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rumpuser_dl.c revision 1.30.16.1
      1  1.30.16.1  martin /*      $NetBSD: rumpuser_dl.c,v 1.30.16.1 2020/04/08 14:07:16 martin Exp $	*/
      2        1.1   pooka 
      3        1.1   pooka /*
      4        1.1   pooka  * Copyright (c) 2009 Antti Kantee.  All Rights Reserved.
      5        1.1   pooka  *
      6        1.1   pooka  * Redistribution and use in source and binary forms, with or without
      7        1.1   pooka  * modification, are permitted provided that the following conditions
      8        1.1   pooka  * are met:
      9        1.1   pooka  * 1. Redistributions of source code must retain the above copyright
     10        1.1   pooka  *    notice, this list of conditions and the following disclaimer.
     11        1.1   pooka  * 2. Redistributions in binary form must reproduce the above copyright
     12        1.1   pooka  *    notice, this list of conditions and the following disclaimer in the
     13        1.1   pooka  *    documentation and/or other materials provided with the distribution.
     14        1.1   pooka  *
     15        1.1   pooka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     16        1.1   pooka  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     17        1.1   pooka  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     18        1.1   pooka  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     19        1.1   pooka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     20        1.1   pooka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     21        1.1   pooka  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     22        1.1   pooka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     23        1.1   pooka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24        1.1   pooka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25        1.1   pooka  * SUCH DAMAGE.
     26        1.1   pooka  */
     27        1.1   pooka 
     28        1.1   pooka /*
     29        1.1   pooka  * Load all module link sets and feed symbol table to the kernel.
     30        1.1   pooka  * Called during rump bootstrap.
     31        1.1   pooka  */
     32        1.1   pooka 
     33       1.16   pooka /*
     34       1.16   pooka  * Solaris libelf.h doesn't support _FILE_OFFSET_BITS=64.  Luckily,
     35       1.16   pooka  * for this module it doesn't matter.
     36       1.16   pooka  */
     37       1.17   pooka #if defined(__sun__)
     38       1.17   pooka #define RUMPUSER_NO_FILE_OFFSET_BITS
     39       1.16   pooka #endif
     40        1.8   pooka #include "rumpuser_port.h"
     41        1.8   pooka 
     42        1.8   pooka #if !defined(lint)
     43  1.30.16.1  martin __RCSID("$NetBSD: rumpuser_dl.c,v 1.30.16.1 2020/04/08 14:07:16 martin Exp $");
     44        1.8   pooka #endif /* !lint */
     45        1.1   pooka 
     46        1.1   pooka #include <sys/types.h>
     47        1.1   pooka #include <sys/time.h>
     48  1.30.16.1  martin #include <sys/evcnt.h>
     49  1.30.16.1  martin 
     50        1.8   pooka #include <assert.h>
     51        1.1   pooka 
     52        1.1   pooka #include <dlfcn.h>
     53        1.1   pooka #include <errno.h>
     54        1.1   pooka #include <fcntl.h>
     55       1.25   pooka #include <stdint.h>
     56        1.1   pooka #include <stdio.h>
     57        1.1   pooka #include <stdlib.h>
     58        1.1   pooka #include <string.h>
     59        1.1   pooka #include <unistd.h>
     60        1.1   pooka 
     61        1.1   pooka #include <rump/rumpuser.h>
     62        1.1   pooka 
     63       1.30   pooka #if defined(__ELF__) && defined(HAVE_DLINFO)
     64       1.22   rmind #include <elf.h>
     65       1.12   pooka #include <link.h>
     66       1.12   pooka 
     67        1.1   pooka static size_t symtabsize = 0, strtabsize = 0;
     68        1.1   pooka static size_t symtaboff = 0, strtaboff = 0;
     69        1.1   pooka static uint8_t *symtab = NULL;
     70        1.1   pooka static char *strtab = NULL;
     71        1.1   pooka static unsigned char eident;
     72        1.1   pooka 
     73        1.7   pooka /* nb5 compat */
     74        1.7   pooka #ifndef Elf_Symindx
     75        1.7   pooka #define Elf_Symindx uint32_t
     76        1.7   pooka #endif
     77        1.7   pooka 
     78        1.1   pooka static void *
     79        1.1   pooka reservespace(void *store, size_t *storesize,
     80        1.1   pooka 	size_t storeoff, size_t required)
     81        1.1   pooka {
     82        1.1   pooka 	size_t chunk, newsize;
     83        1.1   pooka 
     84        1.1   pooka 	assert(storeoff <= *storesize);
     85        1.1   pooka 	chunk = *storesize - storeoff;
     86        1.1   pooka 
     87        1.1   pooka 	if (chunk >= required)
     88        1.1   pooka 		return store;
     89        1.1   pooka 
     90        1.1   pooka 	newsize = *storesize + ((size_t)required - chunk);
     91        1.1   pooka 	store = realloc(store, newsize);
     92        1.1   pooka 	if (store == NULL) {
     93        1.1   pooka 		return NULL;
     94        1.1   pooka 	}
     95        1.1   pooka 	*((uint8_t *)store + storeoff) = '\0';
     96        1.1   pooka 	*storesize = newsize;
     97        1.1   pooka 
     98        1.1   pooka 	return store;
     99        1.1   pooka }
    100        1.1   pooka 
    101        1.1   pooka /*
    102        1.1   pooka  * Macros to make handling elf32/64 in the code a little saner.
    103        1.1   pooka  */
    104        1.1   pooka 
    105        1.1   pooka #define DYNn_GETMEMBER(base, n, thevar, result)				\
    106        1.1   pooka do {									\
    107        1.1   pooka 	if (eident == ELFCLASS32) {					\
    108        1.9   pooka 		const Elf32_Dyn *dyn = base;				\
    109        1.1   pooka 		/*LINTED*/						\
    110        1.1   pooka 		result = dyn[n].thevar;					\
    111        1.1   pooka 	} else {							\
    112        1.9   pooka 		const Elf64_Dyn *dyn = base;				\
    113        1.1   pooka 		/*LINTED*/						\
    114        1.1   pooka 		result = dyn[n].thevar;					\
    115        1.1   pooka 	}								\
    116        1.1   pooka } while (/*CONSTCOND*/0)
    117        1.1   pooka 
    118        1.1   pooka #define SYMn_GETMEMBER(base, n, thevar, result)				\
    119        1.1   pooka do {									\
    120        1.1   pooka 	if (eident == ELFCLASS32) {					\
    121        1.4   pooka 		const Elf32_Sym *sym = base;				\
    122        1.1   pooka 		/*LINTED*/						\
    123        1.1   pooka 		result = sym[n].thevar;					\
    124        1.1   pooka 	} else {							\
    125        1.4   pooka 		const Elf64_Sym *sym = base;				\
    126        1.1   pooka 		/*LINTED*/						\
    127        1.1   pooka 		result = sym[n].thevar;					\
    128        1.1   pooka 	}								\
    129        1.1   pooka } while (/*CONSTCOND*/0)
    130        1.1   pooka 
    131        1.1   pooka #define SYMn_SETMEMBER(base, n, thevar, value)				\
    132        1.1   pooka do {									\
    133        1.1   pooka 	if (eident == ELFCLASS32) {					\
    134        1.1   pooka 		Elf32_Sym *sym = base;					\
    135        1.1   pooka 		/*LINTED*/						\
    136        1.1   pooka 		sym[n].thevar = value;					\
    137        1.1   pooka 	} else {							\
    138        1.1   pooka 		Elf64_Sym *sym = base;					\
    139        1.1   pooka 		/*LINTED*/						\
    140        1.1   pooka 		sym[n].thevar = value;					\
    141        1.1   pooka 	}								\
    142        1.1   pooka } while (/*CONSTCOND*/0)
    143        1.1   pooka 
    144        1.1   pooka #define SYM_GETSIZE() ((eident==ELFCLASS32)?sizeof(Elf32_Sym):sizeof(Elf64_Sym))
    145        1.1   pooka 
    146        1.8   pooka /*
    147        1.8   pooka  * On NetBSD, the dynamic section pointer values seem to be relative to
    148       1.20   pooka  * the address the dso is mapped at.  On glibc, they seem to contain
    149        1.8   pooka  * the absolute address.  I couldn't find anything definite from a quick
    150        1.8   pooka  * read of the standard and therefore I will not go and figure beyond ifdef.
    151       1.20   pooka  * On Solaris and DragonFly / FreeBSD, the main object works differently
    152       1.20   pooka  * ... uuuuh.
    153        1.8   pooka  */
    154       1.23   pooka #if defined(__GLIBC__) && !defined(__mips__)
    155        1.8   pooka #define adjptr(_map_, _ptr_) ((void *)(_ptr_))
    156       1.19   pooka #elif defined(__sun__) || defined(__DragonFly__) || defined(__FreeBSD__)
    157       1.13   pooka #define adjptr(_map_, _ptr_) \
    158       1.14   pooka     (ismainobj ? (void *)(_ptr_) : (void *)(_map_->l_addr + (_ptr_)))
    159        1.8   pooka #else
    160       1.21   pooka /* NetBSD and some others, e.g. Linux + musl */
    161        1.8   pooka #define adjptr(_map_, _ptr_) ((void *)(_map_->l_addr + (_ptr_)))
    162        1.8   pooka #endif
    163        1.8   pooka 
    164        1.1   pooka static int
    165       1.14   pooka getsymbols(struct link_map *map, int ismainobj)
    166        1.1   pooka {
    167        1.1   pooka 	char *str_base;
    168        1.1   pooka 	void *syms_base = NULL; /* XXXgcc */
    169        1.4   pooka 	size_t curstrsize;
    170        1.9   pooka 	const void *ed_base;
    171        1.1   pooka 	uint64_t ed_tag;
    172        1.4   pooka 	size_t cursymcount;
    173        1.4   pooka 	unsigned i;
    174        1.1   pooka 
    175        1.4   pooka 	if (map->l_addr) {
    176        1.8   pooka 		if (memcmp((void *)map->l_addr, ELFMAG, SELFMAG) != 0)
    177        1.4   pooka 			return ENOEXEC;
    178        1.4   pooka 		eident = *(unsigned char *)(map->l_addr + EI_CLASS);
    179        1.4   pooka 		if (eident != ELFCLASS32 && eident != ELFCLASS64)
    180        1.4   pooka 			return ENOEXEC;
    181        1.4   pooka 	}
    182        1.1   pooka 
    183        1.4   pooka 	/*
    184        1.4   pooka 	 * ok, we probably have only the main object.  instead of going
    185        1.4   pooka 	 * to disk and reading the ehdr, just try to guess the size.
    186        1.4   pooka 	 */
    187        1.4   pooka 	if (eident == 0) {
    188        1.4   pooka 		if (/*CONSTCOND*/sizeof(void *) == 4)
    189        1.4   pooka 			eident = ELFCLASS32;
    190        1.4   pooka 		else
    191        1.4   pooka 			eident = ELFCLASS64;
    192        1.1   pooka 	}
    193        1.1   pooka 
    194        1.4   pooka 	/*
    195        1.4   pooka 	 * Find symtab and strtab and their sizes.
    196        1.4   pooka 	 */
    197        1.1   pooka 	str_base = NULL;
    198        1.4   pooka 	curstrsize = 0;
    199        1.4   pooka 	cursymcount = 0;
    200        1.1   pooka 	ed_base = map->l_ld;
    201        1.4   pooka 	DYNn_GETMEMBER(ed_base, 0, d_tag, ed_tag);
    202        1.4   pooka 	for (i = 0; ed_tag != DT_NULL;) {
    203        1.1   pooka 		uintptr_t edptr;
    204        1.1   pooka 		size_t edval;
    205        1.6   njoly 		Elf_Symindx *hashtab;
    206        1.1   pooka 
    207        1.1   pooka 		switch (ed_tag) {
    208        1.1   pooka 		case DT_SYMTAB:
    209        1.1   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_ptr, edptr);
    210        1.8   pooka 			syms_base = adjptr(map, edptr);
    211        1.1   pooka 			break;
    212        1.1   pooka 		case DT_STRTAB:
    213        1.1   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_ptr, edptr);
    214        1.8   pooka 			str_base = adjptr(map, edptr);
    215        1.1   pooka 			break;
    216        1.1   pooka 		case DT_STRSZ:
    217        1.1   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_val, edval);
    218        1.1   pooka 			curstrsize = edval;
    219        1.1   pooka 			break;
    220        1.4   pooka 		case DT_HASH:
    221        1.4   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_ptr, edptr);
    222        1.8   pooka 			hashtab = (Elf_Symindx *)adjptr(map, edptr);
    223        1.6   njoly 			cursymcount = hashtab[1];
    224        1.4   pooka 			break;
    225       1.11   pooka #ifdef DT_GNU_HASH
    226       1.11   pooka 		/*
    227       1.11   pooka 		 * DT_GNU_HASH is a bit more complicated than DT_HASH
    228       1.11   pooka 		 * in this regard since apparently there is no field
    229       1.11   pooka 		 * telling us the total symbol count.  Instead, we look
    230  1.30.16.1  martin 		 * for the last valid hash bucket and add its chain length
    231       1.11   pooka 		 * to the bucket's base index.
    232       1.11   pooka 		 */
    233       1.11   pooka 		case DT_GNU_HASH: {
    234       1.11   pooka 			Elf32_Word nbuck, symndx, maskwords, maxchain = 0;
    235       1.11   pooka 			Elf32_Word *gnuhash, *buckets, *ptr;
    236       1.11   pooka 			int bi;
    237       1.11   pooka 
    238       1.11   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_ptr, edptr);
    239       1.11   pooka 			gnuhash = (Elf32_Word *)adjptr(map, edptr);
    240       1.11   pooka 
    241       1.11   pooka 			nbuck = gnuhash[0];
    242       1.11   pooka 			symndx = gnuhash[1];
    243       1.11   pooka 			maskwords = gnuhash[2];
    244       1.11   pooka 
    245       1.11   pooka 			/*
    246       1.11   pooka 			 * First, find the last valid bucket and grab its index
    247       1.11   pooka 			 */
    248       1.11   pooka 			if (eident == ELFCLASS64)
    249       1.11   pooka 				maskwords *= 2; /* sizeof(*buckets) == 4 */
    250       1.11   pooka 			buckets = gnuhash + 4 + maskwords;
    251       1.11   pooka 			for (bi = nbuck-1; bi >= 0; bi--) {
    252       1.11   pooka 				if (buckets[bi] != 0) {
    253       1.11   pooka 					maxchain = buckets[bi];
    254       1.11   pooka 					break;
    255       1.11   pooka 				}
    256       1.11   pooka 			}
    257       1.11   pooka 			if (maxchain == 0 || maxchain < symndx)
    258       1.11   pooka 				break;
    259       1.11   pooka 
    260       1.11   pooka 			/*
    261       1.11   pooka 			 * Then, traverse the last chain and count symbols.
    262       1.11   pooka 			 */
    263       1.11   pooka 
    264       1.11   pooka 			cursymcount = maxchain;
    265       1.11   pooka 			ptr = buckets + nbuck + (maxchain - symndx);
    266       1.11   pooka 			do {
    267       1.11   pooka 				cursymcount++;
    268       1.11   pooka 			} while ((*ptr++ & 1) == 0);
    269       1.11   pooka 		}
    270       1.11   pooka 			break;
    271       1.11   pooka #endif
    272        1.4   pooka 		case DT_SYMENT:
    273        1.4   pooka 			DYNn_GETMEMBER(ed_base, i, d_un.d_val, edval);
    274        1.4   pooka 			assert(edval == SYM_GETSIZE());
    275        1.4   pooka 			break;
    276        1.1   pooka 		default:
    277        1.1   pooka 			break;
    278        1.1   pooka 		}
    279        1.1   pooka 		i++;
    280        1.1   pooka 		DYNn_GETMEMBER(ed_base, i, d_tag, ed_tag);
    281        1.4   pooka 	}
    282        1.1   pooka 
    283        1.4   pooka 	if (str_base == NULL || syms_base == NULL ||
    284        1.4   pooka 	    curstrsize == 0 || cursymcount == 0) {
    285        1.4   pooka 		fprintf(stderr, "could not find strtab, symtab or their sizes "
    286        1.1   pooka 		    "in %s\n", map->l_name);
    287        1.1   pooka 		return ENOEXEC;
    288        1.1   pooka 	}
    289        1.1   pooka 
    290        1.1   pooka 	/*
    291        1.1   pooka 	 * Make sure we have enough space for the contents of the symbol
    292        1.1   pooka 	 * and string tables we are currently processing.  The total used
    293        1.1   pooka 	 * space will be smaller due to undefined symbols we are not
    294        1.1   pooka 	 * interested in.
    295        1.1   pooka 	 */
    296        1.4   pooka 	symtab = reservespace(symtab, &symtabsize,
    297        1.4   pooka 	    symtaboff, cursymcount * SYM_GETSIZE());
    298        1.1   pooka 	strtab = reservespace(strtab, &strtabsize, strtaboff, curstrsize);
    299        1.1   pooka 	if (symtab == NULL || strtab == NULL) {
    300        1.1   pooka 		fprintf(stderr, "failed to reserve memory");
    301        1.1   pooka 		return ENOMEM;
    302        1.1   pooka 	}
    303        1.1   pooka 
    304        1.1   pooka 	/* iterate over all symbols in current symtab */
    305        1.4   pooka 	for (i = 0; i < cursymcount; i++) {
    306        1.4   pooka 		const char *cursymname;
    307        1.1   pooka 		int shndx, name;
    308        1.1   pooka 		uintptr_t value;
    309        1.1   pooka 		void *csym;
    310        1.1   pooka 
    311        1.1   pooka 		SYMn_GETMEMBER(syms_base, i, st_shndx, shndx);
    312        1.1   pooka 		SYMn_GETMEMBER(syms_base, i, st_value, value);
    313        1.1   pooka 		if (shndx == SHN_UNDEF || value == 0)
    314        1.1   pooka 			continue;
    315        1.1   pooka 
    316        1.1   pooka 		/* get symbol name */
    317        1.1   pooka 		SYMn_GETMEMBER(syms_base, i, st_name, name);
    318        1.1   pooka 		cursymname = name + str_base;
    319        1.4   pooka 
    320        1.4   pooka 		/*
    321        1.4   pooka 		 * Only accept symbols which are decidedly in
    322        1.4   pooka 		 * the rump kernel namespace.
    323        1.4   pooka 		 * XXX: quirks, but they wouldn't matter here
    324        1.4   pooka 		 */
    325        1.4   pooka 		if (strncmp(cursymname, "rump", 4) != 0 &&
    326        1.4   pooka 		    strncmp(cursymname, "RUMP", 4) != 0 &&
    327        1.4   pooka 		    strncmp(cursymname, "__", 2) != 0) {
    328        1.4   pooka 			continue;
    329        1.4   pooka 		}
    330        1.4   pooka 
    331        1.1   pooka 		memcpy(symtab + symtaboff,
    332        1.4   pooka 		    (const uint8_t *)syms_base + i*SYM_GETSIZE(),SYM_GETSIZE());
    333        1.1   pooka 
    334        1.1   pooka 		/*
    335        1.1   pooka 		 * set name to point at new strtab, offset symbol value
    336        1.1   pooka 		 * with lib base address.
    337        1.1   pooka 		 */
    338        1.1   pooka 		csym = symtab + symtaboff;
    339        1.1   pooka 		SYMn_SETMEMBER(csym, 0, st_name, strtaboff);
    340        1.1   pooka 		SYMn_GETMEMBER(csym, 0, st_value, value);
    341        1.1   pooka 		SYMn_SETMEMBER(csym, 0, st_value,(intptr_t)(value+map->l_addr));
    342        1.1   pooka 		symtaboff += SYM_GETSIZE();
    343        1.1   pooka 
    344        1.1   pooka 		strcpy(strtab + strtaboff, cursymname);
    345        1.1   pooka 		strtaboff += strlen(cursymname)+1;
    346        1.1   pooka 	}
    347        1.1   pooka 
    348        1.1   pooka 	return 0;
    349        1.1   pooka }
    350        1.1   pooka 
    351        1.3   pooka static void
    352       1.13   pooka process_object(void *handle,
    353  1.30.16.1  martin 	rump_modinit_fn domodinit, rump_compload_fn docompload,
    354  1.30.16.1  martin 	rump_evcntattach_fn doevcntattach)
    355        1.1   pooka {
    356        1.3   pooka 	const struct modinfo *const *mi_start, *const *mi_end;
    357       1.13   pooka 	struct rump_component *const *rc, *const *rc_end;
    358        1.1   pooka 
    359  1.30.16.1  martin 	struct sysctllog;
    360  1.30.16.1  martin 	typedef void sysctl_setup_func(struct sysctllog **);
    361  1.30.16.1  martin 	sysctl_setup_func *const *sfp, *const *sfp_end;
    362  1.30.16.1  martin 
    363  1.30.16.1  martin 	struct evcnt *const *evp, *const *evp_end;
    364  1.30.16.1  martin 
    365        1.3   pooka 	mi_start = dlsym(handle, "__start_link_set_modules");
    366        1.1   pooka 	mi_end = dlsym(handle, "__stop_link_set_modules");
    367       1.13   pooka 	if (mi_start && mi_end)
    368       1.13   pooka 		domodinit(mi_start, (size_t)(mi_end-mi_start));
    369        1.1   pooka 
    370       1.13   pooka 	rc = dlsym(handle, "__start_link_set_rump_components");
    371       1.13   pooka 	rc_end = dlsym(handle, "__stop_link_set_rump_components");
    372       1.13   pooka 	if (rc && rc_end) {
    373       1.13   pooka 		for (; rc < rc_end; rc++)
    374       1.13   pooka 			docompload(*rc);
    375       1.13   pooka 		assert(rc == rc_end);
    376       1.13   pooka 	}
    377  1.30.16.1  martin 
    378  1.30.16.1  martin 	/* handle link_set_sysctl_funcs */
    379  1.30.16.1  martin 	sfp = dlsym(handle, "__start_link_set_sysctl_funcs");
    380  1.30.16.1  martin 	sfp_end = dlsym(handle, "__stop_link_set_sysctl_funcs");
    381  1.30.16.1  martin 	if (sfp && sfp_end) {
    382  1.30.16.1  martin 		for (; sfp < sfp_end; sfp++)
    383  1.30.16.1  martin 			(**sfp)(NULL);
    384  1.30.16.1  martin 		assert(sfp == sfp_end);
    385  1.30.16.1  martin 	}
    386  1.30.16.1  martin 
    387  1.30.16.1  martin 	/* handle link_set_evcnts */
    388  1.30.16.1  martin 	evp = dlsym(handle, "__start_link_set_evcnts");
    389  1.30.16.1  martin 	evp_end = dlsym(handle, "__stop_link_set_evcnts");
    390  1.30.16.1  martin 	if (evp && evp_end) {
    391  1.30.16.1  martin 		for (; evp < evp_end; evp++)
    392  1.30.16.1  martin 			doevcntattach(*evp);
    393  1.30.16.1  martin 		assert(evp == evp_end);
    394  1.30.16.1  martin 	}
    395        1.1   pooka }
    396        1.1   pooka 
    397        1.1   pooka /*
    398        1.1   pooka  * Get the linkmap from the dynlinker.  Try to load kernel modules
    399        1.1   pooka  * from all objects in the linkmap.
    400        1.1   pooka  */
    401        1.1   pooka void
    402        1.1   pooka rumpuser_dl_bootstrap(rump_modinit_fn domodinit,
    403  1.30.16.1  martin 	rump_symload_fn symload, rump_compload_fn compload,
    404  1.30.16.1  martin 	rump_evcntattach_fn doevcntattach)
    405        1.1   pooka {
    406       1.13   pooka 	struct link_map *map, *origmap, *mainmap;
    407       1.13   pooka 	void *mainhandle;
    408        1.1   pooka 	int error;
    409        1.1   pooka 
    410        1.8   pooka 	mainhandle = dlopen(NULL, RTLD_NOW);
    411       1.27  justin 	/* Will be null if statically linked so just return */
    412       1.27  justin 	if (mainhandle == NULL)
    413       1.27  justin 		return;
    414       1.13   pooka 	if (dlinfo(mainhandle, RTLD_DI_LINKMAP, &mainmap) == -1) {
    415        1.1   pooka 		fprintf(stderr, "warning: rumpuser module bootstrap "
    416        1.1   pooka 		    "failed: %s\n", dlerror());
    417        1.1   pooka 		return;
    418        1.1   pooka 	}
    419       1.13   pooka 	origmap = mainmap;
    420       1.13   pooka 
    421        1.1   pooka 	/*
    422       1.26   pooka 	 * Use a heuristic to determine if we are static linked.
    423       1.26   pooka 	 * A dynamically linked binary should always have at least
    424       1.26   pooka 	 * two objects: itself and ld.so.
    425       1.26   pooka 	 *
    426       1.26   pooka 	 * In a statically linked binary with glibc the linkmap
    427       1.26   pooka 	 * contains some "info" that leads to a segfault.  Since we
    428       1.26   pooka 	 * can't really do anything useful in here without ld.so, just
    429       1.26   pooka 	 * simply bail and let the symbol references in librump do the
    430       1.26   pooka 	 * right things.
    431       1.26   pooka 	 */
    432       1.26   pooka 	if (origmap->l_next == NULL && origmap->l_prev == NULL) {
    433       1.26   pooka 		dlclose(mainhandle);
    434       1.26   pooka 		return;
    435       1.26   pooka 	}
    436       1.26   pooka 
    437       1.26   pooka 	/*
    438        1.1   pooka 	 * Process last->first because that's the most probable
    439        1.1   pooka 	 * order for dependencies
    440        1.1   pooka 	 */
    441        1.1   pooka 	for (; origmap->l_next; origmap = origmap->l_next)
    442        1.1   pooka 		continue;
    443        1.1   pooka 
    444        1.1   pooka 	/*
    445        1.1   pooka 	 * Build symbol table to hand to the rump kernel.  Do this by
    446        1.1   pooka 	 * iterating over all rump libraries and collecting symbol
    447        1.1   pooka 	 * addresses and relocation info.
    448        1.1   pooka 	 */
    449        1.1   pooka 	error = 0;
    450        1.1   pooka 	for (map = origmap; map && !error; map = map->l_prev) {
    451       1.13   pooka 		if (strstr(map->l_name, "librump") != NULL || map == mainmap)
    452       1.14   pooka 			error = getsymbols(map, map == mainmap);
    453        1.1   pooka 	}
    454        1.1   pooka 
    455        1.1   pooka 	if (error == 0) {
    456        1.1   pooka 		void *trimmedsym, *trimmedstr;
    457        1.1   pooka 
    458        1.1   pooka 		/*
    459        1.1   pooka 		 * Allocate optimum-sized memory for storing tables
    460        1.1   pooka 		 * and feed to kernel.  If memory allocation fails,
    461        1.1   pooka 		 * just give the ones with extra context (although
    462        1.1   pooka 		 * I'm pretty sure we'll die moments later due to
    463        1.1   pooka 		 * memory running out).
    464        1.1   pooka 		 */
    465        1.1   pooka 		if ((trimmedsym = malloc(symtaboff)) != NULL) {
    466        1.1   pooka 			memcpy(trimmedsym, symtab, symtaboff);
    467        1.1   pooka 		} else {
    468        1.1   pooka 			trimmedsym = symtab;
    469        1.1   pooka 			symtab = NULL;
    470        1.1   pooka 		}
    471        1.1   pooka 		if ((trimmedstr = malloc(strtaboff)) != NULL) {
    472        1.1   pooka 			memcpy(trimmedstr, strtab, strtaboff);
    473        1.1   pooka 		} else {
    474        1.1   pooka 			trimmedstr = strtab;
    475        1.1   pooka 			strtab = NULL;
    476        1.1   pooka 		}
    477        1.1   pooka 		symload(trimmedsym, symtaboff, trimmedstr, strtaboff);
    478        1.1   pooka 	}
    479        1.1   pooka 	free(symtab);
    480        1.1   pooka 	free(strtab);
    481        1.1   pooka 
    482        1.1   pooka 	/*
    483       1.13   pooka 	 * Next, load modules and components.
    484       1.13   pooka 	 *
    485       1.13   pooka 	 * Simply loop through all objects, ones unrelated to rump kernels
    486       1.13   pooka 	 * will not contain link_set_rump_components (well, not including
    487       1.13   pooka 	 * "sabotage", but that needs to be solved at another level anyway).
    488        1.1   pooka 	 */
    489       1.13   pooka 	for (map = origmap; map; map = map->l_prev) {
    490       1.13   pooka 		void *handle;
    491        1.2   pooka 
    492       1.13   pooka 		if (map == mainmap) {
    493       1.13   pooka 			handle = mainhandle;
    494       1.13   pooka 		} else {
    495        1.2   pooka 			handle = dlopen(map->l_name, RTLD_LAZY);
    496        1.2   pooka 			if (handle == NULL)
    497        1.2   pooka 				continue;
    498       1.13   pooka 		}
    499  1.30.16.1  martin 		process_object(handle, domodinit, compload, doevcntattach);
    500       1.13   pooka 		if (map != mainmap)
    501        1.2   pooka 			dlclose(handle);
    502        1.2   pooka 	}
    503        1.2   pooka }
    504        1.1   pooka #else
    505       1.12   pooka /*
    506       1.18   pooka  * no dynamic linking supported
    507       1.12   pooka  */
    508        1.2   pooka void
    509       1.13   pooka rumpuser_dl_bootstrap(rump_modinit_fn domodinit,
    510  1.30.16.1  martin 	rump_symload_fn symload, rump_compload_fn compload,
    511  1.30.16.1  martin 	rump_evcntattach_fn doevcntattach)
    512        1.2   pooka {
    513       1.12   pooka 
    514       1.18   pooka 	return;
    515        1.2   pooka }
    516        1.1   pooka #endif
    517