", that.document[ 0 ] ).appendTo( element )
);
} else if ( nodeName === "tr" ) {
that._createTrPlaceholder( that.currentItem, element );
} else if ( nodeName === "img" ) {
element.attr( "src", that.currentItem.attr( "src" ) );
}
if ( !className ) {
element.css( "visibility", "hidden" );
}
return element;
},
update: function( container, p ) {
// 1. If a className is set as 'placeholder option, we don't force sizes -
// the class is responsible for that
// 2. The option 'forcePlaceholderSize can be enabled to force it even if a
// class name is specified
if ( className && !o.forcePlaceholderSize ) {
return;
}
// If the element doesn't have a actual height or width by itself (without
// styles coming from a stylesheet), it receives the inline height and width
// from the dragged item. Or, if it's a tbody or tr, it's going to have a height
// anyway since we're populating them with | s above, but they're unlikely to
// be the correct height on their own if the row heights are dynamic, so we'll
// always assign the height of the dragged item given forcePlaceholderSize
// is true.
if ( !p.height() || ( o.forcePlaceholderSize &&
( nodeName === "tbody" || nodeName === "tr" ) ) ) {
p.height(
that.currentItem.innerHeight() -
parseInt( that.currentItem.css( "paddingTop" ) || 0, 10 ) -
parseInt( that.currentItem.css( "paddingBottom" ) || 0, 10 ) );
}
if ( !p.width() ) {
p.width(
that.currentItem.innerWidth() -
parseInt( that.currentItem.css( "paddingLeft" ) || 0, 10 ) -
parseInt( that.currentItem.css( "paddingRight" ) || 0, 10 ) );
}
}
};
}
//Create the placeholder
that.placeholder = $( o.placeholder.element.call( that.element, that.currentItem ) );
//Append it after the actual current item
that.currentItem.after( that.placeholder );
//Update the size of the placeholder (TODO: Logic to fuzzy, see line 316/317)
o.placeholder.update( that, that.placeholder );
},
_createTrPlaceholder: function( sourceTr, targetTr ) {
var that = this;
sourceTr.children().each( function() {
$( " | | ", that.document[ 0 ] )
.attr( "colspan", $( this ).attr( "colspan" ) || 1 )
.appendTo( targetTr );
} );
},
_contactContainers: function( event ) {
var i, j, dist, itemWithLeastDistance, posProperty, sizeProperty, cur, nearBottom,
floating, axis,
innermostContainer = null,
innermostIndex = null;
// Get innermost container that intersects with item
for ( i = this.containers.length - 1; i >= 0; i-- ) {
// Never consider a container that's located within the item itself
if ( $.contains( this.currentItem[ 0 ], this.containers[ i ].element[ 0 ] ) ) {
continue;
}
if ( this._intersectsWith( this.containers[ i ].containerCache ) ) {
// If we've already found a container and it's more "inner" than this, then continue
if ( innermostContainer &&
$.contains(
this.containers[ i ].element[ 0 ],
innermostContainer.element[ 0 ] ) ) {
continue;
}
innermostContainer = this.containers[ i ];
innermostIndex = i;
} else {
// container doesn't intersect. trigger "out" event if necessary
if ( this.containers[ i ].containerCache.over ) {
this.containers[ i ]._trigger( "out", event, this._uiHash( this ) );
this.containers[ i ].containerCache.over = 0;
}
}
}
// If no intersecting containers found, return
if ( !innermostContainer ) {
return;
}
// Move the item into the container if it's not there already
if ( this.containers.length === 1 ) {
if ( !this.containers[ innermostIndex ].containerCache.over ) {
this.containers[ innermostIndex ]._trigger( "over", event, this._uiHash( this ) );
this.containers[ innermostIndex ].containerCache.over = 1;
}
} else {
// When entering a new container, we will find the item with the least distance and
// append our item near it
dist = 10000;
itemWithLeastDistance = null;
floating = innermostContainer.floating || this._isFloating( this.currentItem );
posProperty = floating ? "left" : "top";
sizeProperty = floating ? "width" : "height";
axis = floating ? "pageX" : "pageY";
for ( j = this.items.length - 1; j >= 0; j-- ) {
if ( !$.contains(
this.containers[ innermostIndex ].element[ 0 ], this.items[ j ].item[ 0 ] )
) {
continue;
}
if ( this.items[ j ].item[ 0 ] === this.currentItem[ 0 ] ) {
continue;
}
cur = this.items[ j ].item.offset()[ posProperty ];
nearBottom = false;
if ( event[ axis ] - cur > this.items[ j ][ sizeProperty ] / 2 ) {
nearBottom = true;
}
if ( Math.abs( event[ axis ] - cur ) < dist ) {
dist = Math.abs( event[ axis ] - cur );
itemWithLeastDistance = this.items[ j ];
this.direction = nearBottom ? "up" : "down";
}
}
//Check if dropOnEmpty is enabled
if ( !itemWithLeastDistance && !this.options.dropOnEmpty ) {
return;
}
if ( this.currentContainer === this.containers[ innermostIndex ] ) {
if ( !this.currentContainer.containerCache.over ) {
this.containers[ innermostIndex ]._trigger( "over", event, this._uiHash() );
this.currentContainer.containerCache.over = 1;
}
return;
}
if ( itemWithLeastDistance ) {
this._rearrange( event, itemWithLeastDistance, null, true );
} else {
this._rearrange( event, null, this.containers[ innermostIndex ].element, true );
}
this._trigger( "change", event, this._uiHash() );
this.containers[ innermostIndex ]._trigger( "change", event, this._uiHash( this ) );
this.currentContainer = this.containers[ innermostIndex ];
//Update the placeholder
this.options.placeholder.update( this.currentContainer, this.placeholder );
//Update scrollParent
this.scrollParent = this.placeholder.scrollParent();
//Update overflowOffset
if ( this.scrollParent[ 0 ] !== this.document[ 0 ] &&
this.scrollParent[ 0 ].tagName !== "HTML" ) {
this.overflowOffset = this.scrollParent.offset();
}
this.containers[ innermostIndex ]._trigger( "over", event, this._uiHash( this ) );
this.containers[ innermostIndex ].containerCache.over = 1;
}
},
_createHelper: function( event ) {
var o = this.options,
helper = typeof o.helper === "function" ?
$( o.helper.apply( this.element[ 0 ], [ event, this.currentItem ] ) ) :
( o.helper === "clone" ? this.currentItem.clone() : this.currentItem );
//Add the helper to the DOM if that didn't happen already
if ( !helper.parents( "body" ).length ) {
this.appendTo[ 0 ].appendChild( helper[ 0 ] );
}
if ( helper[ 0 ] === this.currentItem[ 0 ] ) {
this._storedCSS = {
width: this.currentItem[ 0 ].style.width,
height: this.currentItem[ 0 ].style.height,
position: this.currentItem.css( "position" ),
top: this.currentItem.css( "top" ),
left: this.currentItem.css( "left" )
};
}
if ( !helper[ 0 ].style.width || o.forceHelperSize ) {
helper.width( this.currentItem.width() );
}
if ( !helper[ 0 ].style.height || o.forceHelperSize ) {
helper.height( this.currentItem.height() );
}
return helper;
},
_adjustOffsetFromHelper: function( obj ) {
if ( typeof obj === "string" ) {
obj = obj.split( " " );
}
if ( Array.isArray( obj ) ) {
obj = { left: +obj[ 0 ], top: +obj[ 1 ] || 0 };
}
if ( "left" in obj ) {
this.offset.click.left = obj.left + this.margins.left;
}
if ( "right" in obj ) {
this.offset.click.left = this.helperProportions.width - obj.right + this.margins.left;
}
if ( "top" in obj ) {
this.offset.click.top = obj.top + this.margins.top;
}
if ( "bottom" in obj ) {
this.offset.click.top = this.helperProportions.height - obj.bottom + this.margins.top;
}
},
_getParentOffset: function() {
//Get the offsetParent and cache its position
this.offsetParent = this.helper.offsetParent();
var po = this.offsetParent.offset();
// This is a special case where we need to modify a offset calculated on start, since the
// following happened:
// 1. The position of the helper is absolute, so it's position is calculated based on the
// next positioned parent
// 2. The actual offset parent is a child of the scroll parent, and the scroll parent isn't
// the document, which means that the scroll is included in the initial calculation of the
// offset of the parent, and never recalculated upon drag
if ( this.cssPosition === "absolute" && this.scrollParent[ 0 ] !== this.document[ 0 ] &&
$.contains( this.scrollParent[ 0 ], this.offsetParent[ 0 ] ) ) {
po.left += this.scrollParent.scrollLeft();
po.top += this.scrollParent.scrollTop();
}
// This needs to be actually done for all browsers, since pageX/pageY includes this
// information with an ugly IE fix
if ( this.offsetParent[ 0 ] === this.document[ 0 ].body ||
( this.offsetParent[ 0 ].tagName &&
this.offsetParent[ 0 ].tagName.toLowerCase() === "html" && $.ui.ie ) ) {
po = { top: 0, left: 0 };
}
return {
top: po.top + ( parseInt( this.offsetParent.css( "borderTopWidth" ), 10 ) || 0 ),
left: po.left + ( parseInt( this.offsetParent.css( "borderLeftWidth" ), 10 ) || 0 )
};
},
_getRelativeOffset: function() {
if ( this.cssPosition === "relative" ) {
var p = this.currentItem.position();
return {
top: p.top - ( parseInt( this.helper.css( "top" ), 10 ) || 0 ) +
this.scrollParent.scrollTop(),
left: p.left - ( parseInt( this.helper.css( "left" ), 10 ) || 0 ) +
this.scrollParent.scrollLeft()
};
} else {
return { top: 0, left: 0 };
}
},
_cacheMargins: function() {
this.margins = {
left: ( parseInt( this.currentItem.css( "marginLeft" ), 10 ) || 0 ),
top: ( parseInt( this.currentItem.css( "marginTop" ), 10 ) || 0 )
};
},
_cacheHelperProportions: function() {
this.helperProportions = {
width: this.helper.outerWidth(),
height: this.helper.outerHeight()
};
},
_setContainment: function() {
var ce, co, over,
o = this.options;
if ( o.containment === "parent" ) {
o.containment = this.helper[ 0 ].parentNode;
}
if ( o.containment === "document" || o.containment === "window" ) {
this.containment = [
0 - this.offset.relative.left - this.offset.parent.left,
0 - this.offset.relative.top - this.offset.parent.top,
o.containment === "document" ?
this.document.width() :
this.window.width() - this.helperProportions.width - this.margins.left,
( o.containment === "document" ?
( this.document.height() || document.body.parentNode.scrollHeight ) :
this.window.height() || this.document[ 0 ].body.parentNode.scrollHeight
) - this.helperProportions.height - this.margins.top
];
}
if ( !( /^(document|window|parent)$/ ).test( o.containment ) ) {
ce = $( o.containment )[ 0 ];
co = $( o.containment ).offset();
over = ( $( ce ).css( "overflow" ) !== "hidden" );
this.containment = [
co.left + ( parseInt( $( ce ).css( "borderLeftWidth" ), 10 ) || 0 ) +
( parseInt( $( ce ).css( "paddingLeft" ), 10 ) || 0 ) - this.margins.left,
co.top + ( parseInt( $( ce ).css( "borderTopWidth" ), 10 ) || 0 ) +
( parseInt( $( ce ).css( "paddingTop" ), 10 ) || 0 ) - this.margins.top,
co.left + ( over ? Math.max( ce.scrollWidth, ce.offsetWidth ) : ce.offsetWidth ) -
( parseInt( $( ce ).css( "borderLeftWidth" ), 10 ) || 0 ) -
( parseInt( $( ce ).css( "paddingRight" ), 10 ) || 0 ) -
this.helperProportions.width - this.margins.left,
co.top + ( over ? Math.max( ce.scrollHeight, ce.offsetHeight ) : ce.offsetHeight ) -
( parseInt( $( ce ).css( "borderTopWidth" ), 10 ) || 0 ) -
( parseInt( $( ce ).css( "paddingBottom" ), 10 ) || 0 ) -
this.helperProportions.height - this.margins.top
];
}
},
_convertPositionTo: function( d, pos ) {
if ( !pos ) {
pos = this.position;
}
var mod = d === "absolute" ? 1 : -1,
scroll = this.cssPosition === "absolute" &&
!( this.scrollParent[ 0 ] !== this.document[ 0 ] &&
$.contains( this.scrollParent[ 0 ], this.offsetParent[ 0 ] ) ) ?
this.offsetParent :
this.scrollParent,
scrollIsRootNode = ( /(html|body)/i ).test( scroll[ 0 ].tagName );
return {
top: (
// The absolute mouse position
pos.top +
// Only for relative positioned nodes: Relative offset from element to offset parent
this.offset.relative.top * mod +
// The offsetParent's offset without borders (offset + border)
this.offset.parent.top * mod -
( ( this.cssPosition === "fixed" ?
-this.scrollParent.scrollTop() :
( scrollIsRootNode ? 0 : scroll.scrollTop() ) ) * mod )
),
left: (
// The absolute mouse position
pos.left +
// Only for relative positioned nodes: Relative offset from element to offset parent
this.offset.relative.left * mod +
// The offsetParent's offset without borders (offset + border)
this.offset.parent.left * mod -
( ( this.cssPosition === "fixed" ?
-this.scrollParent.scrollLeft() : scrollIsRootNode ? 0 :
scroll.scrollLeft() ) * mod )
)
};
},
_generatePosition: function( event ) {
var top, left,
o = this.options,
pageX = event.pageX,
pageY = event.pageY,
scroll = this.cssPosition === "absolute" &&
!( this.scrollParent[ 0 ] !== this.document[ 0 ] &&
$.contains( this.scrollParent[ 0 ], this.offsetParent[ 0 ] ) ) ?
this.offsetParent :
this.scrollParent,
scrollIsRootNode = ( /(html|body)/i ).test( scroll[ 0 ].tagName );
// This is another very weird special case that only happens for relative elements:
// 1. If the css position is relative
// 2. and the scroll parent is the document or similar to the offset parent
// we have to refresh the relative offset during the scroll so there are no jumps
if ( this.cssPosition === "relative" && !( this.scrollParent[ 0 ] !== this.document[ 0 ] &&
this.scrollParent[ 0 ] !== this.offsetParent[ 0 ] ) ) {
this.offset.relative = this._getRelativeOffset();
}
/*
* - Position constraining -
* Constrain the position to a mix of grid, containment.
*/
if ( this.originalPosition ) { //If we are not dragging yet, we won't check for options
if ( this.containment ) {
if ( event.pageX - this.offset.click.left < this.containment[ 0 ] ) {
pageX = this.containment[ 0 ] + this.offset.click.left;
}
if ( event.pageY - this.offset.click.top < this.containment[ 1 ] ) {
pageY = this.containment[ 1 ] + this.offset.click.top;
}
if ( event.pageX - this.offset.click.left > this.containment[ 2 ] ) {
pageX = this.containment[ 2 ] + this.offset.click.left;
}
if ( event.pageY - this.offset.click.top > this.containment[ 3 ] ) {
pageY = this.containment[ 3 ] + this.offset.click.top;
}
}
if ( o.grid ) {
top = this.originalPageY + Math.round( ( pageY - this.originalPageY ) /
o.grid[ 1 ] ) * o.grid[ 1 ];
pageY = this.containment ?
( ( top - this.offset.click.top >= this.containment[ 1 ] &&
top - this.offset.click.top <= this.containment[ 3 ] ) ?
top :
( ( top - this.offset.click.top >= this.containment[ 1 ] ) ?
top - o.grid[ 1 ] : top + o.grid[ 1 ] ) ) :
top;
left = this.originalPageX + Math.round( ( pageX - this.originalPageX ) /
o.grid[ 0 ] ) * o.grid[ 0 ];
pageX = this.containment ?
( ( left - this.offset.click.left >= this.containment[ 0 ] &&
left - this.offset.click.left <= this.containment[ 2 ] ) ?
left :
( ( left - this.offset.click.left >= this.containment[ 0 ] ) ?
left - o.grid[ 0 ] : left + o.grid[ 0 ] ) ) :
left;
}
}
return {
top: (
// The absolute mouse position
pageY -
// Click offset (relative to the element)
this.offset.click.top -
// Only for relative positioned nodes: Relative offset from element to offset parent
this.offset.relative.top -
// The offsetParent's offset without borders (offset + border)
this.offset.parent.top +
( ( this.cssPosition === "fixed" ?
-this.scrollParent.scrollTop() :
( scrollIsRootNode ? 0 : scroll.scrollTop() ) ) )
),
left: (
// The absolute mouse position
pageX -
// Click offset (relative to the element)
this.offset.click.left -
// Only for relative positioned nodes: Relative offset from element to offset parent
this.offset.relative.left -
// The offsetParent's offset without borders (offset + border)
this.offset.parent.left +
( ( this.cssPosition === "fixed" ?
-this.scrollParent.scrollLeft() :
scrollIsRootNode ? 0 : scroll.scrollLeft() ) )
)
};
},
_rearrange: function( event, i, a, hardRefresh ) {
if ( a ) {
a[ 0 ].appendChild( this.placeholder[ 0 ] );
} else {
i.item[ 0 ].parentNode.insertBefore( this.placeholder[ 0 ],
( this.direction === "down" ? i.item[ 0 ] : i.item[ 0 ].nextSibling ) );
}
//Various things done here to improve the performance:
// 1. we create a setTimeout, that calls refreshPositions
// 2. on the instance, we have a counter variable, that get's higher after every append
// 3. on the local scope, we copy the counter variable, and check in the timeout,
// if it's still the same
// 4. this lets only the last addition to the timeout stack through
this.counter = this.counter ? ++this.counter : 1;
var counter = this.counter;
this._delay( function() {
if ( counter === this.counter ) {
//Precompute after each DOM insertion, NOT on mousemove
this.refreshPositions( !hardRefresh );
}
} );
},
_clear: function( event, noPropagation ) {
this.reverting = false;
// We delay all events that have to be triggered to after the point where the placeholder
// has been removed and everything else normalized again
var i,
delayedTriggers = [];
// We first have to update the dom position of the actual currentItem
// Note: don't do it if the current item is already removed (by a user), or it gets
// reappended (see #4088)
if ( !this._noFinalSort && this.currentItem.parent().length ) {
this.placeholder.before( this.currentItem );
}
this._noFinalSort = null;
if ( this.helper[ 0 ] === this.currentItem[ 0 ] ) {
for ( i in this._storedCSS ) {
if ( this._storedCSS[ i ] === "auto" || this._storedCSS[ i ] === "static" ) {
this._storedCSS[ i ] = "";
}
}
this.currentItem.css( this._storedCSS );
this._removeClass( this.currentItem, "ui-sortable-helper" );
} else {
this.currentItem.show();
}
if ( this.fromOutside && !noPropagation ) {
delayedTriggers.push( function( event ) {
this._trigger( "receive", event, this._uiHash( this.fromOutside ) );
} );
}
if ( ( this.fromOutside ||
this.domPosition.prev !==
this.currentItem.prev().not( ".ui-sortable-helper" )[ 0 ] ||
this.domPosition.parent !== this.currentItem.parent()[ 0 ] ) && !noPropagation ) {
// Trigger update callback if the DOM position has changed
delayedTriggers.push( function( event ) {
this._trigger( "update", event, this._uiHash() );
} );
}
// Check if the items Container has Changed and trigger appropriate
// events.
if ( this !== this.currentContainer ) {
if ( !noPropagation ) {
delayedTriggers.push( function( event ) {
this._trigger( "remove", event, this._uiHash() );
} );
delayedTriggers.push( ( function( c ) {
return function( event ) {
c._trigger( "receive", event, this._uiHash( this ) );
};
} ).call( this, this.currentContainer ) );
delayedTriggers.push( ( function( c ) {
return function( event ) {
c._trigger( "update", event, this._uiHash( this ) );
};
} ).call( this, this.currentContainer ) );
}
}
//Post events to containers
function delayEvent( type, instance, container ) {
return function( event ) {
container._trigger( type, event, instance._uiHash( instance ) );
};
}
for ( i = this.containers.length - 1; i >= 0; i-- ) {
if ( !noPropagation ) {
delayedTriggers.push( delayEvent( "deactivate", this, this.containers[ i ] ) );
}
if ( this.containers[ i ].containerCache.over ) {
delayedTriggers.push( delayEvent( "out", this, this.containers[ i ] ) );
this.containers[ i ].containerCache.over = 0;
}
}
//Do what was originally in plugins
if ( this.storedCursor ) {
this.document.find( "body" ).css( "cursor", this.storedCursor );
this.storedStylesheet.remove();
}
if ( this._storedOpacity ) {
this.helper.css( "opacity", this._storedOpacity );
}
if ( this._storedZIndex ) {
this.helper.css( "zIndex", this._storedZIndex === "auto" ? "" : this._storedZIndex );
}
this.dragging = false;
if ( !noPropagation ) {
this._trigger( "beforeStop", event, this._uiHash() );
}
//$(this.placeholder[0]).remove(); would have been the jQuery way - unfortunately,
// it unbinds ALL events from the original node!
this.placeholder[ 0 ].parentNode.removeChild( this.placeholder[ 0 ] );
if ( !this.cancelHelperRemoval ) {
if ( this.helper[ 0 ] !== this.currentItem[ 0 ] ) {
this.helper.remove();
}
this.helper = null;
}
if ( !noPropagation ) {
for ( i = 0; i < delayedTriggers.length; i++ ) {
// Trigger all delayed events
delayedTriggers[ i ].call( this, event );
}
this._trigger( "stop", event, this._uiHash() );
}
this.fromOutside = false;
return !this.cancelHelperRemoval;
},
_trigger: function() {
if ( $.Widget.prototype._trigger.apply( this, arguments ) === false ) {
this.cancel();
}
},
_uiHash: function( _inst ) {
var inst = _inst || this;
return {
helper: inst.helper,
placeholder: inst.placeholder || $( [] ),
position: inst.position,
originalPosition: inst.originalPosition,
offset: inst.positionAbs,
item: inst.currentItem,
sender: _inst ? _inst.element : null
};
}
} );
} );