| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 1 | /* | 
|  | 2 | * Copyright (C) 2019 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 "private/bionic_elf_tls.h" | 
|  | 30 |  | 
| Vy Nguyen | d500751 | 2020-07-14 17:37:04 -0400 | [diff] [blame] | 31 | #include <async_safe/CHECK.h> | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 32 | #include <async_safe/log.h> | 
| Ryan Prichard | 361c1b4 | 2019-01-15 13:45:27 -0800 | [diff] [blame] | 33 | #include <string.h> | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 34 | #include <sys/param.h> | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 35 | #include <unistd.h> | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 36 |  | 
| Ryan Prichard | 361c1b4 | 2019-01-15 13:45:27 -0800 | [diff] [blame] | 37 | #include "private/ScopedRWLock.h" | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 38 | #include "private/ScopedSignalBlocker.h" | 
| Ryan Prichard | 361c1b4 | 2019-01-15 13:45:27 -0800 | [diff] [blame] | 39 | #include "private/bionic_globals.h" | 
| Josh Gao | 4956c37 | 2019-12-19 16:35:51 -0800 | [diff] [blame] | 40 | #include "platform/bionic/macros.h" | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 41 | #include "private/bionic_tls.h" | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 42 | #include "pthread_internal.h" | 
|  | 43 |  | 
|  | 44 | // Every call to __tls_get_addr needs to check the generation counter, so | 
|  | 45 | // accesses to the counter need to be as fast as possible. Keep a copy of it in | 
|  | 46 | // a hidden variable, which can be accessed without using the GOT. The linker | 
|  | 47 | // will update this variable when it updates its counter. | 
|  | 48 | // | 
|  | 49 | // To allow the linker to update this variable, libc.so's constructor passes its | 
|  | 50 | // address to the linker. To accommodate a possible __tls_get_addr call before | 
|  | 51 | // libc.so's constructor, this local copy is initialized to SIZE_MAX, forcing | 
|  | 52 | // __tls_get_addr to initially use the slow path. | 
|  | 53 | __LIBC_HIDDEN__ _Atomic(size_t) __libc_tls_generation_copy = SIZE_MAX; | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 54 |  | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 55 | // Search for a TLS segment in the given phdr table. Returns true if it has a | 
|  | 56 | // TLS segment and false otherwise. | 
|  | 57 | bool __bionic_get_tls_segment(const ElfW(Phdr)* phdr_table, size_t phdr_count, | 
| Ryan Prichard | 1988350 | 2019-01-16 23:13:38 -0800 | [diff] [blame] | 58 | ElfW(Addr) load_bias, TlsSegment* out) { | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 59 | for (size_t i = 0; i < phdr_count; ++i) { | 
|  | 60 | const ElfW(Phdr)& phdr = phdr_table[i]; | 
|  | 61 | if (phdr.p_type == PT_TLS) { | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 62 | *out = TlsSegment { | 
|  | 63 | phdr.p_memsz, | 
| Ryan Prichard | 1988350 | 2019-01-16 23:13:38 -0800 | [diff] [blame] | 64 | phdr.p_align, | 
| Ryan Prichard | 4809755 | 2019-01-06 18:24:10 -0800 | [diff] [blame] | 65 | reinterpret_cast<void*>(load_bias + phdr.p_vaddr), | 
|  | 66 | phdr.p_filesz, | 
|  | 67 | }; | 
|  | 68 | return true; | 
|  | 69 | } | 
|  | 70 | } | 
|  | 71 | return false; | 
|  | 72 | } | 
|  | 73 |  | 
| Ryan Prichard | 1988350 | 2019-01-16 23:13:38 -0800 | [diff] [blame] | 74 | // Return true if the alignment of a TLS segment is a valid power-of-two. Also | 
|  | 75 | // cap the alignment if it's too high. | 
|  | 76 | bool __bionic_check_tls_alignment(size_t* alignment) { | 
|  | 77 | // N.B. The size does not need to be a multiple of the alignment. With | 
|  | 78 | // ld.bfd (or after using binutils' strip), the TLS segment's size isn't | 
|  | 79 | // rounded up. | 
|  | 80 | if (*alignment == 0 || !powerof2(*alignment)) { | 
|  | 81 | return false; | 
|  | 82 | } | 
|  | 83 | // Bionic only respects TLS alignment up to one page. | 
|  | 84 | *alignment = MIN(*alignment, PAGE_SIZE); | 
|  | 85 | return true; | 
|  | 86 | } | 
|  | 87 |  | 
| Ryan Prichard | fb8730d | 2019-01-15 00:11:37 -0800 | [diff] [blame] | 88 | size_t StaticTlsLayout::offset_thread_pointer() const { | 
|  | 89 | return offset_bionic_tcb_ + (-MIN_TLS_SLOT * sizeof(void*)); | 
|  | 90 | } | 
|  | 91 |  | 
| Ryan Prichard | 977e47d | 2019-01-14 21:52:14 -0800 | [diff] [blame] | 92 | // Reserves space for the Bionic TCB and the executable's TLS segment. Returns | 
|  | 93 | // the offset of the executable's TLS segment. | 
|  | 94 | size_t StaticTlsLayout::reserve_exe_segment_and_tcb(const TlsSegment* exe_segment, | 
|  | 95 | const char* progname __attribute__((unused))) { | 
|  | 96 | // Special case: if the executable has no TLS segment, then just allocate a | 
|  | 97 | // TCB and skip the minimum alignment check on ARM. | 
|  | 98 | if (exe_segment == nullptr) { | 
|  | 99 | offset_bionic_tcb_ = reserve_type<bionic_tcb>(); | 
|  | 100 | return 0; | 
|  | 101 | } | 
|  | 102 |  | 
|  | 103 | #if defined(__arm__) || defined(__aarch64__) | 
|  | 104 |  | 
|  | 105 | // First reserve enough space for the TCB before the executable segment. | 
|  | 106 | reserve(sizeof(bionic_tcb), 1); | 
|  | 107 |  | 
|  | 108 | // Then reserve the segment itself. | 
|  | 109 | const size_t result = reserve(exe_segment->size, exe_segment->alignment); | 
|  | 110 |  | 
|  | 111 | // The variant 1 ABI that ARM linkers follow specifies a 2-word TCB between | 
|  | 112 | // the thread pointer and the start of the executable's TLS segment, but both | 
|  | 113 | // the thread pointer and the TLS segment are aligned appropriately for the | 
|  | 114 | // TLS segment. Calculate the distance between the thread pointer and the | 
|  | 115 | // EXE's segment. | 
|  | 116 | const size_t exe_tpoff = __BIONIC_ALIGN(sizeof(void*) * 2, exe_segment->alignment); | 
|  | 117 |  | 
|  | 118 | const size_t min_bionic_alignment = BIONIC_ROUND_UP_POWER_OF_2(MAX_TLS_SLOT) * sizeof(void*); | 
|  | 119 | if (exe_tpoff < min_bionic_alignment) { | 
|  | 120 | async_safe_fatal("error: \"%s\": executable's TLS segment is underaligned: " | 
|  | 121 | "alignment is %zu, needs to be at least %zu for %s Bionic", | 
|  | 122 | progname, exe_segment->alignment, min_bionic_alignment, | 
|  | 123 | (sizeof(void*) == 4 ? "ARM" : "ARM64")); | 
|  | 124 | } | 
|  | 125 |  | 
|  | 126 | offset_bionic_tcb_ = result - exe_tpoff - (-MIN_TLS_SLOT * sizeof(void*)); | 
|  | 127 | return result; | 
|  | 128 |  | 
|  | 129 | #elif defined(__i386__) || defined(__x86_64__) | 
|  | 130 |  | 
|  | 131 | // x86 uses variant 2 TLS layout. The executable's segment is located just | 
|  | 132 | // before the TCB. | 
|  | 133 | static_assert(MIN_TLS_SLOT == 0, "First slot of bionic_tcb must be slot #0 on x86"); | 
|  | 134 | const size_t exe_size = round_up_with_overflow_check(exe_segment->size, exe_segment->alignment); | 
|  | 135 | reserve(exe_size, 1); | 
|  | 136 | const size_t max_align = MAX(alignof(bionic_tcb), exe_segment->alignment); | 
|  | 137 | offset_bionic_tcb_ = reserve(sizeof(bionic_tcb), max_align); | 
|  | 138 | return offset_bionic_tcb_ - exe_size; | 
|  | 139 |  | 
| Elliott Hughes | 4346270 | 2022-10-10 19:21:44 +0000 | [diff] [blame] | 140 | #elif defined(__riscv) | 
|  | 141 |  | 
|  | 142 | // First reserve enough space for the TCB before the executable segment. | 
|  | 143 | offset_bionic_tcb_ = reserve(sizeof(bionic_tcb), 1); | 
|  | 144 |  | 
|  | 145 | // Then reserve the segment itself. | 
|  | 146 | const size_t exe_size = round_up_with_overflow_check(exe_segment->size, exe_segment->alignment); | 
|  | 147 | return reserve(exe_size, 1); | 
|  | 148 |  | 
| Ryan Prichard | 977e47d | 2019-01-14 21:52:14 -0800 | [diff] [blame] | 149 | #else | 
|  | 150 | #error "Unrecognized architecture" | 
|  | 151 | #endif | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 152 | } | 
|  | 153 |  | 
|  | 154 | void StaticTlsLayout::reserve_bionic_tls() { | 
|  | 155 | offset_bionic_tls_ = reserve_type<bionic_tls>(); | 
|  | 156 | } | 
|  | 157 |  | 
|  | 158 | void StaticTlsLayout::finish_layout() { | 
|  | 159 | // Round the offset up to the alignment. | 
|  | 160 | offset_ = round_up_with_overflow_check(offset_, alignment_); | 
| Ryan Prichard | 977e47d | 2019-01-14 21:52:14 -0800 | [diff] [blame] | 161 |  | 
|  | 162 | if (overflowed_) { | 
|  | 163 | async_safe_fatal("error: TLS segments in static TLS overflowed"); | 
|  | 164 | } | 
| Ryan Prichard | 45d1349 | 2019-01-03 02:51:30 -0800 | [diff] [blame] | 165 | } | 
|  | 166 |  | 
|  | 167 | // The size is not required to be a multiple of the alignment. The alignment | 
|  | 168 | // must be a positive power-of-two. | 
|  | 169 | size_t StaticTlsLayout::reserve(size_t size, size_t alignment) { | 
|  | 170 | offset_ = round_up_with_overflow_check(offset_, alignment); | 
|  | 171 | const size_t result = offset_; | 
|  | 172 | if (__builtin_add_overflow(offset_, size, &offset_)) overflowed_ = true; | 
|  | 173 | alignment_ = MAX(alignment_, alignment); | 
|  | 174 | return result; | 
|  | 175 | } | 
|  | 176 |  | 
|  | 177 | size_t StaticTlsLayout::round_up_with_overflow_check(size_t value, size_t alignment) { | 
|  | 178 | const size_t old_value = value; | 
|  | 179 | value = __BIONIC_ALIGN(value, alignment); | 
|  | 180 | if (value < old_value) overflowed_ = true; | 
|  | 181 | return value; | 
|  | 182 | } | 
| Ryan Prichard | 361c1b4 | 2019-01-15 13:45:27 -0800 | [diff] [blame] | 183 |  | 
|  | 184 | // Copy each TLS module's initialization image into a newly-allocated block of | 
|  | 185 | // static TLS memory. To reduce dirty pages, this function only writes to pages | 
|  | 186 | // within the static TLS that need initialization. The memory should already be | 
|  | 187 | // zero-initialized on entry. | 
|  | 188 | void __init_static_tls(void* static_tls) { | 
|  | 189 | // The part of the table we care about (i.e. static TLS modules) never changes | 
|  | 190 | // after startup, but we still need the mutex because the table could grow, | 
|  | 191 | // moving the initial part. If this locking is too slow, we can duplicate the | 
|  | 192 | // static part of the table. | 
|  | 193 | TlsModules& modules = __libc_shared_globals()->tls_modules; | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 194 | ScopedSignalBlocker ssb; | 
| Ryan Prichard | 361c1b4 | 2019-01-15 13:45:27 -0800 | [diff] [blame] | 195 | ScopedReadLock locker(&modules.rwlock); | 
|  | 196 |  | 
|  | 197 | for (size_t i = 0; i < modules.module_count; ++i) { | 
|  | 198 | TlsModule& module = modules.module_table[i]; | 
|  | 199 | if (module.static_offset == SIZE_MAX) { | 
|  | 200 | // All of the static modules come before all of the dynamic modules, so | 
|  | 201 | // once we see the first dynamic module, we're done. | 
|  | 202 | break; | 
|  | 203 | } | 
|  | 204 | if (module.segment.init_size == 0) { | 
|  | 205 | // Skip the memcpy call for TLS segments with no initializer, which is | 
|  | 206 | // common. | 
|  | 207 | continue; | 
|  | 208 | } | 
|  | 209 | memcpy(static_cast<char*>(static_tls) + module.static_offset, | 
|  | 210 | module.segment.init_ptr, | 
|  | 211 | module.segment.init_size); | 
|  | 212 | } | 
|  | 213 | } | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 214 |  | 
|  | 215 | static inline size_t dtv_size_in_bytes(size_t module_count) { | 
|  | 216 | return sizeof(TlsDtv) + module_count * sizeof(void*); | 
|  | 217 | } | 
|  | 218 |  | 
|  | 219 | // Calculates the number of module slots to allocate in a new DTV. For small | 
|  | 220 | // objects (up to 1KiB), the TLS allocator allocates memory in power-of-2 sizes, | 
|  | 221 | // so for better space usage, ensure that the DTV size (header + slots) is a | 
|  | 222 | // power of 2. | 
|  | 223 | // | 
|  | 224 | // The lock on TlsModules must be held. | 
|  | 225 | static size_t calculate_new_dtv_count() { | 
|  | 226 | size_t loaded_cnt = __libc_shared_globals()->tls_modules.module_count; | 
|  | 227 | size_t bytes = dtv_size_in_bytes(MAX(1, loaded_cnt)); | 
|  | 228 | if (!powerof2(bytes)) { | 
|  | 229 | bytes = BIONIC_ROUND_UP_POWER_OF_2(bytes); | 
|  | 230 | } | 
|  | 231 | return (bytes - sizeof(TlsDtv)) / sizeof(void*); | 
|  | 232 | } | 
|  | 233 |  | 
|  | 234 | // This function must be called with signals blocked and a write lock on | 
|  | 235 | // TlsModules held. | 
|  | 236 | static void update_tls_dtv(bionic_tcb* tcb) { | 
|  | 237 | const TlsModules& modules = __libc_shared_globals()->tls_modules; | 
|  | 238 | BionicAllocator& allocator = __libc_shared_globals()->tls_allocator; | 
|  | 239 |  | 
|  | 240 | // Use the generation counter from the shared globals instead of the local | 
|  | 241 | // copy, which won't be initialized yet if __tls_get_addr is called before | 
|  | 242 | // libc.so's constructor. | 
|  | 243 | if (__get_tcb_dtv(tcb)->generation == atomic_load(&modules.generation)) { | 
|  | 244 | return; | 
|  | 245 | } | 
|  | 246 |  | 
|  | 247 | const size_t old_cnt = __get_tcb_dtv(tcb)->count; | 
|  | 248 |  | 
|  | 249 | // If the DTV isn't large enough, allocate a larger one. Because a signal | 
|  | 250 | // handler could interrupt the fast path of __tls_get_addr, we don't free the | 
|  | 251 | // old DTV. Instead, we add the old DTV to a list, then free all of a thread's | 
|  | 252 | // DTVs at thread-exit. Each time the DTV is reallocated, its size at least | 
|  | 253 | // doubles. | 
|  | 254 | if (modules.module_count > old_cnt) { | 
|  | 255 | size_t new_cnt = calculate_new_dtv_count(); | 
|  | 256 | TlsDtv* const old_dtv = __get_tcb_dtv(tcb); | 
|  | 257 | TlsDtv* const new_dtv = static_cast<TlsDtv*>(allocator.alloc(dtv_size_in_bytes(new_cnt))); | 
|  | 258 | memcpy(new_dtv, old_dtv, dtv_size_in_bytes(old_cnt)); | 
|  | 259 | new_dtv->count = new_cnt; | 
|  | 260 | new_dtv->next = old_dtv; | 
|  | 261 | __set_tcb_dtv(tcb, new_dtv); | 
|  | 262 | } | 
|  | 263 |  | 
|  | 264 | TlsDtv* const dtv = __get_tcb_dtv(tcb); | 
|  | 265 |  | 
|  | 266 | const StaticTlsLayout& layout = __libc_shared_globals()->static_tls_layout; | 
|  | 267 | char* static_tls = reinterpret_cast<char*>(tcb) - layout.offset_bionic_tcb(); | 
|  | 268 |  | 
|  | 269 | // Initialize static TLS modules and free unloaded modules. | 
|  | 270 | for (size_t i = 0; i < dtv->count; ++i) { | 
|  | 271 | if (i < modules.module_count) { | 
|  | 272 | const TlsModule& mod = modules.module_table[i]; | 
|  | 273 | if (mod.static_offset != SIZE_MAX) { | 
|  | 274 | dtv->modules[i] = static_tls + mod.static_offset; | 
|  | 275 | continue; | 
|  | 276 | } | 
|  | 277 | if (mod.first_generation != kTlsGenerationNone && | 
|  | 278 | mod.first_generation <= dtv->generation) { | 
|  | 279 | continue; | 
|  | 280 | } | 
|  | 281 | } | 
| Vy Nguyen | d500751 | 2020-07-14 17:37:04 -0400 | [diff] [blame] | 282 | if (modules.on_destruction_cb != nullptr) { | 
|  | 283 | void* dtls_begin = dtv->modules[i]; | 
|  | 284 | void* dtls_end = | 
|  | 285 | static_cast<void*>(static_cast<char*>(dtls_begin) + allocator.get_chunk_size(dtls_begin)); | 
|  | 286 | modules.on_destruction_cb(dtls_begin, dtls_end); | 
|  | 287 | } | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 288 | allocator.free(dtv->modules[i]); | 
|  | 289 | dtv->modules[i] = nullptr; | 
|  | 290 | } | 
|  | 291 |  | 
|  | 292 | dtv->generation = atomic_load(&modules.generation); | 
|  | 293 | } | 
|  | 294 |  | 
|  | 295 | __attribute__((noinline)) static void* tls_get_addr_slow_path(const TlsIndex* ti) { | 
|  | 296 | TlsModules& modules = __libc_shared_globals()->tls_modules; | 
|  | 297 | bionic_tcb* tcb = __get_bionic_tcb(); | 
|  | 298 |  | 
|  | 299 | // Block signals and lock TlsModules. We may need the allocator, so take | 
|  | 300 | // a write lock. | 
|  | 301 | ScopedSignalBlocker ssb; | 
|  | 302 | ScopedWriteLock locker(&modules.rwlock); | 
|  | 303 |  | 
|  | 304 | update_tls_dtv(tcb); | 
|  | 305 |  | 
|  | 306 | TlsDtv* dtv = __get_tcb_dtv(tcb); | 
|  | 307 | const size_t module_idx = __tls_module_id_to_idx(ti->module_id); | 
|  | 308 | void* mod_ptr = dtv->modules[module_idx]; | 
|  | 309 | if (mod_ptr == nullptr) { | 
|  | 310 | const TlsSegment& segment = modules.module_table[module_idx].segment; | 
|  | 311 | mod_ptr = __libc_shared_globals()->tls_allocator.memalign(segment.alignment, segment.size); | 
|  | 312 | if (segment.init_size > 0) { | 
|  | 313 | memcpy(mod_ptr, segment.init_ptr, segment.init_size); | 
|  | 314 | } | 
|  | 315 | dtv->modules[module_idx] = mod_ptr; | 
| Vy Nguyen | d500751 | 2020-07-14 17:37:04 -0400 | [diff] [blame] | 316 |  | 
|  | 317 | // Reports the allocation to the listener, if any. | 
|  | 318 | if (modules.on_creation_cb != nullptr) { | 
|  | 319 | modules.on_creation_cb(mod_ptr, | 
|  | 320 | static_cast<void*>(static_cast<char*>(mod_ptr) + segment.size)); | 
|  | 321 | } | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 322 | } | 
|  | 323 |  | 
| Elliott Hughes | 4346270 | 2022-10-10 19:21:44 +0000 | [diff] [blame] | 324 | return static_cast<char*>(mod_ptr) + ti->offset + TLS_DTV_OFFSET; | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 325 | } | 
|  | 326 |  | 
|  | 327 | // Returns the address of a thread's TLS memory given a module ID and an offset | 
|  | 328 | // into that module's TLS segment. This function is called on every access to a | 
|  | 329 | // dynamic TLS variable on targets that don't use TLSDESC. arm64 uses TLSDESC, | 
|  | 330 | // so it only calls this function on a thread's first access to a module's TLS | 
|  | 331 | // segment. | 
|  | 332 | // | 
|  | 333 | // On most targets, this accessor function is __tls_get_addr and | 
|  | 334 | // TLS_GET_ADDR_CCONV is unset. 32-bit x86 uses ___tls_get_addr instead and a | 
|  | 335 | // regparm() calling convention. | 
|  | 336 | extern "C" void* TLS_GET_ADDR(const TlsIndex* ti) TLS_GET_ADDR_CCONV { | 
|  | 337 | TlsDtv* dtv = __get_tcb_dtv(__get_bionic_tcb()); | 
|  | 338 |  | 
|  | 339 | // TODO: See if we can use a relaxed memory ordering here instead. | 
|  | 340 | size_t generation = atomic_load(&__libc_tls_generation_copy); | 
|  | 341 | if (__predict_true(generation == dtv->generation)) { | 
|  | 342 | void* mod_ptr = dtv->modules[__tls_module_id_to_idx(ti->module_id)]; | 
|  | 343 | if (__predict_true(mod_ptr != nullptr)) { | 
| Elliott Hughes | 4346270 | 2022-10-10 19:21:44 +0000 | [diff] [blame] | 344 | return static_cast<char*>(mod_ptr) + ti->offset + TLS_DTV_OFFSET; | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 345 | } | 
|  | 346 | } | 
|  | 347 |  | 
|  | 348 | return tls_get_addr_slow_path(ti); | 
|  | 349 | } | 
|  | 350 |  | 
|  | 351 | // This function frees: | 
|  | 352 | //  - TLS modules referenced by the current DTV. | 
|  | 353 | //  - The list of DTV objects associated with the current thread. | 
|  | 354 | // | 
|  | 355 | // The caller must have already blocked signals. | 
|  | 356 | void __free_dynamic_tls(bionic_tcb* tcb) { | 
|  | 357 | TlsModules& modules = __libc_shared_globals()->tls_modules; | 
|  | 358 | BionicAllocator& allocator = __libc_shared_globals()->tls_allocator; | 
|  | 359 |  | 
|  | 360 | // If we didn't allocate any dynamic memory, skip out early without taking | 
|  | 361 | // the lock. | 
|  | 362 | TlsDtv* dtv = __get_tcb_dtv(tcb); | 
|  | 363 | if (dtv->generation == kTlsGenerationNone) { | 
|  | 364 | return; | 
|  | 365 | } | 
|  | 366 |  | 
|  | 367 | // We need the write lock to use the allocator. | 
|  | 368 | ScopedWriteLock locker(&modules.rwlock); | 
|  | 369 |  | 
|  | 370 | // First free everything in the current DTV. | 
|  | 371 | for (size_t i = 0; i < dtv->count; ++i) { | 
|  | 372 | if (i < modules.module_count && modules.module_table[i].static_offset != SIZE_MAX) { | 
|  | 373 | // This module's TLS memory is allocated statically, so don't free it here. | 
|  | 374 | continue; | 
|  | 375 | } | 
| Vy Nguyen | d500751 | 2020-07-14 17:37:04 -0400 | [diff] [blame] | 376 |  | 
|  | 377 | if (modules.on_destruction_cb != nullptr) { | 
|  | 378 | void* dtls_begin = dtv->modules[i]; | 
|  | 379 | void* dtls_end = | 
|  | 380 | static_cast<void*>(static_cast<char*>(dtls_begin) + allocator.get_chunk_size(dtls_begin)); | 
|  | 381 | modules.on_destruction_cb(dtls_begin, dtls_end); | 
|  | 382 | } | 
|  | 383 |  | 
| Ryan Prichard | 16455b5 | 2019-01-18 01:00:59 -0800 | [diff] [blame] | 384 | allocator.free(dtv->modules[i]); | 
|  | 385 | } | 
|  | 386 |  | 
|  | 387 | // Now free the thread's list of DTVs. | 
|  | 388 | while (dtv->generation != kTlsGenerationNone) { | 
|  | 389 | TlsDtv* next = dtv->next; | 
|  | 390 | allocator.free(dtv); | 
|  | 391 | dtv = next; | 
|  | 392 | } | 
|  | 393 |  | 
|  | 394 | // Clear the DTV slot. The DTV must not be used again with this thread. | 
|  | 395 | tcb->tls_slot(TLS_SLOT_DTV) = nullptr; | 
|  | 396 | } | 
| Vy Nguyen | d500751 | 2020-07-14 17:37:04 -0400 | [diff] [blame] | 397 |  | 
|  | 398 | // Invokes all the registered thread_exit callbacks, if any. | 
|  | 399 | void __notify_thread_exit_callbacks() { | 
|  | 400 | TlsModules& modules = __libc_shared_globals()->tls_modules; | 
|  | 401 | if (modules.first_thread_exit_callback == nullptr) { | 
|  | 402 | // If there is no first_thread_exit_callback, there shouldn't be a tail. | 
|  | 403 | CHECK(modules.thread_exit_callback_tail_node == nullptr); | 
|  | 404 | return; | 
|  | 405 | } | 
|  | 406 |  | 
|  | 407 | // Callbacks are supposed to be invoked in the reverse order | 
|  | 408 | // in which they were registered. | 
|  | 409 | CallbackHolder* node = modules.thread_exit_callback_tail_node; | 
|  | 410 | while (node != nullptr) { | 
|  | 411 | node->cb(); | 
|  | 412 | node = node->prev; | 
|  | 413 | } | 
|  | 414 | modules.first_thread_exit_callback(); | 
|  | 415 | } |