xref: /freebsd/libexec/rtld-elf/map_object.c (revision 83aa9cc00c2d83d05a0efe7a1496d8aab4a153bb)
13124c3e0SJohn Polstra /*-
23124c3e0SJohn Polstra  * Copyright 1996-1998 John D. Polstra.
33124c3e0SJohn Polstra  * All rights reserved.
43124c3e0SJohn Polstra  *
53124c3e0SJohn Polstra  * Redistribution and use in source and binary forms, with or without
63124c3e0SJohn Polstra  * modification, are permitted provided that the following conditions
73124c3e0SJohn Polstra  * are met:
83124c3e0SJohn Polstra  * 1. Redistributions of source code must retain the above copyright
93124c3e0SJohn Polstra  *    notice, this list of conditions and the following disclaimer.
103124c3e0SJohn Polstra  * 2. Redistributions in binary form must reproduce the above copyright
113124c3e0SJohn Polstra  *    notice, this list of conditions and the following disclaimer in the
123124c3e0SJohn Polstra  *    documentation and/or other materials provided with the distribution.
133124c3e0SJohn Polstra  *
143124c3e0SJohn Polstra  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
153124c3e0SJohn Polstra  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
163124c3e0SJohn Polstra  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
173124c3e0SJohn Polstra  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
183124c3e0SJohn Polstra  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
193124c3e0SJohn Polstra  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
203124c3e0SJohn Polstra  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
213124c3e0SJohn Polstra  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
223124c3e0SJohn Polstra  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
233124c3e0SJohn Polstra  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
243124c3e0SJohn Polstra  *
257f3dea24SPeter Wemm  * $FreeBSD$
263124c3e0SJohn Polstra  */
273124c3e0SJohn Polstra 
283124c3e0SJohn Polstra #include <sys/param.h>
293124c3e0SJohn Polstra #include <sys/mman.h>
307360ae0fSJohn Polstra #include <sys/stat.h>
313124c3e0SJohn Polstra 
323124c3e0SJohn Polstra #include <errno.h>
333124c3e0SJohn Polstra #include <stddef.h>
34926ea445SJohn Polstra #include <stdlib.h>
353124c3e0SJohn Polstra #include <string.h>
363124c3e0SJohn Polstra #include <unistd.h>
373124c3e0SJohn Polstra 
38b5393d9fSDoug Rabson #include "debug.h"
393124c3e0SJohn Polstra #include "rtld.h"
403124c3e0SJohn Polstra 
41341b3de6SMatthew N. Dodd static Elf_Ehdr *get_elf_header (int, const char *);
42fa7dd9c5SMatthew Dillon static int convert_prot(int);	/* Elf flags -> mmap protection */
43fa7dd9c5SMatthew Dillon static int convert_flags(int); /* Elf flags -> mmap flags */
443124c3e0SJohn Polstra 
453124c3e0SJohn Polstra /*
46bfb1ef60SJohn Polstra  * Map a shared object into memory.  The "fd" argument is a file descriptor,
473124c3e0SJohn Polstra  * which must be open on the object and positioned at its beginning.
48bfb1ef60SJohn Polstra  * The "path" argument is a pathname that is used only for error messages.
493124c3e0SJohn Polstra  *
503124c3e0SJohn Polstra  * The return value is a pointer to a newly-allocated Obj_Entry structure
513124c3e0SJohn Polstra  * for the shared object.  Returns NULL on failure.
523124c3e0SJohn Polstra  */
533124c3e0SJohn Polstra Obj_Entry *
547360ae0fSJohn Polstra map_object(int fd, const char *path, const struct stat *sb)
553124c3e0SJohn Polstra {
563124c3e0SJohn Polstra     Obj_Entry *obj;
57341b3de6SMatthew N. Dodd     Elf_Ehdr *hdr;
5878af18bdSDavid E. O'Brien     int i;
5913575fc4SDoug Rabson     Elf_Phdr *phdr;
6013575fc4SDoug Rabson     Elf_Phdr *phlimit;
618b7f25d4SAlexander Kabaev     Elf_Phdr **segs;
623124c3e0SJohn Polstra     int nsegs;
6313575fc4SDoug Rabson     Elf_Phdr *phdyn;
64a607e5d7SJohn Polstra     Elf_Phdr *phinterp;
65017246d0SDoug Rabson     Elf_Phdr *phtls;
663124c3e0SJohn Polstra     caddr_t mapbase;
673124c3e0SJohn Polstra     size_t mapsize;
6813575fc4SDoug Rabson     Elf_Off base_offset;
6913575fc4SDoug Rabson     Elf_Addr base_vaddr;
7013575fc4SDoug Rabson     Elf_Addr base_vlimit;
713124c3e0SJohn Polstra     caddr_t base_addr;
7213575fc4SDoug Rabson     Elf_Off data_offset;
7313575fc4SDoug Rabson     Elf_Addr data_vaddr;
7413575fc4SDoug Rabson     Elf_Addr data_vlimit;
753124c3e0SJohn Polstra     caddr_t data_addr;
768b7f25d4SAlexander Kabaev     int data_prot;
77fa7dd9c5SMatthew Dillon     int data_flags;
7813575fc4SDoug Rabson     Elf_Addr clear_vaddr;
793124c3e0SJohn Polstra     caddr_t clear_addr;
808b7f25d4SAlexander Kabaev     caddr_t clear_page;
8149f90ad2SAlexander Kabaev     Elf_Addr phdr_vaddr;
8249f90ad2SAlexander Kabaev     size_t nclear, phsize;
8313575fc4SDoug Rabson     Elf_Addr bss_vaddr;
8413575fc4SDoug Rabson     Elf_Addr bss_vlimit;
853124c3e0SJohn Polstra     caddr_t bss_addr;
86212f264cSKonstantin Belousov     Elf_Word stack_flags;
876d7610d7SKonstantin Belousov     Elf_Addr relro_page;
886d7610d7SKonstantin Belousov     size_t relro_size;
89*83aa9cc0SKonstantin Belousov     Elf_Addr note_start;
90*83aa9cc0SKonstantin Belousov     Elf_Addr note_end;
913124c3e0SJohn Polstra 
92341b3de6SMatthew N. Dodd     hdr = get_elf_header(fd, path);
93341b3de6SMatthew N. Dodd     if (hdr == NULL)
94341b3de6SMatthew N. Dodd 	return (NULL);
953124c3e0SJohn Polstra 
963124c3e0SJohn Polstra     /*
973124c3e0SJohn Polstra      * Scan the program header entries, and save key information.
983124c3e0SJohn Polstra      *
9911e0093fSKonstantin Belousov      * We expect that the loadable segments are ordered by load address.
1003124c3e0SJohn Polstra      */
101341b3de6SMatthew N. Dodd     phdr = (Elf_Phdr *) ((char *)hdr + hdr->e_phoff);
10249f90ad2SAlexander Kabaev     phsize  = hdr->e_phnum * sizeof (phdr[0]);
103341b3de6SMatthew N. Dodd     phlimit = phdr + hdr->e_phnum;
1048b7f25d4SAlexander Kabaev     nsegs = -1;
10549f90ad2SAlexander Kabaev     phdyn = phinterp = phtls = NULL;
10649f90ad2SAlexander Kabaev     phdr_vaddr = 0;
1076d7610d7SKonstantin Belousov     relro_page = 0;
1086d7610d7SKonstantin Belousov     relro_size = 0;
109*83aa9cc0SKonstantin Belousov     note_start = 0;
110*83aa9cc0SKonstantin Belousov     note_end = 0;
111341b3de6SMatthew N. Dodd     segs = alloca(sizeof(segs[0]) * hdr->e_phnum);
112cb38d494SKonstantin Belousov     stack_flags = RTLD_DEFAULT_STACK_PF_EXEC | PF_R | PF_W;
1133124c3e0SJohn Polstra     while (phdr < phlimit) {
1143124c3e0SJohn Polstra 	switch (phdr->p_type) {
1153124c3e0SJohn Polstra 
116a607e5d7SJohn Polstra 	case PT_INTERP:
117a607e5d7SJohn Polstra 	    phinterp = phdr;
118a607e5d7SJohn Polstra 	    break;
119a607e5d7SJohn Polstra 
1203124c3e0SJohn Polstra 	case PT_LOAD:
1218b7f25d4SAlexander Kabaev 	    segs[++nsegs] = phdr;
12249f90ad2SAlexander Kabaev     	    if ((segs[nsegs]->p_align & (PAGE_SIZE - 1)) != 0) {
1238b7f25d4SAlexander Kabaev 		_rtld_error("%s: PT_LOAD segment %d not page-aligned",
1248b7f25d4SAlexander Kabaev 		    path, nsegs);
125bfb1ef60SJohn Polstra 		return NULL;
126bfb1ef60SJohn Polstra 	    }
1273124c3e0SJohn Polstra 	    break;
1283124c3e0SJohn Polstra 
1293124c3e0SJohn Polstra 	case PT_PHDR:
13049f90ad2SAlexander Kabaev 	    phdr_vaddr = phdr->p_vaddr;
13149f90ad2SAlexander Kabaev 	    phsize = phdr->p_memsz;
1323124c3e0SJohn Polstra 	    break;
1333124c3e0SJohn Polstra 
1343124c3e0SJohn Polstra 	case PT_DYNAMIC:
1353124c3e0SJohn Polstra 	    phdyn = phdr;
1363124c3e0SJohn Polstra 	    break;
137017246d0SDoug Rabson 
138017246d0SDoug Rabson 	case PT_TLS:
139017246d0SDoug Rabson 	    phtls = phdr;
140017246d0SDoug Rabson 	    break;
141212f264cSKonstantin Belousov 
142212f264cSKonstantin Belousov 	case PT_GNU_STACK:
143212f264cSKonstantin Belousov 	    stack_flags = phdr->p_flags;
144212f264cSKonstantin Belousov 	    break;
1456d7610d7SKonstantin Belousov 
1466d7610d7SKonstantin Belousov 	case PT_GNU_RELRO:
1476d7610d7SKonstantin Belousov 	    relro_page = phdr->p_vaddr;
1486d7610d7SKonstantin Belousov 	    relro_size = phdr->p_memsz;
1496d7610d7SKonstantin Belousov 	    break;
150*83aa9cc0SKonstantin Belousov 
151*83aa9cc0SKonstantin Belousov 	case PT_NOTE:
152*83aa9cc0SKonstantin Belousov 	    note_start = (Elf_Addr)obj->relocbase + phdr->p_offset;
153*83aa9cc0SKonstantin Belousov 	    note_end = note_start + phdr->p_filesz;
154*83aa9cc0SKonstantin Belousov 	    digest_notes(obj, note_start, note_end);
155*83aa9cc0SKonstantin Belousov 	    break;
1563124c3e0SJohn Polstra 	}
1573124c3e0SJohn Polstra 
1583124c3e0SJohn Polstra 	++phdr;
1593124c3e0SJohn Polstra     }
1603124c3e0SJohn Polstra     if (phdyn == NULL) {
161bfb1ef60SJohn Polstra 	_rtld_error("%s: object is not dynamically-linked", path);
1623124c3e0SJohn Polstra 	return NULL;
1633124c3e0SJohn Polstra     }
1643124c3e0SJohn Polstra 
1658b7f25d4SAlexander Kabaev     if (nsegs < 0) {
166bfb1ef60SJohn Polstra 	_rtld_error("%s: too few PT_LOAD segments", path);
167bfb1ef60SJohn Polstra 	return NULL;
168bfb1ef60SJohn Polstra     }
1693124c3e0SJohn Polstra 
1703124c3e0SJohn Polstra     /*
1713124c3e0SJohn Polstra      * Map the entire address space of the object, to stake out our
1723124c3e0SJohn Polstra      * contiguous region, and to establish the base address for relocation.
1733124c3e0SJohn Polstra      */
1743124c3e0SJohn Polstra     base_offset = trunc_page(segs[0]->p_offset);
1753124c3e0SJohn Polstra     base_vaddr = trunc_page(segs[0]->p_vaddr);
1768b7f25d4SAlexander Kabaev     base_vlimit = round_page(segs[nsegs]->p_vaddr + segs[nsegs]->p_memsz);
1773124c3e0SJohn Polstra     mapsize = base_vlimit - base_vaddr;
178341b3de6SMatthew N. Dodd     base_addr = hdr->e_type == ET_EXEC ? (caddr_t) base_vaddr : NULL;
1793124c3e0SJohn Polstra 
180a3c8e04eSKonstantin Belousov     mapbase = mmap(base_addr, mapsize, PROT_NONE, MAP_ANON | MAP_PRIVATE |
181a3c8e04eSKonstantin Belousov       MAP_NOCORE, -1, 0);
1823124c3e0SJohn Polstra     if (mapbase == (caddr_t) -1) {
183bfb1ef60SJohn Polstra 	_rtld_error("%s: mmap of entire address space failed: %s",
184bfb1ef60SJohn Polstra 	  path, strerror(errno));
1853124c3e0SJohn Polstra 	return NULL;
1863124c3e0SJohn Polstra     }
1873124c3e0SJohn Polstra     if (base_addr != NULL && mapbase != base_addr) {
188bfb1ef60SJohn Polstra 	_rtld_error("%s: mmap returned wrong address: wanted %p, got %p",
189bfb1ef60SJohn Polstra 	  path, base_addr, mapbase);
1903124c3e0SJohn Polstra 	munmap(mapbase, mapsize);
1913124c3e0SJohn Polstra 	return NULL;
1923124c3e0SJohn Polstra     }
1933124c3e0SJohn Polstra 
1948b7f25d4SAlexander Kabaev     for (i = 0; i <= nsegs; i++) {
1958b7f25d4SAlexander Kabaev 	/* Overlay the segment onto the proper region. */
1968b7f25d4SAlexander Kabaev 	data_offset = trunc_page(segs[i]->p_offset);
1978b7f25d4SAlexander Kabaev 	data_vaddr = trunc_page(segs[i]->p_vaddr);
1988b7f25d4SAlexander Kabaev 	data_vlimit = round_page(segs[i]->p_vaddr + segs[i]->p_filesz);
1993124c3e0SJohn Polstra 	data_addr = mapbase + (data_vaddr - base_vaddr);
200fa7dd9c5SMatthew Dillon 	data_prot = convert_prot(segs[i]->p_flags);
201fa7dd9c5SMatthew Dillon 	data_flags = convert_flags(segs[i]->p_flags) | MAP_FIXED;
202a3c8e04eSKonstantin Belousov 	if (mmap(data_addr, data_vlimit - data_vaddr, data_prot,
203fa7dd9c5SMatthew Dillon 	  data_flags, fd, data_offset) == (caddr_t) -1) {
204bfb1ef60SJohn Polstra 	    _rtld_error("%s: mmap of data failed: %s", path, strerror(errno));
2053124c3e0SJohn Polstra 	    return NULL;
2063124c3e0SJohn Polstra 	}
2073124c3e0SJohn Polstra 
20869ca61baSKonstantin Belousov 	/* Do BSS setup */
20969ca61baSKonstantin Belousov 	if (segs[i]->p_filesz != segs[i]->p_memsz) {
21069ca61baSKonstantin Belousov 
2118b7f25d4SAlexander Kabaev 	    /* Clear any BSS in the last page of the segment. */
2128b7f25d4SAlexander Kabaev 	    clear_vaddr = segs[i]->p_vaddr + segs[i]->p_filesz;
2133124c3e0SJohn Polstra 	    clear_addr = mapbase + (clear_vaddr - base_vaddr);
2148b7f25d4SAlexander Kabaev 	    clear_page = mapbase + (trunc_page(clear_vaddr) - base_vaddr);
21569ca61baSKonstantin Belousov 
2168b7f25d4SAlexander Kabaev 	    if ((nclear = data_vlimit - clear_vaddr) > 0) {
2178b7f25d4SAlexander Kabaev 		/* Make sure the end of the segment is writable */
21869ca61baSKonstantin Belousov 		if ((data_prot & PROT_WRITE) == 0 && -1 ==
21969ca61baSKonstantin Belousov 		     mprotect(clear_page, PAGE_SIZE, data_prot|PROT_WRITE)) {
2208b7f25d4SAlexander Kabaev 			_rtld_error("%s: mprotect failed: %s", path,
2218b7f25d4SAlexander Kabaev 			    strerror(errno));
2228b7f25d4SAlexander Kabaev 			return NULL;
2238b7f25d4SAlexander Kabaev 		}
2248b7f25d4SAlexander Kabaev 
2253124c3e0SJohn Polstra 		memset(clear_addr, 0, nclear);
2263124c3e0SJohn Polstra 
2278b7f25d4SAlexander Kabaev 		/* Reset the data protection back */
2288b7f25d4SAlexander Kabaev 		if ((data_prot & PROT_WRITE) == 0)
2298b7f25d4SAlexander Kabaev 		    mprotect(clear_page, PAGE_SIZE, data_prot);
2308b7f25d4SAlexander Kabaev 	    }
2318b7f25d4SAlexander Kabaev 
2323124c3e0SJohn Polstra 	    /* Overlay the BSS segment onto the proper region. */
2333124c3e0SJohn Polstra 	    bss_vaddr = data_vlimit;
2348b7f25d4SAlexander Kabaev 	    bss_vlimit = round_page(segs[i]->p_vaddr + segs[i]->p_memsz);
2353124c3e0SJohn Polstra 	    bss_addr = mapbase +  (bss_vaddr - base_vaddr);
2363124c3e0SJohn Polstra 	    if (bss_vlimit > bss_vaddr) {	/* There is something to do */
237750b5e31SKonstantin Belousov 		if (mmap(bss_addr, bss_vlimit - bss_vaddr, data_prot,
238750b5e31SKonstantin Belousov 		    data_flags | MAP_ANON, -1, 0) == (caddr_t)-1) {
239750b5e31SKonstantin Belousov 		    _rtld_error("%s: mmap of bss failed: %s", path,
2408b7f25d4SAlexander Kabaev 			strerror(errno));
2413124c3e0SJohn Polstra 		    return NULL;
2423124c3e0SJohn Polstra 		}
2433124c3e0SJohn Polstra 	    }
24469ca61baSKonstantin Belousov 	}
24569ca61baSKonstantin Belousov 
24649f90ad2SAlexander Kabaev 	if (phdr_vaddr == 0 && data_offset <= hdr->e_phoff &&
24749f90ad2SAlexander Kabaev 	  (data_vlimit - data_vaddr + data_offset) >=
24849f90ad2SAlexander Kabaev 	  (hdr->e_phoff + hdr->e_phnum * sizeof (Elf_Phdr))) {
24949f90ad2SAlexander Kabaev 	    phdr_vaddr = data_vaddr + hdr->e_phoff - data_offset;
25049f90ad2SAlexander Kabaev 	}
2518b7f25d4SAlexander Kabaev     }
2523124c3e0SJohn Polstra 
253926ea445SJohn Polstra     obj = obj_new();
2547360ae0fSJohn Polstra     if (sb != NULL) {
2557360ae0fSJohn Polstra 	obj->dev = sb->st_dev;
2567360ae0fSJohn Polstra 	obj->ino = sb->st_ino;
2577360ae0fSJohn Polstra     }
2583124c3e0SJohn Polstra     obj->mapbase = mapbase;
2593124c3e0SJohn Polstra     obj->mapsize = mapsize;
2603124c3e0SJohn Polstra     obj->textsize = round_page(segs[0]->p_vaddr + segs[0]->p_memsz) -
2613124c3e0SJohn Polstra       base_vaddr;
2623124c3e0SJohn Polstra     obj->vaddrbase = base_vaddr;
2633124c3e0SJohn Polstra     obj->relocbase = mapbase - base_vaddr;
264a607e5d7SJohn Polstra     obj->dynamic = (const Elf_Dyn *) (obj->relocbase + phdyn->p_vaddr);
265341b3de6SMatthew N. Dodd     if (hdr->e_entry != 0)
266341b3de6SMatthew N. Dodd 	obj->entry = (caddr_t) (obj->relocbase + hdr->e_entry);
26749f90ad2SAlexander Kabaev     if (phdr_vaddr != 0) {
26849f90ad2SAlexander Kabaev 	obj->phdr = (const Elf_Phdr *) (obj->relocbase + phdr_vaddr);
26949f90ad2SAlexander Kabaev     } else {
27049f90ad2SAlexander Kabaev 	obj->phdr = malloc(phsize);
27149f90ad2SAlexander Kabaev 	if (obj->phdr == NULL) {
27249f90ad2SAlexander Kabaev 	    obj_free(obj);
27349f90ad2SAlexander Kabaev 	    _rtld_error("%s: cannot allocate program header", path);
27449f90ad2SAlexander Kabaev 	     return NULL;
2753124c3e0SJohn Polstra 	}
27649f90ad2SAlexander Kabaev 	memcpy((char *)obj->phdr, (char *)hdr + hdr->e_phoff, phsize);
27749f90ad2SAlexander Kabaev 	obj->phdr_alloc = true;
27849f90ad2SAlexander Kabaev     }
27949f90ad2SAlexander Kabaev     obj->phsize = phsize;
280a607e5d7SJohn Polstra     if (phinterp != NULL)
281a607e5d7SJohn Polstra 	obj->interp = (const char *) (obj->relocbase + phinterp->p_vaddr);
282017246d0SDoug Rabson     if (phtls != NULL) {
283017246d0SDoug Rabson 	tls_dtv_generation++;
284017246d0SDoug Rabson 	obj->tlsindex = ++tls_max_index;
285017246d0SDoug Rabson 	obj->tlssize = phtls->p_memsz;
286017246d0SDoug Rabson 	obj->tlsalign = phtls->p_align;
287017246d0SDoug Rabson 	obj->tlsinitsize = phtls->p_filesz;
288017246d0SDoug Rabson 	obj->tlsinit = mapbase + phtls->p_vaddr;
289017246d0SDoug Rabson     }
290212f264cSKonstantin Belousov     obj->stack_flags = stack_flags;
2916d7610d7SKonstantin Belousov     obj->relro_page = obj->relocbase + trunc_page(relro_page);
2926d7610d7SKonstantin Belousov     obj->relro_size = round_page(relro_size);
2936d7610d7SKonstantin Belousov 
2943124c3e0SJohn Polstra     return obj;
2953124c3e0SJohn Polstra }
2963124c3e0SJohn Polstra 
297341b3de6SMatthew N. Dodd static Elf_Ehdr *
298341b3de6SMatthew N. Dodd get_elf_header (int fd, const char *path)
299341b3de6SMatthew N. Dodd {
300341b3de6SMatthew N. Dodd     static union {
301341b3de6SMatthew N. Dodd 	Elf_Ehdr hdr;
302341b3de6SMatthew N. Dodd 	char buf[PAGE_SIZE];
303341b3de6SMatthew N. Dodd     } u;
304341b3de6SMatthew N. Dodd     ssize_t nbytes;
305341b3de6SMatthew N. Dodd 
3061c232cd5SRobert Watson     if ((nbytes = pread(fd, u.buf, PAGE_SIZE, 0)) == -1) {
307341b3de6SMatthew N. Dodd 	_rtld_error("%s: read error: %s", path, strerror(errno));
308341b3de6SMatthew N. Dodd 	return NULL;
309341b3de6SMatthew N. Dodd     }
310341b3de6SMatthew N. Dodd 
311341b3de6SMatthew N. Dodd     /* Make sure the file is valid */
312341b3de6SMatthew N. Dodd     if (nbytes < (ssize_t)sizeof(Elf_Ehdr) || !IS_ELF(u.hdr)) {
313341b3de6SMatthew N. Dodd 	_rtld_error("%s: invalid file format", path);
314341b3de6SMatthew N. Dodd 	return NULL;
315341b3de6SMatthew N. Dodd     }
316341b3de6SMatthew N. Dodd     if (u.hdr.e_ident[EI_CLASS] != ELF_TARG_CLASS
317341b3de6SMatthew N. Dodd       || u.hdr.e_ident[EI_DATA] != ELF_TARG_DATA) {
318341b3de6SMatthew N. Dodd 	_rtld_error("%s: unsupported file layout", path);
319341b3de6SMatthew N. Dodd 	return NULL;
320341b3de6SMatthew N. Dodd     }
321341b3de6SMatthew N. Dodd     if (u.hdr.e_ident[EI_VERSION] != EV_CURRENT
322341b3de6SMatthew N. Dodd       || u.hdr.e_version != EV_CURRENT) {
323341b3de6SMatthew N. Dodd 	_rtld_error("%s: unsupported file version", path);
324341b3de6SMatthew N. Dodd 	return NULL;
325341b3de6SMatthew N. Dodd     }
326341b3de6SMatthew N. Dodd     if (u.hdr.e_type != ET_EXEC && u.hdr.e_type != ET_DYN) {
327341b3de6SMatthew N. Dodd 	_rtld_error("%s: unsupported file type", path);
328341b3de6SMatthew N. Dodd 	return NULL;
329341b3de6SMatthew N. Dodd     }
330341b3de6SMatthew N. Dodd     if (u.hdr.e_machine != ELF_TARG_MACH) {
331341b3de6SMatthew N. Dodd 	_rtld_error("%s: unsupported machine", path);
332341b3de6SMatthew N. Dodd 	return NULL;
333341b3de6SMatthew N. Dodd     }
334341b3de6SMatthew N. Dodd 
335341b3de6SMatthew N. Dodd     /*
336341b3de6SMatthew N. Dodd      * We rely on the program header being in the first page.  This is
337341b3de6SMatthew N. Dodd      * not strictly required by the ABI specification, but it seems to
338341b3de6SMatthew N. Dodd      * always true in practice.  And, it simplifies things considerably.
339341b3de6SMatthew N. Dodd      */
340341b3de6SMatthew N. Dodd     if (u.hdr.e_phentsize != sizeof(Elf_Phdr)) {
341341b3de6SMatthew N. Dodd 	_rtld_error(
342341b3de6SMatthew N. Dodd 	  "%s: invalid shared object: e_phentsize != sizeof(Elf_Phdr)", path);
343341b3de6SMatthew N. Dodd 	return NULL;
344341b3de6SMatthew N. Dodd     }
345341b3de6SMatthew N. Dodd     if (u.hdr.e_phoff + u.hdr.e_phnum * sizeof(Elf_Phdr) > (size_t)nbytes) {
346341b3de6SMatthew N. Dodd 	_rtld_error("%s: program header too large", path);
347341b3de6SMatthew N. Dodd 	return NULL;
348341b3de6SMatthew N. Dodd     }
349341b3de6SMatthew N. Dodd 
350341b3de6SMatthew N. Dodd     return (&u.hdr);
351341b3de6SMatthew N. Dodd }
352341b3de6SMatthew N. Dodd 
353926ea445SJohn Polstra void
354926ea445SJohn Polstra obj_free(Obj_Entry *obj)
355926ea445SJohn Polstra {
356926ea445SJohn Polstra     Objlist_Entry *elm;
357926ea445SJohn Polstra 
3580eb88f20SAlexander Kabaev     if (obj->tls_done)
359ddab7ee8SDoug Rabson 	free_tls_offset(obj);
360926ea445SJohn Polstra     while (obj->needed != NULL) {
361926ea445SJohn Polstra 	Needed_Entry *needed = obj->needed;
362926ea445SJohn Polstra 	obj->needed = needed->next;
363926ea445SJohn Polstra 	free(needed);
364926ea445SJohn Polstra     }
3650eb88f20SAlexander Kabaev     while (!STAILQ_EMPTY(&obj->names)) {
3660eb88f20SAlexander Kabaev 	Name_Entry *entry = STAILQ_FIRST(&obj->names);
3670eb88f20SAlexander Kabaev 	STAILQ_REMOVE_HEAD(&obj->names, link);
3680eb88f20SAlexander Kabaev 	free(entry);
3690eb88f20SAlexander Kabaev     }
370926ea445SJohn Polstra     while (!STAILQ_EMPTY(&obj->dldags)) {
371926ea445SJohn Polstra 	elm = STAILQ_FIRST(&obj->dldags);
372926ea445SJohn Polstra 	STAILQ_REMOVE_HEAD(&obj->dldags, link);
373926ea445SJohn Polstra 	free(elm);
374926ea445SJohn Polstra     }
375926ea445SJohn Polstra     while (!STAILQ_EMPTY(&obj->dagmembers)) {
376926ea445SJohn Polstra 	elm = STAILQ_FIRST(&obj->dagmembers);
377926ea445SJohn Polstra 	STAILQ_REMOVE_HEAD(&obj->dagmembers, link);
378926ea445SJohn Polstra 	free(elm);
379926ea445SJohn Polstra     }
38049f90ad2SAlexander Kabaev     if (obj->vertab)
3810eb88f20SAlexander Kabaev 	free(obj->vertab);
38249f90ad2SAlexander Kabaev     if (obj->origin_path)
383da9f2454SMatthew N. Dodd 	free(obj->origin_path);
38428551690SKonstantin Belousov     if (obj->z_origin)
38528551690SKonstantin Belousov 	free(obj->rpath);
38649f90ad2SAlexander Kabaev     if (obj->priv)
38763c1e7cbSAlexander Kabaev 	free(obj->priv);
38849f90ad2SAlexander Kabaev     if (obj->path)
38949f90ad2SAlexander Kabaev 	free(obj->path);
39049f90ad2SAlexander Kabaev     if (obj->phdr_alloc)
39149f90ad2SAlexander Kabaev 	free((void *)obj->phdr);
392926ea445SJohn Polstra     free(obj);
393926ea445SJohn Polstra }
394926ea445SJohn Polstra 
395926ea445SJohn Polstra Obj_Entry *
396926ea445SJohn Polstra obj_new(void)
397926ea445SJohn Polstra {
398926ea445SJohn Polstra     Obj_Entry *obj;
399926ea445SJohn Polstra 
400926ea445SJohn Polstra     obj = CNEW(Obj_Entry);
401926ea445SJohn Polstra     STAILQ_INIT(&obj->dldags);
402926ea445SJohn Polstra     STAILQ_INIT(&obj->dagmembers);
4030eb88f20SAlexander Kabaev     STAILQ_INIT(&obj->names);
404926ea445SJohn Polstra     return obj;
405926ea445SJohn Polstra }
406926ea445SJohn Polstra 
4073124c3e0SJohn Polstra /*
4083124c3e0SJohn Polstra  * Given a set of ELF protection flags, return the corresponding protection
4093124c3e0SJohn Polstra  * flags for MMAP.
4103124c3e0SJohn Polstra  */
4113124c3e0SJohn Polstra static int
412fa7dd9c5SMatthew Dillon convert_prot(int elfflags)
4133124c3e0SJohn Polstra {
4143124c3e0SJohn Polstra     int prot = 0;
4153124c3e0SJohn Polstra     if (elfflags & PF_R)
4163124c3e0SJohn Polstra 	prot |= PROT_READ;
4173124c3e0SJohn Polstra     if (elfflags & PF_W)
4183124c3e0SJohn Polstra 	prot |= PROT_WRITE;
4193124c3e0SJohn Polstra     if (elfflags & PF_X)
4203124c3e0SJohn Polstra 	prot |= PROT_EXEC;
4213124c3e0SJohn Polstra     return prot;
4223124c3e0SJohn Polstra }
423fa7dd9c5SMatthew Dillon 
424fa7dd9c5SMatthew Dillon static int
425fa7dd9c5SMatthew Dillon convert_flags(int elfflags)
426fa7dd9c5SMatthew Dillon {
427fa7dd9c5SMatthew Dillon     int flags = MAP_PRIVATE; /* All mappings are private */
428fa7dd9c5SMatthew Dillon 
429fa7dd9c5SMatthew Dillon     /*
430fa7dd9c5SMatthew Dillon      * Readonly mappings are marked "MAP_NOCORE", because they can be
431fa7dd9c5SMatthew Dillon      * reconstructed by a debugger.
432fa7dd9c5SMatthew Dillon      */
433fa7dd9c5SMatthew Dillon     if (!(elfflags & PF_W))
434fa7dd9c5SMatthew Dillon 	flags |= MAP_NOCORE;
435fa7dd9c5SMatthew Dillon     return flags;
436fa7dd9c5SMatthew Dillon }
437