1 /*
2  * Copyright (C) 2014 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 #include <errno.h>
18 #include <sys/prctl.h>
19 
20 #include "FlushCommand.h"
21 #include "LogBuffer.h"
22 #include "LogTimes.h"
23 #include "LogReader.h"
24 
25 pthread_mutex_t LogTimeEntry::timesLock = PTHREAD_MUTEX_INITIALIZER;
26 
LogTimeEntry(LogReader & reader,SocketClient * client,bool nonBlock,unsigned long tail,unsigned int logMask,pid_t pid,uint64_t start,uint64_t timeout)27 LogTimeEntry::LogTimeEntry(LogReader &reader, SocketClient *client,
28                            bool nonBlock, unsigned long tail,
29                            unsigned int logMask, pid_t pid,
30                            uint64_t start, uint64_t timeout) :
31         mRefCount(1),
32         mRelease(false),
33         mError(false),
34         threadRunning(false),
35         leadingDropped(false),
36         mReader(reader),
37         mLogMask(logMask),
38         mPid(pid),
39         mCount(0),
40         mTail(tail),
41         mIndex(0),
42         mClient(client),
43         mStart(start),
44         mNonBlock(nonBlock),
45         mEnd(LogBufferElement::getCurrentSequence()) {
46     mTimeout.tv_sec = timeout / NS_PER_SEC;
47     mTimeout.tv_nsec = timeout % NS_PER_SEC;
48     pthread_cond_init(&threadTriggeredCondition, NULL);
49     cleanSkip_Locked();
50 }
51 
startReader_Locked(void)52 void LogTimeEntry::startReader_Locked(void) {
53     pthread_attr_t attr;
54 
55     threadRunning = true;
56 
57     if (!pthread_attr_init(&attr)) {
58         if (!pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED)) {
59             if (!pthread_create(&mThread, &attr,
60                                 LogTimeEntry::threadStart, this)) {
61                 pthread_attr_destroy(&attr);
62                 return;
63             }
64         }
65         pthread_attr_destroy(&attr);
66     }
67     threadRunning = false;
68     if (mClient) {
69         mClient->decRef();
70     }
71     decRef_Locked();
72 }
73 
threadStop(void * obj)74 void LogTimeEntry::threadStop(void *obj) {
75     LogTimeEntry *me = reinterpret_cast<LogTimeEntry *>(obj);
76 
77     lock();
78 
79     if (me->mNonBlock) {
80         me->error_Locked();
81     }
82 
83     SocketClient *client = me->mClient;
84 
85     if (me->isError_Locked()) {
86         LogReader &reader = me->mReader;
87         LastLogTimes &times = reader.logbuf().mTimes;
88 
89         LastLogTimes::iterator it = times.begin();
90         while(it != times.end()) {
91             if (*it == me) {
92                 times.erase(it);
93                 me->release_nodelete_Locked();
94                 break;
95             }
96             it++;
97         }
98 
99         me->mClient = NULL;
100         reader.release(client);
101     }
102 
103     if (client) {
104         client->decRef();
105     }
106 
107     me->threadRunning = false;
108     me->decRef_Locked();
109 
110     unlock();
111 }
112 
threadStart(void * obj)113 void *LogTimeEntry::threadStart(void *obj) {
114     prctl(PR_SET_NAME, "logd.reader.per");
115 
116     LogTimeEntry *me = reinterpret_cast<LogTimeEntry *>(obj);
117 
118     pthread_cleanup_push(threadStop, obj);
119 
120     SocketClient *client = me->mClient;
121     if (!client) {
122         me->error();
123         return NULL;
124     }
125 
126     LogBuffer &logbuf = me->mReader.logbuf();
127 
128     bool privileged = FlushCommand::hasReadLogs(client);
129     bool security = FlushCommand::hasSecurityLogs(client);
130 
131     me->leadingDropped = true;
132 
133     lock();
134 
135     uint64_t start = me->mStart;
136 
137     while (me->threadRunning && !me->isError_Locked()) {
138 
139         if (me->mTimeout.tv_sec || me->mTimeout.tv_nsec) {
140             if (pthread_cond_timedwait(&me->threadTriggeredCondition,
141                                        &timesLock,
142                                        &me->mTimeout) == ETIMEDOUT) {
143                 me->mTimeout.tv_sec = 0;
144                 me->mTimeout.tv_nsec = 0;
145             }
146             if (!me->threadRunning || me->isError_Locked()) {
147                 break;
148             }
149         }
150 
151         unlock();
152 
153         if (me->mTail) {
154             logbuf.flushTo(client, start, privileged, security, FilterFirstPass, me);
155             me->leadingDropped = true;
156         }
157         start = logbuf.flushTo(client, start, privileged, security, FilterSecondPass, me);
158 
159         lock();
160 
161         if (start == LogBufferElement::FLUSH_ERROR) {
162             me->error_Locked();
163             break;
164         }
165 
166         me->mStart = start + 1;
167 
168         if (me->mNonBlock || !me->threadRunning || me->isError_Locked()) {
169             break;
170         }
171 
172         me->cleanSkip_Locked();
173 
174         if (!me->mTimeout.tv_sec && !me->mTimeout.tv_nsec) {
175             pthread_cond_wait(&me->threadTriggeredCondition, &timesLock);
176         }
177     }
178 
179     unlock();
180 
181     pthread_cleanup_pop(true);
182 
183     return NULL;
184 }
185 
186 // A first pass to count the number of elements
FilterFirstPass(const LogBufferElement * element,void * obj)187 int LogTimeEntry::FilterFirstPass(const LogBufferElement *element, void *obj) {
188     LogTimeEntry *me = reinterpret_cast<LogTimeEntry *>(obj);
189 
190     LogTimeEntry::lock();
191 
192     if (me->leadingDropped) {
193         if (element->getDropped()) {
194             LogTimeEntry::unlock();
195             return false;
196         }
197         me->leadingDropped = false;
198     }
199 
200     if (me->mCount == 0) {
201         me->mStart = element->getSequence();
202     }
203 
204     if ((!me->mPid || (me->mPid == element->getPid()))
205             && (me->isWatching(element->getLogId()))) {
206         ++me->mCount;
207     }
208 
209     LogTimeEntry::unlock();
210 
211     return false;
212 }
213 
214 // A second pass to send the selected elements
FilterSecondPass(const LogBufferElement * element,void * obj)215 int LogTimeEntry::FilterSecondPass(const LogBufferElement *element, void *obj) {
216     LogTimeEntry *me = reinterpret_cast<LogTimeEntry *>(obj);
217 
218     LogTimeEntry::lock();
219 
220     me->mStart = element->getSequence();
221 
222     if (me->skipAhead[element->getLogId()]) {
223         me->skipAhead[element->getLogId()]--;
224         goto skip;
225     }
226 
227     if (me->leadingDropped) {
228         if (element->getDropped()) {
229             goto skip;
230         }
231         me->leadingDropped = false;
232     }
233 
234     // Truncate to close race between first and second pass
235     if (me->mNonBlock && me->mTail && (me->mIndex >= me->mCount)) {
236         goto stop;
237     }
238 
239     if (!me->isWatching(element->getLogId())) {
240         goto skip;
241     }
242 
243     if (me->mPid && (me->mPid != element->getPid())) {
244         goto skip;
245     }
246 
247     if (me->isError_Locked()) {
248         goto stop;
249     }
250 
251     if (!me->mTail) {
252         goto ok;
253     }
254 
255     ++me->mIndex;
256 
257     if ((me->mCount > me->mTail) && (me->mIndex <= (me->mCount - me->mTail))) {
258         goto skip;
259     }
260 
261     if (!me->mNonBlock) {
262         me->mTail = 0;
263     }
264 
265 ok:
266     if (!me->skipAhead[element->getLogId()]) {
267         LogTimeEntry::unlock();
268         return true;
269     }
270     // FALLTHRU
271 
272 skip:
273     LogTimeEntry::unlock();
274     return false;
275 
276 stop:
277     LogTimeEntry::unlock();
278     return -1;
279 }
280 
cleanSkip_Locked(void)281 void LogTimeEntry::cleanSkip_Locked(void) {
282     for (log_id_t i = LOG_ID_MIN; i < LOG_ID_MAX; i = (log_id_t) (i + 1)) {
283         skipAhead[i] = 0;
284     }
285 }
286