278 lines
7.9 KiB
C++
278 lines
7.9 KiB
C++
/*
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* libptformat - a library to read ProTools sessions
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*
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* Copyright (C) 2015-2019 Damien Zammit
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* Copyright (C) 2015-2019 Robin Gareus
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*
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*/
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#ifndef PTFFORMAT_H
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#define PTFFORMAT_H
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#include <string>
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#include <cstring>
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#include <algorithm>
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#include <vector>
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#include <stdint.h>
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#include "ptformat/visibility.h"
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class LIBPTFORMAT_API PTFFormat {
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public:
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PTFFormat();
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~PTFFormat();
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/* Return values: 0 success
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-1 error decrypting pt session
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-2 error detecting pt session
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-3 incompatible pt version
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-4 error parsing pt session
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*/
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int load(std::string const& path, int64_t targetsr);
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/* Return values: 0 success
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-1 error decrypting pt session
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*/
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int unxor(std::string const& path);
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struct wav_t {
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std::string filename;
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uint16_t index;
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int64_t posabsolute;
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int64_t length;
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bool operator <(const struct wav_t& other) const {
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return (strcasecmp(this->filename.c_str(),
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other.filename.c_str()) < 0);
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}
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bool operator ==(const struct wav_t& other) const {
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return (this->filename == other.filename ||
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this->index == other.index);
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}
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wav_t (uint16_t idx = 0) : index (idx), posabsolute (0), length (0) {}
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};
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struct midi_ev_t {
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uint64_t pos;
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uint64_t length;
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uint8_t note;
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uint8_t velocity;
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midi_ev_t () : pos (0), length (0), note (0), velocity (0) {}
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};
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struct region_t {
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std::string name;
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uint16_t index;
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int64_t startpos;
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int64_t sampleoffset;
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int64_t length;
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wav_t wave;
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std::vector<midi_ev_t> midi;
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bool operator ==(const region_t& other) const {
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return (this->index == other.index);
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}
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bool operator <(const region_t& other) const {
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return (strcasecmp(this->name.c_str(),
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other.name.c_str()) < 0);
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}
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region_t (uint16_t idx = 0) : index (idx), startpos (0), sampleoffset (0), length (0) {}
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};
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struct track_t {
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std::string name;
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uint16_t index;
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uint8_t playlist;
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region_t reg;
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bool operator <(const track_t& other) const {
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return (this->index < other.index);
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}
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bool operator ==(const track_t& other) const {
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return (this->index == other.index);
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}
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track_t (uint16_t idx = 0) : index (idx), playlist (0) {}
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};
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bool find_track(uint16_t index, track_t& tt) const {
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std::vector<track_t>::const_iterator begin = _tracks.begin();
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std::vector<track_t>::const_iterator finish = _tracks.end();
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std::vector<track_t>::const_iterator found;
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track_t t (index);
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if ((found = std::find(begin, finish, t)) != finish) {
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tt = *found;
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return true;
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}
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return false;
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}
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bool find_region(uint16_t index, region_t& rr) const {
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std::vector<region_t>::const_iterator begin = _regions.begin();
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std::vector<region_t>::const_iterator finish = _regions.end();
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std::vector<region_t>::const_iterator found;
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region_t r;
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r.index = index;
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if ((found = std::find(begin, finish, r)) != finish) {
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rr = *found;
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return true;
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}
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return false;
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}
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bool find_miditrack(uint16_t index, track_t& tt) const {
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std::vector<track_t>::const_iterator begin = _miditracks.begin();
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std::vector<track_t>::const_iterator finish = _miditracks.end();
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std::vector<track_t>::const_iterator found;
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track_t t (index);
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if ((found = std::find(begin, finish, t)) != finish) {
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tt = *found;
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return true;
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}
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return false;
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}
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bool find_midiregion(uint16_t index, region_t& rr) const {
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std::vector<region_t>::const_iterator begin = _midiregions.begin();
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std::vector<region_t>::const_iterator finish = _midiregions.end();
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std::vector<region_t>::const_iterator found;
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region_t r (index);
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if ((found = std::find(begin, finish, r)) != finish) {
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rr = *found;
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return true;
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}
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return false;
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}
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bool find_wav(uint16_t index, wav_t& ww) const {
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std::vector<wav_t>::const_iterator begin = _audiofiles.begin();
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std::vector<wav_t>::const_iterator finish = _audiofiles.end();
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std::vector<wav_t>::const_iterator found;
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wav_t w (index);
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if ((found = std::find(begin, finish, w)) != finish) {
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ww = *found;
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return true;
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}
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return false;
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}
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static bool regionexistsin(std::vector<region_t> const& reg, uint16_t index) {
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std::vector<region_t>::const_iterator begin = reg.begin();
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std::vector<region_t>::const_iterator finish = reg.end();
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region_t r (index);
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if (std::find(begin, finish, r) != finish) {
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return true;
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}
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return false;
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}
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static bool wavexistsin (std::vector<wav_t> const& wv, uint16_t index) {
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std::vector<wav_t>::const_iterator begin = wv.begin();
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std::vector<wav_t>::const_iterator finish = wv.end();
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wav_t w (index);
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if (std::find(begin, finish, w) != finish) {
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return true;
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}
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return false;
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}
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uint8_t version () const { return _version; }
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int64_t sessionrate () const { return _sessionrate ; }
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const std::string& path () { return _path; }
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const std::vector<wav_t>& audiofiles () const { return _audiofiles ; }
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const std::vector<region_t>& regions () const { return _regions ; }
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const std::vector<region_t>& midiregions () const { return _midiregions ; }
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const std::vector<track_t>& tracks () const { return _tracks ; }
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const std::vector<track_t>& miditracks () const { return _miditracks ; }
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const unsigned char* unxored_data () const { return _ptfunxored; }
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uint64_t unxored_size () const { return _len; }
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private:
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std::vector<wav_t> _audiofiles;
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std::vector<region_t> _regions;
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std::vector<region_t> _midiregions;
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std::vector<track_t> _tracks;
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std::vector<track_t> _miditracks;
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std::string _path;
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unsigned char* _ptfunxored;
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uint64_t _len;
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int64_t _sessionrate;
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uint8_t _version;
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uint8_t* _product;
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int64_t _targetrate;
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float _ratefactor;
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bool is_bigendian;
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struct block_t {
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uint8_t zmark; // 'Z'
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uint16_t block_type; // type of block
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uint32_t block_size; // size of block
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uint16_t content_type; // type of content
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uint32_t offset; // offset in file
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std::vector<block_t> child; // vector of child blocks
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};
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std::vector<block_t> blocks;
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bool jumpback(uint32_t *currpos, unsigned char *buf, const uint32_t maxoffset, const unsigned char *needle, const uint32_t needlelen);
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bool jumpto(uint32_t *currpos, unsigned char *buf, const uint32_t maxoffset, const unsigned char *needle, const uint32_t needlelen);
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bool foundin(std::string const& haystack, std::string const& needle);
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int64_t foundat(unsigned char *haystack, uint64_t n, const char *needle);
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std::string parsestring(uint32_t pos);
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const std::string get_content_description(uint16_t ctype);
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int parse(void);
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void parseblocks(void);
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bool parseheader(void);
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bool parserest(void);
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bool parseaudio(void);
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bool parsemidi(void);
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void dump(void);
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bool parse_block_at(uint32_t pos, struct block_t *b, struct block_t *parent, int level);
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void dump_block(struct block_t& b, int level);
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bool parse_version();
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void parse_region_info(uint32_t j, block_t& blk, region_t& r);
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void parse_three_point(uint32_t j, uint64_t& start, uint64_t& offset, uint64_t& length);
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uint8_t gen_xor_delta(uint8_t xor_value, uint8_t mul, bool negative);
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void setrates(void);
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void cleanup(void);
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void free_block(struct block_t& b);
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void free_all_blocks(void);
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};
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#endif
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