dynlink.c 145.5 KB
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#define _GNU_SOURCE
#define SYSCALL_NO_TLS 1
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#include "dynlink.h"

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#include <stdbool.h>
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#include <stdio.h>
#include <stdlib.h>
#include <stdarg.h>
#include <stddef.h>
#include <string.h>
#include <unistd.h>
#include <stdint.h>
#include <elf.h>
#include <sys/mman.h>
#include <limits.h>
#include <fcntl.h>
#include <sys/stat.h>
#include <errno.h>
#include <link.h>
#include <setjmp.h>
#include <pthread.h>
#include <ctype.h>
#include <dlfcn.h>
#include <semaphore.h>
#include <sys/membarrier.h>
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#include <sys/time.h>
#include <time.h>
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#include <sys/prctl.h>
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#include "cfi.h"
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#include "dlfcn_ext.h"
#include "dynlink_rand.h"
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#include "ld_log.h"
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#include "libc.h"
#include "malloc_impl.h"
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#include "namespace.h"
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#include "ns_config.h"
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#include "pthread_impl.h"
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#include "strops.h"
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#ifdef OHOS_ENABLE_PARAMETER
#include "sys_param.h"
#endif
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#ifdef LOAD_ORDER_RANDOMIZATION
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#include "zip_archive.h"
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#endif
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static void error(const char *, ...);

#define MAXP2(a,b) (-(-(a)&-(b)))
#define ALIGN(x,y) ((x)+(y)-1 & -(y))
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#define GNU_HASH_FILTER(ght, ghm, gho)                \
	const size_t *bloomwords = (const void *)(ght+4); \
	size_t f = bloomwords[gho & (ght[2]-1)];          \
	if (!(f & ghm)) continue;                         \
	f >>= (gh >> ght[3]) % (8 * sizeof f);            \
	if (!(f & 1)) continue;
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#define container_of(p,t,m) ((t*)((char *)(p)-offsetof(t,m)))
#define countof(a) ((sizeof (a))/(sizeof (a)[0]))
#define DSO_FLAGS_NODELETE 0x1

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#ifdef HANDLE_RANDOMIZATION
#define NEXT_DYNAMIC_INDEX 2
#define MIN_DEPS_COUNT 2
#define NAME_INDEX_ZERO 0
#define NAME_INDEX_ONE 1
#define NAME_INDEX_TWO 2
#define NAME_INDEX_THREE 3
#define TLS_CNT_INCREASE 3
#define INVALID_FD_INHIBIT_FURTHER_SEARCH (-2)
#endif

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#define PARENTS_BASE_CAPACITY 8
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#define RELOC_CAN_SEARCH_DSO_BASE_CAPACITY 32
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struct debug {
	int ver;
	void *head;
	void (*bp)(void);
	int state;
	void *base;
};

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struct reserved_address_params {
	void* start_addr;
	size_t reserved_size;
	bool must_use_reserved;
	bool reserved_address_recursive;
#ifdef LOAD_ORDER_RANDOMIZATION
	struct dso *target;
#endif
};

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typedef void (*stage3_func)(size_t *, size_t *);

static struct builtin_tls {
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	char c[8];
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	struct pthread pt;
	void *space[16];
} builtin_tls[1];
#define MIN_TLS_ALIGN offsetof(struct builtin_tls, pt)

#define ADDEND_LIMIT 4096
static size_t *saved_addends, *apply_addends_to;
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static bool g_is_asan;
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static struct dso ldso;
static struct dso *head, *tail, *fini_head, *syms_tail, *lazy_head;
static char *env_path, *sys_path;
static unsigned long long gencnt;
static int runtime;
static int ldd_mode;
static int ldso_fail;
static int noload;
static int shutting_down;
static jmp_buf *rtld_fail;
static pthread_rwlock_t lock;
static struct debug debug;
static struct tls_module *tls_tail;
static size_t tls_cnt, tls_offset, tls_align = MIN_TLS_ALIGN;
static size_t static_tls_cnt;
static pthread_mutex_t init_fini_lock;
static pthread_cond_t ctor_cond;
static struct dso *builtin_deps[2];
static struct dso *const no_deps[1];
static struct dso *builtin_ctor_queue[4];
static struct dso **main_ctor_queue;
static struct fdpic_loadmap *app_loadmap;
static struct fdpic_dummy_loadmap app_dummy_loadmap;

struct debug *_dl_debug_addr = &debug;

extern hidden int __malloc_replaced;

hidden void (*const __init_array_start)(void)=0, (*const __fini_array_start)(void)=0;

extern hidden void (*const __init_array_end)(void), (*const __fini_array_end)(void);

weak_alias(__init_array_start, __init_array_end);
weak_alias(__fini_array_start, __fini_array_end);
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#ifdef DFX_SIGNAL_LIBC
static void __InstallSignalHandler()
{
}
weak_alias(__InstallSignalHandler, DFX_InstallSignalHandler);
#endif
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#ifdef HANDLE_RANDOMIZATION
static int do_dlclose(struct dso *p);
#endif

#ifdef LOAD_ORDER_RANDOMIZATION
static bool map_library_header(struct loadtask *task);
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static bool task_map_library(struct loadtask *task, struct reserved_address_params *reserved_params);
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static bool load_library_header(struct loadtask *task);
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static void task_load_library(struct loadtask *task, struct reserved_address_params *reserved_params);
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static void preload_direct_deps(struct dso *p, ns_t *namespace, struct loadtasks *tasks);
static void unmap_preloaded_sections(struct loadtasks *tasks);
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static void preload_deps(struct dso *p, struct loadtasks *tasks);
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static void run_loadtasks(struct loadtasks *tasks, struct reserved_address_params *reserved_params);
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static void assign_tls(struct dso *p);
static void load_preload(char *s, ns_t *ns, struct loadtasks *tasks);
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static void open_library_by_path(const char *name, const char *s, struct loadtask *task, struct zip_info *z_info);
static void handle_asan_path_open_by_task(int fd, const char *name, ns_t *namespace, struct loadtask *task, struct zip_info *z_info);
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#endif

/* Sharing relro */
static void handle_relro_sharing(struct dso *p, const dl_extinfo *extinfo, ssize_t *relro_fd_offset);

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/* asan path open */
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int handle_asan_path_open(int fd, const char *name, ns_t *namespace, char *buf, size_t buf_size);
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/* add namespace function */
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static void get_sys_path(ns_configor *conf);
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static void dlclose_ns(struct dso *p);
static bool get_app_path(char *path, size_t size)
{
	int l = 0;
	l = readlink("/proc/self/exe", path, size);
	if (l < 0 || l >= size) {
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		LD_LOGD("get_app_path readlink failed!");
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		return false;
	}
	path[l] = 0;
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	LD_LOGD("get_app_path path:%{public}s.", path);
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	return true;
}

static void init_default_namespace(struct dso *app)
{
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	ns_t *default_ns = get_default_ns();
	memset(default_ns, 0, sizeof *default_ns);
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	ns_set_name(default_ns, NS_DEFAULT_NAME);
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	if (env_path) ns_set_env_paths(default_ns, env_path);
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	ns_set_lib_paths(default_ns, sys_path);
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	ns_set_separated(default_ns, false);
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	app->namespace = default_ns;
	ns_add_dso(default_ns, app);
	LD_LOGD("init_default_namespace default_namespace:"
			"nsname: default ,"
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			"lib_paths:%{public}s ,"
			"env_path:%{public}s ,"
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			"separated: false.",
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			sys_path, env_path);
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	return;
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}

static void set_ns_attrs(ns_t *ns, ns_configor *conf)
{
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	if(!ns || !conf) {
		return;
	}

	char *lib_paths, *asan_lib_paths, *permitted_paths, *asan_permitted_paths, *allowed_libs;
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	ns_set_separated(ns, conf->get_separated(ns->ns_name));

	lib_paths = conf->get_lib_paths(ns->ns_name);
	if (lib_paths) ns_set_lib_paths(ns, lib_paths);

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	asan_lib_paths = conf->get_asan_lib_paths(ns->ns_name);
	if (asan_lib_paths) ns_set_asan_lib_paths(ns, asan_lib_paths);

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	permitted_paths = conf->get_permitted_paths(ns->ns_name);
	if (permitted_paths) ns_set_permitted_paths(ns, permitted_paths);

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	asan_permitted_paths = conf->get_asan_permitted_paths(ns->ns_name);
	if (asan_permitted_paths) ns_set_asan_permitted_paths(ns, asan_permitted_paths);

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	allowed_libs = conf->get_allowed_libs(ns->ns_name);
	if (allowed_libs) ns_set_allowed_libs(ns, allowed_libs);
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	LD_LOGD("set_ns_attrs :"
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			"ns_name: %{public}s ,"
			"separated:%{public}d ,"
			"lib_paths:%{public}s ,"
			"asan_lib_paths:%{public}s ,"
			"permitted_paths:%{public}s ,"
			"asan_permitted_paths:%{public}s ,"
			"allowed_libs: %{public}s .",
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			ns->ns_name, ns->separated, ns->lib_paths, ns->asan_lib_paths, permitted_paths,
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			asan_permitted_paths, allowed_libs);
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}

static void set_ns_inherits(ns_t *ns, ns_configor *conf)
{
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	if(!ns || !conf) {
		return;
	}

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	strlist *inherits = conf->get_inherits(ns->ns_name);
	if (inherits) {
		for (size_t i=0; i<inherits->num; i++) {
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			ns_t *inherited_ns = find_ns_by_name(inherits->strs[i]);
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			if (inherited_ns) {
				char *shared_libs = conf->get_inherit_shared_libs(ns->ns_name, inherited_ns->ns_name);
				ns_add_inherit(ns, inherited_ns, shared_libs);
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				LD_LOGD("set_ns_inherits :"
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						"ns_name: %{public}s ,"
						"separated:%{public}d ,"
						"lib_paths:%{public}s ,"
						"asan_lib_paths:%{public}s ,",
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						inherited_ns->ns_name, inherited_ns->separated, inherited_ns->lib_paths,
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						inherited_ns->asan_lib_paths);
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			}
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		}
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		strlist_free(inherits);
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	} else {
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		LD_LOGD("set_ns_inherits inherits is NULL!");
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	}
}

static void init_namespace(struct dso *app)
{
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	char app_path[PATH_MAX+1];
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	if (!get_app_path(app_path, sizeof app_path)) {
		strcpy(app_path, app->name);
	}
	char *t = strrchr(app_path, '/');
	if (t) {
		*t = 0;
	} else {
		app_path[0] = '.';
		app_path[1] = 0;
	}
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	nslist *nsl = nslist_init();
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	ns_configor *conf = configor_init();
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	char file_path[sizeof "/etc/ld-musl-namespace-" + sizeof (LDSO_ARCH) + sizeof ".ini" + 1] = {0};
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	(void)snprintf(file_path, sizeof file_path, "/etc/ld-musl-namespace-%s.ini", LDSO_ARCH);
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	LD_LOGI("init_namespace file_path:%{public}s", file_path);
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	int ret = conf->parse(file_path, app_path);
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	if (ret < 0) {
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		LD_LOGE("init_namespace ini file parse failed!");
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		/* Init_default_namespace is required even if the ini file parsing fails */
		if (!sys_path) get_sys_path(conf);
		init_default_namespace(app);
		configor_free();
		return;
	}

	/* sys_path needs to be parsed through ini file */
	if (!sys_path) get_sys_path(conf);
	init_default_namespace(app);

	/* Init default namespace */
	ns_t *d_ns = get_default_ns();
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	set_ns_attrs(d_ns, conf);
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	/* Init other namespace */
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	if (!nsl) {
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		LD_LOGE("init nslist fail!");
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		configor_free();
		return;
	}
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	strlist *s_ns = conf->get_namespaces();
	if (s_ns) {
		for (size_t i=0; i<s_ns->num; i++) {
			ns_t *ns = ns_alloc();
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			ns_set_name(ns, s_ns->strs[i]);
			set_ns_attrs(ns, conf);
			ns_add_dso(ns, app);
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			nslist_add_ns(ns);
		}
		strlist_free(s_ns);
	} 
	/* Set inherited namespace */
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	set_ns_inherits(d_ns, conf);
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	for (size_t i = 0; i < nsl->num; i++) {
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		set_ns_inherits(nsl->nss[i], conf);
	}
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	configor_free();
	return;
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}

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/* Compute load address for a virtual address in a given dso. */
#if DL_FDPIC
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void *laddr(const struct dso *p, size_t v)
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{
	size_t j=0;
	if (!p->loadmap) return p->base + v;
	for (j=0; v-p->loadmap->segs[j].p_vaddr >= p->loadmap->segs[j].p_memsz; j++);
	return (void *)(v - p->loadmap->segs[j].p_vaddr + p->loadmap->segs[j].addr);
}
static void *laddr_pg(const struct dso *p, size_t v)
{
	size_t j=0;
	size_t pgsz = PAGE_SIZE;
	if (!p->loadmap) return p->base + v;
	for (j=0; ; j++) {
		size_t a = p->loadmap->segs[j].p_vaddr;
		size_t b = a + p->loadmap->segs[j].p_memsz;
		a &= -pgsz;
		b += pgsz-1;
		b &= -pgsz;
		if (v-a<b-a) break;
	}
	return (void *)(v - p->loadmap->segs[j].p_vaddr + p->loadmap->segs[j].addr);
}
static void (*fdbarrier(void *p))()
{
	void (*fd)();
	__asm__("" : "=r"(fd) : "0"(p));
	return fd;
}
#define fpaddr(p, v) fdbarrier((&(struct funcdesc){ \
	laddr(p, v), (p)->got }))
#else
#define laddr(p, v) (void *)((p)->base + (v))
#define laddr_pg(p, v) laddr(p, v)
#define fpaddr(p, v) ((void (*)())laddr(p, v))
#endif

static void decode_vec(size_t *v, size_t *a, size_t cnt)
{
	size_t i;
	for (i=0; i<cnt; i++) a[i] = 0;
	for (; v[0]; v+=2) if (v[0]-1<cnt-1) {
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		if (v[0] < 8*sizeof(long)) {
			a[0] |= 1UL<<v[0];
		}
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		a[v[0]] = v[1];
	}
}

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;
}

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static int check_vna_hash(Verdef *def, int16_t vsym, uint32_t vna_hash)
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{
	int matched = 0;

	vsym &= 0x7fff;
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	Verdef *verdef = def;
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	for(;;) {
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		if ((verdef->vd_ndx & 0x7fff) == vsym) {
			if (vna_hash == verdef->vd_hash) {
				matched = 1;
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			}
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			break;
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		}
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		if (matched) {
			break;
		}
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		if (verdef->vd_next == 0) {
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			break;
		}
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		verdef = (Verdef *)((char *)verdef + verdef->vd_next);
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	}
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#if (LD_LOG_LEVEL & LD_LOG_DEBUG)
	if (!matched) {
		LD_LOGD("check_vna_hash no matched found. vsym=%{public}d vna_hash=%{public}x", vsym, vna_hash);
	}
#endif
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	return matched;
}

static int check_verinfo(Verdef *def, int16_t *versym, uint32_t index, struct verinfo *verinfo, char *strings)
{
	/* if the versym and verinfo is null , then not need version. */
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	if (!versym || !def) {
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		if (strlen(verinfo->v) == 0) {
			return 1;
		} else {
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			LD_LOGD("check_verinfo versym or def is null and verinfo->v exist, s:%{public}s v:%{public}s.",
				verinfo->s, verinfo->v);
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			return 0;
		}
	}

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	int16_t vsym = versym[index];
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	/* find the verneed symbol. */
	if (verinfo->use_vna_hash) {
		if (vsym != VER_NDX_LOCAL && versym != VER_NDX_GLOBAL) {
			return check_vna_hash(def, vsym, verinfo->vna_hash);
		}
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	}

	/* if the version length is zero and vsym not less than zero, then library hava default version symbol. */
	if (strlen(verinfo->v) == 0) {
		if (vsym >= 0) {
			return 1;
		} else {
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			LD_LOGD("check_verinfo not default version. vsym:%{public}d s:%{public}s", vsym, verinfo->s);
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			return 0;
		}
	}

	/* find the version of symbol. */
	vsym &= 0x7fff;
	for (;;) {
		if (!(def->vd_flags & VER_FLG_BASE) && (def->vd_ndx & 0x7fff) == vsym) {
			break;
		}
		if (def->vd_next == 0) {
			return 0;
		}
		def = (Verdef *)((char *)def + def->vd_next);
	}

	Verdaux *aux = (Verdaux *)((char *)def + def->vd_aux);

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	int ret = !strcmp(verinfo->v, strings + aux->vda_name);
#if (LD_LOG_LEVEL & LD_LOG_DEBUG)
	if (!ret) {
		LD_LOGD("check_verinfo version not match. s=%{public}s v=%{public}s vsym=%{public}d vda_name=%{public}s",
			verinfo->s, verinfo->v, vsym, strings + aux->vda_name);
	}
#endif
	return ret;
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}

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static struct sym_info_pair sysv_hash(const char *s0)
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{
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	struct sym_info_pair s_info_p;
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	const unsigned char *s = (void *)s0;
	uint_fast32_t h = 0;
	while (*s) {
		h = 16*h + *s++;
		h ^= h>>24 & 0xf0;
	}
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	s_info_p.sym_h = h & 0xfffffff;
	s_info_p.sym_l = (char *)s - s0;
	return s_info_p;
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}

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struct sym_info_pair gnu_hash(const char *s0)
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{
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	struct sym_info_pair s_info_p;
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	const unsigned char *s = (void *)s0;
	uint_fast32_t h = 5381;
	for (; *s; s++)
		h += h*32 + *s;
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	s_info_p.sym_h = h;
	s_info_p.sym_l = (char *)s - s0;
	return s_info_p;
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}

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static Sym *sysv_lookup(struct verinfo *verinfo,  struct sym_info_pair s_info_p, struct dso *dso)
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{
	size_t i;
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	uint32_t h = s_info_p.sym_h;
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	Sym *syms = dso->syms;
	Elf_Symndx *hashtab = dso->hashtab;
	char *strings = dso->strings;
	for (i=hashtab[2+h%hashtab[0]]; i; i=hashtab[2+hashtab[0]+i]) {
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		if ((!dso->versym || (dso->versym[i] & 0x7fff) >= 0)
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			&& (!memcmp(verinfo->s, strings+syms[i].st_name, s_info_p.sym_l))) {
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			if (!check_verinfo(dso->verdef, dso->versym, i, verinfo, dso->strings)) {
				continue;
			}

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			return syms+i;
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		}

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	}
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	LD_LOGD("sysv_lookup not find the symbol, "
		"so:%{public}s s:%{public}s v:%{public}s use_vna_hash:%{public}d vna_hash:%{public}x",
		dso->name, verinfo->s, verinfo->v, verinfo->use_vna_hash, verinfo->vna_hash);
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	return 0;
}

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static Sym *gnu_lookup(struct sym_info_pair s_info_p, uint32_t *hashtab, struct dso *dso, struct verinfo *verinfo)
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{
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	uint32_t h1 = s_info_p.sym_h;
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	uint32_t nbuckets = hashtab[0];
	uint32_t *buckets = hashtab + 4 + hashtab[2]*(sizeof(size_t)/4);
	uint32_t i = buckets[h1 % nbuckets];

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	if (!i) {
		LD_LOGD("gnu_lookup symbol not found (bloom filter), so:%{public}s s:%{public}s", dso->name, verinfo->s);
		return 0;
	}
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	uint32_t *hashval = buckets + nbuckets + (i - hashtab[1]);

	for (h1 |= 1; ; i++) {
		uint32_t h2 = *hashval++;
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		if ((h1 == (h2|1)) && (!dso->versym || (dso->versym[i] & 0x7fff) >= 0)
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			&& !memcmp(verinfo->s, dso->strings + dso->syms[i].st_name, s_info_p.sym_l)) {
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			if (!check_verinfo(dso->verdef, dso->versym, i, verinfo, dso->strings)) {
				continue;
			}

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			return dso->syms+i;
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		}

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		if (h2 & 1) break;
	}

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	LD_LOGD("gnu_lookup symbol not found, "
		"so:%{public}s s:%{public}s v:%{public}s use_vna_hash:%{public}d vna_hash:%{public}x",
		dso->name, verinfo->s, verinfo->v, verinfo->use_vna_hash, verinfo->vna_hash);
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	return 0;
}

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static bool check_sym_accessible(struct dso *dso, ns_t *ns)
{
	if (!dso || !dso->namespace || !ns) {
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		LD_LOGD("check_sym_accessible invalid parameter!");
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		return false;
	}
	if (dso->namespace == ns) {
		return true;
	}
	for (int i = 0; i < dso->parents_count; i++) {
		if (dso->parents[i]->namespace == ns) {
			return true;
		}
	}
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	LD_LOGD(
		"check_sym_accessible dso name [%{public}s] ns_name [%{public}s] not accessible!", dso->name, ns->ns_name);
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	return false;
}

static int find_dso_parent(struct dso *p, struct dso *target)
{
	int index = -1;
	for (int i = 0; i < p->parents_count; i++) {
		if (p->parents[i] == target) {
			index = i;
			break;
		}
	}
	return index;
}

static void add_dso_parent(struct dso *p, struct dso *parent)
{
	int index = find_dso_parent(p, parent);
	if (index != -1) {
		return;
	}
	if (p->parents_count + 1 > p->parents_capacity) {
		if (p->parents_capacity == 0) {
			p->parents = (struct dso **)internal_malloc(sizeof(struct dso *) * PARENTS_BASE_CAPACITY);
			if (!p->parents) {
				return;
			}
			p->parents_capacity = PARENTS_BASE_CAPACITY;
		} else {
			struct dso ** realloced = (struct dso **)internal_realloc(
				p->parents, sizeof(struct dso *) * (p->parents_capacity + PARENTS_BASE_CAPACITY));
			if (!realloced) {
				return;
			}
			p->parents = realloced;
			p->parents_capacity += PARENTS_BASE_CAPACITY;
		}
	}
	p->parents[p->parents_count] = parent;
	p->parents_count++;
}

static void remove_dso_parent(struct dso *p, struct dso *parent)
{
	int index = find_dso_parent(p, parent);
	if (index == -1) {
		return;
	}
	int i;
	for (i = 0; i < index; i++) {
		p->parents[i] = p->parents[i];
	}
	for (i = index; i < p->parents_count - 1; i++) {
		p->parents[i] = p->parents[i + 1];
	}
	p->parents_count--;
}

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static void add_reloc_can_search_dso(struct dso *p, struct dso *can_search_so)
{
	if (p->reloc_can_search_dso_count + 1 > p->reloc_can_search_dso_capacity) {
		if (p->reloc_can_search_dso_capacity == 0) {
			p->reloc_can_search_dso_list =
				(struct dso **)internal_malloc(sizeof(struct dso *) * RELOC_CAN_SEARCH_DSO_BASE_CAPACITY);
			if (!p->reloc_can_search_dso_list) {
				return;
			}
			p->reloc_can_search_dso_capacity = RELOC_CAN_SEARCH_DSO_BASE_CAPACITY;
		} else {
			struct dso ** realloced = (struct dso **)internal_realloc(
				p->reloc_can_search_dso_list,
				sizeof(struct dso *) * (p->reloc_can_search_dso_capacity + RELOC_CAN_SEARCH_DSO_BASE_CAPACITY));
			if (!realloced) {
				return;
			}
			p->reloc_can_search_dso_list = realloced;
			p->reloc_can_search_dso_capacity += RELOC_CAN_SEARCH_DSO_BASE_CAPACITY;
		}
	}
	p->reloc_can_search_dso_list[p->reloc_can_search_dso_count] = can_search_so;
	p->reloc_can_search_dso_count++;
}

static void free_reloc_can_search_dso(struct dso *p)
{
	if (p->reloc_can_search_dso_list) {
		internal_free(p->reloc_can_search_dso_list);
		p->reloc_can_search_dso_list = NULL;
		p->reloc_can_search_dso_count = 0;
		p->reloc_can_search_dso_capacity = 0;
	}
}

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/* The list of so that can be accessed during relocation include:
 * - The is_global flag of the so is true which means accessible by default.
 *   Global so includes exe, ld preload so and ldso.
 * - We only check whether ns is accessible for the so if is_reloc_head_so_dep is true.
 *
 *   How to set is_reloc_head_so_dep:
 *   When dlopen A, we set is_reloc_head_so_dep to true for
 *   all direct and indirect dependent sos of A, including A itself. */
static void add_can_search_so_list_in_dso(struct dso *dso_relocating, struct dso *start_check_dso) {
	struct dso *p = start_check_dso;
	for (; p; p = p->syms_next) {
		if (p->is_global) {
			add_reloc_can_search_dso(dso_relocating, p);
			continue;
		}

		if (p->is_reloc_head_so_dep) {
			if (dso_relocating->namespace && check_sym_accessible(p, dso_relocating->namespace)) {
				add_reloc_can_search_dso(dso_relocating, p);
			}
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		}
	}
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	return;
}

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#define OK_TYPES (1<<STT_NOTYPE | 1<<STT_OBJECT | 1<<STT_FUNC | 1<<STT_COMMON | 1<<STT_TLS)
#define OK_BINDS (1<<STB_GLOBAL | 1<<STB_WEAK | 1<<STB_GNU_UNIQUE)

#ifndef ARCH_SYM_REJECT_UND
#define ARCH_SYM_REJECT_UND(s) 0
#endif

#if defined(__GNUC__)
__attribute__((always_inline))
#endif
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struct symdef find_sym_impl(
	struct dso *dso, struct verinfo *verinfo, struct sym_info_pair s_info_p, int need_def, ns_t *ns)
{
	Sym *sym;
	uint32_t *ght;
	uint32_t h = 0;
	uint32_t gh = s_info_p.sym_h;
	uint32_t gho = gh / (8 * sizeof(size_t));
	size_t ghm = 1ul << gh % (8 * sizeof(size_t));
	struct symdef def = {0};
	if (ns && !check_sym_accessible(dso, ns))
		return def;

	if ((ght = dso->ghashtab)) {
		const size_t *bloomwords = (const void *)(ght + 4);
		size_t f = bloomwords[gho & (ght[2] - 1)];
		if (!(f & ghm))
			return def;

		f >>= (gh >> ght[3]) % (8 * sizeof f);
		if (!(f & 1))
			return def;

		sym = gnu_lookup(s_info_p, ght, dso, verinfo);
	} else {
		if (!h)
			s_info_p = sysv_hash(verinfo->s);

		sym = sysv_lookup(verinfo, s_info_p, dso);
	}

	if (!sym)
		return def;

	if (!sym->st_shndx)
		if (need_def || (sym->st_info & 0xf) == STT_TLS || ARCH_SYM_REJECT_UND(sym))
			return def;

	if (!sym->st_value)
		if ((sym->st_info & 0xf) != STT_TLS)
			return def;

	if (!(1 << (sym->st_info & 0xf) & OK_TYPES))
		return def;

	if (!(1 << (sym->st_info >> 4) & OK_BINDS))
		return def;

	def.sym = sym;
	def.dso = dso;
	return def;
}

static inline struct symdef find_sym2(struct dso *dso, struct verinfo *verinfo, int need_def, int use_deps, ns_t *ns)
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{
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	struct sym_info_pair s_info_p = gnu_hash(verinfo->s);
	uint32_t h = 0, gh = s_info_p.sym_h, gho = gh / (8*sizeof(size_t)), *ght;
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	size_t ghm = 1ul << gh % (8*sizeof(size_t));
	struct symdef def = {0};
	struct dso **deps = use_deps ? dso->deps : 0;
	for (; dso; dso=use_deps ? *deps++ : dso->syms_next) {
		Sym *sym;
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		if (ns && !check_sym_accessible(dso, ns)) {
			continue;
		}
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		if ((ght = dso->ghashtab)) {
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			GNU_HASH_FILTER(ght, ghm, gho)
			sym = gnu_lookup(s_info_p, ght, dso, verinfo);
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		} else {
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			if (!h) s_info_p = sysv_hash(verinfo->s);
			sym = sysv_lookup(verinfo, s_info_p, dso);
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		}
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		if (!sym) continue;
		if (!sym->st_shndx)
			if (need_def || (sym->st_info&0xf) == STT_TLS
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				|| ARCH_SYM_REJECT_UND(sym))
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				continue;
		if (!sym->st_value)
			if ((sym->st_info&0xf) != STT_TLS)
				continue;
		if (!(1<<(sym->st_info&0xf) & OK_TYPES)) continue;
		if (!(1<<(sym->st_info>>4) & OK_BINDS)) continue;
		def.sym = sym;
		def.dso = dso;
		break;
	}
	return def;
}

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static inline struct symdef find_sym_by_saved_so_list(
	int sym_type, struct dso *dso, struct verinfo *verinfo, int need_def, struct dso *dso_relocating)
{
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	struct sym_info_pair s_info_p = gnu_hash(verinfo->s);
	uint32_t h = 0, gh = s_info_p.sym_h, gho = gh / (8 * sizeof(size_t)), *ght;
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	size_t ghm = 1ul << gh % (8 * sizeof(size_t));
	struct symdef def = {0};
	// skip head dso.
	int start_search_index = sym_type==REL_COPY ? 1 : 0;
	struct dso *dso_searching = 0;
	for (int i = start_search_index; i < dso_relocating->reloc_can_search_dso_count; i++) {
		dso_searching = dso_relocating->reloc_can_search_dso_list[i];
		Sym *sym;
		if ((ght = dso_searching->ghashtab)) {
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			GNU_HASH_FILTER(ght, ghm, gho)
			sym = gnu_lookup(s_info_p, ght, dso_searching, verinfo);
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		} else {
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			if (!h) s_info_p = sysv_hash(verinfo->s);
			sym = sysv_lookup(verinfo, s_info_p, dso_searching);
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		}
		if (!sym) continue;
		if (!sym->st_shndx)
			if (need_def || (sym->st_info&0xf) == STT_TLS
				|| ARCH_SYM_REJECT_UND(sym))
				continue;
		if (!sym->st_value)
			if ((sym->st_info&0xf) != STT_TLS)
				continue;
		if (!(1<<(sym->st_info&0xf) & OK_TYPES)) continue;
		if (!(1<<(sym->st_info>>4) & OK_BINDS)) continue;
		def.sym = sym;
		def.dso = dso_searching;
		break;
	}
	return def;
}

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static struct symdef find_sym(struct dso *dso, const char *s, int need_def)
{
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	struct verinfo verinfo = { .s = s, .v = "", .use_vna_hash = false };
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	return find_sym2(dso, &verinfo, need_def, 0, NULL);
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}

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static bool get_vna_hash(struct dso *dso, int sym_index, uint32_t *vna_hash)
{
	if (!dso->versym || !dso->verneed) {
		return false;
	}

	uint16_t vsym = dso->versym[sym_index];
	if (vsym == VER_NDX_LOCAL || vsym == VER_NDX_GLOBAL) {
		return false;
	}

	bool result = false;
	Verneed *verneed = dso->verneed;
	Vernaux *vernaux;
	vsym &= 0x7fff;

	for(;;) {
		vernaux = (Vernaux *)((char *)verneed + verneed->vn_aux);

		for (size_t cnt = 0; cnt < verneed->vn_cnt; cnt++) {
			if ((vernaux->vna_other & 0x7fff) == vsym) {
				result = true;
				*vna_hash = vernaux->vna_hash;
				break;
			}

			vernaux = (Vernaux *)((char *)vernaux + vernaux->vna_next);
		}

		if (result) {
			break;
		}

		if (verneed->vn_next == 0) {
			break;
		}

		verneed = (Verneed *)((char *)verneed + verneed->vn_next);
	}
	return result;
}

884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933
static void do_relocs(struct dso *dso, size_t *rel, size_t rel_size, size_t stride)
{
	unsigned char *base = dso->base;
	Sym *syms = dso->syms;
	char *strings = dso->strings;
	Sym *sym;
	const char *name;
	void *ctx;
	int type;
	int sym_index;
	struct symdef def;
	size_t *reloc_addr;
	size_t sym_val;
	size_t tls_val;
	size_t addend;
	int skip_relative = 0, reuse_addends = 0, save_slot = 0;

	if (dso == &ldso) {
		/* Only ldso's REL table needs addend saving/reuse. */
		if (rel == apply_addends_to)
			reuse_addends = 1;
		skip_relative = 1;
	}

	for (; rel_size; rel+=stride, rel_size-=stride*sizeof(size_t)) {
		if (skip_relative && IS_RELATIVE(rel[1], dso->syms)) continue;
		type = R_TYPE(rel[1]);
		if (type == REL_NONE) continue;
		reloc_addr = laddr(dso, rel[0]);

		if (stride > 2) {
			addend = rel[2];
		} else if (type==REL_GOT || type==REL_PLT|| type==REL_COPY) {
			addend = 0;
		} else if (reuse_addends) {
			/* Save original addend in stage 2 where the dso
			 * chain consists of just ldso; otherwise read back
			 * saved addend since the inline one was clobbered. */
			if (head==&ldso)
				saved_addends[save_slot] = *reloc_addr;
			addend = saved_addends[save_slot++];
		} else {
			addend = *reloc_addr;
		}

		sym_index = R_SYM(rel[1]);
		if (sym_index) {
			sym = syms + sym_index;
			name = strings + sym->st_name;
			ctx = type==REL_COPY ? head->syms_next : head;
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			struct verinfo vinfo = { .s = name, .v = "" };
			vinfo.use_vna_hash = get_vna_hash(dso, sym_index, &vinfo.vna_hash);
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			if (dso->cache_sym_index == sym_index) {
				def = (struct symdef){ .dso = dso->cache_dso, .sym = dso->cache_sym };
			} else {
				def = (sym->st_info>>4) == STB_LOCAL
					? (struct symdef){ .dso = dso, .sym = sym }
					: dso != &ldso ? find_sym_by_saved_so_list(type, ctx, &vinfo, type==REL_PLT, dso)
					: find_sym2(ctx, &vinfo, type==REL_PLT, 0, dso->namespace);
				dso->cache_sym_index = sym_index;
				dso->cache_dso = def.dso;
				dso->cache_sym = def.sym;
			}

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			if (!def.sym && (sym->st_shndx != SHN_UNDEF
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				|| sym->st_info>>4 != STB_WEAK)) {
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				if (dso->lazy && (type==REL_PLT || type==REL_GOT)) {
					dso->lazy[3*dso->lazy_cnt+0] = rel[0];
					dso->lazy[3*dso->lazy_cnt+1] = rel[1];
					dso->lazy[3*dso->lazy_cnt+2] = addend;
					dso->lazy_cnt++;
					continue;
				}
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				LD_LOGE("relocating failed: symbol not found. "
					"dso=%{public}s s=%{public}s use_vna_hash=%{public}d van_hash=%{public}x",
					dso->name, name, vinfo.use_vna_hash, vinfo.vna_hash);
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				error("Error relocating %s: %s: symbol not found",
					dso->name, name);
				if (runtime) longjmp(*rtld_fail, 1);
				continue;
			}
		} else {
			sym = 0;
			def.sym = 0;
			def.dso = dso;
		}

		sym_val = def.sym ? (size_t)laddr(def.dso, def.sym->st_value) : 0;
		tls_val = def.sym ? def.sym->st_value : 0;

		if ((type == REL_TPOFF || type == REL_TPOFF_NEG)
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			&& def.dso->tls_id > static_tls_cnt) {
976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038
			error("Error relocating %s: %s: initial-exec TLS "
				"resolves to dynamic definition in %s",
				dso->name, name, def.dso->name);
			longjmp(*rtld_fail, 1);
		}

		switch(type) {
		case REL_NONE:
			break;
		case REL_OFFSET:
			addend -= (size_t)reloc_addr;
		case REL_SYMBOLIC:
		case REL_GOT:
		case REL_PLT:
			*reloc_addr = sym_val + addend;
			break;
		case REL_USYMBOLIC:
			memcpy(reloc_addr, &(size_t){sym_val + addend}, sizeof(size_t));
			break;
		case REL_RELATIVE:
			*reloc_addr = (size_t)base + addend;
			break;
		case REL_SYM_OR_REL:
			if (sym) *reloc_addr = sym_val + addend;
			else *reloc_addr = (size_t)base + addend;
			break;
		case REL_COPY:
			memcpy(reloc_addr, (void *)sym_val, sym->st_size);
			break;
		case REL_OFFSET32:
			*(uint32_t *)reloc_addr = sym_val + addend
				- (size_t)reloc_addr;
			break;
		case REL_FUNCDESC:
			*reloc_addr = def.sym ? (size_t)(def.dso->funcdescs
				+ (def.sym - def.dso->syms)) : 0;
			break;
		case REL_FUNCDESC_VAL:
			if ((sym->st_info&0xf) == STT_SECTION) *reloc_addr += sym_val;
			else *reloc_addr = sym_val;
			reloc_addr[1] = def.sym ? (size_t)def.dso->got : 0;
			break;
		case REL_DTPMOD:
			*reloc_addr = def.dso->tls_id;
			break;
		case REL_DTPOFF:
			*reloc_addr = tls_val + addend - DTP_OFFSET;
			break;
#ifdef TLS_ABOVE_TP
		case REL_TPOFF:
			*reloc_addr = tls_val + def.dso->tls.offset + TPOFF_K + addend;
			break;
#else
		case REL_TPOFF:
			*reloc_addr = tls_val - def.dso->tls.offset + addend;
			break;
		case REL_TPOFF_NEG:
			*reloc_addr = def.dso->tls.offset - tls_val + addend;
			break;
#endif
		case REL_TLSDESC:
			if (stride<3) addend = reloc_addr[1];
			if (def.dso->tls_id > static_tls_cnt) {
1039
				struct td_index *new = internal_malloc(sizeof *new);
1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091
				if (!new) {
					error(
					"Error relocating %s: cannot allocate TLSDESC for %s",
					dso->name, sym ? name : "(local)" );
					longjmp(*rtld_fail, 1);
				}
				new->next = dso->td_index;
				dso->td_index = new;
				new->args[0] = def.dso->tls_id;
				new->args[1] = tls_val + addend - DTP_OFFSET;
				reloc_addr[0] = (size_t)__tlsdesc_dynamic;
				reloc_addr[1] = (size_t)new;
			} else {
				reloc_addr[0] = (size_t)__tlsdesc_static;
#ifdef TLS_ABOVE_TP
				reloc_addr[1] = tls_val + def.dso->tls.offset
					+ TPOFF_K + addend;
#else
				reloc_addr[1] = tls_val - def.dso->tls.offset
					+ addend;
#endif
			}
#ifdef TLSDESC_BACKWARDS
			/* Some archs (32-bit ARM at least) invert the order of
			 * the descriptor members. Fix them up here. */
			size_t tmp = reloc_addr[0];
			reloc_addr[0] = reloc_addr[1];
			reloc_addr[1] = tmp;
#endif
			break;
		default:
			error("Error relocating %s: unsupported relocation type %d",
				dso->name, type);
			if (runtime) longjmp(*rtld_fail, 1);
			continue;
		}
	}
}

static void redo_lazy_relocs()
{
	struct dso *p = lazy_head, *next;
	lazy_head = 0;
	for (; p; p=next) {
		next = p->lazy_next;
		size_t size = p->lazy_cnt*3*sizeof(size_t);
		p->lazy_cnt = 0;
		do_relocs(p, p->lazy, size, 3);
		if (p->lazy_cnt) {
			p->lazy_next = lazy_head;
			lazy_head = p;
		} else {
1092
			internal_free(p->lazy);
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 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161
			p->lazy = 0;
			p->lazy_next = 0;
		}
	}
}

/* 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. */

static void reclaim(struct dso *dso, size_t start, size_t end)
{
	if (start >= dso->relro_start && start < dso->relro_end) start = dso->relro_end;
	if (end   >= dso->relro_start && end   < dso->relro_end) end = dso->relro_start;
	if (start >= end) return;
	char *base = laddr_pg(dso, start);
	__malloc_donate(base, base+(end-start));
}

static void reclaim_gaps(struct dso *dso)
{
	Phdr *ph = dso->phdr;
	size_t phcnt = dso->phnum;

	for (; phcnt--; ph=(void *)((char *)ph+dso->phentsize)) {
		if (ph->p_type!=PT_LOAD) continue;
		if ((ph->p_flags&(PF_R|PF_W))!=(PF_R|PF_W)) continue;
		reclaim(dso, ph->p_vaddr & -PAGE_SIZE, ph->p_vaddr);
		reclaim(dso, ph->p_vaddr+ph->p_memsz,
			ph->p_vaddr+ph->p_memsz+PAGE_SIZE-1 & -PAGE_SIZE);
	}
}

static void *mmap_fixed(void *p, size_t n, int prot, int flags, int fd, off_t off)
{
	static int no_map_fixed;
	char *q;
	if (!no_map_fixed) {
		q = mmap(p, n, prot, flags|MAP_FIXED, fd, off);
		if (!DL_NOMMU_SUPPORT || q != MAP_FAILED || errno != EINVAL)
			return q;
		no_map_fixed = 1;
	}
	/* Fallbacks for MAP_FIXED failure on NOMMU kernels. */
	if (flags & MAP_ANONYMOUS) {
		memset(p, 0, n);
		return p;
	}
	ssize_t r;
	if (lseek(fd, off, SEEK_SET) < 0) return MAP_FAILED;
	for (q=p; n; q+=r, off+=r, n-=r) {
		r = read(fd, q, n);
		if (r < 0 && errno != EINTR) return MAP_FAILED;
		if (!r) {
			memset(q, 0, n);
			break;
		}
	}
	return p;
}

static void unmap_library(struct dso *dso)
{
	if (dso->loadmap) {
		size_t i;
		for (i=0; i<dso->loadmap->nsegs; i++) {
			if (!dso->loadmap->segs[i].p_memsz)
				continue;
1162 1163 1164 1165 1166 1167 1168
			if (!is_dlclose_debug_enable()) {
				munmap((void *)dso->loadmap->segs[i].addr,
					dso->loadmap->segs[i].p_memsz);
			} else {
				(void)mprotect((void *)dso->loadmap->segs[i].addr,
					dso->loadmap->segs[i].p_memsz, PROT_NONE);
			}
1169
		}
1170
		internal_free(dso->loadmap);
1171
	} else if (dso->map && dso->map_len) {
1172 1173 1174 1175 1176
		if (!is_dlclose_debug_enable()) {
			munmap(dso->map, dso->map_len);
		} else {
			mprotect(dso->map, dso->map_len, PROT_NONE);
		}
1177 1178 1179
	}
}

1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216
static bool get_random(void *buf, size_t buflen)
{
	int ret;
	int fd = open("/dev/urandom", O_RDONLY);
	if (fd < 0) {
		return false;
	}

	ret = read(fd, buf, buflen);
	if (ret < 0) {
		close(fd);
		return false;
	}

	close(fd);
	return true;
}

static void fill_random_data(void *buf, size_t buflen)
{
	uint64_t x;
	int i;
	int pos = 0;
	struct timespec ts;
	/* Try to use urandom to get the random number first */
	if (!get_random(buf, buflen)) {
		/* Can't get random number from /dev/urandom, generate from addr based on ASLR and time */
		for (i = 1; i <= (buflen / sizeof(x)); i++) {
			(void)clock_gettime(CLOCK_REALTIME, &ts);
			x = (((uint64_t)get_random) << 32) ^ (uint64_t)fill_random_data ^ ts.tv_nsec;
			memcpy((char *)buf + pos, &x, sizeof(x));
			pos += sizeof(x);
		}
	}
	return;
}

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static void *map_library(int fd, struct dso *dso, struct reserved_address_params *reserved_params)
1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232
{
	Ehdr buf[(896+sizeof(Ehdr))/sizeof(Ehdr)];
	void *allocated_buf=0;
	size_t phsize;
	size_t addr_min=SIZE_MAX, addr_max=0, map_len;
	size_t this_min, this_max;
	size_t nsegs = 0;
	off_t off_start;
	Ehdr *eh;
	Phdr *ph, *ph0;
	unsigned prot;
	unsigned char *map=MAP_FAILED, *base;
	size_t dyn=0;
	size_t tls_image=0;
	size_t i;
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	int map_flags = MAP_PRIVATE;
	size_t start_addr;
1235 1236 1237 1238 1239 1240 1241 1242

	ssize_t l = read(fd, buf, sizeof buf);
	eh = buf;
	if (l<0) return 0;
	if (l<sizeof *eh || (eh->e_type != ET_DYN && eh->e_type != ET_EXEC))
		goto noexec;
	phsize = eh->e_phentsize * eh->e_phnum;
	if (phsize > sizeof buf - sizeof *eh) {
1243
		allocated_buf = internal_malloc(phsize);
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		if (!allocated_buf) return 0;
		l = pread(fd, allocated_buf, phsize, eh->e_phoff);
		if (l < 0) goto error;
		if (l != phsize) goto noexec;
		ph = ph0 = allocated_buf;
	} else if (eh->e_phoff + phsize > l) {
		l = pread(fd, buf+1, phsize, eh->e_phoff);
		if (l < 0) goto error;
		if (l != phsize) goto noexec;
		ph = ph0 = (void *)(buf + 1);
	} else {
		ph = ph0 = (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;
		} else 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;
		} else if (ph->p_type == PT_GNU_RELRO) {
			dso->relro_start = ph->p_vaddr & -PAGE_SIZE;
			dso->relro_end = (ph->p_vaddr + ph->p_memsz) & -PAGE_SIZE;
		} else if (ph->p_type == PT_GNU_STACK) {
			if (!runtime && ph->p_memsz > __default_stacksize) {
				__default_stacksize =
					ph->p_memsz < DEFAULT_STACK_MAX ?
					ph->p_memsz : DEFAULT_STACK_MAX;
			}
		}
		if (ph->p_type != PT_LOAD) continue;
		nsegs++;
		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) goto noexec;
	if (DL_FDPIC && !(eh->e_flags & FDPIC_CONSTDISP_FLAG)) {
1290
		dso->loadmap = internal_calloc(1, sizeof *dso->loadmap
1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
			+ nsegs * sizeof *dso->loadmap->segs);
		if (!dso->loadmap) goto error;
		dso->loadmap->nsegs = nsegs;
		for (ph=ph0, i=0; i<nsegs; ph=(void *)((char *)ph+eh->e_phentsize)) {
			if (ph->p_type != PT_LOAD) continue;
			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));
			map = mmap(0, ph->p_memsz + (ph->p_vaddr & PAGE_SIZE-1),
				prot, MAP_PRIVATE,
				fd, ph->p_offset & -PAGE_SIZE);
			if (map == MAP_FAILED) {
				unmap_library(dso);
				goto error;
			}
			dso->loadmap->segs[i].addr = (size_t)map +
				(ph->p_vaddr & PAGE_SIZE-1);
			dso->loadmap->segs[i].p_vaddr = ph->p_vaddr;
			dso->loadmap->segs[i].p_memsz = ph->p_memsz;
			i++;
			if (prot & PROT_WRITE) {
				size_t brk = (ph->p_vaddr & PAGE_SIZE-1)
					+ ph->p_filesz;
				size_t pgbrk = brk + PAGE_SIZE-1 & -PAGE_SIZE;
				size_t pgend = brk + ph->p_memsz - ph->p_filesz
					+ PAGE_SIZE-1 & -PAGE_SIZE;
				if (pgend > pgbrk && mmap_fixed(map+pgbrk,
					pgend-pgbrk, prot,
					MAP_PRIVATE|MAP_FIXED|MAP_ANONYMOUS,
					-1, off_start) == MAP_FAILED)
					goto error;
				memset(map + brk, 0, pgbrk-brk);
			}
		}
		map = (void *)dso->loadmap->segs[0].addr;
		map_len = 0;
		goto done_mapping;
	}
	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;
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	start_addr = addr_min;
	if (reserved_params) {
		if (map_len > reserved_params->reserved_size) {
			if (reserved_params->must_use_reserved) {
				goto error;
			}
		} else {
			start_addr = ((size_t)reserved_params->start_addr - 1 + PAGE_SIZE) & -PAGE_SIZE;
			map_flags |= MAP_FIXED;
		}
	}
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	/* we will find a LIBRARY_ALIGNMENT aligned address as the start of dso
	 * so we need a tmp_map_len as map_len + LIBRARY_ALIGNMENT to make sure
D
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	 * we have enough space to shift the dso to the correct location. */
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1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383
	size_t tmp_map_len = ALIGN(map_len, LIBRARY_ALIGNMENT) + LIBRARY_ALIGNMENT - PAGE_SIZE;

	/* if reserved_params exists, we should use start_addr as prefered result to do the mmap operation */
	if (reserved_params) {
		map = DL_NOMMU_SUPPORT
			? mmap((void *)start_addr, map_len, PROT_READ | PROT_WRITE | PROT_EXEC, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0)
			: mmap((void *)start_addr, map_len, prot, map_flags, fd, off_start);
		if (map == MAP_FAILED) {
			goto error;
		}
		if (reserved_params && map_len < reserved_params->reserved_size) {
			reserved_params->reserved_size -= (map_len + (start_addr - (size_t)reserved_params->start_addr));
			reserved_params->start_addr = (void *)((uint8_t *)map + map_len);
		}
	/* if reserved_params does not exist, we should use real_map as prefered result to do the mmap operation */
	} else {
		/* use tmp_map_len to mmap enough space for the dso with anonymous mapping */
		unsigned char *temp_map = mmap((void *)NULL, tmp_map_len, PROT_NONE, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
		if (temp_map == MAP_FAILED) {
			goto error;
		}

		/* find the LIBRARY_ALIGNMENT aligned address */
		unsigned char *real_map = (unsigned char*)ALIGN((uintptr_t)temp_map, LIBRARY_ALIGNMENT);

		/* mummap the space we mmap before so that we can mmap correct space again */
		munmap(temp_map, tmp_map_len);

		map = DL_NOMMU_SUPPORT
			? mmap(real_map, map_len, PROT_READ | PROT_WRITE | PROT_EXEC, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0)
			/* use map_len to mmap correct space for the dso with file mapping */
			: mmap(real_map, map_len, prot, map_flags, fd, off_start);
		if (map == MAP_FAILED) {
			goto error;
		}
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	}
1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396
	dso->map = map;
	dso->map_len = map_len;
	/* If the loaded file is not relocatable and the requested address is
	 * not available, then the load operation must fail. */
	if (eh->e_type != ET_DYN && addr_min && map!=(void *)addr_min) {
		errno = EBUSY;
		goto error;
	}
	base = map - addr_min;
	dso->phdr = 0;
	dso->phnum = 0;
	for (ph=ph0, i=eh->e_phnum; i; i--, ph=(void *)((char *)ph+eh->e_phentsize)) {
1397 1398 1399 1400
		if (ph->p_type == PT_OHOS_RANDOMDATA) {
			fill_random_data((void *)(ph->p_vaddr + base), ph->p_memsz);
			continue;
		}
1401 1402 1403 1404
		if (ph->p_type != PT_LOAD) continue;
		/* Check if the programs headers are in this load segment, and
		 * if so, record the address for use by dl_iterate_phdr. */
		if (!dso->phdr && eh->e_phoff >= ph->p_offset
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			&& eh->e_phoff+phsize <= ph->p_offset+ph->p_filesz) {
1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431
			dso->phdr = (void *)(base + ph->p_vaddr
				+ (eh->e_phoff-ph->p_offset));
			dso->phnum = eh->e_phnum;
			dso->phentsize = eh->e_phentsize;
		}
		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));
		/* Reuse the existing mapping for the lowest-address LOAD */
		if ((ph->p_vaddr & -PAGE_SIZE) != addr_min || DL_NOMMU_SUPPORT)
			if (mmap_fixed(base+this_min, this_max-this_min, prot, MAP_PRIVATE|MAP_FIXED, fd, off_start) == MAP_FAILED)
				goto error;
		if (ph->p_memsz > ph->p_filesz && (ph->p_flags&PF_W)) {
			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);
			if (pgbrk-(size_t)base < this_max && mmap_fixed((void *)pgbrk, (size_t)base+this_max-pgbrk, prot, MAP_PRIVATE|MAP_FIXED|MAP_ANONYMOUS, -1, 0) == MAP_FAILED)
				goto error;
		}
	}
	for (i=0; ((size_t *)(base+dyn))[i]; i+=2)
		if (((size_t *)(base+dyn))[i]==DT_TEXTREL) {
			if (mprotect(map, map_len, PROT_READ|PROT_WRITE|PROT_EXEC)
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				&& errno != ENOSYS)
1433 1434 1435 1436 1437 1438 1439
				goto error;
			break;
		}
done_mapping:
	dso->base = base;
	dso->dynv = laddr(dso, dyn);
	if (dso->tls.size) dso->tls.image = laddr(dso, tls_image);
1440
	internal_free(allocated_buf);
1441 1442 1443 1444 1445
	return map;
noexec:
	errno = ENOEXEC;
error:
	if (map!=MAP_FAILED) unmap_library(dso);
1446
	internal_free(allocated_buf);
1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534
	return 0;
}

static int path_open(const char *name, const char *s, char *buf, size_t buf_size)
{
	size_t l;
	int fd;
	for (;;) {
		s += strspn(s, ":\n");
		l = strcspn(s, ":\n");
		if (l-1 >= INT_MAX) return -1;
		if (snprintf(buf, buf_size, "%.*s/%s", (int)l, s, name) < buf_size) {
			if ((fd = open(buf, O_RDONLY|O_CLOEXEC))>=0) return fd;
			switch (errno) {
			case ENOENT:
			case ENOTDIR:
			case EACCES:
			case ENAMETOOLONG:
				break;
			default:
				/* Any negative value but -1 will inhibit
				 * futher path search. */
				return -2;
			}
		}
		s += l;
	}
}

static int fixup_rpath(struct dso *p, char *buf, size_t buf_size)
{
	size_t n, l;
	const char *s, *t, *origin;
	char *d;
	if (p->rpath || !p->rpath_orig) return 0;
	if (!strchr(p->rpath_orig, '$')) {
		p->rpath = p->rpath_orig;
		return 0;
	}
	n = 0;
	s = p->rpath_orig;
	while ((t=strchr(s, '$'))) {
		if (strncmp(t, "$ORIGIN", 7) && strncmp(t, "${ORIGIN}", 9))
			return 0;
		s = t+1;
		n++;
	}
	if (n > SSIZE_MAX/PATH_MAX) return 0;

	if (p->kernel_mapped) {
		/* $ORIGIN searches cannot be performed for the main program
		 * when it is suid/sgid/AT_SECURE. This is because the
		 * pathname is under the control of the caller of execve.
		 * For libraries, however, $ORIGIN can be processed safely
		 * since the library's pathname came from a trusted source
		 * (either system paths or a call to dlopen). */
		if (libc.secure)
			return 0;
		l = readlink("/proc/self/exe", buf, buf_size);
		if (l == -1) switch (errno) {
		case ENOENT:
		case ENOTDIR:
		case EACCES:
			break;
		default:
			return -1;
		}
		if (l >= buf_size)
			return 0;
		buf[l] = 0;
		origin = buf;
	} else {
		origin = p->name;
	}
	t = strrchr(origin, '/');
	if (t) {
		l = t-origin;
	} else {
		/* Normally p->name will always be an absolute or relative
		 * pathname containing at least one '/' character, but in the
		 * case where ldso was invoked as a command to execute a
		 * program in the working directory, app.name may not. Fix. */
		origin = ".";
		l = 1;
	}
	/* Disallow non-absolute origins for suid/sgid/AT_SECURE. */
	if (libc.secure && *origin != '/')
		return 0;
1535
	p->rpath = internal_malloc(strlen(p->rpath_orig) + n*l + 1);
1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570
	if (!p->rpath) return -1;

	d = p->rpath;
	s = p->rpath_orig;
	while ((t=strchr(s, '$'))) {
		memcpy(d, s, t-s);
		d += t-s;
		memcpy(d, origin, l);
		d += l;
		/* It was determined previously that the '$' is followed
		 * either by "ORIGIN" or "{ORIGIN}". */
		s = t + 7 + 2*(t[1]=='{');
	}
	strcpy(d, s);
	return 0;
}

static void decode_dyn(struct dso *p)
{
	size_t dyn[DYN_CNT];
	decode_vec(p->dynv, dyn, DYN_CNT);
	p->syms = laddr(p, dyn[DT_SYMTAB]);
	p->strings = laddr(p, dyn[DT_STRTAB]);
	if (dyn[0]&(1<<DT_HASH))
		p->hashtab = laddr(p, dyn[DT_HASH]);
	if (dyn[0]&(1<<DT_RPATH))
		p->rpath_orig = p->strings + dyn[DT_RPATH];
	if (dyn[0]&(1<<DT_RUNPATH))
		p->rpath_orig = p->strings + dyn[DT_RUNPATH];
	if (dyn[0]&(1<<DT_PLTGOT))
		p->got = laddr(p, dyn[DT_PLTGOT]);
	if (search_vec(p->dynv, dyn, DT_GNU_HASH))
		p->ghashtab = laddr(p, *dyn);
	if (search_vec(p->dynv, dyn, DT_VERSYM))
		p->versym = laddr(p, *dyn);
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	if (search_vec(p->dynv, dyn, DT_VERDEF))
		p->verdef = laddr(p, *dyn);
	if (search_vec(p->dynv, dyn, DT_VERNEED))
		p->verneed = laddr(p, *dyn);
1575 1576
}

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size_t count_syms(struct dso *p)
1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617
{
	if (p->hashtab) return p->hashtab[1];

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

static void *dl_mmap(size_t n)
{
	void *p;
	int prot = PROT_READ|PROT_WRITE, flags = MAP_ANONYMOUS|MAP_PRIVATE;
#ifdef SYS_mmap2
	p = (void *)__syscall(SYS_mmap2, 0, n, prot, flags, -1, 0);
#else
	p = (void *)__syscall(SYS_mmap, 0, n, prot, flags, -1, 0);
#endif
	return (unsigned long)p > -4096UL ? 0 : p;
}

static void makefuncdescs(struct dso *p)
{
	static int self_done;
	size_t nsym = count_syms(p);
	size_t i, size = nsym * sizeof(*p->funcdescs);

	if (!self_done) {
		p->funcdescs = dl_mmap(size);
		self_done = 1;
	} else {
1618
		p->funcdescs = internal_malloc(size);
1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635
	}
	if (!p->funcdescs) {
		if (!runtime) a_crash();
		error("Error allocating function descriptors for %s", p->name);
		longjmp(*rtld_fail, 1);
	}
	for (i=0; i<nsym; i++) {
		if ((p->syms[i].st_info&0xf)==STT_FUNC && p->syms[i].st_shndx) {
			p->funcdescs[i].addr = laddr(p, p->syms[i].st_value);
			p->funcdescs[i].got = p->got;
		} else {
			p->funcdescs[i].addr = 0;
			p->funcdescs[i].got = 0;
		}
	}
}

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static void get_sys_path(ns_configor *conf)
{ 
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	LD_LOGD("get_sys_path g_is_asan:%{public}d", g_is_asan);
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	/* Use ini file's system paths when Asan is not enabled */
	if (!g_is_asan) {
		sys_path = conf->get_sys_paths();
	} else {
		/* Use ini file's asan system paths when the Asan is enabled
		 * Merge two strings when both sys_paths and asan_sys_paths are valid */
		sys_path = conf->get_asan_sys_paths();
		char *sys_path_default = conf->get_sys_paths();
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		if (!sys_path) {
			sys_path = sys_path_default;
		} else if (sys_path_default) {
			size_t newlen = strlen(sys_path) + strlen(sys_path_default) + 2;
1651
			char *new_syspath = internal_malloc(newlen);
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			memset(new_syspath, 0, newlen);
			strcpy(new_syspath, sys_path);
			strcat(new_syspath, ":");
			strcat(new_syspath, sys_path_default);
			sys_path = new_syspath;
		}
	}
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	if (!sys_path) sys_path = "/lib:/usr/local/lib:/usr/lib:/lib64";
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	LD_LOGD("get_sys_path sys_path:%{public}s", sys_path);
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}

static struct dso *search_dso_by_name(const char *name, const ns_t *ns) {
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	LD_LOGD("search_dso_by_name name:%{public}s, ns_name:%{public}s", name, ns ? ns->ns_name: "NULL");
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	for (size_t i = 0; i < ns->ns_dsos->num; i++){
		struct dso *p = ns->ns_dsos->dsos[i];
		if (p->shortname && !strcmp(p->shortname, name)) {
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			LD_LOGD("search_dso_by_name found name:%{public}s, ns_name:%{public}s", name, ns ? ns->ns_name: "NULL");
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			return p;
		}
	}
	return NULL;
}

1675
static struct dso *search_dso_by_fstat(const struct stat *st, const ns_t *ns, uint64_t file_offset) {
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	LD_LOGD("search_dso_by_fstat ns_name:%{public}s", ns ? ns->ns_name : "NULL");
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	for (size_t i = 0; i < ns->ns_dsos->num; i++){
		struct dso *p = ns->ns_dsos->dsos[i];
1679
		if (p->dev == st->st_dev && p->ino == st->st_ino && p->file_offset == file_offset) {
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			LD_LOGD("search_dso_by_fstat found dev:%{public}lu, ino:%{public}lu, ns_name:%{public}s",
				st->st_dev, st->st_ino, ns ? ns->ns_name : "NULL");
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			return p;
		}
	}
	return NULL;
}
/* Find loaded so by name */
static struct dso *find_library_by_name(const char *name, const ns_t *ns, bool check_inherited)
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{
	LD_LOGD("find_library_by_name name:%{public}s, ns_name:%{public}s, check_inherited:%{public}d",
		name,
		ns ? ns->ns_name : "NULL",
		!!check_inherited);
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	struct dso *p = search_dso_by_name(name, ns);
	if (p) return p;
	if (check_inherited && ns->ns_inherits) {
		for (size_t i = 0; i < ns->ns_inherits->num; i++){
			ns_inherit * inherit = ns->ns_inherits->inherits[i];
			p = search_dso_by_name(name, inherit->inherited_ns);
			if (p && is_sharable(inherit, name)) return p;
		}
	}
	return NULL;
}
/* Find loaded so by file stat */
1706
static struct dso *find_library_by_fstat(const struct stat *st, const ns_t *ns, bool check_inherited, uint64_t file_offset) {
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	LD_LOGD("find_library_by_fstat ns_name:%{public}s, check_inherited :%{public}d",
		ns ? ns->ns_name : "NULL",
		!!check_inherited);
1710
	struct dso *p = search_dso_by_fstat(st, ns, file_offset);
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	if (p) return p;
	if (check_inherited && ns->ns_inherits) {
		for (size_t i = 0; i < ns->ns_inherits->num; i++){
			ns_inherit *inherit = ns->ns_inherits->inherits[i];
1715
			p = search_dso_by_fstat(st, inherit->inherited_ns, file_offset);
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			if (p && is_sharable(inherit, p->shortname)) return p;
		}
	}
	return NULL;
}
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#ifndef LOAD_ORDER_RANDOMIZATION
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/* add namespace function */
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struct dso *load_library(
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	const char *name, struct dso *needed_by, ns_t *namespace, bool check_inherited, struct reserved_address_params *reserved_params)
1726
{
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	char buf[PATH_MAX+1];
1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773
	const char *pathname;
	unsigned char *map;
	struct dso *p, temp_dso = {0};
	int fd;
	struct stat st;
	size_t alloc_size;
	int n_th = 0;
	int is_self = 0;

	if (!*name) {
		errno = EINVAL;
		return 0;
	}

	/* Catch and block attempts to reload the implementation itself */
	if (name[0]=='l' && name[1]=='i' && name[2]=='b') {
		static const char reserved[] =
			"c.pthread.rt.m.dl.util.xnet.";
		const char *rp, *next;
		for (rp=reserved; *rp; rp=next) {
			next = strchr(rp, '.') + 1;
			if (strncmp(name+3, rp, next-rp) == 0)
				break;
		}
		if (*rp) {
			if (ldd_mode) {
				/* Track which names have been resolved
				 * and only report each one once. */
				static unsigned reported;
				unsigned mask = 1U<<(rp-reserved);
				if (!(reported & mask)) {
					reported |= mask;
					dprintf(1, "\t%s => %s (%p)\n",
						name, ldso.name,
						ldso.base);
				}
			}
			is_self = 1;
		}
	}
	if (!strcmp(name, ldso.name)) is_self = 1;
	if (is_self) {
		if (!ldso.prev) {
			tail->next = &ldso;
			ldso.prev = tail;
			tail = &ldso;
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			ldso.namespace = namespace;
			ns_add_dso(namespace, &ldso);
1776 1777 1778 1779 1780
		}
		return &ldso;
	}
	if (strchr(name, '/')) {
		pathname = name;
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		if (!is_accessible(namespace, pathname, g_is_asan, check_inherited)) {
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			fd = -1;
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			LD_LOGD("load_library is_accessible return false,fd = -1");
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		} else {
			fd = open(name, O_RDONLY|O_CLOEXEC);
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			LD_LOGD("load_library is_accessible return true, open file fd:%{public}d .", fd);
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		}
1789 1790
	} else {
		/* Search for the name to see if it's already loaded */
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		/* Search in namespace */
		p = find_library_by_name(name, namespace, check_inherited);
		if (p) {
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			LD_LOGD("load_library find_library_by_name found p, return it!");
Y
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			return p;
1796
		}
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		if (strlen(name) > NAME_MAX) {
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			LD_LOGE("load_library name exceeding the maximum length, return 0!");
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			return 0;
		}
1801
		fd = -1;
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		if (namespace->env_paths) fd = path_open(name, namespace->env_paths, buf, sizeof buf);
		for (p = needed_by; fd == -1 && p; p = p->needed_by) {
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			if (fixup_rpath(p, buf, sizeof buf) < 0) {
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				LD_LOGD("load_library Inhibit further search,fd = -2.");
1806
				fd = -2; /* Inhibit further search. */
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			}
			if (p->rpath) {
1809
				fd = path_open(name, p->rpath, buf, sizeof buf);
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				LD_LOGD("load_library  p->rpath path_open fd:%{public}d.", fd);
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			}

1813
		}
W
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		if (g_is_asan) {
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			fd = handle_asan_path_open(fd, name, namespace, buf, sizeof buf);
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			LD_LOGD("load_library handle_asan_path_open fd:%{public}d.", fd);
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		} else {
			if (fd == -1 && namespace->lib_paths) {
				fd = path_open(name, namespace->lib_paths, buf, sizeof buf);
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				LD_LOGD("load_library no asan lib_paths path_open fd:%{public}d.", fd);
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			}
1822 1823
		}
		pathname = buf;
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		LD_LOGD("load_library lib_paths pathname:%{public}s.", pathname);
1825
	}
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	if (fd < 0) {
		if (!check_inherited || !namespace->ns_inherits) return 0;
		/* Load lib in inherited namespace. Do not check inherited again.*/
		for (size_t i = 0; i < namespace->ns_inherits->num; i++) {
			ns_inherit *inherit = namespace->ns_inherits->inherits[i];
			if (strchr(name, '/')==0 && !is_sharable(inherit, name)) continue;
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			p = load_library(name, needed_by, inherit->inherited_ns, false, reserved_params);
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			if (p) {
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				LD_LOGD("load_library search in inherited, found p ,inherited_ns name:%{public}s",
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						inherit->inherited_ns->ns_name);
				return p;
			}
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		}
		return 0;
	}
1841 1842
	if (fstat(fd, &st) < 0) {
		close(fd);
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		LD_LOGE("load_library fstat < 0,return 0!");
1844 1845
		return 0;
	}
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	/* Search in namespace */
1847
	p = find_library_by_fstat(&st, namespace, check_inherited, 0);
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	if (p) {
		/* 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. */
		if (!p->shortname && pathname != name)
			p->shortname = strrchr(p->name, '/')+1;
		close(fd);
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		LD_LOGD("load_library find_library_by_fstat, found p and return it!");
Y
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		return p;
1857
	}
W
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	map = noload ? 0 : map_library(fd, &temp_dso, reserved_params);
1859 1860 1861 1862 1863 1864 1865 1866 1867
	close(fd);
	if (!map) return 0;

	/* Avoid the danger of getting two versions of libc mapped into the
	 * same process when an absolute pathname was used. The symbols
	 * checked are chosen to catch both musl and glibc, and to avoid
	 * false positives from interposition-hack libraries. */
	decode_dyn(&temp_dso);
	if (find_sym(&temp_dso, "__libc_start_main", 1).sym &&
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		find_sym(&temp_dso, "stdin", 1).sym) {
1869
		unmap_library(&temp_dso);
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		return load_library("libc.so", needed_by, namespace, true, reserved_params);
1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889
	}
	/* Past this point, if we haven't reached runtime yet, ldso has
	 * committed either to use the mapped library or to abort execution.
	 * Unmapping is not possible, so we can safely reclaim gaps. */
	if (!runtime) reclaim_gaps(&temp_dso);

	/* 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;
	}
1890
	p = internal_calloc(1, alloc_size);
1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928
	if (!p) {
		unmap_library(&temp_dso);
		return 0;
	}
	memcpy(p, &temp_dso, sizeof temp_dso);
	p->dev = st.st_dev;
	p->ino = st.st_ino;
	p->needed_by = needed_by;
	p->name = p->buf;
	p->runtime_loaded = runtime;
	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;
	if (p->tls.image) {
		p->tls_id = ++tls_cnt;
		tls_align = MAXP2(tls_align, p->tls.align);
#ifdef TLS_ABOVE_TP
		p->tls.offset = tls_offset + ( (p->tls.align-1) &
			(-tls_offset + (uintptr_t)p->tls.image) );
		tls_offset = p->tls.offset + p->tls.size;
#else
		tls_offset += p->tls.size + p->tls.align - 1;
		tls_offset -= (tls_offset + (uintptr_t)p->tls.image)
			& (p->tls.align-1);
		p->tls.offset = tls_offset;
#endif
		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));
		if (tls_tail) tls_tail->next = &p->tls;
		else libc.tls_head = &p->tls;
		tls_tail = &p->tls;
	}

	tail->next = p;
	p->prev = tail;
	tail = p;

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	/* Add dso to namespace */
	p->namespace = namespace;
	ns_add_dso(namespace, p);
1932 1933 1934 1935 1936 1937 1938 1939 1940 1941
	if (runtime)
		p->by_dlopen = 1;

	if (DL_FDPIC) makefuncdescs(p);

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

	return p;
}

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static void load_direct_deps(struct dso *p, ns_t *namespace, struct reserved_address_params *reserved_params)
1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955
{
	size_t i, cnt=0;

	if (p->deps) return;
	/* For head, all preloads are direct pseudo-dependencies.
	 * Count and include them now to avoid realloc later. */
	if (p==head) for (struct dso *q=p->next; q; q=q->next)
		cnt++;
	for (i=0; p->dynv[i]; i+=2)
		if (p->dynv[i] == DT_NEEDED) cnt++;
	/* Use builtin buffer for apps with no external deps, to
	 * preserve property of no runtime failure paths. */
	p->deps = (p==head && cnt<2) ? builtin_deps :
1956
		internal_calloc(cnt+1, sizeof *p->deps);
1957 1958 1959 1960 1961 1962 1963 1964 1965
	if (!p->deps) {
		error("Error loading dependencies for %s", p->name);
		if (runtime) longjmp(*rtld_fail, 1);
	}
	cnt=0;
	if (p==head) for (struct dso *q=p->next; q; q=q->next)
		p->deps[cnt++] = q;
	for (i=0; p->dynv[i]; i+=2) {
		if (p->dynv[i] != DT_NEEDED) continue;
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		struct dso *dep = load_library(p->strings + p->dynv[i+1], p, namespace, true, reserved_params);
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		LD_LOGD("loading shared library %{public}s: (needed by %{public}s)", p->strings + p->dynv[i+1], p->name);
1968 1969 1970 1971 1972 1973 1974 1975 1976 1977
		if (!dep) {
			error("Error loading shared library %s: %m (needed by %s)",
				p->strings + p->dynv[i+1], p->name);
			if (runtime) longjmp(*rtld_fail, 1);
			continue;
		}
		p->deps[cnt++] = dep;
	}
	p->deps[cnt] = 0;
	p->ndeps_direct = cnt;
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	for (i = 0; i < p->ndeps_direct; i++) {
		add_dso_parent(p->deps[i], p);
	}
1981 1982
}

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static void load_deps(struct dso *p, struct reserved_address_params *reserved_params)
1984 1985 1986
{
	if (p->deps) return;
	for (; p; p=p->next)
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		load_direct_deps(p, p->namespace, reserved_params);
1988
}
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#endif
1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017

static void extend_bfs_deps(struct dso *p)
{
	size_t i, j, cnt, ndeps_all;
	struct dso **tmp;

	/* Can't use realloc if the original p->deps was allocated at
	 * program entry and malloc has been replaced, or if it's
	 * the builtin non-allocated trivial main program deps array. */
	int no_realloc = (__malloc_replaced && !p->runtime_loaded)
		|| p->deps == builtin_deps;

	if (p->bfs_built) return;
	ndeps_all = p->ndeps_direct;

	/* Mark existing (direct) deps so they won't be duplicated. */
	for (i=0; p->deps[i]; i++)
		p->deps[i]->mark = 1;

	/* For each dependency already in the list, copy its list of direct
	 * dependencies to the list, excluding any items already in the
	 * list. Note that the list this loop iterates over will grow during
	 * the loop, but since duplicates are excluded, growth is bounded. */
	for (i=0; p->deps[i]; i++) {
		struct dso *dep = p->deps[i];
		for (j=cnt=0; j<dep->ndeps_direct; j++)
			if (!dep->deps[j]->mark) cnt++;
		tmp = no_realloc ? 
2018 2019
			internal_malloc(sizeof(*tmp) * (ndeps_all+cnt+1)) :
			internal_realloc(p->deps, sizeof(*tmp) * (ndeps_all+cnt+1));
2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041
		if (!tmp) {
			error("Error recording dependencies for %s", p->name);
			if (runtime) longjmp(*rtld_fail, 1);
			continue;
		}
		if (no_realloc) {
			memcpy(tmp, p->deps, sizeof(*tmp) * (ndeps_all+1));
			no_realloc = 0;
		}
		p->deps = tmp;
		for (j=0; j<dep->ndeps_direct; j++) {
			if (dep->deps[j]->mark) continue;
			dep->deps[j]->mark = 1;
			p->deps[ndeps_all++] = dep->deps[j];
		}
		p->deps[ndeps_all] = 0;
	}
	p->bfs_built = 1;
	for (p=head; p; p=p->next)
		p->mark = 0;
}

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#ifndef LOAD_ORDER_RANDOMIZATION
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static void load_preload(char *s, ns_t *ns)
2044 2045 2046 2047 2048 2049 2050 2051
{
	int tmp;
	char *z;
	for (z=s; *z; s=z) {
		for (   ; *s && (isspace(*s) || *s==':'); s++);
		for (z=s; *z && !isspace(*z) && *z!=':'; z++);
		tmp = *z;
		*z = 0;
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		load_library(s, 0, ns, true, NULL);
2053 2054 2055
		*z = tmp;
	}
}
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#endif
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static void add_syms(struct dso *p)
{
	if (!p->syms_next && syms_tail != p) {
		syms_tail->syms_next = p;
		syms_tail = p;
	}
}

static void revert_syms(struct dso *old_tail)
{
	struct dso *p, *next;
	/* Chop off the tail of the list of dsos that participate in
	 * the global symbol table, reverting them to RTLD_LOCAL. */
	for (p=old_tail; p; p=next) {
		next = p->syms_next;
		p->syms_next = 0;
	}
	syms_tail = old_tail;
}

static void do_mips_relocs(struct dso *p, size_t *got)
{
	size_t i, j, rel[2];
	unsigned char *base = p->base;
	i=0; search_vec(p->dynv, &i, DT_MIPS_LOCAL_GOTNO);
	if (p==&ldso) {
		got += i;
	} else {
		while (i--) *got++ += (size_t)base;
	}
	j=0; search_vec(p->dynv, &j, DT_MIPS_GOTSYM);
	i=0; search_vec(p->dynv, &i, DT_MIPS_SYMTABNO);
	Sym *sym = p->syms + j;
	rel[0] = (unsigned char *)got - base;
	for (i-=j; i; i--, sym++, rel[0]+=sizeof(size_t)) {
		rel[1] = R_INFO(sym-p->syms, R_MIPS_JUMP_SLOT);
		do_relocs(p, rel, sizeof rel, 2);
	}
}

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static uint8_t* sleb128_decoder(uint8_t* current, uint8_t* end, size_t* value)
{    
	size_t result = 0;
	static const size_t size = CHAR_BIT * sizeof(result);

	size_t shift = 0;
	uint8_t byte;

	do {
		if (current >= end) {
			a_crash();
		}

		byte = *current++;
		result |= ((size_t)(byte & 127) << shift);
		shift += 7;
	} while (byte & 128);

	if (shift < size && (byte & 64)) {
		result |= -((size_t)(1) << shift);
	}

	*value = result;
	
	return current;
}

static void do_android_relocs(struct dso *p, size_t dt_name, size_t dt_size)
{
	size_t android_rel_addr = 0, android_rel_size = 0;
	uint8_t *android_rel_curr, *android_rel_end;

	search_vec(p->dynv, &android_rel_addr, dt_name);
	search_vec(p->dynv, &android_rel_size, dt_size);

	if (!android_rel_addr || (android_rel_size < 4)) {
		return;
	}

	android_rel_curr = laddr(p, android_rel_addr);
	if (memcmp(android_rel_curr, "APS2", ANDROID_REL_SIGN_SIZE)) {
		return;
	}

	android_rel_curr += ANDROID_REL_SIGN_SIZE;
	android_rel_size -= ANDROID_REL_SIGN_SIZE;

	android_rel_end = android_rel_curr + android_rel_size;
	
	size_t relocs_num;
	size_t rel[3] = {0};

	android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &relocs_num);
	android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &rel[0]);

	for (size_t i = 0; i < relocs_num;) {

		size_t group_size, group_flags;

		android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &group_size);
		android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &group_flags);

		size_t group_r_offset_delta = 0;

		if (group_flags & RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG) {
			android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &group_r_offset_delta);
		}
		
		if (group_flags & RELOCATION_GROUPED_BY_INFO_FLAG) {
			android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &rel[1]);
		}

		const size_t addend_flags = group_flags & (RELOCATION_GROUP_HAS_ADDEND_FLAG | RELOCATION_GROUPED_BY_ADDEND_FLAG);

		if (addend_flags == RELOCATION_GROUP_HAS_ADDEND_FLAG) {
		} else if (addend_flags == (RELOCATION_GROUP_HAS_ADDEND_FLAG | RELOCATION_GROUPED_BY_ADDEND_FLAG)) {
			size_t addend;
			android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &addend);
			rel[2] += addend;
		} else {
			rel[2] = 0;
		}

		for (size_t j = 0; j < group_size; j++) {
			if (group_flags & RELOCATION_GROUPED_BY_OFFSET_DELTA_FLAG) {
				rel[0] += group_r_offset_delta;
			} else {
				size_t offset_detla;
				android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &offset_detla);

				rel[0] += offset_detla;
			}

			if ((group_flags & RELOCATION_GROUPED_BY_INFO_FLAG) == 0) {
				android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &rel[1]);
			}

			if (addend_flags == RELOCATION_GROUP_HAS_ADDEND_FLAG) {
				size_t addend;
				android_rel_curr = sleb128_decoder(android_rel_curr, android_rel_end, &addend);
				rel[2] += addend;
			}

			if (dt_name == DT_ANDROID_REL) {
				LD_LOGI("do_android_relocs REL %{public}x %{public}x", rel[0], rel[1]);
				do_relocs(p, rel, sizeof(size_t)*2, 2);
			} else {
				LD_LOGI("do_android_relocs RELA %{public}x %{public}x %{public}x", rel[0], rel[1], rel[2]);
				do_relocs(p, rel, sizeof(size_t)*3, 3);
			}
		}

		i += group_size;
	}
}

static void do_relr_relocs(struct dso *dso, size_t *relr, size_t relr_size)
{
	unsigned char *base = dso->base;
	size_t *reloc_addr;
	for (; relr_size; relr++, relr_size-=sizeof(size_t))
		if ((relr[0]&1) == 0) {
			reloc_addr = laddr(dso, relr[0]);
			*reloc_addr++ += (size_t)base;
		} else {
			int i = 0;
			for (size_t bitmap=relr[0]; (bitmap>>=1); i++)
				if (bitmap&1)
					reloc_addr[i] += (size_t)base;
			reloc_addr += 8*sizeof(size_t)-1;
		}
}

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static void reloc_all(struct dso *p, const dl_extinfo *extinfo)
2232
{
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	ssize_t relro_fd_offset = 0;
2234 2235 2236
	size_t dyn[DYN_CNT];
	for (; p; p=p->next) {
		if (p->relocated) continue;
2237 2238 2239
		if (p != &ldso) {
			add_can_search_so_list_in_dso(p, head);
		}
2240 2241 2242 2243 2244 2245 2246
		decode_vec(p->dynv, dyn, DYN_CNT);
		if (NEED_MIPS_GOT_RELOCS)
			do_mips_relocs(p, laddr(p, dyn[DT_PLTGOT]));
		do_relocs(p, laddr(p, dyn[DT_JMPREL]), dyn[DT_PLTRELSZ],
			2+(dyn[DT_PLTREL]==DT_RELA));
		do_relocs(p, laddr(p, dyn[DT_REL]), dyn[DT_RELSZ], 2);
		do_relocs(p, laddr(p, dyn[DT_RELA]), dyn[DT_RELASZ], 3);
2247 2248 2249 2250 2251
		if (!DL_FDPIC)
			do_relr_relocs(p, laddr(p, dyn[DT_RELR]), dyn[DT_RELRSZ]);

		do_android_relocs(p, DT_ANDROID_REL, DT_ANDROID_RELSZ);
		do_android_relocs(p, DT_ANDROID_RELA, DT_ANDROID_RELASZ);
2252 2253

		if (head != &ldso && p->relro_start != p->relro_end &&
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			mprotect(laddr(p, p->relro_start), p->relro_end-p->relro_start, PROT_READ)
			&& errno != ENOSYS) {
2256 2257 2258 2259
			error("Error relocating %s: RELRO protection failed: %m",
				p->name);
			if (runtime) longjmp(*rtld_fail, 1);
		}
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		/* Handle serializing/mapping the RELRO segment */
		handle_relro_sharing(p, extinfo, &relro_fd_offset);
2262 2263

		p->relocated = 1;
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		free_reloc_can_search_dso(p);
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	}
}

static void kernel_mapped_dso(struct dso *p)
{
	size_t min_addr = -1, max_addr = 0, cnt;
	Phdr *ph = p->phdr;
	for (cnt = p->phnum; cnt--; ph = (void *)((char *)ph + p->phentsize)) {
		if (ph->p_type == PT_DYNAMIC) {
			p->dynv = laddr(p, ph->p_vaddr);
		} else if (ph->p_type == PT_GNU_RELRO) {
			p->relro_start = ph->p_vaddr & -PAGE_SIZE;
			p->relro_end = (ph->p_vaddr + ph->p_memsz) & -PAGE_SIZE;
		} else if (ph->p_type == PT_GNU_STACK) {
			if (!runtime && ph->p_memsz > __default_stacksize) {
				__default_stacksize =
					ph->p_memsz < DEFAULT_STACK_MAX ?
					ph->p_memsz : DEFAULT_STACK_MAX;
			}
		}
		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;
	p->kernel_mapped = 1;
}

void __libc_exit_fini()
{
	struct dso *p;
	size_t dyn[DYN_CNT];
	int self = __pthread_self()->tid;

	/* Take both locks before setting shutting_down, so that
	 * either lock is sufficient to read its value. The lock
	 * order matches that in dlopen to avoid deadlock. */
	pthread_rwlock_wrlock(&lock);
	pthread_mutex_lock(&init_fini_lock);
	shutting_down = 1;
	pthread_rwlock_unlock(&lock);
	for (p=fini_head; p; p=p->fini_next) {
		while (p->ctor_visitor && p->ctor_visitor!=self)
			pthread_cond_wait(&ctor_cond, &init_fini_lock);
		if (!p->constructed) continue;
		decode_vec(p->dynv, dyn, DYN_CNT);
		if (dyn[0] & (1<<DT_FINI_ARRAY)) {
			size_t n = dyn[DT_FINI_ARRAYSZ]/sizeof(size_t);
			size_t *fn = (size_t *)laddr(p, dyn[DT_FINI_ARRAY])+n;
			while (n--) ((void (*)(void))*--fn)();
		}
#ifndef NO_LEGACY_INITFINI
		if ((dyn[0] & (1<<DT_FINI)) && dyn[DT_FINI])
			fpaddr(p, dyn[DT_FINI])();
#endif
	}
}

static struct dso **queue_ctors(struct dso *dso)
{
	size_t cnt, qpos, spos, i;
	struct dso *p, **queue, **stack;

	if (ldd_mode) return 0;

	/* Bound on queue size is the total number of indirect deps.
	 * If a bfs deps list was built, we can use it. Otherwise,
	 * bound by the total number of DSOs, which is always safe and
	 * is reasonable we use it (for main app at startup). */
	if (dso->bfs_built) {
		for (cnt=0; dso->deps[cnt]; cnt++)
			dso->deps[cnt]->mark = 0;
		cnt++; /* self, not included in deps */
	} else {
		for (cnt=0, p=head; p; cnt++, p=p->next)
			p->mark = 0;
	}
	cnt++; /* termination slot */
	if (dso==head && cnt <= countof(builtin_ctor_queue))
		queue = builtin_ctor_queue;
	else
2351
		queue = internal_calloc(cnt, sizeof *queue);
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	if (!queue) {
		error("Error allocating constructor queue: %m\n");
		if (runtime) longjmp(*rtld_fail, 1);
		return 0;
	}

	/* Opposite ends of the allocated buffer serve as an output queue
	 * and a working stack. Setup initial stack with just the argument
	 * dso and initial queue empty... */
	stack = queue;
	qpos = 0;
	spos = cnt;
	stack[--spos] = dso;
	dso->next_dep = 0;
	dso->mark = 1;

	/* Then perform pseudo-DFS sort, but ignoring circular deps. */
	while (spos<cnt) {
		p = stack[spos++];
		while (p->next_dep < p->ndeps_direct) {
			if (p->deps[p->next_dep]->mark) {
				p->next_dep++;
			} else {
				stack[--spos] = p;
				p = p->deps[p->next_dep];
				p->next_dep = 0;
				p->mark = 1;
			}
		}
		queue[qpos++] = p;
	}
	queue[qpos] = 0;
	for (i=0; i<qpos; i++) queue[i]->mark = 0;

	return queue;
}

static void do_init_fini(struct dso **queue)
{
	struct dso *p;
	size_t dyn[DYN_CNT], i;
	int self = __pthread_self()->tid;

	pthread_mutex_lock(&init_fini_lock);
	for (i=0; (p=queue[i]); i++) {
		while ((p->ctor_visitor && p->ctor_visitor!=self) || shutting_down)
			pthread_cond_wait(&ctor_cond, &init_fini_lock);
		if (p->ctor_visitor || p->constructed)
			continue;
		p->ctor_visitor = self;
		
		decode_vec(p->dynv, dyn, DYN_CNT);
		if (dyn[0] & ((1<<DT_FINI) | (1<<DT_FINI_ARRAY))) {
			p->fini_next = fini_head;
			fini_head = p;
		}

		pthread_mutex_unlock(&init_fini_lock);

#ifndef NO_LEGACY_INITFINI
		if ((dyn[0] & (1<<DT_INIT)) && dyn[DT_INIT])
			fpaddr(p, dyn[DT_INIT])();
#endif
		if (dyn[0] & (1<<DT_INIT_ARRAY)) {
			size_t n = dyn[DT_INIT_ARRAYSZ]/sizeof(size_t);
			size_t *fn = laddr(p, dyn[DT_INIT_ARRAY]);
			while (n--) ((void (*)(void))*fn++)();
		}

		pthread_mutex_lock(&init_fini_lock);
		p->ctor_visitor = 0;
		p->constructed = 1;
		pthread_cond_broadcast(&ctor_cond);
	}
	pthread_mutex_unlock(&init_fini_lock);
}

void __libc_start_init(void)
{
	do_init_fini(main_ctor_queue);
	if (!__malloc_replaced && main_ctor_queue != builtin_ctor_queue)
2434
		internal_free(main_ctor_queue);
2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545
	main_ctor_queue = 0;
}

static void dl_debug_state(void)
{
}

weak_alias(dl_debug_state, _dl_debug_state);

void __init_tls(size_t *auxv)
{
}

static void update_tls_size()
{
	libc.tls_cnt = tls_cnt;
	libc.tls_align = tls_align;
	libc.tls_size = ALIGN(
		(1+tls_cnt) * sizeof(void *) +
		tls_offset +
		sizeof(struct pthread) +
		tls_align * 2,
	tls_align);
}

static void install_new_tls(void)
{
	sigset_t set;
	pthread_t self = __pthread_self(), td;
	struct dso *dtv_provider = container_of(tls_tail, struct dso, tls);
	uintptr_t (*newdtv)[tls_cnt+1] = (void *)dtv_provider->new_dtv;
	struct dso *p;
	size_t i, j;
	size_t old_cnt = self->dtv[0];

	__block_app_sigs(&set);
	__tl_lock();
	/* Copy existing dtv contents from all existing threads. */
	for (i=0, td=self; !i || td!=self; i++, td=td->next) {
		memcpy(newdtv+i, td->dtv,
			(old_cnt+1)*sizeof(uintptr_t));
		newdtv[i][0] = tls_cnt;
	}
	/* Install new dtls into the enlarged, uninstalled dtv copies. */
	for (p=head; ; p=p->next) {
		if (p->tls_id <= old_cnt) continue;
		unsigned char *mem = p->new_tls;
		for (j=0; j<i; j++) {
			unsigned char *new = mem;
			new += ((uintptr_t)p->tls.image - (uintptr_t)mem)
				& (p->tls.align-1);
			memcpy(new, p->tls.image, p->tls.len);
			newdtv[j][p->tls_id] =
				(uintptr_t)new + DTP_OFFSET;
			mem += p->tls.size + p->tls.align;
		}
		if (p->tls_id == tls_cnt) break;
	}

	/* Broadcast barrier to ensure contents of new dtv is visible
	 * if the new dtv pointer is. The __membarrier function has a
	 * fallback emulation using signals for kernels that lack the
	 * feature at the syscall level. */

	__membarrier(MEMBARRIER_CMD_PRIVATE_EXPEDITED, 0);

	/* Install new dtv for each thread. */
	for (j=0, td=self; !j || td!=self; j++, td=td->next) {
		td->dtv = td->dtv_copy = newdtv[j];
	}

	__tl_unlock();
	__restore_sigs(&set);
}

/* Stage 1 of the dynamic linker is defined in dlstart.c. It calls the
 * following stage 2 and stage 3 functions via primitive symbolic lookup
 * since it does not have access to their addresses to begin with. */

/* Stage 2 of the dynamic linker is called after relative relocations 
 * have been processed. It can make function calls to static functions
 * and access string literals and static data, but cannot use extern
 * symbols. Its job is to perform symbolic relocations on the dynamic
 * linker itself, but some of the relocations performed may need to be
 * replaced later due to copy relocations in the main program. */

hidden void __dls2(unsigned char *base, size_t *sp)
{
	size_t *auxv;
	for (auxv=sp+1+*sp+1; *auxv; auxv++);
	auxv++;
	if (DL_FDPIC) {
		void *p1 = (void *)sp[-2];
		void *p2 = (void *)sp[-1];
		if (!p1) {
			size_t aux[AUX_CNT];
			decode_vec(auxv, aux, AUX_CNT);
			if (aux[AT_BASE]) ldso.base = (void *)aux[AT_BASE];
			else ldso.base = (void *)(aux[AT_PHDR] & -4096);
		}
		app_loadmap = p2 ? p1 : 0;
		ldso.loadmap = p2 ? p2 : p1;
		ldso.base = laddr(&ldso, 0);
	} else {
		ldso.base = base;
	}
	Ehdr *ehdr = (void *)ldso.base;
	ldso.name = ldso.shortname = "libc.so";
	ldso.phnum = ehdr->e_phnum;
	ldso.phdr = laddr(&ldso, ehdr->e_phoff);
	ldso.phentsize = ehdr->e_phentsize;
2546
	ldso.is_global = true;
2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568
	kernel_mapped_dso(&ldso);
	decode_dyn(&ldso);

	if (DL_FDPIC) makefuncdescs(&ldso);

	/* Prepare storage for to save clobbered REL addends so they
	 * can be reused in stage 3. There should be very few. If
	 * something goes wrong and there are a huge number, abort
	 * instead of risking stack overflow. */
	size_t dyn[DYN_CNT];
	decode_vec(ldso.dynv, dyn, DYN_CNT);
	size_t *rel = laddr(&ldso, dyn[DT_REL]);
	size_t rel_size = dyn[DT_RELSZ];
	size_t symbolic_rel_cnt = 0;
	apply_addends_to = rel;
	for (; rel_size; rel+=2, rel_size-=2*sizeof(size_t))
		if (!IS_RELATIVE(rel[1], ldso.syms)) symbolic_rel_cnt++;
	if (symbolic_rel_cnt >= ADDEND_LIMIT) a_crash();
	size_t addends[symbolic_rel_cnt+1];
	saved_addends = addends;

	head = &ldso;
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	reloc_all(&ldso, NULL);
2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637

	ldso.relocated = 0;

	/* Call dynamic linker stage-2b, __dls2b, looking it up
	 * symbolically as a barrier against moving the address
	 * load across the above relocation processing. */
	struct symdef dls2b_def = find_sym(&ldso, "__dls2b", 0);
	if (DL_FDPIC) ((stage3_func)&ldso.funcdescs[dls2b_def.sym-ldso.syms])(sp, auxv);
	else ((stage3_func)laddr(&ldso, dls2b_def.sym->st_value))(sp, auxv);
}

/* Stage 2b sets up a valid thread pointer, which requires relocations
 * completed in stage 2, and on which stage 3 is permitted to depend.
 * This is done as a separate stage, with symbolic lookup as a barrier,
 * so that loads of the thread pointer and &errno can be pure/const and
 * thereby hoistable. */

void __dls2b(size_t *sp, size_t *auxv)
{
	/* Setup early thread pointer in builtin_tls for ldso/libc itself to
	 * use during dynamic linking. If possible it will also serve as the
	 * thread pointer at runtime. */
	search_vec(auxv, &__hwcap, AT_HWCAP);
	libc.auxv = auxv;
	libc.tls_size = sizeof builtin_tls;
	libc.tls_align = tls_align;
	if (__init_tp(__copy_tls((void *)builtin_tls)) < 0) {
		a_crash();
	}

	struct symdef dls3_def = find_sym(&ldso, "__dls3", 0);
	if (DL_FDPIC) ((stage3_func)&ldso.funcdescs[dls3_def.sym-ldso.syms])(sp, auxv);
	else ((stage3_func)laddr(&ldso, dls3_def.sym->st_value))(sp, auxv);
}

/* Stage 3 of the dynamic linker is called with the dynamic linker/libc
 * fully functional. Its job is to load (if not already loaded) and
 * process dependencies and relocations for the main application and
 * transfer control to its entry point. */

void __dls3(size_t *sp, size_t *auxv)
{
	static struct dso app, vdso;
	size_t aux[AUX_CNT];
	size_t i;
	char *env_preload=0;
	char *replace_argv0=0;
	size_t vdso_base;
	int argc = *sp;
	char **argv = (void *)(sp+1);
	char **argv_orig = argv;
	char **envp = argv+argc+1;

	/* Find aux vector just past environ[] and use it to initialize
	 * global data that may be needed before we can make syscalls. */
	__environ = envp;
	decode_vec(auxv, aux, AUX_CNT);
	search_vec(auxv, &__sysinfo, AT_SYSINFO);
	__pthread_self()->sysinfo = __sysinfo;
	libc.page_size = aux[AT_PAGESZ];
	libc.secure = ((aux[0]&0x7800)!=0x7800 || aux[AT_UID]!=aux[AT_EUID]
		|| aux[AT_GID]!=aux[AT_EGID] || aux[AT_SECURE]);

	/* Only trust user/env if kernel says we're not suid/sgid */
	if (!libc.secure) {
		env_path = getenv("LD_LIBRARY_PATH");
		env_preload = getenv("LD_PRELOAD");
	}
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#ifdef OHOS_ENABLE_PARAMETER
	InitParameterClient();
#endif
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	/* If the main program was already loaded by the kernel,
	 * AT_PHDR will point to some location other than the dynamic
	 * linker's program headers. */
	if (aux[AT_PHDR] != (size_t)ldso.phdr) {
		size_t interp_off = 0;
		size_t tls_image = 0;
		/* Find load address of the main program, via AT_PHDR vs PT_PHDR. */
		Phdr *phdr = app.phdr = (void *)aux[AT_PHDR];
		app.phnum = aux[AT_PHNUM];
		app.phentsize = aux[AT_PHENT];
		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);
			else if (phdr->p_type == PT_INTERP)
				interp_off = (size_t)phdr->p_vaddr;
			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;
			}
		}
		if (DL_FDPIC) app.loadmap = app_loadmap;
		if (app.tls.size) app.tls.image = laddr(&app, tls_image);
		if (interp_off) ldso.name = laddr(&app, interp_off);
		if ((aux[0] & (1UL<<AT_EXECFN))
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			&& strncmp((char *)aux[AT_EXECFN], "/proc/", 6))
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			app.name = (char *)aux[AT_EXECFN];
		else
			app.name = argv[0];
		kernel_mapped_dso(&app);
	} else {
		int fd;
		char *ldname = argv[0];
		size_t l = strlen(ldname);
		if (l >= 3 && !strcmp(ldname+l-3, "ldd")) ldd_mode = 1;
		argv++;
		while (argv[0] && argv[0][0]=='-' && argv[0][1]=='-') {
			char *opt = argv[0]+2;
			*argv++ = (void *)-1;
			if (!*opt) {
				break;
			} else if (!memcmp(opt, "list", 5)) {
				ldd_mode = 1;
			} else if (!memcmp(opt, "library-path", 12)) {
				if (opt[12]=='=') env_path = opt+13;
				else if (opt[12]) *argv = 0;
				else if (*argv) env_path = *argv++;
			} else if (!memcmp(opt, "preload", 7)) {
				if (opt[7]=='=') env_preload = opt+8;
				else if (opt[7]) *argv = 0;
				else if (*argv) env_preload = *argv++;
			} else if (!memcmp(opt, "argv0", 5)) {
				if (opt[5]=='=') replace_argv0 = opt+6;
				else if (opt[5]) *argv = 0;
				else if (*argv) replace_argv0 = *argv++;
			} else {
				argv[0] = 0;
			}
		}
		argv[-1] = (void *)(argc - (argv-argv_orig));
		if (!argv[0]) {
			dprintf(2, "musl libc (" LDSO_ARCH ")\n"
				"Version %s\n"
				"Dynamic Program Loader\n"
				"Usage: %s [options] [--] pathname%s\n",
				__libc_version, 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);
		}
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		Ehdr *ehdr = (void *)map_library(fd, &app, NULL);
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		if (!ehdr) {
			dprintf(2, "%s: %s: Not a valid dynamic program\n", ldname, argv[0]);
			_exit(1);
		}
		close(fd);
		ldso.name = ldname;
		app.name = argv[0];
		aux[AT_ENTRY] = (size_t)laddr(&app, ehdr->e_entry);
		/* Find the name that would have been used for the dynamic
		 * linker had ldd not taken its place. */
		if (ldd_mode) {
			for (i=0; i<app.phnum; i++) {
				if (app.phdr[i].p_type == PT_INTERP)
					ldso.name = laddr(&app, app.phdr[i].p_vaddr);
			}
			dprintf(1, "\t%s (%p)\n", ldso.name, ldso.base);
		}
	}
	if (app.tls.size) {
		libc.tls_head = tls_tail = &app.tls;
		app.tls_id = tls_cnt = 1;
#ifdef TLS_ABOVE_TP
		app.tls.offset = GAP_ABOVE_TP;
		app.tls.offset += (-GAP_ABOVE_TP + (uintptr_t)app.tls.image)
			& (app.tls.align-1);
		tls_offset = app.tls.offset + app.tls.size;
#else
		tls_offset = app.tls.offset = app.tls.size
			+ ( -((uintptr_t)app.tls.image + app.tls.size)
			& (app.tls.align-1) );
#endif
		tls_align = MAXP2(tls_align, app.tls.align);
	}
	decode_dyn(&app);
	if (DL_FDPIC) {
		makefuncdescs(&app);
		if (!app.loadmap) {
			app.loadmap = (void *)&app_dummy_loadmap;
			app.loadmap->nsegs = 1;
			app.loadmap->segs[0].addr = (size_t)app.map;
			app.loadmap->segs[0].p_vaddr = (size_t)app.map
				- (size_t)app.base;
			app.loadmap->segs[0].p_memsz = app.map_len;
		}
		argv[-3] = (void *)app.loadmap;
	}
2763
	app.is_global = true;
2764 2765 2766 2767 2768 2769 2770 2771 2772 2773

	/* Initial dso chain consists only of the app. */
	head = tail = syms_tail = &app;

	/* Donate unused parts of app and library mapping to malloc */
	reclaim_gaps(&app);
	reclaim_gaps(&ldso);

	/* Load preload/needed libraries, add symbols to global namespace. */
	ldso.deps = (struct dso **)no_deps;
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	/* Init g_is_asan */
	g_is_asan = false;
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	LD_LOGD("__dls3 ldso.name:%{public}s.", ldso.name);
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	/* Through ldso Name to judge whether the Asan function is enabled */
	if (strstr(ldso.name, "-asan")) {
		g_is_asan = true;
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		LD_LOGD("__dls3 g_is_asan is true.");
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	}
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	/* Init all namespaces by config file. there is a default namespace always*/
	init_namespace(&app);
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#ifdef LOAD_ORDER_RANDOMIZATION
	struct loadtasks *tasks = create_loadtasks();
	if (!tasks) {
		_exit(1);
	}
	if (env_preload) {
		load_preload(env_preload, get_default_ns(), tasks);
	}
2793 2794 2795
	for (struct dso *q=head; q; q=q->next) {
		q->is_global = true;
	}
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	preload_deps(&app, tasks);
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	unmap_preloaded_sections(tasks);
	shuffle_loadtasks(tasks);
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	run_loadtasks(tasks, NULL);
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	free_loadtasks(tasks);
	assign_tls(app.next);
#else
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	if (env_preload) load_preload(env_preload, get_default_ns());
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	for (struct dso *q=head; q; q=q->next) {
		q->is_global = true;
	}
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 	load_deps(&app, NULL);
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#endif

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	/* Set is_reloc_head_so_dep to true for all direct and indirect dependent sos of app, including app self. */
	for (struct dso *p=head; p; p=p->next) {
		p->is_reloc_head_so_dep = true;
2813
		add_syms(p);
2814
	}
2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836

	/* Attach to vdso, if provided by the kernel, last so that it does
	 * not become part of the global namespace.  */
	if (search_vec(auxv, &vdso_base, AT_SYSINFO_EHDR) && vdso_base) {
		Ehdr *ehdr = (void *)vdso_base;
		Phdr *phdr = vdso.phdr = (void *)(vdso_base + ehdr->e_phoff);
		vdso.phnum = ehdr->e_phnum;
		vdso.phentsize = ehdr->e_phentsize;
		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);
		}
		vdso.name = "";
		vdso.shortname = "linux-gate.so.1";
		vdso.relocated = 1;
		vdso.deps = (struct dso **)no_deps;
		decode_dyn(&vdso);
		vdso.prev = tail;
		tail->next = &vdso;
		tail = &vdso;
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		vdso.namespace = get_default_ns();
		ns_add_dso(vdso.namespace, &vdso);
2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862
	}

	for (i=0; app.dynv[i]; i+=2) {
		if (!DT_DEBUG_INDIRECT && app.dynv[i]==DT_DEBUG)
			app.dynv[i+1] = (size_t)&debug;
		if (DT_DEBUG_INDIRECT && app.dynv[i]==DT_DEBUG_INDIRECT) {
			size_t *ptr = (size_t *) app.dynv[i+1];
			*ptr = (size_t)&debug;
		}
	}

	/* This must be done before final relocations, since it calls
	 * malloc, which may be provided by the application. Calling any
	 * application code prior to the jump to its entry point is not
	 * valid in our model and does not work with FDPIC, where there
	 * are additional relocation-like fixups that only the entry point
	 * code can see to perform. */
	main_ctor_queue = queue_ctors(&app);

	/* Initial TLS must also be allocated before final relocations
	 * might result in calloc being a call to application code. */
	update_tls_size();
	void *initial_tls = builtin_tls;
	if (libc.tls_size > sizeof builtin_tls || tls_align > MIN_TLS_ALIGN) {
2863
		initial_tls = internal_calloc(libc.tls_size, 1);
2864 2865 2866 2867 2868 2869 2870 2871 2872 2873
		if (!initial_tls) {
			dprintf(2, "%s: Error getting %zu bytes thread-local storage: %m\n",
				argv[0], libc.tls_size);
			_exit(127);
		}
	}
	static_tls_cnt = tls_cnt;

	/* The main program must be relocated LAST since it may contain
	 * copy relocations which depend on libraries' relocations. */
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	reloc_all(app.next, NULL);
	reloc_all(&app, NULL);
2876 2877 2878
	for (struct dso *q=head; q; q=q->next) {
		q->is_reloc_head_so_dep = false;
	}
2879 2880 2881 2882

	/* Actual copying to new TLS needs to happen after relocations,
	 * since the TLS images might have contained relocated addresses. */
	if (initial_tls != builtin_tls) {
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		pthread_t self = __pthread_self();
		pthread_t td = __copy_tls(initial_tls);
		if (__init_tp(td) < 0) {
2886 2887
			a_crash();
		}
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		td->tsd = self->tsd;
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	} else {
		size_t tmp_tls_size = libc.tls_size;
		pthread_t self = __pthread_self();
		/* Temporarily set the tls size to the full size of
		 * builtin_tls so that __copy_tls will use the same layout
		 * as it did for before. Then check, just to be safe. */
		libc.tls_size = sizeof builtin_tls;
		if (__copy_tls((void*)builtin_tls) != self) a_crash();
		libc.tls_size = tmp_tls_size;
	}

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dhy308 已提交
2900
	if (init_cfi_shadow(head, &ldso) == CFI_FAILED) {
D
dhy308 已提交
2901 2902 2903
		error("[%s] init_cfi_shadow failed: %m", __FUNCTION__);
	}

2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921
	if (ldso_fail) _exit(127);
	if (ldd_mode) _exit(0);

	/* Determine if malloc was interposed by a replacement implementation
	 * so that calloc and the memalign family can harden against the
	 * possibility of incomplete replacement. */
	if (find_sym(head, "malloc", 1).dso != &ldso)
		__malloc_replaced = 1;

	/* Switch to runtime mode: any further failures in the dynamic
	 * linker are a reportable failure rather than a fatal startup
	 * error. */
	runtime = 1;

	debug.ver = 1;
	debug.bp = dl_debug_state;
	debug.head = head;
	debug.base = ldso.base;
2922
	debug.state = RT_CONSISTENT;
2923 2924 2925 2926
	_dl_debug_state();

	if (replace_argv0) argv[0] = replace_argv0;

Z
zengchunliang 已提交
2927 2928 2929
#ifdef DFX_SIGNAL_LIBC
	DFX_InstallSignalHandler();
#endif
2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948
	errno = 0;

	CRTJMP((void *)aux[AT_ENTRY], argv-1);
	for(;;);
}

static void prepare_lazy(struct dso *p)
{
	size_t dyn[DYN_CNT], n, flags1=0;
	decode_vec(p->dynv, dyn, DYN_CNT);
	search_vec(p->dynv, &flags1, DT_FLAGS_1);
	if (dyn[DT_BIND_NOW] || (dyn[DT_FLAGS] & DF_BIND_NOW) || (flags1 & DF_1_NOW))
		return;
	n = dyn[DT_RELSZ]/2 + dyn[DT_RELASZ]/3 + dyn[DT_PLTRELSZ]/2 + 1;
	if (NEED_MIPS_GOT_RELOCS) {
		size_t j=0; search_vec(p->dynv, &j, DT_MIPS_GOTSYM);
		size_t i=0; search_vec(p->dynv, &i, DT_MIPS_SYMTABNO);
		n += i-j;
	}
2949
	p->lazy = internal_calloc(n, 3*sizeof(size_t));
2950 2951 2952 2953 2954 2955 2956 2957
	if (!p->lazy) {
		error("Error preparing lazy relocation for %s: %m", p->name);
		longjmp(*rtld_fail, 1);
	}
	p->lazy_next = lazy_head;
	lazy_head = p;
}

2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986
static void *dlopen_post(struct dso* p, int mode) {
	if (p == NULL) {
		return p;
	}

	p->nr_dlopen++;
	if (p->bfs_built) {
		for (int i = 0; p->deps[i]; i++) {
			p->deps[i]->nr_dlopen++;

			if (mode & RTLD_NODELETE) {
				p->deps[i]->flags |= DSO_FLAGS_NODELETE;
			}
		}
	}

#ifdef HANDLE_RANDOMIZATION
	void *handle = assign_valid_handle(p);
	if (handle == NULL) {
		LD_LOGE("dlopen_post: generate random handle failed");
		do_dlclose(p);
	}

	return handle;
#endif

	return p;
}

Y
yangwenjun 已提交
2987
/* add namespace function */
2988
static void *dlopen_impl(
W
wangjiahui 已提交
2989
	const char *file, int mode, const char *namespace, const void *caller_addr, const dl_extinfo *extinfo)
2990 2991 2992 2993 2994 2995 2996 2997
{
	struct dso *volatile p, *orig_tail, *orig_syms_tail, *orig_lazy_head, *next;
	struct tls_module *orig_tls_tail;
	size_t orig_tls_cnt, orig_tls_offset, orig_tls_align;
	size_t i;
	int cs;
	jmp_buf jb;
	struct dso **volatile ctor_queue = 0;
Y
yangwenjun 已提交
2998 2999
	ns_t *ns;
	struct dso *caller;
W
wangjiahui 已提交
3000 3001 3002
	bool reserved_address = false;
	bool reserved_address_recursive = false;
	struct reserved_address_params reserved_params = {0};
W
wangjiahui 已提交
3003 3004 3005
#ifdef LOAD_ORDER_RANDOMIZATION
	struct loadtasks *tasks = NULL;
	struct loadtask *task = NULL;
3006
	bool is_task_appended = false;
W
wangjiahui 已提交
3007
#endif
3008

W
wangjiahui 已提交
3009
	if (!file) {
3010 3011
		LD_LOGD("dlopen_impl file is null, return head.");
		return dlopen_post(head, mode);
W
wangjiahui 已提交
3012
	}
3013

W
wangjiahui 已提交
3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030
	if (extinfo) {
		reserved_address_recursive = extinfo->flag & DL_EXT_RESERVED_ADDRESS_RECURSIVE;
		if (extinfo->flag & DL_EXT_RESERVED_ADDRESS) {
			reserved_address = true;
			reserved_params.start_addr = extinfo->reserved_addr;
			reserved_params.reserved_size = extinfo->reserved_size;
			reserved_params.must_use_reserved = true;
			reserved_params.reserved_address_recursive = reserved_address_recursive;
		} else if (extinfo->flag & DL_EXT_RESERVED_ADDRESS_HINT) {
			reserved_address = true;
			reserved_params.start_addr = extinfo->reserved_addr;
			reserved_params.reserved_size = extinfo->reserved_size;
			reserved_params.must_use_reserved = false;
			reserved_params.reserved_address_recursive = reserved_address_recursive;
		}
	}

3031 3032 3033
	pthread_setcancelstate(PTHREAD_CANCEL_DISABLE, &cs);
	pthread_rwlock_wrlock(&lock);
	__inhibit_ptc();
W
wangjiahui 已提交
3034

3035 3036
	debug.state = RT_ADD;
	_dl_debug_state();
Y
yangwenjun 已提交
3037 3038 3039 3040 3041
	/* When namespace does not exist, use caller's namespce
	 * and when caller does not exist, use default namespce. */
	caller = (struct dso *)addr2dso((size_t)caller_addr);
	ns = find_ns_by_name(namespace);
	if (!ns) ns = ((caller && caller->namespace) ? caller->namespace : get_default_ns());
3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064

	p = 0;
	if (shutting_down) {
		error("Cannot dlopen while program is exiting.");
		goto end;
	}
	orig_tls_tail = tls_tail;
	orig_tls_cnt = tls_cnt;
	orig_tls_offset = tls_offset;
	orig_tls_align = tls_align;
	orig_lazy_head = lazy_head;
	orig_syms_tail = syms_tail;
	orig_tail = tail;
	noload = mode & RTLD_NOLOAD;

	rtld_fail = &jb;
	if (setjmp(*rtld_fail)) {
		/* Clean up anything new that was (partially) loaded */
		revert_syms(orig_syms_tail);
		for (p=orig_tail->next; p; p=next) {
			next = p->next;
			while (p->td_index) {
				void *tmp = p->td_index->next;
3065
				internal_free(p->td_index);
3066 3067
				p->td_index = tmp;
			}
3068
			internal_free(p->funcdescs);
3069
			if (p->rpath != p->rpath_orig)
3070
				internal_free(p->rpath);
G
ganlan 已提交
3071 3072 3073 3074 3075
			if (p->deps) {
				for (int i = 0; i < p->ndeps_direct; i++) {
					remove_dso_parent(p->deps[i], p);
				}
			}
3076
			internal_free(p->deps);
Y
yangwenjun 已提交
3077
			dlclose_ns(p);
3078
			unmap_library(p);
G
ganlan 已提交
3079 3080 3081
			if (p->parents) {
				internal_free(p->parents);
			}
Y
yinchuang 已提交
3082
			free_reloc_can_search_dso(p);
3083
			internal_free(p);
3084
		}
3085
		internal_free(ctor_queue);
3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097
		ctor_queue = 0;
		if (!orig_tls_tail) libc.tls_head = 0;
		tls_tail = orig_tls_tail;
		if (tls_tail) tls_tail->next = 0;
		tls_cnt = orig_tls_cnt;
		tls_offset = orig_tls_offset;
		tls_align = orig_tls_align;
		lazy_head = orig_lazy_head;
		tail = orig_tail;
		tail->next = 0;
		p = 0;
		goto end;
W
wangjiahui 已提交
3098 3099 3100 3101
	} else {
#ifdef LOAD_ORDER_RANDOMIZATION
		tasks = create_loadtasks();
		if (!tasks) {
3102
			LD_LOGE("dlopen_impl create loadtasks failed");
W
wangjiahui 已提交
3103 3104 3105 3106
			goto end;
		}
		task = create_loadtask(file, head, ns, true);
		if (!task) {
3107
			LD_LOGE("dlopen_impl create loadtask failed");
W
wangjiahui 已提交
3108 3109 3110
			goto end;
		}
		if (!load_library_header(task)) {
M
maweiye 已提交
3111 3112 3113 3114
			error(noload ?
				"Library %s is not already loaded" :
				"Error loading shared library %s: %m",
				file);
3115
			LD_LOGE("dlopen_impl load library header failed for %{public}s", task->name);
W
wangjiahui 已提交
3116 3117
			goto end;
		}
W
wangjiahui 已提交
3118
		if (reserved_address) {
3119
			reserved_params.target = task->p;
W
wangjiahui 已提交
3120
		}
W
wangjiahui 已提交
3121
	}
3122
	if (!task->p) {
3123
		LD_LOGE("dlopen_impl load library failed for %{public}s", task->name);
3124 3125 3126 3127 3128 3129
		error(noload ?
			"Library %s is not already loaded" :
			"Error loading shared library %s: %m",
			file);
		goto end;
	}
W
wangjiahui 已提交
3130
	if (!task->isloaded) {
3131
		is_task_appended = append_loadtasks(tasks, task);
W
wangjiahui 已提交
3132
	}
G
ganlan 已提交
3133
	preload_deps(task->p, tasks);
W
wangjiahui 已提交
3134 3135 3136 3137
	unmap_preloaded_sections(tasks);
	if (!reserved_address_recursive) {
		shuffle_loadtasks(tasks);
	}
W
wangjiahui 已提交
3138
	run_loadtasks(tasks, reserved_address ? &reserved_params : NULL);
3139
	p = task->p;
W
wangjiahui 已提交
3140 3141
	if (!task->isloaded) {
		assign_tls(p);
3142 3143
	}
	if (!is_task_appended) {
W
wangjiahui 已提交
3144 3145 3146 3147 3148 3149
		free_task(task);
		task = NULL;
	}
	free_loadtasks(tasks);
	tasks = NULL;
#else
3150 3151 3152 3153 3154 3155 3156 3157 3158 3159
		p = load_library(file, head, ns, true, reserved_address ? &reserved_params : NULL);
	}

	if (!p) {
		error(noload ?
			"Library %s is not already loaded" :
			"Error loading shared library %s: %m",
			file);
		goto end;
	}
3160
	/* First load handling */
G
ganlan 已提交
3161
	load_deps(p, reserved_address && reserved_address_recursive ? &reserved_params : NULL);
W
wangjiahui 已提交
3162
#endif
3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176
	extend_bfs_deps(p);
	pthread_mutex_lock(&init_fini_lock);
	if (!p->constructed) ctor_queue = queue_ctors(p);
	pthread_mutex_unlock(&init_fini_lock);
	if (!p->relocated && (mode & RTLD_LAZY)) {
		prepare_lazy(p);
		for (i=0; p->deps[i]; i++)
			if (!p->deps[i]->relocated)
				prepare_lazy(p->deps[i]);
	}
	if (!p->relocated || (mode & RTLD_GLOBAL)) {
		/* Make new symbols global, at least temporarily, so we can do
		 * relocations. If not RTLD_GLOBAL, this is reverted below. */
		add_syms(p);
3177 3178 3179 3180
		/* Set is_reloc_head_so_dep to true for all direct and indirect dependent sos of p, including p self. */
		p->is_reloc_head_so_dep = true;
		for (i=0; p->deps[i]; i++) {
			p->deps[i]->is_reloc_head_so_dep = true;
3181
			add_syms(p->deps[i]);
3182
		}
3183
	}
3184
	struct dso *reloc_head_so = p;
3185
	if (!p->relocated) {
W
wangjiahui 已提交
3186
		reloc_all(p, extinfo);
3187
	}
3188 3189 3190 3191
	reloc_head_so->is_reloc_head_so_dep = false;
	for (size_t i=0; reloc_head_so->deps[i]; i++) {
		reloc_head_so->deps[i]->is_reloc_head_so_dep = false;
	}
3192 3193 3194

	/* If RTLD_GLOBAL was not specified, undo any new additions
	 * to the global symbol table. This is a nop if the library was
3195 3196
	 * previously loaded and already global. */
	if (!(mode & RTLD_GLOBAL))
3197 3198 3199 3200 3201 3202 3203
		revert_syms(orig_syms_tail);

	/* Processing of deferred lazy relocations must not happen until
	 * the new libraries are committed; otherwise we could end up with
	 * relocations resolved to symbol definitions that get removed. */
	redo_lazy_relocs();

D
dhy308 已提交
3204
	if (map_dso_to_cfi_shadow(p) == CFI_FAILED) {
D
dhy308 已提交
3205
		error("[%s] map_dso_to_cfi_shadow failed: %m", __FUNCTION__);
D
dhy308 已提交
3206
		longjmp(*rtld_fail, 1);
D
dhy308 已提交
3207 3208
	}

3209 3210 3211 3212 3213 3214 3215 3216
	if (mode & RTLD_NODELETE) {
		p->flags |= DSO_FLAGS_NODELETE;
	}

	update_tls_size();
	if (tls_cnt != orig_tls_cnt)
		install_new_tls();
	orig_tail = tail;
3217 3218

	p = dlopen_post(p, mode);
3219
end:
3220 3221
	debug.state = RT_CONSISTENT;
	_dl_debug_state();
W
wangjiahui 已提交
3222
#ifdef LOAD_ORDER_RANDOMIZATION
3223 3224 3225
	if (!is_task_appended) {
		free_task(task);
	}
W
wangjiahui 已提交
3226 3227
	free_loadtasks(tasks);
#endif
3228 3229 3230 3231 3232
	__release_ptc();
	if (p) gencnt++;
	pthread_rwlock_unlock(&lock);
	if (ctor_queue) {
		do_init_fini(ctor_queue);
3233
		internal_free(ctor_queue);
3234 3235
	}
	pthread_setcancelstate(cs, 0);
D
dhy308 已提交
3236 3237 3238
	return p;
}

Y
yangwenjun 已提交
3239 3240 3241
void *dlopen(const char *file, int mode)
{
	const void *caller_addr = __builtin_return_address(0);
3242 3243
	musl_log_reset();
	ld_log_reset();
G
ganlan 已提交
3244
	LD_LOGI("dlopen file:%{public}s, mode:%{public}x ,caller_addr:%{public}p .", file, mode, caller_addr);
W
wangjiahui 已提交
3245
	return dlopen_impl(file, mode, NULL, caller_addr, NULL);
Y
yangwenjun 已提交
3246 3247 3248 3249
}

void dlns_init(Dl_namespace *dlns, const char *name)
{
W
wangjiahui 已提交
3250
	if (!dlns) {
G
ganlan 已提交
3251
		LD_LOGE("dlns_init dlns is null.");
W
wangjiahui 已提交
3252 3253
		return;
	}
Y
yangwenjun 已提交
3254
	if (!name) {
G
ganlan 已提交
3255
		LD_LOGE("dlns_init name is null.");
Y
yangwenjun 已提交
3256 3257 3258 3259
		dlns->name[0] = 0;
		return;
	}
	snprintf(dlns->name, sizeof dlns->name, name);
G
ganlan 已提交
3260
	LD_LOGI("dlns_init dlns->name:%{public}s .", dlns->name);
Y
yangwenjun 已提交
3261 3262
}

W
wangjiahui 已提交
3263 3264 3265
int dlns_get(const char *name, Dl_namespace *dlns)
{
	if (!dlns) {
G
ganlan 已提交
3266
		LD_LOGE("dlns_get dlns is null.");
W
wangjiahui 已提交
3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277
		return EINVAL;
	}
	int ret = 0;
	ns_t *ns = NULL;
	pthread_rwlock_rdlock(&lock);
	if (!name) {
		struct dso *caller;
		const void *caller_addr = __builtin_return_address(0);
		caller = (struct dso *)addr2dso((size_t)caller_addr);
		ns = ((caller && caller->namespace) ? caller->namespace : get_default_ns());
		(void)snprintf(dlns->name, sizeof dlns->name, ns->ns_name);
G
ganlan 已提交
3278
		LD_LOGI("dlns_get name is null, current dlns dlns->name:%{public}s.", dlns->name);
W
wangjiahui 已提交
3279 3280 3281 3282
	} else {
		ns = find_ns_by_name(name);
		if (ns) {
			(void)snprintf(dlns->name, sizeof dlns->name, ns->ns_name);
G
ganlan 已提交
3283
			LD_LOGI("dlns_get found ns, current dlns dlns->name:%{public}s.", dlns->name);
W
wangjiahui 已提交
3284
		} else {
G
ganlan 已提交
3285
			LD_LOGI("dlns_get not found ns! name:%{public}s.", name);
W
wangjiahui 已提交
3286 3287 3288 3289 3290 3291 3292
			ret = ENOKEY;
		}
	}
	pthread_rwlock_unlock(&lock);
	return ret;
}

Y
yangwenjun 已提交
3293 3294 3295
void *dlopen_ns(Dl_namespace *dlns, const char *file, int mode)
{
	const void *caller_addr = __builtin_return_address(0);
3296 3297
	musl_log_reset();
	ld_log_reset();
G
ganlan 已提交
3298 3299 3300 3301
	LD_LOGI("dlopen_ns file:%{public}s, mode:%{public}x , caller_addr:%{public}p , dlns->name:%{public}s.",
		file,
		mode,
		caller_addr,
3302
		dlns ? dlns->name : "NULL");
G
ganlan 已提交
3303
	return dlopen_impl(file, mode, dlns->name, caller_addr, NULL);
Y
yangwenjun 已提交
3304 3305
}

X
XUBO 已提交
3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320
void *dlopen_ns_ext(Dl_namespace *dlns, const char *file, int mode, const dl_extinfo *extinfo)
{
	const void *caller_addr = __builtin_return_address(0);
	musl_log_reset();
	ld_log_reset();
	LD_LOGI("dlopen_ns_ext file:%{public}s, mode:%{public}x , caller_addr:%{public}p , "
			"dlns->name:%{public}s. , extinfo->flag:%{public}x",
		file,
		mode,
		caller_addr,
		dlns->name,
		extinfo ? extinfo->flag : 0);
	return dlopen_impl(file, mode, dlns->name, caller_addr, extinfo);
}

W
wangjiahui 已提交
3321
int dlns_create2(Dl_namespace *dlns, const char *lib_path, int flags)
Y
yangwenjun 已提交
3322
{
W
wangjiahui 已提交
3323
	if (!dlns) {
G
ganlan 已提交
3324
		LD_LOGE("dlns_create2 dlns is null.");
W
wangjiahui 已提交
3325 3326
		return EINVAL;
	}
Y
yangwenjun 已提交
3327 3328 3329 3330 3331
	ns_t *ns;

	pthread_rwlock_wrlock(&lock);
	ns = find_ns_by_name(dlns->name);
	if (ns) {
G
ganlan 已提交
3332
		LD_LOGE("dlns_create2 ns is exist.");
Y
yangwenjun 已提交
3333 3334 3335 3336 3337
		pthread_rwlock_unlock(&lock);
		return EEXIST;
	}
	ns = ns_alloc();
	if (!ns) {
G
ganlan 已提交
3338
		LD_LOGE("dlns_create2 no memery.");
Y
yangwenjun 已提交
3339 3340 3341 3342 3343 3344 3345
		pthread_rwlock_unlock(&lock);
		return ENOMEM;
	}
	ns_set_name(ns, dlns->name);
	ns_add_dso(ns, get_default_ns()->ns_dsos->dsos[0]); /* add main app to this namespace*/
	nslist_add_ns(ns); /* add ns to list*/
	ns_set_lib_paths(ns, lib_path);
W
wangjiahui 已提交
3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359

	if ((flags & CREATE_INHERIT_DEFAULT) != 0) {
		ns_add_inherit(ns, get_default_ns(), NULL);
	}

	if ((flags & CREATE_INHERIT_CURRENT) != 0) {
		struct dso *caller;
		const void *caller_addr = __builtin_return_address(0);
		caller = (struct dso *)addr2dso((size_t)caller_addr);
		if (caller && caller->namespace) {
			ns_add_inherit(ns, caller->namespace, NULL);
		}
	}

G
ganlan 已提交
3360 3361 3362 3363
	LD_LOGI("dlns_create2:"
			"ns_name: %{public}s ,"
			"separated:%{public}d ,"
			"lib_paths:%{public}s ",
G
ganlan 已提交
3364
			ns->ns_name, ns->separated, ns->lib_paths);
Y
yangwenjun 已提交
3365 3366 3367 3368 3369
	pthread_rwlock_unlock(&lock);

	return 0;
}

W
wangjiahui 已提交
3370 3371
int dlns_create(Dl_namespace *dlns, const char *lib_path)
{
G
ganlan 已提交
3372
	LD_LOGI("dlns_create lib_paths:%{public}s", lib_path);
W
wangjiahui 已提交
3373 3374 3375
	return dlns_create2(dlns, lib_path, CREATE_INHERIT_DEFAULT);
}

Y
yangwenjun 已提交
3376 3377
int dlns_inherit(Dl_namespace *dlns, Dl_namespace *inherited, const char *shared_libs)
{
W
wangjiahui 已提交
3378
	if (!dlns || !inherited) {
G
ganlan 已提交
3379
		LD_LOGE("dlns_inherit dlns or inherited is null.");
W
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3380 3381
		return EINVAL;
	}
Y
yangwenjun 已提交
3382 3383 3384 3385 3386

	pthread_rwlock_wrlock(&lock);
	ns_t* ns = find_ns_by_name(dlns->name);
	ns_t* ns_inherited = find_ns_by_name(inherited->name);
	if (!ns || !ns_inherited) {
G
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3387
		LD_LOGE("dlns_inherit ns or ns_inherited is not found.");
Y
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3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412
		pthread_rwlock_unlock(&lock);
		return ENOKEY;
	}
	ns_add_inherit(ns, ns_inherited, shared_libs);
	pthread_rwlock_unlock(&lock);

	return 0;
}

static void dlclose_ns(struct dso *p)
{
	if (!p) return;
	ns_t * ns = p->namespace;
	if (!ns||!ns->ns_dsos) return;
	for (size_t i=0; i<ns->ns_dsos->num; i++) {
		if (p == ns->ns_dsos->dsos[i]) {
			for (size_t j=i+1; j<ns->ns_dsos->num; j++) {
				ns->ns_dsos->dsos[j-1] = ns->ns_dsos->dsos[j];
			}
			ns->ns_dsos->num--;
			return;
		}
	}
}

3413 3414 3415 3416 3417 3418 3419 3420
hidden int __dl_invalid_handle(void *h)
{
	struct dso *p;
	for (p=head; p; p=p->next) if (h==p) return 0;
	error("Invalid library handle %p", (void *)h);
	return 1;
}

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void *addr2dso(size_t a)
3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433
{
	struct dso *p;
	size_t i;
	if (DL_FDPIC) for (p=head; p; p=p->next) {
		i = count_syms(p);
		if (a-(size_t)p->funcdescs < i*sizeof(*p->funcdescs))
			return p;
	}
	for (p=head; p; p=p->next) {
		if (DL_FDPIC && p->loadmap) {
			for (i=0; i<p->loadmap->nsegs; i++) {
				if (a-p->loadmap->segs[i].p_vaddr
W
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					< p->loadmap->segs[i].p_memsz)
3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453
					return p;
			}
		} else {
			Phdr *ph = p->phdr;
			size_t phcnt = p->phnum;
			size_t entsz = p->phentsize;
			size_t base = (size_t)p->base;
			for (; phcnt--; ph=(void *)((char *)ph+entsz)) {
				if (ph->p_type != PT_LOAD) continue;
				if (a-base-ph->p_vaddr < ph->p_memsz)
					return p;
			}
			if (a-(size_t)p->map < p->map_len)
				return 0;
		}
	}
	return 0;
}

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static void *do_dlsym(struct dso *p, const char *s, const char *v, void *ra)
3455 3456
{
	int use_deps = 0;
G
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3457 3458 3459
	bool ra2dso = false;
	ns_t *ns = NULL;
	struct dso *caller = NULL;
3460 3461
	if (p == head || p == RTLD_DEFAULT) {
		p = head;
G
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		ra2dso = true;
3463 3464 3465 3466
	} else if (p == RTLD_NEXT) {
		p = addr2dso((size_t)ra);
		if (!p) p=head;
		p = p->next;
G
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		ra2dso = true;
3468
#ifndef HANDLE_RANDOMIZATION
3469 3470
	} else if (__dl_invalid_handle(p)) {
		return 0;
3471
#endif
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	} else {
3473
		use_deps = 1;
G
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3474 3475 3476 3477 3478 3479 3480 3481
		ns = p->namespace;
	}
	if (ra2dso) {
		caller = (struct dso *)addr2dso((size_t)ra);
		if (caller && caller->namespace) {
			ns = caller->namespace;
		}
	}
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	struct verinfo verinfo = { .s = s, .v = v, .use_vna_hash = false };
G
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	struct symdef def = find_sym2(p, &verinfo, 0, use_deps, ns);
3484
	if (!def.sym) {
3485
		LD_LOGE("do_dlsym failed: symbol not found. so=%{public}s s=%{public}s v=%{public}s", p->name, s, v);
G
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3486
		error("Symbol not found: %s, version: %s", s, strlen(v) > 0 ? v : "null");
3487 3488 3489 3490 3491 3492 3493 3494 3495
		return 0;
	}
	if ((def.sym->st_info&0xf) == STT_TLS)
		return __tls_get_addr((tls_mod_off_t []){def.dso->tls_id, def.sym->st_value-DTP_OFFSET});
	if (DL_FDPIC && (def.sym->st_info&0xf) == STT_FUNC)
		return def.dso->funcdescs + (def.sym - def.dso->syms);
	return laddr(def.dso, def.sym->st_value);
}

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static int dlclose_impl(struct dso *p)
3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513
{
	size_t n;
	struct dso *d;

	if (__dl_invalid_handle(p))
		return -1;

	if (!p->by_dlopen) {
		error("Library %s is not loaded by dlopen", p->name);
		return -1;
	}

	/* dso is marked  as RTLD_NODELETE library, do nothing here. */
	if ((p->flags & DSO_FLAGS_NODELETE) != 0) {
		return 0;
	}

D
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3514
	if (--(p->nr_dlopen) > 0)
3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557 3558 3559
		return 0;

	/* call destructors if needed */
	if (p->constructed) {
		size_t dyn[DYN_CNT];
		decode_vec(p->dynv, dyn, DYN_CNT);
		if (dyn[0] & (1<<DT_FINI_ARRAY)) {
			n = dyn[DT_FINI_ARRAYSZ] / sizeof(size_t);
			size_t *fn = (size_t *)laddr(p, dyn[DT_FINI_ARRAY]) + n;
			while (n--)
				((void (*)(void))*--fn)();
		}
		p->constructed = 0;
	}

	/* remove dso symbols from global list */
	if (p->syms_next) {
		for (d = head; d->syms_next != p; d = d->syms_next)
			; /* NOP */
		d->syms_next = p->syms_next;
	} else if (p == syms_tail) {
		for (d = head; d->syms_next != p; d = d->syms_next)
			; /* NOP */
		d->syms_next = NULL;
		syms_tail = d;
	}

	/* remove dso from lazy list if needed */
	if (p == lazy_head) {
		lazy_head = p->lazy_next;
	} else if (p->lazy_next) {
		for (d = lazy_head; d->lazy_next != p; d = d->lazy_next)
			; /* NOP */
		d->lazy_next = p->lazy_next;
	}

	/* remove dso from fini list */
	if (p == fini_head) {
		fini_head = p->fini_next;
	} else if (p->fini_next) {
		for (d = fini_head; d->fini_next != p; d = d->fini_next)
			; /* NOP */
		d->fini_next = p->fini_next;
	}

D
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3560 3561 3562 3563 3564
	/* empty tls image */
	if (p->tls.size != 0) {
		p->tls.image = NULL;
	}

3565 3566 3567 3568 3569 3570 3571 3572 3573
	/* remove dso from global dso list */
	if (p == tail) {
		tail = p->prev;
		tail->next = NULL;
	} else {
		p->next->prev = p->prev;
		p->prev->next = p->next;
	}

Y
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3574 3575
	/* remove dso from namespace */
	dlclose_ns(p);
D
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3576 3577

	unmap_dso_from_cfi_shadow(p);
Y
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3578
	
3579
	if (p->lazy != NULL)
3580
		internal_free(p->lazy);
G
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3581 3582 3583 3584 3585
	if (p->deps) {
		for (int i = 0; i < p->ndeps_direct; i++) {
			remove_dso_parent(p->deps[i], p);
		}
	}
3586
	if (p->deps != no_deps)
3587
		internal_free(p->deps);
3588
	unmap_library(p);
D
dhy308 已提交
3589

G
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3590 3591 3592
	if (p->parents) {
		internal_free(p->parents);
	}
3593

Y
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3594
	free_reloc_can_search_dso(p);
D
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3595 3596 3597
	if (p->tls.size == 0) {
		internal_free(p);
	}
3598 3599 3600 3601

	return 0;
}

D
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3602 3603
static char* dlclose_deps_black_list[] =
{
D
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3604
	"/system/lib/libhidebug.so",
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3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624
	"/system/lib64/libhidebug.so", 
	"/system/lib64/libmsdp_neardetect_algorithm.z.so", 
	"/vendor/lib64/libhril_hdf.z.so"
};

static int do_dlclose(struct dso *p)
{
	bool ldclose_deps = true;

	for (int i = 0; i < sizeof(dlclose_deps_black_list)/sizeof(char*); i++) {
		if (!strcmp(dlclose_deps_black_list[i], p->name)) {
			ldclose_deps = false;
			break;
		}
	}

	size_t deps_num;

	for (deps_num = 0; p->deps[deps_num]; deps_num++);

D
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3625
	struct dso **deps_bak = internal_malloc(deps_num*sizeof(struct dso*));
D
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3626 3627 3628 3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639
	if (deps_bak != NULL) {
		memcpy(deps_bak, p->deps, deps_num*sizeof(struct dso*));
	}

	LD_LOGI("do_dlclose name=%{public}s count=%{public}d by_dlopen=%{public}d", p->name, p->nr_dlopen, p->by_dlopen);	
	dlclose_impl(p);

	if (ldclose_deps) {
		for (size_t i = 0; i < deps_num; i++) {
			LD_LOGI("do_dlclose name=%{public}s count=%{public}d by_dlopen=%{public}d", deps_bak[i]->name, deps_bak[i]->nr_dlopen, deps_bak[i]->by_dlopen);
			dlclose_impl(deps_bak[i]);
		}
	}

D
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3640 3641 3642
	internal_free(deps_bak);

	return 0;
D
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3643 3644
}

3645 3646 3647 3648 3649
hidden int __dlclose(void *p)
{
	int rc;
	pthread_rwlock_wrlock(&lock);
	__inhibit_ptc();
W
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3650 3651 3652
#ifdef HANDLE_RANDOMIZATION
	struct dso *dso = find_dso_by_handle(p);
	if (dso == NULL) {
G
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3653 3654 3655
		errno = EINVAL;
		error("Handle is invalid.");
		LD_LOGE("Handle is not find.");
W
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3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670
		__release_ptc();
		pthread_rwlock_unlock(&lock);
		return -1;
	}
	rc = do_dlclose(dso);
	if (!rc) {
		struct dso *t = head;
		for (; t && t != dso; t = t->next) {
			;
		}
		if (t == NULL) {
			remove_handle_node(p);
		}
	}
#else
3671
	rc = do_dlclose(p);
W
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3672
#endif
3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715 3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732 3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748
	__release_ptc();
	pthread_rwlock_unlock(&lock);
	return rc;
}

int dladdr(const void *addr_arg, Dl_info *info)
{
	size_t addr = (size_t)addr_arg;
	struct dso *p;
	Sym *sym, *bestsym;
	uint32_t nsym;
	char *strings;
	size_t best = 0;
	size_t besterr = -1;

	pthread_rwlock_rdlock(&lock);
	p = addr2dso(addr);
	pthread_rwlock_unlock(&lock);

	if (!p) return 0;

	sym = p->syms;
	strings = p->strings;
	nsym = count_syms(p);

	if (DL_FDPIC) {
		size_t idx = (addr-(size_t)p->funcdescs)
			/ sizeof(*p->funcdescs);
		if (idx < nsym && (sym[idx].st_info&0xf) == STT_FUNC) {
			best = (size_t)(p->funcdescs + idx);
			bestsym = sym + idx;
			besterr = 0;
		}
	}

	if (!best) for (; nsym; nsym--, sym++) {
		if (sym->st_value
		 && (1<<(sym->st_info&0xf) & OK_TYPES)
		 && (1<<(sym->st_info>>4) & OK_BINDS)) {
			size_t symaddr = (size_t)laddr(p, sym->st_value);
			if (symaddr > addr || symaddr <= best)
				continue;
			best = symaddr;
			bestsym = sym;
			besterr = addr - symaddr;
			if (addr == symaddr)
				break;
		}
	}

	if (best && besterr > bestsym->st_size-1) {
		best = 0;
		bestsym = 0;
	}

	info->dli_fname = p->name;
	info->dli_fbase = p->map;

	if (!best) {
		info->dli_sname = 0;
		info->dli_saddr = 0;
		return 1;
	}

	if (DL_FDPIC && (bestsym->st_info&0xf) == STT_FUNC)
		best = (size_t)(p->funcdescs + (bestsym - p->syms));
	info->dli_sname = strings + bestsym->st_name;
	info->dli_saddr = (void *)best;

	return 1;
}

hidden void *__dlsym(void *restrict p, const char *restrict s, void *restrict ra)
{
	void *res;
	pthread_rwlock_rdlock(&lock);
W
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3749
#ifdef HANDLE_RANDOMIZATION
W
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3750 3751 3752 3753 3754 3755
	if ((p != RTLD_DEFAULT) && (p != RTLD_NEXT)) {
		struct dso *dso = find_dso_by_handle(p);
		if (dso == NULL) {
			pthread_rwlock_unlock(&lock);
			return 0;
		}
G
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3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766 3767 3768 3769 3770 3771 3772 3773 3774 3775 3776 3777 3778
		res = do_dlsym(dso, s, "", ra);
	} else {
		res = do_dlsym(p, s, "", ra);
	}
#else
	res = do_dlsym(p, s, "", ra);
#endif
	pthread_rwlock_unlock(&lock);
	return res;
}

hidden void *__dlvsym(void *restrict p, const char *restrict s, const char *restrict v, void *restrict ra)
{
	void *res;
	pthread_rwlock_rdlock(&lock);
#ifdef HANDLE_RANDOMIZATION
	if ((p != RTLD_DEFAULT) && (p != RTLD_NEXT)) {
		struct dso *dso = find_dso_by_handle(p);
		if (dso == NULL) {
			pthread_rwlock_unlock(&lock);
			return 0;
		}
		res = do_dlsym(dso, s, v, ra);
W
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3779
	} else {
G
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3780
		res = do_dlsym(p, s, v, ra);
W
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3781 3782
	}
#else
G
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3783
	res = do_dlsym(p, s, v, ra);
W
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3784
#endif
3785 3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855
	pthread_rwlock_unlock(&lock);
	return res;
}

hidden void *__dlsym_redir_time64(void *restrict p, const char *restrict s, void *restrict ra)
{
#if _REDIR_TIME64
	const char *suffix, *suffix2 = "";
	char redir[36];

	/* Map the symbol name to a time64 version of itself according to the
	 * pattern used for naming the redirected time64 symbols. */
	size_t l = strnlen(s, sizeof redir);
	if (l<4 || l==sizeof redir) goto no_redir;
	if (s[l-2]=='_' && s[l-1]=='r') {
		l -= 2;
		suffix2 = s+l;
	}
	if (l<4) goto no_redir;
	if (!strcmp(s+l-4, "time")) suffix = "64";
	else suffix = "_time64";

	/* Use the presence of the remapped symbol name in libc to determine
	 * whether it's one that requires time64 redirection; replace if so. */
	snprintf(redir, sizeof redir, "__%.*s%s%s", (int)l, s, suffix, suffix2);
	if (find_sym(&ldso, redir, 1).sym) s = redir;
no_redir:
#endif
	return __dlsym(p, s, ra);
}

int dl_iterate_phdr(int(*callback)(struct dl_phdr_info *info, size_t size, void *data), void *data)
{
	struct dso *current;
	struct dl_phdr_info info;
	int ret = 0;
	for(current = head; current;) {
		info.dlpi_addr      = (uintptr_t)current->base;
		info.dlpi_name      = current->name;
		info.dlpi_phdr      = current->phdr;
		info.dlpi_phnum     = current->phnum;
		info.dlpi_adds      = gencnt;
		info.dlpi_subs      = 0;
		info.dlpi_tls_modid = current->tls_id;
		info.dlpi_tls_data  = current->tls.image;

		ret = (callback)(&info, sizeof (info), data);

		if (ret != 0) break;

		pthread_rwlock_rdlock(&lock);
		current = current->next;
		pthread_rwlock_unlock(&lock);
	}
	return ret;
}

static void error(const char *fmt, ...)
{
	va_list ap;
	va_start(ap, fmt);
	if (!runtime) {
		vdprintf(2, fmt, ap);
		dprintf(2, "\n");
		ldso_fail = 1;
		va_end(ap);
		return;
	}
	__dl_vseterr(fmt, ap);
	va_end(ap);
}
W
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int dlns_set_namespace_lib_path(const char * name, const char * lib_path)
{
	if (!name || !lib_path) {
G
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3860
		LD_LOGE("dlns_set_namespace_lib_path name or lib_path is null.");
W
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3861 3862 3863 3864 3865 3866 3867
		return EINVAL;
	}

	pthread_rwlock_wrlock(&lock);
	ns_t* ns = find_ns_by_name(name);
	if (!ns) {
		pthread_rwlock_unlock(&lock);
G
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3868
		LD_LOGE("dlns_set_namespace_lib_path fail, input ns name : [%{public}s] is not found.", name);
W
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3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879
		return ENOKEY;
	}

	ns_set_lib_paths(ns, lib_path);
	pthread_rwlock_unlock(&lock);
	return 0;
}

int dlns_set_namespace_separated(const char * name, const bool separated)
{
	if (!name) {
G
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3880
		LD_LOGE("dlns_set_namespace_separated name  is null.");
W
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3881 3882 3883 3884 3885 3886 3887
		return EINVAL;
	}

	pthread_rwlock_wrlock(&lock);
	ns_t* ns = find_ns_by_name(name);
	if (!ns) {
		pthread_rwlock_unlock(&lock);
G
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3888
		LD_LOGE("dlns_set_namespace_separated fail, input ns name : [%{public}s] is not found.", name);
W
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3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899
		return ENOKEY;
	}

	ns_set_separated(ns, separated);
	pthread_rwlock_unlock(&lock);
	return 0;
}

int dlns_set_namespace_permitted_paths(const char * name, const char * permitted_paths)
{
	if (!name || !permitted_paths) {
G
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3900
		LD_LOGE("dlns_set_namespace_permitted_paths name or permitted_paths is null.");
W
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3901 3902 3903 3904 3905 3906 3907
		return EINVAL;
	}

	pthread_rwlock_wrlock(&lock);
	ns_t* ns = find_ns_by_name(name);
	if (!ns) {
		pthread_rwlock_unlock(&lock);
G
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3908
		LD_LOGE("dlns_set_namespace_permitted_paths fail, input ns name : [%{public}s] is not found.", name);
W
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3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919
		return ENOKEY;
	}

	ns_set_permitted_paths(ns, permitted_paths);
	pthread_rwlock_unlock(&lock);
	return 0;
}

int dlns_set_namespace_allowed_libs(const char * name, const char * allowed_libs)
{
	if (!name || !allowed_libs) {
G
ganlan 已提交
3920
		LD_LOGE("dlns_set_namespace_allowed_libs name or allowed_libs is null.");
W
wangjiahui 已提交
3921 3922 3923 3924 3925 3926 3927
		return EINVAL;
	}

	pthread_rwlock_wrlock(&lock);
	ns_t* ns = find_ns_by_name(name);
	if (!ns) {
		pthread_rwlock_unlock(&lock);
G
ganlan 已提交
3928
		LD_LOGE("dlns_set_namespace_allowed_libs fail, input ns name : [%{public}s] is not found.", name);
W
wangjiahui 已提交
3929 3930 3931 3932 3933 3934 3935 3936
		return ENOKEY;
	}

	ns_set_allowed_libs(ns, allowed_libs);
	pthread_rwlock_unlock(&lock);
	return 0;
}

W
wangjiahui 已提交
3937
int handle_asan_path_open(int fd, const char *name, ns_t *namespace, char *buf, size_t buf_size)
W
wangjiahui 已提交
3938
{
G
ganlan 已提交
3939
	LD_LOGD("handle_asan_path_open fd:%{public}d, name:%{public}s , namespace:%{public}s .",
G
ganlan 已提交
3940 3941
		fd,
		name,
G
ganlan 已提交
3942
		namespace ? namespace->ns_name : "NULL");
G
ganlan 已提交
3943
	int fd_tmp = fd;
W
wangjiahui 已提交
3944 3945 3946
	if (fd == -1 && (namespace->asan_lib_paths || namespace->lib_paths)) {
		if (namespace->lib_paths && namespace->asan_lib_paths) {
			size_t newlen = strlen(namespace->asan_lib_paths) + strlen(namespace->lib_paths) + 2;
3947
			char *new_lib_paths = internal_malloc(newlen);
W
wangjiahui 已提交
3948 3949 3950 3951
			memset(new_lib_paths, 0, newlen);
			strcpy(new_lib_paths, namespace->asan_lib_paths);
			strcat(new_lib_paths, ":");
			strcat(new_lib_paths, namespace->lib_paths);
W
wangjiahui 已提交
3952
			fd_tmp = path_open(name, new_lib_paths, buf, buf_size);
G
ganlan 已提交
3953
			LD_LOGD("handle_asan_path_open path_open new_lib_paths:%{public}s ,fd: %{public}d.", new_lib_paths, fd_tmp);
3954
			internal_free(new_lib_paths);
W
wangjiahui 已提交
3955
		} else if (namespace->asan_lib_paths) {
W
wangjiahui 已提交
3956
			fd_tmp = path_open(name, namespace->asan_lib_paths, buf, buf_size);
G
ganlan 已提交
3957 3958 3959 3960
			LD_LOGD("handle_asan_path_open path_open asan_lib_paths:%{public}s ,fd: %{public}d.",
				namespace->asan_lib_paths,
				fd_tmp);
		} else {
W
wangjiahui 已提交
3961
			fd_tmp = path_open(name, namespace->lib_paths, buf, buf_size);
G
ganlan 已提交
3962 3963 3964
			LD_LOGD(
				"handle_asan_path_open path_open lib_paths:%{public}s ,fd: %{public}d.", namespace->lib_paths, fd_tmp);
		}
W
wangjiahui 已提交
3965 3966 3967
	}
	return fd_tmp;
}
W
wangjiahui 已提交
3968 3969 3970

void* dlopen_ext(const char *file, int mode, const dl_extinfo *extinfo)
{
3971 3972 3973
	const void *caller_addr = __builtin_return_address(0);
	musl_log_reset();
	ld_log_reset();
W
wangjiahui 已提交
3974 3975
	if (extinfo != NULL) {
		if ((extinfo->flag & ~(DL_EXT_VALID_FLAG_BITS)) != 0) {
G
ganlan 已提交
3976
			LD_LOGE("Error dlopen_ext %{public}s: invalid flag %{public}x", file, extinfo->flag);
W
wangjiahui 已提交
3977 3978 3979
			return NULL;
		}
	}
G
ganlan 已提交
3980
	LD_LOGI("dlopen_ext file:%{public}s, mode:%{public}x , caller_addr:%{public}p , extinfo->flag:%{public}x",
G
ganlan 已提交
3981 3982 3983 3984
		file,
		mode,
		caller_addr,
		extinfo ? extinfo->flag : 0);
W
wangjiahui 已提交
3985 3986 3987 3988
  	return dlopen_impl(file, mode, NULL, caller_addr, extinfo);
}

#ifdef LOAD_ORDER_RANDOMIZATION
3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087 4088 4089 4090 4091 4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116 4117 4118 4119 4120 4121 4122 4123 4124 4125 4126 4127 4128 4129 4130 4131 4132 4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144 4145 4146 4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176
static void open_library_by_path(const char *name, const char *s, struct loadtask *task, struct zip_info *z_info)
{
	char *buf = task->buf;
	size_t buf_size = sizeof task->buf;
	size_t l;
	for (;;) {
		s += strspn(s, ":\n");
		l = strcspn(s, ":\n");
		if (l-1 >= INT_MAX) return;
		if (snprintf(buf, buf_size, "%.*s/%s", (int)l, s, name) < buf_size) {
			char *separator = strstr(buf, ZIP_FILE_PATH_SEPARATOR);
			if (separator != NULL) {
				int res = open_uncompressed_library_in_zipfile(buf, z_info, separator);
				if (res == 0) {
					task->fd = z_info->fd;
					task->file_offset = z_info->file_offset;
					break;
				} else {
					memset(z_info->path_buf, 0, sizeof(z_info->path_buf));
				}
			} else {
				if ((task->fd = open(buf, O_RDONLY|O_CLOEXEC))>=0) break;
			}
		}
		s += l;
	}
	return;
}

static void handle_asan_path_open_by_task(int fd, const char *name, ns_t *namespace, struct loadtask *task,
										  struct zip_info *z_info)
{
	LD_LOGD("handle_asan_path_open_by_task fd:%{public}d, name:%{public}s , namespace:%{public}s .",
			fd,
			name,
			namespace ? namespace->ns_name : "NULL");
	if (fd == -1 && (namespace->asan_lib_paths || namespace->lib_paths)) {
		if (namespace->lib_paths && namespace->asan_lib_paths) {
			size_t newlen = strlen(namespace->asan_lib_paths) + strlen(namespace->lib_paths) + 2;
			char *new_lib_paths = internal_malloc(newlen);
			memset(new_lib_paths, 0, newlen);
			strcpy(new_lib_paths, namespace->asan_lib_paths);
			strcat(new_lib_paths, ":");
			strcat(new_lib_paths, namespace->lib_paths);
			open_library_by_path(name, new_lib_paths, task, z_info);
			LD_LOGD("handle_asan_path_open_by_task open_library_by_path new_lib_paths:%{public}s ,fd: %{public}d.",
					new_lib_paths,
					task->fd);
			internal_free(new_lib_paths);
		} else if (namespace->asan_lib_paths) {
			open_library_by_path(name, namespace->asan_lib_paths, task, z_info);
			LD_LOGD("handle_asan_path_open_by_task open_library_by_path asan_lib_paths:%{public}s ,fd: %{public}d.",
					namespace->asan_lib_paths,
					task->fd);
		} else {
			open_library_by_path(name, namespace->lib_paths, task, z_info);
			LD_LOGD("handle_asan_path_open_by_task open_library_by_path lib_paths:%{public}s ,fd: %{public}d.",
					namespace->lib_paths,
					task->fd);
		}
	}
	return;
}

/* Used to get an uncompress library offset in zip file, then we can use the offset to mmap the library directly. */
int open_uncompressed_library_in_zipfile(const char *path, struct zip_info *z_info, char *separator)
{
	struct local_file_header zip_file_header;
	struct central_dir_entry c_dir_entry;
	struct zip_end_locator end_locator;

	/* Use "'!/' to split the path into zipfile path and library path in zipfile.
	 * For example:
	 * - path: x/xx/xxx.zip!/x/xx/xxx.so
	 * - zipfile path: x/xx/xxx.zip
	 * - library path in zipfile: x/xx/xxx.so  */
	if (strlcpy(z_info->path_buf, path, PATH_BUF_SIZE) >= PATH_BUF_SIZE) {
		LD_LOGE("Open uncompressed library: input path %{public}s is too long.", path);
		return -1;
	}
	z_info->path_buf[separator - path] = '\0';
	z_info->file_path_index = separator - path + 2;
	char *zip_file_path = z_info->path_buf;
	char *lib_path = &z_info->path_buf[z_info->file_path_index];
	if (zip_file_path == NULL || lib_path == NULL) {
		LD_LOGE("Open uncompressed library: get zip and lib path failed.");
		return -1;
	}
	LD_LOGD("Open uncompressed library: input path: %{public}s, zip file path: %{public}s, library path: %{public}s.",
			path, zip_file_path, lib_path);

	// Get zip file length
	FILE *zip_file = fopen(zip_file_path, "re");
	if (zip_file == NULL) {
		LD_LOGE("Open uncompressed library: fopen %{public}s failed.", zip_file_path);
		return -1;
	}
	if (fseek(zip_file, 0, SEEK_END) != 0) {
		LD_LOGE("Open uncompressed library: fseek SEEK_END failed.");
		fclose(zip_file);
		return -1;
	}
	int64_t zip_file_len = ftell(zip_file);
	if (zip_file_len == -1) {
		LD_LOGE("Open uncompressed library: get zip file length failed.");
		fclose(zip_file);
		return -1;
	}

	// Read end of central directory record.
	size_t end_locator_len = sizeof(end_locator);
	size_t end_locator_pos = zip_file_len - end_locator_len;
	if (fseek(zip_file, end_locator_pos, SEEK_SET) != 0) {
		LD_LOGE("Open uncompressed library: fseek end locator position failed.");
		fclose(zip_file);
		return -1;
	}
	if (fread(&end_locator, sizeof(end_locator), 1, zip_file) != 1 || end_locator.signature != EOCD_SIGNATURE) {
		LD_LOGE("Open uncompressed library: fread end locator failed.");
		fclose(zip_file);
		return -1;
	}

	char file_name[PATH_BUF_SIZE];
	uint64_t current_dir_pos = end_locator.offset;
	for (uint16_t i = 0; i < end_locator.total_entries; i++) {
		// Read central dir entry.
		if (fseek(zip_file, current_dir_pos, SEEK_SET) != 0) {
			LD_LOGE("Open uncompressed library: fseek current centra dir entry position failed.");
			fclose(zip_file);
			return -1;
		}
		if (fread(&c_dir_entry, sizeof(c_dir_entry), 1, zip_file) != 1 || c_dir_entry.signature != CENTRAL_SIGNATURE) {
			LD_LOGE("Open uncompressed library: fread centra dir entry failed.");
			fclose(zip_file);
			return -1;
		}

		if (fread(file_name, c_dir_entry.name_size, 1, zip_file) != 1) {
			LD_LOGE("Open uncompressed library: fread file name failed.");
			fclose(zip_file);
			return -1;
		}
		if (strcmp(file_name, lib_path) == 0) {
			// Read local file header.
			if (fseek(zip_file, c_dir_entry.local_header_offset, SEEK_SET) != 0) {
				LD_LOGE("Open uncompressed library: fseek local file header failed.");
				fclose(zip_file);
				return -1;
			}
			if (fread(&zip_file_header, sizeof(zip_file_header), 1, zip_file) != 1) {
				LD_LOGE("Open uncompressed library: fread local file header failed.");
				fclose(zip_file);
				return -1;
			}
			if (zip_file_header.signature != LOCAL_FILE_HEADER_SIGNATURE) {
				LD_LOGE("Open uncompressed library: read local file header signature error.");
				fclose(zip_file);
				return -1;
			}

			z_info->file_offset = c_dir_entry.local_header_offset + sizeof(zip_file_header) +
									zip_file_header.name_size + zip_file_header.extra_size;
			if (zip_file_header.compression_method != COMPRESS_STORED || z_info->file_offset % PAGE_SIZE != 0) {
				LD_LOGE("Open uncompressed library: open %{public}s in %{public}s failed because of misalignment or saved with compression."
						"compress method %{public}d, file offset %{public}lu",
						lib_path, zip_file_path, zip_file_header.compression_method, z_info->file_offset);
				fclose(zip_file);
				return -2;
			}
			z_info->found = true;
			break;
		}

		memset(file_name, 0, sizeof(file_name));
		current_dir_pos += sizeof(c_dir_entry);
		current_dir_pos += c_dir_entry.name_size + c_dir_entry.extra_size + c_dir_entry.comment_size;
	}
	if(!z_info->found) {
		LD_LOGE("Open uncompressed library: %{public}s was not found in %{public}s.", lib_path, zip_file_path);
		fclose(zip_file);
		return -3;
	}
	z_info->fd = fileno(zip_file);

	return 0;
}

W
wangjiahui 已提交
4177 4178 4179 4180 4181 4182
static bool map_library_header(struct loadtask *task)
{
	off_t off_start;
	Phdr *ph;
	size_t i;

4183
	ssize_t l = pread(task->fd, task->ehdr_buf, sizeof task->ehdr_buf, task->file_offset);
W
wangjiahui 已提交
4184 4185
	task->eh = task->ehdr_buf;
	if (l < 0) {
G
ganlan 已提交
4186
		LD_LOGE("Error mapping header %{public}s: failed to read fd", task->name);
W
wangjiahui 已提交
4187 4188 4189
		return false;
	}
	if (l < sizeof(Ehdr) || (task->eh->e_type != ET_DYN && task->eh->e_type != ET_EXEC)) {
G
ganlan 已提交
4190
		LD_LOGE("Error mapping header %{public}s: invaliled Ehdr", task->name);
W
wangjiahui 已提交
4191 4192 4193 4194
		goto noexec;
	}
	task->phsize = task->eh->e_phentsize * task->eh->e_phnum;
	if (task->phsize > sizeof task->ehdr_buf - sizeof(Ehdr)) {
4195
		task->allocated_buf = internal_malloc(task->phsize);
W
wangjiahui 已提交
4196
		if (!task->allocated_buf) {
G
ganlan 已提交
4197
			LD_LOGE("Error mapping header %{public}s: failed to alloc memory", task->name);
W
wangjiahui 已提交
4198 4199
			return false;
		}
4200
		l = pread(task->fd, task->allocated_buf, task->phsize, task->eh->e_phoff + task->file_offset);
W
wangjiahui 已提交
4201
		if (l < 0) {
G
ganlan 已提交
4202
			LD_LOGE("Error mapping header %{public}s: failed to pread", task->name);
W
wangjiahui 已提交
4203 4204 4205
			goto error;
		}
		if (l != task->phsize) {
G
ganlan 已提交
4206
			LD_LOGE("Error mapping header %{public}s: unmatched phsize", task->name);
W
wangjiahui 已提交
4207 4208 4209 4210
			goto noexec;
		}
		ph = task->ph0 = task->allocated_buf;
	} else if (task->eh->e_phoff + task->phsize > l) {
4211
		l = pread(task->fd, task->ehdr_buf + 1, task->phsize, task->eh->e_phoff + task->file_offset);
W
wangjiahui 已提交
4212
		if (l < 0) {
G
ganlan 已提交
4213
			LD_LOGE("Error mapping header %{public}s: failed to pread", task->name);
W
wangjiahui 已提交
4214 4215 4216
			goto error;
		}
		if (l != task->phsize) {
G
ganlan 已提交
4217
			LD_LOGE("Error mapping header %{public}s: unmatched phsize", task->name);
W
wangjiahui 已提交
4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240
			goto noexec;
		}
		ph = task->ph0 = (void *)(task->ehdr_buf + 1);
	} else {
		ph = task->ph0 = (void *)((char *)task->ehdr_buf + task->eh->e_phoff);
	}
	for (i = task->eh->e_phnum; i; i--, ph = (void *)((char *)ph + task->eh->e_phentsize)) {
		if (ph->p_type == PT_DYNAMIC) {
			task->dyn = ph->p_vaddr;
		} else if (ph->p_type == PT_TLS) {
			task->tls_image = ph->p_vaddr;
			task->tls.align = ph->p_align;
			task->tls.len = ph->p_filesz;
			task->tls.size = ph->p_memsz;
		}

		if (ph->p_type != PT_DYNAMIC) {
			continue;
		}
		// map the dynamic segment and the string table of the library
		off_start = ph->p_offset;
		off_start &= -PAGE_SIZE;
		task->dyn_map_len = ph->p_memsz + (ph->p_offset - off_start);
4241 4242 4243 4244
		/* The default value of file_offset is 0.
		 * The value of file_offset may be greater than 0 when opening library from zip file.
		 * The value of file_offset ensures PAGE_SIZE aligned. */
		task->dyn_map = mmap(0, task->dyn_map_len, PROT_READ, MAP_PRIVATE, task->fd, off_start + task->file_offset);
W
wangjiahui 已提交
4245
		if (task->dyn_map == MAP_FAILED) {
G
ganlan 已提交
4246
			LD_LOGE("Error mapping header %{public}s: failed to map dynamic section", task->name);
W
wangjiahui 已提交
4247 4248 4249 4250 4251 4252 4253 4254 4255
			goto error;
		}
		task->dyn_addr = (size_t *)((unsigned char *)task->dyn_map + (ph->p_offset - off_start));
		size_t dyn_tmp;
		off_t str_table;
		size_t str_size;
		if (search_vec(task->dyn_addr, &dyn_tmp, DT_STRTAB)) {
			str_table = dyn_tmp;
		} else {
G
ganlan 已提交
4256
			LD_LOGE("Error mapping header %{public}s: DT_STRTAB not found", task->name);
W
wangjiahui 已提交
4257 4258 4259 4260 4261
			goto error;
		}
		if (search_vec(task->dyn_addr, &dyn_tmp, DT_STRSZ)) {
			str_size = dyn_tmp;
		} else {
G
ganlan 已提交
4262
			LD_LOGE("Error mapping header %{public}s: DT_STRSZ not found", task->name);
W
wangjiahui 已提交
4263 4264 4265 4266 4267
			goto error;
		}
		off_start = str_table;
		off_start &= -PAGE_SIZE;
		task->str_map_len = str_size + (str_table - off_start);
4268
		task->str_map = mmap(0, task->str_map_len, PROT_READ, MAP_PRIVATE, task->fd, off_start + task->file_offset);
W
wangjiahui 已提交
4269
		if (task->str_map == MAP_FAILED) {
G
ganlan 已提交
4270
			LD_LOGE("Error mapping header %{public}s: failed to map string section", task->name);
W
wangjiahui 已提交
4271 4272 4273 4274 4275
			goto error;
		}
		task->str_addr = (char *)task->str_map + str_table - off_start;
	}
	if (!task->dyn) {
G
ganlan 已提交
4276
		LD_LOGE("Error mapping header %{public}s: dynamic section not found", task->name);
W
wangjiahui 已提交
4277 4278 4279 4280 4281 4282
		goto noexec;
	}
	return true;
noexec:
	errno = ENOEXEC;
error:
4283
	internal_free(task->allocated_buf);
W
wangjiahui 已提交
4284 4285 4286 4287
	task->allocated_buf = NULL;
	return false;
}

W
wangjiahui 已提交
4288
static bool task_map_library(struct loadtask *task, struct reserved_address_params *reserved_params)
W
wangjiahui 已提交
4289 4290 4291 4292 4293 4294 4295 4296 4297
{
	size_t addr_min = SIZE_MAX, addr_max = 0, map_len;
	size_t this_min, this_max;
	size_t nsegs = 0;
	off_t off_start;
	Phdr *ph = task->ph0;
	unsigned prot;
	unsigned char *map = MAP_FAILED, *base;
	size_t i;
W
wangjiahui 已提交
4298 4299
	int map_flags = MAP_PRIVATE;
	size_t start_addr;
W
wangjiahui 已提交
4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310 4311 4312 4313 4314 4315 4316 4317 4318 4319 4320 4321 4322 4323 4324 4325 4326 4327

	for (i = task->eh->e_phnum; i; i--, ph = (void *)((char *)ph + task->eh->e_phentsize)) {
		if (ph->p_type == PT_GNU_RELRO) {
			task->p->relro_start = ph->p_vaddr & -PAGE_SIZE;
			task->p->relro_end = (ph->p_vaddr + ph->p_memsz) & -PAGE_SIZE;
		} else if (ph->p_type == PT_GNU_STACK) {
			if (!runtime && ph->p_memsz > __default_stacksize) {
				__default_stacksize =
					ph->p_memsz < DEFAULT_STACK_MAX ?
					ph->p_memsz : DEFAULT_STACK_MAX;
			}
		}
		if (ph->p_type != PT_LOAD) {
			continue;
		}
		nsegs++;
		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 (!task->dyn) {
G
ganlan 已提交
4328
		LD_LOGE("Error mapping library %{public}s: dynamic section not found", task->name);
W
wangjiahui 已提交
4329 4330 4331
		goto noexec;
	}
	if (DL_FDPIC && !(task->eh->e_flags & FDPIC_CONSTDISP_FLAG)) {
4332
		task->p->loadmap = internal_calloc(1, sizeof(struct fdpic_loadmap) + nsegs * sizeof(struct fdpic_loadseg));
W
wangjiahui 已提交
4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345
		if (!task->p->loadmap) {
			goto error;
		}
		task->p->loadmap->nsegs = nsegs;
		for (ph = task->ph0, i = 0; i < nsegs; ph = (void *)((char *)ph + task->eh->e_phentsize)) {
			if (ph->p_type != PT_LOAD) {
				continue;
			}
			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));
			map = mmap(0, ph->p_memsz + (ph->p_vaddr & PAGE_SIZE - 1),
				prot, MAP_PRIVATE,
4346
				task->fd, ph->p_offset & -PAGE_SIZE + task->file_offset);
W
wangjiahui 已提交
4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376
			if (map == MAP_FAILED) {
				unmap_library(task->p);
				goto error;
			}
			task->p->loadmap->segs[i].addr = (size_t)map +
				(ph->p_vaddr & PAGE_SIZE - 1);
			task->p->loadmap->segs[i].p_vaddr = ph->p_vaddr;
			task->p->loadmap->segs[i].p_memsz = ph->p_memsz;
			i++;
			if (prot & PROT_WRITE) {
				size_t brk = (ph->p_vaddr & PAGE_SIZE - 1) + ph->p_filesz;
				size_t pgbrk = (brk + PAGE_SIZE - 1) & -PAGE_SIZE;
				size_t pgend = (brk + ph->p_memsz - ph->p_filesz + PAGE_SIZE - 1) & -PAGE_SIZE;
				if (pgend > pgbrk && mmap_fixed(map + pgbrk,
					pgend - pgbrk, prot,
					MAP_PRIVATE | MAP_FIXED | MAP_ANONYMOUS,
					-1, off_start) == MAP_FAILED)
					goto error;
				memset(map + brk, 0, pgbrk - brk);
			}
		}
		map = (void *)task->p->loadmap->segs[0].addr;
		map_len = 0;
		goto done_mapping;
	}
	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;
W
wangjiahui 已提交
4377 4378 4379 4380
	start_addr = addr_min;
	if (reserved_params) {
		if (map_len > reserved_params->reserved_size) {
			if (reserved_params->must_use_reserved) {
G
ganlan 已提交
4381
				LD_LOGE("Error mapping library %{public}s: map len is larger than reserved address", task->name);
W
wangjiahui 已提交
4382 4383 4384 4385 4386 4387 4388
				goto error;
			}
		} else {
			start_addr = ((size_t)reserved_params->start_addr - 1 + PAGE_SIZE) & -PAGE_SIZE;
			map_flags |= MAP_FIXED;
		}
	}
D
dhy308 已提交
4389 4390 4391

	/* we will find a LIBRARY_ALIGNMENT aligned address as the start of dso
	 * so we need a tmp_map_len as map_len + LIBRARY_ALIGNMENT to make sure
D
dhy308 已提交
4392
	 * we have enough space to shift the dso to the correct location. */
D
dhy308 已提交
4393 4394 4395 4396 4397
	size_t tmp_map_len = ALIGN(map_len, LIBRARY_ALIGNMENT) + LIBRARY_ALIGNMENT - PAGE_SIZE;

	/* if reserved_params exists, we should use start_addr as prefered result to do the mmap operation */
	if (reserved_params) {
		map = DL_NOMMU_SUPPORT
W
wangjiahui 已提交
4398
			? mmap((void *)start_addr, map_len, PROT_READ | PROT_WRITE | PROT_EXEC, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0)
4399
			: mmap((void *)start_addr, map_len, prot, map_flags, task->fd, off_start + task->file_offset);
D
dhy308 已提交
4400 4401 4402 4403 4404 4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427
		if (map == MAP_FAILED) {
			goto error;
		}
		if (reserved_params && map_len < reserved_params->reserved_size) {
			reserved_params->reserved_size -= (map_len + (start_addr - (size_t)reserved_params->start_addr));
			reserved_params->start_addr = (void *)((uint8_t *)map + map_len);
		}
	/* if reserved_params does not exist, we should use real_map as prefered result to do the mmap operation */
	} else {
		/* use tmp_map_len to mmap enough space for the dso with anonymous mapping */
		unsigned char *temp_map = mmap((void *)NULL, tmp_map_len, PROT_NONE, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
		if (temp_map == MAP_FAILED) {
			goto error;
		}

		/* find the LIBRARY_ALIGNMENT aligned address */
		unsigned char *real_map = (unsigned char*)ALIGN((uintptr_t)temp_map, LIBRARY_ALIGNMENT);

		/* mummap the space we mmap before so that we can mmap correct space again */
		munmap(temp_map, tmp_map_len);

		map = DL_NOMMU_SUPPORT
			? mmap(real_map, map_len, PROT_READ | PROT_WRITE | PROT_EXEC, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0)
			/* use map_len to mmap correct space for the dso with file mapping */
			: mmap(real_map, map_len, prot, map_flags, task->fd, off_start + task->file_offset);
		if (map == MAP_FAILED) {
			goto error;
		}
W
wangjiahui 已提交
4428
	}
W
wangjiahui 已提交
4429 4430 4431 4432 4433
	task->p->map = map;
	task->p->map_len = map_len;
	/* If the loaded file is not relocatable and the requested address is
	 * not available, then the load operation must fail. */
	if (task->eh->e_type != ET_DYN && addr_min && map != (void *)addr_min) {
G
ganlan 已提交
4434
		LD_LOGE("Error mapping library %{public}s: device or resource busy", task->name);
W
wangjiahui 已提交
4435 4436 4437 4438 4439 4440 4441
		errno = EBUSY;
		goto error;
	}
	base = map - addr_min;
	task->p->phdr = 0;
	task->p->phnum = 0;
	for (ph = task->ph0, i = task->eh->e_phnum; i; i--, ph = (void *)((char *)ph + task->eh->e_phentsize)) {
4442 4443 4444 4445
		if (ph->p_type == PT_OHOS_RANDOMDATA) {
			fill_random_data((void *)(ph->p_vaddr + base), ph->p_memsz);
			continue;
		}
W
wangjiahui 已提交
4446 4447 4448 4449 4450 4451 4452 4453 4454 4455 4456 4457 4458 4459 4460 4461 4462 4463
		if (ph->p_type != PT_LOAD) {
			continue;
		}
		/* Check if the programs headers are in this load segment, and
		 * if so, record the address for use by dl_iterate_phdr. */
		if (!task->p->phdr && task->eh->e_phoff >= ph->p_offset
			&& task->eh->e_phoff + task->phsize <= ph->p_offset + ph->p_filesz) {
			task->p->phdr = (void *)(base + ph->p_vaddr + (task->eh->e_phoff - ph->p_offset));
			task->p->phnum = task->eh->e_phnum;
			task->p->phentsize = task->eh->e_phentsize;
		}
		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));
		/* Reuse the existing mapping for the lowest-address LOAD */
G
ganlan 已提交
4464
		if ((ph->p_vaddr & -PAGE_SIZE) != addr_min || DL_NOMMU_SUPPORT) {
W
wangjiahui 已提交
4465 4466 4467 4468 4469
			if (mmap_fixed(
					base + this_min,
					this_max - this_min,
					prot, MAP_PRIVATE | MAP_FIXED,
					task->fd,
4470
					off_start + task->file_offset) == MAP_FAILED) {
G
ganlan 已提交
4471
				LD_LOGE("Error mapping library %{public}s: mmap fix failed, errno: %{public}d", task->name, errno);
W
wangjiahui 已提交
4472
				goto error;
G
ganlan 已提交
4473
			}
W
wangjiahui 已提交
4474 4475 4476 4477 4478 4479 4480 4481 4482 4483 4484 4485
		}
		if (ph->p_memsz > ph->p_filesz && (ph->p_flags & PF_W)) {
			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);
			if (pgbrk - (size_t)base < this_max && mmap_fixed(
				(void *)pgbrk,
				(size_t)base + this_max - pgbrk,
				prot,
				MAP_PRIVATE | MAP_FIXED | MAP_ANONYMOUS,
				-1,
				0) == MAP_FAILED) {
G
ganlan 已提交
4486
				LD_LOGE("Error mapping library: mmap fix failed");
W
wangjiahui 已提交
4487 4488 4489 4490 4491 4492 4493
				goto error;
			}
		}
	}
	for (i = 0; ((size_t *)(base + task->dyn))[i]; i += NEXT_DYNAMIC_INDEX) {
		if (((size_t *)(base + task->dyn))[i] == DT_TEXTREL) {
			if (mprotect(map, map_len, PROT_READ | PROT_WRITE | PROT_EXEC) && errno != ENOSYS) {
G
ganlan 已提交
4494
				LD_LOGE("Error mapping library %{public}s: mprotect failed", task->name);
W
wangjiahui 已提交
4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505
				goto error;
			}
			break;
		}
	}
done_mapping:
	task->p->base = base;
	task->p->dynv = laddr(task->p, task->dyn);
	if (task->p->tls.size) {
		task->p->tls.image = laddr(task->p, task->tls_image);
	}
4506
	internal_free(task->allocated_buf);
W
wangjiahui 已提交
4507 4508 4509 4510 4511 4512 4513 4514
	task->allocated_buf = NULL;
	return true;
noexec:
	errno = ENOEXEC;
error:
	if (map != MAP_FAILED) {
		unmap_library(task->p);
	}
4515
	internal_free(task->allocated_buf);
W
wangjiahui 已提交
4516 4517 4518 4519 4520 4521 4522 4523 4524 4525
	task->allocated_buf = NULL;
	return false;
}

static bool load_library_header(struct loadtask *task)
{
	const char *name = task->name;
	struct dso *needed_by = task->needed_by;
	ns_t *namespace = task->namespace;
	bool check_inherited = task->check_inherited;
4526
	struct zip_info z_info;
W
wangjiahui 已提交
4527 4528 4529 4530 4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552 4553 4554 4555 4556 4557 4558 4559 4560 4561 4562 4563 4564 4565 4566 4567 4568 4569 4570 4571 4572 4573 4574 4575 4576 4577 4578 4579 4580 4581

	bool map = false;
	struct stat st;
	size_t alloc_size;
	int n_th = 0;
	int is_self = 0;

	if (!*name) {
		errno = EINVAL;
		return false;
	}

	/* Catch and block attempts to reload the implementation itself */
	if (name[NAME_INDEX_ZERO] == 'l' && name[NAME_INDEX_ONE] == 'i' && name[NAME_INDEX_TWO] == 'b') {
		static const char reserved[] =
			"c.pthread.rt.m.dl.util.xnet.";
		const char *rp, *next;
		for (rp = reserved; *rp; rp = next) {
			next = strchr(rp, '.') + 1;
			if (strncmp(name + NAME_INDEX_THREE, rp, next - rp) == 0) {
				break;
			}
		}
		if (*rp) {
			if (ldd_mode) {
				/* Track which names have been resolved
				 * and only report each one once. */
				static unsigned reported;
				unsigned mask = 1U << (rp - reserved);
				if (!(reported & mask)) {
					reported |= mask;
					dprintf(1, "\t%s => %s (%p)\n",
						name, ldso.name,
						ldso.base);
				}
			}
			is_self = 1;
		}
	}
	if (!strcmp(name, ldso.name)) {
		is_self = 1;
	}
	if (is_self) {
		if (!ldso.prev) {
			tail->next = &ldso;
			ldso.prev = tail;
			tail = &ldso;
			ldso.namespace = namespace;
			ns_add_dso(namespace, &ldso);
		}
		task->isloaded = true;
		task->p = &ldso;
		return true;
	}
	if (strchr(name, '/')) {
4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595
		char *separator = strstr(name, ZIP_FILE_PATH_SEPARATOR);
		if (separator != NULL) {
			int res = open_uncompressed_library_in_zipfile(name, &z_info, separator);
			if (!res) {
				task->pathname = name;
				if (!is_accessible(namespace, task->pathname, g_is_asan, check_inherited)) {
					LD_LOGE("Open uncompressed library: check ns accessible failed, pathname %{public}s namespace %{public}s.",
							task->pathname, namespace ? namespace->ns_name : "NULL");
					task->fd = -1;
				} else {
					task->fd = z_info.fd;
					task->file_offset = z_info.file_offset;
				}
			} else {
4596
				LD_LOGE("Open uncompressed library in zip file failed, name:%{public}s res:%{public}d", name, res);
4597 4598
				return false;
			}
W
wangjiahui 已提交
4599
		} else {
4600 4601 4602 4603 4604 4605
			task->pathname = name;
			if (!is_accessible(namespace, task->pathname, g_is_asan, check_inherited)) {
				task->fd = -1;
			} else {
				task->fd = open(name, O_RDONLY | O_CLOEXEC);
			}
W
wangjiahui 已提交
4606 4607 4608 4609 4610 4611 4612 4613 4614 4615
		}
	} else {
		/* Search for the name to see if it's already loaded */
		/* Search in namespace */
		task->p = find_library_by_name(name, namespace, check_inherited);
		if (task->p) {
			task->isloaded = true;
			return true;
		}
		if (strlen(name) > NAME_MAX) {
G
ganlan 已提交
4616
			LD_LOGE("load_library name length is larger than NAME_MAX:%{public}s.", name);
W
wangjiahui 已提交
4617 4618 4619 4620
			return false;
		}
		task->fd = -1;
		if (namespace->env_paths) {
4621
			open_library_by_path(name, namespace->env_paths, task, &z_info);
W
wangjiahui 已提交
4622 4623 4624 4625 4626 4627
		}
		for (task->p = needed_by; task->fd == -1 && task->p; task->p = task->p->needed_by) {
			if (fixup_rpath(task->p, task->buf, sizeof task->buf) < 0) {
				task->fd = INVALID_FD_INHIBIT_FURTHER_SEARCH; /* Inhibit further search. */
			}
			if (task->p->rpath) {
4628
				open_library_by_path(name, task->p->rpath, task, &z_info);
W
wangjiahui 已提交
4629 4630 4631
			}
		}
		if (g_is_asan) {
4632 4633
			handle_asan_path_open_by_task(task->fd, name, namespace, task, &z_info);
			LD_LOGD("load_library handle_asan_path_open_by_task fd:%{public}d.", task->fd);
W
wangjiahui 已提交
4634 4635
		} else {
			if (task->fd == -1 && namespace->lib_paths) {
4636
				open_library_by_path(name, namespace->lib_paths, task, &z_info);
G
ganlan 已提交
4637
				LD_LOGD("load_library no asan lib_paths path_open fd:%{public}d.", task->fd);
W
wangjiahui 已提交
4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661
			}
		}
		task->pathname = task->buf;
	}
	if (task->fd < 0) {
		if (!check_inherited || !namespace->ns_inherits) {
			return false;
		}
		/* Load lib in inherited namespace. Do not check inherited again.*/
		for (size_t i = 0; i < namespace->ns_inherits->num; i++) {
			ns_inherit *inherit = namespace->ns_inherits->inherits[i];
			if (strchr(name, '/') == 0 && !is_sharable(inherit, name)) {
				continue;
			}
			task->namespace = inherit->inherited_ns;
			task->check_inherited = false;
			if (load_library_header(task)) {
				return true;
			}
		}
		return false;
	}

	if (fstat(task->fd, &st) < 0) {
G
ganlan 已提交
4662
		LD_LOGE("Error loading header %{public}s: failed to get file state", task->name);
W
wangjiahui 已提交
4663 4664 4665 4666 4667
		close(task->fd);
		task->fd = -1;
		return false;
	}
	/* Search in namespace */
4668
	task->p = find_library_by_fstat(&st, namespace, check_inherited, task->file_offset);
W
wangjiahui 已提交
4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680 4681 4682 4683
	if (task->p) {
		/* 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. */
		if (!task->p->shortname && task->pathname != name) {
			task->p->shortname = strrchr(task->p->name, '/') + 1;
		}
		close(task->fd);
		task->fd = -1;
		task->isloaded = true;
		return true;
	}

	map = noload ? 0 : map_library_header(task);
	if (!map) {
G
ganlan 已提交
4684
		LD_LOGE("Error loading header %{public}s: failed to map header", task->name);
W
wangjiahui 已提交
4685 4686 4687 4688 4689 4690 4691 4692 4693 4694 4695 4696 4697 4698 4699 4700 4701 4702 4703 4704
		close(task->fd);
		task->fd = -1;
		return false;
	}

	/* 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(struct dso) + strlen(task->pathname) + 1;
	if (runtime && task->tls.size) {
		size_t per_th = task->tls.size + task->tls.align + sizeof(void *) * (tls_cnt + TLS_CNT_INCREASE);
		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;
		}
	}
4705
	task->p = internal_calloc(1, alloc_size);
W
wangjiahui 已提交
4706
	if (!task->p) {
G
ganlan 已提交
4707
		LD_LOGE("Error loading header %{public}s: failed to allocate dso", task->name);
W
wangjiahui 已提交
4708 4709 4710 4711 4712 4713
		close(task->fd);
		task->fd = -1;
		return false;
	}
	task->p->dev = st.st_dev;
	task->p->ino = st.st_ino;
4714
	task->p->file_offset = task->file_offset;
W
wangjiahui 已提交
4715 4716 4717 4718 4719 4720 4721 4722 4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735 4736 4737 4738 4739 4740 4741 4742 4743
	task->p->needed_by = needed_by;
	task->p->name = task->p->buf;
	strcpy(task->p->name, task->pathname);
	task->p->tls = task->tls;
	task->p->dynv = task->dyn_addr;
	task->p->strings = task->str_addr;

	/* Add a shortname only if name arg was not an explicit pathname. */
	if (task->pathname != name) {
		task->p->shortname = strrchr(task->p->name, '/') + 1;
	}

	if (task->p->tls.size) {
		task->p->tls_id = ++tls_cnt;
		task->p->new_dtv = (void *)(-sizeof(size_t) &
			(uintptr_t)(task->p->name + strlen(task->p->name) + sizeof(size_t)));
		task->p->new_tls = (void *)(task->p->new_dtv + n_th * (tls_cnt + 1));
	}

	tail->next = task->p;
	task->p->prev = tail;
	tail = task->p;

	/* Add dso to namespace */
	task->p->namespace = namespace;
	ns_add_dso(namespace, task->p);
	return true;
}

W
wangjiahui 已提交
4744
static void task_load_library(struct loadtask *task, struct reserved_address_params *reserved_params)
W
wangjiahui 已提交
4745
{
W
wangjiahui 已提交
4746
	bool map = noload ? 0 : task_map_library(task, reserved_params);
W
wangjiahui 已提交
4747 4748 4749
	close(task->fd);
	task->fd = -1;
	if (!map) {
G
ganlan 已提交
4750
		LD_LOGE("Error loading library %{public}s: failed to map library", task->name);
W
wangjiahui 已提交
4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764
		error("Error loading library %s: failed to map library", task->name);
		if (runtime) {
			longjmp(*rtld_fail, 1);
		}
		return;
	};

	/* Avoid the danger of getting two versions of libc mapped into the
	 * same process when an absolute pathname was used. The symbols
	 * checked are chosen to catch both musl and glibc, and to avoid
	 * false positives from interposition-hack libraries. */
	decode_dyn(task->p);
	if (find_sym(task->p, "__libc_start_main", 1).sym &&
		find_sym(task->p, "stdin", 1).sym) {
4765 4766
		do_dlclose(task->p);
		task->p = NULL;
4767 4768
		internal_free((void*)task->name);
		task->name = ld_strdup("libc.so");
W
wangjiahui 已提交
4769
		task->check_inherited = true;
4770
		if (!load_library_header(task)) {
G
ganlan 已提交
4771
			LD_LOGE("Error loading library %{public}s: failed to load libc.so", task->name);
4772 4773 4774 4775 4776
			error("Error loading library %s: failed to load libc.so", task->name);
			if (runtime) {
				longjmp(*rtld_fail, 1);
			}
		}
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		return;
	}
	/* Past this point, if we haven't reached runtime yet, ldso has
	 * committed either to use the mapped library or to abort execution.
	 * Unmapping is not possible, so we can safely reclaim gaps. */
	if (!runtime) {
		reclaim_gaps(task->p);
	}
	task->p->runtime_loaded = runtime;
	if (runtime)
		task->p->by_dlopen = 1;

	if (DL_FDPIC) {
		makefuncdescs(task->p);
	}

	if (ldd_mode) {
		dprintf(1, "\t%s => %s (%p)\n", task->name, task->pathname, task->p->base);
	}
}

static void preload_direct_deps(struct dso *p, ns_t *namespace, struct loadtasks *tasks)
{
	size_t i, cnt = 0;
	if (p->deps) {
		return;
	}
	/* For head, all preloads are direct pseudo-dependencies.
	 * Count and include them now to avoid realloc later. */
	if (p == head) {
		for (struct dso *q = p->next; q; q = q->next) {
			cnt++;
		}
	}
	for (i = 0; p->dynv[i]; i += NEXT_DYNAMIC_INDEX) {
		if (p->dynv[i] == DT_NEEDED) {
			cnt++;
		}
	}
	/* Use builtin buffer for apps with no external deps, to
	 * preserve property of no runtime failure paths. */
	p->deps = (p == head && cnt < MIN_DEPS_COUNT) ? builtin_deps :
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		internal_calloc(cnt + 1, sizeof *p->deps);
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	if (!p->deps) {
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		LD_LOGE("Error loading dependencies for %{public}s", p->name);
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		error("Error loading dependencies for %s", p->name);
		if (runtime) {
			longjmp(*rtld_fail, 1);
		}
	}
	cnt = 0;
	if (p == head) {
		for (struct dso *q = p->next; q; q = q->next) {
			p->deps[cnt++] = q;
		}
	}
	for (i = 0; p->dynv[i]; i += NEXT_DYNAMIC_INDEX) {
		if (p->dynv[i] != DT_NEEDED) {
			continue;
		}
		struct loadtask *task = create_loadtask(p->strings + p->dynv[i + 1], p, namespace, true);
		if (!task) {
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			LD_LOGE("Error loading dependencies %{public}s : create load task failed", p->name);
			error("Error loading dependencies for %s : create load task failed", p->name);
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			if (runtime) {
				longjmp(*rtld_fail, 1);
			}
			continue;
		}
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		LD_LOGD("loading shared library %{public}s: (needed by %{public}s)", p->strings + p->dynv[i+1], p->name);
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		if (!load_library_header(task)) {
			free_task(task);
			task = NULL;
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			LD_LOGE("Error loading shared library %{public}s: (needed by %{public}s)",
				p->strings + p->dynv[i + 1],
				p->name);
			error("Error loading shared library %s: %m (needed by %s)",
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				p->strings + p->dynv[i + 1], p->name);
			if (runtime) {
				longjmp(*rtld_fail, 1);
			}
			continue;
		}
		p->deps[cnt++] = task->p;
		if (task->isloaded) {
			free_task(task);
			task = NULL;
		} else {
			append_loadtasks(tasks, task);
		}
	}
	p->deps[cnt] = 0;
	p->ndeps_direct = cnt;
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	for (i = 0; i < p->ndeps_direct; i++) {
		add_dso_parent(p->deps[i], p);
	}
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}

static void unmap_preloaded_sections(struct loadtasks *tasks)
{
	struct loadtask *task = NULL;
	for (size_t i = 0; i < tasks->length; i++) {
		task = get_loadtask(tasks, i);
		if (!task) {
			continue;
		}
		if (task->dyn_map_len) {
			munmap(task->dyn_map, task->dyn_map_len);
			task->dyn_map = NULL;
			task->dyn_map_len = 0;
			if (task->p) {
				task->p->dynv = NULL;
			}
		}
		if (task->str_map_len) {
			munmap(task->str_map, task->str_map_len);
			task->str_map = NULL;
			task->str_map_len = 0;
			if (task->p) {
				task->p->strings = NULL;
			}
		}
	}
}

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static void preload_deps(struct dso *p, struct loadtasks *tasks)
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{
	if (p->deps) {
		return;
	}
	for (; p; p = p->next) {
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		preload_direct_deps(p, p->namespace, tasks);
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	}
}

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static void run_loadtasks(struct loadtasks *tasks, struct reserved_address_params *reserved_params)
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{
	struct loadtask *task = NULL;
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	bool reserved_address = false;
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	for (size_t i = 0; i < tasks->length; i++) {
		task = get_loadtask(tasks, i);
		if (task) {
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			if (reserved_params) {
				reserved_address = reserved_params->reserved_address_recursive || (reserved_params->target == task->p);
			}
			task_load_library(task, reserved_address ? reserved_params : NULL);
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		}
	}
}

static void assign_tls(struct dso *p)
{
	while (p) {
		if (p->tls.image) {
			tls_align = MAXP2(tls_align, p->tls.align);
#ifdef TLS_ABOVE_TP
			p->tls.offset = tls_offset + ((p->tls.align - 1) &
				(-tls_offset + (uintptr_t)p->tls.image));
			tls_offset = p->tls.offset + p->tls.size;
#else
			tls_offset += p->tls.size + p->tls.align - 1;
			tls_offset -= (tls_offset + (uintptr_t)p->tls.image)
				& (p->tls.align - 1);
			p->tls.offset = tls_offset;
#endif
			if (tls_tail) {
				tls_tail->next = &p->tls;
			} else {
				libc.tls_head = &p->tls;
			}
			tls_tail = &p->tls;
		}

		p = p->next;
	}
}

static void load_preload(char *s, ns_t *ns, struct loadtasks *tasks)
{
	int tmp;
	char *z;

	struct loadtask *task = NULL;
	for (z = s; *z; s = z) {
		for (; *s && (isspace(*s) || *s == ':'); s++) {
			;
		}
		for (z = s; *z && !isspace(*z) && *z != ':'; z++) {
			;
		}
		tmp = *z;
		*z = 0;
		task = create_loadtask(s, NULL, ns, true);
		if (!task) {
			continue;
		}
		if (load_library_header(task)) {
			if (!task->isloaded) {
				append_loadtasks(tasks, task);
				task = NULL;
			}
		}
		if (task) {
			free_task(task);
		}
		*z = tmp;
	}
}
#endif

static int serialize_gnu_relro(int fd, struct dso *dso, ssize_t *file_offset)
{
	ssize_t count = dso->relro_end - dso->relro_start;
	ssize_t offset = 0;
	while (count > 0) {
		ssize_t write_size = TEMP_FAILURE_RETRY(write(fd, laddr(dso, dso->relro_start + offset), count));
		if (-1 == write_size) {
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			LD_LOGE("Error serializing relro %{public}s: failed to write GNU_RELRO", dso->name);
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			return -1;
		}
		offset += write_size;
		count -= write_size;
	}

	ssize_t size = dso->relro_end - dso->relro_start;
	void *map = mmap(
		laddr(dso, dso->relro_start),
		size,
		PROT_READ,
		MAP_PRIVATE | MAP_FIXED,
		fd,
		*file_offset);
	if (map == MAP_FAILED) {
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		LD_LOGE("Error serializing relro %{public}s: failed to map GNU_RELRO", dso->name);
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		return -1;
	}
	*file_offset += size;
	return 0;
}

static int map_gnu_relro(int fd, struct dso *dso, ssize_t *file_offset)
{
	ssize_t ext_fd_file_size = 0;
	struct stat ext_fd_file_stat;
	if (TEMP_FAILURE_RETRY(fstat(fd, &ext_fd_file_stat)) != 0) {
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		LD_LOGE("Error mapping relro %{public}s: failed to get file state", dso->name);
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		return -1;
	}
	ext_fd_file_size = ext_fd_file_stat.st_size;

	void *ext_temp_map = MAP_FAILED;
	ext_temp_map = mmap(NULL, ext_fd_file_size, PROT_READ, MAP_PRIVATE, fd, 0);
	if (ext_temp_map == MAP_FAILED) {
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		LD_LOGE("Error mapping relro %{public}s: failed to map fd", dso->name);
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		return -1;
	}

	char *file_base = (char *)(ext_temp_map) + *file_offset;
	char *mem_base = (char *)(laddr(dso, dso->relro_start));
	ssize_t start_offset = 0;
	ssize_t size = dso->relro_end - dso->relro_start;

	if (size > ext_fd_file_size - *file_offset) {
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		LD_LOGE("Error mapping relro %{public}s: invalid file size", dso->name);
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		return -1;
	}
	while (start_offset < size) {
		// Find start location.
		while (start_offset < size) {
			if (memcmp(mem_base + start_offset, file_base + start_offset, PAGE_SIZE) == 0) {
				break;
			}
			start_offset += PAGE_SIZE;
		}

		// Find end location.
		ssize_t end_offset = start_offset;
		while (end_offset < size) {
			if (memcmp(mem_base + end_offset, file_base + end_offset, PAGE_SIZE) != 0) {
				break;
			}
			end_offset += PAGE_SIZE;
		}

		// Map pages.
		ssize_t map_length = end_offset - start_offset;
		ssize_t map_offset = *file_offset + start_offset;
		if (map_length > 0) {
			void *map = mmap(
				mem_base + start_offset, map_length, PROT_READ, MAP_PRIVATE | MAP_FIXED, fd, map_offset);
			if (map == MAP_FAILED) {
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				LD_LOGE("Error mapping relro %{public}s: failed to map GNU_RELRO", dso->name);
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				munmap(ext_temp_map, ext_fd_file_size);
				return -1;
			}
		}

		start_offset = end_offset;
	}
	*file_offset += size;
	munmap(ext_temp_map, ext_fd_file_size);
	return 0;
}

static void handle_relro_sharing(struct dso *p, const dl_extinfo *extinfo, ssize_t *relro_fd_offset)
{
	if (extinfo == NULL) {
		return;
	}
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	if (extinfo->flag & DL_EXT_WRITE_RELRO) {
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		LD_LOGD("Serializing GNU_RELRO %{public}s", p->name);
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		if (serialize_gnu_relro(extinfo->relro_fd, p, relro_fd_offset) < 0) {
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			LD_LOGE("Error serializing GNU_RELRO %{public}s", p->name);
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			error("Error serializing GNU_RELRO");
			if (runtime) longjmp(*rtld_fail, 1);
		}
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	} else if (extinfo->flag & DL_EXT_USE_RELRO) {
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		LD_LOGD("Mapping GNU_RELRO %{public}s", p->name);
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		if (map_gnu_relro(extinfo->relro_fd, p, relro_fd_offset) < 0) {
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			LD_LOGE("Error mapping GNU_RELRO %{public}s", p->name);
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			error("Error mapping GNU_RELRO");
			if (runtime) longjmp(*rtld_fail, 1);
		}
	}
5101
}