dynlink.c 30.2 KB
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#define _GNU_SOURCE
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <stdint.h>
#include <elf.h>
#include <sys/mman.h>
#include <limits.h>
#include <stdint.h>
#include <fcntl.h>
#include <sys/stat.h>
#include <errno.h>
#include <limits.h>
#include <elf.h>
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#include <setjmp.h>
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#include <pthread.h>
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#include <ctype.h>
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#include <dlfcn.h>
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#include "pthread_impl.h"
#include "libc.h"
#undef libc
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static int errflag;
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static char errbuf[128];
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#ifdef SHARED
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#if ULONG_MAX == 0xffffffff
typedef Elf32_Ehdr Ehdr;
typedef Elf32_Phdr Phdr;
typedef Elf32_Sym Sym;
#define R_TYPE(x) ((x)&255)
#define R_SYM(x) ((x)>>8)
#else
typedef Elf64_Ehdr Ehdr;
typedef Elf64_Phdr Phdr;
typedef Elf64_Sym Sym;
#define R_TYPE(x) ((x)&0xffffffff)
#define R_SYM(x) ((x)>>32)
#endif

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struct debug {
	int ver;
	void *head;
	void (*bp)(void);
	int state;
	void *base;
};

struct dso {
	unsigned char *base;
	char *name;
	size_t *dynv;
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	struct dso *next, *prev;
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	int refcnt;
	Sym *syms;
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	uint32_t *hashtab;
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	uint32_t *ghashtab;
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	char *strings;
	unsigned char *map;
	size_t map_len;
	dev_t dev;
	ino_t ino;
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	signed char global;
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	char relocated;
	char constructed;
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	struct dso **deps;
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	void *tls_image;
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	size_t tls_len, tls_size, tls_align, tls_id, tls_offset;
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	void **new_dtv;
	unsigned char *new_tls;
	int new_dtv_idx, new_tls_idx;
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	struct dso *fini_next;
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	char *shortname;
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	char buf[];
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};

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struct symdef {
	Sym *sym;
	struct dso *dso;
};

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#include "reloc.h"

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void __init_ssp(size_t *);
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void *__install_initial_tls(void *);
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static struct dso *head, *tail, *libc, *fini_head;
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static char *env_path, *sys_path, *r_path;
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static int ssp_used;
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static int runtime;
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static int ldd_mode;
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static int ldso_fail;
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static jmp_buf rtld_fail;
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static pthread_rwlock_t lock;
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static struct debug debug;
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static size_t *auxv;
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static size_t tls_cnt, tls_size;
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static pthread_mutex_t init_fini_lock = { ._m_type = PTHREAD_MUTEX_RECURSIVE };
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struct debug *_dl_debug_addr = &debug;
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#define AUX_CNT 24
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#define DYN_CNT 34

static void decode_vec(size_t *v, size_t *a, size_t cnt)
{
	memset(a, 0, cnt*sizeof(size_t));
	for (; v[0]; v+=2) if (v[0]<cnt) {
		a[0] |= 1ULL<<v[0];
		a[v[0]] = v[1];
	}
}

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static int search_vec(size_t *v, size_t *r, size_t key)
{
	for (; v[0]!=key; v+=2)
		if (!v[0]) return 0;
	*r = v[1];
	return 1;
}

static uint32_t sysv_hash(const char *s0)
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{
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	const unsigned char *s = (void *)s0;
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	uint_fast32_t h = 0;
	while (*s) {
		h = 16*h + *s++;
		h ^= h>>24 & 0xf0;
	}
	return h & 0xfffffff;
}

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static uint32_t gnu_hash(const char *s0)
{
	const unsigned char *s = (void *)s0;
	uint_fast32_t h = 5381;
	for (; *s; s++)
		h = h*33 + *s;
	return h;
}

static Sym *sysv_lookup(const char *s, uint32_t h, struct dso *dso)
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{
	size_t i;
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	Sym *syms = dso->syms;
	uint32_t *hashtab = dso->hashtab;
	char *strings = dso->strings;
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	for (i=hashtab[2+h%hashtab[0]]; i; i=hashtab[2+hashtab[0]+i]) {
		if (!strcmp(s, strings+syms[i].st_name))
			return syms+i;
	}
	return 0;
}

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static Sym *gnu_lookup(const char *s, uint32_t h1, struct dso *dso)
{
	Sym *sym;
	char *strings;
	uint32_t *hashtab = dso->ghashtab;
	uint32_t nbuckets = hashtab[0];
	uint32_t *buckets = hashtab + 4 + hashtab[2]*(sizeof(size_t)/4);
	uint32_t h2;
	uint32_t *hashval;
	uint32_t n = buckets[h1 % nbuckets];

	if (!n) return 0;

	strings = dso->strings;
	sym = dso->syms + n;
	hashval = buckets + nbuckets + (n - hashtab[1]);

	for (h1 |= 1; ; sym++) {
		h2 = *hashval++;
		if ((h1 == (h2|1)) && !strcmp(s, strings + sym->st_name))
			return sym;
		if (h2 & 1) break;
	}

	return 0;
}

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#define OK_TYPES (1<<STT_NOTYPE | 1<<STT_OBJECT | 1<<STT_FUNC | 1<<STT_COMMON | 1<<STT_TLS)
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#define OK_BINDS (1<<STB_GLOBAL | 1<<STB_WEAK)
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static struct symdef find_sym(struct dso *dso, const char *s, int need_def)
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{
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	uint32_t h = 0, gh = 0;
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	struct symdef def = {0};
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	if (dso->ghashtab) {
		gh = gnu_hash(s);
		if (gh == 0x1f4039c9 && !strcmp(s, "__stack_chk_fail")) ssp_used = 1;
	} else {
		h = sysv_hash(s);
		if (h == 0x595a4cc && !strcmp(s, "__stack_chk_fail")) ssp_used = 1;
	}
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	for (; dso; dso=dso->next) {
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		Sym *sym;
		if (!dso->global) continue;
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		if (dso->ghashtab) {
			if (!gh) gh = gnu_hash(s);
			sym = gnu_lookup(s, gh, dso);
		} else {
			if (!h) h = sysv_hash(s);
			sym = sysv_lookup(s, h, dso);
		}
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		if (sym && (!need_def || sym->st_shndx) && sym->st_value
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		 && (1<<(sym->st_info&0xf) & OK_TYPES)
		 && (1<<(sym->st_info>>4) & OK_BINDS)) {
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			if (def.sym && sym->st_info>>4 == STB_WEAK) continue;
			def.sym = sym;
			def.dso = dso;
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			if (sym->st_info>>4 == STB_GLOBAL) break;
		}
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	}
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	return def;
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}

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static void do_relocs(struct dso *dso, size_t *rel, size_t rel_size, size_t stride)
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{
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	unsigned char *base = dso->base;
	Sym *syms = dso->syms;
	char *strings = dso->strings;
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	Sym *sym;
	const char *name;
	void *ctx;
	int type;
	int sym_index;
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	struct symdef def;
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	for (; rel_size; rel+=stride, rel_size-=stride*sizeof(size_t)) {
		type = R_TYPE(rel[1]);
		sym_index = R_SYM(rel[1]);
		if (sym_index) {
			sym = syms + sym_index;
			name = strings + sym->st_name;
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			ctx = IS_COPY(type) ? head->next : head;
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			def = find_sym(ctx, name, IS_PLT(type));
			if (!def.sym && sym->st_info>>4 != STB_WEAK) {
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				snprintf(errbuf, sizeof errbuf,
					"Error relocating %s: %s: symbol not found",
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					dso->name, name);
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				if (runtime) longjmp(rtld_fail, 1);
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				dprintf(2, "%s\n", errbuf);
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				ldso_fail = 1;
				continue;
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			}
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		} else {
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			sym = 0;
			def.sym = 0;
			def.dso = 0;
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		}
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		do_single_reloc(dso, base, (void *)(base + rel[0]), type,
			stride>2 ? rel[2] : 0, sym, sym?sym->st_size:0, def,
			def.sym?(size_t)(def.dso->base+def.sym->st_value):0);
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	}
}

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/* A huge hack: to make up for the wastefulness of shared libraries
 * needing at least a page of dirty memory even if they have no global
 * data, we reclaim the gaps at the beginning and end of writable maps
 * and "donate" them to the heap by setting up minimal malloc
 * structures and then freeing them. */

static void reclaim(unsigned char *base, size_t start, size_t end)
{
	size_t *a, *z;
	start = start + 6*sizeof(size_t)-1 & -4*sizeof(size_t);
	end = (end & -4*sizeof(size_t)) - 2*sizeof(size_t);
	if (start>end || end-start < 4*sizeof(size_t)) return;
	a = (size_t *)(base + start);
	z = (size_t *)(base + end);
	a[-2] = 1;
	a[-1] = z[0] = end-start + 2*sizeof(size_t) | 1;
	z[1] = 1;
	free(a);
}

static void reclaim_gaps(unsigned char *base, Phdr *ph, size_t phent, size_t phcnt)
{
	for (; phcnt--; ph=(void *)((char *)ph+phent)) {
		if (ph->p_type!=PT_LOAD) continue;
		if ((ph->p_flags&(PF_R|PF_W))!=(PF_R|PF_W)) continue;
		reclaim(base, ph->p_vaddr & -PAGE_SIZE, ph->p_vaddr);
		reclaim(base, ph->p_vaddr+ph->p_memsz,
			ph->p_vaddr+ph->p_memsz+PAGE_SIZE-1 & -PAGE_SIZE);
	}
}

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static void *map_library(int fd, struct dso *dso)
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{
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	Ehdr buf[(896+sizeof(Ehdr))/sizeof(Ehdr)];
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	size_t phsize;
	size_t addr_min=SIZE_MAX, addr_max=0, map_len;
	size_t this_min, this_max;
	off_t off_start;
	Ehdr *eh;
	Phdr *ph;
	unsigned prot;
	unsigned char *map, *base;
	size_t dyn;
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	size_t tls_image=0;
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	size_t i;

	ssize_t l = read(fd, buf, sizeof buf);
	if (l<sizeof *eh) return 0;
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	eh = buf;
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	phsize = eh->e_phentsize * eh->e_phnum;
	if (phsize + sizeof *eh > l) return 0;
	if (eh->e_phoff + phsize > l) {
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		l = pread(fd, buf+1, phsize, eh->e_phoff);
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		if (l != phsize) return 0;
		eh->e_phoff = sizeof *eh;
	}
	ph = (void *)((char *)buf + eh->e_phoff);
	for (i=eh->e_phnum; i; i--, ph=(void *)((char *)ph+eh->e_phentsize)) {
		if (ph->p_type == PT_DYNAMIC)
			dyn = ph->p_vaddr;
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		if (ph->p_type == PT_TLS) {
			tls_image = ph->p_vaddr;
			dso->tls_align = ph->p_align;
			dso->tls_len = ph->p_filesz;
			dso->tls_size = ph->p_memsz;
		}
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		if (ph->p_type != PT_LOAD) continue;
		if (ph->p_vaddr < addr_min) {
			addr_min = ph->p_vaddr;
			off_start = ph->p_offset;
			prot = (((ph->p_flags&PF_R) ? PROT_READ : 0) |
				((ph->p_flags&PF_W) ? PROT_WRITE: 0) |
				((ph->p_flags&PF_X) ? PROT_EXEC : 0));
		}
		if (ph->p_vaddr+ph->p_memsz > addr_max) {
			addr_max = ph->p_vaddr+ph->p_memsz;
		}
	}
	if (!dyn) return 0;
	addr_max += PAGE_SIZE-1;
	addr_max &= -PAGE_SIZE;
	addr_min &= -PAGE_SIZE;
	off_start &= -PAGE_SIZE;
	map_len = addr_max - addr_min + off_start;
	/* The first time, we map too much, possibly even more than
	 * the length of the file. This is okay because we will not
	 * use the invalid part; we just need to reserve the right
	 * amount of virtual address space to map over later. */
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	map = mmap((void *)addr_min, map_len, prot, MAP_PRIVATE, fd, off_start);
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	if (map==MAP_FAILED) return 0;
	base = map - addr_min;
	ph = (void *)((char *)buf + eh->e_phoff);
	for (i=eh->e_phnum; i; i--, ph=(void *)((char *)ph+eh->e_phentsize)) {
		if (ph->p_type != PT_LOAD) continue;
		/* Reuse the existing mapping for the lowest-address LOAD */
		if ((ph->p_vaddr & -PAGE_SIZE) == addr_min) continue;
		this_min = ph->p_vaddr & -PAGE_SIZE;
		this_max = ph->p_vaddr+ph->p_memsz+PAGE_SIZE-1 & -PAGE_SIZE;
		off_start = ph->p_offset & -PAGE_SIZE;
		prot = (((ph->p_flags&PF_R) ? PROT_READ : 0) |
			((ph->p_flags&PF_W) ? PROT_WRITE: 0) |
			((ph->p_flags&PF_X) ? PROT_EXEC : 0));
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		if (mmap(base+this_min, this_max-this_min, prot, MAP_PRIVATE|MAP_FIXED, fd, off_start) == MAP_FAILED)
			goto error;
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		if (ph->p_memsz > ph->p_filesz) {
			size_t brk = (size_t)base+ph->p_vaddr+ph->p_filesz;
			size_t pgbrk = brk+PAGE_SIZE-1 & -PAGE_SIZE;
			memset((void *)brk, 0, pgbrk-brk & PAGE_SIZE-1);
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			if (pgbrk-(size_t)base < this_max && mmap((void *)pgbrk, (size_t)base+this_max-pgbrk, prot, MAP_PRIVATE|MAP_FIXED|MAP_ANONYMOUS, -1, 0) == MAP_FAILED)
				goto error;
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		}
	}
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	for (i=0; ((size_t *)(base+dyn))[i]; i+=2)
		if (((size_t *)(base+dyn))[i]==DT_TEXTREL) {
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			if (mprotect(map, map_len, PROT_READ|PROT_WRITE|PROT_EXEC) < 0)
				goto error;
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			break;
		}
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	if (!runtime) reclaim_gaps(base, (void *)((char *)buf + eh->e_phoff),
		eh->e_phentsize, eh->e_phnum);
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	dso->map = map;
	dso->map_len = map_len;
	dso->base = base;
	dso->dynv = (void *)(base+dyn);
	if (dso->tls_size) dso->tls_image = (void *)(base+tls_image);
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	return map;
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error:
	munmap(map, map_len);
	return 0;
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}

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static int path_open(const char *name, const char *search, char *buf, size_t buf_size)
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{
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	const char *s=search, *z;
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	int l, fd;
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	for (;;) {
		while (*s==':') s++;
		if (!*s) return -1;
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		z = strchr(s, ':');
		l = z ? z-s : strlen(s);
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		snprintf(buf, buf_size, "%.*s/%s", l, s, name);
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		if ((fd = open(buf, O_RDONLY|O_CLOEXEC))>=0) return fd;
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		s += l;
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	}
}

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static void decode_dyn(struct dso *p)
{
	size_t dyn[DYN_CNT] = {0};
	decode_vec(p->dynv, dyn, DYN_CNT);
	p->syms = (void *)(p->base + dyn[DT_SYMTAB]);
	p->strings = (void *)(p->base + dyn[DT_STRTAB]);
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	if (dyn[0]&(1<<DT_HASH))
		p->hashtab = (void *)(p->base + dyn[DT_HASH]);
	if (search_vec(p->dynv, dyn, DT_GNU_HASH))
		p->ghashtab = (void *)(p->base + *dyn);
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}

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static struct dso *load_library(const char *name)
{
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	char buf[2*NAME_MAX+2];
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	const char *pathname;
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	unsigned char *base, *map;
	size_t dyno, map_len;
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	struct dso *p, temp_dso = {0};
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	int fd;
	struct stat st;
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	size_t alloc_size;
	int n_th = 0;
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	/* Catch and block attempts to reload the implementation itself */
	if (name[0]=='l' && name[1]=='i' && name[2]=='b') {
		static const char *rp, reserved[] =
			"c\0pthread\0rt\0m\0dl\0util\0xnet\0";
		char *z = strchr(name, '.');
		if (z) {
			size_t l = z-name;
			for (rp=reserved; *rp && memcmp(name+3, rp, l-3); rp+=strlen(rp)+1);
			if (*rp) {
				if (!libc->prev) {
					tail->next = libc;
					libc->prev = tail;
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					tail = libc->next ? libc->next : libc;
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				}
				return libc;
			}
		}
	}
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	if (strchr(name, '/')) {
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		pathname = name;
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		fd = open(name, O_RDONLY|O_CLOEXEC);
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	} else {
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		/* Search for the name to see if it's already loaded */
		for (p=head->next; p; p=p->next) {
			if (p->shortname && !strcmp(p->shortname, name)) {
				p->refcnt++;
				return p;
			}
		}
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		if (strlen(name) > NAME_MAX) return 0;
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		fd = -1;
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		if (r_path) fd = path_open(name, r_path, buf, sizeof buf);
		if (fd < 0 && env_path) fd = path_open(name, env_path, buf, sizeof buf);
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		if (fd < 0) {
			if (!sys_path) {
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				FILE *f = fopen(ETC_LDSO_PATH, "rbe");
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				if (f) {
					if (getline(&sys_path, (size_t[1]){0}, f) > 0)
						sys_path[strlen(sys_path)-1]=0;
					fclose(f);
				}
			}
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			if (sys_path) fd = path_open(name, sys_path, buf, sizeof buf);
			else fd = path_open(name, "/lib:/usr/local/lib:/usr/lib", buf, sizeof buf);
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		}
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		pathname = buf;
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	}
	if (fd < 0) return 0;
	if (fstat(fd, &st) < 0) {
		close(fd);
		return 0;
	}
	for (p=head->next; p; p=p->next) {
		if (p->dev == st.st_dev && p->ino == st.st_ino) {
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			/* If this library was previously loaded with a
			 * pathname but a search found the same inode,
			 * setup its shortname so it can be found by name. */
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			if (!p->shortname && pathname != name)
				p->shortname = strrchr(p->name, '/')+1;
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			close(fd);
			p->refcnt++;
			return p;
		}
	}
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	map = map_library(fd, &temp_dso);
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	close(fd);
	if (!map) return 0;
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	/* Allocate storage for the new DSO. When there is TLS, this
	 * storage must include a reservation for all pre-existing
	 * threads to obtain copies of both the new TLS, and an
	 * extended DTV capable of storing an additional slot for
	 * the newly-loaded DSO. */
	alloc_size = sizeof *p + strlen(pathname) + 1;
	if (runtime && temp_dso.tls_image) {
		size_t per_th = temp_dso.tls_size + temp_dso.tls_align
			+ sizeof(void *) * (tls_cnt+3);
		n_th = __libc.threads_minus_1 + 1;
		if (n_th > SSIZE_MAX / per_th) alloc_size = SIZE_MAX;
		else alloc_size += n_th * per_th;
	}
	p = calloc(1, alloc_size);
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	if (!p) {
		munmap(map, map_len);
		return 0;
	}
517
	memcpy(p, &temp_dso, sizeof temp_dso);
518
	decode_dyn(p);
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	p->dev = st.st_dev;
	p->ino = st.st_ino;
	p->refcnt = 1;
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	p->name = p->buf;
523 524 525
	strcpy(p->name, pathname);
	/* Add a shortname only if name arg was not an explicit pathname. */
	if (pathname != name) p->shortname = strrchr(p->name, '/')+1;
526 527 528 529 530 531 532 533
	if (p->tls_image) {
		p->tls_id = ++tls_cnt;
		tls_size += p->tls_size + p->tls_align + 8*sizeof(size_t) - 1
			& -4*sizeof(size_t);
		p->new_dtv = (void *)(-sizeof(size_t) &
			(uintptr_t)(p->name+strlen(p->name)+sizeof(size_t)));
		p->new_tls = (void *)(p->new_dtv + n_th*(tls_cnt+1));
	}
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	tail->next = p;
	p->prev = tail;
	tail = p;

539
	if (ldd_mode) dprintf(1, "\t%s => %s (%p)\n", name, pathname, base);
540

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	return p;
}

static void load_deps(struct dso *p)
{
546 547
	size_t i, ndeps=0;
	struct dso ***deps = &p->deps, **tmp, *dep;
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	for (; p; p=p->next) {
549 550 551 552
		for (i=0; p->dynv[i]; i+=2) {
			if (p->dynv[i] != DT_RPATH) continue;
			r_path = (void *)(p->strings + p->dynv[i+1]);
		}
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		for (i=0; p->dynv[i]; i+=2) {
			if (p->dynv[i] != DT_NEEDED) continue;
555 556
			dep = load_library(p->strings + p->dynv[i+1]);
			if (!dep) {
557 558
				snprintf(errbuf, sizeof errbuf,
					"Error loading shared library %s: %m (needed by %s)",
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					p->strings + p->dynv[i+1], p->name);
560 561
				if (runtime) longjmp(rtld_fail, 1);
				dprintf(2, "%s\n", errbuf);
562 563
				ldso_fail = 1;
				continue;
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			}
565 566 567 568 569 570 571
			if (runtime) {
				tmp = realloc(*deps, sizeof(*tmp)*(ndeps+2));
				if (!tmp) longjmp(rtld_fail, 1);
				tmp[ndeps++] = dep;
				tmp[ndeps] = 0;
				*deps = tmp;
			}
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		}
573
		r_path = 0;
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	}
}

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577 578 579 580 581 582 583 584 585 586 587 588 589 590
static void load_preload(char *s)
{
	int tmp;
	char *z;
	for (z=s; *z; s=z) {
		for (   ; *s && isspace(*s); s++);
		for (z=s; *z && !isspace(*z); z++);
		tmp = *z;
		*z = 0;
		load_library(s);
		*z = tmp;
	}
}

591 592 593 594 595
static void make_global(struct dso *p)
{
	for (; p; p=p->next) p->global = 1;
}

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static void reloc_all(struct dso *p)
{
	size_t dyn[DYN_CNT] = {0};
	for (; p; p=p->next) {
		if (p->relocated) continue;
		decode_vec(p->dynv, dyn, DYN_CNT);
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#ifdef NEED_ARCH_RELOCS
		do_arch_relocs(p, head);
#endif
605 606 607 608
		do_relocs(p, (void *)(p->base+dyn[DT_JMPREL]), dyn[DT_PLTRELSZ],
			2+(dyn[DT_PLTREL]==DT_RELA));
		do_relocs(p, (void *)(p->base+dyn[DT_REL]), dyn[DT_RELSZ], 2);
		do_relocs(p, (void *)(p->base+dyn[DT_RELA]), dyn[DT_RELASZ], 3);
609
		p->relocated = 1;
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	}
}

613 614 615 616 617
static void free_all(struct dso *p)
{
	struct dso *n;
	while (p) {
		n = p->next;
618
		if (p->map && p!=libc && p!=head) free(p);
619 620 621 622
		p = n;
	}
}

623 624 625 626 627 628 629 630
static size_t find_dyn(Phdr *ph, size_t cnt, size_t stride)
{
	for (; cnt--; ph = (void *)((char *)ph + stride))
		if (ph->p_type == PT_DYNAMIC)
			return ph->p_vaddr;
	return 0;
}

631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646
static void find_map_range(Phdr *ph, size_t cnt, size_t stride, struct dso *p)
{
	size_t min_addr = -1, max_addr = 0;
	for (; cnt--; ph = (void *)((char *)ph + stride)) {
		if (ph->p_type != PT_LOAD) continue;
		if (ph->p_vaddr < min_addr)
			min_addr = ph->p_vaddr;
		if (ph->p_vaddr+ph->p_memsz > max_addr)
			max_addr = ph->p_vaddr+ph->p_memsz;
	}
	min_addr &= -PAGE_SIZE;
	max_addr = (max_addr + PAGE_SIZE-1) & -PAGE_SIZE;
	p->map = p->base + min_addr;
	p->map_len = max_addr - min_addr;
}

647 648 649 650 651 652 653 654 655 656 657
static void do_fini()
{
	struct dso *p;
	size_t dyn[DYN_CNT] = {0};
	for (p=fini_head; p; p=p->fini_next) {
		if (!p->constructed) continue;
		decode_vec(p->dynv, dyn, DYN_CNT);
		((void (*)(void))(p->base + dyn[DT_FINI]))();
	}
}

658 659 660
static void do_init_fini(struct dso *p)
{
	size_t dyn[DYN_CNT] = {0};
661 662 663 664 665
	int need_locking = __libc.threads_minus_1;
	/* Allow recursive calls that arise when a library calls
	 * dlopen from one of its constructors, but block any
	 * other threads until all ctors have finished. */
	if (need_locking) pthread_mutex_lock(&init_fini_lock);
666
	for (; p; p=p->prev) {
667 668
		if (p->constructed) continue;
		p->constructed = 1;
669
		decode_vec(p->dynv, dyn, DYN_CNT);
670 671 672 673
		if (dyn[0] & (1<<DT_FINI)) {
			p->fini_next = fini_head;
			fini_head = p;
		}
674 675 676
		if (dyn[0] & (1<<DT_INIT))
			((void (*)(void))(p->base + dyn[DT_INIT]))();
	}
677
	if (need_locking) pthread_mutex_unlock(&init_fini_lock);
678 679
}

680 681 682 683
void _dl_debug_state(void)
{
}

684
void *__copy_tls(unsigned char *mem)
685 686 687
{
	struct dso *p;
	void **dtv = (void *)mem;
688 689
	dtv[0] = (void *)tls_cnt;
	mem = (void *)(dtv + tls_cnt + 1);
690
	for (p=tail; p; p=p->prev) {
691
		if (!p->tls_id) continue;
692 693 694 695 696 697 698 699 700 701 702
		mem += -p->tls_len & (4*sizeof(size_t)-1);
		mem += ((uintptr_t)p->tls_image - (uintptr_t)mem)
			& (p->tls_align-1);
		dtv[p->tls_id] = mem;
		memcpy(mem, p->tls_image, p->tls_len);
		mem += p->tls_size;
	}
	((pthread_t)mem)->dtv = dtv;
	return mem;
}

703
void *__tls_get_addr(size_t *v)
704 705
{
	pthread_t self = __pthread_self();
706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732
	if (self->dtv && v[0]<=(size_t)self->dtv[0] && self->dtv[v[0]])
		return (char *)self->dtv[v[0]]+v[1];

	/* Block signals to make accessing new TLS async-signal-safe */
	sigset_t set;
	sigfillset(&set);
	pthread_sigmask(SIG_BLOCK, &set, &set);
	if (self->dtv && v[0]<=(size_t)self->dtv[0] && self->dtv[v[0]]) {
		pthread_sigmask(SIG_SETMASK, &set, 0);
		return (char *)self->dtv[v[0]]+v[1];
	}

	/* This is safe without any locks held because, if the caller
	 * is able to request the Nth entry of the DTV, the DSO list
	 * must be valid at least that far out and it was synchronized
	 * at program startup or by an already-completed call to dlopen. */
	struct dso *p;
	for (p=head; p->tls_id != v[0]; p=p->next);

	/* Get new DTV space from new DSO if needed */
	if (!self->dtv || v[0] > (size_t)self->dtv[0]) {
		void **newdtv = p->new_dtv +
			(v[0]+1)*sizeof(void *)*a_fetch_add(&p->new_dtv_idx,1);
		if (self->dtv) memcpy(newdtv, self->dtv,
			((size_t)self->dtv[0]+1) * sizeof(void *));
		newdtv[0] = (void *)v[0];
		self->dtv = newdtv;
733
	}
734 735 736 737 738 739 740 741 742

	/* Get new TLS memory from new DSO */
	unsigned char *mem = p->new_tls +
		(p->tls_size + p->tls_align) * a_fetch_add(&p->new_tls_idx,1);
	mem += ((uintptr_t)p->tls_image - (uintptr_t)mem) & (p->tls_align-1);
	self->dtv[v[0]] = mem;
	memcpy(mem, p->tls_image, p->tls_size);
	pthread_sigmask(SIG_SETMASK, &set, 0);
	return mem + v[1];
743 744
}

745
void *__dynlink(int argc, char **argv)
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{
747
	size_t aux[AUX_CNT] = {0};
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748 749
	size_t i;
	Phdr *phdr;
750
	Ehdr *ehdr;
751
	static struct dso builtin_dsos[3];
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752 753
	struct dso *const app = builtin_dsos+0;
	struct dso *const lib = builtin_dsos+1;
754
	struct dso *const vdso = builtin_dsos+2;
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	char *env_preload=0;
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756
	size_t vdso_base;
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757 758

	/* Find aux vector just past environ[] */
759 760 761
	for (i=argc+1; argv[i]; i++)
		if (!memcmp(argv[i], "LD_LIBRARY_PATH=", 16))
			env_path = argv[i]+16;
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		else if (!memcmp(argv[i], "LD_PRELOAD=", 11))
			env_preload = argv[i]+11;
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	auxv = (void *)(argv+i+1);

	decode_vec(auxv, aux, AUX_CNT);

768 769
	/* Only trust user/env if kernel says we're not suid/sgid */
	if ((aux[0]&0x7800)!=0x7800 || aux[AT_UID]!=aux[AT_EUID]
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	  || aux[AT_GID]!=aux[AT_EGID] || aux[AT_SECURE]) {
771
		env_path = 0;
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		env_preload = 0;
773 774
	}

775 776 777 778 779 780 781 782 783
	/* If the dynamic linker was invoked as a program itself, AT_BASE
	 * will not be set. In that case, we assume the base address is
	 * the start of the page containing the PHDRs; I don't know any
	 * better approach... */
	if (!aux[AT_BASE]) {
		aux[AT_BASE] = aux[AT_PHDR] & -PAGE_SIZE;
		aux[AT_PHDR] = aux[AT_PHENT] = aux[AT_PHNUM] = 0;
	}

784 785 786
	/* The dynamic linker load address is passed by the kernel
	 * in the AUX vector, so this is easy. */
	lib->base = (void *)aux[AT_BASE];
787
	lib->name = lib->shortname = "libc.so";
788 789
	lib->global = 1;
	ehdr = (void *)lib->base;
790 791
	find_map_range((void *)(aux[AT_BASE]+ehdr->e_phoff),
		ehdr->e_phnum, ehdr->e_phentsize, lib);
792 793 794 795 796
	lib->dynv = (void *)(lib->base + find_dyn(
		(void *)(aux[AT_BASE]+ehdr->e_phoff),
		ehdr->e_phnum, ehdr->e_phentsize));
	decode_dyn(lib);

797
	if (aux[AT_PHDR]) {
798
		size_t interp_off = 0;
799
		size_t tls_image = 0;
800 801 802 803 804
		/* Find load address of the main program, via AT_PHDR vs PT_PHDR. */
		phdr = (void *)aux[AT_PHDR];
		for (i=aux[AT_PHNUM]; i; i--, phdr=(void *)((char *)phdr + aux[AT_PHENT])) {
			if (phdr->p_type == PT_PHDR)
				app->base = (void *)(aux[AT_PHDR] - phdr->p_vaddr);
805 806
			else if (phdr->p_type == PT_INTERP)
				interp_off = (size_t)phdr->p_vaddr;
807 808 809 810 811 812
			else if (phdr->p_type == PT_TLS) {
				tls_image = phdr->p_vaddr;
				app->tls_len = phdr->p_filesz;
				app->tls_size = phdr->p_memsz;
				app->tls_align = phdr->p_align;
			}
813
		}
814
		if (app->tls_size) app->tls_image = (char *)app->base + tls_image;
815
		if (interp_off) lib->name = (char *)app->base + interp_off;
816
		app->name = argv[0];
817 818
		app->dynv = (void *)(app->base + find_dyn(
			(void *)aux[AT_PHDR], aux[AT_PHNUM], aux[AT_PHENT]));
819 820
		find_map_range((void *)aux[AT_PHDR],
			aux[AT_PHNUM], aux[AT_PHENT], app);
821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839
	} else {
		int fd;
		char *ldname = argv[0];
		size_t dyno, l = strlen(ldname);
		if (l >= 3 && !strcmp(ldname+l-3, "ldd")) ldd_mode = 1;
		*argv++ = (void *)-1;
		if (argv[0] && !strcmp(argv[0], "--")) *argv++ = (void *)-1;
		if (!argv[0]) {
			dprintf(2, "musl libc/dynamic program loader\n");
			dprintf(2, "usage: %s pathname%s\n", ldname,
				ldd_mode ? "" : " [args]");
			_exit(1);
		}
		fd = open(argv[0], O_RDONLY);
		if (fd < 0) {
			dprintf(2, "%s: cannot load %s: %s\n", ldname, argv[0], strerror(errno));
			_exit(1);
		}
		runtime = 1;
840
		ehdr = (void *)map_library(fd, app);
841 842 843 844 845 846
		if (!ehdr) {
			dprintf(2, "%s: %s: Not a valid dynamic program\n", ldname, argv[0]);
			_exit(1);
		}
		runtime = 0;
		close(fd);
847
		lib->name = ldname;
848
		app->name = argv[0];
849
		aux[AT_ENTRY] = ehdr->e_entry;
850
	}
851 852 853 854 855
	if (app->tls_size) {
		app->tls_id = ++tls_cnt;
		tls_size += app->tls_size+app->tls_align + 8*sizeof(size_t)-1
			& -4*sizeof(size_t);
	}
856
	app->global = 1;
857
	app->constructed = 1;
858 859 860
	decode_dyn(app);

	/* Attach to vdso, if provided by the kernel */
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861
	if (search_vec(auxv, &vdso_base, AT_SYSINFO_EHDR)) {
862 863 864 865 866 867 868 869
		ehdr = (void *)vdso_base;
		phdr = (void *)(vdso_base + ehdr->e_phoff);
		for (i=ehdr->e_phnum; i; i--, phdr=(void *)((char *)phdr + ehdr->e_phentsize)) {
			if (phdr->p_type == PT_DYNAMIC)
				vdso->dynv = (void *)(vdso_base + phdr->p_offset);
			if (phdr->p_type == PT_LOAD)
				vdso->base = (void *)(vdso_base - phdr->p_vaddr + phdr->p_offset);
		}
870
		vdso->name = vdso->shortname = "linux-gate.so.1";
871
		vdso->global = 1;
872
		decode_dyn(vdso);
873 874 875 876
		vdso->prev = lib;
		lib->next = vdso;
	}

877 878 879 880 881 882 883 884 885
	/* Initial dso chain consists only of the app. We temporarily
	 * append the dynamic linker/libc so we can relocate it, then
	 * restore the initial chain in preparation for loading third
	 * party libraries (preload/needed). */
	head = tail = app;
	libc = lib;
	app->next = lib;
	reloc_all(lib);
	app->next = 0;
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886

887
	/* PAST THIS POINT, ALL LIBC INTERFACES ARE FULLY USABLE. */
R
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888

889
	/* Donate unused parts of app and library mapping to malloc */
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890 891 892
	reclaim_gaps(app->base, (void *)aux[AT_PHDR], aux[AT_PHENT], aux[AT_PHNUM]);
	ehdr = (void *)lib->base;
	reclaim_gaps(lib->base, (void *)(lib->base+ehdr->e_phoff),
893 894
		ehdr->e_phentsize, ehdr->e_phnum);

895
	/* Load preload/needed libraries, add their symbols to the global
896 897 898
	 * namespace, and perform all remaining relocations. The main
	 * program must be relocated LAST since it may contain copy
	 * relocations which depend on libraries' relocations. */
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899
	if (env_preload) load_preload(env_preload);
900 901
	load_deps(app);
	make_global(app);
902 903 904 905 906 907 908 909 910 911 912 913

	/* Make an initial pass setting up TLS before performing relocs.
	 * This provides the TP-based offset of each DSO's TLS for
	 * use in TP-relative relocations. After relocations, we need
	 * to copy the TLS images again in case they had relocs. */
	tls_size += sizeof(struct pthread) + 4*sizeof(size_t);
	__libc.tls_size = tls_size;
	if (tls_cnt) {
		struct dso *p;
		void *mem = mmap(0, __libc.tls_size, PROT_READ|PROT_WRITE,
			MAP_ANONYMOUS|MAP_PRIVATE, -1, 0);
		if (mem==MAP_FAILED ||
914
		    !__install_initial_tls(__copy_tls(mem))) {
915 916 917 918 919 920 921 922 923 924 925
			dprintf(2, "%s: Error getting %zu bytes thread-local storage: %m\n",
				argv[0], tls_size);
			_exit(127);
		}
		for (p=head; p; p=p->next) {
			if (!p->tls_id) continue;
			p->tls_offset = (char *)__pthread_self()
				- (char *)__pthread_self()->dtv[p->tls_id];
		}
	}

926
	reloc_all(app->next);
927 928
	reloc_all(app);

929 930
	/* The initial DTV is located at the base of the memory
	 * allocated for TLS. Repeat copying TLS to pick up relocs. */
931
	if (tls_cnt) __copy_tls((void *)__pthread_self()->dtv);
932

933
	if (ldso_fail) _exit(127);
934 935
	if (ldd_mode) _exit(0);

936 937 938 939
	/* Switch to runtime mode: any further failures in the dynamic
	 * linker are a reportable failure rather than a fatal startup
	 * error. If the dynamic loader (dlopen) will not be used, free
	 * all memory used by the dynamic linker. */
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940
	runtime = 1;
941

942
#ifndef DYNAMIC_IS_RO
943 944 945
	for (i=0; app->dynv[i]; i+=2)
		if (app->dynv[i]==DT_DEBUG)
			app->dynv[i+1] = (size_t)&debug;
946
#endif
947 948 949 950 951 952 953
	debug.ver = 1;
	debug.bp = _dl_debug_state;
	debug.head = head;
	debug.base = lib->base;
	debug.state = 0;
	_dl_debug_state();

954 955
	if (ssp_used) __init_ssp(auxv);

956
	atexit(do_fini);
957 958
	do_init_fini(tail);

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959 960 961
	errno = 0;
	return (void *)aux[AT_ENTRY];
}
962 963 964

void *dlopen(const char *file, int mode)
{
R
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965
	struct dso *volatile p, *orig_tail, *next;
966
	size_t orig_tls_cnt;
967
	size_t i;
968
	int cs;
969 970 971

	if (!file) return head;

972
	pthread_setcancelstate(PTHREAD_CANCEL_DISABLE, &cs);
973
	pthread_rwlock_wrlock(&lock);
974
	__inhibit_ptc();
975

976 977
	p = 0;
	orig_tls_cnt = tls_cnt;
R
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978 979
	orig_tail = tail;

980 981
	if (setjmp(rtld_fail)) {
		/* Clean up anything new that was (partially) loaded */
982
		if (p && p->deps) for (i=0; p->deps[i]; i++)
983 984
			if (p->deps[i]->global < 0)
				p->deps[i]->global = 0;
985 986 987 988 989 990
		for (p=orig_tail->next; p; p=next) {
			next = p->next;
			munmap(p->map, p->map_len);
			free(p->deps);
			free(p);
		}
991 992
		tls_cnt = orig_tls_cnt;
		tls_size = __libc.tls_size;
993 994
		tail = orig_tail;
		tail->next = 0;
995
		p = 0;
996 997
		errflag = 1;
		goto end;
R
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998 999 1000
	} else p = load_library(file);

	if (!p) {
1001 1002
		snprintf(errbuf, sizeof errbuf,
			"Error loading shared library %s: %m", file);
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1003
		errflag = 1;
1004
		goto end;
1005 1006 1007 1008 1009
	}

	/* First load handling */
	if (!p->deps) {
		load_deps(p);
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Rich Felker 已提交
1010
		if (p->deps) for (i=0; p->deps[i]; i++)
1011 1012 1013
			if (!p->deps[i]->global)
				p->deps[i]->global = -1;
		if (!p->global) p->global = -1;
1014
		reloc_all(p);
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Rich Felker 已提交
1015
		if (p->deps) for (i=0; p->deps[i]; i++)
1016 1017 1018
			if (p->deps[i]->global < 0)
				p->deps[i]->global = 0;
		if (p->global < 0) p->global = 0;
1019 1020 1021
	}

	if (mode & RTLD_GLOBAL) {
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Rich Felker 已提交
1022
		if (p->deps) for (i=0; p->deps[i]; i++)
1023 1024 1025 1026
			p->deps[i]->global = 1;
		p->global = 1;
	}

1027 1028
	__libc.tls_size = tls_size;

1029 1030
	if (ssp_used) __init_ssp(auxv);

1031
	_dl_debug_state();
1032
	orig_tail = tail;
1033
end:
1034
	__release_ptc();
1035
	pthread_rwlock_unlock(&lock);
1036
	if (p) do_init_fini(orig_tail);
1037
	pthread_setcancelstate(cs, 0);
1038 1039 1040
	return p;
}

R
Rich Felker 已提交
1041
static void *do_dlsym(struct dso *p, const char *s, void *ra)
1042 1043
{
	size_t i;
1044
	uint32_t h = 0, gh = 0;
1045
	Sym *sym;
1046 1047 1048 1049 1050 1051 1052 1053
	if (p == head || p == RTLD_DEFAULT || p == RTLD_NEXT) {
		if (p == RTLD_NEXT) {
			for (p=head; p && (unsigned char *)ra-p->map>p->map_len; p=p->next);
			if (!p) p=head;
		}
		struct symdef def = find_sym(p->next, s, 0);
		if (!def.sym) goto failed;
		return def.dso->base + def.sym->st_value;
R
Rich Felker 已提交
1054
	}
1055 1056 1057 1058 1059 1060 1061
	if (p->ghashtab) {
		gh = gnu_hash(s);
		sym = gnu_lookup(s, gh, p);
	} else {
		h = sysv_hash(s);
		sym = sysv_lookup(s, h, p);
	}
1062 1063 1064
	if (sym && sym->st_value && (1<<(sym->st_info&0xf) & OK_TYPES))
		return p->base + sym->st_value;
	if (p->deps) for (i=0; p->deps[i]; i++) {
1065 1066
		if (p->deps[i]->ghashtab) {
			if (!gh) gh = gnu_hash(s);
1067
			sym = gnu_lookup(s, gh, p->deps[i]);
1068 1069 1070 1071
		} else {
			if (!h) h = sysv_hash(s);
			sym = sysv_lookup(s, h, p->deps[i]);
		}
1072 1073 1074
		if (sym && sym->st_value && (1<<(sym->st_info&0xf) & OK_TYPES))
			return p->deps[i]->base + sym->st_value;
	}
1075
failed:
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1076
	errflag = 1;
1077
	snprintf(errbuf, sizeof errbuf, "Symbol not found: %s", s);
1078 1079 1080
	return 0;
}

1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141
int __dladdr(void *addr, Dl_info *info)
{
	struct dso *p;
	Sym *sym;
	uint32_t nsym;
	char *strings;
	size_t i;
	void *best = 0;
	char *bestname;

	pthread_rwlock_rdlock(&lock);
	for (p=head; p && (unsigned char *)addr-p->map>p->map_len; p=p->next);
	pthread_rwlock_unlock(&lock);

	if (!p) return 0;

	sym = p->syms;
	strings = p->strings;
	if (p->hashtab) {
		nsym = p->hashtab[1];
	} else {
		uint32_t *buckets;
		uint32_t *hashval;
		buckets = p->ghashtab + 4 + (p->ghashtab[2]*sizeof(size_t)/4);
		sym += p->ghashtab[1];
		for (i = 0; i < p->ghashtab[0]; i++) {
			if (buckets[i] > nsym)
				nsym = buckets[i];
		}
		if (nsym) {
			nsym -= p->ghashtab[1];
			hashval = buckets + p->ghashtab[0] + nsym;
			do nsym++;
			while (!(*hashval++ & 1));
		}
	}

	for (; nsym; nsym--, sym++) {
		if (sym->st_shndx && sym->st_value
		 && (1<<(sym->st_info&0xf) & OK_TYPES)
		 && (1<<(sym->st_info>>4) & OK_BINDS)) {
			void *symaddr = p->base + sym->st_value;
			if (symaddr > addr || symaddr < best)
				continue;
			best = symaddr;
			bestname = strings + sym->st_name;
			if (addr == symaddr)
				break;
		}
	}

	if (!best) return 0;

	info->dli_fname = p->name;
	info->dli_fbase = p->base;
	info->dli_sname = bestname;
	info->dli_saddr = best;

	return 1;
}

1142
void *__dlsym(void *restrict p, const char *restrict s, void *restrict ra)
1143 1144 1145
{
	void *res;
	pthread_rwlock_rdlock(&lock);
R
Rich Felker 已提交
1146
	res = do_dlsym(p, s, ra);
1147 1148 1149
	pthread_rwlock_unlock(&lock);
	return res;
}
1150 1151 1152 1153 1154
#else
void *dlopen(const char *file, int mode)
{
	return 0;
}
1155
void *__dlsym(void *restrict p, const char *restrict s, void *restrict ra)
1156 1157 1158
{
	return 0;
}
1159 1160 1161 1162
int __dladdr (void *addr, Dl_info *info)
{
	return 0;
}
1163
#endif
1164 1165 1166

char *dlerror()
{
R
Rich Felker 已提交
1167 1168
	if (!errflag) return 0;
	errflag = 0;
1169
	return errbuf;
1170 1171 1172 1173 1174 1175
}

int dlclose(void *p)
{
	return 0;
}