580 lines
17 KiB
C++
580 lines
17 KiB
C++
/*
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This file is part of EqualizerAPO, a system-wide equalizer.
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Copyright (C) 2014 Jonas Thedering
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program 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
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "stdafx.h"
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#define _USE_MATH_DEFINES
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#include <cmath>
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#include <sstream>
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#include <fstream>
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#include <algorithm>
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#include <exception>
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#define WIN32_LEAN_AND_MEAN
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#include <windows.h>
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#include <Shlwapi.h>
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#include <Ks.h>
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#include <KsMedia.h>
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#include <mpPackageCommon.h>
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#include <mpPackageNonCmplx.h>
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#include <mpPackageStr.h>
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#include <mpPackageMatrix.h>
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#include "helpers/RegistryHelper.h"
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#include "helpers/StringHelper.h"
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#include "helpers/LogHelper.h"
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#include "helpers/MemoryHelper.h"
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#include "helpers/ChannelHelper.h"
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#include "FilterEngine.h"
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#include "filters/ExpressionFilterFactory.h"
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#include "filters/DeviceFilterFactory.h"
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#include "filters/StageFilterFactory.h"
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#include "filters/IfFilterFactory.h"
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#include "filters/ChannelFilterFactory.h"
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#include "filters/BiQuadFilterFactory.h"
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#include "filters/IIRFilterFactory.h"
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#include "filters/PreampFilterFactory.h"
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#include "filters/DelayFilterFactory.h"
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#include "filters/CopyFilterFactory.h"
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#include "filters/IncludeFilterFactory.h"
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#include "filters/ConvolutionFilterFactory.h"
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#include "filters/GraphicEQFilterFactory.h"
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using namespace std;
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using namespace mup;
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FilterEngine::FilterEngine()
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: parser(0)
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{
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preMix = false;
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capture = false;
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postMixInstalled = true;
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inputChannelCount = 0;
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lastInputWasSilent = false;
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threadHandle = NULL;
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currentConfig = NULL;
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nextConfig = NULL;
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previousConfig = NULL;
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transitionCounter = 0;
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InitializeCriticalSection(&loadSection);
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loadSemaphore = CreateSemaphore(NULL, 1, 1, NULL);
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parser.EnableAutoCreateVar(true);
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factories.push_back(new DeviceFilterFactory());
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factories.push_back(new IfFilterFactory());
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factories.push_back(new ExpressionFilterFactory());
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factories.push_back(new IncludeFilterFactory());
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factories.push_back(new StageFilterFactory());
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factories.push_back(new ChannelFilterFactory());
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factories.push_back(new IIRFilterFactory());
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factories.push_back(new BiQuadFilterFactory());
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factories.push_back(new PreampFilterFactory());
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factories.push_back(new DelayFilterFactory());
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factories.push_back(new CopyFilterFactory());
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factories.push_back(new ConvolutionFilterFactory());
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factories.push_back(new GraphicEQFilterFactory());
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}
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FilterEngine::~FilterEngine()
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{
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// Make sure notification thread is terminated before cleaning up, otherwise deleted memory might be accessed in loadConfig
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if (threadHandle != NULL)
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{
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SetEvent(shutdownEvent);
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if (WaitForSingleObject(threadHandle, INFINITE) == WAIT_OBJECT_0)
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{
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TraceF(L"Successfully terminated directory change notification thread");
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}
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CloseHandle(shutdownEvent);
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CloseHandle(threadHandle);
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threadHandle = NULL;
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}
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cleanupConfigurations();
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for (vector<IFilterFactory*>::iterator it = factories.begin(); it != factories.end(); it++)
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delete*it;
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CloseHandle(loadSemaphore);
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DeleteCriticalSection(&loadSection);
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}
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void FilterEngine::setPreMix(bool preMix)
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{
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this->preMix = preMix;
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}
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void FilterEngine::setDeviceInfo(bool capture, bool postMixInstalled, const wstring& deviceName, const wstring& connectionName, const wstring& deviceGuid)
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{
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this->capture = capture;
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this->postMixInstalled = postMixInstalled;
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this->deviceName = deviceName;
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this->connectionName = connectionName;
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this->deviceGuid = deviceGuid;
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}
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void FilterEngine::initialize(float sampleRate, unsigned inputChannelCount, unsigned realChannelCount, unsigned outputChannelCount, unsigned channelMask, unsigned maxFrameCount, const wstring& customPath)
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{
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EnterCriticalSection(&loadSection);
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cleanupConfigurations();
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this->sampleRate = sampleRate;
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this->inputChannelCount = inputChannelCount;
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this->realChannelCount = realChannelCount;
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this->outputChannelCount = outputChannelCount;
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this->maxFrameCount = maxFrameCount;
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this->transitionCounter = 0;
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this->transitionLength = (unsigned)(sampleRate / 100);
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unsigned deviceChannelCount;
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if (capture)
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deviceChannelCount = inputChannelCount;
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else
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deviceChannelCount = outputChannelCount;
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if (channelMask == 0)
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channelMask = ChannelHelper::getDefaultChannelMask(deviceChannelCount);
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this->channelMask = channelMask;
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vector<wstring> channelNames = ChannelHelper::getChannelNames(deviceChannelCount, channelMask);
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TraceF(L"%d channels for this device: %s", deviceChannelCount, StringHelper::join(channelNames, L" ").c_str());
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try
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{
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configPath = RegistryHelper::readValue(APP_REGPATH, L"ConfigPath");
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}
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catch (RegistryException e)
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{
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LogF(L"Can't read config path because of: %s", e.getMessage().c_str());
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LeaveCriticalSection(&loadSection);
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return;
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}
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parser.ClearConst();
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parser.ClearFun();
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parser.ClearInfixOprt();
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parser.ClearOprt();
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parser.ClearPostfixOprt();
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parser.AddPackage(PackageCommon::Instance());
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parser.AddPackage(PackageNonCmplx::Instance());
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parser.AddPackage(PackageStr::Instance());
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parser.AddPackage(PackageMatrix::Instance());
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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factory->initialize(this);
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}
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if (configPath != L"")
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{
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loadConfig(customPath);
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if (threadHandle == NULL && customPath.empty())
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{
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shutdownEvent = CreateEventW(NULL, true, false, NULL);
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threadHandle = CreateThread(NULL, 0, notificationThread, this, 0, NULL);
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if (threadHandle == INVALID_HANDLE_VALUE)
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threadHandle = NULL;
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else
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TraceF(L"Successfully created directory change notification thread %d for %s and its subtree", GetThreadId(threadHandle), configPath.c_str());
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}
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}
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LeaveCriticalSection(&loadSection);
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}
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void FilterEngine::loadConfig(const wstring& customPath)
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{
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EnterCriticalSection(&loadSection);
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timer.start();
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if (previousConfig != NULL)
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{
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previousConfig->~FilterConfiguration();
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MemoryHelper::free(previousConfig);
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previousConfig = NULL;
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}
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allChannelNames = ChannelHelper::getChannelNames(max(realChannelCount, outputChannelCount), channelMask);
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currentChannelNames = allChannelNames;
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lastChannelNames.clear();
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lastNewChannelNames.clear();
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watchRegistryKeys.clear();
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parser.ClearVar();
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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vector<IFilter*> newFilters = factory->startOfConfiguration();
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if (!newFilters.empty())
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addFilters(newFilters);
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}
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if (customPath.empty())
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loadConfigFile(configPath + L"\\config.txt");
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else
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loadConfigFile(customPath);
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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vector<IFilter*> newFilters = factory->endOfConfiguration();
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if (!newFilters.empty())
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addFilters(newFilters);
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}
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void* mem = MemoryHelper::alloc(sizeof(FilterConfiguration));
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FilterConfiguration* config = new(mem) FilterConfiguration(this, filterInfos, (unsigned)allChannelNames.size());
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filterInfos.clear();
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double loadTime = timer.stop();
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TraceF(L"Finished loading configuration after %lf milliseconds", loadTime * 1000.0);
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if (currentConfig == NULL)
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currentConfig = config;
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else
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nextConfig = config;
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LeaveCriticalSection(&loadSection);
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}
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void FilterEngine::loadConfigFile(const wstring& path)
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{
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TraceF(L"Loading configuration from %s", path.c_str());
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HANDLE hFile = INVALID_HANDLE_VALUE;
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while (hFile == INVALID_HANDLE_VALUE)
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{
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hFile = CreateFile(path.c_str(), GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
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if (hFile == INVALID_HANDLE_VALUE)
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{
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DWORD error = GetLastError();
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if (error != ERROR_SHARING_VIOLATION)
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{
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LogF(L"Error while reading configuration file: %s", StringHelper::getSystemErrorString(error).c_str());
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return;
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}
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// file is being written, so wait
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Sleep(1);
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}
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}
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stringstream inputStream;
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char buf[8192];
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unsigned long bytesRead = -1;
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while (ReadFile(hFile, buf, sizeof(buf), &bytesRead, NULL) && bytesRead != 0)
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{
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inputStream.write(buf, bytesRead);
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}
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CloseHandle(hFile);
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inputStream.seekg(0);
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vector<wstring> savedChannelNames = currentChannelNames;
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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vector<IFilter*> newFilters = factory->startOfFile(path);
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if (!newFilters.empty())
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addFilters(newFilters);
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}
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while (inputStream.good())
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{
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string encodedLine;
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getline(inputStream, encodedLine);
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if (encodedLine.size() > 0 && encodedLine[encodedLine.size() - 1] == '\r')
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encodedLine.resize(encodedLine.size() - 1);
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wstring line = StringHelper::toWString(encodedLine, CP_UTF8);
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if (line.find(L'\uFFFD') != -1)
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line = StringHelper::toWString(encodedLine, CP_ACP);
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size_t pos = line.find(L':');
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if (pos != -1)
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{
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wstring key = line.substr(0, pos);
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wstring value = line.substr(pos + 1);
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// allow to use indentation
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key = StringHelper::trim(key);
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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vector<IFilter*> newFilters;
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try
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{
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newFilters = factory->createFilter(path, key, value);
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}
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catch (exception e)
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{
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LogF(L"%S", e.what());
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}
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if (key == L"")
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break;
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if (!newFilters.empty())
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{
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addFilters(newFilters);
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break;
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}
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}
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}
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}
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for (vector<IFilterFactory*>::const_iterator it = factories.cbegin(); it != factories.cend(); it++)
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{
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IFilterFactory* factory = *it;
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vector<IFilter*> newFilters = factory->endOfFile(path);
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if (!newFilters.empty())
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addFilters(newFilters);
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}
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// restore channels selected in outer configuration file
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currentChannelNames = savedChannelNames;
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}
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void FilterEngine::watchRegistryKey(const std::wstring& key)
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{
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watchRegistryKeys.insert(key);
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}
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#pragma AVRT_CODE_BEGIN
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void FilterEngine::process(float* output, float* input, unsigned frameCount)
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{
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if (currentConfig->isEmpty() && nextConfig == NULL)
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{
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// avoid (de-)interleaving cost if no processing will happen anyway
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if (realChannelCount == outputChannelCount)
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{
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if (input != output)
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memcpy(output, input, outputChannelCount * frameCount * sizeof(float));
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return;
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}
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}
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currentConfig->process(input, frameCount);
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if (nextConfig != NULL)
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{
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nextConfig->process(input, frameCount);
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float** currentSamples = currentConfig->getOutputSamples();
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float** nextSamples = nextConfig->getOutputSamples();
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for (unsigned f = 0; f < frameCount; f++)
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{
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float factor = 0.5f * (1.0f - cos(transitionCounter * (float)M_PI / transitionLength));
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if (transitionCounter >= transitionLength)
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factor = 1.0f;
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for (unsigned c = 0; c < outputChannelCount; c++)
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currentSamples[c][f] = currentSamples[c][f] * (1 - factor) + nextSamples[c][f] * factor;
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transitionCounter++;
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}
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}
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currentConfig->write(output, frameCount);
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if (nextConfig != NULL && transitionCounter >= transitionLength)
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{
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previousConfig = currentConfig;
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currentConfig = nextConfig;
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nextConfig = NULL;
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transitionCounter = 0;
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ReleaseSemaphore(loadSemaphore, 1, NULL);
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}
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}
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#pragma AVRT_CODE_END
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void FilterEngine::addFilters(vector<IFilter*> filters)
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{
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for (vector<IFilter*>::iterator it = filters.begin(); it != filters.end(); it++)
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{
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IFilter* filter = *it;
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FilterInfo* filterInfo = (FilterInfo*)MemoryHelper::alloc(sizeof(FilterInfo));
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filterInfo->filter = filter;
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filterInfo->inPlace = filter->getInPlace();
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vector<wstring> savedChannelNames = currentChannelNames;
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bool allChannels = filter->getAllChannels();
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if (allChannels)
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currentChannelNames = allChannelNames;
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if (lastChannelNames == currentChannelNames)
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{
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filterInfo->inChannelCount = 0;
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filterInfo->inChannels = NULL;
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}
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else
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{
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filterInfo->inChannelCount = currentChannelNames.size();
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filterInfo->inChannels = (size_t*)MemoryHelper::alloc(filterInfo->inChannelCount * sizeof(size_t));
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size_t c = 0;
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for (vector<wstring>::iterator it2 = currentChannelNames.begin(); it2 != currentChannelNames.end(); it2++)
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{
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vector<wstring>::iterator pos = find(allChannelNames.begin(), allChannelNames.end(), *it2);
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filterInfo->inChannels[c++] = pos - allChannelNames.begin();
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}
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}
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lastChannelNames = currentChannelNames;
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vector<wstring> newChannelNames = filter->initialize(sampleRate, maxFrameCount, currentChannelNames);
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if (filterInfo->inPlace && lastInPlace && lastNewChannelNames == newChannelNames)
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{
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filterInfo->outChannelCount = 0;
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filterInfo->outChannels = NULL;
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}
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else
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{
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filterInfo->outChannelCount = newChannelNames.size();
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filterInfo->outChannels = (size_t*)MemoryHelper::alloc(filterInfo->outChannelCount * sizeof(size_t));
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size_t c = 0;
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for (vector<wstring>::iterator it2 = newChannelNames.begin(); it2 != newChannelNames.end(); it2++)
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{
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vector<wstring>::iterator pos = find(allChannelNames.begin(), allChannelNames.end(), *it2);
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if (pos == allChannelNames.end())
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{
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filterInfo->outChannels[c++] = allChannelNames.size();
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allChannelNames.push_back(*it2);
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}
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else
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{
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filterInfo->outChannels[c++] = pos - allChannelNames.begin();
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}
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}
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}
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lastNewChannelNames = newChannelNames;
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lastInPlace = filterInfo->inPlace;
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if (!lastInPlace)
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swap(lastChannelNames, lastNewChannelNames);
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filterInfos.push_back(filterInfo);
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if (filter->getSelectChannels())
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currentChannelNames = newChannelNames;
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else
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currentChannelNames = savedChannelNames;
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}
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}
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void FilterEngine::cleanupConfigurations()
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{
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if (currentConfig != NULL)
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{
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currentConfig->~FilterConfiguration();
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MemoryHelper::free(currentConfig);
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currentConfig = NULL;
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}
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if (nextConfig != NULL)
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{
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nextConfig->~FilterConfiguration();
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MemoryHelper::free(nextConfig);
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nextConfig = NULL;
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}
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if (previousConfig != NULL)
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{
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previousConfig->~FilterConfiguration();
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MemoryHelper::free(previousConfig);
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previousConfig = NULL;
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}
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}
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unsigned long __stdcall FilterEngine::notificationThread(void* parameter)
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{
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FilterEngine* engine = (FilterEngine*)parameter;
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HANDLE notificationHandle = FindFirstChangeNotificationW(engine->configPath.c_str(), true, FILE_NOTIFY_CHANGE_FILE_NAME | FILE_NOTIFY_CHANGE_LAST_WRITE);
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if (notificationHandle == INVALID_HANDLE_VALUE)
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notificationHandle = NULL;
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HANDLE registryEvent = CreateEventW(NULL, true, false, NULL);
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HANDLE handles[3] = {engine->shutdownEvent, notificationHandle, registryEvent};
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while (true)
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{
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vector<HKEY> keyHandles;
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for (auto it = engine->watchRegistryKeys.begin(); it != engine->watchRegistryKeys.end(); it++)
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{
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try
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{
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HKEY keyHandle = RegistryHelper::openKey(*it, KEY_NOTIFY | KEY_WOW64_64KEY);
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keyHandles.push_back(keyHandle);
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RegNotifyChangeKeyValue(keyHandle, false, REG_NOTIFY_CHANGE_LAST_SET, registryEvent, true);
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}
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catch (RegistryException e)
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{
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LogFStatic(L"%s", e.getMessage().c_str());
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}
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}
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DWORD which = WaitForMultipleObjects(3, handles, false, INFINITE);
|
|
|
|
for (auto it = keyHandles.begin(); it != keyHandles.end(); it++)
|
|
{
|
|
RegCloseKey(*it);
|
|
}
|
|
|
|
if (which == WAIT_OBJECT_0)
|
|
{
|
|
// Shutdown
|
|
break;
|
|
}
|
|
else
|
|
{
|
|
if (which == WAIT_OBJECT_0 + 1)
|
|
{
|
|
FindNextChangeNotification(notificationHandle);
|
|
// Wait for second event within 10 milliseconds to avoid loading twice
|
|
WaitForMultipleObjects(1, ¬ificationHandle, false, 10);
|
|
}
|
|
|
|
HANDLE handles[2] = {engine->shutdownEvent, engine->loadSemaphore};
|
|
DWORD which = WaitForMultipleObjects(2, handles, false, INFINITE);
|
|
if (which == WAIT_OBJECT_0)
|
|
{
|
|
// Shutdown
|
|
break;
|
|
}
|
|
|
|
engine->loadConfig();
|
|
FindNextChangeNotification(notificationHandle);
|
|
ResetEvent(registryEvent);
|
|
}
|
|
}
|
|
|
|
FindCloseChangeNotification(notificationHandle);
|
|
CloseHandle(registryEvent);
|
|
|
|
return 0;
|
|
} |