153 lines
4.3 KiB
C++
153 lines
4.3 KiB
C++
/*
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Copyright (C) 2006-2011 Nasca Octavian Paul
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Author: Nasca Octavian Paul
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This program is free software; you can redistribute it and/or modify
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it under the terms of version 2 of the GNU General Public License
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as published by the Free Software Foundation.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License (version 2) for more details.
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You should have received a copy of the GNU General Public License (version 2)
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along with this program; if not, write to the Free Software Foundation,
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Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#pragma once
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#include "globals.h"
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#include "Input/AInputS.h"
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#include "ProcessedStretch.h"
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#include "BinauralBeats.h"
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#include "StretchSource.h"
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#include "../JuceLibraryCode/JuceHeader.h"
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#include "../ps3_BufferingAudioSource.h"
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class RenderInfo
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{
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public:
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double m_progress_percent = 0.0;
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double m_elapsed_time = 0.0;
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std::atomic<bool> m_cancel{ false };
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String m_txt;
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};
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using RenderInfoRef = std::shared_ptr<RenderInfo>;
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class RenderParameters
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{
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public:
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File inaudio;
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File outaudio;
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double pos1 = 0.0;
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double pos2 = 1.0;
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int64_t numLoops = 0;
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int wavformat = 2;
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int sampleRate = 0;
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int numoutchans = 2;
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double minrenderlen = 1.0;
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double maxrenderlen = 1000000.0;
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double voldb = 0.0;
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bool clipFloatOutput = true;
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std::function<void(RenderInfoRef)> completion_callback;
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};
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#ifdef USEPSCONTROL
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class Control
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{
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public:
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Control(AudioFormatManager* afm);
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~Control();
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void processAudio(AudioBuffer<float>& buf);
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void startplay(bool bypass, bool realtime, Range<double> playrange, int numoutchans, String& err);
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void stopplay();
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void set_seek_pos(REALTYPE x);
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REALTYPE get_seek_pos();
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double getLivePlayPosition();
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bool playing();
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void setStretchAmount(double rate);
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void setFFTSize(double size);
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int getFFTSize() { return m_fft_size_to_use; }
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void setOnsetDetection(double x);
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StretchAudioSource* getStretchAudioSource() { return m_stretch_source.get(); }
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void set_input_file(File filename, std::function<void(String)> cb);//return non empty String if the file cannot be opened
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String get_input_filename();
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String get_stretch_info(Range<double> playrange);
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double getPreBufferingPercent();
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double get_stretch()
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{
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return process.stretch;
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};
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double get_onset_detection_sensitivity()
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{
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return process.onset_detection_sensitivity;
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};
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void set_stretch_controls(double stretch_s,int mode,double fftsize_s,double onset_detection_sensitivity);//*_s sunt de la 0.0 la 1.0
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double get_stretch_control(double stretch,int mode);
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void update_player_stretch();
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void set_window_type(FFTWindow window);
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/// void pre_analyse_whole_audio(InputS *ai);
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RenderInfoRef Render2(RenderParameters renpars);
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ProcessParameters ppar;
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BinauralBeatsParameters bbpar;
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void update_process_parameters();//pt. player
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struct{
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double fftsize_s,stretch_s;
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int mode_s;
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}gui_sliders;
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FFTWindow window_type;
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void setPreBufferAmount(int x);
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int getPreBufferAmount() { return m_prebuffer_amount; }
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double getPreBufferAmountSeconds();
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bool isResampling()
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{
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return m_stretch_source->isResampling();
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}
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void setAudioVisualizer(AudioVisualiserComponent* comp);
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void setOutputAudioFileToRecord(File f);
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void setPrebufferThreadPriority(int v);
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int getPrebufferThreadPriority() { return m_prebufthreadprior; }
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private:
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REALTYPE volume;
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int m_prebufthreadprior = 4;
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int get_optimized_updown(int n,bool up);
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int optimizebufsize(int bufsize);
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std::string getfftsizestr(int fftsize);
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struct control_process_t{
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int bufsize;
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double stretch;
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double onset_detection_sensitivity;
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}process;
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struct control_infileinfo_t {
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int samplerate=0;
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int64_t nsamples=0;
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String filename;
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}wavinfo;//input
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REALTYPE seek_pos;
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AudioFormatManager* m_afm = nullptr;
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TimeSliceThread m_bufferingthread;
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std::unique_ptr<StretchAudioSource> m_stretch_source;
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std::unique_ptr<MyBufferingAudioSource> m_buffering_source;
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int m_prebuffer_amount = 1;
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bool m_recreate_buffering_source = true;
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File m_audio_out_file;
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int m_fft_size_to_use = 1024;
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double m_last_outpos_pos = 0.0;
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double m_last_in_pos = 0.0;
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std::vector<int> m_bufamounts{ 4096,8192,16384,32768,65536,262144 };
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};
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#endif
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