add Workout files
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#include "global.h"
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#include "Workout.h"
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#include "EnumHelper.h"
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#include "LocalizedString.h"
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#include "RageUtil.h"
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#include "LuaManager.h"
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#include "LuaFunctions.h"
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#include "XmlFile.h"
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#include "XmlFileUtil.h"
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#include "Course.h"
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static const char *WorkoutProgramNames[] = {
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"FatBurn",
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"FitnessTest",
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"Intermediate",
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"Interval",
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"Runner",
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"Flat",
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};
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XToString( WorkoutProgram, NUM_WorkoutProgram );
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StringToX( WorkoutProgram );
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XToLocalizedString( WorkoutProgram );
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static const char *WorkoutStepsTypeNames[] = {
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"NormalSteps",
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"WorkoutSteps"
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};
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XToString( WorkoutStepsType, NUM_WorkoutStepsType );
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StringToX( WorkoutStepsType );
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XToLocalizedString( WorkoutStepsType );
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LuaFunction( WorkoutStepsTypeToLocalizedString, WorkoutStepsTypeToLocalizedString((WorkoutStepsType) IArg(1)) );
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Workout::Workout()
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{
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m_WorkoutProgram = (WorkoutProgram)0;
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m_iMinutes = 10;
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m_iAverageMeter = 3;
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m_WorkoutStepsType = (WorkoutStepsType)0;
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}
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int Workout::GetEstimatedNumSongs() const
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{
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return GetEstimatedNumSongsFromSeconds( m_iMinutes*60.0f );
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}
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int Workout::GetEstimatedNumSongsFromSeconds( float fSeconds )
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{
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int iNumSongsInBody = (int)ceilf(fSeconds / (60+50));
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return iNumSongsInBody;
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}
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const float fAverageSongLengthSeconds = 105;
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static int CalculateWorkoutProgramMeter( WorkoutProgram wp, int iAverageMeter, int iSongInBodyIndex, int iNumSongsInBody )
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{
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int iMaxMeter = iAverageMeter + 2;
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int iMinMeter = iAverageMeter - 2;
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float fPercentThroughBody = SCALE( iSongInBodyIndex, 0.0f, (float)iNumSongsInBody-1, 0.0f, 1.0f );
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CLAMP( fPercentThroughBody, 0.0f, 1.0f );
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int iMeter = -1; // fill this in
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switch( wp )
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{
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DEFAULT_FAIL( wp );
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case WorkoutProgram_FatBurn:
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{
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float fMeter = SCALE( iSongInBodyIndex % 4, 0.0f, 3.0f, (float)iMinMeter, (float)iMaxMeter );
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iMeter = (int)roundf( fMeter );
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}
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break;
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case WorkoutProgram_FitnessTest:
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{
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iMeter = (int)floorf( SCALE( fPercentThroughBody, 0.0f, 1.0f, (float)iMinMeter, (float)iMaxMeter+0.95f ) );
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}
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break;
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case WorkoutProgram_Intermediate:
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{
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switch( iSongInBodyIndex % 6 )
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{
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DEFAULT_FAIL(iSongInBodyIndex % 6);
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case 0:
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case 3:
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iMeter = iMinMeter;
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break;
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case 1:
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case 2:
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iMeter = iMaxMeter;
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break;
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case 4:
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case 5:
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iMeter = (int) roundf( SCALE( 0.5f, 0.0f, 1.0f, (float)iMinMeter, (float)iMaxMeter ) );
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break;
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}
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}
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break;
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case WorkoutProgram_Interval:
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{
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iMeter = (iSongInBodyIndex % 2) ? iMaxMeter:iMinMeter;
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}
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break;
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case WorkoutProgram_Runner:
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{
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float fMeter = SCALE( iSongInBodyIndex % 4, 0.0f, 3.0f, (float)iMinMeter, (float)iMaxMeter );
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if( (iSongInBodyIndex % 8) >= 4 )
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fMeter = SCALE( fMeter, (float)iMinMeter, (float)iMaxMeter, (float)iMaxMeter, (float)iMinMeter );
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iMeter = (int)roundf( fMeter );
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}
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break;
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case WorkoutProgram_Flat:
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{
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iMeter = iAverageMeter;
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}
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break;
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}
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CLAMP( iMeter, MIN_METER, MAX_METER );
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return iMeter;
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}
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void Workout::GetEstimatedMeters( int iNumSongs, vector<int> &viMetersOut )
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{
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viMetersOut.clear();
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for( int i=0; i<iNumSongs; i++ )
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{
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int iMeter = CalculateWorkoutProgramMeter( m_WorkoutProgram, m_iAverageMeter, i, iNumSongs );
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viMetersOut.push_back( iMeter );
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}
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}
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void Workout::GenerateCourse( Course &out )
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{
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out.m_sMainTitle = "temp";
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out.m_bRepeat = true;
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const int iNumCourseEntries = 10;
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vector<int> viMeter;
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GetEstimatedMeters( iNumCourseEntries, viMeter );
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for( int i=0; i<iNumCourseEntries; i++ )
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{
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CourseEntry ce;
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ce.songCriteria.m_bUseSongGenreAllowedList = true;
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ce.songCriteria.m_vsSongGenreAllowedList = m_vsSongGenres;
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ce.stepsCriteria.m_iLowMeter = ce.stepsCriteria.m_iHighMeter = viMeter[i];
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out.m_vEntries.push_back( ce );
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}
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}
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bool Workout::LoadFromFile( RString sFile )
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{
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XNode xml;
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XmlFileUtil::LoadFromFileShowErrors( xml, sFile );
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if( xml.m_sName != "Workout" )
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return false;
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m_sFile = sFile;
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xml.GetChildValue("Name",m_sName);
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// ValidateWorkoutName
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RString s;
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xml.GetChildValue("WorkoutProgram",s);
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m_WorkoutProgram = StringToWorkoutProgram( s );
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if( m_WorkoutProgram == WorkoutProgram_INVALID )
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m_WorkoutProgram = (WorkoutProgram)0;
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xml.GetChildValue("Minutes",m_iMinutes);
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CLAMP( m_iAverageMeter, MIN_WORKOUT_MINUTES, MAX_WORKOUT_MINUTES );
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xml.GetChildValue("AverageMeter",m_iAverageMeter);
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CLAMP( m_iAverageMeter, MIN_METER, MAX_METER );
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xml.GetChildValue("WorkoutStepsType",s);
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m_WorkoutStepsType = StringToWorkoutStepsType( s );
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if( m_WorkoutStepsType == WorkoutStepsType_INVALID )
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m_WorkoutStepsType = (WorkoutStepsType)0;
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XNode *songGenres = xml.GetChild("SongGenres");
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if( songGenres )
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{
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FOREACH_CONST_Child( songGenres, songGenre )
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{
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if( songGenre->m_sName == "SongGenre" )
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m_vsSongGenres.push_back( songGenre->m_sValue );
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}
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}
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return true;
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}
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bool Workout::SaveToFile( RString sFile )
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{
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m_sFile = sFile;
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XNode xml;
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xml.m_sName = "Workout";
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xml.AppendChild( "Name", m_sName );
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RString s;
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xml.AppendChild( "WorkoutProgram", WorkoutProgramToString(m_WorkoutProgram) );
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xml.AppendChild( "Minutes", m_iMinutes );
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xml.AppendChild( "AverageMeter", m_iAverageMeter );
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xml.AppendChild( "WorkoutStepsType", WorkoutStepsTypeToString(m_WorkoutStepsType) );
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XNode *songGenres = xml.AppendChild("SongGenres");
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FOREACH_CONST( RString, m_vsSongGenres, s )
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{
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songGenres->AppendChild( "SongGenre", *s );
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}
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DISP_OPT opts;
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return xml.SaveToFile( sFile, opts );
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}
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// lua start
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#include "LuaBinding.h"
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class LunaWorkout: public Luna<Workout>
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{
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public:
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LunaWorkout() { LUA->Register( Register ); }
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static int GetName( T* p, lua_State *L ) { lua_pushstring(L, p->m_sName ); return 1; }
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static int GetMinutes( T* p, lua_State *L ) { lua_pushnumber(L, p->m_iMinutes ); return 1; }
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static int GetEstimatedNumSongs( T* p, lua_State *L ) { lua_pushnumber(L, p->GetEstimatedNumSongs() ); return 1; }
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static int GetWorkoutStepsType( T* p, lua_State *L ) { lua_pushnumber(L, p->m_WorkoutStepsType ); return 1; }
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static void Register(lua_State *L)
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{
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ADD_METHOD( GetName );
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ADD_METHOD( GetMinutes );
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ADD_METHOD( GetEstimatedNumSongs );
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ADD_METHOD( GetWorkoutStepsType );
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Luna<T>::Register( L );
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}
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};
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LUA_REGISTER_CLASS( Workout )
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// lua end
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/*
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* (c) 2003-2004 Chris Danford
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* All rights reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, and/or sell copies of the Software, and to permit persons to
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* whom the Software is furnished to do so, provided that the above
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* copyright notice(s) and this permission notice appear in all copies of
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* the Software and that both the above copyright notice(s) and this
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* permission notice appear in supporting documentation.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF
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* THIRD PARTY RIGHTS. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR HOLDERS
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* INCLUDED IN THIS NOTICE BE LIABLE FOR ANY CLAIM, OR ANY SPECIAL INDIRECT
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* OR CONSEQUENTIAL DAMAGES, OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS
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* OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
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* OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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* PERFORMANCE OF THIS SOFTWARE.
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*/
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