• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright (C) 2005 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #define LOG_TAG "ProcessState"
18 
19 #include <binder/ProcessState.h>
20 
21 #include <utils/Atomic.h>
22 #include <binder/BpBinder.h>
23 #include <binder/IPCThreadState.h>
24 #include <utils/Log.h>
25 #include <utils/String8.h>
26 #include <binder/IServiceManager.h>
27 #include <utils/String8.h>
28 #include <utils/threads.h>
29 
30 #include <private/binder/binder_module.h>
31 #include <private/binder/Static.h>
32 
33 #include <errno.h>
34 #include <fcntl.h>
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <unistd.h>
38 #include <sys/ioctl.h>
39 #include <sys/mman.h>
40 #include <sys/stat.h>
41 #include <sys/types.h>
42 
43 #define BINDER_VM_SIZE ((1 * 1024 * 1024) - sysconf(_SC_PAGE_SIZE) * 2)
44 #define DEFAULT_MAX_BINDER_THREADS 15
45 
46 // -------------------------------------------------------------------------
47 
48 namespace android {
49 
50 class PoolThread : public Thread
51 {
52 public:
PoolThread(bool isMain)53     explicit PoolThread(bool isMain)
54         : mIsMain(isMain)
55     {
56     }
57 
58 protected:
threadLoop()59     virtual bool threadLoop()
60     {
61         IPCThreadState::self()->joinThreadPool(mIsMain);
62         return false;
63     }
64 
65     const bool mIsMain;
66 };
67 
self()68 sp<ProcessState> ProcessState::self()
69 {
70     Mutex::Autolock _l(gProcessMutex);
71     if (gProcess != NULL) {
72         return gProcess;
73     }
74     gProcess = new ProcessState("/dev/binder");
75     return gProcess;
76 }
77 
initWithDriver(const char * driver)78 sp<ProcessState> ProcessState::initWithDriver(const char* driver)
79 {
80     Mutex::Autolock _l(gProcessMutex);
81     if (gProcess != NULL) {
82         // Allow for initWithDriver to be called repeatedly with the same
83         // driver.
84         if (!strcmp(gProcess->getDriverName().c_str(), driver)) {
85             return gProcess;
86         }
87         LOG_ALWAYS_FATAL("ProcessState was already initialized.");
88     }
89     gProcess = new ProcessState(driver);
90     return gProcess;
91 }
92 
selfOrNull()93 sp<ProcessState> ProcessState::selfOrNull()
94 {
95     Mutex::Autolock _l(gProcessMutex);
96     return gProcess;
97 }
98 
setContextObject(const sp<IBinder> & object)99 void ProcessState::setContextObject(const sp<IBinder>& object)
100 {
101     setContextObject(object, String16("default"));
102 }
103 
getContextObject(const sp<IBinder> &)104 sp<IBinder> ProcessState::getContextObject(const sp<IBinder>& /*caller*/)
105 {
106     return getStrongProxyForHandle(0);
107 }
108 
setContextObject(const sp<IBinder> & object,const String16 & name)109 void ProcessState::setContextObject(const sp<IBinder>& object, const String16& name)
110 {
111     AutoMutex _l(mLock);
112     mContexts.add(name, object);
113 }
114 
getContextObject(const String16 & name,const sp<IBinder> & caller)115 sp<IBinder> ProcessState::getContextObject(const String16& name, const sp<IBinder>& caller)
116 {
117     mLock.lock();
118     sp<IBinder> object(
119         mContexts.indexOfKey(name) >= 0 ? mContexts.valueFor(name) : NULL);
120     mLock.unlock();
121 
122     //printf("Getting context object %s for %p\n", String8(name).string(), caller.get());
123 
124     if (object != NULL) return object;
125 
126     // Don't attempt to retrieve contexts if we manage them
127     if (mManagesContexts) {
128         ALOGE("getContextObject(%s) failed, but we manage the contexts!\n",
129             String8(name).string());
130         return NULL;
131     }
132 
133     IPCThreadState* ipc = IPCThreadState::self();
134     {
135         Parcel data, reply;
136         // no interface token on this magic transaction
137         data.writeString16(name);
138         data.writeStrongBinder(caller);
139         status_t result = ipc->transact(0 /*magic*/, 0, data, &reply, 0);
140         if (result == NO_ERROR) {
141             object = reply.readStrongBinder();
142         }
143     }
144 
145     ipc->flushCommands();
146 
147     if (object != NULL) setContextObject(object, name);
148     return object;
149 }
150 
startThreadPool()151 void ProcessState::startThreadPool()
152 {
153     AutoMutex _l(mLock);
154     if (!mThreadPoolStarted) {
155         mThreadPoolStarted = true;
156         spawnPooledThread(true);
157     }
158 }
159 
isContextManager(void) const160 bool ProcessState::isContextManager(void) const
161 {
162     return mManagesContexts;
163 }
164 
becomeContextManager(context_check_func checkFunc,void * userData)165 bool ProcessState::becomeContextManager(context_check_func checkFunc, void* userData)
166 {
167     if (!mManagesContexts) {
168         AutoMutex _l(mLock);
169         mBinderContextCheckFunc = checkFunc;
170         mBinderContextUserData = userData;
171 
172         int dummy = 0;
173         status_t result = ioctl(mDriverFD, BINDER_SET_CONTEXT_MGR, &dummy);
174         if (result == 0) {
175             mManagesContexts = true;
176         } else if (result == -1) {
177             mBinderContextCheckFunc = NULL;
178             mBinderContextUserData = NULL;
179             ALOGE("Binder ioctl to become context manager failed: %s\n", strerror(errno));
180         }
181     }
182     return mManagesContexts;
183 }
184 
185 // Get references to userspace objects held by the kernel binder driver
186 // Writes up to count elements into buf, and returns the total number
187 // of references the kernel has, which may be larger than count.
188 // buf may be NULL if count is 0.  The pointers returned by this method
189 // should only be used for debugging and not dereferenced, they may
190 // already be invalid.
getKernelReferences(size_t buf_count,uintptr_t * buf)191 ssize_t ProcessState::getKernelReferences(size_t buf_count, uintptr_t* buf)
192 {
193     // TODO: remove these when they are defined by bionic's binder.h
194     struct binder_node_debug_info {
195         binder_uintptr_t ptr;
196         binder_uintptr_t cookie;
197         __u32 has_strong_ref;
198         __u32 has_weak_ref;
199     };
200 #define BINDER_GET_NODE_DEBUG_INFO _IOWR('b', 11, struct binder_node_debug_info)
201 
202     binder_node_debug_info info = {};
203 
204     uintptr_t* end = buf ? buf + buf_count : NULL;
205     size_t count = 0;
206 
207     do {
208         status_t result = ioctl(mDriverFD, BINDER_GET_NODE_DEBUG_INFO, &info);
209         if (result < 0) {
210             return -1;
211         }
212         if (info.ptr != 0) {
213             if (buf && buf < end)
214                 *buf++ = info.ptr;
215             count++;
216             if (buf && buf < end)
217                 *buf++ = info.cookie;
218             count++;
219         }
220     } while (info.ptr != 0);
221 
222     return count;
223 }
224 
lookupHandleLocked(int32_t handle)225 ProcessState::handle_entry* ProcessState::lookupHandleLocked(int32_t handle)
226 {
227     const size_t N=mHandleToObject.size();
228     if (N <= (size_t)handle) {
229         handle_entry e;
230         e.binder = NULL;
231         e.refs = NULL;
232         status_t err = mHandleToObject.insertAt(e, N, handle+1-N);
233         if (err < NO_ERROR) return NULL;
234     }
235     return &mHandleToObject.editItemAt(handle);
236 }
237 
getStrongProxyForHandle(int32_t handle)238 sp<IBinder> ProcessState::getStrongProxyForHandle(int32_t handle)
239 {
240     sp<IBinder> result;
241 
242     AutoMutex _l(mLock);
243 
244     handle_entry* e = lookupHandleLocked(handle);
245 
246     if (e != NULL) {
247         // We need to create a new BpBinder if there isn't currently one, OR we
248         // are unable to acquire a weak reference on this current one.  See comment
249         // in getWeakProxyForHandle() for more info about this.
250         IBinder* b = e->binder;
251         if (b == NULL || !e->refs->attemptIncWeak(this)) {
252             if (handle == 0) {
253                 // Special case for context manager...
254                 // The context manager is the only object for which we create
255                 // a BpBinder proxy without already holding a reference.
256                 // Perform a dummy transaction to ensure the context manager
257                 // is registered before we create the first local reference
258                 // to it (which will occur when creating the BpBinder).
259                 // If a local reference is created for the BpBinder when the
260                 // context manager is not present, the driver will fail to
261                 // provide a reference to the context manager, but the
262                 // driver API does not return status.
263                 //
264                 // Note that this is not race-free if the context manager
265                 // dies while this code runs.
266                 //
267                 // TODO: add a driver API to wait for context manager, or
268                 // stop special casing handle 0 for context manager and add
269                 // a driver API to get a handle to the context manager with
270                 // proper reference counting.
271 
272                 Parcel data;
273                 status_t status = IPCThreadState::self()->transact(
274                         0, IBinder::PING_TRANSACTION, data, NULL, 0);
275                 if (status == DEAD_OBJECT)
276                    return NULL;
277             }
278 
279             b = new BpBinder(handle);
280             e->binder = b;
281             if (b) e->refs = b->getWeakRefs();
282             result = b;
283         } else {
284             // This little bit of nastyness is to allow us to add a primary
285             // reference to the remote proxy when this team doesn't have one
286             // but another team is sending the handle to us.
287             result.force_set(b);
288             e->refs->decWeak(this);
289         }
290     }
291 
292     return result;
293 }
294 
getWeakProxyForHandle(int32_t handle)295 wp<IBinder> ProcessState::getWeakProxyForHandle(int32_t handle)
296 {
297     wp<IBinder> result;
298 
299     AutoMutex _l(mLock);
300 
301     handle_entry* e = lookupHandleLocked(handle);
302 
303     if (e != NULL) {
304         // We need to create a new BpBinder if there isn't currently one, OR we
305         // are unable to acquire a weak reference on this current one.  The
306         // attemptIncWeak() is safe because we know the BpBinder destructor will always
307         // call expungeHandle(), which acquires the same lock we are holding now.
308         // We need to do this because there is a race condition between someone
309         // releasing a reference on this BpBinder, and a new reference on its handle
310         // arriving from the driver.
311         IBinder* b = e->binder;
312         if (b == NULL || !e->refs->attemptIncWeak(this)) {
313             b = new BpBinder(handle);
314             result = b;
315             e->binder = b;
316             if (b) e->refs = b->getWeakRefs();
317         } else {
318             result = b;
319             e->refs->decWeak(this);
320         }
321     }
322 
323     return result;
324 }
325 
expungeHandle(int32_t handle,IBinder * binder)326 void ProcessState::expungeHandle(int32_t handle, IBinder* binder)
327 {
328     AutoMutex _l(mLock);
329 
330     handle_entry* e = lookupHandleLocked(handle);
331 
332     // This handle may have already been replaced with a new BpBinder
333     // (if someone failed the AttemptIncWeak() above); we don't want
334     // to overwrite it.
335     if (e && e->binder == binder) e->binder = NULL;
336 }
337 
makeBinderThreadName()338 String8 ProcessState::makeBinderThreadName() {
339     int32_t s = android_atomic_add(1, &mThreadPoolSeq);
340     pid_t pid = getpid();
341     String8 name;
342     name.appendFormat("Binder:%d_%X", pid, s);
343     return name;
344 }
345 
spawnPooledThread(bool isMain)346 void ProcessState::spawnPooledThread(bool isMain)
347 {
348     if (mThreadPoolStarted) {
349         String8 name = makeBinderThreadName();
350         ALOGV("Spawning new pooled thread, name=%s\n", name.string());
351         sp<Thread> t = new PoolThread(isMain);
352         t->run(name.string());
353     }
354 }
355 
setThreadPoolMaxThreadCount(size_t maxThreads)356 status_t ProcessState::setThreadPoolMaxThreadCount(size_t maxThreads) {
357     status_t result = NO_ERROR;
358     if (ioctl(mDriverFD, BINDER_SET_MAX_THREADS, &maxThreads) != -1) {
359         mMaxThreads = maxThreads;
360     } else {
361         result = -errno;
362         ALOGE("Binder ioctl to set max threads failed: %s", strerror(-result));
363     }
364     return result;
365 }
366 
giveThreadPoolName()367 void ProcessState::giveThreadPoolName() {
368     androidSetThreadName( makeBinderThreadName().string() );
369 }
370 
getDriverName()371 String8 ProcessState::getDriverName() {
372     return mDriverName;
373 }
374 
open_driver(const char * driver)375 static int open_driver(const char *driver)
376 {
377     int fd = open(driver, O_RDWR | O_CLOEXEC);
378     if (fd >= 0) {
379         int vers = 0;
380         status_t result = ioctl(fd, BINDER_VERSION, &vers);
381         if (result == -1) {
382             ALOGE("Binder ioctl to obtain version failed: %s", strerror(errno));
383             close(fd);
384             fd = -1;
385         }
386         if (result != 0 || vers != BINDER_CURRENT_PROTOCOL_VERSION) {
387           ALOGE("Binder driver protocol(%d) does not match user space protocol(%d)! ioctl() return value: %d",
388                 vers, BINDER_CURRENT_PROTOCOL_VERSION, result);
389             close(fd);
390             fd = -1;
391         }
392         size_t maxThreads = DEFAULT_MAX_BINDER_THREADS;
393         result = ioctl(fd, BINDER_SET_MAX_THREADS, &maxThreads);
394         if (result == -1) {
395             ALOGE("Binder ioctl to set max threads failed: %s", strerror(errno));
396         }
397     } else {
398         ALOGW("Opening '%s' failed: %s\n", driver, strerror(errno));
399     }
400     return fd;
401 }
402 
ProcessState(const char * driver)403 ProcessState::ProcessState(const char *driver)
404     : mDriverName(String8(driver))
405     , mDriverFD(open_driver(driver))
406     , mVMStart(MAP_FAILED)
407     , mThreadCountLock(PTHREAD_MUTEX_INITIALIZER)
408     , mThreadCountDecrement(PTHREAD_COND_INITIALIZER)
409     , mExecutingThreadsCount(0)
410     , mMaxThreads(DEFAULT_MAX_BINDER_THREADS)
411     , mStarvationStartTimeMs(0)
412     , mManagesContexts(false)
413     , mBinderContextCheckFunc(NULL)
414     , mBinderContextUserData(NULL)
415     , mThreadPoolStarted(false)
416     , mThreadPoolSeq(1)
417 {
418     if (mDriverFD >= 0) {
419         // mmap the binder, providing a chunk of virtual address space to receive transactions.
420         mVMStart = mmap(0, BINDER_VM_SIZE, PROT_READ, MAP_PRIVATE | MAP_NORESERVE, mDriverFD, 0);
421         if (mVMStart == MAP_FAILED) {
422             // *sigh*
423             ALOGE("Using /dev/binder failed: unable to mmap transaction memory.\n");
424             close(mDriverFD);
425             mDriverFD = -1;
426             mDriverName.clear();
427         }
428     }
429 
430     LOG_ALWAYS_FATAL_IF(mDriverFD < 0, "Binder driver could not be opened.  Terminating.");
431 }
432 
~ProcessState()433 ProcessState::~ProcessState()
434 {
435     if (mDriverFD >= 0) {
436         if (mVMStart != MAP_FAILED) {
437             munmap(mVMStart, BINDER_VM_SIZE);
438         }
439         close(mDriverFD);
440     }
441     mDriverFD = -1;
442 }
443 
444 }; // namespace android
445