1 /*
2 * Copyright (C) 2008 The Android Open Source Project
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * * Redistributions of source code must retain the above copyright
9 * notice, this list of conditions and the following disclaimer.
10 * * Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in
12 * the documentation and/or other materials provided with the
13 * distribution.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
16 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
17 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
18 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
19 * COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
22 * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
25 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 */
28
29 #include <android/api-level.h>
30 #include <assert.h>
31 #include <errno.h>
32 #include <fcntl.h>
33 #include <inttypes.h>
34 #include <pthread.h>
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <string.h>
38 #include <sys/auxv.h>
39 #include <sys/mman.h>
40 #include <sys/param.h>
41 #include <sys/vfs.h>
42 #include <unistd.h>
43
44 #include <iterator>
45 #include <new>
46 #include <string>
47 #include <unordered_map>
48 #include <vector>
49
50 #include <android-base/properties.h>
51 #include <android-base/scopeguard.h>
52 #include <async_safe/log.h>
53 #include <bionic/pthread_internal.h>
54 #include <platform/bionic/mte.h>
55
56 // Private C library headers.
57
58 #include "linker.h"
59 #include "linker_block_allocator.h"
60 #include "linker_cfi.h"
61 #include "linker_config.h"
62 #include "linker_gdb_support.h"
63 #include "linker_globals.h"
64 #include "linker_debug.h"
65 #include "linker_dlwarning.h"
66 #include "linker_main.h"
67 #include "linker_namespaces.h"
68 #include "linker_sleb128.h"
69 #include "linker_phdr.h"
70 #include "linker_relocate.h"
71 #include "linker_tls.h"
72 #include "linker_translate_path.h"
73 #include "linker_utils.h"
74
75 #include "android-base/macros.h"
76 #include "android-base/stringprintf.h"
77 #include "android-base/strings.h"
78 #include "private/bionic_asm_note.h"
79 #include "private/bionic_call_ifunc_resolver.h"
80 #include "private/bionic_globals.h"
81 #include "ziparchive/zip_archive.h"
82
83 static std::unordered_map<void*, size_t> g_dso_handle_counters;
84
85 static bool g_anonymous_namespace_set = false;
86 static android_namespace_t* g_anonymous_namespace = &g_default_namespace;
87 static std::unordered_map<std::string, android_namespace_t*> g_exported_namespaces;
88
89 static LinkerTypeAllocator<soinfo> g_soinfo_allocator;
90 static LinkerTypeAllocator<LinkedListEntry<soinfo>> g_soinfo_links_allocator;
91
92 static LinkerTypeAllocator<android_namespace_t> g_namespace_allocator;
93 static LinkerTypeAllocator<LinkedListEntry<android_namespace_t>> g_namespace_list_allocator;
94
95 static uint64_t g_module_load_counter = 0;
96 static uint64_t g_module_unload_counter = 0;
97
98 static const char* const kLdConfigArchFilePath = "/system/etc/ld.config." ABI_STRING ".txt";
99
100 static const char* const kLdConfigFilePath = "/system/etc/ld.config.txt";
101 static const char* const kLdConfigVndkLiteFilePath = "/system/etc/ld.config.vndk_lite.txt";
102
103 static const char* const kLdGeneratedConfigFilePath = "/linkerconfig/ld.config.txt";
104
105 #if defined(__LP64__)
106 static const char* const kSystemLibDir = "/system/lib64";
107 static const char* const kOdmLibDir = "/odm/lib64";
108 static const char* const kVendorLibDir = "/vendor/lib64";
109 static const char* const kAsanSystemLibDir = "/data/asan/system/lib64";
110 static const char* const kAsanOdmLibDir = "/data/asan/odm/lib64";
111 static const char* const kAsanVendorLibDir = "/data/asan/vendor/lib64";
112 #else
113 static const char* const kSystemLibDir = "/system/lib";
114 static const char* const kOdmLibDir = "/odm/lib";
115 static const char* const kVendorLibDir = "/vendor/lib";
116 static const char* const kAsanSystemLibDir = "/data/asan/system/lib";
117 static const char* const kAsanOdmLibDir = "/data/asan/odm/lib";
118 static const char* const kAsanVendorLibDir = "/data/asan/vendor/lib";
119 #endif
120
121 static const char* const kAsanLibDirPrefix = "/data/asan";
122
123 static const char* const kDefaultLdPaths[] = {
124 kSystemLibDir,
125 kOdmLibDir,
126 kVendorLibDir,
127 nullptr
128 };
129
130 static const char* const kAsanDefaultLdPaths[] = {
131 kAsanSystemLibDir,
132 kSystemLibDir,
133 kAsanOdmLibDir,
134 kOdmLibDir,
135 kAsanVendorLibDir,
136 kVendorLibDir,
137 nullptr
138 };
139
140 #if defined(__aarch64__)
141 static const char* const kHwasanSystemLibDir = "/system/lib64/hwasan";
142 static const char* const kHwasanOdmLibDir = "/odm/lib64/hwasan";
143 static const char* const kHwasanVendorLibDir = "/vendor/lib64/hwasan";
144
145 // HWASan is only supported on aarch64.
146 static const char* const kHwsanDefaultLdPaths[] = {
147 kHwasanSystemLibDir,
148 kSystemLibDir,
149 kHwasanOdmLibDir,
150 kOdmLibDir,
151 kHwasanVendorLibDir,
152 kVendorLibDir,
153 nullptr
154 };
155
156 // Is HWASAN enabled?
157 static bool g_is_hwasan = false;
158 #else
159 static const char* const kHwsanDefaultLdPaths[] = {
160 kSystemLibDir,
161 kOdmLibDir,
162 kVendorLibDir,
163 nullptr
164 };
165
166 // Never any HWASan. Help the compiler remove the code we don't need.
167 constexpr bool g_is_hwasan = false;
168 #endif
169
170 // Is ASAN enabled?
171 static bool g_is_asan = false;
172
173 static CFIShadowWriter g_cfi_shadow;
174
get_cfi_shadow()175 CFIShadowWriter* get_cfi_shadow() {
176 return &g_cfi_shadow;
177 }
178
is_system_library(const std::string & realpath)179 static bool is_system_library(const std::string& realpath) {
180 for (const auto& dir : g_default_namespace.get_default_library_paths()) {
181 if (file_is_in_dir(realpath, dir)) {
182 return true;
183 }
184 }
185 return false;
186 }
187
188 // Checks if the file exists and not a directory.
file_exists(const char * path)189 static bool file_exists(const char* path) {
190 struct stat s;
191
192 if (stat(path, &s) != 0) {
193 return false;
194 }
195
196 return S_ISREG(s.st_mode);
197 }
198
resolve_soname(const std::string & name)199 static std::string resolve_soname(const std::string& name) {
200 // We assume that soname equals to basename here
201
202 // TODO(dimitry): consider having honest absolute-path -> soname resolution
203 // note that since we might end up refusing to load this library because
204 // it is not in shared libs list we need to get the soname without actually loading
205 // the library.
206 //
207 // On the other hand there are several places where we already assume that
208 // soname == basename in particular for any not-loaded library mentioned
209 // in DT_NEEDED list.
210 return basename(name.c_str());
211 }
212
maybe_accessible_via_namespace_links(android_namespace_t * ns,const char * name)213 static bool maybe_accessible_via_namespace_links(android_namespace_t* ns, const char* name) {
214 std::string soname = resolve_soname(name);
215 for (auto& ns_link : ns->linked_namespaces()) {
216 if (ns_link.is_accessible(soname.c_str())) {
217 return true;
218 }
219 }
220
221 return false;
222 }
223
224 // TODO(dimitry): The exempt-list is a workaround for http://b/26394120 ---
225 // gradually remove libraries from this list until it is gone.
is_exempt_lib(android_namespace_t * ns,const char * name,const soinfo * needed_by)226 static bool is_exempt_lib(android_namespace_t* ns, const char* name, const soinfo* needed_by) {
227 static const char* const kLibraryExemptList[] = {
228 "libandroid_runtime.so",
229 "libbinder.so",
230 "libcrypto.so",
231 "libcutils.so",
232 "libexpat.so",
233 "libgui.so",
234 "libmedia.so",
235 "libnativehelper.so",
236 "libssl.so",
237 "libstagefright.so",
238 "libsqlite.so",
239 "libui.so",
240 "libutils.so",
241 nullptr
242 };
243
244 // If you're targeting N, you don't get the exempt-list.
245 if (get_application_target_sdk_version() >= 24) {
246 return false;
247 }
248
249 // if the library needed by a system library - implicitly assume it
250 // is exempt unless it is in the list of shared libraries for one or
251 // more linked namespaces
252 if (needed_by != nullptr && is_system_library(needed_by->get_realpath())) {
253 return !maybe_accessible_via_namespace_links(ns, name);
254 }
255
256 // if this is an absolute path - make sure it points to /system/lib(64)
257 if (name[0] == '/' && dirname(name) == kSystemLibDir) {
258 // and reduce the path to basename
259 name = basename(name);
260 }
261
262 for (size_t i = 0; kLibraryExemptList[i] != nullptr; ++i) {
263 if (strcmp(name, kLibraryExemptList[i]) == 0) {
264 return true;
265 }
266 }
267
268 return false;
269 }
270 // END OF WORKAROUND
271
272 static std::vector<std::string> g_ld_preload_names;
273
notify_gdb_of_load(soinfo * info)274 static void notify_gdb_of_load(soinfo* info) {
275 if (info->is_linker() || info->is_main_executable()) {
276 // gdb already knows about the linker and the main executable.
277 return;
278 }
279
280 link_map* map = &(info->link_map_head);
281
282 map->l_addr = info->load_bias;
283 // link_map l_name field is not const.
284 map->l_name = const_cast<char*>(info->get_realpath());
285 map->l_ld = info->dynamic;
286
287 CHECK(map->l_name != nullptr);
288 CHECK(map->l_name[0] != '\0');
289
290 notify_gdb_of_load(map);
291 }
292
notify_gdb_of_unload(soinfo * info)293 static void notify_gdb_of_unload(soinfo* info) {
294 notify_gdb_of_unload(&(info->link_map_head));
295 }
296
alloc()297 LinkedListEntry<soinfo>* SoinfoListAllocator::alloc() {
298 return g_soinfo_links_allocator.alloc();
299 }
300
free(LinkedListEntry<soinfo> * entry)301 void SoinfoListAllocator::free(LinkedListEntry<soinfo>* entry) {
302 g_soinfo_links_allocator.free(entry);
303 }
304
alloc()305 LinkedListEntry<android_namespace_t>* NamespaceListAllocator::alloc() {
306 return g_namespace_list_allocator.alloc();
307 }
308
free(LinkedListEntry<android_namespace_t> * entry)309 void NamespaceListAllocator::free(LinkedListEntry<android_namespace_t>* entry) {
310 g_namespace_list_allocator.free(entry);
311 }
312
soinfo_alloc(android_namespace_t * ns,const char * name,const struct stat * file_stat,off64_t file_offset,uint32_t rtld_flags)313 soinfo* soinfo_alloc(android_namespace_t* ns, const char* name,
314 const struct stat* file_stat, off64_t file_offset,
315 uint32_t rtld_flags) {
316 if (strlen(name) >= PATH_MAX) {
317 async_safe_fatal("library name \"%s\" too long", name);
318 }
319
320 LD_DEBUG(any, "name %s: allocating soinfo for ns=%p", name, ns);
321
322 soinfo* si = new (g_soinfo_allocator.alloc()) soinfo(ns, name, file_stat,
323 file_offset, rtld_flags);
324
325 solist_add_soinfo(si);
326
327 si->generate_handle();
328 ns->add_soinfo(si);
329
330 LD_DEBUG(any, "name %s: allocated soinfo @ %p", name, si);
331 return si;
332 }
333
soinfo_free(soinfo * si)334 static void soinfo_free(soinfo* si) {
335 if (si == nullptr) {
336 return;
337 }
338
339 if (si->base != 0 && si->size != 0) {
340 if (!si->is_mapped_by_caller()) {
341 munmap(reinterpret_cast<void*>(si->base), si->size);
342 } else {
343 // remap the region as PROT_NONE, MAP_ANONYMOUS | MAP_NORESERVE
344 mmap(reinterpret_cast<void*>(si->base), si->size, PROT_NONE,
345 MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE, -1, 0);
346 }
347 }
348
349 if (si->has_min_version(6) && si->get_gap_size()) {
350 munmap(reinterpret_cast<void*>(si->get_gap_start()), si->get_gap_size());
351 }
352
353 LD_DEBUG(any, "name %s: freeing soinfo @ %p", si->get_realpath(), si);
354
355 if (!solist_remove_soinfo(si)) {
356 async_safe_fatal("soinfo=%p is not in soinfo_list (double unload?)", si);
357 }
358
359 // clear links to/from si
360 si->remove_all_links();
361
362 si->~soinfo();
363 g_soinfo_allocator.free(si);
364 }
365
parse_path(const char * path,const char * delimiters,std::vector<std::string> * resolved_paths)366 static void parse_path(const char* path, const char* delimiters,
367 std::vector<std::string>* resolved_paths) {
368 std::vector<std::string> paths;
369 split_path(path, delimiters, &paths);
370 resolve_paths(paths, resolved_paths);
371 }
372
parse_LD_LIBRARY_PATH(const char * path)373 static void parse_LD_LIBRARY_PATH(const char* path) {
374 std::vector<std::string> ld_libary_paths;
375 parse_path(path, ":", &ld_libary_paths);
376 g_default_namespace.set_ld_library_paths(std::move(ld_libary_paths));
377 }
378
realpath_fd(int fd,std::string * realpath)379 static bool realpath_fd(int fd, std::string* realpath) {
380 // proc_self_fd needs to be large enough to hold "/proc/self/fd/" plus an
381 // integer, plus the NULL terminator.
382 char proc_self_fd[32];
383 // We want to statically allocate this large buffer so that we don't grow
384 // the stack by too much.
385 static char buf[PATH_MAX];
386
387 async_safe_format_buffer(proc_self_fd, sizeof(proc_self_fd), "/proc/self/fd/%d", fd);
388 auto length = readlink(proc_self_fd, buf, sizeof(buf));
389 if (length == -1) {
390 if (!is_first_stage_init()) {
391 DL_WARN("readlink(\"%s\" [fd=%d]) failed: %m", proc_self_fd, fd);
392 }
393 return false;
394 }
395
396 realpath->assign(buf, length);
397 return true;
398 }
399
400 // Returns the address of the current thread's copy of a TLS module. If the current thread doesn't
401 // have a copy yet, allocate one on-demand if should_alloc is true, and return nullptr otherwise.
get_tls_block_for_this_thread(const soinfo_tls * si_tls,bool should_alloc)402 static inline void* get_tls_block_for_this_thread(const soinfo_tls* si_tls, bool should_alloc) {
403 const TlsModule& tls_mod = get_tls_module(si_tls->module_id);
404 if (tls_mod.static_offset != SIZE_MAX) {
405 const StaticTlsLayout& layout = __libc_shared_globals()->static_tls_layout;
406 char* static_tls = reinterpret_cast<char*>(__get_bionic_tcb()) - layout.offset_bionic_tcb();
407 return static_tls + tls_mod.static_offset;
408 } else if (should_alloc) {
409 const TlsIndex ti { si_tls->module_id, static_cast<size_t>(0 - TLS_DTV_OFFSET) };
410 return TLS_GET_ADDR(&ti);
411 } else {
412 TlsDtv* dtv = __get_tcb_dtv(__get_bionic_tcb());
413 if (dtv->generation < tls_mod.first_generation) return nullptr;
414 return dtv->modules[__tls_module_id_to_idx(si_tls->module_id)];
415 }
416 }
417
418 #if defined(__arm__)
419
420 // For a given PC, find the .so that it belongs to.
421 // Returns the base address of the .ARM.exidx section
422 // for that .so, and the number of 8-byte entries
423 // in that section (via *pcount).
424 //
425 // Intended to be called by libc's __gnu_Unwind_Find_exidx().
do_dl_unwind_find_exidx(_Unwind_Ptr pc,int * pcount)426 _Unwind_Ptr do_dl_unwind_find_exidx(_Unwind_Ptr pc, int* pcount) {
427 if (soinfo* si = find_containing_library(reinterpret_cast<void*>(pc))) {
428 *pcount = si->ARM_exidx_count;
429 return reinterpret_cast<_Unwind_Ptr>(si->ARM_exidx);
430 }
431 *pcount = 0;
432 return 0;
433 }
434
435 #endif
436
437 // Here, we only have to provide a callback to iterate across all the
438 // loaded libraries. gcc_eh does the rest.
do_dl_iterate_phdr(int (* cb)(dl_phdr_info * info,size_t size,void * data),void * data)439 int do_dl_iterate_phdr(int (*cb)(dl_phdr_info* info, size_t size, void* data), void* data) {
440 int rv = 0;
441 for (soinfo* si = solist_get_head(); si != nullptr; si = si->next) {
442 dl_phdr_info dl_info;
443 dl_info.dlpi_addr = si->link_map_head.l_addr;
444 dl_info.dlpi_name = si->link_map_head.l_name;
445 dl_info.dlpi_phdr = si->phdr;
446 dl_info.dlpi_phnum = si->phnum;
447 dl_info.dlpi_adds = g_module_load_counter;
448 dl_info.dlpi_subs = g_module_unload_counter;
449 if (soinfo_tls* tls_module = si->get_tls()) {
450 dl_info.dlpi_tls_modid = tls_module->module_id;
451 dl_info.dlpi_tls_data = get_tls_block_for_this_thread(tls_module, /*should_alloc=*/false);
452 } else {
453 dl_info.dlpi_tls_modid = 0;
454 dl_info.dlpi_tls_data = nullptr;
455 }
456
457 rv = cb(&dl_info, sizeof(dl_phdr_info), data);
458 if (rv != 0) {
459 break;
460 }
461 }
462 return rv;
463 }
464
ProtectedDataGuard()465 ProtectedDataGuard::ProtectedDataGuard() {
466 if (ref_count_++ == 0) {
467 protect_data(PROT_READ | PROT_WRITE);
468 }
469
470 if (ref_count_ == 0) { // overflow
471 async_safe_fatal("Too many nested calls to dlopen()");
472 }
473 }
474
~ProtectedDataGuard()475 ProtectedDataGuard::~ProtectedDataGuard() {
476 if (--ref_count_ == 0) {
477 protect_data(PROT_READ);
478 }
479 }
480
protect_data(int protection)481 void ProtectedDataGuard::protect_data(int protection) {
482 g_soinfo_allocator.protect_all(protection);
483 g_soinfo_links_allocator.protect_all(protection);
484 g_namespace_allocator.protect_all(protection);
485 g_namespace_list_allocator.protect_all(protection);
486 }
487
488 size_t ProtectedDataGuard::ref_count_ = 0;
489
490 // Each size has it's own allocator.
491 template<size_t size>
492 class SizeBasedAllocator {
493 public:
alloc()494 static void* alloc() {
495 return allocator_.alloc();
496 }
497
free(void * ptr)498 static void free(void* ptr) {
499 allocator_.free(ptr);
500 }
501
purge()502 static void purge() {
503 allocator_.purge();
504 }
505
506 private:
507 static LinkerBlockAllocator allocator_;
508 };
509
510 template<size_t size>
511 LinkerBlockAllocator SizeBasedAllocator<size>::allocator_(size);
512
513 template<typename T>
514 class TypeBasedAllocator {
515 public:
alloc()516 static T* alloc() {
517 return reinterpret_cast<T*>(SizeBasedAllocator<sizeof(T)>::alloc());
518 }
519
free(T * ptr)520 static void free(T* ptr) {
521 SizeBasedAllocator<sizeof(T)>::free(ptr);
522 }
523
purge()524 static void purge() {
525 SizeBasedAllocator<sizeof(T)>::purge();
526 }
527 };
528
529 class LoadTask {
530 public:
531 struct deleter_t {
operator ()LoadTask::deleter_t532 void operator()(LoadTask* t) {
533 t->~LoadTask();
534 TypeBasedAllocator<LoadTask>::free(t);
535 }
536 };
537
538 static deleter_t deleter;
539
540 // needed_by is NULL iff dlopen is called from memory that isn't part of any known soinfo.
create(const char * _Nonnull name,soinfo * _Nullable needed_by,android_namespace_t * _Nonnull start_from,std::unordered_map<const soinfo *,ElfReader> * _Nonnull readers_map)541 static LoadTask* create(const char* _Nonnull name, soinfo* _Nullable needed_by,
542 android_namespace_t* _Nonnull start_from,
543 std::unordered_map<const soinfo*, ElfReader>* _Nonnull readers_map) {
544 LoadTask* ptr = TypeBasedAllocator<LoadTask>::alloc();
545 return new (ptr) LoadTask(name, needed_by, start_from, readers_map);
546 }
547
get_name() const548 const char* get_name() const {
549 return name_;
550 }
551
get_needed_by() const552 soinfo* get_needed_by() const {
553 return needed_by_;
554 }
555
get_soinfo() const556 soinfo* get_soinfo() const {
557 return si_;
558 }
559
set_soinfo(soinfo * si)560 void set_soinfo(soinfo* si) {
561 si_ = si;
562 }
563
get_file_offset() const564 off64_t get_file_offset() const {
565 return file_offset_;
566 }
567
set_file_offset(off64_t offset)568 void set_file_offset(off64_t offset) {
569 file_offset_ = offset;
570 }
571
get_fd() const572 int get_fd() const {
573 return fd_;
574 }
575
set_fd(int fd,bool assume_ownership)576 void set_fd(int fd, bool assume_ownership) {
577 if (fd_ != -1 && close_fd_) {
578 close(fd_);
579 }
580 fd_ = fd;
581 close_fd_ = assume_ownership;
582 }
583
get_extinfo() const584 const android_dlextinfo* get_extinfo() const {
585 return extinfo_;
586 }
587
set_extinfo(const android_dlextinfo * extinfo)588 void set_extinfo(const android_dlextinfo* extinfo) {
589 extinfo_ = extinfo;
590 }
591
is_dt_needed() const592 bool is_dt_needed() const {
593 return is_dt_needed_;
594 }
595
set_dt_needed(bool is_dt_needed)596 void set_dt_needed(bool is_dt_needed) {
597 is_dt_needed_ = is_dt_needed;
598 }
599
600 // returns the namespace from where we need to start loading this.
get_start_from() const601 const android_namespace_t* get_start_from() const {
602 return start_from_;
603 }
604
remove_cached_elf_reader()605 void remove_cached_elf_reader() {
606 CHECK(si_ != nullptr);
607 (*elf_readers_map_).erase(si_);
608 }
609
get_elf_reader() const610 const ElfReader& get_elf_reader() const {
611 CHECK(si_ != nullptr);
612 return (*elf_readers_map_)[si_];
613 }
614
get_elf_reader()615 ElfReader& get_elf_reader() {
616 CHECK(si_ != nullptr);
617 return (*elf_readers_map_)[si_];
618 }
619
get_readers_map()620 std::unordered_map<const soinfo*, ElfReader>* get_readers_map() {
621 return elf_readers_map_;
622 }
623
read(const char * realpath,off64_t file_size)624 bool read(const char* realpath, off64_t file_size) {
625 ElfReader& elf_reader = get_elf_reader();
626 return elf_reader.Read(realpath, fd_, file_offset_, file_size);
627 }
628
load(address_space_params * address_space)629 bool load(address_space_params* address_space) {
630 ElfReader& elf_reader = get_elf_reader();
631 if (!elf_reader.Load(address_space)) {
632 return false;
633 }
634
635 si_->base = elf_reader.load_start();
636 si_->size = elf_reader.load_size();
637 si_->set_mapped_by_caller(elf_reader.is_mapped_by_caller());
638 si_->load_bias = elf_reader.load_bias();
639 si_->phnum = elf_reader.phdr_count();
640 si_->phdr = elf_reader.loaded_phdr();
641 si_->set_gap_start(elf_reader.gap_start());
642 si_->set_gap_size(elf_reader.gap_size());
643 si_->set_should_pad_segments(elf_reader.should_pad_segments());
644 si_->set_should_use_16kib_app_compat(elf_reader.should_use_16kib_app_compat());
645 if (si_->should_use_16kib_app_compat()) {
646 si_->set_compat_relro_start(elf_reader.compat_relro_start());
647 si_->set_compat_relro_size(elf_reader.compat_relro_size());
648 }
649
650 return true;
651 }
652
653 private:
LoadTask(const char * name,soinfo * needed_by,android_namespace_t * start_from,std::unordered_map<const soinfo *,ElfReader> * readers_map)654 LoadTask(const char* name,
655 soinfo* needed_by,
656 android_namespace_t* start_from,
657 std::unordered_map<const soinfo*, ElfReader>* readers_map)
658 : name_(name), needed_by_(needed_by), si_(nullptr),
659 fd_(-1), close_fd_(false), file_offset_(0), elf_readers_map_(readers_map),
660 is_dt_needed_(false), start_from_(start_from) {}
661
~LoadTask()662 ~LoadTask() {
663 if (fd_ != -1 && close_fd_) {
664 close(fd_);
665 }
666 }
667
668 const char* name_;
669 soinfo* needed_by_;
670 soinfo* si_;
671 const android_dlextinfo* extinfo_;
672 int fd_;
673 bool close_fd_;
674 off64_t file_offset_;
675 std::unordered_map<const soinfo*, ElfReader>* elf_readers_map_;
676 // TODO(dimitry): needed by workaround for http://b/26394120 (the exempt-list)
677 bool is_dt_needed_;
678 // END OF WORKAROUND
679 const android_namespace_t* const start_from_;
680
681 DISALLOW_IMPLICIT_CONSTRUCTORS(LoadTask);
682 };
683
684 LoadTask::deleter_t LoadTask::deleter;
685
686 template <typename T>
687 using linked_list_t = LinkedList<T, TypeBasedAllocator<LinkedListEntry<T>>>;
688
689 typedef linked_list_t<soinfo> SoinfoLinkedList;
690 typedef linked_list_t<const char> StringLinkedList;
691 typedef std::vector<LoadTask*> LoadTaskList;
692
693 enum walk_action_result_t : uint32_t {
694 kWalkStop = 0,
695 kWalkContinue = 1,
696 kWalkSkip = 2
697 };
698
699 // This function walks down the tree of soinfo dependencies
700 // in breadth-first order and
701 // * calls action(soinfo* si) for each node, and
702 // * terminates walk if action returns kWalkStop
703 // * skips children of the node if action
704 // return kWalkSkip
705 //
706 // walk_dependencies_tree returns false if walk was terminated
707 // by the action and true otherwise.
708 template<typename F>
walk_dependencies_tree(soinfo * root_soinfo,F action)709 static bool walk_dependencies_tree(soinfo* root_soinfo, F action) {
710 SoinfoLinkedList visit_list;
711 SoinfoLinkedList visited;
712
713 visit_list.push_back(root_soinfo);
714
715 soinfo* si;
716 while ((si = visit_list.pop_front()) != nullptr) {
717 if (visited.contains(si)) {
718 continue;
719 }
720
721 walk_action_result_t result = action(si);
722
723 if (result == kWalkStop) {
724 return false;
725 }
726
727 visited.push_back(si);
728
729 if (result != kWalkSkip) {
730 si->get_children().for_each([&](soinfo* child) {
731 visit_list.push_back(child);
732 });
733 }
734 }
735
736 return true;
737 }
738
739
ElfW(Sym)740 static const ElfW(Sym)* dlsym_handle_lookup_impl(android_namespace_t* ns,
741 soinfo* root,
742 soinfo* skip_until,
743 soinfo** found,
744 SymbolName& symbol_name,
745 const version_info* vi) {
746 const ElfW(Sym)* result = nullptr;
747 bool skip_lookup = skip_until != nullptr;
748
749 walk_dependencies_tree(root, [&](soinfo* current_soinfo) {
750 if (skip_lookup) {
751 skip_lookup = current_soinfo != skip_until;
752 return kWalkContinue;
753 }
754
755 if (!ns->is_accessible(current_soinfo)) {
756 return kWalkSkip;
757 }
758
759 result = current_soinfo->find_symbol_by_name(symbol_name, vi);
760 if (result != nullptr) {
761 *found = current_soinfo;
762 return kWalkStop;
763 }
764
765 return kWalkContinue;
766 });
767
768 return result;
769 }
770
771 /* This is used by dlsym(3) to performs a global symbol lookup. If the
772 start value is null (for RTLD_DEFAULT), the search starts at the
773 beginning of the global solist. Otherwise the search starts at the
774 specified soinfo (for RTLD_NEXT).
775 */
ElfW(Sym)776 static const ElfW(Sym)* dlsym_linear_lookup(android_namespace_t* ns,
777 const char* name,
778 const version_info* vi,
779 soinfo** found,
780 soinfo* caller,
781 void* handle) {
782 SymbolName symbol_name(name);
783
784 auto& soinfo_list = ns->soinfo_list();
785 auto start = soinfo_list.begin();
786
787 if (handle == RTLD_NEXT) {
788 if (caller == nullptr) {
789 return nullptr;
790 } else {
791 auto it = soinfo_list.find(caller);
792 CHECK (it != soinfo_list.end());
793 start = ++it;
794 }
795 }
796
797 const ElfW(Sym)* s = nullptr;
798 for (auto it = start, end = soinfo_list.end(); it != end; ++it) {
799 soinfo* si = *it;
800 // Do not skip RTLD_LOCAL libraries in dlsym(RTLD_DEFAULT, ...)
801 // if the library is opened by application with target api level < M.
802 // See http://b/21565766
803 if ((si->get_rtld_flags() & RTLD_GLOBAL) == 0 && si->get_target_sdk_version() >= 23) {
804 continue;
805 }
806
807 s = si->find_symbol_by_name(symbol_name, vi);
808 if (s != nullptr) {
809 *found = si;
810 break;
811 }
812 }
813
814 // If not found - use dlsym_handle_lookup_impl for caller's local_group
815 if (s == nullptr && caller != nullptr) {
816 soinfo* local_group_root = caller->get_local_group_root();
817
818 return dlsym_handle_lookup_impl(local_group_root->get_primary_namespace(),
819 local_group_root,
820 (handle == RTLD_NEXT) ? caller : nullptr,
821 found,
822 symbol_name,
823 vi);
824 }
825
826 if (s != nullptr) {
827 LD_DEBUG(lookup, "%s s->st_value = %p, found->base = %p",
828 name, reinterpret_cast<void*>(s->st_value), reinterpret_cast<void*>((*found)->base));
829 }
830
831 return s;
832 }
833
834 // This is used by dlsym(3). It performs symbol lookup only within the
835 // specified soinfo object and its dependencies in breadth first order.
ElfW(Sym)836 static const ElfW(Sym)* dlsym_handle_lookup(soinfo* si,
837 soinfo** found,
838 const char* name,
839 const version_info* vi) {
840 // According to man dlopen(3) and posix docs in the case when si is handle
841 // of the main executable we need to search not only in the executable and its
842 // dependencies but also in all libraries loaded with RTLD_GLOBAL.
843 //
844 // Since RTLD_GLOBAL is always set for the main executable and all dt_needed shared
845 // libraries and they are loaded in breath-first (correct) order we can just execute
846 // dlsym(RTLD_DEFAULT, ...); instead of doing two stage lookup.
847 if (si == solist_get_somain()) {
848 return dlsym_linear_lookup(&g_default_namespace, name, vi, found, nullptr, RTLD_DEFAULT);
849 }
850
851 SymbolName symbol_name(name);
852 // note that the namespace is not the namespace associated with caller_addr
853 // we use ns associated with root si intentionally here. Using caller_ns
854 // causes problems when user uses dlopen_ext to open a library in the separate
855 // namespace and then calls dlsym() on the handle.
856 return dlsym_handle_lookup_impl(si->get_primary_namespace(), si, nullptr, found, symbol_name, vi);
857 }
858
find_containing_library(const void * p)859 soinfo* find_containing_library(const void* p) {
860 // Addresses within a library may be tagged if they point to globals. Untag
861 // them so that the bounds check succeeds.
862 ElfW(Addr) address = reinterpret_cast<ElfW(Addr)>(untag_address(p));
863 for (soinfo* si = solist_get_head(); si != nullptr; si = si->next) {
864 if (address < si->base || address - si->base >= si->size) {
865 continue;
866 }
867 ElfW(Addr) vaddr = address - si->load_bias;
868 for (size_t i = 0; i != si->phnum; ++i) {
869 const ElfW(Phdr)* phdr = &si->phdr[i];
870 if (phdr->p_type != PT_LOAD) {
871 continue;
872 }
873 if (vaddr >= phdr->p_vaddr && vaddr < phdr->p_vaddr + phdr->p_memsz) {
874 return si;
875 }
876 }
877 }
878 return nullptr;
879 }
880
881 class ZipArchiveCache {
882 public:
ZipArchiveCache()883 ZipArchiveCache() {}
884 ~ZipArchiveCache();
885
886 bool get_or_open(const char* zip_path, ZipArchiveHandle* handle);
887 private:
888 DISALLOW_COPY_AND_ASSIGN(ZipArchiveCache);
889
890 std::unordered_map<std::string, ZipArchiveHandle> cache_;
891 };
892
get_or_open(const char * zip_path,ZipArchiveHandle * handle)893 bool ZipArchiveCache::get_or_open(const char* zip_path, ZipArchiveHandle* handle) {
894 std::string key(zip_path);
895
896 auto it = cache_.find(key);
897 if (it != cache_.end()) {
898 *handle = it->second;
899 return true;
900 }
901
902 int fd = TEMP_FAILURE_RETRY(open(zip_path, O_RDONLY | O_CLOEXEC));
903 if (fd == -1) {
904 return false;
905 }
906
907 if (OpenArchiveFd(fd, "", handle) != 0) {
908 // invalid zip-file (?)
909 CloseArchive(*handle);
910 return false;
911 }
912
913 cache_[key] = *handle;
914 return true;
915 }
916
~ZipArchiveCache()917 ZipArchiveCache::~ZipArchiveCache() {
918 for (const auto& it : cache_) {
919 CloseArchive(it.second);
920 }
921 }
922
open_library_in_zipfile(ZipArchiveCache * zip_archive_cache,const char * const input_path,off64_t * file_offset,std::string * realpath)923 static int open_library_in_zipfile(ZipArchiveCache* zip_archive_cache,
924 const char* const input_path,
925 off64_t* file_offset, std::string* realpath) {
926 std::string normalized_path;
927 if (!normalize_path(input_path, &normalized_path)) {
928 return -1;
929 }
930
931 const char* const path = normalized_path.c_str();
932 LD_DEBUG(any, "Trying zip file open from path \"%s\" -> normalized \"%s\"", input_path, path);
933
934 // Treat an '!/' separator inside a path as the separator between the name
935 // of the zip file on disk and the subdirectory to search within it.
936 // For example, if path is "foo.zip!/bar/bas/x.so", then we search for
937 // "bar/bas/x.so" within "foo.zip".
938 const char* const separator = strstr(path, kZipFileSeparator);
939 if (separator == nullptr) {
940 return -1;
941 }
942
943 char buf[512];
944 if (strlcpy(buf, path, sizeof(buf)) >= sizeof(buf)) {
945 DL_WARN("ignoring very long library path: %s", path);
946 return -1;
947 }
948
949 buf[separator - path] = '\0';
950
951 const char* zip_path = buf;
952 const char* file_path = &buf[separator - path + 2];
953 int fd = TEMP_FAILURE_RETRY(open(zip_path, O_RDONLY | O_CLOEXEC));
954 if (fd == -1) {
955 return -1;
956 }
957
958 ZipArchiveHandle handle;
959 if (!zip_archive_cache->get_or_open(zip_path, &handle)) {
960 // invalid zip-file (?)
961 close(fd);
962 return -1;
963 }
964
965 ZipEntry entry;
966
967 if (FindEntry(handle, file_path, &entry) != 0) {
968 // Entry was not found.
969 close(fd);
970 return -1;
971 }
972
973 // Check if it is properly stored
974 if (entry.method != kCompressStored || (entry.offset % page_size()) != 0) {
975 close(fd);
976 return -1;
977 }
978
979 *file_offset = entry.offset;
980
981 if (realpath_fd(fd, realpath)) {
982 *realpath += separator;
983 } else {
984 if (!is_first_stage_init()) {
985 DL_WARN("unable to get realpath for the library \"%s\". Will use given path.",
986 normalized_path.c_str());
987 }
988 *realpath = normalized_path;
989 }
990
991 return fd;
992 }
993
format_path(char * buf,size_t buf_size,const char * path,const char * name)994 static bool format_path(char* buf, size_t buf_size, const char* path, const char* name) {
995 int n = async_safe_format_buffer(buf, buf_size, "%s/%s", path, name);
996 if (n < 0 || n >= static_cast<int>(buf_size)) {
997 DL_WARN("ignoring very long library path: %s/%s", path, name);
998 return false;
999 }
1000
1001 return true;
1002 }
1003
open_library_at_path(ZipArchiveCache * zip_archive_cache,const char * path,off64_t * file_offset,std::string * realpath)1004 static int open_library_at_path(ZipArchiveCache* zip_archive_cache,
1005 const char* path, off64_t* file_offset,
1006 std::string* realpath) {
1007 int fd = -1;
1008 if (strstr(path, kZipFileSeparator) != nullptr) {
1009 fd = open_library_in_zipfile(zip_archive_cache, path, file_offset, realpath);
1010 }
1011
1012 if (fd == -1) {
1013 fd = TEMP_FAILURE_RETRY(open(path, O_RDONLY | O_CLOEXEC));
1014 if (fd != -1) {
1015 *file_offset = 0;
1016 if (!realpath_fd(fd, realpath)) {
1017 if (!is_first_stage_init()) {
1018 DL_WARN("unable to get realpath for the library \"%s\". Will use given path.", path);
1019 }
1020 *realpath = path;
1021 }
1022 }
1023 }
1024
1025 return fd;
1026 }
1027
open_library_on_paths(ZipArchiveCache * zip_archive_cache,const char * name,off64_t * file_offset,const std::vector<std::string> & paths,std::string * realpath)1028 static int open_library_on_paths(ZipArchiveCache* zip_archive_cache,
1029 const char* name, off64_t* file_offset,
1030 const std::vector<std::string>& paths,
1031 std::string* realpath) {
1032 for (const auto& path : paths) {
1033 char buf[512];
1034 if (!format_path(buf, sizeof(buf), path.c_str(), name)) {
1035 continue;
1036 }
1037
1038 int fd = open_library_at_path(zip_archive_cache, buf, file_offset, realpath);
1039 if (fd != -1) {
1040 return fd;
1041 }
1042 }
1043
1044 return -1;
1045 }
1046
open_library(android_namespace_t * ns,ZipArchiveCache * zip_archive_cache,const char * name,soinfo * needed_by,off64_t * file_offset,std::string * realpath)1047 static int open_library(android_namespace_t* ns,
1048 ZipArchiveCache* zip_archive_cache,
1049 const char* name, soinfo *needed_by,
1050 off64_t* file_offset, std::string* realpath) {
1051 LD_DEBUG(any, "[ opening %s from namespace %s ]", name, ns->get_name());
1052
1053 // If the name contains a slash, we should attempt to open it directly and not search the paths.
1054 if (strchr(name, '/') != nullptr) {
1055 return open_library_at_path(zip_archive_cache, name, file_offset, realpath);
1056 }
1057
1058 // LD_LIBRARY_PATH has the highest priority. We don't have to check accessibility when searching
1059 // the namespace's path lists, because anything found on a namespace path list should always be
1060 // accessible.
1061 int fd = open_library_on_paths(zip_archive_cache, name, file_offset, ns->get_ld_library_paths(), realpath);
1062
1063 // Try the DT_RUNPATH, and verify that the library is accessible.
1064 if (fd == -1 && needed_by != nullptr) {
1065 fd = open_library_on_paths(zip_archive_cache, name, file_offset, needed_by->get_dt_runpath(), realpath);
1066 if (fd != -1 && !ns->is_accessible(*realpath)) {
1067 close(fd);
1068 fd = -1;
1069 }
1070 }
1071
1072 // Finally search the namespace's main search path list.
1073 if (fd == -1) {
1074 fd = open_library_on_paths(zip_archive_cache, name, file_offset, ns->get_default_library_paths(), realpath);
1075 }
1076
1077 return fd;
1078 }
1079
open_executable(const char * path,off64_t * file_offset,std::string * realpath)1080 int open_executable(const char* path, off64_t* file_offset, std::string* realpath) {
1081 ZipArchiveCache zip_archive_cache;
1082 return open_library_at_path(&zip_archive_cache, path, file_offset, realpath);
1083 }
1084
fix_dt_needed(const char * dt_needed,const char * sopath __unused)1085 const char* fix_dt_needed(const char* dt_needed, const char* sopath __unused) {
1086 #if !defined(__LP64__)
1087 // Work around incorrect DT_NEEDED entries for old apps: http://b/21364029
1088 int app_target_api_level = get_application_target_sdk_version();
1089 if (app_target_api_level < 23) {
1090 const char* bname = basename(dt_needed);
1091 if (bname != dt_needed) {
1092 DL_WARN_documented_change(23,
1093 "invalid-dt_needed-entries-enforced-for-api-level-23",
1094 "library \"%s\" has invalid DT_NEEDED entry \"%s\"",
1095 sopath, dt_needed, app_target_api_level);
1096 add_dlwarning(sopath, "invalid DT_NEEDED entry", dt_needed);
1097 }
1098
1099 return bname;
1100 }
1101 #endif
1102 return dt_needed;
1103 }
1104
1105 template<typename F>
for_each_dt_needed(const ElfReader & elf_reader,F action)1106 static void for_each_dt_needed(const ElfReader& elf_reader, F action) {
1107 for (const ElfW(Dyn)* d = elf_reader.dynamic(); d->d_tag != DT_NULL; ++d) {
1108 if (d->d_tag == DT_NEEDED) {
1109 action(fix_dt_needed(elf_reader.get_string(d->d_un.d_val), elf_reader.name()));
1110 }
1111 }
1112 }
1113
find_loaded_library_by_inode(android_namespace_t * ns,const struct stat & file_stat,off64_t file_offset,bool search_linked_namespaces,soinfo ** candidate)1114 static bool find_loaded_library_by_inode(android_namespace_t* ns,
1115 const struct stat& file_stat,
1116 off64_t file_offset,
1117 bool search_linked_namespaces,
1118 soinfo** candidate) {
1119 if (file_stat.st_dev == 0 || file_stat.st_ino == 0) {
1120 *candidate = nullptr;
1121 return false;
1122 }
1123
1124 auto predicate = [&](soinfo* si) {
1125 return si->get_st_ino() == file_stat.st_ino &&
1126 si->get_st_dev() == file_stat.st_dev &&
1127 si->get_file_offset() == file_offset;
1128 };
1129
1130 *candidate = ns->soinfo_list().find_if(predicate);
1131
1132 if (*candidate == nullptr && search_linked_namespaces) {
1133 for (auto& link : ns->linked_namespaces()) {
1134 android_namespace_t* linked_ns = link.linked_namespace();
1135 soinfo* si = linked_ns->soinfo_list().find_if(predicate);
1136
1137 if (si != nullptr && link.is_accessible(si->get_soname())) {
1138 *candidate = si;
1139 return true;
1140 }
1141 }
1142 }
1143
1144 return *candidate != nullptr;
1145 }
1146
find_loaded_library_by_realpath(android_namespace_t * ns,const char * realpath,bool search_linked_namespaces,soinfo ** candidate)1147 static bool find_loaded_library_by_realpath(android_namespace_t* ns, const char* realpath,
1148 bool search_linked_namespaces, soinfo** candidate) {
1149 auto predicate = [&](soinfo* si) { return strcmp(realpath, si->get_realpath()) == 0; };
1150
1151 *candidate = ns->soinfo_list().find_if(predicate);
1152
1153 if (*candidate == nullptr && search_linked_namespaces) {
1154 for (auto& link : ns->linked_namespaces()) {
1155 android_namespace_t* linked_ns = link.linked_namespace();
1156 soinfo* si = linked_ns->soinfo_list().find_if(predicate);
1157
1158 if (si != nullptr && link.is_accessible(si->get_soname())) {
1159 *candidate = si;
1160 return true;
1161 }
1162 }
1163 }
1164
1165 return *candidate != nullptr;
1166 }
1167
load_library(android_namespace_t * ns,LoadTask * task,LoadTaskList * load_tasks,int rtld_flags,const std::string & realpath,bool search_linked_namespaces)1168 static bool load_library(android_namespace_t* ns,
1169 LoadTask* task,
1170 LoadTaskList* load_tasks,
1171 int rtld_flags,
1172 const std::string& realpath,
1173 bool search_linked_namespaces) {
1174 off64_t file_offset = task->get_file_offset();
1175 const char* name = task->get_name();
1176 const android_dlextinfo* extinfo = task->get_extinfo();
1177
1178 LD_LOG(kLogDlopen,
1179 "load_library(ns=%s, task=%s, flags=0x%x, realpath=%s, search_linked_namespaces=%d)",
1180 ns->get_name(), name, rtld_flags, realpath.c_str(), search_linked_namespaces);
1181
1182 if ((file_offset % page_size()) != 0) {
1183 DL_OPEN_ERR("file offset for the library \"%s\" is not page-aligned: %" PRId64, name, file_offset);
1184 return false;
1185 }
1186 if (file_offset < 0) {
1187 DL_OPEN_ERR("file offset for the library \"%s\" is negative: %" PRId64, name, file_offset);
1188 return false;
1189 }
1190
1191 struct stat file_stat;
1192 if (TEMP_FAILURE_RETRY(fstat(task->get_fd(), &file_stat)) != 0) {
1193 DL_OPEN_ERR("unable to stat file for the library \"%s\": %m", name);
1194 return false;
1195 }
1196 if (file_offset >= file_stat.st_size) {
1197 DL_OPEN_ERR("file offset for the library \"%s\" >= file size: %" PRId64 " >= %" PRId64,
1198 name, file_offset, file_stat.st_size);
1199 return false;
1200 }
1201
1202 // Check for symlink and other situations where
1203 // file can have different names, unless ANDROID_DLEXT_FORCE_LOAD is set
1204 if (extinfo == nullptr || (extinfo->flags & ANDROID_DLEXT_FORCE_LOAD) == 0) {
1205 soinfo* si = nullptr;
1206 if (find_loaded_library_by_inode(ns, file_stat, file_offset, search_linked_namespaces, &si)) {
1207 LD_LOG(kLogDlopen,
1208 "load_library(ns=%s, task=%s): Already loaded under different name/path \"%s\" - "
1209 "will return existing soinfo",
1210 ns->get_name(), name, si->get_realpath());
1211 task->set_soinfo(si);
1212 return true;
1213 }
1214 }
1215
1216 if ((rtld_flags & RTLD_NOLOAD) != 0) {
1217 DL_OPEN_ERR("library \"%s\" wasn't loaded and RTLD_NOLOAD prevented it", name);
1218 return false;
1219 }
1220
1221 struct statfs fs_stat;
1222 if (TEMP_FAILURE_RETRY(fstatfs(task->get_fd(), &fs_stat)) != 0) {
1223 DL_OPEN_ERR("unable to fstatfs file for the library \"%s\": %m", name);
1224 return false;
1225 }
1226
1227 // do not check accessibility using realpath if fd is located on tmpfs
1228 // this enables use of memfd_create() for apps
1229 if ((fs_stat.f_type != TMPFS_MAGIC) && (!ns->is_accessible(realpath))) {
1230 // TODO(dimitry): workaround for http://b/26394120 - the exempt-list
1231
1232 const soinfo* needed_by = task->is_dt_needed() ? task->get_needed_by() : nullptr;
1233 if (is_exempt_lib(ns, name, needed_by)) {
1234 // print warning only if needed by non-system library
1235 if (needed_by == nullptr || !is_system_library(needed_by->get_realpath())) {
1236 const soinfo* needed_or_dlopened_by = task->get_needed_by();
1237 const char* sopath = needed_or_dlopened_by == nullptr ? "(unknown)" :
1238 needed_or_dlopened_by->get_realpath();
1239 DL_WARN_documented_change(24,
1240 "private-api-enforced-for-api-level-24",
1241 "library \"%s\" (\"%s\") needed or dlopened by \"%s\" "
1242 "is not accessible by namespace \"%s\"",
1243 name, realpath.c_str(), sopath, ns->get_name());
1244 add_dlwarning(sopath, "unauthorized access to", name);
1245 }
1246 } else {
1247 // do not load libraries if they are not accessible for the specified namespace.
1248 const char* needed_or_dlopened_by = task->get_needed_by() == nullptr ?
1249 "(unknown)" :
1250 task->get_needed_by()->get_realpath();
1251
1252 DL_OPEN_ERR("library \"%s\" needed or dlopened by \"%s\" is not accessible for the namespace \"%s\"",
1253 name, needed_or_dlopened_by, ns->get_name());
1254
1255 // do not print this if a library is in the list of shared libraries for linked namespaces
1256 if (!maybe_accessible_via_namespace_links(ns, name)) {
1257 DL_WARN("library \"%s\" (\"%s\") needed or dlopened by \"%s\" is not accessible for the"
1258 " namespace: [name=\"%s\", ld_library_paths=\"%s\", default_library_paths=\"%s\","
1259 " permitted_paths=\"%s\"]",
1260 name, realpath.c_str(),
1261 needed_or_dlopened_by,
1262 ns->get_name(),
1263 android::base::Join(ns->get_ld_library_paths(), ':').c_str(),
1264 android::base::Join(ns->get_default_library_paths(), ':').c_str(),
1265 android::base::Join(ns->get_permitted_paths(), ':').c_str());
1266 }
1267 return false;
1268 }
1269 }
1270
1271 soinfo* si = soinfo_alloc(ns, realpath.c_str(), &file_stat, file_offset, rtld_flags);
1272
1273 task->set_soinfo(si);
1274
1275 // Read the ELF header and some of the segments.
1276 if (!task->read(realpath.c_str(), file_stat.st_size)) {
1277 task->remove_cached_elf_reader();
1278 task->set_soinfo(nullptr);
1279 soinfo_free(si);
1280 return false;
1281 }
1282
1283 // Find and set DT_RUNPATH, DT_SONAME, and DT_FLAGS_1.
1284 // Note that these field values are temporary and are
1285 // going to be overwritten on soinfo::prelink_image
1286 // with values from PT_LOAD segments.
1287 const ElfReader& elf_reader = task->get_elf_reader();
1288 for (const ElfW(Dyn)* d = elf_reader.dynamic(); d->d_tag != DT_NULL; ++d) {
1289 if (d->d_tag == DT_RUNPATH) {
1290 si->set_dt_runpath(elf_reader.get_string(d->d_un.d_val));
1291 }
1292 if (d->d_tag == DT_SONAME) {
1293 si->set_soname(elf_reader.get_string(d->d_un.d_val));
1294 }
1295 // We need to identify a DF_1_GLOBAL library early so we can link it to namespaces.
1296 if (d->d_tag == DT_FLAGS_1) {
1297 si->set_dt_flags_1(d->d_un.d_val);
1298 }
1299 }
1300
1301 #if !defined(__ANDROID__)
1302 // Bionic on the host currently uses some Android prebuilts, which don't set
1303 // DT_RUNPATH with any relative paths, so they can't find their dependencies.
1304 // b/118058804
1305 if (si->get_dt_runpath().empty()) {
1306 si->set_dt_runpath("$ORIGIN/../lib64:$ORIGIN/lib64");
1307 }
1308 #endif
1309
1310 for_each_dt_needed(task->get_elf_reader(), [&](const char* name) {
1311 LD_LOG(kLogDlopen, "load_library(ns=%s, task=%s): Adding DT_NEEDED task: %s",
1312 ns->get_name(), task->get_name(), name);
1313 load_tasks->push_back(LoadTask::create(name, si, ns, task->get_readers_map()));
1314 });
1315
1316 return true;
1317 }
1318
load_library(android_namespace_t * ns,LoadTask * task,ZipArchiveCache * zip_archive_cache,LoadTaskList * load_tasks,int rtld_flags,bool search_linked_namespaces)1319 static bool load_library(android_namespace_t* ns,
1320 LoadTask* task,
1321 ZipArchiveCache* zip_archive_cache,
1322 LoadTaskList* load_tasks,
1323 int rtld_flags,
1324 bool search_linked_namespaces) {
1325 const char* name = task->get_name();
1326 soinfo* needed_by = task->get_needed_by();
1327 const android_dlextinfo* extinfo = task->get_extinfo();
1328
1329 if (extinfo != nullptr && (extinfo->flags & ANDROID_DLEXT_USE_LIBRARY_FD) != 0) {
1330 off64_t file_offset = 0;
1331 if ((extinfo->flags & ANDROID_DLEXT_USE_LIBRARY_FD_OFFSET) != 0) {
1332 file_offset = extinfo->library_fd_offset;
1333 }
1334
1335 std::string realpath;
1336 if (!realpath_fd(extinfo->library_fd, &realpath)) {
1337 if (!is_first_stage_init()) {
1338 DL_WARN("unable to get realpath for the library \"%s\" by extinfo->library_fd. "
1339 "Will use given name.",
1340 name);
1341 }
1342 realpath = name;
1343 }
1344
1345 task->set_fd(extinfo->library_fd, false);
1346 task->set_file_offset(file_offset);
1347 return load_library(ns, task, load_tasks, rtld_flags, realpath, search_linked_namespaces);
1348 }
1349
1350 LD_LOG(kLogDlopen,
1351 "load_library(ns=%s, task=%s, flags=0x%x, search_linked_namespaces=%d): calling "
1352 "open_library",
1353 ns->get_name(), name, rtld_flags, search_linked_namespaces);
1354
1355 // Open the file.
1356 off64_t file_offset;
1357 std::string realpath;
1358 int fd = open_library(ns, zip_archive_cache, name, needed_by, &file_offset, &realpath);
1359 if (fd == -1) {
1360 if (task->is_dt_needed()) {
1361 if (needed_by->is_main_executable()) {
1362 DL_OPEN_ERR("library \"%s\" not found: needed by main executable", name);
1363 } else {
1364 DL_OPEN_ERR("library \"%s\" not found: needed by %s in namespace %s", name,
1365 needed_by->get_realpath(), task->get_start_from()->get_name());
1366 }
1367 } else {
1368 DL_OPEN_ERR("library \"%s\" not found", name);
1369 }
1370 return false;
1371 }
1372
1373 task->set_fd(fd, true);
1374 task->set_file_offset(file_offset);
1375
1376 return load_library(ns, task, load_tasks, rtld_flags, realpath, search_linked_namespaces);
1377 }
1378
find_loaded_library_by_soname(android_namespace_t * ns,const char * name,soinfo ** candidate)1379 static bool find_loaded_library_by_soname(android_namespace_t* ns,
1380 const char* name,
1381 soinfo** candidate) {
1382 return !ns->soinfo_list().visit([&](soinfo* si) {
1383 if (strcmp(name, si->get_soname()) == 0) {
1384 *candidate = si;
1385 return false;
1386 }
1387
1388 return true;
1389 });
1390 }
1391
1392 // Returns true if library was found and false otherwise
find_loaded_library_by_soname(android_namespace_t * ns,const char * name,bool search_linked_namespaces,soinfo ** candidate)1393 static bool find_loaded_library_by_soname(android_namespace_t* ns,
1394 const char* name,
1395 bool search_linked_namespaces,
1396 soinfo** candidate) {
1397 *candidate = nullptr;
1398
1399 // Ignore filename with path.
1400 if (strchr(name, '/') != nullptr) {
1401 return false;
1402 }
1403
1404 bool found = find_loaded_library_by_soname(ns, name, candidate);
1405
1406 if (!found && search_linked_namespaces) {
1407 // if a library was not found - look into linked namespaces
1408 for (auto& link : ns->linked_namespaces()) {
1409 if (!link.is_accessible(name)) {
1410 continue;
1411 }
1412
1413 android_namespace_t* linked_ns = link.linked_namespace();
1414
1415 if (find_loaded_library_by_soname(linked_ns, name, candidate)) {
1416 return true;
1417 }
1418 }
1419 }
1420
1421 return found;
1422 }
1423
find_library_in_linked_namespace(const android_namespace_link_t & namespace_link,LoadTask * task)1424 static bool find_library_in_linked_namespace(const android_namespace_link_t& namespace_link,
1425 LoadTask* task) {
1426 android_namespace_t* ns = namespace_link.linked_namespace();
1427
1428 soinfo* candidate;
1429 bool loaded = false;
1430
1431 std::string soname;
1432 if (find_loaded_library_by_soname(ns, task->get_name(), false, &candidate)) {
1433 loaded = true;
1434 soname = candidate->get_soname();
1435 } else {
1436 soname = resolve_soname(task->get_name());
1437 }
1438
1439 if (!namespace_link.is_accessible(soname.c_str())) {
1440 // the library is not accessible via namespace_link
1441 LD_LOG(kLogDlopen,
1442 "find_library_in_linked_namespace(ns=%s, task=%s): Not accessible (soname=%s)",
1443 ns->get_name(), task->get_name(), soname.c_str());
1444 return false;
1445 }
1446
1447 // if library is already loaded - return it
1448 if (loaded) {
1449 LD_LOG(kLogDlopen, "find_library_in_linked_namespace(ns=%s, task=%s): Already loaded",
1450 ns->get_name(), task->get_name());
1451 task->set_soinfo(candidate);
1452 return true;
1453 }
1454
1455 // returning true with empty soinfo means that the library is okay to be
1456 // loaded in the namespace but has not yet been loaded there before.
1457 LD_LOG(kLogDlopen, "find_library_in_linked_namespace(ns=%s, task=%s): Ok to load", ns->get_name(),
1458 task->get_name());
1459 task->set_soinfo(nullptr);
1460 return true;
1461 }
1462
find_library_internal(android_namespace_t * ns,LoadTask * task,ZipArchiveCache * zip_archive_cache,LoadTaskList * load_tasks,int rtld_flags)1463 static bool find_library_internal(android_namespace_t* ns,
1464 LoadTask* task,
1465 ZipArchiveCache* zip_archive_cache,
1466 LoadTaskList* load_tasks,
1467 int rtld_flags) {
1468 soinfo* candidate;
1469
1470 if (find_loaded_library_by_soname(ns, task->get_name(), true /* search_linked_namespaces */,
1471 &candidate)) {
1472 LD_LOG(kLogDlopen,
1473 "find_library_internal(ns=%s, task=%s): Already loaded (by soname): %s",
1474 ns->get_name(), task->get_name(), candidate->get_realpath());
1475 task->set_soinfo(candidate);
1476 return true;
1477 }
1478
1479 // Library might still be loaded, the accurate detection
1480 // of this fact is done by load_library.
1481 LD_DEBUG(any, "[ \"%s\" find_loaded_library_by_soname failed (*candidate=%s@%p). Trying harder... ]",
1482 task->get_name(), candidate == nullptr ? "n/a" : candidate->get_realpath(), candidate);
1483
1484 if (load_library(ns, task, zip_archive_cache, load_tasks, rtld_flags,
1485 true /* search_linked_namespaces */)) {
1486 return true;
1487 }
1488
1489 // TODO(dimitry): workaround for http://b/26394120 (the exempt-list)
1490 if (ns->is_exempt_list_enabled() && is_exempt_lib(ns, task->get_name(), task->get_needed_by())) {
1491 // For the libs in the exempt-list, switch to the default namespace and then
1492 // try the load again from there. The library could be loaded from the
1493 // default namespace or from another namespace (e.g. runtime) that is linked
1494 // from the default namespace.
1495 LD_LOG(kLogDlopen,
1496 "find_library_internal(ns=%s, task=%s): Exempt system library - trying namespace %s",
1497 ns->get_name(), task->get_name(), g_default_namespace.get_name());
1498 ns = &g_default_namespace;
1499 if (load_library(ns, task, zip_archive_cache, load_tasks, rtld_flags,
1500 true /* search_linked_namespaces */)) {
1501 return true;
1502 }
1503 }
1504 // END OF WORKAROUND
1505
1506 // if a library was not found - look into linked namespaces
1507 // preserve current dlerror in the case it fails.
1508 DlErrorRestorer dlerror_restorer;
1509 LD_LOG(kLogDlopen, "find_library_internal(ns=%s, task=%s): Trying %zu linked namespaces",
1510 ns->get_name(), task->get_name(), ns->linked_namespaces().size());
1511 for (auto& linked_namespace : ns->linked_namespaces()) {
1512 if (find_library_in_linked_namespace(linked_namespace, task)) {
1513 // Library is already loaded.
1514 if (task->get_soinfo() != nullptr) {
1515 // n.b. This code path runs when find_library_in_linked_namespace found an already-loaded
1516 // library by soname. That should only be possible with a exempt-list lookup, where we
1517 // switch the namespace, because otherwise, find_library_in_linked_namespace is duplicating
1518 // the soname scan done in this function's first call to find_loaded_library_by_soname.
1519 return true;
1520 }
1521
1522 if (load_library(linked_namespace.linked_namespace(), task, zip_archive_cache, load_tasks,
1523 rtld_flags, false /* search_linked_namespaces */)) {
1524 LD_LOG(kLogDlopen, "find_library_internal(ns=%s, task=%s): Found in linked namespace %s",
1525 ns->get_name(), task->get_name(), linked_namespace.linked_namespace()->get_name());
1526 return true;
1527 }
1528 }
1529 }
1530
1531 return false;
1532 }
1533
1534 static void soinfo_unload(soinfo* si);
1535
shuffle(std::vector<LoadTask * > * v)1536 static void shuffle(std::vector<LoadTask*>* v) {
1537 if (is_first_stage_init()) {
1538 // arc4random* is not available in first stage init because /dev/random
1539 // hasn't yet been created.
1540 return;
1541 }
1542 for (size_t i = 0, size = v->size(); i < size; ++i) {
1543 size_t n = size - i;
1544 size_t r = arc4random_uniform(n);
1545 std::swap((*v)[n-1], (*v)[r]);
1546 }
1547 }
1548
1549 // add_as_children - add first-level loaded libraries (i.e. library_names[], but
1550 // not their transitive dependencies) as children of the start_with library.
1551 // This is false when find_libraries is called for dlopen(), when newly loaded
1552 // libraries must form a disjoint tree.
find_libraries(android_namespace_t * ns,soinfo * start_with,const char * const library_names[],size_t library_names_count,soinfo * soinfos[],std::vector<soinfo * > * ld_preloads,size_t ld_preloads_count,int rtld_flags,const android_dlextinfo * extinfo,bool add_as_children,std::vector<android_namespace_t * > * namespaces)1553 bool find_libraries(android_namespace_t* ns,
1554 soinfo* start_with,
1555 const char* const library_names[],
1556 size_t library_names_count,
1557 soinfo* soinfos[],
1558 std::vector<soinfo*>* ld_preloads,
1559 size_t ld_preloads_count,
1560 int rtld_flags,
1561 const android_dlextinfo* extinfo,
1562 bool add_as_children,
1563 std::vector<android_namespace_t*>* namespaces) {
1564 // Step 0: prepare.
1565 std::unordered_map<const soinfo*, ElfReader> readers_map;
1566 LoadTaskList load_tasks;
1567
1568 for (size_t i = 0; i < library_names_count; ++i) {
1569 const char* name = library_names[i];
1570 load_tasks.push_back(LoadTask::create(name, start_with, ns, &readers_map));
1571 }
1572
1573 // If soinfos array is null allocate one on stack.
1574 // The array is needed in case of failure; for example
1575 // when library_names[] = {libone.so, libtwo.so} and libone.so
1576 // is loaded correctly but libtwo.so failed for some reason.
1577 // In this case libone.so should be unloaded on return.
1578 // See also implementation of failure_guard below.
1579
1580 if (soinfos == nullptr) {
1581 size_t soinfos_size = sizeof(soinfo*)*library_names_count;
1582 soinfos = reinterpret_cast<soinfo**>(alloca(soinfos_size));
1583 memset(soinfos, 0, soinfos_size);
1584 }
1585
1586 // list of libraries to link - see step 2.
1587 size_t soinfos_count = 0;
1588
1589 auto scope_guard = android::base::make_scope_guard([&]() {
1590 for (LoadTask* t : load_tasks) {
1591 LoadTask::deleter(t);
1592 }
1593 });
1594
1595 ZipArchiveCache zip_archive_cache;
1596 soinfo_list_t new_global_group_members;
1597
1598 // Step 1: expand the list of load_tasks to include
1599 // all DT_NEEDED libraries (do not load them just yet)
1600 for (size_t i = 0; i<load_tasks.size(); ++i) {
1601 LoadTask* task = load_tasks[i];
1602 soinfo* needed_by = task->get_needed_by();
1603
1604 bool is_dt_needed = needed_by != nullptr && (needed_by != start_with || add_as_children);
1605 task->set_extinfo(is_dt_needed ? nullptr : extinfo);
1606 task->set_dt_needed(is_dt_needed);
1607
1608 // Note: start from the namespace that is stored in the LoadTask. This namespace
1609 // is different from the current namespace when the LoadTask is for a transitive
1610 // dependency and the lib that created the LoadTask is not found in the
1611 // current namespace but in one of the linked namespaces.
1612 android_namespace_t* start_ns = const_cast<android_namespace_t*>(task->get_start_from());
1613
1614 LD_LOG(kLogDlopen, "find_library_internal(ns=%s@%p): task=%s, is_dt_needed=%d",
1615 start_ns->get_name(), start_ns, task->get_name(), is_dt_needed);
1616
1617 if (!find_library_internal(start_ns, task, &zip_archive_cache, &load_tasks, rtld_flags)) {
1618 return false;
1619 }
1620
1621 soinfo* si = task->get_soinfo();
1622
1623 if (is_dt_needed) {
1624 needed_by->add_child(si);
1625 }
1626
1627 // When ld_preloads is not null, the first
1628 // ld_preloads_count libs are in fact ld_preloads.
1629 bool is_ld_preload = false;
1630 if (ld_preloads != nullptr && soinfos_count < ld_preloads_count) {
1631 ld_preloads->push_back(si);
1632 is_ld_preload = true;
1633 }
1634
1635 if (soinfos_count < library_names_count) {
1636 soinfos[soinfos_count++] = si;
1637 }
1638
1639 // Add the new global group members to all initial namespaces. Do this secondary namespace setup
1640 // at the same time that libraries are added to their primary namespace so that the order of
1641 // global group members is the same in the every namespace. Only add a library to a namespace
1642 // once, even if it appears multiple times in the dependency graph.
1643 if (is_ld_preload || (si->get_dt_flags_1() & DF_1_GLOBAL) != 0) {
1644 if (!si->is_linked() && namespaces != nullptr && !new_global_group_members.contains(si)) {
1645 new_global_group_members.push_back(si);
1646 for (auto linked_ns : *namespaces) {
1647 if (si->get_primary_namespace() != linked_ns) {
1648 linked_ns->add_soinfo(si);
1649 si->add_secondary_namespace(linked_ns);
1650 }
1651 }
1652 }
1653 }
1654 }
1655
1656 // Step 2: Load libraries in random order (see b/24047022)
1657 LoadTaskList load_list;
1658 for (auto&& task : load_tasks) {
1659 soinfo* si = task->get_soinfo();
1660 auto pred = [&](const LoadTask* t) {
1661 return t->get_soinfo() == si;
1662 };
1663
1664 if (!si->is_linked() &&
1665 std::find_if(load_list.begin(), load_list.end(), pred) == load_list.end() ) {
1666 load_list.push_back(task);
1667 }
1668 }
1669 bool reserved_address_recursive = false;
1670 if (extinfo) {
1671 reserved_address_recursive = extinfo->flags & ANDROID_DLEXT_RESERVED_ADDRESS_RECURSIVE;
1672 }
1673 if (!reserved_address_recursive) {
1674 // Shuffle the load order in the normal case, but not if we are loading all
1675 // the libraries to a reserved address range.
1676 shuffle(&load_list);
1677 }
1678
1679 // Set up address space parameters.
1680 address_space_params extinfo_params, default_params;
1681 size_t relro_fd_offset = 0;
1682 if (extinfo) {
1683 if (extinfo->flags & ANDROID_DLEXT_RESERVED_ADDRESS) {
1684 extinfo_params.start_addr = extinfo->reserved_addr;
1685 extinfo_params.reserved_size = extinfo->reserved_size;
1686 extinfo_params.must_use_address = true;
1687 } else if (extinfo->flags & ANDROID_DLEXT_RESERVED_ADDRESS_HINT) {
1688 extinfo_params.start_addr = extinfo->reserved_addr;
1689 extinfo_params.reserved_size = extinfo->reserved_size;
1690 }
1691 }
1692
1693 for (auto&& task : load_list) {
1694 address_space_params* address_space =
1695 (reserved_address_recursive || !task->is_dt_needed()) ? &extinfo_params : &default_params;
1696 if (!task->load(address_space)) {
1697 return false;
1698 }
1699 }
1700
1701 // The WebView loader uses RELRO sharing in order to promote page sharing of the large RELRO
1702 // segment, as it's full of C++ vtables. Because MTE globals, by default, applies random tags to
1703 // each global variable, the RELRO segment is polluted and unique for each process. In order to
1704 // allow sharing, but still provide some protection, we use deterministic global tagging schemes
1705 // for DSOs that are loaded through android_dlopen_ext, such as those loaded by WebView.
1706 bool dlext_use_relro =
1707 extinfo && extinfo->flags & (ANDROID_DLEXT_WRITE_RELRO | ANDROID_DLEXT_USE_RELRO);
1708
1709 // Step 3: pre-link all DT_NEEDED libraries in breadth first order.
1710 bool any_memtag_stack = false;
1711 for (auto&& task : load_tasks) {
1712 soinfo* si = task->get_soinfo();
1713 if (!si->is_linked() && !si->prelink_image(dlext_use_relro)) {
1714 return false;
1715 }
1716 // si->memtag_stack() needs to be called after si->prelink_image() which populates
1717 // the dynamic section.
1718 if (si->memtag_stack()) {
1719 any_memtag_stack = true;
1720 LD_LOG(kLogDlopen,
1721 "... load_library requesting stack MTE for: realpath=\"%s\", soname=\"%s\"",
1722 si->get_realpath(), si->get_soname());
1723 }
1724 register_soinfo_tls(si);
1725 }
1726 if (any_memtag_stack) {
1727 if (auto* cb = __libc_shared_globals()->memtag_stack_dlopen_callback) {
1728 cb();
1729 } else {
1730 // find_library is used by the initial linking step, so we communicate that we
1731 // want memtag_stack enabled to __libc_init_mte.
1732 __libc_shared_globals()->initial_memtag_stack_abi = true;
1733 }
1734 }
1735
1736 // Step 4: Construct the global group. DF_1_GLOBAL bit is force set for LD_PRELOADed libs because
1737 // they must be added to the global group. Note: The DF_1_GLOBAL bit for a library is normally set
1738 // in step 3.
1739 if (ld_preloads != nullptr) {
1740 for (auto&& si : *ld_preloads) {
1741 si->set_dt_flags_1(si->get_dt_flags_1() | DF_1_GLOBAL);
1742 }
1743 }
1744
1745 // Step 5: Collect roots of local_groups.
1746 // Whenever needed_by->si link crosses a namespace boundary it forms its own local_group.
1747 // Here we collect new roots to link them separately later on. Note that we need to avoid
1748 // collecting duplicates. Also the order is important. They need to be linked in the same
1749 // BFS order we link individual libraries.
1750 std::vector<soinfo*> local_group_roots;
1751 if (start_with != nullptr && add_as_children) {
1752 local_group_roots.push_back(start_with);
1753 } else {
1754 CHECK(soinfos_count == 1);
1755 local_group_roots.push_back(soinfos[0]);
1756 }
1757
1758 for (auto&& task : load_tasks) {
1759 soinfo* si = task->get_soinfo();
1760 soinfo* needed_by = task->get_needed_by();
1761 bool is_dt_needed = needed_by != nullptr && (needed_by != start_with || add_as_children);
1762 android_namespace_t* needed_by_ns =
1763 is_dt_needed ? needed_by->get_primary_namespace() : ns;
1764
1765 if (!si->is_linked() && si->get_primary_namespace() != needed_by_ns) {
1766 auto it = std::find(local_group_roots.begin(), local_group_roots.end(), si);
1767 LD_LOG(kLogDlopen,
1768 "Crossing namespace boundary (si=%s@%p, si_ns=%s@%p, needed_by=%s@%p, ns=%s@%p, needed_by_ns=%s@%p) adding to local_group_roots: %s",
1769 si->get_realpath(),
1770 si,
1771 si->get_primary_namespace()->get_name(),
1772 si->get_primary_namespace(),
1773 needed_by == nullptr ? "(nullptr)" : needed_by->get_realpath(),
1774 needed_by,
1775 ns->get_name(),
1776 ns,
1777 needed_by_ns->get_name(),
1778 needed_by_ns,
1779 it == local_group_roots.end() ? "yes" : "no");
1780
1781 if (it == local_group_roots.end()) {
1782 local_group_roots.push_back(si);
1783 }
1784 }
1785 }
1786
1787 // Step 6: Link all local groups
1788 for (auto root : local_group_roots) {
1789 soinfo_list_t local_group;
1790 android_namespace_t* local_group_ns = root->get_primary_namespace();
1791
1792 walk_dependencies_tree(root,
1793 [&] (soinfo* si) {
1794 if (local_group_ns->is_accessible(si)) {
1795 local_group.push_back(si);
1796 return kWalkContinue;
1797 } else {
1798 return kWalkSkip;
1799 }
1800 });
1801
1802 soinfo_list_t global_group = local_group_ns->get_global_group();
1803 SymbolLookupList lookup_list(global_group, local_group);
1804 soinfo* local_group_root = local_group.front();
1805
1806 bool linked = local_group.visit([&](soinfo* si) {
1807 // Even though local group may contain accessible soinfos from other namespaces
1808 // we should avoid linking them (because if they are not linked -> they
1809 // are in the local_group_roots and will be linked later).
1810 if (!si->is_linked() && si->get_primary_namespace() == local_group_ns) {
1811 const android_dlextinfo* link_extinfo = nullptr;
1812 if (si == soinfos[0] || reserved_address_recursive) {
1813 // Only forward extinfo for the first library unless the recursive
1814 // flag is set.
1815 link_extinfo = extinfo;
1816 }
1817 if (__libc_shared_globals()->load_hook) {
1818 __libc_shared_globals()->load_hook(si->load_bias, si->phdr, si->phnum);
1819 }
1820 lookup_list.set_dt_symbolic_lib(si->has_DT_SYMBOLIC ? si : nullptr);
1821 if (!si->link_image(lookup_list, local_group_root, link_extinfo, &relro_fd_offset) ||
1822 !get_cfi_shadow()->AfterLoad(si, solist_get_head())) {
1823 return false;
1824 }
1825 }
1826
1827 return true;
1828 });
1829
1830 if (!linked) {
1831 return false;
1832 }
1833 }
1834
1835 // Step 7: Mark all load_tasks as linked and increment refcounts
1836 // for references between load_groups (at this point it does not matter if
1837 // referenced load_groups were loaded by previous dlopen or as part of this
1838 // one on step 6)
1839 if (start_with != nullptr && add_as_children) {
1840 start_with->set_linked();
1841 }
1842
1843 for (auto&& task : load_tasks) {
1844 soinfo* si = task->get_soinfo();
1845 si->set_linked();
1846 }
1847
1848 for (auto&& task : load_tasks) {
1849 soinfo* si = task->get_soinfo();
1850 soinfo* needed_by = task->get_needed_by();
1851 if (needed_by != nullptr &&
1852 needed_by != start_with &&
1853 needed_by->get_local_group_root() != si->get_local_group_root()) {
1854 si->increment_ref_count();
1855 }
1856 }
1857
1858
1859 return true;
1860 }
1861
find_library(android_namespace_t * ns,const char * name,int rtld_flags,const android_dlextinfo * extinfo,soinfo * needed_by)1862 static soinfo* find_library(android_namespace_t* ns,
1863 const char* name, int rtld_flags,
1864 const android_dlextinfo* extinfo,
1865 soinfo* needed_by) {
1866 soinfo* si = nullptr;
1867
1868 if (name == nullptr) {
1869 si = solist_get_somain();
1870 } else if (!find_libraries(ns,
1871 needed_by,
1872 &name,
1873 1,
1874 &si,
1875 nullptr,
1876 0,
1877 rtld_flags,
1878 extinfo,
1879 false /* add_as_children */)) {
1880 if (si != nullptr) {
1881 soinfo_unload(si);
1882 }
1883 return nullptr;
1884 }
1885
1886 si->increment_ref_count();
1887
1888 return si;
1889 }
1890
soinfo_unload_impl(soinfo * root)1891 static void soinfo_unload_impl(soinfo* root) {
1892 ScopedTrace trace((std::string("unload ") + root->get_realpath()).c_str());
1893 bool is_linked = root->is_linked();
1894
1895 if (!root->can_unload()) {
1896 LD_LOG(kLogDlopen,
1897 "... dlclose(root=\"%s\"@%p) ... not unloading - the load group is flagged with NODELETE",
1898 root->get_realpath(),
1899 root);
1900 return;
1901 }
1902
1903
1904 soinfo_list_t unload_list;
1905 unload_list.push_back(root);
1906
1907 soinfo_list_t local_unload_list;
1908 soinfo_list_t external_unload_list;
1909 soinfo* si = nullptr;
1910
1911 while ((si = unload_list.pop_front()) != nullptr) {
1912 if (local_unload_list.contains(si)) {
1913 continue;
1914 }
1915
1916 local_unload_list.push_back(si);
1917
1918 if (si->has_min_version(0)) {
1919 soinfo* child = nullptr;
1920 while ((child = si->get_children().pop_front()) != nullptr) {
1921 LD_DEBUG(any, "%s@%p needs to unload %s@%p", si->get_realpath(), si,
1922 child->get_realpath(), child);
1923
1924 child->get_parents().remove(si);
1925
1926 if (local_unload_list.contains(child)) {
1927 continue;
1928 } else if (child->is_linked() && child->get_local_group_root() != root) {
1929 external_unload_list.push_back(child);
1930 } else if (child->get_parents().empty()) {
1931 unload_list.push_back(child);
1932 }
1933 }
1934 } else {
1935 async_safe_fatal("soinfo for \"%s\"@%p has no version", si->get_realpath(), si);
1936 }
1937 }
1938
1939 local_unload_list.for_each([](soinfo* si) {
1940 LD_LOG(kLogDlopen,
1941 "... dlclose: calling destructors for \"%s\"@%p ... ",
1942 si->get_realpath(),
1943 si);
1944 si->call_destructors();
1945 LD_LOG(kLogDlopen,
1946 "... dlclose: calling destructors for \"%s\"@%p ... done",
1947 si->get_realpath(),
1948 si);
1949 });
1950
1951 while ((si = local_unload_list.pop_front()) != nullptr) {
1952 LD_LOG(kLogDlopen,
1953 "... dlclose: unloading \"%s\"@%p ...",
1954 si->get_realpath(),
1955 si);
1956 ++g_module_unload_counter;
1957 notify_gdb_of_unload(si);
1958 unregister_soinfo_tls(si);
1959 if (__libc_shared_globals()->unload_hook) {
1960 __libc_shared_globals()->unload_hook(si->load_bias, si->phdr, si->phnum);
1961 }
1962 get_cfi_shadow()->BeforeUnload(si);
1963 soinfo_free(si);
1964 }
1965
1966 if (is_linked) {
1967 while ((si = external_unload_list.pop_front()) != nullptr) {
1968 LD_LOG(kLogDlopen,
1969 "... dlclose: unloading external reference \"%s\"@%p ...",
1970 si->get_realpath(),
1971 si);
1972 soinfo_unload(si);
1973 }
1974 } else {
1975 LD_LOG(kLogDlopen,
1976 "... dlclose: unload_si was not linked - not unloading external references ...");
1977 }
1978 }
1979
soinfo_unload(soinfo * unload_si)1980 static void soinfo_unload(soinfo* unload_si) {
1981 // Note that the library can be loaded but not linked;
1982 // in which case there is no root but we still need
1983 // to walk the tree and unload soinfos involved.
1984 //
1985 // This happens on unsuccessful dlopen, when one of
1986 // the DT_NEEDED libraries could not be linked/found.
1987 bool is_linked = unload_si->is_linked();
1988 soinfo* root = is_linked ? unload_si->get_local_group_root() : unload_si;
1989
1990 LD_LOG(kLogDlopen,
1991 "... dlclose(realpath=\"%s\"@%p) ... load group root is \"%s\"@%p",
1992 unload_si->get_realpath(),
1993 unload_si,
1994 root->get_realpath(),
1995 root);
1996
1997
1998 size_t ref_count = is_linked ? root->decrement_ref_count() : 0;
1999 if (ref_count > 0) {
2000 LD_LOG(kLogDlopen,
2001 "... dlclose(root=\"%s\"@%p) ... not unloading - decrementing ref_count to %zd",
2002 root->get_realpath(),
2003 root,
2004 ref_count);
2005 return;
2006 }
2007
2008 soinfo_unload_impl(root);
2009 }
2010
increment_dso_handle_reference_counter(void * dso_handle)2011 void increment_dso_handle_reference_counter(void* dso_handle) {
2012 if (dso_handle == nullptr) {
2013 return;
2014 }
2015
2016 auto it = g_dso_handle_counters.find(dso_handle);
2017 if (it != g_dso_handle_counters.end()) {
2018 CHECK(++it->second != 0);
2019 } else {
2020 soinfo* si = find_containing_library(dso_handle);
2021 if (si != nullptr) {
2022 ProtectedDataGuard guard;
2023 si->increment_ref_count();
2024 } else {
2025 async_safe_fatal(
2026 "increment_dso_handle_reference_counter: Couldn't find soinfo by dso_handle=%p",
2027 dso_handle);
2028 }
2029 g_dso_handle_counters[dso_handle] = 1U;
2030 }
2031 }
2032
decrement_dso_handle_reference_counter(void * dso_handle)2033 void decrement_dso_handle_reference_counter(void* dso_handle) {
2034 if (dso_handle == nullptr) {
2035 return;
2036 }
2037
2038 auto it = g_dso_handle_counters.find(dso_handle);
2039 CHECK(it != g_dso_handle_counters.end());
2040 CHECK(it->second != 0);
2041
2042 if (--it->second == 0) {
2043 soinfo* si = find_containing_library(dso_handle);
2044 if (si != nullptr) {
2045 ProtectedDataGuard guard;
2046 soinfo_unload(si);
2047 } else {
2048 async_safe_fatal(
2049 "decrement_dso_handle_reference_counter: Couldn't find soinfo by dso_handle=%p",
2050 dso_handle);
2051 }
2052 g_dso_handle_counters.erase(it);
2053 }
2054 }
2055
symbol_display_name(const char * sym_name,const char * sym_ver)2056 static std::string symbol_display_name(const char* sym_name, const char* sym_ver) {
2057 if (sym_ver == nullptr) {
2058 return sym_name;
2059 }
2060
2061 return std::string(sym_name) + ", version " + sym_ver;
2062 }
2063
get_caller_namespace(soinfo * caller)2064 static android_namespace_t* get_caller_namespace(soinfo* caller) {
2065 return caller != nullptr ? caller->get_primary_namespace() : g_anonymous_namespace;
2066 }
2067
do_android_get_LD_LIBRARY_PATH(char * buffer,size_t buffer_size)2068 void do_android_get_LD_LIBRARY_PATH(char* buffer, size_t buffer_size) {
2069 // Use basic string manipulation calls to avoid snprintf.
2070 // snprintf indirectly calls pthread_getspecific to get the size of a buffer.
2071 // When debug malloc is enabled, this call returns 0. This in turn causes
2072 // snprintf to do nothing, which causes libraries to fail to load.
2073 // See b/17302493 for further details.
2074 // Once the above bug is fixed, this code can be modified to use
2075 // snprintf again.
2076 const auto& default_ld_paths = g_default_namespace.get_default_library_paths();
2077
2078 size_t required_size = 0;
2079 for (const auto& path : default_ld_paths) {
2080 required_size += path.size() + 1;
2081 }
2082
2083 if (buffer_size < required_size) {
2084 async_safe_fatal("android_get_LD_LIBRARY_PATH failed, buffer too small: "
2085 "buffer len %zu, required len %zu", buffer_size, required_size);
2086 }
2087
2088 char* end = buffer;
2089 for (size_t i = 0; i < default_ld_paths.size(); ++i) {
2090 if (i > 0) *end++ = ':';
2091 end = stpcpy(end, default_ld_paths[i].c_str());
2092 }
2093 }
2094
do_android_update_LD_LIBRARY_PATH(const char * ld_library_path)2095 void do_android_update_LD_LIBRARY_PATH(const char* ld_library_path) {
2096 parse_LD_LIBRARY_PATH(ld_library_path);
2097 }
2098
android_dlextinfo_to_string(const android_dlextinfo * info)2099 static std::string android_dlextinfo_to_string(const android_dlextinfo* info) {
2100 if (info == nullptr) {
2101 return "(null)";
2102 }
2103
2104 return android::base::StringPrintf("[flags=0x%" PRIx64 ","
2105 " reserved_addr=%p,"
2106 " reserved_size=0x%zx,"
2107 " relro_fd=%d,"
2108 " library_fd=%d,"
2109 " library_fd_offset=0x%" PRIx64 ","
2110 " library_namespace=%s@%p]",
2111 info->flags,
2112 info->reserved_addr,
2113 info->reserved_size,
2114 info->relro_fd,
2115 info->library_fd,
2116 info->library_fd_offset,
2117 (info->flags & ANDROID_DLEXT_USE_NAMESPACE) != 0 ?
2118 (info->library_namespace != nullptr ?
2119 info->library_namespace->get_name() : "(null)") : "(n/a)",
2120 (info->flags & ANDROID_DLEXT_USE_NAMESPACE) != 0 ?
2121 info->library_namespace : nullptr);
2122 }
2123
do_dlopen(const char * name,int flags,const android_dlextinfo * extinfo,const void * caller_addr)2124 void* do_dlopen(const char* name, int flags,
2125 const android_dlextinfo* extinfo,
2126 const void* caller_addr) {
2127 std::string trace_prefix = std::string("dlopen: ") + (name == nullptr ? "(nullptr)" : name);
2128 ScopedTrace trace(trace_prefix.c_str());
2129 ScopedTrace loading_trace((trace_prefix + " - loading and linking").c_str());
2130 soinfo* const caller = find_containing_library(caller_addr);
2131 android_namespace_t* ns = get_caller_namespace(caller);
2132
2133 LD_LOG(kLogDlopen,
2134 "dlopen(name=\"%s\", flags=0x%x, extinfo=%s, caller=\"%s\", caller_ns=%s@%p, targetSdkVersion=%i) ...",
2135 name,
2136 flags,
2137 android_dlextinfo_to_string(extinfo).c_str(),
2138 caller == nullptr ? "(null)" : caller->get_realpath(),
2139 ns == nullptr ? "(null)" : ns->get_name(),
2140 ns,
2141 get_application_target_sdk_version());
2142
2143 auto purge_guard = android::base::make_scope_guard([&]() { purge_unused_memory(); });
2144
2145 auto failure_guard = android::base::make_scope_guard(
2146 [&]() { LD_LOG(kLogDlopen, "... dlopen failed: %s", linker_get_error_buffer()); });
2147
2148 if ((flags & ~(RTLD_NOW|RTLD_LAZY|RTLD_LOCAL|RTLD_GLOBAL|RTLD_NODELETE|RTLD_NOLOAD)) != 0) {
2149 DL_OPEN_ERR("invalid flags to dlopen: %x", flags);
2150 return nullptr;
2151 }
2152
2153 if (extinfo != nullptr) {
2154 if ((extinfo->flags & ~(ANDROID_DLEXT_VALID_FLAG_BITS)) != 0) {
2155 DL_OPEN_ERR("invalid extended flags to android_dlopen_ext: 0x%" PRIx64, extinfo->flags);
2156 return nullptr;
2157 }
2158
2159 if ((extinfo->flags & ANDROID_DLEXT_USE_LIBRARY_FD) == 0 &&
2160 (extinfo->flags & ANDROID_DLEXT_USE_LIBRARY_FD_OFFSET) != 0) {
2161 DL_OPEN_ERR("invalid extended flag combination (ANDROID_DLEXT_USE_LIBRARY_FD_OFFSET without "
2162 "ANDROID_DLEXT_USE_LIBRARY_FD): 0x%" PRIx64, extinfo->flags);
2163 return nullptr;
2164 }
2165
2166 if ((extinfo->flags & ANDROID_DLEXT_USE_NAMESPACE) != 0) {
2167 if (extinfo->library_namespace == nullptr) {
2168 DL_OPEN_ERR("ANDROID_DLEXT_USE_NAMESPACE is set but extinfo->library_namespace is null");
2169 return nullptr;
2170 }
2171 ns = extinfo->library_namespace;
2172 }
2173 }
2174
2175 // Workaround for dlopen(/system/lib/<soname>) when .so is in /apex. http://b/121248172
2176 // The workaround works only when targetSdkVersion < Q.
2177 std::string name_to_apex;
2178 if (translateSystemPathToApexPath(name, &name_to_apex)) {
2179 const char* new_name = name_to_apex.c_str();
2180 LD_LOG(kLogDlopen, "dlopen considering translation from %s to APEX path %s",
2181 name,
2182 new_name);
2183 // Some APEXs could be optionally disabled. Only translate the path
2184 // when the old file is absent and the new file exists.
2185 // TODO(b/124218500): Re-enable it once app compat issue is resolved
2186 /*
2187 if (file_exists(name)) {
2188 LD_LOG(kLogDlopen, "dlopen %s exists, not translating", name);
2189 } else
2190 */
2191 if (!file_exists(new_name)) {
2192 LD_LOG(kLogDlopen, "dlopen %s does not exist, not translating",
2193 new_name);
2194 } else {
2195 LD_LOG(kLogDlopen, "dlopen translation accepted: using %s", new_name);
2196 name = new_name;
2197 }
2198 }
2199 // End Workaround for dlopen(/system/lib/<soname>) when .so is in /apex.
2200
2201 std::string translated_name_holder;
2202
2203 assert(!g_is_hwasan || !g_is_asan);
2204 const char* translated_name = name;
2205 if (g_is_asan && translated_name != nullptr && translated_name[0] == '/') {
2206 char original_path[PATH_MAX];
2207 if (realpath(name, original_path) != nullptr) {
2208 translated_name_holder = std::string(kAsanLibDirPrefix) + original_path;
2209 if (file_exists(translated_name_holder.c_str())) {
2210 soinfo* si = nullptr;
2211 if (find_loaded_library_by_realpath(ns, original_path, true, &si)) {
2212 DL_WARN("linker_asan dlopen NOT translating \"%s\" -> \"%s\": library already loaded", name,
2213 translated_name_holder.c_str());
2214 } else {
2215 DL_WARN("linker_asan dlopen translating \"%s\" -> \"%s\"", name, translated_name);
2216 translated_name = translated_name_holder.c_str();
2217 }
2218 }
2219 }
2220 } else if (g_is_hwasan && translated_name != nullptr && translated_name[0] == '/') {
2221 char original_path[PATH_MAX];
2222 if (realpath(name, original_path) != nullptr) {
2223 // Keep this the same as CreateHwasanPath in system/linkerconfig/modules/namespace.cc.
2224 std::string path(original_path);
2225 auto slash = path.rfind('/');
2226 if (slash != std::string::npos || slash != path.size() - 1) {
2227 translated_name_holder = path.substr(0, slash) + "/hwasan" + path.substr(slash);
2228 }
2229 if (!translated_name_holder.empty() && file_exists(translated_name_holder.c_str())) {
2230 soinfo* si = nullptr;
2231 if (find_loaded_library_by_realpath(ns, original_path, true, &si)) {
2232 DL_WARN("linker_hwasan dlopen NOT translating \"%s\" -> \"%s\": library already loaded",
2233 name, translated_name_holder.c_str());
2234 } else {
2235 DL_WARN("linker_hwasan dlopen translating \"%s\" -> \"%s\"", name, translated_name);
2236 translated_name = translated_name_holder.c_str();
2237 }
2238 }
2239 }
2240 }
2241 ProtectedDataGuard guard;
2242 soinfo* si = find_library(ns, translated_name, flags, extinfo, caller);
2243 loading_trace.End();
2244
2245 if (si != nullptr) {
2246 void* handle = si->to_handle();
2247 LD_LOG(kLogDlopen,
2248 "... dlopen calling constructors: realpath=\"%s\", soname=\"%s\", handle=%p",
2249 si->get_realpath(), si->get_soname(), handle);
2250 si->call_constructors();
2251 failure_guard.Disable();
2252 LD_LOG(kLogDlopen,
2253 "... dlopen successful: realpath=\"%s\", soname=\"%s\", handle=%p",
2254 si->get_realpath(), si->get_soname(), handle);
2255 return handle;
2256 }
2257
2258 return nullptr;
2259 }
2260
do_dladdr(const void * addr,Dl_info * info)2261 int do_dladdr(const void* addr, Dl_info* info) {
2262 // Determine if this address can be found in any library currently mapped.
2263 soinfo* si = find_containing_library(addr);
2264 if (si == nullptr) {
2265 return 0;
2266 }
2267
2268 memset(info, 0, sizeof(Dl_info));
2269
2270 info->dli_fname = si->get_realpath();
2271 // Address at which the shared object is loaded.
2272 info->dli_fbase = reinterpret_cast<void*>(si->base);
2273
2274 // Determine if any symbol in the library contains the specified address.
2275 ElfW(Sym)* sym = si->find_symbol_by_address(addr);
2276 if (sym != nullptr) {
2277 info->dli_sname = si->get_string(sym->st_name);
2278 info->dli_saddr = reinterpret_cast<void*>(si->resolve_symbol_address(sym));
2279 }
2280
2281 return 1;
2282 }
2283
soinfo_from_handle(void * handle)2284 static soinfo* soinfo_from_handle(void* handle) {
2285 if ((reinterpret_cast<uintptr_t>(handle) & 1) != 0) {
2286 auto it = g_soinfo_handles_map.find(reinterpret_cast<uintptr_t>(handle));
2287 if (it == g_soinfo_handles_map.end()) {
2288 return nullptr;
2289 } else {
2290 return it->second;
2291 }
2292 }
2293
2294 return static_cast<soinfo*>(handle);
2295 }
2296
do_dlsym(void * handle,const char * sym_name,const char * sym_ver,const void * caller_addr,void ** symbol)2297 bool do_dlsym(void* handle,
2298 const char* sym_name,
2299 const char* sym_ver,
2300 const void* caller_addr,
2301 void** symbol) {
2302 ScopedTrace trace("dlsym");
2303 #if !defined(__LP64__)
2304 if (handle == nullptr) {
2305 DL_SYM_ERR("dlsym failed: library handle is null");
2306 return false;
2307 }
2308 #endif
2309
2310 soinfo* found = nullptr;
2311 const ElfW(Sym)* sym = nullptr;
2312 soinfo* caller = find_containing_library(caller_addr);
2313 android_namespace_t* ns = get_caller_namespace(caller);
2314 soinfo* si = nullptr;
2315 if (handle != RTLD_DEFAULT && handle != RTLD_NEXT) {
2316 si = soinfo_from_handle(handle);
2317 }
2318
2319 LD_LOG(kLogDlsym,
2320 "dlsym(handle=%p(\"%s\"), sym_name=\"%s\", sym_ver=\"%s\", caller=\"%s\", caller_ns=%s@%p) ...",
2321 handle,
2322 si != nullptr ? si->get_realpath() : "n/a",
2323 sym_name,
2324 sym_ver,
2325 caller == nullptr ? "(null)" : caller->get_realpath(),
2326 ns == nullptr ? "(null)" : ns->get_name(),
2327 ns);
2328
2329 auto failure_guard = android::base::make_scope_guard(
2330 [&]() { LD_LOG(kLogDlsym, "... dlsym failed: %s", linker_get_error_buffer()); });
2331
2332 if (sym_name == nullptr) {
2333 DL_SYM_ERR("dlsym failed: symbol name is null");
2334 return false;
2335 }
2336
2337 version_info vi_instance;
2338 version_info* vi = nullptr;
2339
2340 if (sym_ver != nullptr) {
2341 vi_instance.name = sym_ver;
2342 vi_instance.elf_hash = calculate_elf_hash(sym_ver);
2343 vi = &vi_instance;
2344 }
2345
2346 if (handle == RTLD_DEFAULT || handle == RTLD_NEXT) {
2347 sym = dlsym_linear_lookup(ns, sym_name, vi, &found, caller, handle);
2348 } else {
2349 if (si == nullptr) {
2350 DL_SYM_ERR("dlsym failed: invalid handle: %p", handle);
2351 return false;
2352 }
2353 sym = dlsym_handle_lookup(si, &found, sym_name, vi);
2354 }
2355
2356 if (sym != nullptr) {
2357 uint32_t bind = ELF_ST_BIND(sym->st_info);
2358 uint32_t type = ELF_ST_TYPE(sym->st_info);
2359
2360 if ((bind == STB_GLOBAL || bind == STB_WEAK) && sym->st_shndx != 0) {
2361 if (type == STT_TLS) {
2362 // For a TLS symbol, dlsym returns the address of the current thread's
2363 // copy of the symbol.
2364 const soinfo_tls* tls_module = found->get_tls();
2365 if (tls_module == nullptr) {
2366 DL_SYM_ERR("TLS symbol \"%s\" in solib \"%s\" with no TLS segment",
2367 sym_name, found->get_realpath());
2368 return false;
2369 }
2370 void* tls_block = get_tls_block_for_this_thread(tls_module, /*should_alloc=*/true);
2371 *symbol = static_cast<char*>(tls_block) + sym->st_value;
2372 } else {
2373 *symbol = get_tagged_address(reinterpret_cast<void*>(found->resolve_symbol_address(sym)));
2374 }
2375 failure_guard.Disable();
2376 LD_LOG(kLogDlsym,
2377 "... dlsym successful: sym_name=\"%s\", sym_ver=\"%s\", found in=\"%s\", address=%p",
2378 sym_name, sym_ver, found->get_soname(), *symbol);
2379 return true;
2380 }
2381
2382 DL_SYM_ERR("symbol \"%s\" found but not global", symbol_display_name(sym_name, sym_ver).c_str());
2383 return false;
2384 }
2385
2386 DL_SYM_ERR("undefined symbol: %s", symbol_display_name(sym_name, sym_ver).c_str());
2387 return false;
2388 }
2389
do_dlclose(void * handle)2390 int do_dlclose(void* handle) {
2391 ScopedTrace trace("dlclose");
2392 ProtectedDataGuard guard;
2393 soinfo* si = soinfo_from_handle(handle);
2394 if (si == nullptr) {
2395 DL_OPEN_ERR("invalid handle: %p", handle);
2396 return -1;
2397 }
2398
2399 LD_LOG(kLogDlopen,
2400 "dlclose(handle=%p, realpath=\"%s\"@%p) ...",
2401 handle,
2402 si->get_realpath(),
2403 si);
2404 soinfo_unload(si);
2405 LD_LOG(kLogDlopen,
2406 "dlclose(handle=%p) ... done",
2407 handle);
2408 return 0;
2409 }
2410
2411 // Make ns as the anonymous namespace that is a namespace used when
2412 // we fail to determine the caller address (e.g., call from mono-jited code)
2413 // Since there can be multiple anonymous namespace in a process, subsequent
2414 // call to this function causes an error.
set_anonymous_namespace(android_namespace_t * ns)2415 static bool set_anonymous_namespace(android_namespace_t* ns) {
2416 if (!g_anonymous_namespace_set && ns != nullptr) {
2417 CHECK(ns->is_also_used_as_anonymous());
2418 g_anonymous_namespace = ns;
2419 g_anonymous_namespace_set = true;
2420 return true;
2421 }
2422 return false;
2423 }
2424
2425 // TODO(b/130388701) remove this. Currently, this is used only for testing
2426 // where we don't have classloader namespace.
init_anonymous_namespace(const char * shared_lib_sonames,const char * library_search_path)2427 bool init_anonymous_namespace(const char* shared_lib_sonames, const char* library_search_path) {
2428 ProtectedDataGuard guard;
2429
2430 // Test-only feature: we need to change the anonymous namespace multiple times
2431 // while the test is running.
2432 g_anonymous_namespace_set = false;
2433
2434 // create anonymous namespace
2435 // When the caller is nullptr - create_namespace will take global group
2436 // from the anonymous namespace, which is fine because anonymous namespace
2437 // is still pointing to the default one.
2438 android_namespace_t* anon_ns =
2439 create_namespace(nullptr,
2440 "(anonymous)",
2441 nullptr,
2442 library_search_path,
2443 ANDROID_NAMESPACE_TYPE_ISOLATED |
2444 ANDROID_NAMESPACE_TYPE_ALSO_USED_AS_ANONYMOUS,
2445 nullptr,
2446 &g_default_namespace);
2447
2448 CHECK(anon_ns != nullptr);
2449
2450 if (!link_namespaces(anon_ns, &g_default_namespace, shared_lib_sonames)) {
2451 // TODO: delete anon_ns
2452 return false;
2453 }
2454
2455 return true;
2456 }
2457
add_soinfos_to_namespace(const soinfo_list_t & soinfos,android_namespace_t * ns)2458 static void add_soinfos_to_namespace(const soinfo_list_t& soinfos, android_namespace_t* ns) {
2459 ns->add_soinfos(soinfos);
2460 for (auto si : soinfos) {
2461 si->add_secondary_namespace(ns);
2462 }
2463 }
2464
fix_lib_paths(std::vector<std::string> paths)2465 std::vector<std::string> fix_lib_paths(std::vector<std::string> paths) {
2466 // For the bootstrap linker, insert /system/${LIB}/bootstrap in front of /system/${LIB} in any
2467 // namespace search path. The bootstrap linker should prefer to use the bootstrap bionic libraries
2468 // (e.g. libc.so).
2469 #if !defined(__ANDROID_APEX__)
2470 for (size_t i = 0; i < paths.size(); ++i) {
2471 if (paths[i] == kSystemLibDir) {
2472 paths.insert(paths.begin() + i, std::string(kSystemLibDir) + "/bootstrap");
2473 ++i;
2474 }
2475 }
2476 #endif
2477 return paths;
2478 }
2479
create_namespace(const void * caller_addr,const char * name,const char * ld_library_path,const char * default_library_path,uint64_t type,const char * permitted_when_isolated_path,android_namespace_t * parent_namespace)2480 android_namespace_t* create_namespace(const void* caller_addr,
2481 const char* name,
2482 const char* ld_library_path,
2483 const char* default_library_path,
2484 uint64_t type,
2485 const char* permitted_when_isolated_path,
2486 android_namespace_t* parent_namespace) {
2487 if (parent_namespace == nullptr) {
2488 // if parent_namespace is nullptr -> set it to the caller namespace
2489 soinfo* caller_soinfo = find_containing_library(caller_addr);
2490
2491 parent_namespace = caller_soinfo != nullptr ?
2492 caller_soinfo->get_primary_namespace() :
2493 g_anonymous_namespace;
2494 }
2495
2496 ProtectedDataGuard guard;
2497 std::vector<std::string> ld_library_paths;
2498 std::vector<std::string> default_library_paths;
2499 std::vector<std::string> permitted_paths;
2500
2501 parse_path(ld_library_path, ":", &ld_library_paths);
2502 parse_path(default_library_path, ":", &default_library_paths);
2503 parse_path(permitted_when_isolated_path, ":", &permitted_paths);
2504
2505 android_namespace_t* ns = new (g_namespace_allocator.alloc()) android_namespace_t();
2506 ns->set_name(name);
2507 ns->set_isolated((type & ANDROID_NAMESPACE_TYPE_ISOLATED) != 0);
2508 ns->set_exempt_list_enabled((type & ANDROID_NAMESPACE_TYPE_EXEMPT_LIST_ENABLED) != 0);
2509 ns->set_also_used_as_anonymous((type & ANDROID_NAMESPACE_TYPE_ALSO_USED_AS_ANONYMOUS) != 0);
2510
2511 if ((type & ANDROID_NAMESPACE_TYPE_SHARED) != 0) {
2512 // append parent namespace paths.
2513 std::copy(parent_namespace->get_ld_library_paths().begin(),
2514 parent_namespace->get_ld_library_paths().end(),
2515 back_inserter(ld_library_paths));
2516
2517 std::copy(parent_namespace->get_default_library_paths().begin(),
2518 parent_namespace->get_default_library_paths().end(),
2519 back_inserter(default_library_paths));
2520
2521 std::copy(parent_namespace->get_permitted_paths().begin(),
2522 parent_namespace->get_permitted_paths().end(),
2523 back_inserter(permitted_paths));
2524
2525 // If shared - clone the parent namespace
2526 add_soinfos_to_namespace(parent_namespace->soinfo_list(), ns);
2527 // and copy parent namespace links
2528 for (auto& link : parent_namespace->linked_namespaces()) {
2529 ns->add_linked_namespace(link.linked_namespace(), link.shared_lib_sonames(),
2530 link.allow_all_shared_libs());
2531 }
2532 } else {
2533 // If not shared - copy only the shared group
2534 add_soinfos_to_namespace(parent_namespace->get_shared_group(), ns);
2535 }
2536
2537 ns->set_ld_library_paths(std::move(ld_library_paths));
2538 ns->set_default_library_paths(std::move(default_library_paths));
2539 ns->set_permitted_paths(std::move(permitted_paths));
2540
2541 if (ns->is_also_used_as_anonymous() && !set_anonymous_namespace(ns)) {
2542 DL_ERR("failed to set namespace: [name=\"%s\", ld_library_path=\"%s\", default_library_paths=\"%s\""
2543 " permitted_paths=\"%s\"] as the anonymous namespace",
2544 ns->get_name(),
2545 android::base::Join(ns->get_ld_library_paths(), ':').c_str(),
2546 android::base::Join(ns->get_default_library_paths(), ':').c_str(),
2547 android::base::Join(ns->get_permitted_paths(), ':').c_str());
2548 return nullptr;
2549 }
2550
2551 return ns;
2552 }
2553
link_namespaces(android_namespace_t * namespace_from,android_namespace_t * namespace_to,const char * shared_lib_sonames)2554 bool link_namespaces(android_namespace_t* namespace_from,
2555 android_namespace_t* namespace_to,
2556 const char* shared_lib_sonames) {
2557 if (namespace_to == nullptr) {
2558 namespace_to = &g_default_namespace;
2559 }
2560
2561 if (namespace_from == nullptr) {
2562 DL_ERR("error linking namespaces: namespace_from is null.");
2563 return false;
2564 }
2565
2566 if (shared_lib_sonames == nullptr || shared_lib_sonames[0] == '\0') {
2567 DL_ERR("error linking namespaces \"%s\"->\"%s\": the list of shared libraries is empty.",
2568 namespace_from->get_name(), namespace_to->get_name());
2569 return false;
2570 }
2571
2572 std::vector<std::string> sonames = android::base::Split(shared_lib_sonames, ":");
2573 std::unordered_set<std::string> sonames_set(std::make_move_iterator(sonames.begin()),
2574 std::make_move_iterator(sonames.end()));
2575
2576 ProtectedDataGuard guard;
2577 namespace_from->add_linked_namespace(namespace_to, std::move(sonames_set), false);
2578
2579 return true;
2580 }
2581
link_namespaces_all_libs(android_namespace_t * namespace_from,android_namespace_t * namespace_to)2582 bool link_namespaces_all_libs(android_namespace_t* namespace_from,
2583 android_namespace_t* namespace_to) {
2584 if (namespace_from == nullptr) {
2585 DL_ERR("error linking namespaces: namespace_from is null.");
2586 return false;
2587 }
2588
2589 if (namespace_to == nullptr) {
2590 DL_ERR("error linking namespaces: namespace_to is null.");
2591 return false;
2592 }
2593
2594 ProtectedDataGuard guard;
2595 namespace_from->add_linked_namespace(namespace_to, std::unordered_set<std::string>(), true);
2596
2597 return true;
2598 }
2599
call_ifunc_resolver(ElfW (Addr)resolver_addr)2600 ElfW(Addr) call_ifunc_resolver(ElfW(Addr) resolver_addr) {
2601 if (g_is_ldd) return 0;
2602
2603 ElfW(Addr) ifunc_addr = __bionic_call_ifunc_resolver(resolver_addr);
2604 LD_DEBUG(calls, "ifunc_resolver@%p returned %p",
2605 reinterpret_cast<void *>(resolver_addr), reinterpret_cast<void*>(ifunc_addr));
2606
2607 return ifunc_addr;
2608 }
2609
get_version_info(ElfW (Versym)source_symver) const2610 const version_info* VersionTracker::get_version_info(ElfW(Versym) source_symver) const {
2611 if (source_symver < 2 ||
2612 source_symver >= version_infos.size() ||
2613 version_infos[source_symver].name == nullptr) {
2614 return nullptr;
2615 }
2616
2617 return &version_infos[source_symver];
2618 }
2619
add_version_info(size_t source_index,ElfW (Word)elf_hash,const char * ver_name,const soinfo * target_si)2620 void VersionTracker::add_version_info(size_t source_index,
2621 ElfW(Word) elf_hash,
2622 const char* ver_name,
2623 const soinfo* target_si) {
2624 if (source_index >= version_infos.size()) {
2625 version_infos.resize(source_index+1);
2626 }
2627
2628 version_infos[source_index].elf_hash = elf_hash;
2629 version_infos[source_index].name = ver_name;
2630 version_infos[source_index].target_si = target_si;
2631 }
2632
init_verneed(const soinfo * si_from)2633 bool VersionTracker::init_verneed(const soinfo* si_from) {
2634 uintptr_t verneed_ptr = si_from->get_verneed_ptr();
2635
2636 if (verneed_ptr == 0) {
2637 return true;
2638 }
2639
2640 size_t verneed_cnt = si_from->get_verneed_cnt();
2641
2642 for (size_t i = 0, offset = 0; i<verneed_cnt; ++i) {
2643 const ElfW(Verneed)* verneed = reinterpret_cast<ElfW(Verneed)*>(verneed_ptr + offset);
2644 size_t vernaux_offset = offset + verneed->vn_aux;
2645 offset += verneed->vn_next;
2646
2647 if (verneed->vn_version != 1) {
2648 DL_ERR("unsupported verneed[%zd] vn_version: %d (expected 1)", i, verneed->vn_version);
2649 return false;
2650 }
2651
2652 const char* target_soname = si_from->get_string(verneed->vn_file);
2653 // find it in dependencies
2654 soinfo* target_si = si_from->get_children().find_if(
2655 [&](const soinfo* si) { return strcmp(si->get_soname(), target_soname) == 0; });
2656
2657 if (target_si == nullptr) {
2658 DL_ERR("cannot find \"%s\" from verneed[%zd] in DT_NEEDED list for \"%s\"",
2659 target_soname, i, si_from->get_realpath());
2660 return false;
2661 }
2662
2663 for (size_t j = 0; j<verneed->vn_cnt; ++j) {
2664 const ElfW(Vernaux)* vernaux = reinterpret_cast<ElfW(Vernaux)*>(verneed_ptr + vernaux_offset);
2665 vernaux_offset += vernaux->vna_next;
2666
2667 const ElfW(Word) elf_hash = vernaux->vna_hash;
2668 const char* ver_name = si_from->get_string(vernaux->vna_name);
2669 ElfW(Half) source_index = vernaux->vna_other;
2670
2671 add_version_info(source_index, elf_hash, ver_name, target_si);
2672 }
2673 }
2674
2675 return true;
2676 }
2677
2678 template <typename F>
for_each_verdef(const soinfo * si,F functor)2679 static bool for_each_verdef(const soinfo* si, F functor) {
2680 if (!si->has_min_version(2)) {
2681 return true;
2682 }
2683
2684 uintptr_t verdef_ptr = si->get_verdef_ptr();
2685 if (verdef_ptr == 0) {
2686 return true;
2687 }
2688
2689 size_t offset = 0;
2690
2691 size_t verdef_cnt = si->get_verdef_cnt();
2692 for (size_t i = 0; i<verdef_cnt; ++i) {
2693 const ElfW(Verdef)* verdef = reinterpret_cast<ElfW(Verdef)*>(verdef_ptr + offset);
2694 size_t verdaux_offset = offset + verdef->vd_aux;
2695 offset += verdef->vd_next;
2696
2697 if (verdef->vd_version != 1) {
2698 DL_ERR("unsupported verdef[%zd] vd_version: %d (expected 1) library: %s",
2699 i, verdef->vd_version, si->get_realpath());
2700 return false;
2701 }
2702
2703 if ((verdef->vd_flags & VER_FLG_BASE) != 0) {
2704 // "this is the version of the file itself. It must not be used for
2705 // matching a symbol. It can be used to match references."
2706 //
2707 // http://www.akkadia.org/drepper/symbol-versioning
2708 continue;
2709 }
2710
2711 if (verdef->vd_cnt == 0) {
2712 DL_ERR("invalid verdef[%zd] vd_cnt == 0 (version without a name)", i);
2713 return false;
2714 }
2715
2716 const ElfW(Verdaux)* verdaux = reinterpret_cast<ElfW(Verdaux)*>(verdef_ptr + verdaux_offset);
2717
2718 if (functor(i, verdef, verdaux) == true) {
2719 break;
2720 }
2721 }
2722
2723 return true;
2724 }
2725
find_verdef_version_index(const soinfo * si,const version_info * vi)2726 ElfW(Versym) find_verdef_version_index(const soinfo* si, const version_info* vi) {
2727 if (vi == nullptr) {
2728 return kVersymNotNeeded;
2729 }
2730
2731 ElfW(Versym) result = kVersymGlobal;
2732
2733 if (!for_each_verdef(si,
2734 [&](size_t, const ElfW(Verdef)* verdef, const ElfW(Verdaux)* verdaux) {
2735 if (verdef->vd_hash == vi->elf_hash &&
2736 strcmp(vi->name, si->get_string(verdaux->vda_name)) == 0) {
2737 result = verdef->vd_ndx;
2738 return true;
2739 }
2740
2741 return false;
2742 }
2743 )) {
2744 // verdef should have already been validated in prelink_image.
2745 async_safe_fatal("invalid verdef after prelinking: %s, %s",
2746 si->get_realpath(), linker_get_error_buffer());
2747 }
2748
2749 return result;
2750 }
2751
2752 // Validate the library's verdef section. On error, returns false and invokes DL_ERR.
validate_verdef_section(const soinfo * si)2753 bool validate_verdef_section(const soinfo* si) {
2754 return for_each_verdef(si,
2755 [&](size_t, const ElfW(Verdef)*, const ElfW(Verdaux)*) {
2756 return false;
2757 });
2758 }
2759
init_verdef(const soinfo * si_from)2760 bool VersionTracker::init_verdef(const soinfo* si_from) {
2761 return for_each_verdef(si_from,
2762 [&](size_t, const ElfW(Verdef)* verdef, const ElfW(Verdaux)* verdaux) {
2763 add_version_info(verdef->vd_ndx, verdef->vd_hash,
2764 si_from->get_string(verdaux->vda_name), si_from);
2765 return false;
2766 }
2767 );
2768 }
2769
init(const soinfo * si_from)2770 bool VersionTracker::init(const soinfo* si_from) {
2771 if (!si_from->has_min_version(2)) {
2772 return true;
2773 }
2774
2775 return init_verneed(si_from) && init_verdef(si_from);
2776 }
2777
2778 // TODO (dimitry): Methods below need to be moved out of soinfo
2779 // and in more isolated file in order minimize dependencies on
2780 // unnecessary object in the linker binary. Consider making them
2781 // independent from soinfo (?).
lookup_version_info(const VersionTracker & version_tracker,ElfW (Word)sym,const char * sym_name,const version_info ** vi)2782 bool soinfo::lookup_version_info(const VersionTracker& version_tracker, ElfW(Word) sym,
2783 const char* sym_name, const version_info** vi) {
2784 const ElfW(Versym)* sym_ver_ptr = get_versym(sym);
2785 ElfW(Versym) sym_ver = sym_ver_ptr == nullptr ? 0 : *sym_ver_ptr;
2786
2787 if (sym_ver != VER_NDX_LOCAL && sym_ver != VER_NDX_GLOBAL) {
2788 *vi = version_tracker.get_version_info(sym_ver);
2789
2790 if (*vi == nullptr) {
2791 DL_ERR("cannot find verneed/verdef for version index=%d "
2792 "referenced by symbol \"%s\" at \"%s\"", sym_ver, sym_name, get_realpath());
2793 return false;
2794 }
2795 } else {
2796 // there is no version info
2797 *vi = nullptr;
2798 }
2799
2800 return true;
2801 }
2802
apply_relr_reloc(ElfW (Addr)offset,ElfW (Addr)load_bias,bool has_memtag_globals)2803 static void apply_relr_reloc(ElfW(Addr) offset, ElfW(Addr) load_bias, bool has_memtag_globals) {
2804 ElfW(Addr) destination = offset + load_bias;
2805 if (!has_memtag_globals) {
2806 *reinterpret_cast<ElfW(Addr)*>(destination) += load_bias;
2807 return;
2808 }
2809
2810 ElfW(Addr)* tagged_destination =
2811 reinterpret_cast<ElfW(Addr)*>(get_tagged_address(reinterpret_cast<void*>(destination)));
2812 ElfW(Addr) tagged_value = reinterpret_cast<ElfW(Addr)>(
2813 get_tagged_address(reinterpret_cast<void*>(*tagged_destination + load_bias)));
2814 *tagged_destination = tagged_value;
2815 }
2816
2817 // Process relocations in SHT_RELR section (experimental).
2818 // Details of the encoding are described in this post:
2819 // https://groups.google.com/d/msg/generic-abi/bX460iggiKg/Pi9aSwwABgAJ
relocate_relr(const ElfW (Relr)* begin,const ElfW (Relr)* end,ElfW (Addr)load_bias,bool has_memtag_globals)2820 bool relocate_relr(const ElfW(Relr) * begin, const ElfW(Relr) * end, ElfW(Addr) load_bias,
2821 bool has_memtag_globals) {
2822 constexpr size_t wordsize = sizeof(ElfW(Addr));
2823
2824 ElfW(Addr) base = 0;
2825 for (const ElfW(Relr)* current = begin; current < end; ++current) {
2826 ElfW(Relr) entry = *current;
2827 ElfW(Addr) offset;
2828
2829 if ((entry&1) == 0) {
2830 // Even entry: encodes the offset for next relocation.
2831 offset = static_cast<ElfW(Addr)>(entry);
2832 apply_relr_reloc(offset, load_bias, has_memtag_globals);
2833 // Set base offset for subsequent bitmap entries.
2834 base = offset + wordsize;
2835 continue;
2836 }
2837
2838 // Odd entry: encodes bitmap for relocations starting at base.
2839 offset = base;
2840 while (entry != 0) {
2841 entry >>= 1;
2842 if ((entry&1) != 0) {
2843 apply_relr_reloc(offset, load_bias, has_memtag_globals);
2844 }
2845 offset += wordsize;
2846 }
2847
2848 // Advance base offset by 63 words for 64-bit platforms,
2849 // or 31 words for 32-bit platforms.
2850 base += (8*wordsize - 1) * wordsize;
2851 }
2852 return true;
2853 }
2854
2855 // An empty list of soinfos
2856 static soinfo_list_t g_empty_list;
2857
prelink_image(bool dlext_use_relro)2858 bool soinfo::prelink_image(bool dlext_use_relro) {
2859 if (flags_ & FLAG_PRELINKED) return true;
2860 /* Extract dynamic section */
2861 ElfW(Word) dynamic_flags = 0;
2862 phdr_table_get_dynamic_section(phdr, phnum, load_bias, &dynamic, &dynamic_flags);
2863
2864 /* We can't log anything until the linker is relocated */
2865 bool relocating_linker = (flags_ & FLAG_LINKER) != 0;
2866 if (!relocating_linker) {
2867 LD_DEBUG(any, "[ Linking \"%s\" ]", get_realpath());
2868 LD_DEBUG(any, "si->base = %p si->flags = 0x%08x", reinterpret_cast<void*>(base), flags_);
2869 }
2870
2871 if (dynamic == nullptr) {
2872 if (!relocating_linker) {
2873 DL_ERR("missing PT_DYNAMIC in \"%s\"", get_realpath());
2874 }
2875 return false;
2876 } else {
2877 if (!relocating_linker) {
2878 LD_DEBUG(dynamic, "dynamic section @%p", dynamic);
2879 }
2880 }
2881
2882 #if defined(__arm__)
2883 (void) phdr_table_get_arm_exidx(phdr, phnum, load_bias,
2884 &ARM_exidx, &ARM_exidx_count);
2885 #endif
2886
2887 TlsSegment tls_segment;
2888 if (__bionic_get_tls_segment(phdr, phnum, load_bias, &tls_segment)) {
2889 // The loader does not (currently) support ELF TLS, so it shouldn't have
2890 // a TLS segment.
2891 CHECK(!relocating_linker && "TLS not supported in loader");
2892 if (!__bionic_check_tls_align(tls_segment.aligned_size.align.value)) {
2893 DL_ERR("TLS segment alignment in \"%s\" is not a power of 2: %zu", get_realpath(),
2894 tls_segment.aligned_size.align.value);
2895 return false;
2896 }
2897 tls_ = std::make_unique<soinfo_tls>();
2898 tls_->segment = tls_segment;
2899 }
2900
2901 // Extract useful information from dynamic section.
2902 // Note that: "Except for the DT_NULL element at the end of the array,
2903 // and the relative order of DT_NEEDED elements, entries may appear in any order."
2904 //
2905 // source: http://www.sco.com/developers/gabi/1998-04-29/ch5.dynamic.html
2906 uint32_t needed_count = 0;
2907 for (ElfW(Dyn)* d = dynamic; d->d_tag != DT_NULL; ++d) {
2908 LD_DEBUG(dynamic, "dynamic entry @%p: d_tag=%p, d_val=%p",
2909 d, reinterpret_cast<void*>(d->d_tag), reinterpret_cast<void*>(d->d_un.d_val));
2910 switch (d->d_tag) {
2911 case DT_SONAME:
2912 // this is parsed after we have strtab initialized (see below).
2913 break;
2914
2915 case DT_HASH:
2916 nbucket_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[0];
2917 nchain_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[1];
2918 bucket_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr + 8);
2919 chain_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr + 8 + nbucket_ * 4);
2920 break;
2921
2922 case DT_GNU_HASH:
2923 gnu_nbucket_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[0];
2924 // skip symndx
2925 gnu_maskwords_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[2];
2926 gnu_shift2_ = reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[3];
2927
2928 gnu_bloom_filter_ = reinterpret_cast<ElfW(Addr)*>(load_bias + d->d_un.d_ptr + 16);
2929 gnu_bucket_ = reinterpret_cast<uint32_t*>(gnu_bloom_filter_ + gnu_maskwords_);
2930 // amend chain for symndx = header[1]
2931 gnu_chain_ = gnu_bucket_ + gnu_nbucket_ -
2932 reinterpret_cast<uint32_t*>(load_bias + d->d_un.d_ptr)[1];
2933
2934 if (!powerof2(gnu_maskwords_)) {
2935 DL_ERR("invalid maskwords for gnu_hash = 0x%x, in \"%s\" expecting power to two",
2936 gnu_maskwords_, get_realpath());
2937 return false;
2938 }
2939 --gnu_maskwords_;
2940
2941 flags_ |= FLAG_GNU_HASH;
2942 break;
2943
2944 case DT_STRTAB:
2945 strtab_ = reinterpret_cast<const char*>(load_bias + d->d_un.d_ptr);
2946 break;
2947
2948 case DT_STRSZ:
2949 strtab_size_ = d->d_un.d_val;
2950 break;
2951
2952 case DT_SYMTAB:
2953 symtab_ = reinterpret_cast<ElfW(Sym)*>(load_bias + d->d_un.d_ptr);
2954 break;
2955
2956 case DT_SYMENT:
2957 if (d->d_un.d_val != sizeof(ElfW(Sym))) {
2958 DL_ERR("invalid DT_SYMENT: %zd in \"%s\"",
2959 static_cast<size_t>(d->d_un.d_val), get_realpath());
2960 return false;
2961 }
2962 break;
2963
2964 case DT_PLTREL:
2965 #if defined(USE_RELA)
2966 if (d->d_un.d_val != DT_RELA) {
2967 DL_ERR("unsupported DT_PLTREL in \"%s\"; expected DT_RELA", get_realpath());
2968 return false;
2969 }
2970 #else
2971 if (d->d_un.d_val != DT_REL) {
2972 DL_ERR("unsupported DT_PLTREL in \"%s\"; expected DT_REL", get_realpath());
2973 return false;
2974 }
2975 #endif
2976 break;
2977
2978 case DT_JMPREL:
2979 #if defined(USE_RELA)
2980 plt_rela_ = reinterpret_cast<ElfW(Rela)*>(load_bias + d->d_un.d_ptr);
2981 #else
2982 plt_rel_ = reinterpret_cast<ElfW(Rel)*>(load_bias + d->d_un.d_ptr);
2983 #endif
2984 break;
2985
2986 case DT_PLTRELSZ:
2987 #if defined(USE_RELA)
2988 plt_rela_count_ = d->d_un.d_val / sizeof(ElfW(Rela));
2989 #else
2990 plt_rel_count_ = d->d_un.d_val / sizeof(ElfW(Rel));
2991 #endif
2992 break;
2993
2994 case DT_PLTGOT:
2995 // Ignored (because RTLD_LAZY is not supported).
2996 break;
2997
2998 case DT_DEBUG:
2999 // Set the DT_DEBUG entry to the address of _r_debug for GDB
3000 // if the dynamic table is writable
3001 if ((dynamic_flags & PF_W) != 0) {
3002 d->d_un.d_val = reinterpret_cast<uintptr_t>(&_r_debug);
3003 }
3004 break;
3005 #if defined(USE_RELA)
3006 case DT_RELA:
3007 rela_ = reinterpret_cast<ElfW(Rela)*>(load_bias + d->d_un.d_ptr);
3008 break;
3009
3010 case DT_RELASZ:
3011 rela_count_ = d->d_un.d_val / sizeof(ElfW(Rela));
3012 break;
3013
3014 case DT_ANDROID_RELA:
3015 android_relocs_ = reinterpret_cast<uint8_t*>(load_bias + d->d_un.d_ptr);
3016 break;
3017
3018 case DT_ANDROID_RELASZ:
3019 android_relocs_size_ = d->d_un.d_val;
3020 break;
3021
3022 case DT_ANDROID_REL:
3023 DL_ERR("unsupported DT_ANDROID_REL in \"%s\"", get_realpath());
3024 return false;
3025
3026 case DT_ANDROID_RELSZ:
3027 DL_ERR("unsupported DT_ANDROID_RELSZ in \"%s\"", get_realpath());
3028 return false;
3029
3030 case DT_RELAENT:
3031 if (d->d_un.d_val != sizeof(ElfW(Rela))) {
3032 DL_ERR("invalid DT_RELAENT: %zd", static_cast<size_t>(d->d_un.d_val));
3033 return false;
3034 }
3035 break;
3036
3037 // Ignored (see DT_RELCOUNT comments for details).
3038 case DT_RELACOUNT:
3039 break;
3040
3041 case DT_REL:
3042 DL_ERR("unsupported DT_REL in \"%s\"", get_realpath());
3043 return false;
3044
3045 case DT_RELSZ:
3046 DL_ERR("unsupported DT_RELSZ in \"%s\"", get_realpath());
3047 return false;
3048
3049 #else
3050 case DT_REL:
3051 rel_ = reinterpret_cast<ElfW(Rel)*>(load_bias + d->d_un.d_ptr);
3052 break;
3053
3054 case DT_RELSZ:
3055 rel_count_ = d->d_un.d_val / sizeof(ElfW(Rel));
3056 break;
3057
3058 case DT_RELENT:
3059 if (d->d_un.d_val != sizeof(ElfW(Rel))) {
3060 DL_ERR("invalid DT_RELENT: %zd", static_cast<size_t>(d->d_un.d_val));
3061 return false;
3062 }
3063 break;
3064
3065 case DT_ANDROID_REL:
3066 android_relocs_ = reinterpret_cast<uint8_t*>(load_bias + d->d_un.d_ptr);
3067 break;
3068
3069 case DT_ANDROID_RELSZ:
3070 android_relocs_size_ = d->d_un.d_val;
3071 break;
3072
3073 case DT_ANDROID_RELA:
3074 DL_ERR("unsupported DT_ANDROID_RELA in \"%s\"", get_realpath());
3075 return false;
3076
3077 case DT_ANDROID_RELASZ:
3078 DL_ERR("unsupported DT_ANDROID_RELASZ in \"%s\"", get_realpath());
3079 return false;
3080
3081 // "Indicates that all RELATIVE relocations have been concatenated together,
3082 // and specifies the RELATIVE relocation count."
3083 //
3084 // TODO: Spec also mentions that this can be used to optimize relocation process;
3085 // Not currently used by bionic linker - ignored.
3086 case DT_RELCOUNT:
3087 break;
3088
3089 case DT_RELA:
3090 DL_ERR("unsupported DT_RELA in \"%s\"", get_realpath());
3091 return false;
3092
3093 case DT_RELASZ:
3094 DL_ERR("unsupported DT_RELASZ in \"%s\"", get_realpath());
3095 return false;
3096
3097 #endif
3098 case DT_RELR:
3099 case DT_ANDROID_RELR:
3100 relr_ = reinterpret_cast<ElfW(Relr)*>(load_bias + d->d_un.d_ptr);
3101 break;
3102
3103 case DT_RELRSZ:
3104 case DT_ANDROID_RELRSZ:
3105 relr_count_ = d->d_un.d_val / sizeof(ElfW(Relr));
3106 break;
3107
3108 case DT_RELRENT:
3109 case DT_ANDROID_RELRENT:
3110 if (d->d_un.d_val != sizeof(ElfW(Relr))) {
3111 DL_ERR("invalid DT_RELRENT: %zd", static_cast<size_t>(d->d_un.d_val));
3112 return false;
3113 }
3114 break;
3115
3116 // Ignored (see DT_RELCOUNT comments for details).
3117 // There is no DT_RELRCOUNT specifically because it would only be ignored.
3118 case DT_ANDROID_RELRCOUNT:
3119 break;
3120
3121 case DT_INIT:
3122 init_func_ = reinterpret_cast<linker_ctor_function_t>(load_bias + d->d_un.d_ptr);
3123 LD_DEBUG(dynamic, "%s constructors (DT_INIT) found at %p", get_realpath(), init_func_);
3124 break;
3125
3126 case DT_FINI:
3127 fini_func_ = reinterpret_cast<linker_dtor_function_t>(load_bias + d->d_un.d_ptr);
3128 LD_DEBUG(dynamic, "%s destructors (DT_FINI) found at %p", get_realpath(), fini_func_);
3129 break;
3130
3131 case DT_INIT_ARRAY:
3132 init_array_ = reinterpret_cast<linker_ctor_function_t*>(load_bias + d->d_un.d_ptr);
3133 LD_DEBUG(dynamic, "%s constructors (DT_INIT_ARRAY) found at %p", get_realpath(), init_array_);
3134 break;
3135
3136 case DT_INIT_ARRAYSZ:
3137 init_array_count_ = static_cast<uint32_t>(d->d_un.d_val) / sizeof(ElfW(Addr));
3138 break;
3139
3140 case DT_FINI_ARRAY:
3141 fini_array_ = reinterpret_cast<linker_dtor_function_t*>(load_bias + d->d_un.d_ptr);
3142 LD_DEBUG(dynamic, "%s destructors (DT_FINI_ARRAY) found at %p", get_realpath(), fini_array_);
3143 break;
3144
3145 case DT_FINI_ARRAYSZ:
3146 fini_array_count_ = static_cast<uint32_t>(d->d_un.d_val) / sizeof(ElfW(Addr));
3147 break;
3148
3149 case DT_PREINIT_ARRAY:
3150 preinit_array_ = reinterpret_cast<linker_ctor_function_t*>(load_bias + d->d_un.d_ptr);
3151 LD_DEBUG(dynamic, "%s constructors (DT_PREINIT_ARRAY) found at %p", get_realpath(), preinit_array_);
3152 break;
3153
3154 case DT_PREINIT_ARRAYSZ:
3155 preinit_array_count_ = static_cast<uint32_t>(d->d_un.d_val) / sizeof(ElfW(Addr));
3156 break;
3157
3158 case DT_TEXTREL:
3159 #if defined(__LP64__)
3160 DL_ERR("\"%s\" has text relocations", get_realpath());
3161 return false;
3162 #else
3163 has_text_relocations = true;
3164 break;
3165 #endif
3166
3167 case DT_SYMBOLIC:
3168 has_DT_SYMBOLIC = true;
3169 break;
3170
3171 case DT_NEEDED:
3172 ++needed_count;
3173 break;
3174
3175 case DT_FLAGS:
3176 if (d->d_un.d_val & DF_TEXTREL) {
3177 #if defined(__LP64__)
3178 DL_ERR("\"%s\" has text relocations", get_realpath());
3179 return false;
3180 #else
3181 has_text_relocations = true;
3182 #endif
3183 }
3184 if (d->d_un.d_val & DF_SYMBOLIC) {
3185 has_DT_SYMBOLIC = true;
3186 }
3187 break;
3188
3189 case DT_FLAGS_1:
3190 set_dt_flags_1(d->d_un.d_val);
3191
3192 if ((d->d_un.d_val & ~SUPPORTED_DT_FLAGS_1) != 0) {
3193 DL_WARN("Warning: \"%s\" has unsupported flags DT_FLAGS_1=%p "
3194 "(ignoring unsupported flags)",
3195 get_realpath(), reinterpret_cast<void*>(d->d_un.d_val));
3196 }
3197 break;
3198
3199 // Ignored: "Its use has been superseded by the DF_BIND_NOW flag"
3200 case DT_BIND_NOW:
3201 break;
3202
3203 case DT_VERSYM:
3204 versym_ = reinterpret_cast<ElfW(Versym)*>(load_bias + d->d_un.d_ptr);
3205 break;
3206
3207 case DT_VERDEF:
3208 verdef_ptr_ = load_bias + d->d_un.d_ptr;
3209 break;
3210 case DT_VERDEFNUM:
3211 verdef_cnt_ = d->d_un.d_val;
3212 break;
3213
3214 case DT_VERNEED:
3215 verneed_ptr_ = load_bias + d->d_un.d_ptr;
3216 break;
3217
3218 case DT_VERNEEDNUM:
3219 verneed_cnt_ = d->d_un.d_val;
3220 break;
3221
3222 case DT_RUNPATH:
3223 // this is parsed after we have strtab initialized (see below).
3224 break;
3225
3226 case DT_TLSDESC_GOT:
3227 case DT_TLSDESC_PLT:
3228 // These DT entries are used for lazy TLSDESC relocations. Bionic
3229 // resolves everything eagerly, so these can be ignored.
3230 break;
3231
3232 #if defined(__aarch64__)
3233 case DT_AARCH64_BTI_PLT:
3234 case DT_AARCH64_PAC_PLT:
3235 case DT_AARCH64_VARIANT_PCS:
3236 // Ignored: AArch64 processor-specific dynamic array tags.
3237 break;
3238 case DT_AARCH64_MEMTAG_MODE:
3239 memtag_dynamic_entries_.has_memtag_mode = true;
3240 memtag_dynamic_entries_.memtag_mode = d->d_un.d_val;
3241 break;
3242 case DT_AARCH64_MEMTAG_HEAP:
3243 memtag_dynamic_entries_.memtag_heap = d->d_un.d_val;
3244 break;
3245 // The AArch64 MemtagABI originally erroneously defined
3246 // DT_AARCH64_MEMTAG_STACK as `d_ptr`, which is why the dynamic tag value
3247 // is odd (`0x7000000c`). `d_val` is clearly the correct semantics, and so
3248 // this was fixed in the ABI, but the value (0x7000000c) didn't change
3249 // because we already had Android binaries floating around with dynamic
3250 // entries, and didn't want to create a whole new dynamic entry and
3251 // reserve a value just to fix that tiny mistake. P.S. lld was always
3252 // outputting DT_AARCH64_MEMTAG_STACK as `d_val` anyway.
3253 case DT_AARCH64_MEMTAG_STACK:
3254 memtag_dynamic_entries_.memtag_stack = d->d_un.d_val;
3255 break;
3256 // Same as above, except DT_AARCH64_MEMTAG_GLOBALS was incorrectly defined
3257 // as `d_val` (hence an even value of `0x7000000d`), when it should have
3258 // been `d_ptr` all along. lld has always outputted this as `d_ptr`.
3259 case DT_AARCH64_MEMTAG_GLOBALS:
3260 memtag_dynamic_entries_.memtag_globals = reinterpret_cast<void*>(load_bias + d->d_un.d_ptr);
3261 break;
3262 case DT_AARCH64_MEMTAG_GLOBALSSZ:
3263 memtag_dynamic_entries_.memtag_globalssz = d->d_un.d_val;
3264 break;
3265 #endif
3266
3267 default:
3268 if (!relocating_linker) {
3269 const char* tag_name;
3270 if (d->d_tag == DT_RPATH) {
3271 tag_name = "DT_RPATH";
3272 } else if (d->d_tag == DT_ENCODING) {
3273 tag_name = "DT_ENCODING";
3274 } else if (d->d_tag >= DT_LOOS && d->d_tag <= DT_HIOS) {
3275 tag_name = "unknown OS-specific";
3276 } else if (d->d_tag >= DT_LOPROC && d->d_tag <= DT_HIPROC) {
3277 tag_name = "unknown processor-specific";
3278 } else {
3279 tag_name = "unknown";
3280 }
3281 DL_WARN("Warning: \"%s\" unused DT entry: %s (type %p arg %p) (ignoring)",
3282 get_realpath(),
3283 tag_name,
3284 reinterpret_cast<void*>(d->d_tag),
3285 reinterpret_cast<void*>(d->d_un.d_val));
3286 }
3287 break;
3288 }
3289 }
3290
3291 LD_DEBUG(dynamic, "si->base = %p, si->strtab = %p, si->symtab = %p",
3292 reinterpret_cast<void*>(base), strtab_, symtab_);
3293
3294 // Validity checks.
3295 if (relocating_linker && needed_count != 0) {
3296 DL_ERR("linker cannot have DT_NEEDED dependencies on other libraries");
3297 return false;
3298 }
3299 if (nbucket_ == 0 && gnu_nbucket_ == 0) {
3300 DL_ERR("empty/missing DT_HASH/DT_GNU_HASH in \"%s\" "
3301 "(new hash type from the future?)", get_realpath());
3302 return false;
3303 }
3304 if (strtab_ == nullptr) {
3305 DL_ERR("empty/missing DT_STRTAB in \"%s\"", get_realpath());
3306 return false;
3307 }
3308 if (symtab_ == nullptr) {
3309 DL_ERR("empty/missing DT_SYMTAB in \"%s\"", get_realpath());
3310 return false;
3311 }
3312
3313 // Second pass - parse entries relying on strtab. Skip this while relocating the linker so as to
3314 // avoid doing heap allocations until later in the linker's initialization.
3315 if (!relocating_linker) {
3316 for (ElfW(Dyn)* d = dynamic; d->d_tag != DT_NULL; ++d) {
3317 switch (d->d_tag) {
3318 case DT_SONAME:
3319 set_soname(get_string(d->d_un.d_val));
3320 break;
3321 case DT_RUNPATH:
3322 set_dt_runpath(get_string(d->d_un.d_val));
3323 break;
3324 }
3325 }
3326 }
3327
3328 // Before M release, linker was using basename in place of soname. In the case when DT_SONAME is
3329 // absent some apps stop working because they can't find DT_NEEDED library by soname. This
3330 // workaround should keep them working. (Applies only for apps targeting sdk version < M.) Make
3331 // an exception for the main executable, which does not need to have DT_SONAME. The linker has an
3332 // DT_SONAME but the soname_ field is initialized later on.
3333 if (soname_.empty() && this != solist_get_somain() && !relocating_linker &&
3334 get_application_target_sdk_version() < 23) {
3335 soname_ = basename(realpath_.c_str());
3336 DL_WARN_documented_change(23, "missing-soname-enforced-for-api-level-23",
3337 "\"%s\" has no DT_SONAME (will use %s instead)", get_realpath(),
3338 soname_.c_str());
3339
3340 // Don't call add_dlwarning because a missing DT_SONAME isn't important enough to show in the UI
3341 }
3342
3343 // Validate each library's verdef section once, so we don't have to validate
3344 // it each time we look up a symbol with a version.
3345 if (!validate_verdef_section(this)) return false;
3346
3347 // MTE globals requires remapping data segments with PROT_MTE as anonymous mappings, because file
3348 // based mappings may not be backed by tag-capable memory (see "MAP_ANONYMOUS" on
3349 // https://www.kernel.org/doc/html/latest/arch/arm64/memory-tagging-extension.html). This is only
3350 // done if the binary has MTE globals (evidenced by the dynamic table entries), as it destroys
3351 // page sharing. It's also only done on devices that support MTE, because the act of remapping
3352 // pages is unnecessary on non-MTE devices (where we might still run MTE-globals enabled code).
3353 if (should_tag_memtag_globals() &&
3354 remap_memtag_globals_segments(phdr, phnum, base) == 0) {
3355 tag_globals(dlext_use_relro);
3356 protect_memtag_globals_ro_segments(phdr, phnum, base);
3357 }
3358
3359 flags_ |= FLAG_PRELINKED;
3360 return true;
3361 }
3362
link_image(const SymbolLookupList & lookup_list,soinfo * local_group_root,const android_dlextinfo * extinfo,size_t * relro_fd_offset)3363 bool soinfo::link_image(const SymbolLookupList& lookup_list, soinfo* local_group_root,
3364 const android_dlextinfo* extinfo, size_t* relro_fd_offset) {
3365 if (is_image_linked()) {
3366 // already linked.
3367 return true;
3368 }
3369
3370 if (g_is_ldd && !is_main_executable()) {
3371 async_safe_format_fd(STDOUT_FILENO, "\t%s => %s (%p)\n", get_soname(),
3372 get_realpath(), reinterpret_cast<void*>(base));
3373 }
3374
3375 local_group_root_ = local_group_root;
3376 if (local_group_root_ == nullptr) {
3377 local_group_root_ = this;
3378 }
3379
3380 if ((flags_ & FLAG_LINKER) == 0 && local_group_root_ == this) {
3381 target_sdk_version_ = get_application_target_sdk_version();
3382 }
3383
3384 #if !defined(__LP64__)
3385 if (has_text_relocations) {
3386 // Fail if app is targeting M or above.
3387 int app_target_api_level = get_application_target_sdk_version();
3388 if (app_target_api_level >= 23) {
3389 DL_ERR_AND_LOG("\"%s\" has text relocations (%s#Text-Relocations-Enforced-for-API-level-23)",
3390 get_realpath(), kBionicChangesUrl);
3391 return false;
3392 }
3393 // Make segments writable to allow text relocations to work properly. We will later call
3394 // phdr_table_protect_segments() after all of them are applied.
3395 DL_WARN_documented_change(23,
3396 "Text-Relocations-Enforced-for-API-level-23",
3397 "\"%s\" has text relocations",
3398 get_realpath());
3399 add_dlwarning(get_realpath(), "text relocations");
3400 if (phdr_table_unprotect_segments(phdr, phnum, load_bias, should_pad_segments_,
3401 should_use_16kib_app_compat_) < 0) {
3402 DL_ERR("can't unprotect loadable segments for \"%s\": %m", get_realpath());
3403 return false;
3404 }
3405 }
3406 #endif
3407
3408 if (this != solist_get_vdso() && !relocate(lookup_list)) {
3409 return false;
3410 }
3411
3412 LD_DEBUG(any, "[ finished linking %s ]", get_realpath());
3413
3414 #if !defined(__LP64__)
3415 if (has_text_relocations) {
3416 // All relocations are done, we can protect our segments back to read-only.
3417 if (phdr_table_protect_segments(phdr, phnum, load_bias, should_pad_segments_,
3418 should_use_16kib_app_compat_) < 0) {
3419 DL_ERR("can't protect segments for \"%s\": %m", get_realpath());
3420 return false;
3421 }
3422 }
3423 #endif
3424
3425 // We can also turn on GNU RELRO protection if we're not linking the dynamic linker
3426 // itself --- it can't make system calls yet, and will have to call protect_relro later.
3427 if (!is_linker() && !protect_relro()) {
3428 return false;
3429 }
3430
3431 if (should_tag_memtag_globals()) {
3432 std::list<std::string>* vma_names_ptr = vma_names();
3433 // should_tag_memtag_globals -> __aarch64__ -> vma_names() != nullptr
3434 CHECK(vma_names_ptr);
3435 name_memtag_globals_segments(phdr, phnum, base, get_realpath(), vma_names_ptr);
3436 }
3437
3438 /* Handle serializing/sharing the RELRO segment */
3439 if (extinfo && (extinfo->flags & ANDROID_DLEXT_WRITE_RELRO)) {
3440 if (phdr_table_serialize_gnu_relro(phdr, phnum, load_bias,
3441 extinfo->relro_fd, relro_fd_offset) < 0) {
3442 DL_ERR("failed serializing GNU RELRO section for \"%s\": %m", get_realpath());
3443 return false;
3444 }
3445 } else if (extinfo && (extinfo->flags & ANDROID_DLEXT_USE_RELRO)) {
3446 if (phdr_table_map_gnu_relro(phdr, phnum, load_bias,
3447 extinfo->relro_fd, relro_fd_offset) < 0) {
3448 DL_ERR("failed mapping GNU RELRO section for \"%s\": %m", get_realpath());
3449 return false;
3450 }
3451 }
3452
3453 ++g_module_load_counter;
3454 notify_gdb_of_load(this);
3455 set_image_linked();
3456 return true;
3457 }
3458
protect_relro()3459 bool soinfo::protect_relro() {
3460 if (should_use_16kib_app_compat_) {
3461 if (phdr_table_protect_gnu_relro_16kib_compat(compat_relro_start_, compat_relro_size_) < 0) {
3462 DL_ERR("can't enable COMPAT GNU RELRO protection for \"%s\": %s", get_realpath(),
3463 strerror(errno));
3464 return false;
3465 }
3466 } else {
3467 if (phdr_table_protect_gnu_relro(phdr, phnum, load_bias, should_pad_segments_,
3468 should_use_16kib_app_compat_) < 0) {
3469 DL_ERR("can't enable GNU RELRO protection for \"%s\": %m", get_realpath());
3470 return false;
3471 }
3472 }
3473 return true;
3474 }
3475
3476 // https://github.com/ARM-software/abi-aa/blob/main/memtagabielf64/memtagabielf64.rst#global-variable-tagging
tag_globals(bool dlext_use_relro)3477 void soinfo::tag_globals(bool dlext_use_relro) {
3478 if (is_linked()) return;
3479 if (flags_ & FLAG_GLOBALS_TAGGED) return;
3480 flags_ |= FLAG_GLOBALS_TAGGED;
3481
3482 constexpr size_t kTagGranuleSize = 16;
3483 const uint8_t* descriptor_stream = reinterpret_cast<const uint8_t*>(memtag_globals());
3484
3485 if (memtag_globalssz() == 0) {
3486 DL_ERR("Invalid memtag descriptor pool size: %zu", memtag_globalssz());
3487 }
3488
3489 uint64_t addr = load_bias;
3490 uleb128_decoder decoder(descriptor_stream, memtag_globalssz());
3491 // Don't ever generate tag zero, to easily distinguish between tagged and
3492 // untagged globals in register/tag dumps.
3493 uint64_t last_tag_mask = 1;
3494 uint64_t last_tag = 1;
3495 constexpr uint64_t kDistanceReservedBits = 3;
3496
3497 while (decoder.has_bytes()) {
3498 uint64_t value = decoder.pop_front();
3499 uint64_t distance = (value >> kDistanceReservedBits) * kTagGranuleSize;
3500 uint64_t ngranules = value & ((1 << kDistanceReservedBits) - 1);
3501 if (ngranules == 0) {
3502 ngranules = decoder.pop_front() + 1;
3503 }
3504
3505 addr += distance;
3506 void* tagged_addr;
3507 if (dlext_use_relro) {
3508 tagged_addr = reinterpret_cast<void*>(addr | (last_tag++ << 56));
3509 if (last_tag > (1 << kTagGranuleSize)) last_tag = 1;
3510 } else {
3511 tagged_addr = insert_random_tag(reinterpret_cast<void*>(addr), last_tag_mask);
3512 uint64_t tag = (reinterpret_cast<uint64_t>(tagged_addr) >> 56) & 0x0f;
3513 last_tag_mask = 1 | (1 << tag);
3514 }
3515
3516 for (size_t k = 0; k < ngranules; k++) {
3517 auto* granule = static_cast<uint8_t*>(tagged_addr) + k * kTagGranuleSize;
3518 set_memory_tag(static_cast<void*>(granule));
3519 }
3520 addr += ngranules * kTagGranuleSize;
3521 }
3522 }
3523
init_default_namespace_no_config(bool is_asan,bool is_hwasan)3524 static std::vector<android_namespace_t*> init_default_namespace_no_config(bool is_asan, bool is_hwasan) {
3525 g_default_namespace.set_isolated(false);
3526 auto default_ld_paths = is_asan ? kAsanDefaultLdPaths : (
3527 is_hwasan ? kHwsanDefaultLdPaths : kDefaultLdPaths);
3528
3529 char real_path[PATH_MAX];
3530 std::vector<std::string> ld_default_paths;
3531 for (size_t i = 0; default_ld_paths[i] != nullptr; ++i) {
3532 if (realpath(default_ld_paths[i], real_path) != nullptr) {
3533 ld_default_paths.push_back(real_path);
3534 } else {
3535 ld_default_paths.push_back(default_ld_paths[i]);
3536 }
3537 }
3538
3539 g_default_namespace.set_default_library_paths(std::move(ld_default_paths));
3540
3541 std::vector<android_namespace_t*> namespaces;
3542 namespaces.push_back(&g_default_namespace);
3543 return namespaces;
3544 }
3545
3546 // Given an `executable_path` starting with "/apex/<name>/bin/, return
3547 // "/linkerconfig/<name>/ld.config.txt", which is the auto-generated config file for the APEX by the
3548 // linkerconfig tool.
get_ld_config_file_apex_path(const char * executable_path)3549 static std::string get_ld_config_file_apex_path(const char* executable_path) {
3550 std::vector<std::string> paths = android::base::Split(executable_path, "/");
3551 if (paths.size() >= 5 && paths[1] == "apex" && paths[3] == "bin") {
3552 std::string generated_apex_config = "/linkerconfig/" + paths[2] + "/ld.config.txt";
3553 if (file_exists(generated_apex_config.c_str())) {
3554 return generated_apex_config;
3555 }
3556 }
3557 return "";
3558 }
3559
get_ld_config_file_vndk_path()3560 static std::string get_ld_config_file_vndk_path() {
3561 if (android::base::GetBoolProperty("ro.vndk.lite", false)) {
3562 return kLdConfigVndkLiteFilePath;
3563 }
3564
3565 std::string ld_config_file_vndk = kLdConfigFilePath;
3566 size_t insert_pos = ld_config_file_vndk.find_last_of('.');
3567 if (insert_pos == std::string::npos) {
3568 insert_pos = ld_config_file_vndk.length();
3569 }
3570 ld_config_file_vndk.insert(insert_pos, Config::get_vndk_version_string('.'));
3571 return ld_config_file_vndk;
3572 }
3573
is_linker_config_expected(const char * executable_path)3574 bool is_linker_config_expected(const char* executable_path) {
3575 // Do not raise message from a host environment which is expected to miss generated linker
3576 // configuration.
3577 #if !defined(__ANDROID__)
3578 return false;
3579 #endif
3580
3581 if (strcmp(executable_path, "/system/bin/init") == 0) {
3582 // Generated linker configuration can be missed from processes executed
3583 // with init binary
3584 return false;
3585 }
3586
3587 return true;
3588 }
3589
get_ld_config_file_path(const char * executable_path)3590 static std::string get_ld_config_file_path(const char* executable_path) {
3591 #ifdef USE_LD_CONFIG_FILE
3592 // This is a debugging/testing only feature. Must not be available on
3593 // production builds.
3594 const char* ld_config_file_env = getenv("LD_CONFIG_FILE");
3595 if (ld_config_file_env != nullptr && file_exists(ld_config_file_env)) {
3596 return ld_config_file_env;
3597 }
3598 #endif
3599
3600 std::string path = get_ld_config_file_apex_path(executable_path);
3601 if (!path.empty()) {
3602 if (file_exists(path.c_str())) {
3603 return path;
3604 }
3605 DL_WARN("Warning: couldn't read config file \"%s\" for \"%s\"",
3606 path.c_str(), executable_path);
3607 }
3608
3609 path = kLdConfigArchFilePath;
3610 if (file_exists(path.c_str())) {
3611 return path;
3612 }
3613
3614 if (file_exists(kLdGeneratedConfigFilePath)) {
3615 return kLdGeneratedConfigFilePath;
3616 }
3617
3618 if (is_linker_config_expected(executable_path)) {
3619 DL_WARN("Warning: failed to find generated linker configuration from \"%s\"",
3620 kLdGeneratedConfigFilePath);
3621 }
3622
3623 path = get_ld_config_file_vndk_path();
3624 if (file_exists(path.c_str())) {
3625 return path;
3626 }
3627
3628 return kLdConfigFilePath;
3629 }
3630
3631
init_default_namespaces(const char * executable_path)3632 std::vector<android_namespace_t*> init_default_namespaces(const char* executable_path) {
3633 g_default_namespace.set_name("(default)");
3634
3635 soinfo* somain = solist_get_somain();
3636
3637 const char *interp = phdr_table_get_interpreter_name(somain->phdr, somain->phnum,
3638 somain->load_bias);
3639 const char* bname = (interp != nullptr) ? basename(interp) : nullptr;
3640
3641 g_is_asan = bname != nullptr &&
3642 (strcmp(bname, "linker_asan") == 0 ||
3643 strcmp(bname, "linker_asan64") == 0);
3644
3645 #if defined(__aarch64__)
3646 // HWASan is only supported on AArch64.
3647 // The AT_SECURE restriction is because this is a debug feature that does
3648 // not need to work on secure binaries, it doesn't hurt to disallow the
3649 // environment variable for them, as it impacts the program execution.
3650 char* hwasan_env = getenv("LD_HWASAN");
3651 g_is_hwasan = (bname != nullptr &&
3652 strcmp(bname, "linker_hwasan64") == 0) ||
3653 (hwasan_env != nullptr && !getauxval(AT_SECURE) && strcmp(hwasan_env, "1") == 0);
3654 #endif
3655 const Config* config = nullptr;
3656
3657 {
3658 std::string ld_config_file_path = get_ld_config_file_path(executable_path);
3659 LD_DEBUG(any, "[ Reading linker config \"%s\" ]", ld_config_file_path.c_str());
3660 ScopedTrace trace(("linker config " + ld_config_file_path).c_str());
3661 std::string error_msg;
3662 if (!Config::read_binary_config(ld_config_file_path.c_str(), executable_path, g_is_asan, g_is_hwasan,
3663 &config, &error_msg)) {
3664 if (!error_msg.empty()) {
3665 DL_WARN("Warning: couldn't read '%s' for '%s' (using default configuration instead): %s",
3666 ld_config_file_path.c_str(), executable_path, error_msg.c_str());
3667 }
3668 config = nullptr;
3669 }
3670 }
3671
3672 if (config == nullptr) {
3673 return init_default_namespace_no_config(g_is_asan, g_is_hwasan);
3674 }
3675
3676 const auto& namespace_configs = config->namespace_configs();
3677 std::unordered_map<std::string, android_namespace_t*> namespaces;
3678
3679 // 1. Initialize default namespace
3680 const NamespaceConfig* default_ns_config = config->default_namespace_config();
3681
3682 g_default_namespace.set_isolated(default_ns_config->isolated());
3683 g_default_namespace.set_default_library_paths(default_ns_config->search_paths());
3684 g_default_namespace.set_permitted_paths(default_ns_config->permitted_paths());
3685
3686 namespaces[default_ns_config->name()] = &g_default_namespace;
3687 if (default_ns_config->visible()) {
3688 g_exported_namespaces[default_ns_config->name()] = &g_default_namespace;
3689 }
3690
3691 // 2. Initialize other namespaces
3692
3693 for (auto& ns_config : namespace_configs) {
3694 if (namespaces.contains(ns_config->name())) {
3695 continue;
3696 }
3697
3698 android_namespace_t* ns = new (g_namespace_allocator.alloc()) android_namespace_t();
3699 ns->set_name(ns_config->name());
3700 ns->set_isolated(ns_config->isolated());
3701 ns->set_default_library_paths(ns_config->search_paths());
3702 ns->set_permitted_paths(ns_config->permitted_paths());
3703 ns->set_allowed_libs(ns_config->allowed_libs());
3704
3705 namespaces[ns_config->name()] = ns;
3706 if (ns_config->visible()) {
3707 g_exported_namespaces[ns_config->name()] = ns;
3708 }
3709 }
3710
3711 // 3. Establish links between namespaces
3712 for (auto& ns_config : namespace_configs) {
3713 auto it_from = namespaces.find(ns_config->name());
3714 CHECK(it_from != namespaces.end());
3715 android_namespace_t* namespace_from = it_from->second;
3716 for (const NamespaceLinkConfig& ns_link : ns_config->links()) {
3717 auto it_to = namespaces.find(ns_link.ns_name());
3718 CHECK(it_to != namespaces.end());
3719 android_namespace_t* namespace_to = it_to->second;
3720 if (ns_link.allow_all_shared_libs()) {
3721 link_namespaces_all_libs(namespace_from, namespace_to);
3722 } else {
3723 link_namespaces(namespace_from, namespace_to, ns_link.shared_libs().c_str());
3724 }
3725 }
3726 }
3727 // we can no longer rely on the fact that libdl.so is part of default namespace
3728 // this is why we want to add ld-android.so to all namespaces from ld.config.txt
3729 soinfo* ld_android_so = solist_get_head();
3730
3731 // we also need vdso to be available for all namespaces (if present)
3732 soinfo* vdso = solist_get_vdso();
3733 for (auto it : namespaces) {
3734 if (it.second != &g_default_namespace) {
3735 it.second->add_soinfo(ld_android_so);
3736 if (vdso != nullptr) {
3737 it.second->add_soinfo(vdso);
3738 }
3739 // somain and ld_preloads are added to these namespaces after LD_PRELOAD libs are linked
3740 }
3741 }
3742
3743 set_application_target_sdk_version(config->target_sdk_version());
3744
3745 std::vector<android_namespace_t*> created_namespaces;
3746 created_namespaces.reserve(namespaces.size());
3747 for (const auto& kv : namespaces) {
3748 created_namespaces.push_back(kv.second);
3749 }
3750 return created_namespaces;
3751 }
3752
3753 // This function finds a namespace exported in ld.config.txt by its name.
3754 // A namespace can be exported by setting .visible property to true.
get_exported_namespace(const char * name)3755 android_namespace_t* get_exported_namespace(const char* name) {
3756 if (name == nullptr) {
3757 return nullptr;
3758 }
3759 auto it = g_exported_namespaces.find(std::string(name));
3760 if (it == g_exported_namespaces.end()) {
3761 return nullptr;
3762 }
3763 return it->second;
3764 }
3765
purge_unused_memory()3766 void purge_unused_memory() {
3767 // For now, we only purge the memory used by LoadTask because we know those
3768 // are temporary objects.
3769 //
3770 // Purging other LinkerBlockAllocator hardly yields much because they hold
3771 // information about namespaces and opened libraries, which are not freed
3772 // when the control leaves the linker.
3773 //
3774 // Purging BionicAllocator may give us a few dirty pages back, but those pages
3775 // would be already zeroed out, so they compress easily in ZRAM. Therefore,
3776 // it is not worth munmap()'ing those pages.
3777 TypeBasedAllocator<LoadTask>::purge();
3778 }
3779