xref: /freebsd/sys/kern/kern_ctf.c (revision 28323add0916d61a7bcea74f30e9b40b837809ce)
175d94ef6SJohn Birrell /*-
275d94ef6SJohn Birrell  * Copyright (c) 2008 John Birrell <jb@freebsd.org>
375d94ef6SJohn Birrell  * All rights reserved.
475d94ef6SJohn Birrell  *
575d94ef6SJohn Birrell  * Redistribution and use in source and binary forms, with or without
675d94ef6SJohn Birrell  * modification, are permitted provided that the following conditions
775d94ef6SJohn Birrell  * are met:
875d94ef6SJohn Birrell  * 1. Redistributions of source code must retain the above copyright
975d94ef6SJohn Birrell  *    notice, this list of conditions and the following disclaimer.
1075d94ef6SJohn Birrell  * 2. Redistributions in binary form must reproduce the above copyright
1175d94ef6SJohn Birrell  *    notice, this list of conditions and the following disclaimer in the
1275d94ef6SJohn Birrell  *    documentation and/or other materials provided with the distribution.
1375d94ef6SJohn Birrell  *
1475d94ef6SJohn Birrell  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
1575d94ef6SJohn Birrell  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
1675d94ef6SJohn Birrell  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
1775d94ef6SJohn Birrell  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
1875d94ef6SJohn Birrell  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
1975d94ef6SJohn Birrell  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
2075d94ef6SJohn Birrell  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
2175d94ef6SJohn Birrell  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
2275d94ef6SJohn Birrell  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
2375d94ef6SJohn Birrell  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
2475d94ef6SJohn Birrell  * SUCH DAMAGE.
2575d94ef6SJohn Birrell  *
2675d94ef6SJohn Birrell  * $FreeBSD$
2775d94ef6SJohn Birrell  */
2875d94ef6SJohn Birrell 
2975d94ef6SJohn Birrell /*
3075d94ef6SJohn Birrell  * Note this file is included by both link_elf.c and link_elf_obj.c.
3175d94ef6SJohn Birrell  *
3275d94ef6SJohn Birrell  * The CTF header structure definition can't be used here because it's
3375d94ef6SJohn Birrell  * (annoyingly) covered by the CDDL. We will just use a few bytes from
3475d94ef6SJohn Birrell  * it as an integer array where we 'know' what they mean.
3575d94ef6SJohn Birrell  */
3675d94ef6SJohn Birrell #define CTF_HDR_SIZE		36
3775d94ef6SJohn Birrell #define CTF_HDR_STRTAB_U32	7
3875d94ef6SJohn Birrell #define CTF_HDR_STRLEN_U32	8
3975d94ef6SJohn Birrell 
4075d94ef6SJohn Birrell #ifdef DDB_CTF
4175d94ef6SJohn Birrell static void *
4275d94ef6SJohn Birrell z_alloc(void *nil, u_int items, u_int size)
4375d94ef6SJohn Birrell {
4475d94ef6SJohn Birrell 	void *ptr;
4575d94ef6SJohn Birrell 
4675d94ef6SJohn Birrell 	ptr = malloc(items * size, M_TEMP, M_NOWAIT);
4775d94ef6SJohn Birrell 	return ptr;
4875d94ef6SJohn Birrell }
4975d94ef6SJohn Birrell 
5075d94ef6SJohn Birrell static void
5175d94ef6SJohn Birrell z_free(void *nil, void *ptr)
5275d94ef6SJohn Birrell {
5375d94ef6SJohn Birrell 	free(ptr, M_TEMP);
5475d94ef6SJohn Birrell }
5575d94ef6SJohn Birrell 
5675d94ef6SJohn Birrell #endif
5775d94ef6SJohn Birrell 
5875d94ef6SJohn Birrell static int
5975d94ef6SJohn Birrell link_elf_ctf_get(linker_file_t lf, linker_ctf_t *lc)
6075d94ef6SJohn Birrell {
6175d94ef6SJohn Birrell #ifdef DDB_CTF
6275d94ef6SJohn Birrell 	Elf_Ehdr *hdr = NULL;
6375d94ef6SJohn Birrell 	Elf_Shdr *shdr = NULL;
6475d94ef6SJohn Birrell 	caddr_t ctftab = NULL;
6575d94ef6SJohn Birrell 	caddr_t raw = NULL;
6675d94ef6SJohn Birrell 	caddr_t shstrtab = NULL;
6775d94ef6SJohn Birrell 	elf_file_t ef = (elf_file_t) lf;
6875d94ef6SJohn Birrell 	int flags;
6975d94ef6SJohn Birrell 	int i;
7075d94ef6SJohn Birrell 	int nbytes;
7175d94ef6SJohn Birrell 	size_t sz;
7275d94ef6SJohn Birrell 	struct nameidata nd;
7375d94ef6SJohn Birrell 	struct thread *td = curthread;
7475d94ef6SJohn Birrell 	uint8_t ctf_hdr[CTF_HDR_SIZE];
7575d94ef6SJohn Birrell #endif
7675d94ef6SJohn Birrell 	int error = 0;
7775d94ef6SJohn Birrell 
7875d94ef6SJohn Birrell 	if (lf == NULL || lc == NULL)
7975d94ef6SJohn Birrell 		return (EINVAL);
8075d94ef6SJohn Birrell 
8175d94ef6SJohn Birrell 	/* Set the defaults for no CTF present. That's not a crime! */
8275d94ef6SJohn Birrell 	bzero(lc, sizeof(*lc));
8375d94ef6SJohn Birrell 
8475d94ef6SJohn Birrell #ifdef DDB_CTF
8575d94ef6SJohn Birrell 	/*
8675d94ef6SJohn Birrell 	 * First check if we've tried to load CTF data previously and the
8775d94ef6SJohn Birrell 	 * CTF ELF section wasn't found. We flag that condition by setting
8875d94ef6SJohn Birrell 	 * ctfcnt to -1. See below.
8975d94ef6SJohn Birrell 	 */
9075d94ef6SJohn Birrell 	if (ef->ctfcnt < 0)
916f6924e5SRyan Stone 		return (EFTYPE);
9275d94ef6SJohn Birrell 
9375d94ef6SJohn Birrell 	/* Now check if we've already loaded the CTF data.. */
9475d94ef6SJohn Birrell 	if (ef->ctfcnt > 0) {
9575d94ef6SJohn Birrell 		/* We only need to load once. */
9675d94ef6SJohn Birrell 		lc->ctftab = ef->ctftab;
9775d94ef6SJohn Birrell 		lc->ctfcnt = ef->ctfcnt;
9875d94ef6SJohn Birrell 		lc->symtab = ef->ddbsymtab;
9975d94ef6SJohn Birrell 		lc->strtab = ef->ddbstrtab;
10075d94ef6SJohn Birrell 		lc->strcnt = ef->ddbstrcnt;
10175d94ef6SJohn Birrell 		lc->nsym   = ef->ddbsymcnt;
10275d94ef6SJohn Birrell 		lc->ctfoffp = (uint32_t **) &ef->ctfoff;
10375d94ef6SJohn Birrell 		lc->typoffp = (uint32_t **) &ef->typoff;
10475d94ef6SJohn Birrell 		lc->typlenp = &ef->typlen;
10575d94ef6SJohn Birrell 		return (0);
10675d94ef6SJohn Birrell 	}
10775d94ef6SJohn Birrell 
10875d94ef6SJohn Birrell 	/*
10975d94ef6SJohn Birrell 	 * We need to try reading the CTF data. Flag no CTF data present
11075d94ef6SJohn Birrell 	 * by default and if we actually succeed in reading it, we'll
11175d94ef6SJohn Birrell 	 * update ctfcnt to the number of bytes read.
11275d94ef6SJohn Birrell 	 */
11375d94ef6SJohn Birrell 	ef->ctfcnt = -1;
11475d94ef6SJohn Birrell 
1155050aa86SKonstantin Belousov 	NDINIT(&nd, LOOKUP, FOLLOW, UIO_SYSSPACE, lf->pathname, td);
11675d94ef6SJohn Birrell 	flags = FREAD;
11775d94ef6SJohn Birrell 	error = vn_open(&nd, &flags, 0, NULL);
11875d94ef6SJohn Birrell 	if (error)
11975d94ef6SJohn Birrell 		return (error);
12075d94ef6SJohn Birrell 	NDFREE(&nd, NDF_ONLY_PNBUF);
12175d94ef6SJohn Birrell 
12275d94ef6SJohn Birrell 	/* Allocate memory for the FLF header. */
123ce47682cSMark Johnston 	hdr = malloc(sizeof(*hdr), M_LINKER, M_WAITOK);
12475d94ef6SJohn Birrell 
12575d94ef6SJohn Birrell 	/* Read the ELF header. */
12675d94ef6SJohn Birrell 	if ((error = vn_rdwr(UIO_READ, nd.ni_vp, hdr, sizeof(*hdr),
1277abb0b09SMark Johnston 	    0, UIO_SYSSPACE, IO_NODELOCKED, td->td_ucred, NOCRED, NULL,
12875d94ef6SJohn Birrell 	    td)) != 0)
12975d94ef6SJohn Birrell 		goto out;
13075d94ef6SJohn Birrell 
13175d94ef6SJohn Birrell 	/* Sanity check. */
13275d94ef6SJohn Birrell 	if (!IS_ELF(*hdr)) {
13375d94ef6SJohn Birrell 		error = ENOEXEC;
13475d94ef6SJohn Birrell 		goto out;
13575d94ef6SJohn Birrell 	}
13675d94ef6SJohn Birrell 
13775d94ef6SJohn Birrell 	nbytes = hdr->e_shnum * hdr->e_shentsize;
13875d94ef6SJohn Birrell 	if (nbytes == 0 || hdr->e_shoff == 0 ||
13975d94ef6SJohn Birrell 	    hdr->e_shentsize != sizeof(Elf_Shdr)) {
14075d94ef6SJohn Birrell 		error = ENOEXEC;
14175d94ef6SJohn Birrell 		goto out;
14275d94ef6SJohn Birrell 	}
14375d94ef6SJohn Birrell 
14475d94ef6SJohn Birrell 	/* Allocate memory for all the section headers */
145ce47682cSMark Johnston 	shdr = malloc(nbytes, M_LINKER, M_WAITOK);
14675d94ef6SJohn Birrell 
14775d94ef6SJohn Birrell 	/* Read all the section headers */
14875d94ef6SJohn Birrell 	if ((error = vn_rdwr(UIO_READ, nd.ni_vp, (caddr_t)shdr, nbytes,
14975d94ef6SJohn Birrell 	    hdr->e_shoff, UIO_SYSSPACE, IO_NODELOCKED, td->td_ucred, NOCRED,
1507abb0b09SMark Johnston 	    NULL, td)) != 0)
15175d94ef6SJohn Birrell 		goto out;
15275d94ef6SJohn Birrell 
15375d94ef6SJohn Birrell 	/*
15475d94ef6SJohn Birrell 	 * We need to search for the CTF section by name, so if the
15575d94ef6SJohn Birrell 	 * section names aren't present, then we can't locate the
15675d94ef6SJohn Birrell 	 * .SUNW_ctf section containing the CTF data.
15775d94ef6SJohn Birrell 	 */
1582b03effaSXin LI 	if (hdr->e_shstrndx == 0 || shdr[hdr->e_shstrndx].sh_type != SHT_STRTAB) {
1592b03effaSXin LI 		printf("%s(%d): module %s e_shstrndx is %d, sh_type is %d\n",
1602b03effaSXin LI 		    __func__, __LINE__, lf->pathname, hdr->e_shstrndx,
1612b03effaSXin LI 		    shdr[hdr->e_shstrndx].sh_type);
1622b03effaSXin LI 		error = EFTYPE;
16375d94ef6SJohn Birrell 		goto out;
1642b03effaSXin LI 	}
16575d94ef6SJohn Birrell 
16675d94ef6SJohn Birrell 	/* Allocate memory to buffer the section header strings. */
167ce47682cSMark Johnston 	shstrtab = malloc(shdr[hdr->e_shstrndx].sh_size, M_LINKER, M_WAITOK);
16875d94ef6SJohn Birrell 
16975d94ef6SJohn Birrell 	/* Read the section header strings. */
17075d94ef6SJohn Birrell 	if ((error = vn_rdwr(UIO_READ, nd.ni_vp, shstrtab,
17175d94ef6SJohn Birrell 	    shdr[hdr->e_shstrndx].sh_size, shdr[hdr->e_shstrndx].sh_offset,
1727abb0b09SMark Johnston 	    UIO_SYSSPACE, IO_NODELOCKED, td->td_ucred, NOCRED, NULL, td)) != 0)
17375d94ef6SJohn Birrell 		goto out;
17475d94ef6SJohn Birrell 
17575d94ef6SJohn Birrell 	/* Search for the section containing the CTF data. */
17675d94ef6SJohn Birrell 	for (i = 0; i < hdr->e_shnum; i++)
17775d94ef6SJohn Birrell 		if (strcmp(".SUNW_ctf", shstrtab + shdr[i].sh_name) == 0)
17875d94ef6SJohn Birrell 			break;
17975d94ef6SJohn Birrell 
18075d94ef6SJohn Birrell 	/* Check if the CTF section wasn't found. */
1812b03effaSXin LI 	if (i >= hdr->e_shnum) {
1822b03effaSXin LI 		printf("%s(%d): module %s has no .SUNW_ctf section\n",
1832b03effaSXin LI 		    __func__, __LINE__, lf->pathname);
1842b03effaSXin LI 		error = EFTYPE;
18575d94ef6SJohn Birrell 		goto out;
1862b03effaSXin LI 	}
18775d94ef6SJohn Birrell 
18875d94ef6SJohn Birrell 	/* Read the CTF header. */
18975d94ef6SJohn Birrell 	if ((error = vn_rdwr(UIO_READ, nd.ni_vp, ctf_hdr, sizeof(ctf_hdr),
19075d94ef6SJohn Birrell 	    shdr[i].sh_offset, UIO_SYSSPACE, IO_NODELOCKED, td->td_ucred,
1917abb0b09SMark Johnston 	    NOCRED, NULL, td)) != 0)
19275d94ef6SJohn Birrell 		goto out;
19375d94ef6SJohn Birrell 
19475d94ef6SJohn Birrell 	/* Check the CTF magic number. (XXX check for big endian!) */
1952b03effaSXin LI 	if (ctf_hdr[0] != 0xf1 || ctf_hdr[1] != 0xcf) {
1962b03effaSXin LI 		printf("%s(%d): module %s has invalid format\n",
1972b03effaSXin LI 		    __func__, __LINE__, lf->pathname);
1982b03effaSXin LI 		error = EFTYPE;
19975d94ef6SJohn Birrell 		goto out;
2002b03effaSXin LI 	}
20175d94ef6SJohn Birrell 
20275d94ef6SJohn Birrell 	/* Check if version 2. */
2032b03effaSXin LI 	if (ctf_hdr[2] != 2) {
2042b03effaSXin LI 		printf("%s(%d): module %s CTF format version is %d "
2052b03effaSXin LI 		    "(2 expected)\n",
2062b03effaSXin LI 		    __func__, __LINE__, lf->pathname, ctf_hdr[2]);
2072b03effaSXin LI 		error = EFTYPE;
20875d94ef6SJohn Birrell 		goto out;
2092b03effaSXin LI 	}
21075d94ef6SJohn Birrell 
21175d94ef6SJohn Birrell 	/* Check if the data is compressed. */
21275d94ef6SJohn Birrell 	if ((ctf_hdr[3] & 0x1) != 0) {
21375d94ef6SJohn Birrell 		uint32_t *u32 = (uint32_t *) ctf_hdr;
21475d94ef6SJohn Birrell 
21575d94ef6SJohn Birrell 		/*
21675d94ef6SJohn Birrell 		 * The last two fields in the CTF header are the offset
21775d94ef6SJohn Birrell 		 * from the end of the header to the start of the string
21875d94ef6SJohn Birrell 		 * data and the length of that string data. se this
21975d94ef6SJohn Birrell 		 * information to determine the decompressed CTF data
22075d94ef6SJohn Birrell 		 * buffer required.
22175d94ef6SJohn Birrell 		 */
22275d94ef6SJohn Birrell 		sz = u32[CTF_HDR_STRTAB_U32] + u32[CTF_HDR_STRLEN_U32] +
22375d94ef6SJohn Birrell 		    sizeof(ctf_hdr);
22475d94ef6SJohn Birrell 
22575d94ef6SJohn Birrell 		/*
22675d94ef6SJohn Birrell 		 * Allocate memory for the compressed CTF data, including
22775d94ef6SJohn Birrell 		 * the header (which isn't compressed).
22875d94ef6SJohn Birrell 		 */
229ce47682cSMark Johnston 		raw = malloc(shdr[i].sh_size, M_LINKER, M_WAITOK);
23075d94ef6SJohn Birrell 	} else {
23175d94ef6SJohn Birrell 		/*
23275d94ef6SJohn Birrell 		 * The CTF data is not compressed, so the ELF section
23375d94ef6SJohn Birrell 		 * size is the same as the buffer size required.
23475d94ef6SJohn Birrell 		 */
23575d94ef6SJohn Birrell 		sz = shdr[i].sh_size;
23675d94ef6SJohn Birrell 	}
23775d94ef6SJohn Birrell 
23875d94ef6SJohn Birrell 	/*
239*28323addSBryan Drewery 	 * Allocate memory to buffer the CTF data in its decompressed
24075d94ef6SJohn Birrell 	 * form.
24175d94ef6SJohn Birrell 	 */
242ce47682cSMark Johnston 	ctftab = malloc(sz, M_LINKER, M_WAITOK);
24375d94ef6SJohn Birrell 
24475d94ef6SJohn Birrell 	/*
24575d94ef6SJohn Birrell 	 * Read the CTF data into the raw buffer if compressed, or
24675d94ef6SJohn Birrell 	 * directly into the CTF buffer otherwise.
24775d94ef6SJohn Birrell 	 */
24875d94ef6SJohn Birrell 	if ((error = vn_rdwr(UIO_READ, nd.ni_vp, raw == NULL ? ctftab : raw,
24975d94ef6SJohn Birrell 	    shdr[i].sh_size, shdr[i].sh_offset, UIO_SYSSPACE, IO_NODELOCKED,
2507abb0b09SMark Johnston 	    td->td_ucred, NOCRED, NULL, td)) != 0)
25175d94ef6SJohn Birrell 		goto out;
25275d94ef6SJohn Birrell 
25375d94ef6SJohn Birrell 	/* Check if decompression is required. */
25475d94ef6SJohn Birrell 	if (raw != NULL) {
25575d94ef6SJohn Birrell 		z_stream zs;
25675d94ef6SJohn Birrell 		int ret;
25775d94ef6SJohn Birrell 
25875d94ef6SJohn Birrell 		/*
25975d94ef6SJohn Birrell 		 * The header isn't compressed, so copy that into the
26075d94ef6SJohn Birrell 		 * CTF buffer first.
26175d94ef6SJohn Birrell 		 */
26275d94ef6SJohn Birrell 		bcopy(ctf_hdr, ctftab, sizeof(ctf_hdr));
26375d94ef6SJohn Birrell 
26475d94ef6SJohn Birrell 		/* Initialise the zlib structure. */
26575d94ef6SJohn Birrell 		bzero(&zs, sizeof(zs));
26675d94ef6SJohn Birrell 		zs.zalloc = z_alloc;
26775d94ef6SJohn Birrell 		zs.zfree = z_free;
26875d94ef6SJohn Birrell 
26975d94ef6SJohn Birrell 		if (inflateInit(&zs) != Z_OK) {
27075d94ef6SJohn Birrell 			error = EIO;
27175d94ef6SJohn Birrell 			goto out;
27275d94ef6SJohn Birrell 		}
27375d94ef6SJohn Birrell 
27475d94ef6SJohn Birrell 		zs.avail_in = shdr[i].sh_size - sizeof(ctf_hdr);
27575d94ef6SJohn Birrell 		zs.next_in = ((uint8_t *) raw) + sizeof(ctf_hdr);
27675d94ef6SJohn Birrell 		zs.avail_out = sz - sizeof(ctf_hdr);
27775d94ef6SJohn Birrell 		zs.next_out = ((uint8_t *) ctftab) + sizeof(ctf_hdr);
27825024670SMark Johnston 		ret = inflate(&zs, Z_FINISH);
27925024670SMark Johnston 		inflateEnd(&zs);
28025024670SMark Johnston 		if (ret != Z_STREAM_END) {
28175d94ef6SJohn Birrell 			printf("%s(%d): zlib inflate returned %d\n", __func__, __LINE__, ret);
28275d94ef6SJohn Birrell 			error = EIO;
28375d94ef6SJohn Birrell 			goto out;
28475d94ef6SJohn Birrell 		}
28575d94ef6SJohn Birrell 	}
28675d94ef6SJohn Birrell 
28775d94ef6SJohn Birrell 	/* Got the CTF data! */
28875d94ef6SJohn Birrell 	ef->ctftab = ctftab;
28975d94ef6SJohn Birrell 	ef->ctfcnt = shdr[i].sh_size;
29075d94ef6SJohn Birrell 
29175d94ef6SJohn Birrell 	/* We'll retain the memory allocated for the CTF data. */
29275d94ef6SJohn Birrell 	ctftab = NULL;
29375d94ef6SJohn Birrell 
29475d94ef6SJohn Birrell 	/* Let the caller use the CTF data read. */
29575d94ef6SJohn Birrell 	lc->ctftab = ef->ctftab;
29675d94ef6SJohn Birrell 	lc->ctfcnt = ef->ctfcnt;
29775d94ef6SJohn Birrell 	lc->symtab = ef->ddbsymtab;
29875d94ef6SJohn Birrell 	lc->strtab = ef->ddbstrtab;
29975d94ef6SJohn Birrell 	lc->strcnt = ef->ddbstrcnt;
30075d94ef6SJohn Birrell 	lc->nsym   = ef->ddbsymcnt;
30175d94ef6SJohn Birrell 	lc->ctfoffp = (uint32_t **) &ef->ctfoff;
30275d94ef6SJohn Birrell 	lc->typoffp = (uint32_t **) &ef->typoff;
30375d94ef6SJohn Birrell 	lc->typlenp = &ef->typlen;
30475d94ef6SJohn Birrell 
30575d94ef6SJohn Birrell out:
30675d94ef6SJohn Birrell 	VOP_UNLOCK(nd.ni_vp, 0);
30775d94ef6SJohn Birrell 	vn_close(nd.ni_vp, FREAD, td->td_ucred, td);
30875d94ef6SJohn Birrell 
30975d94ef6SJohn Birrell 	if (hdr != NULL)
31075d94ef6SJohn Birrell 		free(hdr, M_LINKER);
31175d94ef6SJohn Birrell 	if (shdr != NULL)
31275d94ef6SJohn Birrell 		free(shdr, M_LINKER);
31375d94ef6SJohn Birrell 	if (shstrtab != NULL)
31475d94ef6SJohn Birrell 		free(shstrtab, M_LINKER);
31575d94ef6SJohn Birrell 	if (ctftab != NULL)
31675d94ef6SJohn Birrell 		free(ctftab, M_LINKER);
31775d94ef6SJohn Birrell 	if (raw != NULL)
31875d94ef6SJohn Birrell 		free(raw, M_LINKER);
31975d94ef6SJohn Birrell #else
32075d94ef6SJohn Birrell 	error = EOPNOTSUPP;
32175d94ef6SJohn Birrell #endif
32275d94ef6SJohn Birrell 
32375d94ef6SJohn Birrell 	return (error);
32475d94ef6SJohn Birrell }
325