calc_test.go 38 KB

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  1. package excelize
  2. import (
  3. "container/list"
  4. "path/filepath"
  5. "strings"
  6. "testing"
  7. "github.com/stretchr/testify/assert"
  8. "github.com/xuri/efp"
  9. )
  10. func TestCalcCellValue(t *testing.T) {
  11. cellData := [][]interface{}{
  12. {1, 4, nil, "Month", "Team", "Sales"},
  13. {2, 5, nil, "Jan", "North 1", 36693},
  14. {3, nil, nil, "Jan", "North 2", 22100},
  15. {0, nil, nil, "Jan", "South 1", 53321},
  16. {nil, nil, nil, "Jan", "South 2", 34440},
  17. {nil, nil, nil, "Feb", "North 1", 29889},
  18. {nil, nil, nil, "Feb", "North 2", 50090},
  19. {nil, nil, nil, "Feb", "South 1", 32080},
  20. {nil, nil, nil, "Feb", "South 2", 45500},
  21. }
  22. prepareData := func() *File {
  23. f := NewFile()
  24. for r, row := range cellData {
  25. for c, value := range row {
  26. cell, _ := CoordinatesToCellName(c+1, r+1)
  27. assert.NoError(t, f.SetCellValue("Sheet1", cell, value))
  28. }
  29. }
  30. return f
  31. }
  32. mathCalc := map[string]string{
  33. "=2^3": "8",
  34. "=1=1": "TRUE",
  35. "=1=2": "FALSE",
  36. "=1<2": "TRUE",
  37. "=3<2": "FALSE",
  38. "=2<=3": "TRUE",
  39. "=2<=1": "FALSE",
  40. "=2>1": "TRUE",
  41. "=2>3": "FALSE",
  42. "=2>=1": "TRUE",
  43. "=2>=3": "FALSE",
  44. "=1&2": "12",
  45. // ABS
  46. "=ABS(-1)": "1",
  47. "=ABS(-6.5)": "6.5",
  48. "=ABS(6.5)": "6.5",
  49. "=ABS(0)": "0",
  50. "=ABS(2-4.5)": "2.5",
  51. "=ABS(ABS(-1))": "1",
  52. // ACOS
  53. "=ACOS(-1)": "3.141592653589793",
  54. "=ACOS(0)": "1.570796326794897",
  55. "=ACOS(ABS(0))": "1.570796326794897",
  56. // ACOSH
  57. "=ACOSH(1)": "0",
  58. "=ACOSH(2.5)": "1.566799236972411",
  59. "=ACOSH(5)": "2.292431669561178",
  60. "=ACOSH(ACOSH(5))": "1.471383321536679",
  61. // ACOT
  62. "=_xlfn.ACOT(1)": "0.785398163397448",
  63. "=_xlfn.ACOT(-2)": "2.677945044588987",
  64. "=_xlfn.ACOT(0)": "1.570796326794897",
  65. "=_xlfn.ACOT(_xlfn.ACOT(0))": "0.566911504941009",
  66. // ACOTH
  67. "=_xlfn.ACOTH(-5)": "-0.202732554054082",
  68. "=_xlfn.ACOTH(1.1)": "1.522261218861711",
  69. "=_xlfn.ACOTH(2)": "0.549306144334055",
  70. "=_xlfn.ACOTH(ABS(-2))": "0.549306144334055",
  71. // ARABIC
  72. `=_xlfn.ARABIC("IV")`: "4",
  73. `=_xlfn.ARABIC("-IV")`: "-4",
  74. `=_xlfn.ARABIC("MCXX")`: "1120",
  75. `=_xlfn.ARABIC("")`: "0",
  76. // ASIN
  77. "=ASIN(-1)": "-1.570796326794897",
  78. "=ASIN(0)": "0",
  79. "=ASIN(ASIN(0))": "0",
  80. // ASINH
  81. "=ASINH(0)": "0",
  82. "=ASINH(-0.5)": "-0.481211825059604",
  83. "=ASINH(2)": "1.44363547517881",
  84. "=ASINH(ASINH(0))": "0",
  85. // ATAN
  86. "=ATAN(-1)": "-0.785398163397448",
  87. "=ATAN(0)": "0",
  88. "=ATAN(1)": "0.785398163397448",
  89. "=ATAN(ATAN(0))": "0",
  90. // ATANH
  91. "=ATANH(-0.8)": "-1.09861228866811",
  92. "=ATANH(0)": "0",
  93. "=ATANH(0.5)": "0.549306144334055",
  94. "=ATANH(ATANH(0))": "0",
  95. // ATAN2
  96. "=ATAN2(1,1)": "0.785398163397448",
  97. "=ATAN2(1,-1)": "-0.785398163397448",
  98. "=ATAN2(4,0)": "0",
  99. "=ATAN2(4,ATAN2(4,0))": "0",
  100. // BASE
  101. "=BASE(12,2)": "1100",
  102. "=BASE(12,2,8)": "00001100",
  103. "=BASE(100000,16)": "186A0",
  104. "=BASE(BASE(12,2),16)": "44C",
  105. // CEILING
  106. "=CEILING(22.25,0.1)": "22.3",
  107. "=CEILING(22.25,0.5)": "22.5",
  108. "=CEILING(22.25,1)": "23",
  109. "=CEILING(22.25,10)": "30",
  110. "=CEILING(22.25,20)": "40",
  111. "=CEILING(-22.25,-0.1)": "-22.3",
  112. "=CEILING(-22.25,-1)": "-23",
  113. "=CEILING(-22.25,-5)": "-25",
  114. "=CEILING(22.25)": "23",
  115. "=CEILING(CEILING(22.25,0.1),0.1)": "22.3",
  116. // _xlfn.CEILING.MATH
  117. "=_xlfn.CEILING.MATH(15.25,1)": "16",
  118. "=_xlfn.CEILING.MATH(15.25,0.1)": "15.3",
  119. "=_xlfn.CEILING.MATH(15.25,5)": "20",
  120. "=_xlfn.CEILING.MATH(-15.25,1)": "-15",
  121. "=_xlfn.CEILING.MATH(-15.25,1,1)": "-15", // should be 16
  122. "=_xlfn.CEILING.MATH(-15.25,10)": "-10",
  123. "=_xlfn.CEILING.MATH(-15.25)": "-15",
  124. "=_xlfn.CEILING.MATH(-15.25,-5,-1)": "-10",
  125. "=_xlfn.CEILING.MATH(_xlfn.CEILING.MATH(15.25,1),1)": "16",
  126. // _xlfn.CEILING.PRECISE
  127. "=_xlfn.CEILING.PRECISE(22.25,0.1)": "22.3",
  128. "=_xlfn.CEILING.PRECISE(22.25,0.5)": "22.5",
  129. "=_xlfn.CEILING.PRECISE(22.25,1)": "23",
  130. "=_xlfn.CEILING.PRECISE(22.25)": "23",
  131. "=_xlfn.CEILING.PRECISE(22.25,10)": "30",
  132. "=_xlfn.CEILING.PRECISE(22.25,0)": "0",
  133. "=_xlfn.CEILING.PRECISE(-22.25,1)": "-22",
  134. "=_xlfn.CEILING.PRECISE(-22.25,-1)": "-22",
  135. "=_xlfn.CEILING.PRECISE(-22.25,5)": "-20",
  136. "=_xlfn.CEILING.PRECISE(_xlfn.CEILING.PRECISE(22.25,0.1),5)": "25",
  137. // COMBIN
  138. "=COMBIN(6,1)": "6",
  139. "=COMBIN(6,2)": "15",
  140. "=COMBIN(6,3)": "20",
  141. "=COMBIN(6,4)": "15",
  142. "=COMBIN(6,5)": "6",
  143. "=COMBIN(6,6)": "1",
  144. "=COMBIN(0,0)": "1",
  145. "=COMBIN(6,COMBIN(0,0))": "6",
  146. // _xlfn.COMBINA
  147. "=_xlfn.COMBINA(6,1)": "6",
  148. "=_xlfn.COMBINA(6,2)": "21",
  149. "=_xlfn.COMBINA(6,3)": "56",
  150. "=_xlfn.COMBINA(6,4)": "126",
  151. "=_xlfn.COMBINA(6,5)": "252",
  152. "=_xlfn.COMBINA(6,6)": "462",
  153. "=_xlfn.COMBINA(0,0)": "0",
  154. "=_xlfn.COMBINA(0,_xlfn.COMBINA(0,0))": "0",
  155. // COS
  156. "=COS(0.785398163)": "0.707106781467586",
  157. "=COS(0)": "1",
  158. "=COS(COS(0))": "0.54030230586814",
  159. // COSH
  160. "=COSH(0)": "1",
  161. "=COSH(0.5)": "1.127625965206381",
  162. "=COSH(-2)": "3.762195691083632",
  163. "=COSH(COSH(0))": "1.543080634815244",
  164. // _xlfn.COT
  165. "=_xlfn.COT(0.785398163397448)": "1.000000000000001",
  166. "=_xlfn.COT(_xlfn.COT(0.45))": "-0.545473116787229",
  167. // _xlfn.COTH
  168. "=_xlfn.COTH(-3.14159265358979)": "-1.003741873197322",
  169. "=_xlfn.COTH(_xlfn.COTH(1))": "1.156014018113954",
  170. // _xlfn.CSC
  171. "=_xlfn.CSC(-6)": "3.578899547254406",
  172. "=_xlfn.CSC(1.5707963267949)": "1",
  173. "=_xlfn.CSC(_xlfn.CSC(1))": "1.077851840310882",
  174. // _xlfn.CSCH
  175. "=_xlfn.CSCH(-3.14159265358979)": "-0.086589537530047",
  176. // _xlfn.DECIMAL
  177. `=_xlfn.DECIMAL("1100",2)`: "12",
  178. `=_xlfn.DECIMAL("186A0",16)`: "100000",
  179. `=_xlfn.DECIMAL("31L0",32)`: "100000",
  180. `=_xlfn.DECIMAL("70122",8)`: "28754",
  181. `=_xlfn.DECIMAL("0x70122",8)`: "28754",
  182. // DEGREES
  183. "=DEGREES(1)": "57.29577951308232",
  184. "=DEGREES(2.5)": "143.2394487827058",
  185. // EVEN
  186. "=EVEN(23)": "24",
  187. "=EVEN(2.22)": "4",
  188. "=EVEN(0)": "0",
  189. "=EVEN(-0.3)": "-2",
  190. "=EVEN(-11)": "-12",
  191. "=EVEN(-4)": "-4",
  192. // EXP
  193. "=EXP(100)": "2.6881171418161356E+43",
  194. "=EXP(0.1)": "1.105170918075648",
  195. "=EXP(0)": "1",
  196. "=EXP(-5)": "0.006737946999085",
  197. // FACT
  198. "=FACT(3)": "6",
  199. "=FACT(6)": "720",
  200. "=FACT(10)": "3.6288E+06",
  201. // FACTDOUBLE
  202. "=FACTDOUBLE(5)": "15",
  203. "=FACTDOUBLE(8)": "384",
  204. "=FACTDOUBLE(13)": "135135",
  205. // FLOOR
  206. "=FLOOR(26.75,0.1)": "26.700000000000003",
  207. "=FLOOR(26.75,0.5)": "26.5",
  208. "=FLOOR(26.75,1)": "26",
  209. "=FLOOR(26.75,10)": "20",
  210. "=FLOOR(26.75,20)": "20",
  211. "=FLOOR(-26.75,-0.1)": "-26.700000000000003",
  212. "=FLOOR(-26.75,-1)": "-26",
  213. "=FLOOR(-26.75,-5)": "-25",
  214. // _xlfn.FLOOR.MATH
  215. "=_xlfn.FLOOR.MATH(58.55)": "58",
  216. "=_xlfn.FLOOR.MATH(58.55,0.1)": "58.5",
  217. "=_xlfn.FLOOR.MATH(58.55,5)": "55",
  218. "=_xlfn.FLOOR.MATH(58.55,1,1)": "58",
  219. "=_xlfn.FLOOR.MATH(-58.55,1)": "-59",
  220. "=_xlfn.FLOOR.MATH(-58.55,1,-1)": "-58",
  221. "=_xlfn.FLOOR.MATH(-58.55,1,1)": "-59", // should be -58
  222. "=_xlfn.FLOOR.MATH(-58.55,10)": "-60",
  223. // _xlfn.FLOOR.PRECISE
  224. "=_xlfn.FLOOR.PRECISE(26.75,0.1)": "26.700000000000003",
  225. "=_xlfn.FLOOR.PRECISE(26.75,0.5)": "26.5",
  226. "=_xlfn.FLOOR.PRECISE(26.75,1)": "26",
  227. "=_xlfn.FLOOR.PRECISE(26.75)": "26",
  228. "=_xlfn.FLOOR.PRECISE(26.75,10)": "20",
  229. "=_xlfn.FLOOR.PRECISE(26.75,0)": "0",
  230. "=_xlfn.FLOOR.PRECISE(-26.75,1)": "-27",
  231. "=_xlfn.FLOOR.PRECISE(-26.75,-1)": "-27",
  232. "=_xlfn.FLOOR.PRECISE(-26.75,-5)": "-30",
  233. // GCD
  234. "=GCD(0)": "0",
  235. `=GCD("",1)`: "1",
  236. "=GCD(1,0)": "1",
  237. "=GCD(1,5)": "1",
  238. "=GCD(15,10,25)": "5",
  239. "=GCD(0,8,12)": "4",
  240. "=GCD(7,2)": "1",
  241. // INT
  242. "=INT(100.9)": "100",
  243. "=INT(5.22)": "5",
  244. "=INT(5.99)": "5",
  245. "=INT(-6.1)": "-7",
  246. "=INT(-100.9)": "-101",
  247. // ISO.CEILING
  248. "=ISO.CEILING(22.25)": "23",
  249. "=ISO.CEILING(22.25,1)": "23",
  250. "=ISO.CEILING(22.25,0.1)": "22.3",
  251. "=ISO.CEILING(22.25,10)": "30",
  252. "=ISO.CEILING(-22.25,1)": "-22",
  253. "=ISO.CEILING(-22.25,0.1)": "-22.200000000000003",
  254. "=ISO.CEILING(-22.25,5)": "-20",
  255. "=ISO.CEILING(-22.25,0)": "0",
  256. // LCM
  257. "=LCM(1,5)": "5",
  258. "=LCM(15,10,25)": "150",
  259. "=LCM(1,8,12)": "24",
  260. "=LCM(7,2)": "14",
  261. "=LCM(7)": "7",
  262. `=LCM("",1)`: "1",
  263. `=LCM(0,0)`: "0",
  264. // LN
  265. "=LN(1)": "0",
  266. "=LN(100)": "4.605170185988092",
  267. "=LN(0.5)": "-0.693147180559945",
  268. // LOG
  269. "=LOG(64,2)": "6",
  270. "=LOG(100)": "2",
  271. "=LOG(4,0.5)": "-2",
  272. "=LOG(500)": "2.698970004336019",
  273. // LOG10
  274. "=LOG10(100)": "2",
  275. "=LOG10(1000)": "3",
  276. "=LOG10(0.001)": "-3",
  277. "=LOG10(25)": "1.397940008672038",
  278. // MOD
  279. "=MOD(6,4)": "2",
  280. "=MOD(6,3)": "0",
  281. "=MOD(6,2.5)": "1",
  282. "=MOD(6,1.333)": "0.668",
  283. "=MOD(-10.23,1)": "0.77",
  284. // MROUND
  285. "=MROUND(333.7,0.5)": "333.5",
  286. "=MROUND(333.8,1)": "334",
  287. "=MROUND(333.3,2)": "334",
  288. "=MROUND(555.3,400)": "400",
  289. "=MROUND(555,1000)": "1000",
  290. "=MROUND(-555.7,-1)": "-556",
  291. "=MROUND(-555.4,-1)": "-555",
  292. "=MROUND(-1555,-1000)": "-2000",
  293. // MULTINOMIAL
  294. "=MULTINOMIAL(3,1,2,5)": "27720",
  295. `=MULTINOMIAL("",3,1,2,5)`: "27720",
  296. // _xlfn.MUNIT
  297. "=_xlfn.MUNIT(4)": "",
  298. // ODD
  299. "=ODD(22)": "23",
  300. "=ODD(1.22)": "3",
  301. "=ODD(1.22+4)": "7",
  302. "=ODD(0)": "1",
  303. "=ODD(-1.3)": "-3",
  304. "=ODD(-10)": "-11",
  305. "=ODD(-3)": "-3",
  306. // PI
  307. "=PI()": "3.141592653589793",
  308. // POWER
  309. "=POWER(4,2)": "16",
  310. // PRODUCT
  311. "=PRODUCT(3,6)": "18",
  312. `=PRODUCT("",3,6)`: "18",
  313. // QUOTIENT
  314. "=QUOTIENT(5,2)": "2",
  315. "=QUOTIENT(4.5,3.1)": "1",
  316. "=QUOTIENT(-10,3)": "-3",
  317. // RADIANS
  318. "=RADIANS(50)": "0.872664625997165",
  319. "=RADIANS(-180)": "-3.141592653589793",
  320. "=RADIANS(180)": "3.141592653589793",
  321. "=RADIANS(360)": "6.283185307179586",
  322. // ROMAN
  323. "=ROMAN(499,0)": "CDXCIX",
  324. "=ROMAN(1999,0)": "MCMXCIX",
  325. "=ROMAN(1999,1)": "MLMVLIV",
  326. "=ROMAN(1999,2)": "MXMIX",
  327. "=ROMAN(1999,3)": "MVMIV",
  328. "=ROMAN(1999,4)": "MIM",
  329. "=ROMAN(1999,-1)": "MCMXCIX",
  330. "=ROMAN(1999,5)": "MIM",
  331. // ROUND
  332. "=ROUND(100.319,1)": "100.30000000000001",
  333. "=ROUND(5.28,1)": "5.300000000000001",
  334. "=ROUND(5.9999,3)": "6.000000000000002",
  335. "=ROUND(99.5,0)": "100",
  336. "=ROUND(-6.3,0)": "-6",
  337. "=ROUND(-100.5,0)": "-101",
  338. "=ROUND(-22.45,1)": "-22.5",
  339. "=ROUND(999,-1)": "1000",
  340. "=ROUND(991,-1)": "990",
  341. // ROUNDDOWN
  342. "=ROUNDDOWN(99.999,1)": "99.9",
  343. "=ROUNDDOWN(99.999,2)": "99.99000000000002",
  344. "=ROUNDDOWN(99.999,0)": "99",
  345. "=ROUNDDOWN(99.999,-1)": "90",
  346. "=ROUNDDOWN(-99.999,2)": "-99.99000000000002",
  347. "=ROUNDDOWN(-99.999,-1)": "-90",
  348. // ROUNDUP`
  349. "=ROUNDUP(11.111,1)": "11.200000000000001",
  350. "=ROUNDUP(11.111,2)": "11.120000000000003",
  351. "=ROUNDUP(11.111,0)": "12",
  352. "=ROUNDUP(11.111,-1)": "20",
  353. "=ROUNDUP(-11.111,2)": "-11.120000000000003",
  354. "=ROUNDUP(-11.111,-1)": "-20",
  355. // SEC
  356. "=_xlfn.SEC(-3.14159265358979)": "-1",
  357. "=_xlfn.SEC(0)": "1",
  358. // SECH
  359. "=_xlfn.SECH(-3.14159265358979)": "0.086266738334055",
  360. "=_xlfn.SECH(0)": "1",
  361. // SIGN
  362. "=SIGN(9.5)": "1",
  363. "=SIGN(-9.5)": "-1",
  364. "=SIGN(0)": "0",
  365. "=SIGN(0.00000001)": "1",
  366. "=SIGN(6-7)": "-1",
  367. // SIN
  368. "=SIN(0.785398163)": "0.707106780905509",
  369. // SINH
  370. "=SINH(0)": "0",
  371. "=SINH(0.5)": "0.521095305493747",
  372. "=SINH(-2)": "-3.626860407847019",
  373. // SQRT
  374. "=SQRT(4)": "2",
  375. `=SQRT("")`: "0",
  376. // SQRTPI
  377. "=SQRTPI(5)": "3.963327297606011",
  378. "=SQRTPI(0.2)": "0.792665459521202",
  379. "=SQRTPI(100)": "17.72453850905516",
  380. "=SQRTPI(0)": "0",
  381. // SUM
  382. "=SUM(1,2)": "3",
  383. `=SUM("",1,2)`: "3",
  384. "=SUM(1,2+3)": "6",
  385. "=SUM(SUM(1,2),2)": "5",
  386. "=(-2-SUM(-4+7))*5": "-25",
  387. "SUM(1,2,3,4,5,6,7)": "28",
  388. "=SUM(1,2)+SUM(1,2)": "6",
  389. "=1+SUM(SUM(1,2*3),4)": "12",
  390. "=1+SUM(SUM(1,-2*3),4)": "0",
  391. "=(-2-SUM(-4*(7+7)))*5": "270",
  392. "=SUM(SUM(1+2/1)*2-3/2,2)": "6.5",
  393. "=((3+5*2)+3)/5+(-6)/4*2+3": "3.2",
  394. "=1+SUM(SUM(1,2*3),4)*-4/2+5+(4+2)*3": "2",
  395. "=1+SUM(SUM(1,2*3),4)*4/3+5+(4+2)*3": "38.666666666666664",
  396. // SUMIF
  397. `=SUMIF(F1:F5, "")`: "0",
  398. `=SUMIF(A1:A5, "3")`: "3",
  399. `=SUMIF(F1:F5, "=36693")`: "36693",
  400. `=SUMIF(F1:F5, "<100")`: "0",
  401. `=SUMIF(F1:F5, "<=36693")`: "93233",
  402. `=SUMIF(F1:F5, ">100")`: "146554",
  403. `=SUMIF(F1:F5, ">=100")`: "146554",
  404. `=SUMIF(F1:F5, ">=text")`: "0",
  405. `=SUMIF(F1:F5, "*Jan",F2:F5)`: "0",
  406. `=SUMIF(D3:D7,"Jan",F2:F5)`: "112114",
  407. `=SUMIF(D2:D9,"Feb",F2:F9)`: "157559",
  408. `=SUMIF(E2:E9,"North 1",F2:F9)`: "66582",
  409. `=SUMIF(E2:E9,"North*",F2:F9)`: "138772",
  410. // SUMSQ
  411. "=SUMSQ(A1:A4)": "14",
  412. "=SUMSQ(A1,B1,A2,B2,6)": "82",
  413. `=SUMSQ("",A1,B1,A2,B2,6)`: "82",
  414. // TAN
  415. "=TAN(1.047197551)": "1.732050806782486",
  416. "=TAN(0)": "0",
  417. // TANH
  418. "=TANH(0)": "0",
  419. "=TANH(0.5)": "0.46211715726001",
  420. "=TANH(-2)": "-0.964027580075817",
  421. // TRUNC
  422. "=TRUNC(99.999,1)": "99.9",
  423. "=TRUNC(99.999,2)": "99.99",
  424. "=TRUNC(99.999)": "99",
  425. "=TRUNC(99.999,-1)": "90",
  426. "=TRUNC(-99.999,2)": "-99.99",
  427. "=TRUNC(-99.999,-1)": "-90",
  428. // Statistical Functions
  429. // COUNTA
  430. `=COUNTA()`: "0",
  431. `=COUNTA(A1:A5,B2:B5,"text",1,2)`: "8",
  432. // MEDIAN
  433. "=MEDIAN(A1:A5,12)": "2",
  434. "=MEDIAN(A1:A5)": "1.5",
  435. // Information Functions
  436. // ISBLANK
  437. "=ISBLANK(A1)": "FALSE",
  438. "=ISBLANK(A5)": "TRUE",
  439. // ISERR
  440. "=ISERR(A1)": "FALSE",
  441. "=ISERR(NA())": "FALSE",
  442. // ISERROR
  443. "=ISERROR(A1)": "FALSE",
  444. "=ISERROR(NA())": "TRUE",
  445. // ISEVEN
  446. "=ISEVEN(A1)": "FALSE",
  447. "=ISEVEN(A2)": "TRUE",
  448. // ISNA
  449. "=ISNA(A1)": "FALSE",
  450. "=ISNA(NA())": "TRUE",
  451. // ISNONTEXT
  452. "=ISNONTEXT(A1)": "FALSE",
  453. "=ISNONTEXT(A5)": "TRUE",
  454. `=ISNONTEXT("Excelize")`: "FALSE",
  455. "=ISNONTEXT(NA())": "FALSE",
  456. // ISNUMBER
  457. "=ISNUMBER(A1)": "TRUE",
  458. "=ISNUMBER(D1)": "FALSE",
  459. // ISODD
  460. "=ISODD(A1)": "TRUE",
  461. "=ISODD(A2)": "FALSE",
  462. // NA
  463. "=NA()": "#N/A",
  464. // Logical Functions
  465. // AND
  466. "=AND(0)": "FALSE",
  467. "=AND(1)": "TRUE",
  468. "=AND(1,0)": "FALSE",
  469. "=AND(0,1)": "FALSE",
  470. "=AND(1=1)": "TRUE",
  471. "=AND(1<2)": "TRUE",
  472. "=AND(1>2,2<3,2>0,3>1)": "FALSE",
  473. "=AND(1=1),1=1": "TRUE",
  474. // OR
  475. "=OR(1)": "TRUE",
  476. "=OR(0)": "FALSE",
  477. "=OR(1=2,2=2)": "TRUE",
  478. "=OR(1=2,2=3)": "FALSE",
  479. // Date and Time Functions
  480. // DATE
  481. "=DATE(2020,10,21)": "2020-10-21 00:00:00 +0000 UTC",
  482. "=DATE(1900,1,1)": "1899-12-31 00:00:00 +0000 UTC",
  483. // Text Functions
  484. // CLEAN
  485. "=CLEAN(\"\u0009clean text\")": "clean text",
  486. "=CLEAN(0)": "0",
  487. // LEN
  488. "=LEN(\"\")": "0",
  489. "=LEN(D1)": "5",
  490. // TRIM
  491. "=TRIM(\" trim text \")": "trim text",
  492. "=TRIM(0)": "0",
  493. // LOWER
  494. "=LOWER(\"test\")": "test",
  495. "=LOWER(\"TEST\")": "test",
  496. "=LOWER(\"Test\")": "test",
  497. "=LOWER(\"TEST 123\")": "test 123",
  498. // PROPER
  499. "=PROPER(\"this is a test sentence\")": "This Is A Test Sentence",
  500. "=PROPER(\"THIS IS A TEST SENTENCE\")": "This Is A Test Sentence",
  501. "=PROPER(\"123tEST teXT\")": "123Test Text",
  502. "=PROPER(\"Mr. SMITH's address\")": "Mr. Smith'S Address",
  503. // UPPER
  504. "=UPPER(\"test\")": "TEST",
  505. "=UPPER(\"TEST\")": "TEST",
  506. "=UPPER(\"Test\")": "TEST",
  507. "=UPPER(\"TEST 123\")": "TEST 123",
  508. // Conditional Functions
  509. // IF
  510. "=IF(1=1)": "TRUE",
  511. "=IF(1<>1)": "FALSE",
  512. "=IF(5<0, \"negative\", \"positive\")": "positive",
  513. "=IF(-2<0, \"negative\", \"positive\")": "negative",
  514. // Excel Lookup and Reference Functions
  515. // CHOOSE
  516. "=CHOOSE(4,\"red\",\"blue\",\"green\",\"brown\")": "brown",
  517. "=CHOOSE(1,\"red\",\"blue\",\"green\",\"brown\")": "red",
  518. "=SUM(CHOOSE(A2,A1,B1:B2,A1:A3,A1:A4))": "9",
  519. }
  520. for formula, expected := range mathCalc {
  521. f := prepareData()
  522. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", formula))
  523. result, err := f.CalcCellValue("Sheet1", "C1")
  524. assert.NoError(t, err)
  525. assert.Equal(t, expected, result, formula)
  526. }
  527. mathCalcError := map[string]string{
  528. // ABS
  529. "=ABS()": "ABS requires 1 numeric argument",
  530. `=ABS("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  531. "=ABS(~)": `cannot convert cell "~" to coordinates: invalid cell name "~"`,
  532. // ACOS
  533. "=ACOS()": "ACOS requires 1 numeric argument",
  534. `=ACOS("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  535. "=ACOS(ACOS(0))": "#NUM!",
  536. // ACOSH
  537. "=ACOSH()": "ACOSH requires 1 numeric argument",
  538. `=ACOSH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  539. // _xlfn.ACOT
  540. "=_xlfn.ACOT()": "ACOT requires 1 numeric argument",
  541. `=_xlfn.ACOT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  542. // _xlfn.ACOTH
  543. "=_xlfn.ACOTH()": "ACOTH requires 1 numeric argument",
  544. `=_xlfn.ACOTH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  545. "=_xlfn.ACOTH(_xlfn.ACOTH(2))": "#NUM!",
  546. // _xlfn.ARABIC
  547. "=_xlfn.ARABIC()": "ARABIC requires 1 numeric argument",
  548. // ASIN
  549. "=ASIN()": "ASIN requires 1 numeric argument",
  550. `=ASIN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  551. // ASINH
  552. "=ASINH()": "ASINH requires 1 numeric argument",
  553. `=ASINH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  554. // ATAN
  555. "=ATAN()": "ATAN requires 1 numeric argument",
  556. `=ATAN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  557. // ATANH
  558. "=ATANH()": "ATANH requires 1 numeric argument",
  559. `=ATANH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  560. // ATAN2
  561. "=ATAN2()": "ATAN2 requires 2 numeric arguments",
  562. `=ATAN2("X",0)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  563. `=ATAN2(0,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  564. // BASE
  565. "=BASE()": "BASE requires at least 2 arguments",
  566. "=BASE(1,2,3,4)": "BASE allows at most 3 arguments",
  567. "=BASE(1,1)": "radix must be an integer >= 2 and <= 36",
  568. `=BASE("X",2)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  569. `=BASE(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  570. `=BASE(1,2,"X")`: "strconv.Atoi: parsing \"X\": invalid syntax",
  571. // CEILING
  572. "=CEILING()": "CEILING requires at least 1 argument",
  573. "=CEILING(1,2,3)": "CEILING allows at most 2 arguments",
  574. "=CEILING(1,-1)": "negative sig to CEILING invalid",
  575. `=CEILING("X",0)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  576. `=CEILING(0,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  577. // _xlfn.CEILING.MATH
  578. "=_xlfn.CEILING.MATH()": "CEILING.MATH requires at least 1 argument",
  579. "=_xlfn.CEILING.MATH(1,2,3,4)": "CEILING.MATH allows at most 3 arguments",
  580. `=_xlfn.CEILING.MATH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  581. `=_xlfn.CEILING.MATH(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  582. `=_xlfn.CEILING.MATH(1,2,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  583. // _xlfn.CEILING.PRECISE
  584. "=_xlfn.CEILING.PRECISE()": "CEILING.PRECISE requires at least 1 argument",
  585. "=_xlfn.CEILING.PRECISE(1,2,3)": "CEILING.PRECISE allows at most 2 arguments",
  586. `=_xlfn.CEILING.PRECISE("X",2)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  587. `=_xlfn.CEILING.PRECISE(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  588. // COMBIN
  589. "=COMBIN()": "COMBIN requires 2 argument",
  590. "=COMBIN(-1,1)": "COMBIN requires number >= number_chosen",
  591. `=COMBIN("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  592. `=COMBIN(-1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  593. // _xlfn.COMBINA
  594. "=_xlfn.COMBINA()": "COMBINA requires 2 argument",
  595. "=_xlfn.COMBINA(-1,1)": "COMBINA requires number > number_chosen",
  596. "=_xlfn.COMBINA(-1,-1)": "COMBIN requires number >= number_chosen",
  597. `=_xlfn.COMBINA("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  598. `=_xlfn.COMBINA(-1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  599. // COS
  600. "=COS()": "COS requires 1 numeric argument",
  601. `=COS("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  602. // COSH
  603. "=COSH()": "COSH requires 1 numeric argument",
  604. `=COSH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  605. // _xlfn.COT
  606. "=COT()": "COT requires 1 numeric argument",
  607. `=COT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  608. "=COT(0)": "#DIV/0!",
  609. // _xlfn.COTH
  610. "=COTH()": "COTH requires 1 numeric argument",
  611. `=COTH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  612. "=COTH(0)": "#DIV/0!",
  613. // _xlfn.CSC
  614. "=_xlfn.CSC()": "CSC requires 1 numeric argument",
  615. `=_xlfn.CSC("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  616. "=_xlfn.CSC(0)": "#DIV/0!",
  617. // _xlfn.CSCH
  618. "=_xlfn.CSCH()": "CSCH requires 1 numeric argument",
  619. `=_xlfn.CSCH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  620. "=_xlfn.CSCH(0)": "#DIV/0!",
  621. // _xlfn.DECIMAL
  622. "=_xlfn.DECIMAL()": "DECIMAL requires 2 numeric arguments",
  623. `=_xlfn.DECIMAL("X", 2)`: "strconv.ParseInt: parsing \"X\": invalid syntax",
  624. `=_xlfn.DECIMAL(2000, "X")`: "strconv.Atoi: parsing \"X\": invalid syntax",
  625. // DEGREES
  626. "=DEGREES()": "DEGREES requires 1 numeric argument",
  627. `=DEGREES("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  628. "=DEGREES(0)": "#DIV/0!",
  629. // EVEN
  630. "=EVEN()": "EVEN requires 1 numeric argument",
  631. `=EVEN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  632. // EXP
  633. "=EXP()": "EXP requires 1 numeric argument",
  634. `=EXP("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  635. // FACT
  636. "=FACT()": "FACT requires 1 numeric argument",
  637. `=FACT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  638. "=FACT(-1)": "#NUM!",
  639. // FACTDOUBLE
  640. "=FACTDOUBLE()": "FACTDOUBLE requires 1 numeric argument",
  641. `=FACTDOUBLE("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  642. "=FACTDOUBLE(-1)": "#NUM!",
  643. // FLOOR
  644. "=FLOOR()": "FLOOR requires 2 numeric arguments",
  645. `=FLOOR("X",-1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  646. `=FLOOR(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  647. "=FLOOR(1,-1)": "invalid arguments to FLOOR",
  648. // _xlfn.FLOOR.MATH
  649. "=_xlfn.FLOOR.MATH()": "FLOOR.MATH requires at least 1 argument",
  650. "=_xlfn.FLOOR.MATH(1,2,3,4)": "FLOOR.MATH allows at most 3 arguments",
  651. `=_xlfn.FLOOR.MATH("X",2,3)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  652. `=_xlfn.FLOOR.MATH(1,"X",3)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  653. `=_xlfn.FLOOR.MATH(1,2,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  654. // _xlfn.FLOOR.PRECISE
  655. "=_xlfn.FLOOR.PRECISE()": "FLOOR.PRECISE requires at least 1 argument",
  656. "=_xlfn.FLOOR.PRECISE(1,2,3)": "FLOOR.PRECISE allows at most 2 arguments",
  657. `=_xlfn.FLOOR.PRECISE("X",2)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  658. `=_xlfn.FLOOR.PRECISE(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  659. // GCD
  660. "=GCD()": "GCD requires at least 1 argument",
  661. "=GCD(-1)": "GCD only accepts positive arguments",
  662. "=GCD(1,-1)": "GCD only accepts positive arguments",
  663. `=GCD("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  664. // INT
  665. "=INT()": "INT requires 1 numeric argument",
  666. `=INT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  667. // ISO.CEILING
  668. "=ISO.CEILING()": "ISO.CEILING requires at least 1 argument",
  669. "=ISO.CEILING(1,2,3)": "ISO.CEILING allows at most 2 arguments",
  670. `=ISO.CEILING("X",2)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  671. `=ISO.CEILING(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  672. // LCM
  673. "=LCM()": "LCM requires at least 1 argument",
  674. "=LCM(-1)": "LCM only accepts positive arguments",
  675. "=LCM(1,-1)": "LCM only accepts positive arguments",
  676. `=LCM("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  677. // LN
  678. "=LN()": "LN requires 1 numeric argument",
  679. `=LN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  680. // LOG
  681. "=LOG()": "LOG requires at least 1 argument",
  682. "=LOG(1,2,3)": "LOG allows at most 2 arguments",
  683. `=LOG("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  684. `=LOG(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  685. "=LOG(0,0)": "#DIV/0!",
  686. "=LOG(1,0)": "#DIV/0!",
  687. "=LOG(1,1)": "#DIV/0!",
  688. // LOG10
  689. "=LOG10()": "LOG10 requires 1 numeric argument",
  690. `=LOG10("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  691. // MOD
  692. "=MOD()": "MOD requires 2 numeric arguments",
  693. "=MOD(6,0)": "MOD divide by zero",
  694. `=MOD("X",0)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  695. `=MOD(6,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  696. // MROUND
  697. "=MROUND()": "MROUND requires 2 numeric arguments",
  698. "=MROUND(1,0)": "#NUM!",
  699. "=MROUND(1,-1)": "#NUM!",
  700. `=MROUND("X",0)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  701. `=MROUND(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  702. // MULTINOMIAL
  703. `=MULTINOMIAL("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  704. // _xlfn.MUNIT
  705. "=_xlfn.MUNIT()": "MUNIT requires 1 numeric argument", // not support currently
  706. `=_xlfn.MUNIT("X")`: "strconv.Atoi: parsing \"X\": invalid syntax", // not support currently
  707. // ODD
  708. "=ODD()": "ODD requires 1 numeric argument",
  709. `=ODD("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  710. // PI
  711. "=PI(1)": "PI accepts no arguments",
  712. // POWER
  713. `=POWER("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  714. `=POWER(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  715. "=POWER(0,0)": "#NUM!",
  716. "=POWER(0,-1)": "#DIV/0!",
  717. "=POWER(1)": "POWER requires 2 numeric arguments",
  718. // PRODUCT
  719. `=PRODUCT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  720. // QUOTIENT
  721. `=QUOTIENT("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  722. `=QUOTIENT(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  723. "=QUOTIENT(1,0)": "#DIV/0!",
  724. "=QUOTIENT(1)": "QUOTIENT requires 2 numeric arguments",
  725. // RADIANS
  726. `=RADIANS("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  727. "=RADIANS()": "RADIANS requires 1 numeric argument",
  728. // RAND
  729. "=RAND(1)": "RAND accepts no arguments",
  730. // RANDBETWEEN
  731. `=RANDBETWEEN("X",1)`: "strconv.ParseInt: parsing \"X\": invalid syntax",
  732. `=RANDBETWEEN(1,"X")`: "strconv.ParseInt: parsing \"X\": invalid syntax",
  733. "=RANDBETWEEN()": "RANDBETWEEN requires 2 numeric arguments",
  734. "=RANDBETWEEN(2,1)": "#NUM!",
  735. // ROMAN
  736. "=ROMAN()": "ROMAN requires at least 1 argument",
  737. "=ROMAN(1,2,3)": "ROMAN allows at most 2 arguments",
  738. `=ROMAN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  739. `=ROMAN("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  740. // ROUND
  741. "=ROUND()": "ROUND requires 2 numeric arguments",
  742. `=ROUND("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  743. `=ROUND(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  744. // ROUNDDOWN
  745. "=ROUNDDOWN()": "ROUNDDOWN requires 2 numeric arguments",
  746. `=ROUNDDOWN("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  747. `=ROUNDDOWN(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  748. // ROUNDUP
  749. "=ROUNDUP()": "ROUNDUP requires 2 numeric arguments",
  750. `=ROUNDUP("X",1)`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  751. `=ROUNDUP(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  752. // SEC
  753. "=_xlfn.SEC()": "SEC requires 1 numeric argument",
  754. `=_xlfn.SEC("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  755. // _xlfn.SECH
  756. "=_xlfn.SECH()": "SECH requires 1 numeric argument",
  757. `=_xlfn.SECH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  758. // SIGN
  759. "=SIGN()": "SIGN requires 1 numeric argument",
  760. `=SIGN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  761. // SIN
  762. "=SIN()": "SIN requires 1 numeric argument",
  763. `=SIN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  764. // SINH
  765. "=SINH()": "SINH requires 1 numeric argument",
  766. `=SINH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  767. // SQRT
  768. "=SQRT()": "SQRT requires 1 numeric argument",
  769. `=SQRT("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  770. "=SQRT(-1)": "#NUM!",
  771. // SQRTPI
  772. "=SQRTPI()": "SQRTPI requires 1 numeric argument",
  773. `=SQRTPI("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  774. // SUM
  775. "=SUM((": "formula not valid",
  776. "=SUM(-)": "formula not valid",
  777. "=SUM(1+)": "formula not valid",
  778. "=SUM(1-)": "formula not valid",
  779. "=SUM(1*)": "formula not valid",
  780. "=SUM(1/)": "formula not valid",
  781. `=SUM("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  782. // SUMIF
  783. "=SUMIF()": "SUMIF requires at least 2 argument",
  784. // SUMSQ
  785. `=SUMSQ("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  786. // TAN
  787. "=TAN()": "TAN requires 1 numeric argument",
  788. `=TAN("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  789. // TANH
  790. "=TANH()": "TANH requires 1 numeric argument",
  791. `=TANH("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  792. // TRUNC
  793. "=TRUNC()": "TRUNC requires at least 1 argument",
  794. `=TRUNC("X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  795. `=TRUNC(1,"X")`: "strconv.ParseFloat: parsing \"X\": invalid syntax",
  796. // Statistical Functions
  797. // MEDIAN
  798. "=MEDIAN()": "MEDIAN requires at least 1 argument",
  799. // Information Functions
  800. // ISBLANK
  801. "=ISBLANK(A1,A2)": "ISBLANK requires 1 argument",
  802. // ISERR
  803. "=ISERR()": "ISERR requires 1 argument",
  804. // ISERROR
  805. "=ISERROR()": "ISERROR requires 1 argument",
  806. // ISEVEN
  807. "=ISEVEN()": "ISEVEN requires 1 argument",
  808. `=ISEVEN("text")`: "strconv.Atoi: parsing \"text\": invalid syntax",
  809. // ISNA
  810. "=ISNA()": "ISNA requires 1 argument",
  811. // ISNONTEXT
  812. "=ISNONTEXT()": "ISNONTEXT requires 1 argument",
  813. // ISNUMBER
  814. "=ISNUMBER()": "ISNUMBER requires 1 argument",
  815. // ISODD
  816. "=ISODD()": "ISODD requires 1 argument",
  817. `=ISODD("text")`: "strconv.Atoi: parsing \"text\": invalid syntax",
  818. // NA
  819. "=NA(1)": "NA accepts no arguments",
  820. // Logical Functions
  821. // AND
  822. `=AND("text")`: "strconv.ParseFloat: parsing \"text\": invalid syntax",
  823. `=AND(A1:B1)`: "#VALUE!",
  824. "=AND()": "AND requires at least 1 argument",
  825. "=AND(1" + strings.Repeat(",1", 30) + ")": "AND accepts at most 30 arguments",
  826. // OR
  827. `=OR("text")`: "strconv.ParseFloat: parsing \"text\": invalid syntax",
  828. `=OR(A1:B1)`: "#VALUE!",
  829. "=OR()": "OR requires at least 1 argument",
  830. "=OR(1" + strings.Repeat(",1", 30) + ")": "OR accepts at most 30 arguments",
  831. // Date and Time Functions
  832. // DATE
  833. "=DATE()": "DATE requires 3 number arguments",
  834. `=DATE("text",10,21)`: "DATE requires 3 number arguments",
  835. `=DATE(2020,"text",21)`: "DATE requires 3 number arguments",
  836. `=DATE(2020,10,"text")`: "DATE requires 3 number arguments",
  837. // Text Functions
  838. // CLEAN
  839. "=CLEAN()": "CLEAN requires 1 argument",
  840. "=CLEAN(1,2)": "CLEAN requires 1 argument",
  841. // LEN
  842. "=LEN()": "LEN requires 1 string argument",
  843. // TRIM
  844. "=TRIM()": "TRIM requires 1 argument",
  845. "=TRIM(1,2)": "TRIM requires 1 argument",
  846. // LOWER
  847. "=LOWER()": "LOWER requires 1 argument",
  848. "=LOWER(1,2)": "LOWER requires 1 argument",
  849. // UPPER
  850. "=UPPER()": "UPPER requires 1 argument",
  851. "=UPPER(1,2)": "UPPER requires 1 argument",
  852. // PROPER
  853. "=PROPER()": "PROPER requires 1 argument",
  854. "=PROPER(1,2)": "PROPER requires 1 argument",
  855. // Conditional Functions
  856. // IF
  857. "=IF()": "IF requires at least 1 argument",
  858. "=IF(0,1,2,3)": "IF accepts at most 3 arguments",
  859. "=IF(D1,1,2)": "strconv.ParseBool: parsing \"Month\": invalid syntax",
  860. // Excel Lookup and Reference Functions
  861. // CHOOSE
  862. "=CHOOSE()": "CHOOSE requires 2 arguments",
  863. "=CHOOSE(\"index_num\",0)": "CHOOSE requires first argument of type number",
  864. "=CHOOSE(2,0)": "index_num should be <= to the number of values",
  865. }
  866. for formula, expected := range mathCalcError {
  867. f := prepareData()
  868. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", formula))
  869. result, err := f.CalcCellValue("Sheet1", "C1")
  870. assert.EqualError(t, err, expected, formula)
  871. assert.Equal(t, "", result, formula)
  872. }
  873. referenceCalc := map[string]string{
  874. // MDETERM
  875. "=MDETERM(A1:B2)": "-3",
  876. // PRODUCT
  877. "=PRODUCT(Sheet1!A1:Sheet1!A1:A2,A2)": "4",
  878. // SUM
  879. "=A1/A3": "0.333333333333333",
  880. "=SUM(A1:A2)": "3",
  881. "=SUM(Sheet1!A1,A2)": "3",
  882. "=(-2-SUM(-4+A2))*5": "0",
  883. "=SUM(Sheet1!A1:Sheet1!A1:A2,A2)": "5",
  884. "=SUM(A1,A2,A3)*SUM(2,3)": "30",
  885. "=1+SUM(SUM(A1+A2/A3)*(2-3),2)": "1.333333333333334",
  886. "=A1/A2/SUM(A1:A2:B1)": "0.041666666666667",
  887. "=A1/A2/SUM(A1:A2:B1)*A3": "0.125",
  888. }
  889. for formula, expected := range referenceCalc {
  890. f := prepareData()
  891. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", formula))
  892. result, err := f.CalcCellValue("Sheet1", "C1")
  893. assert.NoError(t, err)
  894. assert.Equal(t, expected, result, formula)
  895. }
  896. referenceCalcError := map[string]string{
  897. // MDETERM
  898. "=MDETERM(A1:B3)": "#VALUE!",
  899. // SUM
  900. "=1+SUM(SUM(A1+A2/A4)*(2-3),2)": "#DIV/0!",
  901. }
  902. for formula, expected := range referenceCalcError {
  903. f := prepareData()
  904. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", formula))
  905. result, err := f.CalcCellValue("Sheet1", "C1")
  906. assert.EqualError(t, err, expected)
  907. assert.Equal(t, "", result, formula)
  908. }
  909. volatileFuncs := []string{
  910. "=RAND()",
  911. "=RANDBETWEEN(1,2)",
  912. }
  913. for _, formula := range volatileFuncs {
  914. f := prepareData()
  915. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", formula))
  916. _, err := f.CalcCellValue("Sheet1", "C1")
  917. assert.NoError(t, err)
  918. }
  919. // Test get calculated cell value on not formula cell.
  920. f := prepareData()
  921. result, err := f.CalcCellValue("Sheet1", "A1")
  922. assert.NoError(t, err)
  923. assert.Equal(t, "", result)
  924. // Test get calculated cell value on not exists worksheet.
  925. f = prepareData()
  926. _, err = f.CalcCellValue("SheetN", "A1")
  927. assert.EqualError(t, err, "sheet SheetN is not exist")
  928. // Test get calculated cell value with not support formula.
  929. f = prepareData()
  930. assert.NoError(t, f.SetCellFormula("Sheet1", "A1", "=UNSUPPORT(A1)"))
  931. _, err = f.CalcCellValue("Sheet1", "A1")
  932. assert.EqualError(t, err, "not support UNSUPPORT function")
  933. assert.NoError(t, f.SaveAs(filepath.Join("test", "TestCalcCellValue.xlsx")))
  934. }
  935. func TestCalculate(t *testing.T) {
  936. err := `strconv.ParseFloat: parsing "string": invalid syntax`
  937. opd := NewStack()
  938. opd.Push(efp.Token{TValue: "string"})
  939. opt := efp.Token{TValue: "-", TType: efp.TokenTypeOperatorPrefix}
  940. assert.EqualError(t, calculate(opd, opt), err)
  941. opd.Push(efp.Token{TValue: "string"})
  942. opd.Push(efp.Token{TValue: "string"})
  943. opt = efp.Token{TValue: "-", TType: efp.TokenTypeOperatorInfix}
  944. assert.EqualError(t, calculate(opd, opt), err)
  945. }
  946. func TestCalcCellValueWithDefinedName(t *testing.T) {
  947. cellData := [][]interface{}{
  948. {"A1 value", "B1 value", nil},
  949. }
  950. prepareData := func() *File {
  951. f := NewFile()
  952. for r, row := range cellData {
  953. for c, value := range row {
  954. cell, _ := CoordinatesToCellName(c+1, r+1)
  955. assert.NoError(t, f.SetCellValue("Sheet1", cell, value))
  956. }
  957. }
  958. assert.NoError(t, f.SetDefinedName(&DefinedName{Name: "defined_name1", RefersTo: "Sheet1!A1", Scope: "Workbook"}))
  959. assert.NoError(t, f.SetDefinedName(&DefinedName{Name: "defined_name1", RefersTo: "Sheet1!B1", Scope: "Sheet1"}))
  960. return f
  961. }
  962. f := prepareData()
  963. assert.NoError(t, f.SetCellFormula("Sheet1", "C1", "=defined_name1"))
  964. result, err := f.CalcCellValue("Sheet1", "C1")
  965. assert.NoError(t, err)
  966. // DefinedName with scope WorkSheet takes precedence over DefinedName with scope Workbook, so we should get B1 value
  967. assert.Equal(t, "B1 value", result, "=defined_name1")
  968. }
  969. func TestCalcPow(t *testing.T) {
  970. err := `strconv.ParseFloat: parsing "text": invalid syntax`
  971. assert.EqualError(t, calcPow("1", "text", nil), err)
  972. assert.EqualError(t, calcPow("text", "1", nil), err)
  973. assert.EqualError(t, calcL("1", "text", nil), err)
  974. assert.EqualError(t, calcL("text", "1", nil), err)
  975. assert.EqualError(t, calcLe("1", "text", nil), err)
  976. assert.EqualError(t, calcLe("text", "1", nil), err)
  977. assert.EqualError(t, calcG("1", "text", nil), err)
  978. assert.EqualError(t, calcG("text", "1", nil), err)
  979. assert.EqualError(t, calcGe("1", "text", nil), err)
  980. assert.EqualError(t, calcGe("text", "1", nil), err)
  981. assert.EqualError(t, calcAdd("1", "text", nil), err)
  982. assert.EqualError(t, calcAdd("text", "1", nil), err)
  983. assert.EqualError(t, calcAdd("1", "text", nil), err)
  984. assert.EqualError(t, calcAdd("text", "1", nil), err)
  985. assert.EqualError(t, calcSubtract("1", "text", nil), err)
  986. assert.EqualError(t, calcSubtract("text", "1", nil), err)
  987. assert.EqualError(t, calcMultiply("1", "text", nil), err)
  988. assert.EqualError(t, calcMultiply("text", "1", nil), err)
  989. assert.EqualError(t, calcDiv("1", "text", nil), err)
  990. assert.EqualError(t, calcDiv("text", "1", nil), err)
  991. }
  992. func TestISBLANK(t *testing.T) {
  993. argsList := list.New()
  994. argsList.PushBack(formulaArg{
  995. Type: ArgUnknown,
  996. })
  997. fn := formulaFuncs{}
  998. result := fn.ISBLANK(argsList)
  999. assert.Equal(t, result.String, "TRUE")
  1000. assert.Empty(t, result.Error)
  1001. }
  1002. func TestAND(t *testing.T) {
  1003. argsList := list.New()
  1004. argsList.PushBack(formulaArg{
  1005. Type: ArgUnknown,
  1006. })
  1007. fn := formulaFuncs{}
  1008. result := fn.AND(argsList)
  1009. assert.Equal(t, result.String, "")
  1010. assert.Empty(t, result.Error)
  1011. }
  1012. func TestOR(t *testing.T) {
  1013. argsList := list.New()
  1014. argsList.PushBack(formulaArg{
  1015. Type: ArgUnknown,
  1016. })
  1017. fn := formulaFuncs{}
  1018. result := fn.OR(argsList)
  1019. assert.Equal(t, result.String, "FALSE")
  1020. assert.Empty(t, result.Error)
  1021. }
  1022. func TestDet(t *testing.T) {
  1023. assert.Equal(t, det([][]float64{
  1024. {1, 2, 3, 4},
  1025. {2, 3, 4, 5},
  1026. {3, 4, 5, 6},
  1027. {4, 5, 6, 7},
  1028. }), float64(0))
  1029. }