xref: /src/sys/compat/linux/linux_file.c (revision 8feb8d221cfb842ee11d744d22571baec6c18cd8)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 1994-1995 Søren Schmidt
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <sys/param.h>
30 #include <sys/systm.h>
31 #include <sys/dirent.h>
32 #include <sys/fcntl.h>
33 #include <sys/file.h>
34 #include <sys/filedesc.h>
35 #include <sys/inotify.h>
36 #include <sys/lock.h>
37 #include <sys/mman.h>
38 #include <sys/selinfo.h>
39 #include <sys/pipe.h>
40 #include <sys/proc.h>
41 #include <sys/specialfd.h>
42 #include <sys/stat.h>
43 #include <sys/sx.h>
44 #include <sys/syscallsubr.h>
45 #include <sys/sysproto.h>
46 #include <sys/tty.h>
47 #include <sys/unistd.h>
48 #include <sys/vnode.h>
49 
50 #ifdef COMPAT_LINUX32
51 #include <compat/freebsd32/freebsd32_misc.h>
52 #include <compat/freebsd32/freebsd32_util.h>
53 #include <machine/../linux32/linux.h>
54 #include <machine/../linux32/linux32_proto.h>
55 #else
56 #include <machine/../linux/linux.h>
57 #include <machine/../linux/linux_proto.h>
58 #endif
59 #include <compat/linux/linux_misc.h>
60 #include <compat/linux/linux_util.h>
61 #include <compat/linux/linux_file.h>
62 
63 static int	linux_common_open(struct thread *, int, const char *, int, int,
64 		    enum uio_seg);
65 static int	linux_do_accessat(struct thread *t, int, const char *, int, int);
66 static int	linux_getdents_error(struct thread *, int, int);
67 
68 static struct bsd_to_linux_bitmap seal_bitmap[] = {
69 	BITMAP_1t1_LINUX(F_SEAL_SEAL),
70 	BITMAP_1t1_LINUX(F_SEAL_SHRINK),
71 	BITMAP_1t1_LINUX(F_SEAL_GROW),
72 	BITMAP_1t1_LINUX(F_SEAL_WRITE),
73 };
74 
75 #define	MFD_HUGETLB_ENTRY(_size)					\
76 	{								\
77 		.bsd_value = MFD_HUGE_##_size,				\
78 		.linux_value = LINUX_HUGETLB_FLAG_ENCODE_##_size	\
79 	}
80 static struct bsd_to_linux_bitmap mfd_bitmap[] = {
81 	BITMAP_1t1_LINUX(MFD_CLOEXEC),
82 	BITMAP_1t1_LINUX(MFD_ALLOW_SEALING),
83 	BITMAP_1t1_LINUX(MFD_HUGETLB),
84 	MFD_HUGETLB_ENTRY(64KB),
85 	MFD_HUGETLB_ENTRY(512KB),
86 	MFD_HUGETLB_ENTRY(1MB),
87 	MFD_HUGETLB_ENTRY(2MB),
88 	MFD_HUGETLB_ENTRY(8MB),
89 	MFD_HUGETLB_ENTRY(16MB),
90 	MFD_HUGETLB_ENTRY(32MB),
91 	MFD_HUGETLB_ENTRY(256MB),
92 	MFD_HUGETLB_ENTRY(512MB),
93 	MFD_HUGETLB_ENTRY(1GB),
94 	MFD_HUGETLB_ENTRY(2GB),
95 	MFD_HUGETLB_ENTRY(16GB),
96 };
97 #undef MFD_HUGETLB_ENTRY
98 
99 #ifdef LINUX_LEGACY_SYSCALLS
100 int
linux_creat(struct thread * td,struct linux_creat_args * args)101 linux_creat(struct thread *td, struct linux_creat_args *args)
102 {
103 
104 	return (kern_openat(td, AT_FDCWD, args->path, UIO_USERSPACE,
105 	    O_WRONLY | O_CREAT | O_TRUNC, args->mode));
106 }
107 #endif
108 
109 int
linux_common_openflags(int l_flags)110 linux_common_openflags(int l_flags)
111 {
112 	int bsd_flags;
113 
114 	bsd_flags = 0;
115 	switch (l_flags & LINUX_O_ACCMODE) {
116 	case LINUX_O_WRONLY:
117 		bsd_flags |= O_WRONLY;
118 		break;
119 	case LINUX_O_RDWR:
120 		bsd_flags |= O_RDWR;
121 		break;
122 	default:
123 		bsd_flags |= O_RDONLY;
124 	}
125 	if (l_flags & LINUX_O_NDELAY)
126 		bsd_flags |= O_NONBLOCK;
127 	if (l_flags & LINUX_O_APPEND)
128 		bsd_flags |= O_APPEND;
129 	if (l_flags & LINUX_O_SYNC)
130 		bsd_flags |= O_FSYNC;
131 	if (l_flags & LINUX_O_CLOEXEC)
132 		bsd_flags |= O_CLOEXEC;
133 	if (l_flags & LINUX_O_NONBLOCK)
134 		bsd_flags |= O_NONBLOCK;
135 	if (l_flags & LINUX_O_ASYNC)
136 		bsd_flags |= O_ASYNC;
137 	if (l_flags & LINUX_O_CREAT)
138 		bsd_flags |= O_CREAT;
139 	if (l_flags & LINUX_O_TRUNC)
140 		bsd_flags |= O_TRUNC;
141 	if (l_flags & LINUX_O_EXCL)
142 		bsd_flags |= O_EXCL;
143 	if (l_flags & LINUX_O_NOCTTY)
144 		bsd_flags |= O_NOCTTY;
145 	if (l_flags & LINUX_O_DIRECT)
146 		bsd_flags |= O_DIRECT;
147 	if (l_flags & LINUX_O_NOFOLLOW)
148 		bsd_flags |= O_NOFOLLOW;
149 	if (l_flags & LINUX_O_DIRECTORY)
150 		bsd_flags |= O_DIRECTORY;
151 	if (l_flags & LINUX_O_PATH)
152 		bsd_flags |= O_PATH;
153 	/* XXX LINUX_O_NOATIME: unable to be easily implemented. */
154 	return (bsd_flags);
155 }
156 
157 static int
linux_common_open(struct thread * td,int dirfd,const char * path,int l_flags,int mode,enum uio_seg seg)158 linux_common_open(struct thread *td, int dirfd, const char *path, int l_flags,
159     int mode, enum uio_seg seg)
160 {
161 	struct proc *p = td->td_proc;
162 	struct file *fp;
163 	int fd;
164 	int bsd_flags, error;
165 
166 	bsd_flags = linux_common_openflags(l_flags);
167 	error = kern_openat(td, dirfd, path, seg, bsd_flags, mode);
168 	if (error != 0) {
169 		if (error == EMLINK)
170 			error = ELOOP;
171 		goto done;
172 	}
173 	if (p->p_flag & P_CONTROLT)
174 		goto done;
175 	if (bsd_flags & O_NOCTTY)
176 		goto done;
177 
178 	/*
179 	 * XXX In between kern_openat() and fget(), another process
180 	 * having the same filedesc could use that fd without
181 	 * checking below.
182 	*/
183 	fd = td->td_retval[0];
184 	if (fget(td, fd, &cap_ioctl_rights, &fp) == 0) {
185 		if (fp->f_type != DTYPE_VNODE) {
186 			fdrop(fp, td);
187 			goto done;
188 		}
189 		sx_slock(&proctree_lock);
190 		PROC_LOCK(p);
191 		if (SESS_LEADER(p) && !(p->p_flag & P_CONTROLT)) {
192 			PROC_UNLOCK(p);
193 			sx_sunlock(&proctree_lock);
194 			/* XXXPJD: Verify if TIOCSCTTY is allowed. */
195 			(void) fo_ioctl(fp, TIOCSCTTY, (caddr_t) 0,
196 			    td->td_ucred, td);
197 		} else {
198 			PROC_UNLOCK(p);
199 			sx_sunlock(&proctree_lock);
200 		}
201 		fdrop(fp, td);
202 	}
203 
204 done:
205 	return (error);
206 }
207 
208 int
linux_openat(struct thread * td,struct linux_openat_args * args)209 linux_openat(struct thread *td, struct linux_openat_args *args)
210 {
211 	int dfd;
212 
213 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->dfd;
214 	return (linux_common_open(td, dfd, args->filename, args->flags,
215 	    args->mode, UIO_USERSPACE));
216 }
217 
218 #ifdef LINUX_LEGACY_SYSCALLS
219 int
linux_open(struct thread * td,struct linux_open_args * args)220 linux_open(struct thread *td, struct linux_open_args *args)
221 {
222 
223 	return (linux_common_open(td, AT_FDCWD, args->path, args->flags,
224 	    args->mode, UIO_USERSPACE));
225 }
226 #endif
227 
228 int
linux_name_to_handle_at(struct thread * td,struct linux_name_to_handle_at_args * args)229 linux_name_to_handle_at(struct thread *td,
230     struct linux_name_to_handle_at_args *args)
231 {
232 	static const l_int valid_flags = (LINUX_AT_SYMLINK_FOLLOW |
233 	    LINUX_AT_EMPTY_PATH);
234 	static const l_uint fh_size = sizeof(fhandle_t);
235 
236 	fhandle_t fh;
237 	l_uint fh_bytes;
238 	l_int mount_id;
239 	int error, fd, bsd_flags;
240 
241 	if (args->flags & ~valid_flags)
242 		return (EINVAL);
243 
244 	fd = args->dirfd;
245 	if (fd == LINUX_AT_FDCWD)
246 		fd = AT_FDCWD;
247 
248 	bsd_flags = 0;
249 	if (!(args->flags & LINUX_AT_SYMLINK_FOLLOW))
250 		bsd_flags |= AT_SYMLINK_NOFOLLOW;
251 	if ((args->flags & LINUX_AT_EMPTY_PATH) != 0)
252 		bsd_flags |= AT_EMPTY_PATH;
253 
254 	error = kern_getfhat(td, bsd_flags, fd, args->name,
255 	    UIO_USERSPACE, &fh, UIO_SYSSPACE);
256 	if (error != 0)
257 		return (error);
258 
259 	/* Emit mount_id -- required before EOVERFLOW case. */
260 	mount_id = (fh.fh_fsid.val[0] ^ fh.fh_fsid.val[1]);
261 	error = copyout(&mount_id, args->mnt_id, sizeof(mount_id));
262 	if (error != 0)
263 		return (error);
264 
265 	/* Check if there is room for handle. */
266 	error = copyin(&args->handle->handle_bytes, &fh_bytes,
267 	    sizeof(fh_bytes));
268 	if (error != 0)
269 		return (error);
270 
271 	if (fh_bytes < fh_size) {
272 		error = copyout(&fh_size, &args->handle->handle_bytes,
273 		    sizeof(fh_size));
274 		if (error == 0)
275 			error = EOVERFLOW;
276 		return (error);
277 	}
278 
279 	/* Emit handle. */
280 	mount_id = 0;
281 	/*
282 	 * We don't use handle_type for anything yet, but initialize a known
283 	 * value.
284 	 */
285 	error = copyout(&mount_id, &args->handle->handle_type,
286 	    sizeof(mount_id));
287 	if (error != 0)
288 		return (error);
289 
290 	error = copyout(&fh, &args->handle->f_handle,
291 	    sizeof(fh));
292 	return (error);
293 }
294 
295 int
linux_open_by_handle_at(struct thread * td,struct linux_open_by_handle_at_args * args)296 linux_open_by_handle_at(struct thread *td,
297     struct linux_open_by_handle_at_args *args)
298 {
299 	l_uint fh_bytes;
300 	int bsd_flags, error;
301 
302 	error = copyin(&args->handle->handle_bytes, &fh_bytes,
303 	    sizeof(fh_bytes));
304 	if (error != 0)
305 		return (error);
306 
307 	if (fh_bytes < sizeof(fhandle_t))
308 		return (EINVAL);
309 
310 	bsd_flags = linux_common_openflags(args->flags);
311 	return (kern_fhopen(td, (void *)&args->handle->f_handle, bsd_flags));
312 }
313 
314 int
linux_lseek(struct thread * td,struct linux_lseek_args * args)315 linux_lseek(struct thread *td, struct linux_lseek_args *args)
316 {
317 
318 	return (kern_lseek(td, args->fdes, args->off, args->whence));
319 }
320 
321 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
322 int
linux_llseek(struct thread * td,struct linux_llseek_args * args)323 linux_llseek(struct thread *td, struct linux_llseek_args *args)
324 {
325 	int error;
326 	off_t off;
327 
328 	off = (args->olow) | (((off_t) args->ohigh) << 32);
329 
330 	error = kern_lseek(td, args->fd, off, args->whence);
331 	if (error != 0)
332 		return (error);
333 
334 	error = copyout(td->td_retval, args->res, sizeof(off_t));
335 	if (error != 0)
336 		return (error);
337 
338 	td->td_retval[0] = 0;
339 	return (0);
340 }
341 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
342 
343 /*
344  * Note that linux_getdents(2) and linux_getdents64(2) have the same
345  * arguments. They only differ in the definition of struct dirent they
346  * operate on.
347  * Note that linux_readdir(2) is a special case of linux_getdents(2)
348  * where count is always equals 1, meaning that the buffer is one
349  * dirent-structure in size and that the code can't handle more anyway.
350  * Note that linux_readdir(2) can't be implemented by means of linux_getdents(2)
351  * as in case when the *dent buffer size is equal to 1 linux_getdents(2) will
352  * trash user stack.
353  */
354 
355 static int
linux_getdents_error(struct thread * td,int fd,int err)356 linux_getdents_error(struct thread *td, int fd, int err)
357 {
358 	struct vnode *vp;
359 	struct file *fp;
360 	int error;
361 
362 	/* Linux return ENOTDIR in case when fd is not a directory. */
363 	error = getvnode(td, fd, &cap_read_rights, &fp);
364 	if (error != 0)
365 		return (error);
366 	vp = fp->f_vnode;
367 	if (vp->v_type != VDIR) {
368 		fdrop(fp, td);
369 		return (ENOTDIR);
370 	}
371 	fdrop(fp, td);
372 	return (err);
373 }
374 
375 struct l_dirent {
376 	l_ulong		d_ino;
377 	l_off_t		d_off;
378 	l_ushort	d_reclen;
379 	char		d_name[LINUX_NAME_MAX + 1];
380 };
381 
382 struct l_dirent64 {
383 	uint64_t	d_ino;
384 	int64_t		d_off;
385 	l_ushort	d_reclen;
386 	u_char		d_type;
387 	char		d_name[LINUX_NAME_MAX + 1];
388 };
389 
390 /*
391  * Linux uses the last byte in the dirent buffer to store d_type,
392  * at least glibc-2.7 requires it. That is why l_dirent is padded with 2 bytes.
393  */
394 #define LINUX_RECLEN(namlen)						\
395     roundup(offsetof(struct l_dirent, d_name) + (namlen) + 2, sizeof(l_ulong))
396 
397 #define LINUX_RECLEN64(namlen)						\
398     roundup(offsetof(struct l_dirent64, d_name) + (namlen) + 1,		\
399     sizeof(uint64_t))
400 
401 /*
402  * Do kern_getdirentries() and then skip over any invalid entries.
403  * (Repeat, if there are no valid entries.)
404  * Adjust bufp and lenp.
405  */
406 static int
linux_getdirentries(struct thread * td,int fd,caddr_t * bufp,int buflen,off_t * basep,int * lenp)407 linux_getdirentries(struct thread *td, int fd, caddr_t *bufp, int buflen,
408     off_t *basep, int *lenp)
409 {
410 	struct dirent *bdp;
411 	caddr_t buf;
412 	int error, len;
413 
414 	/* Loop around until a valid entry is found or at EOF. */
415 	for (;;) {
416 		error = kern_getdirentries(td, fd, *bufp, buflen,
417 		    basep, NULL, UIO_SYSSPACE);
418 		if (error != 0)
419 			return (error);
420 		len = td->td_retval[0];
421 		if (len == 0) {
422 			*lenp = 0;
423 			return (0);
424 		}
425 		buf = *bufp;
426 		while (len > 0) {
427 			bdp = (struct dirent *)buf;
428 			if (bdp->d_fileno != 0) {
429 				*bufp = buf;
430 				*lenp = len;
431 				return (0);
432 			}
433 			buf += bdp->d_reclen;
434 			len -= bdp->d_reclen;
435 		}
436 	}
437 }
438 
439 #ifdef LINUX_LEGACY_SYSCALLS
440 int
linux_getdents(struct thread * td,struct linux_getdents_args * args)441 linux_getdents(struct thread *td, struct linux_getdents_args *args)
442 {
443 	struct dirent *bdp;
444 	caddr_t inp, buf, bufsav;	/* BSD-format */
445 	int len, reclen;		/* BSD-format */
446 	caddr_t outp;			/* Linux-format */
447 	int resid, linuxreclen;		/* Linux-format */
448 	caddr_t lbuf;			/* Linux-format */
449 	off_t base;
450 	struct l_dirent *linux_dirent;
451 	int buflen, error;
452 	size_t retval;
453 
454 	buflen = min(roundup2(args->count, DEV_BSIZE), MAXBSIZE);
455 	bufsav = buf = malloc(buflen, M_LINUX, M_WAITOK);
456 
457 	error = linux_getdirentries(td, args->fd, &buf, buflen,
458 	    &base, &len);
459 	if (error != 0) {
460 		error = linux_getdents_error(td, args->fd, error);
461 		goto out1;
462 	}
463 
464 	lbuf = malloc(LINUX_RECLEN(LINUX_NAME_MAX), M_LINUX, M_WAITOK | M_ZERO);
465 
466 	inp = buf;
467 	outp = (caddr_t)args->dent;
468 	resid = args->count;
469 	retval = 0;
470 
471 	while (len > 0) {
472 		bdp = (struct dirent *) inp;
473 		reclen = bdp->d_reclen;
474 		/* Copy a valid entry out. */
475 		if (bdp->d_fileno != 0) {
476 			linuxreclen = LINUX_RECLEN(bdp->d_namlen);
477 			/*
478 			 * No more space in the user supplied dirent buffer.
479 			 * Return EINVAL.
480 			 */
481 			if (resid < linuxreclen) {
482 				error = EINVAL;
483 				goto out;
484 			}
485 
486 			linux_dirent = (struct l_dirent*)lbuf;
487 			linux_dirent->d_ino = bdp->d_fileno;
488 			linux_dirent->d_off = bdp->d_off;
489 			linux_dirent->d_reclen = linuxreclen;
490 			/*
491 			 * Copy d_type to last byte of l_dirent buffer
492 			 */
493 			lbuf[linuxreclen - 1] = bdp->d_type;
494 			strlcpy(linux_dirent->d_name, bdp->d_name,
495 			    linuxreclen - offsetof(struct l_dirent, d_name)-1);
496 			error = copyout(linux_dirent, outp, linuxreclen);
497 			if (error != 0)
498 				goto out;
499 			retval += linuxreclen;
500 			outp += linuxreclen;
501 			resid -= linuxreclen;
502 		}
503 
504 		inp += reclen;
505 		base += reclen;
506 		len -= reclen;
507 
508 	}
509 	td->td_retval[0] = retval;
510 
511 out:
512 	free(lbuf, M_LINUX);
513 out1:
514 	free(bufsav, M_LINUX);
515 	return (error);
516 }
517 #endif
518 
519 int
linux_getdents64(struct thread * td,struct linux_getdents64_args * args)520 linux_getdents64(struct thread *td, struct linux_getdents64_args *args)
521 {
522 	struct dirent *bdp;
523 	caddr_t inp, buf, bufsav;	/* BSD-format */
524 	int len, reclen;		/* BSD-format */
525 	caddr_t outp;			/* Linux-format */
526 	int resid, linuxreclen;		/* Linux-format */
527 	off_t base;
528 	struct l_dirent64 *linux_dirent64;
529 	int buflen, error;
530 	size_t retval;
531 
532 	buflen = min(roundup2(args->count, DEV_BSIZE), MAXBSIZE);
533 	bufsav = buf = malloc(buflen, M_LINUX, M_WAITOK);
534 
535 	error = linux_getdirentries(td, args->fd, &buf, buflen,
536 	    &base, &len);
537 	if (error != 0) {
538 		error = linux_getdents_error(td, args->fd, error);
539 		goto out1;
540 	}
541 
542 	linux_dirent64 = malloc(LINUX_RECLEN64(LINUX_NAME_MAX), M_LINUX,
543 	    M_WAITOK | M_ZERO);
544 
545 	inp = buf;
546 	outp = (caddr_t)args->dirent;
547 	resid = args->count;
548 	retval = 0;
549 
550 	while (len > 0) {
551 		bdp = (struct dirent *) inp;
552 		reclen = bdp->d_reclen;
553 		/* Copy a valid entry out. */
554 		if (bdp->d_fileno != 0) {
555 			linuxreclen = LINUX_RECLEN64(bdp->d_namlen);
556 			/*
557 			 * No more space in the user supplied dirent buffer.
558 			 * Return EINVAL.
559 			 */
560 			if (resid < linuxreclen) {
561 				error = EINVAL;
562 				goto out;
563 			}
564 
565 			linux_dirent64->d_ino = bdp->d_fileno;
566 			linux_dirent64->d_off = bdp->d_off;
567 			linux_dirent64->d_reclen = linuxreclen;
568 			linux_dirent64->d_type = bdp->d_type;
569 			strlcpy(linux_dirent64->d_name, bdp->d_name,
570 			    linuxreclen - offsetof(struct l_dirent64, d_name));
571 			error = copyout(linux_dirent64, outp, linuxreclen);
572 			if (error != 0)
573 				goto out;
574 			retval += linuxreclen;
575 			outp += linuxreclen;
576 			resid -= linuxreclen;
577 		}
578 
579 		inp += reclen;
580 		base += reclen;
581 		len -= reclen;
582 
583 	}
584 	td->td_retval[0] = retval;
585 
586 out:
587 	free(linux_dirent64, M_LINUX);
588 out1:
589 	free(bufsav, M_LINUX);
590 	return (error);
591 }
592 
593 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
594 int
linux_readdir(struct thread * td,struct linux_readdir_args * args)595 linux_readdir(struct thread *td, struct linux_readdir_args *args)
596 {
597 	struct dirent *bdp;
598 	caddr_t buf, bufsav;		/* BSD-format */
599 	int linuxreclen;		/* Linux-format */
600 	off_t base;
601 	struct l_dirent *linux_dirent;	/* Linux-format */
602 	int buflen, error, len;
603 
604 	buflen = DEV_BSIZE;
605 	bufsav = buf = malloc(buflen, M_LINUX, M_WAITOK);
606 
607 	error = linux_getdirentries(td, args->fd, &buf, buflen,
608 	    &base, &len);
609 	if (error != 0) {
610 		error = linux_getdents_error(td, args->fd, error);
611 		goto out;
612 	}
613 	if (len == 0)
614 		goto out;
615 
616 	linux_dirent = malloc(LINUX_RECLEN(LINUX_NAME_MAX), M_LINUX,
617 	    M_WAITOK | M_ZERO);
618 
619 	bdp = (struct dirent *) buf;
620 	linuxreclen = LINUX_RECLEN(bdp->d_namlen);
621 
622 	linux_dirent->d_ino = bdp->d_fileno;
623 	linux_dirent->d_off = bdp->d_off;
624 	linux_dirent->d_reclen = bdp->d_namlen;
625 	strlcpy(linux_dirent->d_name, bdp->d_name,
626 	    linuxreclen - offsetof(struct l_dirent, d_name));
627 	error = copyout(linux_dirent, args->dent, linuxreclen);
628 	if (error == 0)
629 		td->td_retval[0] = linuxreclen;
630 
631 	free(linux_dirent, M_LINUX);
632 out:
633 	free(bufsav, M_LINUX);
634 	return (error);
635 }
636 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
637 
638 /*
639  * These exist mainly for hooks for doing /compat/linux translation.
640  */
641 
642 #ifdef LINUX_LEGACY_SYSCALLS
643 int
linux_access(struct thread * td,struct linux_access_args * args)644 linux_access(struct thread *td, struct linux_access_args *args)
645 {
646 
647 	/* Linux convention. */
648 	if (args->amode & ~(F_OK | X_OK | W_OK | R_OK))
649 		return (EINVAL);
650 
651 	return (kern_accessat(td, AT_FDCWD, args->path, UIO_USERSPACE, 0,
652 	    args->amode));
653 }
654 #endif
655 
656 static int
linux_do_accessat(struct thread * td,int ldfd,const char * filename,int amode,int flags)657 linux_do_accessat(struct thread *td, int ldfd, const char *filename,
658     int amode, int flags)
659 {
660 	int dfd;
661 
662 	/* Linux convention. */
663 	if (amode & ~(F_OK | X_OK | W_OK | R_OK))
664 		return (EINVAL);
665 
666 	dfd = (ldfd == LINUX_AT_FDCWD) ? AT_FDCWD : ldfd;
667 	return (kern_accessat(td, dfd, filename, UIO_USERSPACE, flags, amode));
668 }
669 
670 int
linux_faccessat(struct thread * td,struct linux_faccessat_args * args)671 linux_faccessat(struct thread *td, struct linux_faccessat_args *args)
672 {
673 
674 	return (linux_do_accessat(td, args->dfd, args->filename, args->amode,
675 	    0));
676 }
677 
678 int
linux_faccessat2(struct thread * td,struct linux_faccessat2_args * args)679 linux_faccessat2(struct thread *td, struct linux_faccessat2_args *args)
680 {
681 	int flags, unsupported;
682 
683 	unsupported = args->flags & ~(LINUX_AT_EACCESS | LINUX_AT_EMPTY_PATH  |
684 	    LINUX_AT_SYMLINK_NOFOLLOW);
685 	if (unsupported != 0) {
686 		linux_msg(td, "faccessat2 unsupported flag 0x%x", unsupported);
687 		return (EINVAL);
688 	}
689 
690 	flags = (args->flags & LINUX_AT_EACCESS) == 0 ? 0 :
691 	    AT_EACCESS;
692 	flags |= (args->flags & LINUX_AT_EMPTY_PATH) == 0 ? 0 :
693 	    AT_EMPTY_PATH;
694 	flags |= (args->flags & LINUX_AT_SYMLINK_NOFOLLOW) == 0 ? 0 :
695 	    AT_SYMLINK_NOFOLLOW;
696 	return (linux_do_accessat(td, args->dfd, args->filename, args->amode,
697 	    flags));
698 }
699 
700 
701 #ifdef LINUX_LEGACY_SYSCALLS
702 int
linux_unlink(struct thread * td,struct linux_unlink_args * args)703 linux_unlink(struct thread *td, struct linux_unlink_args *args)
704 {
705 	int error;
706 	struct stat st;
707 
708 	error = kern_funlinkat(td, AT_FDCWD, args->path, FD_NONE,
709 	    UIO_USERSPACE, 0, 0);
710 	if (error == EPERM) {
711 		/* Introduce POSIX noncompliant behaviour of Linux */
712 		if (kern_statat(td, 0, AT_FDCWD, args->path,
713 		    UIO_USERSPACE, &st) == 0) {
714 			if (S_ISDIR(st.st_mode))
715 				error = EISDIR;
716 		}
717 	}
718 
719 	return (error);
720 }
721 #endif
722 
723 static int
linux_unlinkat_impl(struct thread * td,enum uio_seg pathseg,const char * path,int dfd,struct linux_unlinkat_args * args)724 linux_unlinkat_impl(struct thread *td, enum uio_seg pathseg, const char *path,
725     int dfd, struct linux_unlinkat_args *args)
726 {
727 	struct stat st;
728 	int error;
729 
730 	if (args->flag & LINUX_AT_REMOVEDIR)
731 		error = kern_frmdirat(td, dfd, path, FD_NONE, pathseg, 0);
732 	else
733 		error = kern_funlinkat(td, dfd, path, FD_NONE, pathseg, 0, 0);
734 	if (error == EPERM && !(args->flag & LINUX_AT_REMOVEDIR)) {
735 		/* Introduce POSIX noncompliant behaviour of Linux */
736 		if (kern_statat(td, AT_SYMLINK_NOFOLLOW, dfd, path,
737 		    pathseg, &st) == 0 && S_ISDIR(st.st_mode))
738 			error = EISDIR;
739 	}
740 	return (error);
741 }
742 
743 int
linux_unlinkat(struct thread * td,struct linux_unlinkat_args * args)744 linux_unlinkat(struct thread *td, struct linux_unlinkat_args *args)
745 {
746 	int dfd;
747 
748 	if (args->flag & ~LINUX_AT_REMOVEDIR)
749 		return (EINVAL);
750 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->dfd;
751 	return (linux_unlinkat_impl(td, UIO_USERSPACE, args->pathname,
752 	    dfd, args));
753 }
754 
755 int
linux_chdir(struct thread * td,struct linux_chdir_args * args)756 linux_chdir(struct thread *td, struct linux_chdir_args *args)
757 {
758 
759 	return (kern_chdir(td, args->path, UIO_USERSPACE));
760 }
761 
762 #ifdef LINUX_LEGACY_SYSCALLS
763 int
linux_chmod(struct thread * td,struct linux_chmod_args * args)764 linux_chmod(struct thread *td, struct linux_chmod_args *args)
765 {
766 
767 	return (kern_fchmodat(td, AT_FDCWD, args->path, UIO_USERSPACE,
768 	    args->mode, 0));
769 }
770 #endif
771 
772 int
linux_fchmodat(struct thread * td,struct linux_fchmodat_args * args)773 linux_fchmodat(struct thread *td, struct linux_fchmodat_args *args)
774 {
775 	int dfd;
776 
777 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->dfd;
778 	return (kern_fchmodat(td, dfd, args->filename, UIO_USERSPACE,
779 	    args->mode, 0));
780 }
781 
782 #ifdef LINUX_LEGACY_SYSCALLS
783 int
linux_mkdir(struct thread * td,struct linux_mkdir_args * args)784 linux_mkdir(struct thread *td, struct linux_mkdir_args *args)
785 {
786 
787 	return (kern_mkdirat(td, AT_FDCWD, args->path, UIO_USERSPACE, args->mode));
788 }
789 #endif
790 
791 int
linux_mkdirat(struct thread * td,struct linux_mkdirat_args * args)792 linux_mkdirat(struct thread *td, struct linux_mkdirat_args *args)
793 {
794 	int dfd;
795 
796 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->dfd;
797 	return (kern_mkdirat(td, dfd, args->pathname, UIO_USERSPACE, args->mode));
798 }
799 
800 #ifdef LINUX_LEGACY_SYSCALLS
801 int
linux_rmdir(struct thread * td,struct linux_rmdir_args * args)802 linux_rmdir(struct thread *td, struct linux_rmdir_args *args)
803 {
804 
805 	return (kern_frmdirat(td, AT_FDCWD, args->path, FD_NONE,
806 	    UIO_USERSPACE, 0));
807 }
808 
809 int
linux_rename(struct thread * td,struct linux_rename_args * args)810 linux_rename(struct thread *td, struct linux_rename_args *args)
811 {
812 
813 	return (kern_renameat(td, AT_FDCWD, args->from, AT_FDCWD,
814 	    args->to, UIO_USERSPACE, 0));
815 }
816 #endif
817 
818 int
linux_renameat(struct thread * td,struct linux_renameat_args * args)819 linux_renameat(struct thread *td, struct linux_renameat_args *args)
820 {
821 	struct linux_renameat2_args renameat2_args = {
822 	    .olddfd = args->olddfd,
823 	    .oldname = args->oldname,
824 	    .newdfd = args->newdfd,
825 	    .newname = args->newname,
826 	    .flags = 0
827 	};
828 
829 	return (linux_renameat2(td, &renameat2_args));
830 }
831 
832 int
linux_renameat2(struct thread * td,struct linux_renameat2_args * args)833 linux_renameat2(struct thread *td, struct linux_renameat2_args *args)
834 {
835 	int olddfd, newdfd;
836 	u_int atflags;
837 
838 	atflags = 0;
839 	if ((args->flags & ~(LINUX_RENAME_EXCHANGE |
840 	    LINUX_RENAME_NOREPLACE | LINUX_RENAME_WHITEOUT)) != 0)
841 		return (EINVAL);
842 	if ((args->flags & LINUX_RENAME_EXCHANGE) != 0 &&
843 	    (args->flags & (LINUX_RENAME_NOREPLACE |
844 	    LINUX_RENAME_WHITEOUT)) != 0)
845 		return (EINVAL);
846 	if ((args->flags & LINUX_RENAME_NOREPLACE) != 0) {
847 		if ((args->flags & (LINUX_RENAME_EXCHANGE |
848 		    LINUX_RENAME_WHITEOUT)) != 0)
849 			return (EINVAL);
850 		args->flags &= ~LINUX_RENAME_NOREPLACE;
851 		atflags |= AT_RENAME_NOREPLACE;
852 	}
853 
854 	if (args->flags != 0) {
855 		/*
856 		 * This spams the console on Ubuntu Focal.
857 		 *
858 		 * What's needed here is a general mechanism to let
859 		 * users know about missing features without hogging
860 		 * the system.
861 		 */
862 #if 0
863 		linux_msg(td, "renameat2 unsupported flags %#x",
864 		    args->flags);
865 #endif
866 		return (EINVAL);
867 	}
868 
869 	olddfd = (args->olddfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->olddfd;
870 	newdfd = (args->newdfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->newdfd;
871 	return (kern_renameat(td, olddfd, args->oldname, newdfd,
872 	    args->newname, UIO_USERSPACE, atflags));
873 }
874 
875 #ifdef LINUX_LEGACY_SYSCALLS
876 int
linux_symlink(struct thread * td,struct linux_symlink_args * args)877 linux_symlink(struct thread *td, struct linux_symlink_args *args)
878 {
879 
880 	return (kern_symlinkat(td, args->path, AT_FDCWD, args->to,
881 	    UIO_USERSPACE));
882 }
883 #endif
884 
885 int
linux_symlinkat(struct thread * td,struct linux_symlinkat_args * args)886 linux_symlinkat(struct thread *td, struct linux_symlinkat_args *args)
887 {
888 	int dfd;
889 
890 	dfd = (args->newdfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->newdfd;
891 	return (kern_symlinkat(td, args->oldname, dfd, args->newname,
892 	    UIO_USERSPACE));
893 }
894 
895 #ifdef LINUX_LEGACY_SYSCALLS
896 int
linux_readlink(struct thread * td,struct linux_readlink_args * args)897 linux_readlink(struct thread *td, struct linux_readlink_args *args)
898 {
899 
900 	if (args->count <= 0)
901 		return (EINVAL);
902 
903 	return (kern_readlinkat(td, AT_FDCWD, args->name, UIO_USERSPACE,
904 	    args->buf, UIO_USERSPACE, args->count));
905 }
906 #endif
907 
908 int
linux_readlinkat(struct thread * td,struct linux_readlinkat_args * args)909 linux_readlinkat(struct thread *td, struct linux_readlinkat_args *args)
910 {
911 	int dfd;
912 
913 	if (args->bufsiz <= 0)
914 		return (EINVAL);
915 
916 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->dfd;
917 	return (kern_readlinkat(td, dfd, args->path, UIO_USERSPACE,
918 	    args->buf, UIO_USERSPACE, args->bufsiz));
919 }
920 
921 int
linux_truncate(struct thread * td,struct linux_truncate_args * args)922 linux_truncate(struct thread *td, struct linux_truncate_args *args)
923 {
924 
925 	return (kern_truncate(td, args->path, UIO_USERSPACE, args->length));
926 }
927 
928 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
929 int
linux_truncate64(struct thread * td,struct linux_truncate64_args * args)930 linux_truncate64(struct thread *td, struct linux_truncate64_args *args)
931 {
932 	off_t length;
933 
934 #if defined(__amd64__) && defined(COMPAT_LINUX32)
935 	length = PAIR32TO64(off_t, args->length);
936 #else
937 	length = args->length;
938 #endif
939 
940 	return (kern_truncate(td, args->path, UIO_USERSPACE, length));
941 }
942 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
943 
944 int
linux_ftruncate(struct thread * td,struct linux_ftruncate_args * args)945 linux_ftruncate(struct thread *td, struct linux_ftruncate_args *args)
946 {
947 
948 	return (kern_ftruncate(td, args->fd, args->length));
949 }
950 
951 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
952 int
linux_ftruncate64(struct thread * td,struct linux_ftruncate64_args * args)953 linux_ftruncate64(struct thread *td, struct linux_ftruncate64_args *args)
954 {
955 	off_t length;
956 
957 #if defined(__amd64__) && defined(COMPAT_LINUX32)
958 	length = PAIR32TO64(off_t, args->length);
959 #else
960 	length = args->length;
961 #endif
962 
963 	return (kern_ftruncate(td, args->fd, length));
964 }
965 #endif
966 
967 #ifdef LINUX_LEGACY_SYSCALLS
968 int
linux_link(struct thread * td,struct linux_link_args * args)969 linux_link(struct thread *td, struct linux_link_args *args)
970 {
971 
972 	return (kern_linkat(td, AT_FDCWD, AT_FDCWD, args->path, args->to,
973 	    UIO_USERSPACE, AT_SYMLINK_FOLLOW));
974 }
975 #endif
976 
977 int
linux_linkat(struct thread * td,struct linux_linkat_args * args)978 linux_linkat(struct thread *td, struct linux_linkat_args *args)
979 {
980 	int olddfd, newdfd, flag;
981 
982 	if (args->flag & ~(LINUX_AT_SYMLINK_FOLLOW | LINUX_AT_EMPTY_PATH))
983 		return (EINVAL);
984 
985 	flag = (args->flag & LINUX_AT_SYMLINK_FOLLOW) != 0 ? AT_SYMLINK_FOLLOW :
986 	    0;
987 	flag |= (args->flag & LINUX_AT_EMPTY_PATH) != 0 ? AT_EMPTY_PATH : 0;
988 
989 	olddfd = (args->olddfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->olddfd;
990 	newdfd = (args->newdfd == LINUX_AT_FDCWD) ? AT_FDCWD : args->newdfd;
991 	return (kern_linkat(td, olddfd, newdfd, args->oldname,
992 	    args->newname, UIO_USERSPACE, flag));
993 }
994 
995 int
linux_fdatasync(struct thread * td,struct linux_fdatasync_args * uap)996 linux_fdatasync(struct thread *td, struct linux_fdatasync_args *uap)
997 {
998 
999 	return (kern_fsync(td, uap->fd, false));
1000 }
1001 
1002 int
linux_sync_file_range(struct thread * td,struct linux_sync_file_range_args * uap)1003 linux_sync_file_range(struct thread *td, struct linux_sync_file_range_args *uap)
1004 {
1005 	off_t nbytes, offset;
1006 
1007 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1008 	nbytes = PAIR32TO64(off_t, uap->nbytes);
1009 	offset = PAIR32TO64(off_t, uap->offset);
1010 #else
1011 	nbytes = uap->nbytes;
1012 	offset = uap->offset;
1013 #endif
1014 
1015 	if (offset < 0 || nbytes < 0 ||
1016 	    (uap->flags & ~(LINUX_SYNC_FILE_RANGE_WAIT_BEFORE |
1017 	    LINUX_SYNC_FILE_RANGE_WRITE |
1018 	    LINUX_SYNC_FILE_RANGE_WAIT_AFTER)) != 0) {
1019 		return (EINVAL);
1020 	}
1021 
1022 	return (kern_fsync(td, uap->fd, false));
1023 }
1024 
1025 int
linux_pread(struct thread * td,struct linux_pread_args * uap)1026 linux_pread(struct thread *td, struct linux_pread_args *uap)
1027 {
1028 	struct vnode *vp;
1029 	off_t offset;
1030 	int error;
1031 
1032 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1033 	offset = PAIR32TO64(off_t, uap->offset);
1034 #else
1035 	offset = uap->offset;
1036 #endif
1037 
1038 	error = kern_pread(td, uap->fd, uap->buf, uap->nbyte, offset);
1039 	if (error == 0) {
1040 		/* This seems to violate POSIX but Linux does it. */
1041 		error = fgetvp(td, uap->fd, &cap_pread_rights, &vp);
1042 		if (error != 0)
1043 			return (error);
1044 		if (vp->v_type == VDIR)
1045 			error = EISDIR;
1046 		vrele(vp);
1047 	}
1048 	return (error);
1049 }
1050 
1051 int
linux_pwrite(struct thread * td,struct linux_pwrite_args * uap)1052 linux_pwrite(struct thread *td, struct linux_pwrite_args *uap)
1053 {
1054 	off_t offset;
1055 
1056 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1057 	offset = PAIR32TO64(off_t, uap->offset);
1058 #else
1059 	offset = uap->offset;
1060 #endif
1061 
1062 	return (linux_enobufs2eagain(td, uap->fd,
1063 	    kern_pwrite(td, uap->fd, uap->buf, uap->nbyte, offset)));
1064 }
1065 
1066 #define HALF_LONG_BITS ((sizeof(l_long) * NBBY / 2))
1067 
1068 static inline off_t
pos_from_hilo(unsigned long high,unsigned long low)1069 pos_from_hilo(unsigned long high, unsigned long low)
1070 {
1071 
1072 	return (((off_t)high << HALF_LONG_BITS) << HALF_LONG_BITS) | low;
1073 }
1074 
1075 int
linux_preadv(struct thread * td,struct linux_preadv_args * uap)1076 linux_preadv(struct thread *td, struct linux_preadv_args *uap)
1077 {
1078 	struct uio *auio;
1079 	int error;
1080 	off_t offset;
1081 
1082 	/*
1083 	 * According http://man7.org/linux/man-pages/man2/preadv.2.html#NOTES
1084 	 * pos_l and pos_h, respectively, contain the
1085 	 * low order and high order 32 bits of offset.
1086 	 */
1087 	offset = pos_from_hilo(uap->pos_h, uap->pos_l);
1088 	if (offset < 0)
1089 		return (EINVAL);
1090 #ifdef COMPAT_LINUX32
1091 	error = freebsd32_copyinuio(PTRIN(uap->vec), uap->vlen, &auio);
1092 #else
1093 	error = copyinuio(uap->vec, uap->vlen, &auio);
1094 #endif
1095 	if (error != 0)
1096 		return (error);
1097 	error = kern_preadv(td, uap->fd, auio, offset);
1098 	freeuio(auio);
1099 	return (error);
1100 }
1101 
1102 int
linux_pwritev(struct thread * td,struct linux_pwritev_args * uap)1103 linux_pwritev(struct thread *td, struct linux_pwritev_args *uap)
1104 {
1105 	struct uio *auio;
1106 	int error;
1107 	off_t offset;
1108 
1109 	/*
1110 	 * According http://man7.org/linux/man-pages/man2/pwritev.2.html#NOTES
1111 	 * pos_l and pos_h, respectively, contain the
1112 	 * low order and high order 32 bits of offset.
1113 	 */
1114 	offset = pos_from_hilo(uap->pos_h, uap->pos_l);
1115 	if (offset < 0)
1116 		return (EINVAL);
1117 #ifdef COMPAT_LINUX32
1118 	error = freebsd32_copyinuio(PTRIN(uap->vec), uap->vlen, &auio);
1119 #else
1120 	error = copyinuio(uap->vec, uap->vlen, &auio);
1121 #endif
1122 	if (error != 0)
1123 		return (error);
1124 	error = kern_pwritev(td, uap->fd, auio, offset);
1125 	freeuio(auio);
1126 	return (linux_enobufs2eagain(td, uap->fd, error));
1127 }
1128 
1129 int
linux_mount(struct thread * td,struct linux_mount_args * args)1130 linux_mount(struct thread *td, struct linux_mount_args *args)
1131 {
1132 	struct mntarg *ma = NULL;
1133 	char *fstypename, *mntonname, *mntfromname, *data;
1134 	int error, fsflags;
1135 
1136 	fstypename = malloc(MNAMELEN, M_TEMP, M_WAITOK);
1137 	mntonname = malloc(MNAMELEN, M_TEMP, M_WAITOK);
1138 	mntfromname = malloc(MNAMELEN, M_TEMP, M_WAITOK);
1139 	data = NULL;
1140 	error = copyinstr(args->filesystemtype, fstypename, MNAMELEN - 1,
1141 	    NULL);
1142 	if (error != 0)
1143 		goto out;
1144 	if (args->specialfile != NULL) {
1145 		error = copyinstr(args->specialfile, mntfromname, MNAMELEN - 1, NULL);
1146 		if (error != 0)
1147 			goto out;
1148 	} else {
1149 		mntfromname[0] = '\0';
1150 	}
1151 	error = copyinstr(args->dir, mntonname, MNAMELEN - 1, NULL);
1152 	if (error != 0)
1153 		goto out;
1154 
1155 	if (strcmp(fstypename, "ext2") == 0) {
1156 		strcpy(fstypename, "ext2fs");
1157 	} else if (strcmp(fstypename, "proc") == 0) {
1158 		strcpy(fstypename, "linprocfs");
1159 	} else if (strcmp(fstypename, "vfat") == 0) {
1160 		strcpy(fstypename, "msdosfs");
1161 	} else if (strcmp(fstypename, "fuse") == 0 ||
1162 	    strncmp(fstypename, "fuse.", 5) == 0) {
1163 		char *fuse_options, *fuse_option, *fuse_name;
1164 
1165 		strcpy(mntfromname, "/dev/fuse");
1166 		strcpy(fstypename, "fusefs");
1167 		data = malloc(MNAMELEN, M_TEMP, M_WAITOK);
1168 		error = copyinstr(args->data, data, MNAMELEN - 1, NULL);
1169 		if (error != 0)
1170 			goto out;
1171 
1172 		fuse_options = data;
1173 		while ((fuse_option = strsep(&fuse_options, ",")) != NULL) {
1174 			fuse_name = strsep(&fuse_option, "=");
1175 			if (fuse_name == NULL || fuse_option == NULL)
1176 				goto out;
1177 			ma = mount_arg(ma, fuse_name, fuse_option, -1);
1178 		}
1179 
1180 		/*
1181 		 * The FUSE server uses Linux errno values instead of FreeBSD
1182 		 * ones; add a flag to tell fuse(4) to do errno translation.
1183 		 */
1184 		ma = mount_arg(ma, "linux_errnos", "1", -1);
1185 	}
1186 
1187 	fsflags = 0;
1188 
1189 	/*
1190 	 * Linux SYNC flag is not included; the closest equivalent
1191 	 * FreeBSD has is !ASYNC, which is our default.
1192 	 */
1193 	if (args->rwflag & LINUX_MS_RDONLY)
1194 		fsflags |= MNT_RDONLY;
1195 	if (args->rwflag & LINUX_MS_NOSUID)
1196 		fsflags |= MNT_NOSUID;
1197 	if (args->rwflag & LINUX_MS_NOEXEC)
1198 		fsflags |= MNT_NOEXEC;
1199 	if (args->rwflag & LINUX_MS_REMOUNT)
1200 		fsflags |= MNT_UPDATE;
1201 
1202 	ma = mount_arg(ma, "fstype", fstypename, -1);
1203 	ma = mount_arg(ma, "fspath", mntonname, -1);
1204 	ma = mount_arg(ma, "from", mntfromname, -1);
1205 	error = kernel_mount(ma, fsflags);
1206 out:
1207 	free(fstypename, M_TEMP);
1208 	free(mntonname, M_TEMP);
1209 	free(mntfromname, M_TEMP);
1210 	free(data, M_TEMP);
1211 	return (error);
1212 }
1213 
1214 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1215 int
linux_oldumount(struct thread * td,struct linux_oldumount_args * args)1216 linux_oldumount(struct thread *td, struct linux_oldumount_args *args)
1217 {
1218 
1219 	return (kern_unmount(td, args->path, 0));
1220 }
1221 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1222 
1223 #ifdef LINUX_LEGACY_SYSCALLS
1224 int
linux_umount(struct thread * td,struct linux_umount_args * args)1225 linux_umount(struct thread *td, struct linux_umount_args *args)
1226 {
1227 	uint64_t flags;
1228 
1229 	flags = 0;
1230 	if ((args->flags & LINUX_MNT_FORCE) != 0) {
1231 		args->flags &= ~LINUX_MNT_FORCE;
1232 		flags |= MNT_FORCE;
1233 	}
1234 	if (args->flags != 0) {
1235 		linux_msg(td, "unsupported umount2 flags %#x", args->flags);
1236 		return (EINVAL);
1237 	}
1238 
1239 	return (kern_unmount(td, args->path, flags));
1240 }
1241 #endif
1242 
1243 /*
1244  * fcntl family of syscalls
1245  */
1246 
1247 struct l_flock {
1248 	l_short		l_type;
1249 	l_short		l_whence;
1250 	l_off_t		l_start;
1251 	l_off_t		l_len;
1252 	l_pid_t		l_pid;
1253 }
1254 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1255 __packed
1256 #endif
1257 ;
1258 
1259 static void
linux_to_bsd_flock(struct l_flock * linux_flock,struct flock * bsd_flock)1260 linux_to_bsd_flock(struct l_flock *linux_flock, struct flock *bsd_flock)
1261 {
1262 	switch (linux_flock->l_type) {
1263 	case LINUX_F_RDLCK:
1264 		bsd_flock->l_type = F_RDLCK;
1265 		break;
1266 	case LINUX_F_WRLCK:
1267 		bsd_flock->l_type = F_WRLCK;
1268 		break;
1269 	case LINUX_F_UNLCK:
1270 		bsd_flock->l_type = F_UNLCK;
1271 		break;
1272 	default:
1273 		bsd_flock->l_type = -1;
1274 		break;
1275 	}
1276 	bsd_flock->l_whence = linux_flock->l_whence;
1277 	bsd_flock->l_start = (off_t)linux_flock->l_start;
1278 	bsd_flock->l_len = (off_t)linux_flock->l_len;
1279 	bsd_flock->l_pid = (pid_t)linux_flock->l_pid;
1280 	bsd_flock->l_sysid = 0;
1281 }
1282 
1283 static void
bsd_to_linux_flock(struct flock * bsd_flock,struct l_flock * linux_flock)1284 bsd_to_linux_flock(struct flock *bsd_flock, struct l_flock *linux_flock)
1285 {
1286 	switch (bsd_flock->l_type) {
1287 	case F_RDLCK:
1288 		linux_flock->l_type = LINUX_F_RDLCK;
1289 		break;
1290 	case F_WRLCK:
1291 		linux_flock->l_type = LINUX_F_WRLCK;
1292 		break;
1293 	case F_UNLCK:
1294 		linux_flock->l_type = LINUX_F_UNLCK;
1295 		break;
1296 	}
1297 	linux_flock->l_whence = bsd_flock->l_whence;
1298 	linux_flock->l_start = (l_off_t)bsd_flock->l_start;
1299 	linux_flock->l_len = (l_off_t)bsd_flock->l_len;
1300 	linux_flock->l_pid = (l_pid_t)bsd_flock->l_pid;
1301 }
1302 
1303 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1304 struct l_flock64 {
1305 	l_short		l_type;
1306 	l_short		l_whence;
1307 	l_loff_t	l_start;
1308 	l_loff_t	l_len;
1309 	l_pid_t		l_pid;
1310 }
1311 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1312 __packed
1313 #endif
1314 ;
1315 
1316 static void
linux_to_bsd_flock64(struct l_flock64 * linux_flock,struct flock * bsd_flock)1317 linux_to_bsd_flock64(struct l_flock64 *linux_flock, struct flock *bsd_flock)
1318 {
1319 	switch (linux_flock->l_type) {
1320 	case LINUX_F_RDLCK:
1321 		bsd_flock->l_type = F_RDLCK;
1322 		break;
1323 	case LINUX_F_WRLCK:
1324 		bsd_flock->l_type = F_WRLCK;
1325 		break;
1326 	case LINUX_F_UNLCK:
1327 		bsd_flock->l_type = F_UNLCK;
1328 		break;
1329 	default:
1330 		bsd_flock->l_type = -1;
1331 		break;
1332 	}
1333 	bsd_flock->l_whence = linux_flock->l_whence;
1334 	bsd_flock->l_start = (off_t)linux_flock->l_start;
1335 	bsd_flock->l_len = (off_t)linux_flock->l_len;
1336 	bsd_flock->l_pid = (pid_t)linux_flock->l_pid;
1337 	bsd_flock->l_sysid = 0;
1338 }
1339 
1340 static void
bsd_to_linux_flock64(struct flock * bsd_flock,struct l_flock64 * linux_flock)1341 bsd_to_linux_flock64(struct flock *bsd_flock, struct l_flock64 *linux_flock)
1342 {
1343 	switch (bsd_flock->l_type) {
1344 	case F_RDLCK:
1345 		linux_flock->l_type = LINUX_F_RDLCK;
1346 		break;
1347 	case F_WRLCK:
1348 		linux_flock->l_type = LINUX_F_WRLCK;
1349 		break;
1350 	case F_UNLCK:
1351 		linux_flock->l_type = LINUX_F_UNLCK;
1352 		break;
1353 	}
1354 	linux_flock->l_whence = bsd_flock->l_whence;
1355 	linux_flock->l_start = (l_loff_t)bsd_flock->l_start;
1356 	linux_flock->l_len = (l_loff_t)bsd_flock->l_len;
1357 	linux_flock->l_pid = (l_pid_t)bsd_flock->l_pid;
1358 }
1359 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1360 
1361 static int
fcntl_common(struct thread * td,struct linux_fcntl_args * args)1362 fcntl_common(struct thread *td, struct linux_fcntl_args *args)
1363 {
1364 	struct l_flock linux_flock;
1365 	struct flock bsd_flock;
1366 	struct pipe *fpipe;
1367 	struct file *fp;
1368 	long arg;
1369 	int error, result;
1370 
1371 	switch (args->cmd) {
1372 	case LINUX_F_DUPFD:
1373 		return (kern_fcntl(td, args->fd, F_DUPFD, args->arg));
1374 
1375 	case LINUX_F_GETFD:
1376 		return (kern_fcntl(td, args->fd, F_GETFD, 0));
1377 
1378 	case LINUX_F_SETFD:
1379 		return (kern_fcntl(td, args->fd, F_SETFD, args->arg));
1380 
1381 	case LINUX_F_GETFL:
1382 		error = kern_fcntl(td, args->fd, F_GETFL, 0);
1383 		result = td->td_retval[0];
1384 		td->td_retval[0] = 0;
1385 		if (result & O_RDONLY)
1386 			td->td_retval[0] |= LINUX_O_RDONLY;
1387 		if (result & O_WRONLY)
1388 			td->td_retval[0] |= LINUX_O_WRONLY;
1389 		if (result & O_RDWR)
1390 			td->td_retval[0] |= LINUX_O_RDWR;
1391 		if (result & O_NDELAY)
1392 			td->td_retval[0] |= LINUX_O_NONBLOCK;
1393 		if (result & O_APPEND)
1394 			td->td_retval[0] |= LINUX_O_APPEND;
1395 		if (result & O_FSYNC)
1396 			td->td_retval[0] |= LINUX_O_SYNC;
1397 		if (result & O_ASYNC)
1398 			td->td_retval[0] |= LINUX_O_ASYNC;
1399 #ifdef LINUX_O_NOFOLLOW
1400 		if (result & O_NOFOLLOW)
1401 			td->td_retval[0] |= LINUX_O_NOFOLLOW;
1402 #endif
1403 #ifdef LINUX_O_DIRECT
1404 		if (result & O_DIRECT)
1405 			td->td_retval[0] |= LINUX_O_DIRECT;
1406 #endif
1407 		return (error);
1408 
1409 	case LINUX_F_SETFL:
1410 		arg = 0;
1411 		if (args->arg & LINUX_O_NDELAY)
1412 			arg |= O_NONBLOCK;
1413 		if (args->arg & LINUX_O_APPEND)
1414 			arg |= O_APPEND;
1415 		if (args->arg & LINUX_O_SYNC)
1416 			arg |= O_FSYNC;
1417 		if (args->arg & LINUX_O_ASYNC)
1418 			arg |= O_ASYNC;
1419 #ifdef LINUX_O_NOFOLLOW
1420 		if (args->arg & LINUX_O_NOFOLLOW)
1421 			arg |= O_NOFOLLOW;
1422 #endif
1423 #ifdef LINUX_O_DIRECT
1424 		if (args->arg & LINUX_O_DIRECT)
1425 			arg |= O_DIRECT;
1426 #endif
1427 		return (kern_fcntl(td, args->fd, F_SETFL, arg));
1428 
1429 	case LINUX_F_GETLK:
1430 		error = copyin((void *)args->arg, &linux_flock,
1431 		    sizeof(linux_flock));
1432 		if (error)
1433 			return (error);
1434 		linux_to_bsd_flock(&linux_flock, &bsd_flock);
1435 		error = kern_fcntl(td, args->fd, F_GETLK, (intptr_t)&bsd_flock);
1436 		if (error)
1437 			return (error);
1438 		bsd_to_linux_flock(&bsd_flock, &linux_flock);
1439 		return (copyout(&linux_flock, (void *)args->arg,
1440 		    sizeof(linux_flock)));
1441 
1442 	case LINUX_F_SETLK:
1443 		error = copyin((void *)args->arg, &linux_flock,
1444 		    sizeof(linux_flock));
1445 		if (error)
1446 			return (error);
1447 		linux_to_bsd_flock(&linux_flock, &bsd_flock);
1448 		return (kern_fcntl(td, args->fd, F_SETLK,
1449 		    (intptr_t)&bsd_flock));
1450 
1451 	case LINUX_F_SETLKW:
1452 		error = copyin((void *)args->arg, &linux_flock,
1453 		    sizeof(linux_flock));
1454 		if (error)
1455 			return (error);
1456 		linux_to_bsd_flock(&linux_flock, &bsd_flock);
1457 		return (kern_fcntl(td, args->fd, F_SETLKW,
1458 		     (intptr_t)&bsd_flock));
1459 
1460 	case LINUX_F_GETOWN:
1461 		return (kern_fcntl(td, args->fd, F_GETOWN, 0));
1462 
1463 	case LINUX_F_SETOWN:
1464 		/*
1465 		 * XXX some Linux applications depend on F_SETOWN having no
1466 		 * significant effect for pipes (SIGIO is not delivered for
1467 		 * pipes under Linux-2.2.35 at least).
1468 		 */
1469 		error = fget(td, args->fd,
1470 		    &cap_fcntl_rights, &fp);
1471 		if (error)
1472 			return (error);
1473 		if (fp->f_type == DTYPE_PIPE) {
1474 			fdrop(fp, td);
1475 			return (EINVAL);
1476 		}
1477 		fdrop(fp, td);
1478 
1479 		return (kern_fcntl(td, args->fd, F_SETOWN, args->arg));
1480 
1481 	case LINUX_F_DUPFD_CLOEXEC:
1482 		return (kern_fcntl(td, args->fd, F_DUPFD_CLOEXEC, args->arg));
1483 	/*
1484 	 * Our F_SEAL_* values match Linux one for maximum compatibility.  So we
1485 	 * only needed to account for different values for fcntl(2) commands.
1486 	 */
1487 	case LINUX_F_GET_SEALS:
1488 		error = kern_fcntl(td, args->fd, F_GET_SEALS, 0);
1489 		if (error != 0)
1490 			return (error);
1491 		td->td_retval[0] = bsd_to_linux_bits(td->td_retval[0],
1492 		    seal_bitmap, 0);
1493 		return (0);
1494 
1495 	case LINUX_F_ADD_SEALS:
1496 		return (kern_fcntl(td, args->fd, F_ADD_SEALS,
1497 		    linux_to_bsd_bits(args->arg, seal_bitmap, 0)));
1498 
1499 	case LINUX_F_GETPIPE_SZ:
1500 		error = fget(td, args->fd,
1501 		    &cap_fcntl_rights, &fp);
1502 		if (error != 0)
1503 			return (error);
1504 		if (fp->f_type != DTYPE_PIPE) {
1505 			fdrop(fp, td);
1506 			return (EINVAL);
1507 		}
1508 		fpipe = fp->f_data;
1509 		td->td_retval[0] = fpipe->pipe_buffer.size;
1510 		fdrop(fp, td);
1511 		return (0);
1512 
1513 	case LINUX_F_DUPFD_QUERY:
1514 		error = kern_kcmp(td, td->td_proc->p_pid, td->td_proc->p_pid,
1515 		    KCMP_FILE, args->fd, args->arg);
1516 		if (error != 0)
1517 			return (error);
1518 		td->td_retval[0] = (td->td_retval[0] == 0) ? 1 : 0;
1519 		return (0);
1520 
1521 	default:
1522 		linux_msg(td, "unsupported fcntl cmd %d", args->cmd);
1523 		return (EINVAL);
1524 	}
1525 }
1526 
1527 int
linux_fcntl(struct thread * td,struct linux_fcntl_args * args)1528 linux_fcntl(struct thread *td, struct linux_fcntl_args *args)
1529 {
1530 
1531 	return (fcntl_common(td, args));
1532 }
1533 
1534 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1535 int
linux_fcntl64(struct thread * td,struct linux_fcntl64_args * args)1536 linux_fcntl64(struct thread *td, struct linux_fcntl64_args *args)
1537 {
1538 	struct l_flock64 linux_flock;
1539 	struct flock bsd_flock;
1540 	struct linux_fcntl_args fcntl_args;
1541 	int error;
1542 
1543 	switch (args->cmd) {
1544 	case LINUX_F_GETLK64:
1545 		error = copyin((void *)args->arg, &linux_flock,
1546 		    sizeof(linux_flock));
1547 		if (error)
1548 			return (error);
1549 		linux_to_bsd_flock64(&linux_flock, &bsd_flock);
1550 		error = kern_fcntl(td, args->fd, F_GETLK, (intptr_t)&bsd_flock);
1551 		if (error)
1552 			return (error);
1553 		bsd_to_linux_flock64(&bsd_flock, &linux_flock);
1554 		return (copyout(&linux_flock, (void *)args->arg,
1555 			    sizeof(linux_flock)));
1556 
1557 	case LINUX_F_SETLK64:
1558 		error = copyin((void *)args->arg, &linux_flock,
1559 		    sizeof(linux_flock));
1560 		if (error)
1561 			return (error);
1562 		linux_to_bsd_flock64(&linux_flock, &bsd_flock);
1563 		return (kern_fcntl(td, args->fd, F_SETLK,
1564 		    (intptr_t)&bsd_flock));
1565 
1566 	case LINUX_F_SETLKW64:
1567 		error = copyin((void *)args->arg, &linux_flock,
1568 		    sizeof(linux_flock));
1569 		if (error)
1570 			return (error);
1571 		linux_to_bsd_flock64(&linux_flock, &bsd_flock);
1572 		return (kern_fcntl(td, args->fd, F_SETLKW,
1573 		    (intptr_t)&bsd_flock));
1574 	}
1575 
1576 	fcntl_args.fd = args->fd;
1577 	fcntl_args.cmd = args->cmd;
1578 	fcntl_args.arg = args->arg;
1579 	return (fcntl_common(td, &fcntl_args));
1580 }
1581 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1582 
1583 #ifdef LINUX_LEGACY_SYSCALLS
1584 int
linux_chown(struct thread * td,struct linux_chown_args * args)1585 linux_chown(struct thread *td, struct linux_chown_args *args)
1586 {
1587 
1588 	return (kern_fchownat(td, AT_FDCWD, args->path, UIO_USERSPACE,
1589 	    args->uid, args->gid, 0));
1590 }
1591 #endif
1592 
1593 int
linux_fchownat(struct thread * td,struct linux_fchownat_args * args)1594 linux_fchownat(struct thread *td, struct linux_fchownat_args *args)
1595 {
1596 	int dfd, flag, unsupported;
1597 
1598 	unsupported = args->flag & ~(LINUX_AT_SYMLINK_NOFOLLOW | LINUX_AT_EMPTY_PATH);
1599 	if (unsupported != 0) {
1600 		linux_msg(td, "fchownat unsupported flag 0x%x", unsupported);
1601 		return (EINVAL);
1602 	}
1603 
1604 	flag = (args->flag & LINUX_AT_SYMLINK_NOFOLLOW) == 0 ? 0 :
1605 	    AT_SYMLINK_NOFOLLOW;
1606 	flag |= (args->flag & LINUX_AT_EMPTY_PATH) == 0 ? 0 :
1607 	    AT_EMPTY_PATH;
1608 
1609 	dfd = (args->dfd == LINUX_AT_FDCWD) ? AT_FDCWD :  args->dfd;
1610 	return (kern_fchownat(td, dfd, args->filename, UIO_USERSPACE,
1611 	    args->uid, args->gid, flag));
1612 }
1613 
1614 #ifdef LINUX_LEGACY_SYSCALLS
1615 int
linux_lchown(struct thread * td,struct linux_lchown_args * args)1616 linux_lchown(struct thread *td, struct linux_lchown_args *args)
1617 {
1618 
1619 	return (kern_fchownat(td, AT_FDCWD, args->path, UIO_USERSPACE, args->uid,
1620 	    args->gid, AT_SYMLINK_NOFOLLOW));
1621 }
1622 #endif
1623 
1624 static int
convert_fadvice(int advice)1625 convert_fadvice(int advice)
1626 {
1627 	switch (advice) {
1628 	case LINUX_POSIX_FADV_NORMAL:
1629 		return (POSIX_FADV_NORMAL);
1630 	case LINUX_POSIX_FADV_RANDOM:
1631 		return (POSIX_FADV_RANDOM);
1632 	case LINUX_POSIX_FADV_SEQUENTIAL:
1633 		return (POSIX_FADV_SEQUENTIAL);
1634 	case LINUX_POSIX_FADV_WILLNEED:
1635 		return (POSIX_FADV_WILLNEED);
1636 	case LINUX_POSIX_FADV_DONTNEED:
1637 		return (POSIX_FADV_DONTNEED);
1638 	case LINUX_POSIX_FADV_NOREUSE:
1639 		return (POSIX_FADV_NOREUSE);
1640 	default:
1641 		return (-1);
1642 	}
1643 }
1644 
1645 int
linux_fadvise64(struct thread * td,struct linux_fadvise64_args * args)1646 linux_fadvise64(struct thread *td, struct linux_fadvise64_args *args)
1647 {
1648 	off_t offset;
1649 	int advice;
1650 
1651 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1652 	offset = PAIR32TO64(off_t, args->offset);
1653 #else
1654 	offset = args->offset;
1655 #endif
1656 
1657 	advice = convert_fadvice(args->advice);
1658 	if (advice == -1)
1659 		return (EINVAL);
1660 	return (kern_posix_fadvise(td, args->fd, offset, args->len, advice));
1661 }
1662 
1663 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
1664 int
linux_fadvise64_64(struct thread * td,struct linux_fadvise64_64_args * args)1665 linux_fadvise64_64(struct thread *td, struct linux_fadvise64_64_args *args)
1666 {
1667 	off_t len, offset;
1668 	int advice;
1669 
1670 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1671 	len = PAIR32TO64(off_t, args->len);
1672 	offset = PAIR32TO64(off_t, args->offset);
1673 #else
1674 	len = args->len;
1675 	offset = args->offset;
1676 #endif
1677 
1678 	advice = convert_fadvice(args->advice);
1679 	if (advice == -1)
1680 		return (EINVAL);
1681 	return (kern_posix_fadvise(td, args->fd, offset, len, advice));
1682 }
1683 #endif /* __i386__ || (__amd64__ && COMPAT_LINUX32) */
1684 
1685 #ifdef LINUX_LEGACY_SYSCALLS
1686 int
linux_pipe(struct thread * td,struct linux_pipe_args * args)1687 linux_pipe(struct thread *td, struct linux_pipe_args *args)
1688 {
1689 	int fildes[2];
1690 	int error;
1691 
1692 	error = kern_pipe(td, fildes, 0, NULL, NULL);
1693 	if (error != 0)
1694 		return (error);
1695 
1696 	error = copyout(fildes, args->pipefds, sizeof(fildes));
1697 	if (error != 0) {
1698 		(void)kern_close(td, fildes[0]);
1699 		(void)kern_close(td, fildes[1]);
1700 	}
1701 
1702 	return (error);
1703 }
1704 #endif
1705 
1706 int
linux_pipe2(struct thread * td,struct linux_pipe2_args * args)1707 linux_pipe2(struct thread *td, struct linux_pipe2_args *args)
1708 {
1709 	int fildes[2];
1710 	int error, flags;
1711 
1712 	if ((args->flags & ~(LINUX_O_NONBLOCK | LINUX_O_CLOEXEC)) != 0)
1713 		return (EINVAL);
1714 
1715 	flags = 0;
1716 	if ((args->flags & LINUX_O_NONBLOCK) != 0)
1717 		flags |= O_NONBLOCK;
1718 	if ((args->flags & LINUX_O_CLOEXEC) != 0)
1719 		flags |= O_CLOEXEC;
1720 	error = kern_pipe(td, fildes, flags, NULL, NULL);
1721 	if (error != 0)
1722 		return (error);
1723 
1724 	error = copyout(fildes, args->pipefds, sizeof(fildes));
1725 	if (error != 0) {
1726 		(void)kern_close(td, fildes[0]);
1727 		(void)kern_close(td, fildes[1]);
1728 	}
1729 
1730 	return (error);
1731 }
1732 
1733 int
linux_dup3(struct thread * td,struct linux_dup3_args * args)1734 linux_dup3(struct thread *td, struct linux_dup3_args *args)
1735 {
1736 	int cmd;
1737 	intptr_t newfd;
1738 
1739 	if (args->oldfd == args->newfd)
1740 		return (EINVAL);
1741 	if ((args->flags & ~LINUX_O_CLOEXEC) != 0)
1742 		return (EINVAL);
1743 	if (args->flags & LINUX_O_CLOEXEC)
1744 		cmd = F_DUP2FD_CLOEXEC;
1745 	else
1746 		cmd = F_DUP2FD;
1747 
1748 	newfd = args->newfd;
1749 	return (kern_fcntl(td, args->oldfd, cmd, newfd));
1750 }
1751 
1752 int
linux_fallocate(struct thread * td,struct linux_fallocate_args * args)1753 linux_fallocate(struct thread *td, struct linux_fallocate_args *args)
1754 {
1755 	off_t len, offset;
1756 
1757 	/*
1758 	 * We emulate only posix_fallocate system call for which
1759 	 * mode should be 0.
1760 	 */
1761 	if (args->mode != 0)
1762 		return (EOPNOTSUPP);
1763 
1764 #if defined(__amd64__) && defined(COMPAT_LINUX32)
1765 	len = PAIR32TO64(off_t, args->len);
1766 	offset = PAIR32TO64(off_t, args->offset);
1767 #else
1768 	len = args->len;
1769 	offset = args->offset;
1770 #endif
1771 
1772 	return (kern_posix_fallocate(td, args->fd, offset, len));
1773 }
1774 
1775 int
linux_copy_file_range(struct thread * td,struct linux_copy_file_range_args * args)1776 linux_copy_file_range(struct thread *td, struct linux_copy_file_range_args
1777     *args)
1778 {
1779 	l_loff_t inoff, outoff, *inoffp, *outoffp;
1780 	int error, flags;
1781 
1782 	/*
1783 	 * copy_file_range(2) on Linux doesn't define any flags (yet), so is
1784 	 * the native implementation.  Enforce it.
1785 	 */
1786 	if (args->flags != 0) {
1787 		linux_msg(td, "copy_file_range unsupported flags 0x%x",
1788 		    args->flags);
1789 		return (EINVAL);
1790 	}
1791 	flags = 0;
1792 	inoffp = outoffp = NULL;
1793 	if (args->off_in != NULL) {
1794 		error = copyin(args->off_in, &inoff, sizeof(l_loff_t));
1795 		if (error != 0)
1796 			return (error);
1797 		inoffp = &inoff;
1798 	}
1799 	if (args->off_out != NULL) {
1800 		error = copyin(args->off_out, &outoff, sizeof(l_loff_t));
1801 		if (error != 0)
1802 			return (error);
1803 		outoffp = &outoff;
1804 	}
1805 
1806 	error = kern_copy_file_range(td, args->fd_in, inoffp, args->fd_out,
1807 	    outoffp, args->len, flags);
1808 	if (error == 0 && args->off_in != NULL)
1809 		error = copyout(inoffp, args->off_in, sizeof(l_loff_t));
1810 	if (error == 0 && args->off_out != NULL)
1811 		error = copyout(outoffp, args->off_out, sizeof(l_loff_t));
1812 	return (error);
1813 }
1814 
1815 #define	LINUX_MEMFD_PREFIX	"memfd:"
1816 
1817 int
linux_memfd_create(struct thread * td,struct linux_memfd_create_args * args)1818 linux_memfd_create(struct thread *td, struct linux_memfd_create_args *args)
1819 {
1820 	char memfd_name[LINUX_NAME_MAX + 1];
1821 	int error, flags, shmflags, oflags;
1822 
1823 	/*
1824 	 * This is our clever trick to avoid the heap allocation to copy in the
1825 	 * uname.  We don't really need to go this far out of our way, but it
1826 	 * does keep the rest of this function fairly clean as they don't have
1827 	 * to worry about cleanup on the way out.
1828 	 */
1829 	error = copyinstr(args->uname_ptr,
1830 	    memfd_name + sizeof(LINUX_MEMFD_PREFIX) - 1,
1831 	    LINUX_NAME_MAX - sizeof(LINUX_MEMFD_PREFIX) - 1, NULL);
1832 	if (error != 0) {
1833 		if (error == ENAMETOOLONG)
1834 			error = EINVAL;
1835 		return (error);
1836 	}
1837 
1838 	memcpy(memfd_name, LINUX_MEMFD_PREFIX, sizeof(LINUX_MEMFD_PREFIX) - 1);
1839 	flags = linux_to_bsd_bits(args->flags, mfd_bitmap, 0);
1840 	if ((flags & ~(MFD_CLOEXEC | MFD_ALLOW_SEALING | MFD_HUGETLB |
1841 	    MFD_HUGE_MASK)) != 0)
1842 		return (EINVAL);
1843 	/* Size specified but no HUGETLB. */
1844 	if ((flags & MFD_HUGE_MASK) != 0 && (flags & MFD_HUGETLB) == 0)
1845 		return (EINVAL);
1846 	/* We don't actually support HUGETLB. */
1847 	if ((flags & MFD_HUGETLB) != 0)
1848 		return (ENOSYS);
1849 	oflags = O_RDWR;
1850 	shmflags = SHM_GROW_ON_WRITE;
1851 	if ((flags & MFD_CLOEXEC) != 0)
1852 		oflags |= O_CLOEXEC;
1853 	if ((flags & MFD_ALLOW_SEALING) != 0)
1854 		shmflags |= SHM_ALLOW_SEALING;
1855 	return (kern_shm_open2(td, SHM_ANON, oflags, 0, shmflags, NULL,
1856 	    memfd_name, NULL));
1857 }
1858 
1859 int
linux_splice(struct thread * td,struct linux_splice_args * args)1860 linux_splice(struct thread *td, struct linux_splice_args *args)
1861 {
1862 
1863 	linux_msg(td, "syscall splice not really implemented");
1864 
1865 	/*
1866 	 * splice(2) is documented to return EINVAL in various circumstances;
1867 	 * returning it instead of ENOSYS should hint the caller to use fallback
1868 	 * instead.
1869 	 */
1870 	return (EINVAL);
1871 }
1872 
1873 int
linux_close_range(struct thread * td,struct linux_close_range_args * args)1874 linux_close_range(struct thread *td, struct linux_close_range_args *args)
1875 {
1876 	u_int flags = 0;
1877 
1878 	/*
1879 	 * Implementing close_range(CLOSE_RANGE_UNSHARE) allows Linux to
1880 	 * unshare filedesc table of the calling thread from others threads
1881 	 * in a thread group (i.e., process in the FreeBSD) or others processes,
1882 	 * which shares the same table, before closing the files. FreeBSD does
1883 	 * not have compatible unsharing mechanism due to the fact that sharing
1884 	 * process resources, including filedesc table, is at thread level in the
1885 	 * Linux, while in the FreeBSD it is at the process level.
1886 	 * Return EINVAL for now if the CLOSE_RANGE_UNSHARE flag is specified
1887 	 * until this new Linux API stabilizes.
1888 	 */
1889 
1890 	if ((args->flags & ~(LINUX_CLOSE_RANGE_CLOEXEC)) != 0)
1891 		return (EINVAL);
1892 	if (args->first > args->last)
1893 		return (EINVAL);
1894 	if ((args->flags & LINUX_CLOSE_RANGE_CLOEXEC) != 0)
1895 		flags |= CLOSE_RANGE_CLOEXEC;
1896 	return (kern_close_range(td, flags, args->first, args->last));
1897 }
1898 
1899 int
linux_enobufs2eagain(struct thread * td,int fd,int error)1900 linux_enobufs2eagain(struct thread *td, int fd, int error)
1901 {
1902 	struct file *fp;
1903 
1904 	if (error != ENOBUFS)
1905 		return (error);
1906 	if (fget(td, fd, &cap_no_rights, &fp) != 0)
1907 		return (error);
1908 	if (fp->f_type == DTYPE_SOCKET && (fp->f_flag & FNONBLOCK) != 0)
1909 		error = EAGAIN;
1910 	fdrop(fp, td);
1911 	return (error);
1912 }
1913 
1914 int
linux_write(struct thread * td,struct linux_write_args * args)1915 linux_write(struct thread *td, struct linux_write_args *args)
1916 {
1917 	struct write_args bargs = {
1918 		.fd	= args->fd,
1919 		.buf	= args->buf,
1920 		.nbyte	= args->nbyte,
1921 	};
1922 
1923 	return (linux_enobufs2eagain(td, args->fd, sys_write(td, &bargs)));
1924 }
1925 
1926 int
linux_writev(struct thread * td,struct linux_writev_args * args)1927 linux_writev(struct thread *td, struct linux_writev_args *args)
1928 {
1929 	struct uio *auio;
1930 	int error;
1931 
1932 #ifdef COMPAT_LINUX32
1933 	error = freebsd32_copyinuio(PTRIN(args->iovp), args->iovcnt, &auio);
1934 #else
1935 	error = copyinuio(args->iovp, args->iovcnt, &auio);
1936 #endif
1937 	if (error != 0)
1938 		return (error);
1939 	error = kern_writev(td, args->fd, auio);
1940 	freeuio(auio);
1941 	return (linux_enobufs2eagain(td, args->fd, error));
1942 }
1943 
1944 static int
linux_inotify_init_flags(int l_flags)1945 linux_inotify_init_flags(int l_flags)
1946 {
1947 	int bsd_flags;
1948 
1949 	if ((l_flags & ~(LINUX_IN_CLOEXEC | LINUX_IN_NONBLOCK)) != 0)
1950 		linux_msg(NULL, "inotify_init1 unsupported flags 0x%x",
1951 		    l_flags);
1952 
1953 	bsd_flags = 0;
1954 	if ((l_flags & LINUX_IN_CLOEXEC) != 0)
1955 		bsd_flags |= O_CLOEXEC;
1956 	if ((l_flags & LINUX_IN_NONBLOCK) != 0)
1957 		bsd_flags |= O_NONBLOCK;
1958 	return (bsd_flags);
1959 }
1960 
1961 static int
inotify_init_common(struct thread * td,int flags)1962 inotify_init_common(struct thread *td, int flags)
1963 {
1964 	struct specialfd_inotify si;
1965 
1966 	si.flags = linux_inotify_init_flags(flags);
1967 	return (kern_specialfd(td, SPECIALFD_INOTIFY, &si));
1968 }
1969 
1970 #if defined(__i386__) || defined(__amd64__)
1971 int
linux_inotify_init(struct thread * td,struct linux_inotify_init_args * args)1972 linux_inotify_init(struct thread *td, struct linux_inotify_init_args *args)
1973 {
1974 	return (inotify_init_common(td, 0));
1975 }
1976 #endif
1977 
1978 int
linux_inotify_init1(struct thread * td,struct linux_inotify_init1_args * args)1979 linux_inotify_init1(struct thread *td, struct linux_inotify_init1_args *args)
1980 {
1981 	return (inotify_init_common(td, args->flags));
1982 }
1983 
1984 /*
1985  * The native implementation uses the same values for inotify events as
1986  * libinotify, which gives us binary compatibility with Linux.  This simplifies
1987  * the shim implementation a lot, as otherwise we would have to handle read(2)
1988  * calls on inotify descriptors and translate events to Linux's ABI.
1989  */
1990 _Static_assert(LINUX_IN_ACCESS == IN_ACCESS,
1991     "IN_ACCESS mismatch");
1992 _Static_assert(LINUX_IN_MODIFY == IN_MODIFY,
1993     "IN_MODIFY mismatch");
1994 _Static_assert(LINUX_IN_ATTRIB == IN_ATTRIB,
1995     "IN_ATTRIB mismatch");
1996 _Static_assert(LINUX_IN_CLOSE_WRITE == IN_CLOSE_WRITE,
1997     "IN_CLOSE_WRITE mismatch");
1998 _Static_assert(LINUX_IN_CLOSE_NOWRITE == IN_CLOSE_NOWRITE,
1999     "IN_CLOSE_NOWRITE mismatch");
2000 _Static_assert(LINUX_IN_OPEN == IN_OPEN,
2001     "IN_OPEN mismatch");
2002 _Static_assert(LINUX_IN_MOVED_FROM == IN_MOVED_FROM,
2003     "IN_MOVED_FROM mismatch");
2004 _Static_assert(LINUX_IN_MOVED_TO == IN_MOVED_TO,
2005     "IN_MOVED_TO mismatch");
2006 _Static_assert(LINUX_IN_CREATE == IN_CREATE,
2007     "IN_CREATE mismatch");
2008 _Static_assert(LINUX_IN_DELETE == IN_DELETE,
2009     "IN_DELETE mismatch");
2010 _Static_assert(LINUX_IN_DELETE_SELF == IN_DELETE_SELF,
2011     "IN_DELETE_SELF mismatch");
2012 _Static_assert(LINUX_IN_MOVE_SELF == IN_MOVE_SELF,
2013     "IN_MOVE_SELF mismatch");
2014 
2015 _Static_assert(LINUX_IN_UNMOUNT == IN_UNMOUNT,
2016     "IN_UNMOUNT mismatch");
2017 _Static_assert(LINUX_IN_Q_OVERFLOW == IN_Q_OVERFLOW,
2018     "IN_Q_OVERFLOW mismatch");
2019 _Static_assert(LINUX_IN_IGNORED == IN_IGNORED,
2020     "IN_IGNORED mismatch");
2021 
2022 _Static_assert(LINUX_IN_ISDIR == IN_ISDIR,
2023     "IN_ISDIR mismatch");
2024 _Static_assert(LINUX_IN_ONLYDIR == IN_ONLYDIR,
2025     "IN_ONLYDIR mismatch");
2026 _Static_assert(LINUX_IN_DONT_FOLLOW == IN_DONT_FOLLOW,
2027     "IN_DONT_FOLLOW mismatch");
2028 _Static_assert(LINUX_IN_MASK_CREATE == IN_MASK_CREATE,
2029     "IN_MASK_CREATE mismatch");
2030 _Static_assert(LINUX_IN_MASK_ADD == IN_MASK_ADD,
2031     "IN_MASK_ADD mismatch");
2032 _Static_assert(LINUX_IN_ONESHOT == IN_ONESHOT,
2033     "IN_ONESHOT mismatch");
2034 _Static_assert(LINUX_IN_EXCL_UNLINK == IN_EXCL_UNLINK,
2035     "IN_EXCL_UNLINK mismatch");
2036 
2037 static int
linux_inotify_watch_flags(int l_flags)2038 linux_inotify_watch_flags(int l_flags)
2039 {
2040 	if ((l_flags & ~(LINUX_IN_ALL_EVENTS | LINUX_IN_ALL_FLAGS)) != 0) {
2041 		linux_msg(NULL, "inotify_add_watch unsupported flags 0x%x",
2042 		    l_flags);
2043 	}
2044 
2045 	return (l_flags);
2046 }
2047 
2048 int
linux_inotify_add_watch(struct thread * td,struct linux_inotify_add_watch_args * args)2049 linux_inotify_add_watch(struct thread *td,
2050     struct linux_inotify_add_watch_args *args)
2051 {
2052 	return (kern_inotify_add_watch(args->fd, AT_FDCWD, args->pathname,
2053 	    linux_inotify_watch_flags(args->mask), td));
2054 }
2055 
2056 int
linux_inotify_rm_watch(struct thread * td,struct linux_inotify_rm_watch_args * args)2057 linux_inotify_rm_watch(struct thread *td,
2058     struct linux_inotify_rm_watch_args *args)
2059 {
2060 	return (kern_inotify_rm_watch(args->fd, args->wd, td));
2061 }
2062