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#include "stdafx.h"
/*
-----------------------------------------------------------------------------
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Class: NoteData
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Desc: See header.
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Copyright (c) 2001-2002 by the person(s) listed below. All rights reserved.
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Chris Danford
-----------------------------------------------------------------------------
*/
#include "NoteData.h"
#include "RageUtil.h"
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#include "GameConstantsAndTypes.h"
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#include "PrefsManager.h"
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#include "ArrowEffects.h"
#include "PrefsManager.h"
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#include "GameConstantsAndTypes.h"
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#include "RageException.h"
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#include "GameState.h"
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#include "math.h"
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NoteData :: NoteData ()
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{
Init ();
}
void NoteData :: Init ()
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{
m_iNumTracks = 0 ;
}
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NoteData ::~ NoteData ()
{
}
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void NoteData :: LoadFromSMNoteDataString ( CString sSMNoteData )
{
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int iNumTracks = m_iNumTracks ;
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Init ();
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m_iNumTracks = iNumTracks ;
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// strip comments out of sSMNoteData
while ( sSMNoteData . Find ( "//" ) != - 1 )
{
int iIndexCommentStart = sSMNoteData . Find ( "//" );
int iIndexCommentEnd = sSMNoteData . Find ( " \n " , iIndexCommentStart );
if ( iIndexCommentEnd == - 1 ) // comment doesn't have an end?
sSMNoteData . Delete ( iIndexCommentStart , 2 );
else
sSMNoteData . Delete ( iIndexCommentStart , iIndexCommentEnd - iIndexCommentStart );
}
CStringArray asMeasures ;
split ( sSMNoteData , "," , asMeasures , true ); // ignore empty is important
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for ( unsigned m = 0 ; m < asMeasures . size (); m ++ ) // foreach measure
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{
CString & sMeasureString = asMeasures [ m ];
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TrimLeft ( sMeasureString );
TrimRight ( sMeasureString );
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CStringArray asMeasureLines ;
split ( sMeasureString , " \n " , asMeasureLines , true ); // ignore empty is important
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//ASSERT( asMeasureLines.size() == 4 ||
// asMeasureLines.size() == 8 ||
// asMeasureLines.size() == 12 ||
// asMeasureLines.size() == 16 );
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for ( unsigned l = 0 ; l < asMeasureLines . size (); l ++ )
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{
CString & sMeasureLine = asMeasureLines [ l ];
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TrimLeft ( sMeasureLine );
TrimRight ( sMeasureLine );
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const float fPercentIntoMeasure = l / ( float ) asMeasureLines . size ();
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const float fBeat = ( m + fPercentIntoMeasure ) * BEATS_PER_MEASURE ;
const int iIndex = BeatToNoteRow ( fBeat );
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// if( m_iNumTracks != sMeasureLine.GetLength() )
// throw RageException( "Actual number of note columns (%d) is different from the NotesType (%d).", m_iNumTracks, sMeasureLine.GetLength() );
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for ( int c = 0 ; c < min ( sMeasureLine . GetLength (), m_iNumTracks ); c ++ )
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{
TapNote t ;
switch ( sMeasureLine [ c ])
{
case '0' : t = TAP_EMPTY ; break ;
case '1' : t = TAP_TAP ; break ;
case '2' : t = TAP_HOLD_HEAD ; break ;
case '3' : t = TAP_HOLD_TAIL ; break ;
default : ASSERT ( 0 ); t = TAP_EMPTY ; break ;
}
SetTapNote ( c , iIndex , t );
}
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}
}
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this -> Convert2sAnd3sToHoldNotes ();
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}
CString NoteData :: GetSMNoteDataString ()
{
this -> ConvertHoldNotesTo2sAnd3s ();
float fLastBeat = GetLastBeat ();
int iLastMeasure = int ( fLastBeat / BEATS_PER_MEASURE );
CStringArray asMeasureStrings ;
for ( int m = 0 ; m <= iLastMeasure ; m ++ ) // foreach measure
{
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NoteType nt = GetSmallestNoteTypeForMeasure ( m );
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int iRowSpacing ;
if ( nt == NOTE_TYPE_INVALID )
iRowSpacing = 1 ;
else
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iRowSpacing = int ( roundf ( NoteTypeToBeat ( nt ) * ROWS_PER_BEAT ));
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CStringArray asMeasureLines ;
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asMeasureLines . push_back ( ssprintf ( " // measure %d" , m + 1 ) );
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const int iMeasureStartRow = m * ROWS_PER_MEASURE ;
const int iMeasureLastRow = ( m + 1 ) * ROWS_PER_MEASURE - 1 ;
for ( int r = iMeasureStartRow ; r <= iMeasureLastRow ; r += iRowSpacing )
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{
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CString szLineString ;
for ( int t = 0 ; t < m_iNumTracks ; t ++ ) {
char c ;
switch ( GetTapNote ( t , r )) {
case TAP_EMPTY : c = '0' ; break ;
case TAP_TAP : c = '1' ; break ;
case TAP_HOLD_HEAD : c = '2' ; break ;
case TAP_HOLD_TAIL : c = '3' ; break ;
default : ASSERT ( 0 ); c = '0' ; break ;
}
szLineString . append ( 1 , c );
}
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asMeasureLines . push_back ( szLineString );
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}
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CString sMeasureString = join ( " \n " , asMeasureLines );
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asMeasureStrings . push_back ( sMeasureString );
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}
this -> Convert2sAnd3sToHoldNotes ();
return join ( " \n ," , asMeasureStrings );
}
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/* Clear [iNoteIndexBegin,iNoteIndexEnd]; that is, including iNoteIndexEnd. */
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void NoteData :: ClearRange ( int iNoteIndexBegin , int iNoteIndexEnd )
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{
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this -> ConvertHoldNotesTo4s ();
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/* XXX: if iNoteIndexEnd == m_TapNotes[0].size(), just erase() */
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for ( int c = 0 ; c < m_iNumTracks ; c ++ )
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{
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for ( int i = iNoteIndexBegin ; i <= iNoteIndexEnd && i < MAX_TAP_NOTE_ROWS ; i ++ )
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SetTapNote ( c , i , TAP_EMPTY );
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}
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this -> Convert4sToHoldNotes ();
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}
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/* Copy a range from pFrom to this. (Note that this does *not* overlay;
* all data in the range is overwritten.) */
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void NoteData :: CopyRange ( NoteData * pFrom , int iFromIndexBegin , int iFromIndexEnd , int iToIndexBegin )
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{
ASSERT ( pFrom -> m_iNumTracks == m_iNumTracks );
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if ( iToIndexBegin == - 1 )
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iToIndexBegin = 0 ;
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pFrom -> ConvertHoldNotesTo4s ();
this -> ConvertHoldNotesTo4s ();
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// copy recorded TapNotes
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int f = iFromIndexBegin , t = iToIndexBegin ;
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while ( f <= iFromIndexEnd && f < MAX_TAP_NOTE_ROWS && t < MAX_TAP_NOTE_ROWS )
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{
for ( int c = 0 ; c < m_iNumTracks ; c ++ )
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SetTapNote ( c , t , pFrom -> GetTapNote ( c , f ));
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f ++ ;
t ++ ;
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}
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pFrom -> Convert4sToHoldNotes ();
this -> Convert4sToHoldNotes ();
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}
void NoteData :: AddHoldNote ( HoldNote add )
{
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ASSERT ( add . m_fStartBeat >= 0 && add . m_fEndBeat >= 0 );
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int i ;
// look for other hold notes that overlap and merge them
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// XXX: this is done implicitly with 4s, but 4s uses this function.
// Rework this later.
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for ( i = 0 ; i < GetNumHoldNotes (); i ++ ) // for each HoldNote
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{
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HoldNote & other = GetHoldNote ( i );
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if ( add . m_iTrack == other . m_iTrack && // the tracks correspond
// they overlap
(
( other . m_fStartBeat <= add . m_fStartBeat && other . m_fEndBeat >= add . m_fEndBeat ) || // other consumes add
( other . m_fStartBeat >= add . m_fStartBeat && other . m_fEndBeat <= add . m_fEndBeat ) || // other inside add
( add . m_fStartBeat <= other . m_fStartBeat && other . m_fStartBeat <= add . m_fEndBeat ) || // other overlaps add
( add . m_fStartBeat <= other . m_fEndBeat && other . m_fEndBeat <= add . m_fEndBeat ) // other overlaps add
)
)
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{
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add . m_fStartBeat = min ( add . m_fStartBeat , other . m_fStartBeat );
add . m_fEndBeat = max ( add . m_fEndBeat , other . m_fEndBeat );
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// delete this HoldNote
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m_HoldNotes . erase ( m_HoldNotes . begin () + i , m_HoldNotes . begin () + i + 1 );
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}
}
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int iAddStartIndex = BeatToNoteRow ( add . m_fStartBeat );
int iAddEndIndex = BeatToNoteRow ( add . m_fEndBeat );
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// delete TapNotes under this HoldNote
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for ( i = iAddStartIndex + 1 ; i <= iAddEndIndex ; i ++ )
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SetTapNote ( add . m_iTrack , i , TAP_EMPTY );
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// add a tap note at the start of this hold
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SetTapNote ( add . m_iTrack , iAddStartIndex , TAP_HOLD_HEAD ); // Hold begin marker. Don't draw this, but do grade it.
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m_HoldNotes . push_back ( add );
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}
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void NoteData :: RemoveHoldNote ( int iHoldIndex )
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{
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ASSERT ( iHoldIndex >= 0 && iHoldIndex < GetNumHoldNotes () );
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HoldNote & hn = GetHoldNote ( iHoldIndex );
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int iHoldStartIndex = BeatToNoteRow ( hn . m_fStartBeat );
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// delete a tap note at the start of this hold
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SetTapNote ( hn . m_iTrack , iHoldStartIndex , TAP_EMPTY );
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// remove from list
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m_HoldNotes . erase ( m_HoldNotes . begin () + iHoldIndex , m_HoldNotes . begin () + iHoldIndex + 1 );
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}
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bool NoteData :: IsThereANoteAtRow ( int iRow ) const
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{
for ( int t = 0 ; t < m_iNumTracks ; t ++ )
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if ( GetTapNote ( t , iRow ) != TAP_EMPTY )
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return true ;
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// There is a tap note at the beginning of every HoldNote start
//
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// for( int i=0; i<GetNumHoldNotes(); i++ ) // for each HoldNote
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// if( GetHoldNote(i).m_iStartIndex == NoteRowToBeatRow(iRow) )
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// return true;
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return false ;
}
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int NoteData :: GetFirstRow ()
{
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return BeatToNoteRow ( GetFirstBeat () );
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}
float NoteData :: GetFirstBeat ()
{
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float fEarliestBeatFoundSoFar = MAX_BEATS ;
int i ;
for ( i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ )
{
if ( ! IsRowEmpty ( i ) )
{
fEarliestBeatFoundSoFar = NoteRowToBeat ( i );
break ;
}
}
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for ( i = 0 ; i < GetNumHoldNotes (); i ++ )
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if ( GetHoldNote ( i ). m_fStartBeat < fEarliestBeatFoundSoFar )
fEarliestBeatFoundSoFar = GetHoldNote ( i ). m_fStartBeat ;
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if ( fEarliestBeatFoundSoFar == MAX_BEATS ) // there are no notes
return 0 ;
else
return fEarliestBeatFoundSoFar ;
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}
int NoteData :: GetLastRow ()
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{
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return BeatToNoteRow ( GetLastBeat () );
}
float NoteData :: GetLastBeat ()
{
float fOldestBeatFoundSoFar = 0 ;
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int i ;
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for ( i = MAX_TAP_NOTE_ROWS - 1 ; i >= 0 ; i -- ) // iterate back to front
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{
if ( ! IsRowEmpty ( i ) )
{
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fOldestBeatFoundSoFar = NoteRowToBeat ( i );
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break ;
}
}
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for ( i = 0 ; i < GetNumHoldNotes (); i ++ )
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{
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if ( GetHoldNote ( i ). m_fEndBeat > fOldestBeatFoundSoFar )
fOldestBeatFoundSoFar = GetHoldNote ( i ). m_fEndBeat ;
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}
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return fOldestBeatFoundSoFar ;
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}
int NoteData :: GetNumTapNotes ( const float fStartBeat , const float fEndBeat )
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{
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int iNumNotes = 0 ;
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int iStartIndex = BeatToNoteRow ( fStartBeat );
int iEndIndex = BeatToNoteRow ( fEndBeat );
for ( int i = iStartIndex ; i < min ( iEndIndex , MAX_TAP_NOTE_ROWS ); i ++ )
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{
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for ( int t = 0 ; t < m_iNumTracks ; t ++ )
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if ( GetTapNote ( t , i ) != TAP_EMPTY )
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iNumNotes ++ ;
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}
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return iNumNotes ;
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}
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int NoteData :: GetNumDoubles ( const float fStartBeat , const float fEndBeat )
{
int iNumDoubles = 0 ;
int iStartIndex = BeatToNoteRow ( fStartBeat );
int iEndIndex = BeatToNoteRow ( fEndBeat );
for ( int i = iStartIndex ; i < min ( iEndIndex , MAX_TAP_NOTE_ROWS ); i ++ )
{
int iNumNotesThisIndex = 0 ;
for ( int t = 0 ; t < m_iNumTracks ; t ++ )
{
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if ( GetTapNote ( t , i ) != TAP_EMPTY )
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iNumNotesThisIndex ++ ;
}
if ( iNumNotesThisIndex >= 2 )
iNumDoubles ++ ;
}
return iNumDoubles ;
}
int NoteData :: GetNumHoldNotes ( const float fStartBeat , const float fEndBeat )
{
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int iNumHolds = 0 ;
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for ( int i = 0 ; i < GetNumHoldNotes (); i ++ )
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{
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const HoldNote & hn = GetHoldNote ( i );
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if ( fStartBeat <= hn . m_fStartBeat && hn . m_fEndBeat <= fEndBeat )
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iNumHolds ++ ;
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}
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return iNumHolds ;
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}
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int NoteData :: GetPossibleDancePoints ()
{
//Each song has a certain number of "Dance Points" assigned to it. For regular arrows, this is 2 per arrow. For freeze arrows, it is 6 per arrow. When you add this all up, you get the maximum number of possible "Dance Points".
//
//Your "Dance Points" are calculated as follows:
//
//A "Perfect" is worth 2 points
//A "Great" is worth 1 points
//A "Good" is worth 0 points
//A "Boo" will subtract 4 points
//A "Miss" will subtract 8 points
//An "OK" (Successful Freeze step) will add 6 points
//A "NG" (Unsuccessful Freeze step) is worth 0 points
return GetNumTapNotes () * TapNoteScoreToDancePoints ( TNS_PERFECT ) +
GetNumHoldNotes () * HoldNoteScoreToDancePoints ( HNS_OK );
}
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void NoteData :: CropToLeftSide ()
{
int iFirstRightSideColumn = 4 ;
int iLastRightSideColumn = 7 ;
// clear out the right half
for ( int c = iFirstRightSideColumn ; c <= iLastRightSideColumn ; c ++ )
{
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for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ ) // foreach TapNote
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SetTapNote ( c , i , TAP_EMPTY );
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}
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for ( int i = GetNumHoldNotes () - 1 ; i >= 0 ; i -- ) // foreach HoldNote
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{
if ( c >= iFirstRightSideColumn )
{
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// delete this HoldNote
m_HoldNotes . erase ( m_HoldNotes . begin () + i , m_HoldNotes . begin () + i + 1 );
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}
}
}
void NoteData :: CropToRightSide ()
{
int iFirstRightSideColumn = 4 ;
int iLastRightSideColumn = 7 ;
int c ;
// clear out the left half
for ( c = 0 ; c < iFirstRightSideColumn ; c ++ )
{
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for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ ) // foreach TapNote
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SetTapNote ( c , i , TAP_EMPTY );
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}
// copy the right side into the left
for ( c = iFirstRightSideColumn ; c <= iLastRightSideColumn ; c ++ )
{
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for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ ) // foreach TapNote
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{
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SetTapNote ( c - 4 , i , GetTapNote ( c , i ));
SetTapNote ( c , i , TAP_EMPTY );
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}
}
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for ( int i = GetNumHoldNotes () - 1 ; i >= 0 ; i -- ) // foreach HoldNote
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{
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HoldNote & hn = GetHoldNote ( i );
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if ( hn . m_iTrack < iFirstRightSideColumn )
{
// delete this HoldNote by shifting everything down
RemoveHoldNote ( i );
}
else
{
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hn . m_iTrack -= 4 ;
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}
}
}
void NoteData :: RemoveHoldNotes ()
{
// turn all the HoldNotes into TapNotes
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for ( int i = 0 ; i < GetNumHoldNotes (); i ++ )
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{
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const HoldNote & hn = GetHoldNote ( i );
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int iIndex = BeatToNoteRow ( hn . m_fStartBeat );
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int iCol = hn . m_iTrack ;
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SetTapNote ( iCol , iIndex , TAP_TAP );
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}
// Remove all HoldNotes
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m_HoldNotes . clear ();
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}
void NoteData :: Turn ( PlayerOptions :: TurnType tt )
{
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int iTakeFromTrack [ MAX_NOTE_TRACKS ]; // New track "t" will take from old track iTakeFromTrack[t]
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int t ;
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switch ( tt )
{
case PlayerOptions :: TURN_NONE :
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return ; // nothing to do
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case PlayerOptions :: TURN_MIRROR :
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for ( t = 0 ; t < m_iNumTracks ; t ++ )
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iTakeFromTrack [ t ] = m_iNumTracks - t - 1 ;
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break ;
case PlayerOptions :: TURN_LEFT :
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case PlayerOptions :: TURN_RIGHT : // HACK: TurnRight does the same thing as TurnLeft. I'll fix this later...
// Chris: Handling each NotesType case is a terrible way to do this, but oh well...
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switch ( GAMESTATE -> GetCurrentStyleDef () -> m_NotesType )
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{
case NOTES_TYPE_DANCE_SINGLE :
case NOTES_TYPE_DANCE_DOUBLE :
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case NOTES_TYPE_DANCE_COUPLE :
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iTakeFromTrack [ 0 ] = 2 ;
iTakeFromTrack [ 1 ] = 0 ;
iTakeFromTrack [ 2 ] = 3 ;
iTakeFromTrack [ 3 ] = 1 ;
iTakeFromTrack [ 4 ] = 6 ;
iTakeFromTrack [ 5 ] = 4 ;
iTakeFromTrack [ 6 ] = 7 ;
iTakeFromTrack [ 7 ] = 5 ;
break ;
case NOTES_TYPE_DANCE_SOLO :
iTakeFromTrack [ 0 ] = 5 ;
iTakeFromTrack [ 1 ] = 4 ;
iTakeFromTrack [ 2 ] = 0 ;
iTakeFromTrack [ 3 ] = 3 ;
iTakeFromTrack [ 4 ] = 1 ;
iTakeFromTrack [ 5 ] = 2 ;
break ;
case NOTES_TYPE_PUMP_SINGLE :
case NOTES_TYPE_PUMP_DOUBLE :
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case NOTES_TYPE_PUMP_COUPLE :
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iTakeFromTrack [ 0 ] = 1 ;
iTakeFromTrack [ 1 ] = 3 ;
iTakeFromTrack [ 2 ] = 2 ;
iTakeFromTrack [ 3 ] = 4 ;
iTakeFromTrack [ 4 ] = 0 ;
iTakeFromTrack [ 5 ] = 6 ;
iTakeFromTrack [ 6 ] = 8 ;
iTakeFromTrack [ 7 ] = 7 ;
iTakeFromTrack [ 8 ] = 9 ;
iTakeFromTrack [ 9 ] = 5 ;
break ;
case NOTES_TYPE_EZ2_SINGLE :
case NOTES_TYPE_EZ2_DOUBLE :
case NOTES_TYPE_EZ2_REAL :
// identity transform. What should we do here?
iTakeFromTrack [ 0 ] = 0 ;
iTakeFromTrack [ 1 ] = 1 ;
iTakeFromTrack [ 2 ] = 2 ;
iTakeFromTrack [ 3 ] = 3 ;
iTakeFromTrack [ 4 ] = 4 ;
iTakeFromTrack [ 5 ] = 5 ;
iTakeFromTrack [ 6 ] = 6 ;
iTakeFromTrack [ 7 ] = 7 ;
iTakeFromTrack [ 8 ] = 8 ;
iTakeFromTrack [ 9 ] = 9 ;
iTakeFromTrack [ 10 ] = 10 ;
iTakeFromTrack [ 11 ] = 11 ;
break ;
}
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break ;
case PlayerOptions :: TURN_SHUFFLE :
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case PlayerOptions :: TURN_SUPER_SHUFFLE : // use this code to shuffle the HoldNotes
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{
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CArray < int , int > aiTracksLeftToMap ;
for ( t = 0 ; t < m_iNumTracks ; t ++ )
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aiTracksLeftToMap . push_back ( t );
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for ( t = 0 ; t < m_iNumTracks ; t ++ )
{
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int iRandTrackIndex = rand () % aiTracksLeftToMap . size ();
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int iRandTrack = aiTracksLeftToMap [ iRandTrackIndex ];
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aiTracksLeftToMap . erase ( aiTracksLeftToMap . begin () + iRandTrackIndex ,
aiTracksLeftToMap . begin () + iRandTrackIndex + 1 );
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iTakeFromTrack [ t ] = iRandTrack ;
}
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}
break ;
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// handle this below
break ;
default :
ASSERT ( 0 );
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}
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NoteData tempNoteData ; // write into here as we tranform
tempNoteData . m_iNumTracks = m_iNumTracks ;
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this -> ConvertHoldNotesTo2sAnd3s ();
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// transform notes
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for ( t = 0 ; t < m_iNumTracks ; t ++ )
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for ( int r = 0 ; r < MAX_TAP_NOTE_ROWS ; r ++ )
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tempNoteData . SetTapNote ( t , r , GetTapNote ( iTakeFromTrack [ t ], r ));
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this -> CopyAll ( & tempNoteData ); // copy note data from newData back into this
this -> Convert2sAnd3sToHoldNotes ();
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if ( tt == PlayerOptions :: TURN_SUPER_SHUFFLE )
{
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// We already did the normal shuffling code above, which did a good job
// of shuffling HoldNotes without creating impossible patterns.
// Now, go in and shuffle the TapNotes some more.
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// clear tempNoteData because we're going to use it as a scratch buffer again
tempNoteData . Init ();
tempNoteData . m_iNumTracks = this -> m_iNumTracks ;
// copy all HoldNotes before copying taps
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for ( int i = 0 ; i < this -> GetNumHoldNotes (); i ++ )
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tempNoteData . AddHoldNote ( this -> GetHoldNote ( i ) );
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this -> ConvertHoldNotesTo4s ();
for ( int r = 0 ; r <= this -> GetLastRow (); r ++ ) // foreach row
{
if ( this -> IsRowEmpty ( r ) )
continue ; // no need to super shuffle this row
// shuffle this row
CArray < int , int > aiTracksThatCouldHaveTapNotes ;
for ( t = 0 ; t < m_iNumTracks ; t ++ )
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if ( GetTapNote ( t , r ) != TAP_HOLD ) // any point that isn't part of a hold
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aiTracksThatCouldHaveTapNotes . push_back ( t );
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for ( t = 0 ; t < m_iNumTracks ; t ++ )
{
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if ( GetTapNote ( t , r ) != TAP_HOLD && GetTapNote ( t , r ) != TAP_EMPTY ) // there is a tap note here (and not a HoldNote)
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{
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int iRandIndex = rand () % aiTracksThatCouldHaveTapNotes . size ();
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int iTo = aiTracksThatCouldHaveTapNotes [ iRandIndex ];
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aiTracksThatCouldHaveTapNotes . erase ( aiTracksThatCouldHaveTapNotes . begin () + iRandIndex ,
aiTracksThatCouldHaveTapNotes . begin () + iRandIndex + 1 );
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tempNoteData . SetTapNote ( iTo , r , GetTapNote ( t , r ));
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}
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}
}
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this -> CopyAll ( & tempNoteData ); // copy note data from newData back into this
}
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}
void NoteData :: MakeLittle ()
{
// filter out all non-quarter notes
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for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ )
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{
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if ( i % ROWS_PER_BEAT != 0 )
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{
// filter out all non-quarter notes
for ( int c = 0 ; c < m_iNumTracks ; c ++ )
{
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SetTapNote ( c , i , TAP_EMPTY );
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}
}
}
// leave HoldNotes unchanged (what should be do with them?)
}
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/* ConvertHoldNotesTo2sAnd3s also clears m_iHoldNotes;
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* shouldn't this do likewise and set all 2/3's to 0?
* -glenn
2002-09-06 05:24:59 +00:00
*
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* Other code assumes != TAP_EMPTY means there's a tap note, so I changed
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* this to do this. -glenn
*
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* This code intentially leaves the TAP_HOLD_HEAD behind because a hold head is
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* treated exactly like a tap note for scoring purposes.
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*/
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void NoteData :: Convert2sAnd3sToHoldNotes ()
{
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// Any note will end a hold (not just a TAP_HOLD_TAIL). This makes parsing DWIs much easier.
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// Plus, allowing tap notes in the middle of a hold doesn't make sense!
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for ( int col = 0 ; col < m_iNumTracks ; col ++ ) // foreach column
{
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for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ ) // foreach TapNote element
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{
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if ( GetTapNote ( col , i ) != TAP_HOLD_HEAD ) // this is a HoldNote begin marker
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continue ;
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SetTapNote ( col , i , TAP_EMPTY );
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for ( int j = i + 1 ; j < MAX_TAP_NOTE_ROWS ; j ++ ) // search for end of HoldNote
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{
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// end hold on the next note we see
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if ( GetTapNote ( col , j ) == TAP_EMPTY )
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continue ;
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SetTapNote ( col , j , TAP_EMPTY );
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HoldNote hn = { col , NoteRowToBeat ( i ), NoteRowToBeat ( j ) };
AddHoldNote ( hn );
break ;
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}
}
}
}
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/* "102000301" ==
* "104444001" */
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void NoteData :: ConvertHoldNotesTo2sAnd3s ()
{
// copy HoldNotes into the new structure, but expand them into 2s and 3s
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for ( int i = 0 ; i < GetNumHoldNotes (); i ++ )
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{
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const HoldNote & hn = GetHoldNote ( i );
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int iHoldStartIndex = clamp ( BeatToNoteRow ( hn . m_fStartBeat ), 0 , MAX_TAP_NOTE_ROWS - 1 );
int iHoldEndIndex = clamp ( BeatToNoteRow ( hn . m_fEndBeat ), 0 , MAX_TAP_NOTE_ROWS - 1 );
/* If they're the same, then they got clamped together, so just ignore it. */
if ( iHoldStartIndex != iHoldEndIndex ) {
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SetTapNote ( hn . m_iTrack , iHoldStartIndex , TAP_HOLD_HEAD );
SetTapNote ( hn . m_iTrack , iHoldEndIndex , TAP_HOLD_TAIL );
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}
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}
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m_HoldNotes . clear ();
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}
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/* "104444001" ==
* "102000301"
*
* "4441" basically means "hold for three rows then hold for another tap";
* since taps don't really have a length, it's equivalent to "4440".
* So, make sure the character after a 4 is always a 0. */
void NoteData :: Convert4sToHoldNotes ()
{
for ( int col = 0 ; col < m_iNumTracks ; col ++ ) // foreach column
{
for ( int i = 0 ; i < MAX_TAP_NOTE_ROWS ; i ++ ) // foreach TapNote element
{
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if ( GetTapNote ( col , i ) != TAP_HOLD ) // this is a HoldNote body
2002-08-25 05:00:23 +00:00
continue ;
HoldNote hn = { col , NoteRowToBeat ( i ), 0 };
// search for end of HoldNote
do {
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SetTapNote ( col , i , TAP_EMPTY );
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i ++ ;
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} while ( GetTapNote ( col , i ) == TAP_HOLD );
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SetTapNote ( col , i , TAP_EMPTY );
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hn . m_fEndBeat = NoteRowToBeat ( i );
AddHoldNote ( hn );
}
}
}
void NoteData :: ConvertHoldNotesTo4s ()
{
// copy HoldNotes into the new structure, but expand them into 4s
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for ( int i = 0 ; i < GetNumHoldNotes (); i ++ )
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{
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const HoldNote & hn = GetHoldNote ( i );
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int iHoldStartIndex = clamp ( BeatToNoteRow ( hn . m_fStartBeat ), 0 , MAX_TAP_NOTE_ROWS );
int iHoldEndIndex = clamp ( BeatToNoteRow ( hn . m_fEndBeat ), 0 , MAX_TAP_NOTE_ROWS );
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for ( int j = iHoldStartIndex ; j < iHoldEndIndex ; ++ j )
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SetTapNote ( hn . m_iTrack , j , TAP_HOLD );
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}
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m_HoldNotes . clear ();
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}
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void NoteData :: SnapToNearestNoteType ( NoteType nt1 , NoteType nt2 , float fBeginBeat , float fEndBeat )
{
// nt2 is optional and should be -1 if it is not used
float fSnapInterval1 , fSnapInterval2 ;
switch ( nt1 )
{
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case NOTE_TYPE_4TH : fSnapInterval1 = 1 / 1.0f ; break ;
case NOTE_TYPE_8TH : fSnapInterval1 = 1 / 2.0f ; break ;
case NOTE_TYPE_12TH : fSnapInterval1 = 1 / 3.0f ; break ;
case NOTE_TYPE_16TH : fSnapInterval1 = 1 / 4.0f ; break ;
2002-09-07 10:31:07 +00:00
default : ASSERT ( false ); return ;
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}
switch ( nt2 )
{
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case NOTE_TYPE_4TH : fSnapInterval2 = 1 / 1.0f ; break ;
case NOTE_TYPE_8TH : fSnapInterval2 = 1 / 2.0f ; break ;
case NOTE_TYPE_12TH : fSnapInterval2 = 1 / 3.0f ; break ;
case NOTE_TYPE_16TH : fSnapInterval2 = 1 / 4.0f ; break ;
case - 1 : fSnapInterval2 = 10000 ; break ; // nothing will ever snap to this. That's what we want!
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default : ASSERT ( false ); return ;
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}
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int iNoteIndexBegin = BeatToNoteRow ( fBeginBeat );
int iNoteIndexEnd = BeatToNoteRow ( fEndBeat );
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//ConvertHoldNotesTo2sAnd3s();
// iterate over all TapNotes in the interval and snap them
for ( int i = iNoteIndexBegin ; i <= iNoteIndexEnd ; i ++ )
{
int iOldIndex = i ;
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float fOldBeat = NoteRowToBeat ( iOldIndex );
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float fNewBeat1 = froundf ( fOldBeat , fSnapInterval1 );
float fNewBeat2 = froundf ( fOldBeat , fSnapInterval2 );
bool bNewBeat1IsCloser = fabsf ( fNewBeat1 - fOldBeat ) < fabsf ( fNewBeat2 - fOldBeat );
float fNewBeat = bNewBeat1IsCloser ? fNewBeat1 : fNewBeat2 ;
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int iNewIndex = BeatToNoteRow ( fNewBeat );
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for ( int c = 0 ; c < m_iNumTracks ; c ++ )
{
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TapNote note = GetTapNote ( c , iOldIndex );
SetTapNote ( c , iOldIndex , TAP_EMPTY );
// HoldNotes override TapNotes
if ( GetTapNote ( c , iNewIndex ) == TAP_TAP )
note = TAP_HOLD_HEAD ;
SetTapNote ( c , iNewIndex , note );
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}
}
//Convert2sAnd3sToHoldNotes();
}
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float NoteData :: GetStreamRadarValue ( float fSongSeconds )
{
// density of steps
int iNumNotes = GetNumTapNotes () + GetNumHoldNotes ();
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float fNotesPerSecond = iNumNotes / fSongSeconds ;
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float fReturn = fNotesPerSecond / 7 ;
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return min ( fReturn , 1.0f );
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}
float NoteData :: GetVoltageRadarValue ( float fSongSeconds )
{
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float fAvgBPS = GetLastBeat () / fSongSeconds ;
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// peak density of steps
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float fMaxDensitySoFar = 0 ;
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2002-07-03 21:27:26 +00:00
const int BEAT_WINDOW = 8 ;
for ( int i = 0 ; i < MAX_BEATS ; i += BEAT_WINDOW )
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{
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int iNumNotesThisWindow = GetNumTapNotes (( float ) i ,( float ) i + BEAT_WINDOW ) + GetNumHoldNotes (( float ) i ,( float ) i + BEAT_WINDOW );
float fDensityThisWindow = iNumNotesThisWindow / ( float ) BEAT_WINDOW ;
fMaxDensitySoFar = max ( fMaxDensitySoFar , fDensityThisWindow );
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}
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float fReturn = fMaxDensitySoFar * fAvgBPS / 10 ;
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return min ( fReturn , 1.0f );
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}
float NoteData :: GetAirRadarValue ( float fSongSeconds )
{
// number of doubles
int iNumDoubles = GetNumDoubles ();
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float fReturn = iNumDoubles / fSongSeconds ;
return min ( fReturn , 1.0f );
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}
float NoteData :: GetChaosRadarValue ( float fSongSeconds )
{
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// count number of triplets or 16ths
2002-07-03 21:27:26 +00:00
int iNumChaosNotes = 0 ;
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for ( int r = 0 ; r < MAX_TAP_NOTE_ROWS ; r ++ )
{
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if ( ! IsRowEmpty ( r ) && GetNoteType ( r ) >= NOTE_TYPE_12TH )
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iNumChaosNotes ++ ;
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}
2002-07-04 21:05:18 +00:00
float fReturn = iNumChaosNotes / fSongSeconds * 0.5f ;
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return min ( fReturn , 1.0f );
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}
float NoteData :: GetFreezeRadarValue ( float fSongSeconds )
{
// number of hold steps
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float fReturn = GetNumHoldNotes () / fSongSeconds ;
return min ( fReturn , 1.0f );
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}
2002-08-25 19:00:12 +00:00
// -1 for iOriginalTracksToTakeFrom means no track
void NoteData :: LoadTransformed ( NoteData * pOriginal , int iNewNumTracks , const int iOriginalTrackToTakeFrom [] )
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{
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// reset all notes
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Init ();
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2002-10-20 19:34:17 +00:00
pOriginal -> ConvertHoldNotesTo4s ();
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m_iNumTracks = iNewNumTracks ;
// copy tracks
for ( int t = 0 ; t < m_iNumTracks ; t ++ )
{
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const int iOriginalTrack = iOriginalTrackToTakeFrom [ t ];
ASSERT ( iOriginalTrack < pOriginal -> m_iNumTracks );
if ( iOriginalTrack == - 1 )
continue ;
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m_TapNotes [ t ] = pOriginal -> m_TapNotes [ iOriginalTrack ];
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}
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pOriginal -> Convert4sToHoldNotes ();
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Convert4sToHoldNotes ();
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}
2002-06-24 22:04:31 +00:00
2002-10-05 14:47:03 +00:00
void NoteData :: LoadTransformedSlidingWindow ( NoteData * pOriginal , int iNewNumTracks )
{
2002-10-20 19:34:17 +00:00
// reset all notes
Init ();
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pOriginal -> ConvertHoldNotesTo4s ();
m_iNumTracks = iNewNumTracks ;
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int iCurTrackOffset = 0 ;
int iTrackOffsetMin = 0 ;
int iTrackOffsetMax = abs ( iNewNumTracks - pOriginal -> m_iNumTracks );
int bOffsetIncreasing = true ;
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int iLastRow = pOriginal -> GetLastRow ();
for ( int r = 0 ; r <= iLastRow ; r ++ )
{
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// copy notes in this measure
2002-10-18 19:01:32 +00:00
for ( int t = 0 ; t < pOriginal -> m_iNumTracks ; t ++ )
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{
int iOldTrack = t ;
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int iNewTrack = ( iOldTrack + iCurTrackOffset ) % iNewNumTracks ;
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if ( pOriginal -> GetTapNote ( iOldTrack , r ) != TAP_EMPTY )
this -> SetTapNote ( iNewTrack , r , pOriginal -> GetTapNote ( iOldTrack , r ));
2002-10-05 14:47:03 +00:00
}
2002-10-05 23:10:23 +00:00
if ( r % ( ROWS_PER_MEASURE * 4 ) == 0 ) // adjust sliding window every 4 measures
2002-10-05 14:47:03 +00:00
{
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// See if there is a hold crossing the beginning of this measure
bool bHoldCrossesThisMeasure = false ;
2002-10-11 20:51:12 +00:00
#if 0
pOriginal->Convert4sToHoldNotes();
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for( int i=0; i<pOriginal->GetNumHoldNotes(); i++ )
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{
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const HoldNote& hn = pOriginal->GEtHoldNote(i);
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/* Bug here: NoteRowToBeat() may have floating point error,
* so we need to do an epsilon here. But we can do this in
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* 4s easier anyway ... XXX -glenn */
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if( hn.m_fStartBeat < NoteRowToBeat(r) && hn.m_fEndBeat > NoteRowToBeat(r) )
{
bHoldCrossesThisMeasure = true;
break;
}
}
pOriginal->ConvertHoldNotesTo4s();
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#endif
if ( r )
for ( int t = 0 ; t <= pOriginal -> m_iNumTracks ; t ++ )
{
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if ( pOriginal -> GetTapNote ( t , r ) == TAP_HOLD &&
pOriginal -> GetTapNote ( t , r - 1 ) == TAP_HOLD )
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{
bHoldCrossesThisMeasure = true ;
break ;
}
}
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// adjust offset
if ( ! bHoldCrossesThisMeasure )
{
iCurTrackOffset += bOffsetIncreasing ? 1 : - 1 ;
if ( iCurTrackOffset == iTrackOffsetMin || iCurTrackOffset == iTrackOffsetMax )
bOffsetIncreasing ^= true ;
CLAMP ( iCurTrackOffset , iTrackOffsetMin , iTrackOffsetMax );
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}
}
}
pOriginal -> Convert4sToHoldNotes ();
Convert4sToHoldNotes ();
}
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NoteType NoteData :: GetSmallestNoteTypeForMeasure ( int iMeasureIndex )
{
const int iMeasureStartIndex = iMeasureIndex * ROWS_PER_MEASURE ;
const int iMeasureLastIndex = ( iMeasureIndex + 1 ) * ROWS_PER_MEASURE - 1 ;
// probe to find the smallest note type
NoteType nt ;
for ( nt = ( NoteType ) 0 ; nt < NUM_NOTE_TYPES ; nt = NoteType ( nt + 1 ) ) // for each NoteType, largest to largest
{
float fBeatSpacing = NoteTypeToBeat ( nt );
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int iRowSpacing = int ( roundf ( fBeatSpacing * ROWS_PER_BEAT ));
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bool bFoundSmallerNote = false ;
for ( int i = iMeasureStartIndex ; i <= iMeasureLastIndex ; i ++ ) // for each index in this measure
{
if ( i % iRowSpacing == 0 )
continue ; // skip
if ( ! IsRowEmpty ( i ) )
{
bFoundSmallerNote = true ;
break ;
}
}
if ( bFoundSmallerNote )
continue ; // searching the next NoteType
else
break ; // stop searching. We found the smallest NoteType
}
if ( nt == NUM_NOTE_TYPES ) // we didn't find one
return NOTE_TYPE_INVALID ; // well-formed notes created in the editor should never get here
else
return nt ;
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}
void NoteData :: PadTapNotes ( int rows )
{
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int needed = rows - m_TapNotes [ 0 ]. size () + 1 ;
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if ( needed < 0 ) return ;
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for ( int track = 0 ; track < m_iNumTracks ; ++ track )
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m_TapNotes [ track ]. insert ( m_TapNotes [ track ]. end (), needed , TAP_EMPTY );
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}
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void NoteData :: MoveTapNoteTrack ( int dest , int src )
{
if ( dest == src ) return ;
m_TapNotes [ dest ] = m_TapNotes [ src ];
m_TapNotes [ src ]. clear ();
}
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void NoteData :: SetTapNote ( int track , int row , TapNote t )
{
if ( row < 0 ) return ;
PadTapNotes ( row );
m_TapNotes [ track ][ row ] = t ;
}