25bd5d8adb
subrepo: subdir: "deps/juce" merged: "b13f9084e" upstream: origin: "https://github.com/essej/JUCE.git" branch: "sono6good" commit: "b13f9084e" git-subrepo: version: "0.4.3" origin: "https://github.com/ingydotnet/git-subrepo.git" commit: "2f68596"
377 lines
14 KiB
C++
377 lines
14 KiB
C++
/*
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==============================================================================
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This file is part of the JUCE examples.
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Copyright (c) 2020 - Raw Material Software Limited
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The code included in this file is provided under the terms of the ISC license
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http://www.isc.org/downloads/software-support-policy/isc-license. Permission
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To use, copy, modify, and/or distribute this software for any purpose with or
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without fee is hereby granted provided that the above copyright notice and
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this permission notice appear in all copies.
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THE SOFTWARE IS PROVIDED "AS IS" WITHOUT ANY WARRANTY, AND ALL WARRANTIES,
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WHETHER EXPRESSED OR IMPLIED, INCLUDING MERCHANTABILITY AND FITNESS FOR
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PURPOSE, ARE DISCLAIMED.
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==============================================================================
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*/
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/*******************************************************************************
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The block below describes the properties of this PIP. A PIP is a short snippet
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of code that can be read by the Projucer and used to generate a JUCE project.
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BEGIN_JUCE_PIP_METADATA
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name: AudioRecordingDemo
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version: 1.0.0
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vendor: JUCE
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website: http://juce.com
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description: Records audio to a file.
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dependencies: juce_audio_basics, juce_audio_devices, juce_audio_formats,
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juce_audio_processors, juce_audio_utils, juce_core,
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juce_data_structures, juce_events, juce_graphics,
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juce_gui_basics, juce_gui_extra
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exporters: xcode_mac, vs2019, linux_make, androidstudio, xcode_iphone
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moduleFlags: JUCE_STRICT_REFCOUNTEDPOINTER=1
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type: Component
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mainClass: AudioRecordingDemo
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useLocalCopy: 1
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END_JUCE_PIP_METADATA
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*******************************************************************************/
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#pragma once
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#include "../Assets/DemoUtilities.h"
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#include "../Assets/AudioLiveScrollingDisplay.h"
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//==============================================================================
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/** A simple class that acts as an AudioIODeviceCallback and writes the
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incoming audio data to a WAV file.
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*/
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class AudioRecorder : public AudioIODeviceCallback
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{
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public:
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AudioRecorder (AudioThumbnail& thumbnailToUpdate)
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: thumbnail (thumbnailToUpdate)
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{
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backgroundThread.startThread();
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}
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~AudioRecorder() override
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{
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stop();
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}
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//==============================================================================
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void startRecording (const File& file)
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{
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stop();
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if (sampleRate > 0)
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{
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// Create an OutputStream to write to our destination file...
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file.deleteFile();
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if (auto fileStream = std::unique_ptr<FileOutputStream> (file.createOutputStream()))
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{
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// Now create a WAV writer object that writes to our output stream...
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WavAudioFormat wavFormat;
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if (auto writer = wavFormat.createWriterFor (fileStream.get(), sampleRate, 1, 16, {}, 0))
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{
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fileStream.release(); // (passes responsibility for deleting the stream to the writer object that is now using it)
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// Now we'll create one of these helper objects which will act as a FIFO buffer, and will
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// write the data to disk on our background thread.
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threadedWriter.reset (new AudioFormatWriter::ThreadedWriter (writer, backgroundThread, 32768));
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// Reset our recording thumbnail
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thumbnail.reset (writer->getNumChannels(), writer->getSampleRate());
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nextSampleNum = 0;
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// And now, swap over our active writer pointer so that the audio callback will start using it..
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const ScopedLock sl (writerLock);
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activeWriter = threadedWriter.get();
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}
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}
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}
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}
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void stop()
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{
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// First, clear this pointer to stop the audio callback from using our writer object..
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{
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const ScopedLock sl (writerLock);
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activeWriter = nullptr;
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}
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// Now we can delete the writer object. It's done in this order because the deletion could
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// take a little time while remaining data gets flushed to disk, so it's best to avoid blocking
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// the audio callback while this happens.
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threadedWriter.reset();
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}
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bool isRecording() const
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{
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return activeWriter.load() != nullptr;
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}
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//==============================================================================
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void audioDeviceAboutToStart (AudioIODevice* device) override
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{
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sampleRate = device->getCurrentSampleRate();
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}
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void audioDeviceStopped() override
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{
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sampleRate = 0;
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}
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void audioDeviceIOCallback (const float** inputChannelData, int numInputChannels,
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float** outputChannelData, int numOutputChannels,
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int numSamples) override
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{
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const ScopedLock sl (writerLock);
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if (activeWriter.load() != nullptr && numInputChannels >= thumbnail.getNumChannels())
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{
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activeWriter.load()->write (inputChannelData, numSamples);
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// Create an AudioBuffer to wrap our incoming data, note that this does no allocations or copies, it simply references our input data
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AudioBuffer<float> buffer (const_cast<float**> (inputChannelData), thumbnail.getNumChannels(), numSamples);
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thumbnail.addBlock (nextSampleNum, buffer, 0, numSamples);
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nextSampleNum += numSamples;
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}
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// We need to clear the output buffers, in case they're full of junk..
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for (int i = 0; i < numOutputChannels; ++i)
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if (outputChannelData[i] != nullptr)
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FloatVectorOperations::clear (outputChannelData[i], numSamples);
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}
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private:
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AudioThumbnail& thumbnail;
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TimeSliceThread backgroundThread { "Audio Recorder Thread" }; // the thread that will write our audio data to disk
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std::unique_ptr<AudioFormatWriter::ThreadedWriter> threadedWriter; // the FIFO used to buffer the incoming data
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double sampleRate = 0.0;
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int64 nextSampleNum = 0;
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CriticalSection writerLock;
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std::atomic<AudioFormatWriter::ThreadedWriter*> activeWriter { nullptr };
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};
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//==============================================================================
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class RecordingThumbnail : public Component,
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private ChangeListener
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{
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public:
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RecordingThumbnail()
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{
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formatManager.registerBasicFormats();
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thumbnail.addChangeListener (this);
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}
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~RecordingThumbnail() override
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{
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thumbnail.removeChangeListener (this);
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}
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AudioThumbnail& getAudioThumbnail() { return thumbnail; }
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void setDisplayFullThumbnail (bool displayFull)
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{
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displayFullThumb = displayFull;
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repaint();
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}
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void paint (Graphics& g) override
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{
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g.fillAll (Colours::darkgrey);
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g.setColour (Colours::lightgrey);
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if (thumbnail.getTotalLength() > 0.0)
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{
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auto endTime = displayFullThumb ? thumbnail.getTotalLength()
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: jmax (30.0, thumbnail.getTotalLength());
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auto thumbArea = getLocalBounds();
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thumbnail.drawChannels (g, thumbArea.reduced (2), 0.0, endTime, 1.0f);
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}
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else
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{
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g.setFont (14.0f);
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g.drawFittedText ("(No file recorded)", getLocalBounds(), Justification::centred, 2);
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}
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}
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private:
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AudioFormatManager formatManager;
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AudioThumbnailCache thumbnailCache { 10 };
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AudioThumbnail thumbnail { 512, formatManager, thumbnailCache };
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bool displayFullThumb = false;
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void changeListenerCallback (ChangeBroadcaster* source) override
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{
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if (source == &thumbnail)
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repaint();
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}
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JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (RecordingThumbnail)
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};
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//==============================================================================
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class AudioRecordingDemo : public Component
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{
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public:
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AudioRecordingDemo()
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{
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setOpaque (true);
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addAndMakeVisible (liveAudioScroller);
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addAndMakeVisible (explanationLabel);
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explanationLabel.setFont (Font (15.0f, Font::plain));
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explanationLabel.setJustificationType (Justification::topLeft);
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explanationLabel.setEditable (false, false, false);
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explanationLabel.setColour (TextEditor::textColourId, Colours::black);
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explanationLabel.setColour (TextEditor::backgroundColourId, Colour (0x00000000));
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addAndMakeVisible (recordButton);
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recordButton.setColour (TextButton::buttonColourId, Colour (0xffff5c5c));
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recordButton.setColour (TextButton::textColourOnId, Colours::black);
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recordButton.onClick = [this]
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{
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if (recorder.isRecording())
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stopRecording();
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else
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startRecording();
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};
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addAndMakeVisible (recordingThumbnail);
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#ifndef JUCE_DEMO_RUNNER
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RuntimePermissions::request (RuntimePermissions::recordAudio,
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[this] (bool granted)
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{
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int numInputChannels = granted ? 2 : 0;
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audioDeviceManager.initialise (numInputChannels, 2, nullptr, true, {}, nullptr);
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});
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#endif
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audioDeviceManager.addAudioCallback (&liveAudioScroller);
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audioDeviceManager.addAudioCallback (&recorder);
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setSize (500, 500);
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}
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~AudioRecordingDemo() override
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{
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audioDeviceManager.removeAudioCallback (&recorder);
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audioDeviceManager.removeAudioCallback (&liveAudioScroller);
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}
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void paint (Graphics& g) override
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{
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g.fillAll (getUIColourIfAvailable (LookAndFeel_V4::ColourScheme::UIColour::windowBackground));
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}
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void resized() override
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{
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auto area = getLocalBounds();
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liveAudioScroller .setBounds (area.removeFromTop (80).reduced (8));
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recordingThumbnail.setBounds (area.removeFromTop (80).reduced (8));
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recordButton .setBounds (area.removeFromTop (36).removeFromLeft (140).reduced (8));
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explanationLabel .setBounds (area.reduced (8));
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}
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private:
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// if this PIP is running inside the demo runner, we'll use the shared device manager instead
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#ifndef JUCE_DEMO_RUNNER
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AudioDeviceManager audioDeviceManager;
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#else
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AudioDeviceManager& audioDeviceManager { getSharedAudioDeviceManager (1, 0) };
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#endif
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LiveScrollingAudioDisplay liveAudioScroller;
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RecordingThumbnail recordingThumbnail;
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AudioRecorder recorder { recordingThumbnail.getAudioThumbnail() };
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Label explanationLabel { {}, "This page demonstrates how to record a wave file from the live audio input..\n\n"
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#if (JUCE_ANDROID || JUCE_IOS)
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"After you are done with your recording you can share with other apps."
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#else
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"Pressing record will start recording a file in your \"Documents\" folder."
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#endif
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};
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TextButton recordButton { "Record" };
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File lastRecording;
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void startRecording()
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{
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if (! RuntimePermissions::isGranted (RuntimePermissions::writeExternalStorage))
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{
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SafePointer<AudioRecordingDemo> safeThis (this);
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RuntimePermissions::request (RuntimePermissions::writeExternalStorage,
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[safeThis] (bool granted) mutable
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{
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if (granted)
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safeThis->startRecording();
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});
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return;
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}
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#if (JUCE_ANDROID || JUCE_IOS)
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auto parentDir = File::getSpecialLocation (File::tempDirectory);
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#else
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auto parentDir = File::getSpecialLocation (File::userDocumentsDirectory);
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#endif
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lastRecording = parentDir.getNonexistentChildFile ("JUCE Demo Audio Recording", ".wav");
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recorder.startRecording (lastRecording);
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recordButton.setButtonText ("Stop");
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recordingThumbnail.setDisplayFullThumbnail (false);
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}
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void stopRecording()
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{
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recorder.stop();
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#if JUCE_CONTENT_SHARING
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SafePointer<AudioRecordingDemo> safeThis (this);
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File fileToShare = lastRecording;
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ContentSharer::getInstance()->shareFiles (Array<URL> ({URL (fileToShare)}),
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[safeThis, fileToShare] (bool success, const String& error)
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{
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if (fileToShare.existsAsFile())
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fileToShare.deleteFile();
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if (! success && error.isNotEmpty())
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NativeMessageBox::showAsync (MessageBoxOptions()
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.withIconType (MessageBoxIconType::WarningIcon)
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.withTitle ("Sharing Error")
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.withMessage (error),
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nullptr);
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});
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#endif
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lastRecording = File();
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recordButton.setButtonText ("Record");
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recordingThumbnail.setDisplayFullThumbnail (true);
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}
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JUCE_DECLARE_NON_COPYABLE_WITH_LEAK_DETECTOR (AudioRecordingDemo)
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};
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