Files
EqualizerAPO/filters/CopyFilter.cpp
T
jthedering b8cdd47f71 Version 1.0
Added: Configuration Editor, which allows to edit configurations in a graphical user interface. Contains GUIs for most commands supported by E-APO, but as lines can also be edited directly, all commands can be used.
Added: Command "GraphicEQ", which can act as a regular, fixed-band graphic equalizer (via the GUI) but also supports variable bands so that any desired frequency response can be specified. Internally, it is implemented via convolution with a generated IR.
Added: Command "Convolution", which allows to convolve the signal with a user-provided impulse response to achieve e.g. equalization or reverberation effects.
Improved: Configurator performs checks for registry values that are needed for the operation of E-APO, which may be changed by driver installations, fixing the values if necessary.
Improved: Configurator shows which is the default device as a hint to the user.
2015-09-27 16:01:21 +00:00

175 lines
5.0 KiB
C++

/*
This file is part of EqualizerAPO, a system-wide equalizer.
Copyright (C) 2014 Jonas Thedering
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/
#include "stdafx.h"
#include <algorithm>
#include <sstream>
#include "helpers/LogHelper.h"
#include "helpers/MemoryHelper.h"
#include "helpers/ChannelHelper.h"
#include "CopyFilter.h"
using namespace std;
CopyFilter::CopyFilter(const vector<Assignment>& assignments)
{
this->assignments = assignments;
internalAssignments = NULL;
assignmentCount = 0;
}
CopyFilter::~CopyFilter()
{
cleanup();
}
vector<wstring> CopyFilter::initialize(float sampleRate, unsigned maxFrameCount, vector<wstring> channelNames)
{
cleanup();
assignmentCount = (unsigned)assignments.size();
internalAssignments = (InternalAssignment*)MemoryHelper::alloc(assignmentCount * sizeof(Assignment));
vector<wstring> outChannelNames;
for(unsigned i=0; i<assignmentCount; i++)
{
InternalAssignment& ia = internalAssignments[i];
Assignment& a = assignments[i];
wstring channelName = a.targetChannel;
int channelIndex = ChannelHelper::getChannelIndex(a.targetChannel, channelNames, true);
if(channelIndex != -1)
channelName = channelNames[channelIndex];
vector<wstring>::const_iterator it = find(outChannelNames.begin(), outChannelNames.end(), channelName);
ia.targetChannel = (int)(it-outChannelNames.begin());
if(it == outChannelNames.end())
outChannelNames.push_back(channelName);
ia.sourceCount = (unsigned)a.sourceSum.size();
ia.sourceSum = (InternalAssignment::InternalSummand*)MemoryHelper::alloc(ia.sourceCount * sizeof(InternalAssignment::InternalSummand));
for(unsigned j=0; j<ia.sourceCount; j++)
{
InternalAssignment::InternalSummand& is = ia.sourceSum[j];
Assignment::Summand& s = a.sourceSum[j];
if(s.channel != L"")
is.channel = ChannelHelper::getChannelIndex(s.channel, channelNames);
else
is.channel = -1;
if(s.isDecibel)
is.factor = (float)pow(10.0, s.factor / 20.0);
else
is.factor = (float)s.factor;
}
}
wstringstream stream;
stream << "Copying ";
for(unsigned i=0; i<assignmentCount; i++)
{
InternalAssignment& ia = internalAssignments[i];
if(i > 0)
stream << ", ";
stream << L"to channel " << outChannelNames[ia.targetChannel].c_str() << " ";
for(unsigned j=0; j<ia.sourceCount; j++)
{
InternalAssignment::InternalSummand& is = ia.sourceSum[j];
if(j > 0)
stream << ", ";
if(is.channel != -1)
stream << L"from channel " << channelNames[is.channel].c_str() << L" with factor " << is.factor;
else
stream << L"value " << is.factor;
}
}
TraceF(L"%s", stream.str().c_str());
return outChannelNames;
}
#pragma AVRT_CODE_BEGIN
void CopyFilter::process(float** output, float** input, unsigned frameCount)
{
for(unsigned i=0; i<assignmentCount; i++)
{
InternalAssignment& ia = internalAssignments[i];
if(ia.targetChannel == -1 || ia.sourceCount == 0)
continue;
{
InternalAssignment::InternalSummand& is = ia.sourceSum[0];
if(is.channel == -1)
for(unsigned f=0; f<frameCount; f++)
output[ia.targetChannel][f] = is.factor;
else if(is.factor == 1.0)
memcpy(output[ia.targetChannel], input[is.channel], frameCount * sizeof(float));
else
for(unsigned f=0; f<frameCount; f++)
output[ia.targetChannel][f] = is.factor * input[is.channel][f];
}
for(unsigned j=1; j<ia.sourceCount; j++)
{
InternalAssignment::InternalSummand& is = ia.sourceSum[j];
if(is.channel == -1)
for(unsigned f=0; f<frameCount; f++)
output[ia.targetChannel][f] += is.factor;
else if(is.factor == 1.0)
for(unsigned f=0; f<frameCount; f++)
output[ia.targetChannel][f] += input[is.channel][f];
else
for(unsigned f=0; f<frameCount; f++)
output[ia.targetChannel][f] += is.factor * input[is.channel][f];
}
}
}
#pragma AVRT_CODE_END
void CopyFilter::cleanup()
{
if(internalAssignments != NULL)
{
for(unsigned i=0; i<assignmentCount; i++)
{
InternalAssignment& ia = internalAssignments[i];
if(ia.sourceSum != NULL)
{
MemoryHelper::free(ia.sourceSum);
ia.sourceSum = NULL;
}
}
MemoryHelper::free(internalAssignments);
internalAssignments = NULL;
}
}
std::vector<Assignment> CopyFilter::getAssignments() const
{
return assignments;
}