/* * jayDSP, A cross-platform Digital Signal Processing library written in modern C++. * Copyright (C) 2025 Jens Ahrensfeld, All rights reserved. * * Permission is hereby granted, free of charge, to any person obtaining a copy of * this software and associated documentation files (the "Software"), to deal in * the Software without restriction, including without limitation the rights to * use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of * the Software, and to permit persons to whom the Software is furnished to do so, * subject to the following conditions: * * The above copyright notice and this permission notice shall be included in all * copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS * FOR A PARTICULAR PURPOSE AND NON INFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR * COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER * IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. * File: buffer_multi.hpp * Author Jens Ahrensfeld on 26.10.2025. */ #ifndef DSP_BUFFER_MULTI_H #define DSP_BUFFER_MULTI_H #include "buffer.hpp" namespace dsp { template class BufferMulti { Buffer *m_buffer; uint m_numChannels; size_t m_capacity; public: BufferMulti(size_t numChannels, size_t capacity) : m_buffer(new Buffer[numChannels]) , m_numChannels(numChannels) , m_capacity(capacity) { for (int c=0; c < numChannels; c++) { m_buffer[c].resize(capacity); } } Buffer & buffer() { return m_buffer; } void reset() { for (int c=0; c < m_numChannels; c++) { m_buffer[c].reset(); } } size_t capacity() { return m_capacity; } size_t numChannels() { return m_numChannels; } Buffer operator[](uint channel) { return at(channel); } const Buffer operator [](uint channel) const { return at(channel); } BufferMulti & operator ++() { for (int c=0; c < m_numChannels; c++) { ++(m_buffer[c]); } return *this; } BufferMulti & operator +=(int i) { for (int c=0; c < m_numChannels; c++) { m_buffer[c] += i; } return *this; } BufferMulti & operator --() { for (int c=0; c < m_numChannels; c++) { --(m_buffer[c]); } return *this; } BufferMulti & operator -=(int i) { for (int c=0; c < m_numChannels; c++) { m_buffer[c] -= i; } return *this; } BufferMulti & operator = (const T& value) { for (uint c=0; c < m_numChannels; c++) { m_buffer[c][0] = value; } return *this; } dsp::Buffer quer(int offset=0) { Buffer querBuffer(numChannels()); for (int c=0; c < m_numChannels; c++) { querBuffer[c] = m_buffer[c][offset]; } return querBuffer; } const dsp::Buffer quer(int offset=0) const { Buffer querBuffer(numChannels()); for (int c=0; c < m_numChannels; c++) { querBuffer[c] = m_buffer[c][offset]; } return querBuffer; } dsp::Buffer quer(std::initializer_list offsets) { Buffer querBuffer(offsets.size()); uint ch = 0; for (int offset: offsets) { querBuffer[ch] = m_buffer[ch][offset]; ch++; } return querBuffer; } const dsp::Buffer quer(std::initializer_list offsets) const { Buffer querBuffer(offsets.size()); uint ch = 0; for (int offset: offsets) { querBuffer[ch] = m_buffer[ch][offset]; ch++; } return querBuffer; } Buffer at(uint channel) { return m_buffer[channel]; } const Buffer at(uint channel) const { return m_buffer[channel]; } protected: }; } #endif // DSP_BUFFER_MULTI_H