exec_elf32.c revision 292423
1/*
2 * Copyright (c) 1997 Christopher G. Demetriou.  All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions
6 * are met:
7 * 1. Redistributions of source code must retain the above copyright
8 *    notice, this list of conditions and the following disclaimer.
9 * 2. Redistributions in binary form must reproduce the above copyright
10 *    notice, this list of conditions and the following disclaimer in the
11 *    documentation and/or other materials provided with the distribution.
12 * 3. All advertising materials mentioning features or use of this software
13 *    must display the following acknowledgement:
14 *      This product includes software developed by Christopher G. Demetriou
15 *	for the NetBSD Project.
16 * 4. The name of the author may not be used to endorse or promote products
17 *    derived from this software without specific prior written permission
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 */
30
31#include <sys/cdefs.h>
32#ifndef lint
33#if 0
34__RCSID("$NetBSD: exec_elf32.c,v 1.6 1999/09/20 04:12:16 christos Exp $");
35#endif
36#endif
37__FBSDID("$FreeBSD: stable/10/usr.sbin/crunch/crunchide/exec_elf32.c 292423 2015-12-18 03:06:39Z emaste $");
38
39#ifndef ELFSIZE
40#define ELFSIZE         32
41#endif
42
43#include <sys/types.h>
44#include <sys/endian.h>
45#include <sys/stat.h>
46
47#include <errno.h>
48#include <limits.h>
49#include <stddef.h>
50#include <stdio.h>
51#include <stdlib.h>
52#include <string.h>
53#include <unistd.h>
54
55#include "extern.h"
56
57#if (defined(NLIST_ELF32) && (ELFSIZE == 32)) || \
58    (defined(NLIST_ELF64) && (ELFSIZE == 64))
59
60#define	__ELF_WORD_SIZE ELFSIZE
61#if (ELFSIZE == 32)
62#include <sys/elf32.h>
63#define	xewtoh(x)	((data == ELFDATA2MSB) ? be32toh(x) : le32toh(x))
64#define	htoxew(x)	((data == ELFDATA2MSB) ? htobe32(x) : htole32(x))
65#define	wewtoh(x)	((data == ELFDATA2MSB) ? be32toh(x) : le32toh(x))
66#define	htowew(x)	((data == ELFDATA2MSB) ? htobe32(x) : htole32(x))
67#elif (ELFSIZE == 64)
68#include <sys/elf64.h>
69#define	xewtoh(x)	((data == ELFDATA2MSB) ? be64toh(x) : le64toh(x))
70#define	htoxew(x)	((data == ELFDATA2MSB) ? htobe64(x) : htole64(x))
71/* elf64 Elf64_Word are 32 bits */
72#define	wewtoh(x)	((data == ELFDATA2MSB) ? be32toh(x) : le32toh(x))
73#define	htowew(x)	((data == ELFDATA2MSB) ? htobe32(x) : htole32(x))
74#endif
75#include <sys/elf_generic.h>
76
77#define CONCAT(x,y)     __CONCAT(x,y)
78#define ELFNAME(x)      CONCAT(elf,CONCAT(ELFSIZE,CONCAT(_,x)))
79#define ELFNAME2(x,y)   CONCAT(x,CONCAT(_elf,CONCAT(ELFSIZE,CONCAT(_,y))))
80#define ELFNAMEEND(x)   CONCAT(x,CONCAT(_elf,ELFSIZE))
81#define ELFDEFNNAME(x)  CONCAT(ELF,CONCAT(ELFSIZE,CONCAT(_,x)))
82#ifndef ELFCLASS
83#define ELFCLASS	CONCAT(ELFCLASS,ELFSIZE)
84#endif
85
86#define	xe16toh(x)	((data == ELFDATA2MSB) ? be16toh(x) : le16toh(x))
87#define	xe32toh(x)	((data == ELFDATA2MSB) ? be32toh(x) : le32toh(x))
88#define	htoxe32(x)	((data == ELFDATA2MSB) ? htobe32(x) : htole32(x))
89
90struct shlayout {
91	Elf_Shdr *shdr;
92	void *bufp;
93};
94
95static ssize_t
96xreadatoff(int fd, void *buf, off_t off, size_t size, const char *fn)
97{
98	ssize_t rv;
99
100	if (lseek(fd, off, SEEK_SET) != off) {
101		perror(fn);
102		return -1;
103	}
104	if ((size_t)(rv = read(fd, buf, size)) != size) {
105		fprintf(stderr, "%s: read error: %s\n", fn,
106		    rv == -1 ? strerror(errno) : "short read");
107		return -1;
108	}
109	return size;
110}
111
112static ssize_t
113xwriteatoff(int fd, void *buf, off_t off, size_t size, const char *fn)
114{
115	ssize_t rv;
116
117	if (lseek(fd, off, SEEK_SET) != off) {
118		perror(fn);
119		return -1;
120	}
121	if ((size_t)(rv = write(fd, buf, size)) != size) {
122		fprintf(stderr, "%s: write error: %s\n", fn,
123		    rv == -1 ? strerror(errno) : "short write");
124		return -1;
125	}
126	return size;
127}
128
129static void *
130xmalloc(size_t size, const char *fn, const char *use)
131{
132	void *rv;
133
134	rv = malloc(size);
135	if (rv == NULL)
136		fprintf(stderr, "%s: out of memory (allocating for %s)\n",
137		    fn, use);
138	return (rv);
139}
140
141static void *
142xrealloc(void *ptr, size_t size, const char *fn, const char *use)
143{
144	void *rv;
145
146	rv = realloc(ptr, size);
147	if (rv == NULL) {
148		free(ptr);
149		fprintf(stderr, "%s: out of memory (reallocating for %s)\n",
150		    fn, use);
151	}
152	return (rv);
153}
154
155int
156ELFNAMEEND(check)(int fd, const char *fn)
157{
158	Elf_Ehdr eh;
159	struct stat sb;
160	unsigned char data;
161
162	/*
163	 * Check the header to maek sure it's an ELF file (of the
164	 * appropriate size).
165	 */
166	if (fstat(fd, &sb) == -1)
167		return 0;
168	if (sb.st_size < (off_t)(sizeof eh))
169		return 0;
170	if (read(fd, &eh, sizeof eh) != sizeof eh)
171		return 0;
172
173	if (IS_ELF(eh) == 0 || eh.e_ident[EI_CLASS] != ELFCLASS)
174                return 0;
175
176	data = eh.e_ident[EI_DATA];
177
178	switch (xe16toh(eh.e_machine)) {
179	case EM_386: break;
180	case EM_ALPHA: break;
181#ifndef EM_AARCH64
182#define	EM_AARCH64	183
183#endif
184	case EM_AARCH64: break;
185	case EM_ARM: break;
186	case EM_MIPS: break;
187	case /* EM_MIPS_RS3_LE */ EM_MIPS_RS4_BE: break;
188	case EM_PPC: break;
189	case EM_PPC64: break;
190#ifndef EM_RISCV
191#define	EM_RISCV	243
192#endif
193	case EM_RISCV: break;
194	case EM_SPARCV9: break;
195	case EM_X86_64: break;
196/*        ELFDEFNNAME(MACHDEP_ID_CASES) */
197
198        default:
199                return 0;
200        }
201
202	return 1;
203}
204
205/*
206 * This function 'hides' (some of) ELF executable file's symbols.
207 * It hides them by renaming them to "_$$hide$$ <filename> <symbolname>".
208 * Symbols in the global keep list, or which are marked as being undefined,
209 * are left alone.
210 *
211 * An old version of this code shuffled various tables around, turning
212 * global symbols to be hidden into local symbols.  That lost on the
213 * mips, because CALL16 relocs must reference global symbols, and, if
214 * those symbols were being hidden, they were no longer global.
215 *
216 * The new renaming behaviour doesn't take global symbols out of the
217 * namespace.  However, it's ... unlikely that there will ever be
218 * any collisions in practice because of the new method.
219 */
220int
221ELFNAMEEND(hide)(int fd, const char *fn)
222{
223	Elf_Ehdr ehdr;
224	struct shlayout *layoutp = NULL;
225	Elf_Shdr *shdrp = NULL, *symtabshdr, *strtabshdr, *shstrtabshdr;
226	Elf_Shdr shdrshdr;
227	Elf_Sym *symtabp = NULL;
228	char *shstrtabp = NULL, *strtabp = NULL;
229	Elf_Size nsyms, ewi;
230	Elf_Off off;
231	ssize_t shdrsize;
232	int rv, i, weird, l, m, r, strtabidx;
233	size_t nstrtab_size, nstrtab_nextoff, fn_size, size;
234	char *nstrtabp = NULL;
235	unsigned char data;
236	const char *weirdreason = NULL;
237	void *buf;
238	Elf_Half shnum;
239
240	rv = 0;
241	if (xreadatoff(fd, &ehdr, 0, sizeof ehdr, fn) != sizeof ehdr)
242		goto bad;
243
244	data = ehdr.e_ident[EI_DATA];
245	shnum = xe16toh(ehdr.e_shnum);
246
247	shdrsize = shnum * xe16toh(ehdr.e_shentsize);
248	if ((shdrp = xmalloc(shdrsize, fn, "section header table")) == NULL)
249		goto bad;
250	if (xreadatoff(fd, shdrp, xewtoh(ehdr.e_shoff), shdrsize, fn) !=
251	    shdrsize)
252		goto bad;
253
254	symtabshdr = strtabshdr = shstrtabshdr = NULL;
255	weird = 0;
256	for (i = 0; i < shnum; i++) {
257		switch (xe32toh(shdrp[i].sh_type)) {
258		case SHT_SYMTAB:
259			if (symtabshdr != NULL) {
260				weird = 1;
261				weirdreason = "multiple symbol tables";
262			}
263			symtabshdr = &shdrp[i];
264			strtabshdr = &shdrp[xe32toh(shdrp[i].sh_link)];
265			break;
266		case SHT_STRTAB:
267			if (i == xe16toh(ehdr.e_shstrndx))
268				shstrtabshdr = &shdrp[i];
269			break;
270		}
271	}
272	if (symtabshdr == NULL)
273		goto out;
274	if (strtabshdr == NULL) {
275		weird = 1;
276		weirdreason = "string table does not exist";
277	}
278	if (shstrtabshdr == NULL) {
279		weird = 1;
280		weirdreason = "section header string table does not exist";
281	}
282	if (weirdreason == NULL)
283		weirdreason = "unsupported";
284	if (weird) {
285		fprintf(stderr, "%s: weird executable (%s)\n", fn, weirdreason);
286		goto bad;
287	}
288
289	/*
290	 * sort section layout table by offset
291	 */
292	layoutp = xmalloc((shnum + 1) * sizeof(struct shlayout),
293	    fn, "layout table");
294	if (layoutp == NULL)
295		goto bad;
296
297	/* add a pseudo entry to represent the section header table */
298	shdrshdr.sh_offset = ehdr.e_shoff;
299	shdrshdr.sh_size = htoxew(shdrsize);
300	shdrshdr.sh_addralign = htoxew(ELFSIZE / 8);
301	layoutp[shnum].shdr = &shdrshdr;
302
303	/* insert and sort normal section headers */
304	for (i = shnum; i-- != 0;) {
305		l = i + 1;
306		r = shnum;
307		while (l <= r) {
308			m = ( l + r) / 2;
309			if (xewtoh(shdrp[i].sh_offset) >
310			    xewtoh(layoutp[m].shdr->sh_offset))
311				l = m + 1;
312			else
313				r = m - 1;
314		}
315
316		if (r != i) {
317			memmove(&layoutp[i], &layoutp[i + 1],
318			    sizeof(struct shlayout) * (r - i));
319		}
320
321		layoutp[r].shdr = &shdrp[i];
322		layoutp[r].bufp = NULL;
323	}
324	++shnum;
325
326	/*
327	 * load up everything we need
328	 */
329
330	/* load section string table for debug use */
331	if ((size = xewtoh(shstrtabshdr->sh_size)) == 0)
332		goto bad;
333	if ((shstrtabp = xmalloc(size, fn, "section string table")) == NULL)
334		goto bad;
335	if ((size_t)xreadatoff(fd, shstrtabp, xewtoh(shstrtabshdr->sh_offset),
336	    size, fn) != size)
337		goto bad;
338	if (shstrtabp[size - 1] != '\0')
339		goto bad;
340
341	/* we need symtab, strtab, and everything behind strtab */
342	strtabidx = INT_MAX;
343	for (i = 0; i < shnum; i++) {
344		if (layoutp[i].shdr == &shdrshdr) {
345			/* not load section header again */
346			layoutp[i].bufp = shdrp;
347			continue;
348		}
349		if (layoutp[i].shdr == shstrtabshdr) {
350			/* not load section string table again */
351			layoutp[i].bufp = shstrtabp;
352			continue;
353		}
354
355		if (layoutp[i].shdr == strtabshdr)
356			strtabidx = i;
357		if (layoutp[i].shdr == symtabshdr || i >= strtabidx) {
358			off = xewtoh(layoutp[i].shdr->sh_offset);
359			if ((size = xewtoh(layoutp[i].shdr->sh_size)) == 0)
360				goto bad;
361			layoutp[i].bufp = xmalloc(size, fn,
362			    shstrtabp + xewtoh(layoutp[i].shdr->sh_name));
363			if (layoutp[i].bufp == NULL)
364				goto bad;
365			if ((size_t)xreadatoff(fd, layoutp[i].bufp, off, size, fn) !=
366			    size)
367				goto bad;
368
369			/* set symbol table and string table */
370			if (layoutp[i].shdr == symtabshdr) {
371				symtabp = layoutp[i].bufp;
372			} else if (layoutp[i].shdr == strtabshdr) {
373				strtabp = layoutp[i].bufp;
374				if (strtabp[size - 1] != '\0')
375					goto bad;
376			}
377		}
378	}
379
380	nstrtab_size = 256;
381	nstrtabp = xmalloc(nstrtab_size, fn, "new string table");
382	if (nstrtabp == NULL)
383		goto bad;
384	nstrtab_nextoff = 0;
385
386	fn_size = strlen(fn);
387
388	/* Prepare data structures for symbol movement. */
389	nsyms = xewtoh(symtabshdr->sh_size) / xewtoh(symtabshdr->sh_entsize);
390
391	/* move symbols, making them local */
392	for (ewi = 0; ewi < nsyms; ewi++) {
393		Elf_Sym *sp = &symtabp[ewi];
394		const char *symname = strtabp + xe32toh(sp->st_name);
395		size_t newent_len;
396		/*
397		 * make sure there's size for the next entry, even if it's
398		 * as large as it can be.
399		 *
400		 * "_$$hide$$ <filename> <symname><NUL>" ->
401		 *    9 + 3 + sizes of fn and sym name
402		 */
403		while ((nstrtab_size - nstrtab_nextoff) <
404		    strlen(symname) + fn_size + 12) {
405			nstrtab_size *= 2;
406			nstrtabp = xrealloc(nstrtabp, nstrtab_size, fn,
407			    "new string table");
408			if (nstrtabp == NULL)
409				goto bad;
410		}
411
412		sp->st_name = htowew(nstrtab_nextoff);
413
414		/* if it's a keeper or is undefined, don't rename it. */
415		if (in_keep_list(symname) ||
416		    (xe16toh(sp->st_shndx) == SHN_UNDEF)) {
417			newent_len = sprintf(nstrtabp + nstrtab_nextoff,
418			    "%s", symname) + 1;
419		} else {
420			newent_len = sprintf(nstrtabp + nstrtab_nextoff,
421			    "_$$hide$$ %s %s", fn, symname) + 1;
422		}
423		nstrtab_nextoff += newent_len;
424	}
425	strtabshdr->sh_size = htoxew(nstrtab_nextoff);
426
427	/*
428	 * update section header table in ascending order of offset
429	 */
430	for (i = strtabidx + 1; i < shnum; i++) {
431		Elf_Off off, align;
432		off = xewtoh(layoutp[i - 1].shdr->sh_offset) +
433		    xewtoh(layoutp[i - 1].shdr->sh_size);
434		align = xewtoh(layoutp[i].shdr->sh_addralign);
435		off = (off + (align - 1)) & ~(align - 1);
436		layoutp[i].shdr->sh_offset = htoxew(off);
437	}
438
439	/*
440	 * write data to the file in descending order of offset
441	 */
442	for (i = shnum; i-- != 0;) {
443		if (layoutp[i].shdr == strtabshdr) {
444			/* new string table */
445			buf = nstrtabp;
446		} else
447			buf = layoutp[i].bufp;
448
449		if (layoutp[i].shdr == &shdrshdr ||
450		    layoutp[i].shdr == symtabshdr || i >= strtabidx) {
451			if (buf == NULL)
452				goto bad;
453
454			/*
455			 * update the offset of section header table in elf
456			 * header if needed.
457			 */
458			if (layoutp[i].shdr == &shdrshdr &&
459			    ehdr.e_shoff != shdrshdr.sh_offset) {
460				ehdr.e_shoff = shdrshdr.sh_offset;
461				off = offsetof(Elf_Ehdr, e_shoff);
462				size = sizeof(Elf_Off);
463				if ((size_t)xwriteatoff(fd, &ehdr.e_shoff, off, size,
464				    fn) != size)
465					goto bad;
466			}
467
468			off = xewtoh(layoutp[i].shdr->sh_offset);
469			size = xewtoh(layoutp[i].shdr->sh_size);
470			if ((size_t)xwriteatoff(fd, buf, off, size, fn) != size)
471				goto bad;
472		}
473	}
474
475out:
476	if (layoutp != NULL) {
477		for (i = 0; i < shnum; i++) {
478			if (layoutp[i].bufp != NULL)
479				free(layoutp[i].bufp);
480		}
481		free(layoutp);
482	}
483	free(nstrtabp);
484	return (rv);
485
486bad:
487	rv = 1;
488	goto out;
489}
490
491#endif /* include this size of ELF */
492