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Bob Wilsona08e9ac2013-11-15 07:18:15 +00001//===-- sanitizer_coverage.cc ---------------------------------------------===//
2//
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// Sanitizer Coverage.
11// This file implements run-time support for a poor man's coverage tool.
12//
13// Compiler instrumentation:
Kostya Serebryany714c67c2014-01-17 11:00:30 +000014// For every interesting basic block the compiler injects the following code:
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +000015// if (Guard) {
16// __sanitizer_cov(&Guard);
Bob Wilsona08e9ac2013-11-15 07:18:15 +000017// }
Kostya Serebryany714c67c2014-01-17 11:00:30 +000018// It's fine to call __sanitizer_cov more than once for a given block.
Bob Wilsona08e9ac2013-11-15 07:18:15 +000019//
20// Run-time:
Kostya Serebryany714c67c2014-01-17 11:00:30 +000021// - __sanitizer_cov(): record that we've executed the PC (GET_CALLER_PC).
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +000022// and atomically set Guard to 1.
Bob Wilsona08e9ac2013-11-15 07:18:15 +000023// - __sanitizer_cov_dump: dump the coverage data to disk.
24// For every module of the current process that has coverage data
25// this will create a file module_name.PID.sancov. The file format is simple:
26// it's just a sorted sequence of 4-byte offsets in the module.
27//
28// Eventually, this coverage implementation should be obsoleted by a more
29// powerful general purpose Clang/LLVM coverage instrumentation.
30// Consider this implementation as prototype.
31//
32// FIXME: support (or at least test with) dlclose.
33//===----------------------------------------------------------------------===//
34
35#include "sanitizer_allocator_internal.h"
36#include "sanitizer_common.h"
37#include "sanitizer_libc.h"
38#include "sanitizer_mutex.h"
39#include "sanitizer_procmaps.h"
Kostya Serebryany714c67c2014-01-17 11:00:30 +000040#include "sanitizer_stacktrace.h"
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +000041#include "sanitizer_symbolizer.h"
Bob Wilsona08e9ac2013-11-15 07:18:15 +000042#include "sanitizer_flags.h"
43
Kostya Serebryany183cb6e2014-11-14 23:15:55 +000044static atomic_uint32_t dump_once_guard; // Ensure that CovDump runs only once.
45
46static atomic_uintptr_t coverage_counter;
Bob Wilsona08e9ac2013-11-15 07:18:15 +000047
Kostya Serebryany8b530e12014-04-30 10:40:48 +000048// pc_array is the array containing the covered PCs.
Sergey Matveev6cb47a082014-05-19 12:53:03 +000049// To make the pc_array thread- and async-signal-safe it has to be large enough.
Kostya Serebryany8b530e12014-04-30 10:40:48 +000050// 128M counters "ought to be enough for anybody" (4M on 32-bit).
Evgeniy Stepanov567e5162014-05-27 12:37:52 +000051
52// With coverage_direct=1 in ASAN_OPTIONS, pc_array memory is mapped to a file.
53// In this mode, __sanitizer_cov_dump does nothing, and CovUpdateMapping()
54// dump current memory layout to another file.
Bob Wilsona08e9ac2013-11-15 07:18:15 +000055
Sergey Matveev6cb47a082014-05-19 12:53:03 +000056static bool cov_sandboxed = false;
57static int cov_fd = kInvalidFd;
58static unsigned int cov_max_block_size = 0;
59
Bob Wilsona08e9ac2013-11-15 07:18:15 +000060namespace __sanitizer {
61
Evgeniy Stepanov567e5162014-05-27 12:37:52 +000062class CoverageData {
63 public:
64 void Init();
Evgeniy Stepanovfe181022014-06-04 12:13:54 +000065 void BeforeFork();
66 void AfterFork(int child_pid);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +000067 void Extend(uptr npcs);
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +000068 void Add(uptr pc, u8 *guard);
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +000069 void IndirCall(uptr caller, uptr callee, uptr callee_cache[],
70 uptr cache_size);
71 void DumpCallerCalleePairs();
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +000072 void DumpTrace();
73
74 ALWAYS_INLINE
75 void TraceBasicaBlock(uptr *cache);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +000076
77 uptr *data();
78 uptr size();
79
80 private:
81 // Maximal size pc array may ever grow.
82 // We MmapNoReserve this space to ensure that the array is contiguous.
83 static const uptr kPcArrayMaxSize = FIRST_32_SECOND_64(1 << 22, 1 << 27);
84 // The amount file mapping for the pc array is grown by.
85 static const uptr kPcArrayMmapSize = 64 * 1024;
86
87 // pc_array is allocated with MmapNoReserveOrDie and so it uses only as
88 // much RAM as it really needs.
89 uptr *pc_array;
90 // Index of the first available pc_array slot.
91 atomic_uintptr_t pc_array_index;
92 // Array size.
93 atomic_uintptr_t pc_array_size;
94 // Current file mapped size of the pc array.
95 uptr pc_array_mapped_size;
96 // Descriptor of the file mapped pc array.
97 int pc_fd;
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +000098
99 // Caller-Callee (cc) array, size and current index.
100 static const uptr kCcArrayMaxSize = FIRST_32_SECOND_64(1 << 18, 1 << 24);
101 uptr **cc_array;
102 atomic_uintptr_t cc_array_index;
103 atomic_uintptr_t cc_array_size;
104
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000105 // Tracing (tr) pc and event arrays, their size and current index.
106 // We record all events (basic block entries) in a global buffer of u32
107 // values. Each such value is an index in the table of TracedPc objects.
108 // So far the tracing is highly experimental:
109 // - not thread-safe;
110 // - does not support long traces;
111 // - not tuned for performance.
112 struct TracedPc {
113 uptr pc;
114 const char *module_name;
115 uptr module_offset;
116 };
117 static const uptr kTrEventArrayMaxSize = FIRST_32_SECOND_64(1 << 22, 1 << 30);
118 u32 *tr_event_array;
119 uptr tr_event_array_size;
120 uptr tr_event_array_index;
121 static const uptr kTrPcArrayMaxSize = FIRST_32_SECOND_64(1 << 22, 1 << 27);
122 TracedPc *tr_pc_array;
123 uptr tr_pc_array_size;
124 uptr tr_pc_array_index;
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000125
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000126 StaticSpinMutex mu;
127
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000128 void DirectOpen();
Evgeniy Stepanovfe181022014-06-04 12:13:54 +0000129 void ReInit();
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000130};
131
132static CoverageData coverage_data;
133
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000134void CoverageData::DirectOpen() {
Alexey Samsonov4cc76cb2014-11-26 01:48:39 +0000135 InternalScopedString path(kMaxPathLength);
Evgeniy Stepanovfa5c0752014-05-29 14:33:16 +0000136 internal_snprintf((char *)path.data(), path.size(), "%s/%zd.sancov.raw",
137 common_flags()->coverage_dir, internal_getpid());
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000138 pc_fd = OpenFile(path.data(), true);
139 if (internal_iserror(pc_fd)) {
140 Report(" Coverage: failed to open %s for writing\n", path.data());
141 Die();
142 }
143
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000144 pc_array_mapped_size = 0;
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000145 CovUpdateMapping();
146}
147
148void CoverageData::Init() {
149 pc_array = reinterpret_cast<uptr *>(
150 MmapNoReserveOrDie(sizeof(uptr) * kPcArrayMaxSize, "CovInit"));
Evgeniy Stepanovfe181022014-06-04 12:13:54 +0000151 pc_fd = kInvalidFd;
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000152 if (common_flags()->coverage_direct) {
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000153 atomic_store(&pc_array_size, 0, memory_order_relaxed);
154 atomic_store(&pc_array_index, 0, memory_order_relaxed);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000155 } else {
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000156 atomic_store(&pc_array_size, kPcArrayMaxSize, memory_order_relaxed);
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000157 atomic_store(&pc_array_index, 0, memory_order_relaxed);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000158 }
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000159
160 cc_array = reinterpret_cast<uptr **>(MmapNoReserveOrDie(
161 sizeof(uptr *) * kCcArrayMaxSize, "CovInit::cc_array"));
162 atomic_store(&cc_array_size, kCcArrayMaxSize, memory_order_relaxed);
163 atomic_store(&cc_array_index, 0, memory_order_relaxed);
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000164
165 tr_event_array = reinterpret_cast<u32 *>(
166 MmapNoReserveOrDie(sizeof(tr_event_array[0]) * kTrEventArrayMaxSize,
167 "CovInit::tr_event_array"));
168 tr_event_array_size = kTrEventArrayMaxSize;
169 tr_event_array_index = 0;
170
171 tr_pc_array = reinterpret_cast<TracedPc *>(MmapNoReserveOrDie(
172 sizeof(tr_pc_array[0]) * kTrEventArrayMaxSize, "CovInit::tr_pc_array"));
173 tr_pc_array_size = kTrEventArrayMaxSize;
174 tr_pc_array_index = 0;
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000175}
176
Evgeniy Stepanovfe181022014-06-04 12:13:54 +0000177void CoverageData::ReInit() {
178 internal_munmap(pc_array, sizeof(uptr) * kPcArrayMaxSize);
179 if (pc_fd != kInvalidFd) internal_close(pc_fd);
180 if (common_flags()->coverage_direct) {
181 // In memory-mapped mode we must extend the new file to the known array
182 // size.
183 uptr size = atomic_load(&pc_array_size, memory_order_relaxed);
184 Init();
185 if (size) Extend(size);
186 } else {
187 Init();
188 }
189}
190
191void CoverageData::BeforeFork() {
192 mu.Lock();
193}
194
195void CoverageData::AfterFork(int child_pid) {
196 // We are single-threaded so it's OK to release the lock early.
197 mu.Unlock();
198 if (child_pid == 0) ReInit();
199}
200
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000201// Extend coverage PC array to fit additional npcs elements.
202void CoverageData::Extend(uptr npcs) {
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000203 if (!common_flags()->coverage_direct) return;
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000204 SpinMutexLock l(&mu);
205
Evgeniy Stepanovfe181022014-06-04 12:13:54 +0000206 if (pc_fd == kInvalidFd) DirectOpen();
207 CHECK_NE(pc_fd, kInvalidFd);
Evgeniy Stepanovce984522014-06-03 15:27:15 +0000208
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000209 uptr size = atomic_load(&pc_array_size, memory_order_relaxed);
210 size += npcs * sizeof(uptr);
211
212 if (size > pc_array_mapped_size) {
213 uptr new_mapped_size = pc_array_mapped_size;
214 while (size > new_mapped_size) new_mapped_size += kPcArrayMmapSize;
215
216 // Extend the file and map the new space at the end of pc_array.
217 uptr res = internal_ftruncate(pc_fd, new_mapped_size);
218 int err;
219 if (internal_iserror(res, &err)) {
220 Printf("failed to extend raw coverage file: %d\n", err);
221 Die();
222 }
223 void *p = MapWritableFileToMemory(pc_array + pc_array_mapped_size,
224 new_mapped_size - pc_array_mapped_size,
225 pc_fd, pc_array_mapped_size);
226 CHECK_EQ(p, pc_array + pc_array_mapped_size);
227 pc_array_mapped_size = new_mapped_size;
228 }
229
230 atomic_store(&pc_array_size, size, memory_order_release);
231}
232
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +0000233// Atomically add the pc to the vector. The atomically set the guard to 1.
234// If the function is called more than once for a given PC it will
235// be inserted multiple times, which is fine.
236void CoverageData::Add(uptr pc, u8 *guard) {
Kostya Serebryany8b530e12014-04-30 10:40:48 +0000237 if (!pc_array) return;
238 uptr idx = atomic_fetch_add(&pc_array_index, 1, memory_order_relaxed);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000239 CHECK_LT(idx * sizeof(uptr),
240 atomic_load(&pc_array_size, memory_order_acquire));
Kostya Serebryany8b530e12014-04-30 10:40:48 +0000241 pc_array[idx] = pc;
Kostya Serebryany183cb6e2014-11-14 23:15:55 +0000242 atomic_fetch_add(&coverage_counter, 1, memory_order_relaxed);
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +0000243 // Set the guard.
244 atomic_uint8_t *atomic_guard = reinterpret_cast<atomic_uint8_t*>(guard);
245 atomic_store(atomic_guard, 1, memory_order_relaxed);
Kostya Serebryany8b530e12014-04-30 10:40:48 +0000246}
247
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000248// Registers a pair caller=>callee.
249// When a given caller is seen for the first time, the callee_cache is added
250// to the global array cc_array, callee_cache[0] is set to caller and
251// callee_cache[1] is set to cache_size.
252// Then we are trying to add callee to callee_cache [2,cache_size) if it is
253// not there yet.
254// If the cache is full we drop the callee (may want to fix this later).
255void CoverageData::IndirCall(uptr caller, uptr callee, uptr callee_cache[],
256 uptr cache_size) {
257 if (!cc_array) return;
258 atomic_uintptr_t *atomic_callee_cache =
259 reinterpret_cast<atomic_uintptr_t *>(callee_cache);
260 uptr zero = 0;
261 if (atomic_compare_exchange_strong(&atomic_callee_cache[0], &zero, caller,
262 memory_order_seq_cst)) {
263 uptr idx = atomic_fetch_add(&cc_array_index, 1, memory_order_relaxed);
264 CHECK_LT(idx * sizeof(uptr),
265 atomic_load(&cc_array_size, memory_order_acquire));
266 callee_cache[1] = cache_size;
267 cc_array[idx] = callee_cache;
268 }
269 CHECK_EQ(atomic_load(&atomic_callee_cache[0], memory_order_relaxed), caller);
270 for (uptr i = 2; i < cache_size; i++) {
271 uptr was = 0;
272 if (atomic_compare_exchange_strong(&atomic_callee_cache[i], &was, callee,
Kostya Serebryany183cb6e2014-11-14 23:15:55 +0000273 memory_order_seq_cst)) {
274 atomic_fetch_add(&coverage_counter, 1, memory_order_relaxed);
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000275 return;
Kostya Serebryany183cb6e2014-11-14 23:15:55 +0000276 }
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000277 if (was == callee) // Already have this callee.
278 return;
279 }
280}
281
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000282uptr *CoverageData::data() {
283 return pc_array;
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000284}
285
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000286uptr CoverageData::size() {
287 return atomic_load(&pc_array_index, memory_order_relaxed);
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000288}
289
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000290// Block layout for packed file format: header, followed by module name (no
291// trailing zero), followed by data blob.
292struct CovHeader {
293 int pid;
294 unsigned int module_name_length;
295 unsigned int data_length;
296};
297
298static void CovWritePacked(int pid, const char *module, const void *blob,
299 unsigned int blob_size) {
Sergey Matveev83f91e72014-05-21 13:43:52 +0000300 if (cov_fd < 0) return;
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000301 unsigned module_name_length = internal_strlen(module);
302 CovHeader header = {pid, module_name_length, blob_size};
303
304 if (cov_max_block_size == 0) {
305 // Writing to a file. Just go ahead.
306 internal_write(cov_fd, &header, sizeof(header));
307 internal_write(cov_fd, module, module_name_length);
308 internal_write(cov_fd, blob, blob_size);
309 } else {
310 // Writing to a socket. We want to split the data into appropriately sized
311 // blocks.
312 InternalScopedBuffer<char> block(cov_max_block_size);
313 CHECK_EQ((uptr)block.data(), (uptr)(CovHeader *)block.data());
314 uptr header_size_with_module = sizeof(header) + module_name_length;
315 CHECK_LT(header_size_with_module, cov_max_block_size);
316 unsigned int max_payload_size =
317 cov_max_block_size - header_size_with_module;
318 char *block_pos = block.data();
319 internal_memcpy(block_pos, &header, sizeof(header));
320 block_pos += sizeof(header);
321 internal_memcpy(block_pos, module, module_name_length);
322 block_pos += module_name_length;
323 char *block_data_begin = block_pos;
Alexey Samsonov4925fd42014-11-13 22:40:59 +0000324 const char *blob_pos = (const char *)blob;
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000325 while (blob_size > 0) {
326 unsigned int payload_size = Min(blob_size, max_payload_size);
327 blob_size -= payload_size;
328 internal_memcpy(block_data_begin, blob_pos, payload_size);
329 blob_pos += payload_size;
330 ((CovHeader *)block.data())->data_length = payload_size;
331 internal_write(cov_fd, block.data(),
332 header_size_with_module + payload_size);
333 }
334 }
335}
336
Sergey Matveev83f91e72014-05-21 13:43:52 +0000337// If packed = false: <name>.<pid>.<sancov> (name = module name).
338// If packed = true and name == 0: <pid>.<sancov>.<packed>.
339// If packed = true and name != 0: <name>.<sancov>.<packed> (name is
340// user-supplied).
341static int CovOpenFile(bool packed, const char* name) {
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000342 InternalScopedString path(kMaxPathLength);
Sergey Matveev83f91e72014-05-21 13:43:52 +0000343 if (!packed) {
344 CHECK(name);
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000345 path.append("%s/%s.%zd.sancov", common_flags()->coverage_dir, name,
346 internal_getpid());
Sergey Matveev83f91e72014-05-21 13:43:52 +0000347 } else {
348 if (!name)
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000349 path.append("%s/%zd.sancov.packed", common_flags()->coverage_dir,
350 internal_getpid());
Sergey Matveev83f91e72014-05-21 13:43:52 +0000351 else
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000352 path.append("%s/%s.sancov.packed", common_flags()->coverage_dir, name);
Sergey Matveev83f91e72014-05-21 13:43:52 +0000353 }
354 uptr fd = OpenFile(path.data(), true);
355 if (internal_iserror(fd)) {
356 Report(" SanitizerCoverage: failed to open %s for writing\n", path.data());
357 return -1;
358 }
359 return fd;
360}
361
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000362// Dump trace PCs and trace events into two separate files.
363void CoverageData::DumpTrace() {
364 uptr max_idx = tr_event_array_index;
365 if (!max_idx) return;
366 auto sym = Symbolizer::GetOrInit();
367 if (!sym)
368 return;
369 InternalScopedString out(32 << 20);
370 for (uptr i = 0; i < max_idx; i++) {
371 u32 pc_idx = tr_event_array[i];
372 TracedPc *t = &tr_pc_array[pc_idx];
373 if (!t->module_name) {
374 const char *module_name = "<unknown>";
375 uptr module_address = 0;
376 sym->GetModuleNameAndOffsetForPC(t->pc, &module_name, &module_address);
377 t->module_name = internal_strdup(module_name);
378 t->module_offset = module_address;
379 out.append("%s 0x%zx\n", t->module_name, t->module_offset);
380 }
381 }
382 int fd = CovOpenFile(false, "trace-points");
383 if (fd < 0) return;
384 internal_write(fd, out.data(), out.length());
385 internal_close(fd);
386
387 fd = CovOpenFile(false, "trace-events");
388 if (fd < 0) return;
389 internal_write(fd, tr_event_array, max_idx * sizeof(tr_event_array[0]));
390 internal_close(fd);
391 VReport(1, " CovDump: Trace: %zd PCs written\n", tr_pc_array_index);
392 VReport(1, " CovDump: Trace: %zd Events written\n", tr_event_array_index);
393}
394
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000395// This function dumps the caller=>callee pairs into a file as a sequence of
396// lines like "module_name offset".
397void CoverageData::DumpCallerCalleePairs() {
398 uptr max_idx = atomic_load(&cc_array_index, memory_order_relaxed);
399 if (!max_idx) return;
400 auto sym = Symbolizer::GetOrInit();
401 if (!sym)
402 return;
Kostya Serebryany40aa4a22014-10-31 19:49:46 +0000403 InternalScopedString out(32 << 20);
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000404 uptr total = 0;
405 for (uptr i = 0; i < max_idx; i++) {
406 uptr *cc_cache = cc_array[i];
407 CHECK(cc_cache);
408 uptr caller = cc_cache[0];
409 uptr n_callees = cc_cache[1];
410 const char *caller_module_name = "<unknown>";
411 uptr caller_module_address = 0;
412 sym->GetModuleNameAndOffsetForPC(caller, &caller_module_name,
413 &caller_module_address);
414 for (uptr j = 2; j < n_callees; j++) {
415 uptr callee = cc_cache[j];
416 if (!callee) break;
417 total++;
418 const char *callee_module_name = "<unknown>";
419 uptr callee_module_address = 0;
420 sym->GetModuleNameAndOffsetForPC(callee, &callee_module_name,
421 &callee_module_address);
422 out.append("%s 0x%zx\n%s 0x%zx\n", caller_module_name,
423 caller_module_address, callee_module_name,
424 callee_module_address);
425 }
426 }
427 int fd = CovOpenFile(false, "caller-callee");
428 if (fd < 0) return;
429 internal_write(fd, out.data(), out.length());
430 internal_close(fd);
431 VReport(1, " CovDump: %zd caller-callee pairs written\n", total);
432}
433
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000434// Record the current PC into the event buffer.
435// Every event is a u32 value (index in tr_pc_array_index) so we compute
436// it once and then cache in the provided 'cache' storage.
437void CoverageData::TraceBasicaBlock(uptr *cache) {
438 CHECK(common_flags()->coverage);
439 uptr idx = *cache;
440 if (!idx) {
441 CHECK_LT(tr_pc_array_index, kTrPcArrayMaxSize);
442 idx = tr_pc_array_index++;
443 TracedPc *t = &tr_pc_array[idx];
444 t->pc = GET_CALLER_PC();
445 *cache = idx;
446 CHECK_LT(idx, 1U << 31);
447 }
448 CHECK_LT(tr_event_array_index, tr_event_array_size);
449 tr_event_array[tr_event_array_index] = static_cast<u32>(idx);
450 tr_event_array_index++;
451}
452
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000453// Dump the coverage on disk.
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000454static void CovDump() {
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000455 if (!common_flags()->coverage || common_flags()->coverage_direct) return;
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000456#if !SANITIZER_WINDOWS
Kostya Serebryany8b530e12014-04-30 10:40:48 +0000457 if (atomic_fetch_add(&dump_once_guard, 1, memory_order_relaxed))
458 return;
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000459 uptr size = coverage_data.size();
Kostya Serebryany8b530e12014-04-30 10:40:48 +0000460 InternalMmapVector<u32> offsets(size);
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000461 uptr *vb = coverage_data.data();
462 uptr *ve = vb + size;
463 SortArray(vb, size);
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000464 MemoryMappingLayout proc_maps(/*cache_enabled*/true);
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000465 uptr mb, me, off, prot;
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000466 InternalScopedString module(kMaxPathLength);
467 InternalScopedString path(kMaxPathLength);
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000468 for (int i = 0;
469 proc_maps.Next(&mb, &me, &off, module.data(), module.size(), &prot);
470 i++) {
471 if ((prot & MemoryMappingLayout::kProtectionExecute) == 0)
472 continue;
Sergey Matveev76e02e92014-05-08 16:09:54 +0000473 while (vb < ve && *vb < mb) vb++;
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000474 if (vb >= ve) break;
Sergey Matveev76e02e92014-05-08 16:09:54 +0000475 if (*vb < me) {
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000476 offsets.clear();
477 const uptr *old_vb = vb;
478 CHECK_LE(off, *vb);
479 for (; vb < ve && *vb < me; vb++) {
480 uptr diff = *vb - (i ? mb : 0) + off;
481 CHECK_LE(diff, 0xffffffffU);
482 offsets.push_back(static_cast<u32>(diff));
483 }
Alexey Samsonov26ca05a2014-11-04 19:34:29 +0000484 const char *module_name = StripModuleName(module.data());
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000485 if (cov_sandboxed) {
Sergey Matveev83f91e72014-05-21 13:43:52 +0000486 if (cov_fd >= 0) {
487 CovWritePacked(internal_getpid(), module_name, offsets.data(),
488 offsets.size() * sizeof(u32));
489 VReport(1, " CovDump: %zd PCs written to packed file\n", vb - old_vb);
490 }
Evgeniy Stepanov8ab205f2014-02-12 15:29:22 +0000491 } else {
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000492 // One file per module per process.
Alexey Samsonov656c29b2014-12-02 22:20:11 +0000493 path.clear();
494 path.append("%s/%s.%zd.sancov", common_flags()->coverage_dir,
495 module_name, internal_getpid());
Sergey Matveev83f91e72014-05-21 13:43:52 +0000496 int fd = CovOpenFile(false /* packed */, module_name);
497 if (fd > 0) {
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000498 internal_write(fd, offsets.data(), offsets.size() * sizeof(u32));
499 internal_close(fd);
500 VReport(1, " CovDump: %s: %zd PCs written\n", path.data(),
501 vb - old_vb);
502 }
Evgeniy Stepanov8ab205f2014-02-12 15:29:22 +0000503 }
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000504 }
505 }
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000506 if (cov_fd >= 0)
507 internal_close(cov_fd);
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000508 coverage_data.DumpCallerCalleePairs();
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000509 coverage_data.DumpTrace();
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000510#endif // !SANITIZER_WINDOWS
511}
512
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000513void CovPrepareForSandboxing(__sanitizer_sandbox_arguments *args) {
514 if (!args) return;
515 if (!common_flags()->coverage) return;
516 cov_sandboxed = args->coverage_sandboxed;
517 if (!cov_sandboxed) return;
518 cov_fd = args->coverage_fd;
519 cov_max_block_size = args->coverage_max_block_size;
520 if (cov_fd < 0)
521 // Pre-open the file now. The sandbox won't allow us to do it later.
Sergey Matveev83f91e72014-05-21 13:43:52 +0000522 cov_fd = CovOpenFile(true /* packed */, 0);
Sergey Matveev6cb47a082014-05-19 12:53:03 +0000523}
524
Sergey Matveev83f91e72014-05-21 13:43:52 +0000525int MaybeOpenCovFile(const char *name) {
526 CHECK(name);
527 if (!common_flags()->coverage) return -1;
528 return CovOpenFile(true /* packed */, name);
529}
Evgeniy Stepanovfe181022014-06-04 12:13:54 +0000530
531void CovBeforeFork() {
532 coverage_data.BeforeFork();
533}
534
535void CovAfterFork(int child_pid) {
536 coverage_data.AfterFork(child_pid);
537}
538
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000539} // namespace __sanitizer
540
541extern "C" {
Kostya Serebryany4cadd4a2014-11-24 18:49:53 +0000542SANITIZER_INTERFACE_ATTRIBUTE void __sanitizer_cov(u8 *guard) {
543 coverage_data.Add(StackTrace::GetPreviousInstructionPc(GET_CALLER_PC()),
544 guard);
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000545}
Kostya Serebryanyb6eae0c2014-10-31 17:19:11 +0000546SANITIZER_INTERFACE_ATTRIBUTE void
547__sanitizer_cov_indir_call16(uptr callee, uptr callee_cache16[]) {
548 coverage_data.IndirCall(StackTrace::GetPreviousInstructionPc(GET_CALLER_PC()),
549 callee, callee_cache16, 16);
550}
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000551SANITIZER_INTERFACE_ATTRIBUTE void __sanitizer_cov_dump() { CovDump(); }
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000552SANITIZER_INTERFACE_ATTRIBUTE void __sanitizer_cov_init() {
553 coverage_data.Init();
554}
555SANITIZER_INTERFACE_ATTRIBUTE void __sanitizer_cov_module_init(uptr npcs) {
Evgeniy Stepanovdfa54392014-06-11 15:11:26 +0000556 if (!common_flags()->coverage || !common_flags()->coverage_direct) return;
557 if (SANITIZER_ANDROID) {
Evgeniy Stepanov38c228a2014-06-05 14:38:53 +0000558 // dlopen/dlclose interceptors do not work on Android, so we rely on
559 // Extend() calls to update .sancov.map.
560 CovUpdateMapping(GET_CALLER_PC());
561 }
Evgeniy Stepanov567e5162014-05-27 12:37:52 +0000562 coverage_data.Extend(npcs);
563}
Sergey Matveev83f91e72014-05-21 13:43:52 +0000564SANITIZER_INTERFACE_ATTRIBUTE
565sptr __sanitizer_maybe_open_cov_file(const char *name) {
566 return MaybeOpenCovFile(name);
567}
Kostya Serebryany183cb6e2014-11-14 23:15:55 +0000568SANITIZER_INTERFACE_ATTRIBUTE
569uptr __sanitizer_get_total_unique_coverage() {
570 return atomic_load(&coverage_counter, memory_order_relaxed);
571}
Kostya Serebryanyc9d251e2014-11-19 00:24:11 +0000572
573SANITIZER_INTERFACE_ATTRIBUTE
574void __sanitizer_cov_trace_func_enter(uptr *cache) {
575 coverage_data.TraceBasicaBlock(cache);
576}
577SANITIZER_INTERFACE_ATTRIBUTE
578void __sanitizer_cov_trace_basic_block(uptr *cache) {
579 coverage_data.TraceBasicaBlock(cache);
580}
Bob Wilsona08e9ac2013-11-15 07:18:15 +0000581} // extern "C"