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1 // Copyright 2012 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are
4 // met:
5 //
6 //     * Redistributions of source code must retain the above copyright
7 //       notice, this list of conditions and the following disclaimer.
8 //     * Redistributions in binary form must reproduce the above
9 //       copyright notice, this list of conditions and the following
10 //       disclaimer in the documentation and/or other materials provided
11 //       with the distribution.
12 //     * Neither the name of Google Inc. nor the names of its
13 //       contributors may be used to endorse or promote products derived
14 //       from this software without specific prior written permission.
15 //
16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 
28 // Platform specific code for Linux goes here. For the POSIX comaptible parts
29 // the implementation is in platform-posix.cc.
30 
31 #include <pthread.h>
32 #include <semaphore.h>
33 #include <signal.h>
34 #include <sys/prctl.h>
35 #include <sys/time.h>
36 #include <sys/resource.h>
37 #include <sys/syscall.h>
38 #include <sys/types.h>
39 #include <stdlib.h>
40 
41 // Ubuntu Dapper requires memory pages to be marked as
42 // executable. Otherwise, OS raises an exception when executing code
43 // in that page.
44 #include <sys/types.h>  // mmap & munmap
45 #include <sys/mman.h>   // mmap & munmap
46 #include <sys/stat.h>   // open
47 #include <fcntl.h>      // open
48 #include <unistd.h>     // sysconf
49 #include <strings.h>    // index
50 #include <errno.h>
51 #include <stdarg.h>
52 
53 // GLibc on ARM defines mcontext_t has a typedef for 'struct sigcontext'.
54 // Old versions of the C library <signal.h> didn't define the type.
55 #if defined(__ANDROID__) && !defined(__BIONIC_HAVE_UCONTEXT_T) && \
56     defined(__arm__) && !defined(__BIONIC_HAVE_STRUCT_SIGCONTEXT)
57 #include <asm/sigcontext.h>
58 #endif
59 
60 #undef MAP_TYPE
61 
62 #include "v8.h"
63 
64 #include "platform.h"
65 #include "v8threads.h"
66 #include "vm-state-inl.h"
67 
68 
69 namespace v8 {
70 namespace internal {
71 
72 
73 #ifdef __arm__
74 
ArmUsingHardFloat()75 bool OS::ArmUsingHardFloat() {
76   // GCC versions 4.6 and above define __ARM_PCS or __ARM_PCS_VFP to specify
77   // the Floating Point ABI used (PCS stands for Procedure Call Standard).
78   // We use these as well as a couple of other defines to statically determine
79   // what FP ABI used.
80   // GCC versions 4.4 and below don't support hard-fp.
81   // GCC versions 4.5 may support hard-fp without defining __ARM_PCS or
82   // __ARM_PCS_VFP.
83 
84 #define GCC_VERSION (__GNUC__ * 10000                                          \
85                      + __GNUC_MINOR__ * 100                                    \
86                      + __GNUC_PATCHLEVEL__)
87 #if GCC_VERSION >= 40600
88 #if defined(__ARM_PCS_VFP)
89   return true;
90 #else
91   return false;
92 #endif
93 
94 #elif GCC_VERSION < 40500
95   return false;
96 
97 #else
98 #if defined(__ARM_PCS_VFP)
99   return true;
100 #elif defined(__ARM_PCS) || defined(__SOFTFP__) || defined(__SOFTFP) || \
101       !defined(__VFP_FP__)
102   return false;
103 #else
104 #error "Your version of GCC does not report the FP ABI compiled for."          \
105        "Please report it on this issue"                                        \
106        "http://code.google.com/p/v8/issues/detail?id=2140"
107 
108 #endif
109 #endif
110 #undef GCC_VERSION
111 }
112 
113 #endif  // def __arm__
114 
115 
LocalTimezone(double time)116 const char* OS::LocalTimezone(double time) {
117   if (std::isnan(time)) return "";
118   time_t tv = static_cast<time_t>(floor(time/msPerSecond));
119   struct tm* t = localtime(&tv);
120   if (NULL == t) return "";
121   return t->tm_zone;
122 }
123 
124 
LocalTimeOffset()125 double OS::LocalTimeOffset() {
126   time_t tv = time(NULL);
127   struct tm* t = localtime(&tv);
128   // tm_gmtoff includes any daylight savings offset, so subtract it.
129   return static_cast<double>(t->tm_gmtoff * msPerSecond -
130                              (t->tm_isdst > 0 ? 3600 * msPerSecond : 0));
131 }
132 
133 
Allocate(const size_t requested,size_t * allocated,bool is_executable)134 void* OS::Allocate(const size_t requested,
135                    size_t* allocated,
136                    bool is_executable) {
137   const size_t msize = RoundUp(requested, AllocateAlignment());
138   int prot = PROT_READ | PROT_WRITE | (is_executable ? PROT_EXEC : 0);
139   void* addr = OS::GetRandomMmapAddr();
140   void* mbase = mmap(addr, msize, prot, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
141   if (mbase == MAP_FAILED) {
142     LOG(i::Isolate::Current(),
143         StringEvent("OS::Allocate", "mmap failed"));
144     return NULL;
145   }
146   *allocated = msize;
147   return mbase;
148 }
149 
150 
151 class PosixMemoryMappedFile : public OS::MemoryMappedFile {
152  public:
PosixMemoryMappedFile(FILE * file,void * memory,int size)153   PosixMemoryMappedFile(FILE* file, void* memory, int size)
154     : file_(file), memory_(memory), size_(size) { }
155   virtual ~PosixMemoryMappedFile();
memory()156   virtual void* memory() { return memory_; }
size()157   virtual int size() { return size_; }
158  private:
159   FILE* file_;
160   void* memory_;
161   int size_;
162 };
163 
164 
open(const char * name)165 OS::MemoryMappedFile* OS::MemoryMappedFile::open(const char* name) {
166   FILE* file = fopen(name, "r+");
167   if (file == NULL) return NULL;
168 
169   fseek(file, 0, SEEK_END);
170   int size = ftell(file);
171 
172   void* memory =
173       mmap(OS::GetRandomMmapAddr(),
174            size,
175            PROT_READ | PROT_WRITE,
176            MAP_SHARED,
177            fileno(file),
178            0);
179   return new PosixMemoryMappedFile(file, memory, size);
180 }
181 
182 
create(const char * name,int size,void * initial)183 OS::MemoryMappedFile* OS::MemoryMappedFile::create(const char* name, int size,
184     void* initial) {
185   FILE* file = fopen(name, "w+");
186   if (file == NULL) return NULL;
187   int result = fwrite(initial, size, 1, file);
188   if (result < 1) {
189     fclose(file);
190     return NULL;
191   }
192   void* memory =
193       mmap(OS::GetRandomMmapAddr(),
194            size,
195            PROT_READ | PROT_WRITE,
196            MAP_SHARED,
197            fileno(file),
198            0);
199   return new PosixMemoryMappedFile(file, memory, size);
200 }
201 
202 
~PosixMemoryMappedFile()203 PosixMemoryMappedFile::~PosixMemoryMappedFile() {
204   if (memory_) OS::Free(memory_, size_);
205   fclose(file_);
206 }
207 
208 
LogSharedLibraryAddresses(Isolate * isolate)209 void OS::LogSharedLibraryAddresses(Isolate* isolate) {
210   // This function assumes that the layout of the file is as follows:
211   // hex_start_addr-hex_end_addr rwxp <unused data> [binary_file_name]
212   // If we encounter an unexpected situation we abort scanning further entries.
213   FILE* fp = fopen("/proc/self/maps", "r");
214   if (fp == NULL) return;
215 
216   // Allocate enough room to be able to store a full file name.
217   const int kLibNameLen = FILENAME_MAX + 1;
218   char* lib_name = reinterpret_cast<char*>(malloc(kLibNameLen));
219 
220   // This loop will terminate once the scanning hits an EOF.
221   while (true) {
222     uintptr_t start, end;
223     char attr_r, attr_w, attr_x, attr_p;
224     // Parse the addresses and permission bits at the beginning of the line.
225     if (fscanf(fp, "%" V8PRIxPTR "-%" V8PRIxPTR, &start, &end) != 2) break;
226     if (fscanf(fp, " %c%c%c%c", &attr_r, &attr_w, &attr_x, &attr_p) != 4) break;
227 
228     int c;
229     if (attr_r == 'r' && attr_w != 'w' && attr_x == 'x') {
230       // Found a read-only executable entry. Skip characters until we reach
231       // the beginning of the filename or the end of the line.
232       do {
233         c = getc(fp);
234       } while ((c != EOF) && (c != '\n') && (c != '/') && (c != '['));
235       if (c == EOF) break;  // EOF: Was unexpected, just exit.
236 
237       // Process the filename if found.
238       if ((c == '/') || (c == '[')) {
239         // Push the '/' or '[' back into the stream to be read below.
240         ungetc(c, fp);
241 
242         // Read to the end of the line. Exit if the read fails.
243         if (fgets(lib_name, kLibNameLen, fp) == NULL) break;
244 
245         // Drop the newline character read by fgets. We do not need to check
246         // for a zero-length string because we know that we at least read the
247         // '/' or '[' character.
248         lib_name[strlen(lib_name) - 1] = '\0';
249       } else {
250         // No library name found, just record the raw address range.
251         snprintf(lib_name, kLibNameLen,
252                  "%08" V8PRIxPTR "-%08" V8PRIxPTR, start, end);
253       }
254       LOG(isolate, SharedLibraryEvent(lib_name, start, end));
255     } else {
256       // Entry not describing executable data. Skip to end of line to set up
257       // reading the next entry.
258       do {
259         c = getc(fp);
260       } while ((c != EOF) && (c != '\n'));
261       if (c == EOF) break;
262     }
263   }
264   free(lib_name);
265   fclose(fp);
266 }
267 
268 
SignalCodeMovingGC()269 void OS::SignalCodeMovingGC() {
270   // Support for ll_prof.py.
271   //
272   // The Linux profiler built into the kernel logs all mmap's with
273   // PROT_EXEC so that analysis tools can properly attribute ticks. We
274   // do a mmap with a name known by ll_prof.py and immediately munmap
275   // it. This injects a GC marker into the stream of events generated
276   // by the kernel and allows us to synchronize V8 code log and the
277   // kernel log.
278   int size = sysconf(_SC_PAGESIZE);
279   FILE* f = fopen(FLAG_gc_fake_mmap, "w+");
280   if (f == NULL) {
281     OS::PrintError("Failed to open %s\n", FLAG_gc_fake_mmap);
282     OS::Abort();
283   }
284   void* addr = mmap(OS::GetRandomMmapAddr(),
285                     size,
286 #if defined(__native_client__)
287                     // The Native Client port of V8 uses an interpreter,
288                     // so code pages don't need PROT_EXEC.
289                     PROT_READ,
290 #else
291                     PROT_READ | PROT_EXEC,
292 #endif
293                     MAP_PRIVATE,
294                     fileno(f),
295                     0);
296   ASSERT(addr != MAP_FAILED);
297   OS::Free(addr, size);
298   fclose(f);
299 }
300 
301 
302 // Constants used for mmap.
303 static const int kMmapFd = -1;
304 static const int kMmapFdOffset = 0;
305 
306 
VirtualMemory()307 VirtualMemory::VirtualMemory() : address_(NULL), size_(0) { }
308 
309 
VirtualMemory(size_t size)310 VirtualMemory::VirtualMemory(size_t size)
311     : address_(ReserveRegion(size)), size_(size) { }
312 
313 
VirtualMemory(size_t size,size_t alignment)314 VirtualMemory::VirtualMemory(size_t size, size_t alignment)
315     : address_(NULL), size_(0) {
316   ASSERT(IsAligned(alignment, static_cast<intptr_t>(OS::AllocateAlignment())));
317   size_t request_size = RoundUp(size + alignment,
318                                 static_cast<intptr_t>(OS::AllocateAlignment()));
319   void* reservation = mmap(OS::GetRandomMmapAddr(),
320                            request_size,
321                            PROT_NONE,
322                            MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE,
323                            kMmapFd,
324                            kMmapFdOffset);
325   if (reservation == MAP_FAILED) return;
326 
327   Address base = static_cast<Address>(reservation);
328   Address aligned_base = RoundUp(base, alignment);
329   ASSERT_LE(base, aligned_base);
330 
331   // Unmap extra memory reserved before and after the desired block.
332   if (aligned_base != base) {
333     size_t prefix_size = static_cast<size_t>(aligned_base - base);
334     OS::Free(base, prefix_size);
335     request_size -= prefix_size;
336   }
337 
338   size_t aligned_size = RoundUp(size, OS::AllocateAlignment());
339   ASSERT_LE(aligned_size, request_size);
340 
341   if (aligned_size != request_size) {
342     size_t suffix_size = request_size - aligned_size;
343     OS::Free(aligned_base + aligned_size, suffix_size);
344     request_size -= suffix_size;
345   }
346 
347   ASSERT(aligned_size == request_size);
348 
349   address_ = static_cast<void*>(aligned_base);
350   size_ = aligned_size;
351 }
352 
353 
~VirtualMemory()354 VirtualMemory::~VirtualMemory() {
355   if (IsReserved()) {
356     bool result = ReleaseRegion(address(), size());
357     ASSERT(result);
358     USE(result);
359   }
360 }
361 
362 
IsReserved()363 bool VirtualMemory::IsReserved() {
364   return address_ != NULL;
365 }
366 
367 
Reset()368 void VirtualMemory::Reset() {
369   address_ = NULL;
370   size_ = 0;
371 }
372 
373 
Commit(void * address,size_t size,bool is_executable)374 bool VirtualMemory::Commit(void* address, size_t size, bool is_executable) {
375   return CommitRegion(address, size, is_executable);
376 }
377 
378 
Uncommit(void * address,size_t size)379 bool VirtualMemory::Uncommit(void* address, size_t size) {
380   return UncommitRegion(address, size);
381 }
382 
383 
Guard(void * address)384 bool VirtualMemory::Guard(void* address) {
385   OS::Guard(address, OS::CommitPageSize());
386   return true;
387 }
388 
389 
ReserveRegion(size_t size)390 void* VirtualMemory::ReserveRegion(size_t size) {
391   void* result = mmap(OS::GetRandomMmapAddr(),
392                       size,
393                       PROT_NONE,
394                       MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE,
395                       kMmapFd,
396                       kMmapFdOffset);
397 
398   if (result == MAP_FAILED) return NULL;
399 
400   return result;
401 }
402 
403 
CommitRegion(void * base,size_t size,bool is_executable)404 bool VirtualMemory::CommitRegion(void* base, size_t size, bool is_executable) {
405 #if defined(__native_client__)
406   // The Native Client port of V8 uses an interpreter,
407   // so code pages don't need PROT_EXEC.
408   int prot = PROT_READ | PROT_WRITE;
409 #else
410   int prot = PROT_READ | PROT_WRITE | (is_executable ? PROT_EXEC : 0);
411 #endif
412   if (MAP_FAILED == mmap(base,
413                          size,
414                          prot,
415                          MAP_PRIVATE | MAP_ANONYMOUS | MAP_FIXED,
416                          kMmapFd,
417                          kMmapFdOffset)) {
418     return false;
419   }
420 
421   return true;
422 }
423 
424 
UncommitRegion(void * base,size_t size)425 bool VirtualMemory::UncommitRegion(void* base, size_t size) {
426   return mmap(base,
427               size,
428               PROT_NONE,
429               MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE | MAP_FIXED,
430               kMmapFd,
431               kMmapFdOffset) != MAP_FAILED;
432 }
433 
434 
ReleaseRegion(void * base,size_t size)435 bool VirtualMemory::ReleaseRegion(void* base, size_t size) {
436   return munmap(base, size) == 0;
437 }
438 
439 
HasLazyCommits()440 bool VirtualMemory::HasLazyCommits() {
441   return true;
442 }
443 
444 } }  // namespace v8::internal
445