linux_misc.c revision 1.127 1 1.127 jdolecek /* $NetBSD: linux_misc.c,v 1.127 2004/08/08 09:40:50 jdolecek Exp $ */
2 1.47 erh
3 1.47 erh /*-
4 1.56 thorpej * Copyright (c) 1995, 1998, 1999 The NetBSD Foundation, Inc.
5 1.47 erh * All rights reserved.
6 1.47 erh *
7 1.47 erh * This code is derived from software contributed to The NetBSD Foundation
8 1.56 thorpej * by Frank van der Linden and Eric Haszlakiewicz; by Jason R. Thorpe
9 1.56 thorpej * of the Numerical Aerospace Simulation Facility, NASA Ames Research Center.
10 1.47 erh *
11 1.47 erh * Redistribution and use in source and binary forms, with or without
12 1.47 erh * modification, are permitted provided that the following conditions
13 1.47 erh * are met:
14 1.47 erh * 1. Redistributions of source code must retain the above copyright
15 1.47 erh * notice, this list of conditions and the following disclaimer.
16 1.47 erh * 2. Redistributions in binary form must reproduce the above copyright
17 1.47 erh * notice, this list of conditions and the following disclaimer in the
18 1.47 erh * documentation and/or other materials provided with the distribution.
19 1.47 erh * 3. All advertising materials mentioning features or use of this software
20 1.47 erh * must display the following acknowledgement:
21 1.47 erh * This product includes software developed by the NetBSD
22 1.47 erh * Foundation, Inc. and its contributors.
23 1.47 erh * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.47 erh * contributors may be used to endorse or promote products derived
25 1.47 erh * from this software without specific prior written permission.
26 1.47 erh *
27 1.47 erh * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.47 erh * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.47 erh * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.47 erh * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.47 erh * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.47 erh * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.47 erh * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.47 erh * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.47 erh * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.47 erh * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.47 erh * POSSIBILITY OF SUCH DAMAGE.
38 1.1 fvdl */
39 1.1 fvdl
40 1.1 fvdl /*
41 1.1 fvdl * Linux compatibility module. Try to deal with various Linux system calls.
42 1.1 fvdl */
43 1.1 fvdl
44 1.47 erh /*
45 1.47 erh * These functions have been moved to multiarch to allow
46 1.47 erh * selection of which machines include them to be
47 1.47 erh * determined by the individual files.linux_<arch> files.
48 1.47 erh *
49 1.47 erh * Function in multiarch:
50 1.47 erh * linux_sys_break : linux_break.c
51 1.47 erh * linux_sys_alarm : linux_misc_notalpha.c
52 1.57 thorpej * linux_sys_getresgid : linux_misc_notalpha.c
53 1.47 erh * linux_sys_nice : linux_misc_notalpha.c
54 1.47 erh * linux_sys_readdir : linux_misc_notalpha.c
55 1.57 thorpej * linux_sys_setresgid : linux_misc_notalpha.c
56 1.47 erh * linux_sys_time : linux_misc_notalpha.c
57 1.47 erh * linux_sys_utime : linux_misc_notalpha.c
58 1.47 erh * linux_sys_waitpid : linux_misc_notalpha.c
59 1.47 erh * linux_sys_old_mmap : linux_oldmmap.c
60 1.47 erh * linux_sys_oldolduname : linux_oldolduname.c
61 1.47 erh * linux_sys_oldselect : linux_oldselect.c
62 1.47 erh * linux_sys_olduname : linux_olduname.c
63 1.47 erh * linux_sys_pipe : linux_pipe.c
64 1.47 erh */
65 1.95 lukem
66 1.95 lukem #include <sys/cdefs.h>
67 1.127 jdolecek __KERNEL_RCSID(0, "$NetBSD: linux_misc.c,v 1.127 2004/08/08 09:40:50 jdolecek Exp $");
68 1.47 erh
69 1.1 fvdl #include <sys/param.h>
70 1.1 fvdl #include <sys/systm.h>
71 1.1 fvdl #include <sys/namei.h>
72 1.1 fvdl #include <sys/proc.h>
73 1.29 mycroft #include <sys/dirent.h>
74 1.1 fvdl #include <sys/file.h>
75 1.1 fvdl #include <sys/stat.h>
76 1.1 fvdl #include <sys/filedesc.h>
77 1.1 fvdl #include <sys/ioctl.h>
78 1.1 fvdl #include <sys/kernel.h>
79 1.1 fvdl #include <sys/malloc.h>
80 1.1 fvdl #include <sys/mbuf.h>
81 1.1 fvdl #include <sys/mman.h>
82 1.1 fvdl #include <sys/mount.h>
83 1.67 erh #include <sys/reboot.h>
84 1.1 fvdl #include <sys/resource.h>
85 1.1 fvdl #include <sys/resourcevar.h>
86 1.1 fvdl #include <sys/signal.h>
87 1.1 fvdl #include <sys/signalvar.h>
88 1.1 fvdl #include <sys/socket.h>
89 1.1 fvdl #include <sys/time.h>
90 1.1 fvdl #include <sys/times.h>
91 1.1 fvdl #include <sys/vnode.h>
92 1.1 fvdl #include <sys/uio.h>
93 1.1 fvdl #include <sys/wait.h>
94 1.1 fvdl #include <sys/utsname.h>
95 1.1 fvdl #include <sys/unistd.h>
96 1.75 jdolecek #include <sys/swap.h> /* for SWAP_ON */
97 1.75 jdolecek #include <sys/sysctl.h> /* for KERN_DOMAINNAME */
98 1.1 fvdl
99 1.73 jdolecek #include <sys/ptrace.h>
100 1.73 jdolecek #include <machine/ptrace.h>
101 1.73 jdolecek
102 1.116 thorpej #include <sys/sa.h>
103 1.1 fvdl #include <sys/syscallargs.h>
104 1.1 fvdl
105 1.49 christos #include <compat/linux/common/linux_types.h>
106 1.49 christos #include <compat/linux/common/linux_signal.h>
107 1.49 christos
108 1.1 fvdl #include <compat/linux/linux_syscallargs.h>
109 1.49 christos
110 1.49 christos #include <compat/linux/common/linux_fcntl.h>
111 1.49 christos #include <compat/linux/common/linux_mmap.h>
112 1.49 christos #include <compat/linux/common/linux_dirent.h>
113 1.49 christos #include <compat/linux/common/linux_util.h>
114 1.49 christos #include <compat/linux/common/linux_misc.h>
115 1.62 tron #include <compat/linux/common/linux_ptrace.h>
116 1.67 erh #include <compat/linux/common/linux_reboot.h>
117 1.84 manu #include <compat/linux/common/linux_emuldata.h>
118 1.49 christos
119 1.73 jdolecek const int linux_ptrace_request_map[] = {
120 1.62 tron LINUX_PTRACE_TRACEME, PT_TRACE_ME,
121 1.62 tron LINUX_PTRACE_PEEKTEXT, PT_READ_I,
122 1.62 tron LINUX_PTRACE_PEEKDATA, PT_READ_D,
123 1.62 tron LINUX_PTRACE_POKETEXT, PT_WRITE_I,
124 1.62 tron LINUX_PTRACE_POKEDATA, PT_WRITE_D,
125 1.62 tron LINUX_PTRACE_CONT, PT_CONTINUE,
126 1.62 tron LINUX_PTRACE_KILL, PT_KILL,
127 1.62 tron LINUX_PTRACE_ATTACH, PT_ATTACH,
128 1.62 tron LINUX_PTRACE_DETACH, PT_DETACH,
129 1.73 jdolecek #ifdef PT_STEP
130 1.73 jdolecek LINUX_PTRACE_SINGLESTEP, PT_STEP,
131 1.73 jdolecek #endif
132 1.62 tron -1
133 1.62 tron };
134 1.1 fvdl
135 1.111 simonb static const struct mnttypes {
136 1.101 christos char *bsd;
137 1.101 christos int linux;
138 1.101 christos } fstypes[] = {
139 1.101 christos { MOUNT_FFS, LINUX_DEFAULT_SUPER_MAGIC },
140 1.101 christos { MOUNT_NFS, LINUX_NFS_SUPER_MAGIC },
141 1.101 christos { MOUNT_MFS, LINUX_DEFAULT_SUPER_MAGIC },
142 1.101 christos { MOUNT_MSDOS, LINUX_MSDOS_SUPER_MAGIC },
143 1.101 christos { MOUNT_LFS, LINUX_DEFAULT_SUPER_MAGIC },
144 1.101 christos { MOUNT_FDESC, LINUX_DEFAULT_SUPER_MAGIC },
145 1.101 christos { MOUNT_PORTAL, LINUX_DEFAULT_SUPER_MAGIC },
146 1.101 christos { MOUNT_NULL, LINUX_DEFAULT_SUPER_MAGIC },
147 1.101 christos { MOUNT_OVERLAY, LINUX_DEFAULT_SUPER_MAGIC },
148 1.101 christos { MOUNT_UMAP, LINUX_DEFAULT_SUPER_MAGIC },
149 1.101 christos { MOUNT_KERNFS, LINUX_DEFAULT_SUPER_MAGIC },
150 1.101 christos { MOUNT_PROCFS, LINUX_PROC_SUPER_MAGIC },
151 1.101 christos { MOUNT_AFS, LINUX_DEFAULT_SUPER_MAGIC },
152 1.101 christos { MOUNT_CD9660, LINUX_ISOFS_SUPER_MAGIC },
153 1.101 christos { MOUNT_UNION, LINUX_DEFAULT_SUPER_MAGIC },
154 1.101 christos { MOUNT_ADOSFS, LINUX_ADFS_SUPER_MAGIC },
155 1.101 christos { MOUNT_EXT2FS, LINUX_EXT2_SUPER_MAGIC },
156 1.101 christos { MOUNT_CFS, LINUX_DEFAULT_SUPER_MAGIC },
157 1.101 christos { MOUNT_CODA, LINUX_CODA_SUPER_MAGIC },
158 1.101 christos { MOUNT_FILECORE, LINUX_DEFAULT_SUPER_MAGIC },
159 1.101 christos { MOUNT_NTFS, LINUX_DEFAULT_SUPER_MAGIC },
160 1.101 christos { MOUNT_SMBFS, LINUX_SMB_SUPER_MAGIC }
161 1.101 christos };
162 1.101 christos #define FSTYPESSIZE (sizeof(fstypes) / sizeof(fstypes[0]))
163 1.101 christos
164 1.104 christos #ifdef DEBUG_LINUX
165 1.104 christos #define DPRINTF(a) uprintf a
166 1.104 christos #else
167 1.104 christos #define DPRINTF(a)
168 1.104 christos #endif
169 1.104 christos
170 1.47 erh /* Local linux_misc.c functions: */
171 1.123 christos static void bsd_to_linux_statfs __P((const struct statvfs *,
172 1.123 christos struct linux_statfs *));
173 1.97 christos static int linux_to_bsd_limit __P((int));
174 1.118 christos static void linux_to_bsd_mmap_args __P((struct sys_mmap_args *,
175 1.118 christos const struct linux_sys_mmap_args *));
176 1.26 christos
177 1.1 fvdl /*
178 1.1 fvdl * The information on a terminated (or stopped) process needs
179 1.1 fvdl * to be converted in order for Linux binaries to get a valid signal
180 1.1 fvdl * number out of it.
181 1.1 fvdl */
182 1.47 erh void
183 1.52 christos bsd_to_linux_wstat(st)
184 1.52 christos int *st;
185 1.1 fvdl {
186 1.21 mycroft
187 1.52 christos int sig;
188 1.52 christos
189 1.52 christos if (WIFSIGNALED(*st)) {
190 1.52 christos sig = WTERMSIG(*st);
191 1.52 christos if (sig >= 0 && sig < NSIG)
192 1.105 christos *st= (*st& ~0177) | native_to_linux_signo[sig];
193 1.52 christos } else if (WIFSTOPPED(*st)) {
194 1.52 christos sig = WSTOPSIG(*st);
195 1.52 christos if (sig >= 0 && sig < NSIG)
196 1.105 christos *st = (*st & ~0xff00) |
197 1.105 christos (native_to_linux_signo[sig] << 8);
198 1.52 christos }
199 1.1 fvdl }
200 1.1 fvdl
201 1.1 fvdl /*
202 1.1 fvdl * This is very much the same as waitpid()
203 1.1 fvdl */
204 1.1 fvdl int
205 1.116 thorpej linux_sys_wait4(l, v, retval)
206 1.116 thorpej struct lwp *l;
207 1.20 thorpej void *v;
208 1.20 thorpej register_t *retval;
209 1.20 thorpej {
210 1.21 mycroft struct linux_sys_wait4_args /* {
211 1.1 fvdl syscallarg(int) pid;
212 1.1 fvdl syscallarg(int *) status;
213 1.1 fvdl syscallarg(int) options;
214 1.1 fvdl syscallarg(struct rusage *) rusage;
215 1.20 thorpej } */ *uap = v;
216 1.116 thorpej struct proc *p = l->l_proc;
217 1.21 mycroft struct sys_wait4_args w4a;
218 1.55 thorpej int error, *status, tstat, options, linux_options;
219 1.1 fvdl caddr_t sg;
220 1.1 fvdl
221 1.16 fvdl if (SCARG(uap, status) != NULL) {
222 1.102 christos sg = stackgap_init(p, 0);
223 1.102 christos status = (int *) stackgap_alloc(p, &sg, sizeof *status);
224 1.16 fvdl } else
225 1.16 fvdl status = NULL;
226 1.1 fvdl
227 1.55 thorpej linux_options = SCARG(uap, options);
228 1.55 thorpej options = 0;
229 1.55 thorpej if (linux_options &
230 1.93 thorpej ~(LINUX_WAIT4_WNOHANG|LINUX_WAIT4_WUNTRACED|LINUX_WAIT4_WALL|
231 1.93 thorpej LINUX_WAIT4_WCLONE))
232 1.55 thorpej return (EINVAL);
233 1.55 thorpej
234 1.55 thorpej if (linux_options & LINUX_WAIT4_WNOHANG)
235 1.55 thorpej options |= WNOHANG;
236 1.55 thorpej if (linux_options & LINUX_WAIT4_WUNTRACED)
237 1.55 thorpej options |= WUNTRACED;
238 1.93 thorpej if (linux_options & LINUX_WAIT4_WALL)
239 1.93 thorpej options |= WALLSIG;
240 1.55 thorpej if (linux_options & LINUX_WAIT4_WCLONE)
241 1.55 thorpej options |= WALTSIG;
242 1.55 thorpej
243 1.1 fvdl SCARG(&w4a, pid) = SCARG(uap, pid);
244 1.1 fvdl SCARG(&w4a, status) = status;
245 1.55 thorpej SCARG(&w4a, options) = options;
246 1.1 fvdl SCARG(&w4a, rusage) = SCARG(uap, rusage);
247 1.1 fvdl
248 1.116 thorpej if ((error = sys_wait4(l, &w4a, retval)))
249 1.1 fvdl return error;
250 1.1 fvdl
251 1.80 jdolecek sigdelset(&p->p_sigctx.ps_siglist, SIGCHLD);
252 1.18 fvdl
253 1.16 fvdl if (status != NULL) {
254 1.16 fvdl if ((error = copyin(status, &tstat, sizeof tstat)))
255 1.16 fvdl return error;
256 1.16 fvdl
257 1.16 fvdl bsd_to_linux_wstat(&tstat);
258 1.16 fvdl return copyout(&tstat, SCARG(uap, status), sizeof tstat);
259 1.16 fvdl }
260 1.1 fvdl
261 1.16 fvdl return 0;
262 1.1 fvdl }
263 1.1 fvdl
264 1.1 fvdl /*
265 1.1 fvdl * Linux brk(2). The check if the new address is >= the old one is
266 1.1 fvdl * done in the kernel in Linux. NetBSD does it in the library.
267 1.1 fvdl */
268 1.1 fvdl int
269 1.116 thorpej linux_sys_brk(l, v, retval)
270 1.116 thorpej struct lwp *l;
271 1.20 thorpej void *v;
272 1.20 thorpej register_t *retval;
273 1.20 thorpej {
274 1.21 mycroft struct linux_sys_brk_args /* {
275 1.1 fvdl syscallarg(char *) nsize;
276 1.20 thorpej } */ *uap = v;
277 1.116 thorpej struct proc *p = l->l_proc;
278 1.1 fvdl char *nbrk = SCARG(uap, nsize);
279 1.21 mycroft struct sys_obreak_args oba;
280 1.1 fvdl struct vmspace *vm = p->p_vmspace;
281 1.85 manu struct linux_emuldata *ed = (struct linux_emuldata*)p->p_emuldata;
282 1.84 manu
283 1.1 fvdl SCARG(&oba, nsize) = nbrk;
284 1.1 fvdl
285 1.116 thorpej if ((caddr_t) nbrk > vm->vm_daddr && sys_obreak(l, &oba, retval) == 0)
286 1.127 jdolecek ed->s->p_break = (char*)nbrk;
287 1.85 manu else
288 1.127 jdolecek nbrk = ed->s->p_break;
289 1.85 manu
290 1.85 manu retval[0] = (register_t)nbrk;
291 1.1 fvdl
292 1.1 fvdl return 0;
293 1.1 fvdl }
294 1.1 fvdl
295 1.1 fvdl /*
296 1.2 fvdl * Convert BSD statfs structure to Linux statfs structure.
297 1.2 fvdl * The Linux structure has less fields, and it also wants
298 1.2 fvdl * the length of a name in a dir entry in a field, which
299 1.2 fvdl * we fake (probably the wrong way).
300 1.2 fvdl */
301 1.2 fvdl static void
302 1.2 fvdl bsd_to_linux_statfs(bsp, lsp)
303 1.123 christos const struct statvfs *bsp;
304 1.2 fvdl struct linux_statfs *lsp;
305 1.2 fvdl {
306 1.101 christos int i;
307 1.101 christos
308 1.101 christos for (i = 0; i < FSTYPESSIZE; i++)
309 1.101 christos if (strcmp(bsp->f_fstypename, fstypes[i].bsd) == 0)
310 1.101 christos break;
311 1.101 christos
312 1.101 christos if (i == FSTYPESSIZE) {
313 1.104 christos DPRINTF(("unhandled fstype in linux emulation: %s\n",
314 1.104 christos bsp->f_fstypename));
315 1.101 christos lsp->l_ftype = LINUX_DEFAULT_SUPER_MAGIC;
316 1.101 christos } else {
317 1.101 christos lsp->l_ftype = fstypes[i].linux;
318 1.101 christos }
319 1.21 mycroft
320 1.2 fvdl lsp->l_fbsize = bsp->f_bsize;
321 1.2 fvdl lsp->l_fblocks = bsp->f_blocks;
322 1.2 fvdl lsp->l_fbfree = bsp->f_bfree;
323 1.2 fvdl lsp->l_fbavail = bsp->f_bavail;
324 1.2 fvdl lsp->l_ffiles = bsp->f_files;
325 1.2 fvdl lsp->l_fffree = bsp->f_ffree;
326 1.101 christos /* Linux sets the fsid to 0..., we don't */
327 1.123 christos lsp->l_ffsid.val[0] = bsp->f_fsidx.__fsid_val[0];
328 1.123 christos lsp->l_ffsid.val[1] = bsp->f_fsidx.__fsid_val[1];
329 1.2 fvdl lsp->l_fnamelen = MAXNAMLEN; /* XXX */
330 1.101 christos (void)memset(lsp->l_fspare, 0, sizeof(lsp->l_fspare));
331 1.2 fvdl }
332 1.2 fvdl
333 1.2 fvdl /*
334 1.2 fvdl * Implement the fs stat functions. Straightforward.
335 1.1 fvdl */
336 1.1 fvdl int
337 1.116 thorpej linux_sys_statfs(l, v, retval)
338 1.116 thorpej struct lwp *l;
339 1.20 thorpej void *v;
340 1.20 thorpej register_t *retval;
341 1.20 thorpej {
342 1.21 mycroft struct linux_sys_statfs_args /* {
343 1.53 christos syscallarg(const char *) path;
344 1.1 fvdl syscallarg(struct linux_statfs *) sp;
345 1.20 thorpej } */ *uap = v;
346 1.116 thorpej struct proc *p = l->l_proc;
347 1.123 christos struct statvfs btmp, *bsp;
348 1.2 fvdl struct linux_statfs ltmp;
349 1.124 christos struct sys_statvfs1_args bsa;
350 1.2 fvdl caddr_t sg;
351 1.2 fvdl int error;
352 1.2 fvdl
353 1.102 christos sg = stackgap_init(p, 0);
354 1.123 christos bsp = (struct statvfs *) stackgap_alloc(p, &sg, sizeof (struct statvfs));
355 1.2 fvdl
356 1.121 fvdl CHECK_ALT_EXIST(p, &sg, SCARG(uap, path));
357 1.2 fvdl
358 1.2 fvdl SCARG(&bsa, path) = SCARG(uap, path);
359 1.2 fvdl SCARG(&bsa, buf) = bsp;
360 1.125 christos SCARG(&bsa, flags) = ST_WAIT;
361 1.2 fvdl
362 1.125 christos if ((error = sys_statvfs1(l, &bsa, retval)))
363 1.2 fvdl return error;
364 1.2 fvdl
365 1.2 fvdl if ((error = copyin((caddr_t) bsp, (caddr_t) &btmp, sizeof btmp)))
366 1.2 fvdl return error;
367 1.2 fvdl
368 1.2 fvdl bsd_to_linux_statfs(&btmp, <mp);
369 1.2 fvdl
370 1.2 fvdl return copyout((caddr_t) <mp, (caddr_t) SCARG(uap, sp), sizeof ltmp);
371 1.1 fvdl }
372 1.1 fvdl
373 1.1 fvdl int
374 1.116 thorpej linux_sys_fstatfs(l, v, retval)
375 1.116 thorpej struct lwp *l;
376 1.20 thorpej void *v;
377 1.20 thorpej register_t *retval;
378 1.20 thorpej {
379 1.21 mycroft struct linux_sys_fstatfs_args /* {
380 1.2 fvdl syscallarg(int) fd;
381 1.1 fvdl syscallarg(struct linux_statfs *) sp;
382 1.20 thorpej } */ *uap = v;
383 1.116 thorpej struct proc *p = l->l_proc;
384 1.123 christos struct statvfs btmp, *bsp;
385 1.2 fvdl struct linux_statfs ltmp;
386 1.125 christos struct sys_fstatvfs1_args bsa;
387 1.2 fvdl caddr_t sg;
388 1.2 fvdl int error;
389 1.2 fvdl
390 1.102 christos sg = stackgap_init(p, 0);
391 1.123 christos bsp = (struct statvfs *) stackgap_alloc(p, &sg, sizeof (struct statvfs));
392 1.2 fvdl
393 1.2 fvdl SCARG(&bsa, fd) = SCARG(uap, fd);
394 1.2 fvdl SCARG(&bsa, buf) = bsp;
395 1.125 christos SCARG(&bsa, flags) = ST_WAIT;
396 1.2 fvdl
397 1.125 christos if ((error = sys_fstatvfs1(l, &bsa, retval)))
398 1.2 fvdl return error;
399 1.2 fvdl
400 1.2 fvdl if ((error = copyin((caddr_t) bsp, (caddr_t) &btmp, sizeof btmp)))
401 1.2 fvdl return error;
402 1.2 fvdl
403 1.2 fvdl bsd_to_linux_statfs(&btmp, <mp);
404 1.2 fvdl
405 1.2 fvdl return copyout((caddr_t) <mp, (caddr_t) SCARG(uap, sp), sizeof ltmp);
406 1.1 fvdl }
407 1.82 fvdl
408 1.1 fvdl /*
409 1.1 fvdl * uname(). Just copy the info from the various strings stored in the
410 1.1 fvdl * kernel, and put it in the Linux utsname structure. That structure
411 1.1 fvdl * is almost the same as the NetBSD one, only it has fields 65 characters
412 1.1 fvdl * long, and an extra domainname field.
413 1.1 fvdl */
414 1.1 fvdl int
415 1.116 thorpej linux_sys_uname(l, v, retval)
416 1.116 thorpej struct lwp *l;
417 1.20 thorpej void *v;
418 1.20 thorpej register_t *retval;
419 1.20 thorpej {
420 1.21 mycroft struct linux_sys_uname_args /* {
421 1.1 fvdl syscallarg(struct linux_utsname *) up;
422 1.20 thorpej } */ *uap = v;
423 1.15 mycroft struct linux_utsname luts;
424 1.1 fvdl
425 1.82 fvdl strncpy(luts.l_sysname, linux_sysname, sizeof(luts.l_sysname));
426 1.15 mycroft strncpy(luts.l_nodename, hostname, sizeof(luts.l_nodename));
427 1.82 fvdl strncpy(luts.l_release, linux_release, sizeof(luts.l_release));
428 1.82 fvdl strncpy(luts.l_version, linux_version, sizeof(luts.l_version));
429 1.15 mycroft strncpy(luts.l_machine, machine, sizeof(luts.l_machine));
430 1.15 mycroft strncpy(luts.l_domainname, domainname, sizeof(luts.l_domainname));
431 1.15 mycroft
432 1.15 mycroft return copyout(&luts, SCARG(uap, up), sizeof(luts));
433 1.15 mycroft }
434 1.15 mycroft
435 1.47 erh /* Used directly on: alpha, mips, ppc, sparc, sparc64 */
436 1.47 erh /* Used indirectly on: arm, i386, m68k */
437 1.1 fvdl
438 1.1 fvdl /*
439 1.47 erh * New type Linux mmap call.
440 1.47 erh * Only called directly on machines with >= 6 free regs.
441 1.1 fvdl */
442 1.1 fvdl int
443 1.116 thorpej linux_sys_mmap(l, v, retval)
444 1.116 thorpej struct lwp *l;
445 1.20 thorpej void *v;
446 1.20 thorpej register_t *retval;
447 1.20 thorpej {
448 1.21 mycroft struct linux_sys_mmap_args /* {
449 1.47 erh syscallarg(unsigned long) addr;
450 1.47 erh syscallarg(size_t) len;
451 1.47 erh syscallarg(int) prot;
452 1.47 erh syscallarg(int) flags;
453 1.47 erh syscallarg(int) fd;
454 1.94 manu syscallarg(linux_off_t) offset;
455 1.20 thorpej } */ *uap = v;
456 1.21 mycroft struct sys_mmap_args cma;
457 1.118 christos
458 1.115 christos if (SCARG(uap, offset) & PAGE_MASK)
459 1.115 christos return EINVAL;
460 1.115 christos
461 1.118 christos linux_to_bsd_mmap_args(&cma, uap);
462 1.118 christos SCARG(&cma, pos) = (off_t)SCARG(uap, offset);
463 1.118 christos
464 1.118 christos return sys_mmap(l, &cma, retval);
465 1.118 christos }
466 1.118 christos
467 1.118 christos /*
468 1.118 christos * Guts of most architectures' mmap64() implementations. This shares
469 1.118 christos * its list of arguments with linux_sys_mmap().
470 1.118 christos *
471 1.118 christos * The difference in linux_sys_mmap2() is that "offset" is actually
472 1.118 christos * (offset / pagesize), not an absolute byte count. This translation
473 1.118 christos * to pagesize offsets is done inside glibc between the mmap64() call
474 1.118 christos * point, and the actual syscall.
475 1.118 christos */
476 1.118 christos int
477 1.118 christos linux_sys_mmap2(l, v, retval)
478 1.118 christos struct lwp *l;
479 1.118 christos void *v;
480 1.118 christos register_t *retval;
481 1.118 christos {
482 1.118 christos struct linux_sys_mmap2_args /* {
483 1.118 christos syscallarg(unsigned long) addr;
484 1.118 christos syscallarg(size_t) len;
485 1.118 christos syscallarg(int) prot;
486 1.118 christos syscallarg(int) flags;
487 1.118 christos syscallarg(int) fd;
488 1.118 christos syscallarg(linux_off_t) offset;
489 1.118 christos } */ *uap = v;
490 1.118 christos struct sys_mmap_args cma;
491 1.118 christos
492 1.118 christos linux_to_bsd_mmap_args(&cma, uap);
493 1.118 christos SCARG(&cma, pos) = ((off_t)SCARG(uap, offset)) << PAGE_SHIFT;
494 1.118 christos
495 1.118 christos return sys_mmap(l, &cma, retval);
496 1.118 christos }
497 1.118 christos
498 1.118 christos static void
499 1.118 christos linux_to_bsd_mmap_args(cma, uap)
500 1.118 christos struct sys_mmap_args *cma;
501 1.118 christos const struct linux_sys_mmap_args *uap;
502 1.118 christos {
503 1.119 christos int flags = MAP_TRYFIXED, fl = SCARG(uap, flags);
504 1.118 christos
505 1.103 christos flags |= cvtto_bsd_mask(fl, LINUX_MAP_SHARED, MAP_SHARED);
506 1.103 christos flags |= cvtto_bsd_mask(fl, LINUX_MAP_PRIVATE, MAP_PRIVATE);
507 1.103 christos flags |= cvtto_bsd_mask(fl, LINUX_MAP_FIXED, MAP_FIXED);
508 1.103 christos flags |= cvtto_bsd_mask(fl, LINUX_MAP_ANON, MAP_ANON);
509 1.47 erh /* XXX XAX ERH: Any other flags here? There are more defined... */
510 1.47 erh
511 1.118 christos SCARG(cma, addr) = (void *)SCARG(uap, addr);
512 1.118 christos SCARG(cma, len) = SCARG(uap, len);
513 1.118 christos SCARG(cma, prot) = SCARG(uap, prot);
514 1.118 christos if (SCARG(cma, prot) & VM_PROT_WRITE) /* XXX */
515 1.118 christos SCARG(cma, prot) |= VM_PROT_READ;
516 1.118 christos SCARG(cma, flags) = flags;
517 1.118 christos SCARG(cma, fd) = flags & MAP_ANON ? -1 : SCARG(uap, fd);
518 1.118 christos SCARG(cma, pad) = 0;
519 1.97 christos }
520 1.97 christos
521 1.34 mycroft int
522 1.116 thorpej linux_sys_mremap(l, v, retval)
523 1.116 thorpej struct lwp *l;
524 1.34 mycroft void *v;
525 1.34 mycroft register_t *retval;
526 1.34 mycroft {
527 1.34 mycroft struct linux_sys_mremap_args /* {
528 1.34 mycroft syscallarg(void *) old_address;
529 1.34 mycroft syscallarg(size_t) old_size;
530 1.34 mycroft syscallarg(size_t) new_size;
531 1.34 mycroft syscallarg(u_long) flags;
532 1.34 mycroft } */ *uap = v;
533 1.42 thorpej struct sys_munmap_args mua;
534 1.42 thorpej size_t old_size, new_size;
535 1.42 thorpej int error;
536 1.42 thorpej
537 1.42 thorpej old_size = round_page(SCARG(uap, old_size));
538 1.42 thorpej new_size = round_page(SCARG(uap, new_size));
539 1.42 thorpej
540 1.42 thorpej /*
541 1.42 thorpej * Growing mapped region.
542 1.42 thorpej */
543 1.42 thorpej if (new_size > old_size) {
544 1.42 thorpej /*
545 1.42 thorpej * XXX Implement me. What we probably want to do is
546 1.42 thorpej * XXX dig out the guts of the old mapping, mmap that
547 1.42 thorpej * XXX object again with the new size, then munmap
548 1.42 thorpej * XXX the old mapping.
549 1.42 thorpej */
550 1.42 thorpej *retval = 0;
551 1.42 thorpej return (ENOMEM);
552 1.42 thorpej }
553 1.42 thorpej
554 1.42 thorpej /*
555 1.42 thorpej * Shrinking mapped region.
556 1.42 thorpej */
557 1.42 thorpej if (new_size < old_size) {
558 1.42 thorpej SCARG(&mua, addr) = (caddr_t)SCARG(uap, old_address) +
559 1.43 thorpej new_size;
560 1.42 thorpej SCARG(&mua, len) = old_size - new_size;
561 1.116 thorpej error = sys_munmap(l, &mua, retval);
562 1.42 thorpej *retval = error ? 0 : (register_t)SCARG(uap, old_address);
563 1.42 thorpej return (error);
564 1.42 thorpej }
565 1.34 mycroft
566 1.42 thorpej /*
567 1.42 thorpej * No change.
568 1.42 thorpej */
569 1.42 thorpej *retval = (register_t)SCARG(uap, old_address);
570 1.42 thorpej return (0);
571 1.24 fvdl }
572 1.24 fvdl
573 1.24 fvdl int
574 1.116 thorpej linux_sys_msync(l, v, retval)
575 1.116 thorpej struct lwp *l;
576 1.24 fvdl void *v;
577 1.24 fvdl register_t *retval;
578 1.24 fvdl {
579 1.24 fvdl struct linux_sys_msync_args /* {
580 1.24 fvdl syscallarg(caddr_t) addr;
581 1.24 fvdl syscallarg(int) len;
582 1.24 fvdl syscallarg(int) fl;
583 1.24 fvdl } */ *uap = v;
584 1.24 fvdl
585 1.36 fvdl struct sys___msync13_args bma;
586 1.24 fvdl
587 1.24 fvdl /* flags are ignored */
588 1.24 fvdl SCARG(&bma, addr) = SCARG(uap, addr);
589 1.24 fvdl SCARG(&bma, len) = SCARG(uap, len);
590 1.36 fvdl SCARG(&bma, flags) = SCARG(uap, fl);
591 1.24 fvdl
592 1.116 thorpej return sys___msync13(l, &bma, retval);
593 1.103 christos }
594 1.103 christos
595 1.103 christos int
596 1.116 thorpej linux_sys_mprotect(l, v, retval)
597 1.116 thorpej struct lwp *l;
598 1.103 christos void *v;
599 1.103 christos register_t *retval;
600 1.103 christos {
601 1.103 christos struct linux_sys_mprotect_args /* {
602 1.103 christos syscallarg(const void *) start;
603 1.103 christos syscallarg(unsigned long) len;
604 1.103 christos syscallarg(int) prot;
605 1.103 christos } */ *uap = v;
606 1.103 christos unsigned long end, start = (unsigned long)SCARG(uap, start), len;
607 1.103 christos int prot = SCARG(uap, prot);
608 1.103 christos struct vm_map_entry *entry;
609 1.116 thorpej struct vm_map *map = &l->l_proc->p_vmspace->vm_map;
610 1.103 christos
611 1.103 christos if (start & PAGE_MASK)
612 1.103 christos return EINVAL;
613 1.103 christos
614 1.103 christos len = round_page(SCARG(uap, len));
615 1.103 christos end = start + len;
616 1.103 christos
617 1.103 christos if (end < start)
618 1.103 christos return EINVAL;
619 1.103 christos else if (end == start)
620 1.103 christos return 0;
621 1.103 christos
622 1.103 christos if (SCARG(uap, prot) & ~(PROT_READ | PROT_WRITE | PROT_EXEC))
623 1.103 christos return EINVAL;
624 1.103 christos
625 1.103 christos vm_map_lock(map);
626 1.103 christos #ifdef notdef
627 1.103 christos VM_MAP_RANGE_CHECK(map, start, end);
628 1.103 christos #endif
629 1.103 christos if (!uvm_map_lookup_entry(map, start, &entry) || entry->start > start) {
630 1.103 christos vm_map_unlock(map);
631 1.126 jdolecek return ENOMEM;
632 1.103 christos }
633 1.103 christos vm_map_unlock(map);
634 1.103 christos return uvm_map_protect(map, start, end, prot, FALSE);
635 1.1 fvdl }
636 1.1 fvdl
637 1.1 fvdl /*
638 1.1 fvdl * This code is partly stolen from src/lib/libc/compat-43/times.c
639 1.1 fvdl */
640 1.1 fvdl
641 1.113 jdolecek #define CONVTCK(r) (r.tv_sec * hz + r.tv_usec / (1000000 / hz))
642 1.1 fvdl
643 1.1 fvdl int
644 1.116 thorpej linux_sys_times(l, v, retval)
645 1.116 thorpej struct lwp *l;
646 1.20 thorpej void *v;
647 1.20 thorpej register_t *retval;
648 1.20 thorpej {
649 1.21 mycroft struct linux_sys_times_args /* {
650 1.1 fvdl syscallarg(struct times *) tms;
651 1.20 thorpej } */ *uap = v;
652 1.116 thorpej struct proc *p = l->l_proc;
653 1.1 fvdl struct timeval t;
654 1.4 mycroft int error, s;
655 1.1 fvdl
656 1.112 jdolecek if (SCARG(uap, tms)) {
657 1.112 jdolecek struct linux_tms ltms;
658 1.112 jdolecek struct rusage ru;
659 1.112 jdolecek
660 1.112 jdolecek calcru(p, &ru.ru_utime, &ru.ru_stime, NULL);
661 1.112 jdolecek ltms.ltms_utime = CONVTCK(ru.ru_utime);
662 1.112 jdolecek ltms.ltms_stime = CONVTCK(ru.ru_stime);
663 1.1 fvdl
664 1.112 jdolecek ltms.ltms_cutime = CONVTCK(p->p_stats->p_cru.ru_utime);
665 1.112 jdolecek ltms.ltms_cstime = CONVTCK(p->p_stats->p_cru.ru_stime);
666 1.1 fvdl
667 1.112 jdolecek if ((error = copyout(<ms, SCARG(uap, tms), sizeof ltms)))
668 1.112 jdolecek return error;
669 1.112 jdolecek }
670 1.1 fvdl
671 1.4 mycroft s = splclock();
672 1.4 mycroft timersub(&time, &boottime, &t);
673 1.4 mycroft splx(s);
674 1.1 fvdl
675 1.1 fvdl retval[0] = ((linux_clock_t)(CONVTCK(t)));
676 1.1 fvdl return 0;
677 1.1 fvdl }
678 1.113 jdolecek
679 1.113 jdolecek #undef CONVTCK
680 1.1 fvdl
681 1.1 fvdl /*
682 1.1 fvdl * Linux 'readdir' call. This code is mostly taken from the
683 1.1 fvdl * SunOS getdents call (see compat/sunos/sunos_misc.c), though
684 1.1 fvdl * an attempt has been made to keep it a little cleaner (failing
685 1.1 fvdl * miserably, because of the cruft needed if count 1 is passed).
686 1.1 fvdl *
687 1.17 fvdl * The d_off field should contain the offset of the next valid entry,
688 1.17 fvdl * but in Linux it has the offset of the entry itself. We emulate
689 1.17 fvdl * that bug here.
690 1.17 fvdl *
691 1.1 fvdl * Read in BSD-style entries, convert them, and copy them out.
692 1.1 fvdl *
693 1.1 fvdl * Note that this doesn't handle union-mounted filesystems.
694 1.1 fvdl */
695 1.1 fvdl int
696 1.116 thorpej linux_sys_getdents(l, v, retval)
697 1.116 thorpej struct lwp *l;
698 1.20 thorpej void *v;
699 1.20 thorpej register_t *retval;
700 1.20 thorpej {
701 1.47 erh struct linux_sys_getdents_args /* {
702 1.1 fvdl syscallarg(int) fd;
703 1.47 erh syscallarg(struct linux_dirent *) dent;
704 1.1 fvdl syscallarg(unsigned int) count;
705 1.20 thorpej } */ *uap = v;
706 1.116 thorpej struct proc *p = l->l_proc;
707 1.69 augustss struct dirent *bdp;
708 1.1 fvdl struct vnode *vp;
709 1.26 christos caddr_t inp, buf; /* BSD-format */
710 1.26 christos int len, reclen; /* BSD-format */
711 1.51 fvdl caddr_t outp; /* Linux-format */
712 1.26 christos int resid, linux_reclen = 0; /* Linux-format */
713 1.1 fvdl struct file *fp;
714 1.1 fvdl struct uio auio;
715 1.1 fvdl struct iovec aiov;
716 1.1 fvdl struct linux_dirent idb;
717 1.1 fvdl off_t off; /* true file offset */
718 1.17 fvdl int buflen, error, eofflag, nbytes, oldcall;
719 1.1 fvdl struct vattr va;
720 1.40 fvdl off_t *cookiebuf = NULL, *cookie;
721 1.22 mycroft int ncookies;
722 1.1 fvdl
723 1.54 thorpej /* getvnode() will use the descriptor for us */
724 1.1 fvdl if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
725 1.1 fvdl return (error);
726 1.1 fvdl
727 1.54 thorpej if ((fp->f_flag & FREAD) == 0) {
728 1.54 thorpej error = EBADF;
729 1.54 thorpej goto out1;
730 1.54 thorpej }
731 1.1 fvdl
732 1.5 mycroft vp = (struct vnode *)fp->f_data;
733 1.54 thorpej if (vp->v_type != VDIR) {
734 1.54 thorpej error = EINVAL;
735 1.54 thorpej goto out1;
736 1.54 thorpej }
737 1.1 fvdl
738 1.121 fvdl if ((error = VOP_GETATTR(vp, &va, p->p_ucred, p)))
739 1.54 thorpej goto out1;
740 1.1 fvdl
741 1.1 fvdl nbytes = SCARG(uap, count);
742 1.17 fvdl if (nbytes == 1) { /* emulating old, broken behaviour */
743 1.107 christos nbytes = sizeof (idb);
744 1.5 mycroft buflen = max(va.va_blocksize, nbytes);
745 1.17 fvdl oldcall = 1;
746 1.5 mycroft } else {
747 1.5 mycroft buflen = min(MAXBSIZE, nbytes);
748 1.33 fvdl if (buflen < va.va_blocksize)
749 1.33 fvdl buflen = va.va_blocksize;
750 1.17 fvdl oldcall = 0;
751 1.1 fvdl }
752 1.1 fvdl buf = malloc(buflen, M_TEMP, M_WAITOK);
753 1.33 fvdl
754 1.39 fvdl vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
755 1.1 fvdl off = fp->f_offset;
756 1.1 fvdl again:
757 1.1 fvdl aiov.iov_base = buf;
758 1.1 fvdl aiov.iov_len = buflen;
759 1.1 fvdl auio.uio_iov = &aiov;
760 1.1 fvdl auio.uio_iovcnt = 1;
761 1.1 fvdl auio.uio_rw = UIO_READ;
762 1.1 fvdl auio.uio_segflg = UIO_SYSSPACE;
763 1.121 fvdl auio.uio_procp = p;
764 1.1 fvdl auio.uio_resid = buflen;
765 1.1 fvdl auio.uio_offset = off;
766 1.1 fvdl /*
767 1.1 fvdl * First we read into the malloc'ed buffer, then
768 1.1 fvdl * we massage it into user space, one record at a time.
769 1.1 fvdl */
770 1.39 fvdl error = VOP_READDIR(vp, &auio, fp->f_cred, &eofflag, &cookiebuf,
771 1.39 fvdl &ncookies);
772 1.1 fvdl if (error)
773 1.1 fvdl goto out;
774 1.1 fvdl
775 1.1 fvdl inp = buf;
776 1.51 fvdl outp = (caddr_t)SCARG(uap, dent);
777 1.1 fvdl resid = nbytes;
778 1.35 fvdl if ((len = buflen - auio.uio_resid) == 0)
779 1.1 fvdl goto eof;
780 1.1 fvdl
781 1.22 mycroft for (cookie = cookiebuf; len > 0; len -= reclen) {
782 1.5 mycroft bdp = (struct dirent *)inp;
783 1.5 mycroft reclen = bdp->d_reclen;
784 1.1 fvdl if (reclen & 3)
785 1.1 fvdl panic("linux_readdir");
786 1.1 fvdl if (bdp->d_fileno == 0) {
787 1.1 fvdl inp += reclen; /* it is a hole; squish it out */
788 1.22 mycroft off = *cookie++;
789 1.1 fvdl continue;
790 1.1 fvdl }
791 1.21 mycroft linux_reclen = LINUX_RECLEN(&idb, bdp->d_namlen);
792 1.21 mycroft if (reclen > len || resid < linux_reclen) {
793 1.1 fvdl /* entry too big for buffer, so just stop */
794 1.1 fvdl outp++;
795 1.1 fvdl break;
796 1.1 fvdl }
797 1.1 fvdl /*
798 1.1 fvdl * Massage in place to make a Linux-shaped dirent (otherwise
799 1.1 fvdl * we have to worry about touching user memory outside of
800 1.1 fvdl * the copyout() call).
801 1.1 fvdl */
802 1.107 christos idb.d_ino = bdp->d_fileno;
803 1.17 fvdl /*
804 1.21 mycroft * The old readdir() call misuses the offset and reclen fields.
805 1.17 fvdl */
806 1.22 mycroft if (oldcall) {
807 1.22 mycroft idb.d_off = (linux_off_t)linux_reclen;
808 1.22 mycroft idb.d_reclen = (u_short)bdp->d_namlen;
809 1.22 mycroft } else {
810 1.109 tron if (sizeof (idb.d_off) <= 4 && (off >> 32) != 0) {
811 1.33 fvdl compat_offseterr(vp, "linux_getdents");
812 1.33 fvdl error = EINVAL;
813 1.33 fvdl goto out;
814 1.33 fvdl }
815 1.22 mycroft idb.d_off = (linux_off_t)off;
816 1.107 christos idb.d_reclen = (u_short)linux_reclen;
817 1.107 christos }
818 1.107 christos strcpy(idb.d_name, bdp->d_name);
819 1.107 christos if ((error = copyout((caddr_t)&idb, outp, linux_reclen)))
820 1.107 christos goto out;
821 1.107 christos /* advance past this real entry */
822 1.107 christos inp += reclen;
823 1.107 christos off = *cookie++; /* each entry points to itself */
824 1.107 christos /* advance output past Linux-shaped entry */
825 1.107 christos outp += linux_reclen;
826 1.107 christos resid -= linux_reclen;
827 1.107 christos if (oldcall)
828 1.107 christos break;
829 1.107 christos }
830 1.107 christos
831 1.107 christos /* if we squished out the whole block, try again */
832 1.107 christos if (outp == (caddr_t)SCARG(uap, dent))
833 1.107 christos goto again;
834 1.107 christos fp->f_offset = off; /* update the vnode offset */
835 1.107 christos
836 1.107 christos if (oldcall)
837 1.107 christos nbytes = resid + linux_reclen;
838 1.107 christos
839 1.107 christos eof:
840 1.107 christos *retval = nbytes - resid;
841 1.107 christos out:
842 1.107 christos VOP_UNLOCK(vp, 0);
843 1.107 christos if (cookiebuf)
844 1.107 christos free(cookiebuf, M_TEMP);
845 1.107 christos free(buf, M_TEMP);
846 1.107 christos out1:
847 1.121 fvdl FILE_UNUSE(fp, p);
848 1.1 fvdl return error;
849 1.1 fvdl }
850 1.1 fvdl
851 1.1 fvdl /*
852 1.17 fvdl * Even when just using registers to pass arguments to syscalls you can
853 1.17 fvdl * have 5 of them on the i386. So this newer version of select() does
854 1.17 fvdl * this.
855 1.1 fvdl */
856 1.1 fvdl int
857 1.116 thorpej linux_sys_select(l, v, retval)
858 1.116 thorpej struct lwp *l;
859 1.20 thorpej void *v;
860 1.20 thorpej register_t *retval;
861 1.20 thorpej {
862 1.21 mycroft struct linux_sys_select_args /* {
863 1.17 fvdl syscallarg(int) nfds;
864 1.17 fvdl syscallarg(fd_set *) readfds;
865 1.17 fvdl syscallarg(fd_set *) writefds;
866 1.17 fvdl syscallarg(fd_set *) exceptfds;
867 1.17 fvdl syscallarg(struct timeval *) timeout;
868 1.20 thorpej } */ *uap = v;
869 1.20 thorpej
870 1.116 thorpej return linux_select1(l, retval, SCARG(uap, nfds), SCARG(uap, readfds),
871 1.17 fvdl SCARG(uap, writefds), SCARG(uap, exceptfds), SCARG(uap, timeout));
872 1.17 fvdl }
873 1.17 fvdl
874 1.17 fvdl /*
875 1.17 fvdl * Common code for the old and new versions of select(). A couple of
876 1.17 fvdl * things are important:
877 1.17 fvdl * 1) return the amount of time left in the 'timeout' parameter
878 1.17 fvdl * 2) select never returns ERESTART on Linux, always return EINTR
879 1.17 fvdl */
880 1.17 fvdl int
881 1.116 thorpej linux_select1(l, retval, nfds, readfds, writefds, exceptfds, timeout)
882 1.116 thorpej struct lwp *l;
883 1.17 fvdl register_t *retval;
884 1.17 fvdl int nfds;
885 1.17 fvdl fd_set *readfds, *writefds, *exceptfds;
886 1.17 fvdl struct timeval *timeout;
887 1.17 fvdl {
888 1.21 mycroft struct sys_select_args bsa;
889 1.116 thorpej struct proc *p = l->l_proc;
890 1.13 mycroft struct timeval tv0, tv1, utv, *tvp;
891 1.13 mycroft caddr_t sg;
892 1.1 fvdl int error;
893 1.1 fvdl
894 1.17 fvdl SCARG(&bsa, nd) = nfds;
895 1.17 fvdl SCARG(&bsa, in) = readfds;
896 1.17 fvdl SCARG(&bsa, ou) = writefds;
897 1.17 fvdl SCARG(&bsa, ex) = exceptfds;
898 1.17 fvdl SCARG(&bsa, tv) = timeout;
899 1.1 fvdl
900 1.7 fvdl /*
901 1.7 fvdl * Store current time for computation of the amount of
902 1.7 fvdl * time left.
903 1.7 fvdl */
904 1.17 fvdl if (timeout) {
905 1.17 fvdl if ((error = copyin(timeout, &utv, sizeof(utv))))
906 1.13 mycroft return error;
907 1.13 mycroft if (itimerfix(&utv)) {
908 1.13 mycroft /*
909 1.13 mycroft * The timeval was invalid. Convert it to something
910 1.13 mycroft * valid that will act as it does under Linux.
911 1.13 mycroft */
912 1.102 christos sg = stackgap_init(p, 0);
913 1.102 christos tvp = stackgap_alloc(p, &sg, sizeof(utv));
914 1.13 mycroft utv.tv_sec += utv.tv_usec / 1000000;
915 1.13 mycroft utv.tv_usec %= 1000000;
916 1.13 mycroft if (utv.tv_usec < 0) {
917 1.13 mycroft utv.tv_sec -= 1;
918 1.13 mycroft utv.tv_usec += 1000000;
919 1.13 mycroft }
920 1.13 mycroft if (utv.tv_sec < 0)
921 1.13 mycroft timerclear(&utv);
922 1.13 mycroft if ((error = copyout(&utv, tvp, sizeof(utv))))
923 1.13 mycroft return error;
924 1.13 mycroft SCARG(&bsa, tv) = tvp;
925 1.13 mycroft }
926 1.7 fvdl microtime(&tv0);
927 1.13 mycroft }
928 1.7 fvdl
929 1.116 thorpej error = sys_select(l, &bsa, retval);
930 1.10 mycroft if (error) {
931 1.10 mycroft /*
932 1.10 mycroft * See fs/select.c in the Linux kernel. Without this,
933 1.10 mycroft * Maelstrom doesn't work.
934 1.10 mycroft */
935 1.10 mycroft if (error == ERESTART)
936 1.10 mycroft error = EINTR;
937 1.7 fvdl return error;
938 1.10 mycroft }
939 1.7 fvdl
940 1.17 fvdl if (timeout) {
941 1.14 mycroft if (*retval) {
942 1.7 fvdl /*
943 1.13 mycroft * Compute how much time was left of the timeout,
944 1.7 fvdl * by subtracting the current time and the time
945 1.7 fvdl * before we started the call, and subtracting
946 1.7 fvdl * that result from the user-supplied value.
947 1.7 fvdl */
948 1.7 fvdl microtime(&tv1);
949 1.7 fvdl timersub(&tv1, &tv0, &tv1);
950 1.7 fvdl timersub(&utv, &tv1, &utv);
951 1.14 mycroft if (utv.tv_sec < 0)
952 1.14 mycroft timerclear(&utv);
953 1.14 mycroft } else
954 1.14 mycroft timerclear(&utv);
955 1.17 fvdl if ((error = copyout(&utv, timeout, sizeof(utv))))
956 1.7 fvdl return error;
957 1.7 fvdl }
958 1.13 mycroft
959 1.7 fvdl return 0;
960 1.1 fvdl }
961 1.1 fvdl
962 1.1 fvdl /*
963 1.1 fvdl * Get the process group of a certain process. Look it up
964 1.1 fvdl * and return the value.
965 1.1 fvdl */
966 1.1 fvdl int
967 1.116 thorpej linux_sys_getpgid(l, v, retval)
968 1.116 thorpej struct lwp *l;
969 1.20 thorpej void *v;
970 1.20 thorpej register_t *retval;
971 1.20 thorpej {
972 1.21 mycroft struct linux_sys_getpgid_args /* {
973 1.1 fvdl syscallarg(int) pid;
974 1.20 thorpej } */ *uap = v;
975 1.116 thorpej struct proc *p = l->l_proc;
976 1.1 fvdl struct proc *targp;
977 1.1 fvdl
978 1.26 christos if (SCARG(uap, pid) != 0 && SCARG(uap, pid) != p->p_pid) {
979 1.1 fvdl if ((targp = pfind(SCARG(uap, pid))) == 0)
980 1.1 fvdl return ESRCH;
981 1.26 christos }
982 1.1 fvdl else
983 1.1 fvdl targp = p;
984 1.1 fvdl
985 1.1 fvdl retval[0] = targp->p_pgid;
986 1.6 fvdl return 0;
987 1.6 fvdl }
988 1.6 fvdl
989 1.6 fvdl /*
990 1.6 fvdl * Set the 'personality' (emulation mode) for the current process. Only
991 1.6 fvdl * accept the Linux personality here (0). This call is needed because
992 1.6 fvdl * the Linux ELF crt0 issues it in an ugly kludge to make sure that
993 1.6 fvdl * ELF binaries run in Linux mode, not SVR4 mode.
994 1.6 fvdl */
995 1.6 fvdl int
996 1.116 thorpej linux_sys_personality(l, v, retval)
997 1.116 thorpej struct lwp *l;
998 1.20 thorpej void *v;
999 1.20 thorpej register_t *retval;
1000 1.20 thorpej {
1001 1.21 mycroft struct linux_sys_personality_args /* {
1002 1.6 fvdl syscallarg(int) per;
1003 1.20 thorpej } */ *uap = v;
1004 1.20 thorpej
1005 1.6 fvdl if (SCARG(uap, per) != 0)
1006 1.6 fvdl return EINVAL;
1007 1.6 fvdl retval[0] = 0;
1008 1.1 fvdl return 0;
1009 1.18 fvdl }
1010 1.18 fvdl
1011 1.79 thorpej #if defined(__i386__) || defined(__m68k__)
1012 1.18 fvdl /*
1013 1.18 fvdl * The calls are here because of type conversions.
1014 1.18 fvdl */
1015 1.18 fvdl int
1016 1.116 thorpej linux_sys_setreuid16(l, v, retval)
1017 1.116 thorpej struct lwp *l;
1018 1.20 thorpej void *v;
1019 1.20 thorpej register_t *retval;
1020 1.20 thorpej {
1021 1.78 fvdl struct linux_sys_setreuid16_args /* {
1022 1.18 fvdl syscallarg(int) ruid;
1023 1.18 fvdl syscallarg(int) euid;
1024 1.20 thorpej } */ *uap = v;
1025 1.28 mycroft struct sys_setreuid_args bsa;
1026 1.18 fvdl
1027 1.18 fvdl SCARG(&bsa, ruid) = ((linux_uid_t)SCARG(uap, ruid) == (linux_uid_t)-1) ?
1028 1.18 fvdl (uid_t)-1 : SCARG(uap, ruid);
1029 1.18 fvdl SCARG(&bsa, euid) = ((linux_uid_t)SCARG(uap, euid) == (linux_uid_t)-1) ?
1030 1.18 fvdl (uid_t)-1 : SCARG(uap, euid);
1031 1.18 fvdl
1032 1.116 thorpej return sys_setreuid(l, &bsa, retval);
1033 1.18 fvdl }
1034 1.18 fvdl
1035 1.18 fvdl int
1036 1.116 thorpej linux_sys_setregid16(l, v, retval)
1037 1.116 thorpej struct lwp *l;
1038 1.20 thorpej void *v;
1039 1.20 thorpej register_t *retval;
1040 1.20 thorpej {
1041 1.78 fvdl struct linux_sys_setregid16_args /* {
1042 1.18 fvdl syscallarg(int) rgid;
1043 1.18 fvdl syscallarg(int) egid;
1044 1.20 thorpej } */ *uap = v;
1045 1.28 mycroft struct sys_setregid_args bsa;
1046 1.18 fvdl
1047 1.18 fvdl SCARG(&bsa, rgid) = ((linux_gid_t)SCARG(uap, rgid) == (linux_gid_t)-1) ?
1048 1.18 fvdl (uid_t)-1 : SCARG(uap, rgid);
1049 1.18 fvdl SCARG(&bsa, egid) = ((linux_gid_t)SCARG(uap, egid) == (linux_gid_t)-1) ?
1050 1.18 fvdl (uid_t)-1 : SCARG(uap, egid);
1051 1.18 fvdl
1052 1.116 thorpej return sys_setregid(l, &bsa, retval);
1053 1.63 abs }
1054 1.81 fvdl
1055 1.81 fvdl int
1056 1.116 thorpej linux_sys_setresuid16(l, v, retval)
1057 1.116 thorpej struct lwp *l;
1058 1.81 fvdl void *v;
1059 1.81 fvdl register_t *retval;
1060 1.81 fvdl {
1061 1.81 fvdl struct linux_sys_setresuid16_args /* {
1062 1.81 fvdl syscallarg(uid_t) ruid;
1063 1.81 fvdl syscallarg(uid_t) euid;
1064 1.81 fvdl syscallarg(uid_t) suid;
1065 1.81 fvdl } */ *uap = v;
1066 1.81 fvdl struct linux_sys_setresuid16_args lsa;
1067 1.81 fvdl
1068 1.81 fvdl SCARG(&lsa, ruid) = ((linux_uid_t)SCARG(uap, ruid) == (linux_uid_t)-1) ?
1069 1.81 fvdl (uid_t)-1 : SCARG(uap, ruid);
1070 1.81 fvdl SCARG(&lsa, euid) = ((linux_uid_t)SCARG(uap, euid) == (linux_uid_t)-1) ?
1071 1.81 fvdl (uid_t)-1 : SCARG(uap, euid);
1072 1.81 fvdl SCARG(&lsa, suid) = ((linux_uid_t)SCARG(uap, suid) == (linux_uid_t)-1) ?
1073 1.81 fvdl (uid_t)-1 : SCARG(uap, suid);
1074 1.81 fvdl
1075 1.116 thorpej return linux_sys_setresuid(l, &lsa, retval);
1076 1.81 fvdl }
1077 1.81 fvdl
1078 1.81 fvdl int
1079 1.116 thorpej linux_sys_setresgid16(l, v, retval)
1080 1.116 thorpej struct lwp *l;
1081 1.81 fvdl void *v;
1082 1.81 fvdl register_t *retval;
1083 1.81 fvdl {
1084 1.81 fvdl struct linux_sys_setresgid16_args /* {
1085 1.81 fvdl syscallarg(gid_t) rgid;
1086 1.81 fvdl syscallarg(gid_t) egid;
1087 1.81 fvdl syscallarg(gid_t) sgid;
1088 1.81 fvdl } */ *uap = v;
1089 1.81 fvdl struct linux_sys_setresgid16_args lsa;
1090 1.81 fvdl
1091 1.81 fvdl SCARG(&lsa, rgid) = ((linux_gid_t)SCARG(uap, rgid) == (linux_gid_t)-1) ?
1092 1.81 fvdl (gid_t)-1 : SCARG(uap, rgid);
1093 1.81 fvdl SCARG(&lsa, egid) = ((linux_gid_t)SCARG(uap, egid) == (linux_gid_t)-1) ?
1094 1.81 fvdl (gid_t)-1 : SCARG(uap, egid);
1095 1.81 fvdl SCARG(&lsa, sgid) = ((linux_gid_t)SCARG(uap, sgid) == (linux_gid_t)-1) ?
1096 1.81 fvdl (gid_t)-1 : SCARG(uap, sgid);
1097 1.81 fvdl
1098 1.116 thorpej return linux_sys_setresgid(l, &lsa, retval);
1099 1.81 fvdl }
1100 1.81 fvdl
1101 1.81 fvdl int
1102 1.116 thorpej linux_sys_getgroups16(l, v, retval)
1103 1.116 thorpej struct lwp *l;
1104 1.81 fvdl void *v;
1105 1.81 fvdl register_t *retval;
1106 1.81 fvdl {
1107 1.81 fvdl struct linux_sys_getgroups16_args /* {
1108 1.81 fvdl syscallarg(int) gidsetsize;
1109 1.81 fvdl syscallarg(linux_gid_t *) gidset;
1110 1.81 fvdl } */ *uap = v;
1111 1.116 thorpej struct proc *p = l->l_proc;
1112 1.81 fvdl caddr_t sg;
1113 1.81 fvdl int n, error, i;
1114 1.81 fvdl struct sys_getgroups_args bsa;
1115 1.81 fvdl gid_t *bset, *kbset;
1116 1.81 fvdl linux_gid_t *lset;
1117 1.81 fvdl struct pcred *pc = p->p_cred;
1118 1.81 fvdl
1119 1.81 fvdl n = SCARG(uap, gidsetsize);
1120 1.81 fvdl if (n < 0)
1121 1.81 fvdl return EINVAL;
1122 1.81 fvdl error = 0;
1123 1.81 fvdl bset = kbset = NULL;
1124 1.81 fvdl lset = NULL;
1125 1.81 fvdl if (n > 0) {
1126 1.81 fvdl n = min(pc->pc_ucred->cr_ngroups, n);
1127 1.102 christos sg = stackgap_init(p, 0);
1128 1.102 christos bset = stackgap_alloc(p, &sg, n * sizeof (gid_t));
1129 1.81 fvdl kbset = malloc(n * sizeof (gid_t), M_TEMP, M_WAITOK);
1130 1.81 fvdl lset = malloc(n * sizeof (linux_gid_t), M_TEMP, M_WAITOK);
1131 1.81 fvdl if (bset == NULL || kbset == NULL || lset == NULL)
1132 1.81 fvdl return ENOMEM;
1133 1.81 fvdl SCARG(&bsa, gidsetsize) = n;
1134 1.81 fvdl SCARG(&bsa, gidset) = bset;
1135 1.116 thorpej error = sys_getgroups(l, &bsa, retval);
1136 1.81 fvdl if (error != 0)
1137 1.81 fvdl goto out;
1138 1.81 fvdl error = copyin(bset, kbset, n * sizeof (gid_t));
1139 1.81 fvdl if (error != 0)
1140 1.81 fvdl goto out;
1141 1.81 fvdl for (i = 0; i < n; i++)
1142 1.81 fvdl lset[i] = (linux_gid_t)kbset[i];
1143 1.81 fvdl error = copyout(lset, SCARG(uap, gidset),
1144 1.81 fvdl n * sizeof (linux_gid_t));
1145 1.81 fvdl } else
1146 1.81 fvdl *retval = pc->pc_ucred->cr_ngroups;
1147 1.81 fvdl out:
1148 1.81 fvdl if (kbset != NULL)
1149 1.81 fvdl free(kbset, M_TEMP);
1150 1.81 fvdl if (lset != NULL)
1151 1.81 fvdl free(lset, M_TEMP);
1152 1.81 fvdl return error;
1153 1.81 fvdl }
1154 1.81 fvdl
1155 1.81 fvdl int
1156 1.116 thorpej linux_sys_setgroups16(l, v, retval)
1157 1.116 thorpej struct lwp *l;
1158 1.81 fvdl void *v;
1159 1.81 fvdl register_t *retval;
1160 1.81 fvdl {
1161 1.81 fvdl struct linux_sys_setgroups16_args /* {
1162 1.81 fvdl syscallarg(int) gidsetsize;
1163 1.81 fvdl syscallarg(linux_gid_t *) gidset;
1164 1.81 fvdl } */ *uap = v;
1165 1.116 thorpej struct proc *p = l->l_proc;
1166 1.81 fvdl caddr_t sg;
1167 1.81 fvdl int n;
1168 1.81 fvdl int error, i;
1169 1.81 fvdl struct sys_setgroups_args bsa;
1170 1.81 fvdl gid_t *bset, *kbset;
1171 1.81 fvdl linux_gid_t *lset;
1172 1.81 fvdl
1173 1.81 fvdl n = SCARG(uap, gidsetsize);
1174 1.81 fvdl if (n < 0 || n > NGROUPS)
1175 1.81 fvdl return EINVAL;
1176 1.102 christos sg = stackgap_init(p, 0);
1177 1.102 christos bset = stackgap_alloc(p, &sg, n * sizeof (gid_t));
1178 1.81 fvdl lset = malloc(n * sizeof (linux_gid_t), M_TEMP, M_WAITOK);
1179 1.106 fvdl kbset = malloc(n * sizeof (gid_t), M_TEMP, M_WAITOK);
1180 1.81 fvdl if (lset == NULL || bset == NULL)
1181 1.81 fvdl return ENOMEM;
1182 1.81 fvdl error = copyin(SCARG(uap, gidset), lset, n * sizeof (linux_gid_t));
1183 1.81 fvdl if (error != 0)
1184 1.81 fvdl goto out;
1185 1.81 fvdl for (i = 0; i < n; i++)
1186 1.81 fvdl kbset[i] = (gid_t)lset[i];
1187 1.81 fvdl error = copyout(kbset, bset, n * sizeof (gid_t));
1188 1.81 fvdl if (error != 0)
1189 1.81 fvdl goto out;
1190 1.81 fvdl SCARG(&bsa, gidsetsize) = n;
1191 1.81 fvdl SCARG(&bsa, gidset) = bset;
1192 1.116 thorpej error = sys_setgroups(l, &bsa, retval);
1193 1.81 fvdl
1194 1.81 fvdl out:
1195 1.81 fvdl if (lset != NULL)
1196 1.81 fvdl free(lset, M_TEMP);
1197 1.81 fvdl if (kbset != NULL)
1198 1.81 fvdl free(kbset, M_TEMP);
1199 1.81 fvdl
1200 1.81 fvdl return error;
1201 1.81 fvdl }
1202 1.81 fvdl
1203 1.79 thorpej #endif /* __i386__ || __m68k__ */
1204 1.63 abs
1205 1.63 abs /*
1206 1.64 abs * We have nonexistent fsuid equal to uid.
1207 1.64 abs * If modification is requested, refuse.
1208 1.63 abs */
1209 1.63 abs int
1210 1.116 thorpej linux_sys_setfsuid(l, v, retval)
1211 1.116 thorpej struct lwp *l;
1212 1.63 abs void *v;
1213 1.63 abs register_t *retval;
1214 1.63 abs {
1215 1.63 abs struct linux_sys_setfsuid_args /* {
1216 1.63 abs syscallarg(uid_t) uid;
1217 1.63 abs } */ *uap = v;
1218 1.116 thorpej struct proc *p = l->l_proc;
1219 1.63 abs uid_t uid;
1220 1.63 abs
1221 1.63 abs uid = SCARG(uap, uid);
1222 1.63 abs if (p->p_cred->p_ruid != uid)
1223 1.116 thorpej return sys_nosys(l, v, retval);
1224 1.63 abs else
1225 1.63 abs return (0);
1226 1.63 abs }
1227 1.63 abs
1228 1.66 erh /* XXX XXX XXX */
1229 1.66 erh #ifndef alpha
1230 1.63 abs int
1231 1.116 thorpej linux_sys_getfsuid(l, v, retval)
1232 1.116 thorpej struct lwp *l;
1233 1.66 erh void *v;
1234 1.66 erh register_t *retval;
1235 1.63 abs {
1236 1.116 thorpej return sys_getuid(l, v, retval);
1237 1.27 fvdl }
1238 1.66 erh #endif
1239 1.27 fvdl
1240 1.27 fvdl int
1241 1.116 thorpej linux_sys_setresuid(l, v, retval)
1242 1.116 thorpej struct lwp *l;
1243 1.57 thorpej void *v;
1244 1.57 thorpej register_t *retval;
1245 1.57 thorpej {
1246 1.57 thorpej struct linux_sys_setresuid_args /* {
1247 1.57 thorpej syscallarg(uid_t) ruid;
1248 1.57 thorpej syscallarg(uid_t) euid;
1249 1.57 thorpej syscallarg(uid_t) suid;
1250 1.57 thorpej } */ *uap = v;
1251 1.57 thorpej
1252 1.57 thorpej /*
1253 1.57 thorpej * Note: These checks are a little different than the NetBSD
1254 1.57 thorpej * setreuid(2) call performs. This precisely follows the
1255 1.57 thorpej * behavior of the Linux kernel.
1256 1.57 thorpej */
1257 1.57 thorpej
1258 1.117 dsl return do_setresuid(l, SCARG(uap, ruid), SCARG(uap, euid),
1259 1.117 dsl SCARG(uap, suid),
1260 1.117 dsl ID_R_EQ_R | ID_R_EQ_E | ID_R_EQ_S |
1261 1.117 dsl ID_E_EQ_R | ID_E_EQ_E | ID_E_EQ_S |
1262 1.117 dsl ID_S_EQ_R | ID_S_EQ_E | ID_S_EQ_S );
1263 1.57 thorpej }
1264 1.57 thorpej
1265 1.57 thorpej int
1266 1.116 thorpej linux_sys_getresuid(l, v, retval)
1267 1.116 thorpej struct lwp *l;
1268 1.57 thorpej void *v;
1269 1.57 thorpej register_t *retval;
1270 1.57 thorpej {
1271 1.57 thorpej struct linux_sys_getresuid_args /* {
1272 1.57 thorpej syscallarg(uid_t *) ruid;
1273 1.57 thorpej syscallarg(uid_t *) euid;
1274 1.57 thorpej syscallarg(uid_t *) suid;
1275 1.57 thorpej } */ *uap = v;
1276 1.116 thorpej struct proc *p = l->l_proc;
1277 1.57 thorpej struct pcred *pc = p->p_cred;
1278 1.57 thorpej int error;
1279 1.57 thorpej
1280 1.57 thorpej /*
1281 1.57 thorpej * Linux copies these values out to userspace like so:
1282 1.57 thorpej *
1283 1.57 thorpej * 1. Copy out ruid.
1284 1.57 thorpej * 2. If that succeeds, copy out euid.
1285 1.57 thorpej * 3. If both of those succeed, copy out suid.
1286 1.57 thorpej */
1287 1.57 thorpej if ((error = copyout(&pc->p_ruid, SCARG(uap, ruid),
1288 1.57 thorpej sizeof(uid_t))) != 0)
1289 1.57 thorpej return (error);
1290 1.57 thorpej
1291 1.57 thorpej if ((error = copyout(&pc->pc_ucred->cr_uid, SCARG(uap, euid),
1292 1.57 thorpej sizeof(uid_t))) != 0)
1293 1.57 thorpej return (error);
1294 1.57 thorpej
1295 1.57 thorpej return (copyout(&pc->p_svuid, SCARG(uap, suid), sizeof(uid_t)));
1296 1.78 fvdl }
1297 1.62 tron
1298 1.62 tron int
1299 1.116 thorpej linux_sys_ptrace(l, v, retval)
1300 1.116 thorpej struct lwp *l;
1301 1.62 tron void *v;
1302 1.62 tron register_t *retval;
1303 1.62 tron {
1304 1.62 tron struct linux_sys_ptrace_args /* {
1305 1.88 manu i386, m68k, powerpc: T=int
1306 1.66 erh alpha: T=long
1307 1.66 erh syscallarg(T) request;
1308 1.66 erh syscallarg(T) pid;
1309 1.66 erh syscallarg(T) addr;
1310 1.66 erh syscallarg(T) data;
1311 1.62 tron } */ *uap = v;
1312 1.73 jdolecek const int *ptr;
1313 1.73 jdolecek int request;
1314 1.89 manu int error;
1315 1.62 tron
1316 1.62 tron ptr = linux_ptrace_request_map;
1317 1.62 tron request = SCARG(uap, request);
1318 1.62 tron while (*ptr != -1)
1319 1.62 tron if (*ptr++ == request) {
1320 1.62 tron struct sys_ptrace_args pta;
1321 1.62 tron
1322 1.62 tron SCARG(&pta, req) = *ptr;
1323 1.62 tron SCARG(&pta, pid) = SCARG(uap, pid);
1324 1.62 tron SCARG(&pta, addr) = (caddr_t)SCARG(uap, addr);
1325 1.62 tron SCARG(&pta, data) = SCARG(uap, data);
1326 1.62 tron
1327 1.73 jdolecek /*
1328 1.73 jdolecek * Linux ptrace(PTRACE_CONT, pid, 0, 0) means actually
1329 1.90 jdolecek * to continue where the process left off previously.
1330 1.90 jdolecek * The same thing is achieved by addr == (caddr_t) 1
1331 1.90 jdolecek * on NetBSD, so rewrite 'addr' appropriately.
1332 1.73 jdolecek */
1333 1.73 jdolecek if (request == LINUX_PTRACE_CONT && SCARG(uap, addr)==0)
1334 1.73 jdolecek SCARG(&pta, addr) = (caddr_t) 1;
1335 1.73 jdolecek
1336 1.116 thorpej error = sys_ptrace(l, &pta, retval);
1337 1.92 manu if (error)
1338 1.92 manu return error;
1339 1.92 manu switch (request) {
1340 1.92 manu case LINUX_PTRACE_PEEKTEXT:
1341 1.92 manu case LINUX_PTRACE_PEEKDATA:
1342 1.92 manu error = copyout (retval,
1343 1.92 manu (caddr_t)SCARG(uap, data), sizeof *retval);
1344 1.92 manu *retval = SCARG(uap, data);
1345 1.92 manu break;
1346 1.92 manu default:
1347 1.92 manu break;
1348 1.92 manu }
1349 1.89 manu return error;
1350 1.62 tron }
1351 1.62 tron else
1352 1.62 tron ptr++;
1353 1.62 tron
1354 1.116 thorpej return LINUX_SYS_PTRACE_ARCH(l, uap, retval);
1355 1.1 fvdl }
1356 1.67 erh
1357 1.67 erh int
1358 1.116 thorpej linux_sys_reboot(struct lwp *l, void *v, register_t *retval)
1359 1.67 erh {
1360 1.67 erh struct linux_sys_reboot_args /* {
1361 1.67 erh syscallarg(int) magic1;
1362 1.67 erh syscallarg(int) magic2;
1363 1.67 erh syscallarg(int) cmd;
1364 1.67 erh syscallarg(void *) arg;
1365 1.67 erh } */ *uap = v;
1366 1.67 erh struct sys_reboot_args /* {
1367 1.67 erh syscallarg(int) opt;
1368 1.67 erh syscallarg(char *) bootstr;
1369 1.67 erh } */ sra;
1370 1.116 thorpej struct proc *p = l->l_proc;
1371 1.67 erh int error;
1372 1.67 erh
1373 1.67 erh if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
1374 1.67 erh return(error);
1375 1.67 erh
1376 1.67 erh if (SCARG(uap, magic1) != LINUX_REBOOT_MAGIC1)
1377 1.67 erh return(EINVAL);
1378 1.67 erh if (SCARG(uap, magic2) != LINUX_REBOOT_MAGIC2 &&
1379 1.67 erh SCARG(uap, magic2) != LINUX_REBOOT_MAGIC2A &&
1380 1.67 erh SCARG(uap, magic2) != LINUX_REBOOT_MAGIC2B)
1381 1.67 erh return(EINVAL);
1382 1.67 erh
1383 1.67 erh switch (SCARG(uap, cmd)) {
1384 1.67 erh case LINUX_REBOOT_CMD_RESTART:
1385 1.67 erh SCARG(&sra, opt) = RB_AUTOBOOT;
1386 1.67 erh break;
1387 1.67 erh case LINUX_REBOOT_CMD_HALT:
1388 1.67 erh SCARG(&sra, opt) = RB_HALT;
1389 1.67 erh break;
1390 1.67 erh case LINUX_REBOOT_CMD_POWER_OFF:
1391 1.67 erh SCARG(&sra, opt) = RB_HALT|RB_POWERDOWN;
1392 1.67 erh break;
1393 1.67 erh case LINUX_REBOOT_CMD_RESTART2:
1394 1.67 erh /* Reboot with an argument. */
1395 1.67 erh SCARG(&sra, opt) = RB_AUTOBOOT|RB_STRING;
1396 1.67 erh SCARG(&sra, bootstr) = SCARG(uap, arg);
1397 1.67 erh break;
1398 1.67 erh case LINUX_REBOOT_CMD_CAD_ON:
1399 1.67 erh return(EINVAL); /* We don't implement ctrl-alt-delete */
1400 1.67 erh case LINUX_REBOOT_CMD_CAD_OFF:
1401 1.67 erh return(0);
1402 1.67 erh default:
1403 1.67 erh return(EINVAL);
1404 1.67 erh }
1405 1.67 erh
1406 1.116 thorpej return(sys_reboot(l, &sra, retval));
1407 1.75 jdolecek }
1408 1.75 jdolecek
1409 1.75 jdolecek /*
1410 1.75 jdolecek * Copy of compat_12_sys_swapon().
1411 1.75 jdolecek */
1412 1.75 jdolecek int
1413 1.116 thorpej linux_sys_swapon(l, v, retval)
1414 1.116 thorpej struct lwp *l;
1415 1.75 jdolecek void *v;
1416 1.75 jdolecek register_t *retval;
1417 1.75 jdolecek {
1418 1.75 jdolecek struct sys_swapctl_args ua;
1419 1.75 jdolecek struct linux_sys_swapon_args /* {
1420 1.75 jdolecek syscallarg(const char *) name;
1421 1.75 jdolecek } */ *uap = v;
1422 1.75 jdolecek
1423 1.75 jdolecek SCARG(&ua, cmd) = SWAP_ON;
1424 1.75 jdolecek SCARG(&ua, arg) = (void *)SCARG(uap, name);
1425 1.75 jdolecek SCARG(&ua, misc) = 0; /* priority */
1426 1.116 thorpej return (sys_swapctl(l, &ua, retval));
1427 1.76 jdolecek }
1428 1.76 jdolecek
1429 1.76 jdolecek /*
1430 1.76 jdolecek * Stop swapping to the file or block device specified by path.
1431 1.76 jdolecek */
1432 1.76 jdolecek int
1433 1.116 thorpej linux_sys_swapoff(l, v, retval)
1434 1.116 thorpej struct lwp *l;
1435 1.76 jdolecek void *v;
1436 1.76 jdolecek register_t *retval;
1437 1.76 jdolecek {
1438 1.76 jdolecek struct sys_swapctl_args ua;
1439 1.76 jdolecek struct linux_sys_swapoff_args /* {
1440 1.76 jdolecek syscallarg(const char *) path;
1441 1.76 jdolecek } */ *uap = v;
1442 1.76 jdolecek
1443 1.76 jdolecek SCARG(&ua, cmd) = SWAP_OFF;
1444 1.76 jdolecek SCARG(&ua, arg) = (void *)SCARG(uap, path);
1445 1.116 thorpej return (sys_swapctl(l, &ua, retval));
1446 1.75 jdolecek }
1447 1.75 jdolecek
1448 1.75 jdolecek /*
1449 1.75 jdolecek * Copy of compat_09_sys_setdomainname()
1450 1.75 jdolecek */
1451 1.75 jdolecek /* ARGSUSED */
1452 1.75 jdolecek int
1453 1.116 thorpej linux_sys_setdomainname(l, v, retval)
1454 1.116 thorpej struct lwp *l;
1455 1.75 jdolecek void *v;
1456 1.75 jdolecek register_t *retval;
1457 1.75 jdolecek {
1458 1.75 jdolecek struct linux_sys_setdomainname_args /* {
1459 1.75 jdolecek syscallarg(char *) domainname;
1460 1.75 jdolecek syscallarg(int) len;
1461 1.75 jdolecek } */ *uap = v;
1462 1.122 atatat int name[2];
1463 1.75 jdolecek
1464 1.122 atatat name[0] = CTL_KERN;
1465 1.122 atatat name[1] = KERN_DOMAINNAME;
1466 1.122 atatat return (old_sysctl(&name[0], 2, 0, 0, SCARG(uap, domainname),
1467 1.122 atatat SCARG(uap, len), l));
1468 1.77 augustss }
1469 1.77 augustss
1470 1.77 augustss /*
1471 1.77 augustss * sysinfo()
1472 1.77 augustss */
1473 1.77 augustss /* ARGSUSED */
1474 1.77 augustss int
1475 1.116 thorpej linux_sys_sysinfo(l, v, retval)
1476 1.116 thorpej struct lwp *l;
1477 1.77 augustss void *v;
1478 1.77 augustss register_t *retval;
1479 1.77 augustss {
1480 1.77 augustss struct linux_sys_sysinfo_args /* {
1481 1.77 augustss syscallarg(struct linux_sysinfo *) arg;
1482 1.77 augustss } */ *uap = v;
1483 1.77 augustss struct linux_sysinfo si;
1484 1.77 augustss struct loadavg *la;
1485 1.77 augustss
1486 1.77 augustss si.uptime = time.tv_sec - boottime.tv_sec;
1487 1.77 augustss la = &averunnable;
1488 1.77 augustss si.loads[0] = la->ldavg[0] * LINUX_SYSINFO_LOADS_SCALE / la->fscale;
1489 1.77 augustss si.loads[1] = la->ldavg[1] * LINUX_SYSINFO_LOADS_SCALE / la->fscale;
1490 1.77 augustss si.loads[2] = la->ldavg[2] * LINUX_SYSINFO_LOADS_SCALE / la->fscale;
1491 1.77 augustss si.totalram = ctob(physmem);
1492 1.77 augustss si.freeram = uvmexp.free * uvmexp.pagesize;
1493 1.77 augustss si.sharedram = 0; /* XXX */
1494 1.96 chs si.bufferram = uvmexp.filepages * uvmexp.pagesize;
1495 1.77 augustss si.totalswap = uvmexp.swpages * uvmexp.pagesize;
1496 1.77 augustss si.freeswap = (uvmexp.swpages - uvmexp.swpginuse) * uvmexp.pagesize;
1497 1.77 augustss si.procs = nprocs;
1498 1.77 augustss
1499 1.77 augustss /* The following are only present in newer Linux kernels. */
1500 1.77 augustss si.totalbig = 0;
1501 1.77 augustss si.freebig = 0;
1502 1.77 augustss si.mem_unit = 1;
1503 1.77 augustss
1504 1.77 augustss return (copyout(&si, SCARG(uap, arg), sizeof si));
1505 1.97 christos }
1506 1.97 christos
1507 1.97 christos #define bsd_to_linux_rlimit1(l, b, f) \
1508 1.114 thorpej (l)->f = ((b)->f == RLIM_INFINITY || \
1509 1.114 thorpej ((b)->f & 0xffffffff00000000ULL) != 0) ? \
1510 1.97 christos LINUX_RLIM_INFINITY : (int32_t)(b)->f
1511 1.97 christos #define bsd_to_linux_rlimit(l, b) \
1512 1.97 christos bsd_to_linux_rlimit1(l, b, rlim_cur); \
1513 1.97 christos bsd_to_linux_rlimit1(l, b, rlim_max)
1514 1.97 christos
1515 1.97 christos #define linux_to_bsd_rlimit1(b, l, f) \
1516 1.110 enami (b)->f = (l)->f == LINUX_RLIM_INFINITY ? RLIM_INFINITY : (l)->f
1517 1.97 christos #define linux_to_bsd_rlimit(b, l) \
1518 1.97 christos linux_to_bsd_rlimit1(b, l, rlim_cur); \
1519 1.97 christos linux_to_bsd_rlimit1(b, l, rlim_max)
1520 1.97 christos
1521 1.97 christos static int
1522 1.97 christos linux_to_bsd_limit(lim)
1523 1.97 christos int lim;
1524 1.97 christos {
1525 1.97 christos switch (lim) {
1526 1.97 christos case LINUX_RLIMIT_CPU:
1527 1.97 christos return RLIMIT_CPU;
1528 1.97 christos case LINUX_RLIMIT_FSIZE:
1529 1.97 christos return RLIMIT_FSIZE;
1530 1.97 christos case LINUX_RLIMIT_DATA:
1531 1.97 christos return RLIMIT_DATA;
1532 1.97 christos case LINUX_RLIMIT_STACK:
1533 1.97 christos return RLIMIT_STACK;
1534 1.97 christos case LINUX_RLIMIT_CORE:
1535 1.97 christos return RLIMIT_CORE;
1536 1.97 christos case LINUX_RLIMIT_RSS:
1537 1.97 christos return RLIMIT_RSS;
1538 1.97 christos case LINUX_RLIMIT_NPROC:
1539 1.97 christos return RLIMIT_NPROC;
1540 1.97 christos case LINUX_RLIMIT_NOFILE:
1541 1.97 christos return RLIMIT_NOFILE;
1542 1.97 christos case LINUX_RLIMIT_MEMLOCK:
1543 1.97 christos return RLIMIT_MEMLOCK;
1544 1.97 christos case LINUX_RLIMIT_AS:
1545 1.97 christos case LINUX_RLIMIT_LOCKS:
1546 1.97 christos return -EOPNOTSUPP;
1547 1.97 christos default:
1548 1.97 christos return -EINVAL;
1549 1.97 christos }
1550 1.97 christos }
1551 1.97 christos
1552 1.97 christos
1553 1.97 christos int
1554 1.116 thorpej linux_sys_getrlimit(l, v, retval)
1555 1.116 thorpej struct lwp *l;
1556 1.97 christos void *v;
1557 1.97 christos register_t *retval;
1558 1.97 christos {
1559 1.97 christos struct linux_sys_getrlimit_args /* {
1560 1.97 christos syscallarg(int) which;
1561 1.97 christos syscallarg(struct orlimit *) rlp;
1562 1.97 christos } */ *uap = v;
1563 1.116 thorpej struct proc *p = l->l_proc;
1564 1.102 christos caddr_t sg = stackgap_init(p, 0);
1565 1.97 christos struct sys_getrlimit_args ap;
1566 1.97 christos struct rlimit rl;
1567 1.97 christos struct orlimit orl;
1568 1.97 christos int error;
1569 1.97 christos
1570 1.97 christos SCARG(&ap, which) = linux_to_bsd_limit(SCARG(uap, which));
1571 1.97 christos if ((error = SCARG(&ap, which)) < 0)
1572 1.97 christos return -error;
1573 1.102 christos SCARG(&ap, rlp) = stackgap_alloc(p, &sg, sizeof rl);
1574 1.116 thorpej if ((error = sys_getrlimit(l, &ap, retval)) != 0)
1575 1.97 christos return error;
1576 1.97 christos if ((error = copyin(SCARG(&ap, rlp), &rl, sizeof(rl))) != 0)
1577 1.97 christos return error;
1578 1.97 christos bsd_to_linux_rlimit(&orl, &rl);
1579 1.97 christos return copyout(&orl, SCARG(uap, rlp), sizeof(orl));
1580 1.97 christos }
1581 1.97 christos
1582 1.97 christos int
1583 1.116 thorpej linux_sys_setrlimit(l, v, retval)
1584 1.116 thorpej struct lwp *l;
1585 1.97 christos void *v;
1586 1.97 christos register_t *retval;
1587 1.97 christos {
1588 1.97 christos struct linux_sys_setrlimit_args /* {
1589 1.97 christos syscallarg(int) which;
1590 1.97 christos syscallarg(struct orlimit *) rlp;
1591 1.97 christos } */ *uap = v;
1592 1.116 thorpej struct proc *p = l->l_proc;
1593 1.102 christos caddr_t sg = stackgap_init(p, 0);
1594 1.97 christos struct sys_setrlimit_args ap;
1595 1.97 christos struct rlimit rl;
1596 1.97 christos struct orlimit orl;
1597 1.97 christos int error;
1598 1.97 christos
1599 1.97 christos SCARG(&ap, which) = linux_to_bsd_limit(SCARG(uap, which));
1600 1.102 christos SCARG(&ap, rlp) = stackgap_alloc(p, &sg, sizeof rl);
1601 1.97 christos if ((error = SCARG(&ap, which)) < 0)
1602 1.97 christos return -error;
1603 1.97 christos if ((error = copyin(SCARG(uap, rlp), &orl, sizeof(orl))) != 0)
1604 1.97 christos return error;
1605 1.97 christos linux_to_bsd_rlimit(&rl, &orl);
1606 1.100 christos /* XXX: alpha complains about this */
1607 1.100 christos if ((error = copyout(&rl, (void *)SCARG(&ap, rlp), sizeof(rl))) != 0)
1608 1.97 christos return error;
1609 1.116 thorpej return sys_setrlimit(l, &ap, retval);
1610 1.97 christos }
1611 1.97 christos
1612 1.98 rafal #ifndef __mips__
1613 1.98 rafal /* XXX: this doesn't look 100% common, at least mips doesn't have it */
1614 1.97 christos int
1615 1.116 thorpej linux_sys_ugetrlimit(l, v, retval)
1616 1.116 thorpej struct lwp *l;
1617 1.97 christos void *v;
1618 1.97 christos register_t *retval;
1619 1.97 christos {
1620 1.116 thorpej return linux_sys_getrlimit(l, v, retval);
1621 1.87 jdolecek }
1622 1.98 rafal #endif
1623 1.87 jdolecek
1624 1.87 jdolecek /*
1625 1.87 jdolecek * This gets called for unsupported syscalls. The difference to sys_nosys()
1626 1.87 jdolecek * is that process does not get SIGSYS, the call just returns with ENOSYS.
1627 1.87 jdolecek * This is the way Linux does it and glibc depends on this behaviour.
1628 1.87 jdolecek */
1629 1.87 jdolecek int
1630 1.116 thorpej linux_sys_nosys(l, v, retval)
1631 1.116 thorpej struct lwp *l;
1632 1.87 jdolecek void *v;
1633 1.87 jdolecek register_t *retval;
1634 1.87 jdolecek {
1635 1.87 jdolecek return (ENOSYS);
1636 1.67 erh }
1637