excelize_test.go 62 KB

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  1. package excelize
  2. import (
  3. "fmt"
  4. "image/color"
  5. _ "image/gif"
  6. _ "image/jpeg"
  7. _ "image/png"
  8. "io/ioutil"
  9. "os"
  10. "path/filepath"
  11. "strconv"
  12. "strings"
  13. "testing"
  14. "time"
  15. "github.com/stretchr/testify/assert"
  16. )
  17. func TestOpenFile(t *testing.T) {
  18. // Test update a XLSX file.
  19. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  20. if !assert.NoError(t, err) {
  21. t.FailNow()
  22. }
  23. // Test get all the rows in a not exists worksheet.
  24. xlsx.GetRows("Sheet4")
  25. // Test get all the rows in a worksheet.
  26. rows, err := xlsx.GetRows("Sheet2")
  27. assert.NoError(t, err)
  28. for _, row := range rows {
  29. for _, cell := range row {
  30. t.Log(cell, "\t")
  31. }
  32. t.Log("\r\n")
  33. }
  34. xlsx.UpdateLinkedValue()
  35. xlsx.SetCellDefault("Sheet2", "A1", strconv.FormatFloat(float64(100.1588), 'f', -1, 32))
  36. xlsx.SetCellDefault("Sheet2", "A1", strconv.FormatFloat(float64(-100.1588), 'f', -1, 64))
  37. // Test set cell value with illegal row number.
  38. assert.EqualError(t, xlsx.SetCellDefault("Sheet2", "A", strconv.FormatFloat(float64(-100.1588), 'f', -1, 64)),
  39. `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  40. xlsx.SetCellInt("Sheet2", "A1", 100)
  41. // Test set cell integer value with illegal row number.
  42. assert.EqualError(t, xlsx.SetCellInt("Sheet2", "A", 100), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  43. xlsx.SetCellStr("Sheet2", "C11", "Knowns")
  44. // Test max characters in a cell.
  45. xlsx.SetCellStr("Sheet2", "D11", strings.Repeat("c", 32769))
  46. xlsx.NewSheet(":\\/?*[]Maximum 31 characters allowed in sheet title.")
  47. // Test set worksheet name with illegal name.
  48. xlsx.SetSheetName("Maximum 31 characters allowed i", "[Rename]:\\/?* Maximum 31 characters allowed in sheet title.")
  49. xlsx.SetCellInt("Sheet3", "A23", 10)
  50. xlsx.SetCellStr("Sheet3", "b230", "10")
  51. xlsx.SetCellStr("Sheet10", "b230", "10")
  52. // Test set cell string value with illegal row number.
  53. assert.EqualError(t, xlsx.SetCellStr("Sheet10", "A", "10"), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  54. xlsx.SetActiveSheet(2)
  55. // Test get cell formula with given rows number.
  56. _, err = xlsx.GetCellFormula("Sheet1", "B19")
  57. assert.NoError(t, err)
  58. // Test get cell formula with illegal worksheet name.
  59. _, err = xlsx.GetCellFormula("Sheet2", "B20")
  60. assert.NoError(t, err)
  61. _, err = xlsx.GetCellFormula("Sheet1", "B20")
  62. assert.NoError(t, err)
  63. // Test get cell formula with illegal rows number.
  64. _, err = xlsx.GetCellFormula("Sheet1", "B")
  65. assert.EqualError(t, err, `cannot convert cell "B" to coordinates: invalid cell name "B"`)
  66. // Test get shared cell formula
  67. xlsx.GetCellFormula("Sheet2", "H11")
  68. xlsx.GetCellFormula("Sheet2", "I11")
  69. getSharedForumula(&xlsxWorksheet{}, "")
  70. // Test read cell value with given illegal rows number.
  71. _, err = xlsx.GetCellValue("Sheet2", "a-1")
  72. assert.EqualError(t, err, `cannot convert cell "A-1" to coordinates: invalid cell name "A-1"`)
  73. _, err = xlsx.GetCellValue("Sheet2", "A")
  74. assert.EqualError(t, err, `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  75. // Test read cell value with given lowercase column number.
  76. xlsx.GetCellValue("Sheet2", "a5")
  77. xlsx.GetCellValue("Sheet2", "C11")
  78. xlsx.GetCellValue("Sheet2", "D11")
  79. xlsx.GetCellValue("Sheet2", "D12")
  80. // Test SetCellValue function.
  81. xlsx.SetCellValue("Sheet2", "F1", " Hello")
  82. xlsx.SetCellValue("Sheet2", "G1", []byte("World"))
  83. xlsx.SetCellValue("Sheet2", "F2", 42)
  84. xlsx.SetCellValue("Sheet2", "F3", int8(1<<8/2-1))
  85. xlsx.SetCellValue("Sheet2", "F4", int16(1<<16/2-1))
  86. xlsx.SetCellValue("Sheet2", "F5", int32(1<<32/2-1))
  87. xlsx.SetCellValue("Sheet2", "F6", int64(1<<32/2-1))
  88. xlsx.SetCellValue("Sheet2", "F7", float32(42.65418))
  89. xlsx.SetCellValue("Sheet2", "F8", float64(-42.65418))
  90. xlsx.SetCellValue("Sheet2", "F9", float32(42))
  91. xlsx.SetCellValue("Sheet2", "F10", float64(42))
  92. xlsx.SetCellValue("Sheet2", "F11", uint(1<<32-1))
  93. xlsx.SetCellValue("Sheet2", "F12", uint8(1<<8-1))
  94. xlsx.SetCellValue("Sheet2", "F13", uint16(1<<16-1))
  95. xlsx.SetCellValue("Sheet2", "F14", uint32(1<<32-1))
  96. xlsx.SetCellValue("Sheet2", "F15", uint64(1<<32-1))
  97. xlsx.SetCellValue("Sheet2", "F16", true)
  98. xlsx.SetCellValue("Sheet2", "F17", complex64(5+10i))
  99. // Test boolean write
  100. booltest := []struct {
  101. value bool
  102. expected string
  103. }{
  104. {false, "0"},
  105. {true, "1"},
  106. }
  107. for _, test := range booltest {
  108. xlsx.SetCellValue("Sheet2", "F16", test.value)
  109. val, err := xlsx.GetCellValue("Sheet2", "F16")
  110. assert.NoError(t, err)
  111. assert.Equal(t, test.expected, val)
  112. }
  113. xlsx.SetCellValue("Sheet2", "G2", nil)
  114. assert.EqualError(t, xlsx.SetCellValue("Sheet2", "G4", time.Now()), "only UTC time expected")
  115. xlsx.SetCellValue("Sheet2", "G4", time.Now().UTC())
  116. // 02:46:40
  117. xlsx.SetCellValue("Sheet2", "G5", time.Duration(1e13))
  118. // Test completion column.
  119. xlsx.SetCellValue("Sheet2", "M2", nil)
  120. // Test read cell value with given axis large than exists row.
  121. xlsx.GetCellValue("Sheet2", "E231")
  122. // Test get active worksheet of XLSX and get worksheet name of XLSX by given worksheet index.
  123. xlsx.GetSheetName(xlsx.GetActiveSheetIndex())
  124. // Test get worksheet index of XLSX by given worksheet name.
  125. xlsx.GetSheetIndex("Sheet1")
  126. // Test get worksheet name of XLSX by given invalid worksheet index.
  127. xlsx.GetSheetName(4)
  128. // Test get worksheet map of XLSX.
  129. xlsx.GetSheetMap()
  130. for i := 1; i <= 300; i++ {
  131. xlsx.SetCellStr("Sheet3", "c"+strconv.Itoa(i), strconv.Itoa(i))
  132. }
  133. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestOpenFile.xlsx")))
  134. }
  135. func TestSaveFile(t *testing.T) {
  136. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  137. if !assert.NoError(t, err) {
  138. t.FailNow()
  139. }
  140. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSaveFile.xlsx")))
  141. xlsx, err = OpenFile(filepath.Join("test", "TestSaveFile.xlsx"))
  142. if !assert.NoError(t, err) {
  143. t.FailNow()
  144. }
  145. assert.NoError(t, xlsx.Save())
  146. }
  147. func TestSaveAsWrongPath(t *testing.T) {
  148. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  149. if assert.NoError(t, err) {
  150. // Test write file to not exist directory.
  151. err = xlsx.SaveAs("")
  152. if assert.Error(t, err) {
  153. assert.True(t, os.IsNotExist(err), "Error: %v: Expected os.IsNotExists(err) == true", err)
  154. }
  155. }
  156. }
  157. func TestBrokenFile(t *testing.T) {
  158. // Test write file with broken file struct.
  159. xlsx := File{}
  160. t.Run("SaveWithoutName", func(t *testing.T) {
  161. assert.EqualError(t, xlsx.Save(), "no path defined for file, consider File.WriteTo or File.Write")
  162. })
  163. t.Run("SaveAsEmptyStruct", func(t *testing.T) {
  164. // Test write file with broken file struct with given path.
  165. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestBrokenFile.SaveAsEmptyStruct.xlsx")))
  166. })
  167. t.Run("OpenBadWorkbook", func(t *testing.T) {
  168. // Test set active sheet without BookViews and Sheets maps in xl/workbook.xml.
  169. f3, err := OpenFile(filepath.Join("test", "BadWorkbook.xlsx"))
  170. f3.GetActiveSheetIndex()
  171. f3.SetActiveSheet(2)
  172. assert.NoError(t, err)
  173. })
  174. t.Run("OpenNotExistsFile", func(t *testing.T) {
  175. // Test open a XLSX file with given illegal path.
  176. _, err := OpenFile(filepath.Join("test", "NotExistsFile.xlsx"))
  177. if assert.Error(t, err) {
  178. assert.True(t, os.IsNotExist(err), "Expected os.IsNotExists(err) == true")
  179. }
  180. })
  181. }
  182. func TestNewFile(t *testing.T) {
  183. // Test create a XLSX file.
  184. xlsx := NewFile()
  185. xlsx.NewSheet("Sheet1")
  186. xlsx.NewSheet("XLSXSheet2")
  187. xlsx.NewSheet("XLSXSheet3")
  188. xlsx.SetCellInt("XLSXSheet2", "A23", 56)
  189. xlsx.SetCellStr("Sheet1", "B20", "42")
  190. xlsx.SetActiveSheet(0)
  191. // Test add picture to sheet with scaling and positioning.
  192. err := xlsx.AddPicture("Sheet1", "H2", filepath.Join("test", "images", "excel.gif"),
  193. `{"x_scale": 0.5, "y_scale": 0.5, "positioning": "absolute"}`)
  194. if !assert.NoError(t, err) {
  195. t.FailNow()
  196. }
  197. // Test add picture to worksheet without formatset.
  198. err = xlsx.AddPicture("Sheet1", "C2", filepath.Join("test", "images", "excel.png"), "")
  199. if !assert.NoError(t, err) {
  200. t.FailNow()
  201. }
  202. // Test add picture to worksheet with invalid formatset.
  203. err = xlsx.AddPicture("Sheet1", "C2", filepath.Join("test", "images", "excel.png"), `{`)
  204. if !assert.Error(t, err) {
  205. t.FailNow()
  206. }
  207. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestNewFile.xlsx")))
  208. }
  209. func TestColWidth(t *testing.T) {
  210. xlsx := NewFile()
  211. xlsx.SetColWidth("Sheet1", "B", "A", 12)
  212. xlsx.SetColWidth("Sheet1", "A", "B", 12)
  213. xlsx.GetColWidth("Sheet1", "A")
  214. xlsx.GetColWidth("Sheet1", "C")
  215. // Test set and get column width with illegal cell coordinates.
  216. _, err := xlsx.GetColWidth("Sheet1", "*")
  217. assert.EqualError(t, err, `invalid column name "*"`)
  218. assert.EqualError(t, xlsx.SetColWidth("Sheet1", "*", "B", 1), `invalid column name "*"`)
  219. assert.EqualError(t, xlsx.SetColWidth("Sheet1", "A", "*", 1), `invalid column name "*"`)
  220. err = xlsx.SaveAs(filepath.Join("test", "TestColWidth.xlsx"))
  221. if err != nil {
  222. t.Error(err)
  223. }
  224. convertRowHeightToPixels(0)
  225. }
  226. func TestAddDrawingVML(t *testing.T) {
  227. // Test addDrawingVML with illegal cell coordinates.
  228. f := NewFile()
  229. assert.EqualError(t, f.addDrawingVML(0, "", "*", 0, 0), `cannot convert cell "*" to coordinates: invalid cell name "*"`)
  230. }
  231. func TestSetCellHyperLink(t *testing.T) {
  232. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  233. if err != nil {
  234. t.Log(err)
  235. }
  236. // Test set cell hyperlink in a work sheet already have hyperlinks.
  237. assert.NoError(t, xlsx.SetCellHyperLink("Sheet1", "B19", "https://github.com/360EntSecGroup-Skylar/excelize", "External"))
  238. // Test add first hyperlink in a work sheet.
  239. assert.NoError(t, xlsx.SetCellHyperLink("Sheet2", "C1", "https://github.com/360EntSecGroup-Skylar/excelize", "External"))
  240. // Test add Location hyperlink in a work sheet.
  241. assert.NoError(t, xlsx.SetCellHyperLink("Sheet2", "D6", "Sheet1!D8", "Location"))
  242. assert.EqualError(t, xlsx.SetCellHyperLink("Sheet2", "C3", "Sheet1!D8", ""), `invalid link type ""`)
  243. assert.EqualError(t, xlsx.SetCellHyperLink("Sheet2", "", "Sheet1!D60", "Location"), `invalid cell name ""`)
  244. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellHyperLink.xlsx")))
  245. }
  246. func TestGetCellHyperLink(t *testing.T) {
  247. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  248. if !assert.NoError(t, err) {
  249. t.FailNow()
  250. }
  251. link, target, err := xlsx.GetCellHyperLink("Sheet1", "")
  252. assert.EqualError(t, err, `invalid cell name ""`)
  253. link, target, err = xlsx.GetCellHyperLink("Sheet1", "A22")
  254. assert.NoError(t, err)
  255. t.Log(link, target)
  256. link, target, err = xlsx.GetCellHyperLink("Sheet2", "D6")
  257. assert.NoError(t, err)
  258. t.Log(link, target)
  259. link, target, err = xlsx.GetCellHyperLink("Sheet3", "H3")
  260. assert.NoError(t, err)
  261. t.Log(link, target)
  262. }
  263. func TestSetCellFormula(t *testing.T) {
  264. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  265. if !assert.NoError(t, err) {
  266. t.FailNow()
  267. }
  268. xlsx.SetCellFormula("Sheet1", "B19", "SUM(Sheet2!D2,Sheet2!D11)")
  269. xlsx.SetCellFormula("Sheet1", "C19", "SUM(Sheet2!D2,Sheet2!D9)")
  270. // Test set cell formula with illegal rows number.
  271. assert.EqualError(t, xlsx.SetCellFormula("Sheet1", "C", "SUM(Sheet2!D2,Sheet2!D9)"), `cannot convert cell "C" to coordinates: invalid cell name "C"`)
  272. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellFormula1.xlsx")))
  273. xlsx, err = OpenFile(filepath.Join("test", "CalcChain.xlsx"))
  274. if !assert.NoError(t, err) {
  275. t.FailNow()
  276. }
  277. // Test remove cell formula.
  278. xlsx.SetCellFormula("Sheet1", "A1", "")
  279. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellFormula2.xlsx")))
  280. // Test remove all cell formula.
  281. xlsx.SetCellFormula("Sheet1", "B1", "")
  282. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellFormula3.xlsx")))
  283. }
  284. func TestSetSheetBackground(t *testing.T) {
  285. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  286. if !assert.NoError(t, err) {
  287. t.FailNow()
  288. }
  289. err = xlsx.SetSheetBackground("Sheet2", filepath.Join("test", "images", "background.jpg"))
  290. if !assert.NoError(t, err) {
  291. t.FailNow()
  292. }
  293. err = xlsx.SetSheetBackground("Sheet2", filepath.Join("test", "images", "background.jpg"))
  294. if !assert.NoError(t, err) {
  295. t.FailNow()
  296. }
  297. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetSheetBackground.xlsx")))
  298. }
  299. func TestSetSheetBackgroundErrors(t *testing.T) {
  300. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  301. if !assert.NoError(t, err) {
  302. t.FailNow()
  303. }
  304. err = xlsx.SetSheetBackground("Sheet2", filepath.Join("test", "not_exists", "not_exists.png"))
  305. if assert.Error(t, err) {
  306. assert.True(t, os.IsNotExist(err), "Expected os.IsNotExists(err) == true")
  307. }
  308. err = xlsx.SetSheetBackground("Sheet2", filepath.Join("test", "Book1.xlsx"))
  309. assert.EqualError(t, err, "unsupported image extension")
  310. }
  311. func TestMergeCell(t *testing.T) {
  312. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  313. if !assert.NoError(t, err) {
  314. t.FailNow()
  315. }
  316. xlsx.MergeCell("Sheet1", "D9", "D9")
  317. xlsx.MergeCell("Sheet1", "D9", "E9")
  318. xlsx.MergeCell("Sheet1", "H14", "G13")
  319. xlsx.MergeCell("Sheet1", "C9", "D8")
  320. xlsx.MergeCell("Sheet1", "F11", "G13")
  321. xlsx.MergeCell("Sheet1", "H7", "B15")
  322. xlsx.MergeCell("Sheet1", "D11", "F13")
  323. xlsx.MergeCell("Sheet1", "G10", "K12")
  324. xlsx.SetCellValue("Sheet1", "G11", "set value in merged cell")
  325. xlsx.SetCellInt("Sheet1", "H11", 100)
  326. xlsx.SetCellValue("Sheet1", "I11", float64(0.5))
  327. xlsx.SetCellHyperLink("Sheet1", "J11", "https://github.com/360EntSecGroup-Skylar/excelize", "External")
  328. xlsx.SetCellFormula("Sheet1", "G12", "SUM(Sheet1!B19,Sheet1!C19)")
  329. xlsx.GetCellValue("Sheet1", "H11")
  330. xlsx.GetCellValue("Sheet2", "A6") // Merged cell ref is single coordinate.
  331. xlsx.GetCellFormula("Sheet1", "G12")
  332. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestMergeCell.xlsx")))
  333. }
  334. func TestGetMergeCells(t *testing.T) {
  335. wants := []struct {
  336. value string
  337. start string
  338. end string
  339. }{{
  340. value: "A1",
  341. start: "A1",
  342. end: "B1",
  343. }, {
  344. value: "A2",
  345. start: "A2",
  346. end: "A3",
  347. }, {
  348. value: "A4",
  349. start: "A4",
  350. end: "B5",
  351. }, {
  352. value: "A7",
  353. start: "A7",
  354. end: "C10",
  355. }}
  356. xlsx, err := OpenFile(filepath.Join("test", "MergeCell.xlsx"))
  357. if !assert.NoError(t, err) {
  358. t.FailNow()
  359. }
  360. sheet1 := xlsx.GetSheetName(1)
  361. mergeCells := xlsx.GetMergeCells(sheet1)
  362. if !assert.Len(t, mergeCells, len(wants)) {
  363. t.FailNow()
  364. }
  365. for i, m := range mergeCells {
  366. assert.Equal(t, wants[i].value, m.GetCellValue())
  367. assert.Equal(t, wants[i].start, m.GetStartAxis())
  368. assert.Equal(t, wants[i].end, m.GetEndAxis())
  369. }
  370. }
  371. func TestSetCellStyleAlignment(t *testing.T) {
  372. xlsx, err := prepareTestBook1()
  373. if !assert.NoError(t, err) {
  374. t.FailNow()
  375. }
  376. var style int
  377. style, err = xlsx.NewStyle(`{"alignment":{"horizontal":"center","ident":1,"justify_last_line":true,"reading_order":0,"relative_indent":1,"shrink_to_fit":true,"text_rotation":45,"vertical":"top","wrap_text":true}}`)
  378. if !assert.NoError(t, err) {
  379. t.FailNow()
  380. }
  381. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A22", "A22", style))
  382. // Test set cell style with given illegal rows number.
  383. assert.EqualError(t, xlsx.SetCellStyle("Sheet1", "A", "A22", style), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  384. assert.EqualError(t, xlsx.SetCellStyle("Sheet1", "A22", "A", style), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  385. // Test get cell style with given illegal rows number.
  386. index, err := xlsx.GetCellStyle("Sheet1", "A")
  387. assert.Equal(t, 0, index)
  388. assert.EqualError(t, err, `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  389. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleAlignment.xlsx")))
  390. }
  391. func TestSetCellStyleBorder(t *testing.T) {
  392. xlsx, err := prepareTestBook1()
  393. if !assert.NoError(t, err) {
  394. t.FailNow()
  395. }
  396. var style int
  397. // Test set border on overlapping area with vertical variants shading styles gradient fill.
  398. style, err = xlsx.NewStyle(`{"border":[{"type":"left","color":"0000FF","style":2},{"type":"top","color":"00FF00","style":12},{"type":"bottom","color":"FFFF00","style":5},{"type":"right","color":"FF0000","style":6},{"type":"diagonalDown","color":"A020F0","style":9},{"type":"diagonalUp","color":"A020F0","style":8}]}`)
  399. if !assert.NoError(t, err) {
  400. t.FailNow()
  401. }
  402. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "J21", "L25", style))
  403. style, err = xlsx.NewStyle(`{"border":[{"type":"left","color":"0000FF","style":2},{"type":"top","color":"00FF00","style":3},{"type":"bottom","color":"FFFF00","style":4},{"type":"right","color":"FF0000","style":5},{"type":"diagonalDown","color":"A020F0","style":6},{"type":"diagonalUp","color":"A020F0","style":7}],"fill":{"type":"gradient","color":["#FFFFFF","#E0EBF5"],"shading":1}}`)
  404. if !assert.NoError(t, err) {
  405. t.FailNow()
  406. }
  407. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "M28", "K24", style))
  408. style, err = xlsx.NewStyle(`{"border":[{"type":"left","color":"0000FF","style":2},{"type":"top","color":"00FF00","style":3},{"type":"bottom","color":"FFFF00","style":4},{"type":"right","color":"FF0000","style":5},{"type":"diagonalDown","color":"A020F0","style":6},{"type":"diagonalUp","color":"A020F0","style":7}],"fill":{"type":"gradient","color":["#FFFFFF","#E0EBF5"],"shading":4}}`)
  409. if !assert.NoError(t, err) {
  410. t.FailNow()
  411. }
  412. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "M28", "K24", style))
  413. // Test set border and solid style pattern fill for a single cell.
  414. style, err = xlsx.NewStyle(`{"border":[{"type":"left","color":"0000FF","style":8},{"type":"top","color":"00FF00","style":9},{"type":"bottom","color":"FFFF00","style":10},{"type":"right","color":"FF0000","style":11},{"type":"diagonalDown","color":"A020F0","style":12},{"type":"diagonalUp","color":"A020F0","style":13}],"fill":{"type":"pattern","color":["#E0EBF5"],"pattern":1}}`)
  415. if !assert.NoError(t, err) {
  416. t.FailNow()
  417. }
  418. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "O22", "O22", style))
  419. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleBorder.xlsx")))
  420. }
  421. func TestSetCellStyleBorderErrors(t *testing.T) {
  422. xlsx, err := prepareTestBook1()
  423. if !assert.NoError(t, err) {
  424. t.FailNow()
  425. }
  426. // Set border with invalid style parameter.
  427. _, err = xlsx.NewStyle("")
  428. if !assert.EqualError(t, err, "unexpected end of JSON input") {
  429. t.FailNow()
  430. }
  431. // Set border with invalid style index number.
  432. _, err = xlsx.NewStyle(`{"border":[{"type":"left","color":"0000FF","style":-1},{"type":"top","color":"00FF00","style":14},{"type":"bottom","color":"FFFF00","style":5},{"type":"right","color":"FF0000","style":6},{"type":"diagonalDown","color":"A020F0","style":9},{"type":"diagonalUp","color":"A020F0","style":8}]}`)
  433. if !assert.NoError(t, err) {
  434. t.FailNow()
  435. }
  436. }
  437. func TestSetCellStyleNumberFormat(t *testing.T) {
  438. xlsx, err := prepareTestBook1()
  439. if !assert.NoError(t, err) {
  440. t.FailNow()
  441. }
  442. // Test only set fill and number format for a cell.
  443. col := []string{"L", "M", "N", "O", "P"}
  444. data := []int{0, 1, 2, 3, 4, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49}
  445. value := []string{"37947.7500001", "-37947.7500001", "0.007", "2.1", "String"}
  446. for i, v := range value {
  447. for k, d := range data {
  448. c := col[i] + strconv.Itoa(k+1)
  449. var val float64
  450. val, err = strconv.ParseFloat(v, 64)
  451. if err != nil {
  452. xlsx.SetCellValue("Sheet2", c, v)
  453. } else {
  454. xlsx.SetCellValue("Sheet2", c, val)
  455. }
  456. style, err := xlsx.NewStyle(`{"fill":{"type":"gradient","color":["#FFFFFF","#E0EBF5"],"shading":5},"number_format": ` + strconv.Itoa(d) + `}`)
  457. if !assert.NoError(t, err) {
  458. t.FailNow()
  459. }
  460. assert.NoError(t, xlsx.SetCellStyle("Sheet2", c, c, style))
  461. t.Log(xlsx.GetCellValue("Sheet2", c))
  462. }
  463. }
  464. var style int
  465. style, err = xlsx.NewStyle(`{"number_format":-1}`)
  466. if !assert.NoError(t, err) {
  467. t.FailNow()
  468. }
  469. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "L33", "L33", style))
  470. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleNumberFormat.xlsx")))
  471. }
  472. func TestSetCellStyleCurrencyNumberFormat(t *testing.T) {
  473. t.Run("TestBook3", func(t *testing.T) {
  474. xlsx, err := prepareTestBook3()
  475. if !assert.NoError(t, err) {
  476. t.FailNow()
  477. }
  478. xlsx.SetCellValue("Sheet1", "A1", 56)
  479. xlsx.SetCellValue("Sheet1", "A2", -32.3)
  480. var style int
  481. style, err = xlsx.NewStyle(`{"number_format": 188, "decimal_places": -1}`)
  482. if !assert.NoError(t, err) {
  483. t.FailNow()
  484. }
  485. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A1", "A1", style))
  486. style, err = xlsx.NewStyle(`{"number_format": 188, "decimal_places": 31, "negred": true}`)
  487. if !assert.NoError(t, err) {
  488. t.FailNow()
  489. }
  490. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A2", "A2", style))
  491. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleCurrencyNumberFormat.TestBook3.xlsx")))
  492. })
  493. t.Run("TestBook4", func(t *testing.T) {
  494. xlsx, err := prepareTestBook4()
  495. if !assert.NoError(t, err) {
  496. t.FailNow()
  497. }
  498. xlsx.SetCellValue("Sheet1", "A1", 42920.5)
  499. xlsx.SetCellValue("Sheet1", "A2", 42920.5)
  500. _, err = xlsx.NewStyle(`{"number_format": 26, "lang": "zh-tw"}`)
  501. if !assert.NoError(t, err) {
  502. t.FailNow()
  503. }
  504. style, err := xlsx.NewStyle(`{"number_format": 27}`)
  505. if !assert.NoError(t, err) {
  506. t.FailNow()
  507. }
  508. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A1", "A1", style))
  509. style, err = xlsx.NewStyle(`{"number_format": 31, "lang": "ko-kr"}`)
  510. if !assert.NoError(t, err) {
  511. t.FailNow()
  512. }
  513. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A2", "A2", style))
  514. style, err = xlsx.NewStyle(`{"number_format": 71, "lang": "th-th"}`)
  515. if !assert.NoError(t, err) {
  516. t.FailNow()
  517. }
  518. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A2", "A2", style))
  519. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleCurrencyNumberFormat.TestBook4.xlsx")))
  520. })
  521. }
  522. func TestSetCellStyleCustomNumberFormat(t *testing.T) {
  523. xlsx := NewFile()
  524. xlsx.SetCellValue("Sheet1", "A1", 42920.5)
  525. xlsx.SetCellValue("Sheet1", "A2", 42920.5)
  526. style, err := xlsx.NewStyle(`{"custom_number_format": "[$-380A]dddd\\,\\ dd\" de \"mmmm\" de \"yyyy;@"}`)
  527. if err != nil {
  528. t.Log(err)
  529. }
  530. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A1", "A1", style))
  531. style, err = xlsx.NewStyle(`{"custom_number_format": "[$-380A]dddd\\,\\ dd\" de \"mmmm\" de \"yyyy;@"}`)
  532. if err != nil {
  533. t.Log(err)
  534. }
  535. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "A2", "A2", style))
  536. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleCustomNumberFormat.xlsx")))
  537. }
  538. func TestSetCellStyleFill(t *testing.T) {
  539. xlsx, err := prepareTestBook1()
  540. if !assert.NoError(t, err) {
  541. t.FailNow()
  542. }
  543. var style int
  544. // Test set fill for cell with invalid parameter.
  545. style, err = xlsx.NewStyle(`{"fill":{"type":"gradient","color":["#FFFFFF","#E0EBF5"],"shading":6}}`)
  546. if !assert.NoError(t, err) {
  547. t.FailNow()
  548. }
  549. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "O23", "O23", style))
  550. style, err = xlsx.NewStyle(`{"fill":{"type":"gradient","color":["#FFFFFF"],"shading":1}}`)
  551. if !assert.NoError(t, err) {
  552. t.FailNow()
  553. }
  554. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "O23", "O23", style))
  555. style, err = xlsx.NewStyle(`{"fill":{"type":"pattern","color":[],"pattern":1}}`)
  556. if !assert.NoError(t, err) {
  557. t.FailNow()
  558. }
  559. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "O23", "O23", style))
  560. style, err = xlsx.NewStyle(`{"fill":{"type":"pattern","color":["#E0EBF5"],"pattern":19}}`)
  561. if !assert.NoError(t, err) {
  562. t.FailNow()
  563. }
  564. assert.NoError(t, xlsx.SetCellStyle("Sheet1", "O23", "O23", style))
  565. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleFill.xlsx")))
  566. }
  567. func TestSetCellStyleFont(t *testing.T) {
  568. xlsx, err := prepareTestBook1()
  569. if !assert.NoError(t, err) {
  570. t.FailNow()
  571. }
  572. var style int
  573. style, err = xlsx.NewStyle(`{"font":{"bold":true,"italic":true,"family":"Berlin Sans FB Demi","size":36,"color":"#777777","underline":"single"}}`)
  574. if !assert.NoError(t, err) {
  575. t.FailNow()
  576. }
  577. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A1", "A1", style))
  578. style, err = xlsx.NewStyle(`{"font":{"italic":true,"underline":"double"}}`)
  579. if !assert.NoError(t, err) {
  580. t.FailNow()
  581. }
  582. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A2", "A2", style))
  583. style, err = xlsx.NewStyle(`{"font":{"bold":true}}`)
  584. if !assert.NoError(t, err) {
  585. t.FailNow()
  586. }
  587. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A3", "A3", style))
  588. style, err = xlsx.NewStyle(`{"font":{"bold":true,"family":"","size":0,"color":"","underline":""}}`)
  589. if !assert.NoError(t, err) {
  590. t.FailNow()
  591. }
  592. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A4", "A4", style))
  593. style, err = xlsx.NewStyle(`{"font":{"color":"#777777"}}`)
  594. if !assert.NoError(t, err) {
  595. t.FailNow()
  596. }
  597. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A5", "A5", style))
  598. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleFont.xlsx")))
  599. }
  600. func TestSetCellStyleProtection(t *testing.T) {
  601. xlsx, err := prepareTestBook1()
  602. if !assert.NoError(t, err) {
  603. t.FailNow()
  604. }
  605. var style int
  606. style, err = xlsx.NewStyle(`{"protection":{"hidden":true, "locked":true}}`)
  607. if !assert.NoError(t, err) {
  608. t.FailNow()
  609. }
  610. assert.NoError(t, xlsx.SetCellStyle("Sheet2", "A6", "A6", style))
  611. err = xlsx.SaveAs(filepath.Join("test", "TestSetCellStyleProtection.xlsx"))
  612. if !assert.NoError(t, err) {
  613. t.FailNow()
  614. }
  615. }
  616. func TestSetDeleteSheet(t *testing.T) {
  617. t.Run("TestBook3", func(t *testing.T) {
  618. xlsx, err := prepareTestBook3()
  619. if !assert.NoError(t, err) {
  620. t.FailNow()
  621. }
  622. xlsx.DeleteSheet("XLSXSheet3")
  623. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetDeleteSheet.TestBook3.xlsx")))
  624. })
  625. t.Run("TestBook4", func(t *testing.T) {
  626. xlsx, err := prepareTestBook4()
  627. if !assert.NoError(t, err) {
  628. t.FailNow()
  629. }
  630. xlsx.DeleteSheet("Sheet1")
  631. xlsx.AddComment("Sheet1", "A1", "")
  632. xlsx.AddComment("Sheet1", "A1", `{"author":"Excelize: ","text":"This is a comment."}`)
  633. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetDeleteSheet.TestBook4.xlsx")))
  634. })
  635. }
  636. func TestSheetVisibility(t *testing.T) {
  637. xlsx, err := prepareTestBook1()
  638. if !assert.NoError(t, err) {
  639. t.FailNow()
  640. }
  641. xlsx.SetSheetVisible("Sheet2", false)
  642. xlsx.SetSheetVisible("Sheet1", false)
  643. xlsx.SetSheetVisible("Sheet1", true)
  644. xlsx.GetSheetVisible("Sheet1")
  645. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSheetVisibility.xlsx")))
  646. }
  647. func TestColumnVisibility(t *testing.T) {
  648. t.Run("TestBook1", func(t *testing.T) {
  649. xlsx, err := prepareTestBook1()
  650. if !assert.NoError(t, err) {
  651. t.FailNow()
  652. }
  653. assert.NoError(t, xlsx.SetColVisible("Sheet1", "F", false))
  654. assert.NoError(t, xlsx.SetColVisible("Sheet1", "F", true))
  655. visible, err := xlsx.GetColVisible("Sheet1", "F")
  656. assert.Equal(t, true, visible)
  657. assert.NoError(t, err)
  658. // Test get column visiable with illegal cell coordinates.
  659. _, err = xlsx.GetColVisible("Sheet1", "*")
  660. assert.EqualError(t, err, `invalid column name "*"`)
  661. assert.EqualError(t, xlsx.SetColVisible("Sheet1", "*", false), `invalid column name "*"`)
  662. assert.NoError(t, xlsx.SetColVisible("Sheet3", "E", false))
  663. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestColumnVisibility.xlsx")))
  664. })
  665. t.Run("TestBook3", func(t *testing.T) {
  666. xlsx, err := prepareTestBook3()
  667. if !assert.NoError(t, err) {
  668. t.FailNow()
  669. }
  670. xlsx.GetColVisible("Sheet1", "B")
  671. })
  672. }
  673. func TestCopySheet(t *testing.T) {
  674. xlsx, err := prepareTestBook1()
  675. if !assert.NoError(t, err) {
  676. t.FailNow()
  677. }
  678. idx := xlsx.NewSheet("CopySheet")
  679. err = xlsx.CopySheet(1, idx)
  680. if !assert.NoError(t, err) {
  681. t.FailNow()
  682. }
  683. xlsx.SetCellValue("Sheet4", "F1", "Hello")
  684. val, err := xlsx.GetCellValue("Sheet1", "F1")
  685. assert.NoError(t, err)
  686. assert.NotEqual(t, "Hello", val)
  687. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestCopySheet.xlsx")))
  688. }
  689. func TestCopySheetError(t *testing.T) {
  690. xlsx, err := prepareTestBook1()
  691. if !assert.NoError(t, err) {
  692. t.FailNow()
  693. }
  694. err = xlsx.CopySheet(0, -1)
  695. if !assert.EqualError(t, err, "invalid worksheet index") {
  696. t.FailNow()
  697. }
  698. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestCopySheetError.xlsx")))
  699. }
  700. func TestAddTable(t *testing.T) {
  701. xlsx, err := prepareTestBook1()
  702. if !assert.NoError(t, err) {
  703. t.FailNow()
  704. }
  705. err = xlsx.AddTable("Sheet1", "B26", "A21", `{}`)
  706. if !assert.NoError(t, err) {
  707. t.FailNow()
  708. }
  709. err = xlsx.AddTable("Sheet2", "A2", "B5", `{"table_name":"table","table_style":"TableStyleMedium2", "show_first_column":true,"show_last_column":true,"show_row_stripes":false,"show_column_stripes":true}`)
  710. if !assert.NoError(t, err) {
  711. t.FailNow()
  712. }
  713. err = xlsx.AddTable("Sheet2", "F1", "F1", `{"table_style":"TableStyleMedium8"}`)
  714. if !assert.NoError(t, err) {
  715. t.FailNow()
  716. }
  717. // Test add table with illegal formatset.
  718. assert.EqualError(t, xlsx.AddTable("Sheet1", "B26", "A21", `{x}`), "invalid character 'x' looking for beginning of object key string")
  719. // Test add table with illegal cell coordinates.
  720. assert.EqualError(t, xlsx.AddTable("Sheet1", "A", "B1", `{}`), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  721. assert.EqualError(t, xlsx.AddTable("Sheet1", "A1", "B", `{}`), `cannot convert cell "B" to coordinates: invalid cell name "B"`)
  722. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestAddTable.xlsx")))
  723. // Test addTable with illegal cell coordinates.
  724. f := NewFile()
  725. assert.EqualError(t, f.addTable("sheet1", "", 0, 0, 0, 0, 0, nil), "invalid cell coordinates [0, 0]")
  726. assert.EqualError(t, f.addTable("sheet1", "", 1, 1, 0, 0, 0, nil), "invalid cell coordinates [0, 0]")
  727. }
  728. func TestAddShape(t *testing.T) {
  729. xlsx, err := prepareTestBook1()
  730. if !assert.NoError(t, err) {
  731. t.FailNow()
  732. }
  733. xlsx.AddShape("Sheet1", "A30", `{"type":"rect","paragraph":[{"text":"Rectangle","font":{"color":"CD5C5C"}},{"text":"Shape","font":{"bold":true,"color":"2980B9"}}]}`)
  734. xlsx.AddShape("Sheet1", "B30", `{"type":"rect","paragraph":[{"text":"Rectangle"},{}]}`)
  735. xlsx.AddShape("Sheet1", "C30", `{"type":"rect","paragraph":[]}`)
  736. xlsx.AddShape("Sheet3", "H1", `{"type":"ellipseRibbon", "color":{"line":"#4286f4","fill":"#8eb9ff"}, "paragraph":[{"font":{"bold":true,"italic":true,"family":"Berlin Sans FB Demi","size":36,"color":"#777777","underline":"single"}}], "height": 90}`)
  737. xlsx.AddShape("Sheet3", "H1", "")
  738. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestAddShape.xlsx")))
  739. }
  740. func TestAddComments(t *testing.T) {
  741. xlsx, err := prepareTestBook1()
  742. if !assert.NoError(t, err) {
  743. t.FailNow()
  744. }
  745. s := strings.Repeat("c", 32768)
  746. xlsx.AddComment("Sheet1", "A30", `{"author":"`+s+`","text":"`+s+`"}`)
  747. xlsx.AddComment("Sheet2", "B7", `{"author":"Excelize: ","text":"This is a comment."}`)
  748. if assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestAddComments.xlsx"))) {
  749. assert.Len(t, xlsx.GetComments(), 2)
  750. }
  751. }
  752. func TestGetSheetComments(t *testing.T) {
  753. f := NewFile()
  754. assert.Equal(t, "", f.getSheetComments(0))
  755. }
  756. func TestAutoFilter(t *testing.T) {
  757. outFile := filepath.Join("test", "TestAutoFilter%d.xlsx")
  758. xlsx, err := prepareTestBook1()
  759. if !assert.NoError(t, err) {
  760. t.FailNow()
  761. }
  762. formats := []string{
  763. ``,
  764. `{"column":"B","expression":"x != blanks"}`,
  765. `{"column":"B","expression":"x == blanks"}`,
  766. `{"column":"B","expression":"x != nonblanks"}`,
  767. `{"column":"B","expression":"x == nonblanks"}`,
  768. `{"column":"B","expression":"x <= 1 and x >= 2"}`,
  769. `{"column":"B","expression":"x == 1 or x == 2"}`,
  770. `{"column":"B","expression":"x == 1 or x == 2*"}`,
  771. }
  772. for i, format := range formats {
  773. t.Run(fmt.Sprintf("Expression%d", i+1), func(t *testing.T) {
  774. err = xlsx.AutoFilter("Sheet3", "D4", "B1", format)
  775. if assert.NoError(t, err) {
  776. assert.NoError(t, xlsx.SaveAs(fmt.Sprintf(outFile, i+1)))
  777. }
  778. })
  779. }
  780. // testing AutoFilter with illegal cell coordinates.
  781. assert.EqualError(t, xlsx.AutoFilter("Sheet1", "A", "B1", ""), `cannot convert cell "A" to coordinates: invalid cell name "A"`)
  782. assert.EqualError(t, xlsx.AutoFilter("Sheet1", "A1", "B", ""), `cannot convert cell "B" to coordinates: invalid cell name "B"`)
  783. }
  784. func TestAutoFilterError(t *testing.T) {
  785. outFile := filepath.Join("test", "TestAutoFilterError%d.xlsx")
  786. xlsx, err := prepareTestBook1()
  787. if !assert.NoError(t, err) {
  788. t.FailNow()
  789. }
  790. formats := []string{
  791. `{"column":"B","expression":"x <= 1 and x >= blanks"}`,
  792. `{"column":"B","expression":"x -- y or x == *2*"}`,
  793. `{"column":"B","expression":"x != y or x ? *2"}`,
  794. `{"column":"B","expression":"x -- y o r x == *2"}`,
  795. `{"column":"B","expression":"x -- y"}`,
  796. `{"column":"A","expression":"x -- y"}`,
  797. }
  798. for i, format := range formats {
  799. t.Run(fmt.Sprintf("Expression%d", i+1), func(t *testing.T) {
  800. err = xlsx.AutoFilter("Sheet3", "D4", "B1", format)
  801. if assert.Error(t, err) {
  802. assert.NoError(t, xlsx.SaveAs(fmt.Sprintf(outFile, i+1)))
  803. }
  804. })
  805. }
  806. }
  807. func TestAddChart(t *testing.T) {
  808. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  809. if !assert.NoError(t, err) {
  810. t.FailNow()
  811. }
  812. categories := map[string]string{"A30": "Small", "A31": "Normal", "A32": "Large", "B29": "Apple", "C29": "Orange", "D29": "Pear"}
  813. values := map[string]int{"B30": 2, "C30": 3, "D30": 3, "B31": 5, "C31": 2, "D31": 4, "B32": 6, "C32": 7, "D32": 8}
  814. for k, v := range categories {
  815. xlsx.SetCellValue("Sheet1", k, v)
  816. }
  817. for k, v := range values {
  818. xlsx.SetCellValue("Sheet1", k, v)
  819. }
  820. xlsx.AddChart("Sheet1", "P1", "")
  821. xlsx.AddChart("Sheet1", "P1", `{"type":"col","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  822. xlsx.AddChart("Sheet1", "X1", `{"type":"colStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Stacked Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  823. xlsx.AddChart("Sheet1", "P16", `{"type":"colPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 100% Stacked Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  824. xlsx.AddChart("Sheet1", "X16", `{"type":"col3DClustered","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"bottom","show_legend_key":false},"title":{"name":"Fruit 3D Clustered Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  825. xlsx.AddChart("Sheet1", "P30", `{"type":"col3DStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D 100% Stacked Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  826. xlsx.AddChart("Sheet1", "X30", `{"type":"col3DPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D 100% Stacked Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  827. xlsx.AddChart("Sheet1", "P45", `{"type":"col3D","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D Column Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  828. xlsx.AddChart("Sheet2", "P1", `{"type":"radar","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"top_right","show_legend_key":false},"title":{"name":"Fruit Radar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"span"}`)
  829. xlsx.AddChart("Sheet2", "X1", `{"type":"scatter","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"bottom","show_legend_key":false},"title":{"name":"Fruit Scatter Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  830. xlsx.AddChart("Sheet2", "P16", `{"type":"doughnut","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"right","show_legend_key":false},"title":{"name":"Fruit Doughnut Chart"},"plotarea":{"show_bubble_size":false,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":false,"show_val":false},"show_blanks_as":"zero"}`)
  831. xlsx.AddChart("Sheet2", "X16", `{"type":"line","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"top","show_legend_key":false},"title":{"name":"Fruit Line Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  832. xlsx.AddChart("Sheet2", "P32", `{"type":"pie3D","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"bottom","show_legend_key":false},"title":{"name":"Fruit 3D Pie Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":false,"show_val":false},"show_blanks_as":"zero"}`)
  833. xlsx.AddChart("Sheet2", "X32", `{"type":"pie","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"bottom","show_legend_key":false},"title":{"name":"Fruit Pie Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":false,"show_val":false},"show_blanks_as":"gap"}`)
  834. xlsx.AddChart("Sheet2", "P48", `{"type":"bar","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Clustered Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  835. xlsx.AddChart("Sheet2", "X48", `{"type":"barStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Stacked Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  836. xlsx.AddChart("Sheet2", "P64", `{"type":"barPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Stacked 100% Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  837. xlsx.AddChart("Sheet2", "X64", `{"type":"bar3DClustered","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D Clustered Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  838. xlsx.AddChart("Sheet2", "P80", `{"type":"bar3DStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D Stacked Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero","y_axis":{"maximum":7.5,"minimum":0.5}}`)
  839. xlsx.AddChart("Sheet2", "X80", `{"type":"bar3DPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D 100% Stacked Bar Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero","x_axis":{"reverse_order":true,"maximum":0,"minimum":0},"y_axis":{"reverse_order":true,"maximum":0,"minimum":0}}`)
  840. // area series charts
  841. xlsx.AddChart("Sheet2", "AF1", `{"type":"area","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  842. xlsx.AddChart("Sheet2", "AN1", `{"type":"areaStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D Stacked Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  843. xlsx.AddChart("Sheet2", "AF16", `{"type":"areaPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 2D 100% Stacked Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  844. xlsx.AddChart("Sheet2", "AN16", `{"type":"area3D","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  845. xlsx.AddChart("Sheet2", "AF32", `{"type":"area3DStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D Stacked Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  846. xlsx.AddChart("Sheet2", "AN32", `{"type":"area3DPercentStacked","series":[{"name":"Sheet1!$A$30","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$30:$D$30"},{"name":"Sheet1!$A$31","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$31:$D$31"},{"name":"Sheet1!$A$32","categories":"Sheet1!$B$29:$D$29","values":"Sheet1!$B$32:$D$32"}],"format":{"x_scale":1.0,"y_scale":1.0,"x_offset":15,"y_offset":10,"print_obj":true,"lock_aspect_ratio":false,"locked":false},"legend":{"position":"left","show_legend_key":false},"title":{"name":"Fruit 3D 100% Stacked Area Chart"},"plotarea":{"show_bubble_size":true,"show_cat_name":false,"show_leader_lines":false,"show_percent":true,"show_series_name":true,"show_val":true},"show_blanks_as":"zero"}`)
  847. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestAddChart.xlsx")))
  848. }
  849. func TestInsertCol(t *testing.T) {
  850. xlsx := NewFile()
  851. sheet1 := xlsx.GetSheetName(1)
  852. fillCells(xlsx, sheet1, 10, 10)
  853. xlsx.SetCellHyperLink(sheet1, "A5", "https://github.com/360EntSecGroup-Skylar/excelize", "External")
  854. xlsx.MergeCell(sheet1, "A1", "C3")
  855. err := xlsx.AutoFilter(sheet1, "A2", "B2", `{"column":"B","expression":"x != blanks"}`)
  856. if !assert.NoError(t, err) {
  857. t.FailNow()
  858. }
  859. assert.NoError(t, xlsx.InsertCol(sheet1, "A"))
  860. // Test insert column with illegal cell coordinates.
  861. assert.EqualError(t, xlsx.InsertCol("Sheet1", "*"), `invalid column name "*"`)
  862. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestInsertCol.xlsx")))
  863. }
  864. func TestRemoveCol(t *testing.T) {
  865. xlsx := NewFile()
  866. sheet1 := xlsx.GetSheetName(1)
  867. fillCells(xlsx, sheet1, 10, 15)
  868. xlsx.SetCellHyperLink(sheet1, "A5", "https://github.com/360EntSecGroup-Skylar/excelize", "External")
  869. xlsx.SetCellHyperLink(sheet1, "C5", "https://github.com", "External")
  870. xlsx.MergeCell(sheet1, "A1", "B1")
  871. xlsx.MergeCell(sheet1, "A2", "B2")
  872. assert.NoError(t, xlsx.RemoveCol(sheet1, "A"))
  873. assert.NoError(t, xlsx.RemoveCol(sheet1, "A"))
  874. // Test remove column with illegal cell coordinates.
  875. assert.EqualError(t, xlsx.RemoveCol("Sheet1", "*"), `invalid column name "*"`)
  876. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestRemoveCol.xlsx")))
  877. }
  878. func TestSetPane(t *testing.T) {
  879. xlsx := NewFile()
  880. xlsx.SetPanes("Sheet1", `{"freeze":false,"split":false}`)
  881. xlsx.NewSheet("Panes 2")
  882. xlsx.SetPanes("Panes 2", `{"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"}]}`)
  883. xlsx.NewSheet("Panes 3")
  884. xlsx.SetPanes("Panes 3", `{"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"}]}`)
  885. xlsx.NewSheet("Panes 4")
  886. xlsx.SetPanes("Panes 4", `{"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"}]}`)
  887. xlsx.SetPanes("Panes 4", "")
  888. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetPane.xlsx")))
  889. }
  890. func TestConditionalFormat(t *testing.T) {
  891. xlsx := NewFile()
  892. sheet1 := xlsx.GetSheetName(1)
  893. fillCells(xlsx, sheet1, 10, 15)
  894. var format1, format2, format3 int
  895. var err error
  896. // Rose format for bad conditional.
  897. format1, err = xlsx.NewConditionalStyle(`{"font":{"color":"#9A0511"},"fill":{"type":"pattern","color":["#FEC7CE"],"pattern":1}}`)
  898. if !assert.NoError(t, err) {
  899. t.FailNow()
  900. }
  901. // Light yellow format for neutral conditional.
  902. format2, err = xlsx.NewConditionalStyle(`{"fill":{"type":"pattern","color":["#FEEAA0"],"pattern":1}}`)
  903. if !assert.NoError(t, err) {
  904. t.FailNow()
  905. }
  906. // Light green format for good conditional.
  907. format3, err = xlsx.NewConditionalStyle(`{"font":{"color":"#09600B"},"fill":{"type":"pattern","color":["#C7EECF"],"pattern":1}}`)
  908. if !assert.NoError(t, err) {
  909. t.FailNow()
  910. }
  911. // Color scales: 2 color.
  912. xlsx.SetConditionalFormat(sheet1, "A1:A10", `[{"type":"2_color_scale","criteria":"=","min_type":"min","max_type":"max","min_color":"#F8696B","max_color":"#63BE7B"}]`)
  913. // Color scales: 3 color.
  914. xlsx.SetConditionalFormat(sheet1, "B1:B10", `[{"type":"3_color_scale","criteria":"=","min_type":"min","mid_type":"percentile","max_type":"max","min_color":"#F8696B","mid_color":"#FFEB84","max_color":"#63BE7B"}]`)
  915. // Hightlight cells rules: between...
  916. xlsx.SetConditionalFormat(sheet1, "C1:C10", fmt.Sprintf(`[{"type":"cell","criteria":"between","format":%d,"minimum":"6","maximum":"8"}]`, format1))
  917. // Hightlight cells rules: Greater Than...
  918. xlsx.SetConditionalFormat(sheet1, "D1:D10", fmt.Sprintf(`[{"type":"cell","criteria":">","format":%d,"value":"6"}]`, format3))
  919. // Hightlight cells rules: Equal To...
  920. xlsx.SetConditionalFormat(sheet1, "E1:E10", fmt.Sprintf(`[{"type":"top","criteria":"=","format":%d}]`, format3))
  921. // Hightlight cells rules: Not Equal To...
  922. xlsx.SetConditionalFormat(sheet1, "F1:F10", fmt.Sprintf(`[{"type":"unique","criteria":"=","format":%d}]`, format2))
  923. // Hightlight cells rules: Duplicate Values...
  924. xlsx.SetConditionalFormat(sheet1, "G1:G10", fmt.Sprintf(`[{"type":"duplicate","criteria":"=","format":%d}]`, format2))
  925. // Top/Bottom rules: Top 10%.
  926. xlsx.SetConditionalFormat(sheet1, "H1:H10", fmt.Sprintf(`[{"type":"top","criteria":"=","format":%d,"value":"6","percent":true}]`, format1))
  927. // Top/Bottom rules: Above Average...
  928. xlsx.SetConditionalFormat(sheet1, "I1:I10", fmt.Sprintf(`[{"type":"average","criteria":"=","format":%d, "above_average": true}]`, format3))
  929. // Top/Bottom rules: Below Average...
  930. xlsx.SetConditionalFormat(sheet1, "J1:J10", fmt.Sprintf(`[{"type":"average","criteria":"=","format":%d, "above_average": false}]`, format1))
  931. // Data Bars: Gradient Fill.
  932. xlsx.SetConditionalFormat(sheet1, "K1:K10", `[{"type":"data_bar", "criteria":"=", "min_type":"min","max_type":"max","bar_color":"#638EC6"}]`)
  933. // Use a formula to determine which cells to format.
  934. xlsx.SetConditionalFormat(sheet1, "L1:L10", fmt.Sprintf(`[{"type":"formula", "criteria":"L2<3", "format":%d}]`, format1))
  935. // Test set invalid format set in conditional format
  936. xlsx.SetConditionalFormat(sheet1, "L1:L10", "")
  937. err = xlsx.SaveAs(filepath.Join("test", "TestConditionalFormat.xlsx"))
  938. if !assert.NoError(t, err) {
  939. t.FailNow()
  940. }
  941. // Set conditional format with illegal valid type.
  942. xlsx.SetConditionalFormat(sheet1, "K1:K10", `[{"type":"", "criteria":"=", "min_type":"min","max_type":"max","bar_color":"#638EC6"}]`)
  943. // Set conditional format with illegal criteria type.
  944. xlsx.SetConditionalFormat(sheet1, "K1:K10", `[{"type":"data_bar", "criteria":"", "min_type":"min","max_type":"max","bar_color":"#638EC6"}]`)
  945. // Set conditional format with file without dxfs element shold not return error.
  946. xlsx, err = OpenFile(filepath.Join("test", "Book1.xlsx"))
  947. if !assert.NoError(t, err) {
  948. t.FailNow()
  949. }
  950. _, err = xlsx.NewConditionalStyle(`{"font":{"color":"#9A0511"},"fill":{"type":"pattern","color":["#FEC7CE"],"pattern":1}}`)
  951. if !assert.NoError(t, err) {
  952. t.FailNow()
  953. }
  954. }
  955. func TestConditionalFormatError(t *testing.T) {
  956. xlsx := NewFile()
  957. sheet1 := xlsx.GetSheetName(1)
  958. fillCells(xlsx, sheet1, 10, 15)
  959. // Set conditional format with illegal JSON string should return error
  960. _, err := xlsx.NewConditionalStyle("")
  961. if !assert.EqualError(t, err, "unexpected end of JSON input") {
  962. t.FailNow()
  963. }
  964. }
  965. func TestSharedStrings(t *testing.T) {
  966. xlsx, err := OpenFile(filepath.Join("test", "SharedStrings.xlsx"))
  967. if !assert.NoError(t, err) {
  968. t.FailNow()
  969. }
  970. xlsx.GetRows("Sheet1")
  971. }
  972. func TestSetSheetRow(t *testing.T) {
  973. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  974. if !assert.NoError(t, err) {
  975. t.FailNow()
  976. }
  977. xlsx.SetSheetRow("Sheet1", "B27", &[]interface{}{"cell", nil, int32(42), float64(42), time.Now().UTC()})
  978. assert.EqualError(t, xlsx.SetSheetRow("Sheet1", "", &[]interface{}{"cell", nil, 2}),
  979. `cannot convert cell "" to coordinates: invalid cell name ""`)
  980. assert.EqualError(t, xlsx.SetSheetRow("Sheet1", "B27", []interface{}{}), `pointer to slice expected`)
  981. assert.EqualError(t, xlsx.SetSheetRow("Sheet1", "B27", &xlsx), `pointer to slice expected`)
  982. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestSetSheetRow.xlsx")))
  983. }
  984. func TestOutlineLevel(t *testing.T) {
  985. xlsx := NewFile()
  986. xlsx.NewSheet("Sheet2")
  987. xlsx.SetColOutlineLevel("Sheet1", "D", 4)
  988. xlsx.GetColOutlineLevel("Sheet1", "D")
  989. xlsx.GetColOutlineLevel("Shee2", "A")
  990. xlsx.SetColWidth("Sheet2", "A", "D", 13)
  991. xlsx.SetColOutlineLevel("Sheet2", "B", 2)
  992. xlsx.SetRowOutlineLevel("Sheet1", 2, 250)
  993. // Test set and get column outline level with illegal cell coordinates.
  994. assert.EqualError(t, xlsx.SetColOutlineLevel("Sheet1", "*", 1), `invalid column name "*"`)
  995. level, err := xlsx.GetColOutlineLevel("Sheet1", "*")
  996. assert.EqualError(t, err, `invalid column name "*"`)
  997. assert.EqualError(t, xlsx.SetRowOutlineLevel("Sheet1", 0, 1), "invalid row number 0")
  998. level, err = xlsx.GetRowOutlineLevel("Sheet1", 2)
  999. assert.NoError(t, err)
  1000. assert.Equal(t, uint8(250), level)
  1001. _, err = xlsx.GetRowOutlineLevel("Sheet1", 0)
  1002. assert.EqualError(t, err, `invalid row number 0`)
  1003. level, err = xlsx.GetRowOutlineLevel("Sheet1", 10)
  1004. assert.NoError(t, err)
  1005. assert.Equal(t, uint8(0), level)
  1006. err = xlsx.SaveAs(filepath.Join("test", "TestOutlineLevel.xlsx"))
  1007. if !assert.NoError(t, err) {
  1008. t.FailNow()
  1009. }
  1010. xlsx, err = OpenFile(filepath.Join("test", "Book1.xlsx"))
  1011. if !assert.NoError(t, err) {
  1012. t.FailNow()
  1013. }
  1014. xlsx.SetColOutlineLevel("Sheet2", "B", 2)
  1015. }
  1016. func TestThemeColor(t *testing.T) {
  1017. t.Log(ThemeColor("000000", -0.1))
  1018. t.Log(ThemeColor("000000", 0))
  1019. t.Log(ThemeColor("000000", 1))
  1020. }
  1021. func TestHSL(t *testing.T) {
  1022. var hsl HSL
  1023. t.Log(hsl.RGBA())
  1024. t.Log(hslModel(hsl))
  1025. t.Log(hslModel(color.Gray16{Y: uint16(1)}))
  1026. t.Log(HSLToRGB(0, 1, 0.4))
  1027. t.Log(HSLToRGB(0, 1, 0.6))
  1028. t.Log(hueToRGB(0, 0, -1))
  1029. t.Log(hueToRGB(0, 0, 2))
  1030. t.Log(hueToRGB(0, 0, 1.0/7))
  1031. t.Log(hueToRGB(0, 0, 0.4))
  1032. t.Log(hueToRGB(0, 0, 2.0/4))
  1033. t.Log(RGBToHSL(255, 255, 0))
  1034. t.Log(RGBToHSL(0, 255, 255))
  1035. t.Log(RGBToHSL(250, 100, 50))
  1036. t.Log(RGBToHSL(50, 100, 250))
  1037. t.Log(RGBToHSL(250, 50, 100))
  1038. }
  1039. func TestSearchSheet(t *testing.T) {
  1040. xlsx, err := OpenFile(filepath.Join("test", "SharedStrings.xlsx"))
  1041. if !assert.NoError(t, err) {
  1042. t.FailNow()
  1043. }
  1044. // Test search in a not exists worksheet.
  1045. t.Log(xlsx.SearchSheet("Sheet4", ""))
  1046. // Test search a not exists value.
  1047. t.Log(xlsx.SearchSheet("Sheet1", "X"))
  1048. t.Log(xlsx.SearchSheet("Sheet1", "A"))
  1049. // Test search the coordinates where the numerical value in the range of
  1050. // "0-9" of Sheet1 is described by regular expression:
  1051. t.Log(xlsx.SearchSheet("Sheet1", "[0-9]", true))
  1052. }
  1053. func TestProtectSheet(t *testing.T) {
  1054. xlsx := NewFile()
  1055. xlsx.ProtectSheet("Sheet1", nil)
  1056. xlsx.ProtectSheet("Sheet1", &FormatSheetProtection{
  1057. Password: "password",
  1058. EditScenarios: false,
  1059. })
  1060. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestProtectSheet.xlsx")))
  1061. }
  1062. func TestUnprotectSheet(t *testing.T) {
  1063. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  1064. if !assert.NoError(t, err) {
  1065. t.FailNow()
  1066. }
  1067. xlsx.UnprotectSheet("Sheet1")
  1068. assert.NoError(t, xlsx.SaveAs(filepath.Join("test", "TestUnprotectSheet.xlsx")))
  1069. }
  1070. func prepareTestBook1() (*File, error) {
  1071. xlsx, err := OpenFile(filepath.Join("test", "Book1.xlsx"))
  1072. if err != nil {
  1073. return nil, err
  1074. }
  1075. err = xlsx.AddPicture("Sheet2", "I9", filepath.Join("test", "images", "excel.jpg"),
  1076. `{"x_offset": 140, "y_offset": 120, "hyperlink": "#Sheet2!D8", "hyperlink_type": "Location"}`)
  1077. if err != nil {
  1078. return nil, err
  1079. }
  1080. // Test add picture to worksheet with offset, external hyperlink and positioning.
  1081. err = xlsx.AddPicture("Sheet1", "F21", filepath.Join("test", "images", "excel.png"),
  1082. `{"x_offset": 10, "y_offset": 10, "hyperlink": "https://github.com/360EntSecGroup-Skylar/excelize", "hyperlink_type": "External", "positioning": "oneCell"}`)
  1083. if err != nil {
  1084. return nil, err
  1085. }
  1086. file, err := ioutil.ReadFile(filepath.Join("test", "images", "excel.jpg"))
  1087. if err != nil {
  1088. return nil, err
  1089. }
  1090. err = xlsx.AddPictureFromBytes("Sheet1", "Q1", "", "Excel Logo", ".jpg", file)
  1091. if err != nil {
  1092. return nil, err
  1093. }
  1094. return xlsx, nil
  1095. }
  1096. func prepareTestBook3() (*File, error) {
  1097. xlsx := NewFile()
  1098. xlsx.NewSheet("Sheet1")
  1099. xlsx.NewSheet("XLSXSheet2")
  1100. xlsx.NewSheet("XLSXSheet3")
  1101. xlsx.SetCellInt("XLSXSheet2", "A23", 56)
  1102. xlsx.SetCellStr("Sheet1", "B20", "42")
  1103. xlsx.SetActiveSheet(0)
  1104. err := xlsx.AddPicture("Sheet1", "H2", filepath.Join("test", "images", "excel.gif"),
  1105. `{"x_scale": 0.5, "y_scale": 0.5, "positioning": "absolute"}`)
  1106. if err != nil {
  1107. return nil, err
  1108. }
  1109. err = xlsx.AddPicture("Sheet1", "C2", filepath.Join("test", "images", "excel.png"), "")
  1110. if err != nil {
  1111. return nil, err
  1112. }
  1113. return xlsx, nil
  1114. }
  1115. func prepareTestBook4() (*File, error) {
  1116. xlsx := NewFile()
  1117. xlsx.SetColWidth("Sheet1", "B", "A", 12)
  1118. xlsx.SetColWidth("Sheet1", "A", "B", 12)
  1119. xlsx.GetColWidth("Sheet1", "A")
  1120. xlsx.GetColWidth("Sheet1", "C")
  1121. return xlsx, nil
  1122. }
  1123. func fillCells(xlsx *File, sheet string, colCount, rowCount int) {
  1124. for col := 1; col <= colCount; col++ {
  1125. for row := 1; row <= rowCount; row++ {
  1126. cell, _ := CoordinatesToCellName(col, row)
  1127. xlsx.SetCellStr(sheet, cell, cell)
  1128. }
  1129. }
  1130. }