Deleting the old internal audaspace. Major changes from there are: - The whole library was refactored to use C++11. - Many stability and performance improvements. - Major Python API refactor: - Most requested: Play self generated sounds using numpy arrays. - For games: Sound list, random sounds and dynamic music. - Writing sounds to files. - Sequencing API. - Opening sound devices, eg. Jack. - Ability to choose different OpenAL devices in the user settings.
204 lines
5.9 KiB
C++
204 lines
5.9 KiB
C++
/*******************************************************************************
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* Copyright 2015-2016 Juan Francisco Crespo Galán
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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******************************************************************************/
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#include "fx/ConvolverReader.h"
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#include "Exception.h"
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#include <cstring>
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#include <algorithm>
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#include <cmath>
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#include <cstdlib>
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AUD_NAMESPACE_BEGIN
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ConvolverReader::ConvolverReader(std::shared_ptr<IReader> reader, std::shared_ptr<ImpulseResponse> ir, std::shared_ptr<ThreadPool> threadPool, std::shared_ptr<FFTPlan> plan) :
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m_reader(reader), m_ir(ir), m_N(plan->getSize()), m_eosReader(false), m_eosTail(false), m_inChannels(reader->getSpecs().channels), m_irChannels(ir->getSpecs().channels), m_threadPool(threadPool), m_position(0)
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{
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m_nChannelThreads = std::min((int)threadPool->getNumOfThreads(), m_inChannels);
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m_futures.resize(m_nChannelThreads);
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int irLength = m_ir->getLength();
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if(m_irChannels != 1 && m_irChannels != m_inChannels)
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AUD_THROW(StateException, "The impulse response and the sound must either have the same amount of channels or the impulse response must be mono");
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if(m_reader->getSpecs().rate != m_ir->getSpecs().rate)
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AUD_THROW(StateException, "The sound and the impulse response. must have the same rate");
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m_M = m_L = m_N / 2;
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if(m_irChannels > 1)
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for(int i = 0; i < m_inChannels; i++)
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m_convolvers.push_back(std::unique_ptr<Convolver>(new Convolver(ir->getChannel(i), irLength, m_threadPool, plan)));
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else
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for(int i = 0; i < m_inChannels; i++)
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m_convolvers.push_back(std::unique_ptr<Convolver>(new Convolver(ir->getChannel(0), irLength, m_threadPool, plan)));
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for(int i = 0; i < m_inChannels; i++)
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m_vecInOut.push_back((sample_t*)std::malloc(m_L*sizeof(sample_t)));
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m_outBuffer = (sample_t*)std::malloc(m_L*m_inChannels*sizeof(sample_t));
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m_outBufLen = m_eOutBufLen = m_outBufferPos = m_L*m_inChannels;
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}
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ConvolverReader::~ConvolverReader()
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{
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std::free(m_outBuffer);
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for(int i = 0; i < m_inChannels; i++)
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std::free(m_vecInOut[i]);
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}
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bool ConvolverReader::isSeekable() const
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{
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return m_reader->isSeekable();
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}
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void ConvolverReader::seek(int position)
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{
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m_position = position;
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m_reader->seek(position);
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for(int i = 0; i < m_inChannels; i++)
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m_convolvers[i]->reset();
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m_eosTail = false;
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m_eosReader = false;
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m_outBufferPos = m_eOutBufLen = m_outBufLen;
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}
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int ConvolverReader::getLength() const
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{
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return m_reader->getLength();
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}
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int ConvolverReader::getPosition() const
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{
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return m_position;
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}
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Specs ConvolverReader::getSpecs() const
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{
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return m_reader->getSpecs();
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}
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void ConvolverReader::read(int& length, bool& eos, sample_t* buffer)
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{
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if(length <= 0)
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{
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length = 0;
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eos = (m_eosTail && m_outBufferPos >= m_eOutBufLen);
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return;
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}
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eos = false;
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int writePos = 0;
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do
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{
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int bufRest = m_eOutBufLen - m_outBufferPos;
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int writeLength = std::min((length*m_inChannels) - writePos, m_eOutBufLen + bufRest);
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if(bufRest < writeLength || (m_eOutBufLen == 0 && m_eosTail))
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{
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if(bufRest > 0)
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std::memcpy(buffer + writePos, m_outBuffer + m_outBufferPos, bufRest*sizeof(sample_t));
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if(!m_eosTail)
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{
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loadBuffer();
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int len = std::min(std::abs(writeLength - bufRest), m_eOutBufLen);
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std::memcpy(buffer + writePos + bufRest, m_outBuffer, len*sizeof(sample_t));
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m_outBufferPos = len;
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writeLength = std::min((length*m_inChannels) - writePos, m_eOutBufLen + bufRest);
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}
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else
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{
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m_outBufferPos += bufRest;
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length = (writePos + bufRest) / m_inChannels;
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eos = true;
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return;
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}
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}
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else
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{
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std::memcpy(buffer + writePos, m_outBuffer + m_outBufferPos, writeLength*sizeof(sample_t));
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m_outBufferPos += writeLength;
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}
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writePos += writeLength;
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} while(writePos < length*m_inChannels);
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m_position += length;
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}
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void ConvolverReader::loadBuffer()
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{
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m_lastLengthIn = m_L;
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m_reader->read(m_lastLengthIn, m_eosReader, m_outBuffer);
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if(!m_eosReader || m_lastLengthIn>0)
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{
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divideByChannel(m_outBuffer, m_lastLengthIn*m_inChannels);
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int len = m_lastLengthIn;
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for(int i = 0; i < m_futures.size(); i++)
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m_futures[i] = m_threadPool->enqueue(&ConvolverReader::threadFunction, this, i, true);
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for(auto &fut : m_futures)
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len = fut.get();
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joinByChannel(0, len);
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m_eOutBufLen = len*m_inChannels;
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}
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else if(!m_eosTail)
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{
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int len = m_lastLengthIn = m_L;
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for(int i = 0; i < m_futures.size(); i++)
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m_futures[i] = m_threadPool->enqueue(&ConvolverReader::threadFunction, this, i, false);
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for(auto &fut : m_futures)
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len = fut.get();
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joinByChannel(0, len);
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m_eOutBufLen = len*m_inChannels;
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}
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}
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void ConvolverReader::divideByChannel(const sample_t* buffer, int len)
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{
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int k = 0;
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for(int i = 0; i < len; i += m_inChannels)
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{
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for(int j = 0; j < m_inChannels; j++)
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m_vecInOut[j][k] = buffer[i + j];
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k++;
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}
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}
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void ConvolverReader::joinByChannel(int start, int len)
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{
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int k = 0;
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for(int i = 0; i < len*m_inChannels; i += m_inChannels)
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{
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for(int j = 0; j < m_vecInOut.size(); j++)
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m_outBuffer[i + j + start] = m_vecInOut[j][k];
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k++;
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}
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}
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int ConvolverReader::threadFunction(int id, bool input)
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{
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int share = std::ceil((float)m_inChannels / (float)m_nChannelThreads);
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int start = id*share;
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int end = std::min(start + share, m_inChannels);
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int l=m_lastLengthIn;
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for(int i = start; i < end; i++)
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if(input)
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m_convolvers[i]->getNext(m_vecInOut[i], m_vecInOut[i], l, m_eosTail);
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else
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m_convolvers[i]->getNext(nullptr, m_vecInOut[i], l, m_eosTail);
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return l;
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}
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AUD_NAMESPACE_END
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