/* ============================================================================== This file is part of the JUCE examples. Copyright (c) 2022 - Raw Material Software Limited The code included in this file is provided under the terms of the ISC license http://www.isc.org/downloads/software-support-policy/isc-license. Permission To use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted provided that the above copyright notice and this permission notice appear in all copies. THE SOFTWARE IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL WARRANTIES, WHETHER EXPRESSED OR IMPLIED, INCLUDING MERCHANTABILITY AND FITNESS FOR PURPOSE, ARE DISCLAIMED. ============================================================================== */ /******************************************************************************* The block below describes the properties of this PIP. A PIP is a short snippet of code that can be read by the Projucer and used to generate a JUCE project. BEGIN_JUCE_PIP_METADATA name: FIRFilterDemo version: 1.0.0 vendor: JUCE website: http://juce.com description: FIR filter demo using the DSP module. dependencies: juce_audio_basics, juce_audio_devices, juce_audio_formats, juce_audio_processors, juce_audio_utils, juce_core, juce_data_structures, juce_dsp, juce_events, juce_graphics, juce_gui_basics, juce_gui_extra exporters: xcode_mac, vs2022, linux_make moduleFlags: JUCE_STRICT_REFCOUNTEDPOINTER=1 type: Component mainClass: FIRFilterDemo useLocalCopy: 1 END_JUCE_PIP_METADATA *******************************************************************************/ #pragma once #include "../Assets/DemoUtilities.h" #include "../Assets/DSPDemos_Common.h" using namespace dsp; //============================================================================== struct FIRFilterDemoDSP { void prepare (const ProcessSpec& spec) { sampleRate = spec.sampleRate; fir.state = FilterDesign::designFIRLowpassWindowMethod (440.0f, sampleRate, 21, WindowingFunction::blackman); fir.prepare (spec); } void process (const ProcessContextReplacing& context) { fir.process (context); } void reset() { fir.reset(); } void updateParameters() { if (! approximatelyEqual (sampleRate, 0.0)) { auto cutoff = static_cast (cutoffParam.getCurrentValue()); auto windowingMethod = static_cast::WindowingMethod> (typeParam.getCurrentSelectedID() - 1); *fir.state = *FilterDesign::designFIRLowpassWindowMethod (cutoff, sampleRate, 21, windowingMethod); } } //============================================================================== ProcessorDuplicator, FIR::Coefficients> fir; double sampleRate = 0.0; SliderParameter cutoffParam { { 20.0, 20000.0 }, 0.4, 440.0f, "Cutoff", "Hz" }; ChoiceParameter typeParam { { "Rectangular", "Triangular", "Hann", "Hamming", "Blackman", "Blackman-Harris", "Flat Top", "Kaiser" }, 5, "Windowing Function" }; std::vector parameters { &cutoffParam, &typeParam }; }; struct FIRFilterDemo final : public Component { FIRFilterDemo() { addAndMakeVisible (fileReaderComponent); setSize (750, 500); } void resized() override { fileReaderComponent.setBounds (getLocalBounds()); } AudioFileReaderComponent fileReaderComponent; };