Add a function "android_dlopen_ext()", defined in <android/dlext.h>. This is an extended version of dlopen() which takes a struct for passing additional parameters for Android-specific functionality. This will be used to support RELRO section sharing between separate processes. Bug: 13005501 Change-Id: I9c99b2f2a02ee329dedaeba09ef3a1113b17b2d6
		
			
				
	
	
		
			303 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			303 lines
		
	
	
		
			9.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 * Copyright (C) 2007 The Android Open Source Project
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 *
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 * Licensed under the Apache License, Version 2.0 (the "License");
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 * you may not use this file except in compliance with the License.
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 * You may obtain a copy of the License at
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 *
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 *      http://www.apache.org/licenses/LICENSE-2.0
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 *
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 * Unless required by applicable law or agreed to in writing, software
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 * distributed under the License is distributed on an "AS IS" BASIS,
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 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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 * See the License for the specific language governing permissions and
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 * limitations under the License.
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 */
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#include "linker.h"
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#include <dlfcn.h>
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#include <pthread.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <android/dlext.h>
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#include <bionic/pthread_internal.h>
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#include "private/bionic_tls.h"
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#include "private/ScopedPthreadMutexLocker.h"
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#include "private/ThreadLocalBuffer.h"
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/* This file hijacks the symbols stubbed out in libdl.so. */
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static pthread_mutex_t gDlMutex = PTHREAD_RECURSIVE_MUTEX_INITIALIZER;
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static const char* __bionic_set_dlerror(char* new_value) {
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  char** dlerror_slot = &reinterpret_cast<char**>(__get_tls())[TLS_SLOT_DLERROR];
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  const char* old_value = *dlerror_slot;
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  *dlerror_slot = new_value;
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  return old_value;
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}
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static void __bionic_format_dlerror(const char* msg, const char* detail) {
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  char* buffer = __get_thread()->dlerror_buffer;
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  strlcpy(buffer, msg, __BIONIC_DLERROR_BUFFER_SIZE);
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  if (detail != NULL) {
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    strlcat(buffer, ": ", __BIONIC_DLERROR_BUFFER_SIZE);
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    strlcat(buffer, detail, __BIONIC_DLERROR_BUFFER_SIZE);
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  }
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  __bionic_set_dlerror(buffer);
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}
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const char* dlerror() {
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  const char* old_value = __bionic_set_dlerror(NULL);
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  return old_value;
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}
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void android_get_LD_LIBRARY_PATH(char* buffer, size_t buffer_size) {
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  do_android_get_LD_LIBRARY_PATH(buffer, buffer_size);
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}
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void android_update_LD_LIBRARY_PATH(const char* ld_library_path) {
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  do_android_update_LD_LIBRARY_PATH(ld_library_path);
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}
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void* android_dlopen_ext(const char* filename, int flags, const android_dlextinfo* extinfo)
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{
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  soinfo* result = do_dlopen(filename, flags, extinfo);
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  if (result == NULL) {
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    __bionic_format_dlerror("dlopen failed", linker_get_error_buffer());
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    return NULL;
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  }
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  return result;
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}
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void* dlopen(const char* filename, int flags) {
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  return android_dlopen_ext(filename, flags, NULL);
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}
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void* dlsym(void* handle, const char* symbol) {
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  if (handle == NULL) {
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    __bionic_format_dlerror("dlsym library handle is null", NULL);
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    return NULL;
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  }
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  if (symbol == NULL) {
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    __bionic_format_dlerror("dlsym symbol name is null", NULL);
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    return NULL;
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  }
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  soinfo* found = NULL;
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  ElfW(Sym)* sym = NULL;
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  if (handle == RTLD_DEFAULT) {
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    sym = dlsym_linear_lookup(symbol, &found, NULL);
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  } else if (handle == RTLD_NEXT) {
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    void* ret_addr = __builtin_return_address(0);
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    soinfo* si = find_containing_library(ret_addr);
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    sym = NULL;
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    if (si && si->next) {
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      sym = dlsym_linear_lookup(symbol, &found, si->next);
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    }
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  } else {
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    found = reinterpret_cast<soinfo*>(handle);
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    sym = dlsym_handle_lookup(found, symbol);
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  }
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  if (sym != NULL) {
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    unsigned bind = ELF_ST_BIND(sym->st_info);
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    if (bind == STB_GLOBAL && sym->st_shndx != 0) {
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      return reinterpret_cast<void*>(sym->st_value + found->load_bias);
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    }
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    __bionic_format_dlerror("symbol found but not global", symbol);
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    return NULL;
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  } else {
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    __bionic_format_dlerror("undefined symbol", symbol);
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    return NULL;
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  }
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}
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int dladdr(const void* addr, Dl_info* info) {
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  // Determine if this address can be found in any library currently mapped.
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  soinfo* si = find_containing_library(addr);
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  if (si == NULL) {
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    return 0;
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  }
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  memset(info, 0, sizeof(Dl_info));
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  info->dli_fname = si->name;
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  // Address at which the shared object is loaded.
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  info->dli_fbase = reinterpret_cast<void*>(si->base);
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  // Determine if any symbol in the library contains the specified address.
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  ElfW(Sym)* sym = dladdr_find_symbol(si, addr);
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  if (sym != NULL) {
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    info->dli_sname = si->strtab + sym->st_name;
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    info->dli_saddr = reinterpret_cast<void*>(si->load_bias + sym->st_value);
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  }
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  return 1;
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}
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int dlclose(void* handle) {
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  ScopedPthreadMutexLocker locker(&gDlMutex);
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  return do_dlclose(reinterpret_cast<soinfo*>(handle));
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}
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// name_offset: starting index of the name in libdl_info.strtab
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#define ELF32_SYM_INITIALIZER(name_offset, value, shndx) \
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    { name_offset, \
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      reinterpret_cast<Elf32_Addr>(reinterpret_cast<void*>(value)), \
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      /* st_size */ 0, \
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      (shndx == 0) ? 0 : (STB_GLOBAL << 4), \
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      /* st_other */ 0, \
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      shndx, \
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    }
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#define ELF64_SYM_INITIALIZER(name_offset, value, shndx) \
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    { name_offset, \
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      (shndx == 0) ? 0 : (STB_GLOBAL << 4), \
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      /* st_other */ 0, \
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      shndx, \
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      reinterpret_cast<Elf64_Addr>(reinterpret_cast<void*>(value)), \
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      /* st_size */ 0, \
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    }
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#if defined(__arm__)
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  // 0000000 00011111 111112 22222222 2333333 3333444444444455555555556666666 6667777777777888888888899999 9999900000000001 1111111112222222222 333333333344444444445
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  // 0123456 78901234 567890 12345678 9012345 6789012345678901234567890123456 7890123456789012345678901234 5678901234567890 1234567890123456789 012345678901234567890
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#  define ANDROID_LIBDL_STRTAB \
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    "dlopen\0dlclose\0dlsym\0dlerror\0dladdr\0android_update_LD_LIBRARY_PATH\0android_get_LD_LIBRARY_PATH\0dl_iterate_phdr\0android_dlopen_ext\0dl_unwind_find_exidx\0"
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#elif defined(__aarch64__) || defined(__i386__) || defined(__mips__) || defined(__x86_64__)
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  // 0000000 00011111 111112 22222222 2333333 3333444444444455555555556666666 6667777777777888888888899999 9999900000000001 1111111112222222222
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  // 0123456 78901234 567890 12345678 9012345 6789012345678901234567890123456 7890123456789012345678901234 5678901234567890 1234567890123456789
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#  define ANDROID_LIBDL_STRTAB \
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    "dlopen\0dlclose\0dlsym\0dlerror\0dladdr\0android_update_LD_LIBRARY_PATH\0android_get_LD_LIBRARY_PATH\0dl_iterate_phdr\0android_dlopen_ext\0"
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#else
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#  error Unsupported architecture. Only arm, arm64, mips, mips64, x86 and x86_64 are presently supported.
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#endif
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static ElfW(Sym) gLibDlSymtab[] = {
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  // Total length of libdl_info.strtab, including trailing 0.
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  // This is actually the STH_UNDEF entry. Technically, it's
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  // supposed to have st_name == 0, but instead, it points to an index
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  // in the strtab with a \0 to make iterating through the symtab easier.
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  ELFW(SYM_INITIALIZER)(sizeof(ANDROID_LIBDL_STRTAB) - 1, NULL, 0),
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  ELFW(SYM_INITIALIZER)(  0, &dlopen, 1),
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  ELFW(SYM_INITIALIZER)(  7, &dlclose, 1),
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  ELFW(SYM_INITIALIZER)( 15, &dlsym, 1),
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  ELFW(SYM_INITIALIZER)( 21, &dlerror, 1),
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  ELFW(SYM_INITIALIZER)( 29, &dladdr, 1),
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  ELFW(SYM_INITIALIZER)( 36, &android_update_LD_LIBRARY_PATH, 1),
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  ELFW(SYM_INITIALIZER)( 67, &android_get_LD_LIBRARY_PATH, 1),
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  ELFW(SYM_INITIALIZER)( 95, &dl_iterate_phdr, 1),
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  ELFW(SYM_INITIALIZER)(111, &android_dlopen_ext, 1),
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#if defined(__arm__)
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  ELFW(SYM_INITIALIZER)(130, &dl_unwind_find_exidx, 1),
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#endif
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};
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// Fake out a hash table with a single bucket.
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//
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// A search of the hash table will look through gLibDlSymtab starting with index 1, then
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// use gLibDlChains to find the next index to look at. gLibDlChains should be set up to
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// walk through every element in gLibDlSymtab, and then end with 0 (sentinel value).
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//
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// That is, gLibDlChains should look like { 0, 2, 3, ... N, 0 } where N is the number
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// of actual symbols, or nelems(gLibDlSymtab)-1 (since the first element of gLibDlSymtab is not
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// a real symbol). (See soinfo_elf_lookup().)
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//
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// Note that adding any new symbols here requires stubbing them out in libdl.
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static unsigned gLibDlBuckets[1] = { 1 };
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#if defined(__arm__)
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static unsigned gLibDlChains[] = { 0, 2, 3, 4, 5, 6, 7, 8, 9, 10, 0 };
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#else
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static unsigned gLibDlChains[] = { 0, 2, 3, 4, 5, 6, 7, 8, 9, 0 };
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#endif
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// This is used by the dynamic linker. Every process gets these symbols for free.
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soinfo libdl_info = {
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    "libdl.so",
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    .phdr = 0,
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    .phnum = 0,
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    .entry = 0,
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    .base = 0,
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    .size = 0,
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#if !defined(__LP64__)
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    .unused1 = 0,
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#endif
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    .dynamic = 0,
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#if !defined(__LP64__)
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    .unused2 = 0, .unused3 = 0,
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#endif
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    .next = 0,
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    .flags = FLAG_LINKED,
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    .strtab = ANDROID_LIBDL_STRTAB,
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    .symtab = gLibDlSymtab,
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    .nbucket = sizeof(gLibDlBuckets)/sizeof(unsigned),
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    .nchain = sizeof(gLibDlChains)/sizeof(unsigned),
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    .bucket = gLibDlBuckets,
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    .chain = gLibDlChains,
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#if defined(USE_RELA)
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    .plt_rela = 0,
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    .plt_rela_count = 0,
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    .rela = 0,
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    .rela_count = 0,
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#else
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    .plt_got = 0,
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    .plt_rel = 0,
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    .plt_rel_count = 0,
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    .rel = 0,
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    .rel_count = 0,
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#endif
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    .preinit_array = 0,
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    .preinit_array_count = 0,
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    .init_array = 0,
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    .init_array_count = 0,
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    .fini_array = 0,
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    .fini_array_count = 0,
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    .init_func = 0,
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    .fini_func = 0,
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#if defined(__arm__)
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    .ARM_exidx = 0,
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    .ARM_exidx_count = 0,
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#elif defined(__mips__)
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    .mips_symtabno = 0,
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    .mips_local_gotno = 0,
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    .mips_gotsym = 0,
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#endif
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    .ref_count = 0,
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    { .l_addr = 0, .l_name = 0, .l_ld = 0, .l_next = 0, .l_prev = 0, },
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    .constructors_called = false,
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    .load_bias = 0,
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#if !defined(__LP64__)
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    .has_text_relocations = false,
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#endif
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    .has_DT_SYMBOLIC = true,
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};
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