simon Glass3196d752012-02-20 23:56:58 -0500111
112 return open(pathname, flags, 0777);
Simon Glasscd0684f2011-10-03 19:26:44 +0000113}
114
115int os_close(int fd)
116{
Heinrich Schuchardt69db2ee2020-10-27 20:29:21 +0100117 /* Do not close the console input */
118 if (fd)
119 return close(fd);
120 return -1;
Simon Glasscd0684f2011-10-03 19:26:44 +0000121}
122
Stephen Warrencd5edba2014-03-01 22:18:00 -0700123int os_unlink(const char *pathname)
124{
125 return unlink(pathname);
126}
127
Simon Glasscd0684f2011-10-03 19:26:44 +0000128void os_exit(int exit_code)
129{
130 exit(exit_code);
131}
Mike Frysingera5baaee2011-10-26 00:21:29 +0000132
Rasmus Villemoesae400f32022-09-27 11:54:04 +0200133unsigned int os_alarm(unsigned int seconds)
134{
135 return alarm(seconds);
136}
137
138void os_set_alarm_handler(void (*handler)(int))
139{
140 if (!handler)
141 handler = SIG_DFL;
142 signal(SIGALRM, handler);
143}
144
145void os_raise_sigalrm(void)
146{
147 raise(SIGALRM);
148}
149
Simon Glass8d176d82018-11-06 15:21:25 -0700150int os_write_file(const char *fname, const void *buf, int size)
Simon Glasscbfa8452018-10-01 11:55:08 -0600151{
Simon Glasscbfa8452018-10-01 11:55:08 -0600152 int fd;
153
154 fd = os_open(fname, OS_O_WRONLY | OS_O_CREAT | OS_O_TRUNC);
155 if (fd < 0) {
156 printf("Cannot open file '%s'\n", fname);
157 return -EIO;
158 }
159 if (os_write(fd, buf, size) != size) {
160 printf("Cannot write to file '%s'\n", fname);
Simon Glass8d176d82018-11-06 15:21:25 -0700161 os_close(fd);
Simon Glasscbfa8452018-10-01 11:55:08 -0600162 return -EIO;
163 }
164 os_close(fd);
Simon Glasscbfa8452018-10-01 11:55:08 -0600165
166 return 0;
167}
168
Heinrich Schuchardt6db1b652023-04-05 11:34:15 +0200169off_t os_filesize(int fd)
Simon Glass7b9cf84f2021-08-18 21:40:30 -0600170{
171 off_t size;
172
173 size = os_lseek(fd, 0, OS_SEEK_END);
174 if (size < 0)
175 return -errno;
176 if (os_lseek(fd, 0, OS_SEEK_SET) < 0)
177 return -errno;
178
179 return size;
180}
181
Simon Glass8d176d82018-11-06 15:21:25 -0700182int os_read_file(const char *fname, void **bufp, int *sizep)
183{
184 off_t size;
185 int ret = -EIO;
186 int fd;
187
188 fd = os_open(fname, OS_O_RDONLY);
189 if (fd < 0) {
190 printf("Cannot open file '%s'\n", fname);
191 goto err;
192 }
Simon Glass7b9cf84f2021-08-18 21:40:30 -0600193 size = os_filesize(fd);
Simon Glass8d176d82018-11-06 15:21:25 -0700194 if (size < 0) {
Simon Glass7b9cf84f2021-08-18 21:40:30 -0600195 printf("Cannot get file size of '%s'\n", fname);
Simon Glass8d176d82018-11-06 15:21:25 -0700196 goto err;
197 }
Simon Glass7b9cf84f2021-08-18 21:40:30 -0600198
Simon Glassedd094e2021-02-06 09:57:33 -0700199 *bufp = os_malloc(size);
Simon Glass8d176d82018-11-06 15:21:25 -0700200 if (!*bufp) {
201 printf("Not enough memory to read file '%s'\n", fname);
202 ret = -ENOMEM;
203 goto err;
204 }
205 if (os_read(fd, *bufp, size) != size) {
206 printf("Cannot read from file '%s'\n", fname);
207 goto err;
208 }
209 os_close(fd);
210 *sizep = size;
211
212 return 0;
213err:
214 os_close(fd);
215 return ret;
216}
217
Simon Glasse4c25c82021-08-18 21:40:31 -0600218int os_map_file(const char *pathname, int os_flags, void **bufp, int *sizep)
219{
220 void *ptr;
Heinrich Schuchardt6db1b652023-04-05 11:34:15 +0200221 off_t size;
Simon Glasse4c25c82021-08-18 21:40:31 -0600222 int ifd;
223
224 ifd = os_open(pathname, os_flags);
225 if (ifd < 0) {
226 printf("Cannot open file '%s'\n", pathname);
227 return -EIO;
228 }
229 size = os_filesize(ifd);
230 if (size < 0) {
231 printf("Cannot get file size of '%s'\n", pathname);
232 return -EIO;
233 }
Heinrich Schuchardt6db1b652023-04-05 11:34:15 +0200234 if ((unsigned long long)size > (unsigned long long)SIZE_MAX) {
235 printf("File '%s' too large to map\n", pathname);
236 return -EIO;
237 }
Simon Glasse4c25c82021-08-18 21:40:31 -0600238
239 ptr = mmap(0, size, PROT_READ | PROT_WRITE, MAP_SHARED, ifd, 0);
240 if (ptr == MAP_FAILED) {
241 printf("Can't map file '%s': %s\n", pathname, strerror(errno));
242 return -EPERM;
243 }
244
245 *bufp = ptr;
246 *sizep = size;
247
248 return 0;
249}
250
Simon Glass5c1fd582021-10-23 17:25:58 -0600251int os_unmap(void *buf, int size)
252{
253 if (munmap(buf, size)) {
254 printf("Can't unmap %p %x\n", buf, size);
255 return -EIO;
256 }
257
258 return 0;
259}
260
Simon Glass528a0f62023-08-24 13:55:37 -0600261int os_persistent_file(char *buf, int maxsize, const char *fname)
262{
263 const char *dirname = getenv("U_BOOT_PERSISTENT_DATA_DIR");
264 char *ptr;
265 int len;
266
267 len = strlen(fname) + (dirname ? strlen(dirname) + 1 : 0) + 1;
268 if (len > maxsize)
269 return -ENOSPC;
270
271 ptr = buf;
272 if (dirname) {
273 strcpy(ptr, dirname);
274 ptr += strlen(dirname);
275 *ptr++ = '/';
276 }
277 strcpy(ptr, fname);
278
279 if (access(buf, F_OK) == -1)
280 return -ENOENT;
281
282 return 0;
283}
284
Sean Anderson988996f2023-11-04 16:37:51 -0400285int os_mktemp(char *fname, off_t size)
286{
287 int fd;
288
289 fd = mkostemp(fname, O_CLOEXEC);
290 if (fd < 0)
291 return -errno;
292
293 if (unlink(fname) < 0)
294 return -errno;
295
296 if (ftruncate(fd, size))
297 return -errno;
298
299 return fd;
300}
301
Mike Frysingera5baaee2011-10-26 00:21:29 +0000302/* Restore tty state when we exit */
303static struct termios orig_term;
Simon Glass678ef472014-02-27 13:26:22 -0700304static bool term_setup;
Simon Glassae50ec72018-10-01 11:55:20 -0600305static bool term_nonblock;
Mike Frysingera5baaee2011-10-26 00:21:29 +0000306
Simon Glass9c3b7d62015-05-10 21:07:27 -0600307void os_fd_restore(void)
Mike Frysingera5baaee2011-10-26 00:21:29 +0000308{
Simon Glass9c3b7d62015-05-10 21:07:27 -0600309 if (term_setup) {
Simon Glassae50ec72018-10-01 11:55:20 -0600310 int flags;
311
Simon Glass678ef472014-02-27 13:26:22 -0700312 tcsetattr(0, TCSANOW, &orig_term);
Simon Glassae50ec72018-10-01 11:55:20 -0600313 if (term_nonblock) {
314 flags = fcntl(0, F_GETFL, 0);
315 fcntl(0, F_SETFL, flags & ~O_NONBLOCK);
316 }
Simon Glass9c3b7d62015-05-10 21:07:27 -0600317 term_setup = false;
318 }
Mike Frysingera5baaee2011-10-26 00:21:29 +0000319}
320
Rasmus Villemoes2b72ad22020-02-14 10:58:37 +0000321static void os_sigint_handler(int sig)
322{
323 os_fd_restore();
324 signal(SIGINT, SIG_DFL);
325 raise(SIGINT);
326}
327
Heinrich Schuchardt28eb5092020-11-12 00:29:56 +0100328static void os_signal_handler(int sig, siginfo_t *info, void *con)
329{
330 ucontext_t __maybe_unused *context = con;
331 unsigned long pc;
332
333#if defined(__x86_64__)
334 pc = context->uc_mcontext.gregs[REG_RIP];
335#elif defined(__aarch64__)
336 pc = context->uc_mcontext.pc;
337#elif defined(__riscv)
338 pc = context->uc_mcontext.__gregs[REG_PC];
339#else
340 const char msg[] =
341 "\nUnsupported architecture, cannot read program counter\n";
342
343 os_write(1, msg, sizeof(msg));
344 pc = 0;
345#endif
346
347 os_signal_action(sig, pc);
348}
349
350int os_setup_signal_handlers(void)
351{
352 struct sigaction act;
353
354 act.sa_sigaction = os_signal_handler;
355 sigemptyset(&act.sa_mask);
Heinrich Schuchardtd3741bc2021-07-05 19:43:00 +0200356 act.sa_flags = SA_SIGINFO;
Heinrich Schuchardt28eb5092020-11-12 00:29:56 +0100357 if (sigaction(SIGILL, &act, NULL) ||
358 sigaction(SIGBUS, &act, NULL) ||
359 sigaction(SIGSEGV, &act, NULL))
360 return -1;
361 return 0;
362}
363
Mike Frysingera5baaee2011-10-26 00:21:29 +0000364/* Put tty into raw mode so <tab> and <ctrl+c> work */
Simon Glass678ef472014-02-27 13:26:22 -0700365void os_tty_raw(int fd, bool allow_sigs)
Mike Frysingera5baaee2011-10-26 00:21:29 +0000366{
Mike Frysingera5baaee2011-10-26 00:21:29 +0000367 struct termios term;
Simon Glassae50ec72018-10-01 11:55:20 -0600368 int flags;
Mike Frysingera5baaee2011-10-26 00:21:29 +0000369
Simon Glass678ef472014-02-27 13:26:22 -0700370 if (term_setup)
Mike Frysingera5baaee2011-10-26 00:21:29 +0000371 return;
Mike Frysingera5baaee2011-10-26 00:21:29 +0000372
373 /* If not a tty, don't complain */
374 if (tcgetattr(fd, &orig_term))
375 return;
376
377 term = orig_term;
378 term.c_iflag = IGNBRK | IGNPAR;
379 term.c_oflag = OPOST | ONLCR;
380 term.c_cflag = CS8 | CREAD | CLOCAL;
Simon Glass678ef472014-02-27 13:26:22 -0700381 term.c_lflag = allow_sigs ? ISIG : 0;
Mike Frysingera5baaee2011-10-26 00:21:29 +0000382 if (tcsetattr(fd, TCSANOW, &term))
383 return;
384
Simon Glassae50ec72018-10-01 11:55:20 -0600385 flags = fcntl(fd, F_GETFL, 0);
386 if (!(flags & O_NONBLOCK)) {
387 if (fcntl(fd, F_SETFL, flags | O_NONBLOCK))
388 return;
389 term_nonblock = true;
390 }
391
Simon Glass9c3b7d62015-05-10 21:07:27 -0600392 term_setup = true;
Mike Frysingera5baaee2011-10-26 00:21:29 +0000393 atexit(os_fd_restore);
Rasmus Villemoes2b72ad22020-02-14 10:58:37 +0000394 signal(SIGINT, os_sigint_handler);
Mike Frysingera5baaee2011-10-26 00:21:29 +0000395}
Matthias Weisserb5f7b472011-11-05 11:40:34 +0100396
Simon Glass4c902fa2021-02-06 09:57:32 -0700397/*
398 * Provide our own malloc so we don't use space in the sandbox ram_buf for
399 * allocations that are internal to sandbox, or need to be done before U-Boot's
400 * malloc() is ready.
401 */
Matthias Weisserb5f7b472011-11-05 11:40:34 +0100402void *os_malloc(size_t length)
403{
Simon Glassbe005d82018-09-15 00:50:54 -0600404 int page_size = getpagesize();
Simon Glassfc2dde82019-04-08 13:20:42 -0600405 struct os_mem_hdr *hdr;
Simon Glass1e6594c2013-11-10 10:26:57 -0700406
Simon Glass4c902fa2021-02-06 09:57:32 -0700407 if (!length)
408 return NULL;
Simon Glass57ba9422018-06-17 08:57:43 -0600409 /*
410 * Use an address that is hopefully available to us so that pointers
411 * to this memory are fairly obvious. If we end up with a different
412 * address, that's fine too.
413 */
414 hdr = mmap((void *)0x10000000, length + page_size,
Alexander Graf934a5452018-06-22 14:44:13 +0200415 PROT_READ | PROT_WRITE | PROT_EXEC,
416 MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
Simon Glass1e6594c2013-11-10 10:26:57 -0700417 if (hdr == MAP_FAILED)
418 return NULL;
419 hdr->length = length;
420
Simon Glassbe005d82018-09-15 00:50:54 -0600421 return (void *)hdr + page_size;
Simon Glass1e6594c2013-11-10 10:26:57 -0700422}
423
Masahiro Yamadaee957282014-01-15 13:06:41 +0900424void os_free(void *ptr)
Simon Glass1e6594c2013-11-10 10:26:57 -0700425{
Simon Glassfc2dde82019-04-08 13:20:42 -0600426 int page_size = getpagesize();
427 struct os_mem_hdr *hdr;
Simon Glass1e6594c2013-11-10 10:26:57 -0700428
Simon Glassfc2dde82019-04-08 13:20:42 -0600429 if (ptr) {
430 hdr = ptr - page_size;
431 munmap(hdr, hdr->length + page_size);
432 }
Simon Glass4c902fa2021-02-06 09:57:32 -0700433}
434
435/* These macros are from kernel.h but not accessible in this file */
436#define ALIGN(x, a) __ALIGN_MASK((x), (typeof(x))(a) - 1)
437#define __ALIGN_MASK(x, mask) (((x) + (mask)) & ~(mask))
438
439/*
440 * Provide our own malloc so we don't use space in the sandbox ram_buf for
441 * allocations that are internal to sandbox, or need to be done before U-Boot's
442 * malloc() is ready.
443 */
444void *os_realloc(void *ptr, size_t length)
445{
446 int page_size = getpagesize();
447 struct os_mem_hdr *hdr;
448 void *new_ptr;
449
450 /* Reallocating a NULL pointer is just an alloc */
451 if (!ptr)
452 return os_malloc(length);
453
454 /* Changing a length to 0 is just a free */
455 if (length) {
456 os_free(ptr);
457 return NULL;
458 }
459
460 /*
461 * If the new size is the same number of pages as the old, nothing to
462 * do. There isn't much point in shrinking things
463 */
464 hdr = ptr - page_size;
465 if (ALIGN(length, page_size) <= ALIGN(hdr->length, page_size))
466 return ptr;
467
468 /* We have to grow it, so allocate something new */
469 new_ptr = os_malloc(length);
470 memcpy(new_ptr, ptr, hdr->length);
471 os_free(ptr);
472
473 return new_ptr;
Simon Glass1e6594c2013-11-10 10:26:57 -0700474}
475
Matthias Weisser0d3dd142011-11-29 12:16:40 +0100476void os_usleep(unsigned long usec)
477{
478 usleep(usec);
479}
480
Simon Glassfb4b4e82013-05-19 16:45:35 -0700481uint64_t __attribute__((no_instrument_function)) os_get_nsec(void)
Matthias Weisser0d3dd142011-11-29 12:16:40 +0100482{
483#if defined(CLOCK_MONOTONIC) && defined(_POSIX_MONOTONIC_CLOCK)
484 struct timespec tp;
485 if (EINVAL == clock_gettime(CLOCK_MONOTONIC, &tp)) {
486 struct timeval tv;
487
488 gettimeofday(&tv, NULL);
489 tp.tv_sec = tv.tv_sec;
490 tp.tv_nsec = tv.tv_usec * 1000;
491 }
492 return tp.tv_sec * 1000000000ULL + tp.tv_nsec;
493#else
494 struct timeval tv;
495 gettimeofday(&tv, NULL);
496 return tv.tv_sec * 1000000000ULL + tv.tv_usec * 1000;
497#endif
498}
Simon Glass8a3e0352012-02-15 15:51:16 -0800499
500static char *short_opts;
501static struct option *long_opts;
502
503int os_parse_args(struct sandbox_state *state, int argc, char *argv[])
504{
Marek Behún184c4af2021-05-20 13:24:06 +0200505 struct sandbox_cmdline_option **sb_opt =
506 __u_boot_sandbox_option_start();
Simon Glass8a3e0352012-02-15 15:51:16 -0800507 size_t num_options = __u_boot_sandbox_option_count();
508 size_t i;
509
510 int hidden_short_opt;
511 size_t si;
512
513 int c;
514
515 if (short_opts || long_opts)
516 return 1;
517
518 state->argc = argc;
519 state->argv = argv;
520
521 /* dynamically construct the arguments to the system getopt_long */
Simon Glassedd094e2021-02-06 09:57:33 -0700522 short_opts = os_malloc(sizeof(*short_opts) * num_options * 2 + 1);
523 long_opts = os_malloc(sizeof(*long_opts) * (num_options + 1));
Simon Glass8a3e0352012-02-15 15:51:16 -0800524 if (!short_opts || !long_opts)
525 return 1;
526
527 /*
528 * getopt_long requires "val" to be unique (since that is what the
529 * func returns), so generate unique values automatically for flags
530 * that don't have a short option. pick 0x100 as that is above the
531 * single byte range (where ASCII/ISO-XXXX-X charsets live).
532 */
533 hidden_short_opt = 0x100;
534 si = 0;
535 for (i = 0; i < num_options; ++i) {
536 long_opts[i].name = sb_opt[i]->flag;
537 long_opts[i].has_arg = sb_opt[i]->has_arg ?
538 required_argument : no_argument;
539 long_opts[i].flag = NULL;
540
541 if (sb_opt[i]->flag_short) {
542 short_opts[si++] = long_opts[i].val = sb_opt[i]->flag_short;
543 if (long_opts[i].has_arg == required_argument)
544 short_opts[si++] = ':';
545 } else
546 long_opts[i].val = sb_opt[i]->flag_short = hidden_short_opt++;
547 }
548 short_opts[si] = '\0';
549
550 /* we need to handle output ourselves since u-boot provides printf */
551 opterr = 0;
552
Simon Glass0a4eabb2020-02-03 07:36:04 -0700553 memset(&long_opts[num_options], '\0', sizeof(*long_opts));
Simon Glass8a3e0352012-02-15 15:51:16 -0800554 /*
555 * walk all of the options the user gave us on the command line,
556 * figure out what u-boot option structure they belong to (via
557 * the unique short val key), and call the appropriate callback.
558 */
559 while ((c = getopt_long(argc, argv, short_opts, long_opts, NULL)) != -1) {
560 for (i = 0; i < num_options; ++i) {
561 if (sb_opt[i]->flag_short == c) {
562 if (sb_opt[i]->callback(state, optarg)) {
563 state->parse_err = sb_opt[i]->flag;
564 return 0;
565 }
566 break;
567 }
568 }
569 if (i == num_options) {
570 /*
571 * store the faulting flag for later display. we have to
572 * store the flag itself as the getopt parsing itself is
573 * tricky: need to handle the following flags (assume all
574 * of the below are unknown):
575 * -a optopt='a' optind=<next>
576 * -abbbb optopt='a' optind=<this>
577 * -aaaaa optopt='a' optind=<this>
578 * --a optopt=0 optind=<this>
579 * as you can see, it is impossible to determine the exact
580 * faulting flag without doing the parsing ourselves, so
581 * we just report the specific flag that failed.
582 */
583 if (optopt) {
584 static char parse_err[3] = { '-', 0, '\0', };
585 parse_err[1] = optopt;
586 state->parse_err = parse_err;
587 } else
588 state->parse_err = argv[optind - 1];
589 break;
590 }
591 }
592
593 return 0;
594}
Simon Glassf1c45c82012-12-26 09:53:34 +0000595
596void os_dirent_free(struct os_dirent_node *node)
597{
598 struct os_dirent_node *next;
599
600 while (node) {
601 next = node->next;
Simon Glassedd094e2021-02-06 09:57:33 -0700602 os_free(node);
Simon Glassf1c45c82012-12-26 09:53:34 +0000603 node = next;
604 }
605}
606
607int os_dirent_ls(const char *dirname, struct os_dirent_node **headp)
608{
Stefan Brünsae71ede2016-10-01 20:41:42 +0200609 struct dirent *entry;
Simon Glassf1c45c82012-12-26 09:53:34 +0000610 struct os_dirent_node *head, *node, *next;
611 struct stat buf;
612 DIR *dir;
613 int ret;
614 char *fname;
Heinrich Schuchardtf53b5ea2017-09-21 12:56:07 +0200615 char *old_fname;
Simon Glassf1c45c82012-12-26 09:53:34 +0000616 int len;
Stefan Brünsb2129902016-10-01 20:41:40 +0200617 int dirlen;
Simon Glassf1c45c82012-12-26 09:53:34 +0000618
619 *headp = NULL;
620 dir = opendir(dirname);
621 if (!dir)
622 return -1;
623
Stefan Brünsb2129902016-10-01 20:41:40 +0200624 /* Create a buffer upfront, with typically sufficient size */
625 dirlen = strlen(dirname) + 2;
626 len = dirlen + 256;
Simon Glassedd094e2021-02-06 09:57:33 -0700627 fname = os_malloc(len);
Simon Glassf1c45c82012-12-26 09:53:34 +0000628 if (!fname) {
629 ret = -ENOMEM;
630 goto done;
631 }
632
633 for (node = head = NULL;; node = next) {
Stefan Brünsae71ede2016-10-01 20:41:42 +0200634 errno = 0;
635 entry = readdir(dir);
636 if (!entry) {
637 ret = errno;
Simon Glassf1c45c82012-12-26 09:53:34 +0000638 break;
Stefan Brünsae71ede2016-10-01 20:41:42 +0200639 }
Simon Glassedd094e2021-02-06 09:57:33 -0700640 next = os_malloc(sizeof(*node) + strlen(entry->d_name) + 1);
Heinrich Schuchardtf53b5ea2017-09-21 12:56:07 +0200641 if (!next) {
Simon Glassf1c45c82012-12-26 09:53:34 +0000642 os_dirent_free(head);
643 ret = -ENOMEM;
644 goto done;
645 }
Heinrich Schuchardtf53b5ea2017-09-21 12:56:07 +0200646 if (dirlen + strlen(entry->d_name) > len) {
647 len = dirlen + strlen(entry->d_name);
648 old_fname = fname;
Simon Glassedd094e2021-02-06 09:57:33 -0700649 fname = os_realloc(fname, len);
Heinrich Schuchardtf53b5ea2017-09-21 12:56:07 +0200650 if (!fname) {
Simon Glassedd094e2021-02-06 09:57:33 -0700651 os_free(old_fname);
652 os_free(next);
Heinrich Schuchardtf53b5ea2017-09-21 12:56:07 +0200653 os_dirent_free(head);
654 ret = -ENOMEM;
655 goto done;
656 }
657 }
Stephen Warren9671c672014-06-11 10:26:23 -0600658 next->next = NULL;
Stefan Brünsae71ede2016-10-01 20:41:42 +0200659 strcpy(next->name, entry->d_name);
660 switch (entry->d_type) {
Simon Glassf1c45c82012-12-26 09:53:34 +0000661 case DT_REG:
662 next->type = OS_FILET_REG;
663 break;
664 case DT_DIR:
665 next->type = OS_FILET_DIR;
666 break;
667 case DT_LNK:
668 next->type = OS_FILET_LNK;
669 break;
Stefan Brünsb7ffa822016-10-04 21:46:35 +0200670 default:
671 next->type = OS_FILET_UNKNOWN;
Simon Glassf1c45c82012-12-26 09:53:34 +0000672 }
673 next->size = 0;
674 snprintf(fname, len, "%s/%s", dirname, next->name);
675 if (!stat(fname, &buf))
676 next->size = buf.st_size;
677 if (node)
678 node->next = next;
Stefan Brünsd4cb8882016-10-01 20:41:39 +0200679 else
680 head = next;
Simon Glassf1c45c82012-12-26 09:53:34 +0000681 }
682 *headp = head;
683
684done:
685 closedir(dir);
Simon Glassedd094e2021-02-06 09:57:33 -0700686 os_free(fname);
Simon Glassf1c45c82012-12-26 09:53:34 +0000687 return ret;
688}
689
690const char *os_dirent_typename[OS_FILET_COUNT] = {
691 " ",
692 "SYM",
693 "DIR",
694 "???",
695};
696
697const char *os_dirent_get_typename(enum os_dirent_t type)
698{
Tom Rinib6f605e2017-05-13 20:11:30 -0400699 if (type >= OS_FILET_REG && type < OS_FILET_COUNT)
Simon Glassf1c45c82012-12-26 09:53:34 +0000700 return os_dirent_typename[type];
701
702 return os_dirent_typename[OS_FILET_UNKNOWN];
703}
704
Heinrich Schuchardt011a1e02022-01-11 01:50:24 +0100705/*
706 * For compatibility reasons avoid loff_t here.
707 * U-Boot defines loff_t as long long.
708 * But /usr/include/linux/types.h may not define it at all.
709 * Alpine Linux being one example.
710 */
711int os_get_filesize(const char *fname, long long *size)
Simon Glassf1c45c82012-12-26 09:53:34 +0000712{
713 struct stat buf;
714 int ret;
715
716 ret = stat(fname, &buf);
717 if (ret)
718 return ret;
Suriyan Ramasami378da1032014-11-17 14:39:37 -0800719 *size = buf.st_size;
720 return 0;
Simon Glassf1c45c82012-12-26 09:53:34 +0000721}
Simon Glass3e9fd242013-11-10 10:27:01 -0700722
Simon Glass29d11432017-12-04 13:48:17 -0700723void os_putc(int ch)
724{
Simon Glassd56c6f42022-03-27 14:26:14 -0600725 os_write(1, &ch, 1);
Simon Glass29d11432017-12-04 13:48:17 -0700726}
727
728void os_puts(const char *str)
729{
730 while (*str)
731 os_putc(*str++);
732}
733
Pali Rohár4acd1a02022-09-05 11:31:16 +0200734void os_flush(void)
735{
736 fflush(stdout);
737}
738
Simon Glass9dd10bf2013-11-10 10:27:03 -0700739int os_write_ram_buf(const char *fname)
740{
741 struct sandbox_state *state = state_get_current();
742 int fd, ret;
743
744 fd = open(fname, O_CREAT | O_WRONLY, 0777);
745 if (fd < 0)
746 return -ENOENT;
747 ret = write(fd, state->ram_buf, state->ram_size);
748 close(fd);
749 if (ret != state->ram_size)
750 return -EIO;
751
752 return 0;
753}
754
755int os_read_ram_buf(const char *fname)
756{
757 struct sandbox_state *state = state_get_current();
758 int fd, ret;
Heinrich Schuchardt011a1e02022-01-11 01:50:24 +0100759 long long size;
Simon Glass9dd10bf2013-11-10 10:27:03 -0700760
Suriyan Ramasami378da1032014-11-17 14:39:37 -0800761 ret = os_get_filesize(fname, &size);
762 if (ret < 0)
763 return ret;
Simon Glass9dd10bf2013-11-10 10:27:03 -0700764 if (size != state->ram_size)
765 return -ENOSPC;
766 fd = open(fname, O_RDONLY);
767 if (fd < 0)
768 return -ENOENT;
769
770 ret = read(fd, state->ram_buf, state->ram_size);
771 close(fd);
772 if (ret != state->ram_size)
773 return -EIO;
774
775 return 0;
776}
Simon Glass860b7d92014-02-27 13:26:15 -0700777
778static int make_exec(char *fname, const void *data, int size)
779{
780 int fd;
781
782 strcpy(fname, "/tmp/u-boot.jump.XXXXXX");
783 fd = mkstemp(fname);
784 if (fd < 0)
785 return -ENOENT;
786 if (write(fd, data, size) < 0)
787 return -EIO;
788 close(fd);
789 if (chmod(fname, 0777))
790 return -ENOEXEC;
791
792 return 0;
793}
794
Simon Glass7dafd022018-11-15 18:44:05 -0700795/**
796 * add_args() - Allocate a new argv with the given args
797 *
798 * This is used to create a new argv array with all the old arguments and some
799 * new ones that are passed in
800 *
801 * @argvp: Returns newly allocated args list
802 * @add_args: Arguments to add, each a string
803 * @count: Number of arguments in @add_args
Heinrich Schuchardt47b4c022022-01-19 18:05:50 +0100804 * Return: 0 if OK, -ENOMEM if out of memory
Simon Glass7dafd022018-11-15 18:44:05 -0700805 */
806static int add_args(char ***argvp, char *add_args[], int count)
Simon Glass860b7d92014-02-27 13:26:15 -0700807{
Simon Glass7465f002018-11-15 18:44:07 -0700808 char **argv, **ap;
Simon Glass860b7d92014-02-27 13:26:15 -0700809 int argc;
810
Simon Glass7465f002018-11-15 18:44:07 -0700811 for (argc = 0; (*argvp)[argc]; argc++)
Simon Glass860b7d92014-02-27 13:26:15 -0700812 ;
813
Simon Glassedd094e2021-02-06 09:57:33 -0700814 argv = os_malloc((argc + count + 1) * sizeof(char *));
Simon Glass860b7d92014-02-27 13:26:15 -0700815 if (!argv) {
816 printf("Out of memory for %d argv\n", count);
817 return -ENOMEM;
818 }
Simon Glass7465f002018-11-15 18:44:07 -0700819 for (ap = *argvp, argc = 0; *ap; ap++) {
820 char *arg = *ap;
821
822 /* Drop args that we don't want to propagate */
823 if (*arg == '-' && strlen(arg) == 2) {
824 switch (arg[1]) {
825 case 'j':
826 case 'm':
827 ap++;
828 continue;
829 }
830 } else if (!strcmp(arg, "--rm_memory")) {
Simon Glass7465f002018-11-15 18:44:07 -0700831 continue;
832 }
833 argv[argc++] = arg;
834 }
835
Simon Glass860b7d92014-02-27 13:26:15 -0700836 memcpy(argv + argc, add_args, count * sizeof(char *));
837 argv[argc + count] = NULL;
838
839 *argvp = argv;
840 return 0;
841}
842
Simon Glass7dafd022018-11-15 18:44:05 -0700843/**
844 * os_jump_to_file() - Jump to a new program
845 *
846 * This saves the memory buffer, sets up arguments to the new process, then
847 * execs it.
848 *
849 * @fname: Filename to exec
Heinrich Schuchardt47b4c022022-01-19 18:05:50 +0100850 * Return: does not return on success, any return value is an error
Simon Glass7dafd022018-11-15 18:44:05 -0700851 */
Simon Glassdafc5d72021-03-15 18:11:07 +1300852static int os_jump_to_file(const char *fname, bool delete_it)
Simon Glass860b7d92014-02-27 13:26:15 -0700853{
854 struct sandbox_state *state = state_get_current();
Simon Glass7dafd022018-11-15 18:44:05 -0700855 char mem_fname[30];
Simon Glass860b7d92014-02-27 13:26:15 -0700856 int fd, err;
Simon Glass7dafd022018-11-15 18:44:05 -0700857 char *extra_args[5];
Simon Glass860b7d92014-02-27 13:26:15 -0700858 char **argv = state->argv;
Simon Glass7465f002018-11-15 18:44:07 -0700859 int argc;
Simon Glass860b7d92014-02-27 13:26:15 -0700860#ifdef DEBUG
Simon Glass7dafd022018-11-15 18:44:05 -0700861 int i;
Simon Glass860b7d92014-02-27 13:26:15 -0700862#endif
863
Simon Glass860b7d92014-02-27 13:26:15 -0700864 strcpy(mem_fname, "/tmp/u-boot.mem.XXXXXX");
865 fd = mkstemp(mem_fname);
866 if (fd < 0)
867 return -ENOENT;
868 close(fd);
869 err = os_write_ram_buf(mem_fname);
870 if (err)
871 return err;
872
873 os_fd_restore();
874
Simon Glassdafc5d72021-03-15 18:11:07 +1300875 argc = 0;
876 if (delete_it) {
877 extra_args[argc++] = "-j";
878 extra_args[argc++] = (char *)fname;
879 }
880 extra_args[argc++] = "-m";
881 extra_args[argc++] = mem_fname;
Simon Glass7465f002018-11-15 18:44:07 -0700882 if (state->ram_buf_rm)
883 extra_args[argc++] = "--rm_memory";
884 err = add_args(&argv, extra_args, argc);
Simon Glass860b7d92014-02-27 13:26:15 -0700885 if (err)
886 return err;
Simon Glass7465f002018-11-15 18:44:07 -0700887 argv[0] = (char *)fname;
Simon Glass860b7d92014-02-27 13:26:15 -0700888
889#ifdef DEBUG
890 for (i = 0; argv[i]; i++)
891 printf("%d %s\n", i, argv[i]);
892#endif
893
894 if (state_uninit())
895 os_exit(2);
896
897 err = execv(fname, argv);
Simon Glassedd094e2021-02-06 09:57:33 -0700898 os_free(argv);
Simon Glasscca25522018-11-15 18:44:08 -0700899 if (err) {
900 perror("Unable to run image");
Simon Glass23eabbb2018-11-23 21:29:24 -0700901 printf("Image filename '%s'\n", fname);
Simon Glass860b7d92014-02-27 13:26:15 -0700902 return err;
Simon Glasscca25522018-11-15 18:44:08 -0700903 }
Simon Glass860b7d92014-02-27 13:26:15 -0700904
Simon Glassdafc5d72021-03-15 18:11:07 +1300905 if (delete_it)
906 return unlink(fname);
907
908 return -EFAULT;
Simon Glass860b7d92014-02-27 13:26:15 -0700909}
Simon Glass504548f2015-04-20 12:37:22 -0600910
Simon Glass7dafd022018-11-15 18:44:05 -0700911int os_jump_to_image(const void *dest, int size)
912{
913 char fname[30];
914 int err;
915
916 err = make_exec(fname, dest, size);
917 if (err)
918 return err;
919
Simon Glassdafc5d72021-03-15 18:11:07 +1300920 return os_jump_to_file(fname, true);
Simon Glass7dafd022018-11-15 18:44:05 -0700921}
922
Simon Glass1cd06002021-07-05 16:32:45 -0600923int os_find_u_boot(char *fname, int maxlen, bool use_img,
924 const char *cur_prefix, const char *next_prefix)
Simon Glass2c931ba2016-07-04 11:57:45 -0600925{
926 struct sandbox_state *state = state_get_current();
927 const char *progname = state->argv[0];
928 int len = strlen(progname);
Simon Glass1cd06002021-07-05 16:32:45 -0600929 char subdir[10];
930 char *suffix;
Simon Glass2c931ba2016-07-04 11:57:45 -0600931 char *p;
932 int fd;
933
934 if (len >= maxlen || len < 4)
935 return -ENOSPC;
936
Simon Glass2c931ba2016-07-04 11:57:45 -0600937 strcpy(fname, progname);
Simon Glassdc4d8eb2018-10-01 11:55:10 -0600938 suffix = fname + len - 4;
939
Simon Glass1cd06002021-07-05 16:32:45 -0600940 /* Change the existing suffix to the new one */
941 if (*suffix != '-')
942 return -EINVAL;
Simon Glassdc4d8eb2018-10-01 11:55:10 -0600943
Simon Glass1cd06002021-07-05 16:32:45 -0600944 if (*next_prefix)
945 strcpy(suffix + 1, next_prefix); /* e.g. "-tpl" to "-spl" */
946 else
947 *suffix = '\0'; /* e.g. "-spl" to "" */
948 fd = os_open(fname, O_RDONLY);
949 if (fd >= 0) {
950 close(fd);
951 return 0;
Simon Glassdc4d8eb2018-10-01 11:55:10 -0600952 }
953
Simon Glass1cd06002021-07-05 16:32:45 -0600954 /*
955 * We didn't find it, so try looking for 'u-boot-xxx' in the xxx/
956 * directory. Replace the old dirname with the new one.
957 */
958 snprintf(subdir, sizeof(subdir), "/%s/", cur_prefix);
959 p = strstr(fname, subdir);
Simon Glass2c931ba2016-07-04 11:57:45 -0600960 if (p) {
Simon Glass1cd06002021-07-05 16:32:45 -0600961 if (*next_prefix)
962 /* e.g. ".../tpl/u-boot-spl" to "../spl/u-boot-spl" */
963 memcpy(p + 1, next_prefix, strlen(next_prefix));
964 else
965 /* e.g. ".../spl/u-boot" to ".../u-boot" */
966 strcpy(p, p + 1 + strlen(cur_prefix));
Simon Glassb90e4872021-03-07 17:35:13 -0700967 if (use_img)
968 strcat(p, ".img");
Simon Glass1cd06002021-07-05 16:32:45 -0600969
Simon Glass2c931ba2016-07-04 11:57:45 -0600970 fd = os_open(fname, O_RDONLY);
971 if (fd >= 0) {
972 close(fd);
973 return 0;
974 }
975 }
976
977 return -ENOENT;
978}
979
980int os_spl_to_uboot(const char *fname)
981{
Patrick Delaunay6daf9052020-11-20 09:48:33 +0100982 struct sandbox_state *state = state_get_current();
983
Patrick Delaunay6daf9052020-11-20 09:48:33 +0100984 /* U-Boot will delete ram buffer after read: "--rm_memory"*/
985 state->ram_buf_rm = true;
Simon Glassdafc5d72021-03-15 18:11:07 +1300986
987 return os_jump_to_file(fname, false);
Simon Glass2c931ba2016-07-04 11:57:45 -0600988}
989
Heinrich Schuchardtc0d1a002020-12-30 18:07:48 +0100990long os_get_time_offset(void)
991{
992 const char *offset;
993
994 offset = getenv(ENV_TIME_OFFSET);
995 if (offset)
996 return strtol(offset, NULL, 0);
997 return 0;
998}
999
1000void os_set_time_offset(long offset)
1001{
1002 char buf[21];
1003 int ret;
1004
1005 snprintf(buf, sizeof(buf), "%ld", offset);
1006 ret = setenv(ENV_TIME_OFFSET, buf, true);
1007 if (ret)
1008 printf("Could not set environment variable %s\n",
1009 ENV_TIME_OFFSET);
1010}
1011
Simon Glass504548f2015-04-20 12:37:22 -06001012void os_localtime(struct rtc_time *rt)
1013{
1014 time_t t = time(NULL);
1015 struct tm *tm;
1016
1017 tm = localtime(&t);
1018 rt->tm_sec = tm->tm_sec;
1019 rt->tm_min = tm->tm_min;
1020 rt->tm_hour = tm->tm_hour;
1021 rt->tm_mday = tm->tm_mday;
1022 rt->tm_mon = tm->tm_mon + 1;
1023 rt->tm_year = tm->tm_year + 1900;
1024 rt->tm_wday = tm->tm_wday;
1025 rt->tm_yday = tm->tm_yday;
1026 rt->tm_isdst = tm->tm_isdst;
1027}
Simon Glass5dccd152018-05-16 09:42:22 -06001028
Simon Glassb7255ef2018-09-15 00:50:55 -06001029void os_abort(void)
1030{
1031 abort();
1032}
Simon Glass4e766c22018-10-01 21:12:32 -06001033
1034int os_mprotect_allow(void *start, size_t len)
1035{
1036 int page_size = getpagesize();
1037
1038 /* Move start to the start of a page, len to the end */
1039 start = (void *)(((ulong)start) & ~(page_size - 1));
1040 len = (len + page_size * 2) & ~(page_size - 1);
1041
1042 return mprotect(start, len, PROT_READ | PROT_WRITE);
1043}
Simon Glass752707a2019-04-08 13:20:41 -06001044
1045void *os_find_text_base(void)
1046{
1047 char line[500];
1048 void *base = NULL;
1049 int len;
1050 int fd;
1051
1052 /*
1053 * This code assumes that the first line of /proc/self/maps holds
1054 * information about the text, for example:
1055 *
1056 * 5622d9907000-5622d9a55000 r-xp 00000000 08:01 15067168 u-boot
1057 *
1058 * The first hex value is assumed to be the address.
1059 *
1060 * This is tested in Linux 4.15.
1061 */
1062 fd = open("/proc/self/maps", O_RDONLY);
1063 if (fd == -1)
1064 return NULL;
1065 len = read(fd, line, sizeof(line));
1066 if (len > 0) {
1067 char *end = memchr(line, '-', len);
1068
1069 if (end) {
Heinrich Schuchardt05a16842019-10-26 23:17:44 +02001070 uintptr_t addr;
Simon Glass752707a2019-04-08 13:20:41 -06001071
1072 *end = '\0';
Heinrich Schuchardt05a16842019-10-26 23:17:44 +02001073 if (sscanf(line, "%zx", &addr) == 1)
Simon Glass752707a2019-04-08 13:20:41 -06001074 base = (void *)addr;
1075 }
1076 }
1077 close(fd);
1078
1079 return base;
1080}
Heinrich Schuchardt1c678442020-10-27 20:29:25 +01001081
Heinrich Schuchardt79cb2412022-09-02 02:32:25 +02001082/**
1083 * os_unblock_signals() - unblock all signals
1084 *
1085 * If we are relaunching the sandbox in a signal handler, we have to unblock
1086 * the respective signal before calling execv(). See signal(7) man-page.
1087 */
1088static void os_unblock_signals(void)
1089{
1090 sigset_t sigs;
1091
1092 sigfillset(&sigs);
1093 sigprocmask(SIG_UNBLOCK, &sigs, NULL);
1094}
1095
Heinrich Schuchardt1c678442020-10-27 20:29:25 +01001096void os_relaunch(char *argv[])
1097{
Heinrich Schuchardt79cb2412022-09-02 02:32:25 +02001098 os_unblock_signals();
1099
Heinrich Schuchardt1c678442020-10-27 20:29:25 +01001100 execv(argv[0], argv);
1101 os_exit(1);
1102}
Andrew Scullca5d1372022-05-30 10:00:10 +00001103
Andrew Scull2b40f802022-05-30 10:00:11 +00001104
1105#ifdef CONFIG_FUZZ
1106static void *fuzzer_thread(void * ptr)
1107{
1108 char cmd[64];
1109 char *argv[5] = {"./u-boot", "-T", "-c", cmd, NULL};
1110 const char *fuzz_test;
1111
1112 /* Find which test to run from an environment variable. */
1113 fuzz_test = getenv("UBOOT_SB_FUZZ_TEST");
1114 if (!fuzz_test)
1115 os_abort();
1116
1117 snprintf(cmd, sizeof(cmd), "fuzz %s", fuzz_test);
1118
1119 sandbox_main(4, argv);
1120 os_abort();
1121 return NULL;
1122}
1123
1124static bool fuzzer_initialized = false;
1125static pthread_mutex_t fuzzer_mutex = PTHREAD_MUTEX_INITIALIZER;
1126static pthread_cond_t fuzzer_cond = PTHREAD_COND_INITIALIZER;
1127static const uint8_t *fuzzer_data;
1128static size_t fuzzer_size;
1129
1130int sandbox_fuzzing_engine_get_input(const uint8_t **data, size_t *size)
1131{
1132 if (!fuzzer_initialized)
1133 return -ENOSYS;
1134
1135 /* Tell the main thread we need new inputs then wait for them. */
1136 pthread_mutex_lock(&fuzzer_mutex);
1137 pthread_cond_signal(&fuzzer_cond);
1138 pthread_cond_wait(&fuzzer_cond, &fuzzer_mutex);
1139 *data = fuzzer_data;
1140 *size = fuzzer_size;
1141 pthread_mutex_unlock(&fuzzer_mutex);
1142 return 0;
1143}
1144
1145int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size)
1146{
1147 static pthread_t tid;
1148
1149 pthread_mutex_lock(&fuzzer_mutex);
1150
1151 /* Initialize the sandbox on another thread. */
1152 if (!fuzzer_initialized) {
1153 fuzzer_initialized = true;
1154 if (pthread_create(&tid, NULL, fuzzer_thread, NULL))
1155 os_abort();
1156 pthread_cond_wait(&fuzzer_cond, &fuzzer_mutex);
1157 }
1158
1159 /* Hand over the input. */
1160 fuzzer_data = data;
1161 fuzzer_size = size;
1162 pthread_cond_signal(&fuzzer_cond);
1163
1164 /* Wait for the inputs to be finished with. */
1165 pthread_cond_wait(&fuzzer_cond, &fuzzer_mutex);
1166 pthread_mutex_unlock(&fuzzer_mutex);
1167
1168 return 0;
1169}
1170#else
Andrew Scullca5d1372022-05-30 10:00:10 +00001171int main(int argc, char *argv[])
1172{
1173 return sandbox_main(argc, argv);
1174}
Andrew Scull2b40f802022-05-30 10:00:11 +00001175#endif