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1 /*
2  * Copyright (C) 2008 The Android Open Source Project
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  *  * Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  *  * Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in
12  *    the documentation and/or other materials provided with the
13  *    distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
16  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
17  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
18  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
19  * COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
20  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
22  * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
25  * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include "system_properties/system_properties.h"
30 
31 #include <errno.h>
32 #include <stdatomic.h>
33 #include <stdlib.h>
34 #include <string.h>
35 #include <sys/stat.h>
36 #include <sys/types.h>
37 #include <unistd.h>
38 
39 #include <new>
40 
41 #include <async_safe/log.h>
42 
43 #include "private/ErrnoRestorer.h"
44 #include "private/bionic_futex.h"
45 
46 #include "system_properties/context_node.h"
47 #include "system_properties/prop_area.h"
48 #include "system_properties/prop_info.h"
49 
50 #define SERIAL_DIRTY(serial) ((serial)&1)
51 #define SERIAL_VALUE_LEN(serial) ((serial) >> 24)
52 
is_dir(const char * pathname)53 static bool is_dir(const char* pathname) {
54   struct stat info;
55   if (stat(pathname, &info) == -1) {
56     return false;
57   }
58   return S_ISDIR(info.st_mode);
59 }
60 
Init(const char * filename)61 bool SystemProperties::Init(const char* filename) {
62   // This is called from __libc_init_common, and should leave errno at 0 (http://b/37248982).
63   ErrnoRestorer errno_restorer;
64 
65   if (initialized_) {
66     contexts_->ResetAccess();
67     return true;
68   }
69 
70   if (strlen(filename) >= PROP_FILENAME_MAX) {
71     return false;
72   }
73   strcpy(property_filename_, filename);
74 
75   if (is_dir(property_filename_)) {
76     if (access("/dev/__properties__/property_info", R_OK) == 0) {
77       contexts_ = new (contexts_data_) ContextsSerialized();
78       if (!contexts_->Initialize(false, property_filename_, nullptr)) {
79         return false;
80       }
81     } else {
82       contexts_ = new (contexts_data_) ContextsSplit();
83       if (!contexts_->Initialize(false, property_filename_, nullptr)) {
84         return false;
85       }
86     }
87   } else {
88     contexts_ = new (contexts_data_) ContextsPreSplit();
89     if (!contexts_->Initialize(false, property_filename_, nullptr)) {
90       return false;
91     }
92   }
93   initialized_ = true;
94   return true;
95 }
96 
AreaInit(const char * filename,bool * fsetxattr_failed)97 bool SystemProperties::AreaInit(const char* filename, bool* fsetxattr_failed) {
98   if (strlen(filename) >= PROP_FILENAME_MAX) {
99     return false;
100   }
101   strcpy(property_filename_, filename);
102 
103   contexts_ = new (contexts_data_) ContextsSerialized();
104   if (!contexts_->Initialize(true, property_filename_, fsetxattr_failed)) {
105     return false;
106   }
107   initialized_ = true;
108   return true;
109 }
110 
AreaSerial()111 uint32_t SystemProperties::AreaSerial() {
112   if (!initialized_) {
113     return -1;
114   }
115 
116   prop_area* pa = contexts_->GetSerialPropArea();
117   if (!pa) {
118     return -1;
119   }
120 
121   // Make sure this read fulfilled before __system_property_serial
122   return atomic_load_explicit(pa->serial(), memory_order_acquire);
123 }
124 
Find(const char * name)125 const prop_info* SystemProperties::Find(const char* name) {
126   if (!initialized_) {
127     return nullptr;
128   }
129 
130   prop_area* pa = contexts_->GetPropAreaForName(name);
131   if (!pa) {
132     async_safe_format_log(ANDROID_LOG_ERROR, "libc", "Access denied finding property \"%s\"", name);
133     return nullptr;
134   }
135 
136   return pa->find(name);
137 }
138 
is_read_only(const char * name)139 static bool is_read_only(const char* name) {
140   return strncmp(name, "ro.", 3) == 0;
141 }
142 
Read(const prop_info * pi,char * name,char * value)143 int SystemProperties::Read(const prop_info* pi, char* name, char* value) {
144   while (true) {
145     uint32_t serial = Serial(pi);  // acquire semantics
146     size_t len = SERIAL_VALUE_LEN(serial);
147     memcpy(value, pi->value, len + 1);
148     // TODO: Fix the synchronization scheme here.
149     // There is no fully supported way to implement this kind
150     // of synchronization in C++11, since the memcpy races with
151     // updates to pi, and the data being accessed is not atomic.
152     // The following fence is unintuitive, but would be the
153     // correct one if memcpy used memory_order_relaxed atomic accesses.
154     // In practice it seems unlikely that the generated code would
155     // would be any different, so this should be OK.
156     atomic_thread_fence(memory_order_acquire);
157     if (serial == load_const_atomic(&(pi->serial), memory_order_relaxed)) {
158       if (name != nullptr) {
159         size_t namelen = strlcpy(name, pi->name, PROP_NAME_MAX);
160         if (namelen >= PROP_NAME_MAX) {
161           async_safe_format_log(ANDROID_LOG_ERROR, "libc",
162                                 "The property name length for \"%s\" is >= %d;"
163                                 " please use __system_property_read_callback"
164                                 " to read this property. (the name is truncated to \"%s\")",
165                                 pi->name, PROP_NAME_MAX - 1, name);
166         }
167       }
168       if (is_read_only(pi->name) && pi->is_long()) {
169         async_safe_format_log(
170             ANDROID_LOG_ERROR, "libc",
171             "The property \"%s\" has a value with length %zu that is too large for"
172             " __system_property_get()/__system_property_read(); use"
173             " __system_property_read_callback() instead.",
174             pi->name, strlen(pi->long_value()));
175       }
176       return len;
177     }
178   }
179 }
180 
ReadCallback(const prop_info * pi,void (* callback)(void * cookie,const char * name,const char * value,uint32_t serial),void * cookie)181 void SystemProperties::ReadCallback(const prop_info* pi,
182                                     void (*callback)(void* cookie, const char* name,
183                                                      const char* value, uint32_t serial),
184                                     void* cookie) {
185   // Read only properties don't need to copy the value to a temporary buffer, since it can never
186   // change.
187   if (is_read_only(pi->name)) {
188     uint32_t serial = Serial(pi);
189     if (pi->is_long()) {
190       callback(cookie, pi->name, pi->long_value(), serial);
191     } else {
192       callback(cookie, pi->name, pi->value, serial);
193     }
194     return;
195   }
196 
197   while (true) {
198     uint32_t serial = Serial(pi);  // acquire semantics
199     size_t len = SERIAL_VALUE_LEN(serial);
200     char value_buf[len + 1];
201 
202     memcpy(value_buf, pi->value, len);
203     value_buf[len] = '\0';
204 
205     // TODO: see todo in Read function
206     atomic_thread_fence(memory_order_acquire);
207     if (serial == load_const_atomic(&(pi->serial), memory_order_relaxed)) {
208       callback(cookie, pi->name, value_buf, serial);
209       return;
210     }
211   }
212 }
213 
Get(const char * name,char * value)214 int SystemProperties::Get(const char* name, char* value) {
215   const prop_info* pi = Find(name);
216 
217   if (pi != nullptr) {
218     return Read(pi, nullptr, value);
219   } else {
220     value[0] = 0;
221     return 0;
222   }
223 }
224 
Update(prop_info * pi,const char * value,unsigned int len)225 int SystemProperties::Update(prop_info* pi, const char* value, unsigned int len) {
226   if (len >= PROP_VALUE_MAX) {
227     return -1;
228   }
229 
230   if (!initialized_) {
231     return -1;
232   }
233 
234   prop_area* pa = contexts_->GetSerialPropArea();
235   if (!pa) {
236     return -1;
237   }
238 
239   uint32_t serial = atomic_load_explicit(&pi->serial, memory_order_relaxed);
240   serial |= 1;
241   atomic_store_explicit(&pi->serial, serial, memory_order_relaxed);
242   // The memcpy call here also races.  Again pretend it
243   // used memory_order_relaxed atomics, and use the analogous
244   // counterintuitive fence.
245   atomic_thread_fence(memory_order_release);
246   strlcpy(pi->value, value, len + 1);
247 
248   atomic_store_explicit(&pi->serial, (len << 24) | ((serial + 1) & 0xffffff), memory_order_release);
249   __futex_wake(&pi->serial, INT32_MAX);
250 
251   atomic_store_explicit(pa->serial(), atomic_load_explicit(pa->serial(), memory_order_relaxed) + 1,
252                         memory_order_release);
253   __futex_wake(pa->serial(), INT32_MAX);
254 
255   return 0;
256 }
257 
Add(const char * name,unsigned int namelen,const char * value,unsigned int valuelen)258 int SystemProperties::Add(const char* name, unsigned int namelen, const char* value,
259                           unsigned int valuelen) {
260   if (valuelen >= PROP_VALUE_MAX && !is_read_only(name)) {
261     return -1;
262   }
263 
264   if (namelen < 1) {
265     return -1;
266   }
267 
268   if (!initialized_) {
269     return -1;
270   }
271 
272   prop_area* serial_pa = contexts_->GetSerialPropArea();
273   if (serial_pa == nullptr) {
274     return -1;
275   }
276 
277   prop_area* pa = contexts_->GetPropAreaForName(name);
278   if (!pa) {
279     async_safe_format_log(ANDROID_LOG_ERROR, "libc", "Access denied adding property \"%s\"", name);
280     return -1;
281   }
282 
283   bool ret = pa->add(name, namelen, value, valuelen);
284   if (!ret) {
285     return -1;
286   }
287 
288   // There is only a single mutator, but we want to make sure that
289   // updates are visible to a reader waiting for the update.
290   atomic_store_explicit(serial_pa->serial(),
291                         atomic_load_explicit(serial_pa->serial(), memory_order_relaxed) + 1,
292                         memory_order_release);
293   __futex_wake(serial_pa->serial(), INT32_MAX);
294   return 0;
295 }
296 
297 // Wait for non-locked serial, and retrieve it with acquire semantics.
Serial(const prop_info * pi)298 uint32_t SystemProperties::Serial(const prop_info* pi) {
299   uint32_t serial = load_const_atomic(&pi->serial, memory_order_acquire);
300   while (SERIAL_DIRTY(serial)) {
301     __futex_wait(const_cast<_Atomic(uint_least32_t)*>(&pi->serial), serial, nullptr);
302     serial = load_const_atomic(&pi->serial, memory_order_acquire);
303   }
304   return serial;
305 }
306 
WaitAny(uint32_t old_serial)307 uint32_t SystemProperties::WaitAny(uint32_t old_serial) {
308   uint32_t new_serial;
309   Wait(nullptr, old_serial, &new_serial, nullptr);
310   return new_serial;
311 }
312 
Wait(const prop_info * pi,uint32_t old_serial,uint32_t * new_serial_ptr,const timespec * relative_timeout)313 bool SystemProperties::Wait(const prop_info* pi, uint32_t old_serial, uint32_t* new_serial_ptr,
314                             const timespec* relative_timeout) {
315   // Are we waiting on the global serial or a specific serial?
316   atomic_uint_least32_t* serial_ptr;
317   if (pi == nullptr) {
318     if (!initialized_) {
319       return -1;
320     }
321 
322     prop_area* serial_pa = contexts_->GetSerialPropArea();
323     if (serial_pa == nullptr) {
324       return -1;
325     }
326 
327     serial_ptr = serial_pa->serial();
328   } else {
329     serial_ptr = const_cast<atomic_uint_least32_t*>(&pi->serial);
330   }
331 
332   uint32_t new_serial;
333   do {
334     int rc;
335     if ((rc = __futex_wait(serial_ptr, old_serial, relative_timeout)) != 0 && rc == -ETIMEDOUT) {
336       return false;
337     }
338     new_serial = load_const_atomic(serial_ptr, memory_order_acquire);
339   } while (new_serial == old_serial);
340 
341   *new_serial_ptr = new_serial;
342   return true;
343 }
344 
FindNth(unsigned n)345 const prop_info* SystemProperties::FindNth(unsigned n) {
346   struct find_nth {
347     const uint32_t sought;
348     uint32_t current;
349     const prop_info* result;
350 
351     explicit find_nth(uint32_t n) : sought(n), current(0), result(nullptr) {
352     }
353     static void fn(const prop_info* pi, void* ptr) {
354       find_nth* self = reinterpret_cast<find_nth*>(ptr);
355       if (self->current++ == self->sought) self->result = pi;
356     }
357   } state(n);
358   Foreach(find_nth::fn, &state);
359   return state.result;
360 }
361 
Foreach(void (* propfn)(const prop_info * pi,void * cookie),void * cookie)362 int SystemProperties::Foreach(void (*propfn)(const prop_info* pi, void* cookie), void* cookie) {
363   if (!initialized_) {
364     return -1;
365   }
366 
367   contexts_->ForEach(propfn, cookie);
368 
369   return 0;
370 }
371