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kern_ksyms.c revision 1.39
      1  1.38     skrll /*	$NetBSD: kern_ksyms.c,v 1.39 2008/10/20 10:24:18 ad Exp $	*/
      2  1.38     skrll 
      3  1.39        ad /*-
      4  1.39        ad  * Copyright (c) 2008 The NetBSD Foundation, Inc.
      5  1.39        ad  * All rights reserved.
      6  1.39        ad  *
      7  1.39        ad  * This code is derived from software developed for The NetBSD Foundation
      8  1.39        ad  * by Andrew Doran.
      9  1.39        ad  *
     10  1.39        ad  * Redistribution and use in source and binary forms, with or without
     11  1.39        ad  * modification, are permitted provided that the following conditions
     12  1.39        ad  * are met:
     13  1.39        ad  * 1. Redistributions of source code must retain the above copyright
     14  1.39        ad  *    notice, this list of conditions and the following disclaimer.
     15  1.39        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.39        ad  *    notice, this list of conditions and the following disclaimer in the
     17  1.39        ad  *    documentation and/or other materials provided with the distribution.
     18  1.39        ad  *
     19  1.39        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  1.39        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  1.39        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  1.39        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  1.39        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  1.39        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  1.39        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  1.39        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  1.39        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  1.39        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  1.39        ad  * POSSIBILITY OF SUCH DAMAGE.
     30  1.39        ad  */
     31  1.39        ad 
     32   1.1     ragge /*
     33   1.1     ragge  * Copyright (c) 2001, 2003 Anders Magnusson (ragge (at) ludd.luth.se).
     34   1.1     ragge  * All rights reserved.
     35   1.1     ragge  *
     36   1.1     ragge  * Redistribution and use in source and binary forms, with or without
     37   1.1     ragge  * modification, are permitted provided that the following conditions
     38   1.1     ragge  * are met:
     39   1.1     ragge  * 1. Redistributions of source code must retain the above copyright
     40   1.1     ragge  *    notice, this list of conditions and the following disclaimer.
     41   1.1     ragge  * 2. Redistributions in binary form must reproduce the above copyright
     42   1.1     ragge  *    notice, this list of conditions and the following disclaimer in the
     43   1.1     ragge  *    documentation and/or other materials provided with the distribution.
     44   1.1     ragge  * 3. The name of the author may not be used to endorse or promote products
     45   1.1     ragge  *    derived from this software without specific prior written permission
     46   1.1     ragge  *
     47   1.1     ragge  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     48   1.1     ragge  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     49   1.1     ragge  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     50   1.1     ragge  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     51   1.1     ragge  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     52   1.1     ragge  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     53   1.1     ragge  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     54   1.1     ragge  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     55   1.1     ragge  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     56   1.1     ragge  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     57   1.1     ragge  */
     58   1.1     ragge 
     59   1.1     ragge /*
     60   1.1     ragge  * Code to deal with in-kernel symbol table management + /dev/ksyms.
     61   1.1     ragge  *
     62   1.1     ragge  * For each loaded module the symbol table info is kept track of by a
     63   1.1     ragge  * struct, placed in a circular list. The first entry is the kernel
     64   1.1     ragge  * symbol table.
     65   1.1     ragge  */
     66   1.1     ragge 
     67   1.1     ragge /*
     68   1.1     ragge  * TODO:
     69   1.1     ragge  *
     70  1.39        ad  *	Consider replacing patricia tree with simpler binary search
     71  1.39        ad  *	for symbol tables.
     72  1.39        ad  *
     73  1.39        ad  *	Add support for mmap, poll.
     74   1.1     ragge  */
     75  1.11  jdolecek 
     76  1.11  jdolecek #include <sys/cdefs.h>
     77  1.39        ad __KERNEL_RCSID(0, "$NetBSD: kern_ksyms.c,v 1.39 2008/10/20 10:24:18 ad Exp $");
     78   1.1     ragge 
     79   1.1     ragge #ifdef _KERNEL
     80   1.1     ragge #include "opt_ddb.h"
     81   1.3     ragge #include "opt_ddbparam.h"	/* for SYMTAB_SPACE */
     82   1.1     ragge #endif
     83   1.1     ragge 
     84  1.39        ad #define _KSYMS_PRIVATE
     85  1.39        ad 
     86   1.1     ragge #include <sys/param.h>
     87   1.1     ragge #include <sys/errno.h>
     88   1.1     ragge #include <sys/queue.h>
     89   1.1     ragge #include <sys/exec.h>
     90   1.1     ragge #include <sys/systm.h>
     91   1.1     ragge #include <sys/conf.h>
     92   1.1     ragge #include <sys/malloc.h>
     93  1.39        ad #include <sys/kmem.h>
     94   1.1     ragge #include <sys/proc.h>
     95  1.39        ad #include <sys/module.h>
     96  1.39        ad #include <sys/atomic.h>
     97   1.1     ragge #include <sys/ksyms.h>
     98   1.1     ragge 
     99   1.1     ragge #include <lib/libkern/libkern.h>
    100   1.1     ragge 
    101   1.1     ragge #ifdef DDB
    102   1.1     ragge #include <ddb/db_output.h>
    103   1.1     ragge #endif
    104   1.1     ragge 
    105   1.1     ragge #include "ksyms.h"
    106   1.1     ragge 
    107  1.39        ad static int ksyms_maxlen;
    108  1.39        ad static bool ksyms_isopen;
    109  1.39        ad static bool ksyms_initted;
    110  1.39        ad static struct ksyms_hdr ksyms_hdr;
    111  1.39        ad kmutex_t ksyms_lock;
    112   1.1     ragge 
    113  1.39        ad void ksymsattach(int);
    114  1.32  christos static void ksyms_hdr_init(void *hdraddr);
    115   1.1     ragge static void ksyms_sizes_calc(void);
    116   1.1     ragge 
    117   1.1     ragge #ifdef KSYMS_DEBUG
    118   1.1     ragge #define	FOLLOW_CALLS		1
    119   1.1     ragge #define	FOLLOW_MORE_CALLS	2
    120   1.1     ragge #define	FOLLOW_DEVKSYMS		4
    121   1.1     ragge static int ksyms_debug;
    122   1.1     ragge #endif
    123   1.1     ragge 
    124   1.3     ragge #ifdef SYMTAB_SPACE
    125   1.3     ragge #define		SYMTAB_FILLER	"|This is the symbol table!"
    126   1.3     ragge 
    127   1.3     ragge char		db_symtab[SYMTAB_SPACE] = SYMTAB_FILLER;
    128   1.3     ragge int		db_symtabsize = SYMTAB_SPACE;
    129   1.3     ragge #endif
    130   1.1     ragge 
    131  1.39        ad int ksyms_symsz;
    132  1.39        ad int ksyms_strsz;
    133  1.39        ad TAILQ_HEAD(, ksyms_symtab) ksyms_symtabs =
    134  1.39        ad     TAILQ_HEAD_INITIALIZER(ksyms_symtabs);
    135  1.39        ad static struct ksyms_symtab kernel_symtab;
    136   1.1     ragge 
    137   1.8     ragge /*
    138   1.8     ragge  * Patricia-tree-based lookup structure for the in-kernel global symbols.
    139   1.8     ragge  * Based on a design by Mikael Sundstrom, msm (at) sm.luth.se.
    140   1.8     ragge  */
    141   1.8     ragge struct ptree {
    142   1.8     ragge 	int16_t bitno;
    143   1.8     ragge 	int16_t lr[2];
    144   1.8     ragge } *symb;
    145   1.8     ragge static int16_t baseidx;
    146   1.8     ragge static int treex = 1;
    147   1.8     ragge 
    148   1.8     ragge #define	P_BIT(key, bit) ((key[bit >> 3] >> (bit & 7)) & 1)
    149  1.32  christos #define	STRING(idx) (kernel_symtab.sd_symstart[idx].st_name + \
    150  1.32  christos 			kernel_symtab.sd_strstart)
    151   1.8     ragge 
    152  1.33  christos static int
    153  1.33  christos ksyms_verify(void *symstart, void *strstart)
    154  1.33  christos {
    155  1.33  christos #if defined(DIAGNOSTIC) || defined(DEBUG)
    156  1.33  christos 	if (symstart == NULL)
    157  1.33  christos 		printf("ksyms: Symbol table not found\n");
    158  1.33  christos 	if (strstart == NULL)
    159  1.33  christos 		printf("ksyms: String table not found\n");
    160  1.33  christos 	if (symstart == NULL || strstart == NULL)
    161  1.33  christos 		printf("ksyms: Perhaps the kernel is stripped?\n");
    162  1.33  christos #endif
    163  1.33  christos 	if (symstart == NULL || strstart == NULL)
    164  1.33  christos 		return 0;
    165  1.33  christos 	KASSERT(symstart <= strstart);
    166  1.33  christos 	return 1;
    167  1.33  christos }
    168  1.33  christos 
    169   1.8     ragge /*
    170   1.8     ragge  * Walk down the tree until a terminal node is found.
    171   1.8     ragge  */
    172   1.8     ragge static int
    173  1.24  christos symbol_traverse(const char *key)
    174   1.8     ragge {
    175   1.8     ragge 	int16_t nb, rbit = baseidx;
    176   1.8     ragge 
    177   1.8     ragge 	while (rbit > 0) {
    178   1.8     ragge 		nb = symb[rbit].bitno;
    179   1.8     ragge 		rbit = symb[rbit].lr[P_BIT(key, nb)];
    180   1.8     ragge 	}
    181   1.8     ragge 	return -rbit;
    182   1.8     ragge }
    183   1.8     ragge 
    184   1.8     ragge static int
    185   1.8     ragge ptree_add(char *key, int val)
    186   1.8     ragge {
    187   1.8     ragge 	int idx;
    188  1.15  christos 	int nix, cix, bit, rbit, sb, lastrbit, svbit = 0, ix;
    189   1.8     ragge 	char *m, *k;
    190   1.8     ragge 
    191   1.8     ragge 	if (baseidx == 0) {
    192   1.8     ragge 		baseidx = -val;
    193   1.8     ragge 		return 0; /* First element */
    194   1.8     ragge 	}
    195   1.8     ragge 
    196   1.8     ragge 	/* Get string to match against */
    197   1.8     ragge 	idx = symbol_traverse(key);
    198   1.8     ragge 
    199   1.8     ragge 	/* Find first mismatching bit */
    200   1.8     ragge 	m = STRING(idx);
    201   1.8     ragge 	k = key;
    202   1.8     ragge 	if (strcmp(m, k) == 0)
    203   1.8     ragge 		return 1;
    204   1.8     ragge 
    205   1.8     ragge 	for (cix = 0; *m && *k && *m == *k; m++, k++, cix += 8)
    206   1.8     ragge 		;
    207   1.8     ragge 	ix = ffs((int)*m ^ (int)*k) - 1;
    208   1.8     ragge 	cix += ix;
    209   1.8     ragge 
    210   1.8     ragge 	/* Create new node */
    211   1.8     ragge 	nix = treex++;
    212   1.8     ragge 	bit = P_BIT(key, cix);
    213   1.8     ragge 	symb[nix].bitno = cix;
    214   1.8     ragge 	symb[nix].lr[bit] = -val;
    215   1.8     ragge 
    216   1.8     ragge 	/* Find where to insert node */
    217   1.8     ragge 	rbit = baseidx;
    218   1.8     ragge 	lastrbit = 0;
    219   1.8     ragge 	for (;;) {
    220   1.8     ragge 		if (rbit < 0)
    221   1.8     ragge 			break;
    222   1.8     ragge 		sb = symb[rbit].bitno;
    223   1.8     ragge 		if (sb > cix)
    224   1.8     ragge 			break;
    225   1.8     ragge 		if (sb == cix)
    226   1.8     ragge 			printf("symb[rbit].bitno == cix!!!\n");
    227   1.8     ragge 		lastrbit = rbit;
    228   1.8     ragge 		svbit = P_BIT(key, sb);
    229   1.8     ragge 		rbit = symb[rbit].lr[svbit];
    230   1.8     ragge 	}
    231   1.8     ragge 
    232   1.8     ragge 	/* Do the actual insertion */
    233   1.8     ragge 	if (lastrbit == 0) {
    234   1.8     ragge 		/* first element */
    235   1.8     ragge 		symb[nix].lr[!bit] = baseidx;
    236   1.8     ragge 		baseidx = nix;
    237   1.8     ragge 	} else {
    238   1.8     ragge 		symb[nix].lr[!bit] = rbit;
    239   1.8     ragge 		symb[lastrbit].lr[svbit] = nix;
    240   1.8     ragge 	}
    241   1.8     ragge 	return 0;
    242   1.8     ragge }
    243   1.8     ragge 
    244   1.8     ragge static int
    245  1.24  christos ptree_find(const char *key)
    246   1.8     ragge {
    247   1.8     ragge 	int idx;
    248   1.8     ragge 
    249   1.8     ragge 	if (baseidx == 0)
    250   1.8     ragge 		return 0;
    251   1.8     ragge 	idx = symbol_traverse(key);
    252   1.8     ragge 
    253   1.8     ragge 	if (strcmp(key, STRING(idx)) == 0)
    254   1.8     ragge 		return idx;
    255   1.8     ragge 	return 0;
    256   1.8     ragge }
    257   1.8     ragge 
    258   1.8     ragge static void
    259  1.39        ad ptree_gen(char *off, struct ksyms_symtab *tab)
    260   1.8     ragge {
    261   1.8     ragge 	Elf_Sym *sym;
    262  1.16     ragge 	int i, nsym;
    263   1.8     ragge 
    264   1.8     ragge 	if (off != NULL)
    265   1.8     ragge 		symb = (struct ptree *)ALIGN(off);
    266   1.8     ragge 	else
    267   1.8     ragge 		symb = malloc((tab->sd_symsize/sizeof(Elf_Sym)) *
    268   1.8     ragge 		    sizeof(struct ptree), M_DEVBUF, M_WAITOK);
    269   1.8     ragge 	symb--; /* sym index won't be 0 */
    270   1.8     ragge 
    271   1.8     ragge 	sym = tab->sd_symstart;
    272  1.16     ragge 	if ((nsym = tab->sd_symsize/sizeof(Elf_Sym)) > INT16_MAX) {
    273  1.16     ragge 		printf("Too many symbols for tree, skipping %d symbols\n",
    274  1.16     ragge 		    nsym-INT16_MAX);
    275  1.16     ragge 		nsym = INT16_MAX;
    276  1.16     ragge 	}
    277  1.16     ragge 	for (i = 1; i < nsym; i++) {
    278   1.8     ragge 		if (ELF_ST_BIND(sym[i].st_info) != STB_GLOBAL)
    279   1.8     ragge 			continue;
    280   1.8     ragge 		ptree_add(tab->sd_strstart+sym[i].st_name, i);
    281  1.39        ad 		if (tab->sd_minsym == NULL ||
    282  1.39        ad 		    sym[i].st_value < tab->sd_minsym->st_value)
    283  1.35      matt 			tab->sd_minsym = &sym[i];
    284  1.39        ad 		if (tab->sd_maxsym == NULL ||
    285  1.39        ad 		    sym[i].st_value > tab->sd_maxsym->st_value)
    286  1.35      matt 			tab->sd_maxsym = &sym[i];
    287   1.8     ragge 	}
    288   1.8     ragge }
    289   1.8     ragge 
    290   1.1     ragge /*
    291   1.1     ragge  * Finds a certain symbol name in a certain symbol table.
    292   1.1     ragge  */
    293   1.1     ragge static Elf_Sym *
    294  1.39        ad findsym(const char *name, struct ksyms_symtab *table)
    295   1.1     ragge {
    296   1.1     ragge 	Elf_Sym *start = table->sd_symstart;
    297   1.1     ragge 	int i, sz = table->sd_symsize/sizeof(Elf_Sym);
    298   1.1     ragge 	char *np;
    299  1.32  christos 	char *realstart = table->sd_strstart - table->sd_usroffset;
    300   1.1     ragge 
    301   1.8     ragge 	if (table == &kernel_symtab && (i = ptree_find(name)) != 0)
    302   1.8     ragge 		return &start[i];
    303   1.8     ragge 
    304   1.1     ragge 	for (i = 0; i < sz; i++) {
    305  1.17      cube 		np = realstart + start[i].st_name;
    306   1.1     ragge 		if (name[0] == np[0] && name[1] == np[1] &&
    307   1.1     ragge 		    strcmp(name, np) == 0)
    308   1.1     ragge 			return &start[i];
    309   1.1     ragge 	}
    310   1.1     ragge 	return NULL;
    311   1.1     ragge }
    312   1.1     ragge 
    313   1.1     ragge /*
    314   1.1     ragge  * The "attach" is in reality done in ksyms_init().
    315   1.1     ragge  */
    316   1.1     ragge void
    317  1.30      yamt ksymsattach(int arg)
    318   1.1     ragge {
    319   1.8     ragge 
    320   1.8     ragge 	if (baseidx == 0)
    321   1.8     ragge 		ptree_gen(0, &kernel_symtab);
    322   1.1     ragge }
    323   1.1     ragge 
    324   1.1     ragge /*
    325  1.29      jmmv  * Add a symbol table.
    326  1.29      jmmv  * This is intended for use when the symbol table and its corresponding
    327  1.29      jmmv  * string table are easily available.  If they are embedded in an ELF
    328  1.29      jmmv  * image, use addsymtab_elf() instead.
    329  1.29      jmmv  *
    330  1.29      jmmv  * name - Symbol's table name.
    331  1.29      jmmv  * symstart, symsize - Address and size of the symbol table.
    332  1.29      jmmv  * strstart, strsize - Address and size of the string table.
    333  1.29      jmmv  * tab - Symbol table to be updated with this information.
    334  1.29      jmmv  * newstart - Address to which the symbol table has to be copied during
    335  1.29      jmmv  *            shrinking.  If NULL, it is not moved.
    336   1.1     ragge  */
    337   1.1     ragge static void
    338  1.39        ad addsymtab(const char *name, void *symstart, size_t symsize,
    339  1.39        ad 	  void *strstart, size_t strsize, struct ksyms_symtab *tab,
    340  1.39        ad 	  void *newstart)
    341   1.1     ragge {
    342   1.8     ragge 	Elf_Sym *sym, *nsym;
    343  1.39        ad 	int i, j, n;
    344   1.8     ragge 	char *str;
    345   1.1     ragge 
    346  1.39        ad 	tab->sd_symstart = symstart;
    347  1.29      jmmv 	tab->sd_symsize = symsize;
    348  1.29      jmmv 	tab->sd_strstart = strstart;
    349  1.29      jmmv 	tab->sd_strsize = strsize;
    350   1.1     ragge 	tab->sd_name = name;
    351  1.39        ad 	tab->sd_minsym = NULL;
    352  1.39        ad 	tab->sd_maxsym = NULL;
    353  1.39        ad 	tab->sd_usroffset = 0;
    354  1.39        ad 	tab->sd_gone = false;
    355  1.39        ad 	tab->sd_malloc = false;	/* XXXLKM */
    356   1.8     ragge #ifdef KSYMS_DEBUG
    357  1.39        ad 	printf("newstart %p sym %p ksyms_symsz %d str %p strsz %d send %p\n",
    358  1.39        ad 	    newstart, symstart, symsize, strstart, strsize,
    359  1.39        ad 	    tab->sd_strstart + tab->sd_strsize);
    360   1.8     ragge #endif
    361   1.1     ragge 
    362  1.39        ad 	/* Pack symbol table by removing all file name references. */
    363   1.8     ragge 	sym = tab->sd_symstart;
    364  1.29      jmmv 	nsym = (Elf_Sym *)newstart;
    365   1.8     ragge 	str = tab->sd_strstart;
    366  1.39        ad 	for (i = n = 0; i < tab->sd_symsize/sizeof(Elf_Sym); i++) {
    367   1.8     ragge 		/*
    368   1.8     ragge 		 * Remove useless symbols.
    369   1.8     ragge 		 * Should actually remove all typeless symbols.
    370   1.8     ragge 		 */
    371   1.5     ragge 		if (sym[i].st_name == 0)
    372   1.8     ragge 			continue; /* Skip nameless entries */
    373  1.34        ad 		if (sym[i].st_shndx == SHN_UNDEF)
    374  1.34        ad 			continue; /* Skip external references */
    375   1.8     ragge 		if (ELF_ST_TYPE(sym[i].st_info) == STT_FILE)
    376   1.8     ragge 			continue; /* Skip filenames */
    377   1.8     ragge 		if (ELF_ST_TYPE(sym[i].st_info) == STT_NOTYPE &&
    378   1.8     ragge 		    sym[i].st_value == 0 &&
    379   1.8     ragge 		    strcmp(str + sym[i].st_name, "*ABS*") == 0)
    380   1.8     ragge 			continue; /* XXX */
    381   1.8     ragge 		if (ELF_ST_TYPE(sym[i].st_info) == STT_NOTYPE &&
    382   1.8     ragge 		    strcmp(str + sym[i].st_name, "gcc2_compiled.") == 0)
    383   1.8     ragge 			continue; /* XXX */
    384   1.8     ragge 
    385   1.8     ragge 		/* Save symbol. Set it as an absolute offset */
    386   1.8     ragge 		nsym[n] = sym[i];
    387   1.8     ragge 		nsym[n].st_shndx = SHN_ABS;
    388  1.39        ad 		j = strlen(nsym[n].st_name + tab->sd_strstart) + 1;
    389  1.39        ad 		if (j > ksyms_maxlen)
    390  1.39        ad 			ksyms_maxlen = j;
    391   1.8     ragge 		n++;
    392   1.8     ragge 
    393   1.5     ragge 	}
    394   1.8     ragge 	tab->sd_symstart = nsym;
    395   1.8     ragge 	tab->sd_symsize = n * sizeof(Elf_Sym);
    396  1.39        ad 	/* ksymsread() is unlocked, so membar. */
    397  1.39        ad 	membar_producer();
    398  1.39        ad 	TAILQ_INSERT_TAIL(&ksyms_symtabs, tab, sd_queue);
    399  1.39        ad 	ksyms_sizes_calc();
    400  1.39        ad 	ksyms_initted = true;
    401   1.1     ragge }
    402   1.1     ragge 
    403   1.1     ragge /*
    404  1.39        ad  * Setup the kernel symbol table stuff.
    405  1.29      jmmv  */
    406  1.39        ad void
    407  1.39        ad ksyms_init(int symsize, void *start, void *end)
    408  1.29      jmmv {
    409  1.29      jmmv 	int i, j;
    410  1.29      jmmv 	Elf_Shdr *shdr;
    411  1.32  christos 	char *symstart = NULL, *strstart = NULL;
    412  1.39        ad 	size_t strsize = 0;
    413   1.3     ragge 	Elf_Ehdr *ehdr;
    414   1.3     ragge 
    415   1.3     ragge #ifdef SYMTAB_SPACE
    416   1.3     ragge 	if (symsize <= 0 &&
    417   1.3     ragge 	    strncmp(db_symtab, SYMTAB_FILLER, sizeof(SYMTAB_FILLER))) {
    418   1.3     ragge 		symsize = db_symtabsize;
    419   1.3     ragge 		start = db_symtab;
    420   1.3     ragge 		end = db_symtab + db_symtabsize;
    421   1.3     ragge 	}
    422   1.3     ragge #endif
    423   1.3     ragge 	if (symsize <= 0) {
    424   1.3     ragge 		printf("[ Kernel symbol table missing! ]\n");
    425   1.3     ragge 		return;
    426   1.3     ragge 	}
    427   1.3     ragge 
    428   1.3     ragge 	/* Sanity check */
    429   1.3     ragge 	if (ALIGNED_POINTER(start, long) == 0) {
    430   1.3     ragge 		printf("[ Kernel symbol table has bad start address %p ]\n",
    431   1.3     ragge 		    start);
    432   1.3     ragge 		return;
    433   1.3     ragge 	}
    434   1.3     ragge 
    435   1.3     ragge 	ehdr = (Elf_Ehdr *)start;
    436   1.1     ragge 
    437   1.1     ragge 	/* check if this is a valid ELF header */
    438   1.1     ragge 	/* No reason to verify arch type, the kernel is actually running! */
    439   1.1     ragge 	if (memcmp(ehdr->e_ident, ELFMAG, SELFMAG) ||
    440   1.1     ragge 	    ehdr->e_ident[EI_CLASS] != ELFCLASS ||
    441   1.1     ragge 	    ehdr->e_version > 1) {
    442   1.3     ragge 		printf("[ Kernel symbol table invalid! ]\n");
    443   1.1     ragge 		return; /* nothing to do */
    444   1.1     ragge 	}
    445   1.1     ragge 
    446   1.8     ragge 	/* Loaded header will be scratched in addsymtab */
    447   1.8     ragge 	ksyms_hdr_init(start);
    448   1.8     ragge 
    449  1.39        ad 	/* Find the symbol table and the corresponding string table. */
    450  1.39        ad 	shdr = (Elf_Shdr *)((uint8_t *)start + ehdr->e_shoff);
    451  1.39        ad 	for (i = 1; i < ehdr->e_shnum; i++) {
    452  1.39        ad 		if (shdr[i].sh_type != SHT_SYMTAB)
    453  1.39        ad 			continue;
    454  1.39        ad 		if (shdr[i].sh_offset == 0)
    455  1.39        ad 			continue;
    456  1.39        ad 		symstart = (uint8_t *)start + shdr[i].sh_offset;
    457  1.39        ad 		symsize = shdr[i].sh_size;
    458  1.39        ad 		j = shdr[i].sh_link;
    459  1.39        ad 		if (shdr[j].sh_offset == 0)
    460  1.39        ad 			continue; /* Can this happen? */
    461  1.39        ad 		strstart = (uint8_t *)start + shdr[j].sh_offset;
    462  1.39        ad 		strsize = shdr[j].sh_size;
    463  1.39        ad 		break;
    464  1.39        ad 	}
    465   1.8     ragge 
    466  1.39        ad 	if (!ksyms_verify(symstart, strstart))
    467  1.39        ad 		return;
    468  1.39        ad 	addsymtab("netbsd", symstart, symsize, strstart, strsize,
    469  1.39        ad 	    &kernel_symtab, start);
    470   1.8     ragge 
    471   1.1     ragge #ifdef DEBUG
    472   1.1     ragge 	printf("Loaded initial symtab at %p, strtab at %p, # entries %ld\n",
    473   1.1     ragge 	    kernel_symtab.sd_symstart, kernel_symtab.sd_strstart,
    474   1.2     ragge 	    (long)kernel_symtab.sd_symsize/sizeof(Elf_Sym));
    475   1.1     ragge #endif
    476   1.1     ragge }
    477   1.1     ragge 
    478   1.1     ragge /*
    479  1.29      jmmv  * Setup the kernel symbol table stuff.
    480  1.29      jmmv  * Use this when the address of the symbol and string tables are known;
    481  1.29      jmmv  * otherwise use ksyms_init with an ELF image.
    482  1.31      jmmv  * We need to pass a minimal ELF header which will later be completed by
    483  1.31      jmmv  * ksyms_hdr_init and handed off to userland through /dev/ksyms.  We use
    484  1.32  christos  * a void *rather than a pointer to avoid exposing the Elf_Ehdr type.
    485  1.29      jmmv  */
    486  1.29      jmmv void
    487  1.32  christos ksyms_init_explicit(void *ehdr, void *symstart, size_t symsize,
    488  1.39        ad 		    void *strstart, size_t strsize)
    489  1.29      jmmv {
    490  1.29      jmmv 
    491  1.33  christos 	if (!ksyms_verify(symstart, strstart))
    492  1.33  christos 		return;
    493  1.29      jmmv 
    494  1.31      jmmv 	ksyms_hdr_init(ehdr);
    495  1.29      jmmv 	addsymtab("netbsd", symstart, symsize, strstart, strsize,
    496  1.39        ad 	    &kernel_symtab, symstart);
    497  1.29      jmmv }
    498  1.29      jmmv 
    499  1.29      jmmv /*
    500   1.1     ragge  * Get the value associated with a symbol.
    501  1.23     perry  * "mod" is the module name, or null if any module.
    502   1.1     ragge  * "sym" is the symbol name.
    503   1.1     ragge  * "val" is a pointer to the corresponding value, if call succeeded.
    504   1.1     ragge  * Returns 0 if success or ENOENT if no such entry.
    505  1.39        ad  *
    506  1.39        ad  * Call with ksyms_lock, unless known that the symbol table can't change.
    507   1.1     ragge  */
    508   1.1     ragge int
    509  1.24  christos ksyms_getval(const char *mod, const char *sym, unsigned long *val, int type)
    510   1.1     ragge {
    511  1.39        ad 	struct ksyms_symtab *st;
    512   1.1     ragge 	Elf_Sym *es;
    513   1.1     ragge 
    514  1.39        ad 	if (!ksyms_initted)
    515   1.1     ragge 		return ENOENT;
    516   1.1     ragge 
    517   1.1     ragge #ifdef KSYMS_DEBUG
    518   1.1     ragge 	if (ksyms_debug & FOLLOW_CALLS)
    519   1.1     ragge 		printf("ksyms_getval: mod %s sym %s valp %p\n", mod, sym, val);
    520   1.1     ragge #endif
    521   1.1     ragge 
    522  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    523  1.39        ad 		if (st->sd_gone)
    524  1.39        ad 			continue;
    525   1.1     ragge 		if (mod && strcmp(st->sd_name, mod))
    526   1.1     ragge 			continue;
    527  1.22      cube 		if ((es = findsym(sym, st)) == NULL)
    528   1.1     ragge 			continue;
    529  1.34        ad 		if (es->st_shndx == SHN_UNDEF)
    530  1.34        ad 			continue;
    531   1.1     ragge 
    532   1.1     ragge 		/* Skip if bad binding */
    533   1.1     ragge 		if (type == KSYMS_EXTERN &&
    534   1.1     ragge 		    ELF_ST_BIND(es->st_info) != STB_GLOBAL)
    535   1.1     ragge 			continue;
    536   1.1     ragge 
    537   1.1     ragge 		if (val)
    538   1.1     ragge 			*val = es->st_value;
    539   1.1     ragge 		return 0;
    540   1.1     ragge 	}
    541   1.1     ragge 	return ENOENT;
    542   1.1     ragge }
    543   1.1     ragge 
    544   1.1     ragge /*
    545   1.1     ragge  * Get "mod" and "symbol" associated with an address.
    546   1.1     ragge  * Returns 0 if success or ENOENT if no such entry.
    547  1.39        ad  *
    548  1.39        ad  * Call with ksyms_lock, unless known that the symbol table can't change.
    549   1.1     ragge  */
    550   1.1     ragge int
    551  1.24  christos ksyms_getname(const char **mod, const char **sym, vaddr_t v, int f)
    552   1.1     ragge {
    553  1.39        ad 	struct ksyms_symtab *st;
    554   1.1     ragge 	Elf_Sym *les, *es = NULL;
    555   1.1     ragge 	vaddr_t laddr = 0;
    556  1.15  christos 	const char *lmod = NULL;
    557  1.15  christos 	char *stable = NULL;
    558   1.1     ragge 	int type, i, sz;
    559   1.1     ragge 
    560  1.39        ad 	if (!ksyms_initted)
    561   1.1     ragge 		return ENOENT;
    562   1.1     ragge 
    563  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    564  1.39        ad 		if (st->sd_gone)
    565  1.39        ad 			continue;
    566  1.35      matt 		if (st->sd_minsym != NULL && v < st->sd_minsym->st_value)
    567  1.35      matt 			continue;
    568  1.35      matt 		if (st->sd_maxsym != NULL && v > st->sd_maxsym->st_value)
    569  1.35      matt 			continue;
    570   1.1     ragge 		sz = st->sd_symsize/sizeof(Elf_Sym);
    571   1.1     ragge 		for (i = 0; i < sz; i++) {
    572   1.1     ragge 			les = st->sd_symstart + i;
    573   1.1     ragge 			type = ELF_ST_TYPE(les->st_info);
    574   1.1     ragge 
    575   1.1     ragge 			if ((f & KSYMS_PROC) && (type != STT_FUNC))
    576   1.1     ragge 				continue;
    577   1.1     ragge 
    578   1.1     ragge 			if (type == STT_NOTYPE)
    579   1.1     ragge 				continue;
    580   1.1     ragge 
    581   1.1     ragge 			if (((f & KSYMS_ANY) == 0) &&
    582   1.1     ragge 			    (type != STT_FUNC) && (type != STT_OBJECT))
    583   1.1     ragge 				continue;
    584   1.1     ragge 
    585   1.1     ragge 			if ((les->st_value <= v) && (les->st_value > laddr)) {
    586   1.1     ragge 				laddr = les->st_value;
    587   1.1     ragge 				es = les;
    588   1.1     ragge 				lmod = st->sd_name;
    589  1.17      cube 				stable = st->sd_strstart - st->sd_usroffset;
    590   1.1     ragge 			}
    591   1.1     ragge 		}
    592   1.1     ragge 	}
    593   1.1     ragge 	if (es == NULL)
    594   1.1     ragge 		return ENOENT;
    595   1.1     ragge 	if ((f & KSYMS_EXACT) && (v != es->st_value))
    596   1.1     ragge 		return ENOENT;
    597   1.1     ragge 	if (mod)
    598   1.1     ragge 		*mod = lmod;
    599   1.1     ragge 	if (sym)
    600   1.1     ragge 		*sym = stable + es->st_name;
    601   1.1     ragge 	return 0;
    602   1.1     ragge }
    603   1.1     ragge 
    604  1.22      cube /*
    605  1.39        ad  * Temporary work structure for dynamic loaded symbol tables.
    606  1.22      cube  *
    607  1.39        ad  * XXX REMOVE WHEN LKMS GO.
    608   1.1     ragge  */
    609  1.20      matt struct syminfo {
    610  1.20      matt 	size_t cursyms;
    611  1.20      matt 	size_t curnamep;
    612  1.20      matt 	size_t maxsyms;
    613  1.20      matt 	size_t maxnamep;
    614  1.20      matt 	Elf_Sym *syms;
    615  1.20      matt 	char *symnames;
    616  1.20      matt };
    617  1.23     perry 
    618   1.1     ragge /*
    619   1.1     ragge  * Add a symbol to the temporary save area for symbols.
    620  1.39        ad  *
    621  1.39        ad  * XXX REMOVE WHEN LKMS GO.
    622   1.1     ragge  */
    623   1.1     ragge static void
    624  1.20      matt addsym(struct syminfo *info, const Elf_Sym *sym, const char *name,
    625  1.20      matt        const char *mod)
    626   1.1     ragge {
    627  1.20      matt 	int len, mlen;
    628   1.1     ragge 
    629   1.1     ragge #ifdef KSYMS_DEBUG
    630   1.1     ragge 	if (ksyms_debug & FOLLOW_MORE_CALLS)
    631   1.1     ragge 		printf("addsym: name %s val %lx\n", name, (long)sym->st_value);
    632   1.1     ragge #endif
    633  1.20      matt 	len = strlen(name) + 1;
    634  1.20      matt 	if (mod)
    635  1.20      matt 		mlen = 1 + strlen(mod);
    636  1.20      matt 	else
    637  1.20      matt 		mlen = 0;
    638  1.23     perry 	if (info->cursyms == info->maxsyms ||
    639  1.20      matt 	    (len + mlen + info->curnamep) > info->maxnamep) {
    640  1.19      matt 		printf("addsym: too many symbols, skipping '%s'\n", name);
    641   1.1     ragge 		return;
    642   1.1     ragge 	}
    643  1.20      matt 	strlcpy(&info->symnames[info->curnamep], name,
    644  1.20      matt 	    info->maxnamep - info->curnamep);
    645  1.20      matt 	if (mlen) {
    646  1.20      matt 		info->symnames[info->curnamep + len - 1] = '.';
    647  1.20      matt 		strlcpy(&info->symnames[info->curnamep + len], mod,
    648  1.20      matt 		    info->maxnamep - (info->curnamep + len));
    649  1.20      matt 		len += mlen;
    650  1.20      matt 	}
    651  1.20      matt 	info->syms[info->cursyms] = *sym;
    652  1.20      matt 	info->syms[info->cursyms].st_name = info->curnamep;
    653  1.20      matt 	info->curnamep += len;
    654   1.5     ragge 	if (len > ksyms_maxlen)
    655   1.5     ragge 		ksyms_maxlen = len;
    656  1.20      matt 	info->cursyms++;
    657   1.1     ragge }
    658  1.39        ad 
    659   1.1     ragge /*
    660  1.39        ad  * XXX REMOVE WHEN LKMS GO.
    661   1.1     ragge  */
    662  1.21      matt static int
    663  1.21      matt specialsym(const char *symname)
    664  1.21      matt {
    665  1.39        ad 
    666  1.21      matt 	return	!strcmp(symname, "_bss_start") ||
    667  1.39        ad 	    !strcmp(symname, "__bss_start") ||
    668  1.39        ad 	    !strcmp(symname, "_bss_end__") ||
    669  1.39        ad 	    !strcmp(symname, "__bss_end__") ||
    670  1.39        ad 	    !strcmp(symname, "_edata") ||
    671  1.39        ad 	    !strcmp(symname, "_end") ||
    672  1.39        ad 	    !strcmp(symname, "__end") ||
    673  1.39        ad 	    !strcmp(symname, "__end__") ||
    674  1.39        ad 	    !strncmp(symname, "__start_link_set_", 17) ||
    675  1.39        ad 	    !strncmp(symname, "__stop_link_set_", 16);
    676  1.21      matt }
    677  1.21      matt 
    678  1.39        ad /*
    679  1.39        ad  * Adds a symbol table.
    680  1.39        ad  * "name" is the module name, "start" and "size" is where the symbol table
    681  1.39        ad  * is located, and "type" is in which binary format the symbol table is.
    682  1.39        ad  * New memory for keeping the symbol table is allocated in this function.
    683  1.39        ad  * Returns 0 if success and EEXIST if the module name is in use.
    684  1.39        ad  *
    685  1.39        ad  * XXX REMOVE WHEN LKMS GO.
    686  1.39        ad  */
    687   1.1     ragge int
    688   1.9  jdolecek ksyms_addsymtab(const char *mod, void *symstart, vsize_t symsize,
    689  1.39        ad 		char *strstart, vsize_t strsize)
    690   1.1     ragge {
    691   1.1     ragge 	Elf_Sym *sym = symstart;
    692  1.39        ad 	struct ksyms_symtab *st;
    693  1.14     ragge 	unsigned long rval;
    694   1.1     ragge 	int i;
    695  1.20      matt 	char *name;
    696  1.20      matt 	struct syminfo info;
    697   1.1     ragge 
    698   1.1     ragge #ifdef KSYMS_DEBUG
    699   1.1     ragge 	if (ksyms_debug & FOLLOW_CALLS)
    700   1.1     ragge 		printf("ksyms_addsymtab: mod %s symsize %lx strsize %lx\n",
    701   1.1     ragge 		    mod, symsize, strsize);
    702   1.1     ragge #endif
    703   1.1     ragge 
    704  1.39        ad 	mutex_enter(&ksyms_lock);
    705   1.1     ragge 
    706   1.1     ragge 	/* Check if this symtab already loaded */
    707  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    708  1.39        ad 		if (st->sd_gone)
    709  1.39        ad 			continue;
    710  1.39        ad 		if (strcmp(mod, st->sd_name) == 0) {
    711  1.39        ad 			mutex_exit(&ksyms_lock);
    712   1.1     ragge 			return EEXIST;
    713  1.39        ad 		}
    714   1.1     ragge 	}
    715   1.1     ragge 
    716   1.1     ragge 	/*
    717   1.1     ragge 	 * XXX - Only add a symbol if it do not exist already.
    718   1.1     ragge 	 * This is because of a flaw in the current LKM implementation,
    719  1.20      matt 	 * these loops will be removed once the in-kernel linker is in place.
    720   1.1     ragge 	 */
    721  1.20      matt 	memset(&info, 0, sizeof(info));
    722   1.1     ragge 	for (i = 0; i < symsize/sizeof(Elf_Sym); i++) {
    723  1.20      matt 		char * const symname = strstart + sym[i].st_name;
    724   1.1     ragge 		if (sym[i].st_name == 0)
    725   1.1     ragge 			continue; /* Just ignore */
    726   1.1     ragge 
    727   1.1     ragge 		/* check validity of the symbol */
    728   1.1     ragge 		/* XXX - save local symbols if DDB */
    729   1.1     ragge 		if (ELF_ST_BIND(sym[i].st_info) != STB_GLOBAL)
    730   1.1     ragge 			continue;
    731  1.23     perry 
    732   1.1     ragge 		/* Check if the symbol exists */
    733  1.22      cube 		if (ksyms_getval(NULL, symname, &rval, KSYMS_EXTERN) == 0) {
    734   1.1     ragge 			/* Check (and complain) about differing values */
    735  1.34        ad 			if (sym[i].st_value != rval &&
    736  1.34        ad 			    sym[i].st_shndx != SHN_UNDEF) {
    737  1.21      matt 				if (specialsym(symname)) {
    738  1.20      matt 					info.maxsyms++;
    739  1.20      matt 					info.maxnamep += strlen(symname) + 1 +
    740  1.20      matt 					    strlen(mod) + 1;
    741  1.20      matt 				} else {
    742  1.20      matt 					printf("%s: symbol '%s' redeclared with"
    743  1.20      matt 					    " different value (%lx != %lx)\n",
    744  1.20      matt 					    mod, symname,
    745  1.20      matt 					    rval, (long)sym[i].st_value);
    746  1.20      matt 				}
    747  1.20      matt 			}
    748  1.20      matt 		} else {
    749  1.20      matt 			/*
    750  1.20      matt 			 * Count this symbol
    751  1.20      matt 			 */
    752  1.20      matt 			info.maxsyms++;
    753  1.20      matt 			info.maxnamep += strlen(symname) + 1;
    754  1.20      matt 		}
    755  1.20      matt 	}
    756  1.20      matt 
    757  1.20      matt 	/*
    758  1.20      matt 	 * Now that we know the sizes, malloc the structures.
    759  1.20      matt 	 */
    760  1.20      matt 	info.syms = malloc(sizeof(Elf_Sym)*info.maxsyms, M_DEVBUF, M_WAITOK);
    761  1.20      matt 	info.symnames = malloc(info.maxnamep, M_DEVBUF, M_WAITOK);
    762  1.20      matt 
    763  1.20      matt 	/*
    764  1.20      matt 	 * Now that we have the symbols, actually fill in the structures.
    765  1.20      matt 	 */
    766  1.20      matt 	for (i = 0; i < symsize/sizeof(Elf_Sym); i++) {
    767  1.20      matt 		char * const symname = strstart + sym[i].st_name;
    768  1.20      matt 		if (sym[i].st_name == 0)
    769  1.20      matt 			continue; /* Just ignore */
    770  1.20      matt 
    771  1.20      matt 		/* check validity of the symbol */
    772  1.20      matt 		/* XXX - save local symbols if DDB */
    773  1.20      matt 		if (ELF_ST_BIND(sym[i].st_info) != STB_GLOBAL)
    774  1.20      matt 			continue;
    775  1.23     perry 
    776  1.20      matt 		/* Check if the symbol exists */
    777  1.22      cube 		if (ksyms_getval(NULL, symname, &rval, KSYMS_EXTERN) == 0) {
    778  1.21      matt 			if ((sym[i].st_value != rval) && specialsym(symname)) {
    779  1.20      matt 				addsym(&info, &sym[i], symname, mod);
    780   1.1     ragge 			}
    781   1.1     ragge 		} else
    782   1.1     ragge 			/* Ok, save this symbol */
    783  1.20      matt 			addsym(&info, &sym[i], symname, NULL);
    784   1.1     ragge 	}
    785   1.5     ragge 
    786  1.39        ad 	st = kmem_zalloc(sizeof(*st), KM_SLEEP);
    787  1.10    itojun 	i = strlen(mod) + 1;
    788  1.10    itojun 	name = malloc(i, M_DEVBUF, M_WAITOK);
    789  1.10    itojun 	strlcpy(name, mod, i);
    790   1.9  jdolecek 	st->sd_name = name;
    791  1.20      matt 	st->sd_symstart = info.syms;
    792  1.20      matt 	st->sd_symsize = sizeof(Elf_Sym)*info.maxsyms;
    793  1.20      matt 	st->sd_strstart = info.symnames;
    794  1.20      matt 	st->sd_strsize = info.maxnamep;
    795  1.39        ad 	st->sd_malloc = true;
    796   1.1     ragge 
    797   1.1     ragge 	/* Make them absolute references */
    798   1.1     ragge 	sym = st->sd_symstart;
    799   1.1     ragge 	for (i = 0; i < st->sd_symsize/sizeof(Elf_Sym); i++)
    800   1.1     ragge 		sym[i].st_shndx = SHN_ABS;
    801   1.1     ragge 
    802  1.39        ad 	/* ksymsread() is unlocked, so membar. */
    803  1.39        ad 	membar_producer();
    804  1.39        ad 	TAILQ_INSERT_TAIL(&ksyms_symtabs, st, sd_queue);
    805   1.1     ragge 	ksyms_sizes_calc();
    806  1.39        ad 	mutex_exit(&ksyms_lock);
    807  1.39        ad 
    808   1.1     ragge 	return 0;
    809   1.1     ragge }
    810   1.1     ragge 
    811   1.1     ragge /*
    812   1.1     ragge  * Remove a symbol table specified by name.
    813   1.1     ragge  * Returns 0 if success, EBUSY if device open and ENOENT if no such name.
    814  1.39        ad  *
    815  1.39        ad  * XXX REMOVE WHEN LKMS GO.
    816   1.1     ragge  */
    817   1.1     ragge int
    818   1.9  jdolecek ksyms_delsymtab(const char *mod)
    819   1.1     ragge {
    820  1.39        ad 	struct ksyms_symtab *st;
    821   1.1     ragge 
    822  1.39        ad 	mutex_enter(&ksyms_lock);
    823  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    824  1.39        ad 		if (st->sd_gone)
    825  1.39        ad 			continue;
    826  1.39        ad 		if (strcmp(mod, st->sd_name) != 0)
    827  1.39        ad 			continue;
    828  1.39        ad 		if (ksyms_isopen) {
    829  1.39        ad 			st->sd_gone = true;
    830  1.39        ad 			mutex_exit(&ksyms_lock);
    831  1.39        ad 			return 0;
    832  1.39        ad 		}
    833  1.39        ad 		TAILQ_REMOVE(&ksyms_symtabs, st, sd_queue);
    834  1.39        ad 		ksyms_sizes_calc();
    835  1.39        ad 		mutex_exit(&ksyms_lock);
    836  1.39        ad 		KASSERT(st->sd_malloc);
    837  1.39        ad 		free(st->sd_symstart, M_DEVBUF);
    838  1.39        ad 		free(st->sd_strstart, M_DEVBUF);
    839  1.39        ad 		/* XXXUNCONST LINTED - const castaway */
    840  1.39        ad 		free(__UNCONST(st->sd_name), M_DEVBUF);
    841  1.39        ad 		kmem_free(st, sizeof(*st));
    842  1.39        ad 		return 0;
    843   1.1     ragge 	}
    844  1.39        ad 	mutex_exit(&ksyms_lock);
    845  1.39        ad 	return ENOENT;
    846   1.1     ragge }
    847   1.1     ragge 
    848  1.39        ad /*
    849  1.39        ad  * Add a symbol table from a loadable module.
    850  1.39        ad  */
    851  1.39        ad void
    852  1.39        ad ksyms_modload(const char *name, void *symstart, vsize_t symsize,
    853  1.39        ad 	      char *strstart, vsize_t strsize)
    854  1.17      cube {
    855  1.39        ad 	struct ksyms_symtab *st;
    856  1.39        ad 
    857  1.39        ad 	st = kmem_zalloc(sizeof(*st), KM_SLEEP);
    858  1.39        ad 	mutex_enter(&ksyms_lock);
    859  1.39        ad 	addsymtab(name, symstart, symsize, strstart, strsize, st, symstart);
    860  1.39        ad 	mutex_exit(&ksyms_lock);
    861  1.39        ad }
    862  1.17      cube 
    863  1.39        ad /*
    864  1.39        ad  * Remove a symbol table from a loadable module.
    865  1.39        ad  */
    866  1.39        ad void
    867  1.39        ad ksyms_modunload(const char *name)
    868  1.39        ad {
    869  1.39        ad 	struct ksyms_symtab *st;
    870  1.17      cube 
    871  1.39        ad 	mutex_enter(&ksyms_lock);
    872  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    873  1.39        ad 		if (st->sd_gone)
    874  1.39        ad 			continue;
    875  1.39        ad 		if (strcmp(name, st->sd_name) != 0)
    876  1.39        ad 			continue;
    877  1.39        ad 		KASSERT(!st->sd_malloc);	/* XXXLKM */
    878  1.39        ad 		st->sd_gone = true;
    879  1.39        ad 		if (!ksyms_isopen) {
    880  1.39        ad 			TAILQ_REMOVE(&ksyms_symtabs, st, sd_queue);
    881  1.39        ad 			ksyms_sizes_calc();
    882  1.39        ad 			kmem_free(st, sizeof(*st));
    883  1.39        ad 		}
    884  1.39        ad 		break;
    885  1.39        ad 	}
    886  1.39        ad 	mutex_exit(&ksyms_lock);
    887  1.39        ad 	KASSERT(st != NULL);
    888  1.17      cube }
    889  1.17      cube 
    890   1.1     ragge #ifdef DDB
    891   1.1     ragge /*
    892   1.1     ragge  * Keep sifting stuff here, to avoid export of ksyms internals.
    893  1.39        ad  *
    894  1.39        ad  * Systems is expected to be quiescent, so no locking done.
    895   1.1     ragge  */
    896   1.1     ragge int
    897   1.1     ragge ksyms_sift(char *mod, char *sym, int mode)
    898   1.1     ragge {
    899  1.39        ad 	struct ksyms_symtab *st;
    900   1.1     ragge 	char *sb;
    901   1.1     ragge 	int i, sz;
    902   1.1     ragge 
    903  1.39        ad 	if (!ksyms_initted)
    904   1.1     ragge 		return ENOENT;
    905   1.1     ragge 
    906  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    907  1.39        ad 		if (st->sd_gone)
    908  1.39        ad 			continue;
    909   1.1     ragge 		if (mod && strcmp(mod, st->sd_name))
    910   1.1     ragge 			continue;
    911  1.39        ad 		sb = st->sd_strstart - st->sd_usroffset;
    912   1.1     ragge 
    913   1.1     ragge 		sz = st->sd_symsize/sizeof(Elf_Sym);
    914   1.1     ragge 		for (i = 0; i < sz; i++) {
    915   1.1     ragge 			Elf_Sym *les = st->sd_symstart + i;
    916   1.1     ragge 			char c;
    917   1.1     ragge 
    918  1.39        ad 			if (strstr(sb + les->st_name, sym) == NULL)
    919   1.1     ragge 				continue;
    920   1.1     ragge 
    921   1.1     ragge 			if (mode == 'F') {
    922   1.1     ragge 				switch (ELF_ST_TYPE(les->st_info)) {
    923   1.1     ragge 				case STT_OBJECT:
    924   1.1     ragge 					c = '+';
    925   1.1     ragge 					break;
    926   1.1     ragge 				case STT_FUNC:
    927   1.1     ragge 					c = '*';
    928   1.1     ragge 					break;
    929   1.1     ragge 				case STT_SECTION:
    930   1.1     ragge 					c = '&';
    931   1.1     ragge 					break;
    932   1.1     ragge 				case STT_FILE:
    933   1.1     ragge 					c = '/';
    934   1.1     ragge 					break;
    935   1.1     ragge 				default:
    936   1.1     ragge 					c = ' ';
    937   1.1     ragge 					break;
    938   1.1     ragge 				}
    939  1.39        ad 				db_printf("%s%c ", sb + les->st_name, c);
    940   1.1     ragge 			} else
    941  1.39        ad 				db_printf("%s ", sb + les->st_name);
    942   1.1     ragge 		}
    943   1.1     ragge 	}
    944   1.1     ragge 	return ENOENT;
    945   1.1     ragge }
    946  1.25   thorpej #endif /* DDB */
    947   1.1     ragge 
    948   1.1     ragge /*
    949  1.39        ad  * In case we exposing the symbol table to the userland using the pseudo-
    950  1.39        ad  * device /dev/ksyms, it is easier to provide all the tables as one.
    951  1.39        ad  * However, it means we have to change all the st_name fields for the
    952  1.39        ad  * symbols so they match the ELF image that the userland will read
    953  1.39        ad  * through the device.
    954  1.39        ad  *
    955  1.39        ad  * The actual (correct) value of st_name is preserved through a global
    956  1.39        ad  * offset stored in the symbol table structure.
    957  1.39        ad  *
    958  1.39        ad  * Call with ksyms_lock held.
    959   1.1     ragge  */
    960  1.39        ad static void
    961  1.39        ad ksyms_sizes_calc(void)
    962  1.39        ad {
    963  1.39        ad         struct ksyms_symtab *st;
    964  1.39        ad 	int i, delta;
    965   1.1     ragge 
    966  1.39        ad         ksyms_symsz = ksyms_strsz = 0;
    967  1.39        ad         TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
    968  1.39        ad 		delta = ksyms_strsz - st->sd_usroffset;
    969  1.39        ad 		if (delta != 0) {
    970  1.39        ad 			for (i = 0; i < st->sd_symsize/sizeof(Elf_Sym); i++)
    971  1.39        ad 				st->sd_symstart[i].st_name += delta;
    972  1.39        ad 			st->sd_usroffset = ksyms_strsz;
    973  1.39        ad 		}
    974  1.39        ad                 ksyms_symsz += st->sd_symsize;
    975  1.39        ad                 ksyms_strsz += st->sd_strsize;
    976  1.39        ad         }
    977  1.39        ad }
    978   1.1     ragge 
    979  1.25   thorpej static void
    980  1.32  christos ksyms_hdr_init(void *hdraddr)
    981   1.1     ragge {
    982   1.1     ragge 
    983   1.1     ragge 	/* Copy the loaded elf exec header */
    984   1.1     ragge 	memcpy(&ksyms_hdr.kh_ehdr, hdraddr, sizeof(Elf_Ehdr));
    985   1.1     ragge 
    986   1.1     ragge 	/* Set correct program/section header sizes, offsets and numbers */
    987   1.1     ragge 	ksyms_hdr.kh_ehdr.e_phoff = offsetof(struct ksyms_hdr, kh_phdr[0]);
    988   1.1     ragge 	ksyms_hdr.kh_ehdr.e_phentsize = sizeof(Elf_Phdr);
    989   1.1     ragge 	ksyms_hdr.kh_ehdr.e_phnum = NPRGHDR;
    990   1.1     ragge 	ksyms_hdr.kh_ehdr.e_shoff = offsetof(struct ksyms_hdr, kh_shdr[0]);
    991   1.1     ragge 	ksyms_hdr.kh_ehdr.e_shentsize = sizeof(Elf_Shdr);
    992   1.1     ragge 	ksyms_hdr.kh_ehdr.e_shnum = NSECHDR;
    993   1.1     ragge 	ksyms_hdr.kh_ehdr.e_shstrndx = NSECHDR - 1; /* Last section */
    994   1.1     ragge 
    995  1.39        ad 	/* Text */
    996  1.39        ad 	ksyms_hdr.kh_phdr[0].p_type = PT_LOAD;
    997  1.39        ad 	ksyms_hdr.kh_phdr[0].p_memsz = (unsigned long)-1L;
    998  1.39        ad 	ksyms_hdr.kh_phdr[0].p_flags = PF_R | PF_X;
    999  1.39        ad 
   1000  1.39        ad 	/* Data */
   1001  1.39        ad 	ksyms_hdr.kh_phdr[1].p_type = PT_LOAD;
   1002  1.39        ad 	ksyms_hdr.kh_phdr[1].p_memsz = (unsigned long)-1L;
   1003  1.39        ad 	ksyms_hdr.kh_phdr[1].p_flags = PF_R | PF_W | PF_X;
   1004  1.39        ad 
   1005  1.39        ad 	/* First section is null */
   1006   1.1     ragge 
   1007   1.1     ragge 	/* Second section header; ".symtab" */
   1008   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_name = 1; /* Section 3 offset */
   1009   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_type = SHT_SYMTAB;
   1010   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_offset = sizeof(struct ksyms_hdr);
   1011   1.1     ragge /*	ksyms_hdr.kh_shdr[SYMTAB].sh_size = filled in at open */
   1012   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_link = 2; /* Corresponding strtab */
   1013   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_addralign = sizeof(long);
   1014   1.1     ragge 	ksyms_hdr.kh_shdr[SYMTAB].sh_entsize = sizeof(Elf_Sym);
   1015   1.1     ragge 
   1016   1.1     ragge 	/* Third section header; ".strtab" */
   1017   1.1     ragge 	ksyms_hdr.kh_shdr[STRTAB].sh_name = 9; /* Section 3 offset */
   1018   1.1     ragge 	ksyms_hdr.kh_shdr[STRTAB].sh_type = SHT_STRTAB;
   1019   1.1     ragge /*	ksyms_hdr.kh_shdr[STRTAB].sh_offset = filled in at open */
   1020   1.1     ragge /*	ksyms_hdr.kh_shdr[STRTAB].sh_size = filled in at open */
   1021   1.1     ragge 	ksyms_hdr.kh_shdr[STRTAB].sh_addralign = sizeof(char);
   1022   1.1     ragge 
   1023   1.1     ragge 	/* Fourth section, ".shstrtab" */
   1024   1.1     ragge 	ksyms_hdr.kh_shdr[SHSTRTAB].sh_name = 17; /* This section name offset */
   1025   1.1     ragge 	ksyms_hdr.kh_shdr[SHSTRTAB].sh_type = SHT_STRTAB;
   1026   1.1     ragge 	ksyms_hdr.kh_shdr[SHSTRTAB].sh_offset =
   1027   1.1     ragge 	    offsetof(struct ksyms_hdr, kh_strtab);
   1028   1.1     ragge 	ksyms_hdr.kh_shdr[SHSTRTAB].sh_size = SHSTRSIZ;
   1029   1.1     ragge 	ksyms_hdr.kh_shdr[SHSTRTAB].sh_addralign = sizeof(char);
   1030   1.1     ragge 
   1031   1.1     ragge 	/* Set section names */
   1032  1.10    itojun 	strlcpy(&ksyms_hdr.kh_strtab[1], ".symtab",
   1033  1.10    itojun 	    sizeof(ksyms_hdr.kh_strtab) - 1);
   1034  1.10    itojun 	strlcpy(&ksyms_hdr.kh_strtab[9], ".strtab",
   1035  1.10    itojun 	    sizeof(ksyms_hdr.kh_strtab) - 9);
   1036  1.10    itojun 	strlcpy(&ksyms_hdr.kh_strtab[17], ".shstrtab",
   1037  1.10    itojun 	    sizeof(ksyms_hdr.kh_strtab) - 17);
   1038  1.39        ad }
   1039   1.1     ragge 
   1040  1.25   thorpej static int
   1041  1.30      yamt ksymsopen(dev_t dev, int oflags, int devtype, struct lwp *l)
   1042   1.1     ragge {
   1043   1.1     ragge 
   1044  1.39        ad 	if (minor(dev) != 0 || !ksyms_initted)
   1045  1.18      cube 		return ENXIO;
   1046   1.1     ragge 
   1047  1.39        ad 	/*
   1048  1.39        ad 	 * Create a "snapshot" of the kernel symbol table.  Setting
   1049  1.39        ad 	 * ksyms_isopen will prevent symbol tables from being freed.
   1050  1.39        ad 	 */
   1051  1.39        ad 	mutex_enter(&ksyms_lock);
   1052  1.39        ad 	ksyms_hdr.kh_shdr[SYMTAB].sh_size = ksyms_symsz;
   1053  1.39        ad 	ksyms_hdr.kh_shdr[SYMTAB].sh_info = ksyms_symsz / sizeof(Elf_Sym);
   1054  1.39        ad 	ksyms_hdr.kh_shdr[STRTAB].sh_offset = ksyms_symsz +
   1055   1.1     ragge 	    ksyms_hdr.kh_shdr[SYMTAB].sh_offset;
   1056  1.39        ad 	ksyms_hdr.kh_shdr[STRTAB].sh_size = ksyms_strsz;
   1057  1.39        ad 	ksyms_isopen = true;
   1058  1.39        ad 	mutex_exit(&ksyms_lock);
   1059   1.1     ragge 
   1060   1.1     ragge 	return 0;
   1061   1.1     ragge }
   1062   1.1     ragge 
   1063  1.25   thorpej static int
   1064  1.30      yamt ksymsclose(dev_t dev, int oflags, int devtype, struct lwp *l)
   1065   1.1     ragge {
   1066  1.39        ad 	struct ksyms_symtab *st, *next;
   1067  1.39        ad 	bool resize;
   1068   1.1     ragge 
   1069  1.39        ad 	/* Discard refernces to symbol tables. */
   1070  1.39        ad 	mutex_enter(&ksyms_lock);
   1071  1.39        ad 	ksyms_isopen = false;
   1072  1.39        ad 	resize = false;
   1073  1.39        ad 	for (st = TAILQ_FIRST(&ksyms_symtabs); st != NULL; st = next) {
   1074  1.39        ad 		next = TAILQ_NEXT(st, sd_queue);
   1075  1.39        ad 		if (st->sd_gone) {
   1076  1.39        ad 			TAILQ_REMOVE(&ksyms_symtabs, st, sd_queue);
   1077  1.39        ad 			kmem_free(st, sizeof(*st));
   1078  1.39        ad 			if (st->sd_malloc) {	/* XXXLKM */
   1079  1.39        ad 				free(st->sd_symstart, M_DEVBUF);
   1080  1.39        ad 				free(st->sd_strstart, M_DEVBUF);
   1081  1.39        ad 				/* XXXUNCONST LINTED - const castaway */
   1082  1.39        ad 				free(__UNCONST(st->sd_name), M_DEVBUF);
   1083  1.39        ad 			}
   1084  1.39        ad 			resize = true;
   1085  1.39        ad 		}
   1086  1.39        ad 	}
   1087  1.39        ad 	if (resize)
   1088  1.39        ad 		ksyms_sizes_calc();
   1089  1.39        ad 	mutex_exit(&ksyms_lock);
   1090   1.1     ragge 
   1091   1.1     ragge 	return 0;
   1092   1.1     ragge }
   1093   1.1     ragge 
   1094  1.25   thorpej static int
   1095  1.30      yamt ksymsread(dev_t dev, struct uio *uio, int ioflag)
   1096   1.1     ragge {
   1097  1.39        ad 	struct ksyms_symtab *st;
   1098   1.1     ragge 	size_t filepos, inpos, off;
   1099  1.39        ad 	int error;
   1100   1.1     ragge 
   1101   1.1     ragge 	/*
   1102  1.39        ad 	 * First: Copy out the ELF header.   XXX Lose if ksymsopen()
   1103  1.39        ad 	 * occurs during read of the header.
   1104   1.1     ragge 	 */
   1105  1.39        ad 	off = uio->uio_offset;
   1106  1.39        ad 	if (off < sizeof(struct ksyms_hdr)) {
   1107  1.39        ad 		error = uiomove((char *)&ksyms_hdr + off,
   1108  1.39        ad 		    sizeof(struct ksyms_hdr) - off, uio);
   1109  1.39        ad 		if (error != 0)
   1110  1.39        ad 			return error;
   1111  1.39        ad 	}
   1112   1.1     ragge 
   1113   1.1     ragge 	/*
   1114   1.1     ragge 	 * Copy out the symbol table.
   1115   1.1     ragge 	 */
   1116  1.39        ad 	filepos = sizeof(struct ksyms_hdr);
   1117  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
   1118   1.1     ragge 		if (uio->uio_resid == 0)
   1119   1.1     ragge 			return 0;
   1120   1.1     ragge 		if (uio->uio_offset <= st->sd_symsize + filepos) {
   1121   1.1     ragge 			inpos = uio->uio_offset - filepos;
   1122  1.39        ad 			error = uiomove((char *)st->sd_symstart + inpos,
   1123   1.1     ragge 			   st->sd_symsize - inpos, uio);
   1124  1.39        ad 			if (error != 0)
   1125  1.39        ad 				return error;
   1126   1.1     ragge 		}
   1127   1.1     ragge 		filepos += st->sd_symsize;
   1128   1.1     ragge 	}
   1129   1.1     ragge 
   1130   1.1     ragge 	/*
   1131   1.1     ragge 	 * Copy out the string table
   1132   1.1     ragge 	 */
   1133  1.39        ad 	KASSERT(filepos == sizeof(struct ksyms_hdr) +
   1134  1.39        ad 	    ksyms_hdr.kh_shdr[SYMTAB].sh_size);
   1135  1.39        ad 	TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
   1136   1.1     ragge 		if (uio->uio_resid == 0)
   1137   1.1     ragge 			return 0;
   1138   1.1     ragge 		if (uio->uio_offset <= st->sd_strsize + filepos) {
   1139   1.1     ragge 			inpos = uio->uio_offset - filepos;
   1140  1.39        ad 			error = uiomove((char *)st->sd_strstart + inpos,
   1141   1.1     ragge 			   st->sd_strsize - inpos, uio);
   1142  1.39        ad 			if (error != 0)
   1143  1.39        ad 				return error;
   1144   1.1     ragge 		}
   1145   1.1     ragge 		filepos += st->sd_strsize;
   1146   1.1     ragge 	}
   1147  1.39        ad 
   1148   1.1     ragge 	return 0;
   1149   1.1     ragge }
   1150   1.1     ragge 
   1151  1.25   thorpej static int
   1152  1.30      yamt ksymswrite(dev_t dev, struct uio *uio, int ioflag)
   1153   1.1     ragge {
   1154  1.30      yamt 
   1155   1.1     ragge 	return EROFS;
   1156   1.1     ragge }
   1157   1.1     ragge 
   1158  1.25   thorpej static int
   1159  1.32  christos ksymsioctl(dev_t dev, u_long cmd, void *data, int fflag, struct lwp *l)
   1160   1.1     ragge {
   1161   1.1     ragge 	struct ksyms_gsymbol *kg = (struct ksyms_gsymbol *)data;
   1162  1.39        ad 	struct ksyms_symtab *st;
   1163  1.39        ad 	Elf_Sym *sym = NULL, copy;
   1164   1.1     ragge 	unsigned long val;
   1165   1.1     ragge 	int error = 0;
   1166  1.15  christos 	char *str = NULL;
   1167  1.39        ad 	int len;
   1168  1.39        ad 
   1169  1.39        ad 	/* Read ksyms_maxlen only once while not holding the lock. */
   1170  1.39        ad 	len = ksyms_maxlen;
   1171   1.5     ragge 
   1172  1.39        ad 	if (cmd == KIOCGVALUE || cmd == KIOCGSYMBOL) {
   1173  1.39        ad 		str = kmem_alloc(len, KM_SLEEP);
   1174  1.39        ad 		if ((error = copyinstr(kg->kg_name, str, len, NULL)) != 0) {
   1175  1.39        ad 			kmem_free(str, len);
   1176  1.39        ad 			return error;
   1177  1.39        ad 		}
   1178  1.39        ad 	}
   1179   1.1     ragge 
   1180   1.1     ragge 	switch (cmd) {
   1181   1.1     ragge 	case KIOCGVALUE:
   1182   1.1     ragge 		/*
   1183   1.1     ragge 		 * Use the in-kernel symbol lookup code for fast
   1184   1.1     ragge 		 * retreival of a value.
   1185   1.1     ragge 		 */
   1186  1.39        ad 		mutex_enter(&ksyms_lock);
   1187  1.39        ad 		error = ksyms_getval(NULL, str, &val, KSYMS_EXTERN);
   1188  1.39        ad 		mutex_exit(&ksyms_lock);
   1189  1.39        ad 		if (error == 0)
   1190  1.39        ad 			error = copyout(&val, kg->kg_value, sizeof(long));
   1191  1.39        ad 		kmem_free(str, len);
   1192   1.1     ragge 		break;
   1193   1.1     ragge 
   1194   1.1     ragge 	case KIOCGSYMBOL:
   1195   1.1     ragge 		/*
   1196   1.1     ragge 		 * Use the in-kernel symbol lookup code for fast
   1197   1.1     ragge 		 * retreival of a symbol.
   1198   1.1     ragge 		 */
   1199  1.39        ad 		mutex_enter(&ksyms_lock);
   1200  1.39        ad 		TAILQ_FOREACH(st, &ksyms_symtabs, sd_queue) {
   1201  1.39        ad 			if (st->sd_gone)
   1202  1.39        ad 				continue;
   1203  1.39        ad 			if ((sym = findsym(str, st)) == NULL)
   1204   1.1     ragge 				continue;
   1205  1.36  christos #ifdef notdef
   1206   1.1     ragge 			/* Skip if bad binding */
   1207   1.1     ragge 			if (ELF_ST_BIND(sym->st_info) != STB_GLOBAL) {
   1208   1.1     ragge 				sym = NULL;
   1209   1.1     ragge 				continue;
   1210   1.1     ragge 			}
   1211  1.36  christos #endif
   1212   1.1     ragge 			break;
   1213   1.1     ragge 		}
   1214  1.39        ad 		if (sym != NULL) {
   1215  1.39        ad 			memcpy(&copy, sym, sizeof(copy));
   1216  1.39        ad 			mutex_exit(&ksyms_lock);
   1217  1.39        ad 			error = copyout(&copy, kg->kg_sym, sizeof(Elf_Sym));
   1218  1.39        ad 		} else {
   1219  1.39        ad 			mutex_exit(&ksyms_lock);
   1220   1.1     ragge 			error = ENOENT;
   1221  1.39        ad 		}
   1222  1.39        ad 		kmem_free(str, len);
   1223   1.1     ragge 		break;
   1224   1.1     ragge 
   1225   1.1     ragge 	case KIOCGSIZE:
   1226   1.1     ragge 		/*
   1227   1.1     ragge 		 * Get total size of symbol table.
   1228   1.1     ragge 		 */
   1229  1.39        ad 		mutex_enter(&ksyms_lock);
   1230  1.39        ad 		*(int *)data = ksyms_strsz + ksyms_symsz +
   1231  1.39        ad 		    sizeof(struct ksyms_hdr);
   1232  1.39        ad 		mutex_exit(&ksyms_lock);
   1233   1.1     ragge 		break;
   1234   1.1     ragge 
   1235   1.1     ragge 	default:
   1236   1.1     ragge 		error = ENOTTY;
   1237   1.1     ragge 		break;
   1238   1.1     ragge 	}
   1239   1.5     ragge 
   1240   1.5     ragge 	return error;
   1241   1.1     ragge }
   1242  1.25   thorpej 
   1243  1.25   thorpej const struct cdevsw ksyms_cdevsw = {
   1244  1.25   thorpej 	ksymsopen, ksymsclose, ksymsread, ksymswrite, ksymsioctl,
   1245  1.39        ad 	nullstop, notty, nopoll, nommap, nullkqfilter, D_OTHER | D_MPSAFE
   1246  1.25   thorpej };
   1247