xref: /netbsd-src/external/gpl3/gcc/dist/libsanitizer/sanitizer_common/sanitizer_linux_libcdep.cpp (revision f8cf1a9151c7af1cb0bd8b09c13c66bca599c027)
1 //===-- sanitizer_linux_libcdep.cpp ---------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file is shared between AddressSanitizer and ThreadSanitizer
10 // run-time libraries and implements linux-specific functions from
11 // sanitizer_libc.h.
12 //===----------------------------------------------------------------------===//
13 
14 #include "sanitizer_platform.h"
15 
16 #if SANITIZER_FREEBSD || SANITIZER_LINUX || SANITIZER_NETBSD || \
17     SANITIZER_SOLARIS
18 
19 #include "sanitizer_allocator_internal.h"
20 #include "sanitizer_atomic.h"
21 #include "sanitizer_common.h"
22 #include "sanitizer_file.h"
23 #include "sanitizer_flags.h"
24 #include "sanitizer_freebsd.h"
25 #include "sanitizer_getauxval.h"
26 #include "sanitizer_glibc_version.h"
27 #include "sanitizer_linux.h"
28 #include "sanitizer_placement_new.h"
29 #include "sanitizer_procmaps.h"
30 
31 #if SANITIZER_NETBSD
32 #define _RTLD_SOURCE  // for __lwp_gettcb_fast() / __lwp_getprivate_fast()
33 #endif
34 
35 #include <dlfcn.h>  // for dlsym()
36 #include <link.h>
37 #include <pthread.h>
38 #include <signal.h>
39 #include <sys/mman.h>
40 #include <sys/resource.h>
41 #include <syslog.h>
42 
43 #if !defined(ElfW)
44 #define ElfW(type) Elf_##type
45 #endif
46 
47 #if SANITIZER_FREEBSD
48 #include <pthread_np.h>
49 #include <osreldate.h>
50 #include <sys/sysctl.h>
51 #define pthread_getattr_np pthread_attr_get_np
52 // The MAP_NORESERVE define has been removed in FreeBSD 11.x, and even before
53 // that, it was never implemented. So just define it to zero.
54 #undef MAP_NORESERVE
55 #define MAP_NORESERVE 0
56 #endif
57 
58 #if SANITIZER_NETBSD
59 #include <sys/sysctl.h>
60 #include <sys/tls.h>
61 #include <lwp.h>
62 #endif
63 
64 #if SANITIZER_SOLARIS
65 #include <stdlib.h>
66 #include <thread.h>
67 #endif
68 
69 #if SANITIZER_ANDROID
70 #include <android/api-level.h>
71 #if !defined(CPU_COUNT) && !defined(__aarch64__)
72 #include <dirent.h>
73 #include <fcntl.h>
74 struct __sanitizer::linux_dirent {
75   long           d_ino;
76   off_t          d_off;
77   unsigned short d_reclen;
78   char           d_name[];
79 };
80 #endif
81 #endif
82 
83 #if !SANITIZER_ANDROID
84 #include <elf.h>
85 #include <unistd.h>
86 #endif
87 
88 namespace __sanitizer {
89 
90 SANITIZER_WEAK_ATTRIBUTE int
91 real_sigaction(int signum, const void *act, void *oldact);
92 
93 int internal_sigaction(int signum, const void *act, void *oldact) {
94 #if !SANITIZER_GO
95   if (&real_sigaction)
96     return real_sigaction(signum, act, oldact);
97 #endif
98   return sigaction(signum, (const struct sigaction *)act,
99                    (struct sigaction *)oldact);
100 }
101 
102 void GetThreadStackTopAndBottom(bool at_initialization, uptr *stack_top,
103                                 uptr *stack_bottom) {
104   CHECK(stack_top);
105   CHECK(stack_bottom);
106   if (at_initialization) {
107     // This is the main thread. Libpthread may not be initialized yet.
108     struct rlimit rl;
109     CHECK_EQ(getrlimit(RLIMIT_STACK, &rl), 0);
110 
111     // Find the mapping that contains a stack variable.
112     MemoryMappingLayout proc_maps(/*cache_enabled*/true);
113     if (proc_maps.Error()) {
114       *stack_top = *stack_bottom = 0;
115       return;
116     }
117     MemoryMappedSegment segment;
118     uptr prev_end = 0;
119     while (proc_maps.Next(&segment)) {
120       if ((uptr)&rl < segment.end) break;
121       prev_end = segment.end;
122     }
123     CHECK((uptr)&rl >= segment.start && (uptr)&rl < segment.end);
124 
125     // Get stacksize from rlimit, but clip it so that it does not overlap
126     // with other mappings.
127     uptr stacksize = rl.rlim_cur;
128     if (stacksize > segment.end - prev_end) stacksize = segment.end - prev_end;
129     // When running with unlimited stack size, we still want to set some limit.
130     // The unlimited stack size is caused by 'ulimit -s unlimited'.
131     // Also, for some reason, GNU make spawns subprocesses with unlimited stack.
132     if (stacksize > kMaxThreadStackSize)
133       stacksize = kMaxThreadStackSize;
134     *stack_top = segment.end;
135     *stack_bottom = segment.end - stacksize;
136     return;
137   }
138   uptr stacksize = 0;
139   void *stackaddr = nullptr;
140 #if SANITIZER_SOLARIS
141   stack_t ss;
142   CHECK_EQ(thr_stksegment(&ss), 0);
143   stacksize = ss.ss_size;
144   stackaddr = (char *)ss.ss_sp - stacksize;
145 #else  // !SANITIZER_SOLARIS
146   pthread_attr_t attr;
147   pthread_attr_init(&attr);
148   CHECK_EQ(pthread_getattr_np(pthread_self(), &attr), 0);
149   my_pthread_attr_getstack(&attr, &stackaddr, &stacksize);
150   pthread_attr_destroy(&attr);
151 #endif  // SANITIZER_SOLARIS
152 
153   *stack_top = (uptr)stackaddr + stacksize;
154   *stack_bottom = (uptr)stackaddr;
155 }
156 
157 #if !SANITIZER_GO
158 bool SetEnv(const char *name, const char *value) {
159   void *f = dlsym(RTLD_NEXT, "setenv");
160   if (!f)
161     return false;
162   typedef int(*setenv_ft)(const char *name, const char *value, int overwrite);
163   setenv_ft setenv_f;
164   CHECK_EQ(sizeof(setenv_f), sizeof(f));
165   internal_memcpy(&setenv_f, &f, sizeof(f));
166   return setenv_f(name, value, 1) == 0;
167 }
168 #endif
169 
170 __attribute__((unused)) static bool GetLibcVersion(int *major, int *minor,
171                                                    int *patch) {
172 #ifdef _CS_GNU_LIBC_VERSION
173   char buf[64];
174   uptr len = confstr(_CS_GNU_LIBC_VERSION, buf, sizeof(buf));
175   if (len >= sizeof(buf))
176     return false;
177   buf[len] = 0;
178   static const char kGLibC[] = "glibc ";
179   if (internal_strncmp(buf, kGLibC, sizeof(kGLibC) - 1) != 0)
180     return false;
181   const char *p = buf + sizeof(kGLibC) - 1;
182   *major = internal_simple_strtoll(p, &p, 10);
183   *minor = (*p == '.') ? internal_simple_strtoll(p + 1, &p, 10) : 0;
184   *patch = (*p == '.') ? internal_simple_strtoll(p + 1, &p, 10) : 0;
185   return true;
186 #else
187   return false;
188 #endif
189 }
190 
191 // True if we can use dlpi_tls_data. glibc before 2.25 may leave NULL (BZ
192 // #19826) so dlpi_tls_data cannot be used.
193 //
194 // musl before 1.2.3 and FreeBSD as of 12.2 incorrectly set dlpi_tls_data to
195 // the TLS initialization image
196 // https://bugs.freebsd.org/bugzilla/show_bug.cgi?id=254774
197 __attribute__((unused)) static int g_use_dlpi_tls_data;
198 
199 #if SANITIZER_GLIBC && !SANITIZER_GO
200 __attribute__((unused)) static size_t g_tls_size;
201 void InitTlsSize() {
202   int major, minor, patch;
203   g_use_dlpi_tls_data =
204       GetLibcVersion(&major, &minor, &patch) && major == 2 && minor >= 25;
205 
206 #if defined(__aarch64__) || defined(__x86_64__) || defined(__powerpc64__)
207   void *get_tls_static_info = dlsym(RTLD_NEXT, "_dl_get_tls_static_info");
208   size_t tls_align;
209   ((void (*)(size_t *, size_t *))get_tls_static_info)(&g_tls_size, &tls_align);
210 #endif
211 }
212 #else
213 void InitTlsSize() { }
214 #endif  // SANITIZER_GLIBC && !SANITIZER_GO
215 
216 // On glibc x86_64, ThreadDescriptorSize() needs to be precise due to the usage
217 // of g_tls_size. On other targets, ThreadDescriptorSize() is only used by lsan
218 // to get the pointer to thread-specific data keys in the thread control block.
219 #if (SANITIZER_FREEBSD || SANITIZER_LINUX) && !SANITIZER_ANDROID
220 // sizeof(struct pthread) from glibc.
221 static atomic_uintptr_t thread_descriptor_size;
222 
223 static uptr ThreadDescriptorSizeFallback() {
224   uptr val = 0;
225 #if defined(__x86_64__) || defined(__i386__) || defined(__arm__)
226   int major;
227   int minor;
228   int patch;
229   if (GetLibcVersion(&major, &minor, &patch) && major == 2) {
230     /* sizeof(struct pthread) values from various glibc versions.  */
231     if (SANITIZER_X32)
232       val = 1728; // Assume only one particular version for x32.
233     // For ARM sizeof(struct pthread) changed in Glibc 2.23.
234     else if (SANITIZER_ARM)
235       val = minor <= 22 ? 1120 : 1216;
236     else if (minor <= 3)
237       val = FIRST_32_SECOND_64(1104, 1696);
238     else if (minor == 4)
239       val = FIRST_32_SECOND_64(1120, 1728);
240     else if (minor == 5)
241       val = FIRST_32_SECOND_64(1136, 1728);
242     else if (minor <= 9)
243       val = FIRST_32_SECOND_64(1136, 1712);
244     else if (minor == 10)
245       val = FIRST_32_SECOND_64(1168, 1776);
246     else if (minor == 11 || (minor == 12 && patch == 1))
247       val = FIRST_32_SECOND_64(1168, 2288);
248     else if (minor <= 14)
249       val = FIRST_32_SECOND_64(1168, 2304);
250     else if (minor < 32)  // Unknown version
251       val = FIRST_32_SECOND_64(1216, 2304);
252     else  // minor == 32
253       val = FIRST_32_SECOND_64(1344, 2496);
254   }
255 #elif defined(__s390__) || defined(__sparc__)
256   // The size of a prefix of TCB including pthread::{specific_1stblock,specific}
257   // suffices. Just return offsetof(struct pthread, specific_used), which hasn't
258   // changed since 2007-05. Technically this applies to i386/x86_64 as well but
259   // we call _dl_get_tls_static_info and need the precise size of struct
260   // pthread.
261   return FIRST_32_SECOND_64(524, 1552);
262 #elif defined(__mips__)
263   // TODO(sagarthakur): add more values as per different glibc versions.
264   val = FIRST_32_SECOND_64(1152, 1776);
265 #elif SANITIZER_RISCV64
266   int major;
267   int minor;
268   int patch;
269   if (GetLibcVersion(&major, &minor, &patch) && major == 2) {
270     // TODO: consider adding an optional runtime check for an unknown (untested)
271     // glibc version
272     if (minor <= 28)  // WARNING: the highest tested version is 2.29
273       val = 1772;     // no guarantees for this one
274     else if (minor <= 31)
275       val = 1772;  // tested against glibc 2.29, 2.31
276     else
277       val = 1936;  // tested against glibc 2.32
278   }
279 
280 #elif defined(__aarch64__)
281   // The sizeof (struct pthread) is the same from GLIBC 2.17 to 2.22.
282   val = 1776;
283 #elif defined(__powerpc64__)
284   val = 1776; // from glibc.ppc64le 2.20-8.fc21
285 #endif
286   return val;
287 }
288 
289 uptr ThreadDescriptorSize() {
290   uptr val = atomic_load_relaxed(&thread_descriptor_size);
291   if (val)
292     return val;
293   // _thread_db_sizeof_pthread is a GLIBC_PRIVATE symbol that is exported in
294   // glibc 2.34 and later.
295   if (unsigned *psizeof = static_cast<unsigned *>(
296           dlsym(RTLD_DEFAULT, "_thread_db_sizeof_pthread")))
297     val = *psizeof;
298   if (!val)
299     val = ThreadDescriptorSizeFallback();
300   atomic_store_relaxed(&thread_descriptor_size, val);
301   return val;
302 }
303 
304 #if defined(__mips__) || defined(__powerpc64__) || SANITIZER_RISCV64
305 // TlsPreTcbSize includes size of struct pthread_descr and size of tcb
306 // head structure. It lies before the static tls blocks.
307 static uptr TlsPreTcbSize() {
308 #if defined(__mips__)
309   const uptr kTcbHead = 16; // sizeof (tcbhead_t)
310 #elif defined(__powerpc64__)
311   const uptr kTcbHead = 88; // sizeof (tcbhead_t)
312 #elif SANITIZER_RISCV64
313   const uptr kTcbHead = 16;  // sizeof (tcbhead_t)
314 #endif
315   const uptr kTlsAlign = 16;
316   const uptr kTlsPreTcbSize =
317       RoundUpTo(ThreadDescriptorSize() + kTcbHead, kTlsAlign);
318   return kTlsPreTcbSize;
319 }
320 #endif
321 
322 #if !SANITIZER_GO
323 namespace {
324 struct TlsBlock {
325   uptr begin, end, align;
326   size_t tls_modid;
327   bool operator<(const TlsBlock &rhs) const { return begin < rhs.begin; }
328 };
329 }  // namespace
330 
331 #ifdef __s390__
332 extern "C" uptr __tls_get_offset(void *arg);
333 
334 static uptr TlsGetOffset(uptr ti_module, uptr ti_offset) {
335   // The __tls_get_offset ABI requires %r12 to point to GOT and %r2 to be an
336   // offset of a struct tls_index inside GOT. We don't possess either of the
337   // two, so violate the letter of the "ELF Handling For Thread-Local
338   // Storage" document and assume that the implementation just dereferences
339   // %r2 + %r12.
340   uptr tls_index[2] = {ti_module, ti_offset};
341   register uptr r2 asm("2") = 0;
342   register void *r12 asm("12") = tls_index;
343   asm("basr %%r14, %[__tls_get_offset]"
344       : "+r"(r2)
345       : [__tls_get_offset] "r"(__tls_get_offset), "r"(r12)
346       : "memory", "cc", "0", "1", "3", "4", "5", "14");
347   return r2;
348 }
349 #else
350 extern "C" void *__tls_get_addr(size_t *);
351 #endif
352 
353 static int CollectStaticTlsBlocks(struct dl_phdr_info *info, size_t size,
354                                   void *data) {
355   if (!info->dlpi_tls_modid)
356     return 0;
357   uptr begin = (uptr)info->dlpi_tls_data;
358   if (!g_use_dlpi_tls_data) {
359     // Call __tls_get_addr as a fallback. This forces TLS allocation on glibc
360     // and FreeBSD.
361 #ifdef __s390__
362     begin = (uptr)__builtin_thread_pointer() +
363             TlsGetOffset(info->dlpi_tls_modid, 0);
364 #else
365     size_t mod_and_off[2] = {info->dlpi_tls_modid, 0};
366     begin = (uptr)__tls_get_addr(mod_and_off);
367 #endif
368   }
369   for (unsigned i = 0; i != info->dlpi_phnum; ++i)
370     if (info->dlpi_phdr[i].p_type == PT_TLS) {
371       static_cast<InternalMmapVector<TlsBlock> *>(data)->push_back(
372           TlsBlock{begin, begin + info->dlpi_phdr[i].p_memsz,
373                    info->dlpi_phdr[i].p_align, info->dlpi_tls_modid});
374       break;
375     }
376   return 0;
377 }
378 
379 __attribute__((unused)) static void GetStaticTlsBoundary(uptr *addr, uptr *size,
380                                                          uptr *align) {
381   InternalMmapVector<TlsBlock> ranges;
382   dl_iterate_phdr(CollectStaticTlsBlocks, &ranges);
383   uptr len = ranges.size();
384   Sort(ranges.begin(), len);
385   // Find the range with tls_modid=1. For glibc, because libc.so uses PT_TLS,
386   // this module is guaranteed to exist and is one of the initially loaded
387   // modules.
388   uptr one = 0;
389   while (one != len && ranges[one].tls_modid != 1) ++one;
390   if (one == len) {
391     // This may happen with musl if no module uses PT_TLS.
392     *addr = 0;
393     *size = 0;
394     *align = 1;
395     return;
396   }
397   // Find the maximum consecutive ranges. We consider two modules consecutive if
398   // the gap is smaller than the alignment. The dynamic loader places static TLS
399   // blocks this way not to waste space.
400   uptr l = one;
401   *align = ranges[l].align;
402   while (l != 0 && ranges[l].begin < ranges[l - 1].end + ranges[l - 1].align)
403     *align = Max(*align, ranges[--l].align);
404   uptr r = one + 1;
405   while (r != len && ranges[r].begin < ranges[r - 1].end + ranges[r - 1].align)
406     *align = Max(*align, ranges[r++].align);
407   *addr = ranges[l].begin;
408   *size = ranges[r - 1].end - ranges[l].begin;
409 }
410 #endif  // !SANITIZER_GO
411 #endif  // (x86_64 || i386 || mips || ...) && (SANITIZER_FREEBSD ||
412         // SANITIZER_LINUX) && !SANITIZER_ANDROID
413 
414 #if SANITIZER_NETBSD
415 static struct tls_tcb * ThreadSelfTlsTcb() {
416   struct tls_tcb *tcb = nullptr;
417 #ifdef __HAVE___LWP_GETTCB_FAST
418   tcb = (struct tls_tcb *)__lwp_gettcb_fast();
419 #elif defined(__HAVE___LWP_GETPRIVATE_FAST)
420   tcb = (struct tls_tcb *)__lwp_getprivate_fast();
421 #endif
422   return tcb;
423 }
424 
425 uptr ThreadSelf() {
426   return (uptr)ThreadSelfTlsTcb()->tcb_pthread;
427 }
428 
429 int GetSizeFromHdr(struct dl_phdr_info *info, size_t size, void *data) {
430   const Elf_Phdr *hdr = info->dlpi_phdr;
431   const Elf_Phdr *last_hdr = hdr + info->dlpi_phnum;
432 
433   for (; hdr != last_hdr; ++hdr) {
434     if (hdr->p_type == PT_TLS && info->dlpi_tls_modid == 1) {
435       *(uptr*)data = hdr->p_memsz;
436       break;
437     }
438   }
439   return 0;
440 }
441 #endif  // SANITIZER_NETBSD
442 
443 #if SANITIZER_ANDROID
444 // Bionic provides this API since S.
445 extern "C" SANITIZER_WEAK_ATTRIBUTE void __libc_get_static_tls_bounds(void **,
446                                                                       void **);
447 #endif
448 
449 #if !SANITIZER_GO
450 static void GetTls(uptr *addr, uptr *size) {
451 #if SANITIZER_ANDROID
452   if (&__libc_get_static_tls_bounds) {
453     void *start_addr;
454     void *end_addr;
455     __libc_get_static_tls_bounds(&start_addr, &end_addr);
456     *addr = reinterpret_cast<uptr>(start_addr);
457     *size =
458         reinterpret_cast<uptr>(end_addr) - reinterpret_cast<uptr>(start_addr);
459   } else {
460     *addr = 0;
461     *size = 0;
462   }
463 #elif SANITIZER_GLIBC && defined(__x86_64__)
464   // For aarch64 and x86-64, use an O(1) approach which requires relatively
465   // precise ThreadDescriptorSize. g_tls_size was initialized in InitTlsSize.
466 #  if SANITIZER_X32
467   asm("mov %%fs:8,%0" : "=r"(*addr));
468 #  else
469   asm("mov %%fs:16,%0" : "=r"(*addr));
470 #  endif
471   *size = g_tls_size;
472   *addr -= *size;
473   *addr += ThreadDescriptorSize();
474 #elif SANITIZER_GLIBC && defined(__aarch64__)
475   *addr = reinterpret_cast<uptr>(__builtin_thread_pointer()) -
476           ThreadDescriptorSize();
477   *size = g_tls_size + ThreadDescriptorSize();
478 #elif SANITIZER_GLIBC && defined(__powerpc64__)
479   // Workaround for glibc<2.25(?). 2.27 is known to not need this.
480   uptr tp;
481   asm("addi %0,13,-0x7000" : "=r"(tp));
482   const uptr pre_tcb_size = TlsPreTcbSize();
483   *addr = tp - pre_tcb_size;
484   *size = g_tls_size + pre_tcb_size;
485 #elif SANITIZER_FREEBSD || SANITIZER_LINUX
486   uptr align;
487   GetStaticTlsBoundary(addr, size, &align);
488 #if defined(__x86_64__) || defined(__i386__) || defined(__s390__) || \
489     defined(__sparc__)
490   if (SANITIZER_GLIBC) {
491 #if defined(__x86_64__) || defined(__i386__)
492     align = Max<uptr>(align, 64);
493 #else
494     align = Max<uptr>(align, 16);
495 #endif
496   }
497   const uptr tp = RoundUpTo(*addr + *size, align);
498 
499   // lsan requires the range to additionally cover the static TLS surplus
500   // (elf/dl-tls.c defines 1664). Otherwise there may be false positives for
501   // allocations only referenced by tls in dynamically loaded modules.
502   if (SANITIZER_GLIBC)
503     *size += 1644;
504   else if (SANITIZER_FREEBSD)
505     *size += 128;  // RTLD_STATIC_TLS_EXTRA
506 
507   // Extend the range to include the thread control block. On glibc, lsan needs
508   // the range to include pthread::{specific_1stblock,specific} so that
509   // allocations only referenced by pthread_setspecific can be scanned. This may
510   // underestimate by at most TLS_TCB_ALIGN-1 bytes but it should be fine
511   // because the number of bytes after pthread::specific is larger.
512   *addr = tp - RoundUpTo(*size, align);
513   *size = tp - *addr + ThreadDescriptorSize();
514 #else
515   if (SANITIZER_GLIBC)
516     *size += 1664;
517   else if (SANITIZER_FREEBSD)
518     *size += 128;  // RTLD_STATIC_TLS_EXTRA
519 #if defined(__mips__) || defined(__powerpc64__) || SANITIZER_RISCV64
520   const uptr pre_tcb_size = TlsPreTcbSize();
521   *addr -= pre_tcb_size;
522   *size += pre_tcb_size;
523 #else
524   // arm and aarch64 reserve two words at TP, so this underestimates the range.
525   // However, this is sufficient for the purpose of finding the pointers to
526   // thread-specific data keys.
527   const uptr tcb_size = ThreadDescriptorSize();
528   *addr -= tcb_size;
529   *size += tcb_size;
530 #endif
531 #endif
532 #elif SANITIZER_NETBSD
533   struct tls_tcb * const tcb = ThreadSelfTlsTcb();
534   *addr = 0;
535   *size = 0;
536   if (tcb != 0) {
537     // Find size (p_memsz) of dlpi_tls_modid 1 (TLS block of the main program).
538     // ld.elf_so hardcodes the index 1.
539     dl_iterate_phdr(GetSizeFromHdr, size);
540 
541     if (*size != 0) {
542       // The block has been found and tcb_dtv[1] contains the base address
543       *addr = (uptr)tcb->tcb_dtv[1];
544     }
545   }
546 #elif SANITIZER_SOLARIS
547   // FIXME
548   *addr = 0;
549   *size = 0;
550 #else
551 #error "Unknown OS"
552 #endif
553 }
554 #endif
555 
556 #if !SANITIZER_GO
557 uptr GetTlsSize() {
558 #if SANITIZER_FREEBSD || SANITIZER_LINUX || SANITIZER_NETBSD || \
559     SANITIZER_SOLARIS
560   uptr addr, size;
561   GetTls(&addr, &size);
562   return size;
563 #else
564   return 0;
565 #endif
566 }
567 #endif
568 
569 void GetThreadStackAndTls(bool main, uptr *stk_addr, uptr *stk_size,
570                           uptr *tls_addr, uptr *tls_size) {
571 #if SANITIZER_GO
572   // Stub implementation for Go.
573   *stk_addr = *stk_size = *tls_addr = *tls_size = 0;
574 #else
575   GetTls(tls_addr, tls_size);
576 
577   uptr stack_top, stack_bottom;
578   GetThreadStackTopAndBottom(main, &stack_top, &stack_bottom);
579   *stk_addr = stack_bottom;
580   *stk_size = stack_top - stack_bottom;
581 
582   if (!main) {
583     // If stack and tls intersect, make them non-intersecting.
584     if (*tls_addr > *stk_addr && *tls_addr < *stk_addr + *stk_size) {
585       if (*stk_addr + *stk_size < *tls_addr + *tls_size)
586         *tls_size = *stk_addr + *stk_size - *tls_addr;
587       *stk_size = *tls_addr - *stk_addr;
588     }
589   }
590 #endif
591 }
592 
593 #if !SANITIZER_FREEBSD
594 typedef ElfW(Phdr) Elf_Phdr;
595 #elif SANITIZER_WORDSIZE == 32 && __FreeBSD_version <= 902001  // v9.2
596 #define Elf_Phdr XElf32_Phdr
597 #define dl_phdr_info xdl_phdr_info
598 #define dl_iterate_phdr(c, b) xdl_iterate_phdr((c), (b))
599 #endif  // !SANITIZER_FREEBSD
600 
601 struct DlIteratePhdrData {
602   InternalMmapVectorNoCtor<LoadedModule> *modules;
603   bool first;
604 };
605 
606 static int AddModuleSegments(const char *module_name, dl_phdr_info *info,
607                              InternalMmapVectorNoCtor<LoadedModule> *modules) {
608   if (module_name[0] == '\0')
609     return 0;
610   LoadedModule cur_module;
611   cur_module.set(module_name, info->dlpi_addr);
612   for (int i = 0; i < (int)info->dlpi_phnum; i++) {
613     const Elf_Phdr *phdr = &info->dlpi_phdr[i];
614     if (phdr->p_type == PT_LOAD) {
615       uptr cur_beg = info->dlpi_addr + phdr->p_vaddr;
616       uptr cur_end = cur_beg + phdr->p_memsz;
617       bool executable = phdr->p_flags & PF_X;
618       bool writable = phdr->p_flags & PF_W;
619       cur_module.addAddressRange(cur_beg, cur_end, executable,
620                                  writable);
621     }
622   }
623   modules->push_back(cur_module);
624   return 0;
625 }
626 
627 static int dl_iterate_phdr_cb(dl_phdr_info *info, size_t size, void *arg) {
628   DlIteratePhdrData *data = (DlIteratePhdrData *)arg;
629   if (data->first) {
630     InternalMmapVector<char> module_name(kMaxPathLength);
631     data->first = false;
632     // First module is the binary itself.
633     ReadBinaryNameCached(module_name.data(), module_name.size());
634     return AddModuleSegments(module_name.data(), info, data->modules);
635   }
636 
637   if (info->dlpi_name) {
638     InternalScopedString module_name;
639     module_name.append("%s", info->dlpi_name);
640     return AddModuleSegments(module_name.data(), info, data->modules);
641   }
642 
643   return 0;
644 }
645 
646 #if SANITIZER_ANDROID && __ANDROID_API__ < 21
647 extern "C" __attribute__((weak)) int dl_iterate_phdr(
648     int (*)(struct dl_phdr_info *, size_t, void *), void *);
649 #endif
650 
651 static bool requiresProcmaps() {
652 #if SANITIZER_ANDROID && __ANDROID_API__ <= 22
653   // Fall back to /proc/maps if dl_iterate_phdr is unavailable or broken.
654   // The runtime check allows the same library to work with
655   // both K and L (and future) Android releases.
656   return AndroidGetApiLevel() <= ANDROID_LOLLIPOP_MR1;
657 #else
658   return false;
659 #endif
660 }
661 
662 static void procmapsInit(InternalMmapVectorNoCtor<LoadedModule> *modules) {
663   MemoryMappingLayout memory_mapping(/*cache_enabled*/true);
664   memory_mapping.DumpListOfModules(modules);
665 }
666 
667 void ListOfModules::init() {
668   clearOrInit();
669   if (requiresProcmaps()) {
670     procmapsInit(&modules_);
671   } else {
672     DlIteratePhdrData data = {&modules_, true};
673     dl_iterate_phdr(dl_iterate_phdr_cb, &data);
674   }
675 }
676 
677 // When a custom loader is used, dl_iterate_phdr may not contain the full
678 // list of modules. Allow callers to fall back to using procmaps.
679 void ListOfModules::fallbackInit() {
680   if (!requiresProcmaps()) {
681     clearOrInit();
682     procmapsInit(&modules_);
683   } else {
684     clear();
685   }
686 }
687 
688 // getrusage does not give us the current RSS, only the max RSS.
689 // Still, this is better than nothing if /proc/self/statm is not available
690 // for some reason, e.g. due to a sandbox.
691 static uptr GetRSSFromGetrusage() {
692   struct rusage usage;
693   if (getrusage(RUSAGE_SELF, &usage))  // Failed, probably due to a sandbox.
694     return 0;
695   return usage.ru_maxrss << 10;  // ru_maxrss is in Kb.
696 }
697 
698 uptr GetRSS() {
699   if (!common_flags()->can_use_proc_maps_statm)
700     return GetRSSFromGetrusage();
701   fd_t fd = OpenFile("/proc/self/statm", RdOnly);
702   if (fd == kInvalidFd)
703     return GetRSSFromGetrusage();
704   char buf[64];
705   uptr len = internal_read(fd, buf, sizeof(buf) - 1);
706   internal_close(fd);
707   if ((sptr)len <= 0)
708     return 0;
709   buf[len] = 0;
710   // The format of the file is:
711   // 1084 89 69 11 0 79 0
712   // We need the second number which is RSS in pages.
713   char *pos = buf;
714   // Skip the first number.
715   while (*pos >= '0' && *pos <= '9')
716     pos++;
717   // Skip whitespaces.
718   while (!(*pos >= '0' && *pos <= '9') && *pos != 0)
719     pos++;
720   // Read the number.
721   uptr rss = 0;
722   while (*pos >= '0' && *pos <= '9')
723     rss = rss * 10 + *pos++ - '0';
724   return rss * GetPageSizeCached();
725 }
726 
727 // sysconf(_SC_NPROCESSORS_{CONF,ONLN}) cannot be used on most platforms as
728 // they allocate memory.
729 u32 GetNumberOfCPUs() {
730 #if SANITIZER_FREEBSD || SANITIZER_NETBSD
731   u32 ncpu;
732   int req[2];
733   uptr len = sizeof(ncpu);
734   req[0] = CTL_HW;
735   req[1] = HW_NCPU;
736   CHECK_EQ(internal_sysctl(req, 2, &ncpu, &len, NULL, 0), 0);
737   return ncpu;
738 #elif SANITIZER_ANDROID && !defined(CPU_COUNT) && !defined(__aarch64__)
739   // Fall back to /sys/devices/system/cpu on Android when cpu_set_t doesn't
740   // exist in sched.h. That is the case for toolchains generated with older
741   // NDKs.
742   // This code doesn't work on AArch64 because internal_getdents makes use of
743   // the 64bit getdents syscall, but cpu_set_t seems to always exist on AArch64.
744   uptr fd = internal_open("/sys/devices/system/cpu", O_RDONLY | O_DIRECTORY);
745   if (internal_iserror(fd))
746     return 0;
747   InternalMmapVector<u8> buffer(4096);
748   uptr bytes_read = buffer.size();
749   uptr n_cpus = 0;
750   u8 *d_type;
751   struct linux_dirent *entry = (struct linux_dirent *)&buffer[bytes_read];
752   while (true) {
753     if ((u8 *)entry >= &buffer[bytes_read]) {
754       bytes_read = internal_getdents(fd, (struct linux_dirent *)buffer.data(),
755                                      buffer.size());
756       if (internal_iserror(bytes_read) || !bytes_read)
757         break;
758       entry = (struct linux_dirent *)buffer.data();
759     }
760     d_type = (u8 *)entry + entry->d_reclen - 1;
761     if (d_type >= &buffer[bytes_read] ||
762         (u8 *)&entry->d_name[3] >= &buffer[bytes_read])
763       break;
764     if (entry->d_ino != 0 && *d_type == DT_DIR) {
765       if (entry->d_name[0] == 'c' && entry->d_name[1] == 'p' &&
766           entry->d_name[2] == 'u' &&
767           entry->d_name[3] >= '0' && entry->d_name[3] <= '9')
768         n_cpus++;
769     }
770     entry = (struct linux_dirent *)(((u8 *)entry) + entry->d_reclen);
771   }
772   internal_close(fd);
773   return n_cpus;
774 #elif SANITIZER_SOLARIS
775   return sysconf(_SC_NPROCESSORS_ONLN);
776 #else
777 #if defined(CPU_COUNT)
778   cpu_set_t CPUs;
779   CHECK_EQ(sched_getaffinity(0, sizeof(cpu_set_t), &CPUs), 0);
780   return CPU_COUNT(&CPUs);
781 #else
782   return 1;
783 #endif
784 #endif
785 }
786 
787 #if SANITIZER_LINUX
788 
789 #if SANITIZER_ANDROID
790 static atomic_uint8_t android_log_initialized;
791 
792 void AndroidLogInit() {
793   openlog(GetProcessName(), 0, LOG_USER);
794   atomic_store(&android_log_initialized, 1, memory_order_release);
795 }
796 
797 static bool ShouldLogAfterPrintf() {
798   return atomic_load(&android_log_initialized, memory_order_acquire);
799 }
800 
801 extern "C" SANITIZER_WEAK_ATTRIBUTE
802 int async_safe_write_log(int pri, const char* tag, const char* msg);
803 extern "C" SANITIZER_WEAK_ATTRIBUTE
804 int __android_log_write(int prio, const char* tag, const char* msg);
805 
806 // ANDROID_LOG_INFO is 4, but can't be resolved at runtime.
807 #define SANITIZER_ANDROID_LOG_INFO 4
808 
809 // async_safe_write_log is a new public version of __libc_write_log that is
810 // used behind syslog. It is preferable to syslog as it will not do any dynamic
811 // memory allocation or formatting.
812 // If the function is not available, syslog is preferred for L+ (it was broken
813 // pre-L) as __android_log_write triggers a racey behavior with the strncpy
814 // interceptor. Fallback to __android_log_write pre-L.
815 void WriteOneLineToSyslog(const char *s) {
816   if (&async_safe_write_log) {
817     async_safe_write_log(SANITIZER_ANDROID_LOG_INFO, GetProcessName(), s);
818   } else if (AndroidGetApiLevel() > ANDROID_KITKAT) {
819     syslog(LOG_INFO, "%s", s);
820   } else {
821     CHECK(&__android_log_write);
822     __android_log_write(SANITIZER_ANDROID_LOG_INFO, nullptr, s);
823   }
824 }
825 
826 extern "C" SANITIZER_WEAK_ATTRIBUTE
827 void android_set_abort_message(const char *);
828 
829 void SetAbortMessage(const char *str) {
830   if (&android_set_abort_message)
831     android_set_abort_message(str);
832 }
833 #else
834 void AndroidLogInit() {}
835 
836 static bool ShouldLogAfterPrintf() { return true; }
837 
838 void WriteOneLineToSyslog(const char *s) { syslog(LOG_INFO, "%s", s); }
839 
840 void SetAbortMessage(const char *str) {}
841 #endif  // SANITIZER_ANDROID
842 
843 void LogMessageOnPrintf(const char *str) {
844   if (common_flags()->log_to_syslog && ShouldLogAfterPrintf())
845     WriteToSyslog(str);
846 }
847 
848 #endif  // SANITIZER_LINUX
849 
850 #if SANITIZER_GLIBC && !SANITIZER_GO
851 // glibc crashes when using clock_gettime from a preinit_array function as the
852 // vDSO function pointers haven't been initialized yet. __progname is
853 // initialized after the vDSO function pointers, so if it exists, is not null
854 // and is not empty, we can use clock_gettime.
855 extern "C" SANITIZER_WEAK_ATTRIBUTE char *__progname;
856 inline bool CanUseVDSO() { return &__progname && __progname && *__progname; }
857 
858 // MonotonicNanoTime is a timing function that can leverage the vDSO by calling
859 // clock_gettime. real_clock_gettime only exists if clock_gettime is
860 // intercepted, so define it weakly and use it if available.
861 extern "C" SANITIZER_WEAK_ATTRIBUTE
862 int real_clock_gettime(u32 clk_id, void *tp);
863 u64 MonotonicNanoTime() {
864   timespec ts;
865   if (CanUseVDSO()) {
866     if (&real_clock_gettime)
867       real_clock_gettime(CLOCK_MONOTONIC, &ts);
868     else
869       clock_gettime(CLOCK_MONOTONIC, &ts);
870   } else {
871     internal_clock_gettime(CLOCK_MONOTONIC, &ts);
872   }
873   return (u64)ts.tv_sec * (1000ULL * 1000 * 1000) + ts.tv_nsec;
874 }
875 #else
876 // Non-glibc & Go always use the regular function.
877 u64 MonotonicNanoTime() {
878   timespec ts;
879   clock_gettime(CLOCK_MONOTONIC, &ts);
880   return (u64)ts.tv_sec * (1000ULL * 1000 * 1000) + ts.tv_nsec;
881 }
882 #endif  // SANITIZER_GLIBC && !SANITIZER_GO
883 
884 void ReExec() {
885   const char *pathname = "/proc/self/exe";
886 
887 #if SANITIZER_NETBSD
888   static const int name[] = {
889       CTL_KERN,
890       KERN_PROC_ARGS,
891       -1,
892       KERN_PROC_PATHNAME,
893   };
894   char path[400];
895   uptr len;
896 
897   len = sizeof(path);
898   if (internal_sysctl(name, ARRAY_SIZE(name), path, &len, NULL, 0) != -1)
899     pathname = path;
900 #elif SANITIZER_SOLARIS
901   pathname = getexecname();
902   CHECK_NE(pathname, NULL);
903 #elif SANITIZER_USE_GETAUXVAL
904   // Calling execve with /proc/self/exe sets that as $EXEC_ORIGIN. Binaries that
905   // rely on that will fail to load shared libraries. Query AT_EXECFN instead.
906   pathname = reinterpret_cast<const char *>(getauxval(AT_EXECFN));
907 #endif
908 
909   uptr rv = internal_execve(pathname, GetArgv(), GetEnviron());
910   int rverrno;
911   CHECK_EQ(internal_iserror(rv, &rverrno), true);
912   Printf("execve failed, errno %d\n", rverrno);
913   Die();
914 }
915 
916 void UnmapFromTo(uptr from, uptr to) {
917   if (to == from)
918     return;
919   CHECK(to >= from);
920   uptr res = internal_munmap(reinterpret_cast<void *>(from), to - from);
921   if (UNLIKELY(internal_iserror(res))) {
922     Report("ERROR: %s failed to unmap 0x%zx (%zd) bytes at address %p\n",
923            SanitizerToolName, to - from, to - from, (void *)from);
924     CHECK("unable to unmap" && 0);
925   }
926 }
927 
928 uptr MapDynamicShadow(uptr shadow_size_bytes, uptr shadow_scale,
929                       uptr min_shadow_base_alignment,
930                       UNUSED uptr &high_mem_end) {
931   const uptr granularity = GetMmapGranularity();
932   const uptr alignment =
933       Max<uptr>(granularity << shadow_scale, 1ULL << min_shadow_base_alignment);
934   const uptr left_padding =
935       Max<uptr>(granularity, 1ULL << min_shadow_base_alignment);
936 
937   const uptr shadow_size = RoundUpTo(shadow_size_bytes, granularity);
938   const uptr map_size = shadow_size + left_padding + alignment;
939 
940   const uptr map_start = (uptr)MmapNoAccess(map_size);
941   CHECK_NE(map_start, ~(uptr)0);
942 
943   const uptr shadow_start = RoundUpTo(map_start + left_padding, alignment);
944 
945   UnmapFromTo(map_start, shadow_start - left_padding);
946   UnmapFromTo(shadow_start + shadow_size, map_start + map_size);
947 
948   return shadow_start;
949 }
950 
951 static uptr MmapSharedNoReserve(uptr addr, uptr size) {
952   return internal_mmap(
953       reinterpret_cast<void *>(addr), size, PROT_READ | PROT_WRITE,
954       MAP_FIXED | MAP_SHARED | MAP_ANONYMOUS | MAP_NORESERVE, -1, 0);
955 }
956 
957 static uptr MremapCreateAlias(uptr base_addr, uptr alias_addr,
958                               uptr alias_size) {
959 #if SANITIZER_LINUX
960   return internal_mremap(reinterpret_cast<void *>(base_addr), 0, alias_size,
961                          MREMAP_MAYMOVE | MREMAP_FIXED,
962                          reinterpret_cast<void *>(alias_addr));
963 #else
964   CHECK(false && "mremap is not supported outside of Linux");
965   return 0;
966 #endif
967 }
968 
969 static void CreateAliases(uptr start_addr, uptr alias_size, uptr num_aliases) {
970   uptr total_size = alias_size * num_aliases;
971   uptr mapped = MmapSharedNoReserve(start_addr, total_size);
972   CHECK_EQ(mapped, start_addr);
973 
974   for (uptr i = 1; i < num_aliases; ++i) {
975     uptr alias_addr = start_addr + i * alias_size;
976     CHECK_EQ(MremapCreateAlias(start_addr, alias_addr, alias_size), alias_addr);
977   }
978 }
979 
980 uptr MapDynamicShadowAndAliases(uptr shadow_size, uptr alias_size,
981                                 uptr num_aliases, uptr ring_buffer_size) {
982   CHECK_EQ(alias_size & (alias_size - 1), 0);
983   CHECK_EQ(num_aliases & (num_aliases - 1), 0);
984   CHECK_EQ(ring_buffer_size & (ring_buffer_size - 1), 0);
985 
986   const uptr granularity = GetMmapGranularity();
987   shadow_size = RoundUpTo(shadow_size, granularity);
988   CHECK_EQ(shadow_size & (shadow_size - 1), 0);
989 
990   const uptr alias_region_size = alias_size * num_aliases;
991   const uptr alignment =
992       2 * Max(Max(shadow_size, alias_region_size), ring_buffer_size);
993   const uptr left_padding = ring_buffer_size;
994 
995   const uptr right_size = alignment;
996   const uptr map_size = left_padding + 2 * alignment;
997 
998   const uptr map_start = reinterpret_cast<uptr>(MmapNoAccess(map_size));
999   CHECK_NE(map_start, static_cast<uptr>(-1));
1000   const uptr right_start = RoundUpTo(map_start + left_padding, alignment);
1001 
1002   UnmapFromTo(map_start, right_start - left_padding);
1003   UnmapFromTo(right_start + right_size, map_start + map_size);
1004 
1005   CreateAliases(right_start + right_size / 2, alias_size, num_aliases);
1006 
1007   return right_start;
1008 }
1009 
1010 void InitializePlatformCommonFlags(CommonFlags *cf) {
1011 #if SANITIZER_ANDROID
1012   if (&__libc_get_static_tls_bounds == nullptr)
1013     cf->detect_leaks = false;
1014 #endif
1015 }
1016 
1017 } // namespace __sanitizer
1018 
1019 #endif
1020