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165 lines
5.8 KiB
C++
165 lines
5.8 KiB
C++
/*
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==============================================================================
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This file is part of the JUCE framework.
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Copyright (c) Raw Material Software Limited
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JUCE is an open source framework subject to commercial or open source
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licensing.
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By downloading, installing, or using the JUCE framework, or combining the
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JUCE framework with any other source code, object code, content or any other
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copyrightable work, you agree to the terms of the JUCE End User Licence
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Agreement, and all incorporated terms including the JUCE Privacy Policy and
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the JUCE Website Terms of Service, as applicable, which will bind you. If you
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do not agree to the terms of these agreements, we will not license the JUCE
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framework to you, and you must discontinue the installation or download
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process and cease use of the JUCE framework.
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JUCE End User Licence Agreement: https://juce.com/legal/juce-8-licence/
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JUCE Privacy Policy: https://juce.com/juce-privacy-policy
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JUCE Website Terms of Service: https://juce.com/juce-website-terms-of-service/
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Or:
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You may also use this code under the terms of the AGPLv3:
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https://www.gnu.org/licenses/agpl-3.0.en.html
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THE JUCE FRAMEWORK IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL
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WARRANTIES, WHETHER EXPRESSED OR IMPLIED, INCLUDING WARRANTY OF
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MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, ARE DISCLAIMED.
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==============================================================================
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*/
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namespace juce::dsp
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{
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/**
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Adds a DC offset (voltage bias) to the audio samples.
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This is a useful preprocessor for asymmetric waveshaping when a waveshaper is
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bookended by a bias on input and a DC-offset removing high pass filter on output.
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This is an extremely simple bias implementation that simply adds a value to a signal.
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More complicated bias behaviours exist in real circuits - for your homework ;).
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@tags{DSP}
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*/
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template <typename FloatType>
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class Bias
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{
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public:
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Bias() noexcept = default;
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//==============================================================================
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/** Sets the DC bias
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@param newBias DC offset in range [-1, 1]
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*/
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void setBias (FloatType newBias) noexcept
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{
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jassert (newBias >= static_cast<FloatType> (-1) && newBias <= static_cast<FloatType> (1));
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bias.setTargetValue (newBias);
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}
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//==============================================================================
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/** Returns the DC bias
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@return DC bias, which should be in the range [-1, 1]
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*/
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FloatType getBias() const noexcept { return bias.getTargetValue(); }
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/** Sets the length of the ramp used for smoothing gain changes. */
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void setRampDurationSeconds (double newDurationSeconds) noexcept
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{
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if (! approximatelyEqual (rampDurationSeconds, newDurationSeconds))
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{
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rampDurationSeconds = newDurationSeconds;
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updateRamp();
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}
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}
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double getRampDurationSeconds() const noexcept { return rampDurationSeconds; }
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//==============================================================================
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/** Called before processing starts */
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void prepare (const ProcessSpec& spec) noexcept
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{
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sampleRate = spec.sampleRate;
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updateRamp();
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}
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void reset() noexcept
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{
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bias.reset (sampleRate, rampDurationSeconds);
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}
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//==============================================================================
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/** Returns the result of processing a single sample. */
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template <typename SampleType>
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SampleType processSample (SampleType inputSample) noexcept
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{
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return inputSample + bias.getNextValue();
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}
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//==============================================================================
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/** Processes the input and output buffers supplied in the processing context. */
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template <typename ProcessContext>
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void process (const ProcessContext& context) noexcept
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{
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auto&& inBlock = context.getInputBlock();
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auto&& outBlock = context.getOutputBlock();
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jassert (inBlock.getNumChannels() == outBlock.getNumChannels());
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jassert (inBlock.getNumSamples() == outBlock.getNumSamples());
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auto len = inBlock.getNumSamples();
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auto numChannels = inBlock.getNumChannels();
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if (context.isBypassed)
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{
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bias.skip (static_cast<int> (len));
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if (context.usesSeparateInputAndOutputBlocks())
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outBlock.copyFrom (inBlock);
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return;
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}
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if (numChannels == 1)
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{
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auto* src = inBlock.getChannelPointer (0);
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auto* dst = outBlock.getChannelPointer (0);
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for (size_t i = 0; i < len; ++i)
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dst[i] = src[i] + bias.getNextValue();
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}
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else
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{
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JUCE_BEGIN_IGNORE_WARNINGS_MSVC (6255 6386)
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auto* biases = static_cast<FloatType*> (alloca (sizeof (FloatType) * len));
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for (size_t i = 0; i < len; ++i)
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biases[i] = bias.getNextValue();
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for (size_t chan = 0; chan < numChannels; ++chan)
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FloatVectorOperations::add (outBlock.getChannelPointer (chan),
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inBlock.getChannelPointer (chan),
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biases, static_cast<int> (len));
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JUCE_END_IGNORE_WARNINGS_MSVC
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}
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}
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private:
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//==============================================================================
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SmoothedValue<FloatType> bias;
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double sampleRate = 0, rampDurationSeconds = 0;
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void updateRamp() noexcept
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{
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if (sampleRate > 0)
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bias.reset (sampleRate, rampDurationSeconds);
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}
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};
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} // namespace juce::dsp
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