lib.go 23 KB

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  1. package xlsx
  2. import (
  3. "archive/zip"
  4. "encoding/xml"
  5. "errors"
  6. "fmt"
  7. "io"
  8. "path"
  9. "strconv"
  10. "strings"
  11. )
  12. // XLSXReaderError is the standard error type for otherwise undefined
  13. // errors in the XSLX reading process.
  14. type XLSXReaderError struct {
  15. Err string
  16. }
  17. // String() returns a string value from an XLSXReaderError struct in
  18. // order that it might comply with the os.Error interface.
  19. func (e *XLSXReaderError) Error() string {
  20. return e.Err
  21. }
  22. // getRangeFromString is an internal helper function that converts
  23. // XLSX internal range syntax to a pair of integers. For example,
  24. // the range string "1:3" yield the upper and lower intergers 1 and 3.
  25. func getRangeFromString(rangeString string) (lower int, upper int, error error) {
  26. var parts []string
  27. parts = strings.SplitN(rangeString, ":", 2)
  28. if parts[0] == "" {
  29. error = errors.New(fmt.Sprintf("Invalid range '%s'\n", rangeString))
  30. }
  31. if parts[1] == "" {
  32. error = errors.New(fmt.Sprintf("Invalid range '%s'\n", rangeString))
  33. }
  34. lower, error = strconv.Atoi(parts[0])
  35. if error != nil {
  36. error = errors.New(fmt.Sprintf("Invalid range (not integer in lower bound) %s\n", rangeString))
  37. }
  38. upper, error = strconv.Atoi(parts[1])
  39. if error != nil {
  40. error = errors.New(fmt.Sprintf("Invalid range (not integer in upper bound) %s\n", rangeString))
  41. }
  42. return lower, upper, error
  43. }
  44. // lettersToNumeric is used to convert a character based column
  45. // reference to a zero based numeric column identifier.
  46. func lettersToNumeric(letters string) int {
  47. sum, mul, n := 0, 1, 0
  48. for i := len(letters) - 1; i >= 0; i, mul, n = i-1, mul*26, 1 {
  49. c := letters[i]
  50. switch {
  51. case 'A' <= c && c <= 'Z':
  52. n += int(c - 'A')
  53. case 'a' <= c && c <= 'z':
  54. n += int(c - 'a')
  55. }
  56. sum += n * mul
  57. }
  58. return sum
  59. }
  60. // Get the largestDenominator that is a multiple of a basedDenominator
  61. // and fits at least once into a given numerator.
  62. func getLargestDenominator(numerator, multiple, baseDenominator, power int) (int, int) {
  63. if numerator/multiple == 0 {
  64. return 1, power
  65. }
  66. next, nextPower := getLargestDenominator(
  67. numerator, multiple*baseDenominator, baseDenominator, power+1)
  68. if next > multiple {
  69. return next, nextPower
  70. }
  71. return multiple, power
  72. }
  73. // Convers a list of numbers representing a column into a alphabetic
  74. // representation, as used in the spreadsheet.
  75. func formatColumnName(colId []int) string {
  76. lastPart := len(colId) - 1
  77. result := ""
  78. for n, part := range colId {
  79. if n == lastPart {
  80. // The least significant number is in the
  81. // range 0-25, all other numbers are 1-26,
  82. // hence we use a differente offset for the
  83. // last part.
  84. result += string(part + 65)
  85. } else {
  86. // Don't output leading 0s, as there is no
  87. // representation of 0 in this format.
  88. if part > 0 {
  89. result += string(part + 64)
  90. }
  91. }
  92. }
  93. return result
  94. }
  95. func smooshBase26Slice(b26 []int) []int {
  96. // Smoosh values together, eliminating 0s from all but the
  97. // least significant part.
  98. lastButOnePart := len(b26) - 2
  99. for i := lastButOnePart; i > 0; i-- {
  100. part := b26[i]
  101. if part == 0 {
  102. greaterPart := b26[i-1]
  103. if greaterPart > 0 {
  104. b26[i-1] = greaterPart - 1
  105. b26[i] = 26
  106. }
  107. }
  108. }
  109. return b26
  110. }
  111. func intToBase26(x int) (parts []int) {
  112. // Excel column codes are pure evil - in essence they're just
  113. // base26, but they don't represent the number 0.
  114. b26Denominator, _ := getLargestDenominator(x, 1, 26, 0)
  115. // This loop terminates because integer division of 1 / 26
  116. // returns 0.
  117. for d := b26Denominator; d > 0; d = d / 26 {
  118. value := x / d
  119. remainder := x % d
  120. parts = append(parts, value)
  121. x = remainder
  122. }
  123. return parts
  124. }
  125. // numericToLetters is used to convert a zero based, numeric column
  126. // indentifier into a character code.
  127. func numericToLetters(colRef int) string {
  128. parts := intToBase26(colRef)
  129. return formatColumnName(smooshBase26Slice(parts))
  130. }
  131. // letterOnlyMapF is used in conjunction with strings.Map to return
  132. // only the characters A-Z and a-z in a string
  133. func letterOnlyMapF(rune rune) rune {
  134. switch {
  135. case 'A' <= rune && rune <= 'Z':
  136. return rune
  137. case 'a' <= rune && rune <= 'z':
  138. return rune - 32
  139. }
  140. return -1
  141. }
  142. // intOnlyMapF is used in conjunction with strings.Map to return only
  143. // the numeric portions of a string.
  144. func intOnlyMapF(rune rune) rune {
  145. if rune >= 48 && rune < 58 {
  146. return rune
  147. }
  148. return -1
  149. }
  150. // getCoordsFromCellIDString returns the zero based cartesian
  151. // coordinates from a cell name in Excel format, e.g. the cellIDString
  152. // "A1" returns 0, 0 and the "B3" return 1, 2.
  153. func getCoordsFromCellIDString(cellIDString string) (x, y int, error error) {
  154. var letterPart string = strings.Map(letterOnlyMapF, cellIDString)
  155. y, error = strconv.Atoi(strings.Map(intOnlyMapF, cellIDString))
  156. if error != nil {
  157. return x, y, error
  158. }
  159. y -= 1 // Zero based
  160. x = lettersToNumeric(letterPart)
  161. return x, y, error
  162. }
  163. // getCellIDStringFromCoords returns the Excel format cell name that
  164. // represents a pair of zero based cartesian coordinates.
  165. func getCellIDStringFromCoords(x, y int) string {
  166. letterPart := numericToLetters(x)
  167. numericPart := y + 1
  168. return fmt.Sprintf("%s%d", letterPart, numericPart)
  169. }
  170. // getMaxMinFromDimensionRef return the zero based cartesian maximum
  171. // and minimum coordinates from the dimension reference embedded in a
  172. // XLSX worksheet. For example, the dimension reference "A1:B2"
  173. // returns "0,0", "1,1".
  174. func getMaxMinFromDimensionRef(ref string) (minx, miny, maxx, maxy int, err error) {
  175. var parts []string
  176. parts = strings.Split(ref, ":")
  177. minx, miny, err = getCoordsFromCellIDString(parts[0])
  178. if err != nil {
  179. return -1, -1, -1, -1, err
  180. }
  181. if len(parts) == 1 {
  182. maxx, maxy = minx, miny
  183. return
  184. }
  185. maxx, maxy, err = getCoordsFromCellIDString(parts[1])
  186. if err != nil {
  187. return -1, -1, -1, -1, err
  188. }
  189. return
  190. }
  191. // calculateMaxMinFromWorkSheet works out the dimensions of a spreadsheet
  192. // that doesn't have a DimensionRef set. The only case currently
  193. // known where this is true is with XLSX exported from Google Docs.
  194. func calculateMaxMinFromWorksheet(worksheet *xlsxWorksheet) (minx, miny, maxx, maxy int, err error) {
  195. // Note, this method could be very slow for large spreadsheets.
  196. var x, y int
  197. var maxVal int
  198. maxVal = int(^uint(0) >> 1)
  199. minx = maxVal
  200. miny = maxVal
  201. maxy = 0
  202. maxx = 0
  203. for _, row := range worksheet.SheetData.Row {
  204. for _, cell := range row.C {
  205. x, y, err = getCoordsFromCellIDString(cell.R)
  206. if err != nil {
  207. return -1, -1, -1, -1, err
  208. }
  209. if x < minx {
  210. minx = x
  211. }
  212. if x > maxx {
  213. maxx = x
  214. }
  215. if y < miny {
  216. miny = y
  217. }
  218. if y > maxy {
  219. maxy = y
  220. }
  221. }
  222. }
  223. if minx == maxVal {
  224. minx = 0
  225. }
  226. if miny == maxVal {
  227. miny = 0
  228. }
  229. return
  230. }
  231. // makeRowFromSpan will, when given a span expressed as a string,
  232. // return an empty Row large enough to encompass that span and
  233. // populate it with empty cells. All rows start from cell 1 -
  234. // regardless of the lower bound of the span.
  235. func makeRowFromSpan(spans string) *Row {
  236. var error error
  237. var upper int
  238. var row *Row
  239. var cell *Cell
  240. row = new(Row)
  241. _, upper, error = getRangeFromString(spans)
  242. if error != nil {
  243. panic(error)
  244. }
  245. error = nil
  246. row.Cells = make([]*Cell, upper)
  247. for i := 0; i < upper; i++ {
  248. cell = new(Cell)
  249. cell.Value = ""
  250. row.Cells[i] = cell
  251. }
  252. return row
  253. }
  254. // makeRowFromRaw returns the Row representation of the xlsxRow.
  255. func makeRowFromRaw(rawrow xlsxRow) *Row {
  256. var upper int
  257. var row *Row
  258. var cell *Cell
  259. row = new(Row)
  260. upper = -1
  261. for _, rawcell := range rawrow.C {
  262. if rawcell.R != "" {
  263. x, _, error := getCoordsFromCellIDString(rawcell.R)
  264. if error != nil {
  265. panic(fmt.Sprintf("Invalid Cell Coord, %s\n", rawcell.R))
  266. }
  267. if x > upper {
  268. upper = x
  269. }
  270. continue
  271. }
  272. upper++
  273. }
  274. upper++
  275. row.Cells = make([]*Cell, upper)
  276. for i := 0; i < upper; i++ {
  277. cell = new(Cell)
  278. cell.Value = ""
  279. row.Cells[i] = cell
  280. }
  281. return row
  282. }
  283. func makeEmptyRow() *Row {
  284. row := new(Row)
  285. row.Cells = make([]*Cell, 0)
  286. return row
  287. }
  288. type sharedFormula struct {
  289. x, y int
  290. formula string
  291. }
  292. func formulaForCell(rawcell xlsxC, sharedFormulas map[int]sharedFormula) string {
  293. var res string
  294. f := rawcell.F
  295. if f.T == "shared" {
  296. x, y, err := getCoordsFromCellIDString(rawcell.R)
  297. if err != nil {
  298. res = f.Content
  299. } else {
  300. if f.Ref != "" {
  301. res = f.Content
  302. sharedFormulas[f.Si] = sharedFormula{x, y, res}
  303. } else {
  304. sharedFormula := sharedFormulas[f.Si]
  305. dx := x - sharedFormula.x
  306. dy := y - sharedFormula.y
  307. orig := []byte(sharedFormula.formula)
  308. var start, end int
  309. for end = 0; end < len(orig); end++ {
  310. c := orig[end]
  311. if c >= 'A' && c <= 'Z' {
  312. res += string(orig[start:end])
  313. start = end
  314. end++
  315. foundNum := false
  316. for ; end < len(orig); end++ {
  317. idc := orig[end]
  318. if idc >= '0' && idc <= '9' {
  319. foundNum = true
  320. } else if idc >= 'A' && idc <= 'Z' {
  321. if foundNum {
  322. break
  323. }
  324. } else {
  325. break
  326. }
  327. }
  328. if foundNum {
  329. fx, fy, _ := getCoordsFromCellIDString(string(orig[start:end]))
  330. fx += dx
  331. fy += dy
  332. res += getCellIDStringFromCoords(fx, fy)
  333. start = end
  334. }
  335. }
  336. }
  337. if start < len(orig) {
  338. res += string(orig[start:end])
  339. }
  340. }
  341. }
  342. } else {
  343. res = f.Content
  344. }
  345. return strings.Trim(res, " \t\n\r")
  346. }
  347. // fillCellData attempts to extract a valid value, usable in
  348. // CSV form from the raw cell value. Note - this is not actually
  349. // general enough - we should support retaining tabs and newlines.
  350. func fillCellData(rawcell xlsxC, reftable *RefTable, sharedFormulas map[int]sharedFormula, cell *Cell) {
  351. var data string = rawcell.V
  352. if len(data) > 0 {
  353. vval := strings.Trim(data, " \t\n\r")
  354. switch rawcell.T {
  355. case "s": // Shared String
  356. ref, error := strconv.Atoi(vval)
  357. if error != nil {
  358. panic(error)
  359. }
  360. cell.Value = reftable.ResolveSharedString(ref)
  361. cell.cellType = CellTypeString
  362. case "b": // Boolean
  363. cell.Value = vval
  364. cell.cellType = CellTypeBool
  365. case "e": // Error
  366. cell.Value = vval
  367. cell.formula = formulaForCell(rawcell, sharedFormulas)
  368. cell.cellType = CellTypeError
  369. default:
  370. if rawcell.F == nil {
  371. // Numeric
  372. cell.Value = vval
  373. cell.cellType = CellTypeNumeric
  374. } else {
  375. // Formula
  376. cell.Value = vval
  377. cell.formula = formulaForCell(rawcell, sharedFormulas)
  378. cell.cellType = CellTypeFormula
  379. }
  380. }
  381. }
  382. }
  383. // readRowsFromSheet is an internal helper function that extracts the
  384. // rows from a XSLXWorksheet, populates them with Cells and resolves
  385. // the value references from the reference table and stores them in
  386. // the rows and columns.
  387. func readRowsFromSheet(Worksheet *xlsxWorksheet, file *File) ([]*Row, []*Col, int, int) {
  388. var rows []*Row
  389. var cols []*Col
  390. var row *Row
  391. var minCol, maxCol, minRow, maxRow, colCount, rowCount int
  392. var reftable *RefTable
  393. var err error
  394. var insertRowIndex, insertColIndex int
  395. sharedFormulas := map[int]sharedFormula{}
  396. if len(Worksheet.SheetData.Row) == 0 {
  397. return nil, nil, 0, 0
  398. }
  399. reftable = file.referenceTable
  400. if len(Worksheet.Dimension.Ref) > 0 {
  401. minCol, minRow, maxCol, maxRow, err = getMaxMinFromDimensionRef(Worksheet.Dimension.Ref)
  402. } else {
  403. minCol, minRow, maxCol, maxRow, err = calculateMaxMinFromWorksheet(Worksheet)
  404. }
  405. if err != nil {
  406. panic(err.Error())
  407. }
  408. rowCount = maxRow + 1
  409. colCount = maxCol + 1
  410. rows = make([]*Row, rowCount)
  411. cols = make([]*Col, colCount)
  412. insertRowIndex = minRow
  413. for i := range cols {
  414. cols[i] = &Col{
  415. Hidden: false,
  416. }
  417. }
  418. // Columns can apply to a range, for convenience we expand the
  419. // ranges out into individual column definitions.
  420. for _, rawcol := range Worksheet.Cols.Col {
  421. // Note, below, that sometimes column definitions can
  422. // exist outside the defined dimensions of the
  423. // spreadsheet - we deliberately exclude these
  424. // columns.
  425. for i := rawcol.Min; i <= rawcol.Max && i <= colCount; i++ {
  426. cols[i-1] = &Col{
  427. Min: rawcol.Min,
  428. Max: rawcol.Max,
  429. Hidden: rawcol.Hidden,
  430. Width: rawcol.Width}
  431. }
  432. }
  433. // insert leading empty rows that is in front of minRow
  434. for rowIndex := 0; rowIndex < minRow; rowIndex++ {
  435. rows[rowIndex] = makeEmptyRow()
  436. }
  437. for rowIndex := 0; rowIndex < len(Worksheet.SheetData.Row); rowIndex++ {
  438. rawrow := Worksheet.SheetData.Row[rowIndex]
  439. // Some spreadsheets will omit blank rows from the
  440. // stored data
  441. for rawrow.R > (insertRowIndex + 1) {
  442. // Put an empty Row into the array
  443. rows[insertRowIndex-minRow] = makeEmptyRow()
  444. insertRowIndex++
  445. }
  446. // range is not empty and only one range exist
  447. if len(rawrow.Spans) != 0 && strings.Count(rawrow.Spans, ":") == 1 {
  448. row = makeRowFromSpan(rawrow.Spans)
  449. } else {
  450. row = makeRowFromRaw(rawrow)
  451. }
  452. row.Hidden = rawrow.Hidden
  453. insertColIndex = minCol
  454. for _, rawcell := range rawrow.C {
  455. x, _, _ := getCoordsFromCellIDString(rawcell.R)
  456. // Some spreadsheets will omit blank cells
  457. // from the data.
  458. for x > insertColIndex {
  459. // Put an empty Cell into the array
  460. row.Cells[insertColIndex-minCol] = new(Cell)
  461. insertColIndex++
  462. }
  463. cellX := insertColIndex
  464. cell := row.Cells[cellX]
  465. fillCellData(rawcell, reftable, sharedFormulas, cell)
  466. if file.styles != nil {
  467. cell.style = file.styles.getStyle(rawcell.S)
  468. cell.numFmt = file.styles.getNumberFormat(rawcell.S)
  469. }
  470. cell.date1904 = file.Date1904
  471. cell.Hidden = rawrow.Hidden || (len(cols) > cellX && cell.Hidden)
  472. insertColIndex++
  473. }
  474. if len(rows) > insertRowIndex {
  475. rows[insertRowIndex] = row
  476. }
  477. insertRowIndex++
  478. }
  479. return rows, cols, colCount, rowCount
  480. }
  481. type indexedSheet struct {
  482. Index int
  483. Sheet *Sheet
  484. Error error
  485. }
  486. func readSheetViews(xSheetViews xlsxSheetViews) []SheetView {
  487. if xSheetViews.SheetView == nil || len(xSheetViews.SheetView) == 0 {
  488. return nil
  489. }
  490. sheetViews := []SheetView{}
  491. for _, xSheetView := range xSheetViews.SheetView {
  492. sheetView := SheetView{}
  493. if xSheetView.Pane != nil {
  494. xlsxPane := xSheetView.Pane
  495. pane := &Pane{}
  496. pane.XSplit = xlsxPane.XSplit
  497. pane.YSplit = xlsxPane.YSplit
  498. pane.TopLeftCell = xlsxPane.TopLeftCell
  499. pane.ActivePane = xlsxPane.ActivePane
  500. pane.State = xlsxPane.State
  501. sheetView.Pane = pane
  502. }
  503. sheetViews = append(sheetViews, sheetView)
  504. }
  505. return sheetViews
  506. }
  507. // readSheetFromFile is the logic of converting a xlsxSheet struct
  508. // into a Sheet struct. This work can be done in parallel and so
  509. // readSheetsFromZipFile will spawn an instance of this function per
  510. // sheet and get the results back on the provided channel.
  511. func readSheetFromFile(sc chan *indexedSheet, index int, rsheet xlsxSheet, fi *File, sheetXMLMap map[string]string) {
  512. result := &indexedSheet{Index: index, Sheet: nil, Error: nil}
  513. worksheet, error := getWorksheetFromSheet(rsheet, fi.worksheets, sheetXMLMap)
  514. if error != nil {
  515. result.Error = error
  516. sc <- result
  517. return
  518. }
  519. sheet := new(Sheet)
  520. sheet.File = fi
  521. sheet.Rows, sheet.Cols, sheet.MaxCol, sheet.MaxRow = readRowsFromSheet(worksheet, fi)
  522. sheet.Hidden = rsheet.State == sheetStateHidden || rsheet.State == sheetStateVeryHidden
  523. sheet.SheetViews = readSheetViews(worksheet.SheetViews)
  524. sheet.SheetFormat.DefaultColWidth = worksheet.SheetFormatPr.DefaultColWidth
  525. sheet.SheetFormat.DefaultRowHeight = worksheet.SheetFormatPr.DefaultRowHeight
  526. result.Sheet = sheet
  527. sc <- result
  528. }
  529. // readSheetsFromZipFile is an internal helper function that loops
  530. // over the Worksheets defined in the XSLXWorkbook and loads them into
  531. // Sheet objects stored in the Sheets slice of a xlsx.File struct.
  532. func readSheetsFromZipFile(f *zip.File, file *File, sheetXMLMap map[string]string) (map[string]*Sheet, []*Sheet, error) {
  533. var workbook *xlsxWorkbook
  534. var err error
  535. var rc io.ReadCloser
  536. var decoder *xml.Decoder
  537. var sheetCount int
  538. workbook = new(xlsxWorkbook)
  539. rc, err = f.Open()
  540. if err != nil {
  541. return nil, nil, err
  542. }
  543. decoder = xml.NewDecoder(rc)
  544. err = decoder.Decode(workbook)
  545. if err != nil {
  546. return nil, nil, err
  547. }
  548. file.Date1904 = workbook.WorkbookPr.Date1904
  549. sheetCount = len(workbook.Sheets.Sheet)
  550. sheetsByName := make(map[string]*Sheet, sheetCount)
  551. sheets := make([]*Sheet, sheetCount)
  552. sheetChan := make(chan *indexedSheet, sheetCount)
  553. defer close(sheetChan)
  554. go func() {
  555. defer func() {
  556. if e := recover(); e != nil {
  557. err = fmt.Errorf("%v", e)
  558. result := &indexedSheet{Index: -1, Sheet: nil, Error: err}
  559. sheetChan <- result
  560. }
  561. }()
  562. err = nil
  563. for i, rawsheet := range workbook.Sheets.Sheet {
  564. readSheetFromFile(sheetChan, i, rawsheet, file, sheetXMLMap)
  565. }
  566. }()
  567. for j := 0; j < sheetCount; j++ {
  568. sheet := <-sheetChan
  569. if sheet.Error != nil {
  570. return nil, nil, sheet.Error
  571. }
  572. sheetName := workbook.Sheets.Sheet[sheet.Index].Name
  573. sheetsByName[sheetName] = sheet.Sheet
  574. sheet.Sheet.Name = sheetName
  575. sheets[sheet.Index] = sheet.Sheet
  576. }
  577. return sheetsByName, sheets, nil
  578. }
  579. // readSharedStringsFromZipFile() is an internal helper function to
  580. // extract a reference table from the sharedStrings.xml file within
  581. // the XLSX zip file.
  582. func readSharedStringsFromZipFile(f *zip.File) (*RefTable, error) {
  583. var sst *xlsxSST
  584. var error error
  585. var rc io.ReadCloser
  586. var decoder *xml.Decoder
  587. var reftable *RefTable
  588. // In a file with no strings it's possible that
  589. // sharedStrings.xml doesn't exist. In this case the value
  590. // passed as f will be nil.
  591. if f == nil {
  592. return nil, nil
  593. }
  594. rc, error = f.Open()
  595. if error != nil {
  596. return nil, error
  597. }
  598. sst = new(xlsxSST)
  599. decoder = xml.NewDecoder(rc)
  600. error = decoder.Decode(sst)
  601. if error != nil {
  602. return nil, error
  603. }
  604. reftable = MakeSharedStringRefTable(sst)
  605. return reftable, nil
  606. }
  607. // readStylesFromZipFile() is an internal helper function to
  608. // extract a style table from the style.xml file within
  609. // the XLSX zip file.
  610. func readStylesFromZipFile(f *zip.File, theme *theme) (*xlsxStyleSheet, error) {
  611. var style *xlsxStyleSheet
  612. var error error
  613. var rc io.ReadCloser
  614. var decoder *xml.Decoder
  615. rc, error = f.Open()
  616. if error != nil {
  617. return nil, error
  618. }
  619. style = newXlsxStyleSheet(theme)
  620. decoder = xml.NewDecoder(rc)
  621. error = decoder.Decode(style)
  622. if error != nil {
  623. return nil, error
  624. }
  625. buildNumFmtRefTable(style)
  626. return style, nil
  627. }
  628. func buildNumFmtRefTable(style *xlsxStyleSheet) {
  629. for _, numFmt := range style.NumFmts.NumFmt {
  630. // We do this for the side effect of populating the NumFmtRefTable.
  631. style.addNumFmt(numFmt)
  632. }
  633. }
  634. func readThemeFromZipFile(f *zip.File) (*theme, error) {
  635. rc, err := f.Open()
  636. if err != nil {
  637. return nil, err
  638. }
  639. var themeXml xlsxTheme
  640. err = xml.NewDecoder(rc).Decode(&themeXml)
  641. if err != nil {
  642. return nil, err
  643. }
  644. return newTheme(themeXml), nil
  645. }
  646. type WorkBookRels map[string]string
  647. func (w *WorkBookRels) MakeXLSXWorkbookRels() xlsxWorkbookRels {
  648. relCount := len(*w)
  649. xWorkbookRels := xlsxWorkbookRels{}
  650. xWorkbookRels.Relationships = make([]xlsxWorkbookRelation, relCount+3)
  651. for k, v := range *w {
  652. index, err := strconv.Atoi(k[3:])
  653. if err != nil {
  654. panic(err.Error())
  655. }
  656. xWorkbookRels.Relationships[index-1] = xlsxWorkbookRelation{
  657. Id: k,
  658. Target: v,
  659. Type: "http://schemas.openxmlformats.org/officeDocument/2006/relationships/worksheet"}
  660. }
  661. relCount++
  662. sheetId := fmt.Sprintf("rId%d", relCount)
  663. xWorkbookRels.Relationships[relCount-1] = xlsxWorkbookRelation{
  664. Id: sheetId,
  665. Target: "sharedStrings.xml",
  666. Type: "http://schemas.openxmlformats.org/officeDocument/2006/relationships/sharedStrings"}
  667. relCount++
  668. sheetId = fmt.Sprintf("rId%d", relCount)
  669. xWorkbookRels.Relationships[relCount-1] = xlsxWorkbookRelation{
  670. Id: sheetId,
  671. Target: "theme/theme1.xml",
  672. Type: "http://schemas.openxmlformats.org/officeDocument/2006/relationships/theme"}
  673. relCount++
  674. sheetId = fmt.Sprintf("rId%d", relCount)
  675. xWorkbookRels.Relationships[relCount-1] = xlsxWorkbookRelation{
  676. Id: sheetId,
  677. Target: "styles.xml",
  678. Type: "http://schemas.openxmlformats.org/officeDocument/2006/relationships/styles"}
  679. return xWorkbookRels
  680. }
  681. // readWorkbookRelationsFromZipFile is an internal helper function to
  682. // extract a map of relationship ID strings to the name of the
  683. // worksheet.xml file they refer to. The resulting map can be used to
  684. // reliably derefence the worksheets in the XLSX file.
  685. func readWorkbookRelationsFromZipFile(workbookRels *zip.File) (WorkBookRels, error) {
  686. var sheetXMLMap WorkBookRels
  687. var wbRelationships *xlsxWorkbookRels
  688. var rc io.ReadCloser
  689. var decoder *xml.Decoder
  690. var err error
  691. rc, err = workbookRels.Open()
  692. if err != nil {
  693. return nil, err
  694. }
  695. decoder = xml.NewDecoder(rc)
  696. wbRelationships = new(xlsxWorkbookRels)
  697. err = decoder.Decode(wbRelationships)
  698. if err != nil {
  699. return nil, err
  700. }
  701. sheetXMLMap = make(WorkBookRels)
  702. for _, rel := range wbRelationships.Relationships {
  703. if strings.HasSuffix(rel.Target, ".xml") && rel.Type == "http://schemas.openxmlformats.org/officeDocument/2006/relationships/worksheet" {
  704. _, filename := path.Split(rel.Target)
  705. sheetXMLMap[rel.Id] = strings.Replace(filename, ".xml", "", 1)
  706. }
  707. }
  708. return sheetXMLMap, nil
  709. }
  710. // ReadZip() takes a pointer to a zip.ReadCloser and returns a
  711. // xlsx.File struct populated with its contents. In most cases
  712. // ReadZip is not used directly, but is called internally by OpenFile.
  713. func ReadZip(f *zip.ReadCloser) (*File, error) {
  714. defer f.Close()
  715. return ReadZipReader(&f.Reader)
  716. }
  717. // ReadZipReader() can be used to read an XLSX in memory without
  718. // touching the filesystem.
  719. func ReadZipReader(r *zip.Reader) (*File, error) {
  720. var err error
  721. var file *File
  722. var reftable *RefTable
  723. var sharedStrings *zip.File
  724. var sheetXMLMap map[string]string
  725. var sheetsByName map[string]*Sheet
  726. var sheets []*Sheet
  727. var style *xlsxStyleSheet
  728. var styles *zip.File
  729. var themeFile *zip.File
  730. var v *zip.File
  731. var workbook *zip.File
  732. var workbookRels *zip.File
  733. var worksheets map[string]*zip.File
  734. file = NewFile()
  735. // file.numFmtRefTable = make(map[int]xlsxNumFmt, 1)
  736. worksheets = make(map[string]*zip.File, len(r.File))
  737. for _, v = range r.File {
  738. switch v.Name {
  739. case "xl/sharedStrings.xml":
  740. sharedStrings = v
  741. case "xl/workbook.xml":
  742. workbook = v
  743. case "xl/_rels/workbook.xml.rels":
  744. workbookRels = v
  745. case "xl/styles.xml":
  746. styles = v
  747. case "xl/theme/theme1.xml":
  748. themeFile = v
  749. default:
  750. if len(v.Name) > 14 {
  751. if v.Name[0:13] == "xl/worksheets" {
  752. worksheets[v.Name[14:len(v.Name)-4]] = v
  753. }
  754. }
  755. }
  756. }
  757. sheetXMLMap, err = readWorkbookRelationsFromZipFile(workbookRels)
  758. if err != nil {
  759. return nil, err
  760. }
  761. file.worksheets = worksheets
  762. reftable, err = readSharedStringsFromZipFile(sharedStrings)
  763. if err != nil {
  764. return nil, err
  765. }
  766. file.referenceTable = reftable
  767. if themeFile != nil {
  768. theme, err := readThemeFromZipFile(themeFile)
  769. if err != nil {
  770. return nil, err
  771. }
  772. file.theme = theme
  773. }
  774. if styles != nil {
  775. style, err = readStylesFromZipFile(styles, file.theme)
  776. if err != nil {
  777. return nil, err
  778. }
  779. file.styles = style
  780. }
  781. sheetsByName, sheets, err = readSheetsFromZipFile(workbook, file, sheetXMLMap)
  782. if err != nil {
  783. return nil, err
  784. }
  785. if sheets == nil {
  786. readerErr := new(XLSXReaderError)
  787. readerErr.Err = "No sheets found in XLSX File"
  788. return nil, readerErr
  789. }
  790. file.Sheet = sheetsByName
  791. file.Sheets = sheets
  792. return file, nil
  793. }