Dash Core  0.12.2.1
P2P Digital Currency
scheduler.cpp
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1 // Copyright (c) 2015 The Bitcoin Core developers
2 // Distributed under the MIT software license, see the accompanying
3 // file COPYING or http://www.opensource.org/licenses/mit-license.php.
4 
5 #include "scheduler.h"
6 
7 #include "reverselock.h"
8 
9 #include <assert.h>
10 #include <boost/bind.hpp>
11 #include <utility>
12 
13 CScheduler::CScheduler() : nThreadsServicingQueue(0), stopRequested(false), stopWhenEmpty(false)
14 {
15 }
16 
18 {
19  assert(nThreadsServicingQueue == 0);
20 }
21 
22 
23 #if BOOST_VERSION < 105000
24 static boost::system_time toPosixTime(const boost::chrono::system_clock::time_point& t)
25 {
26  return boost::posix_time::from_time_t(boost::chrono::system_clock::to_time_t(t));
27 }
28 #endif
29 
31 {
32  boost::unique_lock<boost::mutex> lock(newTaskMutex);
34 
35  // newTaskMutex is locked throughout this loop EXCEPT
36  // when the thread is waiting or when the user's function
37  // is called.
38  while (!shouldStop()) {
39  try {
40  while (!shouldStop() && taskQueue.empty()) {
41  // Wait until there is something to do.
42  newTaskScheduled.wait(lock);
43  }
44 
45  // Wait until either there is a new task, or until
46  // the time of the first item on the queue:
47 
48 // wait_until needs boost 1.50 or later; older versions have timed_wait:
49 #if BOOST_VERSION < 105000
50  while (!shouldStop() && !taskQueue.empty() &&
51  newTaskScheduled.timed_wait(lock, toPosixTime(taskQueue.begin()->first))) {
52  // Keep waiting until timeout
53  }
54 #else
55  // Some boost versions have a conflicting overload of wait_until that returns void.
56  // Explicitly use a template here to avoid hitting that overload.
57  while (!shouldStop() && !taskQueue.empty() &&
58  newTaskScheduled.wait_until<>(lock, taskQueue.begin()->first) != boost::cv_status::timeout) {
59  // Keep waiting until timeout
60  }
61 #endif
62  // If there are multiple threads, the queue can empty while we're waiting (another
63  // thread may service the task we were waiting on).
64  if (shouldStop() || taskQueue.empty())
65  continue;
66 
67  Function f = taskQueue.begin()->second;
68  taskQueue.erase(taskQueue.begin());
69 
70  {
71  // Unlock before calling f, so it can reschedule itself or another task
72  // without deadlocking:
74  f();
75  }
76  } catch (...) {
78  throw;
79  }
80  }
82  newTaskScheduled.notify_one();
83 }
84 
85 void CScheduler::stop(bool drain)
86 {
87  {
88  boost::unique_lock<boost::mutex> lock(newTaskMutex);
89  if (drain)
90  stopWhenEmpty = true;
91  else
92  stopRequested = true;
93  }
94  newTaskScheduled.notify_all();
95 }
96 
97 void CScheduler::schedule(CScheduler::Function f, boost::chrono::system_clock::time_point t)
98 {
99  {
100  boost::unique_lock<boost::mutex> lock(newTaskMutex);
101  taskQueue.insert(std::make_pair(t, f));
102  }
103  newTaskScheduled.notify_one();
104 }
105 
107 {
108  schedule(f, boost::chrono::system_clock::now() + boost::chrono::seconds(deltaSeconds));
109 }
110 
111 static void Repeat(CScheduler* s, CScheduler::Function f, int64_t deltaSeconds)
112 {
113  f();
114  s->scheduleFromNow(boost::bind(&Repeat, s, f, deltaSeconds), deltaSeconds);
115 }
116 
118 {
119  scheduleFromNow(boost::bind(&Repeat, this, f, deltaSeconds), deltaSeconds);
120 }
121 
122 size_t CScheduler::getQueueInfo(boost::chrono::system_clock::time_point &first,
123  boost::chrono::system_clock::time_point &last) const
124 {
125  boost::unique_lock<boost::mutex> lock(newTaskMutex);
126  size_t result = taskQueue.size();
127  if (!taskQueue.empty()) {
128  first = taskQueue.begin()->first;
129  last = taskQueue.rbegin()->first;
130  }
131  return result;
132 }
bool stopWhenEmpty
Definition: scheduler.h:79
void scheduleFromNow(Function f, int64_t deltaSeconds)
Definition: scheduler.cpp:106
bool stopRequested
Definition: scheduler.h:78
boost::mutex newTaskMutex
Definition: scheduler.h:76
void stop(bool drain=false)
Definition: scheduler.cpp:85
int nThreadsServicingQueue
Definition: scheduler.h:77
void scheduleEvery(Function f, int64_t deltaSeconds)
Definition: scheduler.cpp:117
static boost::system_time toPosixTime(const boost::chrono::system_clock::time_point &t)
Definition: scheduler.cpp:24
void serviceQueue()
Definition: scheduler.cpp:30
size_t getQueueInfo(boost::chrono::system_clock::time_point &first, boost::chrono::system_clock::time_point &last) const
Definition: scheduler.cpp:122
static void Repeat(CScheduler *s, CScheduler::Function f, int64_t deltaSeconds)
Definition: scheduler.cpp:111
std::multimap< boost::chrono::system_clock::time_point, Function > taskQueue
Definition: scheduler.h:74
boost::function< void(void)> Function
Definition: scheduler.h:42
bool shouldStop()
Definition: scheduler.h:80
boost::condition_variable newTaskScheduled
Definition: scheduler.h:75
result
Definition: rpcuser.py:37
void schedule(Function f, boost::chrono::system_clock::time_point t)
Definition: scheduler.cpp:97