xref: /aosp_15_r20/external/angle/third_party/abseil-cpp/absl/debugging/symbolize_test.cc (revision 8975f5c5ed3d1c378011245431ada316dfb6f244)
1 // Copyright 2018 The Abseil Authors.
2 //
3 // Licensed under the Apache License, Version 2.0 (the "License");
4 // you may not use this file except in compliance with the License.
5 // You may obtain a copy of the License at
6 //
7 //      https://www.apache.org/licenses/LICENSE-2.0
8 //
9 // Unless required by applicable law or agreed to in writing, software
10 // distributed under the License is distributed on an "AS IS" BASIS,
11 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 // See the License for the specific language governing permissions and
13 // limitations under the License.
14 
15 #include "absl/debugging/symbolize.h"
16 
17 #ifdef __EMSCRIPTEN__
18 #include <emscripten.h>
19 #endif
20 
21 #ifndef _WIN32
22 #include <fcntl.h>
23 #include <sys/mman.h>
24 #endif
25 
26 #include <cstring>
27 #include <iostream>
28 #include <memory>
29 
30 #include "gmock/gmock.h"
31 #include "gtest/gtest.h"
32 #include "absl/base/attributes.h"
33 #include "absl/base/casts.h"
34 #include "absl/base/config.h"
35 #include "absl/base/internal/per_thread_tls.h"
36 #include "absl/base/optimization.h"
37 #include "absl/debugging/internal/stack_consumption.h"
38 #include "absl/log/check.h"
39 #include "absl/log/log.h"
40 #include "absl/memory/memory.h"
41 #include "absl/strings/string_view.h"
42 
43 #if defined(MAP_ANON) && !defined(MAP_ANONYMOUS)
44 #define MAP_ANONYMOUS MAP_ANON
45 #endif
46 
47 using testing::Contains;
48 
49 #ifdef _WIN32
50 #define ABSL_SYMBOLIZE_TEST_NOINLINE __declspec(noinline)
51 #else
52 #define ABSL_SYMBOLIZE_TEST_NOINLINE ABSL_ATTRIBUTE_NOINLINE
53 #endif
54 
55 // Functions to symbolize. Use C linkage to avoid mangled names.
56 extern "C" {
nonstatic_func()57 ABSL_SYMBOLIZE_TEST_NOINLINE void nonstatic_func() {
58   // The next line makes this a unique function to prevent the compiler from
59   // folding identical functions together.
60   volatile int x = __LINE__;
61   static_cast<void>(x);
62   ABSL_BLOCK_TAIL_CALL_OPTIMIZATION();
63 }
64 
static_func()65 ABSL_SYMBOLIZE_TEST_NOINLINE static void static_func() {
66   // The next line makes this a unique function to prevent the compiler from
67   // folding identical functions together.
68   volatile int x = __LINE__;
69   static_cast<void>(x);
70   ABSL_BLOCK_TAIL_CALL_OPTIMIZATION();
71 }
72 }  // extern "C"
73 
74 struct Foo {
75   static void func(int x);
76 };
77 
78 // A C++ method that should have a mangled name.
func(int)79 ABSL_SYMBOLIZE_TEST_NOINLINE void Foo::func(int) {
80   // The next line makes this a unique function to prevent the compiler from
81   // folding identical functions together.
82   volatile int x = __LINE__;
83   static_cast<void>(x);
84   ABSL_BLOCK_TAIL_CALL_OPTIMIZATION();
85 }
86 
87 // Create functions that will remain in different text sections in the
88 // final binary when linker option "-z,keep-text-section-prefix" is used.
unlikely_func()89 int ABSL_ATTRIBUTE_SECTION_VARIABLE(.text.unlikely) unlikely_func() {
90   return 0;
91 }
92 
hot_func()93 int ABSL_ATTRIBUTE_SECTION_VARIABLE(.text.hot) hot_func() { return 0; }
94 
startup_func()95 int ABSL_ATTRIBUTE_SECTION_VARIABLE(.text.startup) startup_func() { return 0; }
96 
exit_func()97 int ABSL_ATTRIBUTE_SECTION_VARIABLE(.text.exit) exit_func() { return 0; }
98 
regular_func()99 int /*ABSL_ATTRIBUTE_SECTION_VARIABLE(.text)*/ regular_func() { return 0; }
100 
101 // Thread-local data may confuse the symbolizer, ensure that it does not.
102 // Variable sizes and order are important.
103 #if ABSL_PER_THREAD_TLS
104 static ABSL_PER_THREAD_TLS_KEYWORD char symbolize_test_thread_small[1];
105 static ABSL_PER_THREAD_TLS_KEYWORD char
106     symbolize_test_thread_big[2 * 1024 * 1024];
107 #endif
108 
109 #if !defined(__EMSCRIPTEN__)
GetPCFromFnPtr(void * ptr)110 static void *GetPCFromFnPtr(void *ptr) { return ptr; }
111 
112 // Used below to hopefully inhibit some compiler/linker optimizations
113 // that may remove kHpageTextPadding, kPadding0, and kPadding1 from
114 // the binary.
115 static volatile bool volatile_bool = false;
116 
117 // Force the binary to be large enough that a THP .text remap will succeed.
118 static constexpr size_t kHpageSize = 1 << 21;
119 const char kHpageTextPadding[kHpageSize * 4] ABSL_ATTRIBUTE_SECTION_VARIABLE(
120         .text) = "";
121 
122 #else
GetPCFromFnPtr(void * ptr)123 static void *GetPCFromFnPtr(void *ptr) {
124   return EM_ASM_PTR(
125       { return wasmOffsetConverter.convert(wasmTable.get($0).name, 0); }, ptr);
126 }
127 
128 #endif  // !defined(__EMSCRIPTEN__)
129 
130 static char try_symbolize_buffer[4096];
131 
132 // A wrapper function for absl::Symbolize() to make the unit test simple.  The
133 // limit must be < sizeof(try_symbolize_buffer).  Returns null if
134 // absl::Symbolize() returns false, otherwise returns try_symbolize_buffer with
135 // the result of absl::Symbolize().
TrySymbolizeWithLimit(void * pc,int limit)136 static const char *TrySymbolizeWithLimit(void *pc, int limit) {
137   CHECK_LE(limit, sizeof(try_symbolize_buffer))
138       << "try_symbolize_buffer is too small";
139 
140   // Use the heap to facilitate heap and buffer sanitizer tools.
141   auto heap_buffer = absl::make_unique<char[]>(sizeof(try_symbolize_buffer));
142   bool found = absl::Symbolize(pc, heap_buffer.get(), limit);
143   if (found) {
144     CHECK_LT(static_cast<int>(
145                  strnlen(heap_buffer.get(), static_cast<size_t>(limit))),
146              limit)
147         << "absl::Symbolize() did not properly terminate the string";
148     strncpy(try_symbolize_buffer, heap_buffer.get(),
149             sizeof(try_symbolize_buffer) - 1);
150     try_symbolize_buffer[sizeof(try_symbolize_buffer) - 1] = '\0';
151   }
152 
153   return found ? try_symbolize_buffer : nullptr;
154 }
155 
156 // A wrapper for TrySymbolizeWithLimit(), with a large limit.
TrySymbolize(void * pc)157 static const char *TrySymbolize(void *pc) {
158   return TrySymbolizeWithLimit(pc, sizeof(try_symbolize_buffer));
159 }
160 
161 #if defined(ABSL_INTERNAL_HAVE_ELF_SYMBOLIZE) ||    \
162     defined(ABSL_INTERNAL_HAVE_DARWIN_SYMBOLIZE) || \
163     defined(ABSL_INTERNAL_HAVE_EMSCRIPTEN_SYMBOLIZE)
164 
165 // Test with a return address.
TestWithReturnAddress()166 void ABSL_ATTRIBUTE_NOINLINE TestWithReturnAddress() {
167 #if defined(ABSL_HAVE_ATTRIBUTE_NOINLINE)
168   void *return_address = __builtin_return_address(0);
169   const char *symbol = TrySymbolize(return_address);
170   ASSERT_NE(symbol, nullptr) << "TestWithReturnAddress failed";
171   EXPECT_STREQ(symbol, "main") << "TestWithReturnAddress failed";
172 #endif
173 }
174 
TEST(Symbolize,Cached)175 TEST(Symbolize, Cached) {
176   // Compilers should give us pointers to them.
177   EXPECT_STREQ("nonstatic_func",
178                TrySymbolize(GetPCFromFnPtr((void *)(&nonstatic_func))));
179   // The name of an internal linkage symbol is not specified; allow either a
180   // mangled or an unmangled name here.
181   const char *static_func_symbol =
182       TrySymbolize(GetPCFromFnPtr((void *)(&static_func)));
183   EXPECT_TRUE(strcmp("static_func", static_func_symbol) == 0 ||
184               strcmp("static_func()", static_func_symbol) == 0);
185 
186   EXPECT_TRUE(nullptr == TrySymbolize(nullptr));
187 }
188 
TEST(Symbolize,Truncation)189 TEST(Symbolize, Truncation) {
190   constexpr char kNonStaticFunc[] = "nonstatic_func";
191   EXPECT_STREQ("nonstatic_func",
192                TrySymbolizeWithLimit(GetPCFromFnPtr((void *)(&nonstatic_func)),
193                                      strlen(kNonStaticFunc) + 1));
194   EXPECT_STREQ("nonstatic_...",
195                TrySymbolizeWithLimit(GetPCFromFnPtr((void *)(&nonstatic_func)),
196                                      strlen(kNonStaticFunc) + 0));
197   EXPECT_STREQ("nonstatic...",
198                TrySymbolizeWithLimit(GetPCFromFnPtr((void *)(&nonstatic_func)),
199                                      strlen(kNonStaticFunc) - 1));
200   EXPECT_STREQ("n...", TrySymbolizeWithLimit(
201                            GetPCFromFnPtr((void *)(&nonstatic_func)), 5));
202   EXPECT_STREQ("...", TrySymbolizeWithLimit(
203                           GetPCFromFnPtr((void *)(&nonstatic_func)), 4));
204   EXPECT_STREQ("..", TrySymbolizeWithLimit(
205                          GetPCFromFnPtr((void *)(&nonstatic_func)), 3));
206   EXPECT_STREQ(
207       ".", TrySymbolizeWithLimit(GetPCFromFnPtr((void *)(&nonstatic_func)), 2));
208   EXPECT_STREQ(
209       "", TrySymbolizeWithLimit(GetPCFromFnPtr((void *)(&nonstatic_func)), 1));
210   EXPECT_EQ(nullptr, TrySymbolizeWithLimit(
211                          GetPCFromFnPtr((void *)(&nonstatic_func)), 0));
212 }
213 
TEST(Symbolize,SymbolizeWithDemangling)214 TEST(Symbolize, SymbolizeWithDemangling) {
215   Foo::func(100);
216 #ifdef __EMSCRIPTEN__
217   // Emscripten's online symbolizer is more precise with arguments.
218   EXPECT_STREQ("Foo::func(int)",
219                TrySymbolize(GetPCFromFnPtr((void *)(&Foo::func))));
220 #else
221   EXPECT_STREQ("Foo::func()",
222                TrySymbolize(GetPCFromFnPtr((void *)(&Foo::func))));
223 #endif
224 }
225 
TEST(Symbolize,SymbolizeSplitTextSections)226 TEST(Symbolize, SymbolizeSplitTextSections) {
227   EXPECT_STREQ("unlikely_func()",
228                TrySymbolize(GetPCFromFnPtr((void *)(&unlikely_func))));
229   EXPECT_STREQ("hot_func()", TrySymbolize(GetPCFromFnPtr((void *)(&hot_func))));
230   EXPECT_STREQ("startup_func()",
231                TrySymbolize(GetPCFromFnPtr((void *)(&startup_func))));
232   EXPECT_STREQ("exit_func()",
233                TrySymbolize(GetPCFromFnPtr((void *)(&exit_func))));
234   EXPECT_STREQ("regular_func()",
235                TrySymbolize(GetPCFromFnPtr((void *)(&regular_func))));
236 }
237 
238 // Tests that verify that Symbolize stack footprint is within some limit.
239 #ifdef ABSL_INTERNAL_HAVE_DEBUGGING_STACK_CONSUMPTION
240 
241 static void *g_pc_to_symbolize;
242 static char g_symbolize_buffer[4096];
243 static char *g_symbolize_result;
244 
SymbolizeSignalHandler(int signo)245 static void SymbolizeSignalHandler(int signo) {
246   if (absl::Symbolize(g_pc_to_symbolize, g_symbolize_buffer,
247                       sizeof(g_symbolize_buffer))) {
248     g_symbolize_result = g_symbolize_buffer;
249   } else {
250     g_symbolize_result = nullptr;
251   }
252 }
253 
254 // Call Symbolize and figure out the stack footprint of this call.
SymbolizeStackConsumption(void * pc,int * stack_consumed)255 static const char *SymbolizeStackConsumption(void *pc, int *stack_consumed) {
256   g_pc_to_symbolize = pc;
257   *stack_consumed = absl::debugging_internal::GetSignalHandlerStackConsumption(
258       SymbolizeSignalHandler);
259   return g_symbolize_result;
260 }
261 
GetStackConsumptionUpperLimit()262 static int GetStackConsumptionUpperLimit() {
263   // Symbolize stack consumption should be within 2kB.
264   int stack_consumption_upper_limit = 2048;
265 #if defined(ABSL_HAVE_ADDRESS_SANITIZER) || \
266     defined(ABSL_HAVE_MEMORY_SANITIZER) || defined(ABSL_HAVE_THREAD_SANITIZER)
267   // Account for sanitizer instrumentation requiring additional stack space.
268   stack_consumption_upper_limit *= 5;
269 #endif
270   return stack_consumption_upper_limit;
271 }
272 
TEST(Symbolize,SymbolizeStackConsumption)273 TEST(Symbolize, SymbolizeStackConsumption) {
274   int stack_consumed = 0;
275 
276   const char *symbol =
277       SymbolizeStackConsumption((void *)(&nonstatic_func), &stack_consumed);
278   EXPECT_STREQ("nonstatic_func", symbol);
279   EXPECT_GT(stack_consumed, 0);
280   EXPECT_LT(stack_consumed, GetStackConsumptionUpperLimit());
281 
282   // The name of an internal linkage symbol is not specified; allow either a
283   // mangled or an unmangled name here.
284   symbol = SymbolizeStackConsumption((void *)(&static_func), &stack_consumed);
285   EXPECT_TRUE(strcmp("static_func", symbol) == 0 ||
286               strcmp("static_func()", symbol) == 0);
287   EXPECT_GT(stack_consumed, 0);
288   EXPECT_LT(stack_consumed, GetStackConsumptionUpperLimit());
289 }
290 
TEST(Symbolize,SymbolizeWithDemanglingStackConsumption)291 TEST(Symbolize, SymbolizeWithDemanglingStackConsumption) {
292   Foo::func(100);
293   int stack_consumed = 0;
294 
295   const char *symbol =
296       SymbolizeStackConsumption((void *)(&Foo::func), &stack_consumed);
297 
298   EXPECT_STREQ("Foo::func()", symbol);
299   EXPECT_GT(stack_consumed, 0);
300   EXPECT_LT(stack_consumed, GetStackConsumptionUpperLimit());
301 }
302 
303 #endif  // ABSL_INTERNAL_HAVE_DEBUGGING_STACK_CONSUMPTION
304 
305 #if !defined(ABSL_INTERNAL_HAVE_DARWIN_SYMBOLIZE) && \
306     !defined(ABSL_INTERNAL_HAVE_EMSCRIPTEN_SYMBOLIZE)
307 // Use a 64K page size for PPC.
308 const size_t kPageSize = 64 << 10;
309 // We place a read-only symbols into the .text section and verify that we can
310 // symbolize them and other symbols after remapping them.
311 const char kPadding0[kPageSize * 4] ABSL_ATTRIBUTE_SECTION_VARIABLE(.text) = "";
312 const char kPadding1[kPageSize * 4] ABSL_ATTRIBUTE_SECTION_VARIABLE(.text) = "";
313 
FilterElfHeader(struct dl_phdr_info * info,size_t size,void * data)314 static int FilterElfHeader(struct dl_phdr_info *info, size_t size, void *data) {
315   for (int i = 0; i < info->dlpi_phnum; i++) {
316     if (info->dlpi_phdr[i].p_type == PT_LOAD &&
317         info->dlpi_phdr[i].p_flags == (PF_R | PF_X)) {
318       const void *const vaddr =
319           absl::bit_cast<void *>(info->dlpi_addr + info->dlpi_phdr[i].p_vaddr);
320       const auto segsize = info->dlpi_phdr[i].p_memsz;
321 
322       const char *self_exe;
323       if (info->dlpi_name != nullptr && info->dlpi_name[0] != '\0') {
324         self_exe = info->dlpi_name;
325       } else {
326         self_exe = "/proc/self/exe";
327       }
328 
329       absl::debugging_internal::RegisterFileMappingHint(
330           vaddr, reinterpret_cast<const char *>(vaddr) + segsize,
331           info->dlpi_phdr[i].p_offset, self_exe);
332 
333       return 1;
334     }
335   }
336 
337   return 1;
338 }
339 
TEST(Symbolize,SymbolizeWithMultipleMaps)340 TEST(Symbolize, SymbolizeWithMultipleMaps) {
341   // Force kPadding0 and kPadding1 to be linked in.
342   if (volatile_bool) {
343     LOG(INFO) << kPadding0;
344     LOG(INFO) << kPadding1;
345   }
346 
347   // Verify we can symbolize everything.
348   char buf[512];
349   memset(buf, 0, sizeof(buf));
350   absl::Symbolize(kPadding0, buf, sizeof(buf));
351   EXPECT_STREQ("kPadding0", buf);
352 
353   memset(buf, 0, sizeof(buf));
354   absl::Symbolize(kPadding1, buf, sizeof(buf));
355   EXPECT_STREQ("kPadding1", buf);
356 
357   // Specify a hint for the executable segment.
358   dl_iterate_phdr(FilterElfHeader, nullptr);
359 
360   // Reload at least one page out of kPadding0, kPadding1
361   const char *ptrs[] = {kPadding0, kPadding1};
362 
363   for (const char *ptr : ptrs) {
364     const int kMapFlags = MAP_ANONYMOUS | MAP_PRIVATE;
365     void *addr = mmap(nullptr, kPageSize, PROT_READ, kMapFlags, 0, 0);
366     ASSERT_NE(addr, MAP_FAILED);
367 
368     // kPadding[0-1] is full of zeroes, so we can remap anywhere within it, but
369     // we ensure there is at least a full page of padding.
370     void *remapped = reinterpret_cast<void *>(
371         reinterpret_cast<uintptr_t>(ptr + kPageSize) & ~(kPageSize - 1ULL));
372 
373     const int kMremapFlags = (MREMAP_MAYMOVE | MREMAP_FIXED);
374     void *ret = mremap(addr, kPageSize, kPageSize, kMremapFlags, remapped);
375     ASSERT_NE(ret, MAP_FAILED);
376   }
377 
378   // Invalidate the symbolization cache so we are forced to rely on the hint.
379   absl::Symbolize(nullptr, buf, sizeof(buf));
380 
381   // Verify we can still symbolize.
382   const char *expected[] = {"kPadding0", "kPadding1"};
383   const size_t offsets[] = {0, kPageSize, 2 * kPageSize, 3 * kPageSize};
384 
385   for (int i = 0; i < 2; i++) {
386     for (size_t offset : offsets) {
387       memset(buf, 0, sizeof(buf));
388       absl::Symbolize(ptrs[i] + offset, buf, sizeof(buf));
389       EXPECT_STREQ(expected[i], buf);
390     }
391   }
392 }
393 
394 // Appends string(*args->arg) to args->symbol_buf.
DummySymbolDecorator(const absl::debugging_internal::SymbolDecoratorArgs * args)395 static void DummySymbolDecorator(
396     const absl::debugging_internal::SymbolDecoratorArgs *args) {
397   std::string *message = static_cast<std::string *>(args->arg);
398   strncat(args->symbol_buf, message->c_str(),
399           args->symbol_buf_size - strlen(args->symbol_buf) - 1);
400 }
401 
TEST(Symbolize,InstallAndRemoveSymbolDecorators)402 TEST(Symbolize, InstallAndRemoveSymbolDecorators) {
403   int ticket_a;
404   std::string a_message("a");
405   EXPECT_GE(ticket_a = absl::debugging_internal::InstallSymbolDecorator(
406                 DummySymbolDecorator, &a_message),
407             0);
408 
409   int ticket_b;
410   std::string b_message("b");
411   EXPECT_GE(ticket_b = absl::debugging_internal::InstallSymbolDecorator(
412                 DummySymbolDecorator, &b_message),
413             0);
414 
415   int ticket_c;
416   std::string c_message("c");
417   EXPECT_GE(ticket_c = absl::debugging_internal::InstallSymbolDecorator(
418                 DummySymbolDecorator, &c_message),
419             0);
420 
421   // Use addresses 4 and 8 here to ensure that we always use valid addresses
422   // even on systems that require instructions to be 32-bit aligned.
423   char *address = reinterpret_cast<char *>(4);
424   EXPECT_STREQ("abc", TrySymbolize(address));
425 
426   EXPECT_TRUE(absl::debugging_internal::RemoveSymbolDecorator(ticket_b));
427 
428   EXPECT_STREQ("ac", TrySymbolize(address + 4));
429 
430   // Cleanup: remove all remaining decorators so other stack traces don't
431   // get mystery "ac" decoration.
432   EXPECT_TRUE(absl::debugging_internal::RemoveSymbolDecorator(ticket_a));
433   EXPECT_TRUE(absl::debugging_internal::RemoveSymbolDecorator(ticket_c));
434 }
435 
436 // Some versions of Clang with optimizations enabled seem to be able
437 // to optimize away the .data section if no variables live in the
438 // section. This variable should get placed in the .data section, and
439 // the test below checks for the existence of a .data section.
440 static int in_data_section = 1;
441 
TEST(Symbolize,ForEachSection)442 TEST(Symbolize, ForEachSection) {
443   int fd = TEMP_FAILURE_RETRY(open("/proc/self/exe", O_RDONLY));
444   ASSERT_NE(fd, -1);
445 
446   std::vector<std::string> sections;
447   ASSERT_TRUE(absl::debugging_internal::ForEachSection(
448       fd, [&sections](const absl::string_view name, const ElfW(Shdr) &) {
449         sections.emplace_back(name);
450         return true;
451       }));
452 
453   // Check for the presence of common section names.
454   EXPECT_THAT(sections, Contains(".text"));
455   EXPECT_THAT(sections, Contains(".rodata"));
456   EXPECT_THAT(sections, Contains(".bss"));
457   ++in_data_section;
458   EXPECT_THAT(sections, Contains(".data"));
459 
460   close(fd);
461 }
462 #endif  // !ABSL_INTERNAL_HAVE_DARWIN_SYMBOLIZE &&
463         // !ABSL_INTERNAL_HAVE_EMSCRIPTEN_SYMBOLIZE
464 
465 // x86 specific tests.  Uses some inline assembler.
466 extern "C" {
inline_func()467 inline void *ABSL_ATTRIBUTE_ALWAYS_INLINE inline_func() {
468   void *pc = nullptr;
469 #if defined(__i386__)
470   __asm__ __volatile__("call 1f;\n 1: pop %[PC]" : [PC] "=r"(pc));
471 #elif defined(__x86_64__)
472   __asm__ __volatile__("leaq 0(%%rip),%[PC];\n" : [PC] "=r"(pc));
473 #endif
474   return pc;
475 }
476 
non_inline_func()477 void *ABSL_ATTRIBUTE_NOINLINE non_inline_func() {
478   void *pc = nullptr;
479 #if defined(__i386__)
480   __asm__ __volatile__("call 1f;\n 1: pop %[PC]" : [PC] "=r"(pc));
481 #elif defined(__x86_64__)
482   __asm__ __volatile__("leaq 0(%%rip),%[PC];\n" : [PC] "=r"(pc));
483 #endif
484   return pc;
485 }
486 
TestWithPCInsideNonInlineFunction()487 void ABSL_ATTRIBUTE_NOINLINE TestWithPCInsideNonInlineFunction() {
488 #if defined(ABSL_HAVE_ATTRIBUTE_NOINLINE) && \
489     (defined(__i386__) || defined(__x86_64__))
490   void *pc = non_inline_func();
491   const char *symbol = TrySymbolize(pc);
492   ASSERT_NE(symbol, nullptr) << "TestWithPCInsideNonInlineFunction failed";
493   EXPECT_STREQ(symbol, "non_inline_func")
494       << "TestWithPCInsideNonInlineFunction failed";
495 #endif
496 }
497 
TestWithPCInsideInlineFunction()498 void ABSL_ATTRIBUTE_NOINLINE TestWithPCInsideInlineFunction() {
499 #if defined(ABSL_HAVE_ATTRIBUTE_ALWAYS_INLINE) && \
500     (defined(__i386__) || defined(__x86_64__))
501   void *pc = inline_func();  // Must be inlined.
502   const char *symbol = TrySymbolize(pc);
503   ASSERT_NE(symbol, nullptr) << "TestWithPCInsideInlineFunction failed";
504   EXPECT_STREQ(symbol, __FUNCTION__) << "TestWithPCInsideInlineFunction failed";
505 #endif
506 }
507 }
508 
509 #if defined(__arm__) && ABSL_HAVE_ATTRIBUTE(target) && \
510     ((__ARM_ARCH >= 7) || !defined(__ARM_PCS_VFP))
511 // Test that we correctly identify bounds of Thumb functions on ARM.
512 //
513 // Thumb functions have the lowest-order bit set in their addresses in the ELF
514 // symbol table. This requires some extra logic to properly compute function
515 // bounds. To test this logic, nudge a Thumb function right up against an ARM
516 // function and try to symbolize the ARM function.
517 //
518 // A naive implementation will simply use the Thumb function's entry point as
519 // written in the symbol table and will therefore treat the Thumb function as
520 // extending one byte further in the instruction stream than it actually does.
521 // When asked to symbolize the start of the ARM function, it will identify an
522 // overlap between the Thumb and ARM functions, and it will return the name of
523 // the Thumb function.
524 //
525 // A correct implementation, on the other hand, will null out the lowest-order
526 // bit in the Thumb function's entry point. It will correctly compute the end of
527 // the Thumb function, it will find no overlap between the Thumb and ARM
528 // functions, and it will return the name of the ARM function.
529 //
530 // Unfortunately we cannot perform this test on armv6 or lower systems that use
531 // the hard float ABI because gcc refuses to compile thumb functions on such
532 // systems with a "sorry, unimplemented: Thumb-1 hard-float VFP ABI" error.
533 
ArmThumbOverlapThumb(int x)534 __attribute__((target("thumb"))) int ArmThumbOverlapThumb(int x) {
535   return x * x * x;
536 }
537 
ArmThumbOverlapArm(int x)538 __attribute__((target("arm"))) int ArmThumbOverlapArm(int x) {
539   return x * x * x;
540 }
541 
TestArmThumbOverlap()542 void ABSL_ATTRIBUTE_NOINLINE TestArmThumbOverlap() {
543 #if defined(ABSL_HAVE_ATTRIBUTE_NOINLINE)
544   const char *symbol = TrySymbolize((void *)&ArmThumbOverlapArm);
545   ASSERT_NE(symbol, nullptr) << "TestArmThumbOverlap failed";
546   EXPECT_STREQ("ArmThumbOverlapArm()", symbol) << "TestArmThumbOverlap failed";
547 #endif
548 }
549 
550 #endif  // defined(__arm__) && ABSL_HAVE_ATTRIBUTE(target) && ((__ARM_ARCH >= 7)
551         // || !defined(__ARM_PCS_VFP))
552 
553 #elif defined(_WIN32)
554 #if !defined(ABSL_CONSUME_DLL)
555 
TEST(Symbolize,Basics)556 TEST(Symbolize, Basics) {
557   EXPECT_STREQ("nonstatic_func", TrySymbolize((void *)(&nonstatic_func)));
558 
559   // The name of an internal linkage symbol is not specified; allow either a
560   // mangled or an unmangled name here.
561   const char *static_func_symbol = TrySymbolize((void *)(&static_func));
562   ASSERT_TRUE(static_func_symbol != nullptr);
563   EXPECT_TRUE(strstr(static_func_symbol, "static_func") != nullptr);
564 
565   EXPECT_TRUE(nullptr == TrySymbolize(nullptr));
566 }
567 
TEST(Symbolize,Truncation)568 TEST(Symbolize, Truncation) {
569   constexpr char kNonStaticFunc[] = "nonstatic_func";
570   EXPECT_STREQ("nonstatic_func",
571                TrySymbolizeWithLimit((void *)(&nonstatic_func),
572                                      strlen(kNonStaticFunc) + 1));
573   EXPECT_STREQ("nonstatic_...",
574                TrySymbolizeWithLimit((void *)(&nonstatic_func),
575                                      strlen(kNonStaticFunc) + 0));
576   EXPECT_STREQ("nonstatic...",
577                TrySymbolizeWithLimit((void *)(&nonstatic_func),
578                                      strlen(kNonStaticFunc) - 1));
579   EXPECT_STREQ("n...", TrySymbolizeWithLimit((void *)(&nonstatic_func), 5));
580   EXPECT_STREQ("...", TrySymbolizeWithLimit((void *)(&nonstatic_func), 4));
581   EXPECT_STREQ("..", TrySymbolizeWithLimit((void *)(&nonstatic_func), 3));
582   EXPECT_STREQ(".", TrySymbolizeWithLimit((void *)(&nonstatic_func), 2));
583   EXPECT_STREQ("", TrySymbolizeWithLimit((void *)(&nonstatic_func), 1));
584   EXPECT_EQ(nullptr, TrySymbolizeWithLimit((void *)(&nonstatic_func), 0));
585 }
586 
TEST(Symbolize,SymbolizeWithDemangling)587 TEST(Symbolize, SymbolizeWithDemangling) {
588   const char *result = TrySymbolize((void *)(&Foo::func));
589   ASSERT_TRUE(result != nullptr);
590   EXPECT_TRUE(strstr(result, "Foo::func") != nullptr) << result;
591 }
592 
593 #endif  // !defined(ABSL_CONSUME_DLL)
594 #else   // Symbolizer unimplemented
TEST(Symbolize,Unimplemented)595 TEST(Symbolize, Unimplemented) {
596   char buf[64];
597   EXPECT_FALSE(absl::Symbolize((void *)(&nonstatic_func), buf, sizeof(buf)));
598   EXPECT_FALSE(absl::Symbolize((void *)(&static_func), buf, sizeof(buf)));
599   EXPECT_FALSE(absl::Symbolize((void *)(&Foo::func), buf, sizeof(buf)));
600 }
601 
602 #endif
603 
main(int argc,char ** argv)604 int main(int argc, char **argv) {
605 #if !defined(__EMSCRIPTEN__)
606   // Make sure kHpageTextPadding is linked into the binary.
607   if (volatile_bool) {
608     LOG(INFO) << kHpageTextPadding;
609   }
610 #endif  // !defined(__EMSCRIPTEN__)
611 
612 #if ABSL_PER_THREAD_TLS
613   // Touch the per-thread variables.
614   symbolize_test_thread_small[0] = 0;
615   symbolize_test_thread_big[0] = 0;
616 #endif
617 
618   absl::InitializeSymbolizer(argv[0]);
619   testing::InitGoogleTest(&argc, argv);
620 
621 #if defined(ABSL_INTERNAL_HAVE_ELF_SYMBOLIZE) ||        \
622     defined(ABSL_INTERNAL_HAVE_EMSCRIPTEN_SYMBOLIZE) || \
623     defined(ABSL_INTERNAL_HAVE_DARWIN_SYMBOLIZE)
624   TestWithPCInsideInlineFunction();
625   TestWithPCInsideNonInlineFunction();
626   TestWithReturnAddress();
627 #if defined(__arm__) && ABSL_HAVE_ATTRIBUTE(target) && \
628     ((__ARM_ARCH >= 7) || !defined(__ARM_PCS_VFP))
629   TestArmThumbOverlap();
630 #endif
631 #endif
632 
633   return RUN_ALL_TESTS();
634 }
635