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sheet.go
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sheet.go
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// Copyright 2016 - 2021 The excelize Authors. All rights reserved. Use of
// this source code is governed by a BSD-style license that can be found in
// the LICENSE file.
//
// Package excelize providing a set of functions that allow you to write to
// and read from XLSX / XLSM / XLTM files. Supports reading and writing
// spreadsheet documents generated by Microsoft Excel™ 2007 and later. Supports
// complex components by high compatibility, and provided streaming API for
// generating or reading data from a worksheet with huge amounts of data. This
// library needs Go version 1.15 or later.
package excelize
import (
"bytes"
"encoding/json"
"encoding/xml"
"fmt"
"io"
"io/ioutil"
"log"
"os"
"path"
"path/filepath"
"reflect"
"regexp"
"sort"
"strconv"
"strings"
"unicode/utf16"
"unicode/utf8"
"github.com/mohae/deepcopy"
)
// NewSheet provides the function to create a new sheet by given a worksheet
// name and returns the index of the sheets in the workbook
// (spreadsheet) after it appended. Note that the worksheet names are not
// case sensitive, when creating a new spreadsheet file, the default
// worksheet named `Sheet1` will be created.
func (f *File) NewSheet(name string) int {
// Check if the worksheet already exists
index := f.GetSheetIndex(name)
if index != -1 {
return index
}
f.DeleteSheet(name)
f.SheetCount++
wb := f.workbookReader()
sheetID := 0
for _, v := range wb.Sheets.Sheet {
if v.SheetID > sheetID {
sheetID = v.SheetID
}
}
sheetID++
// Update docProps/app.xml
f.setAppXML()
// Update [Content_Types].xml
f.setContentTypes("/xl/worksheets/sheet"+strconv.Itoa(sheetID)+".xml", ContentTypeSpreadSheetMLWorksheet)
// Create new sheet /xl/worksheets/sheet%d.xml
f.setSheet(sheetID, name)
// Update workbook.xml.rels
rID := f.addRels(f.getWorkbookRelsPath(), SourceRelationshipWorkSheet, fmt.Sprintf("/xl/worksheets/sheet%d.xml", sheetID), "")
// Update workbook.xml
f.setWorkbook(name, sheetID, rID)
return f.GetSheetIndex(name)
}
// contentTypesReader provides a function to get the pointer to the
// [Content_Types].xml structure after deserialization.
func (f *File) contentTypesReader() *xlsxTypes {
var err error
if f.ContentTypes == nil {
f.ContentTypes = new(xlsxTypes)
f.ContentTypes.Lock()
defer f.ContentTypes.Unlock()
if err = f.xmlNewDecoder(bytes.NewReader(namespaceStrictToTransitional(f.readXML(defaultXMLPathContentTypes)))).
Decode(f.ContentTypes); err != nil && err != io.EOF {
log.Printf("xml decode error: %s", err)
}
}
return f.ContentTypes
}
// contentTypesWriter provides a function to save [Content_Types].xml after
// serialize structure.
func (f *File) contentTypesWriter() {
if f.ContentTypes != nil {
output, _ := xml.Marshal(f.ContentTypes)
f.saveFileList(defaultXMLPathContentTypes, output)
}
}
// getWorkbookPath provides a function to get the path of the workbook.xml in
// the spreadsheet.
func (f *File) getWorkbookPath() (path string) {
if rels := f.relsReader("_rels/.rels"); rels != nil {
rels.Lock()
defer rels.Unlock()
for _, rel := range rels.Relationships {
if rel.Type == SourceRelationshipOfficeDocument {
path = strings.TrimPrefix(rel.Target, "/")
return
}
}
}
return
}
// getWorkbookRelsPath provides a function to get the path of the workbook.xml.rels
// in the spreadsheet.
func (f *File) getWorkbookRelsPath() (path string) {
wbPath := f.getWorkbookPath()
wbDir := filepath.Dir(wbPath)
if wbDir == "." {
path = "_rels/" + filepath.Base(wbPath) + ".rels"
return
}
path = strings.TrimPrefix(filepath.Dir(wbPath)+"/_rels/"+filepath.Base(wbPath)+".rels", "/")
return
}
// getWorksheetPath construct a target XML as xl/worksheets/sheet%d by split
// path, compatible with different types of relative paths in
// workbook.xml.rels, for example: worksheets/sheet%d.xml
// and /xl/worksheets/sheet%d.xml
func (f *File) getWorksheetPath(relTarget string) (path string) {
path = filepath.ToSlash(strings.TrimPrefix(
strings.Replace(filepath.Clean(fmt.Sprintf("%s/%s", filepath.Dir(f.getWorkbookPath()), relTarget)), "\\", "/", -1), "/"))
if strings.HasPrefix(relTarget, "/") {
path = filepath.ToSlash(strings.TrimPrefix(strings.Replace(filepath.Clean(relTarget), "\\", "/", -1), "/"))
}
return path
}
// workbookReader provides a function to get the pointer to the workbook.xml
// structure after deserialization.
func (f *File) workbookReader() *xlsxWorkbook {
var err error
if f.WorkBook == nil {
wbPath := f.getWorkbookPath()
f.WorkBook = new(xlsxWorkbook)
if _, ok := f.xmlAttr[wbPath]; !ok {
d := f.xmlNewDecoder(bytes.NewReader(namespaceStrictToTransitional(f.readXML(wbPath))))
f.xmlAttr[wbPath] = append(f.xmlAttr[wbPath], getRootElement(d)...)
f.addNameSpaces(wbPath, SourceRelationship)
}
if err = f.xmlNewDecoder(bytes.NewReader(namespaceStrictToTransitional(f.readXML(wbPath)))).
Decode(f.WorkBook); err != nil && err != io.EOF {
log.Printf("xml decode error: %s", err)
}
}
return f.WorkBook
}
// workBookWriter provides a function to save workbook.xml after serialize
// structure.
func (f *File) workBookWriter() {
if f.WorkBook != nil {
output, _ := xml.Marshal(f.WorkBook)
f.saveFileList(f.getWorkbookPath(), replaceRelationshipsBytes(f.replaceNameSpaceBytes(f.getWorkbookPath(), output)))
}
}
// mergeExpandedCols merge expanded columns.
func (f *File) mergeExpandedCols(ws *xlsxWorksheet) {
sort.Slice(ws.Cols.Col, func(i, j int) bool {
return ws.Cols.Col[i].Min < ws.Cols.Col[j].Min
})
columns := []xlsxCol{}
for i, n := 0, len(ws.Cols.Col); i < n; {
left := i
for i++; i < n && reflect.DeepEqual(
xlsxCol{
BestFit: ws.Cols.Col[i-1].BestFit,
Collapsed: ws.Cols.Col[i-1].Collapsed,
CustomWidth: ws.Cols.Col[i-1].CustomWidth,
Hidden: ws.Cols.Col[i-1].Hidden,
Max: ws.Cols.Col[i-1].Max + 1,
Min: ws.Cols.Col[i-1].Min + 1,
OutlineLevel: ws.Cols.Col[i-1].OutlineLevel,
Phonetic: ws.Cols.Col[i-1].Phonetic,
Style: ws.Cols.Col[i-1].Style,
Width: ws.Cols.Col[i-1].Width,
}, ws.Cols.Col[i]); i++ {
}
column := deepcopy.Copy(ws.Cols.Col[left]).(xlsxCol)
if left < i-1 {
column.Max = ws.Cols.Col[i-1].Min
}
columns = append(columns, column)
}
ws.Cols.Col = columns
}
// workSheetWriter provides a function to save xl/worksheets/sheet%d.xml after
// serialize structure.
func (f *File) workSheetWriter() {
var arr []byte
buffer := bytes.NewBuffer(arr)
encoder := xml.NewEncoder(buffer)
f.Sheet.Range(func(p, ws interface{}) bool {
if ws != nil {
sheet := ws.(*xlsxWorksheet)
if sheet.MergeCells != nil && len(sheet.MergeCells.Cells) > 0 {
_ = f.mergeOverlapCells(sheet)
}
if sheet.Cols != nil && len(sheet.Cols.Col) > 0 {
f.mergeExpandedCols(sheet)
}
for k, v := range sheet.SheetData.Row {
sheet.SheetData.Row[k].C = trimCell(v.C)
}
if sheet.SheetPr != nil || sheet.Drawing != nil || sheet.Hyperlinks != nil || sheet.Picture != nil || sheet.TableParts != nil {
f.addNameSpaces(p.(string), SourceRelationship)
}
// reusing buffer
_ = encoder.Encode(sheet)
f.saveFileList(p.(string), replaceRelationshipsBytes(f.replaceNameSpaceBytes(p.(string), buffer.Bytes())))
ok := f.checked[p.(string)]
if ok {
f.Sheet.Delete(p.(string))
f.checked[p.(string)] = false
}
buffer.Reset()
}
return true
})
}
// trimCell provides a function to trim blank cells which created by fillColumns.
func trimCell(column []xlsxC) []xlsxC {
rowFull := true
for i := range column {
rowFull = column[i].hasValue() && rowFull
}
if rowFull {
return column
}
col := make([]xlsxC, len(column))
i := 0
for _, c := range column {
if c.hasValue() {
col[i] = c
i++
}
}
return col[:i]
}
// setContentTypes provides a function to read and update property of contents
// type of the spreadsheet.
func (f *File) setContentTypes(partName, contentType string) {
content := f.contentTypesReader()
content.Lock()
defer content.Unlock()
content.Overrides = append(content.Overrides, xlsxOverride{
PartName: partName,
ContentType: contentType,
})
}
// setSheet provides a function to update sheet property by given index.
func (f *File) setSheet(index int, name string) {
ws := xlsxWorksheet{
Dimension: &xlsxDimension{Ref: "A1"},
SheetViews: &xlsxSheetViews{
SheetView: []xlsxSheetView{{WorkbookViewID: 0}},
},
}
path := "xl/worksheets/sheet" + strconv.Itoa(index) + ".xml"
f.sheetMap[trimSheetName(name)] = path
f.Sheet.Store(path, &ws)
f.xmlAttr[path] = []xml.Attr{NameSpaceSpreadSheet}
}
// setWorkbook update workbook property of the spreadsheet. Maximum 31
// characters are allowed in sheet title.
func (f *File) setWorkbook(name string, sheetID, rid int) {
content := f.workbookReader()
content.Sheets.Sheet = append(content.Sheets.Sheet, xlsxSheet{
Name: trimSheetName(name),
SheetID: sheetID,
ID: "rId" + strconv.Itoa(rid),
})
}
// relsWriter provides a function to save relationships after
// serialize structure.
func (f *File) relsWriter() {
f.Relationships.Range(func(path, rel interface{}) bool {
if rel != nil {
output, _ := xml.Marshal(rel.(*xlsxRelationships))
if strings.HasPrefix(path.(string), "xl/worksheets/sheet/rels/sheet") {
output = f.replaceNameSpaceBytes(path.(string), output)
}
f.saveFileList(path.(string), replaceRelationshipsBytes(output))
}
return true
})
}
// setAppXML update docProps/app.xml file of XML.
func (f *File) setAppXML() {
f.saveFileList(dafaultXMLPathDocPropsApp, []byte(templateDocpropsApp))
}
// replaceRelationshipsBytes; Some tools that read spreadsheet files have very
// strict requirements about the structure of the input XML. This function is
// a horrible hack to fix that after the XML marshalling is completed.
func replaceRelationshipsBytes(content []byte) []byte {
oldXmlns := []byte(`xmlns:relationships="http://schemas.openxmlformats.org/officeDocument/2006/relationships" relationships`)
newXmlns := []byte("r")
return bytesReplace(content, oldXmlns, newXmlns, -1)
}
// SetActiveSheet provides a function to set the default active sheet of the
// workbook by a given index. Note that the active index is different from the
// ID returned by function GetSheetMap(). It should be greater or equal to 0
// and less than the total worksheet numbers.
func (f *File) SetActiveSheet(index int) {
if index < 0 {
index = 0
}
wb := f.workbookReader()
for activeTab := range wb.Sheets.Sheet {
if activeTab == index {
if wb.BookViews == nil {
wb.BookViews = &xlsxBookViews{}
}
if len(wb.BookViews.WorkBookView) > 0 {
wb.BookViews.WorkBookView[0].ActiveTab = activeTab
} else {
wb.BookViews.WorkBookView = append(wb.BookViews.WorkBookView, xlsxWorkBookView{
ActiveTab: activeTab,
})
}
}
}
for idx, name := range f.GetSheetList() {
ws, err := f.workSheetReader(name)
if err != nil {
// Chartsheet or dialogsheet
return
}
if ws.SheetViews == nil {
ws.SheetViews = &xlsxSheetViews{
SheetView: []xlsxSheetView{{WorkbookViewID: 0}},
}
}
if len(ws.SheetViews.SheetView) > 0 {
ws.SheetViews.SheetView[0].TabSelected = false
}
if index == idx {
if len(ws.SheetViews.SheetView) > 0 {
ws.SheetViews.SheetView[0].TabSelected = true
} else {
ws.SheetViews.SheetView = append(ws.SheetViews.SheetView, xlsxSheetView{
TabSelected: true,
})
}
}
}
}
// GetActiveSheetIndex provides a function to get active sheet index of the
// spreadsheet. If not found the active sheet will be return integer 0.
func (f *File) GetActiveSheetIndex() (index int) {
var sheetID = f.getActiveSheetID()
wb := f.workbookReader()
if wb != nil {
for idx, sheet := range wb.Sheets.Sheet {
if sheet.SheetID == sheetID {
index = idx
return
}
}
}
return
}
// getActiveSheetID provides a function to get active sheet ID of the
// spreadsheet. If not found the active sheet will be return integer 0.
func (f *File) getActiveSheetID() int {
wb := f.workbookReader()
if wb != nil {
if wb.BookViews != nil && len(wb.BookViews.WorkBookView) > 0 {
activeTab := wb.BookViews.WorkBookView[0].ActiveTab
if len(wb.Sheets.Sheet) > activeTab && wb.Sheets.Sheet[activeTab].SheetID != 0 {
return wb.Sheets.Sheet[activeTab].SheetID
}
}
if len(wb.Sheets.Sheet) >= 1 {
return wb.Sheets.Sheet[0].SheetID
}
}
return 0
}
// SetSheetName provides a function to set the worksheet name by given old and
// new worksheet names. Maximum 31 characters are allowed in sheet title and
// this function only changes the name of the sheet and will not update the
// sheet name in the formula or reference associated with the cell. So there
// may be problem formula error or reference missing.
func (f *File) SetSheetName(oldName, newName string) {
oldName = trimSheetName(oldName)
newName = trimSheetName(newName)
if newName == oldName {
return
}
content := f.workbookReader()
for k, v := range content.Sheets.Sheet {
if v.Name == oldName {
content.Sheets.Sheet[k].Name = newName
f.sheetMap[newName] = f.sheetMap[oldName]
delete(f.sheetMap, oldName)
}
}
}
// GetSheetName provides a function to get the sheet name of the workbook by
// the given sheet index. If the given sheet index is invalid, it will return
// an empty string.
func (f *File) GetSheetName(index int) (name string) {
for idx, sheet := range f.GetSheetList() {
if idx == index {
name = sheet
return
}
}
return
}
// getSheetID provides a function to get worksheet ID of the spreadsheet by
// given sheet name. If given worksheet name is invalid, will return an
// integer type value -1.
func (f *File) getSheetID(name string) int {
for sheetID, sheet := range f.GetSheetMap() {
if sheet == trimSheetName(name) {
return sheetID
}
}
return -1
}
// GetSheetIndex provides a function to get a sheet index of the workbook by
// the given sheet name, the sheet names are not case sensitive. If the given
// sheet name is invalid or sheet doesn't exist, it will return an integer
// type value -1.
func (f *File) GetSheetIndex(name string) int {
for index, sheet := range f.GetSheetList() {
if strings.EqualFold(sheet, trimSheetName(name)) {
return index
}
}
return -1
}
// GetSheetMap provides a function to get worksheets, chart sheets, dialog
// sheets ID and name map of the workbook. For example:
//
// f, err := excelize.OpenFile("Book1.xlsx")
// if err != nil {
// return
// }
// defer func() {
// if err := f.Close(); err != nil {
// fmt.Println(err)
// }
// }()
// for index, name := range f.GetSheetMap() {
// fmt.Println(index, name)
// }
//
func (f *File) GetSheetMap() map[int]string {
wb := f.workbookReader()
sheetMap := map[int]string{}
if wb != nil {
for _, sheet := range wb.Sheets.Sheet {
sheetMap[sheet.SheetID] = sheet.Name
}
}
return sheetMap
}
// GetSheetList provides a function to get worksheets, chart sheets, and
// dialog sheets name list of the workbook.
func (f *File) GetSheetList() (list []string) {
wb := f.workbookReader()
if wb != nil {
for _, sheet := range wb.Sheets.Sheet {
list = append(list, sheet.Name)
}
}
return
}
// getSheetMap provides a function to get worksheet name and XML file path map
// of the spreadsheet.
func (f *File) getSheetMap() map[string]string {
maps := map[string]string{}
for _, v := range f.workbookReader().Sheets.Sheet {
for _, rel := range f.relsReader(f.getWorkbookRelsPath()).Relationships {
if rel.ID == v.ID {
path := f.getWorksheetPath(rel.Target)
if _, ok := f.Pkg.Load(path); ok {
maps[v.Name] = path
}
if _, ok := f.tempFiles.Load(path); ok {
maps[v.Name] = path
}
}
}
}
return maps
}
// SetSheetBackground provides a function to set background picture by given
// worksheet name and file path.
func (f *File) SetSheetBackground(sheet, picture string) error {
var err error
// Check picture exists first.
if _, err = os.Stat(picture); os.IsNotExist(err) {
return err
}
ext, ok := supportImageTypes[path.Ext(picture)]
if !ok {
return ErrImgExt
}
file, _ := ioutil.ReadFile(filepath.Clean(picture))
name := f.addMedia(file, ext)
sheetRels := "xl/worksheets/_rels/" + strings.TrimPrefix(f.sheetMap[trimSheetName(sheet)], "xl/worksheets/") + ".rels"
rID := f.addRels(sheetRels, SourceRelationshipImage, strings.Replace(name, "xl", "..", 1), "")
f.addSheetPicture(sheet, rID)
f.addSheetNameSpace(sheet, SourceRelationship)
f.setContentTypePartImageExtensions()
return err
}
// DeleteSheet provides a function to delete worksheet in a workbook by given
// worksheet name, the sheet names are not case sensitive.the sheet names are
// not case sensitive. Use this method with caution, which will affect
// changes in references such as formulas, charts, and so on. If there is any
// referenced value of the deleted worksheet, it will cause a file error when
// you open it. This function will be invalid when only the one worksheet is
// left.
func (f *File) DeleteSheet(name string) {
if f.SheetCount == 1 || f.GetSheetIndex(name) == -1 {
return
}
sheetName := trimSheetName(name)
wb := f.workbookReader()
wbRels := f.relsReader(f.getWorkbookRelsPath())
activeSheetName := f.GetSheetName(f.GetActiveSheetIndex())
deleteLocalSheetID := f.GetSheetIndex(name)
deleteAndAdjustDefinedNames(wb, deleteLocalSheetID)
for idx, sheet := range wb.Sheets.Sheet {
if !strings.EqualFold(sheet.Name, sheetName) {
continue
}
wb.Sheets.Sheet = append(wb.Sheets.Sheet[:idx], wb.Sheets.Sheet[idx+1:]...)
var sheetXML, rels string
if wbRels != nil {
for _, rel := range wbRels.Relationships {
if rel.ID == sheet.ID {
sheetXML = f.getWorksheetPath(rel.Target)
rels = "xl/worksheets/_rels/" + strings.TrimPrefix(f.sheetMap[sheetName], "xl/worksheets/") + ".rels"
}
}
}
target := f.deleteSheetFromWorkbookRels(sheet.ID)
f.deleteSheetFromContentTypes(target)
f.deleteCalcChain(sheet.SheetID, "")
delete(f.sheetMap, sheet.Name)
f.Pkg.Delete(sheetXML)
f.Pkg.Delete(rels)
f.Relationships.Delete(rels)
f.Sheet.Delete(sheetXML)
delete(f.xmlAttr, sheetXML)
f.SheetCount--
}
f.SetActiveSheet(f.GetSheetIndex(activeSheetName))
}
// deleteAndAdjustDefinedNames delete and adjust defined name in the workbook
// by given worksheet ID.
func deleteAndAdjustDefinedNames(wb *xlsxWorkbook, deleteLocalSheetID int) {
if wb == nil || wb.DefinedNames == nil {
return
}
for idx := 0; idx < len(wb.DefinedNames.DefinedName); idx++ {
dn := wb.DefinedNames.DefinedName[idx]
if dn.LocalSheetID != nil {
localSheetID := *dn.LocalSheetID
if localSheetID == deleteLocalSheetID {
wb.DefinedNames.DefinedName = append(wb.DefinedNames.DefinedName[:idx], wb.DefinedNames.DefinedName[idx+1:]...)
idx--
} else if localSheetID > deleteLocalSheetID {
wb.DefinedNames.DefinedName[idx].LocalSheetID = intPtr(*dn.LocalSheetID - 1)
}
}
}
}
// deleteSheetFromWorkbookRels provides a function to remove worksheet
// relationships by given relationships ID in the file workbook.xml.rels.
func (f *File) deleteSheetFromWorkbookRels(rID string) string {
content := f.relsReader(f.getWorkbookRelsPath())
content.Lock()
defer content.Unlock()
for k, v := range content.Relationships {
if v.ID == rID {
content.Relationships = append(content.Relationships[:k], content.Relationships[k+1:]...)
return v.Target
}
}
return ""
}
// deleteSheetFromContentTypes provides a function to remove worksheet
// relationships by given target name in the file [Content_Types].xml.
func (f *File) deleteSheetFromContentTypes(target string) {
if !strings.HasPrefix(target, "/") {
target = "/xl/" + target
}
content := f.contentTypesReader()
content.Lock()
defer content.Unlock()
for k, v := range content.Overrides {
if v.PartName == target {
content.Overrides = append(content.Overrides[:k], content.Overrides[k+1:]...)
}
}
}
// CopySheet provides a function to duplicate a worksheet by gave source and
// target worksheet index. Note that currently doesn't support duplicate
// workbooks that contain tables, charts or pictures. For Example:
//
// // Sheet1 already exists...
// index := f.NewSheet("Sheet2")
// err := f.CopySheet(1, index)
// return err
//
func (f *File) CopySheet(from, to int) error {
if from < 0 || to < 0 || from == to || f.GetSheetName(from) == "" || f.GetSheetName(to) == "" {
return ErrSheetIdx
}
return f.copySheet(from, to)
}
// copySheet provides a function to duplicate a worksheet by gave source and
// target worksheet name.
func (f *File) copySheet(from, to int) error {
fromSheet := f.GetSheetName(from)
sheet, err := f.workSheetReader(fromSheet)
if err != nil {
return err
}
worksheet := deepcopy.Copy(sheet).(*xlsxWorksheet)
toSheetID := strconv.Itoa(f.getSheetID(f.GetSheetName(to)))
path := "xl/worksheets/sheet" + toSheetID + ".xml"
if len(worksheet.SheetViews.SheetView) > 0 {
worksheet.SheetViews.SheetView[0].TabSelected = false
}
worksheet.Drawing = nil
worksheet.TableParts = nil
worksheet.PageSetUp = nil
f.Sheet.Store(path, worksheet)
toRels := "xl/worksheets/_rels/sheet" + toSheetID + ".xml.rels"
fromRels := "xl/worksheets/_rels/sheet" + strconv.Itoa(f.getSheetID(fromSheet)) + ".xml.rels"
if rels, ok := f.Pkg.Load(fromRels); ok && rels != nil {
f.Pkg.Store(toRels, rels.([]byte))
}
fromSheetXMLPath := f.sheetMap[trimSheetName(fromSheet)]
fromSheetAttr := f.xmlAttr[fromSheetXMLPath]
f.xmlAttr[path] = fromSheetAttr
return err
}
// SetSheetVisible provides a function to set worksheet visible by given worksheet
// name. A workbook must contain at least one visible worksheet. If the given
// worksheet has been activated, this setting will be invalidated. Sheet state
// values as defined by https://docs.microsoft.com/en-us/dotnet/api/documentformat.openxml.spreadsheet.sheetstatevalues
//
// visible
// hidden
// veryHidden
//
// For example, hide Sheet1:
//
// err := f.SetSheetVisible("Sheet1", false)
//
func (f *File) SetSheetVisible(name string, visible bool) error {
name = trimSheetName(name)
content := f.workbookReader()
if visible {
for k, v := range content.Sheets.Sheet {
if v.Name == name {
content.Sheets.Sheet[k].State = ""
}
}
return nil
}
count := 0
for _, v := range content.Sheets.Sheet {
if v.State != "hidden" {
count++
}
}
for k, v := range content.Sheets.Sheet {
ws, err := f.workSheetReader(v.Name)
if err != nil {
return err
}
tabSelected := false
if len(ws.SheetViews.SheetView) > 0 {
tabSelected = ws.SheetViews.SheetView[0].TabSelected
}
if v.Name == name && count > 1 && !tabSelected {
content.Sheets.Sheet[k].State = "hidden"
}
}
return nil
}
// parseFormatPanesSet provides a function to parse the panes settings.
func parseFormatPanesSet(formatSet string) (*formatPanes, error) {
format := formatPanes{}
err := json.Unmarshal([]byte(formatSet), &format)
return &format, err
}
// SetPanes provides a function to create and remove freeze panes and split panes
// by given worksheet name and panes format set.
//
// activePane defines the pane that is active. The possible values for this
// attribute are defined in the following table:
//
// Enumeration Value | Description
// --------------------------------+-------------------------------------------------------------
// bottomLeft (Bottom Left Pane) | Bottom left pane, when both vertical and horizontal
// | splits are applied.
// |
// | This value is also used when only a horizontal split has
// | been applied, dividing the pane into upper and lower
// | regions. In that case, this value specifies the bottom
// | pane.
// |
// bottomRight (Bottom Right Pane) | Bottom right pane, when both vertical and horizontal
// | splits are applied.
// |
// topLeft (Top Left Pane) | Top left pane, when both vertical and horizontal splits
// | are applied.
// |
// | This value is also used when only a horizontal split has
// | been applied, dividing the pane into upper and lower
// | regions. In that case, this value specifies the top pane.
// |
// | This value is also used when only a vertical split has
// | been applied, dividing the pane into right and left
// | regions. In that case, this value specifies the left pane
// |
// topRight (Top Right Pane) | Top right pane, when both vertical and horizontal
// | splits are applied.
// |
// | This value is also used when only a vertical split has
// | been applied, dividing the pane into right and left
// | regions. In that case, this value specifies the right
// | pane.
//
// Pane state type is restricted to the values supported currently listed in the following table:
//
// Enumeration Value | Description
// --------------------------------+-------------------------------------------------------------
// frozen (Frozen) | Panes are frozen, but were not split being frozen. In
// | this state, when the panes are unfrozen again, a single
// | pane results, with no split.
// |
// | In this state, the split bars are not adjustable.
// |
// split (Split) | Panes are split, but not frozen. In this state, the split
// | bars are adjustable by the user.
//
// x_split (Horizontal Split Position): Horizontal position of the split, in
// 1/20th of a point; 0 (zero) if none. If the pane is frozen, this value
// indicates the number of columns visible in the top pane.
//
// y_split (Vertical Split Position): Vertical position of the split, in 1/20th
// of a point; 0 (zero) if none. If the pane is frozen, this value indicates the
// number of rows visible in the left pane. The possible values for this
// attribute are defined by the W3C XML Schema double datatype.
//
// top_left_cell: Location of the top left visible cell in the bottom right pane
// (when in Left-To-Right mode).
//
// sqref (Sequence of References): Range of the selection. Can be non-contiguous
// set of ranges.
//
// An example of how to freeze column A in the Sheet1 and set the active cell on
// Sheet1!K16:
//
// f.SetPanes("Sheet1", `{"freeze":true,"split":false,"x_split":1,"y_split":0,"top_left_cell":"B1","active_pane":"topRight","panes":[{"sqref":"K16","active_cell":"K16","pane":"topRight"}]}`)
//
// An example of how to freeze rows 1 to 9 in the Sheet1 and set the active cell
// ranges on Sheet1!A11:XFD11:
//
// f.SetPanes("Sheet1", `{"freeze":true,"split":false,"x_split":0,"y_split":9,"top_left_cell":"A34","active_pane":"bottomLeft","panes":[{"sqref":"A11:XFD11","active_cell":"A11","pane":"bottomLeft"}]}`)
//
// An example of how to create split panes in the Sheet1 and set the active cell
// on Sheet1!J60:
//
// f.SetPanes("Sheet1", `{"freeze":false,"split":true,"x_split":3270,"y_split":1800,"top_left_cell":"N57","active_pane":"bottomLeft","panes":[{"sqref":"I36","active_cell":"I36"},{"sqref":"G33","active_cell":"G33","pane":"topRight"},{"sqref":"J60","active_cell":"J60","pane":"bottomLeft"},{"sqref":"O60","active_cell":"O60","pane":"bottomRight"}]}`)
//
// An example of how to unfreeze and remove all panes on Sheet1:
//
// f.SetPanes("Sheet1", `{"freeze":false,"split":false}`)
//
func (f *File) SetPanes(sheet, panes string) error {
fs, _ := parseFormatPanesSet(panes)
ws, err := f.workSheetReader(sheet)
if err != nil {
return err
}
p := &xlsxPane{
ActivePane: fs.ActivePane,
TopLeftCell: fs.TopLeftCell,
XSplit: float64(fs.XSplit),
YSplit: float64(fs.YSplit),
}
if fs.Freeze {
p.State = "frozen"
}
ws.SheetViews.SheetView[len(ws.SheetViews.SheetView)-1].Pane = p
if !(fs.Freeze) && !(fs.Split) {
if len(ws.SheetViews.SheetView) > 0 {
ws.SheetViews.SheetView[len(ws.SheetViews.SheetView)-1].Pane = nil
}
}
s := []*xlsxSelection{}
for _, p := range fs.Panes {
s = append(s, &xlsxSelection{
ActiveCell: p.ActiveCell,
Pane: p.Pane,
SQRef: p.SQRef,
})
}
ws.SheetViews.SheetView[len(ws.SheetViews.SheetView)-1].Selection = s
return err
}
// GetSheetVisible provides a function to get worksheet visible by given worksheet
// name. For example, get visible state of Sheet1:
//
// f.GetSheetVisible("Sheet1")
//
func (f *File) GetSheetVisible(name string) bool {
content := f.workbookReader()
visible := false
for k, v := range content.Sheets.Sheet {
if v.Name == trimSheetName(name) {
if content.Sheets.Sheet[k].State == "" || content.Sheets.Sheet[k].State == "visible" {
visible = true
}
}
}
return visible
}
// SearchSheet provides a function to get coordinates by given worksheet name,
// cell value, and regular expression. The function doesn't support searching
// on the calculated result, formatted numbers and conditional lookup
// currently. If it is a merged cell, it will return the coordinates of the
// upper left corner of the merged area.
//
// An example of search the coordinates of the value of "100" on Sheet1:
//
// result, err := f.SearchSheet("Sheet1", "100")
//
// An example of search the coordinates where the numerical value in the range
// of "0-9" of Sheet1 is described:
//
// result, err := f.SearchSheet("Sheet1", "[0-9]", true)
//
func (f *File) SearchSheet(sheet, value string, reg ...bool) ([]string, error) {
var (
regSearch bool
result []string
)
for _, r := range reg {
regSearch = r
}
name, ok := f.sheetMap[trimSheetName(sheet)]
if !ok {
return result, ErrSheetNotExist{sheet}
}
if ws, ok := f.Sheet.Load(name); ok && ws != nil {
// flush data
output, _ := xml.Marshal(ws.(*xlsxWorksheet))
f.saveFileList(name, f.replaceNameSpaceBytes(name, output))
}
return f.searchSheet(name, value, regSearch)
}
// searchSheet provides a function to get coordinates by given worksheet name,
// cell value, and regular expression.
func (f *File) searchSheet(name, value string, regSearch bool) (result []string, err error) {
var (
cellName, inElement string
cellCol, row int
d *xlsxSST
)
d = f.sharedStringsReader()
decoder := f.xmlNewDecoder(bytes.NewReader(f.readBytes(name)))
for {
var token xml.Token
token, err = decoder.Token()
if err != nil || token == nil {
if err == io.EOF {
err = nil
}
break
}
switch xmlElement := token.(type) {
case xml.StartElement:
inElement = xmlElement.Name.Local
if inElement == "row" {
row, err = attrValToInt("r", xmlElement.Attr)
if err != nil {
return
}
}
if inElement == "c" {
colCell := xlsxC{}
_ = decoder.DecodeElement(&colCell, &xmlElement)
val, _ := colCell.getValueFrom(f, d, false)
if regSearch {
regex := regexp.MustCompile(value)
if !regex.MatchString(val) {
continue
}
} else {
if val != value {
continue
}
}
cellCol, _, err = CellNameToCoordinates(colCell.R)
if err != nil {
return result, err
}
cellName, err = CoordinatesToCellName(cellCol, row)
if err != nil {
return result, err
}
result = append(result, cellName)
}
default:
}
}
return
}
// attrValToInt provides a function to convert the local names to an integer
// by given XML attributes and specified names.
func attrValToInt(name string, attrs []xml.Attr) (val int, err error) {
for _, attr := range attrs {
if attr.Name.Local == name {
val, err = strconv.Atoi(attr.Value)
if err != nil {
return
}
}
}
return
}
// SetHeaderFooter provides a function to set headers and footers by given
// worksheet name and the control characters.
//
// Headers and footers are specified using the following settings fields:
//
// Fields | Description
// ------------------+-----------------------------------------------------------
// AlignWithMargins | Align header footer margins with page margins
// DifferentFirst | Different first-page header and footer indicator
// DifferentOddEven | Different odd and even page headers and footers indicator
// ScaleWithDoc | Scale header and footer with document scaling
// OddFooter | Odd Page Footer
// OddHeader | Odd Header
// EvenFooter | Even Page Footer
// EvenHeader | Even Page Header
// FirstFooter | First Page Footer
// FirstHeader | First Page Header
//
// The following formatting codes can be used in 6 string type fields: