string TableGetRowElementName(TableRow tr) { for (ReportLink rl = tr.Parent; !(rl is Table); rl = rl.Parent) { if (rl is Header || rl is Footer) { return(null); } if (rl is TableGroup) { TableGroup tg = rl as TableGroup; Grouping g = tg.Grouping; return(g.DataElementName); } if (rl is Details) { Table t = (Table)stkReportItem.Peek(); return(t.DetailDataElementOutput == DataElementOutputEnum.NoOutput? null: t.DetailDataElementName); } } return(null); }
private void RunRecursiveGroups(IPresent ip, TableWorkClass wc) { List <Row> rows = wc.Data.Data; Row r; // Get any header/footer information for use in loop Header header = null; Footer footer = null; TableGroup tg = wc.RecursiveGroup.Parent as TableGroup; if (tg != null) { header = tg.Header; footer = tg.Footer; } bool bHeader = true; for (int iRow = 0; iRow < rows.Count; iRow++) { r = rows[iRow]; wc.Data.CurrentGroups[0] = r.GroupEntry; wc.GroupNestCount = r.GroupEntry.EndRow - r.GroupEntry.StartRow; if (bHeader) { bHeader = false; if (header != null) { header.Run(ip, r); } } if (_Details != null) { _Details.Run(ip, wc.Data, iRow, iRow); } // determine need for group headers and/or footers if (iRow < rows.Count - 1) { Row r2 = rows[iRow + 1]; if (r.Level > r2.Level) { if (footer != null) { footer.Run(ip, r); } } else if (r.Level < r2.Level) { bHeader = true; } } } if (footer != null) { footer.Run(ip, rows[rows.Count - 1] as Row); } }
Rows GetNestedData(Report rpt, Row row) { if (row == null) { return(null); } ReportLink rl = this.Parent; while (rl != null) { if (rl is TableGroup || rl is List || rl is MatrixCell) { break; } rl = rl.Parent; } if (rl == null) { return(null); // should have been caught as an error } Grouping g = null; if (rl is TableGroup) { TableGroup tg = rl as TableGroup; g = tg.Grouping; } else if (rl is List) { List l = rl as List; g = l.Grouping; } else if (rl is MatrixCell) { MatrixCellEntry mce = this.GetMC(rpt); return(new Rows(rpt, mce.Data)); } if (g == null) { return(null); } GroupEntry ge = row.R.CurrentGroups[g.GetIndex(rpt)]; return(new Rows(rpt, row.R, ge.StartRow, ge.EndRow, null)); }
internal void RunPageHeader(Pages pgs, Row frow, bool bFirst, TableGroup stoptg) { // Do the table headers bool isEmpty = pgs.CurrentPage.IsEmpty(); if (_Header != null && (_Header.RepeatOnNewPage || bFirst)) { _Header.RunPage(pgs, frow); if (isEmpty) { pgs.CurrentPage.SetEmpty(); // Consider this empty of data } } if (bFirst) // the very first time we'll output the header (and not consider page empty) { return; } if (_TableGroups == null) { pgs.CurrentPage.SetEmpty(); // Consider this empty of data return; } // Do the group headers foreach (TableGroup tg in _TableGroups.Items) { if (stoptg != null && tg == stoptg) { break; } if (tg.Header != null) { if (tg.Header.RepeatOnNewPage) { tg.Header.RunPage(pgs, frow); } } } pgs.CurrentPage.SetEmpty(); // Consider this empty of data return; }
private float RunGroupsFooterHeight(Pages pgs, TableWorkClass wc, GroupEntry ge) { Grouping g = ge.Group; if (g == null) { return(0); } TableGroup tg = g.Parent as TableGroup; // detail groups will result in null if (tg == null || tg.Footer == null) { return(0); } return(tg.Footer.HeightOfRows(pgs, wc.Data.Data[ge.EndRow])); }
List <TableGroup> _Items; // list of TableGroup entries internal TableGroups(ReportDefn r, ReportLink p, XmlNode xNode) : base(r, p) { TableGroup tg; _Items = new List <TableGroup>(); // Loop thru all the child nodes foreach (XmlNode xNodeLoop in xNode.ChildNodes) { if (xNodeLoop.NodeType != XmlNodeType.Element) { continue; } switch (xNodeLoop.Name) { case "TableGroup": tg = new TableGroup(r, this, xNodeLoop); break; default: tg = null; // don't know what this is // don't know this element - log it OwnerReport.rl.LogError(4, "Unknown TableGroups element '" + xNodeLoop.Name + "' ignored."); break; } if (tg != null) { _Items.Add(tg); } } if (_Items.Count == 0) { OwnerReport.rl.LogError(8, "For TableGroups at least one TableGroup is required."); } else { _Items.TrimExcess(); } }
private int RunGroupsCount(List <GroupEntry> groupEntries, int count) { foreach (GroupEntry ge in groupEntries) { Grouping g = ge.Group; if (g != null) { TableGroup tg = g.Parent as TableGroup; if (tg != null) { count += (tg.HeaderCount + tg.FooterCount); } } if (ge.NestedGroup.Count > 0) { count = RunGroupsCount(ge.NestedGroup, count); } else { count += (ge.EndRow - ge.StartRow + 1) * DetailsCount; } } return(count); }
private void RunGroupsPage(Pages pgs, TableWorkClass wc, List <GroupEntry> groupEntries, int endRow, float groupHeight) { Report rpt = pgs.Report; foreach (GroupEntry ge in groupEntries) { // set the group entry value int index; if (ge.Group != null) // groups? { ge.Group.ResetHideDuplicates(rpt); // reset duplicate checking index = ge.Group.GetIndex(rpt); // yes } else // no; must be main dataset { index = 0; } wc.Data.CurrentGroups[index] = ge; if (ge.NestedGroup.Count > 0) { RunGroupsSetGroups(rpt, wc, ge.NestedGroup); } // Handle the group header if (ge.Group != null) { TableGroup tg = ge.Group.Parent as TableGroup; if (ge.Group.PageBreakAtStart && !pgs.CurrentPage.IsEmpty()) { RunPageNew(pgs, pgs.CurrentPage); RunPageHeader(pgs, wc.Data.Data[ge.StartRow], false, tg); } if (tg != null && tg.Header != null) { // Calculate the number of table rows below this group; header, footer, details count if (ge.NestedGroup.Count > 0) { wc.GroupNestCount = RunGroupsCount(ge.NestedGroup, 0); } else { wc.GroupNestCount = (ge.EndRow - ge.StartRow + 1) * DetailsCount; } tg.Header.RunPage(pgs, wc.Data.Data[ge.StartRow]); wc.GroupNestCount = 0; } } float footerHeight = RunGroupsFooterHeight(pgs, wc, ge); if (ge.EndRow == endRow) { footerHeight += groupHeight; } // Handle the nested groups if any if (ge.NestedGroup.Count > 0) { RunGroupsPage(pgs, wc, ge.NestedGroup, ge.EndRow, footerHeight); } // If no nested groups then handle the detail rows for the group else if (_Details != null) { if (ge.Group != null && ge.Group.Parent as TableGroup == null) { // Group defined on table; means that Detail rows only put out once per group _Details.RunPage(pgs, wc.Data, ge.StartRow, ge.StartRow, footerHeight); } else { _Details.RunPage(pgs, wc.Data, ge.StartRow, ge.EndRow, footerHeight); } } else // When no details we need to figure out whether any more fits on a page { Page p = pgs.CurrentPage; if (p.YOffset + footerHeight > pgs.BottomOfPage) // Do we need new page to fit footer? { p = RunPageNew(pgs, p); RunPageHeader(pgs, wc.Data.Data[ge.EndRow], false, null); } } // Do the group footer if (ge.Group != null && ge.Group.Parent != null) { TableGroup tg = ge.Group.Parent as TableGroup; // detail groups will result in null if (tg != null && tg.Footer != null) { tg.Footer.RunPage(pgs, wc.Data.Data[ge.EndRow]); } if (ge.Group.PageBreakAtEnd && !pgs.CurrentPage.IsEmpty()) { RunPageNew(pgs, pgs.CurrentPage); RunPageHeader(pgs, wc.Data.Data[ge.StartRow], false, tg); } } } }
private void RunGroups(IPresent ip, List <GroupEntry> groupEntries, TableWorkClass wc) { Report rpt = ip.Report(); GroupEntry fge = (GroupEntry)(groupEntries[0]); if (fge.Group != null) { ip.GroupingStart(fge.Group); } foreach (GroupEntry ge in groupEntries) { // set the group entry value int index; if (ge.Group != null) // groups? { ip.GroupingInstanceStart(ge.Group); ge.Group.ResetHideDuplicates(rpt); // reset duplicate checking index = ge.Group.GetIndex(rpt); // yes } else // no; must be main dataset { index = 0; } wc.Data.CurrentGroups[index] = ge; if (ge.NestedGroup.Count > 0) { RunGroupsSetGroups(rpt, wc, ge.NestedGroup); } // Handle the group header if (ge.Group != null && ge.Group.Parent != null) { TableGroup tg = ge.Group.Parent as TableGroup; if (tg != null && tg.Header != null) { // Calculate the number of table rows below this group; header, footer, details count if (ge.NestedGroup.Count > 0) { wc.GroupNestCount = RunGroupsCount(ge.NestedGroup, 0); } else { wc.GroupNestCount = (ge.EndRow - ge.StartRow + 1) * DetailsCount; } tg.Header.Run(ip, wc.Data.Data[ge.StartRow]); wc.GroupNestCount = 0; } } // Handle the nested groups if any if (ge.NestedGroup.Count > 0) { RunGroups(ip, ge.NestedGroup, wc); } // If no nested groups then handle the detail rows for the group else if (_Details != null) { if (ge.Group != null && ge.Group.Parent as TableGroup == null) { // Group defined on table; means that Detail rows only put out once per group _Details.Run(ip, wc.Data, ge.StartRow, ge.StartRow); } else { _Details.Run(ip, wc.Data, ge.StartRow, ge.EndRow); } } // Do the group footer if (ge.Group != null) { if (ge.Group.Parent != null) { TableGroup tg = ge.Group.Parent as TableGroup; // detail groups will result in null if (tg != null && tg.Footer != null) { tg.Footer.Run(ip, wc.Data.Data[ge.EndRow]); } } ip.GroupingInstanceEnd(ge.Group); } } if (fge.Group != null) { ip.GroupingEnd(fge.Group); } }
private void RunRecursiveGroupsPage(Pages pgs, TableWorkClass wc) { List <Row> rows = wc.Data.Data; Row r; // Get any header/footer information for use in loop Header header = null; Footer footer = null; TableGroup tg = wc.RecursiveGroup.Parent as TableGroup; if (tg != null) { header = tg.Header; footer = tg.Footer; } bool bHeader = true; for (int iRow = 0; iRow < rows.Count; iRow++) { r = rows[iRow]; wc.Data.CurrentGroups[0] = r.GroupEntry; wc.GroupNestCount = r.GroupEntry.EndRow - r.GroupEntry.StartRow; if (bHeader) { bHeader = false; if (header != null) { Page p = pgs.CurrentPage; // this can change after running a row float height = p.YOffset + header.HeightOfRows(pgs, r); if (height > pgs.BottomOfPage) { p = RunPageNew(pgs, p); RunPageHeader(pgs, r, false, null); if (!header.RepeatOnNewPage) { header.RunPage(pgs, r); } } else { header.RunPage(pgs, r); } } } // determine need for group headers and/or footers bool bFooter = false; float footerHeight = 0; if (iRow < rows.Count - 1) { Row r2 = rows[iRow + 1]; if (r.Level > r2.Level) { if (footer != null) { bFooter = true; footerHeight = footer.HeightOfRows(pgs, r); } } else if (r.Level < r2.Level) { bHeader = true; } } if (_Details != null) { _Details.RunPage(pgs, wc.Data, iRow, iRow, footerHeight); } // and output the footer if needed if (bFooter) { footer.RunPage(pgs, r); } } if (footer != null) { footer.RunPage(pgs, rows[rows.Count - 1] as Row); } }