1 //===-- Broadcaster.cpp -----------------------------------------*- C++ -*-===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9
10 #include "lldb/Core/Broadcaster.h"
11
12 // C Includes
13 // C++ Includes
14 // Other libraries and framework includes
15 // Project includes
16 #include "lldb/Core/Log.h"
17 #include "lldb/Core/Event.h"
18 #include "lldb/Core/StreamString.h"
19
20 using namespace lldb;
21 using namespace lldb_private;
22
Broadcaster(BroadcasterManager * manager,const char * name)23 Broadcaster::Broadcaster (BroadcasterManager *manager, const char *name) :
24 m_broadcaster_name (name),
25 m_listeners (),
26 m_listeners_mutex (Mutex::eMutexTypeRecursive),
27 m_hijacking_listeners(),
28 m_hijacking_masks(),
29 m_manager (manager)
30 {
31 Log *log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_OBJECT));
32 if (log)
33 log->Printf ("%p Broadcaster::Broadcaster(\"%s\")",
34 static_cast<void*>(this), m_broadcaster_name.AsCString());
35 }
36
~Broadcaster()37 Broadcaster::~Broadcaster()
38 {
39 Log *log (lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_OBJECT));
40 if (log)
41 log->Printf ("%p Broadcaster::~Broadcaster(\"%s\")",
42 static_cast<void*>(this), m_broadcaster_name.AsCString());
43
44 Clear();
45 }
46
47 void
CheckInWithManager()48 Broadcaster::CheckInWithManager ()
49 {
50 if (m_manager != NULL)
51 {
52 m_manager->SignUpListenersForBroadcaster(*this);
53 }
54 }
55
56 void
Clear()57 Broadcaster::Clear()
58 {
59 Mutex::Locker listeners_locker(m_listeners_mutex);
60
61 // Make sure the listener forgets about this broadcaster. We do
62 // this in the broadcaster in case the broadcaster object initiates
63 // the removal.
64
65 collection::iterator pos, end = m_listeners.end();
66 for (pos = m_listeners.begin(); pos != end; ++pos)
67 pos->first->BroadcasterWillDestruct (this);
68
69 m_listeners.clear();
70 }
71 const ConstString &
GetBroadcasterName()72 Broadcaster::GetBroadcasterName ()
73 {
74 return m_broadcaster_name;
75 }
76
77 bool
GetEventNames(Stream & s,uint32_t event_mask,bool prefix_with_broadcaster_name) const78 Broadcaster::GetEventNames (Stream &s, uint32_t event_mask, bool prefix_with_broadcaster_name) const
79 {
80 uint32_t num_names_added = 0;
81 if (event_mask && !m_event_names.empty())
82 {
83 event_names_map::const_iterator end = m_event_names.end();
84 for (uint32_t bit=1u, mask=event_mask; mask != 0 && bit != 0; bit <<= 1, mask >>= 1)
85 {
86 if (mask & 1)
87 {
88 event_names_map::const_iterator pos = m_event_names.find(bit);
89 if (pos != end)
90 {
91 if (num_names_added > 0)
92 s.PutCString(", ");
93
94 if (prefix_with_broadcaster_name)
95 {
96 s.PutCString (m_broadcaster_name.GetCString());
97 s.PutChar('.');
98 }
99 s.PutCString(pos->second.c_str());
100 ++num_names_added;
101 }
102 }
103 }
104 }
105 return num_names_added > 0;
106 }
107
108 void
AddInitialEventsToListener(Listener * listener,uint32_t requested_events)109 Broadcaster::AddInitialEventsToListener (Listener *listener, uint32_t requested_events)
110 {
111
112 }
113
114 uint32_t
AddListener(Listener * listener,uint32_t event_mask)115 Broadcaster::AddListener (Listener* listener, uint32_t event_mask)
116 {
117 if (listener == NULL)
118 return 0;
119
120 Mutex::Locker locker(m_listeners_mutex);
121 collection::iterator pos, end = m_listeners.end();
122
123 collection::iterator existing_pos = end;
124 // See if we already have this listener, and if so, update its mask
125 uint32_t taken_event_types = 0;
126 for (pos = m_listeners.begin(); pos != end; ++pos)
127 {
128 if (pos->first == listener)
129 existing_pos = pos;
130 // For now don't descriminate on who gets what
131 // FIXME: Implement "unique listener for this bit" mask
132 // taken_event_types |= pos->second;
133 }
134
135 // Each event bit in a Broadcaster object can only be used
136 // by one listener
137 uint32_t available_event_types = ~taken_event_types & event_mask;
138
139 if (available_event_types)
140 {
141 // If we didn't find our listener, add it
142 if (existing_pos == end)
143 {
144 // Grant a new listener the available event bits
145 m_listeners.push_back(std::make_pair(listener, available_event_types));
146 }
147 else
148 {
149 // Grant the existing listener the available event bits
150 existing_pos->second |= available_event_types;
151 }
152
153 // Individual broadcasters decide whether they have outstanding data when a
154 // listener attaches, and insert it into the listener with this method.
155
156 AddInitialEventsToListener (listener, available_event_types);
157 }
158
159 // Return the event bits that were granted to the listener
160 return available_event_types;
161 }
162
163 bool
EventTypeHasListeners(uint32_t event_type)164 Broadcaster::EventTypeHasListeners (uint32_t event_type)
165 {
166 Mutex::Locker locker (m_listeners_mutex);
167
168 if (m_hijacking_listeners.size() > 0 && event_type & m_hijacking_masks.back())
169 return true;
170
171 if (m_listeners.empty())
172 return false;
173
174 collection::iterator pos, end = m_listeners.end();
175 for (pos = m_listeners.begin(); pos != end; ++pos)
176 {
177 if (pos->second & event_type)
178 return true;
179 }
180 return false;
181 }
182
183 bool
RemoveListener(Listener * listener,uint32_t event_mask)184 Broadcaster::RemoveListener (Listener* listener, uint32_t event_mask)
185 {
186 Mutex::Locker locker(m_listeners_mutex);
187 collection::iterator pos, end = m_listeners.end();
188 // See if we already have this listener, and if so, update its mask
189 for (pos = m_listeners.begin(); pos != end; ++pos)
190 {
191 if (pos->first == listener)
192 {
193 // Relinquish all event bits in "event_mask"
194 pos->second &= ~event_mask;
195 // If all bits have been relinquished then remove this listener
196 if (pos->second == 0)
197 m_listeners.erase (pos);
198 return true;
199 }
200 }
201 return false;
202 }
203
204 void
BroadcastEvent(EventSP & event_sp)205 Broadcaster::BroadcastEvent (EventSP &event_sp)
206 {
207 return PrivateBroadcastEvent (event_sp, false);
208 }
209
210 void
BroadcastEventIfUnique(EventSP & event_sp)211 Broadcaster::BroadcastEventIfUnique (EventSP &event_sp)
212 {
213 return PrivateBroadcastEvent (event_sp, true);
214 }
215
216 void
PrivateBroadcastEvent(EventSP & event_sp,bool unique)217 Broadcaster::PrivateBroadcastEvent (EventSP &event_sp, bool unique)
218 {
219 // Can't add a NULL event...
220 if (event_sp.get() == NULL)
221 return;
222
223 // Update the broadcaster on this event
224 event_sp->SetBroadcaster (this);
225
226 const uint32_t event_type = event_sp->GetType();
227
228 Mutex::Locker event_types_locker(m_listeners_mutex);
229
230 Listener *hijacking_listener = NULL;
231 if (!m_hijacking_listeners.empty())
232 {
233 assert (!m_hijacking_masks.empty());
234 hijacking_listener = m_hijacking_listeners.back();
235 if ((event_type & m_hijacking_masks.back()) == 0)
236 hijacking_listener = NULL;
237 }
238
239 Log *log(lldb_private::GetLogIfAnyCategoriesSet (LIBLLDB_LOG_EVENTS));
240 if (log)
241 {
242 StreamString event_description;
243 event_sp->Dump (&event_description);
244 log->Printf ("%p Broadcaster(\"%s\")::BroadcastEvent (event_sp = {%s}, unique =%i) hijack = %p",
245 static_cast<void*>(this), m_broadcaster_name.AsCString(""),
246 event_description.GetData(), unique,
247 static_cast<void*>(hijacking_listener));
248 }
249
250 if (hijacking_listener)
251 {
252 if (unique && hijacking_listener->PeekAtNextEventForBroadcasterWithType (this, event_type))
253 return;
254 hijacking_listener->AddEvent (event_sp);
255 }
256 else
257 {
258 collection::iterator pos, end = m_listeners.end();
259
260
261 // Iterate through all listener/mask pairs
262 for (pos = m_listeners.begin(); pos != end; ++pos)
263 {
264 // If the listener's mask matches any bits that we just set, then
265 // put the new event on its event queue.
266 if (event_type & pos->second)
267 {
268 if (unique && pos->first->PeekAtNextEventForBroadcasterWithType (this, event_type))
269 continue;
270 pos->first->AddEvent (event_sp);
271 }
272 }
273 }
274 }
275
276 void
BroadcastEvent(uint32_t event_type,EventData * event_data)277 Broadcaster::BroadcastEvent (uint32_t event_type, EventData *event_data)
278 {
279 EventSP event_sp (new Event (event_type, event_data));
280 PrivateBroadcastEvent (event_sp, false);
281 }
282
283 void
BroadcastEventIfUnique(uint32_t event_type,EventData * event_data)284 Broadcaster::BroadcastEventIfUnique (uint32_t event_type, EventData *event_data)
285 {
286 EventSP event_sp (new Event (event_type, event_data));
287 PrivateBroadcastEvent (event_sp, true);
288 }
289
290 bool
HijackBroadcaster(Listener * listener,uint32_t event_mask)291 Broadcaster::HijackBroadcaster (Listener *listener, uint32_t event_mask)
292 {
293 Mutex::Locker event_types_locker(m_listeners_mutex);
294
295 Log *log(lldb_private::GetLogIfAnyCategoriesSet (LIBLLDB_LOG_EVENTS));
296 if (log)
297 log->Printf ("%p Broadcaster(\"%s\")::HijackBroadcaster (listener(\"%s\")=%p)",
298 static_cast<void*>(this), m_broadcaster_name.AsCString(""),
299 listener->m_name.c_str(), static_cast<void*>(listener));
300 m_hijacking_listeners.push_back(listener);
301 m_hijacking_masks.push_back(event_mask);
302 return true;
303 }
304
305 bool
IsHijackedForEvent(uint32_t event_mask)306 Broadcaster::IsHijackedForEvent (uint32_t event_mask)
307 {
308 Mutex::Locker event_types_locker(m_listeners_mutex);
309
310 if (!m_hijacking_listeners.empty())
311 return (event_mask & m_hijacking_masks.back()) != 0;
312 return false;
313 }
314
315 void
RestoreBroadcaster()316 Broadcaster::RestoreBroadcaster ()
317 {
318 Mutex::Locker event_types_locker(m_listeners_mutex);
319
320 if (!m_hijacking_listeners.empty())
321 {
322 Log *log(lldb_private::GetLogIfAnyCategoriesSet (LIBLLDB_LOG_EVENTS));
323 if (log)
324 {
325 Listener *listener = m_hijacking_listeners.back();
326 log->Printf ("%p Broadcaster(\"%s\")::RestoreBroadcaster (about to pop listener(\"%s\")=%p)",
327 static_cast<void*>(this),
328 m_broadcaster_name.AsCString(""),
329 listener->m_name.c_str(), static_cast<void*>(listener));
330 }
331 m_hijacking_listeners.pop_back();
332 }
333 if (!m_hijacking_masks.empty())
334 m_hijacking_masks.pop_back();
335 }
336
337 ConstString &
GetBroadcasterClass() const338 Broadcaster::GetBroadcasterClass() const
339 {
340 static ConstString class_name ("lldb.anonymous");
341 return class_name;
342 }
343
BroadcastEventSpec(const BroadcastEventSpec & rhs)344 BroadcastEventSpec::BroadcastEventSpec (const BroadcastEventSpec &rhs) :
345 m_broadcaster_class (rhs.m_broadcaster_class),
346 m_event_bits (rhs.m_event_bits)
347 {
348 }
349
350 bool
operator <(const BroadcastEventSpec & rhs) const351 BroadcastEventSpec::operator< (const BroadcastEventSpec &rhs) const
352 {
353 if (GetBroadcasterClass() == rhs.GetBroadcasterClass())
354 {
355 return GetEventBits() < rhs.GetEventBits();
356 }
357 else
358 {
359 return GetBroadcasterClass() < rhs.GetBroadcasterClass();
360 }
361 }
362
363 const BroadcastEventSpec &
operator =(const BroadcastEventSpec & rhs)364 BroadcastEventSpec::operator= (const BroadcastEventSpec &rhs)
365 {
366 m_broadcaster_class = rhs.m_broadcaster_class;
367 m_event_bits = rhs.m_event_bits;
368 return *this;
369 }
370
BroadcasterManager()371 BroadcasterManager::BroadcasterManager() :
372 m_manager_mutex(Mutex::eMutexTypeRecursive)
373 {
374
375 }
376
377 uint32_t
RegisterListenerForEvents(Listener & listener,BroadcastEventSpec event_spec)378 BroadcasterManager::RegisterListenerForEvents (Listener &listener, BroadcastEventSpec event_spec)
379 {
380 Mutex::Locker locker(m_manager_mutex);
381
382 collection::iterator iter = m_event_map.begin(), end_iter = m_event_map.end();
383 uint32_t available_bits = event_spec.GetEventBits();
384
385 while (iter != end_iter
386 && (iter = find_if (iter, end_iter, BroadcasterClassMatches(event_spec.GetBroadcasterClass()))) != end_iter)
387 {
388 available_bits &= ~((*iter).first.GetEventBits());
389 iter++;
390 }
391
392 if (available_bits != 0)
393 {
394 m_event_map.insert (event_listener_key (BroadcastEventSpec (event_spec.GetBroadcasterClass(), available_bits), &listener));
395 m_listeners.insert(&listener);
396 }
397
398 return available_bits;
399 }
400
401 bool
UnregisterListenerForEvents(Listener & listener,BroadcastEventSpec event_spec)402 BroadcasterManager::UnregisterListenerForEvents (Listener &listener, BroadcastEventSpec event_spec)
403 {
404 Mutex::Locker locker(m_manager_mutex);
405 bool removed_some = false;
406
407 if (m_listeners.erase(&listener) == 0)
408 return false;
409
410 ListenerMatchesAndSharedBits predicate (event_spec, listener);
411 std::vector<BroadcastEventSpec> to_be_readded;
412 uint32_t event_bits_to_remove = event_spec.GetEventBits();
413
414 // Go through the map and delete the exact matches, and build a list of matches that weren't exact to re-add:
415 while (1)
416 {
417 collection::iterator iter, end_iter = m_event_map.end();
418 iter = find_if (m_event_map.begin(), end_iter, predicate);
419 if (iter == end_iter)
420 {
421 break;
422 }
423 else
424 {
425 uint32_t iter_event_bits = (*iter).first.GetEventBits();
426 removed_some = true;
427
428 if (event_bits_to_remove != iter_event_bits)
429 {
430 uint32_t new_event_bits = iter_event_bits & ~event_bits_to_remove;
431 to_be_readded.push_back(BroadcastEventSpec (event_spec.GetBroadcasterClass(), new_event_bits));
432 }
433 m_event_map.erase (iter);
434 }
435 }
436
437 // Okay now add back the bits that weren't completely removed:
438 for (size_t i = 0; i < to_be_readded.size(); i++)
439 {
440 m_event_map.insert (event_listener_key (to_be_readded[i], &listener));
441 }
442
443 return removed_some;
444 }
445
446 Listener *
GetListenerForEventSpec(BroadcastEventSpec event_spec) const447 BroadcasterManager::GetListenerForEventSpec (BroadcastEventSpec event_spec) const
448 {
449 Mutex::Locker locker(*(const_cast<Mutex *> (&m_manager_mutex)));
450
451 collection::const_iterator iter, end_iter = m_event_map.end();
452 iter = find_if (m_event_map.begin(), end_iter, BroadcastEventSpecMatches (event_spec));
453 if (iter != end_iter)
454 return (*iter).second;
455 else
456 return NULL;
457 }
458
459 void
RemoveListener(Listener & listener)460 BroadcasterManager::RemoveListener (Listener &listener)
461 {
462 Mutex::Locker locker(m_manager_mutex);
463 ListenerMatches predicate (listener);
464
465
466 if (m_listeners.erase (&listener) == 0)
467 return;
468
469 while (1)
470 {
471 collection::iterator iter, end_iter = m_event_map.end();
472 iter = find_if (m_event_map.begin(), end_iter, predicate);
473 if (iter == end_iter)
474 break;
475 else
476 m_event_map.erase(iter);
477 }
478 }
479
480 void
SignUpListenersForBroadcaster(Broadcaster & broadcaster)481 BroadcasterManager::SignUpListenersForBroadcaster (Broadcaster &broadcaster)
482 {
483 Mutex::Locker locker(m_manager_mutex);
484
485 collection::iterator iter = m_event_map.begin(), end_iter = m_event_map.end();
486
487 while (iter != end_iter
488 && (iter = find_if (iter, end_iter, BroadcasterClassMatches(broadcaster.GetBroadcasterClass()))) != end_iter)
489 {
490 (*iter).second->StartListeningForEvents (&broadcaster, (*iter).first.GetEventBits());
491 iter++;
492 }
493 }
494
495 void
Clear()496 BroadcasterManager::Clear ()
497 {
498 Mutex::Locker locker(m_manager_mutex);
499 listener_collection::iterator end_iter = m_listeners.end();
500
501 for (listener_collection::iterator iter = m_listeners.begin(); iter != end_iter; iter++)
502 (*iter)->BroadcasterManagerWillDestruct(this);
503 m_listeners.clear();
504 m_event_map.clear();
505
506 }
507