bf57830c7f
git-svn-id: http://yate.null.ro/svn/yate/trunk@5107 acf43c95-373e-0410-b603-e72c3f656dc1
656 lines
17 KiB
C++
656 lines
17 KiB
C++
/**
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* tonedetect.cpp
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* This file is part of the YATE Project http://YATE.null.ro
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*
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* Detectors for various tones
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*
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* Yet Another Telephony Engine - a fully featured software PBX and IVR
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* Copyright (C) 2004-2006 Null Team
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*
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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 the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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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 for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include <yatephone.h>
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#include <math.h>
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using namespace TelEngine;
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namespace { // anonymous
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// remember the values below are squares, we compute in power, not amplitude
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// how much we keep from old value when averaging, must be below 1
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#define MOVING_AVG_KEEP 0.97
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// minimum square of signal energy to even consider detecting
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#define THRESHOLD2_ABS 1e+06
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// relative square of spectral power from total signal power
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#define THRESHOLD2_REL_FAX 0.95
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// same for continuity test tones
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#define THRESHOLD2_REL_COT 0.90
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// sum of tones (low+high) from total
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#define THRESHOLD2_REL_ALL 0.60
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// each tone from threshold from total
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#define THRESHOLD2_REL_DTMF 0.33
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// hysteresis after tone detection
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#define THRESHOLD2_REL_HIST 0.75
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// minimum DTMF detect time
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#define DETECT_DTMF_MSEC 32
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// 2-pole filter parameters
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typedef struct
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{
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double gain;
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double y0;
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double y1;
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} Params2Pole;
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// Half 2-pole filter - the other part is common to all filters
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class Tone2PoleFilter
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{
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public:
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inline Tone2PoleFilter()
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: m_mult(0.0), m_y0(0.0), m_y1(0.0)
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{ }
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inline Tone2PoleFilter(double gain, double y0, double y1)
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: m_mult(1.0/gain), m_y0(y0), m_y1(y1)
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{ init(); }
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inline Tone2PoleFilter(const Params2Pole& params)
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: m_mult(1.0/params.gain), m_y0(params.y0), m_y1(params.y1)
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{ init(); }
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inline void assign(const Params2Pole& params)
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{ m_mult = 1.0/params.gain; m_y0 = params.y0; m_y1 = params.y1; init(); }
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inline void init()
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{ m_val = m_y[1] = m_y[2] = 0.0; }
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inline double value() const
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{ return m_val; }
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void update(double xd);
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private:
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double m_mult;
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double m_y0;
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double m_y1;
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double m_val;
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double m_y[3];
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};
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class ToneConsumer : public DataConsumer
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{
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YCLASS(ToneConsumer,DataConsumer)
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public:
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enum Mode {
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Mono = 0,
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Left,
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Right,
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Mixed
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};
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ToneConsumer(const String& id, const String& name);
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virtual ~ToneConsumer();
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virtual unsigned long Consume(const DataBlock& data, unsigned long tStamp, unsigned long flags);
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virtual const String& toString() const
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{ return m_name; }
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inline const String& id() const
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{ return m_id; }
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void setFaxDivert(const Message& msg);
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void init();
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private:
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void checkDtmf();
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void checkFax();
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void checkCont();
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String m_id;
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String m_name;
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String m_faxDivert;
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String m_faxCaller;
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String m_faxCalled;
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String m_target;
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String m_dnis;
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Mode m_mode;
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bool m_detFax;
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bool m_detCont;
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bool m_detDtmf;
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bool m_detDnis;
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char m_dtmfTone;
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int m_dtmfCount;
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double m_xv[3];
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double m_pwr;
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Tone2PoleFilter m_fax;
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Tone2PoleFilter m_cont;
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Tone2PoleFilter m_dtmfL[4];
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Tone2PoleFilter m_dtmfH[4];
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};
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class ToneDetectorModule : public Module
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{
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public:
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ToneDetectorModule();
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virtual ~ToneDetectorModule();
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virtual void initialize();
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virtual void statusParams(String& str);
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private:
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bool m_first;
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};
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static Mutex s_mutex(false,"ToneDetect");
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static int s_count = 0;
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static ToneDetectorModule plugin;
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class AttachHandler : public MessageHandler
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{
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public:
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AttachHandler()
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: MessageHandler("chan.attach",100,plugin.name())
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{ }
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virtual bool received(Message& msg);
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};
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class RecordHandler : public MessageHandler
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{
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public:
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RecordHandler()
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: MessageHandler("chan.record",100,plugin.name())
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{ }
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virtual bool received(Message& msg);
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};
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// generated CNG detector (1100Hz) - either of the 2 below:
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// mkfilter -Bp -Re 50 -a 0.137500
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// -> 2-pole resonator bandpass, 1100Hz, Q-factor=50
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// mkfilter -Bu -Bp -o 1 -a 1.3612500000e-01 1.3887500000e-01
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// -> 2-pole butterworth bandpass, 1100Hz +-11Hz @ -3dB
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static Params2Pole s_paramsCNG =
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{ 1.167453752e+02, -0.9828688170, 1.2878183436 }; // 1100Hz
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// generated CED detector (2100Hz) filter parameters
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// mkfilter -Bu -Bp -o 1 -a 2.6062500000e-01 2.6437500000e-01
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// -> 2-pole butterworth bandpass, 2100Hz +-15Hz @ -3dB
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static Params2Pole s_paramsCED =
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{ 8.587870006e+01, -0.9767113407, -0.1551017476 }; // 2100Hz
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// generated continuity test verified detector (2010Hz) filter parameters
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// mkfilter -Bu -Bp -o 1 -a 2.5025000000e-01 2.5225000000e-01
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// -> 2-pole butterworth bandpass, 2010Hz +-8Hz @ -3dB
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static Params2Pole s_paramsCOTv =
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{ 1.601528486e+02, -0.9875119299, -0.0156100298 }; // 2010Hz
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// generated continuity test send detector (1780Hz) filter parameters
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// mkfilter -Bu -Bp -o 1 -a 2.1875000000e-01 2.2625000000e-01
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// -> 2-pole butterworth bandpass, 1780Hz +-30Hz @ -3dB
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static Params2Pole s_paramsCOTs =
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{ 4.343337207e+01, -0.9539525559, 0.3360345780 }; // 1780Hz
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// generated DTMF component filter parameters
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// 2-pole butterworth bandpass, +-1% @ -3dB
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static Params2Pole s_paramsDtmfL[] = {
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{ 1.836705768e+02, -0.9891110494, 1.6984655220 }, // 697Hz
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{ 1.663521771e+02, -0.9879774290, 1.6354206881 }, // 770Hz
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{ 1.504376844e+02, -0.9867055777, 1.5582944783 }, // 852Hz
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{ 1.363034877e+02, -0.9853269818, 1.4673997821 }, // 941Hz
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};
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static Params2Pole s_paramsDtmfH[] = {
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{ 1.063096655e+02, -0.9811871438, 1.1532059506 }, // 1209Hz
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{ 9.629842594e+01, -0.9792313229, 0.9860778489 }, // 1336Hz
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{ 8.720029263e+01, -0.9770643703, 0.7895131023 }, // 1477Hz
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{ 7.896493565e+01, -0.9746723483, 0.5613790789 }, // 1633Hz
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};
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// DTMF table using low, high indexes
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static char s_tableDtmf[][5] = {
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"123A", "456B", "789C", "*0#D"
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};
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// Update a moving average with square of value (so we end with ~ power)
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static void updatePwr(double& avg, double val)
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{
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avg = MOVING_AVG_KEEP*avg + (1-MOVING_AVG_KEEP)*val*val;
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}
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void Tone2PoleFilter::update(double xd)
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{
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m_y[0] = m_y[1]; m_y[1] = m_y[2];
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m_y[2] = (xd * m_mult) +
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(m_y0 * m_y[0]) +
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(m_y1 * m_y[1]);
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updatePwr(m_val,m_y[2]);
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}
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ToneConsumer::ToneConsumer(const String& id, const String& name)
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: m_id(id), m_name(name), m_mode(Mono),
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m_detFax(true), m_detCont(false), m_detDtmf(true), m_detDnis(false),
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m_fax(s_paramsCNG), m_cont(s_paramsCOTv)
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{
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Debug(&plugin,DebugAll,"ToneConsumer::ToneConsumer(%s,'%s') [%p]",
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id.c_str(),name.c_str(),this);
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for (int i = 0; i < 4; i++) {
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m_dtmfL[i].assign(s_paramsDtmfL[i]);
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m_dtmfH[i].assign(s_paramsDtmfH[i]);
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}
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init();
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String tmp = name;
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tmp.startSkip("tone/",false);
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if (tmp.startSkip("mixed/",false))
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m_mode = Mixed;
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else if (tmp.startSkip("left/",false))
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m_mode = Left;
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else if (tmp.startSkip("right/",false))
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m_mode = Right;
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else tmp.startSkip("mono/",false);
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if (m_mode != Mono)
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m_format = "2*slin";
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if (tmp && (tmp != "*")) {
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// individual detection requested
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m_detFax = m_detCont = m_detDtmf = m_detDnis = false;
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ObjList* k = tmp.split(',',false);
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for (ObjList* l = k; l; l = l->next()) {
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String* s = static_cast<String*>(l->get());
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if (!s)
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continue;
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m_detFax = m_detFax || (*s == "fax");
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m_detCont = m_detCont || (*s == "cotv");
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m_detDtmf = m_detDtmf || (*s == "dtmf");
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if (*s == "rfax") {
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// detection of receiving Fax requested
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m_fax.assign(s_paramsCED);
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m_detFax = true;
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}
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else if (*s == "cots") {
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// detection of COT Send tone requested
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m_cont.assign(s_paramsCOTs);
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m_detCont = true;
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}
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else if (*s == "callsetup") {
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// call setup info in the form *ANI*DNIS*
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m_detDnis = true;
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}
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}
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TelEngine::destruct(k);
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}
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s_mutex.lock();
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s_count++;
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s_mutex.unlock();
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}
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ToneConsumer::~ToneConsumer()
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{
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Debug(&plugin,DebugAll,"ToneConsumer::~ToneConsumer [%p]",this);
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s_mutex.lock();
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s_count--;
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s_mutex.unlock();
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}
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// Re-init filter(s)
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void ToneConsumer::init()
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{
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m_xv[1] = m_xv[2] = 0.0;
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m_pwr = 0.0;
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m_fax.init();
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m_cont.init();
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for (int i = 0; i < 4; i++) {
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m_dtmfL[i].init();
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m_dtmfH[i].init();
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}
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m_dtmfTone = '\0';
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m_dtmfCount = 0;
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}
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// Check if we detected a DTMF
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void ToneConsumer::checkDtmf()
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{
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int i;
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char c = m_dtmfTone;
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m_dtmfTone = '\0';
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int l = 0;
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double maxL = m_dtmfL[0].value();
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for (i = 1; i < 4; i++) {
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if (maxL < m_dtmfL[i].value()) {
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maxL = m_dtmfL[i].value();
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l = i;
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}
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}
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int h = 0;
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double maxH = m_dtmfH[0].value();
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for (i = 1; i < 4; i++) {
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if (maxH < m_dtmfH[i].value()) {
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maxH = m_dtmfH[i].value();
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h = i;
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}
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}
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double limitAll = m_pwr*THRESHOLD2_REL_ALL;
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double limitOne = limitAll*THRESHOLD2_REL_DTMF;
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if (c) {
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limitAll *= THRESHOLD2_REL_HIST;
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limitOne *= THRESHOLD2_REL_HIST;
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}
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if ((maxL < limitOne) ||
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(maxH < limitOne) ||
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((maxL+maxH) < limitAll)) {
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#ifdef DEBUG
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if (c)
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Debug(&plugin,DebugInfo,"Giving up DTMF '%c' lo=%0.1f, hi=%0.1f, total=%0.1f",
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c,maxL,maxH,m_pwr);
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#endif
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return;
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}
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char buf[2];
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buf[0] = s_tableDtmf[l][h];
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buf[1] = '\0';
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if (buf[0] != c) {
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DDebug(&plugin,DebugInfo,"DTMF '%s' new candidate on %s, lo=%0.1f, hi=%0.1f, total=%0.1f",
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buf,m_id.c_str(),maxL,maxH,m_pwr);
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m_dtmfTone = buf[0];
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m_dtmfCount = 1;
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return;
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}
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m_dtmfTone = c;
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XDebug(&plugin,DebugAll,"DTMF '%s' candidate %d on %s, lo=%0.1f, hi=%0.1f, total=%0.1f",
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buf,m_dtmfCount,m_id.c_str(),maxL,maxH,m_pwr);
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if (m_dtmfCount++ == DETECT_DTMF_MSEC) {
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DDebug(&plugin,DebugNote,"%sDTMF '%s' detected on %s, lo=%0.1f, hi=%0.1f, total=%0.1f",
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(m_detDnis ? "DNIS/" : ""),
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buf,m_id.c_str(),maxL,maxH,m_pwr);
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if (m_detDnis) {
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static Regexp r("^\\*\\([0-9#]*\\)\\*\\([0-9#]*\\)\\*$");
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m_dnis += buf;
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if (m_dnis.matches(r)) {
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m_detDnis = false;
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Message* m = new Message("chan.notify");
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m->addParam("id",m_id);
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if (m_target)
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m->addParam("targetid",m_target);
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m->addParam("operation","setup");
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m->addParam("caller",m_dnis.matchString(1));
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m->addParam("called",m_dnis.matchString(2));
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Engine::enqueue(m);
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}
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return;
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}
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Message *m = new Message("chan.masquerade");
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m->addParam("id",m_id);
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m->addParam("message","chan.dtmf");
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m->addParam("text",buf);
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m->addParam("detected","inband");
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Engine::enqueue(m);
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}
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}
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// Check if we detected a Fax CNG or CED tone
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void ToneConsumer::checkFax()
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{
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if (m_fax.value() < m_pwr*THRESHOLD2_REL_FAX)
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return;
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if (m_fax.value() > m_pwr) {
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DDebug(&plugin,DebugNote,"Overshoot on %s, signal=%0.2f, total=%0.2f",
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m_id.c_str(),m_fax.value(),m_pwr);
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init();
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return;
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}
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DDebug(&plugin,DebugInfo,"Fax detected on %s, signal=%0.1f, total=%0.1f",
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m_id.c_str(),m_fax.value(),m_pwr);
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// prepare for new detection
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init();
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m_detFax = false;
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Message* m = new Message("chan.masquerade");
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m->addParam("id",m_id);
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if (m_faxDivert) {
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Debug(&plugin,DebugCall,"Diverting call %s to: %s",
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m_id.c_str(),m_faxDivert.c_str());
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m->addParam("message","call.execute");
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m->addParam("callto",m_faxDivert);
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m->addParam("reason","fax");
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}
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else {
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m->addParam("message","call.fax");
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m->addParam("detected","inband");
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}
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m->addParam("caller",m_faxCaller,false);
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m->addParam("called",m_faxCalled,false);
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Engine::enqueue(m);
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}
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// Check if we detected a Continuity Test tone
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void ToneConsumer::checkCont()
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{
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if (m_cont.value() < m_pwr*THRESHOLD2_REL_COT)
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return;
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if (m_cont.value() > m_pwr) {
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DDebug(&plugin,DebugNote,"Overshoot on %s, signal=%0.2f, total=%0.2f",
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m_id.c_str(),m_cont.value(),m_pwr);
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init();
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return;
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}
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DDebug(&plugin,DebugInfo,"Continuity detected on %s, signal=%0.1f, total=%0.1f",
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m_id.c_str(),m_cont.value(),m_pwr);
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// prepare for new detection
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init();
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m_detCont = false;
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Message* m = new Message("chan.masquerade");
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m->addParam("id",m_id);
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m->addParam("message","chan.dtmf");
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m->addParam("text","O");
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m->addParam("detected","inband");
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Engine::enqueue(m);
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}
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// Feed samples to the filter(s)
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unsigned long ToneConsumer::Consume(const DataBlock& data, unsigned long tStamp, unsigned long flags)
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{
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unsigned int samp = data.length() / 2;
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if (m_mode != Mono)
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samp /= 2;
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if (!samp)
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return 0;
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const int16_t* s = (const int16_t*)data.data();
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if (!s)
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return 0;
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while (samp--) {
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m_xv[0] = m_xv[1]; m_xv[1] = m_xv[2];
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switch (m_mode) {
|
|
case Left:
|
|
// use 1st sample, skip 2nd
|
|
m_xv[2] = *s++;
|
|
s++;
|
|
break;
|
|
case Right:
|
|
// skip 1st sample, use 2nd
|
|
s++;
|
|
m_xv[2] = *s++;
|
|
break;
|
|
case Mixed:
|
|
// add together samples
|
|
m_xv[2] = s[0]+(int)s[1];
|
|
s+=2;
|
|
break;
|
|
default:
|
|
m_xv[2] = *s++;
|
|
}
|
|
double dx = m_xv[2] - m_xv[0];
|
|
updatePwr(m_pwr,m_xv[2]);
|
|
|
|
// update all active detectors
|
|
if (m_detFax)
|
|
m_fax.update(dx);
|
|
if (m_detCont)
|
|
m_cont.update(dx);
|
|
if (m_detDtmf || m_detDnis) {
|
|
for (int j = 0; j < 4; j++) {
|
|
m_dtmfL[j].update(dx);
|
|
m_dtmfH[j].update(dx);
|
|
}
|
|
}
|
|
// only do checks every millisecond
|
|
if (samp % 8)
|
|
continue;
|
|
// is it enough total power to accept a signal?
|
|
if (m_pwr >= THRESHOLD2_ABS) {
|
|
if (m_detDtmf || m_detDnis)
|
|
checkDtmf();
|
|
if (m_detFax)
|
|
checkFax();
|
|
if (m_detCont)
|
|
checkCont();
|
|
}
|
|
else {
|
|
m_dtmfTone = '\0';
|
|
m_dtmfCount = 0;
|
|
}
|
|
}
|
|
XDebug(&plugin,DebugAll,"Fax detector on %s: signal=%0.1f, total=%0.1f",
|
|
m_id.c_str(),m_fax.value(),m_pwr);
|
|
return invalidStamp();
|
|
}
|
|
|
|
// Copy parameters required for automatic fax call diversion
|
|
void ToneConsumer::setFaxDivert(const Message& msg)
|
|
{
|
|
m_target = msg.getParam("notify");
|
|
if (m_id.null())
|
|
m_id = m_target;
|
|
NamedString* divert = msg.getParam("fax_divert");
|
|
if (!divert)
|
|
return;
|
|
m_detFax = true;
|
|
// if divert is empty or false disable diverting
|
|
if (divert->null() || !divert->toBoolean(true))
|
|
m_faxDivert.clear();
|
|
else {
|
|
m_faxDivert = *divert;
|
|
m_faxCaller = msg.getValue("fax_caller",msg.getValue("caller",m_faxCaller));
|
|
m_faxCalled = msg.getValue("fax_called",msg.getValue("called",m_faxCalled));
|
|
}
|
|
}
|
|
|
|
|
|
// Attach a tone detector on "chan.attach" as consumer or sniffer
|
|
bool AttachHandler::received(Message& msg)
|
|
{
|
|
String cons(msg.getValue("consumer"));
|
|
if (!cons.startsWith("tone/"))
|
|
cons.clear();
|
|
String snif(msg.getValue("sniffer"));
|
|
if (!snif.startsWith("tone/"))
|
|
snif.clear();
|
|
if (cons.null() && snif.null())
|
|
return false;
|
|
CallEndpoint* ch = static_cast<CallEndpoint*>(msg.userObject("CallEndpoint"));
|
|
RefPointer<DataEndpoint> de = static_cast<DataEndpoint*>(msg.userObject("DataEndpoint"));
|
|
DataSource* ds = static_cast<DataSource*>(msg.userObject("DataSource"));
|
|
if (ch) {
|
|
if (cons) {
|
|
ToneConsumer* c = new ToneConsumer(ch->id(),cons);
|
|
c->setFaxDivert(msg);
|
|
ch->setConsumer(c);
|
|
c->deref();
|
|
}
|
|
if (snif) {
|
|
de = ch->setEndpoint();
|
|
// try to reinit sniffer if one already exists
|
|
ToneConsumer* c = static_cast<ToneConsumer*>(de->getSniffer(snif));
|
|
if (c) {
|
|
c->init();
|
|
c->setFaxDivert(msg);
|
|
}
|
|
else {
|
|
c = new ToneConsumer(ch->id(),snif);
|
|
c->setFaxDivert(msg);
|
|
de->addSniffer(c);
|
|
c->deref();
|
|
}
|
|
}
|
|
return msg.getBoolValue("single");
|
|
}
|
|
else if (ds && cons) {
|
|
ToneConsumer* c = new ToneConsumer(msg.getValue("id"),cons);
|
|
c->setFaxDivert(msg);
|
|
bool ok = DataTranslator::attachChain(ds,c);
|
|
if (ok)
|
|
msg.userData(c);
|
|
else
|
|
msg.setParam("reason","attach-failure");
|
|
c->deref();
|
|
return ok && msg.getBoolValue("single");
|
|
}
|
|
else if (de && cons) {
|
|
ToneConsumer* c = new ToneConsumer(msg.getValue("id"),cons);
|
|
c->setFaxDivert(msg);
|
|
de->setConsumer(c);
|
|
c->deref();
|
|
return msg.getBoolValue("single");
|
|
}
|
|
else
|
|
Debug(&plugin,DebugWarn,"ToneDetector attach request with no call endpoint!");
|
|
return false;
|
|
}
|
|
|
|
|
|
// Attach a tone detector on "chan.record" - needs just a CallEndpoint
|
|
bool RecordHandler::received(Message& msg)
|
|
{
|
|
String src(msg.getValue("call"));
|
|
String id(msg.getValue("id"));
|
|
if (!src.startsWith("tone/"))
|
|
return false;
|
|
CallEndpoint* ch = static_cast<CallEndpoint *>(msg.userObject("CallEndpoint"));
|
|
RefPointer<DataEndpoint> de = static_cast<DataEndpoint *>(msg.userObject("DataEndpoint"));
|
|
if (ch) {
|
|
id = ch->id();
|
|
if (!de)
|
|
de = ch->setEndpoint();
|
|
}
|
|
if (de) {
|
|
ToneConsumer* c = new ToneConsumer(id,src);
|
|
c->setFaxDivert(msg);
|
|
de->setCallRecord(c);
|
|
c->deref();
|
|
return true;
|
|
}
|
|
else
|
|
Debug(&plugin,DebugWarn,"ToneDetector record request with no call endpoint!");
|
|
return false;
|
|
}
|
|
|
|
|
|
ToneDetectorModule::ToneDetectorModule()
|
|
: Module("tonedetect","misc"), m_first(true)
|
|
{
|
|
Output("Loaded module ToneDetector");
|
|
}
|
|
|
|
ToneDetectorModule::~ToneDetectorModule()
|
|
{
|
|
Output("Unloading module ToneDetector");
|
|
}
|
|
|
|
void ToneDetectorModule::statusParams(String& str)
|
|
{
|
|
str.append("count=",",") << s_count;
|
|
}
|
|
|
|
void ToneDetectorModule::initialize()
|
|
{
|
|
Output("Initializing module ToneDetector");
|
|
setup();
|
|
if (m_first) {
|
|
m_first = false;
|
|
Engine::install(new AttachHandler);
|
|
Engine::install(new RecordHandler);
|
|
}
|
|
}
|
|
|
|
}; // anonymous namespace
|
|
|
|
/* vi: set ts=8 sw=4 sts=4 noet: */
|