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/*! * VisualEditor ContentEditable TableNode class. * * @copyright 2011-2016 VisualEditor Team and others; see AUTHORS.txt * @license The MIT License (MIT); see LICENSE.txt */ /** * Table action. * * @class * @extends ve.ui.Action * * @constructor * @param {ve.ui.Surface} surface Surface to act on */ ve.ui.TableAction = function VeUiTableAction() { // Parent constructor ve.ui.TableAction.super.apply( this, arguments ); }; /* Inheritance */ OO.inheritClass( ve.ui.TableAction, ve.ui.Action ); /* Static Properties */ ve.ui.TableAction.static.name = 'table'; /** * List of allowed methods for the action. * * @static * @property */ ve.ui.TableAction.static.methods = [ 'create', 'insert', 'moveRelative', 'move', 'delete', 'importTable', 'changeCellStyle', 'mergeCells', 'enterTableCell' ]; /* Methods */ /** * Creates a new table. * * @param {Object} [options] Table creation options * @param {boolean} [options.header] Include a header row * @param {number} [options.cols=4] Number of columns * @param {number} [options.rows=3] Number of rows (not including optional header row) * @param {Object} [options.type='table'] Table node type, must inherit from table * @param {Object} [options.attributes] Attributes to give the table * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.create = function ( options ) { var i, type, tableElement, surfaceModel, fragment, data, numberOfCols, numberOfRows; options = options || {}; type = options.type || 'table'; tableElement = { type: type }; surfaceModel = this.surface.getModel(); fragment = surfaceModel.getFragment(); data = []; numberOfCols = options.cols || 4; numberOfRows = options.rows || 3; if ( !( fragment.getSelection() instanceof ve.dm.LinearSelection ) ) { return false; } if ( options.attributes ) { tableElement.attributes = ve.copy( options.attributes ); } data.push( tableElement ); data.push( { type: 'tableSection', attributes: { style: 'body' } } ); if ( options.header ) { data = data.concat( ve.dm.TableRowNode.static.createData( { style: 'header', cellCount: numberOfCols } ) ); } for ( i = 0; i < numberOfRows; i++ ) { data = data.concat( ve.dm.TableRowNode.static.createData( { style: 'data', cellCount: numberOfCols } ) ); } data.push( { type: '/tableSection' } ); data.push( { type: '/' + type } ); fragment.insertContent( data, false ); surfaceModel.setSelection( new ve.dm.TableSelection( fragment.getDocument(), fragment.getSelection().getRange(), 0, 0, 0, 0 ) ); return true; }; /** * Inserts a new row or column into the currently focused table. * * @param {string} mode Insertion mode; 'row' to insert a new row, 'col' for a new column * @param {string} position Insertion position; 'before' to insert before the current selection, * 'after' to insert after it * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.insert = function ( mode, position ) { var index, surfaceModel = this.surface.getModel(), selection = surfaceModel.getSelection(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } if ( mode === 'col' ) { index = position === 'before' ? selection.startCol : selection.endCol; } else { index = position === 'before' ? selection.startRow : selection.endRow; } if ( position === 'before' ) { if ( mode === 'col' ) { selection = selection.newFromAdjustment( 1, 0 ); } else { selection = selection.newFromAdjustment( 0, 1 ); } surfaceModel.setSelection( selection ); } this.insertRowOrCol( selection.getTableNode(), mode, index, position, selection ); return true; }; /** * Move a column or row relative to its current position * * @param {string} mode Move mode; 'col' or 'row' * @param {string} direction Direction; 'before' or 'after' * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.moveRelative = function ( mode, direction ) { var index, surfaceModel = this.surface.getModel(), selection = surfaceModel.getSelection(), matrix = selection.getTableNode().getMatrix(); if ( mode === 'row' ) { if ( direction === 'before' ) { index = Math.max( 0, selection.startRow - 1 ); } else { index = Math.min( matrix.getRowCount(), selection.endRow + 2 ); } } else { if ( direction === 'before' ) { index = Math.max( 0, selection.startCol - 1 ); } else { index = Math.min( matrix.getMaxColCount(), selection.endCol + 2 ); } } return this.move( mode, index ); }; /** * Move a column or row. * * @param {string} mode Move mode; 'col' or 'row' * @param {string} index Row or column index to move to * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.move = function ( mode, index ) { var i, removedMatrix, position, newOffsets, surfaceModel = this.surface.getModel(), selection = surfaceModel.getSelection(), tableNode = selection.getTableNode(), matrix = tableNode.getMatrix(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } if ( mode === 'row' ) { removedMatrix = this.deleteRowsOrColumns( matrix, mode, selection.startRow, selection.endRow ); if ( index > selection.endRow ) { index = index - selection.getRowCount(); } newOffsets = [ selection.fromCol, index, selection.toCol, index + selection.getRowCount() - 1 ]; } else { removedMatrix = this.deleteRowsOrColumns( matrix, mode, selection.startCol, selection.endCol ); if ( index > selection.endCol ) { index = index - selection.getColCount(); } newOffsets = [ index, selection.fromRow, index + selection.getColCount() - 1, selection.toRow ]; } if ( index === 0 ) { position = 'before'; } else { index--; position = 'after'; } for ( i = removedMatrix.length - 1; i >= 0; i-- ) { this.insertRowOrCol( tableNode, mode, index, position, null, removedMatrix[ i ] ); } // Only set selection once for performance surfaceModel.setSelection( new ve.dm.TableSelection( selection.getDocument(), // table node range was changed by deletion tableNode.getOuterRange(), newOffsets[ 0 ], newOffsets[ 1 ], newOffsets[ 2 ], newOffsets[ 3 ] ) ); return true; }; /** * Deletes selected rows, columns, or the whole table. * * @param {string} mode Deletion mode; 'row' to delete rows, 'col' for columns, 'table' to remove the whole table * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.delete = function ( mode ) { var tableNode, minIndex, maxIndex, isFull, selection = this.surface.getModel().getSelection(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } tableNode = selection.getTableNode(); // Either delete the table or rows or columns if ( mode === 'table' ) { this.deleteTable( tableNode ); } else { if ( mode === 'col' ) { minIndex = selection.startCol; maxIndex = selection.endCol; isFull = selection.isFullRow(); } else { minIndex = selection.startRow; maxIndex = selection.endRow; isFull = selection.isFullCol(); } // delete the whole table if all rows or cols get deleted if ( isFull ) { this.deleteTable( tableNode ); } else { this.deleteRowsOrColumns( tableNode.matrix, mode, minIndex, maxIndex ); } } return true; }; /** * Import a table at the current selection, overwriting data cell by cell * * @param {ve.dm.TableNode} importedTableNode Table node to import * @param {boolean} importInternalList Import the table document's internalLiist * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.importTable = function ( importedTableNode, importInternalList ) { var i, l, row, col, cell, importedCell, cellRange, txs, importedMatrix = importedTableNode.getMatrix(), surfaceModel = this.surface.getModel(), documentModel = surfaceModel.getDocument(), selection = surfaceModel.getSelection(), tableNode = selection.getTableNode(), matrix = tableNode.getMatrix(); // Increase size of table to fit imported table for ( i = 0, l = selection.startRow + importedMatrix.getRowCount() - matrix.getRowCount(); i < l; i++ ) { this.insertRowOrCol( tableNode, 'row', matrix.getRowCount() - 1, 'after' ); } for ( i = 0, l = selection.startCol + importedMatrix.getMaxColCount() - matrix.getMaxColCount(); i < l; i++ ) { this.insertRowOrCol( tableNode, 'col', matrix.getMaxColCount() - 1, 'after' ); } // Unmerge all cells in the target area for ( row = importedMatrix.getRowCount() - 1; row >= 0; row-- ) { for ( col = importedMatrix.getColCount( row ) - 1; col >= 0; col-- ) { cell = matrix.getCell( selection.fromRow + row, selection.fromCol + col ); if ( cell.isPlaceholder() || cell.node.getColspan() > 1 || cell.node.getRowspan() > 1 ) { this.unmergeCell( matrix, cell.owner ); } } } // Overwrite data for ( row = importedMatrix.getRowCount() - 1; row >= 0; row-- ) { for ( col = importedMatrix.getColCount( row ) - 1; col >= 0; col-- ) { cell = matrix.getCell( selection.fromRow + row, selection.fromCol + col ); cellRange = cell.node.getRange(); importedCell = importedMatrix.getCell( row, col ); if ( !importedCell.isPlaceholder() ) { // Remove the existing cell contents surfaceModel.change( ve.dm.Transaction.newFromRemoval( documentModel, cellRange ) ); // Attribute changes are performed separately, and removing the whole // cell could change the dimensions of the table txs = [ ve.dm.Transaction.newFromAttributeChanges( documentModel, cellRange.start - 1, ve.copy( importedCell.node.element.attributes ) ) ]; if ( importInternalList ) { txs.push( ve.dm.Transaction.newFromDocumentInsertion( documentModel, cellRange.start, importedTableNode.getDocument(), importedCell.node.getRange() ) ); } else { txs.push( ve.dm.Transaction.newFromInsertion( documentModel, cellRange.start, importedTableNode.getDocument().getData( importedCell.node.getRange() ) ) ); } // Perform the insertion as a separate change so the internalList offsets are correct surfaceModel.change( txs ); } else { // Remove the existing cell completely surfaceModel.change( ve.dm.Transaction.newFromRemoval( documentModel, cell.node.getOuterRange() ) ); } } } surfaceModel.setSelection( new ve.dm.TableSelection( documentModel, tableNode.getOuterRange(), selection.startCol, selection.startRow, selection.startCol + importedMatrix.getMaxColCount() - 1, selection.startRow + importedMatrix.getRowCount() - 1 ) ); return true; }; /** * Change cell style * * @param {string} style Cell style; 'header' or 'data' * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.changeCellStyle = function ( style ) { var i, ranges, txs = [], surfaceModel = this.surface.getModel(), selection = surfaceModel.getSelection(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } ranges = selection.getOuterRanges(); for ( i = ranges.length - 1; i >= 0; i-- ) { txs.push( ve.dm.Transaction.newFromAttributeChanges( surfaceModel.getDocument(), ranges[ i ].start, { style: style } ) ); } surfaceModel.change( txs ); return true; }; /** * Merge multiple cells into one, or split a merged cell. * * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.mergeCells = function () { var i, l, r, c, cell, cells, hasNonPlaceholders, contentData, txs = [], surfaceModel = this.surface.getModel(), documentModel = surfaceModel.getDocument(), selection = surfaceModel.getSelection(), matrix = selection.getTableNode().getMatrix(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } if ( selection.isSingleCell() ) { // Split cells = selection.getMatrixCells(); this.unmergeCell( matrix, cells[ 0 ] ); } else { // Merge if ( !selection.isMergeable() ) { return false; } cells = selection.getMatrixCells(); txs.push( ve.dm.Transaction.newFromAttributeChanges( documentModel, cells[ 0 ].node.getOuterRange().start, { colspan: 1 + selection.endCol - selection.startCol, rowspan: 1 + selection.endRow - selection.startRow } ) ); // Find first cell with content for ( i = 0, l = cells.length; i < l; i++ ) { contentData = new ve.dm.ElementLinearData( documentModel.getStore(), documentModel.getData( cells[ i ].node.getRange() ) ); if ( contentData.hasContent() ) { // If the first cell contains content, we don't need to move any content if ( !i ) { contentData = null; } break; } } // Remove placeholders for ( i = cells.length - 1; i >= 1; i-- ) { txs.push( ve.dm.Transaction.newFromRemoval( documentModel, cells[ i ].node.getOuterRange() ) ); } // Move the first-found content to the merged cell if ( contentData ) { txs.push( ve.dm.Transaction.newFromReplacement( documentModel, cells[ 0 ].node.getRange(), contentData.data ) ); } surfaceModel.change( txs ); // Check for rows filled with entirely placeholders. If such a row exists, delete it. for ( r = selection.endRow; r >= selection.startRow; r-- ) { hasNonPlaceholders = false; for ( c = 0; ( cell = matrix.getCell( r, c ) ) !== undefined; c++ ) { if ( cell && !cell.isPlaceholder() ) { hasNonPlaceholders = true; break; } } if ( !hasNonPlaceholders ) { this.deleteRowsOrColumns( matrix, 'row', r, r ); } } // Check for columns filled with entirely placeholders. If such a column exists, delete it. for ( c = selection.endCol; c >= selection.startCol; c-- ) { hasNonPlaceholders = false; for ( r = 0; ( cell = matrix.getCell( r, c ) ) !== undefined; r++ ) { if ( cell && !cell.isPlaceholder() ) { hasNonPlaceholders = true; break; } } if ( !hasNonPlaceholders ) { this.deleteRowsOrColumns( matrix, 'col', c, c ); } } } return true; }; /** * Enter a table cell for editing * * @return {boolean} Action was executed */ ve.ui.TableAction.prototype.enterTableCell = function () { var tableNode, selection = this.surface.getModel().getSelection(); if ( !( selection instanceof ve.dm.TableSelection ) ) { return false; } tableNode = this.surface.getView().documentView.getBranchNodeFromOffset( selection.tableRange.start + 1 ); tableNode.setEditing( true ); this.surface.getView().focus(); return true; }; /* Low-level API */ // TODO: This API does only depends on the model so it should possibly be moved /** * Deletes a whole table. * * @param {ve.dm.TableNode} tableNode Table node */ ve.ui.TableAction.prototype.deleteTable = function ( tableNode ) { this.surface.getModel().getLinearFragment( tableNode.getOuterRange() ).delete(); }; /** * Unmerge a cell * * @param {ve.dm.TableMatrix} matrix Table matrix the cell is in * @param {ve.dm.TableMatrixCell} ownerCell The cell to unmerge */ ve.ui.TableAction.prototype.unmergeCell = function ( matrix, ownerCell ) { var col, row, cell, txs = [], colspan = ownerCell.node.getColspan(), rowspan = ownerCell.node.getRowspan(), surfaceModel = this.surface.getModel(), documentModel = surfaceModel.getDocument(); txs.push( ve.dm.Transaction.newFromAttributeChanges( documentModel, ownerCell.node.getOuterRange().start, { colspan: 1, rowspan: 1 } ) ); for ( row = ownerCell.row + rowspan - 1; row >= ownerCell.row; row-- ) { for ( col = ownerCell.col + colspan - 1; col >= ownerCell.col; col-- ) { cell = matrix.getCell( row, col ); if ( cell.isPlaceholder() ) { txs.push( this.replacePlaceholder( matrix, cell, { style: ownerCell.node.getStyle() } ) ); } } } surfaceModel.change( txs ); }; /** * Inserts a new row or column. * * Example: a new row can be inserted after the 2nd row using * * insertRowOrCol( table, 'row', 1, 'after' ); * * @param {ve.dm.TableNode} tableNode Table node * @param {string} mode Insertion mode; 'row' or 'col' * @param {number} index Row or column index of the base row or column. * @param {string} position Insertion position; 'before' or 'after' * @param {ve.dm.TableSelection} [selection] Selection to move to after insertion * @param {Object} [dataMatrixLine] Data to insert * @param {Array} [dataMatrixLine.rowData] Row data if inserting a row * @param {ve.dm.TableMatrixCell[]} [dataMatrixLine.cells] Table cells to insert */ ve.ui.TableAction.prototype.insertRowOrCol = function ( tableNode, mode, index, position, selection, dataMatrixLine ) { var refIndex, cells, refCells, before, cellData, offset, range, i, l, cell, refCell, style, matrix = tableNode.matrix, insertCells = [], insertData = [], txs = [], updated = {}, inserts = [], surfaceModel = this.surface.getModel(); before = position === 'before'; // Note: when we insert a new row (or column) we might need to increment a span property // instead of inserting a new cell. // To achieve this we look at the so called base row and a so called reference row. // The base row is the one after or before which the new row will be inserted. // The reference row is the one which is currently at the place of the new one. // E.g. consider inserting a new row after the second: the base row is the second, the // reference row is the third. // A span must be increased if the base cell and the reference cell have the same 'owner'. // E.g.: C* | P**; C | P* | P**, i.e., one of the two cells might be the owner of the other, // or vice versa, or both a placeholders of a common cell. // The index of the reference row or column refIndex = index + ( before ? -1 : 1 ); // cells of the selected row or column if ( mode === 'row' ) { cells = matrix.getRow( index ) || []; refCells = matrix.getRow( refIndex ) || []; } else { cells = matrix.getColumn( index ) || []; refCells = matrix.getColumn( refIndex ) || []; } for ( i = 0, l = Math.max( cells.length, dataMatrixLine ? dataMatrixLine.cells.length : 0 ); i < l; i++ ) { cell = cells[ i ]; if ( !cell ) { insertCells.push( dataMatrixLine.cells[ i ] ); continue; } refCell = refCells[ i ]; // Detect if span update is necessary if ( refCell && ( cell.isPlaceholder() || refCell.isPlaceholder() ) ) { if ( cell.node === refCell.node ) { cell = cell.owner || cell; if ( !updated[ cell.key ] ) { // Note: we can safely record span modifications as they do not affect range offsets. txs.push( this.incrementSpan( cell, mode ) ); updated[ cell.key ] = true; } // Resolve merged cell conflicts when moving if ( dataMatrixLine && dataMatrixLine.cells[ i ].owner.data && !dataMatrixLine.cells[ i ].owner.conflicted ) { if ( dataMatrixLine.cells[ i ].isPlaceholder() ) { // If placeholders conflict, collapse their owners dataMatrixLine.cells[ i ].owner.data[ 0 ].attributes.colspan = 1; dataMatrixLine.cells[ i ].owner.data[ 0 ].attributes.rowspan = 1; } // Mark owner (could be self) as conflicted so placeholders know it didn't get inserted dataMatrixLine.cells[ i ].owner.conflicted = true; } continue; } } // If it is not a span changer, we record the base cell as a reference for insertion inserts.push( cell ); if ( dataMatrixLine ) { insertCells.push( dataMatrixLine.cells[ i ] ); } } // Inserting a new row differs completely from inserting a new column: // For a new row, a new row node is created, and inserted relative to an existing row node. // For a new column, new cells are inserted into existing row nodes at appropriate positions, // i.e., relative to an existing cell node. if ( mode === 'row' ) { if ( !dataMatrixLine ) { insertData = ve.dm.TableRowNode.static.createData( { cellCount: inserts.length, // Take the style of the first cell of the selected row style: cells[ 0 ].node.getStyle() } ); } else { insertData.push( dataMatrixLine.row[ 0 ] ); insertCells.forEach( function ( cell ) { if ( cell && cell.data ) { insertData = insertData.concat( cell.data ); } else if ( !( cell && cell.isPlaceholder() && cell.owner.data && !cell.owner.conflicted ) ) { // If a placeholder, and the owner was not inserted, created a blank cell insertData = insertData.concat( ve.dm.TableCellNode.static.createData() ); } } ); insertData.push( dataMatrixLine.row[ 1 ] ); } range = matrix.getRowNode( index ).getOuterRange(); offset = before ? range.start : range.end; txs.push( ve.dm.Transaction.newFromInsertion( surfaceModel.getDocument(), offset, insertData ) ); } else { // Make sure that the inserts are in descending offset order // so that the transactions do not affect subsequent range offsets. inserts.sort( ve.dm.TableMatrixCell.static.sortDescending ); // For inserting a new cell we need to find a reference cell node // which we can use to get a proper insertion offset. for ( i = 0; i < inserts.length; i++ ) { cell = inserts[ i ]; if ( !cell ) { continue; } // If the cell is a placeholder this will find a close cell node in the same row refCell = matrix.findClosestCell( cell ); if ( refCell ) { range = refCell.node.getOuterRange(); // if the found cell is before the base cell the new cell must be placed after it, in any case, // Only if the base cell is not a placeholder we have to consider the insert mode. if ( refCell.col < cell.col || ( refCell.col === cell.col && !before ) ) { offset = range.end; } else { offset = range.start; } style = refCell.node.getStyle(); } else { // if there are only placeholders in the row, we use the row node's inner range // for the insertion offset range = matrix.getRowNode( cell.row ).getRange(); offset = before ? range.start : range.end; style = cells[ 0 ].node.getStyle(); } if ( !dataMatrixLine ) { cellData = ve.dm.TableCellNode.static.createData( { style: style } ); } else { cell = dataMatrixLine.cells[ cell.row ]; cellData = []; if ( cell && cell.data ) { cellData = cell.data; } else if ( !( cell && cell.isPlaceholder() && cell.owner.data && !cell.owner.conflicted ) ) { // If a placeholder, and the owner was not inserted, created a blank cell cellData = ve.dm.TableCellNode.static.createData(); } } txs.push( ve.dm.Transaction.newFromInsertion( surfaceModel.getDocument(), offset, cellData ) ); } } surfaceModel.change( txs, selection ? selection.translateByTransactions( txs ) : null ); }; /** * Increase the span of a cell by one. * * @param {ve.dm.TableMatrixCell} cell Table matrix cell * @param {string} mode Span to increment; 'row' or 'col' * @return {ve.dm.Transaction} Transaction */ ve.ui.TableAction.prototype.incrementSpan = function ( cell, mode ) { var data, surfaceModel = this.surface.getModel(); if ( mode === 'row' ) { data = { rowspan: cell.node.getRowspan() + 1 }; } else { data = { colspan: cell.node.getColspan() + 1 }; } return ve.dm.Transaction.newFromAttributeChanges( surfaceModel.getDocument(), cell.node.getOuterRange().start, data ); }; /** * Decreases the span of a cell so that the given interval is removed. * * @param {ve.dm.TableMatrixCell} cell Table matrix cell * @param {string} mode Span to decrement 'row' or 'col' * @param {number} minIndex Smallest row or column index (inclusive) * @param {number} maxIndex Largest row or column index (inclusive) * @return {ve.dm.Transaction} Transaction */ ve.ui.TableAction.prototype.decrementSpan = function ( cell, mode, minIndex, maxIndex ) { var span, data, surfaceModel = this.surface.getModel(); span = ( minIndex - cell[ mode ] ) + Math.max( 0, cell[ mode ] + cell.node.getSpans()[ mode ] - 1 - maxIndex ); if ( mode === 'row' ) { data = { rowspan: span }; } else { data = { colspan: span }; } return ve.dm.Transaction.newFromAttributeChanges( surfaceModel.getDocument(), cell.node.getOuterRange().start, data ); }; /** * Deletes rows or columns within a given range. * * e.g. rows 2-4 can be deleted using * * ve.ui.TableAction.deleteRowsOrColumns( matrix, 'row', 1, 3 ); * * @param {ve.dm.TableMatrix} matrix Table matrix * @param {string} mode 'row' or 'col' * @param {number} minIndex Smallest row or column index to be deleted * @param {number} maxIndex Largest row or column index to be deleted (inclusive) * @return {Array} Plain sub-matrix of items removed. In column mode this matrix is transposed. */ ve.ui.TableAction.prototype.deleteRowsOrColumns = function ( matrix, mode, minIndex, maxIndex ) { var row, col, i, l, cell, key, span, startRow, startCol, endRow, endCol, rowNode, rowRange, rowData, removedMatrix = [], cells = [], txs = [], adapted = {}, actions = [], surfaceModel = this.surface.getModel(), documentModel = surfaceModel.getDocument(); // Deleting cells can have two additional consequences: // 1. The cell is a Placeholder. The owner's span must be decreased. // 2. The cell is owner of placeholders which get orphaned by the deletion. // The first of the placeholders now becomes the real cell, with the span adjusted. // It also inherits all of the properties and content of the removed cell. // Insertions and deletions of cells must be done in an appropriate order, so that the transactions // do not interfere with each other. To achieve that, we record insertions and deletions and // sort them by the position of the cell (row, column) in the table matrix. if ( mode === 'row' ) { for ( row = minIndex; row <= maxIndex; row++ ) { cells = cells.concat( matrix.getRow( row ) ); } } else { for ( col = minIndex; col <= maxIndex; col++ ) { cells = cells.concat( matrix.getColumn( col ) ); } } for ( i = 0, l = cells.length; i < l; i++ ) { cell = cells[ i ]; if ( !cell ) { continue; } if ( cell.isPlaceholder() ) { key = cell.owner.key; if ( !adapted[ key ] ) { // Note: we can record this transaction immediately, as it does not have an effect on the // node range txs.push( this.decrementSpan( cell.owner, mode, minIndex, maxIndex ) ); adapted[ key ] = true; } continue; } // Detect if the owner of a spanning cell gets deleted and // leaves orphaned placeholders span = cell.node.getSpans()[ mode ]; if ( cell[ mode ] + span - 1 > maxIndex ) { // add inserts for orphaned place holders if ( mode === 'col' ) { startRow = cell.row; startCol = maxIndex + 1; } else { startRow = maxIndex + 1; startCol = cell.col; } endRow = cell.row + cell.node.getRowspan() - 1; endCol = cell.col + cell.node.getColspan() - 1; // Record the insertion to apply it later actions.push( { action: 'insert', cell: matrix.getCell( startRow, startCol ), colspan: 1 + endCol - startCol, rowspan: 1 + endRow - startRow, style: cell.node.getStyle(), content: documentModel.getData( cell.node.getRange() ) } ); } // Cell nodes only get deleted when deleting columns (otherwise row nodes) if ( mode === 'col' ) { actions.push( { action: 'delete', cell: cell } ); } } // Make sure that the actions are in descending offset order // so that the transactions do not affect subsequent range offsets. // Sort recorded actions to make sure the transactions will not interfere with respect to offsets actions.sort( function ( a, b ) { return ve.dm.TableMatrixCell.static.sortDescending( a.cell, b.cell ); } ); if ( mode === 'row' ) { // First replace orphaned placeholders which are below the last deleted row, // thus, this works with regard to transaction offsets for ( i = 0; i < actions.length; i++ ) { txs.push( this.replacePlaceholder( matrix, actions[ i ].cell, actions[ i ] ) ); } // Remove rows in reverse order to have valid transaction offsets for ( row = maxIndex; row >= minIndex; row-- ) { rowNode = matrix.getRowNode( row ); txs.push( ve.dm.Transaction.newFromRemoval( documentModel, rowNode.getOuterRange() ) ); // Store removed data for moving cells = matrix.getRow( row ); rowRange = rowNode.getOuterRange(); rowData = documentModel.getData( new ve.Range( rowRange.start, rowRange.start + 1 ), true ).concat( documentModel.getData( new ve.Range( rowRange.end - 1, rowRange.end ), true ) ); // Remove all but start and end tags rowData.splice( 1, rowData.length - 2 ); /*jshint loopfunc:true */ removedMatrix[ row - minIndex ] = { row: rowData, cells: cells.map( function ( cell ) { if ( cell && !cell.isPlaceholder() ) { cell.data = documentModel.getData( cell.node.getOuterRange(), true ); // When re-insterted the span can not exceed the size of the selection if ( cell.data[ 0 ].attributes.rowspan > 1 + maxIndex - minIndex ) { cell.data = null; } } return cell; } ) }; } } else { for ( i = 0; i < actions.length; i++ ) { if ( actions[ i ].action === 'insert' ) { txs.push( this.replacePlaceholder( matrix, actions[ i ].cell, actions[ i ] ) ); } else { txs.push( ve.dm.Transaction.newFromRemoval( documentModel, actions[ i ].cell.node.getOuterRange() ) ); col = actions[ i ].cell.col - minIndex; actions[ i ].cell.data = documentModel.getData( actions[ i ].cell.node.getOuterRange(), true ); } } for ( col = maxIndex; col >= minIndex; col-- ) { removedMatrix[ col - minIndex ] = { cells: matrix.getColumn( col ).map( function ( cell ) { if ( cell && !cell.isPlaceholder() ) { cell.data = documentModel.getData( cell.node.getOuterRange(), true ); // When re-insterted the span can not exceed the size of the selection if ( cell.data[ 0 ].attributes.colspan > 1 + maxIndex - minIndex ) { cell.data = null; } } return cell; } ) }; } } surfaceModel.change( txs, new ve.dm.NullSelection( surfaceModel.getDocument() ) ); return removedMatrix; }; /** * Inserts a new cell for an orphaned placeholder. * * @param {ve.dm.TableMatrix} matrix Table matrix * @param {ve.dm.TableMatrixCell} placeholder Placeholder cell to replace * @param {Object} [options] Options to pass to ve.dm.TableCellNode.static.createData * @return {ve.dm.Transaction} Transaction */ ve.ui.TableAction.prototype.replacePlaceholder = function ( matrix, placeholder, options ) { var range, offset, data, // For inserting the new cell a reference cell node // which is used to get an insertion offset. refCell = matrix.findClosestCell( placeholder ), surfaceModel = this.surface.getModel(); if ( refCell ) { range = refCell.node.getOuterRange(); offset = ( placeholder.col < refCell.col ) ? range.start : range.end; } else { // if there are only placeholders in the row, the row node's inner range is used range = matrix.getRowNode( placeholder.row ).getRange(); offset = range.start; } data = ve.dm.TableCellNode.static.createData( options ); return ve.dm.Transaction.newFromInsertion( surfaceModel.getDocument(), offset, data ); }; /* Registration */ ve.ui.actionFactory.register( ve.ui.TableAction );