kern_exec.c revision 1.295 1 1.295 dholland /* $NetBSD: kern_exec.c,v 1.295 2010/05/02 05:30:20 dholland Exp $ */
2 1.277 ad
3 1.277 ad /*-
4 1.277 ad * Copyright (c) 2008 The NetBSD Foundation, Inc.
5 1.277 ad * All rights reserved.
6 1.277 ad *
7 1.277 ad * Redistribution and use in source and binary forms, with or without
8 1.277 ad * modification, are permitted provided that the following conditions
9 1.277 ad * are met:
10 1.277 ad * 1. Redistributions of source code must retain the above copyright
11 1.277 ad * notice, this list of conditions and the following disclaimer.
12 1.277 ad * 2. Redistributions in binary form must reproduce the above copyright
13 1.277 ad * notice, this list of conditions and the following disclaimer in the
14 1.277 ad * documentation and/or other materials provided with the distribution.
15 1.277 ad *
16 1.277 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
17 1.277 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.277 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.277 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
20 1.277 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 1.277 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 1.277 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 1.277 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 1.277 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 1.277 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26 1.277 ad * POSSIBILITY OF SUCH DAMAGE.
27 1.277 ad */
28 1.55 cgd
29 1.55 cgd /*-
30 1.77 cgd * Copyright (C) 1993, 1994, 1996 Christopher G. Demetriou
31 1.55 cgd * Copyright (C) 1992 Wolfgang Solfrank.
32 1.55 cgd * Copyright (C) 1992 TooLs GmbH.
33 1.55 cgd * All rights reserved.
34 1.55 cgd *
35 1.55 cgd * Redistribution and use in source and binary forms, with or without
36 1.55 cgd * modification, are permitted provided that the following conditions
37 1.55 cgd * are met:
38 1.55 cgd * 1. Redistributions of source code must retain the above copyright
39 1.55 cgd * notice, this list of conditions and the following disclaimer.
40 1.55 cgd * 2. Redistributions in binary form must reproduce the above copyright
41 1.55 cgd * notice, this list of conditions and the following disclaimer in the
42 1.55 cgd * documentation and/or other materials provided with the distribution.
43 1.55 cgd * 3. All advertising materials mentioning features or use of this software
44 1.55 cgd * must display the following acknowledgement:
45 1.55 cgd * This product includes software developed by TooLs GmbH.
46 1.55 cgd * 4. The name of TooLs GmbH may not be used to endorse or promote products
47 1.55 cgd * derived from this software without specific prior written permission.
48 1.55 cgd *
49 1.55 cgd * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
50 1.55 cgd * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
51 1.55 cgd * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
52 1.55 cgd * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
53 1.55 cgd * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
54 1.55 cgd * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
55 1.55 cgd * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
56 1.55 cgd * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
57 1.55 cgd * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
58 1.55 cgd * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
59 1.55 cgd */
60 1.146 lukem
61 1.146 lukem #include <sys/cdefs.h>
62 1.295 dholland __KERNEL_RCSID(0, "$NetBSD: kern_exec.c,v 1.295 2010/05/02 05:30:20 dholland Exp $");
63 1.89 mrg
64 1.92 thorpej #include "opt_ktrace.h"
65 1.285 apb #include "opt_modular.h"
66 1.124 jdolecek #include "opt_syscall_debug.h"
67 1.226 dogcow #include "veriexec.h"
68 1.232 elad #include "opt_pax.h"
69 1.279 wrstuden #include "opt_sa.h"
70 1.55 cgd
71 1.55 cgd #include <sys/param.h>
72 1.55 cgd #include <sys/systm.h>
73 1.55 cgd #include <sys/filedesc.h>
74 1.55 cgd #include <sys/kernel.h>
75 1.55 cgd #include <sys/proc.h>
76 1.55 cgd #include <sys/mount.h>
77 1.55 cgd #include <sys/malloc.h>
78 1.265 yamt #include <sys/kmem.h>
79 1.55 cgd #include <sys/namei.h>
80 1.55 cgd #include <sys/vnode.h>
81 1.55 cgd #include <sys/file.h>
82 1.55 cgd #include <sys/acct.h>
83 1.55 cgd #include <sys/exec.h>
84 1.55 cgd #include <sys/ktrace.h>
85 1.278 pooka #include <sys/uidinfo.h>
86 1.55 cgd #include <sys/wait.h>
87 1.55 cgd #include <sys/mman.h>
88 1.155 gmcgarry #include <sys/ras.h>
89 1.55 cgd #include <sys/signalvar.h>
90 1.55 cgd #include <sys/stat.h>
91 1.124 jdolecek #include <sys/syscall.h>
92 1.218 elad #include <sys/kauth.h>
93 1.253 ad #include <sys/lwpctl.h>
94 1.260 christos #include <sys/pax.h>
95 1.263 ad #include <sys/cpu.h>
96 1.282 ad #include <sys/module.h>
97 1.279 wrstuden #include <sys/sa.h>
98 1.279 wrstuden #include <sys/savar.h>
99 1.289 pooka #include <sys/syscallvar.h>
100 1.56 cgd #include <sys/syscallargs.h>
101 1.222 elad #if NVERIEXEC > 0
102 1.197 blymn #include <sys/verified_exec.h>
103 1.222 elad #endif /* NVERIEXEC > 0 */
104 1.294 darran #include <sys/sdt.h>
105 1.55 cgd
106 1.88 mrg #include <uvm/uvm_extern.h>
107 1.88 mrg
108 1.55 cgd #include <machine/reg.h>
109 1.55 cgd
110 1.244 dsl #include <compat/common/compat_util.h>
111 1.244 dsl
112 1.171 chs static int exec_sigcode_map(struct proc *, const struct emul *);
113 1.171 chs
114 1.143 christos #ifdef DEBUG_EXEC
115 1.143 christos #define DPRINTF(a) uprintf a
116 1.143 christos #else
117 1.143 christos #define DPRINTF(a)
118 1.143 christos #endif /* DEBUG_EXEC */
119 1.165 thorpej
120 1.130 jdolecek /*
121 1.294 darran * DTrace SDT provider definitions
122 1.294 darran */
123 1.294 darran SDT_PROBE_DEFINE(proc,,,exec,
124 1.294 darran "char *", NULL,
125 1.294 darran NULL, NULL, NULL, NULL,
126 1.294 darran NULL, NULL, NULL, NULL);
127 1.294 darran SDT_PROBE_DEFINE(proc,,,exec_success,
128 1.294 darran "char *", NULL,
129 1.294 darran NULL, NULL, NULL, NULL,
130 1.294 darran NULL, NULL, NULL, NULL);
131 1.294 darran SDT_PROBE_DEFINE(proc,,,exec_failure,
132 1.294 darran "int", NULL,
133 1.294 darran NULL, NULL, NULL, NULL,
134 1.294 darran NULL, NULL, NULL, NULL);
135 1.294 darran
136 1.294 darran /*
137 1.130 jdolecek * Exec function switch:
138 1.130 jdolecek *
139 1.130 jdolecek * Note that each makecmds function is responsible for loading the
140 1.130 jdolecek * exec package with the necessary functions for any exec-type-specific
141 1.130 jdolecek * handling.
142 1.130 jdolecek *
143 1.130 jdolecek * Functions for specific exec types should be defined in their own
144 1.130 jdolecek * header file.
145 1.130 jdolecek */
146 1.138 lukem static const struct execsw **execsw = NULL;
147 1.138 lukem static int nexecs;
148 1.138 lukem
149 1.282 ad u_int exec_maxhdrsz; /* must not be static - used by netbsd32 */
150 1.130 jdolecek
151 1.130 jdolecek /* list of dynamically loaded execsw entries */
152 1.282 ad static LIST_HEAD(execlist_head, exec_entry) ex_head =
153 1.282 ad LIST_HEAD_INITIALIZER(ex_head);
154 1.130 jdolecek struct exec_entry {
155 1.138 lukem LIST_ENTRY(exec_entry) ex_list;
156 1.282 ad SLIST_ENTRY(exec_entry) ex_slist;
157 1.282 ad const struct execsw *ex_sw;
158 1.130 jdolecek };
159 1.130 jdolecek
160 1.203 christos #ifndef __HAVE_SYSCALL_INTERN
161 1.203 christos void syscall(void);
162 1.203 christos #endif
163 1.203 christos
164 1.280 matt #ifdef KERN_SA
165 1.282 ad static struct sa_emul saemul_netbsd = {
166 1.279 wrstuden sizeof(ucontext_t),
167 1.279 wrstuden sizeof(struct sa_t),
168 1.279 wrstuden sizeof(struct sa_t *),
169 1.279 wrstuden NULL,
170 1.279 wrstuden NULL,
171 1.279 wrstuden cpu_upcall,
172 1.279 wrstuden (void (*)(struct lwp *, void *))getucontext_sa,
173 1.279 wrstuden sa_ucsp
174 1.279 wrstuden };
175 1.280 matt #endif /* KERN_SA */
176 1.279 wrstuden
177 1.173 christos /* NetBSD emul struct */
178 1.282 ad struct emul emul_netbsd = {
179 1.291 rmind .e_name = "netbsd",
180 1.291 rmind .e_path = NULL,
181 1.133 mycroft #ifndef __HAVE_MINIMAL_EMUL
182 1.291 rmind .e_flags = EMUL_HAS_SYS___syscall,
183 1.291 rmind .e_errno = NULL,
184 1.291 rmind .e_nosys = SYS_syscall,
185 1.291 rmind .e_nsysent = SYS_NSYSENT,
186 1.133 mycroft #endif
187 1.291 rmind .e_sysent = sysent,
188 1.124 jdolecek #ifdef SYSCALL_DEBUG
189 1.291 rmind .e_syscallnames = syscallnames,
190 1.124 jdolecek #else
191 1.291 rmind .e_syscallnames = NULL,
192 1.124 jdolecek #endif
193 1.291 rmind .e_sendsig = sendsig,
194 1.291 rmind .e_trapsignal = trapsignal,
195 1.291 rmind .e_tracesig = NULL,
196 1.291 rmind .e_sigcode = NULL,
197 1.291 rmind .e_esigcode = NULL,
198 1.291 rmind .e_sigobject = NULL,
199 1.291 rmind .e_setregs = setregs,
200 1.291 rmind .e_proc_exec = NULL,
201 1.291 rmind .e_proc_fork = NULL,
202 1.291 rmind .e_proc_exit = NULL,
203 1.291 rmind .e_lwp_fork = NULL,
204 1.291 rmind .e_lwp_exit = NULL,
205 1.133 mycroft #ifdef __HAVE_SYSCALL_INTERN
206 1.291 rmind .e_syscall_intern = syscall_intern,
207 1.133 mycroft #else
208 1.291 rmind .e_syscall = syscall,
209 1.133 mycroft #endif
210 1.291 rmind .e_sysctlovly = NULL,
211 1.291 rmind .e_fault = NULL,
212 1.291 rmind .e_vm_default_addr = uvm_default_mapaddr,
213 1.291 rmind .e_usertrap = NULL,
214 1.280 matt #ifdef KERN_SA
215 1.291 rmind .e_sa = &saemul_netbsd,
216 1.280 matt #else
217 1.291 rmind .e_sa = NULL,
218 1.280 matt #endif
219 1.291 rmind .e_ucsize = sizeof(ucontext_t),
220 1.291 rmind .e_startlwp = startlwp
221 1.124 jdolecek };
222 1.124 jdolecek
223 1.55 cgd /*
224 1.130 jdolecek * Exec lock. Used to control access to execsw[] structures.
225 1.130 jdolecek * This must not be static so that netbsd32 can access it, too.
226 1.130 jdolecek */
227 1.237 ad krwlock_t exec_lock;
228 1.183 junyoung
229 1.259 ad static kmutex_t sigobject_lock;
230 1.259 ad
231 1.277 ad static void *
232 1.277 ad exec_pool_alloc(struct pool *pp, int flags)
233 1.277 ad {
234 1.277 ad
235 1.277 ad return (void *)uvm_km_alloc(kernel_map, NCARGS, 0,
236 1.277 ad UVM_KMF_PAGEABLE | UVM_KMF_WAITVA);
237 1.277 ad }
238 1.277 ad
239 1.277 ad static void
240 1.277 ad exec_pool_free(struct pool *pp, void *addr)
241 1.277 ad {
242 1.277 ad
243 1.277 ad uvm_km_free(kernel_map, (vaddr_t)addr, NCARGS, UVM_KMF_PAGEABLE);
244 1.277 ad }
245 1.277 ad
246 1.277 ad static struct pool exec_pool;
247 1.277 ad
248 1.277 ad static struct pool_allocator exec_palloc = {
249 1.277 ad .pa_alloc = exec_pool_alloc,
250 1.277 ad .pa_free = exec_pool_free,
251 1.277 ad .pa_pagesz = NCARGS
252 1.277 ad };
253 1.277 ad
254 1.130 jdolecek /*
255 1.55 cgd * check exec:
256 1.55 cgd * given an "executable" described in the exec package's namei info,
257 1.55 cgd * see what we can do with it.
258 1.55 cgd *
259 1.55 cgd * ON ENTRY:
260 1.55 cgd * exec package with appropriate namei info
261 1.212 christos * lwp pointer of exec'ing lwp
262 1.55 cgd * NO SELF-LOCKED VNODES
263 1.55 cgd *
264 1.55 cgd * ON EXIT:
265 1.55 cgd * error: nothing held, etc. exec header still allocated.
266 1.77 cgd * ok: filled exec package, executable's vnode (unlocked).
267 1.55 cgd *
268 1.55 cgd * EXEC SWITCH ENTRY:
269 1.55 cgd * Locked vnode to check, exec package, proc.
270 1.55 cgd *
271 1.55 cgd * EXEC SWITCH EXIT:
272 1.77 cgd * ok: return 0, filled exec package, executable's vnode (unlocked).
273 1.55 cgd * error: destructive:
274 1.55 cgd * everything deallocated execept exec header.
275 1.76 cgd * non-destructive:
276 1.77 cgd * error code, executable's vnode (unlocked),
277 1.76 cgd * exec header unmodified.
278 1.55 cgd */
279 1.55 cgd int
280 1.205 christos /*ARGSUSED*/
281 1.295 dholland check_exec(struct lwp *l, struct exec_package *epp, const char *kpath)
282 1.55 cgd {
283 1.138 lukem int error, i;
284 1.138 lukem struct vnode *vp;
285 1.295 dholland struct nameidata nd;
286 1.138 lukem size_t resid;
287 1.55 cgd
288 1.295 dholland NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF | SAVENAME | TRYEMULROOT,
289 1.295 dholland UIO_SYSSPACE, kpath);
290 1.295 dholland
291 1.55 cgd /* first get the vnode */
292 1.295 dholland if ((error = namei(&nd)) != 0)
293 1.55 cgd return error;
294 1.295 dholland epp->ep_vp = vp = nd.ni_vp;
295 1.295 dholland /* this cannot overflow as both are size PATH_MAX */
296 1.295 dholland strcpy(epp->ep_resolvedname, nd.ni_cnd.cn_pnbuf);
297 1.295 dholland
298 1.295 dholland /* dump this right away */
299 1.295 dholland #if 1 /*def DIAGNOSTIC*/
300 1.295 dholland /* paranoia (XXX: take this out once things are working) */
301 1.295 dholland memset(nd.ni_cnd.cn_pnbuf, '~', PATH_MAX);
302 1.295 dholland #endif
303 1.295 dholland PNBUF_PUT(nd.ni_cnd.cn_pnbuf);
304 1.55 cgd
305 1.84 mycroft /* check access and type */
306 1.55 cgd if (vp->v_type != VREG) {
307 1.81 kleink error = EACCES;
308 1.55 cgd goto bad1;
309 1.55 cgd }
310 1.254 pooka if ((error = VOP_ACCESS(vp, VEXEC, l->l_cred)) != 0)
311 1.84 mycroft goto bad1;
312 1.55 cgd
313 1.55 cgd /* get attributes */
314 1.254 pooka if ((error = VOP_GETATTR(vp, epp->ep_vap, l->l_cred)) != 0)
315 1.55 cgd goto bad1;
316 1.55 cgd
317 1.55 cgd /* Check mount point */
318 1.55 cgd if (vp->v_mount->mnt_flag & MNT_NOEXEC) {
319 1.55 cgd error = EACCES;
320 1.55 cgd goto bad1;
321 1.55 cgd }
322 1.141 thorpej if (vp->v_mount->mnt_flag & MNT_NOSUID)
323 1.83 mycroft epp->ep_vap->va_mode &= ~(S_ISUID | S_ISGID);
324 1.55 cgd
325 1.55 cgd /* try to open it */
326 1.254 pooka if ((error = VOP_OPEN(vp, FREAD, l->l_cred)) != 0)
327 1.55 cgd goto bad1;
328 1.55 cgd
329 1.99 wrstuden /* unlock vp, since we need it unlocked from here on out. */
330 1.90 fvdl VOP_UNLOCK(vp, 0);
331 1.77 cgd
332 1.222 elad #if NVERIEXEC > 0
333 1.295 dholland error = veriexec_verify(l, vp, epp->ep_resolvedname,
334 1.233 elad epp->ep_flags & EXEC_INDIR ? VERIEXEC_INDIRECT : VERIEXEC_DIRECT,
335 1.236 elad NULL);
336 1.236 elad if (error)
337 1.234 elad goto bad2;
338 1.222 elad #endif /* NVERIEXEC > 0 */
339 1.160 blymn
340 1.232 elad #ifdef PAX_SEGVGUARD
341 1.295 dholland error = pax_segvguard(l, vp, epp->ep_resolvedname, false);
342 1.234 elad if (error)
343 1.234 elad goto bad2;
344 1.232 elad #endif /* PAX_SEGVGUARD */
345 1.232 elad
346 1.55 cgd /* now we have the file, get the exec header */
347 1.74 christos error = vn_rdwr(UIO_READ, vp, epp->ep_hdr, epp->ep_hdrlen, 0,
348 1.223 ad UIO_SYSSPACE, 0, l->l_cred, &resid, NULL);
349 1.74 christos if (error)
350 1.55 cgd goto bad2;
351 1.55 cgd epp->ep_hdrvalid = epp->ep_hdrlen - resid;
352 1.55 cgd
353 1.55 cgd /*
354 1.136 eeh * Set up default address space limits. Can be overridden
355 1.136 eeh * by individual exec packages.
356 1.183 junyoung *
357 1.235 rillig * XXX probably should be all done in the exec packages.
358 1.136 eeh */
359 1.136 eeh epp->ep_vm_minaddr = VM_MIN_ADDRESS;
360 1.136 eeh epp->ep_vm_maxaddr = VM_MAXUSER_ADDRESS;
361 1.136 eeh /*
362 1.55 cgd * set up the vmcmds for creation of the process
363 1.55 cgd * address space
364 1.55 cgd */
365 1.55 cgd error = ENOEXEC;
366 1.244 dsl for (i = 0; i < nexecs; i++) {
367 1.68 cgd int newerror;
368 1.68 cgd
369 1.130 jdolecek epp->ep_esch = execsw[i];
370 1.212 christos newerror = (*execsw[i]->es_makecmds)(l, epp);
371 1.244 dsl
372 1.244 dsl if (!newerror) {
373 1.244 dsl /* Seems ok: check that entry point is sane */
374 1.244 dsl if (epp->ep_entry > VM_MAXUSER_ADDRESS) {
375 1.244 dsl error = ENOEXEC;
376 1.244 dsl break;
377 1.244 dsl }
378 1.244 dsl
379 1.244 dsl /* check limits */
380 1.244 dsl if ((epp->ep_tsize > MAXTSIZ) ||
381 1.244 dsl (epp->ep_dsize > (u_quad_t)l->l_proc->p_rlimit
382 1.244 dsl [RLIMIT_DATA].rlim_cur)) {
383 1.244 dsl error = ENOMEM;
384 1.244 dsl break;
385 1.244 dsl }
386 1.244 dsl return 0;
387 1.244 dsl }
388 1.244 dsl
389 1.244 dsl if (epp->ep_emul_root != NULL) {
390 1.244 dsl vrele(epp->ep_emul_root);
391 1.244 dsl epp->ep_emul_root = NULL;
392 1.244 dsl }
393 1.244 dsl if (epp->ep_interp != NULL) {
394 1.244 dsl vrele(epp->ep_interp);
395 1.244 dsl epp->ep_interp = NULL;
396 1.244 dsl }
397 1.244 dsl
398 1.68 cgd /* make sure the first "interesting" error code is saved. */
399 1.244 dsl if (error == ENOEXEC)
400 1.68 cgd error = newerror;
401 1.124 jdolecek
402 1.244 dsl if (epp->ep_flags & EXEC_DESTR)
403 1.244 dsl /* Error from "#!" code, tidied up by recursive call */
404 1.55 cgd return error;
405 1.55 cgd }
406 1.55 cgd
407 1.249 pooka /* not found, error */
408 1.249 pooka
409 1.55 cgd /*
410 1.55 cgd * free any vmspace-creation commands,
411 1.55 cgd * and release their references
412 1.55 cgd */
413 1.55 cgd kill_vmcmds(&epp->ep_vmcmds);
414 1.55 cgd
415 1.55 cgd bad2:
416 1.55 cgd /*
417 1.99 wrstuden * close and release the vnode, restore the old one, free the
418 1.55 cgd * pathname buf, and punt.
419 1.55 cgd */
420 1.99 wrstuden vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
421 1.254 pooka VOP_CLOSE(vp, FREAD, l->l_cred);
422 1.99 wrstuden vput(vp);
423 1.55 cgd return error;
424 1.55 cgd
425 1.55 cgd bad1:
426 1.55 cgd /*
427 1.55 cgd * free the namei pathname buffer, and put the vnode
428 1.55 cgd * (which we don't yet have open).
429 1.55 cgd */
430 1.77 cgd vput(vp); /* was still locked */
431 1.55 cgd return error;
432 1.55 cgd }
433 1.55 cgd
434 1.188 chs #ifdef __MACHINE_STACK_GROWS_UP
435 1.188 chs #define STACK_PTHREADSPACE NBPG
436 1.188 chs #else
437 1.188 chs #define STACK_PTHREADSPACE 0
438 1.188 chs #endif
439 1.188 chs
440 1.204 cube static int
441 1.204 cube execve_fetch_element(char * const *array, size_t index, char **value)
442 1.204 cube {
443 1.204 cube return copyin(array + index, value, sizeof(*value));
444 1.204 cube }
445 1.204 cube
446 1.55 cgd /*
447 1.55 cgd * exec system call
448 1.55 cgd */
449 1.55 cgd /* ARGSUSED */
450 1.75 christos int
451 1.258 dsl sys_execve(struct lwp *l, const struct sys_execve_args *uap, register_t *retval)
452 1.71 thorpej {
453 1.258 dsl /* {
454 1.138 lukem syscallarg(const char *) path;
455 1.138 lukem syscallarg(char * const *) argp;
456 1.138 lukem syscallarg(char * const *) envp;
457 1.258 dsl } */
458 1.204 cube
459 1.204 cube return execve1(l, SCARG(uap, path), SCARG(uap, argp),
460 1.204 cube SCARG(uap, envp), execve_fetch_element);
461 1.204 cube }
462 1.204 cube
463 1.282 ad /*
464 1.282 ad * Load modules to try and execute an image that we do not understand.
465 1.282 ad * If no execsw entries are present, we load those likely to be needed
466 1.282 ad * in order to run native images only. Otherwise, we autoload all
467 1.282 ad * possible modules that could let us run the binary. XXX lame
468 1.282 ad */
469 1.282 ad static void
470 1.282 ad exec_autoload(void)
471 1.282 ad {
472 1.282 ad #ifdef MODULAR
473 1.282 ad static const char * const native[] = {
474 1.282 ad "exec_elf32",
475 1.282 ad "exec_elf64",
476 1.282 ad "exec_script",
477 1.282 ad NULL
478 1.282 ad };
479 1.282 ad static const char * const compat[] = {
480 1.282 ad "exec_elf32",
481 1.282 ad "exec_elf64",
482 1.282 ad "exec_script",
483 1.282 ad "exec_aout",
484 1.282 ad "exec_coff",
485 1.282 ad "exec_ecoff",
486 1.282 ad "compat_aoutm68k",
487 1.282 ad "compat_freebsd",
488 1.282 ad "compat_ibcs2",
489 1.282 ad "compat_irix",
490 1.282 ad "compat_linux",
491 1.282 ad "compat_linux32",
492 1.282 ad "compat_netbsd32",
493 1.282 ad "compat_sunos",
494 1.282 ad "compat_sunos32",
495 1.282 ad "compat_svr4",
496 1.282 ad "compat_svr4_32",
497 1.282 ad "compat_ultrix",
498 1.282 ad NULL
499 1.282 ad };
500 1.282 ad char const * const *list;
501 1.282 ad int i;
502 1.282 ad
503 1.282 ad mutex_enter(&module_lock);
504 1.282 ad list = (nexecs == 0 ? native : compat);
505 1.282 ad for (i = 0; list[i] != NULL; i++) {
506 1.282 ad if (module_autoload(list[i], MODULE_CLASS_MISC) != 0) {
507 1.282 ad continue;
508 1.282 ad }
509 1.282 ad mutex_exit(&module_lock);
510 1.282 ad yield();
511 1.282 ad mutex_enter(&module_lock);
512 1.282 ad }
513 1.282 ad mutex_exit(&module_lock);
514 1.282 ad #endif
515 1.282 ad }
516 1.282 ad
517 1.204 cube int
518 1.204 cube execve1(struct lwp *l, const char *path, char * const *args,
519 1.204 cube char * const *envs, execve_fetch_element_t fetch_element)
520 1.204 cube {
521 1.153 thorpej int error;
522 1.138 lukem struct exec_package pack;
523 1.138 lukem struct vattr attr;
524 1.164 thorpej struct proc *p;
525 1.138 lukem char *argp;
526 1.138 lukem char *dp, *sp;
527 1.138 lukem long argc, envc;
528 1.248 christos size_t i, len;
529 1.138 lukem char *stack;
530 1.138 lukem struct ps_strings arginfo;
531 1.213 manu struct ps_strings *aip = &arginfo;
532 1.138 lukem struct vmspace *vm;
533 1.265 yamt struct exec_fakearg *tmpfap;
534 1.138 lukem int szsigcode;
535 1.138 lukem struct exec_vmcmd *base_vcp;
536 1.279 wrstuden int oldlwpflags;
537 1.237 ad ksiginfo_t ksi;
538 1.237 ad ksiginfoq_t kq;
539 1.260 christos char *pathbuf;
540 1.295 dholland char *resolvedpathbuf;
541 1.295 dholland const char *commandname;
542 1.282 ad u_int modgen;
543 1.55 cgd
544 1.237 ad p = l->l_proc;
545 1.282 ad modgen = 0;
546 1.164 thorpej
547 1.294 darran SDT_PROBE(proc,,,exec, path, 0, 0, 0, 0);
548 1.294 darran
549 1.149 christos /*
550 1.269 christos * Check if we have exceeded our number of processes limit.
551 1.269 christos * This is so that we handle the case where a root daemon
552 1.269 christos * forked, ran setuid to become the desired user and is trying
553 1.269 christos * to exec. The obvious place to do the reference counting check
554 1.269 christos * is setuid(), but we don't do the reference counting check there
555 1.269 christos * like other OS's do because then all the programs that use setuid()
556 1.269 christos * must be modified to check the return code of setuid() and exit().
557 1.269 christos * It is dangerous to make setuid() fail, because it fails open and
558 1.269 christos * the program will continue to run as root. If we make it succeed
559 1.269 christos * and return an error code, again we are not enforcing the limit.
560 1.269 christos * The best place to enforce the limit is here, when the process tries
561 1.269 christos * to execute a new image, because eventually the process will need
562 1.269 christos * to call exec in order to do something useful.
563 1.269 christos */
564 1.282 ad retry:
565 1.287 christos if ((p->p_flag & PK_SUGID) && kauth_authorize_generic(l->l_cred,
566 1.287 christos KAUTH_GENERIC_ISSUSER, NULL) != 0 && chgproccnt(kauth_cred_getuid(
567 1.287 christos l->l_cred), 0) > p->p_rlimit[RLIMIT_NPROC].rlim_cur)
568 1.269 christos return EAGAIN;
569 1.269 christos
570 1.279 wrstuden oldlwpflags = l->l_flag & (LW_SA | LW_SA_UPCALL);
571 1.279 wrstuden if (l->l_flag & LW_SA) {
572 1.279 wrstuden lwp_lock(l);
573 1.279 wrstuden l->l_flag &= ~(LW_SA | LW_SA_UPCALL);
574 1.279 wrstuden lwp_unlock(l);
575 1.279 wrstuden }
576 1.279 wrstuden
577 1.269 christos /*
578 1.237 ad * Drain existing references and forbid new ones. The process
579 1.237 ad * should be left alone until we're done here. This is necessary
580 1.237 ad * to avoid race conditions - e.g. in ptrace() - that might allow
581 1.237 ad * a local user to illicitly obtain elevated privileges.
582 1.237 ad */
583 1.252 ad rw_enter(&p->p_reflock, RW_WRITER);
584 1.149 christos
585 1.138 lukem base_vcp = NULL;
586 1.55 cgd /*
587 1.129 jdolecek * Init the namei data to point the file user's program name.
588 1.129 jdolecek * This is done here rather than in check_exec(), so that it's
589 1.129 jdolecek * possible to override this settings if any of makecmd/probe
590 1.129 jdolecek * functions call check_exec() recursively - for example,
591 1.129 jdolecek * see exec_script_makecmds().
592 1.129 jdolecek */
593 1.260 christos pathbuf = PNBUF_GET();
594 1.295 dholland error = copyinstr(path, pathbuf, MAXPATHLEN, NULL);
595 1.248 christos if (error) {
596 1.248 christos DPRINTF(("execve: copyinstr path %d", error));
597 1.200 elad goto clrflg;
598 1.248 christos }
599 1.295 dholland resolvedpathbuf = PNBUF_GET();
600 1.295 dholland #ifdef DIAGNOSTIC
601 1.295 dholland strcpy(resolvedpathbuf, "/wrong");
602 1.295 dholland #endif
603 1.55 cgd
604 1.55 cgd /*
605 1.55 cgd * initialize the fields of the exec package.
606 1.55 cgd */
607 1.204 cube pack.ep_name = path;
608 1.295 dholland pack.ep_kname = pathbuf;
609 1.295 dholland pack.ep_resolvedname = resolvedpathbuf;
610 1.265 yamt pack.ep_hdr = kmem_alloc(exec_maxhdrsz, KM_SLEEP);
611 1.55 cgd pack.ep_hdrlen = exec_maxhdrsz;
612 1.55 cgd pack.ep_hdrvalid = 0;
613 1.67 christos pack.ep_emul_arg = NULL;
614 1.55 cgd pack.ep_vmcmds.evs_cnt = 0;
615 1.55 cgd pack.ep_vmcmds.evs_used = 0;
616 1.55 cgd pack.ep_vap = &attr;
617 1.55 cgd pack.ep_flags = 0;
618 1.244 dsl pack.ep_emul_root = NULL;
619 1.244 dsl pack.ep_interp = NULL;
620 1.244 dsl pack.ep_esch = NULL;
621 1.273 ad pack.ep_pax_flags = 0;
622 1.55 cgd
623 1.237 ad rw_enter(&exec_lock, RW_READER);
624 1.130 jdolecek
625 1.55 cgd /* see if we can run it. */
626 1.295 dholland if ((error = check_exec(l, &pack, pathbuf)) != 0) {
627 1.261 xtraeme if (error != ENOENT) {
628 1.260 christos DPRINTF(("execve: check exec failed %d\n", error));
629 1.261 xtraeme }
630 1.55 cgd goto freehdr;
631 1.248 christos }
632 1.55 cgd
633 1.55 cgd /* XXX -- THE FOLLOWING SECTION NEEDS MAJOR CLEANUP */
634 1.55 cgd
635 1.55 cgd /* allocate an argument buffer */
636 1.277 ad argp = pool_get(&exec_pool, PR_WAITOK);
637 1.277 ad KASSERT(argp != NULL);
638 1.55 cgd dp = argp;
639 1.55 cgd argc = 0;
640 1.55 cgd
641 1.55 cgd /* copy the fake args list, if there's one, freeing it as we go */
642 1.55 cgd if (pack.ep_flags & EXEC_HASARGL) {
643 1.55 cgd tmpfap = pack.ep_fa;
644 1.265 yamt while (tmpfap->fa_arg != NULL) {
645 1.265 yamt const char *cp;
646 1.55 cgd
647 1.265 yamt cp = tmpfap->fa_arg;
648 1.55 cgd while (*cp)
649 1.55 cgd *dp++ = *cp++;
650 1.276 ad *dp++ = '\0';
651 1.290 dsl ktrexecarg(tmpfap->fa_arg, cp - tmpfap->fa_arg);
652 1.55 cgd
653 1.265 yamt kmem_free(tmpfap->fa_arg, tmpfap->fa_len);
654 1.55 cgd tmpfap++; argc++;
655 1.55 cgd }
656 1.265 yamt kmem_free(pack.ep_fa, pack.ep_fa_len);
657 1.55 cgd pack.ep_flags &= ~EXEC_HASARGL;
658 1.55 cgd }
659 1.55 cgd
660 1.55 cgd /* Now get argv & environment */
661 1.204 cube if (args == NULL) {
662 1.248 christos DPRINTF(("execve: null args\n"));
663 1.55 cgd error = EINVAL;
664 1.55 cgd goto bad;
665 1.55 cgd }
666 1.204 cube /* 'i' will index the argp/envp element to be retrieved */
667 1.204 cube i = 0;
668 1.55 cgd if (pack.ep_flags & EXEC_SKIPARG)
669 1.204 cube i++;
670 1.55 cgd
671 1.55 cgd while (1) {
672 1.55 cgd len = argp + ARG_MAX - dp;
673 1.248 christos if ((error = (*fetch_element)(args, i, &sp)) != 0) {
674 1.248 christos DPRINTF(("execve: fetch_element args %d\n", error));
675 1.55 cgd goto bad;
676 1.248 christos }
677 1.55 cgd if (!sp)
678 1.55 cgd break;
679 1.74 christos if ((error = copyinstr(sp, dp, len, &len)) != 0) {
680 1.248 christos DPRINTF(("execve: copyinstr args %d\n", error));
681 1.55 cgd if (error == ENAMETOOLONG)
682 1.55 cgd error = E2BIG;
683 1.55 cgd goto bad;
684 1.55 cgd }
685 1.247 ad ktrexecarg(dp, len - 1);
686 1.55 cgd dp += len;
687 1.204 cube i++;
688 1.55 cgd argc++;
689 1.55 cgd }
690 1.55 cgd
691 1.55 cgd envc = 0;
692 1.74 christos /* environment need not be there */
693 1.204 cube if (envs != NULL) {
694 1.204 cube i = 0;
695 1.55 cgd while (1) {
696 1.55 cgd len = argp + ARG_MAX - dp;
697 1.248 christos if ((error = (*fetch_element)(envs, i, &sp)) != 0) {
698 1.248 christos DPRINTF(("execve: fetch_element env %d\n", error));
699 1.55 cgd goto bad;
700 1.248 christos }
701 1.55 cgd if (!sp)
702 1.55 cgd break;
703 1.74 christos if ((error = copyinstr(sp, dp, len, &len)) != 0) {
704 1.248 christos DPRINTF(("execve: copyinstr env %d\n", error));
705 1.55 cgd if (error == ENAMETOOLONG)
706 1.55 cgd error = E2BIG;
707 1.55 cgd goto bad;
708 1.55 cgd }
709 1.247 ad ktrexecenv(dp, len - 1);
710 1.55 cgd dp += len;
711 1.204 cube i++;
712 1.55 cgd envc++;
713 1.55 cgd }
714 1.55 cgd }
715 1.61 mycroft
716 1.61 mycroft dp = (char *) ALIGN(dp);
717 1.55 cgd
718 1.244 dsl szsigcode = pack.ep_esch->es_emul->e_esigcode -
719 1.244 dsl pack.ep_esch->es_emul->e_sigcode;
720 1.65 fvdl
721 1.267 dsl #ifdef __MACHINE_STACK_GROWS_UP
722 1.267 dsl /* See big comment lower down */
723 1.267 dsl #define RTLD_GAP 32
724 1.267 dsl #else
725 1.267 dsl #define RTLD_GAP 0
726 1.267 dsl #endif
727 1.267 dsl
728 1.55 cgd /* Now check if args & environ fit into new stack */
729 1.105 eeh if (pack.ep_flags & EXEC_32)
730 1.244 dsl len = ((argc + envc + 2 + pack.ep_esch->es_arglen) *
731 1.267 dsl sizeof(int) + sizeof(int) + dp + RTLD_GAP +
732 1.188 chs szsigcode + sizeof(struct ps_strings) + STACK_PTHREADSPACE)
733 1.188 chs - argp;
734 1.105 eeh else
735 1.244 dsl len = ((argc + envc + 2 + pack.ep_esch->es_arglen) *
736 1.267 dsl sizeof(char *) + sizeof(int) + dp + RTLD_GAP +
737 1.188 chs szsigcode + sizeof(struct ps_strings) + STACK_PTHREADSPACE)
738 1.188 chs - argp;
739 1.67 christos
740 1.262 elad #ifdef PAX_ASLR
741 1.262 elad if (pax_aslr_active(l))
742 1.262 elad len += (arc4random() % PAGE_SIZE);
743 1.262 elad #endif /* PAX_ASLR */
744 1.262 elad
745 1.243 matt #ifdef STACKLALIGN /* arm, etc. */
746 1.243 matt len = STACKALIGN(len); /* make the stack "safely" aligned */
747 1.243 matt #else
748 1.55 cgd len = ALIGN(len); /* make the stack "safely" aligned */
749 1.243 matt #endif
750 1.55 cgd
751 1.55 cgd if (len > pack.ep_ssize) { /* in effect, compare to initial limit */
752 1.248 christos DPRINTF(("execve: stack limit exceeded %zu\n", len));
753 1.55 cgd error = ENOMEM;
754 1.55 cgd goto bad;
755 1.55 cgd }
756 1.55 cgd
757 1.237 ad /* Get rid of other LWPs. */
758 1.279 wrstuden if (p->p_sa || p->p_nlwps > 1) {
759 1.272 ad mutex_enter(p->p_lock);
760 1.237 ad exit_lwps(l);
761 1.272 ad mutex_exit(p->p_lock);
762 1.237 ad }
763 1.164 thorpej KDASSERT(p->p_nlwps == 1);
764 1.164 thorpej
765 1.253 ad /* Destroy any lwpctl info. */
766 1.253 ad if (p->p_lwpctl != NULL)
767 1.253 ad lwp_ctl_exit();
768 1.253 ad
769 1.164 thorpej /* This is now LWP 1 */
770 1.164 thorpej l->l_lid = 1;
771 1.164 thorpej p->p_nlwpid = 1;
772 1.164 thorpej
773 1.279 wrstuden #ifdef KERN_SA
774 1.279 wrstuden /* Release any SA state. */
775 1.279 wrstuden if (p->p_sa)
776 1.279 wrstuden sa_release(p);
777 1.279 wrstuden #endif /* KERN_SA */
778 1.279 wrstuden
779 1.164 thorpej /* Remove POSIX timers */
780 1.164 thorpej timers_free(p, TIMERS_POSIX);
781 1.164 thorpej
782 1.55 cgd /* adjust "active stack depth" for process VSZ */
783 1.55 cgd pack.ep_ssize = len; /* maybe should go elsewhere, but... */
784 1.55 cgd
785 1.86 thorpej /*
786 1.86 thorpej * Do whatever is necessary to prepare the address space
787 1.86 thorpej * for remapping. Note that this might replace the current
788 1.86 thorpej * vmspace with another!
789 1.86 thorpej */
790 1.164 thorpej uvmspace_exec(l, pack.ep_vm_minaddr, pack.ep_vm_maxaddr);
791 1.55 cgd
792 1.186 chs /* record proc's vnode, for use by procfs and others */
793 1.186 chs if (p->p_textvp)
794 1.186 chs vrele(p->p_textvp);
795 1.293 pooka vref(pack.ep_vp);
796 1.186 chs p->p_textvp = pack.ep_vp;
797 1.186 chs
798 1.55 cgd /* Now map address space */
799 1.86 thorpej vm = p->p_vmspace;
800 1.241 dogcow vm->vm_taddr = (void *)pack.ep_taddr;
801 1.55 cgd vm->vm_tsize = btoc(pack.ep_tsize);
802 1.241 dogcow vm->vm_daddr = (void*)pack.ep_daddr;
803 1.55 cgd vm->vm_dsize = btoc(pack.ep_dsize);
804 1.55 cgd vm->vm_ssize = btoc(pack.ep_ssize);
805 1.288 mrg vm->vm_issize = 0;
806 1.241 dogcow vm->vm_maxsaddr = (void *)pack.ep_maxsaddr;
807 1.241 dogcow vm->vm_minsaddr = (void *)pack.ep_minsaddr;
808 1.55 cgd
809 1.260 christos #ifdef PAX_ASLR
810 1.260 christos pax_aslr_init(l, vm);
811 1.260 christos #endif /* PAX_ASLR */
812 1.260 christos
813 1.55 cgd /* create the new process's VM space by running the vmcmds */
814 1.55 cgd #ifdef DIAGNOSTIC
815 1.55 cgd if (pack.ep_vmcmds.evs_used == 0)
816 1.55 cgd panic("execve: no vmcmds");
817 1.55 cgd #endif
818 1.55 cgd for (i = 0; i < pack.ep_vmcmds.evs_used && !error; i++) {
819 1.55 cgd struct exec_vmcmd *vcp;
820 1.55 cgd
821 1.55 cgd vcp = &pack.ep_vmcmds.evs_cmds[i];
822 1.114 matt if (vcp->ev_flags & VMCMD_RELATIVE) {
823 1.114 matt #ifdef DIAGNOSTIC
824 1.114 matt if (base_vcp == NULL)
825 1.114 matt panic("execve: relative vmcmd with no base");
826 1.114 matt if (vcp->ev_flags & VMCMD_BASE)
827 1.114 matt panic("execve: illegal base & relative vmcmd");
828 1.114 matt #endif
829 1.114 matt vcp->ev_addr += base_vcp->ev_addr;
830 1.114 matt }
831 1.212 christos error = (*vcp->ev_proc)(l, vcp);
832 1.143 christos #ifdef DEBUG_EXEC
833 1.111 matt if (error) {
834 1.248 christos size_t j;
835 1.143 christos struct exec_vmcmd *vp = &pack.ep_vmcmds.evs_cmds[0];
836 1.143 christos for (j = 0; j <= i; j++)
837 1.143 christos uprintf(
838 1.248 christos "vmcmd[%zu] = %#lx/%#lx fd@%#lx prot=0%o flags=%d\n",
839 1.143 christos j, vp[j].ev_addr, vp[j].ev_len,
840 1.143 christos vp[j].ev_offset, vp[j].ev_prot,
841 1.143 christos vp[j].ev_flags);
842 1.111 matt }
843 1.143 christos #endif /* DEBUG_EXEC */
844 1.114 matt if (vcp->ev_flags & VMCMD_BASE)
845 1.114 matt base_vcp = vcp;
846 1.55 cgd }
847 1.55 cgd
848 1.55 cgd /* free the vmspace-creation commands, and release their references */
849 1.55 cgd kill_vmcmds(&pack.ep_vmcmds);
850 1.55 cgd
851 1.186 chs vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
852 1.254 pooka VOP_CLOSE(pack.ep_vp, FREAD, l->l_cred);
853 1.186 chs vput(pack.ep_vp);
854 1.186 chs
855 1.55 cgd /* if an error happened, deallocate and punt */
856 1.111 matt if (error) {
857 1.248 christos DPRINTF(("execve: vmcmd %zu failed: %d\n", i - 1, error));
858 1.55 cgd goto exec_abort;
859 1.111 matt }
860 1.55 cgd
861 1.55 cgd /* remember information about the process */
862 1.55 cgd arginfo.ps_nargvstr = argc;
863 1.55 cgd arginfo.ps_nenvstr = envc;
864 1.55 cgd
865 1.255 christos /* set command name & other accounting info */
866 1.295 dholland commandname = strrchr(pack.ep_resolvedname, '/');
867 1.295 dholland if (commandname != NULL) {
868 1.295 dholland commandname++;
869 1.295 dholland } else {
870 1.295 dholland commandname = pack.ep_resolvedname;
871 1.295 dholland }
872 1.295 dholland i = min(strlen(commandname), MAXCOMLEN);
873 1.295 dholland (void)memcpy(p->p_comm, commandname, i);
874 1.255 christos p->p_comm[i] = '\0';
875 1.255 christos
876 1.255 christos dp = PNBUF_GET();
877 1.255 christos /*
878 1.255 christos * If the path starts with /, we don't need to do any work.
879 1.255 christos * This handles the majority of the cases.
880 1.255 christos * In the future perhaps we could canonicalize it?
881 1.255 christos */
882 1.255 christos if (pathbuf[0] == '/')
883 1.255 christos (void)strlcpy(pack.ep_path = dp, pathbuf, MAXPATHLEN);
884 1.255 christos #ifdef notyet
885 1.255 christos /*
886 1.255 christos * Although this works most of the time [since the entry was just
887 1.255 christos * entered in the cache] we don't use it because it theoretically
888 1.255 christos * can fail and it is not the cleanest interface, because there
889 1.255 christos * could be races. When the namei cache is re-written, this can
890 1.255 christos * be changed to use the appropriate function.
891 1.255 christos */
892 1.255 christos else if (!(error = vnode_to_path(dp, MAXPATHLEN, p->p_textvp, l, p)))
893 1.255 christos pack.ep_path = dp;
894 1.255 christos #endif
895 1.255 christos else {
896 1.256 christos #ifdef notyet
897 1.255 christos printf("Cannot get path for pid %d [%s] (error %d)",
898 1.255 christos (int)p->p_pid, p->p_comm, error);
899 1.255 christos #endif
900 1.255 christos pack.ep_path = NULL;
901 1.255 christos PNBUF_PUT(dp);
902 1.255 christos }
903 1.255 christos
904 1.163 chs stack = (char *)STACK_ALLOC(STACK_GROW(vm->vm_minsaddr,
905 1.188 chs STACK_PTHREADSPACE + sizeof(struct ps_strings) + szsigcode),
906 1.163 chs len - (sizeof(struct ps_strings) + szsigcode));
907 1.267 dsl
908 1.163 chs #ifdef __MACHINE_STACK_GROWS_UP
909 1.163 chs /*
910 1.163 chs * The copyargs call always copies into lower addresses
911 1.163 chs * first, moving towards higher addresses, starting with
912 1.183 junyoung * the stack pointer that we give. When the stack grows
913 1.183 junyoung * down, this puts argc/argv/envp very shallow on the
914 1.267 dsl * stack, right at the first user stack pointer.
915 1.267 dsl * When the stack grows up, the situation is reversed.
916 1.163 chs *
917 1.163 chs * Normally, this is no big deal. But the ld_elf.so _rtld()
918 1.183 junyoung * function expects to be called with a single pointer to
919 1.183 junyoung * a region that has a few words it can stash values into,
920 1.163 chs * followed by argc/argv/envp. When the stack grows down,
921 1.163 chs * it's easy to decrement the stack pointer a little bit to
922 1.163 chs * allocate the space for these few words and pass the new
923 1.163 chs * stack pointer to _rtld. When the stack grows up, however,
924 1.171 chs * a few words before argc is part of the signal trampoline, XXX
925 1.163 chs * so we have a problem.
926 1.163 chs *
927 1.183 junyoung * Instead of changing how _rtld works, we take the easy way
928 1.267 dsl * out and steal 32 bytes before we call copyargs.
929 1.267 dsl * This extra space was allowed for when 'len' was calculated.
930 1.163 chs */
931 1.267 dsl stack += RTLD_GAP;
932 1.163 chs #endif /* __MACHINE_STACK_GROWS_UP */
933 1.163 chs
934 1.55 cgd /* Now copy argc, args & environ to new stack */
935 1.244 dsl error = (*pack.ep_esch->es_copyargs)(l, &pack, &arginfo, &stack, argp);
936 1.255 christos if (pack.ep_path) {
937 1.255 christos PNBUF_PUT(pack.ep_path);
938 1.255 christos pack.ep_path = NULL;
939 1.255 christos }
940 1.144 christos if (error) {
941 1.144 christos DPRINTF(("execve: copyargs failed %d\n", error));
942 1.55 cgd goto exec_abort;
943 1.111 matt }
944 1.144 christos /* Move the stack back to original point */
945 1.163 chs stack = (char *)STACK_GROW(vm->vm_minsaddr, len);
946 1.55 cgd
947 1.121 eeh /* fill process ps_strings info */
948 1.188 chs p->p_psstr = (struct ps_strings *)
949 1.188 chs STACK_ALLOC(STACK_GROW(vm->vm_minsaddr, STACK_PTHREADSPACE),
950 1.163 chs sizeof(struct ps_strings));
951 1.121 eeh p->p_psargv = offsetof(struct ps_strings, ps_argvstr);
952 1.121 eeh p->p_psnargv = offsetof(struct ps_strings, ps_nargvstr);
953 1.121 eeh p->p_psenv = offsetof(struct ps_strings, ps_envstr);
954 1.121 eeh p->p_psnenv = offsetof(struct ps_strings, ps_nenvstr);
955 1.121 eeh
956 1.55 cgd /* copy out the process's ps_strings structure */
957 1.213 manu if ((error = copyout(aip, (char *)p->p_psstr,
958 1.144 christos sizeof(arginfo))) != 0) {
959 1.143 christos DPRINTF(("execve: ps_strings copyout %p->%p size %ld failed\n",
960 1.213 manu aip, (char *)p->p_psstr, (long)sizeof(arginfo)));
961 1.55 cgd goto exec_abort;
962 1.111 matt }
963 1.109 simonb
964 1.270 ad fd_closeexec(); /* handle close on exec */
965 1.55 cgd execsigs(p); /* reset catched signals */
966 1.183 junyoung
967 1.164 thorpej l->l_ctxlink = NULL; /* reset ucontext link */
968 1.55 cgd
969 1.255 christos
970 1.55 cgd p->p_acflag &= ~AFORK;
971 1.272 ad mutex_enter(p->p_lock);
972 1.238 pavel p->p_flag |= PK_EXEC;
973 1.272 ad mutex_exit(p->p_lock);
974 1.237 ad
975 1.237 ad /*
976 1.237 ad * Stop profiling.
977 1.237 ad */
978 1.237 ad if ((p->p_stflag & PST_PROFIL) != 0) {
979 1.237 ad mutex_spin_enter(&p->p_stmutex);
980 1.237 ad stopprofclock(p);
981 1.237 ad mutex_spin_exit(&p->p_stmutex);
982 1.237 ad }
983 1.237 ad
984 1.237 ad /*
985 1.275 ad * It's OK to test PL_PPWAIT unlocked here, as other LWPs have
986 1.237 ad * exited and exec()/exit() are the only places it will be cleared.
987 1.237 ad */
988 1.275 ad if ((p->p_lflag & PL_PPWAIT) != 0) {
989 1.271 ad mutex_enter(proc_lock);
990 1.275 ad p->p_lflag &= ~PL_PPWAIT;
991 1.237 ad cv_broadcast(&p->p_pptr->p_waitcv);
992 1.271 ad mutex_exit(proc_lock);
993 1.55 cgd }
994 1.55 cgd
995 1.55 cgd /*
996 1.237 ad * Deal with set[ug]id. MNT_NOSUID has already been used to disable
997 1.237 ad * s[ug]id. It's OK to check for PSL_TRACED here as we have blocked
998 1.237 ad * out additional references on the process for the moment.
999 1.55 cgd */
1000 1.237 ad if ((p->p_slflag & PSL_TRACED) == 0 &&
1001 1.141 thorpej
1002 1.141 thorpej (((attr.va_mode & S_ISUID) != 0 &&
1003 1.221 ad kauth_cred_geteuid(l->l_cred) != attr.va_uid) ||
1004 1.141 thorpej
1005 1.141 thorpej ((attr.va_mode & S_ISGID) != 0 &&
1006 1.221 ad kauth_cred_getegid(l->l_cred) != attr.va_gid))) {
1007 1.141 thorpej /*
1008 1.141 thorpej * Mark the process as SUGID before we do
1009 1.141 thorpej * anything that might block.
1010 1.141 thorpej */
1011 1.237 ad proc_crmod_enter();
1012 1.240 thorpej proc_crmod_leave(NULL, NULL, true);
1013 1.152 christos
1014 1.152 christos /* Make sure file descriptors 0..2 are in use. */
1015 1.270 ad if ((error = fd_checkstd()) != 0) {
1016 1.209 christos DPRINTF(("execve: fdcheckstd failed %d\n", error));
1017 1.152 christos goto exec_abort;
1018 1.209 christos }
1019 1.141 thorpej
1020 1.220 ad /*
1021 1.220 ad * Copy the credential so other references don't see our
1022 1.220 ad * changes.
1023 1.220 ad */
1024 1.221 ad l->l_cred = kauth_cred_copy(l->l_cred);
1025 1.55 cgd #ifdef KTRACE
1026 1.55 cgd /*
1027 1.268 elad * If the persistent trace flag isn't set, turn off.
1028 1.55 cgd */
1029 1.237 ad if (p->p_tracep) {
1030 1.247 ad mutex_enter(&ktrace_lock);
1031 1.268 elad if (!(p->p_traceflag & KTRFAC_PERSISTENT))
1032 1.237 ad ktrderef(p);
1033 1.247 ad mutex_exit(&ktrace_lock);
1034 1.237 ad }
1035 1.55 cgd #endif
1036 1.83 mycroft if (attr.va_mode & S_ISUID)
1037 1.221 ad kauth_cred_seteuid(l->l_cred, attr.va_uid);
1038 1.83 mycroft if (attr.va_mode & S_ISGID)
1039 1.221 ad kauth_cred_setegid(l->l_cred, attr.va_gid);
1040 1.210 christos } else {
1041 1.221 ad if (kauth_cred_geteuid(l->l_cred) ==
1042 1.221 ad kauth_cred_getuid(l->l_cred) &&
1043 1.221 ad kauth_cred_getegid(l->l_cred) ==
1044 1.221 ad kauth_cred_getgid(l->l_cred))
1045 1.238 pavel p->p_flag &= ~PK_SUGID;
1046 1.210 christos }
1047 1.220 ad
1048 1.220 ad /*
1049 1.220 ad * Copy the credential so other references don't see our changes.
1050 1.220 ad * Test to see if this is necessary first, since in the common case
1051 1.220 ad * we won't need a private reference.
1052 1.220 ad */
1053 1.221 ad if (kauth_cred_geteuid(l->l_cred) != kauth_cred_getsvuid(l->l_cred) ||
1054 1.221 ad kauth_cred_getegid(l->l_cred) != kauth_cred_getsvgid(l->l_cred)) {
1055 1.221 ad l->l_cred = kauth_cred_copy(l->l_cred);
1056 1.221 ad kauth_cred_setsvuid(l->l_cred, kauth_cred_geteuid(l->l_cred));
1057 1.221 ad kauth_cred_setsvgid(l->l_cred, kauth_cred_getegid(l->l_cred));
1058 1.220 ad }
1059 1.155 gmcgarry
1060 1.221 ad /* Update the master credentials. */
1061 1.227 ad if (l->l_cred != p->p_cred) {
1062 1.227 ad kauth_cred_t ocred;
1063 1.227 ad
1064 1.227 ad kauth_cred_hold(l->l_cred);
1065 1.272 ad mutex_enter(p->p_lock);
1066 1.227 ad ocred = p->p_cred;
1067 1.227 ad p->p_cred = l->l_cred;
1068 1.272 ad mutex_exit(p->p_lock);
1069 1.227 ad kauth_cred_free(ocred);
1070 1.227 ad }
1071 1.221 ad
1072 1.155 gmcgarry #if defined(__HAVE_RAS)
1073 1.155 gmcgarry /*
1074 1.155 gmcgarry * Remove all RASs from the address space.
1075 1.155 gmcgarry */
1076 1.251 ad ras_purgeall();
1077 1.155 gmcgarry #endif
1078 1.107 fvdl
1079 1.107 fvdl doexechooks(p);
1080 1.55 cgd
1081 1.55 cgd /* setup new registers and do misc. setup. */
1082 1.292 matt (*pack.ep_esch->es_emul->e_setregs)(l, &pack, (vaddr_t)stack);
1083 1.244 dsl if (pack.ep_esch->es_setregs)
1084 1.292 matt (*pack.ep_esch->es_setregs)(l, &pack, (vaddr_t)stack);
1085 1.55 cgd
1086 1.171 chs /* map the process's signal trampoline code */
1087 1.244 dsl if (exec_sigcode_map(p, pack.ep_esch->es_emul)) {
1088 1.209 christos DPRINTF(("execve: map sigcode failed %d\n", error));
1089 1.171 chs goto exec_abort;
1090 1.209 christos }
1091 1.171 chs
1092 1.277 ad pool_put(&exec_pool, argp);
1093 1.276 ad
1094 1.276 ad /* notify others that we exec'd */
1095 1.276 ad KNOTE(&p->p_klist, NOTE_EXEC);
1096 1.276 ad
1097 1.265 yamt kmem_free(pack.ep_hdr, pack.ep_hdrlen);
1098 1.122 jdolecek
1099 1.294 darran SDT_PROBE(proc,,,exec_success, path, 0, 0, 0, 0);
1100 1.294 darran
1101 1.244 dsl /* The emulation root will usually have been found when we looked
1102 1.244 dsl * for the elf interpreter (or similar), if not look now. */
1103 1.244 dsl if (pack.ep_esch->es_emul->e_path != NULL && pack.ep_emul_root == NULL)
1104 1.244 dsl emul_find_root(l, &pack);
1105 1.244 dsl
1106 1.244 dsl /* Any old emulation root got removed by fdcloseexec */
1107 1.259 ad rw_enter(&p->p_cwdi->cwdi_lock, RW_WRITER);
1108 1.244 dsl p->p_cwdi->cwdi_edir = pack.ep_emul_root;
1109 1.259 ad rw_exit(&p->p_cwdi->cwdi_lock);
1110 1.244 dsl pack.ep_emul_root = NULL;
1111 1.244 dsl if (pack.ep_interp != NULL)
1112 1.244 dsl vrele(pack.ep_interp);
1113 1.244 dsl
1114 1.122 jdolecek /*
1115 1.194 peter * Call emulation specific exec hook. This can setup per-process
1116 1.122 jdolecek * p->p_emuldata or do any other per-process stuff an emulation needs.
1117 1.122 jdolecek *
1118 1.122 jdolecek * If we are executing process of different emulation than the
1119 1.122 jdolecek * original forked process, call e_proc_exit() of the old emulation
1120 1.122 jdolecek * first, then e_proc_exec() of new emulation. If the emulation is
1121 1.122 jdolecek * same, the exec hook code should deallocate any old emulation
1122 1.122 jdolecek * resources held previously by this process.
1123 1.122 jdolecek */
1124 1.124 jdolecek if (p->p_emul && p->p_emul->e_proc_exit
1125 1.244 dsl && p->p_emul != pack.ep_esch->es_emul)
1126 1.122 jdolecek (*p->p_emul->e_proc_exit)(p);
1127 1.122 jdolecek
1128 1.123 jdolecek /*
1129 1.123 jdolecek * Call exec hook. Emulation code may NOT store reference to anything
1130 1.123 jdolecek * from &pack.
1131 1.123 jdolecek */
1132 1.244 dsl if (pack.ep_esch->es_emul->e_proc_exec)
1133 1.244 dsl (*pack.ep_esch->es_emul->e_proc_exec)(p, &pack);
1134 1.122 jdolecek
1135 1.122 jdolecek /* update p_emul, the old value is no longer needed */
1136 1.244 dsl p->p_emul = pack.ep_esch->es_emul;
1137 1.148 thorpej
1138 1.148 thorpej /* ...and the same for p_execsw */
1139 1.244 dsl p->p_execsw = pack.ep_esch;
1140 1.148 thorpej
1141 1.133 mycroft #ifdef __HAVE_SYSCALL_INTERN
1142 1.133 mycroft (*p->p_emul->e_syscall_intern)(p);
1143 1.133 mycroft #endif
1144 1.247 ad ktremul();
1145 1.85 mycroft
1146 1.252 ad /* Allow new references from the debugger/procfs. */
1147 1.252 ad rw_exit(&p->p_reflock);
1148 1.237 ad rw_exit(&exec_lock);
1149 1.162 manu
1150 1.271 ad mutex_enter(proc_lock);
1151 1.237 ad
1152 1.237 ad if ((p->p_slflag & (PSL_TRACED|PSL_SYSCALL)) == PSL_TRACED) {
1153 1.237 ad KSI_INIT_EMPTY(&ksi);
1154 1.237 ad ksi.ksi_signo = SIGTRAP;
1155 1.237 ad ksi.ksi_lid = l->l_lid;
1156 1.237 ad kpsignal(p, &ksi, NULL);
1157 1.237 ad }
1158 1.162 manu
1159 1.237 ad if (p->p_sflag & PS_STOPEXEC) {
1160 1.237 ad KERNEL_UNLOCK_ALL(l, &l->l_biglocks);
1161 1.175 dsl p->p_pptr->p_nstopchild++;
1162 1.237 ad p->p_pptr->p_waited = 0;
1163 1.272 ad mutex_enter(p->p_lock);
1164 1.237 ad ksiginfo_queue_init(&kq);
1165 1.237 ad sigclearall(p, &contsigmask, &kq);
1166 1.237 ad lwp_lock(l);
1167 1.237 ad l->l_stat = LSSTOP;
1168 1.162 manu p->p_stat = SSTOP;
1169 1.164 thorpej p->p_nrlwps--;
1170 1.272 ad mutex_exit(p->p_lock);
1171 1.271 ad mutex_exit(proc_lock);
1172 1.245 yamt mi_switch(l);
1173 1.237 ad ksiginfo_queue_drain(&kq);
1174 1.237 ad KERNEL_LOCK(l->l_biglocks, l);
1175 1.237 ad } else {
1176 1.271 ad mutex_exit(proc_lock);
1177 1.162 manu }
1178 1.162 manu
1179 1.260 christos PNBUF_PUT(pathbuf);
1180 1.295 dholland PNBUF_PUT(resolvedpathbuf);
1181 1.85 mycroft return (EJUSTRETURN);
1182 1.55 cgd
1183 1.138 lukem bad:
1184 1.55 cgd /* free the vmspace-creation commands, and release their references */
1185 1.55 cgd kill_vmcmds(&pack.ep_vmcmds);
1186 1.55 cgd /* kill any opened file descriptor, if necessary */
1187 1.55 cgd if (pack.ep_flags & EXEC_HASFD) {
1188 1.55 cgd pack.ep_flags &= ~EXEC_HASFD;
1189 1.270 ad fd_close(pack.ep_fd);
1190 1.55 cgd }
1191 1.55 cgd /* close and put the exec'd file */
1192 1.99 wrstuden vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
1193 1.254 pooka VOP_CLOSE(pack.ep_vp, FREAD, l->l_cred);
1194 1.99 wrstuden vput(pack.ep_vp);
1195 1.277 ad pool_put(&exec_pool, argp);
1196 1.55 cgd
1197 1.138 lukem freehdr:
1198 1.265 yamt kmem_free(pack.ep_hdr, pack.ep_hdrlen);
1199 1.244 dsl if (pack.ep_emul_root != NULL)
1200 1.244 dsl vrele(pack.ep_emul_root);
1201 1.244 dsl if (pack.ep_interp != NULL)
1202 1.244 dsl vrele(pack.ep_interp);
1203 1.200 elad
1204 1.274 ad rw_exit(&exec_lock);
1205 1.274 ad
1206 1.295 dholland PNBUF_PUT(resolvedpathbuf);
1207 1.295 dholland
1208 1.200 elad clrflg:
1209 1.279 wrstuden lwp_lock(l);
1210 1.279 wrstuden l->l_flag |= oldlwpflags;
1211 1.279 wrstuden lwp_unlock(l);
1212 1.260 christos PNBUF_PUT(pathbuf);
1213 1.252 ad rw_exit(&p->p_reflock);
1214 1.130 jdolecek
1215 1.282 ad if (modgen != module_gen && error == ENOEXEC) {
1216 1.282 ad modgen = module_gen;
1217 1.282 ad exec_autoload();
1218 1.282 ad goto retry;
1219 1.282 ad }
1220 1.282 ad
1221 1.294 darran SDT_PROBE(proc,,,exec_failure, error, 0, 0, 0, 0);
1222 1.55 cgd return error;
1223 1.55 cgd
1224 1.138 lukem exec_abort:
1225 1.294 darran SDT_PROBE(proc,,,exec_failure, error, 0, 0, 0, 0);
1226 1.260 christos PNBUF_PUT(pathbuf);
1227 1.295 dholland PNBUF_PUT(resolvedpathbuf);
1228 1.252 ad rw_exit(&p->p_reflock);
1229 1.237 ad rw_exit(&exec_lock);
1230 1.130 jdolecek
1231 1.55 cgd /*
1232 1.55 cgd * the old process doesn't exist anymore. exit gracefully.
1233 1.55 cgd * get rid of the (new) address space we have created, if any, get rid
1234 1.55 cgd * of our namei data and vnode, and exit noting failure
1235 1.55 cgd */
1236 1.88 mrg uvm_deallocate(&vm->vm_map, VM_MIN_ADDRESS,
1237 1.88 mrg VM_MAXUSER_ADDRESS - VM_MIN_ADDRESS);
1238 1.73 mycroft if (pack.ep_emul_arg)
1239 1.284 cegger free(pack.ep_emul_arg, M_TEMP);
1240 1.277 ad pool_put(&exec_pool, argp);
1241 1.265 yamt kmem_free(pack.ep_hdr, pack.ep_hdrlen);
1242 1.244 dsl if (pack.ep_emul_root != NULL)
1243 1.244 dsl vrele(pack.ep_emul_root);
1244 1.244 dsl if (pack.ep_interp != NULL)
1245 1.244 dsl vrele(pack.ep_interp);
1246 1.237 ad
1247 1.252 ad /* Acquire the sched-state mutex (exit1() will release it). */
1248 1.272 ad mutex_enter(p->p_lock);
1249 1.164 thorpej exit1(l, W_EXITCODE(error, SIGABRT));
1250 1.55 cgd
1251 1.55 cgd /* NOTREACHED */
1252 1.55 cgd return 0;
1253 1.67 christos }
1254 1.67 christos
1255 1.67 christos
1256 1.144 christos int
1257 1.231 yamt copyargs(struct lwp *l, struct exec_package *pack, struct ps_strings *arginfo,
1258 1.231 yamt char **stackp, void *argp)
1259 1.67 christos {
1260 1.138 lukem char **cpp, *dp, *sp;
1261 1.138 lukem size_t len;
1262 1.138 lukem void *nullp;
1263 1.138 lukem long argc, envc;
1264 1.144 christos int error;
1265 1.138 lukem
1266 1.144 christos cpp = (char **)*stackp;
1267 1.138 lukem nullp = NULL;
1268 1.138 lukem argc = arginfo->ps_nargvstr;
1269 1.138 lukem envc = arginfo->ps_nenvstr;
1270 1.144 christos if ((error = copyout(&argc, cpp++, sizeof(argc))) != 0)
1271 1.144 christos return error;
1272 1.67 christos
1273 1.244 dsl dp = (char *) (cpp + argc + envc + 2 + pack->ep_esch->es_arglen);
1274 1.67 christos sp = argp;
1275 1.67 christos
1276 1.67 christos /* XXX don't copy them out, remap them! */
1277 1.69 mycroft arginfo->ps_argvstr = cpp; /* remember location of argv for later */
1278 1.67 christos
1279 1.67 christos for (; --argc >= 0; sp += len, dp += len)
1280 1.144 christos if ((error = copyout(&dp, cpp++, sizeof(dp))) != 0 ||
1281 1.144 christos (error = copyoutstr(sp, dp, ARG_MAX, &len)) != 0)
1282 1.144 christos return error;
1283 1.67 christos
1284 1.144 christos if ((error = copyout(&nullp, cpp++, sizeof(nullp))) != 0)
1285 1.144 christos return error;
1286 1.67 christos
1287 1.69 mycroft arginfo->ps_envstr = cpp; /* remember location of envp for later */
1288 1.67 christos
1289 1.67 christos for (; --envc >= 0; sp += len, dp += len)
1290 1.144 christos if ((error = copyout(&dp, cpp++, sizeof(dp))) != 0 ||
1291 1.144 christos (error = copyoutstr(sp, dp, ARG_MAX, &len)) != 0)
1292 1.144 christos return error;
1293 1.67 christos
1294 1.144 christos if ((error = copyout(&nullp, cpp++, sizeof(nullp))) != 0)
1295 1.144 christos return error;
1296 1.67 christos
1297 1.144 christos *stackp = (char *)cpp;
1298 1.144 christos return 0;
1299 1.55 cgd }
1300 1.130 jdolecek
1301 1.130 jdolecek
1302 1.130 jdolecek /*
1303 1.282 ad * Add execsw[] entries.
1304 1.130 jdolecek */
1305 1.130 jdolecek int
1306 1.282 ad exec_add(struct execsw *esp, int count)
1307 1.130 jdolecek {
1308 1.282 ad struct exec_entry *it;
1309 1.282 ad int i;
1310 1.130 jdolecek
1311 1.283 ad if (count == 0) {
1312 1.283 ad return 0;
1313 1.283 ad }
1314 1.130 jdolecek
1315 1.282 ad /* Check for duplicates. */
1316 1.237 ad rw_enter(&exec_lock, RW_WRITER);
1317 1.282 ad for (i = 0; i < count; i++) {
1318 1.282 ad LIST_FOREACH(it, &ex_head, ex_list) {
1319 1.282 ad /* assume unique (makecmds, probe_func, emulation) */
1320 1.282 ad if (it->ex_sw->es_makecmds == esp[i].es_makecmds &&
1321 1.282 ad it->ex_sw->u.elf_probe_func ==
1322 1.282 ad esp[i].u.elf_probe_func &&
1323 1.282 ad it->ex_sw->es_emul == esp[i].es_emul) {
1324 1.282 ad rw_exit(&exec_lock);
1325 1.282 ad return EEXIST;
1326 1.130 jdolecek }
1327 1.130 jdolecek }
1328 1.130 jdolecek }
1329 1.130 jdolecek
1330 1.282 ad /* Allocate new entries. */
1331 1.282 ad for (i = 0; i < count; i++) {
1332 1.282 ad it = kmem_alloc(sizeof(*it), KM_SLEEP);
1333 1.282 ad it->ex_sw = &esp[i];
1334 1.282 ad LIST_INSERT_HEAD(&ex_head, it, ex_list);
1335 1.130 jdolecek }
1336 1.130 jdolecek
1337 1.130 jdolecek /* update execsw[] */
1338 1.130 jdolecek exec_init(0);
1339 1.237 ad rw_exit(&exec_lock);
1340 1.282 ad return 0;
1341 1.130 jdolecek }
1342 1.130 jdolecek
1343 1.130 jdolecek /*
1344 1.130 jdolecek * Remove execsw[] entry.
1345 1.130 jdolecek */
1346 1.130 jdolecek int
1347 1.282 ad exec_remove(struct execsw *esp, int count)
1348 1.130 jdolecek {
1349 1.282 ad struct exec_entry *it, *next;
1350 1.282 ad int i;
1351 1.282 ad const struct proclist_desc *pd;
1352 1.282 ad proc_t *p;
1353 1.282 ad
1354 1.283 ad if (count == 0) {
1355 1.283 ad return 0;
1356 1.283 ad }
1357 1.130 jdolecek
1358 1.282 ad /* Abort if any are busy. */
1359 1.237 ad rw_enter(&exec_lock, RW_WRITER);
1360 1.282 ad for (i = 0; i < count; i++) {
1361 1.282 ad mutex_enter(proc_lock);
1362 1.282 ad for (pd = proclists; pd->pd_list != NULL; pd++) {
1363 1.282 ad PROCLIST_FOREACH(p, pd->pd_list) {
1364 1.282 ad if (p->p_execsw == &esp[i]) {
1365 1.282 ad mutex_exit(proc_lock);
1366 1.282 ad rw_exit(&exec_lock);
1367 1.282 ad return EBUSY;
1368 1.282 ad }
1369 1.282 ad }
1370 1.282 ad }
1371 1.282 ad mutex_exit(proc_lock);
1372 1.282 ad }
1373 1.130 jdolecek
1374 1.282 ad /* None are busy, so remove them all. */
1375 1.282 ad for (i = 0; i < count; i++) {
1376 1.282 ad for (it = LIST_FIRST(&ex_head); it != NULL; it = next) {
1377 1.282 ad next = LIST_NEXT(it, ex_list);
1378 1.282 ad if (it->ex_sw == &esp[i]) {
1379 1.282 ad LIST_REMOVE(it, ex_list);
1380 1.282 ad kmem_free(it, sizeof(*it));
1381 1.282 ad break;
1382 1.282 ad }
1383 1.282 ad }
1384 1.130 jdolecek }
1385 1.130 jdolecek
1386 1.130 jdolecek /* update execsw[] */
1387 1.130 jdolecek exec_init(0);
1388 1.237 ad rw_exit(&exec_lock);
1389 1.282 ad return 0;
1390 1.130 jdolecek }
1391 1.130 jdolecek
1392 1.130 jdolecek /*
1393 1.130 jdolecek * Initialize exec structures. If init_boot is true, also does necessary
1394 1.130 jdolecek * one-time initialization (it's called from main() that way).
1395 1.147 jdolecek * Once system is multiuser, this should be called with exec_lock held,
1396 1.130 jdolecek * i.e. via exec_{add|remove}().
1397 1.130 jdolecek */
1398 1.130 jdolecek int
1399 1.138 lukem exec_init(int init_boot)
1400 1.130 jdolecek {
1401 1.282 ad const struct execsw **sw;
1402 1.282 ad struct exec_entry *ex;
1403 1.282 ad SLIST_HEAD(,exec_entry) first;
1404 1.282 ad SLIST_HEAD(,exec_entry) any;
1405 1.282 ad SLIST_HEAD(,exec_entry) last;
1406 1.282 ad int i, sz;
1407 1.130 jdolecek
1408 1.130 jdolecek if (init_boot) {
1409 1.130 jdolecek /* do one-time initializations */
1410 1.237 ad rw_init(&exec_lock);
1411 1.259 ad mutex_init(&sigobject_lock, MUTEX_DEFAULT, IPL_NONE);
1412 1.277 ad pool_init(&exec_pool, NCARGS, 0, 0, PR_NOALIGN|PR_NOTOUCH,
1413 1.277 ad "execargs", &exec_palloc, IPL_NONE);
1414 1.277 ad pool_sethardlimit(&exec_pool, maxexec, "should not happen", 0);
1415 1.282 ad } else {
1416 1.282 ad KASSERT(rw_write_held(&exec_lock));
1417 1.282 ad }
1418 1.130 jdolecek
1419 1.282 ad /* Sort each entry onto the appropriate queue. */
1420 1.282 ad SLIST_INIT(&first);
1421 1.282 ad SLIST_INIT(&any);
1422 1.282 ad SLIST_INIT(&last);
1423 1.282 ad sz = 0;
1424 1.282 ad LIST_FOREACH(ex, &ex_head, ex_list) {
1425 1.282 ad switch(ex->ex_sw->es_prio) {
1426 1.282 ad case EXECSW_PRIO_FIRST:
1427 1.282 ad SLIST_INSERT_HEAD(&first, ex, ex_slist);
1428 1.282 ad break;
1429 1.282 ad case EXECSW_PRIO_ANY:
1430 1.282 ad SLIST_INSERT_HEAD(&any, ex, ex_slist);
1431 1.282 ad break;
1432 1.282 ad case EXECSW_PRIO_LAST:
1433 1.282 ad SLIST_INSERT_HEAD(&last, ex, ex_slist);
1434 1.282 ad break;
1435 1.282 ad default:
1436 1.282 ad panic("exec_init");
1437 1.282 ad break;
1438 1.130 jdolecek }
1439 1.282 ad sz++;
1440 1.130 jdolecek }
1441 1.130 jdolecek
1442 1.130 jdolecek /*
1443 1.282 ad * Create new execsw[]. Ensure we do not try a zero-sized
1444 1.282 ad * allocation.
1445 1.130 jdolecek */
1446 1.282 ad sw = kmem_alloc(sz * sizeof(struct execsw *) + 1, KM_SLEEP);
1447 1.282 ad i = 0;
1448 1.282 ad SLIST_FOREACH(ex, &first, ex_slist) {
1449 1.282 ad sw[i++] = ex->ex_sw;
1450 1.282 ad }
1451 1.282 ad SLIST_FOREACH(ex, &any, ex_slist) {
1452 1.282 ad sw[i++] = ex->ex_sw;
1453 1.282 ad }
1454 1.282 ad SLIST_FOREACH(ex, &last, ex_slist) {
1455 1.282 ad sw[i++] = ex->ex_sw;
1456 1.130 jdolecek }
1457 1.183 junyoung
1458 1.282 ad /* Replace old execsw[] and free used memory. */
1459 1.282 ad if (execsw != NULL) {
1460 1.282 ad kmem_free(__UNCONST(execsw),
1461 1.282 ad nexecs * sizeof(struct execsw *) + 1);
1462 1.130 jdolecek }
1463 1.282 ad execsw = sw;
1464 1.282 ad nexecs = sz;
1465 1.130 jdolecek
1466 1.282 ad /* Figure out the maximum size of an exec header. */
1467 1.282 ad exec_maxhdrsz = sizeof(int);
1468 1.130 jdolecek for (i = 0; i < nexecs; i++) {
1469 1.130 jdolecek if (execsw[i]->es_hdrsz > exec_maxhdrsz)
1470 1.130 jdolecek exec_maxhdrsz = execsw[i]->es_hdrsz;
1471 1.130 jdolecek }
1472 1.130 jdolecek
1473 1.130 jdolecek return 0;
1474 1.130 jdolecek }
1475 1.171 chs
1476 1.171 chs static int
1477 1.171 chs exec_sigcode_map(struct proc *p, const struct emul *e)
1478 1.171 chs {
1479 1.171 chs vaddr_t va;
1480 1.171 chs vsize_t sz;
1481 1.171 chs int error;
1482 1.171 chs struct uvm_object *uobj;
1483 1.171 chs
1484 1.184 drochner sz = (vaddr_t)e->e_esigcode - (vaddr_t)e->e_sigcode;
1485 1.184 drochner
1486 1.184 drochner if (e->e_sigobject == NULL || sz == 0) {
1487 1.171 chs return 0;
1488 1.171 chs }
1489 1.171 chs
1490 1.171 chs /*
1491 1.171 chs * If we don't have a sigobject for this emulation, create one.
1492 1.171 chs *
1493 1.171 chs * sigobject is an anonymous memory object (just like SYSV shared
1494 1.171 chs * memory) that we keep a permanent reference to and that we map
1495 1.171 chs * in all processes that need this sigcode. The creation is simple,
1496 1.171 chs * we create an object, add a permanent reference to it, map it in
1497 1.171 chs * kernel space, copy out the sigcode to it and unmap it.
1498 1.189 jdolecek * We map it with PROT_READ|PROT_EXEC into the process just
1499 1.189 jdolecek * the way sys_mmap() would map it.
1500 1.171 chs */
1501 1.171 chs
1502 1.171 chs uobj = *e->e_sigobject;
1503 1.171 chs if (uobj == NULL) {
1504 1.259 ad mutex_enter(&sigobject_lock);
1505 1.259 ad if ((uobj = *e->e_sigobject) == NULL) {
1506 1.259 ad uobj = uao_create(sz, 0);
1507 1.259 ad (*uobj->pgops->pgo_reference)(uobj);
1508 1.259 ad va = vm_map_min(kernel_map);
1509 1.259 ad if ((error = uvm_map(kernel_map, &va, round_page(sz),
1510 1.259 ad uobj, 0, 0,
1511 1.259 ad UVM_MAPFLAG(UVM_PROT_RW, UVM_PROT_RW,
1512 1.259 ad UVM_INH_SHARE, UVM_ADV_RANDOM, 0)))) {
1513 1.259 ad printf("kernel mapping failed %d\n", error);
1514 1.259 ad (*uobj->pgops->pgo_detach)(uobj);
1515 1.259 ad mutex_exit(&sigobject_lock);
1516 1.259 ad return (error);
1517 1.259 ad }
1518 1.259 ad memcpy((void *)va, e->e_sigcode, sz);
1519 1.171 chs #ifdef PMAP_NEED_PROCWR
1520 1.259 ad pmap_procwr(&proc0, va, sz);
1521 1.171 chs #endif
1522 1.259 ad uvm_unmap(kernel_map, va, va + round_page(sz));
1523 1.259 ad *e->e_sigobject = uobj;
1524 1.259 ad }
1525 1.259 ad mutex_exit(&sigobject_lock);
1526 1.171 chs }
1527 1.171 chs
1528 1.172 enami /* Just a hint to uvm_map where to put it. */
1529 1.195 fvdl va = e->e_vm_default_addr(p, (vaddr_t)p->p_vmspace->vm_daddr,
1530 1.195 fvdl round_page(sz));
1531 1.187 chs
1532 1.187 chs #ifdef __alpha__
1533 1.187 chs /*
1534 1.187 chs * Tru64 puts /sbin/loader at the end of user virtual memory,
1535 1.187 chs * which causes the above calculation to put the sigcode at
1536 1.187 chs * an invalid address. Put it just below the text instead.
1537 1.187 chs */
1538 1.193 jmc if (va == (vaddr_t)vm_map_max(&p->p_vmspace->vm_map)) {
1539 1.187 chs va = (vaddr_t)p->p_vmspace->vm_taddr - round_page(sz);
1540 1.187 chs }
1541 1.187 chs #endif
1542 1.187 chs
1543 1.171 chs (*uobj->pgops->pgo_reference)(uobj);
1544 1.171 chs error = uvm_map(&p->p_vmspace->vm_map, &va, round_page(sz),
1545 1.171 chs uobj, 0, 0,
1546 1.171 chs UVM_MAPFLAG(UVM_PROT_RX, UVM_PROT_RX, UVM_INH_SHARE,
1547 1.171 chs UVM_ADV_RANDOM, 0));
1548 1.171 chs if (error) {
1549 1.171 chs (*uobj->pgops->pgo_detach)(uobj);
1550 1.171 chs return (error);
1551 1.171 chs }
1552 1.171 chs p->p_sigctx.ps_sigcode = (void *)va;
1553 1.171 chs return (0);
1554 1.171 chs }
1555