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524 lines
14 KiB
C++
524 lines
14 KiB
C++
#include "iPodSD.h"
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#include <math.h>
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#include <assert.h>
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// get 3 bytes from data (used in iTunesSD1)
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static __forceinline unsigned long get3(const uint8_t * data)
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{
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unsigned long ret = 0;
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ret += ((unsigned long) data[0]) << 16;
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ret += ((unsigned long) data[1]) << 8;
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ret += ((unsigned long) data[2]);
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return ret;
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}
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//write 3 bytes normal (used in iTunesSD1)
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static __forceinline void put3(const unsigned long number, uint8_t * data)
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{
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data[0] = (uint8_t)(number >> 16) & 0xff;
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data[1] = (uint8_t)(number >> 8) & 0xff;
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data[2] = (uint8_t)number & 0xff;
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}
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// pass data and ptr, updates ptr automatically (by reference)
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static __forceinline void write_uint64_t(uint8_t *data, size_t &offset, uint64_t value)
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{
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memcpy(&data[offset], &value, 8);
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offset+=8;
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}
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// pass data and ptr, updates ptr automatically (by reference)
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static __forceinline void write_uint32_t(uint8_t *data, size_t &offset, uint32_t value)
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{
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memcpy(&data[offset], &value, 4);
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offset+=4;
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}
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// pass data and ptr, updates ptr automatically (by reference)
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static __forceinline void write_uint16_t(uint8_t *data, size_t &offset, uint16_t value)
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{
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memcpy(&data[offset], &value, 2);
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offset+=2;
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}
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// pass data and ptr, updates ptr automatically (by reference)
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static __forceinline void write_uint8_t(uint8_t *data, size_t &offset, uint8_t value)
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{
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data[offset++] = value;
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}
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// pass data and ptr, updates ptr automatically (by reference)
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static __forceinline void write_header(uint8_t *data, size_t &offset, const char *header)
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{
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data[offset++] = header[0];
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data[offset++] = header[1];
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data[offset++] = header[2];
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data[offset++] = header[3];
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}
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// Case insensitive version of wcsstr
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static wchar_t *wcsistr (const wchar_t *s1, const wchar_t *s2)
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{
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wchar_t *cp = (wchar_t*) s1;
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wchar_t *s, *t, *endp;
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wchar_t l, r;
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endp = (wchar_t*)s1 + ( lstrlen(s1) - lstrlen(s2)) ;
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while (cp && *cp && (cp <= endp))
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{
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s = cp;
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t = (wchar_t*)s2;
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while (s && *s && t && *t)
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{
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l = towupper(*s);
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r = towupper(*t);
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if (l != r)
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break;
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s++, t++;
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}
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if (*t == 0)
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return cp;
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cp = CharNext(cp);
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}
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return NULL;
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}
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//////////////////////////////////////////////////////////////////////
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// iTunesSD1 - Classes for dealing with the iPodShuffle
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//////////////////////////////////////////////////////////////////////
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iTunesSD1::iTunesSD1()
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{
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}
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iTunesSD1::~iTunesSD1()
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{
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}
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long iTunesSD1::write(const iPod_mhlt::mhit_map_t *songs, unsigned char * data, const unsigned long datasize)
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{
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#ifdef IPODDB_PROFILER
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profiler(iPodDB__iTunesSD_write);
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#endif
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const unsigned int numsongs = songs->size();
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const unsigned int total_size = 18 + (numsongs * 558);
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ASSERT(datasize >= total_size);
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if(datasize < total_size)
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return(-1);
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long ptr=0;
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put3(numsongs, &data[ptr]);
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ptr+=3;
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put3(0x010600, &data[ptr]);
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ptr+=3;
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put3(0x12, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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iPod_mhlt::mhit_map_t::const_iterator begin = songs->begin();
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iPod_mhlt::mhit_map_t::const_iterator end = songs->end();
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for(iPod_mhlt::mhit_map_t::const_iterator it = begin; it != end; it++)
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{
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iPod_mhit *m = ((*it).second);
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iTunesSD_Song song(m);
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long ret = song.write(&data[ptr], datasize - ptr);
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if (ret < 0)
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return ret;
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ptr += ret;
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}
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return(ptr);
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}
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iTunesSD_Song::iTunesSD_Song(const iPod_mhit *m) : size_total(0x22e), starttime(0), stoptime(0), volume(0x64), filetype(0), playflags(iTunesSD_Song::SHUFFLE)
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{
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memset(filename, 0, (SDSONG_FILENAME_LEN + 1) * sizeof(wchar_t));
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iPod_mhod *mhod = m->FindString(MHOD_LOCATION);
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ASSERT(mhod);
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if(mhod)
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{
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// Convert from HFS format (:iPod_Control:Music:F00:filename) to quasi-FAT format (/iPod_Control/Music/F00/filename) filepaths
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SetFilename(mhod->str);
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wchar_t *w = filename;
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while(w && *w != '\0')
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{
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if(*w == ':')
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*w = '/';
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w = CharNext(w);
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}
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SetStartTime(m->starttime);
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SetStopTime(m->stoptime);
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int volume = (int)m->volume;
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// If Sound Check information is present, use that instead of volume
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if(m->soundcheck != 0)
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{
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// This code converts SoundCheck back into a gain value, then into a -255 to 255 mhit::volume value
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const double gain = -10.0 * log10(m->soundcheck / 1000.0);
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volume = (int)(gain * 12.75); // XXX - this might not be the best way to convert the gain value...
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}
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if(volume < -255)
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volume = -255;
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else if(volume > 255)
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volume = 255;
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// Convert the volume value into a percentage for SetVolume
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SetVolume((int)((double)volume / 2.55));
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// To determine the filetype, first check the MHOD_FILETYPE type. If that isn't available, fallback to file extension
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iPod_mhod *mtype = m->FindString(MHOD_FILETYPE);
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if(mtype != NULL)
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{
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if(wcsistr(mtype->str, L"MPEG") != NULL || wcsistr(mtype->str, L"MP3") != NULL)
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filetype = iTunesSD_Song::MP3;
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else if(wcsistr(mtype->str, L"AAC") != NULL)
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filetype = iTunesSD_Song::AAC;
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else if(wcsistr(mtype->str, L"WAV") != NULL)
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filetype = iTunesSD_Song::WAV;
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}
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if(filetype == 0)
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{
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if(wcsistr(mhod->str, L".mp3") != NULL)
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filetype = iTunesSD_Song::MP3;
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else if(wcsistr(mhod->str, L".m4a") != NULL || wcsistr(mhod->str, L".m4b") != NULL || wcsistr(mhod->str, L".m4p") != NULL)
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filetype = iTunesSD_Song::AAC;
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else if(wcsistr(mhod->str, L".wav") != NULL)
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filetype = iTunesSD_Song::WAV;
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}
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ASSERT(filetype != 0);
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if(filename == 0)
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filetype = iTunesSD_Song::MP3; // Default to mp3
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if(wcsistr(mhod->str, L".m4b") != NULL)
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playflags = iTunesSD_Song::BOOKMARKABLE; // Only playback in normal mode
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else
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playflags = iTunesSD_Song::SHUFFLE; // Playable in normal/shuffle modes, but not bookmarkable
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}
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}
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long iTunesSD_Song::write(unsigned char * data, const unsigned long datasize)
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{
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#ifdef IPODDB_PROFILER
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profiler(iPodDB__iTunesSD_Song_write);
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#endif
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long ptr=0;
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ASSERT(size_total == 0x22e);
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ASSERT(filetype != 0);
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put3(size_total, &data[ptr]);
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ptr+=3;
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put3(0x005aa501, &data[ptr]);
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ptr+=3;
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put3(starttime, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(stoptime, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(0, &data[ptr]);
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ptr+=3;
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put3(volume, &data[ptr]);
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ptr+=3;
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put3(filetype, &data[ptr]);
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ptr+=3;
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put3(0x200, &data[ptr]);
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ptr+=3;
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const unsigned int bufSize = (SDSONG_FILENAME_LEN + 1) * sizeof(wchar_t);
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memcpy(&data[ptr], filename, bufSize);
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ptr+=bufSize;
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put3(playflags, &data[ptr]);
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ptr+=3;
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ASSERT(size_total == ptr);
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return(ptr);
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}
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void iTunesSD_Song::SetFilename(const wchar_t *filename)
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{
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#ifdef IPODDB_PROFILER
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profiler(iPodDB__iTunesStats_SetFilename);
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#endif
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ASSERT(filename != NULL);
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if(filename == NULL)
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return;
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if(filename)
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{
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lstrcpyn(this->filename, filename, SDSONG_FILENAME_LEN);
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}
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else
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{
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memset(this->filename, 0, SDSONG_FILENAME_LEN * sizeof(wchar_t));
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}
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}
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// Accepts values from -100 to 100, with 0 meaning no volume change
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void iTunesSD_Song::SetVolume(const int percent)
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{
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int p = percent;
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if(p > 100)
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p = 100;
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else if(p < -100)
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p = -100;
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// Volume ranges from 0 (-100%) to 100 (0%) to 200 (100%)
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volume = (unsigned int)(percent + 100);
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}
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/* Shadow DB version 2 */
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long iTunesSD2::write(const iPod_mhlt *songs, const iPod_mhlp *playlists, unsigned char * data, const unsigned long datasize)
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{
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uint32_t numsongs = songs->GetChildrenCount();
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uint32_t numplaylists = playlists->GetChildrenCount();
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size_t offset=0;
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size_t ptr=0;
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if (datasize < 64)
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return -1;
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write_header(data, ptr, "bdhs");
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write_uint32_t(data, ptr, 0x02000003); /* also have seen 0x02010001, perhaps a DB version number? */
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write_uint32_t(data, ptr, 64); /* length of header */
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write_uint32_t(data, ptr, numsongs);
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write_uint32_t(data, ptr, numplaylists); /* number of playlists */
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint8_t(data, ptr, 0); /* volume limit */
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write_uint8_t(data, ptr, 1); /* voiceover */
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write_uint16_t(data, ptr, 0);
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write_uint32_t(data, ptr, numsongs); /* TODO number of tracks w/o podcasts and audiobooks*/
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write_uint32_t(data, ptr, 64); /* track header offset */
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write_uint32_t(data, ptr, 64+20 + numsongs*4+iTunesSD2_Song::header_size*numsongs); /* playlist header offset */
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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offset = 64;
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uint32_t hths_header_size = 20+numsongs*4;
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if (datasize - ptr < hths_header_size)
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return -1;
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write_header(data, ptr, "hths");
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write_uint32_t(data, ptr, hths_header_size); /* header length */
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write_uint32_t(data, ptr, numsongs);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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offset += hths_header_size;
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/* positions for each track */
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for (size_t i=0;i<numsongs;i++)
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{
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write_uint32_t(data, ptr, offset + iTunesSD2_Song::header_size * i);
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}
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/* write tracks */
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for (uint32_t i=0;i<numsongs;i++)
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{
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iPod_mhit *m = songs->GetTrack(i);
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long ret = iTunesSD2_Song::write(m, &data[ptr], datasize - ptr);
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if (ret < 0)
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return ret;
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ptr += ret;
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offset += ret;
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}
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uint32_t podcast_playlist_count=0;
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for (size_t i=0;i<numplaylists;i++)
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{
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iPod_mhyp *p = playlists->GetPlaylist(i);
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if (p->podcastflag)
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podcast_playlist_count++;
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}
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uint32_t hphs_header_size = 20 + numplaylists*4;
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if (datasize - ptr < hphs_header_size)
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return -1;
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write_header(data, ptr, "hphs");
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write_uint32_t(data, ptr, hphs_header_size); /* header length */
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write_uint32_t(data, ptr, numplaylists);
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write_uint16_t(data, ptr, 0);
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write_uint16_t(data, ptr, numplaylists-podcast_playlist_count); /* non-podcast playlists */
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write_uint16_t(data, ptr, 1); /* master playlists */
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write_uint16_t(data, ptr, numplaylists); /* non-audiobook playlists */
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offset += hphs_header_size;
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/* write offsets for each track */
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for (size_t i=0;i<numplaylists;i++)
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{
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iPod_mhyp *p = playlists->GetPlaylist(i);
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write_uint32_t(data, ptr, offset);
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offset += p->GetMhipChildrenCount()*4 + 44;
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}
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iPod_mhyp *master_playlist = playlists->GetPlaylist(0);
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/* write playlists */
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for (size_t i=0;i<numplaylists;i++)
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{
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iPod_mhyp *p = playlists->GetPlaylist(i);
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long ret = iTunesSD2_Playlist::write(master_playlist, p, &data[ptr], datasize - ptr);
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if (ret < 0)
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return ret;
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ptr += ret;
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}
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return ptr;
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}
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uint32_t iTunesSD2_Song::header_size = 372;
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long iTunesSD2_Song::write(const iPod_mhit *mhit, unsigned char *data, const unsigned long datasize)
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{
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if (datasize < header_size)
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return -1;
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size_t ptr=0;
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write_header(data, ptr, "rths");
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write_uint32_t(data, ptr, header_size); /* length of header */
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write_uint32_t(data, ptr, mhit->starttime); /* start time, in milliseconds */
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write_uint32_t(data, ptr, mhit->stoptime); /* stop time, in milliseconds */
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write_uint32_t(data, ptr, mhit->volume); /* volume */
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switch(mhit->filetype)
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{
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case FILETYPE_WAV:
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write_uint32_t(data, ptr, iTunesSD_Song::WAV); /* file type */
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break;
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case FILETYPE_M4A:
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case 0x4d344220:
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case 0x4d345020:
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write_uint32_t(data, ptr, iTunesSD_Song::AAC); /* file type */
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break;
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case FILETYPE_MP3:
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default:
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write_uint32_t(data, ptr, iTunesSD_Song::MP3); /* file type */
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break;
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}
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iPod_mhod *mhod = mhit->FindString(MHOD_LOCATION);
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char filename[256] = {0};
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int converted = WideCharToMultiByte(CP_UTF8, 0, mhod->str, -1, filename, 256, 0, 0);
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for (int i=0;i<converted;i++)
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{
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if (filename[i] == ':')
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filename[i] = '/';
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}
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memcpy(&data[ptr], filename, converted);
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ptr+=converted;
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memset(&data[ptr], 0, 256-converted);
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ptr+=256-converted;
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write_uint32_t(data, ptr, mhit->bookmarktime); /* bookmark time */
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write_uint8_t(data, ptr, 0); /* skip flag */
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write_uint8_t(data, ptr, mhit->rememberPosition); /* remember playback position */
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write_uint8_t(data, ptr, 0); /* part of gapless album */
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write_uint8_t(data, ptr, 0);
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write_uint32_t(data, ptr, mhit->pregap); /* pre-gap */
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write_uint32_t(data, ptr, mhit->postgap); /* post-gap */
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write_uint64_t(data, ptr, mhit->samplecount); /* number of samples */
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write_uint32_t(data, ptr, mhit->gaplessData); /* gapless data */
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, mhit->album_id); /* album ID */
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write_uint16_t(data, ptr, mhit->tracknum); /* track number */
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write_uint16_t(data, ptr, mhit->cdnum); /* disc number */
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint64_t(data, ptr, mhit->dbid); /* dbid */
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write_uint32_t(data, ptr, 0); /* artist ID */
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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write_uint32_t(data, ptr, 0);
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return ptr;
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}
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long iTunesSD2_Playlist::write(const iPod_mhyp *master_playlist, const iPod_mhyp *playlist, unsigned char * data, const unsigned long datasize)
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{
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size_t ptr=0;
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uint32_t tracks = playlist->GetMhipChildrenCount();
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uint32_t header_size = 44 + tracks*4;
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if (datasize < header_size)
|
|
return -1;
|
|
|
|
write_header(data, ptr, "lphs");
|
|
write_uint32_t(data, ptr, header_size); /* header length */
|
|
write_uint32_t(data, ptr, tracks); /* number of tracks */
|
|
|
|
/* number of music tracks TODO: special handling for master playlist */
|
|
if (playlist->podcastflag)
|
|
write_uint32_t(data, ptr, 0);
|
|
else
|
|
write_uint32_t(data, ptr, tracks);
|
|
|
|
write_uint64_t(data, ptr, playlist->playlistID); /* playlist ID */
|
|
|
|
/* playlist type */
|
|
if (playlist->podcastflag)
|
|
write_uint32_t(data, ptr, 3); /* podcast */
|
|
else if (playlist->hidden)
|
|
write_uint32_t(data, ptr, 1); /* master playlist */
|
|
else
|
|
write_uint32_t(data, ptr, 2); /* normal */
|
|
write_uint32_t(data, ptr, 0);
|
|
write_uint32_t(data, ptr, 0);
|
|
write_uint32_t(data, ptr, 0);
|
|
write_uint32_t(data, ptr, 0);
|
|
if (master_playlist == playlist)
|
|
{
|
|
for (uint32_t i=0;i<tracks;i++)
|
|
{
|
|
write_uint32_t(data, ptr, i);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
for (uint32_t i=0;i<tracks;i++)
|
|
{
|
|
iPod_mhip *item = playlist->GetPlaylistEntry(i);
|
|
uint32_t master_index = master_playlist->FindPlaylistEntry(item->songindex);
|
|
assert(master_index != -1);
|
|
write_uint32_t(data, ptr, master_index);
|
|
}
|
|
}
|
|
return ptr;
|
|
}
|