xref: /freebsd/sys/kern/imgact_elf.c (revision fba6b1af2e946e86b8a3aac9c561b0717b9729bc)
1e1743d02SSøren Schmidt /*-
221a3ee0eSDavid E. O'Brien  * Copyright (c) 2000 David O'Brien
3e1743d02SSøren Schmidt  * Copyright (c) 1995-1996 S�ren Schmidt
4e1743d02SSøren Schmidt  * Copyright (c) 1996 Peter Wemm
5e1743d02SSøren Schmidt  * All rights reserved.
6e1743d02SSøren Schmidt  *
7e1743d02SSøren Schmidt  * Redistribution and use in source and binary forms, with or without
8e1743d02SSøren Schmidt  * modification, are permitted provided that the following conditions
9e1743d02SSøren Schmidt  * are met:
10e1743d02SSøren Schmidt  * 1. Redistributions of source code must retain the above copyright
11e1743d02SSøren Schmidt  *    notice, this list of conditions and the following disclaimer
12e1743d02SSøren Schmidt  *    in this position and unchanged.
13e1743d02SSøren Schmidt  * 2. Redistributions in binary form must reproduce the above copyright
14e1743d02SSøren Schmidt  *    notice, this list of conditions and the following disclaimer in the
15e1743d02SSøren Schmidt  *    documentation and/or other materials provided with the distribution.
16e1743d02SSøren Schmidt  * 3. The name of the author may not be used to endorse or promote products
1721dc7d4fSJens Schweikhardt  *    derived from this software without specific prior written permission
18e1743d02SSøren Schmidt  *
19e1743d02SSøren Schmidt  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20e1743d02SSøren Schmidt  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21e1743d02SSøren Schmidt  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22e1743d02SSøren Schmidt  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23e1743d02SSøren Schmidt  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24e1743d02SSøren Schmidt  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25e1743d02SSøren Schmidt  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26e1743d02SSøren Schmidt  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27e1743d02SSøren Schmidt  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28e1743d02SSøren Schmidt  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29e1743d02SSøren Schmidt  */
30e1743d02SSøren Schmidt 
31677b542eSDavid E. O'Brien #include <sys/cdefs.h>
32677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$");
33677b542eSDavid E. O'Brien 
3462919d78SPeter Wemm #include "opt_compat.h"
35e7228204SAlfred Perlstein #include "opt_core.h"
3662919d78SPeter Wemm 
37e1743d02SSøren Schmidt #include <sys/param.h>
38e1743d02SSøren Schmidt #include <sys/exec.h>
398c64af4fSJohn Polstra #include <sys/fcntl.h>
40e1743d02SSøren Schmidt #include <sys/imgact.h>
41e1743d02SSøren Schmidt #include <sys/imgact_elf.h>
42e1743d02SSøren Schmidt #include <sys/kernel.h>
43f34fa851SJohn Baldwin #include <sys/lock.h>
44e1743d02SSøren Schmidt #include <sys/malloc.h>
4568ff2a43SChristian S.J. Peron #include <sys/mount.h>
4635e0e5b3SJohn Baldwin #include <sys/mutex.h>
478c64af4fSJohn Polstra #include <sys/mman.h>
48a794e791SBruce Evans #include <sys/namei.h>
498c64af4fSJohn Polstra #include <sys/pioctl.h>
50a794e791SBruce Evans #include <sys/proc.h>
518c64af4fSJohn Polstra #include <sys/procfs.h>
528c64af4fSJohn Polstra #include <sys/resourcevar.h>
53da61b9a6SAlan Cox #include <sys/sf_buf.h>
5436240ea5SDoug Rabson #include <sys/systm.h>
55e1743d02SSøren Schmidt #include <sys/signalvar.h>
568c64af4fSJohn Polstra #include <sys/stat.h>
571005a129SJohn Baldwin #include <sys/sx.h>
588c64af4fSJohn Polstra #include <sys/syscall.h>
59e1743d02SSøren Schmidt #include <sys/sysctl.h>
608c64af4fSJohn Polstra #include <sys/sysent.h>
61a794e791SBruce Evans #include <sys/vnode.h>
62e7228204SAlfred Perlstein #include <sys/syslog.h>
63e7228204SAlfred Perlstein #include <sys/eventhandler.h>
64e7228204SAlfred Perlstein 
65e7228204SAlfred Perlstein #include <net/zlib.h>
66e1743d02SSøren Schmidt 
67e1743d02SSøren Schmidt #include <vm/vm.h>
68e1743d02SSøren Schmidt #include <vm/vm_kern.h>
69e1743d02SSøren Schmidt #include <vm/vm_param.h>
70e1743d02SSøren Schmidt #include <vm/pmap.h>
71e1743d02SSøren Schmidt #include <vm/vm_map.h>
720ff27d31SJohn Polstra #include <vm/vm_object.h>
73e1743d02SSøren Schmidt #include <vm/vm_extern.h>
74e1743d02SSøren Schmidt 
7552c24af7SPeter Wemm #include <machine/elf.h>
76e1743d02SSøren Schmidt #include <machine/md_var.h>
77e1743d02SSøren Schmidt 
78c815a20cSDavid E. O'Brien #define OLD_EI_BRAND	8
79c815a20cSDavid E. O'Brien 
803ebc1248SPeter Wemm static int __elfN(check_header)(const Elf_Ehdr *hdr);
8132c01de2SDmitry Chagin static Elf_Brandinfo *__elfN(get_brandinfo)(struct image_params *imgp,
8232c01de2SDmitry Chagin     const char *interp, int32_t *osrel);
833ebc1248SPeter Wemm static int __elfN(load_file)(struct proc *p, const char *file, u_long *addr,
843ebc1248SPeter Wemm     u_long *entry, size_t pagesize);
85373d1a3fSAlan Cox static int __elfN(load_section)(struct vmspace *vmspace, vm_object_t object,
868c64af4fSJohn Polstra     vm_offset_t offset, caddr_t vmaddr, size_t memsz, size_t filsz,
873ebc1248SPeter Wemm     vm_prot_t prot, size_t pagesize);
883ebc1248SPeter Wemm static int __CONCAT(exec_, __elfN(imgact))(struct image_params *imgp);
8989ffc202SBjoern A. Zeeb static boolean_t __elfN(freebsd_trans_osrel)(const Elf_Note *note,
9089ffc202SBjoern A. Zeeb     int32_t *osrel);
9189ffc202SBjoern A. Zeeb static boolean_t kfreebsd_trans_osrel(const Elf_Note *note, int32_t *osrel);
9232c01de2SDmitry Chagin static boolean_t __elfN(check_note)(struct image_params *imgp,
9332c01de2SDmitry Chagin     Elf_Brandnote *checknote, int32_t *osrel);
94e1743d02SSøren Schmidt 
95a360a43dSJake Burkholder SYSCTL_NODE(_kern, OID_AUTO, __CONCAT(elf, __ELF_WORD_SIZE), CTLFLAG_RW, 0,
96a360a43dSJake Burkholder     "");
97a360a43dSJake Burkholder 
98e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
99e7228204SAlfred Perlstein static int compress_core(gzFile, char *, char *, unsigned int,
100e7228204SAlfred Perlstein     struct thread * td);
101e7228204SAlfred Perlstein #define CORE_BUF_SIZE	(16 * 1024)
102e7228204SAlfred Perlstein #endif
103e7228204SAlfred Perlstein 
104e548a1d4SJake Burkholder int __elfN(fallback_brand) = -1;
105e548a1d4SJake Burkholder SYSCTL_INT(__CONCAT(_kern_elf, __ELF_WORD_SIZE), OID_AUTO,
106e548a1d4SJake Burkholder     fallback_brand, CTLFLAG_RW, &__elfN(fallback_brand), 0,
107a360a43dSJake Burkholder     __XSTRING(__CONCAT(ELF, __ELF_WORD_SIZE)) " brand of last resort");
108a360a43dSJake Burkholder TUNABLE_INT("kern.elf" __XSTRING(__ELF_WORD_SIZE) ".fallback_brand",
109e548a1d4SJake Burkholder     &__elfN(fallback_brand));
110a360a43dSJake Burkholder 
111551d79e1SMarcel Moolenaar static int elf_legacy_coredump = 0;
112a360a43dSJake Burkholder SYSCTL_INT(_debug, OID_AUTO, __elfN(legacy_coredump), CTLFLAG_RW,
113551d79e1SMarcel Moolenaar     &elf_legacy_coredump, 0, "");
114e1743d02SSøren Schmidt 
1153ebc1248SPeter Wemm static Elf_Brandinfo *elf_brand_list[MAX_BRANDS];
116e1743d02SSøren Schmidt 
11793d1c728SKonstantin Belousov #define	trunc_page_ps(va, ps)	((va) & ~(ps - 1))
11893d1c728SKonstantin Belousov #define	round_page_ps(va, ps)	(((va) + (ps - 1)) & ~(ps - 1))
11993d1c728SKonstantin Belousov #define	aligned(a, t)	(trunc_page_ps((u_long)(a), sizeof(t)) == (u_long)(a))
12093d1c728SKonstantin Belousov 
12132c01de2SDmitry Chagin static const char FREEBSD_ABI_VENDOR[] = "FreeBSD";
12232c01de2SDmitry Chagin 
12332c01de2SDmitry Chagin Elf_Brandnote __elfN(freebsd_brandnote) = {
12432c01de2SDmitry Chagin 	.hdr.n_namesz	= sizeof(FREEBSD_ABI_VENDOR),
12532c01de2SDmitry Chagin 	.hdr.n_descsz	= sizeof(int32_t),
12632c01de2SDmitry Chagin 	.hdr.n_type	= 1,
12732c01de2SDmitry Chagin 	.vendor		= FREEBSD_ABI_VENDOR,
12889ffc202SBjoern A. Zeeb 	.flags		= BN_TRANSLATE_OSREL,
12989ffc202SBjoern A. Zeeb 	.trans_osrel	= __elfN(freebsd_trans_osrel)
13032c01de2SDmitry Chagin };
13132c01de2SDmitry Chagin 
13289ffc202SBjoern A. Zeeb static boolean_t
13389ffc202SBjoern A. Zeeb __elfN(freebsd_trans_osrel)(const Elf_Note *note, int32_t *osrel)
13489ffc202SBjoern A. Zeeb {
13589ffc202SBjoern A. Zeeb 	uintptr_t p;
13689ffc202SBjoern A. Zeeb 
13789ffc202SBjoern A. Zeeb 	p = (uintptr_t)(note + 1);
13889ffc202SBjoern A. Zeeb 	p += roundup2(note->n_namesz, sizeof(Elf32_Addr));
13989ffc202SBjoern A. Zeeb 	*osrel = *(const int32_t *)(p);
14089ffc202SBjoern A. Zeeb 
14189ffc202SBjoern A. Zeeb 	return (TRUE);
14289ffc202SBjoern A. Zeeb }
14389ffc202SBjoern A. Zeeb 
14489ffc202SBjoern A. Zeeb static const char GNU_ABI_VENDOR[] = "GNU";
14589ffc202SBjoern A. Zeeb static int GNU_KFREEBSD_ABI_DESC = 3;
14689ffc202SBjoern A. Zeeb 
14789ffc202SBjoern A. Zeeb Elf_Brandnote __elfN(kfreebsd_brandnote) = {
14889ffc202SBjoern A. Zeeb 	.hdr.n_namesz	= sizeof(GNU_ABI_VENDOR),
14989ffc202SBjoern A. Zeeb 	.hdr.n_descsz	= 16,	/* XXX at least 16 */
15089ffc202SBjoern A. Zeeb 	.hdr.n_type	= 1,
15189ffc202SBjoern A. Zeeb 	.vendor		= GNU_ABI_VENDOR,
15289ffc202SBjoern A. Zeeb 	.flags		= BN_TRANSLATE_OSREL,
15389ffc202SBjoern A. Zeeb 	.trans_osrel	= kfreebsd_trans_osrel
15489ffc202SBjoern A. Zeeb };
15589ffc202SBjoern A. Zeeb 
15689ffc202SBjoern A. Zeeb static boolean_t
15789ffc202SBjoern A. Zeeb kfreebsd_trans_osrel(const Elf_Note *note, int32_t *osrel)
15889ffc202SBjoern A. Zeeb {
15989ffc202SBjoern A. Zeeb 	const Elf32_Word *desc;
16089ffc202SBjoern A. Zeeb 	uintptr_t p;
16189ffc202SBjoern A. Zeeb 
16289ffc202SBjoern A. Zeeb 	p = (uintptr_t)(note + 1);
16389ffc202SBjoern A. Zeeb 	p += roundup2(note->n_namesz, sizeof(Elf32_Addr));
16489ffc202SBjoern A. Zeeb 
16589ffc202SBjoern A. Zeeb 	desc = (const Elf32_Word *)p;
16689ffc202SBjoern A. Zeeb 	if (desc[0] != GNU_KFREEBSD_ABI_DESC)
16789ffc202SBjoern A. Zeeb 		return (FALSE);
16889ffc202SBjoern A. Zeeb 
16989ffc202SBjoern A. Zeeb 	/*
17089ffc202SBjoern A. Zeeb 	 * Debian GNU/kFreeBSD embed the earliest compatible kernel version
17189ffc202SBjoern A. Zeeb 	 * (__FreeBSD_version: <major><two digit minor>Rxx) in the LSB way.
17289ffc202SBjoern A. Zeeb 	 */
17389ffc202SBjoern A. Zeeb 	*osrel = desc[1] * 100000 + desc[2] * 1000 + desc[3];
17489ffc202SBjoern A. Zeeb 
17589ffc202SBjoern A. Zeeb 	return (TRUE);
17689ffc202SBjoern A. Zeeb }
17789ffc202SBjoern A. Zeeb 
178e1743d02SSøren Schmidt int
1793ebc1248SPeter Wemm __elfN(insert_brand_entry)(Elf_Brandinfo *entry)
180e1743d02SSøren Schmidt {
181e1743d02SSøren Schmidt 	int i;
182e1743d02SSøren Schmidt 
1833ebc1248SPeter Wemm 	for (i = 0; i < MAX_BRANDS; i++) {
184ea5a2b2eSSøren Schmidt 		if (elf_brand_list[i] == NULL) {
185ea5a2b2eSSøren Schmidt 			elf_brand_list[i] = entry;
186e1743d02SSøren Schmidt 			break;
187e1743d02SSøren Schmidt 		}
188e1743d02SSøren Schmidt 	}
189925c8b5bSBjoern A. Zeeb 	if (i == MAX_BRANDS) {
190925c8b5bSBjoern A. Zeeb 		printf("WARNING: %s: could not insert brandinfo entry: %p\n",
191925c8b5bSBjoern A. Zeeb 			__func__, entry);
192a7cddfedSJake Burkholder 		return (-1);
193925c8b5bSBjoern A. Zeeb 	}
194a7cddfedSJake Burkholder 	return (0);
195e1743d02SSøren Schmidt }
196e1743d02SSøren Schmidt 
197e1743d02SSøren Schmidt int
1983ebc1248SPeter Wemm __elfN(remove_brand_entry)(Elf_Brandinfo *entry)
199e1743d02SSøren Schmidt {
200e1743d02SSøren Schmidt 	int i;
201e1743d02SSøren Schmidt 
2023ebc1248SPeter Wemm 	for (i = 0; i < MAX_BRANDS; i++) {
203ea5a2b2eSSøren Schmidt 		if (elf_brand_list[i] == entry) {
204ea5a2b2eSSøren Schmidt 			elf_brand_list[i] = NULL;
205e1743d02SSøren Schmidt 			break;
206e1743d02SSøren Schmidt 		}
207e1743d02SSøren Schmidt 	}
208ea5a2b2eSSøren Schmidt 	if (i == MAX_BRANDS)
209a7cddfedSJake Burkholder 		return (-1);
210a7cddfedSJake Burkholder 	return (0);
211e1743d02SSøren Schmidt }
212e1743d02SSøren Schmidt 
213096977faSMark Newton int
2143ebc1248SPeter Wemm __elfN(brand_inuse)(Elf_Brandinfo *entry)
215096977faSMark Newton {
216096977faSMark Newton 	struct proc *p;
217553629ebSJake Burkholder 	int rval = FALSE;
218096977faSMark Newton 
2191005a129SJohn Baldwin 	sx_slock(&allproc_lock);
2204f506694SXin LI 	FOREACH_PROC_IN_SYSTEM(p) {
221553629ebSJake Burkholder 		if (p->p_sysent == entry->sysvec) {
222553629ebSJake Burkholder 			rval = TRUE;
223553629ebSJake Burkholder 			break;
224096977faSMark Newton 		}
225553629ebSJake Burkholder 	}
2261005a129SJohn Baldwin 	sx_sunlock(&allproc_lock);
227096977faSMark Newton 
228553629ebSJake Burkholder 	return (rval);
229096977faSMark Newton }
230096977faSMark Newton 
2315fe3ed62SJake Burkholder static Elf_Brandinfo *
23232c01de2SDmitry Chagin __elfN(get_brandinfo)(struct image_params *imgp, const char *interp,
23332c01de2SDmitry Chagin     int32_t *osrel)
2345fe3ed62SJake Burkholder {
23532c01de2SDmitry Chagin 	const Elf_Ehdr *hdr = (const Elf_Ehdr *)imgp->image_header;
2365fe3ed62SJake Burkholder 	Elf_Brandinfo *bi;
23732c01de2SDmitry Chagin 	boolean_t ret;
2385fe3ed62SJake Burkholder 	int i;
2395fe3ed62SJake Burkholder 
2405fe3ed62SJake Burkholder 	/*
24132c01de2SDmitry Chagin 	 * We support four types of branding -- (1) the ELF EI_OSABI field
2425fe3ed62SJake Burkholder 	 * that SCO added to the ELF spec, (2) FreeBSD 3.x's traditional string
24332c01de2SDmitry Chagin 	 * branding w/in the ELF header, (3) path of the `interp_path'
24432c01de2SDmitry Chagin 	 * field, and (4) the ".note.ABI-tag" ELF section.
2455fe3ed62SJake Burkholder 	 */
2465fe3ed62SJake Burkholder 
24732c01de2SDmitry Chagin 	/* Look for an ".note.ABI-tag" ELF section */
24832c01de2SDmitry Chagin 	for (i = 0; i < MAX_BRANDS; i++) {
24932c01de2SDmitry Chagin 		bi = elf_brand_list[i];
250ecc2fda8SBjoern A. Zeeb 		if (bi == NULL)
251ecc2fda8SBjoern A. Zeeb 			continue;
252ecc2fda8SBjoern A. Zeeb 		if (hdr->e_machine == bi->machine && (bi->flags &
253ecc2fda8SBjoern A. Zeeb 		    (BI_BRAND_NOTE|BI_BRAND_NOTE_MANDATORY)) != 0) {
25432c01de2SDmitry Chagin 			ret = __elfN(check_note)(imgp, bi->brand_note, osrel);
25532c01de2SDmitry Chagin 			if (ret)
25632c01de2SDmitry Chagin 				return (bi);
25732c01de2SDmitry Chagin 		}
25832c01de2SDmitry Chagin 	}
25932c01de2SDmitry Chagin 
2605fe3ed62SJake Burkholder 	/* If the executable has a brand, search for it in the brand list. */
2615fe3ed62SJake Burkholder 	for (i = 0; i < MAX_BRANDS; i++) {
2625fe3ed62SJake Burkholder 		bi = elf_brand_list[i];
263ecc2fda8SBjoern A. Zeeb 		if (bi == NULL || bi->flags & BI_BRAND_NOTE_MANDATORY)
264ecc2fda8SBjoern A. Zeeb 			continue;
265ecc2fda8SBjoern A. Zeeb 		if (hdr->e_machine == bi->machine &&
2665fe3ed62SJake Burkholder 		    (hdr->e_ident[EI_OSABI] == bi->brand ||
2675fe3ed62SJake Burkholder 		    strncmp((const char *)&hdr->e_ident[OLD_EI_BRAND],
2685fe3ed62SJake Burkholder 		    bi->compat_3_brand, strlen(bi->compat_3_brand)) == 0))
2695fe3ed62SJake Burkholder 			return (bi);
2705fe3ed62SJake Burkholder 	}
2715fe3ed62SJake Burkholder 
2725fe3ed62SJake Burkholder 	/* Lacking a known brand, search for a recognized interpreter. */
2735fe3ed62SJake Burkholder 	if (interp != NULL) {
2745fe3ed62SJake Burkholder 		for (i = 0; i < MAX_BRANDS; i++) {
2755fe3ed62SJake Burkholder 			bi = elf_brand_list[i];
276ecc2fda8SBjoern A. Zeeb 			if (bi == NULL || bi->flags & BI_BRAND_NOTE_MANDATORY)
277ecc2fda8SBjoern A. Zeeb 				continue;
278ecc2fda8SBjoern A. Zeeb 			if (hdr->e_machine == bi->machine &&
2795fe3ed62SJake Burkholder 			    strcmp(interp, bi->interp_path) == 0)
2805fe3ed62SJake Burkholder 				return (bi);
2815fe3ed62SJake Burkholder 		}
2825fe3ed62SJake Burkholder 	}
2835fe3ed62SJake Burkholder 
2845fe3ed62SJake Burkholder 	/* Lacking a recognized interpreter, try the default brand */
2855fe3ed62SJake Burkholder 	for (i = 0; i < MAX_BRANDS; i++) {
2865fe3ed62SJake Burkholder 		bi = elf_brand_list[i];
287ecc2fda8SBjoern A. Zeeb 		if (bi == NULL || bi->flags & BI_BRAND_NOTE_MANDATORY)
288ecc2fda8SBjoern A. Zeeb 			continue;
289ecc2fda8SBjoern A. Zeeb 		if (hdr->e_machine == bi->machine &&
290e548a1d4SJake Burkholder 		    __elfN(fallback_brand) == bi->brand)
2915fe3ed62SJake Burkholder 			return (bi);
2925fe3ed62SJake Burkholder 	}
2935fe3ed62SJake Burkholder 	return (NULL);
2945fe3ed62SJake Burkholder }
2955fe3ed62SJake Burkholder 
296e1743d02SSøren Schmidt static int
2973ebc1248SPeter Wemm __elfN(check_header)(const Elf_Ehdr *hdr)
298e1743d02SSøren Schmidt {
299d0ca7c29SPeter Wemm 	Elf_Brandinfo *bi;
3003ebc1248SPeter Wemm 	int i;
3013ebc1248SPeter Wemm 
30252c24af7SPeter Wemm 	if (!IS_ELF(*hdr) ||
30352c24af7SPeter Wemm 	    hdr->e_ident[EI_CLASS] != ELF_TARG_CLASS ||
30452c24af7SPeter Wemm 	    hdr->e_ident[EI_DATA] != ELF_TARG_DATA ||
3053dc19c46SJacques Vidrine 	    hdr->e_ident[EI_VERSION] != EV_CURRENT ||
3063dc19c46SJacques Vidrine 	    hdr->e_phentsize != sizeof(Elf_Phdr) ||
3073dc19c46SJacques Vidrine 	    hdr->e_version != ELF_TARG_VER)
308a7cddfedSJake Burkholder 		return (ENOEXEC);
309e1743d02SSøren Schmidt 
3103ebc1248SPeter Wemm 	/*
3113ebc1248SPeter Wemm 	 * Make sure we have at least one brand for this machine.
3123ebc1248SPeter Wemm 	 */
3133ebc1248SPeter Wemm 
3143ebc1248SPeter Wemm 	for (i = 0; i < MAX_BRANDS; i++) {
315d0ca7c29SPeter Wemm 		bi = elf_brand_list[i];
316d0ca7c29SPeter Wemm 		if (bi != NULL && bi->machine == hdr->e_machine)
3173ebc1248SPeter Wemm 			break;
3183ebc1248SPeter Wemm 	}
3193ebc1248SPeter Wemm 	if (i == MAX_BRANDS)
320a7cddfedSJake Burkholder 		return (ENOEXEC);
321e1743d02SSøren Schmidt 
322a7cddfedSJake Burkholder 	return (0);
323e1743d02SSøren Schmidt }
324e1743d02SSøren Schmidt 
325e1743d02SSøren Schmidt static int
3263ebc1248SPeter Wemm __elfN(map_partial)(vm_map_t map, vm_object_t object, vm_ooffset_t offset,
327ff6f03c7SAlan Cox     vm_offset_t start, vm_offset_t end, vm_prot_t prot)
3283ebc1248SPeter Wemm {
329da61b9a6SAlan Cox 	struct sf_buf *sf;
330da61b9a6SAlan Cox 	int error;
3313ebc1248SPeter Wemm 	vm_offset_t off;
3323ebc1248SPeter Wemm 
3333ebc1248SPeter Wemm 	/*
3343ebc1248SPeter Wemm 	 * Create the page if it doesn't exist yet. Ignore errors.
3353ebc1248SPeter Wemm 	 */
3363ebc1248SPeter Wemm 	vm_map_lock(map);
337ff6f03c7SAlan Cox 	vm_map_insert(map, NULL, 0, trunc_page(start), round_page(end),
338ff6f03c7SAlan Cox 	    VM_PROT_ALL, VM_PROT_ALL, 0);
3393ebc1248SPeter Wemm 	vm_map_unlock(map);
3403ebc1248SPeter Wemm 
3413ebc1248SPeter Wemm 	/*
3423ebc1248SPeter Wemm 	 * Find the page from the underlying object.
3433ebc1248SPeter Wemm 	 */
3443ebc1248SPeter Wemm 	if (object) {
345da61b9a6SAlan Cox 		sf = vm_imgact_map_page(object, offset);
346da61b9a6SAlan Cox 		if (sf == NULL)
347da61b9a6SAlan Cox 			return (KERN_FAILURE);
3483ebc1248SPeter Wemm 		off = offset - trunc_page(offset);
349da61b9a6SAlan Cox 		error = copyout((caddr_t)sf_buf_kva(sf) + off, (caddr_t)start,
350ca0387efSJake Burkholder 		    end - start);
351da61b9a6SAlan Cox 		vm_imgact_unmap_page(sf);
3523ebc1248SPeter Wemm 		if (error) {
353a7cddfedSJake Burkholder 			return (KERN_FAILURE);
3543ebc1248SPeter Wemm 		}
3553ebc1248SPeter Wemm 	}
3563ebc1248SPeter Wemm 
357a7cddfedSJake Burkholder 	return (KERN_SUCCESS);
3583ebc1248SPeter Wemm }
3593ebc1248SPeter Wemm 
3603ebc1248SPeter Wemm static int
3613ebc1248SPeter Wemm __elfN(map_insert)(vm_map_t map, vm_object_t object, vm_ooffset_t offset,
362ff6f03c7SAlan Cox     vm_offset_t start, vm_offset_t end, vm_prot_t prot, int cow)
3633ebc1248SPeter Wemm {
364da61b9a6SAlan Cox 	struct sf_buf *sf;
365da61b9a6SAlan Cox 	vm_offset_t off;
366a063facbSMarcel Moolenaar 	vm_size_t sz;
367a063facbSMarcel Moolenaar 	int error, rv;
3683ebc1248SPeter Wemm 
3693ebc1248SPeter Wemm 	if (start != trunc_page(start)) {
37081f223caSJake Burkholder 		rv = __elfN(map_partial)(map, object, offset, start,
371ff6f03c7SAlan Cox 		    round_page(start), prot);
3723ebc1248SPeter Wemm 		if (rv)
373a7cddfedSJake Burkholder 			return (rv);
3743ebc1248SPeter Wemm 		offset += round_page(start) - start;
3753ebc1248SPeter Wemm 		start = round_page(start);
3763ebc1248SPeter Wemm 	}
3773ebc1248SPeter Wemm 	if (end != round_page(end)) {
37881f223caSJake Burkholder 		rv = __elfN(map_partial)(map, object, offset +
379ff6f03c7SAlan Cox 		    trunc_page(end) - start, trunc_page(end), end, prot);
3803ebc1248SPeter Wemm 		if (rv)
381a7cddfedSJake Burkholder 			return (rv);
3823ebc1248SPeter Wemm 		end = trunc_page(end);
3833ebc1248SPeter Wemm 	}
3843ebc1248SPeter Wemm 	if (end > start) {
3853ebc1248SPeter Wemm 		if (offset & PAGE_MASK) {
3863ebc1248SPeter Wemm 			/*
3873ebc1248SPeter Wemm 			 * The mapping is not page aligned. This means we have
3883ebc1248SPeter Wemm 			 * to copy the data. Sigh.
3893ebc1248SPeter Wemm 			 */
390584716b0SAlan Cox 			rv = vm_map_find(map, NULL, 0, &start, end - start,
391ff6f03c7SAlan Cox 			    FALSE, prot | VM_PROT_WRITE, VM_PROT_ALL, 0);
3923ebc1248SPeter Wemm 			if (rv)
393a7cddfedSJake Burkholder 				return (rv);
394da61b9a6SAlan Cox 			if (object == NULL)
395da61b9a6SAlan Cox 				return (KERN_SUCCESS);
396da61b9a6SAlan Cox 			for (; start < end; start += sz) {
397da61b9a6SAlan Cox 				sf = vm_imgact_map_page(object, offset);
398da61b9a6SAlan Cox 				if (sf == NULL)
399da61b9a6SAlan Cox 					return (KERN_FAILURE);
4003ebc1248SPeter Wemm 				off = offset - trunc_page(offset);
4013ebc1248SPeter Wemm 				sz = end - start;
402da61b9a6SAlan Cox 				if (sz > PAGE_SIZE - off)
403da61b9a6SAlan Cox 					sz = PAGE_SIZE - off;
404da61b9a6SAlan Cox 				error = copyout((caddr_t)sf_buf_kva(sf) + off,
4053ebc1248SPeter Wemm 				    (caddr_t)start, sz);
406da61b9a6SAlan Cox 				vm_imgact_unmap_page(sf);
4073ebc1248SPeter Wemm 				if (error) {
408a7cddfedSJake Burkholder 					return (KERN_FAILURE);
4093ebc1248SPeter Wemm 				}
410da61b9a6SAlan Cox 				offset += sz;
4113ebc1248SPeter Wemm 			}
4123ebc1248SPeter Wemm 			rv = KERN_SUCCESS;
4133ebc1248SPeter Wemm 		} else {
414e5e6093bSAlan Cox 			vm_object_reference(object);
4153ebc1248SPeter Wemm 			vm_map_lock(map);
4163ebc1248SPeter Wemm 			rv = vm_map_insert(map, object, offset, start, end,
417ff6f03c7SAlan Cox 			    prot, VM_PROT_ALL, cow);
4183ebc1248SPeter Wemm 			vm_map_unlock(map);
419e5e6093bSAlan Cox 			if (rv != KERN_SUCCESS)
420e5e6093bSAlan Cox 				vm_object_deallocate(object);
4213ebc1248SPeter Wemm 		}
422a7cddfedSJake Burkholder 		return (rv);
4233ebc1248SPeter Wemm 	} else {
424a7cddfedSJake Burkholder 		return (KERN_SUCCESS);
4253ebc1248SPeter Wemm 	}
4263ebc1248SPeter Wemm }
4273ebc1248SPeter Wemm 
4283ebc1248SPeter Wemm static int
429373d1a3fSAlan Cox __elfN(load_section)(struct vmspace *vmspace,
430373d1a3fSAlan Cox 	vm_object_t object, vm_offset_t offset,
4313ebc1248SPeter Wemm 	caddr_t vmaddr, size_t memsz, size_t filsz, vm_prot_t prot,
4323ebc1248SPeter Wemm 	size_t pagesize)
433e1743d02SSøren Schmidt {
434da61b9a6SAlan Cox 	struct sf_buf *sf;
435e1743d02SSøren Schmidt 	size_t map_len;
436e1743d02SSøren Schmidt 	vm_offset_t map_addr;
437fa7dd9c5SMatthew Dillon 	int error, rv, cow;
438e1743d02SSøren Schmidt 	size_t copy_len;
43952c24af7SPeter Wemm 	vm_offset_t file_addr;
44052c24af7SPeter Wemm 
44125ead034SBrian Feldman 	/*
44225ead034SBrian Feldman 	 * It's necessary to fail if the filsz + offset taken from the
44325ead034SBrian Feldman 	 * header is greater than the actual file pager object's size.
44425ead034SBrian Feldman 	 * If we were to allow this, then the vm_map_find() below would
44525ead034SBrian Feldman 	 * walk right off the end of the file object and into the ether.
44625ead034SBrian Feldman 	 *
44725ead034SBrian Feldman 	 * While I'm here, might as well check for something else that
44825ead034SBrian Feldman 	 * is invalid: filsz cannot be greater than memsz.
44925ead034SBrian Feldman 	 */
45025ead034SBrian Feldman 	if ((off_t)filsz + offset > object->un_pager.vnp.vnp_size ||
45125ead034SBrian Feldman 	    filsz > memsz) {
45225ead034SBrian Feldman 		uprintf("elf_load_section: truncated ELF file\n");
45325ead034SBrian Feldman 		return (ENOEXEC);
45425ead034SBrian Feldman 	}
45525ead034SBrian Feldman 
4563ebc1248SPeter Wemm 	map_addr = trunc_page_ps((vm_offset_t)vmaddr, pagesize);
4573ebc1248SPeter Wemm 	file_addr = trunc_page_ps(offset, pagesize);
458e1743d02SSøren Schmidt 
459e1743d02SSøren Schmidt 	/*
46052c24af7SPeter Wemm 	 * We have two choices.  We can either clear the data in the last page
46152c24af7SPeter Wemm 	 * of an oversized mapping, or we can start the anon mapping a page
46252c24af7SPeter Wemm 	 * early and copy the initialized data into that first page.  We
46352c24af7SPeter Wemm 	 * choose the second..
46452c24af7SPeter Wemm 	 */
46552c24af7SPeter Wemm 	if (memsz > filsz)
4663ebc1248SPeter Wemm 		map_len = trunc_page_ps(offset + filsz, pagesize) - file_addr;
46752c24af7SPeter Wemm 	else
4683ebc1248SPeter Wemm 		map_len = round_page_ps(offset + filsz, pagesize) - file_addr;
46952c24af7SPeter Wemm 
47052c24af7SPeter Wemm 	if (map_len != 0) {
471fa7dd9c5SMatthew Dillon 		/* cow flags: don't dump readonly sections in core */
472fa7dd9c5SMatthew Dillon 		cow = MAP_COPY_ON_WRITE | MAP_PREFAULT |
473fa7dd9c5SMatthew Dillon 		    (prot & VM_PROT_WRITE ? 0 : MAP_DISABLE_COREDUMP);
474fa7dd9c5SMatthew Dillon 
4753ebc1248SPeter Wemm 		rv = __elfN(map_insert)(&vmspace->vm_map,
47652c24af7SPeter Wemm 				      object,
47752c24af7SPeter Wemm 				      file_addr,	/* file offset */
47852c24af7SPeter Wemm 				      map_addr,		/* virtual start */
47952c24af7SPeter Wemm 				      map_addr + map_len,/* virtual end */
48052c24af7SPeter Wemm 				      prot,
481fa7dd9c5SMatthew Dillon 				      cow);
482e5e6093bSAlan Cox 		if (rv != KERN_SUCCESS)
483a7cddfedSJake Burkholder 			return (EINVAL);
48452c24af7SPeter Wemm 
48552c24af7SPeter Wemm 		/* we can stop now if we've covered it all */
48623955314SAlfred Perlstein 		if (memsz == filsz) {
487a7cddfedSJake Burkholder 			return (0);
48852c24af7SPeter Wemm 		}
48923955314SAlfred Perlstein 	}
49052c24af7SPeter Wemm 
49152c24af7SPeter Wemm 
49252c24af7SPeter Wemm 	/*
49352c24af7SPeter Wemm 	 * We have to get the remaining bit of the file into the first part
49452c24af7SPeter Wemm 	 * of the oversized map segment.  This is normally because the .data
49552c24af7SPeter Wemm 	 * segment in the file is extended to provide bss.  It's a neat idea
49652c24af7SPeter Wemm 	 * to try and save a page, but it's a pain in the behind to implement.
497e1743d02SSøren Schmidt 	 */
4983ebc1248SPeter Wemm 	copy_len = (offset + filsz) - trunc_page_ps(offset + filsz, pagesize);
4993ebc1248SPeter Wemm 	map_addr = trunc_page_ps((vm_offset_t)vmaddr + filsz, pagesize);
500ca0387efSJake Burkholder 	map_len = round_page_ps((vm_offset_t)vmaddr + memsz, pagesize) -
501ca0387efSJake Burkholder 	    map_addr;
502e1743d02SSøren Schmidt 
50352c24af7SPeter Wemm 	/* This had damn well better be true! */
5048191d577SPeter Wemm 	if (map_len != 0) {
50581f223caSJake Burkholder 		rv = __elfN(map_insert)(&vmspace->vm_map, NULL, 0, map_addr,
506ff6f03c7SAlan Cox 		    map_addr + map_len, VM_PROT_ALL, 0);
50723955314SAlfred Perlstein 		if (rv != KERN_SUCCESS) {
508a7cddfedSJake Burkholder 			return (EINVAL);
5098191d577SPeter Wemm 		}
51023955314SAlfred Perlstein 	}
511e1743d02SSøren Schmidt 
51252c24af7SPeter Wemm 	if (copy_len != 0) {
5133ebc1248SPeter Wemm 		vm_offset_t off;
514da61b9a6SAlan Cox 
515da61b9a6SAlan Cox 		sf = vm_imgact_map_page(object, offset + filsz);
516da61b9a6SAlan Cox 		if (sf == NULL)
517da61b9a6SAlan Cox 			return (EIO);
518e1743d02SSøren Schmidt 
51952c24af7SPeter Wemm 		/* send the page fragment to user space */
52081f223caSJake Burkholder 		off = trunc_page_ps(offset + filsz, pagesize) -
52181f223caSJake Burkholder 		    trunc_page(offset + filsz);
522da61b9a6SAlan Cox 		error = copyout((caddr_t)sf_buf_kva(sf) + off,
523da61b9a6SAlan Cox 		    (caddr_t)map_addr, copy_len);
524da61b9a6SAlan Cox 		vm_imgact_unmap_page(sf);
52523955314SAlfred Perlstein 		if (error) {
52652c24af7SPeter Wemm 			return (error);
52752c24af7SPeter Wemm 		}
52823955314SAlfred Perlstein 	}
529e1743d02SSøren Schmidt 
530e1743d02SSøren Schmidt 	/*
5313ebc1248SPeter Wemm 	 * set it to the specified protection.
5323ebc1248SPeter Wemm 	 * XXX had better undo the damage from pasting over the cracks here!
533e1743d02SSøren Schmidt 	 */
5343ebc1248SPeter Wemm 	vm_map_protect(&vmspace->vm_map, trunc_page(map_addr),
5353ebc1248SPeter Wemm 	    round_page(map_addr + map_len),  prot, FALSE);
5368191d577SPeter Wemm 
537ff6f03c7SAlan Cox 	return (0);
538e1743d02SSøren Schmidt }
539e1743d02SSøren Schmidt 
540c33fe779SJohn Polstra /*
541c33fe779SJohn Polstra  * Load the file "file" into memory.  It may be either a shared object
542c33fe779SJohn Polstra  * or an executable.
543c33fe779SJohn Polstra  *
544c33fe779SJohn Polstra  * The "addr" reference parameter is in/out.  On entry, it specifies
545c33fe779SJohn Polstra  * the address where a shared object should be loaded.  If the file is
546c33fe779SJohn Polstra  * an executable, this value is ignored.  On exit, "addr" specifies
547c33fe779SJohn Polstra  * where the file was actually loaded.
548c33fe779SJohn Polstra  *
549c33fe779SJohn Polstra  * The "entry" reference parameter is out only.  On exit, it specifies
550c33fe779SJohn Polstra  * the entry point for the loaded file.
551c33fe779SJohn Polstra  */
552e1743d02SSøren Schmidt static int
5533ebc1248SPeter Wemm __elfN(load_file)(struct proc *p, const char *file, u_long *addr,
5543ebc1248SPeter Wemm 	u_long *entry, size_t pagesize)
555e1743d02SSøren Schmidt {
556911c2be0SMark Peek 	struct {
557911c2be0SMark Peek 		struct nameidata nd;
558911c2be0SMark Peek 		struct vattr attr;
559911c2be0SMark Peek 		struct image_params image_params;
560911c2be0SMark Peek 	} *tempdata;
561d254af07SMatthew Dillon 	const Elf_Ehdr *hdr = NULL;
562d254af07SMatthew Dillon 	const Elf_Phdr *phdr = NULL;
563911c2be0SMark Peek 	struct nameidata *nd;
564e1743d02SSøren Schmidt 	struct vmspace *vmspace = p->p_vmspace;
565911c2be0SMark Peek 	struct vattr *attr;
566911c2be0SMark Peek 	struct image_params *imgp;
56752c24af7SPeter Wemm 	vm_prot_t prot;
568c33fe779SJohn Polstra 	u_long rbase;
569c33fe779SJohn Polstra 	u_long base_addr = 0;
57068ff2a43SChristian S.J. Peron 	int vfslocked, error, i, numsegs;
571e1743d02SSøren Schmidt 
572a163d034SWarner Losh 	tempdata = malloc(sizeof(*tempdata), M_TEMP, M_WAITOK);
573911c2be0SMark Peek 	nd = &tempdata->nd;
574911c2be0SMark Peek 	attr = &tempdata->attr;
575911c2be0SMark Peek 	imgp = &tempdata->image_params;
576911c2be0SMark Peek 
577c8a79999SPeter Wemm 	/*
578c8a79999SPeter Wemm 	 * Initialize part of the common data
579c8a79999SPeter Wemm 	 */
580c8a79999SPeter Wemm 	imgp->proc = p;
581911c2be0SMark Peek 	imgp->attr = attr;
582c8a79999SPeter Wemm 	imgp->firstpage = NULL;
58359c8bc40SAlan Cox 	imgp->image_header = NULL;
5840b2ed1aeSJeff Roberson 	imgp->object = NULL;
5856d7bdc8dSRobert Watson 	imgp->execlabel = NULL;
586c8a79999SPeter Wemm 
58768ff2a43SChristian S.J. Peron 	NDINIT(nd, LOOKUP, MPSAFE|LOCKLEAF|FOLLOW, UIO_SYSSPACE, file,
58868ff2a43SChristian S.J. Peron 	    curthread);
58968ff2a43SChristian S.J. Peron 	vfslocked = 0;
590911c2be0SMark Peek 	if ((error = namei(nd)) != 0) {
591911c2be0SMark Peek 		nd->ni_vp = NULL;
592e1743d02SSøren Schmidt 		goto fail;
593e1743d02SSøren Schmidt 	}
59468ff2a43SChristian S.J. Peron 	vfslocked = NDHASGIANT(nd);
595911c2be0SMark Peek 	NDFREE(nd, NDF_ONLY_PNBUF);
596911c2be0SMark Peek 	imgp->vp = nd->ni_vp;
597c8a79999SPeter Wemm 
598e1743d02SSøren Schmidt 	/*
599e1743d02SSøren Schmidt 	 * Check permissions, modes, uid, etc on the file, and "open" it.
600e1743d02SSøren Schmidt 	 */
601c8a79999SPeter Wemm 	error = exec_check_permissions(imgp);
602373d1a3fSAlan Cox 	if (error)
603c8a79999SPeter Wemm 		goto fail;
604e1743d02SSøren Schmidt 
605c8a79999SPeter Wemm 	error = exec_map_first_page(imgp);
606373d1a3fSAlan Cox 	if (error)
607373d1a3fSAlan Cox 		goto fail;
608373d1a3fSAlan Cox 
60925ead034SBrian Feldman 	/*
61025ead034SBrian Feldman 	 * Also make certain that the interpreter stays the same, so set
611e6e370a7SJeff Roberson 	 * its VV_TEXT flag, too.
61225ead034SBrian Feldman 	 */
613e6e370a7SJeff Roberson 	nd->ni_vp->v_vflag |= VV_TEXT;
614e6e370a7SJeff Roberson 
6158516dd18SPoul-Henning Kamp 	imgp->object = nd->ni_vp->v_object;
616e1743d02SSøren Schmidt 
617d254af07SMatthew Dillon 	hdr = (const Elf_Ehdr *)imgp->image_header;
6183ebc1248SPeter Wemm 	if ((error = __elfN(check_header)(hdr)) != 0)
619e1743d02SSøren Schmidt 		goto fail;
620c33fe779SJohn Polstra 	if (hdr->e_type == ET_DYN)
621c33fe779SJohn Polstra 		rbase = *addr;
622c33fe779SJohn Polstra 	else if (hdr->e_type == ET_EXEC)
623c33fe779SJohn Polstra 		rbase = 0;
624c33fe779SJohn Polstra 	else {
625c33fe779SJohn Polstra 		error = ENOEXEC;
626c33fe779SJohn Polstra 		goto fail;
627c33fe779SJohn Polstra 	}
628e1743d02SSøren Schmidt 
629c8a79999SPeter Wemm 	/* Only support headers that fit within first page for now      */
6303dc19c46SJacques Vidrine 	/*    (multiplication of two Elf_Half fields will not overflow) */
63152c24af7SPeter Wemm 	if ((hdr->e_phoff > PAGE_SIZE) ||
6323dc19c46SJacques Vidrine 	    (hdr->e_phentsize * hdr->e_phnum) > PAGE_SIZE - hdr->e_phoff) {
633c8a79999SPeter Wemm 		error = ENOEXEC;
634e1743d02SSøren Schmidt 		goto fail;
635c8a79999SPeter Wemm 	}
636c8a79999SPeter Wemm 
637d254af07SMatthew Dillon 	phdr = (const Elf_Phdr *)(imgp->image_header + hdr->e_phoff);
63893d1c728SKonstantin Belousov 	if (!aligned(phdr, Elf_Addr)) {
63993d1c728SKonstantin Belousov 		error = ENOEXEC;
64093d1c728SKonstantin Belousov 		goto fail;
64193d1c728SKonstantin Belousov 	}
642e1743d02SSøren Schmidt 
643c33fe779SJohn Polstra 	for (i = 0, numsegs = 0; i < hdr->e_phnum; i++) {
6445b33842aSKonstantin Belousov 		if (phdr[i].p_type == PT_LOAD && phdr[i].p_memsz != 0) {
6455b33842aSKonstantin Belousov 			/* Loadable segment */
64652c24af7SPeter Wemm 			prot = 0;
647e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_X)
648e1743d02SSøren Schmidt   				prot |= VM_PROT_EXECUTE;
649e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_W)
650e1743d02SSøren Schmidt   				prot |= VM_PROT_WRITE;
651e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_R)
652e1743d02SSøren Schmidt   				prot |= VM_PROT_READ;
653e1743d02SSøren Schmidt 
654373d1a3fSAlan Cox 			if ((error = __elfN(load_section)(vmspace,
655373d1a3fSAlan Cox 			    imgp->object, phdr[i].p_offset,
65681f223caSJake Burkholder 			    (caddr_t)(uintptr_t)phdr[i].p_vaddr + rbase,
65781f223caSJake Burkholder 			    phdr[i].p_memsz, phdr[i].p_filesz, prot,
65881f223caSJake Burkholder 			    pagesize)) != 0)
659e1743d02SSøren Schmidt 				goto fail;
660e1743d02SSøren Schmidt 			/*
661c33fe779SJohn Polstra 			 * Establish the base address if this is the
662c33fe779SJohn Polstra 			 * first segment.
663e1743d02SSøren Schmidt 			 */
664c33fe779SJohn Polstra 			if (numsegs == 0)
665ca0387efSJake Burkholder   				base_addr = trunc_page(phdr[i].p_vaddr +
666ca0387efSJake Burkholder 				    rbase);
667c33fe779SJohn Polstra 			numsegs++;
668e1743d02SSøren Schmidt 		}
669e1743d02SSøren Schmidt 	}
670c33fe779SJohn Polstra 	*addr = base_addr;
671c33fe779SJohn Polstra 	*entry = (unsigned long)hdr->e_entry + rbase;
672e1743d02SSøren Schmidt 
673e1743d02SSøren Schmidt fail:
674c8a79999SPeter Wemm 	if (imgp->firstpage)
675c8a79999SPeter Wemm 		exec_unmap_first_page(imgp);
6760b2ed1aeSJeff Roberson 
677911c2be0SMark Peek 	if (nd->ni_vp)
678373d1a3fSAlan Cox 		vput(nd->ni_vp);
679911c2be0SMark Peek 
68068ff2a43SChristian S.J. Peron 	VFS_UNLOCK_GIANT(vfslocked);
681911c2be0SMark Peek 	free(tempdata, M_TEMP);
682e1743d02SSøren Schmidt 
683a7cddfedSJake Burkholder 	return (error);
684e1743d02SSøren Schmidt }
685e1743d02SSøren Schmidt 
686303b270bSEivind Eklund static int
6873ebc1248SPeter Wemm __CONCAT(exec_, __elfN(imgact))(struct image_params *imgp)
688e1743d02SSøren Schmidt {
689ecbb00a2SDoug Rabson 	const Elf_Ehdr *hdr = (const Elf_Ehdr *)imgp->image_header;
69032c01de2SDmitry Chagin 	const Elf_Phdr *phdr;
691e5e6093bSAlan Cox 	Elf_Auxargs *elf_auxargs;
6925856e12eSJohn Dyson 	struct vmspace *vmspace;
69352c24af7SPeter Wemm 	vm_prot_t prot;
69421c2d047SMatthew Dillon 	u_long text_size = 0, data_size = 0, total_size = 0;
695e1743d02SSøren Schmidt 	u_long text_addr = 0, data_addr = 0;
696cac45152SMatthew Dillon 	u_long seg_size, seg_addr;
6977564c4adSKonstantin Belousov 	u_long addr, baddr, et_dyn_addr, entry = 0, proghdr = 0;
69832c01de2SDmitry Chagin 	int32_t osrel = 0;
6997564c4adSKonstantin Belousov 	int error = 0, i, n;
7004113f8d7SPeter Wemm 	const char *interp = NULL, *newinterp = NULL;
701d1dbc694SJohn Polstra 	Elf_Brandinfo *brand_info;
702911c2be0SMark Peek 	char *path;
7035fe3ed62SJake Burkholder 	struct sysentvec *sv;
704e1743d02SSøren Schmidt 
705e1743d02SSøren Schmidt 	/*
706e1743d02SSøren Schmidt 	 * Do we have a valid ELF header ?
707900b28f9SMaxim Sobolev 	 *
708900b28f9SMaxim Sobolev 	 * Only allow ET_EXEC & ET_DYN here, reject ET_DYN later
709900b28f9SMaxim Sobolev 	 * if particular brand doesn't support it.
710e1743d02SSøren Schmidt 	 */
711900b28f9SMaxim Sobolev 	if (__elfN(check_header)(hdr) != 0 ||
712900b28f9SMaxim Sobolev 	    (hdr->e_type != ET_EXEC && hdr->e_type != ET_DYN))
713a7cddfedSJake Burkholder 		return (-1);
714e1743d02SSøren Schmidt 
715e1743d02SSøren Schmidt 	/*
716e1743d02SSøren Schmidt 	 * From here on down, we return an errno, not -1, as we've
717e1743d02SSøren Schmidt 	 * detected an ELF file.
718e1743d02SSøren Schmidt 	 */
719e1743d02SSøren Schmidt 
720e1743d02SSøren Schmidt 	if ((hdr->e_phoff > PAGE_SIZE) ||
72152c24af7SPeter Wemm 	    (hdr->e_phoff + hdr->e_phentsize * hdr->e_phnum) > PAGE_SIZE) {
722c8a79999SPeter Wemm 		/* Only support headers in first page for now */
723a7cddfedSJake Burkholder 		return (ENOEXEC);
724e1743d02SSøren Schmidt 	}
72552c24af7SPeter Wemm 	phdr = (const Elf_Phdr *)(imgp->image_header + hdr->e_phoff);
72693d1c728SKonstantin Belousov 	if (!aligned(phdr, Elf_Addr))
72793d1c728SKonstantin Belousov 		return (ENOEXEC);
7287564c4adSKonstantin Belousov 	n = 0;
7297564c4adSKonstantin Belousov 	baddr = 0;
7305fe3ed62SJake Burkholder 	for (i = 0; i < hdr->e_phnum; i++) {
7317564c4adSKonstantin Belousov 		if (phdr[i].p_type == PT_LOAD) {
7327564c4adSKonstantin Belousov 			if (n == 0)
7337564c4adSKonstantin Belousov 				baddr = phdr[i].p_vaddr;
7347564c4adSKonstantin Belousov 			n++;
7357564c4adSKonstantin Belousov 			continue;
7367564c4adSKonstantin Belousov 		}
737e5e6093bSAlan Cox 		if (phdr[i].p_type == PT_INTERP) {
738e5e6093bSAlan Cox 			/* Path to interpreter */
7395fe3ed62SJake Burkholder 			if (phdr[i].p_filesz > MAXPATHLEN ||
74060bb3943SAlan Cox 			    phdr[i].p_offset + phdr[i].p_filesz > PAGE_SIZE)
74160bb3943SAlan Cox 				return (ENOEXEC);
7425fe3ed62SJake Burkholder 			interp = imgp->image_header + phdr[i].p_offset;
7437564c4adSKonstantin Belousov 			continue;
7443ebc1248SPeter Wemm 		}
7453ebc1248SPeter Wemm 	}
7463ebc1248SPeter Wemm 
74732c01de2SDmitry Chagin 	brand_info = __elfN(get_brandinfo)(imgp, interp, &osrel);
7485fe3ed62SJake Burkholder 	if (brand_info == NULL) {
7495fe3ed62SJake Burkholder 		uprintf("ELF binary type \"%u\" not known.\n",
7505fe3ed62SJake Burkholder 		    hdr->e_ident[EI_OSABI]);
75160bb3943SAlan Cox 		return (ENOEXEC);
7523ebc1248SPeter Wemm 	}
753ab02d85fSKonstantin Belousov 	if (hdr->e_type == ET_DYN) {
754ab02d85fSKonstantin Belousov 		if ((brand_info->flags & BI_CAN_EXEC_DYN) == 0)
755d49b2109SMaxim Sobolev 			return (ENOEXEC);
7567564c4adSKonstantin Belousov 		/*
7577564c4adSKonstantin Belousov 		 * Honour the base load address from the dso if it is
7587564c4adSKonstantin Belousov 		 * non-zero for some reason.
7597564c4adSKonstantin Belousov 		 */
7607564c4adSKonstantin Belousov 		if (baddr == 0)
761ab02d85fSKonstantin Belousov 			et_dyn_addr = ET_DYN_LOAD_ADDR;
7627564c4adSKonstantin Belousov 		else
7637564c4adSKonstantin Belousov 			et_dyn_addr = 0;
764ab02d85fSKonstantin Belousov 	} else
765ab02d85fSKonstantin Belousov 		et_dyn_addr = 0;
7665fe3ed62SJake Burkholder 	sv = brand_info->sysvec;
7679b68618dSPeter Wemm 	if (interp != NULL && brand_info->interp_newpath != NULL)
7684113f8d7SPeter Wemm 		newinterp = brand_info->interp_newpath;
7693ebc1248SPeter Wemm 
77060bb3943SAlan Cox 	/*
77160bb3943SAlan Cox 	 * Avoid a possible deadlock if the current address space is destroyed
77260bb3943SAlan Cox 	 * and that address space maps the locked vnode.  In the common case,
77360bb3943SAlan Cox 	 * the locked vnode's v_usecount is decremented but remains greater
77460bb3943SAlan Cox 	 * than zero.  Consequently, the vnode lock is not needed by vrele().
77560bb3943SAlan Cox 	 * However, in cases where the vnode lock is external, such as nullfs,
77660bb3943SAlan Cox 	 * v_usecount may become zero.
77760bb3943SAlan Cox 	 */
77822db15c0SAttilio Rao 	VOP_UNLOCK(imgp->vp, 0);
77960bb3943SAlan Cox 
78089b57fcfSKonstantin Belousov 	error = exec_new_vmspace(imgp, sv);
78119059a13SJohn Baldwin 	imgp->proc->p_sysent = sv;
782e1743d02SSøren Schmidt 
783cb05b60aSAttilio Rao 	vn_lock(imgp->vp, LK_EXCLUSIVE | LK_RETRY);
78489b57fcfSKonstantin Belousov 	if (error)
78589b57fcfSKonstantin Belousov 		return (error);
78660bb3943SAlan Cox 
7875856e12eSJohn Dyson 	vmspace = imgp->proc->p_vmspace;
7885856e12eSJohn Dyson 
789e1743d02SSøren Schmidt 	for (i = 0; i < hdr->e_phnum; i++) {
790e1743d02SSøren Schmidt 		switch (phdr[i].p_type) {
791e1743d02SSøren Schmidt 		case PT_LOAD:	/* Loadable segment */
7925b33842aSKonstantin Belousov 			if (phdr[i].p_memsz == 0)
7935b33842aSKonstantin Belousov 				break;
79452c24af7SPeter Wemm 			prot = 0;
795e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_X)
796e1743d02SSøren Schmidt   				prot |= VM_PROT_EXECUTE;
797e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_W)
798e1743d02SSøren Schmidt   				prot |= VM_PROT_WRITE;
799e1743d02SSøren Schmidt 			if (phdr[i].p_flags & PF_R)
800e1743d02SSøren Schmidt   				prot |= VM_PROT_READ;
801e1743d02SSøren Schmidt 
8023ebc1248SPeter Wemm #if defined(__ia64__) && __ELF_WORD_SIZE == 32 && defined(IA32_ME_HARDER)
8033ebc1248SPeter Wemm 			/*
8043ebc1248SPeter Wemm 			 * Some x86 binaries assume read == executable,
8053ebc1248SPeter Wemm 			 * notably the M3 runtime and therefore cvsup
8063ebc1248SPeter Wemm 			 */
8073ebc1248SPeter Wemm 			if (prot & VM_PROT_READ)
8083ebc1248SPeter Wemm 				prot |= VM_PROT_EXECUTE;
8093ebc1248SPeter Wemm #endif
8103ebc1248SPeter Wemm 
811373d1a3fSAlan Cox 			if ((error = __elfN(load_section)(vmspace,
812373d1a3fSAlan Cox 			    imgp->object, phdr[i].p_offset,
813ab02d85fSKonstantin Belousov 			    (caddr_t)(uintptr_t)phdr[i].p_vaddr + et_dyn_addr,
81481f223caSJake Burkholder 			    phdr[i].p_memsz, phdr[i].p_filesz, prot,
8155fe3ed62SJake Burkholder 			    sv->sv_pagesize)) != 0)
81660bb3943SAlan Cox 				return (error);
817e1743d02SSøren Schmidt 
818cfaf7e60SDoug Rabson 			/*
819cfaf7e60SDoug Rabson 			 * If this segment contains the program headers,
820cfaf7e60SDoug Rabson 			 * remember their virtual address for the AT_PHDR
821cfaf7e60SDoug Rabson 			 * aux entry. Static binaries don't usually include
822cfaf7e60SDoug Rabson 			 * a PT_PHDR entry.
823cfaf7e60SDoug Rabson 			 */
824cfaf7e60SDoug Rabson 			if (phdr[i].p_offset == 0 &&
825cfaf7e60SDoug Rabson 			    hdr->e_phoff + hdr->e_phnum * hdr->e_phentsize
826cfaf7e60SDoug Rabson 				<= phdr[i].p_filesz)
827ab02d85fSKonstantin Belousov 				proghdr = phdr[i].p_vaddr + hdr->e_phoff +
828ab02d85fSKonstantin Belousov 				    et_dyn_addr;
829cfaf7e60SDoug Rabson 
830ab02d85fSKonstantin Belousov 			seg_addr = trunc_page(phdr[i].p_vaddr + et_dyn_addr);
831cac45152SMatthew Dillon 			seg_size = round_page(phdr[i].p_memsz +
832ab02d85fSKonstantin Belousov 			    phdr[i].p_vaddr + et_dyn_addr - seg_addr);
833cac45152SMatthew Dillon 
834e1743d02SSøren Schmidt 			/*
835920acedbSNathan Whitehorn 			 * Make the largest executable segment the official
836920acedbSNathan Whitehorn 			 * text segment and all others data.
83721c2d047SMatthew Dillon 			 *
83821c2d047SMatthew Dillon 			 * Note that obreak() assumes that data_addr +
83921c2d047SMatthew Dillon 			 * data_size == end of data load area, and the ELF
84021c2d047SMatthew Dillon 			 * file format expects segments to be sorted by
84121c2d047SMatthew Dillon 			 * address.  If multiple data segments exist, the
84221c2d047SMatthew Dillon 			 * last one will be used.
843e1743d02SSøren Schmidt 			 */
844920acedbSNathan Whitehorn 
845920acedbSNathan Whitehorn 			if (phdr[i].p_flags & PF_X && text_size < seg_size) {
8469782ecbaSPeter Wemm 				text_size = seg_size;
8479782ecbaSPeter Wemm 				text_addr = seg_addr;
8489782ecbaSPeter Wemm 			} else {
84921c2d047SMatthew Dillon 				data_size = seg_size;
850cac45152SMatthew Dillon 				data_addr = seg_addr;
851cac45152SMatthew Dillon 			}
85221c2d047SMatthew Dillon 			total_size += seg_size;
85396725dd0SAlexander Kabaev 			break;
85496725dd0SAlexander Kabaev 		case PT_PHDR: 	/* Program header table info */
855ab02d85fSKonstantin Belousov 			proghdr = phdr[i].p_vaddr + et_dyn_addr;
85696725dd0SAlexander Kabaev 			break;
85796725dd0SAlexander Kabaev 		default:
85896725dd0SAlexander Kabaev 			break;
85996725dd0SAlexander Kabaev 		}
86096725dd0SAlexander Kabaev 	}
86196725dd0SAlexander Kabaev 
86296725dd0SAlexander Kabaev 	if (data_addr == 0 && data_size == 0) {
86396725dd0SAlexander Kabaev 		data_addr = text_addr;
86496725dd0SAlexander Kabaev 		data_size = text_size;
86596725dd0SAlexander Kabaev 	}
866cac45152SMatthew Dillon 
867920acedbSNathan Whitehorn 	entry = (u_long)hdr->e_entry + et_dyn_addr;
868920acedbSNathan Whitehorn 
869cac45152SMatthew Dillon 	/*
870cac45152SMatthew Dillon 	 * Check limits.  It should be safe to check the
87196725dd0SAlexander Kabaev 	 * limits after loading the segments since we do
87296725dd0SAlexander Kabaev 	 * not actually fault in all the segments pages.
873cac45152SMatthew Dillon 	 */
87491d5354aSJohn Baldwin 	PROC_LOCK(imgp->proc);
87591d5354aSJohn Baldwin 	if (data_size > lim_cur(imgp->proc, RLIMIT_DATA) ||
876cac45152SMatthew Dillon 	    text_size > maxtsiz ||
87791d5354aSJohn Baldwin 	    total_size > lim_cur(imgp->proc, RLIMIT_VMEM)) {
87891d5354aSJohn Baldwin 		PROC_UNLOCK(imgp->proc);
87960bb3943SAlan Cox 		return (ENOMEM);
880cac45152SMatthew Dillon 	}
881e1743d02SSøren Schmidt 
882e1743d02SSøren Schmidt 	vmspace->vm_tsize = text_size >> PAGE_SHIFT;
8837cd99438SBruce Evans 	vmspace->vm_taddr = (caddr_t)(uintptr_t)text_addr;
884e1743d02SSøren Schmidt 	vmspace->vm_dsize = data_size >> PAGE_SHIFT;
8857cd99438SBruce Evans 	vmspace->vm_daddr = (caddr_t)(uintptr_t)data_addr;
886e1743d02SSøren Schmidt 
887c460ac3aSPeter Wemm 	/*
888c460ac3aSPeter Wemm 	 * We load the dynamic linker where a userland call
889c460ac3aSPeter Wemm 	 * to mmap(0, ...) would put it.  The rationale behind this
890c460ac3aSPeter Wemm 	 * calculation is that it leaves room for the heap to grow to
891c460ac3aSPeter Wemm 	 * its maximum allowed size.
892c460ac3aSPeter Wemm 	 */
893c460ac3aSPeter Wemm 	addr = round_page((vm_offset_t)imgp->proc->p_vmspace->vm_daddr +
89491d5354aSJohn Baldwin 	    lim_max(imgp->proc, RLIMIT_DATA));
89591d5354aSJohn Baldwin 	PROC_UNLOCK(imgp->proc);
896e1743d02SSøren Schmidt 
897ea5a2b2eSSøren Schmidt 	imgp->entry_addr = entry;
898ea5a2b2eSSøren Schmidt 
89960bb3943SAlan Cox 	if (interp != NULL) {
9004113f8d7SPeter Wemm 		int have_interp = FALSE;
90122db15c0SAttilio Rao 		VOP_UNLOCK(imgp->vp, 0);
90260bb3943SAlan Cox 		if (brand_info->emul_path != NULL &&
9039b68618dSPeter Wemm 		    brand_info->emul_path[0] != '\0') {
904a163d034SWarner Losh 			path = malloc(MAXPATHLEN, M_TEMP, M_WAITOK);
90560bb3943SAlan Cox 			snprintf(path, MAXPATHLEN, "%s%s",
90660bb3943SAlan Cox 			    brand_info->emul_path, interp);
9079b68618dSPeter Wemm 			error = __elfN(load_file)(imgp->proc, path, &addr,
9089b68618dSPeter Wemm 			    &imgp->entry_addr, sv->sv_pagesize);
909911c2be0SMark Peek 			free(path, M_TEMP);
9109b68618dSPeter Wemm 			if (error == 0)
9114113f8d7SPeter Wemm 				have_interp = TRUE;
9129b68618dSPeter Wemm 		}
9134113f8d7SPeter Wemm 		if (!have_interp && newinterp != NULL) {
9144113f8d7SPeter Wemm 			error = __elfN(load_file)(imgp->proc, newinterp, &addr,
9154113f8d7SPeter Wemm 			    &imgp->entry_addr, sv->sv_pagesize);
916387ad998SKonstantin Belousov 			if (error == 0)
9174113f8d7SPeter Wemm 				have_interp = TRUE;
9184113f8d7SPeter Wemm 		}
9194113f8d7SPeter Wemm 		if (!have_interp) {
9209b68618dSPeter Wemm 			error = __elfN(load_file)(imgp->proc, interp, &addr,
9219b68618dSPeter Wemm 			    &imgp->entry_addr, sv->sv_pagesize);
92260bb3943SAlan Cox 		}
923cb05b60aSAttilio Rao 		vn_lock(imgp->vp, LK_EXCLUSIVE | LK_RETRY);
9249b68618dSPeter Wemm 		if (error != 0) {
9259b68618dSPeter Wemm 			uprintf("ELF interpreter %s not found\n", interp);
92660bb3943SAlan Cox 			return (error);
927e1743d02SSøren Schmidt 		}
92895c807cfSRobert Watson 	} else
9297564c4adSKonstantin Belousov 		addr = et_dyn_addr;
930ea5a2b2eSSøren Schmidt 
931e1743d02SSøren Schmidt 	/*
932e1743d02SSøren Schmidt 	 * Construct auxargs table (used by the fixup routine)
933e1743d02SSøren Schmidt 	 */
934a163d034SWarner Losh 	elf_auxargs = malloc(sizeof(Elf_Auxargs), M_TEMP, M_WAITOK);
935e1743d02SSøren Schmidt 	elf_auxargs->execfd = -1;
936e1743d02SSøren Schmidt 	elf_auxargs->phdr = proghdr;
937e1743d02SSøren Schmidt 	elf_auxargs->phent = hdr->e_phentsize;
938e1743d02SSøren Schmidt 	elf_auxargs->phnum = hdr->e_phnum;
939e1743d02SSøren Schmidt 	elf_auxargs->pagesz = PAGE_SIZE;
940e1743d02SSøren Schmidt 	elf_auxargs->base = addr;
941e1743d02SSøren Schmidt 	elf_auxargs->flags = 0;
942e1743d02SSøren Schmidt 	elf_auxargs->entry = entry;
943e1743d02SSøren Schmidt 
944e1743d02SSøren Schmidt 	imgp->auxargs = elf_auxargs;
945e1743d02SSøren Schmidt 	imgp->interpreted = 0;
946a0ea661fSNathan Whitehorn 	imgp->reloc_base = addr;
94732c01de2SDmitry Chagin 	imgp->proc->p_osrel = osrel;
948f231de47SKonstantin Belousov 
949a7cddfedSJake Burkholder 	return (error);
950e1743d02SSøren Schmidt }
951e1743d02SSøren Schmidt 
952a360a43dSJake Burkholder #define	suword __CONCAT(suword, __ELF_WORD_SIZE)
9533ebc1248SPeter Wemm 
9543ebc1248SPeter Wemm int
9553ebc1248SPeter Wemm __elfN(freebsd_fixup)(register_t **stack_base, struct image_params *imgp)
956e1743d02SSøren Schmidt {
957ecbb00a2SDoug Rabson 	Elf_Auxargs *args = (Elf_Auxargs *)imgp->auxargs;
958a360a43dSJake Burkholder 	Elf_Addr *base;
959a360a43dSJake Burkholder 	Elf_Addr *pos;
960e1743d02SSøren Schmidt 
961a360a43dSJake Burkholder 	base = (Elf_Addr *)*stack_base;
962610ecfe0SMaxim Sobolev 	pos = base + (imgp->args->argc + imgp->args->envc + 2);
963e1743d02SSøren Schmidt 
96435c2a5a8SWarner Losh 	if (args->execfd != -1)
965e1743d02SSøren Schmidt 		AUXARGS_ENTRY(pos, AT_EXECFD, args->execfd);
966e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_PHDR, args->phdr);
967e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_PHENT, args->phent);
968e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_PHNUM, args->phnum);
969e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_PAGESZ, args->pagesz);
970e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_FLAGS, args->flags);
971e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_ENTRY, args->entry);
972e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_BASE, args->base);
9733ff06357SKonstantin Belousov 	if (imgp->execpathp != 0)
9743ff06357SKonstantin Belousov 		AUXARGS_ENTRY(pos, AT_EXECPATH, imgp->execpathp);
975e1743d02SSøren Schmidt 	AUXARGS_ENTRY(pos, AT_NULL, 0);
976e1743d02SSøren Schmidt 
977e1743d02SSøren Schmidt 	free(imgp->auxargs, M_TEMP);
978e1743d02SSøren Schmidt 	imgp->auxargs = NULL;
979e1743d02SSøren Schmidt 
9803ebc1248SPeter Wemm 	base--;
981610ecfe0SMaxim Sobolev 	suword(base, (long)imgp->args->argc);
9823ebc1248SPeter Wemm 	*stack_base = (register_t *)base;
983a7cddfedSJake Burkholder 	return (0);
984e1743d02SSøren Schmidt }
985e1743d02SSøren Schmidt 
986e1743d02SSøren Schmidt /*
9878c64af4fSJohn Polstra  * Code for generating ELF core dumps.
9888c64af4fSJohn Polstra  */
9898c64af4fSJohn Polstra 
9904d77a549SAlfred Perlstein typedef void (*segment_callback)(vm_map_entry_t, void *);
9910ff27d31SJohn Polstra 
9920ff27d31SJohn Polstra /* Closure for cb_put_phdr(). */
9930ff27d31SJohn Polstra struct phdr_closure {
9940ff27d31SJohn Polstra 	Elf_Phdr *phdr;		/* Program header to fill in */
9950ff27d31SJohn Polstra 	Elf_Off offset;		/* Offset of segment in core file */
9960ff27d31SJohn Polstra };
9970ff27d31SJohn Polstra 
9980ff27d31SJohn Polstra /* Closure for cb_size_segment(). */
9990ff27d31SJohn Polstra struct sseg_closure {
10000ff27d31SJohn Polstra 	int count;		/* Count of writable segments. */
10010ff27d31SJohn Polstra 	size_t size;		/* Total size of all writable segments. */
10020ff27d31SJohn Polstra };
10030ff27d31SJohn Polstra 
10044d77a549SAlfred Perlstein static void cb_put_phdr(vm_map_entry_t, void *);
10054d77a549SAlfred Perlstein static void cb_size_segment(vm_map_entry_t, void *);
1006247aba24SMarcel Moolenaar static void each_writable_segment(struct thread *, segment_callback, void *);
10073ebc1248SPeter Wemm static int __elfN(corehdr)(struct thread *, struct vnode *, struct ucred *,
1008e7228204SAlfred Perlstein     int, void *, size_t, gzFile);
1009247aba24SMarcel Moolenaar static void __elfN(puthdr)(struct thread *, void *, size_t *, int);
10103ebc1248SPeter Wemm static void __elfN(putnote)(void *, size_t *, const char *, int,
10114d77a549SAlfred Perlstein     const void *, size_t);
10128c64af4fSJohn Polstra 
1013e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1014e7228204SAlfred Perlstein extern int compress_user_cores;
1015e7228204SAlfred Perlstein extern int compress_user_cores_gzlevel;
1016e7228204SAlfred Perlstein #endif
1017e7228204SAlfred Perlstein 
1018e7228204SAlfred Perlstein static int
1019e7228204SAlfred Perlstein core_output(struct vnode *vp, void *base, size_t len, off_t offset,
1020e7228204SAlfred Perlstein     struct ucred *active_cred, struct ucred *file_cred,
1021e7228204SAlfred Perlstein     struct thread *td, char *core_buf, gzFile gzfile) {
1022e7228204SAlfred Perlstein 
1023e7228204SAlfred Perlstein 	int error;
1024e7228204SAlfred Perlstein 	if (gzfile) {
1025e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1026e7228204SAlfred Perlstein 		error = compress_core(gzfile, base, core_buf, len, td);
1027e7228204SAlfred Perlstein #else
1028e7228204SAlfred Perlstein 		panic("shouldn't be here");
1029e7228204SAlfred Perlstein #endif
1030e7228204SAlfred Perlstein 	} else {
1031e7228204SAlfred Perlstein 		error = vn_rdwr_inchunks(UIO_WRITE, vp, base, len, offset,
1032e7228204SAlfred Perlstein 		    UIO_USERSPACE, IO_UNIT | IO_DIRECT, active_cred, file_cred,
1033e7228204SAlfred Perlstein 		    NULL, td);
1034e7228204SAlfred Perlstein 	}
1035e7228204SAlfred Perlstein 	return (error);
1036e7228204SAlfred Perlstein }
1037e7228204SAlfred Perlstein 
10388c64af4fSJohn Polstra int
1039e7228204SAlfred Perlstein __elfN(coredump)(struct thread *td, struct vnode *vp, off_t limit, int flags)
1040fca666a1SJulian Elischer {
1041247aba24SMarcel Moolenaar 	struct ucred *cred = td->td_ucred;
1042fca666a1SJulian Elischer 	int error = 0;
10430ff27d31SJohn Polstra 	struct sseg_closure seginfo;
10440ff27d31SJohn Polstra 	void *hdr;
10458c64af4fSJohn Polstra 	size_t hdrsize;
10468c64af4fSJohn Polstra 
1047e7228204SAlfred Perlstein 	gzFile gzfile = Z_NULL;
1048e7228204SAlfred Perlstein 	char *core_buf = NULL;
1049e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1050e7228204SAlfred Perlstein 	char gzopen_flags[8];
1051e7228204SAlfred Perlstein 	char *p;
1052e7228204SAlfred Perlstein 	int doing_compress = flags & IMGACT_CORE_COMPRESS;
1053e7228204SAlfred Perlstein #endif
1054e7228204SAlfred Perlstein 
1055e7228204SAlfred Perlstein 	hdr = NULL;
1056e7228204SAlfred Perlstein 
1057e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1058e7228204SAlfred Perlstein         if (doing_compress) {
1059e7228204SAlfred Perlstein                 p = gzopen_flags;
1060e7228204SAlfred Perlstein                 *p++ = 'w';
1061e7228204SAlfred Perlstein                 if (compress_user_cores_gzlevel >= 0 &&
1062e7228204SAlfred Perlstein                     compress_user_cores_gzlevel <= 9)
1063e7228204SAlfred Perlstein                         *p++ = '0' + compress_user_cores_gzlevel;
1064e7228204SAlfred Perlstein                 *p = 0;
1065e7228204SAlfred Perlstein                 gzfile = gz_open("", gzopen_flags, vp);
1066e7228204SAlfred Perlstein                 if (gzfile == Z_NULL) {
1067e7228204SAlfred Perlstein                         error = EFAULT;
1068e7228204SAlfred Perlstein                         goto done;
1069e7228204SAlfred Perlstein                 }
1070e7228204SAlfred Perlstein                 core_buf = malloc(CORE_BUF_SIZE, M_TEMP, M_WAITOK | M_ZERO);
1071e7228204SAlfred Perlstein                 if (!core_buf) {
1072e7228204SAlfred Perlstein                         error = ENOMEM;
1073e7228204SAlfred Perlstein                         goto done;
1074e7228204SAlfred Perlstein                 }
1075e7228204SAlfred Perlstein         }
1076e7228204SAlfred Perlstein #endif
1077e7228204SAlfred Perlstein 
10780ff27d31SJohn Polstra 	/* Size the program segments. */
10790ff27d31SJohn Polstra 	seginfo.count = 0;
10800ff27d31SJohn Polstra 	seginfo.size = 0;
1081247aba24SMarcel Moolenaar 	each_writable_segment(td, cb_size_segment, &seginfo);
10820ff27d31SJohn Polstra 
10830ff27d31SJohn Polstra 	/*
10840ff27d31SJohn Polstra 	 * Calculate the size of the core file header area by making
10850ff27d31SJohn Polstra 	 * a dry run of generating it.  Nothing is written, but the
10860ff27d31SJohn Polstra 	 * size is calculated.
10870ff27d31SJohn Polstra 	 */
10880ff27d31SJohn Polstra 	hdrsize = 0;
1089247aba24SMarcel Moolenaar 	__elfN(puthdr)(td, (void *)NULL, &hdrsize, seginfo.count);
10900ff27d31SJohn Polstra 
1091*fba6b1afSAlfred Perlstein 	if (hdrsize + seginfo.size >= limit) {
1092*fba6b1afSAlfred Perlstein 		error = EFAULT;
1093*fba6b1afSAlfred Perlstein 		goto done;
1094*fba6b1afSAlfred Perlstein 	}
10950ff27d31SJohn Polstra 
10960ff27d31SJohn Polstra 	/*
10970ff27d31SJohn Polstra 	 * Allocate memory for building the header, fill it up,
10980ff27d31SJohn Polstra 	 * and write it out.
10990ff27d31SJohn Polstra 	 */
1100a163d034SWarner Losh 	hdr = malloc(hdrsize, M_TEMP, M_WAITOK);
11010ff27d31SJohn Polstra 	if (hdr == NULL) {
1102*fba6b1afSAlfred Perlstein 		error = EINVAL;
1103*fba6b1afSAlfred Perlstein 		goto done;
11040ff27d31SJohn Polstra 	}
1105e7228204SAlfred Perlstein 	error = __elfN(corehdr)(td, vp, cred, seginfo.count, hdr, hdrsize,
1106e7228204SAlfred Perlstein 	    gzfile);
11070ff27d31SJohn Polstra 
11080ff27d31SJohn Polstra 	/* Write the contents of all of the writable segments. */
11090ff27d31SJohn Polstra 	if (error == 0) {
11100ff27d31SJohn Polstra 		Elf_Phdr *php;
11112b471bc6STim J. Robbins 		off_t offset;
11120ff27d31SJohn Polstra 		int i;
11130ff27d31SJohn Polstra 
11140ff27d31SJohn Polstra 		php = (Elf_Phdr *)((char *)hdr + sizeof(Elf_Ehdr)) + 1;
11150ff27d31SJohn Polstra 		offset = hdrsize;
11160ff27d31SJohn Polstra 		for (i = 0; i < seginfo.count; i++) {
1117e7228204SAlfred Perlstein 			error = core_output(vp, (caddr_t)(uintptr_t)php->p_vaddr,
1118e7228204SAlfred Perlstein 			    php->p_filesz, offset, cred, NOCRED, curthread, core_buf, gzfile);
11190ff27d31SJohn Polstra 			if (error != 0)
11202b471bc6STim J. Robbins 				break;
11210ff27d31SJohn Polstra 			offset += php->p_filesz;
11220ff27d31SJohn Polstra 			php++;
11230ff27d31SJohn Polstra 		}
11240ff27d31SJohn Polstra 	}
1125e7228204SAlfred Perlstein 	if (error) {
1126e7228204SAlfred Perlstein 		log(LOG_WARNING,
1127e7228204SAlfred Perlstein 		    "Failed to write core file for process %s (error %d)\n",
1128e7228204SAlfred Perlstein 		    curproc->p_comm, error);
1129e7228204SAlfred Perlstein 	}
1130e7228204SAlfred Perlstein 
1131e7228204SAlfred Perlstein done:
1132*fba6b1afSAlfred Perlstein #ifdef COMPRESS_USER_CORES
1133e7228204SAlfred Perlstein 	if (core_buf)
1134e7228204SAlfred Perlstein 		free(core_buf, M_TEMP);
1135e7228204SAlfred Perlstein 	if (gzfile)
1136e7228204SAlfred Perlstein 		gzclose(gzfile);
11378b325009SAlfred Perlstein #endif
1138e7228204SAlfred Perlstein 
11390ff27d31SJohn Polstra 	free(hdr, M_TEMP);
11400ff27d31SJohn Polstra 
1141a7cddfedSJake Burkholder 	return (error);
11428c64af4fSJohn Polstra }
11438c64af4fSJohn Polstra 
11440ff27d31SJohn Polstra /*
11450ff27d31SJohn Polstra  * A callback for each_writable_segment() to write out the segment's
11460ff27d31SJohn Polstra  * program header entry.
11470ff27d31SJohn Polstra  */
11480ff27d31SJohn Polstra static void
11490ff27d31SJohn Polstra cb_put_phdr(entry, closure)
11500ff27d31SJohn Polstra 	vm_map_entry_t entry;
11510ff27d31SJohn Polstra 	void *closure;
11520ff27d31SJohn Polstra {
11530ff27d31SJohn Polstra 	struct phdr_closure *phc = (struct phdr_closure *)closure;
11540ff27d31SJohn Polstra 	Elf_Phdr *phdr = phc->phdr;
11550ff27d31SJohn Polstra 
11560ff27d31SJohn Polstra 	phc->offset = round_page(phc->offset);
11570ff27d31SJohn Polstra 
11580ff27d31SJohn Polstra 	phdr->p_type = PT_LOAD;
11590ff27d31SJohn Polstra 	phdr->p_offset = phc->offset;
11600ff27d31SJohn Polstra 	phdr->p_vaddr = entry->start;
11610ff27d31SJohn Polstra 	phdr->p_paddr = 0;
11620ff27d31SJohn Polstra 	phdr->p_filesz = phdr->p_memsz = entry->end - entry->start;
11630ff27d31SJohn Polstra 	phdr->p_align = PAGE_SIZE;
11640ff27d31SJohn Polstra 	phdr->p_flags = 0;
11650ff27d31SJohn Polstra 	if (entry->protection & VM_PROT_READ)
11660ff27d31SJohn Polstra 		phdr->p_flags |= PF_R;
11670ff27d31SJohn Polstra 	if (entry->protection & VM_PROT_WRITE)
11680ff27d31SJohn Polstra 		phdr->p_flags |= PF_W;
11690ff27d31SJohn Polstra 	if (entry->protection & VM_PROT_EXECUTE)
11700ff27d31SJohn Polstra 		phdr->p_flags |= PF_X;
11710ff27d31SJohn Polstra 
11720ff27d31SJohn Polstra 	phc->offset += phdr->p_filesz;
11730ff27d31SJohn Polstra 	phc->phdr++;
11740ff27d31SJohn Polstra }
11750ff27d31SJohn Polstra 
11760ff27d31SJohn Polstra /*
11770ff27d31SJohn Polstra  * A callback for each_writable_segment() to gather information about
11780ff27d31SJohn Polstra  * the number of segments and their total size.
11790ff27d31SJohn Polstra  */
11800ff27d31SJohn Polstra static void
11810ff27d31SJohn Polstra cb_size_segment(entry, closure)
11820ff27d31SJohn Polstra 	vm_map_entry_t entry;
11830ff27d31SJohn Polstra 	void *closure;
11840ff27d31SJohn Polstra {
11850ff27d31SJohn Polstra 	struct sseg_closure *ssc = (struct sseg_closure *)closure;
11860ff27d31SJohn Polstra 
11870ff27d31SJohn Polstra 	ssc->count++;
11880ff27d31SJohn Polstra 	ssc->size += entry->end - entry->start;
11890ff27d31SJohn Polstra }
11900ff27d31SJohn Polstra 
11910ff27d31SJohn Polstra /*
11920ff27d31SJohn Polstra  * For each writable segment in the process's memory map, call the given
11930ff27d31SJohn Polstra  * function with a pointer to the map entry and some arbitrary
11940ff27d31SJohn Polstra  * caller-supplied data.
11950ff27d31SJohn Polstra  */
11960ff27d31SJohn Polstra static void
1197247aba24SMarcel Moolenaar each_writable_segment(td, func, closure)
1198247aba24SMarcel Moolenaar 	struct thread *td;
11990ff27d31SJohn Polstra 	segment_callback func;
12000ff27d31SJohn Polstra 	void *closure;
12010ff27d31SJohn Polstra {
1202247aba24SMarcel Moolenaar 	struct proc *p = td->td_proc;
12030ff27d31SJohn Polstra 	vm_map_t map = &p->p_vmspace->vm_map;
12040ff27d31SJohn Polstra 	vm_map_entry_t entry;
1205976a87a2SAlan Cox 	vm_object_t backing_object, object;
1206976a87a2SAlan Cox 	boolean_t ignore_entry;
12070ff27d31SJohn Polstra 
1208976a87a2SAlan Cox 	vm_map_lock_read(map);
12090ff27d31SJohn Polstra 	for (entry = map->header.next; entry != &map->header;
12100ff27d31SJohn Polstra 	    entry = entry->next) {
1211fa7dd9c5SMatthew Dillon 		/*
1212fa7dd9c5SMatthew Dillon 		 * Don't dump inaccessible mappings, deal with legacy
1213fa7dd9c5SMatthew Dillon 		 * coredump mode.
1214fa7dd9c5SMatthew Dillon 		 *
1215fa7dd9c5SMatthew Dillon 		 * Note that read-only segments related to the elf binary
1216fa7dd9c5SMatthew Dillon 		 * are marked MAP_ENTRY_NOCOREDUMP now so we no longer
1217fa7dd9c5SMatthew Dillon 		 * need to arbitrarily ignore such segments.
1218fa7dd9c5SMatthew Dillon 		 */
1219fa7dd9c5SMatthew Dillon 		if (elf_legacy_coredump) {
1220fa7dd9c5SMatthew Dillon 			if ((entry->protection & VM_PROT_RW) != VM_PROT_RW)
12210ff27d31SJohn Polstra 				continue;
1222fa7dd9c5SMatthew Dillon 		} else {
1223fa7dd9c5SMatthew Dillon 			if ((entry->protection & VM_PROT_ALL) == 0)
1224fa7dd9c5SMatthew Dillon 				continue;
1225fa7dd9c5SMatthew Dillon 		}
12260ff27d31SJohn Polstra 
12279730a5daSPaul Saab 		/*
1228fa7dd9c5SMatthew Dillon 		 * Dont include memory segment in the coredump if
1229fa7dd9c5SMatthew Dillon 		 * MAP_NOCORE is set in mmap(2) or MADV_NOCORE in
1230fa7dd9c5SMatthew Dillon 		 * madvise(2).  Do not dump submaps (i.e. parts of the
1231fa7dd9c5SMatthew Dillon 		 * kernel map).
12329730a5daSPaul Saab 		 */
1233fa7dd9c5SMatthew Dillon 		if (entry->eflags & (MAP_ENTRY_NOCOREDUMP|MAP_ENTRY_IS_SUB_MAP))
12349730a5daSPaul Saab 			continue;
12359730a5daSPaul Saab 
1236976a87a2SAlan Cox 		if ((object = entry->object.vm_object) == NULL)
12370ff27d31SJohn Polstra 			continue;
12380ff27d31SJohn Polstra 
12390ff27d31SJohn Polstra 		/* Ignore memory-mapped devices and such things. */
1240976a87a2SAlan Cox 		VM_OBJECT_LOCK(object);
1241976a87a2SAlan Cox 		while ((backing_object = object->backing_object) != NULL) {
1242976a87a2SAlan Cox 			VM_OBJECT_LOCK(backing_object);
1243976a87a2SAlan Cox 			VM_OBJECT_UNLOCK(object);
1244976a87a2SAlan Cox 			object = backing_object;
1245976a87a2SAlan Cox 		}
1246976a87a2SAlan Cox 		ignore_entry = object->type != OBJT_DEFAULT &&
1247976a87a2SAlan Cox 		    object->type != OBJT_SWAP && object->type != OBJT_VNODE;
1248976a87a2SAlan Cox 		VM_OBJECT_UNLOCK(object);
1249976a87a2SAlan Cox 		if (ignore_entry)
12500ff27d31SJohn Polstra 			continue;
12510ff27d31SJohn Polstra 
12520ff27d31SJohn Polstra 		(*func)(entry, closure);
12530ff27d31SJohn Polstra 	}
1254976a87a2SAlan Cox 	vm_map_unlock_read(map);
12550ff27d31SJohn Polstra }
12560ff27d31SJohn Polstra 
12570ff27d31SJohn Polstra /*
12580ff27d31SJohn Polstra  * Write the core file header to the file, including padding up to
12590ff27d31SJohn Polstra  * the page boundary.
12600ff27d31SJohn Polstra  */
12618c64af4fSJohn Polstra static int
1262e7228204SAlfred Perlstein __elfN(corehdr)(td, vp, cred, numsegs, hdr, hdrsize, gzfile)
1263b40ce416SJulian Elischer 	struct thread *td;
12648c64af4fSJohn Polstra 	struct vnode *vp;
12658c64af4fSJohn Polstra 	struct ucred *cred;
12660ff27d31SJohn Polstra 	int numsegs;
12670ff27d31SJohn Polstra 	size_t hdrsize;
12680ff27d31SJohn Polstra 	void *hdr;
1269e7228204SAlfred Perlstein 	gzFile gzfile;
12708c64af4fSJohn Polstra {
1271911c2be0SMark Peek 	size_t off;
12728c64af4fSJohn Polstra 
12738c64af4fSJohn Polstra 	/* Fill in the header. */
12740ff27d31SJohn Polstra 	bzero(hdr, hdrsize);
12758c64af4fSJohn Polstra 	off = 0;
1276247aba24SMarcel Moolenaar 	__elfN(puthdr)(td, hdr, &off, numsegs);
12778c64af4fSJohn Polstra 
1278e7228204SAlfred Perlstein 	if (!gzfile) {
12798c64af4fSJohn Polstra 		/* Write it to the core file. */
1280a7cddfedSJake Burkholder 		return (vn_rdwr_inchunks(UIO_WRITE, vp, hdr, hdrsize, (off_t)0,
12819ca43589SRobert Watson 			UIO_SYSSPACE, IO_UNIT | IO_DIRECT, cred, NOCRED, NULL,
12826617724cSJeff Roberson 			td));
1283e7228204SAlfred Perlstein 	} else {
1284e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1285e7228204SAlfred Perlstein 		if (gzwrite(gzfile, hdr, hdrsize) != hdrsize) {
1286e7228204SAlfred Perlstein 			log(LOG_WARNING,
1287e7228204SAlfred Perlstein 			    "Failed to compress core file header for process"
1288e7228204SAlfred Perlstein 			    " %s.\n", curproc->p_comm);
1289e7228204SAlfred Perlstein 			return (EFAULT);
1290e7228204SAlfred Perlstein 		}
1291e7228204SAlfred Perlstein 		else {
1292e7228204SAlfred Perlstein 			return (0);
1293e7228204SAlfred Perlstein 		}
1294e7228204SAlfred Perlstein #else
1295e7228204SAlfred Perlstein 		panic("shouldn't be here");
1296e7228204SAlfred Perlstein #endif
1297e7228204SAlfred Perlstein 	}
1298dada0278SJohn Polstra }
1299dada0278SJohn Polstra 
1300841c0c7eSNathan Whitehorn #if defined(COMPAT_FREEBSD32) && __ELF_WORD_SIZE == 32
1301841c0c7eSNathan Whitehorn #include <compat/freebsd32/freebsd32.h>
1302841c0c7eSNathan Whitehorn 
130362919d78SPeter Wemm typedef struct prstatus32 elf_prstatus_t;
130462919d78SPeter Wemm typedef struct prpsinfo32 elf_prpsinfo_t;
130562919d78SPeter Wemm typedef struct fpreg32 elf_prfpregset_t;
130662919d78SPeter Wemm typedef struct fpreg32 elf_fpregset_t;
130762919d78SPeter Wemm typedef struct reg32 elf_gregset_t;
130862919d78SPeter Wemm #else
130962919d78SPeter Wemm typedef prstatus_t elf_prstatus_t;
131062919d78SPeter Wemm typedef prpsinfo_t elf_prpsinfo_t;
131162919d78SPeter Wemm typedef prfpregset_t elf_prfpregset_t;
131262919d78SPeter Wemm typedef prfpregset_t elf_fpregset_t;
131362919d78SPeter Wemm typedef gregset_t elf_gregset_t;
131462919d78SPeter Wemm #endif
131562919d78SPeter Wemm 
13168c64af4fSJohn Polstra static void
1317247aba24SMarcel Moolenaar __elfN(puthdr)(struct thread *td, void *dst, size_t *off, int numsegs)
13188c64af4fSJohn Polstra {
13198c9b7b2cSMarcel Moolenaar 	struct {
132062919d78SPeter Wemm 		elf_prstatus_t status;
132162919d78SPeter Wemm 		elf_prfpregset_t fpregset;
132262919d78SPeter Wemm 		elf_prpsinfo_t psinfo;
13238c9b7b2cSMarcel Moolenaar 	} *tempdata;
132462919d78SPeter Wemm 	elf_prstatus_t *status;
132562919d78SPeter Wemm 	elf_prfpregset_t *fpregset;
132662919d78SPeter Wemm 	elf_prpsinfo_t *psinfo;
1327247aba24SMarcel Moolenaar 	struct proc *p;
1328247aba24SMarcel Moolenaar 	struct thread *thr;
13298c9b7b2cSMarcel Moolenaar 	size_t ehoff, noteoff, notesz, phoff;
13308c64af4fSJohn Polstra 
1331247aba24SMarcel Moolenaar 	p = td->td_proc;
1332247aba24SMarcel Moolenaar 
13338c64af4fSJohn Polstra 	ehoff = *off;
13348c64af4fSJohn Polstra 	*off += sizeof(Elf_Ehdr);
13358c64af4fSJohn Polstra 
13368c64af4fSJohn Polstra 	phoff = *off;
13370ff27d31SJohn Polstra 	*off += (numsegs + 1) * sizeof(Elf_Phdr);
13388c64af4fSJohn Polstra 
13398c64af4fSJohn Polstra 	noteoff = *off;
13408c9b7b2cSMarcel Moolenaar 	/*
13418c9b7b2cSMarcel Moolenaar 	 * Don't allocate space for the notes if we're just calculating
13428c9b7b2cSMarcel Moolenaar 	 * the size of the header. We also don't collect the data.
13438c9b7b2cSMarcel Moolenaar 	 */
13448c9b7b2cSMarcel Moolenaar 	if (dst != NULL) {
13458c9b7b2cSMarcel Moolenaar 		tempdata = malloc(sizeof(*tempdata), M_TEMP, M_ZERO|M_WAITOK);
13468c9b7b2cSMarcel Moolenaar 		status = &tempdata->status;
13478c9b7b2cSMarcel Moolenaar 		fpregset = &tempdata->fpregset;
13488c9b7b2cSMarcel Moolenaar 		psinfo = &tempdata->psinfo;
13498c9b7b2cSMarcel Moolenaar 	} else {
13508c9b7b2cSMarcel Moolenaar 		tempdata = NULL;
13518c9b7b2cSMarcel Moolenaar 		status = NULL;
13528c9b7b2cSMarcel Moolenaar 		fpregset = NULL;
13538c9b7b2cSMarcel Moolenaar 		psinfo = NULL;
13548c9b7b2cSMarcel Moolenaar 	}
13558c9b7b2cSMarcel Moolenaar 
13568c9b7b2cSMarcel Moolenaar 	if (dst != NULL) {
13578c9b7b2cSMarcel Moolenaar 		psinfo->pr_version = PRPSINFO_VERSION;
135862919d78SPeter Wemm 		psinfo->pr_psinfosz = sizeof(elf_prpsinfo_t);
1359ccd3953eSJohn Baldwin 		strlcpy(psinfo->pr_fname, p->p_comm, sizeof(psinfo->pr_fname));
13608c9b7b2cSMarcel Moolenaar 		/*
13618c9b7b2cSMarcel Moolenaar 		 * XXX - We don't fill in the command line arguments properly
13628c9b7b2cSMarcel Moolenaar 		 * yet.
13638c9b7b2cSMarcel Moolenaar 		 */
1364ccd3953eSJohn Baldwin 		strlcpy(psinfo->pr_psargs, p->p_comm,
13658c9b7b2cSMarcel Moolenaar 		    sizeof(psinfo->pr_psargs));
13668c9b7b2cSMarcel Moolenaar 	}
13678c9b7b2cSMarcel Moolenaar 	__elfN(putnote)(dst, off, "FreeBSD", NT_PRPSINFO, psinfo,
13688c9b7b2cSMarcel Moolenaar 	    sizeof *psinfo);
13698c9b7b2cSMarcel Moolenaar 
13708c9b7b2cSMarcel Moolenaar 	/*
13711f7a1baaSMarcel Moolenaar 	 * To have the debugger select the right thread (LWP) as the initial
13721f7a1baaSMarcel Moolenaar 	 * thread, we dump the state of the thread passed to us in td first.
13731f7a1baaSMarcel Moolenaar 	 * This is the thread that causes the core dump and thus likely to
13741f7a1baaSMarcel Moolenaar 	 * be the right thread one wants to have selected in the debugger.
13758c9b7b2cSMarcel Moolenaar 	 */
1376247aba24SMarcel Moolenaar 	thr = td;
1377247aba24SMarcel Moolenaar 	while (thr != NULL) {
13788c9b7b2cSMarcel Moolenaar 		if (dst != NULL) {
13798c9b7b2cSMarcel Moolenaar 			status->pr_version = PRSTATUS_VERSION;
138062919d78SPeter Wemm 			status->pr_statussz = sizeof(elf_prstatus_t);
138162919d78SPeter Wemm 			status->pr_gregsetsz = sizeof(elf_gregset_t);
138262919d78SPeter Wemm 			status->pr_fpregsetsz = sizeof(elf_fpregset_t);
13838c9b7b2cSMarcel Moolenaar 			status->pr_osreldate = osreldate;
13848c9b7b2cSMarcel Moolenaar 			status->pr_cursig = p->p_sig;
13851f7a1baaSMarcel Moolenaar 			status->pr_pid = thr->td_tid;
1386841c0c7eSNathan Whitehorn #if defined(COMPAT_FREEBSD32) && __ELF_WORD_SIZE == 32
138762919d78SPeter Wemm 			fill_regs32(thr, &status->pr_reg);
138862919d78SPeter Wemm 			fill_fpregs32(thr, fpregset);
138962919d78SPeter Wemm #else
13908c9b7b2cSMarcel Moolenaar 			fill_regs(thr, &status->pr_reg);
13918c9b7b2cSMarcel Moolenaar 			fill_fpregs(thr, fpregset);
139262919d78SPeter Wemm #endif
13938c9b7b2cSMarcel Moolenaar 		}
13943ebc1248SPeter Wemm 		__elfN(putnote)(dst, off, "FreeBSD", NT_PRSTATUS, status,
13958c64af4fSJohn Polstra 		    sizeof *status);
13963ebc1248SPeter Wemm 		__elfN(putnote)(dst, off, "FreeBSD", NT_FPREGSET, fpregset,
13978c64af4fSJohn Polstra 		    sizeof *fpregset);
13984da47b2fSMarcel Moolenaar 		/*
13994da47b2fSMarcel Moolenaar 		 * Allow for MD specific notes, as well as any MD
14004da47b2fSMarcel Moolenaar 		 * specific preparations for writing MI notes.
14014da47b2fSMarcel Moolenaar 		 */
14024da47b2fSMarcel Moolenaar 		__elfN(dump_thread)(thr, dst, off);
1403247aba24SMarcel Moolenaar 
1404247aba24SMarcel Moolenaar 		thr = (thr == td) ? TAILQ_FIRST(&p->p_threads) :
14058c9b7b2cSMarcel Moolenaar 		    TAILQ_NEXT(thr, td_plist);
1406247aba24SMarcel Moolenaar 		if (thr == td)
14078c9b7b2cSMarcel Moolenaar 			thr = TAILQ_NEXT(thr, td_plist);
1408247aba24SMarcel Moolenaar 	}
14098c9b7b2cSMarcel Moolenaar 
14108c64af4fSJohn Polstra 	notesz = *off - noteoff;
14118c64af4fSJohn Polstra 
14128c9b7b2cSMarcel Moolenaar 	if (dst != NULL)
14138c9b7b2cSMarcel Moolenaar 		free(tempdata, M_TEMP);
14148c9b7b2cSMarcel Moolenaar 
14150ff27d31SJohn Polstra 	/* Align up to a page boundary for the program segments. */
14168c64af4fSJohn Polstra 	*off = round_page(*off);
14178c64af4fSJohn Polstra 
14188c64af4fSJohn Polstra 	if (dst != NULL) {
14198c64af4fSJohn Polstra 		Elf_Ehdr *ehdr;
14208c64af4fSJohn Polstra 		Elf_Phdr *phdr;
14210ff27d31SJohn Polstra 		struct phdr_closure phc;
14228c64af4fSJohn Polstra 
14238c64af4fSJohn Polstra 		/*
14248c64af4fSJohn Polstra 		 * Fill in the ELF header.
14258c64af4fSJohn Polstra 		 */
14268c64af4fSJohn Polstra 		ehdr = (Elf_Ehdr *)((char *)dst + ehoff);
14278c64af4fSJohn Polstra 		ehdr->e_ident[EI_MAG0] = ELFMAG0;
14288c64af4fSJohn Polstra 		ehdr->e_ident[EI_MAG1] = ELFMAG1;
14298c64af4fSJohn Polstra 		ehdr->e_ident[EI_MAG2] = ELFMAG2;
14308c64af4fSJohn Polstra 		ehdr->e_ident[EI_MAG3] = ELFMAG3;
14318c64af4fSJohn Polstra 		ehdr->e_ident[EI_CLASS] = ELF_CLASS;
14328c64af4fSJohn Polstra 		ehdr->e_ident[EI_DATA] = ELF_DATA;
14338c64af4fSJohn Polstra 		ehdr->e_ident[EI_VERSION] = EV_CURRENT;
1434c815a20cSDavid E. O'Brien 		ehdr->e_ident[EI_OSABI] = ELFOSABI_FREEBSD;
1435c815a20cSDavid E. O'Brien 		ehdr->e_ident[EI_ABIVERSION] = 0;
14368c64af4fSJohn Polstra 		ehdr->e_ident[EI_PAD] = 0;
14378c64af4fSJohn Polstra 		ehdr->e_type = ET_CORE;
1438841c0c7eSNathan Whitehorn #if defined(COMPAT_FREEBSD32) && __ELF_WORD_SIZE == 32
1439841c0c7eSNathan Whitehorn 		ehdr->e_machine = ELF_ARCH32;
144062919d78SPeter Wemm #else
14418c64af4fSJohn Polstra 		ehdr->e_machine = ELF_ARCH;
144262919d78SPeter Wemm #endif
14438c64af4fSJohn Polstra 		ehdr->e_version = EV_CURRENT;
14448c64af4fSJohn Polstra 		ehdr->e_entry = 0;
14458c64af4fSJohn Polstra 		ehdr->e_phoff = phoff;
14468c64af4fSJohn Polstra 		ehdr->e_flags = 0;
14478c64af4fSJohn Polstra 		ehdr->e_ehsize = sizeof(Elf_Ehdr);
14488c64af4fSJohn Polstra 		ehdr->e_phentsize = sizeof(Elf_Phdr);
14490ff27d31SJohn Polstra 		ehdr->e_phnum = numsegs + 1;
14508c64af4fSJohn Polstra 		ehdr->e_shentsize = sizeof(Elf_Shdr);
14518c64af4fSJohn Polstra 		ehdr->e_shnum = 0;
14528c64af4fSJohn Polstra 		ehdr->e_shstrndx = SHN_UNDEF;
14538c64af4fSJohn Polstra 
14548c64af4fSJohn Polstra 		/*
14558c64af4fSJohn Polstra 		 * Fill in the program header entries.
14568c64af4fSJohn Polstra 		 */
14578c64af4fSJohn Polstra 		phdr = (Elf_Phdr *)((char *)dst + phoff);
14588c64af4fSJohn Polstra 
14598c64af4fSJohn Polstra 		/* The note segement. */
14608c64af4fSJohn Polstra 		phdr->p_type = PT_NOTE;
14618c64af4fSJohn Polstra 		phdr->p_offset = noteoff;
14628c64af4fSJohn Polstra 		phdr->p_vaddr = 0;
14638c64af4fSJohn Polstra 		phdr->p_paddr = 0;
14648c64af4fSJohn Polstra 		phdr->p_filesz = notesz;
14658c64af4fSJohn Polstra 		phdr->p_memsz = 0;
14668c64af4fSJohn Polstra 		phdr->p_flags = 0;
14678c64af4fSJohn Polstra 		phdr->p_align = 0;
14688c64af4fSJohn Polstra 		phdr++;
14698c64af4fSJohn Polstra 
14700ff27d31SJohn Polstra 		/* All the writable segments from the program. */
14710ff27d31SJohn Polstra 		phc.phdr = phdr;
14720ff27d31SJohn Polstra 		phc.offset = *off;
1473247aba24SMarcel Moolenaar 		each_writable_segment(td, cb_put_phdr, &phc);
14748c64af4fSJohn Polstra 	}
14758c64af4fSJohn Polstra }
14768c64af4fSJohn Polstra 
14778c64af4fSJohn Polstra static void
14783ebc1248SPeter Wemm __elfN(putnote)(void *dst, size_t *off, const char *name, int type,
14798c64af4fSJohn Polstra     const void *desc, size_t descsz)
14808c64af4fSJohn Polstra {
14818c64af4fSJohn Polstra 	Elf_Note note;
14828c64af4fSJohn Polstra 
14838c64af4fSJohn Polstra 	note.n_namesz = strlen(name) + 1;
14848c64af4fSJohn Polstra 	note.n_descsz = descsz;
14858c64af4fSJohn Polstra 	note.n_type = type;
14868c64af4fSJohn Polstra 	if (dst != NULL)
14878c64af4fSJohn Polstra 		bcopy(&note, (char *)dst + *off, sizeof note);
14888c64af4fSJohn Polstra 	*off += sizeof note;
14898c64af4fSJohn Polstra 	if (dst != NULL)
14908c64af4fSJohn Polstra 		bcopy(name, (char *)dst + *off, note.n_namesz);
14918c64af4fSJohn Polstra 	*off += roundup2(note.n_namesz, sizeof(Elf_Size));
14928c64af4fSJohn Polstra 	if (dst != NULL)
14938c64af4fSJohn Polstra 		bcopy(desc, (char *)dst + *off, note.n_descsz);
14948c64af4fSJohn Polstra 	*off += roundup2(note.n_descsz, sizeof(Elf_Size));
14958c64af4fSJohn Polstra }
14968c64af4fSJohn Polstra 
14978c64af4fSJohn Polstra /*
149832c01de2SDmitry Chagin  * Try to find the appropriate ABI-note section for checknote,
149932c01de2SDmitry Chagin  * fetch the osreldate for binary from the ELF OSABI-note. Only the
150032c01de2SDmitry Chagin  * first page of the image is searched, the same as for headers.
150132c01de2SDmitry Chagin  */
150232c01de2SDmitry Chagin static boolean_t
150332c01de2SDmitry Chagin __elfN(check_note)(struct image_params *imgp, Elf_Brandnote *checknote,
150432c01de2SDmitry Chagin     int32_t *osrel)
150532c01de2SDmitry Chagin {
1506267c52fcSKonstantin Belousov 	const Elf_Note *note, *note0, *note_end;
1507429f5a58SKonstantin Belousov 	const Elf_Phdr *phdr, *pnote;
1508429f5a58SKonstantin Belousov 	const Elf_Ehdr *hdr;
150932c01de2SDmitry Chagin 	const char *note_name;
151032c01de2SDmitry Chagin 	int i;
151132c01de2SDmitry Chagin 
151232c01de2SDmitry Chagin 	pnote = NULL;
1513429f5a58SKonstantin Belousov 	hdr = (const Elf_Ehdr *)imgp->image_header;
1514429f5a58SKonstantin Belousov 	phdr = (const Elf_Phdr *)(imgp->image_header + hdr->e_phoff);
151532c01de2SDmitry Chagin 
151632c01de2SDmitry Chagin 	for (i = 0; i < hdr->e_phnum; i++) {
151732c01de2SDmitry Chagin 		if (phdr[i].p_type == PT_NOTE) {
151832c01de2SDmitry Chagin 			pnote = &phdr[i];
151932c01de2SDmitry Chagin 			break;
152032c01de2SDmitry Chagin 		}
152132c01de2SDmitry Chagin 	}
152232c01de2SDmitry Chagin 
152332c01de2SDmitry Chagin 	if (pnote == NULL || pnote->p_offset >= PAGE_SIZE ||
152432c01de2SDmitry Chagin 	    pnote->p_offset + pnote->p_filesz >= PAGE_SIZE)
152532c01de2SDmitry Chagin 		return (FALSE);
152632c01de2SDmitry Chagin 
1527267c52fcSKonstantin Belousov 	note = note0 = (const Elf_Note *)(imgp->image_header + pnote->p_offset);
152832c01de2SDmitry Chagin 	note_end = (const Elf_Note *)(imgp->image_header +
152932c01de2SDmitry Chagin 	    pnote->p_offset + pnote->p_filesz);
1530267c52fcSKonstantin Belousov 	for (i = 0; i < 100 && note >= note0 && note < note_end; i++) {
1531267c52fcSKonstantin Belousov 		if (!aligned(note, Elf32_Addr))
1532267c52fcSKonstantin Belousov 			return (FALSE);
153332c01de2SDmitry Chagin 		if (note->n_namesz != checknote->hdr.n_namesz ||
153432c01de2SDmitry Chagin 		    note->n_descsz != checknote->hdr.n_descsz ||
153532c01de2SDmitry Chagin 		    note->n_type != checknote->hdr.n_type)
153632c01de2SDmitry Chagin 			goto nextnote;
153732c01de2SDmitry Chagin 		note_name = (const char *)(note + 1);
153832c01de2SDmitry Chagin 		if (strncmp(checknote->vendor, note_name,
153932c01de2SDmitry Chagin 		    checknote->hdr.n_namesz) != 0)
154032c01de2SDmitry Chagin 			goto nextnote;
154132c01de2SDmitry Chagin 
154232c01de2SDmitry Chagin 		/*
154332c01de2SDmitry Chagin 		 * Fetch the osreldate for binary
154432c01de2SDmitry Chagin 		 * from the ELF OSABI-note if necessary.
154532c01de2SDmitry Chagin 		 */
154689ffc202SBjoern A. Zeeb 		if ((checknote->flags & BN_TRANSLATE_OSREL) != 0 &&
154789ffc202SBjoern A. Zeeb 		    checknote->trans_osrel != NULL)
154889ffc202SBjoern A. Zeeb 			return (checknote->trans_osrel(note, osrel));
154932c01de2SDmitry Chagin 		return (TRUE);
155032c01de2SDmitry Chagin 
155132c01de2SDmitry Chagin nextnote:
155232c01de2SDmitry Chagin 		note = (const Elf_Note *)((const char *)(note + 1) +
155332c01de2SDmitry Chagin 		    roundup2(note->n_namesz, sizeof(Elf32_Addr)) +
155432c01de2SDmitry Chagin 		    roundup2(note->n_descsz, sizeof(Elf32_Addr)));
155532c01de2SDmitry Chagin 	}
155632c01de2SDmitry Chagin 
155732c01de2SDmitry Chagin 	return (FALSE);
155832c01de2SDmitry Chagin }
155932c01de2SDmitry Chagin 
156032c01de2SDmitry Chagin /*
1561e1743d02SSøren Schmidt  * Tell kern_execve.c about it, with a little help from the linker.
1562e1743d02SSøren Schmidt  */
1563a360a43dSJake Burkholder static struct execsw __elfN(execsw) = {
1564a360a43dSJake Burkholder 	__CONCAT(exec_, __elfN(imgact)),
1565a360a43dSJake Burkholder 	__XSTRING(__CONCAT(ELF, __ELF_WORD_SIZE))
1566a360a43dSJake Burkholder };
1567a360a43dSJake Burkholder EXEC_SET(__CONCAT(elf, __ELF_WORD_SIZE), __elfN(execsw));
1568e7228204SAlfred Perlstein 
1569e7228204SAlfred Perlstein #ifdef COMPRESS_USER_CORES
1570e7228204SAlfred Perlstein /*
1571e7228204SAlfred Perlstein  * Compress and write out a core segment for a user process.
1572e7228204SAlfred Perlstein  *
1573e7228204SAlfred Perlstein  * 'inbuf' is the starting address of a VM segment in the process' address
1574e7228204SAlfred Perlstein  * space that is to be compressed and written out to the core file.  'dest_buf'
1575e7228204SAlfred Perlstein  * is a buffer in the kernel's address space.  The segment is copied from
1576e7228204SAlfred Perlstein  * 'inbuf' to 'dest_buf' first before being processed by the compression
1577e7228204SAlfred Perlstein  * routine gzwrite().  This copying is necessary because the content of the VM
1578e7228204SAlfred Perlstein  * segment may change between the compression pass and the crc-computation pass
1579e7228204SAlfred Perlstein  * in gzwrite().  This is because realtime threads may preempt the UNIX kernel.
1580e7228204SAlfred Perlstein  */
1581e7228204SAlfred Perlstein static int
1582e7228204SAlfred Perlstein compress_core (gzFile file, char *inbuf, char *dest_buf, unsigned int len,
1583e7228204SAlfred Perlstein     struct thread *td)
1584e7228204SAlfred Perlstein {
1585e7228204SAlfred Perlstein 	int len_compressed;
1586e7228204SAlfred Perlstein 	int error = 0;
1587e7228204SAlfred Perlstein 	unsigned int chunk_len;
1588e7228204SAlfred Perlstein 
1589e7228204SAlfred Perlstein 	while (len) {
1590e7228204SAlfred Perlstein 		chunk_len = (len > CORE_BUF_SIZE) ? CORE_BUF_SIZE : len;
1591e7228204SAlfred Perlstein 		copyin(inbuf, dest_buf, chunk_len);
1592e7228204SAlfred Perlstein 		len_compressed = gzwrite(file, dest_buf, chunk_len);
1593e7228204SAlfred Perlstein 
1594e7228204SAlfred Perlstein 		EVENTHANDLER_INVOKE(app_coredump_progress, td, len_compressed);
1595e7228204SAlfred Perlstein 
1596e7228204SAlfred Perlstein 		if ((unsigned int)len_compressed != chunk_len) {
1597e7228204SAlfred Perlstein 			log(LOG_WARNING,
1598e7228204SAlfred Perlstein 			    "compress_core: length mismatch (0x%x returned, "
1599e7228204SAlfred Perlstein 			    "0x%x expected)\n", len_compressed, chunk_len);
1600e7228204SAlfred Perlstein 			EVENTHANDLER_INVOKE(app_coredump_error, td,
1601e7228204SAlfred Perlstein 			    "compress_core: length mismatch %x -> %x",
1602e7228204SAlfred Perlstein 			    chunk_len, len_compressed);
1603e7228204SAlfred Perlstein 			error = EFAULT;
1604e7228204SAlfred Perlstein 			break;
1605e7228204SAlfred Perlstein 		}
1606e7228204SAlfred Perlstein 		inbuf += chunk_len;
1607e7228204SAlfred Perlstein 		len -= chunk_len;
1608e7228204SAlfred Perlstein 		if (ticks - PCPU_GET(switchticks) >= hogticks)
1609e7228204SAlfred Perlstein 			uio_yield();
1610e7228204SAlfred Perlstein 	}
1611e7228204SAlfred Perlstein 
1612e7228204SAlfred Perlstein 	return (error);
1613e7228204SAlfred Perlstein }
1614e7228204SAlfred Perlstein #endif /* COMPRESS_USER_CORES */
1615