306 lines
8.1 KiB
C++
306 lines
8.1 KiB
C++
/**
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* @file lltracethreadrecorder.cpp
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*
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* $LicenseInfo:firstyear=2001&license=viewerlgpl$
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* Second Life Viewer Source Code
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* Copyright (C) 2012, Linden Research, Inc.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation;
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* version 2.1 of the License only.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*
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* Linden Research, Inc., 945 Battery Street, San Francisco, CA 94111 USA
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* $/LicenseInfo$
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*/
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#include "linden_common.h"
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#include "lltracethreadrecorder.h"
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#include "llfasttimer.h"
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namespace LLTrace
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{
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static ThreadRecorder* sMasterThreadRecorder = NULL;
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///////////////////////////////////////////////////////////////////////
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// ThreadRecorder
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///////////////////////////////////////////////////////////////////////
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ThreadRecorder::ThreadRecorder()
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: mMasterRecorder(NULL)
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{
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init();
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}
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void ThreadRecorder::init()
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{
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LLThreadLocalSingletonPointer<BlockTimerStackRecord>::setInstance(&mBlockTimerStackRecord);
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//NB: the ordering of initialization in this function is very fragile due to a large number of implicit dependencies
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set_thread_recorder(this);
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TimeBlock& root_time_block = TimeBlock::getRootTimeBlock();
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BlockTimerStackRecord* timer_stack = LLThreadLocalSingletonPointer<BlockTimerStackRecord>::getInstance();
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timer_stack->mTimeBlock = &root_time_block;
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timer_stack->mActiveTimer = NULL;
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mNumTimeBlockTreeNodes = AccumulatorBuffer<TimeBlockAccumulator>::getDefaultBuffer()->size();
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mTimeBlockTreeNodes = new TimeBlockTreeNode[mNumTimeBlockTreeNodes];
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activate(&mThreadRecordingBuffers);
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// initialize time block parent pointers
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for (LLInstanceTracker<TimeBlock>::instance_iter it = LLInstanceTracker<TimeBlock>::beginInstances(), end_it = LLInstanceTracker<TimeBlock>::endInstances();
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it != end_it;
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++it)
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{
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TimeBlock& time_block = *it;
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TimeBlockTreeNode& tree_node = mTimeBlockTreeNodes[it->getIndex()];
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tree_node.mBlock = &time_block;
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tree_node.mParent = &root_time_block;
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it->getPrimaryAccumulator()->mParent = &root_time_block;
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}
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mRootTimer = new BlockTimer(root_time_block);
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timer_stack->mActiveTimer = mRootTimer;
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TimeBlock::getRootTimeBlock().getPrimaryAccumulator()->mActiveCount = 1;
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}
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ThreadRecorder::ThreadRecorder(ThreadRecorder& master)
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: mMasterRecorder(&master)
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{
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init();
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mMasterRecorder->addChildRecorder(this);
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}
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ThreadRecorder::~ThreadRecorder()
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{
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LLThreadLocalSingletonPointer<BlockTimerStackRecord>::setInstance(NULL);
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deactivate(&mThreadRecordingBuffers);
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delete mRootTimer;
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if (!mActiveRecordings.empty())
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{
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std::for_each(mActiveRecordings.begin(), mActiveRecordings.end(), DeletePointer());
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mActiveRecordings.clear();
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}
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set_thread_recorder(NULL);
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delete[] mTimeBlockTreeNodes;
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if (mMasterRecorder)
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{
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mMasterRecorder->removeChildRecorder(this);
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}
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}
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TimeBlockTreeNode* ThreadRecorder::getTimeBlockTreeNode( S32 index )
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{
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if (0 <= index && index < mNumTimeBlockTreeNodes)
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{
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return &mTimeBlockTreeNodes[index];
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}
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return NULL;
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}
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void ThreadRecorder::activate( AccumulatorBufferGroup* recording, bool from_handoff )
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{
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ActiveRecording* active_recording = new ActiveRecording(recording);
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if (!mActiveRecordings.empty())
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{
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AccumulatorBufferGroup& prev_active_recording = mActiveRecordings.back()->mPartialRecording;
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prev_active_recording.sync();
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if (!from_handoff)
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{
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TimeBlock::updateTimes();
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}
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prev_active_recording.handOffTo(active_recording->mPartialRecording);
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}
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mActiveRecordings.push_back(active_recording);
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mActiveRecordings.back()->mPartialRecording.makePrimary();
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}
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ThreadRecorder::active_recording_list_t::reverse_iterator ThreadRecorder::bringUpToDate( AccumulatorBufferGroup* recording )
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{
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if (mActiveRecordings.empty()) return mActiveRecordings.rend();
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mActiveRecordings.back()->mPartialRecording.sync();
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TimeBlock::updateTimes();
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active_recording_list_t::reverse_iterator it, end_it;
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for (it = mActiveRecordings.rbegin(), end_it = mActiveRecordings.rend();
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it != end_it;
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++it)
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{
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ActiveRecording* cur_recording = *it;
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active_recording_list_t::reverse_iterator next_it = it;
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++next_it;
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// if we have another recording further down in the stack...
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if (next_it != mActiveRecordings.rend())
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{
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// ...push our gathered data down to it
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(*next_it)->mPartialRecording.append(cur_recording->mPartialRecording);
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}
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// copy accumulated measurements into result buffer and clear accumulator (mPartialRecording)
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cur_recording->movePartialToTarget();
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if (cur_recording->mTargetRecording == recording)
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{
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// found the recording, so return it
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break;
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}
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}
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if (it == end_it)
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{
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LL_WARNS() << "Recording not active on this thread" << LL_ENDL;
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}
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return it;
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}
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void ThreadRecorder::deactivate( AccumulatorBufferGroup* recording )
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{
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active_recording_list_t::reverse_iterator it = bringUpToDate(recording);
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if (it != mActiveRecordings.rend())
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{
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active_recording_list_t::iterator recording_to_remove = (++it).base();
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bool was_primary = (*recording_to_remove)->mPartialRecording.isPrimary();
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llassert((*recording_to_remove)->mTargetRecording == recording);
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delete *recording_to_remove;
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mActiveRecordings.erase(recording_to_remove);
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if (was_primary)
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{
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if (mActiveRecordings.empty())
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{
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AccumulatorBufferGroup::clearPrimary();
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}
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else
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{
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mActiveRecordings.back()->mPartialRecording.makePrimary();
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}
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}
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}
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}
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ThreadRecorder::ActiveRecording::ActiveRecording( AccumulatorBufferGroup* target )
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: mTargetRecording(target)
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{
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}
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void ThreadRecorder::ActiveRecording::movePartialToTarget()
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{
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mTargetRecording->append(mPartialRecording);
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// reset based on self to keep history
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mPartialRecording.reset(&mPartialRecording);
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}
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// called by child thread
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void ThreadRecorder::addChildRecorder( class ThreadRecorder* child )
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{ LLMutexLock lock(&mChildListMutex);
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mChildThreadRecorders.push_back(child);
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}
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// called by child thread
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void ThreadRecorder::removeChildRecorder( class ThreadRecorder* child )
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{ LLMutexLock lock(&mChildListMutex);
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for (child_thread_recorder_list_t::iterator it = mChildThreadRecorders.begin(), end_it = mChildThreadRecorders.end();
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it != end_it;
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++it)
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{
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if ((*it) == child)
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{
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mChildThreadRecorders.erase(it);
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break;
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}
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}
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}
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void ThreadRecorder::pushToParent()
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{
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{ LLMutexLock lock(&mSharedRecordingMutex);
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LLTrace::get_thread_recorder()->bringUpToDate(&mThreadRecordingBuffers);
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mSharedRecordingBuffers.append(mThreadRecordingBuffers);
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mThreadRecordingBuffers.reset();
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}
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}
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static LLFastTimer::DeclareTimer FTM_PULL_TRACE_DATA_FROM_CHILDREN("Pull child thread trace data");
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void ThreadRecorder::pullFromChildren()
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{
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LLFastTimer _(FTM_PULL_TRACE_DATA_FROM_CHILDREN);
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if (mActiveRecordings.empty()) return;
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{ LLMutexLock lock(&mChildListMutex);
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AccumulatorBufferGroup& target_recording_buffers = mActiveRecordings.back()->mPartialRecording;
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target_recording_buffers.sync();
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for (child_thread_recorder_list_t::iterator it = mChildThreadRecorders.begin(), end_it = mChildThreadRecorders.end();
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it != end_it;
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++it)
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{ LLMutexLock lock(&(*it)->mSharedRecordingMutex);
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target_recording_buffers.merge((*it)->mSharedRecordingBuffers);
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(*it)->mSharedRecordingBuffers.reset();
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}
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}
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}
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void set_master_thread_recorder(ThreadRecorder* recorder)
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{
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sMasterThreadRecorder = recorder;
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}
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ThreadRecorder* get_master_thread_recorder()
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{
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return sMasterThreadRecorder;
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}
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LLThreadLocalPointer<ThreadRecorder>& get_thread_recorder_ptr()
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{
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static LLThreadLocalPointer<ThreadRecorder> s_thread_recorder;
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return s_thread_recorder;
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}
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const LLThreadLocalPointer<ThreadRecorder>& get_thread_recorder()
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{
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return get_thread_recorder_ptr();
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}
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void set_thread_recorder(ThreadRecorder* recorder)
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{
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get_thread_recorder_ptr() = recorder;
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}
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}
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