X-Git-Url: https://main.carlh.net/gitweb/?p=dcpomatic.git;a=blobdiff_plain;f=src%2Flib%2Faudio_analysis.cc;h=10e02232292c30f9dbf17975f49a8c0e88d388d4;hp=fffafc4d4c5fe38ab4591883e160e7d0e35812cc;hb=aeb835a18c8df347e0ed68fb24631b320abeb611;hpb=8bfb6ae0780b0bf3318c345df78518ad3fabc9fc diff --git a/src/lib/audio_analysis.cc b/src/lib/audio_analysis.cc index fffafc4d4..10e022322 100644 --- a/src/lib/audio_analysis.cc +++ b/src/lib/audio_analysis.cc @@ -1,5 +1,5 @@ /* - Copyright (C) 2012 Carl Hetherington + Copyright (C) 2012-2015 Carl Hetherington This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by @@ -17,102 +17,120 @@ */ +#include "audio_analysis.h" +#include "cross.h" +#include "util.h" +#include "raw_convert.h" +#include "playlist.h" +#include "audio_content.h" +#include +#include +#include #include #include -#include -#include -#include -#include "audio_analysis.h" +#include +#include +#include using std::ostream; using std::istream; using std::string; -using std::ofstream; -using std::ifstream; using std::vector; using std::cout; - -AudioPoint::AudioPoint () -{ - for (int i = 0; i < COUNT; ++i) { - _data[i] = 0; - } -} - -AudioPoint::AudioPoint (istream& s) -{ - for (int i = 0; i < COUNT; ++i) { - s >> _data[i]; - } -} - -void -AudioPoint::write (ostream& s) const -{ - for (int i = 0; i < COUNT; ++i) { - s << _data[i] << "\n"; - } -} - +using std::max; +using std::list; +using boost::shared_ptr; +using boost::dynamic_pointer_cast; AudioAnalysis::AudioAnalysis (int channels) { _data.resize (channels); } -AudioAnalysis::AudioAnalysis (string filename) +AudioAnalysis::AudioAnalysis (boost::filesystem::path filename) { - ifstream f (filename.c_str ()); + cxml::Document f ("AudioAnalysis"); + f.read_file (filename); - int channels; - f >> channels; - _data.resize (channels); + BOOST_FOREACH (cxml::NodePtr i, f.node_children ("Channel")) { + vector channel; - for (int i = 0; i < channels; ++i) { - int points; - f >> points; - for (int j = 0; j < points; ++j) { - _data[i].push_back (AudioPoint (f)); + BOOST_FOREACH (cxml::NodePtr j, i->node_children ("Point")) { + channel.push_back (AudioPoint (j)); } + + _data.push_back (channel); } + + _peak = f.number_child ("Peak"); + _peak_time = DCPTime (f.number_child ("PeakTime")); + _analysis_gain = f.optional_number_child ("AnalysisGain"); } void AudioAnalysis::add_point (int c, AudioPoint const & p) { - assert (c < int (_data.size ())); + DCPOMATIC_ASSERT (c < channels ()); _data[c].push_back (p); } AudioPoint AudioAnalysis::get_point (int c, int p) const { - assert (c < int (_data.size ())); - assert (p < int (_data[c].size ())); + DCPOMATIC_ASSERT (p < points (c)); return _data[c][p]; } +int +AudioAnalysis::channels () const +{ + return _data.size (); +} + int AudioAnalysis::points (int c) const { - assert (c < int (_data.size ())); + DCPOMATIC_ASSERT (c < channels ()); return _data[c].size (); } void -AudioAnalysis::write (string filename) +AudioAnalysis::write (boost::filesystem::path filename) { - string tmp = filename + ".tmp"; - - ofstream f (tmp.c_str ()); - f << _data.size() << "\n"; - for (vector >::iterator i = _data.begin(); i != _data.end(); ++i) { - f << i->size () << "\n"; - for (vector::iterator j = i->begin(); j != i->end(); ++j) { - j->write (f); + shared_ptr doc (new xmlpp::Document); + xmlpp::Element* root = doc->create_root_node ("AudioAnalysis"); + + BOOST_FOREACH (vector& i, _data) { + xmlpp::Element* channel = root->add_child ("Channel"); + BOOST_FOREACH (AudioPoint& j, i) { + j.as_xml (channel->add_child ("Point")); } } - f.close (); - boost::filesystem::rename (tmp, filename); + if (_peak) { + root->add_child("Peak")->add_child_text (raw_convert (_peak.get ())); + root->add_child("PeakTime")->add_child_text (raw_convert (_peak_time.get().get ())); + } + + if (_analysis_gain) { + root->add_child("AnalysisGain")->add_child_text (raw_convert (_analysis_gain.get ())); + } + + doc->write_to_file_formatted (filename.string ()); +} + +float +AudioAnalysis::gain_correction (shared_ptr playlist) +{ + if (playlist->content().size() == 1 && analysis_gain ()) { + /* In this case we know that the analysis was of a single piece of content and + we know that content's gain when the analysis was run. Hence we can work out + what correction is now needed to make it look `right'. + */ + shared_ptr ac = dynamic_pointer_cast (playlist->content().front ()); + DCPOMATIC_ASSERT (ac); + return ac->audio_gain() - analysis_gain().get (); + } + + return 0.0f; }