Home | History | Annotate | Line # | Download | only in kern
subr_kobj.c revision 1.33.2.2
      1  1.33.2.2       jym /*	$NetBSD: subr_kobj.c,v 1.33.2.2 2009/07/23 23:32:35 jym Exp $	*/
      2       1.1        ad 
      3       1.1        ad /*-
      4       1.1        ad  * Copyright (c) 2008 The NetBSD Foundation, Inc.
      5       1.1        ad  * All rights reserved.
      6       1.1        ad  *
      7      1.25        ad  * This code is derived from software developed for The NetBSD Foundation
      8      1.25        ad  * by Andrew Doran.
      9      1.25        ad  *
     10       1.1        ad  * Redistribution and use in source and binary forms, with or without
     11       1.1        ad  * modification, are permitted provided that the following conditions
     12       1.1        ad  * are met:
     13       1.1        ad  * 1. Redistributions of source code must retain the above copyright
     14       1.1        ad  *    notice, this list of conditions and the following disclaimer.
     15       1.1        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1        ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.1        ad  *    documentation and/or other materials provided with the distribution.
     18       1.1        ad  *
     19       1.1        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1        ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1        ad  */
     31       1.1        ad 
     32       1.1        ad /*-
     33       1.1        ad  * Copyright (c) 1998-2000 Doug Rabson
     34       1.1        ad  * Copyright (c) 2004 Peter Wemm
     35       1.1        ad  * All rights reserved.
     36       1.1        ad  *
     37       1.1        ad  * Redistribution and use in source and binary forms, with or without
     38       1.1        ad  * modification, are permitted provided that the following conditions
     39       1.1        ad  * are met:
     40       1.1        ad  * 1. Redistributions of source code must retain the above copyright
     41       1.1        ad  *    notice, this list of conditions and the following disclaimer.
     42       1.1        ad  * 2. Redistributions in binary form must reproduce the above copyright
     43       1.1        ad  *    notice, this list of conditions and the following disclaimer in the
     44       1.1        ad  *    documentation and/or other materials provided with the distribution.
     45       1.1        ad  *
     46       1.1        ad  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     47       1.1        ad  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     48       1.1        ad  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     49       1.1        ad  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     50       1.1        ad  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     51       1.1        ad  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     52       1.1        ad  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     53       1.1        ad  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     54       1.1        ad  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     55       1.1        ad  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     56       1.1        ad  * SUCH DAMAGE.
     57       1.1        ad  */
     58       1.1        ad 
     59       1.1        ad /*
     60       1.1        ad  * Kernel loader for ELF objects.
     61       1.1        ad  *
     62       1.1        ad  * TODO: adjust kmem_alloc() calls to avoid needless fragmentation.
     63       1.1        ad  */
     64       1.1        ad 
     65       1.1        ad #include <sys/cdefs.h>
     66  1.33.2.2       jym __KERNEL_RCSID(0, "$NetBSD: subr_kobj.c,v 1.33.2.2 2009/07/23 23:32:35 jym Exp $");
     67  1.33.2.1       jym 
     68  1.33.2.1       jym #include "opt_modular.h"
     69       1.1        ad 
     70  1.33.2.2       jym #include <sys/kobj_impl.h>
     71      1.16        ad 
     72      1.16        ad #ifdef MODULAR
     73      1.16        ad 
     74       1.1        ad #include <sys/param.h>
     75       1.1        ad #include <sys/kernel.h>
     76       1.1        ad #include <sys/kmem.h>
     77       1.1        ad #include <sys/proc.h>
     78       1.1        ad #include <sys/namei.h>
     79       1.1        ad #include <sys/vnode.h>
     80       1.1        ad #include <sys/fcntl.h>
     81       1.1        ad #include <sys/ksyms.h>
     82      1.25        ad #include <sys/module.h>
     83       1.1        ad 
     84       1.1        ad #include <machine/stdarg.h>
     85       1.1        ad 
     86       1.1        ad #include <uvm/uvm_extern.h>
     87       1.1        ad 
     88      1.18        ad static int	kobj_relocate(kobj_t, bool);
     89      1.30        ad static int	kobj_checksyms(kobj_t, bool);
     90       1.1        ad static void	kobj_error(const char *, ...);
     91      1.12        ad static int	kobj_read(kobj_t, void **, size_t, off_t);
     92      1.12        ad static int	kobj_read_bits(kobj_t, void *, size_t, off_t);
     93      1.18        ad static void	kobj_jettison(kobj_t);
     94      1.12        ad static void	kobj_free(kobj_t, void *, size_t);
     95      1.18        ad static void	kobj_close(kobj_t);
     96      1.18        ad static int	kobj_load(kobj_t);
     97       1.1        ad 
     98      1.25        ad extern struct vm_map *module_map;
     99       1.1        ad 
    100       1.1        ad /*
    101      1.18        ad  * kobj_load_file:
    102       1.1        ad  *
    103      1.18        ad  *	Load an object located in the file system.
    104       1.1        ad  */
    105       1.1        ad int
    106  1.33.2.2       jym kobj_load_file(kobj_t *kop, const char *path, const bool nochroot)
    107       1.1        ad {
    108       1.1        ad 	struct nameidata nd;
    109       1.1        ad 	kauth_cred_t cred;
    110       1.1        ad 	int error;
    111       1.1        ad 	kobj_t ko;
    112       1.1        ad 
    113       1.1        ad 	cred = kauth_cred_get();
    114       1.1        ad 
    115       1.1        ad 	ko = kmem_zalloc(sizeof(*ko), KM_SLEEP);
    116       1.1        ad 	if (ko == NULL) {
    117       1.1        ad 		return ENOMEM;
    118       1.1        ad 	}
    119       1.1        ad 
    120  1.33.2.2       jym 	NDINIT(&nd, LOOKUP, FOLLOW | (nochroot ? NOCHROOT : 0),
    121  1.33.2.2       jym 	    UIO_SYSSPACE, path);
    122  1.33.2.2       jym 	error = vn_open(&nd, FREAD, 0);
    123       1.1        ad 
    124       1.3        ad  	if (error != 0) {
    125       1.3        ad 	 	kmem_free(ko, sizeof(*ko));
    126      1.18        ad 	 	return error;
    127       1.3        ad 	}
    128      1.18        ad 
    129      1.18        ad 	ko->ko_type = KT_VNODE;
    130      1.18        ad 	ko->ko_source = nd.ni_vp;
    131      1.18        ad 	*kop = ko;
    132      1.18        ad 	return kobj_load(ko);
    133       1.3        ad }
    134       1.3        ad 
    135       1.3        ad /*
    136      1.18        ad  * kobj_load_mem:
    137       1.3        ad  *
    138      1.18        ad  *	Load an object already resident in memory.  If size is not -1,
    139      1.18        ad  *	the complete size of the object is known.
    140       1.3        ad  */
    141       1.3        ad int
    142      1.18        ad kobj_load_mem(kobj_t *kop, void *base, ssize_t size)
    143       1.3        ad {
    144       1.3        ad 	kobj_t ko;
    145       1.3        ad 
    146       1.3        ad 	ko = kmem_zalloc(sizeof(*ko), KM_SLEEP);
    147       1.3        ad 	if (ko == NULL) {
    148       1.3        ad 		return ENOMEM;
    149       1.3        ad 	}
    150       1.3        ad 
    151       1.3        ad 	ko->ko_type = KT_MEMORY;
    152       1.3        ad 	ko->ko_source = base;
    153       1.3        ad 	ko->ko_memsize = size;
    154       1.3        ad 	*kop = ko;
    155      1.18        ad 	return kobj_load(ko);
    156       1.3        ad }
    157       1.3        ad 
    158       1.3        ad /*
    159       1.3        ad  * kobj_close:
    160       1.3        ad  *
    161      1.18        ad  *	Close an open ELF object.
    162       1.3        ad  */
    163      1.18        ad static void
    164       1.3        ad kobj_close(kobj_t ko)
    165       1.3        ad {
    166       1.3        ad 
    167      1.18        ad 	if (ko->ko_source == NULL) {
    168      1.18        ad 		return;
    169      1.18        ad 	}
    170       1.3        ad 
    171       1.3        ad 	switch (ko->ko_type) {
    172       1.3        ad 	case KT_VNODE:
    173       1.3        ad 		VOP_UNLOCK(ko->ko_source, 0);
    174      1.10        ad 		vn_close(ko->ko_source, FREAD, kauth_cred_get());
    175       1.3        ad 		break;
    176       1.3        ad 	case KT_MEMORY:
    177       1.3        ad 		/* nothing */
    178       1.3        ad 		break;
    179       1.3        ad 	default:
    180       1.3        ad 		panic("kobj_close: unknown type");
    181       1.3        ad 		break;
    182       1.3        ad 	}
    183       1.3        ad 
    184       1.3        ad 	ko->ko_source = NULL;
    185       1.3        ad }
    186       1.3        ad 
    187       1.3        ad /*
    188       1.3        ad  * kobj_load:
    189       1.3        ad  *
    190      1.18        ad  *	Load an ELF object and prepare to link into the running kernel
    191      1.18        ad  *	image.
    192       1.3        ad  */
    193      1.18        ad static int
    194       1.3        ad kobj_load(kobj_t ko)
    195       1.3        ad {
    196       1.3        ad 	Elf_Ehdr *hdr;
    197       1.3        ad 	Elf_Shdr *shdr;
    198       1.3        ad 	Elf_Sym *es;
    199       1.3        ad 	vaddr_t mapbase;
    200       1.3        ad 	size_t mapsize;
    201       1.3        ad 	int error;
    202       1.3        ad 	int symtabindex;
    203       1.3        ad 	int symstrindex;
    204       1.3        ad 	int nsym;
    205       1.3        ad 	int pb, rl, ra;
    206       1.3        ad 	int alignmask;
    207       1.3        ad 	int i, j;
    208      1.13        ad 	void *addr;
    209       1.3        ad 
    210       1.3        ad 	KASSERT(ko->ko_type != KT_UNSET);
    211       1.3        ad 	KASSERT(ko->ko_source != NULL);
    212       1.3        ad 
    213       1.3        ad 	shdr = NULL;
    214       1.3        ad 	mapsize = 0;
    215       1.3        ad 	error = 0;
    216       1.3        ad 	hdr = NULL;
    217       1.3        ad 
    218       1.1        ad 	/*
    219       1.1        ad 	 * Read the elf header from the file.
    220       1.1        ad 	 */
    221      1.32     pooka 	error = kobj_read(ko, (void **)&hdr, sizeof(*hdr), 0);
    222       1.1        ad 	if (error != 0)
    223       1.1        ad 		goto out;
    224       1.1        ad 	if (memcmp(hdr->e_ident, ELFMAG, SELFMAG) != 0) {
    225       1.3        ad 		kobj_error("not an ELF object");
    226       1.1        ad 		error = ENOEXEC;
    227       1.1        ad 		goto out;
    228       1.1        ad 	}
    229       1.1        ad 
    230       1.1        ad 	if (hdr->e_ident[EI_VERSION] != EV_CURRENT ||
    231       1.1        ad 	    hdr->e_version != EV_CURRENT) {
    232       1.1        ad 		kobj_error("unsupported file version");
    233       1.1        ad 		error = ENOEXEC;
    234       1.1        ad 		goto out;
    235       1.1        ad 	}
    236       1.1        ad 	if (hdr->e_type != ET_REL) {
    237       1.1        ad 		kobj_error("unsupported file type");
    238       1.1        ad 		error = ENOEXEC;
    239       1.1        ad 		goto out;
    240       1.1        ad 	}
    241       1.1        ad 	switch (hdr->e_machine) {
    242       1.1        ad #if ELFSIZE == 32
    243       1.1        ad 	ELF32_MACHDEP_ID_CASES
    244       1.1        ad #else
    245       1.1        ad 	ELF64_MACHDEP_ID_CASES
    246       1.1        ad #endif
    247       1.1        ad 	default:
    248       1.1        ad 		kobj_error("unsupported machine");
    249       1.1        ad 		error = ENOEXEC;
    250       1.1        ad 		goto out;
    251       1.1        ad 	}
    252       1.1        ad 
    253       1.1        ad 	ko->ko_nprogtab = 0;
    254       1.1        ad 	ko->ko_shdr = 0;
    255       1.1        ad 	ko->ko_nrel = 0;
    256       1.1        ad 	ko->ko_nrela = 0;
    257       1.1        ad 
    258       1.1        ad 	/*
    259       1.1        ad 	 * Allocate and read in the section header.
    260       1.1        ad 	 */
    261       1.1        ad 	ko->ko_shdrsz = hdr->e_shnum * hdr->e_shentsize;
    262       1.1        ad 	if (ko->ko_shdrsz == 0 || hdr->e_shoff == 0 ||
    263       1.1        ad 	    hdr->e_shentsize != sizeof(Elf_Shdr)) {
    264       1.1        ad 		error = ENOEXEC;
    265       1.1        ad 		goto out;
    266       1.1        ad 	}
    267      1.32     pooka 	error = kobj_read(ko, (void **)&shdr, ko->ko_shdrsz, hdr->e_shoff);
    268      1.12        ad 	if (error != 0) {
    269       1.1        ad 		goto out;
    270       1.1        ad 	}
    271       1.1        ad 	ko->ko_shdr = shdr;
    272       1.1        ad 
    273       1.1        ad 	/*
    274       1.1        ad 	 * Scan the section header for information and table sizing.
    275       1.1        ad 	 */
    276       1.1        ad 	nsym = 0;
    277       1.1        ad 	symtabindex = -1;
    278       1.1        ad 	symstrindex = -1;
    279       1.1        ad 	for (i = 0; i < hdr->e_shnum; i++) {
    280       1.1        ad 		switch (shdr[i].sh_type) {
    281       1.1        ad 		case SHT_PROGBITS:
    282       1.1        ad 		case SHT_NOBITS:
    283       1.1        ad 			ko->ko_nprogtab++;
    284       1.1        ad 			break;
    285       1.1        ad 		case SHT_SYMTAB:
    286       1.1        ad 			nsym++;
    287       1.1        ad 			symtabindex = i;
    288       1.1        ad 			symstrindex = shdr[i].sh_link;
    289       1.1        ad 			break;
    290       1.1        ad 		case SHT_REL:
    291       1.1        ad 			ko->ko_nrel++;
    292       1.1        ad 			break;
    293       1.1        ad 		case SHT_RELA:
    294       1.1        ad 			ko->ko_nrela++;
    295       1.1        ad 			break;
    296       1.1        ad 		case SHT_STRTAB:
    297       1.1        ad 			break;
    298       1.1        ad 		}
    299       1.1        ad 	}
    300       1.1        ad 	if (ko->ko_nprogtab == 0) {
    301       1.1        ad 		kobj_error("file has no contents");
    302       1.1        ad 		error = ENOEXEC;
    303       1.1        ad 		goto out;
    304       1.1        ad 	}
    305       1.1        ad 	if (nsym != 1) {
    306       1.1        ad 		/* Only allow one symbol table for now */
    307       1.1        ad 		kobj_error("file has no valid symbol table");
    308       1.1        ad 		error = ENOEXEC;
    309       1.1        ad 		goto out;
    310       1.1        ad 	}
    311       1.1        ad 	if (symstrindex < 0 || symstrindex > hdr->e_shnum ||
    312       1.1        ad 	    shdr[symstrindex].sh_type != SHT_STRTAB) {
    313       1.1        ad 		kobj_error("file has invalid symbol strings");
    314       1.1        ad 		error = ENOEXEC;
    315       1.1        ad 		goto out;
    316       1.1        ad 	}
    317       1.1        ad 
    318       1.1        ad 	/*
    319       1.1        ad 	 * Allocate space for tracking the load chunks.
    320       1.1        ad 	 */
    321       1.1        ad 	if (ko->ko_nprogtab != 0) {
    322       1.1        ad 		ko->ko_progtab = kmem_zalloc(ko->ko_nprogtab *
    323       1.1        ad 		    sizeof(*ko->ko_progtab), KM_SLEEP);
    324       1.1        ad 		if (ko->ko_progtab == NULL) {
    325       1.1        ad 			error = ENOMEM;
    326       1.1        ad 			goto out;
    327       1.1        ad 		}
    328       1.1        ad 	}
    329       1.1        ad 	if (ko->ko_nrel != 0) {
    330       1.1        ad 		ko->ko_reltab = kmem_zalloc(ko->ko_nrel *
    331       1.1        ad 		    sizeof(*ko->ko_reltab), KM_SLEEP);
    332       1.1        ad 		if (ko->ko_reltab == NULL) {
    333       1.1        ad 			error = ENOMEM;
    334       1.1        ad 			goto out;
    335       1.1        ad 		}
    336       1.1        ad 	}
    337       1.1        ad 	if (ko->ko_nrela != 0) {
    338       1.1        ad 		ko->ko_relatab = kmem_zalloc(ko->ko_nrela *
    339       1.1        ad 		    sizeof(*ko->ko_relatab), KM_SLEEP);
    340       1.1        ad 		if (ko->ko_relatab == NULL) {
    341       1.1        ad 			error = ENOMEM;
    342       1.1        ad 			goto out;
    343       1.1        ad 		}
    344       1.1        ad 	}
    345       1.1        ad 	if (symtabindex == -1) {
    346       1.1        ad 		kobj_error("lost symbol table index");
    347       1.1        ad 		goto out;
    348       1.1        ad 	}
    349       1.1        ad 
    350       1.1        ad 	/*
    351       1.1        ad 	 * Allocate space for and load the symbol table.
    352       1.1        ad 	 */
    353       1.1        ad 	ko->ko_symcnt = shdr[symtabindex].sh_size / sizeof(Elf_Sym);
    354       1.1        ad 	if (ko->ko_symcnt == 0) {
    355       1.1        ad 		kobj_error("no symbol table");
    356       1.1        ad 		goto out;
    357       1.1        ad 	}
    358      1.32     pooka 	error = kobj_read(ko, (void **)&ko->ko_symtab,
    359      1.12        ad 	    ko->ko_symcnt * sizeof(Elf_Sym),
    360       1.1        ad 	    shdr[symtabindex].sh_offset);
    361       1.1        ad 	if (error != 0) {
    362       1.1        ad 		goto out;
    363       1.1        ad 	}
    364       1.1        ad 
    365       1.1        ad 	/*
    366       1.1        ad 	 * Allocate space for and load the symbol strings.
    367       1.1        ad 	 */
    368       1.1        ad 	ko->ko_strtabsz = shdr[symstrindex].sh_size;
    369       1.1        ad 	if (ko->ko_strtabsz == 0) {
    370       1.1        ad 		kobj_error("no symbol strings");
    371       1.1        ad 		goto out;
    372       1.1        ad 	}
    373      1.12        ad 	error = kobj_read(ko, (void *)&ko->ko_strtab, ko->ko_strtabsz,
    374       1.1        ad 	    shdr[symstrindex].sh_offset);
    375       1.1        ad 	if (error != 0) {
    376       1.1        ad 		goto out;
    377       1.1        ad 	}
    378       1.1        ad 
    379       1.1        ad 	/*
    380       1.8        ad 	 * Do we have a string table for the section names?
    381       1.8        ad 	 */
    382       1.8        ad 	if (hdr->e_shstrndx != 0 && shdr[hdr->e_shstrndx].sh_size != 0 &&
    383       1.8        ad 	    shdr[hdr->e_shstrndx].sh_type == SHT_STRTAB) {
    384       1.8        ad 		ko->ko_shstrtabsz = shdr[hdr->e_shstrndx].sh_size;
    385      1.32     pooka 		error = kobj_read(ko, (void **)&ko->ko_shstrtab,
    386       1.8        ad 		    shdr[hdr->e_shstrndx].sh_size,
    387       1.8        ad 		    shdr[hdr->e_shstrndx].sh_offset);
    388       1.8        ad 		if (error != 0) {
    389       1.8        ad 			goto out;
    390       1.8        ad 		}
    391       1.8        ad 	}
    392       1.8        ad 
    393       1.8        ad 	/*
    394       1.1        ad 	 * Size up code/data(progbits) and bss(nobits).
    395       1.1        ad 	 */
    396       1.1        ad 	alignmask = 0;
    397      1.12        ad 	mapbase = 0;
    398       1.1        ad 	for (i = 0; i < hdr->e_shnum; i++) {
    399       1.1        ad 		switch (shdr[i].sh_type) {
    400       1.1        ad 		case SHT_PROGBITS:
    401       1.1        ad 		case SHT_NOBITS:
    402      1.12        ad 			if (mapbase == 0)
    403      1.12        ad 				mapbase = shdr[i].sh_offset;
    404       1.1        ad 			alignmask = shdr[i].sh_addralign - 1;
    405       1.1        ad 			mapsize += alignmask;
    406       1.1        ad 			mapsize &= ~alignmask;
    407       1.1        ad 			mapsize += shdr[i].sh_size;
    408       1.1        ad 			break;
    409       1.1        ad 		}
    410       1.1        ad 	}
    411       1.1        ad 
    412       1.1        ad 	/*
    413       1.1        ad 	 * We know how much space we need for the text/data/bss/etc.
    414       1.1        ad 	 * This stuff needs to be in a single chunk so that profiling etc
    415       1.1        ad 	 * can get the bounds and gdb can associate offsets with modules.
    416       1.1        ad 	 */
    417       1.1        ad 	if (mapsize == 0) {
    418       1.1        ad 		kobj_error("no text/data/bss");
    419       1.1        ad 		goto out;
    420       1.1        ad 	}
    421      1.12        ad 	if (ko->ko_type == KT_MEMORY) {
    422      1.12        ad 		mapbase += (vaddr_t)ko->ko_source;
    423      1.12        ad 	} else {
    424      1.25        ad 		mapbase = uvm_km_alloc(module_map, round_page(mapsize),
    425      1.13        ad 		    0, UVM_KMF_WIRED | UVM_KMF_EXEC);
    426      1.12        ad 		if (mapbase == 0) {
    427      1.12        ad 			error = ENOMEM;
    428      1.12        ad 			goto out;
    429      1.12        ad 		}
    430       1.1        ad 	}
    431       1.1        ad 	ko->ko_address = mapbase;
    432       1.1        ad 	ko->ko_size = mapsize;
    433       1.1        ad 
    434       1.1        ad 	/*
    435       1.1        ad 	 * Now load code/data(progbits), zero bss(nobits), allocate space
    436       1.1        ad 	 * for and load relocs
    437       1.1        ad 	 */
    438       1.1        ad 	pb = 0;
    439       1.1        ad 	rl = 0;
    440       1.1        ad 	ra = 0;
    441       1.1        ad 	alignmask = 0;
    442       1.1        ad 	for (i = 0; i < hdr->e_shnum; i++) {
    443       1.1        ad 		switch (shdr[i].sh_type) {
    444       1.1        ad 		case SHT_PROGBITS:
    445       1.1        ad 		case SHT_NOBITS:
    446       1.1        ad 			alignmask = shdr[i].sh_addralign - 1;
    447      1.13        ad 			if (ko->ko_type == KT_MEMORY) {
    448      1.13        ad 				addr = (void *)(shdr[i].sh_offset +
    449      1.13        ad 				    (vaddr_t)ko->ko_source);
    450      1.13        ad 				if (((vaddr_t)addr & alignmask) != 0) {
    451      1.13        ad 					kobj_error("section %d not aligned\n",
    452      1.13        ad 					    i);
    453      1.13        ad 					goto out;
    454      1.13        ad 				}
    455      1.13        ad 			} else {
    456      1.13        ad 				mapbase += alignmask;
    457      1.13        ad 				mapbase &= ~alignmask;
    458      1.13        ad 				addr = (void *)mapbase;
    459      1.13        ad 				mapbase += shdr[i].sh_size;
    460      1.13        ad 			}
    461      1.13        ad 			ko->ko_progtab[pb].addr = addr;
    462       1.1        ad 			if (shdr[i].sh_type == SHT_PROGBITS) {
    463       1.1        ad 				ko->ko_progtab[pb].name = "<<PROGBITS>>";
    464      1.13        ad 				error = kobj_read_bits(ko, addr,
    465      1.13        ad 				    shdr[i].sh_size, shdr[i].sh_offset);
    466       1.1        ad 				if (error != 0) {
    467       1.1        ad 					goto out;
    468       1.1        ad 				}
    469      1.13        ad 			} else if (ko->ko_type == KT_MEMORY &&
    470      1.13        ad 			    shdr[i].sh_size != 0) {
    471      1.13        ad 			    	kobj_error("non-loadable BSS section in "
    472      1.13        ad 			    	    "pre-loaded module");
    473      1.17  jmcneill 				error = EINVAL;
    474      1.13        ad 			    	goto out;
    475       1.1        ad 			} else {
    476       1.1        ad 				ko->ko_progtab[pb].name = "<<NOBITS>>";
    477      1.13        ad 				memset(addr, 0, shdr[i].sh_size);
    478       1.1        ad 			}
    479       1.1        ad 			ko->ko_progtab[pb].size = shdr[i].sh_size;
    480       1.1        ad 			ko->ko_progtab[pb].sec = i;
    481       1.8        ad 			if (ko->ko_shstrtab != NULL && shdr[i].sh_name != 0) {
    482       1.8        ad 				ko->ko_progtab[pb].name =
    483       1.8        ad 				    ko->ko_shstrtab + shdr[i].sh_name;
    484       1.8        ad 			}
    485       1.1        ad 
    486       1.1        ad 			/* Update all symbol values with the offset. */
    487       1.1        ad 			for (j = 0; j < ko->ko_symcnt; j++) {
    488       1.1        ad 				es = &ko->ko_symtab[j];
    489       1.1        ad 				if (es->st_shndx != i) {
    490       1.1        ad 					continue;
    491       1.1        ad 				}
    492      1.13        ad 				es->st_value += (Elf_Addr)addr;
    493       1.1        ad 			}
    494       1.1        ad 			pb++;
    495       1.1        ad 			break;
    496       1.1        ad 		case SHT_REL:
    497       1.1        ad 			ko->ko_reltab[rl].size = shdr[i].sh_size;
    498       1.1        ad 			ko->ko_reltab[rl].size -=
    499       1.1        ad 			    shdr[i].sh_size % sizeof(Elf_Rel);
    500       1.1        ad 			if (ko->ko_reltab[rl].size != 0) {
    501       1.1        ad 				ko->ko_reltab[rl].nrel =
    502       1.1        ad 				    shdr[i].sh_size / sizeof(Elf_Rel);
    503       1.1        ad 				ko->ko_reltab[rl].sec = shdr[i].sh_info;
    504       1.3        ad 				error = kobj_read(ko,
    505      1.32     pooka 				    (void **)&ko->ko_reltab[rl].rel,
    506       1.1        ad 				    ko->ko_reltab[rl].size,
    507       1.1        ad 				    shdr[i].sh_offset);
    508       1.1        ad 				if (error != 0) {
    509       1.1        ad 					goto out;
    510       1.1        ad 				}
    511       1.1        ad 			}
    512       1.1        ad 			rl++;
    513       1.1        ad 			break;
    514       1.1        ad 		case SHT_RELA:
    515       1.1        ad 			ko->ko_relatab[ra].size = shdr[i].sh_size;
    516       1.1        ad 			ko->ko_relatab[ra].size -=
    517       1.1        ad 			    shdr[i].sh_size % sizeof(Elf_Rela);
    518       1.1        ad 			if (ko->ko_relatab[ra].size != 0) {
    519       1.1        ad 				ko->ko_relatab[ra].nrela =
    520       1.1        ad 				    shdr[i].sh_size / sizeof(Elf_Rela);
    521       1.1        ad 				ko->ko_relatab[ra].sec = shdr[i].sh_info;
    522       1.3        ad 				error = kobj_read(ko,
    523      1.32     pooka 				    (void **)&ko->ko_relatab[ra].rela,
    524       1.1        ad 				    shdr[i].sh_size,
    525       1.1        ad 				    shdr[i].sh_offset);
    526       1.1        ad 				if (error != 0) {
    527       1.1        ad 					goto out;
    528       1.1        ad 				}
    529       1.1        ad 			}
    530       1.1        ad 			ra++;
    531       1.1        ad 			break;
    532      1.13        ad 		default:
    533      1.13        ad 			break;
    534       1.1        ad 		}
    535       1.1        ad 	}
    536       1.1        ad 	if (pb != ko->ko_nprogtab) {
    537       1.1        ad 		panic("lost progbits");
    538       1.1        ad 	}
    539       1.1        ad 	if (rl != ko->ko_nrel) {
    540       1.1        ad 		panic("lost rel");
    541       1.1        ad 	}
    542       1.1        ad 	if (ra != ko->ko_nrela) {
    543       1.1        ad 		panic("lost rela");
    544       1.1        ad 	}
    545      1.13        ad 	if (ko->ko_type != KT_MEMORY && mapbase != ko->ko_address + mapsize) {
    546      1.13        ad 		panic("mapbase 0x%lx != address %lx + mapsize %ld (0x%lx)\n",
    547       1.1        ad 		    (long)mapbase, (long)ko->ko_address, (long)mapsize,
    548       1.1        ad 		    (long)ko->ko_address + mapsize);
    549       1.1        ad 	}
    550       1.1        ad 
    551       1.1        ad 	/*
    552      1.18        ad 	 * Perform local relocations only.  Relocations relating to global
    553      1.18        ad 	 * symbols will be done by kobj_affix().
    554       1.1        ad 	 */
    555      1.30        ad 	error = kobj_checksyms(ko, false);
    556      1.23        ad 	if (error == 0) {
    557      1.23        ad 		error = kobj_relocate(ko, true);
    558      1.23        ad 	}
    559       1.1        ad  out:
    560       1.3        ad 	if (hdr != NULL) {
    561      1.12        ad 		kobj_free(ko, hdr, sizeof(*hdr));
    562       1.1        ad 	}
    563      1.18        ad 	kobj_close(ko);
    564      1.18        ad 	if (error != 0) {
    565      1.18        ad 		kobj_unload(ko);
    566      1.18        ad 	}
    567       1.1        ad 
    568       1.1        ad 	return error;
    569       1.1        ad }
    570       1.1        ad 
    571       1.1        ad /*
    572       1.1        ad  * kobj_unload:
    573       1.1        ad  *
    574       1.1        ad  *	Unload an object previously loaded by kobj_load().
    575       1.1        ad  */
    576       1.1        ad void
    577       1.1        ad kobj_unload(kobj_t ko)
    578       1.1        ad {
    579       1.1        ad 	int error;
    580       1.1        ad 
    581      1.18        ad 	kobj_close(ko);
    582      1.18        ad 	kobj_jettison(ko);
    583      1.18        ad 
    584      1.18        ad 	/*
    585      1.18        ad 	 * Notify MD code that a module has been unloaded.
    586      1.18        ad 	 */
    587      1.18        ad 	if (ko->ko_loaded) {
    588      1.18        ad 		error = kobj_machdep(ko, (void *)ko->ko_address, ko->ko_size,
    589      1.18        ad 		    false);
    590      1.18        ad 		if (error != 0) {
    591      1.18        ad 			kobj_error("machine dependent deinit failed");
    592      1.18        ad 		}
    593      1.18        ad 	}
    594      1.12        ad 	if (ko->ko_address != 0 && ko->ko_type != KT_MEMORY) {
    595      1.25        ad 		uvm_km_free(module_map, ko->ko_address, round_page(ko->ko_size),
    596       1.1        ad 		    UVM_KMF_WIRED);
    597       1.1        ad 	}
    598       1.1        ad 	if (ko->ko_ksyms == true) {
    599      1.23        ad 		ksyms_modunload(ko->ko_name);
    600       1.1        ad 	}
    601       1.1        ad 	if (ko->ko_symtab != NULL) {
    602      1.12        ad 		kobj_free(ko, ko->ko_symtab, ko->ko_symcnt * sizeof(Elf_Sym));
    603       1.1        ad 	}
    604       1.1        ad 	if (ko->ko_strtab != NULL) {
    605      1.12        ad 		kobj_free(ko, ko->ko_strtab, ko->ko_strtabsz);
    606       1.1        ad 	}
    607      1.14        ad 	if (ko->ko_progtab != NULL) {
    608      1.14        ad 		kobj_free(ko, ko->ko_progtab, ko->ko_nprogtab *
    609      1.14        ad 		    sizeof(*ko->ko_progtab));
    610      1.14        ad 		ko->ko_progtab = NULL;
    611      1.14        ad 	}
    612      1.14        ad 	if (ko->ko_shstrtab) {
    613      1.14        ad 		kobj_free(ko, ko->ko_shstrtab, ko->ko_shstrtabsz);
    614      1.14        ad 		ko->ko_shstrtab = NULL;
    615      1.14        ad 	}
    616       1.1        ad 
    617       1.3        ad 	kmem_free(ko, sizeof(*ko));
    618       1.1        ad }
    619       1.1        ad 
    620       1.1        ad /*
    621       1.2        ad  * kobj_stat:
    622       1.2        ad  *
    623       1.2        ad  *	Return size and load address of an object.
    624       1.2        ad  */
    625  1.33.2.2       jym int
    626       1.8        ad kobj_stat(kobj_t ko, vaddr_t *address, size_t *size)
    627       1.2        ad {
    628       1.2        ad 
    629       1.2        ad 	if (address != NULL) {
    630       1.2        ad 		*address = ko->ko_address;
    631       1.2        ad 	}
    632       1.2        ad 	if (size != NULL) {
    633       1.2        ad 		*size = ko->ko_size;
    634       1.2        ad 	}
    635  1.33.2.2       jym 	return 0;
    636       1.2        ad }
    637       1.2        ad 
    638       1.2        ad /*
    639      1.18        ad  * kobj_affix:
    640       1.3        ad  *
    641      1.18        ad  *	Set an object's name and perform global relocs.  May only be
    642      1.18        ad  *	called after the module and any requisite modules are loaded.
    643       1.3        ad  */
    644       1.6        ad int
    645      1.18        ad kobj_affix(kobj_t ko, const char *name)
    646       1.3        ad {
    647       1.6        ad 	int error;
    648       1.3        ad 
    649      1.18        ad 	KASSERT(ko->ko_ksyms == false);
    650      1.18        ad 	KASSERT(ko->ko_loaded == false);
    651       1.3        ad 
    652       1.3        ad 	strlcpy(ko->ko_name, name, sizeof(ko->ko_name));
    653       1.6        ad 
    654      1.30        ad 	/* Cache addresses of undefined symbols. */
    655      1.30        ad 	error = kobj_checksyms(ko, true);
    656      1.30        ad 
    657      1.23        ad 	/* Now do global relocations. */
    658      1.30        ad 	if (error == 0)
    659      1.30        ad 		error = kobj_relocate(ko, false);
    660      1.23        ad 
    661      1.23        ad 	/*
    662      1.23        ad 	 * Now that we know the name, register the symbol table.
    663      1.25        ad 	 * Do after global relocations because ksyms will pack
    664      1.25        ad 	 * the table.
    665      1.23        ad 	 */
    666      1.30        ad 	if (error == 0) {
    667      1.30        ad 		ksyms_modload(ko->ko_name, ko->ko_symtab, ko->ko_symcnt *
    668      1.30        ad 		    sizeof(Elf_Sym), ko->ko_strtab, ko->ko_strtabsz);
    669      1.30        ad 		ko->ko_ksyms = true;
    670      1.30        ad 	}
    671      1.18        ad 
    672      1.18        ad 	/* Jettison unneeded memory post-link. */
    673      1.18        ad 	kobj_jettison(ko);
    674      1.18        ad 
    675      1.33     pooka 	/*
    676      1.33     pooka 	 * Notify MD code that a module has been loaded.
    677      1.33     pooka 	 *
    678      1.33     pooka 	 * Most architectures use this opportunity to flush their caches.
    679      1.33     pooka 	 */
    680      1.18        ad 	if (error == 0) {
    681      1.18        ad 		error = kobj_machdep(ko, (void *)ko->ko_address, ko->ko_size,
    682      1.18        ad 		    true);
    683      1.18        ad 		if (error != 0) {
    684      1.18        ad 			kobj_error("machine dependent init failed");
    685      1.18        ad 		}
    686      1.18        ad 		ko->ko_loaded = true;
    687      1.18        ad 	}
    688      1.18        ad 
    689      1.18        ad 	/* If there was an error, destroy the whole object. */
    690      1.18        ad 	if (error != 0) {
    691      1.18        ad 		kobj_unload(ko);
    692       1.6        ad 	}
    693       1.6        ad 
    694       1.6        ad 	return error;
    695       1.3        ad }
    696       1.3        ad 
    697       1.3        ad /*
    698       1.8        ad  * kobj_find_section:
    699       1.8        ad  *
    700       1.8        ad  *	Given a section name, search the loaded object and return
    701       1.8        ad  *	virtual address if present and loaded.
    702       1.8        ad  */
    703       1.8        ad int
    704       1.8        ad kobj_find_section(kobj_t ko, const char *name, void **addr, size_t *size)
    705       1.8        ad {
    706       1.8        ad 	int i;
    707       1.8        ad 
    708       1.8        ad 	KASSERT(ko->ko_progtab != NULL);
    709       1.8        ad 
    710       1.8        ad 	for (i = 0; i < ko->ko_nprogtab; i++) {
    711       1.8        ad 		if (strcmp(ko->ko_progtab[i].name, name) == 0) {
    712       1.8        ad 			if (addr != NULL) {
    713       1.8        ad 				*addr = ko->ko_progtab[i].addr;
    714       1.8        ad 			}
    715       1.8        ad 			if (size != NULL) {
    716       1.8        ad 				*size = ko->ko_progtab[i].size;
    717       1.8        ad 			}
    718       1.8        ad 			return 0;
    719       1.8        ad 		}
    720       1.8        ad 	}
    721       1.8        ad 
    722       1.8        ad 	return ENOENT;
    723       1.8        ad }
    724       1.8        ad 
    725       1.8        ad /*
    726      1.18        ad  * kobj_jettison:
    727       1.1        ad  *
    728      1.18        ad  *	Release object data not needed after performing relocations.
    729       1.1        ad  */
    730       1.1        ad static void
    731      1.18        ad kobj_jettison(kobj_t ko)
    732       1.1        ad {
    733       1.1        ad 	int i;
    734       1.1        ad 
    735       1.1        ad 	if (ko->ko_reltab != NULL) {
    736  1.33.2.2       jym 		for (i = 0; i < ko->ko_nrel; i++) {
    737  1.33.2.2       jym 			if (ko->ko_reltab[i].rel) {
    738  1.33.2.2       jym 				kobj_free(ko, ko->ko_reltab[i].rel,
    739  1.33.2.2       jym 				    ko->ko_reltab[i].size);
    740  1.33.2.2       jym 			}
    741  1.33.2.2       jym 		}
    742      1.12        ad 		kobj_free(ko, ko->ko_reltab, ko->ko_nrel *
    743       1.1        ad 		    sizeof(*ko->ko_reltab));
    744       1.1        ad 		ko->ko_reltab = NULL;
    745       1.1        ad 		ko->ko_nrel = 0;
    746       1.1        ad 	}
    747       1.1        ad 	if (ko->ko_relatab != NULL) {
    748  1.33.2.2       jym 		for (i = 0; i < ko->ko_nrela; i++) {
    749  1.33.2.2       jym 			if (ko->ko_relatab[i].rela) {
    750  1.33.2.2       jym 				kobj_free(ko, ko->ko_relatab[i].rela,
    751  1.33.2.2       jym 				    ko->ko_relatab[i].size);
    752  1.33.2.2       jym 			}
    753  1.33.2.2       jym 		}
    754      1.12        ad 		kobj_free(ko, ko->ko_relatab, ko->ko_nrela *
    755       1.1        ad 		    sizeof(*ko->ko_relatab));
    756       1.1        ad 		ko->ko_relatab = NULL;
    757       1.1        ad 		ko->ko_nrela = 0;
    758       1.1        ad 	}
    759       1.1        ad 	if (ko->ko_shdr != NULL) {
    760      1.12        ad 		kobj_free(ko, ko->ko_shdr, ko->ko_shdrsz);
    761       1.1        ad 		ko->ko_shdr = NULL;
    762       1.1        ad 	}
    763       1.1        ad }
    764       1.1        ad 
    765       1.1        ad /*
    766       1.1        ad  * kobj_sym_lookup:
    767       1.1        ad  *
    768       1.1        ad  *	Symbol lookup function to be used when the symbol index
    769       1.1        ad  *	is known (ie during relocation).
    770       1.1        ad  */
    771       1.1        ad uintptr_t
    772       1.1        ad kobj_sym_lookup(kobj_t ko, uintptr_t symidx)
    773       1.1        ad {
    774       1.1        ad 	const Elf_Sym *sym;
    775       1.1        ad 	const char *symbol;
    776       1.1        ad 
    777       1.1        ad 	/* Don't even try to lookup the symbol if the index is bogus. */
    778       1.1        ad 	if (symidx >= ko->ko_symcnt)
    779       1.1        ad 		return 0;
    780       1.1        ad 
    781       1.1        ad 	sym = ko->ko_symtab + symidx;
    782       1.1        ad 
    783       1.1        ad 	/* Quick answer if there is a definition included. */
    784       1.1        ad 	if (sym->st_shndx != SHN_UNDEF) {
    785      1.28        ad 		return (uintptr_t)sym->st_value;
    786       1.1        ad 	}
    787       1.1        ad 
    788       1.1        ad 	/* If we get here, then it is undefined and needs a lookup. */
    789       1.1        ad 	switch (ELF_ST_BIND(sym->st_info)) {
    790       1.1        ad 	case STB_LOCAL:
    791       1.1        ad 		/* Local, but undefined? huh? */
    792       1.1        ad 		kobj_error("local symbol undefined");
    793       1.1        ad 		return 0;
    794       1.1        ad 
    795       1.1        ad 	case STB_GLOBAL:
    796       1.1        ad 		/* Relative to Data or Function name */
    797       1.1        ad 		symbol = ko->ko_strtab + sym->st_name;
    798       1.1        ad 
    799       1.1        ad 		/* Force a lookup failure if the symbol name is bogus. */
    800       1.1        ad 		if (*symbol == 0) {
    801       1.1        ad 			kobj_error("bad symbol name");
    802       1.1        ad 			return 0;
    803       1.1        ad 		}
    804       1.1        ad 
    805      1.28        ad 		return (uintptr_t)sym->st_value;
    806       1.1        ad 
    807       1.1        ad 	case STB_WEAK:
    808       1.1        ad 		kobj_error("weak symbols not supported\n");
    809       1.1        ad 		return 0;
    810       1.1        ad 
    811       1.1        ad 	default:
    812       1.1        ad 		return 0;
    813       1.1        ad 	}
    814       1.1        ad }
    815       1.1        ad 
    816       1.1        ad /*
    817       1.1        ad  * kobj_findbase:
    818       1.1        ad  *
    819       1.1        ad  *	Return base address of the given section.
    820       1.1        ad  */
    821       1.1        ad static uintptr_t
    822       1.1        ad kobj_findbase(kobj_t ko, int sec)
    823       1.1        ad {
    824       1.1        ad 	int i;
    825       1.1        ad 
    826       1.1        ad 	for (i = 0; i < ko->ko_nprogtab; i++) {
    827       1.1        ad 		if (sec == ko->ko_progtab[i].sec) {
    828       1.1        ad 			return (uintptr_t)ko->ko_progtab[i].addr;
    829       1.1        ad 		}
    830       1.1        ad 	}
    831       1.1        ad 	return 0;
    832       1.1        ad }
    833       1.1        ad 
    834       1.1        ad /*
    835      1.28        ad  * kobj_checksyms:
    836      1.23        ad  *
    837      1.30        ad  *	Scan symbol table for duplicates or resolve references to
    838      1.28        ad  *	exernal symbols.
    839      1.23        ad  */
    840      1.23        ad static int
    841      1.30        ad kobj_checksyms(kobj_t ko, bool undefined)
    842      1.23        ad {
    843      1.23        ad 	unsigned long rval;
    844      1.23        ad 	Elf_Sym *sym, *ms;
    845      1.23        ad 	const char *name;
    846      1.28        ad 	int error;
    847      1.28        ad 
    848      1.28        ad 	error = 0;
    849      1.23        ad 
    850      1.23        ad 	for (ms = (sym = ko->ko_symtab) + ko->ko_symcnt; sym < ms; sym++) {
    851      1.23        ad 		/* Check validity of the symbol. */
    852      1.23        ad 		if (ELF_ST_BIND(sym->st_info) != STB_GLOBAL ||
    853      1.23        ad 		    sym->st_name == 0)
    854      1.23        ad 			continue;
    855      1.30        ad 		if (undefined != (sym->st_shndx == SHN_UNDEF)) {
    856      1.30        ad 			continue;
    857      1.30        ad 		}
    858      1.23        ad 
    859      1.28        ad 		/*
    860      1.28        ad 		 * Look it up.  Don't need to lock, as it is known that
    861      1.28        ad 		 * the symbol tables aren't going to change (we hold
    862      1.28        ad 		 * module_lock).
    863      1.28        ad 		 */
    864      1.23        ad 		name = ko->ko_strtab + sym->st_name;
    865      1.28        ad 		if (ksyms_getval_unlocked(NULL, name, &rval,
    866      1.28        ad 		    KSYMS_EXTERN) != 0) {
    867      1.30        ad 			if (undefined) {
    868      1.28        ad 				kobj_error("symbol `%s' not found", name);
    869      1.28        ad 				error = ENOEXEC;
    870      1.28        ad 			}
    871      1.29        ad 			continue;
    872      1.28        ad 		}
    873      1.28        ad 
    874      1.28        ad 		/* Save values of undefined globals. */
    875      1.30        ad 		if (undefined) {
    876      1.28        ad 			sym->st_value = (Elf_Addr)rval;
    877      1.23        ad 			continue;
    878      1.23        ad 		}
    879      1.23        ad 
    880      1.28        ad 		/* Check (and complain) about differing values. */
    881      1.28        ad 		if (sym->st_value == rval) {
    882      1.23        ad 			continue;
    883      1.23        ad 		}
    884      1.23        ad 		if (strcmp(name, "_bss_start") == 0 ||
    885      1.23        ad 		    strcmp(name, "__bss_start") == 0 ||
    886      1.23        ad 		    strcmp(name, "_bss_end__") == 0 ||
    887      1.23        ad 		    strcmp(name, "__bss_end__") == 0 ||
    888      1.23        ad 		    strcmp(name, "_edata") == 0 ||
    889      1.23        ad 		    strcmp(name, "_end") == 0 ||
    890      1.23        ad 		    strcmp(name, "__end") == 0 ||
    891      1.23        ad 		    strcmp(name, "__end__") == 0 ||
    892      1.23        ad 		    strncmp(name, "__start_link_set_", 17) == 0 ||
    893      1.23        ad 		    strncmp(name, "__stop_link_set_", 16)) {
    894      1.23        ad 		    	continue;
    895      1.23        ad 		}
    896      1.24        ad 		kobj_error("global symbol `%s' redefined\n", name);
    897      1.28        ad 		error = ENOEXEC;
    898      1.23        ad 	}
    899      1.23        ad 
    900      1.28        ad 	return error;
    901      1.23        ad }
    902      1.23        ad 
    903      1.23        ad /*
    904       1.1        ad  * kobj_relocate:
    905       1.1        ad  *
    906      1.18        ad  *	Resolve relocations for the loaded object.
    907       1.1        ad  */
    908       1.1        ad static int
    909      1.18        ad kobj_relocate(kobj_t ko, bool local)
    910       1.1        ad {
    911       1.1        ad 	const Elf_Rel *rellim;
    912       1.1        ad 	const Elf_Rel *rel;
    913       1.1        ad 	const Elf_Rela *relalim;
    914       1.1        ad 	const Elf_Rela *rela;
    915       1.1        ad 	const Elf_Sym *sym;
    916       1.1        ad 	uintptr_t base;
    917       1.8        ad 	int i, error;
    918       1.1        ad 	uintptr_t symidx;
    919       1.1        ad 
    920       1.1        ad 	/*
    921       1.1        ad 	 * Perform relocations without addend if there are any.
    922       1.1        ad 	 */
    923       1.1        ad 	for (i = 0; i < ko->ko_nrel; i++) {
    924       1.1        ad 		rel = ko->ko_reltab[i].rel;
    925       1.1        ad 		if (rel == NULL) {
    926       1.1        ad 			continue;
    927       1.1        ad 		}
    928       1.1        ad 		rellim = rel + ko->ko_reltab[i].nrel;
    929       1.1        ad 		base = kobj_findbase(ko, ko->ko_reltab[i].sec);
    930       1.1        ad 		if (base == 0) {
    931       1.1        ad 			panic("lost base for e_reltab");
    932       1.1        ad 		}
    933       1.1        ad 		for (; rel < rellim; rel++) {
    934       1.1        ad 			symidx = ELF_R_SYM(rel->r_info);
    935       1.1        ad 			if (symidx >= ko->ko_symcnt) {
    936       1.1        ad 				continue;
    937       1.1        ad 			}
    938       1.1        ad 			sym = ko->ko_symtab + symidx;
    939      1.18        ad 			if (local != (ELF_ST_BIND(sym->st_info) == STB_LOCAL)) {
    940      1.18        ad 				continue;
    941      1.18        ad 			}
    942      1.18        ad 			error = kobj_reloc(ko, base, rel, false, local);
    943       1.8        ad 			if (error != 0) {
    944       1.1        ad 				return ENOENT;
    945       1.1        ad 			}
    946       1.1        ad 		}
    947       1.1        ad 	}
    948       1.1        ad 
    949       1.1        ad 	/*
    950       1.1        ad 	 * Perform relocations with addend if there are any.
    951       1.1        ad 	 */
    952       1.1        ad 	for (i = 0; i < ko->ko_nrela; i++) {
    953       1.1        ad 		rela = ko->ko_relatab[i].rela;
    954       1.1        ad 		if (rela == NULL) {
    955       1.1        ad 			continue;
    956       1.1        ad 		}
    957       1.1        ad 		relalim = rela + ko->ko_relatab[i].nrela;
    958       1.1        ad 		base = kobj_findbase(ko, ko->ko_relatab[i].sec);
    959       1.1        ad 		if (base == 0) {
    960       1.1        ad 			panic("lost base for e_relatab");
    961       1.1        ad 		}
    962       1.1        ad 		for (; rela < relalim; rela++) {
    963       1.1        ad 			symidx = ELF_R_SYM(rela->r_info);
    964       1.1        ad 			if (symidx >= ko->ko_symcnt) {
    965       1.1        ad 				continue;
    966       1.1        ad 			}
    967       1.1        ad 			sym = ko->ko_symtab + symidx;
    968      1.18        ad 			if (local != (ELF_ST_BIND(sym->st_info) == STB_LOCAL)) {
    969      1.18        ad 				continue;
    970      1.18        ad 			}
    971      1.18        ad 			error = kobj_reloc(ko, base, rela, true, local);
    972       1.8        ad 			if (error != 0) {
    973       1.1        ad 				return ENOENT;
    974       1.1        ad 			}
    975       1.1        ad 		}
    976       1.1        ad 	}
    977       1.1        ad 
    978       1.1        ad 	return 0;
    979       1.1        ad }
    980       1.1        ad 
    981       1.1        ad /*
    982       1.1        ad  * kobj_error:
    983       1.1        ad  *
    984       1.1        ad  *	Utility function: log an error.
    985       1.1        ad  */
    986       1.1        ad static void
    987       1.1        ad kobj_error(const char *fmt, ...)
    988       1.1        ad {
    989       1.1        ad 	va_list ap;
    990       1.1        ad 
    991       1.1        ad 	va_start(ap, fmt);
    992       1.1        ad 	printf("WARNING: linker error: ");
    993       1.1        ad 	vprintf(fmt, ap);
    994       1.1        ad 	printf("\n");
    995       1.1        ad 	va_end(ap);
    996       1.1        ad }
    997       1.1        ad 
    998       1.1        ad /*
    999       1.1        ad  * kobj_read:
   1000       1.1        ad  *
   1001       1.1        ad  *	Utility function: read from the object.
   1002       1.1        ad  */
   1003       1.1        ad static int
   1004      1.12        ad kobj_read(kobj_t ko, void **basep, size_t size, off_t off)
   1005       1.1        ad {
   1006       1.1        ad 	size_t resid;
   1007      1.12        ad 	void *base;
   1008       1.1        ad 	int error;
   1009       1.1        ad 
   1010       1.3        ad 	KASSERT(ko->ko_source != NULL);
   1011       1.3        ad 
   1012       1.3        ad 	switch (ko->ko_type) {
   1013       1.3        ad 	case KT_VNODE:
   1014      1.12        ad 		base = kmem_alloc(size, KM_SLEEP);
   1015      1.12        ad 		if (base == NULL) {
   1016      1.12        ad 			error = ENOMEM;
   1017      1.12        ad 			break;
   1018      1.12        ad 		}
   1019       1.3        ad 		error = vn_rdwr(UIO_READ, ko->ko_source, base, size, off,
   1020       1.3        ad 		    UIO_SYSSPACE, IO_NODELOCKED, curlwp->l_cred, &resid,
   1021       1.3        ad 		    curlwp);
   1022       1.3        ad 		if (error == 0 && resid != 0) {
   1023      1.22        ad 			error = EINVAL;
   1024      1.22        ad 		}
   1025      1.22        ad 		if (error != 0) {
   1026      1.12        ad 			kmem_free(base, size);
   1027      1.22        ad 			base = NULL;
   1028       1.3        ad 		}
   1029       1.3        ad 		break;
   1030       1.3        ad 	case KT_MEMORY:
   1031       1.4  jmcneill 		if (ko->ko_memsize != -1 && off + size > ko->ko_memsize) {
   1032       1.3        ad 			kobj_error("kobj_read: preloaded object short");
   1033       1.3        ad 			error = EINVAL;
   1034      1.12        ad 			base = NULL;
   1035      1.12        ad 		} else {
   1036      1.12        ad 			base = (uint8_t *)ko->ko_source + off;
   1037      1.12        ad 			error = 0;
   1038      1.12        ad 		}
   1039      1.12        ad 		break;
   1040      1.12        ad 	default:
   1041      1.12        ad 		panic("kobj_read: invalid type");
   1042      1.12        ad 	}
   1043      1.12        ad 
   1044      1.12        ad 	*basep = base;
   1045      1.12        ad 	return error;
   1046      1.12        ad }
   1047      1.12        ad 
   1048      1.12        ad /*
   1049      1.12        ad  * kobj_read_bits:
   1050      1.12        ad  *
   1051      1.12        ad  *	Utility function: load a section from the object.
   1052      1.12        ad  */
   1053      1.12        ad static int
   1054      1.12        ad kobj_read_bits(kobj_t ko, void *base, size_t size, off_t off)
   1055      1.12        ad {
   1056      1.12        ad 	size_t resid;
   1057      1.12        ad 	int error;
   1058      1.12        ad 
   1059      1.12        ad 	KASSERT(ko->ko_source != NULL);
   1060      1.12        ad 
   1061      1.12        ad 	switch (ko->ko_type) {
   1062      1.12        ad 	case KT_VNODE:
   1063      1.18        ad 		KASSERT((uintptr_t)base >= (uintptr_t)ko->ko_address);
   1064      1.18        ad 		KASSERT((uintptr_t)base + size <=
   1065      1.18        ad 		    (uintptr_t)ko->ko_address + ko->ko_size);
   1066      1.12        ad 		error = vn_rdwr(UIO_READ, ko->ko_source, base, size, off,
   1067      1.12        ad 		    UIO_SYSSPACE, IO_NODELOCKED, curlwp->l_cred, &resid,
   1068      1.12        ad 		    curlwp);
   1069      1.12        ad 		if (error == 0 && resid != 0) {
   1070      1.12        ad 			error = EINVAL;
   1071      1.12        ad 		}
   1072      1.12        ad 		break;
   1073      1.12        ad 	case KT_MEMORY:
   1074      1.12        ad 		if (ko->ko_memsize != -1 && off + size > ko->ko_memsize) {
   1075      1.12        ad 			kobj_error("kobj_read_bits: preloaded object short");
   1076      1.12        ad 			error = EINVAL;
   1077      1.12        ad 		} else if ((uint8_t *)base != (uint8_t *)ko->ko_source + off) {
   1078      1.12        ad 			kobj_error("kobj_read_bits: object not aligned");
   1079      1.12        ad 			kobj_error("source=%p base=%p off=%d size=%zd",
   1080      1.12        ad 			    ko->ko_source, base, (int)off, size);
   1081      1.12        ad 			error = EINVAL;
   1082       1.3        ad 		} else {
   1083      1.12        ad 			/* Nothing to do.  Loading in-situ. */
   1084       1.3        ad 			error = 0;
   1085       1.3        ad 		}
   1086       1.3        ad 		break;
   1087       1.3        ad 	default:
   1088       1.3        ad 		panic("kobj_read: invalid type");
   1089       1.3        ad 	}
   1090       1.3        ad 
   1091       1.1        ad 	return error;
   1092       1.1        ad }
   1093       1.5        ad 
   1094      1.12        ad /*
   1095      1.12        ad  * kobj_free:
   1096      1.12        ad  *
   1097      1.12        ad  *	Utility function: free memory if it was allocated from the heap.
   1098      1.12        ad  */
   1099      1.12        ad static void
   1100      1.12        ad kobj_free(kobj_t ko, void *base, size_t size)
   1101      1.12        ad {
   1102      1.12        ad 
   1103      1.12        ad 	if (ko->ko_type != KT_MEMORY)
   1104      1.12        ad 		kmem_free(base, size);
   1105      1.12        ad }
   1106      1.12        ad 
   1107       1.5        ad #else	/* MODULAR */
   1108       1.5        ad 
   1109       1.5        ad int
   1110  1.33.2.2       jym kobj_load_file(kobj_t *kop, const char *name, const bool nochroot)
   1111       1.5        ad {
   1112       1.5        ad 
   1113       1.5        ad 	return ENOSYS;
   1114       1.5        ad }
   1115       1.5        ad 
   1116       1.5        ad int
   1117      1.18        ad kobj_load_mem(kobj_t *kop, void *base, ssize_t size)
   1118       1.5        ad {
   1119       1.5        ad 
   1120       1.5        ad 	return ENOSYS;
   1121       1.5        ad }
   1122       1.5        ad 
   1123       1.5        ad void
   1124       1.5        ad kobj_unload(kobj_t ko)
   1125       1.5        ad {
   1126       1.5        ad 
   1127       1.5        ad 	panic("not modular");
   1128       1.5        ad }
   1129       1.5        ad 
   1130  1.33.2.2       jym int
   1131       1.8        ad kobj_stat(kobj_t ko, vaddr_t *base, size_t *size)
   1132       1.5        ad {
   1133       1.5        ad 
   1134  1.33.2.2       jym 	return ENOSYS;
   1135       1.5        ad }
   1136       1.5        ad 
   1137       1.7        ad int
   1138      1.18        ad kobj_affix(kobj_t ko, const char *name)
   1139       1.5        ad {
   1140       1.5        ad 
   1141       1.5        ad 	panic("not modular");
   1142       1.5        ad }
   1143       1.5        ad 
   1144       1.8        ad int
   1145       1.8        ad kobj_find_section(kobj_t ko, const char *name, void **addr, size_t *size)
   1146       1.8        ad {
   1147       1.8        ad 
   1148       1.8        ad 	panic("not modular");
   1149       1.8        ad }
   1150       1.8        ad 
   1151       1.5        ad #endif	/* MODULAR */
   1152