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1 /*
2  * Copyright (C) 2016 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 "linker_main.h"
30 
31 #include "linker_debug.h"
32 #include "linker_cfi.h"
33 #include "linker_gdb_support.h"
34 #include "linker_globals.h"
35 #include "linker_phdr.h"
36 #include "linker_utils.h"
37 
38 #include "private/bionic_globals.h"
39 #include "private/bionic_tls.h"
40 #include "private/KernelArgumentBlock.h"
41 
42 #include "android-base/strings.h"
43 #include "android-base/stringprintf.h"
44 #ifdef __ANDROID__
45 #include "debuggerd/handler.h"
46 #endif
47 
48 #include <async_safe/log.h>
49 
50 #include <vector>
51 
52 extern void __libc_init_globals(KernelArgumentBlock&);
53 extern void __libc_init_AT_SECURE(KernelArgumentBlock&);
54 
55 extern "C" void _start();
56 
57 static ElfW(Addr) get_elf_exec_load_bias(const ElfW(Ehdr)* elf);
58 
59 // These should be preserved static to avoid emitting
60 // RELATIVE relocations for the part of the code running
61 // before linker links itself.
62 
63 // TODO (dimtiry): remove somain, rename solist to solist_head
64 static soinfo* solist;
65 static soinfo* sonext;
66 static soinfo* somain; // main process, always the one after libdl_info
67 static soinfo* vdso; // vdso if present
68 
solist_add_soinfo(soinfo * si)69 void solist_add_soinfo(soinfo* si) {
70   sonext->next = si;
71   sonext = si;
72 }
73 
solist_remove_soinfo(soinfo * si)74 bool solist_remove_soinfo(soinfo* si) {
75   soinfo *prev = nullptr, *trav;
76   for (trav = solist; trav != nullptr; trav = trav->next) {
77     if (trav == si) {
78       break;
79     }
80     prev = trav;
81   }
82 
83   if (trav == nullptr) {
84     // si was not in solist
85     PRINT("name \"%s\"@%p is not in solist!", si->get_realpath(), si);
86     return false;
87   }
88 
89   // prev will never be null, because the first entry in solist is
90   // always the static libdl_info.
91   CHECK(prev != nullptr);
92   prev->next = si->next;
93   if (si == sonext) {
94     sonext = prev;
95   }
96 
97   return true;
98 }
99 
solist_get_head()100 soinfo* solist_get_head() {
101   return solist;
102 }
103 
solist_get_somain()104 soinfo* solist_get_somain() {
105   return somain;
106 }
107 
solist_get_vdso()108 soinfo* solist_get_vdso() {
109   return vdso;
110 }
111 
112 int g_ld_debug_verbosity;
113 abort_msg_t* g_abort_message = nullptr; // For debuggerd.
114 
115 static std::vector<std::string> g_ld_preload_names;
116 
117 static std::vector<soinfo*> g_ld_preloads;
118 
parse_path(const char * path,const char * delimiters,std::vector<std::string> * resolved_paths)119 static void parse_path(const char* path, const char* delimiters,
120                        std::vector<std::string>* resolved_paths) {
121   std::vector<std::string> paths;
122   split_path(path, delimiters, &paths);
123   resolve_paths(paths, resolved_paths);
124 }
125 
parse_LD_LIBRARY_PATH(const char * path)126 static void parse_LD_LIBRARY_PATH(const char* path) {
127   std::vector<std::string> ld_libary_paths;
128   parse_path(path, ":", &ld_libary_paths);
129   g_default_namespace.set_ld_library_paths(std::move(ld_libary_paths));
130 }
131 
parse_LD_PRELOAD(const char * path)132 static void parse_LD_PRELOAD(const char* path) {
133   g_ld_preload_names.clear();
134   if (path != nullptr) {
135     // We have historically supported ':' as well as ' ' in LD_PRELOAD.
136     g_ld_preload_names = android::base::Split(path, " :");
137     g_ld_preload_names.erase(std::remove_if(g_ld_preload_names.begin(), g_ld_preload_names.end(),
138                                             [](const std::string& s) { return s.empty(); }),
139                              g_ld_preload_names.end());
140   }
141 }
142 
143 // An empty list of soinfos
144 static soinfo_list_t g_empty_list;
145 
add_vdso(KernelArgumentBlock & args)146 static void add_vdso(KernelArgumentBlock& args) {
147   ElfW(Ehdr)* ehdr_vdso = reinterpret_cast<ElfW(Ehdr)*>(args.getauxval(AT_SYSINFO_EHDR));
148   if (ehdr_vdso == nullptr) {
149     return;
150   }
151 
152   soinfo* si = soinfo_alloc(&g_default_namespace, "[vdso]", nullptr, 0, 0);
153 
154   si->phdr = reinterpret_cast<ElfW(Phdr)*>(reinterpret_cast<char*>(ehdr_vdso) + ehdr_vdso->e_phoff);
155   si->phnum = ehdr_vdso->e_phnum;
156   si->base = reinterpret_cast<ElfW(Addr)>(ehdr_vdso);
157   si->size = phdr_table_get_load_size(si->phdr, si->phnum);
158   si->load_bias = get_elf_exec_load_bias(ehdr_vdso);
159 
160   si->prelink_image();
161   si->link_image(g_empty_list, soinfo_list_t::make_list(si), nullptr);
162   // prevents accidental unloads...
163   si->set_dt_flags_1(si->get_dt_flags_1() | DF_1_NODELETE);
164   si->set_linked();
165   si->call_constructors();
166 
167   vdso = si;
168 }
169 
170 /* gdb expects the linker to be in the debug shared object list.
171  * Without this, gdb has trouble locating the linker's ".text"
172  * and ".plt" sections. Gdb could also potentially use this to
173  * relocate the offset of our exported 'rtld_db_dlactivity' symbol.
174  * Note that the linker shouldn't be on the soinfo list.
175  */
176 static link_map linker_link_map;
177 
init_linker_info_for_gdb(ElfW (Addr)linker_base,char * linker_path)178 static void init_linker_info_for_gdb(ElfW(Addr) linker_base, char* linker_path) {
179   linker_link_map.l_addr = linker_base;
180   linker_link_map.l_name = linker_path;
181 
182   /*
183    * Set the dynamic field in the link map otherwise gdb will complain with
184    * the following:
185    *   warning: .dynamic section for "/system/bin/linker" is not at the
186    *   expected address (wrong library or version mismatch?)
187    */
188   ElfW(Ehdr)* elf_hdr = reinterpret_cast<ElfW(Ehdr)*>(linker_base);
189   ElfW(Phdr)* phdr = reinterpret_cast<ElfW(Phdr)*>(linker_base + elf_hdr->e_phoff);
190   phdr_table_get_dynamic_section(phdr, elf_hdr->e_phnum, linker_base,
191                                  &linker_link_map.l_ld, nullptr);
192 
193 }
194 
195 extern "C" int __system_properties_init(void);
196 
get_executable_path()197 static const char* get_executable_path() {
198   static std::string executable_path;
199   if (executable_path.empty()) {
200     char path[PATH_MAX];
201     ssize_t path_len = readlink("/proc/self/exe", path, sizeof(path));
202     if (path_len == -1 || path_len >= static_cast<ssize_t>(sizeof(path))) {
203       async_safe_fatal("readlink('/proc/self/exe') failed: %s", strerror(errno));
204     }
205     executable_path = std::string(path, path_len);
206   }
207 
208   return executable_path.c_str();
209 }
210 
211 #if defined(__LP64__)
212 static char kLinkerPath[] = "/system/bin/linker64";
213 #else
214 static char kLinkerPath[] = "/system/bin/linker";
215 #endif
216 
__linker_cannot_link(const char * argv0)217 static void __linker_cannot_link(const char* argv0) {
218   async_safe_format_fd(STDERR_FILENO,
219                        "CANNOT LINK EXECUTABLE \"%s\": %s\n",
220                        argv0,
221                        linker_get_error_buffer());
222 
223   async_safe_format_log(ANDROID_LOG_FATAL,
224                         "linker",
225                         "CANNOT LINK EXECUTABLE \"%s\": %s",
226                         argv0,
227                         linker_get_error_buffer());
228   _exit(EXIT_FAILURE);
229 }
230 
231 /*
232  * This code is called after the linker has linked itself and
233  * fixed it's own GOT. It is safe to make references to externs
234  * and other non-local data at this point.
235  */
__linker_init_post_relocation(KernelArgumentBlock & args)236 static ElfW(Addr) __linker_init_post_relocation(KernelArgumentBlock& args) {
237   ProtectedDataGuard guard;
238 
239 #if TIMING
240   struct timeval t0, t1;
241   gettimeofday(&t0, 0);
242 #endif
243 
244   // Sanitize the environment.
245   __libc_init_AT_SECURE(args);
246 
247   // Initialize system properties
248   __system_properties_init(); // may use 'environ'
249 
250   // Register the debuggerd signal handler.
251 #ifdef __ANDROID__
252   debuggerd_callbacks_t callbacks = {
253     .get_abort_message = []() {
254       return g_abort_message;
255     },
256     .post_dump = &notify_gdb_of_libraries,
257   };
258   debuggerd_init(&callbacks);
259 #endif
260 
261   g_linker_logger.ResetState();
262 
263   // Get a few environment variables.
264   const char* LD_DEBUG = getenv("LD_DEBUG");
265   if (LD_DEBUG != nullptr) {
266     g_ld_debug_verbosity = atoi(LD_DEBUG);
267   }
268 
269 #if defined(__LP64__)
270   INFO("[ Android dynamic linker (64-bit) ]");
271 #else
272   INFO("[ Android dynamic linker (32-bit) ]");
273 #endif
274 
275   // These should have been sanitized by __libc_init_AT_SECURE, but the test
276   // doesn't cost us anything.
277   const char* ldpath_env = nullptr;
278   const char* ldpreload_env = nullptr;
279   if (!getauxval(AT_SECURE)) {
280     ldpath_env = getenv("LD_LIBRARY_PATH");
281     if (ldpath_env != nullptr) {
282       INFO("[ LD_LIBRARY_PATH set to \"%s\" ]", ldpath_env);
283     }
284     ldpreload_env = getenv("LD_PRELOAD");
285     if (ldpreload_env != nullptr) {
286       INFO("[ LD_PRELOAD set to \"%s\" ]", ldpreload_env);
287     }
288   }
289 
290   add_vdso(args);
291 
292   struct stat file_stat;
293   // Stat "/proc/self/exe" instead of executable_path because
294   // the executable could be unlinked by this point and it should
295   // not cause a crash (see http://b/31084669)
296   if (TEMP_FAILURE_RETRY(stat("/proc/self/exe", &file_stat)) != 0) {
297     async_safe_fatal("unable to stat \"/proc/self/exe\": %s", strerror(errno));
298   }
299 
300   const char* executable_path = get_executable_path();
301   soinfo* si = soinfo_alloc(&g_default_namespace, executable_path, &file_stat, 0, RTLD_GLOBAL);
302 
303   // Bootstrap the link map, the main exe always needs to be first.
304   si->set_main_executable();
305   link_map* map = &(si->link_map_head);
306 
307   // Register the main executable and the linker upfront to have
308   // gdb aware of them before loading the rest of the dependency
309   // tree.
310   map->l_addr = 0;
311   map->l_name = const_cast<char*>(executable_path);
312   insert_link_map_into_debug_map(map);
313   insert_link_map_into_debug_map(&linker_link_map);
314 
315   // Extract information passed from the kernel.
316   si->phdr = reinterpret_cast<ElfW(Phdr)*>(args.getauxval(AT_PHDR));
317   si->phnum = args.getauxval(AT_PHNUM);
318 
319   /* Compute the value of si->base. We can't rely on the fact that
320    * the first entry is the PHDR because this will not be true
321    * for certain executables (e.g. some in the NDK unit test suite)
322    */
323   si->base = 0;
324   si->size = phdr_table_get_load_size(si->phdr, si->phnum);
325   si->load_bias = 0;
326   for (size_t i = 0; i < si->phnum; ++i) {
327     if (si->phdr[i].p_type == PT_PHDR) {
328       si->load_bias = reinterpret_cast<ElfW(Addr)>(si->phdr) - si->phdr[i].p_vaddr;
329       si->base = reinterpret_cast<ElfW(Addr)>(si->phdr) - si->phdr[i].p_offset;
330       break;
331     }
332   }
333 
334   if (si->base == 0) {
335     async_safe_fatal("Could not find a PHDR: broken executable?");
336   }
337 
338   si->dynamic = nullptr;
339 
340   ElfW(Ehdr)* elf_hdr = reinterpret_cast<ElfW(Ehdr)*>(si->base);
341 
342   // We haven't supported non-PIE since Lollipop for security reasons.
343   if (elf_hdr->e_type != ET_DYN) {
344     // We don't use async_safe_fatal here because we don't want a tombstone:
345     // even after several years we still find ourselves on app compatibility
346     // investigations because some app's trying to launch an executable that
347     // hasn't worked in at least three years, and we've "helpfully" dropped a
348     // tombstone for them. The tombstone never provided any detail relevant to
349     // fixing the problem anyway, and the utility of drawing extra attention
350     // to the problem is non-existent at this late date.
351     async_safe_format_fd(STDERR_FILENO,
352                          "\"%s\": error: Android 5.0 and later only support "
353                          "position-independent executables (-fPIE).\n",
354                          g_argv[0]);
355     exit(EXIT_FAILURE);
356   }
357 
358   // Use LD_LIBRARY_PATH and LD_PRELOAD (but only if we aren't setuid/setgid).
359   parse_LD_LIBRARY_PATH(ldpath_env);
360   parse_LD_PRELOAD(ldpreload_env);
361 
362   somain = si;
363 
364   std::vector<android_namespace_t*> namespaces = init_default_namespaces(executable_path);
365 
366   if (!si->prelink_image()) __linker_cannot_link(g_argv[0]);
367 
368   // add somain to global group
369   si->set_dt_flags_1(si->get_dt_flags_1() | DF_1_GLOBAL);
370   // ... and add it to all other linked namespaces
371   for (auto linked_ns : namespaces) {
372     if (linked_ns != &g_default_namespace) {
373       linked_ns->add_soinfo(somain);
374       somain->add_secondary_namespace(linked_ns);
375     }
376   }
377 
378   // Load ld_preloads and dependencies.
379   std::vector<const char*> needed_library_name_list;
380   size_t ld_preloads_count = 0;
381 
382   for (const auto& ld_preload_name : g_ld_preload_names) {
383     needed_library_name_list.push_back(ld_preload_name.c_str());
384     ++ld_preloads_count;
385   }
386 
387   for_each_dt_needed(si, [&](const char* name) {
388     needed_library_name_list.push_back(name);
389   });
390 
391   const char** needed_library_names = &needed_library_name_list[0];
392   size_t needed_libraries_count = needed_library_name_list.size();
393 
394   if (needed_libraries_count > 0 &&
395       !find_libraries(&g_default_namespace,
396                       si,
397                       needed_library_names,
398                       needed_libraries_count,
399                       nullptr,
400                       &g_ld_preloads,
401                       ld_preloads_count,
402                       RTLD_GLOBAL,
403                       nullptr,
404                       true /* add_as_children */,
405                       true /* search_linked_namespaces */,
406                       &namespaces)) {
407     __linker_cannot_link(g_argv[0]);
408   } else if (needed_libraries_count == 0) {
409     if (!si->link_image(g_empty_list, soinfo_list_t::make_list(si), nullptr)) {
410       __linker_cannot_link(g_argv[0]);
411     }
412     si->increment_ref_count();
413   }
414 
415   if (!get_cfi_shadow()->InitialLinkDone(solist)) __linker_cannot_link(g_argv[0]);
416 
417   si->call_pre_init_constructors();
418 
419   /* After the prelink_image, the si->load_bias is initialized.
420    * For so lib, the map->l_addr will be updated in notify_gdb_of_load.
421    * We need to update this value for so exe here. So Unwind_Backtrace
422    * for some arch like x86 could work correctly within so exe.
423    */
424   map->l_addr = si->load_bias;
425   si->call_constructors();
426 
427 #if TIMING
428   gettimeofday(&t1, nullptr);
429   PRINT("LINKER TIME: %s: %d microseconds", g_argv[0], (int) (
430            (((long long)t1.tv_sec * 1000000LL) + (long long)t1.tv_usec) -
431            (((long long)t0.tv_sec * 1000000LL) + (long long)t0.tv_usec)));
432 #endif
433 #if STATS
434   PRINT("RELO STATS: %s: %d abs, %d rel, %d copy, %d symbol", g_argv[0],
435          linker_stats.count[kRelocAbsolute],
436          linker_stats.count[kRelocRelative],
437          linker_stats.count[kRelocCopy],
438          linker_stats.count[kRelocSymbol]);
439 #endif
440 #if COUNT_PAGES
441   {
442     unsigned n;
443     unsigned i;
444     unsigned count = 0;
445     for (n = 0; n < 4096; n++) {
446       if (bitmask[n]) {
447         unsigned x = bitmask[n];
448 #if defined(__LP64__)
449         for (i = 0; i < 32; i++) {
450 #else
451         for (i = 0; i < 8; i++) {
452 #endif
453           if (x & 1) {
454             count++;
455           }
456           x >>= 1;
457         }
458       }
459     }
460     PRINT("PAGES MODIFIED: %s: %d (%dKB)", g_argv[0], count, count * 4);
461   }
462 #endif
463 
464 #if TIMING || STATS || COUNT_PAGES
465   fflush(stdout);
466 #endif
467 
468   ElfW(Addr) entry = args.getauxval(AT_ENTRY);
469   TRACE("[ Ready to execute \"%s\" @ %p ]", si->get_realpath(), reinterpret_cast<void*>(entry));
470   return entry;
471 }
472 
473 /* Compute the load-bias of an existing executable. This shall only
474  * be used to compute the load bias of an executable or shared library
475  * that was loaded by the kernel itself.
476  *
477  * Input:
478  *    elf    -> address of ELF header, assumed to be at the start of the file.
479  * Return:
480  *    load bias, i.e. add the value of any p_vaddr in the file to get
481  *    the corresponding address in memory.
482  */
483 static ElfW(Addr) get_elf_exec_load_bias(const ElfW(Ehdr)* elf) {
484   ElfW(Addr) offset = elf->e_phoff;
485   const ElfW(Phdr)* phdr_table =
486       reinterpret_cast<const ElfW(Phdr)*>(reinterpret_cast<uintptr_t>(elf) + offset);
487   const ElfW(Phdr)* phdr_end = phdr_table + elf->e_phnum;
488 
489   for (const ElfW(Phdr)* phdr = phdr_table; phdr < phdr_end; phdr++) {
490     if (phdr->p_type == PT_LOAD) {
491       return reinterpret_cast<ElfW(Addr)>(elf) + phdr->p_offset - phdr->p_vaddr;
492     }
493   }
494   return 0;
495 }
496 
497 /*
498  * This is the entry point for the linker, called from begin.S. This
499  * method is responsible for fixing the linker's own relocations, and
500  * then calling __linker_init_post_relocation().
501  *
502  * Because this method is called before the linker has fixed it's own
503  * relocations, any attempt to reference an extern variable, extern
504  * function, or other GOT reference will generate a segfault.
505  */
506 extern "C" ElfW(Addr) __linker_init(void* raw_args) {
507   KernelArgumentBlock args(raw_args);
508 
509   // AT_BASE is set to 0 in the case when linker is run by iself
510   // so in order to link the linker it needs to calcuate AT_BASE
511   // using information at hand. The trick below takes advantage
512   // of the fact that the value of linktime_addr before relocations
513   // are run is an offset and this can be used to calculate AT_BASE.
514   static uintptr_t linktime_addr = reinterpret_cast<uintptr_t>(&linktime_addr);
515   ElfW(Addr) linker_addr = reinterpret_cast<uintptr_t>(&linktime_addr) - linktime_addr;
516 
517 #if defined(__clang_analyzer__)
518   // The analyzer assumes that linker_addr will always be null. Make it an
519   // unknown value so we don't have to mark N places with NOLINTs.
520   //
521   // (`+=`, rather than `=`, allows us to sidestep a potential "unused store"
522   // complaint)
523   linker_addr += reinterpret_cast<uintptr_t>(raw_args);
524 #endif
525 
526   ElfW(Addr) entry_point = args.getauxval(AT_ENTRY);
527   ElfW(Ehdr)* elf_hdr = reinterpret_cast<ElfW(Ehdr)*>(linker_addr);
528   ElfW(Phdr)* phdr = reinterpret_cast<ElfW(Phdr)*>(linker_addr + elf_hdr->e_phoff);
529 
530   soinfo linker_so(nullptr, nullptr, nullptr, 0, 0);
531 
532   linker_so.base = linker_addr;
533   linker_so.size = phdr_table_get_load_size(phdr, elf_hdr->e_phnum);
534   linker_so.load_bias = get_elf_exec_load_bias(elf_hdr);
535   linker_so.dynamic = nullptr;
536   linker_so.phdr = phdr;
537   linker_so.phnum = elf_hdr->e_phnum;
538   linker_so.set_linker_flag();
539 
540   // Prelink the linker so we can access linker globals.
541   if (!linker_so.prelink_image()) __linker_cannot_link(args.argv[0]);
542 
543   // This might not be obvious... The reasons why we pass g_empty_list
544   // in place of local_group here are (1) we do not really need it, because
545   // linker is built with DT_SYMBOLIC and therefore relocates its symbols against
546   // itself without having to look into local_group and (2) allocators
547   // are not yet initialized, and therefore we cannot use linked_list.push_*
548   // functions at this point.
549   if (!linker_so.link_image(g_empty_list, g_empty_list, nullptr)) __linker_cannot_link(args.argv[0]);
550 
551 #if defined(__i386__)
552   // On x86, we can't make system calls before this point.
553   // We can't move this up because this needs to assign to a global.
554   // Note that until we call __libc_init_main_thread below we have
555   // no TLS, so you shouldn't make a system call that can fail, because
556   // it will SEGV when it tries to set errno.
557   __libc_init_sysinfo(args);
558 #endif
559 
560   // Initialize the main thread (including TLS, so system calls really work).
561   __libc_init_main_thread(args);
562 
563   // We didn't protect the linker's RELRO pages in link_image because we
564   // couldn't make system calls on x86 at that point, but we can now...
565   if (!linker_so.protect_relro()) __linker_cannot_link(args.argv[0]);
566 
567   // Initialize the linker's static libc's globals
568   __libc_init_globals(args);
569 
570   // store argc/argv/envp to use them for calling constructors
571   g_argc = args.argc;
572   g_argv = args.argv;
573   g_envp = args.envp;
574 
575   // Initialize the linker's own global variables
576   linker_so.call_constructors();
577 
578   // If the linker is not acting as PT_INTERP entry_point is equal to
579   // _start. Which means that the linker is running as an executable and
580   // already linked by PT_INTERP.
581   //
582   // This happens when user tries to run 'adb shell /system/bin/linker'
583   // see also https://code.google.com/p/android/issues/detail?id=63174
584   if (reinterpret_cast<ElfW(Addr)>(&_start) == entry_point) {
585     async_safe_format_fd(STDOUT_FILENO,
586                      "This is %s, the helper program for dynamic executables.\n",
587                      args.argv[0]);
588     exit(0);
589   }
590 
591   init_linker_info_for_gdb(linker_addr, kLinkerPath);
592 
593   // Initialize static variables. Note that in order to
594   // get correct libdl_info we need to call constructors
595   // before get_libdl_info().
596   sonext = solist = get_libdl_info(kLinkerPath, linker_so, linker_link_map);
597   g_default_namespace.add_soinfo(solist);
598 
599   // We have successfully fixed our own relocations. It's safe to run
600   // the main part of the linker now.
601   args.abort_message_ptr = &g_abort_message;
602   ElfW(Addr) start_address = __linker_init_post_relocation(args);
603 
604   INFO("[ Jumping to _start (%p)... ]", reinterpret_cast<void*>(start_address));
605 
606   // Return the address that the calling assembly stub should jump to.
607   return start_address;
608 }
609