730 lines
27 KiB
C++
730 lines
27 KiB
C++
/* This file is part of Strawberry.
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Copyright 2013, David Sansome <me@davidsansome.com>
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Strawberry 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 3 of the License, or
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(at your option) any later version.
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Strawberry 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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You should have received a copy of the GNU General Public License
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along with Strawberry. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "config.h"
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#include "tagreader.h"
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#include <memory>
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#include <list>
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#include <map>
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#include <utility>
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#include <sys/stat.h>
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#include <taglib/taglib.h>
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#include <taglib/taglib_config.h>
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#include <taglib/fileref.h>
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#include <taglib/tbytevector.h>
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#include <taglib/tfile.h>
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#include <taglib/tlist.h>
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#include <taglib/tstring.h>
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#include <taglib/tstringlist.h>
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#include <taglib/audioproperties.h>
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#include <taglib/trueaudiofile.h>
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#include <taglib/attachedpictureframe.h>
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#include <taglib/textidentificationframe.h>
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#include <taglib/xiphcomment.h>
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#include <taglib/commentsframe.h>
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#include <taglib/tag.h>
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#include <taglib/id3v2tag.h>
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#include "taglib/id3v2frame.h"
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#include <taglib/flacfile.h>
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#include <taglib/oggflacfile.h>
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#include <taglib/flacproperties.h>
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#include <taglib/flacpicture.h>
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#include <taglib/vorbisfile.h>
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#include <taglib/speexfile.h>
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#include <taglib/wavfile.h>
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#include <taglib/wavpackfile.h>
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#include <taglib/aifffile.h>
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#include <taglib/asffile.h>
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#include "taglib/asftag.h"
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#include "taglib/asfattribute.h"
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#include "taglib/asfproperties.h"
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#include <taglib/mp4file.h>
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#include <taglib/mp4tag.h>
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#include "taglib/mp4item.h"
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#include <taglib/mp4coverart.h>
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#include <taglib/mp4properties.h>
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#include <taglib/mpcfile.h>
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#include <taglib/mpegfile.h>
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#ifdef TAGLIB_HAS_OPUS
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#include <taglib/opusfile.h>
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#endif
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#include <QtGlobal>
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#include <QFile>
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#include <QFileInfo>
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#include <QList>
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#include <QByteArray>
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#include <QDateTime>
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#include <QVariant>
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#include <QString>
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#include <QUrl>
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#include <QTextCodec>
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#include <QVector>
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#include <QNetworkAccessManager>
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#include <QtDebug>
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#include "core/logging.h"
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#include "core/messagehandler.h"
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#include "fmpsparser.h"
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#include "core/timeconstants.h"
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// Taglib added support for FLAC pictures in 1.7.0
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#if (TAGLIB_MAJOR_VERSION > 1) || (TAGLIB_MAJOR_VERSION == 1 && TAGLIB_MINOR_VERSION >= 7)
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# define TAGLIB_HAS_FLAC_PICTURELIST
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#endif
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#define NumberToASFAttribute(x) TagLib::ASF::Attribute(QStringToTaglibString(QString::number(x)))
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class FileRefFactory {
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public:
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virtual ~FileRefFactory() {}
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virtual TagLib::FileRef *GetFileRef(const QString &filename) = 0;
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};
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class TagLibFileRefFactory : public FileRefFactory {
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public:
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virtual TagLib::FileRef *GetFileRef(const QString &filename) {
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#ifdef Q_OS_WIN32
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return new TagLib::FileRef(filename.toStdWString().c_str());
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#else
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return new TagLib::FileRef(QFile::encodeName(filename).constData());
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#endif
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}
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};
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namespace {
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TagLib::String StdStringToTaglibString(const std::string &s) {
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return TagLib::String(s.c_str(), TagLib::String::UTF8);
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}
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TagLib::String QStringToTaglibString(const QString &s) {
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return TagLib::String(s.toUtf8().constData(), TagLib::String::UTF8);
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}
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}
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namespace {
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// Tags containing the year the album was originally released (in contrast to
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// other tags that contain the release year of the current edition)
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const char *kMP4_OriginalYear_ID = "----:com.apple.iTunes:ORIGINAL YEAR";
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const char *kASF_OriginalDate_ID = "WM/OriginalReleaseTime";
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const char *kASF_OriginalYear_ID = "WM/OriginalReleaseYear";
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}
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TagReader::TagReader()
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: factory_(new TagLibFileRefFactory),
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network_(new QNetworkAccessManager),
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kEmbeddedCover("(embedded)") {}
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void TagReader::ReadFile(const QString &filename, pb::tagreader::SongMetadata *song) const {
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const QByteArray url(QUrl::fromLocalFile(filename).toEncoded());
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const QFileInfo info(filename);
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qLog(Debug) << "Reading tags from" << filename;
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song->set_basefilename(DataCommaSizeFromQString(info.fileName()));
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song->set_url(url.constData(), url.size());
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song->set_filesize(info.size());
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song->set_mtime(info.lastModified().toTime_t());
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song->set_ctime(info.created().toTime_t());
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std::unique_ptr<TagLib::FileRef> fileref(factory_->GetFileRef(filename));
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if (fileref->isNull()) {
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qLog(Info) << "TagLib hasn't been able to read " << filename << " file";
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return;
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}
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if (fileref->audioProperties()) {
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song->set_bitrate(fileref->audioProperties()->bitrate());
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song->set_samplerate(fileref->audioProperties()->sampleRate());
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song->set_length_nanosec(fileref->audioProperties()->length() * kNsecPerSec);
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}
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// Get the filetype if we can
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song->set_filetype(GuessFileType(fileref.get()));
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TagLib::Tag *tag = fileref->tag();
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if (tag) {
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Decode(tag->title(), nullptr, song->mutable_title());
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Decode(tag->artist(), nullptr, song->mutable_artist()); // TPE1
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Decode(tag->album(), nullptr, song->mutable_album());
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Decode(tag->genre(), nullptr, song->mutable_genre());
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song->set_year(tag->year());
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song->set_track(tag->track());
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song->set_valid(true);
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}
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QString disc;
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QString compilation;
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// Handle all the files which have VorbisComments (Ogg, OPUS, ...) in the same way;
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// apart, so we keep specific behavior for some formats by adding another
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// "else if" block below.
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if (TagLib::Ogg::XiphComment *tag = dynamic_cast<TagLib::Ogg::XiphComment*>(fileref->file()->tag())) {
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ParseOggTag(tag->fieldListMap(), nullptr, &disc, &compilation, song);
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#if TAGLIB_MAJOR_VERSION >= 1 && TAGLIB_MINOR_VERSION >= 11
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if (!tag->pictureList().isEmpty()) song->set_art_automatic(kEmbeddedCover);
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#endif
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}
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if (TagLib::MPEG::File *file = dynamic_cast<TagLib::MPEG::File*>(fileref->file())) {
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if (file->ID3v2Tag()) {
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const TagLib::ID3v2::FrameListMap &map = file->ID3v2Tag()->frameListMap();
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if (!map["TPOS"].isEmpty()) disc = TStringToQString(map["TPOS"].front()->toString()).trimmed();
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//if (!map["TBPM"].isEmpty()) song->set_bpm(TStringToQString(map["TBPM"].front()->toString()).trimmed().toFloat());
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if (!map["TCOM"].isEmpty()) Decode(map["TCOM"].front()->toString(), nullptr, song->mutable_composer());
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// content group
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if (!map["TIT1"].isEmpty()) Decode(map["TIT1"].front()->toString(), nullptr, song->mutable_grouping());
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// ID3v2: lead performer/soloist
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if (!map["TPE1"].isEmpty()) Decode(map["TPE1"].front()->toString(), nullptr, song->mutable_performer());
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// original artist/performer
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if (!map["TOPE"].isEmpty()) Decode(map["TOPE"].front()->toString(), nullptr, song->mutable_performer());
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// Skip TPE1 (which is the artist) here because we already fetched it
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// non-standard: Apple, Microsoft
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if (!map["TPE2"].isEmpty()) Decode(map["TPE2"].front()->toString(), nullptr, song->mutable_albumartist());
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if (!map["TCMP"].isEmpty()) compilation = TStringToQString(map["TCMP"].front()->toString()).trimmed();
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if (!map["TDOR"].isEmpty()) { song->set_originalyear(map["TDOR"].front()->toString().substr(0, 4).toInt()); }
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else if (!map["TORY"].isEmpty()) {
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song->set_originalyear(map["TORY"].front()->toString().substr(0, 4).toInt());
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}
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if (!map["APIC"].isEmpty()) song->set_art_automatic(kEmbeddedCover);
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// Find a suitable comment tag. For now we ignore iTunNORM comments.
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for (int i = 0; i < map["COMM"].size(); ++i) {
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const TagLib::ID3v2::CommentsFrame *frame = dynamic_cast<const TagLib::ID3v2::CommentsFrame*>(map["COMM"][i]);
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if (frame && TStringToQString(frame->description()) != "iTunNORM") {
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Decode(frame->text(), nullptr, song->mutable_comment());
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break;
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}
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}
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// Parse FMPS frames
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for (int i = 0; i < map["TXXX"].size(); ++i) {
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const TagLib::ID3v2::UserTextIdentificationFrame *frame = dynamic_cast<const TagLib::ID3v2::UserTextIdentificationFrame*>(map["TXXX"][i]);
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if (frame && frame->description().startsWith("FMPS_")) {
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ParseFMPSFrame(TStringToQString(frame->description()), TStringToQString(frame->fieldList()[1]), song);
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}
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}
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}
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}
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else if (TagLib::FLAC::File *file = dynamic_cast<TagLib::FLAC::File *>(fileref->file())) {
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song->set_bitdepth(file->audioProperties()->bitsPerSample());
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if ( file->xiphComment() ) {
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ParseOggTag(file->xiphComment()->fieldListMap(), nullptr, &disc, &compilation, song);
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#ifdef TAGLIB_HAS_FLAC_PICTURELIST
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if (!file->pictureList().isEmpty()) {
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song->set_art_automatic(kEmbeddedCover);
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}
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#endif
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}
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Decode(tag->comment(), nullptr, song->mutable_comment());
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}
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else if (TagLib::MP4::File *file = dynamic_cast<TagLib::MP4::File*>(fileref->file())) {
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song->set_bitdepth(file->audioProperties()->bitsPerSample());
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if (file->tag()) {
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TagLib::MP4::Tag *mp4_tag = file->tag();
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const TagLib::MP4::ItemListMap& items = mp4_tag->itemListMap();
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// Find album artists
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TagLib::MP4::ItemListMap::ConstIterator it = items.find("aART");
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if (it != items.end()) {
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TagLib::StringList album_artists = it->second.toStringList();
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if (!album_artists.isEmpty()) {
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Decode(album_artists.front(), nullptr, song->mutable_albumartist());
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}
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}
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// Find album cover art
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if (items.find("covr") != items.end()) {
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song->set_art_automatic(kEmbeddedCover);
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}
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if (items.contains("disk")) {
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disc = TStringToQString(TagLib::String::number(items["disk"].toIntPair().first));
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}
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if(items.contains("\251wrt")) {
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Decode(items["\251wrt"].toStringList().toString(", "), nullptr, song->mutable_composer());
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}
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if(items.contains("\251grp")) {
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Decode(items["\251grp"].toStringList().toString(" "), nullptr, song->mutable_grouping());
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}
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if (items.contains(kMP4_OriginalYear_ID)) {
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song->set_originalyear(
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TStringToQString(
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items[kMP4_OriginalYear_ID].toStringList().toString('\n'))
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.left(4)
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.toInt());
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}
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Decode(mp4_tag->comment(), nullptr, song->mutable_comment());
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}
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}
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#ifdef TAGLIB_WITH_ASF
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else if (TagLib::ASF::File *file = dynamic_cast<TagLib::ASF::File*>(fileref->file())) {
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song->set_bitdepth(file->audioProperties()->bitsPerSample());
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const TagLib::ASF::AttributeListMap &attributes_map = file->tag()->attributeListMap();
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if (attributes_map.contains(kASF_OriginalDate_ID)) {
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const TagLib::ASF::AttributeList &attributes =
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attributes_map[kASF_OriginalDate_ID];
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if (!attributes.isEmpty()) {
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song->set_originalyear(
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TStringToQString(attributes.front().toString()).left(4).toInt());
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}
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}
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else if (attributes_map.contains(kASF_OriginalYear_ID)) {
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const TagLib::ASF::AttributeList &attributes =
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attributes_map[kASF_OriginalYear_ID];
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if (!attributes.isEmpty()) {
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song->set_originalyear(
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TStringToQString(attributes.front().toString()).left(4).toInt());
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}
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}
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}
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#endif
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else if (tag) {
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Decode(tag->comment(), nullptr, song->mutable_comment());
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}
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if (!disc.isEmpty()) {
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const int i = disc.indexOf('/');
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if (i != -1) {
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// disc.right( i ).toInt() is total number of discs, we don't use this at the moment
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song->set_disc(disc.left(i).toInt());
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}
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else {
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song->set_disc(disc.toInt());
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}
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}
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if (compilation.isEmpty()) {
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// well, it wasn't set, but if the artist is VA assume it's a compilation
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if (QStringFromStdString(song->artist()).toLower() == "various artists") {
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song->set_compilation(true);
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}
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}
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else {
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song->set_compilation(compilation.toInt() == 1);
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}
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// Set integer fields to -1 if they're not valid
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#define SetDefault(field) if (song->field() <= 0) { song->set_##field(-1); }
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SetDefault(track);
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SetDefault(disc);
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SetDefault(year);
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SetDefault(bitrate);
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SetDefault(samplerate);
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SetDefault(bitdepth);
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SetDefault(lastplayed);
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#undef SetDefault
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}
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void TagReader::Decode(const TagLib::String &tag, const QTextCodec *codec, std::string *output) {
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QString tmp;
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if (codec && tag.isLatin1()) { // Never override UTF-8.
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const std::string fixed = QString::fromUtf8(tag.toCString(true)).toStdString();
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tmp = codec->toUnicode(fixed.c_str()).trimmed();
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}
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else {
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tmp = TStringToQString(tag).trimmed();
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}
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output->assign(DataCommaSizeFromQString(tmp));
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}
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void TagReader::Decode(const QString &tag, const QTextCodec *codec, std::string *output) {
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if (!codec) {
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output->assign(DataCommaSizeFromQString(tag));
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}
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else {
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const QString decoded(codec->toUnicode(tag.toUtf8()));
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output->assign(DataCommaSizeFromQString(decoded));
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}
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}
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void TagReader::ParseFMPSFrame(const QString &name, const QString &value, pb::tagreader::SongMetadata *song) const {
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qLog(Debug) << "Parsing FMPSFrame" << name << ", " << value;
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FMPSParser parser;
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if (!parser.Parse(value) || parser.is_empty()) return;
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QVariant var;
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if (name == "FMPS_PlayCount") {
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var = parser.result()[0][0];
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if (var.type() == QVariant::Double) {
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song->set_playcount(var.toDouble());
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}
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}
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else if (name == "FMPS_PlayCount_User") {
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// Take a user playcount only if there's no playcount already set
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if (song->playcount() == 0 && parser.result()[0].count() >= 2) {
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var = parser.result()[0][1];
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if (var.type() == QVariant::Double) {
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song->set_playcount(var.toDouble());
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}
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}
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}
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}
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void TagReader::ParseOggTag(const TagLib::Ogg::FieldListMap &map, const QTextCodec *codec, QString *disc, QString *compilation, pb::tagreader::SongMetadata *song) const {
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if (!map["COMPOSER"].isEmpty()) Decode(map["COMPOSER"].front(), codec, song->mutable_composer());
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if (!map["PERFORMER"].isEmpty()) Decode(map["PERFORMER"].front(), codec, song->mutable_performer());
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if (!map["CONTENT GROUP"].isEmpty()) Decode(map["CONTENT GROUP"].front(), codec, song->mutable_grouping());
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if (!map["ALBUMARTIST"].isEmpty()) {
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Decode(map["ALBUMARTIST"].front(), codec, song->mutable_albumartist());
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}
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else if (!map["ALBUM ARTIST"].isEmpty()) {
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Decode(map["ALBUM ARTIST"].front(), codec, song->mutable_albumartist());
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}
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if (!map["ORIGINALDATE"].isEmpty())
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song->set_originalyear(TStringToQString(map["ORIGINALDATE"].front()).left(4).toInt());
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else if (!map["ORIGINALYEAR"].isEmpty())
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song->set_originalyear(TStringToQString(map["ORIGINALYEAR"].front()).toInt());
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if (!map["DISCNUMBER"].isEmpty()) *disc = TStringToQString( map["DISCNUMBER"].front() ).trimmed();
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if (!map["COMPILATION"].isEmpty()) *compilation = TStringToQString( map["COMPILATION"].front() ).trimmed();
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if (!map["COVERART"].isEmpty()) song->set_art_automatic(kEmbeddedCover);
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if (!map["METADATA_BLOCK_PICTURE"].isEmpty()) song->set_art_automatic(kEmbeddedCover);
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if (!map["FMPS_PLAYCOUNT"].isEmpty() && song->playcount() <= 0) song->set_playcount(TStringToQString( map["FMPS_PLAYCOUNT"].front() ).trimmed().toFloat());
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}
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void TagReader::SetVorbisComments(TagLib::Ogg::XiphComment *vorbis_comments, const pb::tagreader::SongMetadata &song) const {
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vorbis_comments->addField("COMPOSER", StdStringToTaglibString(song.composer()), true);
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vorbis_comments->addField("PERFORMER", StdStringToTaglibString(song.performer()), true);
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vorbis_comments->addField("CONTENT GROUP", StdStringToTaglibString(song.grouping()), true);
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vorbis_comments->addField("DISCNUMBER", QStringToTaglibString(song.disc() <= 0 -1 ? QString() : QString::number(song.disc())), true);
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vorbis_comments->addField("COMPILATION", StdStringToTaglibString(song.compilation() ? "1" : "0"), true);
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// Try to be coherent, the two forms are used but the first one is preferred
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|
vorbis_comments->addField("ALBUMARTIST", StdStringToTaglibString(song.albumartist()), true);
|
|
vorbis_comments->removeField("ALBUM ARTIST");
|
|
|
|
|
|
}
|
|
|
|
pb::tagreader::SongMetadata_Type TagReader::GuessFileType(TagLib::FileRef *fileref) const {
|
|
|
|
if (dynamic_cast<TagLib::RIFF::WAV::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_WAV;
|
|
if (dynamic_cast<TagLib::FLAC::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_FLAC;
|
|
if (dynamic_cast<TagLib::WavPack::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_WAVPACK;
|
|
if (dynamic_cast<TagLib::Ogg::FLAC::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_OGGFLAC;
|
|
if (dynamic_cast<TagLib::Ogg::Vorbis::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_OGGVORBIS;
|
|
#ifdef TAGLIB_HAS_OPUS
|
|
if (dynamic_cast<TagLib::Ogg::Opus::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_OGGOPUS;
|
|
#endif
|
|
if (dynamic_cast<TagLib::Ogg::Speex::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_OGGSPEEX;
|
|
if (dynamic_cast<TagLib::MPEG::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_MPEG;
|
|
#ifdef TAGLIB_WITH_MP4
|
|
if (dynamic_cast<TagLib::MP4::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_MP4;
|
|
#endif
|
|
#ifdef TAGLIB_WITH_ASF
|
|
if (dynamic_cast<TagLib::ASF::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_ASF;
|
|
#endif
|
|
if (dynamic_cast<TagLib::RIFF::AIFF::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_AIFF;
|
|
if (dynamic_cast<TagLib::MPC::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_MPC;
|
|
if (dynamic_cast<TagLib::TrueAudio::File*>(fileref->file())) return pb::tagreader::SongMetadata_Type_TRUEAUDIO;
|
|
|
|
return pb::tagreader::SongMetadata_Type_UNKNOWN;
|
|
|
|
}
|
|
|
|
bool TagReader::SaveFile(const QString &filename, const pb::tagreader::SongMetadata &song) const {
|
|
|
|
if (filename.isNull()) return false;
|
|
|
|
qLog(Debug) << "Saving tags to" << filename;
|
|
|
|
std::unique_ptr<TagLib::FileRef> fileref(factory_->GetFileRef(filename));
|
|
|
|
if (!fileref || fileref->isNull()) // The file probably doesn't exist
|
|
return false;
|
|
|
|
fileref->tag()->setTitle(StdStringToTaglibString(song.title()));
|
|
fileref->tag()->setArtist(StdStringToTaglibString(song.artist()));
|
|
fileref->tag()->setAlbum(StdStringToTaglibString(song.album()));
|
|
fileref->tag()->setGenre(StdStringToTaglibString(song.genre()));
|
|
fileref->tag()->setComment(StdStringToTaglibString(song.comment()));
|
|
fileref->tag()->setYear(song.year());
|
|
fileref->tag()->setTrack(song.track());
|
|
|
|
if (TagLib::MPEG::File *file = dynamic_cast<TagLib::MPEG::File*>(fileref->file())) {
|
|
TagLib::ID3v2::Tag *tag = file->ID3v2Tag(true);
|
|
SetTextFrame("TPOS", song.disc() <= 0 -1 ? QString() : QString::number(song.disc()), tag);
|
|
SetTextFrame("TCOM", song.composer(), tag);
|
|
SetTextFrame("TIT1", song.grouping(), tag);
|
|
SetTextFrame("TOPE", song.performer(), tag);
|
|
// Skip TPE1 (which is the artist) here because we already set it
|
|
SetTextFrame("TPE2", song.albumartist(), tag);
|
|
SetTextFrame("TCMP", std::string(song.compilation() ? "1" : "0"), tag);
|
|
}
|
|
else if (TagLib::FLAC::File *file = dynamic_cast<TagLib::FLAC::File*>(fileref->file())) {
|
|
TagLib::Ogg::XiphComment *tag = file->xiphComment();
|
|
SetVorbisComments(tag, song);
|
|
}
|
|
else if (TagLib::MP4::File *file = dynamic_cast<TagLib::MP4::File*>(fileref->file())) {
|
|
TagLib::MP4::Tag *tag = file->tag();
|
|
tag->itemListMap()["disk"] = TagLib::MP4::Item(song.disc() <= 0 -1 ? 0 : song.disc(), 0);
|
|
tag->itemListMap()["\251wrt"] = TagLib::StringList(song.composer().c_str());
|
|
tag->itemListMap()["\251grp"] = TagLib::StringList(song.grouping().c_str());
|
|
tag->itemListMap()["aART"] = TagLib::StringList(song.albumartist().c_str());
|
|
tag->itemListMap()["cpil"] = TagLib::StringList(song.compilation() ? "1" : "0");
|
|
}
|
|
|
|
// Handle all the files which have VorbisComments (Ogg, OPUS, ...) in the same way;
|
|
// apart, so we keep specific behavior for some formats by adding another "else if" block above.
|
|
if (TagLib::Ogg::XiphComment *tag = dynamic_cast<TagLib::Ogg::XiphComment*>(fileref->file()->tag())) {
|
|
SetVorbisComments(tag, song);
|
|
}
|
|
|
|
bool ret = fileref->save();
|
|
#ifdef Q_OS_LINUX
|
|
if (ret) {
|
|
// Linux: inotify doesn't seem to notice the change to the file unless we
|
|
// change the timestamps as well. (this is what touch does)
|
|
utimensat(0, QFile::encodeName(filename).constData(), nullptr, 0);
|
|
}
|
|
#endif // Q_OS_LINUX
|
|
|
|
return ret;
|
|
}
|
|
|
|
void TagReader::SetUserTextFrame(const QString &description, const QString &value, TagLib::ID3v2::Tag *tag) const {
|
|
|
|
const QByteArray descr_utf8(description.toUtf8());
|
|
const QByteArray value_utf8(value.toUtf8());
|
|
qLog(Debug) << "Setting FMPSFrame:" << description << ", " << value;
|
|
SetUserTextFrame(std::string(descr_utf8.constData(), descr_utf8.length()), std::string(value_utf8.constData(), value_utf8.length()), tag);
|
|
|
|
}
|
|
|
|
void TagReader::SetUserTextFrame(const std::string &description, const std::string &value, TagLib::ID3v2::Tag *tag) const {
|
|
|
|
const TagLib::String t_description = StdStringToTaglibString(description);
|
|
// Remove the frame if it already exists
|
|
TagLib::ID3v2::UserTextIdentificationFrame *frame = TagLib::ID3v2::UserTextIdentificationFrame::find(tag, t_description);
|
|
if (frame) {
|
|
tag->removeFrame(frame);
|
|
}
|
|
|
|
// Create and add a new frame
|
|
frame = new TagLib::ID3v2::UserTextIdentificationFrame(TagLib::String::UTF8);
|
|
|
|
frame->setDescription(t_description);
|
|
frame->setText(StdStringToTaglibString(value));
|
|
tag->addFrame(frame);
|
|
}
|
|
|
|
void TagReader::SetTextFrame(const char *id, const QString &value, TagLib::ID3v2::Tag *tag) const {
|
|
|
|
const QByteArray utf8(value.toUtf8());
|
|
SetTextFrame(id, std::string(utf8.constData(), utf8.length()), tag);
|
|
}
|
|
|
|
void TagReader::SetTextFrame(const char *id, const std::string &value, TagLib::ID3v2::Tag *tag) const {
|
|
|
|
TagLib::ByteVector id_vector(id);
|
|
QVector<TagLib::ByteVector> frames_buffer;
|
|
|
|
// Store and clear existing frames
|
|
while (tag->frameListMap().contains(id_vector) && tag->frameListMap()[id_vector].size() != 0) {
|
|
frames_buffer.push_back(tag->frameListMap()[id_vector].front()->render());
|
|
tag->removeFrame(tag->frameListMap()[id_vector].front());
|
|
}
|
|
|
|
// If no frames stored create empty frame
|
|
if (frames_buffer.isEmpty()) {
|
|
TagLib::ID3v2::TextIdentificationFrame frame(id_vector, TagLib::String::UTF8);
|
|
frames_buffer.push_back(frame.render());
|
|
}
|
|
|
|
// add frame takes ownership and clears the memory
|
|
TagLib::ID3v2::TextIdentificationFrame *frame;
|
|
frame->setText(StdStringToTaglibString(value));
|
|
tag->addFrame(frame);
|
|
|
|
}
|
|
|
|
bool TagReader::IsMediaFile(const QString &filename) const {
|
|
|
|
qLog(Debug) << "Checking for valid file" << filename;
|
|
|
|
std::unique_ptr<TagLib::FileRef> fileref(factory_->GetFileRef(filename));
|
|
return !fileref->isNull() && fileref->tag();
|
|
|
|
}
|
|
|
|
QByteArray TagReader::LoadEmbeddedArt(const QString &filename) const {
|
|
|
|
if (filename.isEmpty()) return QByteArray();
|
|
|
|
qLog(Debug) << "Loading art from" << filename;
|
|
|
|
#ifdef Q_OS_WIN32
|
|
TagLib::FileRef ref(filename.toStdWString().c_str());
|
|
#else
|
|
TagLib::FileRef ref(QFile::encodeName(filename).constData());
|
|
#endif
|
|
|
|
if (ref.isNull() || !ref.file()) return QByteArray();
|
|
|
|
// MP3
|
|
TagLib::MPEG::File *file = dynamic_cast<TagLib::MPEG::File*>(ref.file());
|
|
if (file && file->ID3v2Tag()) {
|
|
TagLib::ID3v2::FrameList apic_frames = file->ID3v2Tag()->frameListMap()["APIC"];
|
|
if (apic_frames.isEmpty())
|
|
return QByteArray();
|
|
|
|
TagLib::ID3v2::AttachedPictureFrame *pic = static_cast<TagLib::ID3v2::AttachedPictureFrame*>(apic_frames.front());
|
|
|
|
return QByteArray((const char*) pic->picture().data(), pic->picture().size());
|
|
}
|
|
|
|
// Ogg vorbis/speex
|
|
TagLib::Ogg::XiphComment *xiph_comment = dynamic_cast<TagLib::Ogg::XiphComment*>(ref.file()->tag());
|
|
|
|
if (xiph_comment) {
|
|
|
|
TagLib::Ogg::FieldListMap map = xiph_comment->fieldListMap();
|
|
|
|
#if TAGLIB_MAJOR_VERSION <= 1 && TAGLIB_MINOR_VERSION < 11
|
|
// Other than the below mentioned non-standard COVERART, METADATA_BLOCK_PICTURE is the proposed tag for cover pictures.
|
|
// (see http://wiki.xiph.org/VorbisComment#METADATA_BLOCK_PICTURE)
|
|
if (map.contains("METADATA_BLOCK_PICTURE")) {
|
|
TagLib::StringList pict_list = map["METADATA_BLOCK_PICTURE"];
|
|
for (std::list<TagLib::String>::iterator it = pict_list.begin(); it != pict_list.end(); ++it) {
|
|
QByteArray data(QByteArray::fromBase64(it->toCString()));
|
|
TagLib::ByteVector tdata(data.data(), data.size());
|
|
TagLib::FLAC::Picture p(tdata);
|
|
if (p.type() == TagLib::FLAC::Picture::FrontCover)
|
|
return QByteArray(p.data().data(), p.data().size());
|
|
}
|
|
// If there was no specific front cover, just take the first picture
|
|
QByteArray data(QByteArray::fromBase64(map["METADATA_BLOCK_PICTURE"].front().toCString()));
|
|
TagLib::ByteVector tdata(data.data(), data.size());
|
|
TagLib::FLAC::Picture p(tdata);
|
|
return QByteArray(p.data().data(), p.data().size());
|
|
}
|
|
#else
|
|
TagLib::List<TagLib::FLAC::Picture*> pics = xiph_comment->pictureList();
|
|
if (!pics.isEmpty()) {
|
|
for (auto p : pics) {
|
|
if (p->type() == TagLib::FLAC::Picture::FrontCover)
|
|
return QByteArray(p->data().data(), p->data().size());
|
|
}
|
|
// If there was no specific front cover, just take the first picture
|
|
std::list<TagLib::FLAC::Picture*>::iterator it = pics.begin();
|
|
TagLib::FLAC::Picture *picture = *it;
|
|
|
|
return QByteArray(picture->data().data(), picture->data().size());
|
|
}
|
|
#endif
|
|
|
|
// Ogg lacks a definitive standard for embedding cover art, but it seems
|
|
// b64 encoding a field called COVERART is the general convention
|
|
if (!map.contains("COVERART")) return QByteArray();
|
|
|
|
return QByteArray::fromBase64(map["COVERART"].toString().toCString());
|
|
}
|
|
|
|
#ifdef TAGLIB_HAS_FLAC_PICTURELIST
|
|
// Flac
|
|
TagLib::FLAC::File *flac_file = dynamic_cast<TagLib::FLAC::File*>(ref.file());
|
|
if (flac_file && flac_file->xiphComment()) {
|
|
TagLib::List<TagLib::FLAC::Picture*> pics = flac_file->pictureList();
|
|
if (!pics.isEmpty()) {
|
|
// Use the first picture in the file - this could be made cleverer and
|
|
// pick the front cover if it's present.
|
|
|
|
std::list<TagLib::FLAC::Picture*>::iterator it = pics.begin();
|
|
TagLib::FLAC::Picture *picture = *it;
|
|
|
|
return QByteArray(picture->data().data(), picture->data().size());
|
|
}
|
|
}
|
|
#endif
|
|
|
|
// MP4/AAC
|
|
TagLib::MP4::File *aac_file = dynamic_cast<TagLib::MP4::File*>(ref.file());
|
|
if (aac_file) {
|
|
TagLib::MP4::Tag *tag = aac_file->tag();
|
|
const TagLib::MP4::ItemListMap &items = tag->itemListMap();
|
|
TagLib::MP4::ItemListMap::ConstIterator it = items.find("covr");
|
|
if (it != items.end()) {
|
|
const TagLib::MP4::CoverArtList &art_list = it->second.toCoverArtList();
|
|
|
|
if (!art_list.isEmpty()) {
|
|
// Just take the first one for now
|
|
const TagLib::MP4::CoverArt &art = art_list.front();
|
|
return QByteArray(art.data().data(), art.data().size());
|
|
}
|
|
}
|
|
}
|
|
|
|
return QByteArray();
|
|
|
|
}
|