1 //===-- sanitizer_common.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.
11 //===----------------------------------------------------------------------===//
12 
13 #include "sanitizer_common.h"
14 
15 #include "sanitizer_allocator_interface.h"
16 #include "sanitizer_allocator_internal.h"
17 #include "sanitizer_atomic.h"
18 #include "sanitizer_flags.h"
19 #include "sanitizer_interface_internal.h"
20 #include "sanitizer_libc.h"
21 #include "sanitizer_placement_new.h"
22 
23 namespace __sanitizer {
24 
25 const char *SanitizerToolName = "SanitizerTool";
26 
27 atomic_uint32_t current_verbosity;
28 uptr PageSizeCached;
29 u32 NumberOfCPUsCached;
30 
31 // PID of the tracer task in StopTheWorld. It shares the address space with the
32 // main process, but has a different PID and thus requires special handling.
33 uptr stoptheworld_tracer_pid = 0;
34 // Cached pid of parent process - if the parent process dies, we want to keep
35 // writing to the same log file.
36 uptr stoptheworld_tracer_ppid = 0;
37 
38 void NORETURN ReportMmapFailureAndDie(uptr size, const char *mem_type,
39                                       const char *mmap_type, error_t err,
40                                       bool raw_report) {
41   static int recursion_count;
42   if (raw_report || recursion_count) {
43     // If raw report is requested or we went into recursion just die.  The
44     // Report() and CHECK calls below may call mmap recursively and fail.
45     RawWrite("ERROR: Failed to mmap\n");
46     Die();
47   }
48   recursion_count++;
49   if (ErrorIsOOM(err)) {
50     ERROR_OOM("failed to %s 0x%zx (%zd) bytes of %s (error code: %d)\n",
51               mmap_type, size, size, mem_type, err);
52   } else {
53     Report(
54         "ERROR: %s failed to "
55         "%s 0x%zx (%zd) bytes of %s (error code: %d)\n",
56         SanitizerToolName, mmap_type, size, size, mem_type, err);
57   }
58 #if !SANITIZER_GO
59   DumpProcessMap();
60 #endif
61   UNREACHABLE("unable to mmap");
62 }
63 
64 typedef bool UptrComparisonFunction(const uptr &a, const uptr &b);
65 typedef bool U32ComparisonFunction(const u32 &a, const u32 &b);
66 
67 const char *StripPathPrefix(const char *filepath,
68                             const char *strip_path_prefix) {
69   if (!filepath) return nullptr;
70   if (!strip_path_prefix) return filepath;
71   const char *res = filepath;
72   if (const char *pos = internal_strstr(filepath, strip_path_prefix))
73     res = pos + internal_strlen(strip_path_prefix);
74   if (res[0] == '.' && res[1] == '/')
75     res += 2;
76   return res;
77 }
78 
79 const char *StripModuleName(const char *module) {
80   if (!module)
81     return nullptr;
82   if (SANITIZER_WINDOWS) {
83     // On Windows, both slash and backslash are possible.
84     // Pick the one that goes last.
85     if (const char *bslash_pos = internal_strrchr(module, '\\'))
86       return StripModuleName(bslash_pos + 1);
87   }
88   if (const char *slash_pos = internal_strrchr(module, '/')) {
89     return slash_pos + 1;
90   }
91   return module;
92 }
93 
94 void ReportErrorSummary(const char *error_message, const char *alt_tool_name) {
95   if (!common_flags()->print_summary)
96     return;
97   InternalScopedString buff;
98   buff.append("SUMMARY: %s: %s",
99               alt_tool_name ? alt_tool_name : SanitizerToolName, error_message);
100   __sanitizer_report_error_summary(buff.data());
101 }
102 
103 // Removes the ANSI escape sequences from the input string (in-place).
104 void RemoveANSIEscapeSequencesFromString(char *str) {
105   if (!str)
106     return;
107 
108   // We are going to remove the escape sequences in place.
109   char *s = str;
110   char *z = str;
111   while (*s != '\0') {
112     CHECK_GE(s, z);
113     // Skip over ANSI escape sequences with pointer 's'.
114     if (*s == '\033' && *(s + 1) == '[') {
115       s = internal_strchrnul(s, 'm');
116       if (*s == '\0') {
117         break;
118       }
119       s++;
120       continue;
121     }
122     // 's' now points at a character we want to keep. Copy over the buffer
123     // content if the escape sequence has been perviously skipped andadvance
124     // both pointers.
125     if (s != z)
126       *z = *s;
127 
128     // If we have not seen an escape sequence, just advance both pointers.
129     z++;
130     s++;
131   }
132 
133   // Null terminate the string.
134   *z = '\0';
135 }
136 
137 void LoadedModule::set(const char *module_name, uptr base_address) {
138   clear();
139   full_name_ = internal_strdup(module_name);
140   base_address_ = base_address;
141 }
142 
143 void LoadedModule::set(const char *module_name, uptr base_address,
144                        ModuleArch arch, u8 uuid[kModuleUUIDSize],
145                        bool instrumented) {
146   set(module_name, base_address);
147   arch_ = arch;
148   internal_memcpy(uuid_, uuid, sizeof(uuid_));
149   uuid_size_ = kModuleUUIDSize;
150   instrumented_ = instrumented;
151 }
152 
153 void LoadedModule::setUuid(const char *uuid, uptr size) {
154   if (size > kModuleUUIDSize)
155     size = kModuleUUIDSize;
156   internal_memcpy(uuid_, uuid, size);
157   uuid_size_ = size;
158 }
159 
160 void LoadedModule::clear() {
161   InternalFree(full_name_);
162   base_address_ = 0;
163   max_address_ = 0;
164   full_name_ = nullptr;
165   arch_ = kModuleArchUnknown;
166   internal_memset(uuid_, 0, kModuleUUIDSize);
167   instrumented_ = false;
168   while (!ranges_.empty()) {
169     AddressRange *r = ranges_.front();
170     ranges_.pop_front();
171     InternalFree(r);
172   }
173 }
174 
175 void LoadedModule::addAddressRange(uptr beg, uptr end, bool executable,
176                                    bool writable, const char *name) {
177   void *mem = InternalAlloc(sizeof(AddressRange));
178   AddressRange *r =
179       new(mem) AddressRange(beg, end, executable, writable, name);
180   ranges_.push_back(r);
181   max_address_ = Max(max_address_, end);
182 }
183 
184 bool LoadedModule::containsAddress(uptr address) const {
185   for (const AddressRange &r : ranges()) {
186     if (r.beg <= address && address < r.end)
187       return true;
188   }
189   return false;
190 }
191 
192 static atomic_uintptr_t g_total_mmaped;
193 
194 void IncreaseTotalMmap(uptr size) {
195   if (!common_flags()->mmap_limit_mb) return;
196   uptr total_mmaped =
197       atomic_fetch_add(&g_total_mmaped, size, memory_order_relaxed) + size;
198   // Since for now mmap_limit_mb is not a user-facing flag, just kill
199   // a program. Use RAW_CHECK to avoid extra mmaps in reporting.
200   RAW_CHECK((total_mmaped >> 20) < common_flags()->mmap_limit_mb);
201 }
202 
203 void DecreaseTotalMmap(uptr size) {
204   if (!common_flags()->mmap_limit_mb) return;
205   atomic_fetch_sub(&g_total_mmaped, size, memory_order_relaxed);
206 }
207 
208 bool TemplateMatch(const char *templ, const char *str) {
209   if ((!str) || str[0] == 0)
210     return false;
211   bool start = false;
212   if (templ && templ[0] == '^') {
213     start = true;
214     templ++;
215   }
216   bool asterisk = false;
217   while (templ && templ[0]) {
218     if (templ[0] == '*') {
219       templ++;
220       start = false;
221       asterisk = true;
222       continue;
223     }
224     if (templ[0] == '$')
225       return str[0] == 0 || asterisk;
226     if (str[0] == 0)
227       return false;
228     char *tpos = (char*)internal_strchr(templ, '*');
229     char *tpos1 = (char*)internal_strchr(templ, '$');
230     if ((!tpos) || (tpos1 && tpos1 < tpos))
231       tpos = tpos1;
232     if (tpos)
233       tpos[0] = 0;
234     const char *str0 = str;
235     const char *spos = internal_strstr(str, templ);
236     str = spos + internal_strlen(templ);
237     templ = tpos;
238     if (tpos)
239       tpos[0] = tpos == tpos1 ? '$' : '*';
240     if (!spos)
241       return false;
242     if (start && spos != str0)
243       return false;
244     start = false;
245     asterisk = false;
246   }
247   return true;
248 }
249 
250 static char binary_name_cache_str[kMaxPathLength];
251 static char process_name_cache_str[kMaxPathLength];
252 
253 const char *GetProcessName() {
254   return process_name_cache_str;
255 }
256 
257 static uptr ReadProcessName(/*out*/ char *buf, uptr buf_len) {
258   ReadLongProcessName(buf, buf_len);
259   char *s = const_cast<char *>(StripModuleName(buf));
260   uptr len = internal_strlen(s);
261   if (s != buf) {
262     internal_memmove(buf, s, len);
263     buf[len] = '\0';
264   }
265   return len;
266 }
267 
268 void UpdateProcessName() {
269   ReadProcessName(process_name_cache_str, sizeof(process_name_cache_str));
270 }
271 
272 // Call once to make sure that binary_name_cache_str is initialized
273 void CacheBinaryName() {
274   if (binary_name_cache_str[0] != '\0')
275     return;
276   ReadBinaryName(binary_name_cache_str, sizeof(binary_name_cache_str));
277   ReadProcessName(process_name_cache_str, sizeof(process_name_cache_str));
278 }
279 
280 uptr ReadBinaryNameCached(/*out*/char *buf, uptr buf_len) {
281   CacheBinaryName();
282   uptr name_len = internal_strlen(binary_name_cache_str);
283   name_len = (name_len < buf_len - 1) ? name_len : buf_len - 1;
284   if (buf_len == 0)
285     return 0;
286   internal_memcpy(buf, binary_name_cache_str, name_len);
287   buf[name_len] = '\0';
288   return name_len;
289 }
290 
291 uptr ReadBinaryDir(/*out*/ char *buf, uptr buf_len) {
292   ReadBinaryNameCached(buf, buf_len);
293   const char *exec_name_pos = StripModuleName(buf);
294   uptr name_len = exec_name_pos - buf;
295   buf[name_len] = '\0';
296   return name_len;
297 }
298 
299 #if !SANITIZER_GO
300 void PrintCmdline() {
301   char **argv = GetArgv();
302   if (!argv) return;
303   Printf("\nCommand: ");
304   for (uptr i = 0; argv[i]; ++i)
305     Printf("%s ", argv[i]);
306   Printf("\n\n");
307 }
308 #endif
309 
310 // Malloc hooks.
311 static const int kMaxMallocFreeHooks = 5;
312 struct MallocFreeHook {
313   void (*malloc_hook)(const void *, uptr);
314   void (*free_hook)(const void *);
315 };
316 
317 static MallocFreeHook MFHooks[kMaxMallocFreeHooks];
318 
319 void RunMallocHooks(void *ptr, uptr size) {
320   __sanitizer_malloc_hook(ptr, size);
321   for (int i = 0; i < kMaxMallocFreeHooks; i++) {
322     auto hook = MFHooks[i].malloc_hook;
323     if (!hook)
324       break;
325     hook(ptr, size);
326   }
327 }
328 
329 void RunFreeHooks(void *ptr) {
330   __sanitizer_free_hook(ptr);
331   for (int i = 0; i < kMaxMallocFreeHooks; i++) {
332     auto hook = MFHooks[i].free_hook;
333     if (!hook)
334       break;
335     hook(ptr);
336   }
337 }
338 
339 static int InstallMallocFreeHooks(void (*malloc_hook)(const void *, uptr),
340                                   void (*free_hook)(const void *)) {
341   if (!malloc_hook || !free_hook) return 0;
342   for (int i = 0; i < kMaxMallocFreeHooks; i++) {
343     if (MFHooks[i].malloc_hook == nullptr) {
344       MFHooks[i].malloc_hook = malloc_hook;
345       MFHooks[i].free_hook = free_hook;
346       return i + 1;
347     }
348   }
349   return 0;
350 }
351 
352 void internal_sleep(unsigned seconds) {
353   internal_usleep((u64)seconds * 1000 * 1000);
354 }
355 void SleepForSeconds(unsigned seconds) {
356   internal_usleep((u64)seconds * 1000 * 1000);
357 }
358 void SleepForMillis(unsigned millis) { internal_usleep((u64)millis * 1000); }
359 
360 void WaitForDebugger(unsigned seconds, const char *label) {
361   if (seconds) {
362     Report("Sleeping for %u second(s) %s\n", seconds, label);
363     SleepForSeconds(seconds);
364   }
365 }
366 
367 } // namespace __sanitizer
368 
369 using namespace __sanitizer;
370 
371 extern "C" {
372 SANITIZER_INTERFACE_WEAK_DEF(void, __sanitizer_report_error_summary,
373                              const char *error_summary) {
374   Printf("%s\n", error_summary);
375 }
376 
377 SANITIZER_INTERFACE_ATTRIBUTE
378 int __sanitizer_acquire_crash_state() {
379   static atomic_uint8_t in_crash_state = {};
380   return !atomic_exchange(&in_crash_state, 1, memory_order_relaxed);
381 }
382 
383 SANITIZER_INTERFACE_ATTRIBUTE
384 int __sanitizer_install_malloc_and_free_hooks(void (*malloc_hook)(const void *,
385                                                                   uptr),
386                                               void (*free_hook)(const void *)) {
387   return InstallMallocFreeHooks(malloc_hook, free_hook);
388 }
389 
390 // Provide default (no-op) implementation of malloc hooks.
391 SANITIZER_INTERFACE_WEAK_DEF(void, __sanitizer_malloc_hook, void *ptr,
392                              uptr size) {
393   (void)ptr;
394   (void)size;
395 }
396 
397 SANITIZER_INTERFACE_WEAK_DEF(void, __sanitizer_free_hook, void *ptr) {
398   (void)ptr;
399 }
400 
401 } // extern "C"
402