blob: f090282373704dd9a755d8ea0c4774a5126da075 [file] [log] [blame]
Alexey Samsonov298dd7c2012-06-05 07:46:31 +00001//===-- sanitizer_win.cc --------------------------------------------------===//
Alexey Samsonovdde1f112012-06-05 07:05:10 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file is shared between AddressSanitizer and ThreadSanitizer
11// run-time libraries and implements windows-specific functions from
12// sanitizer_libc.h.
13//===----------------------------------------------------------------------===//
Evgeniy Stepanov0af67232013-03-19 14:33:38 +000014
15#include "sanitizer_platform.h"
16#if SANITIZER_WINDOWS
17
Dmitry Vyukov0ff6d2d2012-11-06 13:19:59 +000018#define WIN32_LEAN_AND_MEAN
19#define NOGDI
Alexey Samsonovdde1f112012-06-05 07:05:10 +000020#include <windows.h>
Timur Iskhodzhanov19853dd2014-07-11 11:57:41 +000021#include <dbghelp.h>
22#include <io.h>
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +000023#include <psapi.h>
Timur Iskhodzhanov19853dd2014-07-11 11:57:41 +000024#include <stdlib.h>
Alexey Samsonovdde1f112012-06-05 07:05:10 +000025
Alexey Samsonov201aa362012-06-06 09:43:32 +000026#include "sanitizer_common.h"
Alexey Samsonovdde1f112012-06-05 07:05:10 +000027#include "sanitizer_libc.h"
Dmitry Vyukovff198092013-01-14 14:28:06 +000028#include "sanitizer_mutex.h"
Sergey Matveevaf179b82013-05-08 12:45:55 +000029#include "sanitizer_placement_new.h"
30#include "sanitizer_stacktrace.h"
Alexey Samsonovdde1f112012-06-05 07:05:10 +000031
Alexey Samsonovdde1f112012-06-05 07:05:10 +000032namespace __sanitizer {
33
Peter Collingbourne6f4be192013-05-08 14:43:49 +000034#include "sanitizer_syscall_generic.inc"
35
Alexey Samsonov4b1f1032012-06-07 07:13:46 +000036// --------------------- sanitizer_common.h
Kostya Serebryanyf22c6972012-11-23 15:38:49 +000037uptr GetPageSize() {
Reid Kleckner0765fbc2016-02-18 17:58:22 +000038 SYSTEM_INFO si;
39 GetSystemInfo(&si);
40 return si.dwPageSize;
Kostya Serebryanyf22c6972012-11-23 15:38:49 +000041}
42
43uptr GetMmapGranularity() {
Reid Kleckner0765fbc2016-02-18 17:58:22 +000044 SYSTEM_INFO si;
45 GetSystemInfo(&si);
46 return si.dwAllocationGranularity;
Kostya Serebryanyf22c6972012-11-23 15:38:49 +000047}
48
Timur Iskhodzhanov4245f782013-07-16 09:47:39 +000049uptr GetMaxVirtualAddress() {
50 SYSTEM_INFO si;
51 GetSystemInfo(&si);
52 return (uptr)si.lpMaximumApplicationAddress;
53}
54
Alexey Samsonovae9b18b2012-11-09 14:45:30 +000055bool FileExists(const char *filename) {
Reid Klecknere96833e2015-08-10 23:40:27 +000056 return ::GetFileAttributesA(filename) != INVALID_FILE_ATTRIBUTES;
Alexey Samsonovae9b18b2012-11-09 14:45:30 +000057}
58
Peter Collingbourneffaf2ea2013-05-17 16:56:53 +000059uptr internal_getpid() {
Alexey Samsonovee072902012-06-06 09:26:25 +000060 return GetProcessId(GetCurrentProcess());
61}
62
Timur Iskhodzhanov2dee3dd2013-03-25 22:04:29 +000063// In contrast to POSIX, on Windows GetCurrentThreadId()
64// returns a system-unique identifier.
65uptr GetTid() {
Alexey Samsonov70afb912012-06-15 06:37:34 +000066 return GetCurrentThreadId();
67}
68
Timur Iskhodzhanov2dee3dd2013-03-25 22:04:29 +000069uptr GetThreadSelf() {
70 return GetTid();
71}
72
Dmitry Vyukovaa8fa602014-09-01 11:44:59 +000073#if !SANITIZER_GO
Alexey Samsonovcf4d3a02012-06-07 07:32:00 +000074void GetThreadStackTopAndBottom(bool at_initialization, uptr *stack_top,
Alexey Samsonov4b1f1032012-06-07 07:13:46 +000075 uptr *stack_bottom) {
76 CHECK(stack_top);
77 CHECK(stack_bottom);
78 MEMORY_BASIC_INFORMATION mbi;
Kostya Serebryany98390d02012-06-20 15:19:17 +000079 CHECK_NE(VirtualQuery(&mbi /* on stack */, &mbi, sizeof(mbi)), 0);
Alexey Samsonov4b1f1032012-06-07 07:13:46 +000080 // FIXME: is it possible for the stack to not be a single allocation?
81 // Are these values what ASan expects to get (reserved, not committed;
82 // including stack guard page) ?
83 *stack_top = (uptr)mbi.BaseAddress + mbi.RegionSize;
84 *stack_bottom = (uptr)mbi.AllocationBase;
85}
Dmitry Vyukovaa8fa602014-09-01 11:44:59 +000086#endif // #if !SANITIZER_GO
Alexey Samsonov4b1f1032012-06-07 07:13:46 +000087
Anna Zaks8d225202015-11-20 18:42:01 +000088void *MmapOrDie(uptr size, const char *mem_type, bool raw_report) {
Alexey Samsonovee072902012-06-06 09:26:25 +000089 void *rv = VirtualAlloc(0, size, MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
Reid Kleckner7d0f22e2015-08-12 23:55:38 +000090 if (rv == 0)
Anna Zaks8d225202015-11-20 18:42:01 +000091 ReportMmapFailureAndDie(size, mem_type, "allocate",
92 GetLastError(), raw_report);
Alexey Samsonovee072902012-06-06 09:26:25 +000093 return rv;
94}
95
96void UnmapOrDie(void *addr, uptr size) {
Timur Iskhodzhanov89608af2015-03-31 16:39:20 +000097 if (!size || !addr)
98 return;
99
Reid Klecknerad049142016-03-10 20:47:26 +0000100 // Make sure that this API is only used to unmap an entire previous mapping.
101 // Windows cannot unmap part of a previous mapping. Unfortunately,
102 // we can't check that size matches the original size because mbi.RegionSize
103 // doesn't describe the size of the full allocation if some of the pages were
104 // protected.
105 MEMORY_BASIC_INFORMATION mbi;
106 CHECK(VirtualQuery(addr, &mbi, sizeof(mbi)));
107 CHECK(mbi.AllocationBase == addr &&
108 "Windows cannot unmap part of a previous mapping");
109
110 if (VirtualFree(addr, 0, MEM_RELEASE) == 0) {
Timur Iskhodzhanov364b8b82014-03-19 08:23:00 +0000111 Report("ERROR: %s failed to "
112 "deallocate 0x%zx (%zd) bytes at address %p (error code: %d)\n",
113 SanitizerToolName, size, size, addr, GetLastError());
Alexey Samsonov40d5b772012-06-06 16:15:07 +0000114 CHECK("unable to unmap" && 0);
Alexey Samsonove95e29c2012-06-06 15:47:40 +0000115 }
Alexey Samsonovee072902012-06-06 09:26:25 +0000116}
117
Reid Klecknerad049142016-03-10 20:47:26 +0000118// We want to map a chunk of address space aligned to 'alignment'.
119void *MmapAlignedOrDie(uptr size, uptr alignment, const char *mem_type) {
120 CHECK(IsPowerOfTwo(size));
121 CHECK(IsPowerOfTwo(alignment));
122
123 // Windows will align our allocations to at least 64K.
124 alignment = Max(alignment, GetMmapGranularity());
125
126 uptr mapped_addr =
127 (uptr)VirtualAlloc(0, size, MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
128 if (!mapped_addr)
129 ReportMmapFailureAndDie(size, mem_type, "allocate aligned", GetLastError());
130
131 // If we got it right on the first try, return. Otherwise, unmap it and go to
132 // the slow path.
133 if (IsAligned(mapped_addr, alignment))
134 return (void*)mapped_addr;
135 if (VirtualFree((void *)mapped_addr, 0, MEM_RELEASE) == 0)
136 ReportMmapFailureAndDie(size, mem_type, "deallocate", GetLastError());
137
138 // If we didn't get an aligned address, overallocate, find an aligned address,
139 // unmap, and try to allocate at that aligned address.
140 int retries = 0;
141 const int kMaxRetries = 10;
142 for (; retries < kMaxRetries &&
143 (mapped_addr == 0 || !IsAligned(mapped_addr, alignment));
144 retries++) {
145 // Overallocate size + alignment bytes.
146 mapped_addr =
147 (uptr)VirtualAlloc(0, size + alignment, MEM_RESERVE, PAGE_NOACCESS);
148 if (!mapped_addr)
149 ReportMmapFailureAndDie(size, mem_type, "allocate aligned",
150 GetLastError());
151
152 // Find the aligned address.
153 uptr aligned_addr = RoundUpTo(mapped_addr, alignment);
154
155 // Free the overallocation.
156 if (VirtualFree((void *)mapped_addr, 0, MEM_RELEASE) == 0)
157 ReportMmapFailureAndDie(size, mem_type, "deallocate", GetLastError());
158
159 // Attempt to allocate exactly the number of bytes we need at the aligned
160 // address. This may fail for a number of reasons, in which case we continue
161 // the loop.
162 mapped_addr = (uptr)VirtualAlloc((void *)aligned_addr, size,
163 MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
164 }
165
166 // Fail if we can't make this work quickly.
167 if (retries == kMaxRetries && mapped_addr == 0)
168 ReportMmapFailureAndDie(size, mem_type, "allocate aligned", GetLastError());
169
170 return (void *)mapped_addr;
171}
172
Evgeniy Stepanov8e9c70b2015-05-29 22:31:28 +0000173void *MmapFixedNoReserve(uptr fixed_addr, uptr size, const char *name) {
Kostya Serebryany98066282012-12-13 05:36:00 +0000174 // FIXME: is this really "NoReserve"? On Win32 this does not matter much,
175 // but on Win64 it does.
Evgeniy Stepanov8e9c70b2015-05-29 22:31:28 +0000176 (void)name; // unsupported
Dmitry Vyukov0ff6d2d2012-11-06 13:19:59 +0000177 void *p = VirtualAlloc((LPVOID)fixed_addr, size,
178 MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
179 if (p == 0)
Timur Iskhodzhanov364b8b82014-03-19 08:23:00 +0000180 Report("ERROR: %s failed to "
181 "allocate %p (%zd) bytes at %p (error code: %d)\n",
182 SanitizerToolName, size, size, fixed_addr, GetLastError());
Dmitry Vyukov0ff6d2d2012-11-06 13:19:59 +0000183 return p;
Alexey Samsonovc70d1082012-06-14 14:42:58 +0000184}
185
Kostya Serebryany98066282012-12-13 05:36:00 +0000186void *MmapFixedOrDie(uptr fixed_addr, uptr size) {
Reid Klecknerad049142016-03-10 20:47:26 +0000187 void *p = VirtualAlloc((LPVOID)fixed_addr, size,
188 MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
189 if (p == 0) {
190 char mem_type[30];
191 internal_snprintf(mem_type, sizeof(mem_type), "memory at address 0x%zx",
192 fixed_addr);
193 ReportMmapFailureAndDie(size, mem_type, "allocate", GetLastError());
194 }
195 return p;
Kostya Serebryany98066282012-12-13 05:36:00 +0000196}
197
Kostya Serebryany57bfdb02013-12-13 15:03:49 +0000198void *MmapNoReserveOrDie(uptr size, const char *mem_type) {
199 // FIXME: make this really NoReserve?
200 return MmapOrDie(size, mem_type);
201}
202
Kostya Serebryany99ed6052016-04-22 23:46:53 +0000203void *MmapFixedNoAccess(uptr fixed_addr, uptr size, const char *name) {
Evgeniy Stepanov8e9c70b2015-05-29 22:31:28 +0000204 (void)name; // unsupported
Timur Iskhodzhanove5935ef2015-02-02 15:04:23 +0000205 void *res = VirtualAlloc((LPVOID)fixed_addr, size,
206 MEM_RESERVE | MEM_COMMIT, PAGE_NOACCESS);
207 if (res == 0)
208 Report("WARNING: %s failed to "
209 "mprotect %p (%zd) bytes at %p (error code: %d)\n",
210 SanitizerToolName, size, size, fixed_addr, GetLastError());
211 return res;
Alexey Samsonovc70d1082012-06-14 14:42:58 +0000212}
213
Kostya Serebryany3884f1a2016-04-23 00:05:24 +0000214void *MmapNoAccess(uptr size) {
215 // FIXME: unsupported.
216 return nullptr;
217}
218
Timur Iskhodzhanovea1f3322015-04-10 15:02:19 +0000219bool MprotectNoAccess(uptr addr, uptr size) {
220 DWORD old_protection;
221 return VirtualProtect((LPVOID)addr, size, PAGE_NOACCESS, &old_protection);
222}
223
224
Timur Iskhodzhanov167f9e42013-02-08 12:02:00 +0000225void FlushUnneededShadowMemory(uptr addr, uptr size) {
226 // This is almost useless on 32-bits.
Yury Gribov8f848ff2015-02-03 10:15:15 +0000227 // FIXME: add madvise-analog when we move to 64-bits.
Timur Iskhodzhanov167f9e42013-02-08 12:02:00 +0000228}
229
Kostya Serebryanyc6338ac2015-01-21 02:05:31 +0000230void NoHugePagesInRegion(uptr addr, uptr size) {
231 // FIXME: probably similar to FlushUnneededShadowMemory.
232}
233
Yury Gribov8f848ff2015-02-03 10:15:15 +0000234void DontDumpShadowMemory(uptr addr, uptr length) {
235 // This is almost useless on 32-bits.
236 // FIXME: add madvise-analog when we move to 64-bits.
237}
238
Alexey Samsonov40e51282012-06-15 07:29:14 +0000239bool MemoryRangeIsAvailable(uptr range_start, uptr range_end) {
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000240 MEMORY_BASIC_INFORMATION mbi;
241 CHECK(VirtualQuery((void *)range_start, &mbi, sizeof(mbi)));
Timur Iskhodzhanove5935ef2015-02-02 15:04:23 +0000242 return mbi.Protect == PAGE_NOACCESS &&
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000243 (uptr)mbi.BaseAddress + mbi.RegionSize >= range_end;
Alexey Samsonov40e51282012-06-15 07:29:14 +0000244}
245
Alexey Samsonov961276a2012-07-03 08:24:14 +0000246void *MapFileToMemory(const char *file_name, uptr *buff_size) {
247 UNIMPLEMENTED();
248}
249
Daniel Sandersadf1fcc2015-07-31 11:29:25 +0000250void *MapWritableFileToMemory(void *addr, uptr size, fd_t fd, OFF_T offset) {
Evgeniy Stepanova00ff192014-05-28 08:26:24 +0000251 UNIMPLEMENTED();
252}
253
Alexey Samsonov7d238542013-03-14 11:29:06 +0000254static const int kMaxEnvNameLength = 128;
Dmitry Vyukove979c542013-06-10 10:02:02 +0000255static const DWORD kMaxEnvValueLength = 32767;
Alexey Samsonov83e76222013-03-14 11:10:23 +0000256
257namespace {
258
259struct EnvVariable {
260 char name[kMaxEnvNameLength];
261 char value[kMaxEnvValueLength];
262};
263
264} // namespace
265
266static const int kEnvVariables = 5;
267static EnvVariable env_vars[kEnvVariables];
268static int num_env_vars;
269
Alexey Samsonov0c53a382012-06-14 14:07:21 +0000270const char *GetEnv(const char *name) {
Alexey Samsonov83e76222013-03-14 11:10:23 +0000271 // Note: this implementation caches the values of the environment variables
272 // and limits their quantity.
273 for (int i = 0; i < num_env_vars; i++) {
274 if (0 == internal_strcmp(name, env_vars[i].name))
275 return env_vars[i].value;
276 }
277 CHECK_LT(num_env_vars, kEnvVariables);
278 DWORD rv = GetEnvironmentVariableA(name, env_vars[num_env_vars].value,
279 kMaxEnvValueLength);
280 if (rv > 0 && rv < kMaxEnvValueLength) {
281 CHECK_LT(internal_strlen(name), kMaxEnvNameLength);
282 internal_strncpy(env_vars[num_env_vars].name, name, kMaxEnvNameLength);
283 num_env_vars++;
284 return env_vars[num_env_vars - 1].value;
285 }
Alexey Samsonov0c53a382012-06-14 14:07:21 +0000286 return 0;
287}
288
Alexey Samsonov58a3c582012-06-18 08:44:30 +0000289const char *GetPwd() {
290 UNIMPLEMENTED();
291}
292
Alexey Samsonov9211bd32013-02-18 07:17:12 +0000293u32 GetUid() {
294 UNIMPLEMENTED();
295}
296
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000297namespace {
298struct ModuleInfo {
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000299 const char *filepath;
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000300 uptr base_address;
301 uptr end_address;
302};
303
Dmitry Vyukov8455cf02015-11-12 16:29:24 +0000304#ifndef SANITIZER_GO
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000305int CompareModulesBase(const void *pl, const void *pr) {
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000306 const ModuleInfo *l = (ModuleInfo *)pl, *r = (ModuleInfo *)pr;
307 if (l->base_address < r->base_address)
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000308 return -1;
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000309 return l->base_address > r->base_address;
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000310}
Dmitry Vyukov8455cf02015-11-12 16:29:24 +0000311#endif
Timur Iskhodzhanova023e062014-12-30 15:30:19 +0000312} // namespace
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000313
Dmitry Vyukovb3381fa2015-02-16 13:51:17 +0000314#ifndef SANITIZER_GO
Alexey Samsonovae1e1712012-06-15 06:08:19 +0000315void DumpProcessMap() {
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000316 Report("Dumping process modules:\n");
Alexey Samsonov8e3cbde2016-02-22 18:52:51 +0000317 ListOfModules modules;
318 modules.init();
319 uptr num_modules = modules.size();
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000320
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000321 InternalScopedBuffer<ModuleInfo> module_infos(num_modules);
322 for (size_t i = 0; i < num_modules; ++i) {
323 module_infos[i].filepath = modules[i].full_name();
324 module_infos[i].base_address = modules[i].base_address();
Peter Collingbourned2f24b62016-01-15 02:51:26 +0000325 module_infos[i].end_address = modules[i].ranges().front()->end;
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000326 }
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000327 qsort(module_infos.data(), num_modules, sizeof(ModuleInfo),
328 CompareModulesBase);
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000329
330 for (size_t i = 0; i < num_modules; ++i) {
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000331 const ModuleInfo &mi = module_infos[i];
Timur Iskhodzhanov64fc8e42014-12-30 14:44:12 +0000332 if (mi.end_address != 0) {
333 Printf("\t%p-%p %s\n", mi.base_address, mi.end_address,
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000334 mi.filepath[0] ? mi.filepath : "[no name]");
Timur Iskhodzhanov1931b622015-04-06 12:54:06 +0000335 } else if (mi.filepath[0]) {
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000336 Printf("\t??\?-??? %s\n", mi.filepath);
Timur Iskhodzhanova04b33b2014-12-26 14:28:32 +0000337 } else {
338 Printf("\t???\n");
339 }
340 }
Alexey Samsonovae1e1712012-06-15 06:08:19 +0000341}
Dmitry Vyukovb3381fa2015-02-16 13:51:17 +0000342#endif
Alexey Samsonovae1e1712012-06-15 06:08:19 +0000343
Alexey Samsonov34e2b282014-08-12 22:31:19 +0000344void DisableCoreDumperIfNecessary() {
Timur Iskhodzhanov7d5c81d2014-05-06 08:21:50 +0000345 // Do nothing.
Alexey Samsonovae1e1712012-06-15 06:08:19 +0000346}
347
Alexey Samsonov97ca3062012-09-17 09:12:39 +0000348void ReExec() {
349 UNIMPLEMENTED();
350}
351
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000352void PrepareForSandboxing(__sanitizer_sandbox_arguments *args) {
Timur Iskhodzhanovd0be0a92015-04-23 12:58:11 +0000353#if !SANITIZER_GO
354 CovPrepareForSandboxing(args);
355#endif
Alexander Potapenko1746f552012-12-10 13:10:40 +0000356}
357
Alexey Samsonov97ca3062012-09-17 09:12:39 +0000358bool StackSizeIsUnlimited() {
359 UNIMPLEMENTED();
Alexey Samsonov97ca3062012-09-17 09:12:39 +0000360}
361
362void SetStackSizeLimitInBytes(uptr limit) {
363 UNIMPLEMENTED();
364}
365
Alexey Samsonov34e2b282014-08-12 22:31:19 +0000366bool AddressSpaceIsUnlimited() {
367 UNIMPLEMENTED();
368}
369
370void SetAddressSpaceUnlimited() {
371 UNIMPLEMENTED();
372}
373
Anna Zaks22490492015-02-27 03:12:19 +0000374bool IsPathSeparator(const char c) {
375 return c == '\\' || c == '/';
376}
377
378bool IsAbsolutePath(const char *path) {
379 UNIMPLEMENTED();
380}
381
Alexey Samsonov70afb912012-06-15 06:37:34 +0000382void SleepForSeconds(int seconds) {
383 Sleep(seconds * 1000);
384}
385
Alexey Samsonov58a3c582012-06-18 08:44:30 +0000386void SleepForMillis(int millis) {
387 Sleep(millis);
388}
389
Dmitry Vyukove979c542013-06-10 10:02:02 +0000390u64 NanoTime() {
391 return 0;
392}
393
Alexey Samsonov70afb912012-06-15 06:37:34 +0000394void Abort() {
Timur Iskhodzhanovb8373bc2014-12-26 12:25:54 +0000395 if (::IsDebuggerPresent())
396 __debugbreak();
397 internal__exit(3);
Alexey Samsonov70afb912012-06-15 06:37:34 +0000398}
399
Reid Kleckner646386e2015-08-03 19:51:18 +0000400// Read the file to extract the ImageBase field from the PE header. If ASLR is
401// disabled and this virtual address is available, the loader will typically
402// load the image at this address. Therefore, we call it the preferred base. Any
403// addresses in the DWARF typically assume that the object has been loaded at
404// this address.
405static uptr GetPreferredBase(const char *modname) {
406 fd_t fd = OpenFile(modname, RdOnly, nullptr);
407 if (fd == kInvalidFd)
408 return 0;
409 FileCloser closer(fd);
410
411 // Read just the DOS header.
412 IMAGE_DOS_HEADER dos_header;
413 uptr bytes_read;
414 if (!ReadFromFile(fd, &dos_header, sizeof(dos_header), &bytes_read) ||
415 bytes_read != sizeof(dos_header))
416 return 0;
417
418 // The file should start with the right signature.
419 if (dos_header.e_magic != IMAGE_DOS_SIGNATURE)
420 return 0;
421
422 // The layout at e_lfanew is:
423 // "PE\0\0"
424 // IMAGE_FILE_HEADER
425 // IMAGE_OPTIONAL_HEADER
426 // Seek to e_lfanew and read all that data.
427 char buf[4 + sizeof(IMAGE_FILE_HEADER) + sizeof(IMAGE_OPTIONAL_HEADER)];
428 if (::SetFilePointer(fd, dos_header.e_lfanew, nullptr, FILE_BEGIN) ==
429 INVALID_SET_FILE_POINTER)
430 return 0;
431 if (!ReadFromFile(fd, &buf[0], sizeof(buf), &bytes_read) ||
432 bytes_read != sizeof(buf))
433 return 0;
434
435 // Check for "PE\0\0" before the PE header.
436 char *pe_sig = &buf[0];
437 if (internal_memcmp(pe_sig, "PE\0\0", 4) != 0)
438 return 0;
439
440 // Skip over IMAGE_FILE_HEADER. We could do more validation here if we wanted.
441 IMAGE_OPTIONAL_HEADER *pe_header =
442 (IMAGE_OPTIONAL_HEADER *)(pe_sig + 4 + sizeof(IMAGE_FILE_HEADER));
443
444 // Check for more magic in the PE header.
445 if (pe_header->Magic != IMAGE_NT_OPTIONAL_HDR_MAGIC)
446 return 0;
447
448 // Finally, return the ImageBase.
449 return (uptr)pe_header->ImageBase;
450}
451
Dmitry Vyukovb8da7942015-11-12 18:50:19 +0000452#ifndef SANITIZER_GO
Alexey Samsonov8e3cbde2016-02-22 18:52:51 +0000453void ListOfModules::init() {
454 clear();
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000455 HANDLE cur_process = GetCurrentProcess();
456
457 // Query the list of modules. Start by assuming there are no more than 256
458 // modules and retry if that's not sufficient.
459 HMODULE *hmodules = 0;
460 uptr modules_buffer_size = sizeof(HMODULE) * 256;
461 DWORD bytes_required;
462 while (!hmodules) {
463 hmodules = (HMODULE *)MmapOrDie(modules_buffer_size, __FUNCTION__);
464 CHECK(EnumProcessModules(cur_process, hmodules, modules_buffer_size,
465 &bytes_required));
466 if (bytes_required > modules_buffer_size) {
467 // Either there turned out to be more than 256 hmodules, or new hmodules
468 // could have loaded since the last try. Retry.
469 UnmapOrDie(hmodules, modules_buffer_size);
470 hmodules = 0;
471 modules_buffer_size = bytes_required;
472 }
473 }
474
475 // |num_modules| is the number of modules actually present,
Alexey Samsonov8e3cbde2016-02-22 18:52:51 +0000476 size_t num_modules = bytes_required / sizeof(HMODULE);
477 for (size_t i = 0; i < num_modules; ++i) {
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000478 HMODULE handle = hmodules[i];
479 MODULEINFO mi;
480 if (!GetModuleInformation(cur_process, handle, &mi, sizeof(mi)))
481 continue;
482
Reid Kleckner646386e2015-08-03 19:51:18 +0000483 // Get the UTF-16 path and convert to UTF-8.
484 wchar_t modname_utf16[kMaxPathLength];
485 int modname_utf16_len =
486 GetModuleFileNameW(handle, modname_utf16, kMaxPathLength);
487 if (modname_utf16_len == 0)
488 modname_utf16[0] = '\0';
489 char module_name[kMaxPathLength];
490 int module_name_len =
491 ::WideCharToMultiByte(CP_UTF8, 0, modname_utf16, modname_utf16_len + 1,
492 &module_name[0], kMaxPathLength, NULL, NULL);
493 module_name[module_name_len] = '\0';
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000494
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000495 uptr base_address = (uptr)mi.lpBaseOfDll;
496 uptr end_address = (uptr)mi.lpBaseOfDll + mi.SizeOfImage;
Reid Kleckner646386e2015-08-03 19:51:18 +0000497
498 // Adjust the base address of the module so that we get a VA instead of an
499 // RVA when computing the module offset. This helps llvm-symbolizer find the
500 // right DWARF CU. In the common case that the image is loaded at it's
501 // preferred address, we will now print normal virtual addresses.
502 uptr preferred_base = GetPreferredBase(&module_name[0]);
503 uptr adjusted_base = base_address - preferred_base;
504
Alexey Samsonov8e3cbde2016-02-22 18:52:51 +0000505 LoadedModule cur_module;
506 cur_module.set(module_name, adjusted_base);
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000507 // We add the whole module as one single address range.
Alexey Samsonov8e3cbde2016-02-22 18:52:51 +0000508 cur_module.addAddressRange(base_address, end_address, /*executable*/ true);
509 modules_.push_back(cur_module);
Timur Iskhodzhanovb97bcc42015-04-06 12:49:30 +0000510 }
511 UnmapOrDie(hmodules, modules_buffer_size);
Alexey Samsonov7a36e612013-09-10 14:36:16 +0000512};
513
Timur Iskhodzhanovad3ec822015-04-02 14:48:08 +0000514// We can't use atexit() directly at __asan_init time as the CRT is not fully
515// initialized at this point. Place the functions into a vector and use
516// atexit() as soon as it is ready for use (i.e. after .CRT$XIC initializers).
517InternalMmapVectorNoCtor<void (*)(void)> atexit_functions;
518
Alexey Samsonov70afb912012-06-15 06:37:34 +0000519int Atexit(void (*function)(void)) {
Timur Iskhodzhanovad3ec822015-04-02 14:48:08 +0000520 atexit_functions.push_back(function);
521 return 0;
Alexey Samsonov70afb912012-06-15 06:37:34 +0000522}
Timur Iskhodzhanovad3ec822015-04-02 14:48:08 +0000523
524static int RunAtexit() {
525 int ret = 0;
526 for (uptr i = 0; i < atexit_functions.size(); ++i) {
527 ret |= atexit(atexit_functions[i]);
528 }
529 return ret;
530}
531
532#pragma section(".CRT$XID", long, read) // NOLINT
Reid Klecknere4fabc92015-08-13 16:40:54 +0000533__declspec(allocate(".CRT$XID")) int (*__run_atexit)() = RunAtexit;
Dmitry Vyukov0ff6d2d2012-11-06 13:19:59 +0000534#endif
Alexey Samsonov70afb912012-06-15 06:37:34 +0000535
Alexey Samsonov4b1f1032012-06-07 07:13:46 +0000536// ------------------ sanitizer_libc.h
Timur Iskhodzhanov864308a2015-04-09 12:37:05 +0000537fd_t OpenFile(const char *filename, FileAccessMode mode, error_t *last_error) {
Reid Kleckner646386e2015-08-03 19:51:18 +0000538 fd_t res;
539 if (mode == RdOnly) {
540 res = CreateFile(filename, GENERIC_READ,
541 FILE_SHARE_READ | FILE_SHARE_WRITE | FILE_SHARE_DELETE,
542 nullptr, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, nullptr);
543 } else if (mode == WrOnly) {
544 res = CreateFile(filename, GENERIC_WRITE, 0, nullptr, CREATE_ALWAYS,
545 FILE_ATTRIBUTE_NORMAL, nullptr);
546 } else {
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000547 UNIMPLEMENTED();
Reid Kleckner646386e2015-08-03 19:51:18 +0000548 }
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000549 CHECK(res != kStdoutFd || kStdoutFd == kInvalidFd);
550 CHECK(res != kStderrFd || kStderrFd == kInvalidFd);
Timur Iskhodzhanov8a673682015-04-23 12:57:29 +0000551 if (res == kInvalidFd && last_error)
552 *last_error = GetLastError();
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000553 return res;
Alexey Samsonov03c8b842012-06-05 08:32:53 +0000554}
555
Timur Iskhodzhanov864308a2015-04-09 12:37:05 +0000556void CloseFile(fd_t fd) {
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000557 CloseHandle(fd);
Alexey Samsonovdde1f112012-06-05 07:05:10 +0000558}
559
Timur Iskhodzhanov2b391692015-04-09 13:38:14 +0000560bool ReadFromFile(fd_t fd, void *buff, uptr buff_size, uptr *bytes_read,
561 error_t *error_p) {
Reid Kleckner646386e2015-08-03 19:51:18 +0000562 CHECK(fd != kInvalidFd);
Hans Wennborg92e64122015-08-05 17:55:26 +0000563
564 // bytes_read can't be passed directly to ReadFile:
565 // uptr is unsigned long long on 64-bit Windows.
566 unsigned long num_read_long;
567
568 bool success = ::ReadFile(fd, buff, buff_size, &num_read_long, nullptr);
Reid Kleckner646386e2015-08-03 19:51:18 +0000569 if (!success && error_p)
570 *error_p = GetLastError();
Hans Wennborg92e64122015-08-05 17:55:26 +0000571 if (bytes_read)
572 *bytes_read = num_read_long;
Reid Kleckner646386e2015-08-03 19:51:18 +0000573 return success;
Timur Iskhodzhanov2b391692015-04-09 13:38:14 +0000574}
575
Timur Iskhodzhanovc2c9ea52015-04-08 17:42:57 +0000576bool SupportsColoredOutput(fd_t fd) {
577 // FIXME: support colored output.
578 return false;
579}
580
Timur Iskhodzhanove8a6fbb2015-04-09 14:11:25 +0000581bool WriteToFile(fd_t fd, const void *buff, uptr buff_size, uptr *bytes_written,
582 error_t *error_p) {
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000583 CHECK(fd != kInvalidFd);
Timur Iskhodzhanovaeefb6a2014-02-04 23:28:30 +0000584
Reid Klecknere96833e2015-08-10 23:40:27 +0000585 // Handle null optional parameters.
586 error_t dummy_error;
587 error_p = error_p ? error_p : &dummy_error;
588 uptr dummy_bytes_written;
589 bytes_written = bytes_written ? bytes_written : &dummy_bytes_written;
590
591 // Initialize output parameters in case we fail.
592 *error_p = 0;
593 *bytes_written = 0;
594
595 // Map the conventional Unix fds 1 and 2 to Windows handles. They might be
596 // closed, in which case this will fail.
597 if (fd == kStdoutFd || fd == kStderrFd) {
598 fd = GetStdHandle(fd == kStdoutFd ? STD_OUTPUT_HANDLE : STD_ERROR_HANDLE);
599 if (fd == 0) {
600 *error_p = ERROR_INVALID_HANDLE;
601 return false;
602 }
Timur Iskhodzhanovaeefb6a2014-02-04 23:28:30 +0000603 }
604
Reid Klecknere96833e2015-08-10 23:40:27 +0000605 DWORD bytes_written_32;
606 if (!WriteFile(fd, buff, buff_size, &bytes_written_32, 0)) {
607 *error_p = GetLastError();
Timur Iskhodzhanov007435c2015-04-09 15:25:21 +0000608 return false;
609 } else {
Reid Klecknere96833e2015-08-10 23:40:27 +0000610 *bytes_written = bytes_written_32;
Timur Iskhodzhanove8a6fbb2015-04-09 14:11:25 +0000611 return true;
612 }
Alexey Samsonov03c8b842012-06-05 08:32:53 +0000613}
614
Timur Iskhodzhanova6600a92015-04-09 14:45:17 +0000615bool RenameFile(const char *oldpath, const char *newpath, error_t *error_p) {
616 UNIMPLEMENTED();
617}
618
Peter Collingbourne6f4be192013-05-08 14:43:49 +0000619uptr internal_sched_yield() {
Dmitry Vyukov0ff6d2d2012-11-06 13:19:59 +0000620 Sleep(0);
621 return 0;
Alexey Samsonov58a3c582012-06-18 08:44:30 +0000622}
623
Alexey Samsonovaadd1f22013-02-20 13:54:32 +0000624void internal__exit(int exitcode) {
Timur Iskhodzhanov895392d2013-11-26 09:40:39 +0000625 ExitProcess(exitcode);
Alexey Samsonovaadd1f22013-02-20 13:54:32 +0000626}
627
Evgeniy Stepanova00ff192014-05-28 08:26:24 +0000628uptr internal_ftruncate(fd_t fd, uptr size) {
629 UNIMPLEMENTED();
630}
631
Kostya Serebryany6c54a6b2014-12-09 01:22:59 +0000632uptr GetRSS() {
633 return 0;
634}
635
Kostya Serebryany43eb7732014-12-16 19:13:01 +0000636void *internal_start_thread(void (*func)(void *arg), void *arg) { return 0; }
Hans Wennborg7dd94572014-12-16 20:46:05 +0000637void internal_join_thread(void *th) { }
Kostya Serebryany43eb7732014-12-16 19:13:01 +0000638
Dmitry Vyukovf22982b2013-01-14 07:51:39 +0000639// ---------------------- BlockingMutex ---------------- {{{1
Dmitry Vyukovfa67ed42013-02-04 10:42:38 +0000640const uptr LOCK_UNINITIALIZED = 0;
641const uptr LOCK_READY = (uptr)-1;
Dmitry Vyukovf22982b2013-01-14 07:51:39 +0000642
643BlockingMutex::BlockingMutex(LinkerInitialized li) {
644 // FIXME: see comments in BlockingMutex::Lock() for the details.
645 CHECK(li == LINKER_INITIALIZED || owner_ == LOCK_UNINITIALIZED);
646
647 CHECK(sizeof(CRITICAL_SECTION) <= sizeof(opaque_storage_));
648 InitializeCriticalSection((LPCRITICAL_SECTION)opaque_storage_);
649 owner_ = LOCK_READY;
650}
651
Alexey Samsonova097f7b2013-03-14 13:30:56 +0000652BlockingMutex::BlockingMutex() {
653 CHECK(sizeof(CRITICAL_SECTION) <= sizeof(opaque_storage_));
654 InitializeCriticalSection((LPCRITICAL_SECTION)opaque_storage_);
655 owner_ = LOCK_READY;
656}
657
Dmitry Vyukovf22982b2013-01-14 07:51:39 +0000658void BlockingMutex::Lock() {
659 if (owner_ == LOCK_UNINITIALIZED) {
660 // FIXME: hm, global BlockingMutex objects are not initialized?!?
661 // This might be a side effect of the clang+cl+link Frankenbuild...
662 new(this) BlockingMutex((LinkerInitialized)(LINKER_INITIALIZED + 1));
663
664 // FIXME: If it turns out the linker doesn't invoke our
665 // constructors, we should probably manually Lock/Unlock all the global
666 // locks while we're starting in one thread to avoid double-init races.
667 }
668 EnterCriticalSection((LPCRITICAL_SECTION)opaque_storage_);
Dmitry Vyukov7981ea82013-02-04 08:07:45 +0000669 CHECK_EQ(owner_, LOCK_READY);
Dmitry Vyukovf22982b2013-01-14 07:51:39 +0000670 owner_ = GetThreadSelf();
671}
672
673void BlockingMutex::Unlock() {
Dmitry Vyukov7981ea82013-02-04 08:07:45 +0000674 CHECK_EQ(owner_, GetThreadSelf());
Dmitry Vyukovf22982b2013-01-14 07:51:39 +0000675 owner_ = LOCK_READY;
676 LeaveCriticalSection((LPCRITICAL_SECTION)opaque_storage_);
677}
678
Alexey Samsonovdb7d9652013-03-11 15:45:20 +0000679void BlockingMutex::CheckLocked() {
680 CHECK_EQ(owner_, GetThreadSelf());
681}
682
Evgeniy Stepanov5697b582013-03-13 08:19:53 +0000683uptr GetTlsSize() {
684 return 0;
685}
686
687void InitTlsSize() {
688}
689
Sergey Matveev954c6ef12013-05-07 14:41:43 +0000690void GetThreadStackAndTls(bool main, uptr *stk_addr, uptr *stk_size,
691 uptr *tls_addr, uptr *tls_size) {
Dmitry Vyukovb278f122013-06-10 10:30:54 +0000692#ifdef SANITIZER_GO
693 *stk_addr = 0;
694 *stk_size = 0;
695 *tls_addr = 0;
696 *tls_size = 0;
697#else
Sergey Matveev954c6ef12013-05-07 14:41:43 +0000698 uptr stack_top, stack_bottom;
699 GetThreadStackTopAndBottom(main, &stack_top, &stack_bottom);
700 *stk_addr = stack_bottom;
701 *stk_size = stack_top - stack_bottom;
702 *tls_addr = 0;
703 *tls_size = 0;
Dmitry Vyukovb278f122013-06-10 10:30:54 +0000704#endif
Sergey Matveev954c6ef12013-05-07 14:41:43 +0000705}
706
Dmitry Vyukovaa8fa602014-09-01 11:44:59 +0000707#if !SANITIZER_GO
Evgeniy Stepanov8eb82042015-01-22 13:47:12 +0000708void BufferedStackTrace::SlowUnwindStack(uptr pc, u32 max_depth) {
Alexey Samsonov3e8467b2014-03-04 12:21:28 +0000709 CHECK_GE(max_depth, 2);
Sergey Matveevaf179b82013-05-08 12:45:55 +0000710 // FIXME: CaptureStackBackTrace might be too slow for us.
711 // FIXME: Compare with StackWalk64.
712 // FIXME: Look at LLVMUnhandledExceptionFilter in Signals.inc
Timur Iskhodzhanov1f1c7ec2013-11-09 13:59:12 +0000713 size = CaptureStackBackTrace(2, Min(max_depth, kStackTraceMax),
714 (void**)trace, 0);
Timur Iskhodzhanov89a346c2013-12-10 08:30:39 +0000715 if (size == 0)
716 return;
717
Sergey Matveevaf179b82013-05-08 12:45:55 +0000718 // Skip the RTL frames by searching for the PC in the stacktrace.
Timur Iskhodzhanov1f1c7ec2013-11-09 13:59:12 +0000719 uptr pc_location = LocatePcInTrace(pc);
720 PopStackFrames(pc_location);
Sergey Matveevaf179b82013-05-08 12:45:55 +0000721}
722
Alexey Samsonov9c859272014-10-26 03:35:14 +0000723void BufferedStackTrace::SlowUnwindStackWithContext(uptr pc, void *context,
Evgeniy Stepanov8eb82042015-01-22 13:47:12 +0000724 u32 max_depth) {
Timur Iskhodzhanov19853dd2014-07-11 11:57:41 +0000725 CONTEXT ctx = *(CONTEXT *)context;
726 STACKFRAME64 stack_frame;
727 memset(&stack_frame, 0, sizeof(stack_frame));
728 size = 0;
729#if defined(_WIN64)
730 int machine_type = IMAGE_FILE_MACHINE_AMD64;
731 stack_frame.AddrPC.Offset = ctx.Rip;
732 stack_frame.AddrFrame.Offset = ctx.Rbp;
733 stack_frame.AddrStack.Offset = ctx.Rsp;
734#else
735 int machine_type = IMAGE_FILE_MACHINE_I386;
736 stack_frame.AddrPC.Offset = ctx.Eip;
737 stack_frame.AddrFrame.Offset = ctx.Ebp;
738 stack_frame.AddrStack.Offset = ctx.Esp;
739#endif
740 stack_frame.AddrPC.Mode = AddrModeFlat;
741 stack_frame.AddrFrame.Mode = AddrModeFlat;
742 stack_frame.AddrStack.Mode = AddrModeFlat;
743 while (StackWalk64(machine_type, GetCurrentProcess(), GetCurrentThread(),
744 &stack_frame, &ctx, NULL, &SymFunctionTableAccess64,
745 &SymGetModuleBase64, NULL) &&
746 size < Min(max_depth, kStackTraceMax)) {
Hans Wennborgf89a3f862014-10-26 19:27:02 +0000747 trace_buffer[size++] = (uptr)stack_frame.AddrPC.Offset;
Timur Iskhodzhanov19853dd2014-07-11 11:57:41 +0000748 }
Evgeniy Stepanove5a447d2014-02-11 13:57:17 +0000749}
Dmitry Vyukovaa8fa602014-09-01 11:44:59 +0000750#endif // #if !SANITIZER_GO
Evgeniy Stepanove5a447d2014-02-11 13:57:17 +0000751
Alexey Samsonov3a41ed12014-12-11 18:30:25 +0000752void ReportFile::Write(const char *buffer, uptr length) {
753 SpinMutexLock l(mu);
754 ReopenIfNecessary();
Timur Iskhodzhanove8a6fbb2015-04-09 14:11:25 +0000755 if (!WriteToFile(fd, buffer, length)) {
Reid Klecknerd483c072013-09-05 03:19:57 +0000756 // stderr may be closed, but we may be able to print to the debugger
757 // instead. This is the case when launching a program from Visual Studio,
758 // and the following routine should write to its console.
759 OutputDebugStringA(buffer);
760 }
761}
762
Alexander Potapenkod8d490e2014-01-28 11:12:29 +0000763void SetAlternateSignalStack() {
764 // FIXME: Decide what to do on Windows.
765}
766
767void UnsetAlternateSignalStack() {
768 // FIXME: Decide what to do on Windows.
769}
770
Alexander Potapenkoea4a0db2014-01-31 15:11:11 +0000771void InstallDeadlySignalHandlers(SignalHandlerType handler) {
772 (void)handler;
Alexander Potapenko789e3e12014-01-31 13:10:07 +0000773 // FIXME: Decide what to do on Windows.
774}
775
Anna Zaksc77a0802016-02-02 02:01:17 +0000776bool IsHandledDeadlySignal(int signum) {
Alexander Potapenko789e3e12014-01-31 13:10:07 +0000777 // FIXME: Decide what to do on Windows.
778 return false;
779}
780
Alexey Samsonov1947bf92014-09-17 17:56:15 +0000781bool IsAccessibleMemoryRange(uptr beg, uptr size) {
Peter Collingbournea68d90f2015-07-02 22:08:38 +0000782 SYSTEM_INFO si;
783 GetNativeSystemInfo(&si);
784 uptr page_size = si.dwPageSize;
785 uptr page_mask = ~(page_size - 1);
786
787 for (uptr page = beg & page_mask, end = (beg + size - 1) & page_mask;
788 page <= end;) {
789 MEMORY_BASIC_INFORMATION info;
790 if (VirtualQuery((LPCVOID)page, &info, sizeof(info)) != sizeof(info))
791 return false;
792
793 if (info.Protect == 0 || info.Protect == PAGE_NOACCESS ||
794 info.Protect == PAGE_EXECUTE)
795 return false;
796
797 if (info.RegionSize == 0)
798 return false;
799
800 page += info.RegionSize;
801 }
802
Alexey Samsonov1947bf92014-09-17 17:56:15 +0000803 return true;
804}
805
Dmitry Vyukovdf01bdc2015-03-02 17:45:18 +0000806SignalContext SignalContext::Create(void *siginfo, void *context) {
Evgeniy Stepanovaa42f292016-02-09 00:28:57 +0000807 EXCEPTION_RECORD *exception_record = (EXCEPTION_RECORD *)siginfo;
808 CONTEXT *context_record = (CONTEXT *)context;
Dmitry Vyukovdf01bdc2015-03-02 17:45:18 +0000809
810 uptr pc = (uptr)exception_record->ExceptionAddress;
811#ifdef _WIN64
812 uptr bp = (uptr)context_record->Rbp;
813 uptr sp = (uptr)context_record->Rsp;
814#else
815 uptr bp = (uptr)context_record->Ebp;
816 uptr sp = (uptr)context_record->Esp;
817#endif
818 uptr access_addr = exception_record->ExceptionInformation[1];
819
Reid Klecknerceda8832016-02-11 16:44:35 +0000820 // The contents of this array are documented at
821 // https://msdn.microsoft.com/en-us/library/windows/desktop/aa363082(v=vs.85).aspx
822 // The first element indicates read as 0, write as 1, or execute as 8. The
823 // second element is the faulting address.
824 WriteFlag write_flag = SignalContext::UNKNOWN;
825 switch (exception_record->ExceptionInformation[0]) {
826 case 0: write_flag = SignalContext::READ; break;
827 case 1: write_flag = SignalContext::WRITE; break;
828 case 8: write_flag = SignalContext::UNKNOWN; break;
829 }
830 bool is_memory_access = write_flag != SignalContext::UNKNOWN;
Kostya Serebryany2b9be252016-02-04 02:02:09 +0000831 return SignalContext(context, access_addr, pc, sp, bp, is_memory_access,
Evgeniy Stepanov0d7839d2016-02-08 23:01:06 +0000832 write_flag);
Dmitry Vyukovdf01bdc2015-03-02 17:45:18 +0000833}
834
Yury Gribovc019a572015-06-04 07:29:43 +0000835uptr ReadBinaryName(/*out*/char *buf, uptr buf_len) {
836 // FIXME: Actually implement this function.
837 CHECK_GT(buf_len, 0);
838 buf[0] = 0;
839 return 0;
840}
841
Evgeniy Stepanov30257172015-07-28 21:01:42 +0000842uptr ReadLongProcessName(/*out*/char *buf, uptr buf_len) {
843 return ReadBinaryName(buf, buf_len);
844}
845
Adhemerval Zanella05636862015-09-11 13:55:00 +0000846void CheckVMASize() {
847 // Do nothing.
848}
849
Kuba Brecka65aa45e2015-12-03 10:39:43 +0000850void MaybeReexec() {
851 // No need to re-exec on Windows.
852}
853
Maxim Ostapenko1965cc62016-01-18 07:55:12 +0000854char **GetArgv() {
855 // FIXME: Actually implement this function.
856 return 0;
857}
858
Mike Aizatsky4a933162016-01-26 20:10:01 +0000859pid_t StartSubprocess(const char *program, const char *const argv[],
860 fd_t stdin_fd, fd_t stdout_fd, fd_t stderr_fd) {
861 // FIXME: implement on this platform
862 // Should be implemented based on
863 // SymbolizerProcess::StarAtSymbolizerSubprocess
864 // from lib/sanitizer_common/sanitizer_symbolizer_win.cc.
865 return -1;
866}
867
868bool IsProcessRunning(pid_t pid) {
869 // FIXME: implement on this platform.
870 return false;
871}
872
Mike Aizatsky26542992016-01-27 23:51:36 +0000873int WaitForProcess(pid_t pid) { return -1; }
874
Alexey Samsonovdde1f112012-06-05 07:05:10 +0000875} // namespace __sanitizer
876
877#endif // _WIN32