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/projects/jruby-1.7.3/test/externals/ruby1.9/ruby/test_complex.rb

https://gitlab.com/essere.lab.public/qualitas.class-corpus
Ruby | 1151 lines | 883 code | 213 blank | 55 comment | 64 complexity | 480050c00997242c48ea90eb240add11 MD5 | raw file
  1. require 'test/unit'
  2. class ComplexSub < Complex; end
  3. class Complex_Test < Test::Unit::TestCase
  4. def setup
  5. @rational = defined?(Rational)
  6. if @rational
  7. @keiju = Rational.instance_variables.include?(:@RCS_ID)
  8. end
  9. seps = [File::SEPARATOR, File::ALT_SEPARATOR].compact.map{|x| Regexp.escape(x)}.join("|")
  10. @unify = $".grep(/(?:^|#{seps})mathn(?:\.(?:rb|so))?/).size != 0
  11. end
  12. def test_rationalize
  13. assert_equal(1.quo(3), Complex(1/3.0, 0).rationalize, '[ruby-core:38885]')
  14. assert_equal(1.quo(5), Complex(0.2, 0).rationalize, '[ruby-core:38885]')
  15. assert_equal(5.quo(2), Complex(2.5, 0).rationalize(0), '[ruby-core:40667]')
  16. end
  17. def test_compsub
  18. c = ComplexSub.__send__(:convert, 1)
  19. assert_kind_of(Numeric, c)
  20. if @unify
  21. assert_instance_of(Fixnum, c)
  22. else
  23. assert_instance_of(ComplexSub, c)
  24. c2 = c + 1
  25. assert_instance_of(ComplexSub, c2)
  26. c2 = c - 1
  27. assert_instance_of(ComplexSub, c2)
  28. c3 = c - c2
  29. assert_instance_of(ComplexSub, c3)
  30. s = Marshal.dump(c)
  31. c5 = Marshal.load(s)
  32. assert_equal(c, c5)
  33. assert_instance_of(ComplexSub, c5)
  34. end
  35. c1 = Complex(1)
  36. assert_equal(c1.hash, c.hash, '[ruby-dev:38850]')
  37. assert_equal([true, true], [c.eql?(c1), c1.eql?(c)])
  38. end
  39. def test_eql_p
  40. c = Complex(0)
  41. c2 = Complex(0)
  42. c3 = Complex(1)
  43. assert_equal(true, c.eql?(c2))
  44. assert_equal(false, c.eql?(c3))
  45. if @unify
  46. assert_equal(true, c.eql?(0))
  47. else
  48. assert_equal(false, c.eql?(0))
  49. end
  50. end
  51. def test_hash
  52. assert_instance_of(Fixnum, Complex(1,2).hash)
  53. assert_instance_of(Fixnum, Complex(1.0,2.0).hash)
  54. h = {}
  55. h[Complex(0)] = 0
  56. h[Complex(0,1)] = 1
  57. h[Complex(1,0)] = 2
  58. h[Complex(1,1)] = 3
  59. assert_equal(4, h.size)
  60. assert_equal(2, h[Complex(1,0)])
  61. h[Complex(0,0)] = 9
  62. assert_equal(4, h.size)
  63. h[Complex(0.0,0.0)] = 9.0
  64. assert_equal(5, h.size)
  65. if (0.0/0).nan? && !((0.0/0).eql?(0.0/0))
  66. h = {}
  67. 3.times{h[Complex(0.0/0)] = 1}
  68. assert_equal(3, h.size)
  69. end
  70. end
  71. def test_freeze
  72. c = Complex(1)
  73. c.freeze
  74. unless @unify
  75. assert_equal(true, c.frozen?)
  76. end
  77. assert_instance_of(String, c.to_s)
  78. end
  79. def test_conv
  80. c = Complex(0,0)
  81. assert_equal(Complex(0,0), c)
  82. c = Complex(2**32, 2**32)
  83. assert_equal(Complex(2**32,2**32), c)
  84. assert_equal([2**32,2**32], [c.real,c.imag])
  85. c = Complex(-2**32, 2**32)
  86. assert_equal(Complex(-2**32,2**32), c)
  87. assert_equal([-2**32,2**32], [c.real,c.imag])
  88. c = Complex(2**32, -2**32)
  89. assert_equal(Complex(2**32,-2**32), c)
  90. assert_equal([2**32,-2**32], [c.real,c.imag])
  91. c = Complex(-2**32, -2**32)
  92. assert_equal(Complex(-2**32,-2**32), c)
  93. assert_equal([-2**32,-2**32], [c.real,c.imag])
  94. c = Complex(Complex(1,2),2)
  95. assert_equal(Complex(1,4), c)
  96. c = Complex(2,Complex(1,2))
  97. assert_equal(Complex(0,1), c)
  98. c = Complex(Complex(1,2),Complex(1,2))
  99. assert_equal(Complex(-1,3), c)
  100. c = Complex::I
  101. assert_equal(Complex(0,1), c)
  102. assert_equal(Complex(1),Complex(1))
  103. assert_equal(Complex(1),Complex('1'))
  104. assert_equal(Complex(3.0,3.0),Complex('3.0','3.0'))
  105. if @rational && !@keiju
  106. assert_equal(Complex(1,1),Complex('3/3','3/3'))
  107. end
  108. assert_raise(TypeError){Complex(nil)}
  109. assert_raise(TypeError){Complex(Object.new)}
  110. assert_raise(ArgumentError){Complex()}
  111. assert_raise(ArgumentError){Complex(1,2,3)}
  112. if (0.0/0).nan?
  113. assert_nothing_raised{Complex(0.0/0)}
  114. end
  115. if (1.0/0).infinite?
  116. assert_nothing_raised{Complex(1.0/0)}
  117. end
  118. end
  119. def test_attr
  120. c = Complex(4)
  121. assert_equal(4, c.real)
  122. assert_equal(0, c.imag)
  123. c = Complex(4,5)
  124. assert_equal(4, c.real)
  125. assert_equal(5, c.imag)
  126. if -0.0.to_s == '-0.0'
  127. c = Complex(-0.0,-0.0)
  128. assert_equal('-0.0', c.real.to_s)
  129. assert_equal('-0.0', c.imag.to_s)
  130. end
  131. c = Complex(4)
  132. assert_equal(4, c.real)
  133. assert_equal(0, c.imag)
  134. assert_equal(c.imag, c.imaginary)
  135. c = Complex(4,5)
  136. assert_equal(4, c.real)
  137. assert_equal(5, c.imag)
  138. assert_equal(c.imag, c.imaginary)
  139. if -0.0.to_s == '-0.0'
  140. c = Complex(-0.0,-0.0)
  141. assert_equal('-0.0', c.real.to_s)
  142. assert_equal('-0.0', c.imag.to_s)
  143. assert_equal(c.imag.to_s, c.imaginary.to_s)
  144. end
  145. c = Complex(4)
  146. assert_equal(4, c.real)
  147. assert_equal(c.imag, c.imaginary)
  148. assert_equal(0, c.imag)
  149. c = Complex(4,5)
  150. assert_equal(4, c.real)
  151. assert_equal(5, c.imag)
  152. assert_equal(c.imag, c.imaginary)
  153. c = Complex(-0.0,-0.0)
  154. assert_equal('-0.0', c.real.to_s)
  155. assert_equal('-0.0', c.imag.to_s)
  156. assert_equal(c.imag.to_s, c.imaginary.to_s)
  157. end
  158. def test_attr2
  159. c = Complex(1)
  160. if @unify
  161. =begin
  162. assert_equal(true, c.finite?)
  163. assert_equal(false, c.infinite?)
  164. assert_equal(false, c.nan?)
  165. assert_equal(true, c.integer?)
  166. assert_equal(false, c.float?)
  167. assert_equal(true, c.rational?)
  168. =end
  169. assert_equal(true, c.real?)
  170. =begin
  171. assert_equal(false, c.complex?)
  172. assert_equal(true, c.exact?)
  173. assert_equal(false, c.inexact?)
  174. =end
  175. else
  176. =begin
  177. assert_equal(true, c.finite?)
  178. assert_equal(false, c.infinite?)
  179. assert_equal(false, c.nan?)
  180. assert_equal(false, c.integer?)
  181. assert_equal(false, c.float?)
  182. assert_equal(false, c.rational?)
  183. =end
  184. assert_equal(false, c.real?)
  185. =begin
  186. assert_equal(true, c.complex?)
  187. assert_equal(true, c.exact?)
  188. assert_equal(false, c.inexact?)
  189. =end
  190. end
  191. =begin
  192. assert_equal(0, Complex(0).sign)
  193. assert_equal(1, Complex(2).sign)
  194. assert_equal(-1, Complex(-2).sign)
  195. =end
  196. assert_equal(true, Complex(0).zero?)
  197. assert_equal(true, Complex(0,0).zero?)
  198. assert_equal(false, Complex(1,0).zero?)
  199. assert_equal(false, Complex(0,1).zero?)
  200. assert_equal(false, Complex(1,1).zero?)
  201. assert_equal(nil, Complex(0).nonzero?)
  202. assert_equal(nil, Complex(0,0).nonzero?)
  203. assert_equal(Complex(1,0), Complex(1,0).nonzero?)
  204. assert_equal(Complex(0,1), Complex(0,1).nonzero?)
  205. assert_equal(Complex(1,1), Complex(1,1).nonzero?)
  206. end
  207. def test_rect
  208. assert_equal([1,2], Complex.rectangular(1,2).rectangular)
  209. assert_equal([1,2], Complex.rect(1,2).rect)
  210. end
  211. def test_polar
  212. assert_equal([1,2], Complex.polar(1,2).polar)
  213. end
  214. def test_uplus
  215. assert_equal(Complex(1), +Complex(1))
  216. assert_equal(Complex(-1), +Complex(-1))
  217. assert_equal(Complex(1,1), +Complex(1,1))
  218. assert_equal(Complex(-1,1), +Complex(-1,1))
  219. assert_equal(Complex(1,-1), +Complex(1,-1))
  220. assert_equal(Complex(-1,-1), +Complex(-1,-1))
  221. if -0.0.to_s == '-0.0'
  222. c = +Complex(0.0,0.0)
  223. assert_equal('0.0', c.real.to_s)
  224. assert_equal('0.0', c.imag.to_s)
  225. c = +Complex(-0.0,-0.0)
  226. assert_equal('-0.0', c.real.to_s)
  227. assert_equal('-0.0', c.imag.to_s)
  228. end
  229. end
  230. def test_negate
  231. assert_equal(Complex(-1), -Complex(1))
  232. assert_equal(Complex(1), -Complex(-1))
  233. assert_equal(Complex(-1,-1), -Complex(1,1))
  234. assert_equal(Complex(1,-1), -Complex(-1,1))
  235. assert_equal(Complex(-1,1), -Complex(1,-1))
  236. assert_equal(Complex(1,1), -Complex(-1,-1))
  237. if -0.0.to_s == '-0.0'
  238. c = -Complex(0.0,0.0)
  239. assert_equal('-0.0', c.real.to_s)
  240. assert_equal('-0.0', c.imag.to_s)
  241. c = -Complex(-0.0,-0.0)
  242. assert_equal('0.0', c.real.to_s)
  243. assert_equal('0.0', c.imag.to_s)
  244. end
  245. =begin
  246. assert_equal(0, Complex(0).negate)
  247. assert_equal(-2, Complex(2).negate)
  248. assert_equal(2, Complex(-2).negate)
  249. =end
  250. end
  251. def test_add
  252. c = Complex(1,2)
  253. c2 = Complex(2,3)
  254. assert_equal(Complex(3,5), c + c2)
  255. assert_equal(Complex(3,2), c + 2)
  256. assert_equal(Complex(3.0,2), c + 2.0)
  257. if @rational
  258. assert_equal(Complex(Rational(3,1),Rational(2)), c + Rational(2))
  259. assert_equal(Complex(Rational(5,3),Rational(2)), c + Rational(2,3))
  260. end
  261. end
  262. def test_sub
  263. c = Complex(1,2)
  264. c2 = Complex(2,3)
  265. assert_equal(Complex(-1,-1), c - c2)
  266. assert_equal(Complex(-1,2), c - 2)
  267. assert_equal(Complex(-1.0,2), c - 2.0)
  268. if @rational
  269. assert_equal(Complex(Rational(-1,1),Rational(2)), c - Rational(2))
  270. assert_equal(Complex(Rational(1,3),Rational(2)), c - Rational(2,3))
  271. end
  272. end
  273. def test_mul
  274. c = Complex(1,2)
  275. c2 = Complex(2,3)
  276. assert_equal(Complex(-4,7), c * c2)
  277. assert_equal(Complex(2,4), c * 2)
  278. assert_equal(Complex(2.0,4.0), c * 2.0)
  279. if @rational
  280. assert_equal(Complex(Rational(2,1),Rational(4)), c * Rational(2))
  281. assert_equal(Complex(Rational(2,3),Rational(4,3)), c * Rational(2,3))
  282. end
  283. end
  284. def test_div
  285. c = Complex(1,2)
  286. c2 = Complex(2,3)
  287. if @rational
  288. assert_equal(Complex(Rational(8,13),Rational(1,13)), c / c2)
  289. else
  290. r = c / c2
  291. assert_in_delta(0.615, r.real, 0.001)
  292. assert_in_delta(0.076, r.imag, 0.001)
  293. end
  294. c = Complex(1.0,2.0)
  295. c2 = Complex(2.0,3.0)
  296. r = c / c2
  297. assert_in_delta(0.615, r.real, 0.001)
  298. assert_in_delta(0.076, r.imag, 0.001)
  299. c = Complex(1,2)
  300. c2 = Complex(2,3)
  301. if @rational
  302. assert_equal(Complex(Rational(1,2),1), c / 2)
  303. else
  304. assert_equal(Complex(0.5,1.0), c / 2)
  305. end
  306. assert_equal(Complex(0.5,1.0), c / 2.0)
  307. if @rational
  308. assert_equal(Complex(Rational(1,2),Rational(1)), c / Rational(2))
  309. assert_equal(Complex(Rational(3,2),Rational(3)), c / Rational(2,3))
  310. end
  311. end
  312. def test_quo
  313. c = Complex(1,2)
  314. c2 = Complex(2,3)
  315. if @rational
  316. assert_equal(Complex(Rational(8,13),Rational(1,13)), c.quo(c2))
  317. else
  318. r = c.quo(c2)
  319. assert_in_delta(0.615, r.real, 0.001)
  320. assert_in_delta(0.076, r.imag, 0.001)
  321. end
  322. c = Complex(1.0,2.0)
  323. c2 = Complex(2.0,3.0)
  324. r = c.quo(c2)
  325. assert_in_delta(0.615, r.real, 0.001)
  326. assert_in_delta(0.076, r.imag, 0.001)
  327. c = Complex(1,2)
  328. c2 = Complex(2,3)
  329. if @rational
  330. assert_equal(Complex(Rational(1,2),1), c.quo(2))
  331. else
  332. assert_equal(Complex(0.5,1.0), c.quo(2))
  333. end
  334. assert_equal(Complex(0.5,1.0), c.quo(2.0))
  335. if @rational
  336. assert_equal(Complex(Rational(1,2),Rational(1)), c / Rational(2))
  337. assert_equal(Complex(Rational(3,2),Rational(3)), c / Rational(2,3))
  338. end
  339. end
  340. def test_fdiv
  341. c = Complex(1,2)
  342. c2 = Complex(2,3)
  343. r = c.fdiv(c2)
  344. assert_in_delta(0.615, r.real, 0.001)
  345. assert_in_delta(0.076, r.imag, 0.001)
  346. c = Complex(1.0,2.0)
  347. c2 = Complex(2.0,3.0)
  348. r = c.fdiv(c2)
  349. assert_in_delta(0.615, r.real, 0.001)
  350. assert_in_delta(0.076, r.imag, 0.001)
  351. c = Complex(1,2)
  352. c2 = Complex(2,3)
  353. assert_equal(Complex(0.5,1.0), c.fdiv(2))
  354. assert_equal(Complex(0.5,1.0), c.fdiv(2.0))
  355. end
  356. def test_expt
  357. c = Complex(1,2)
  358. c2 = Complex(2,3)
  359. r = c ** c2
  360. assert_in_delta(-0.015, r.real, 0.001)
  361. assert_in_delta(-0.179, r.imag, 0.001)
  362. assert_equal(Complex(-3,4), c ** 2)
  363. if @rational && !@keiju
  364. assert_equal(Complex(Rational(-3,25),Rational(-4,25)), c ** -2)
  365. else
  366. r = c ** -2
  367. assert_in_delta(-0.12, r.real, 0.001)
  368. assert_in_delta(-0.16, r.imag, 0.001)
  369. end
  370. r = c ** 2.0
  371. assert_in_delta(-3.0, r.real, 0.001)
  372. assert_in_delta(4.0, r.imag, 0.001)
  373. r = c ** -2.0
  374. assert_in_delta(-0.12, r.real, 0.001)
  375. assert_in_delta(-0.16, r.imag, 0.001)
  376. if @rational && !@keiju
  377. assert_equal(Complex(-3,4), c ** Rational(2))
  378. #=begin
  379. assert_equal(Complex(Rational(-3,25),Rational(-4,25)),
  380. c ** Rational(-2)) # why failed?
  381. #=end
  382. r = c ** Rational(2,3)
  383. assert_in_delta(1.264, r.real, 0.001)
  384. assert_in_delta(1.150, r.imag, 0.001)
  385. r = c ** Rational(-2,3)
  386. assert_in_delta(0.432, r.real, 0.001)
  387. assert_in_delta(-0.393, r.imag, 0.001)
  388. end
  389. end
  390. def test_cmp
  391. assert_raise(NoMethodError){1 <=> Complex(1,1)}
  392. assert_raise(NoMethodError){Complex(1,1) <=> 1}
  393. assert_raise(NoMethodError){Complex(1,1) <=> Complex(1,1)}
  394. end
  395. def test_eqeq
  396. assert(Complex(1,0) == Complex(1))
  397. assert(Complex(-1,0) == Complex(-1))
  398. assert_equal(false, Complex(2,1) == Complex(1))
  399. assert_equal(true, Complex(2,1) != Complex(1))
  400. assert_equal(false, Complex(1) == nil)
  401. assert_equal(false, Complex(1) == '')
  402. nan = 0.0 / 0
  403. if nan.nan? && nan != nan
  404. assert_equal(false, Complex(nan, 0) == Complex(nan, 0))
  405. assert_equal(false, Complex(0, nan) == Complex(0, nan))
  406. assert_equal(false, Complex(nan, nan) == Complex(nan, nan))
  407. end
  408. end
  409. def test_coerce
  410. assert_equal([Complex(2),Complex(1)], Complex(1).coerce(2))
  411. assert_equal([Complex(2.2),Complex(1)], Complex(1).coerce(2.2))
  412. assert_equal([Complex(Rational(2)),Complex(1)],
  413. Complex(1).coerce(Rational(2)))
  414. assert_equal([Complex(2),Complex(1)], Complex(1).coerce(Complex(2)))
  415. end
  416. class ObjectX
  417. def + (x) Rational(1) end
  418. alias - +
  419. alias * +
  420. alias / +
  421. alias quo +
  422. alias ** +
  423. def coerce(x) [x, Complex(1)] end
  424. end
  425. def test_coerce2
  426. x = ObjectX.new
  427. %w(+ - * / quo **).each do |op|
  428. assert_kind_of(Numeric, Complex(1).__send__(op, x))
  429. end
  430. end
  431. def test_unify
  432. if @unify
  433. assert_instance_of(Fixnum, Complex(1,2) + Complex(-1,-2))
  434. assert_instance_of(Fixnum, Complex(1,2) - Complex(1,2))
  435. assert_instance_of(Fixnum, Complex(1,2) * 0)
  436. assert_instance_of(Fixnum, Complex(1,2) / Complex(1,2))
  437. # assert_instance_of(Fixnum, Complex(1,2).div(Complex(1,2)))
  438. assert_instance_of(Fixnum, Complex(1,2).quo(Complex(1,2)))
  439. # assert_instance_of(Fixnum, Complex(1,2) ** 0) # mathn's bug
  440. end
  441. end
  442. def test_math
  443. c = Complex(1,2)
  444. assert_in_delta(2.236, c.abs, 0.001)
  445. assert_in_delta(2.236, c.magnitude, 0.001)
  446. assert_equal(5, c.abs2)
  447. assert_equal(c.abs, Math.sqrt(c * c.conj))
  448. assert_equal(c.abs, Math.sqrt(c.real**2 + c.imag**2))
  449. assert_equal(c.abs2, c * c.conj)
  450. assert_equal(c.abs2, c.real**2 + c.imag**2)
  451. assert_in_delta(1.107, c.arg, 0.001)
  452. assert_in_delta(1.107, c.angle, 0.001)
  453. assert_in_delta(1.107, c.phase, 0.001)
  454. r = c.polar
  455. assert_in_delta(2.236, r[0], 0.001)
  456. assert_in_delta(1.107, r[1], 0.001)
  457. assert_equal(Complex(1,-2), c.conjugate)
  458. assert_equal(Complex(1,-2), c.conj)
  459. # assert_equal(Complex(1,-2), ~c)
  460. # assert_equal(5, c * ~c)
  461. assert_equal(Complex(1,2), c.numerator)
  462. assert_equal(1, c.denominator)
  463. end
  464. def test_to_s
  465. c = Complex(1,2)
  466. assert_instance_of(String, c.to_s)
  467. assert_equal('1+2i', c.to_s)
  468. assert_equal('0+2i', Complex(0,2).to_s)
  469. assert_equal('0-2i', Complex(0,-2).to_s)
  470. assert_equal('1+2i', Complex(1,2).to_s)
  471. assert_equal('-1+2i', Complex(-1,2).to_s)
  472. assert_equal('-1-2i', Complex(-1,-2).to_s)
  473. assert_equal('1-2i', Complex(1,-2).to_s)
  474. assert_equal('-1-2i', Complex(-1,-2).to_s)
  475. assert_equal('0+2.0i', Complex(0,2.0).to_s)
  476. assert_equal('0-2.0i', Complex(0,-2.0).to_s)
  477. assert_equal('1.0+2.0i', Complex(1.0,2.0).to_s)
  478. assert_equal('-1.0+2.0i', Complex(-1.0,2.0).to_s)
  479. assert_equal('-1.0-2.0i', Complex(-1.0,-2.0).to_s)
  480. assert_equal('1.0-2.0i', Complex(1.0,-2.0).to_s)
  481. assert_equal('-1.0-2.0i', Complex(-1.0,-2.0).to_s)
  482. if @rational && !@unify && !@keiju
  483. assert_equal('0+2/1i', Complex(0,Rational(2)).to_s)
  484. assert_equal('0-2/1i', Complex(0,Rational(-2)).to_s)
  485. assert_equal('1+2/1i', Complex(1,Rational(2)).to_s)
  486. assert_equal('-1+2/1i', Complex(-1,Rational(2)).to_s)
  487. assert_equal('-1-2/1i', Complex(-1,Rational(-2)).to_s)
  488. assert_equal('1-2/1i', Complex(1,Rational(-2)).to_s)
  489. assert_equal('-1-2/1i', Complex(-1,Rational(-2)).to_s)
  490. assert_equal('0+2/3i', Complex(0,Rational(2,3)).to_s)
  491. assert_equal('0-2/3i', Complex(0,Rational(-2,3)).to_s)
  492. assert_equal('1+2/3i', Complex(1,Rational(2,3)).to_s)
  493. assert_equal('-1+2/3i', Complex(-1,Rational(2,3)).to_s)
  494. assert_equal('-1-2/3i', Complex(-1,Rational(-2,3)).to_s)
  495. assert_equal('1-2/3i', Complex(1,Rational(-2,3)).to_s)
  496. assert_equal('-1-2/3i', Complex(-1,Rational(-2,3)).to_s)
  497. end
  498. nan = 0.0 / 0
  499. inf = 1.0 / 0
  500. if nan.nan?
  501. assert_equal('NaN+NaN*i', Complex(nan,nan).to_s)
  502. end
  503. if inf.infinite?
  504. assert_equal('Infinity+Infinity*i', Complex(inf,inf).to_s)
  505. assert_equal('Infinity-Infinity*i', Complex(inf,-inf).to_s)
  506. end
  507. end
  508. def test_inspect
  509. c = Complex(1,2)
  510. assert_instance_of(String, c.inspect)
  511. assert_equal('(1+2i)', c.inspect)
  512. end
  513. def test_marshal
  514. c = Complex(1,2)
  515. c.instance_eval{@ivar = 9}
  516. s = Marshal.dump(c)
  517. c2 = Marshal.load(s)
  518. assert_equal(c, c2)
  519. assert_equal(9, c2.instance_variable_get(:@ivar))
  520. assert_instance_of(Complex, c2)
  521. if @rational
  522. c = Complex(Rational(1,2),Rational(2,3))
  523. s = Marshal.dump(c)
  524. c2 = Marshal.load(s)
  525. assert_equal(c, c2)
  526. assert_instance_of(Complex, c2)
  527. end
  528. bug3656 = '[ruby-core:31622]'
  529. assert_raise(TypeError, bug3656) {
  530. Complex(1,2).marshal_load(0)
  531. }
  532. end
  533. def test_parse
  534. assert_equal(Complex(5), '5'.to_c)
  535. assert_equal(Complex(-5), '-5'.to_c)
  536. assert_equal(Complex(5,3), '5+3i'.to_c)
  537. assert_equal(Complex(-5,3), '-5+3i'.to_c)
  538. assert_equal(Complex(5,-3), '5-3i'.to_c)
  539. assert_equal(Complex(-5,-3), '-5-3i'.to_c)
  540. assert_equal(Complex(0,3), '3i'.to_c)
  541. assert_equal(Complex(0,-3), '-3i'.to_c)
  542. assert_equal(Complex(5,1), '5+i'.to_c)
  543. assert_equal(Complex(0,1), 'i'.to_c)
  544. assert_equal(Complex(0,1), '+i'.to_c)
  545. assert_equal(Complex(0,-1), '-i'.to_c)
  546. assert_equal(Complex(5,3), '5+3I'.to_c)
  547. assert_equal(Complex(5,3), '5+3j'.to_c)
  548. assert_equal(Complex(5,3), '5+3J'.to_c)
  549. assert_equal(Complex(0,3), '3I'.to_c)
  550. assert_equal(Complex(0,3), '3j'.to_c)
  551. assert_equal(Complex(0,3), '3J'.to_c)
  552. assert_equal(Complex(0,1), 'I'.to_c)
  553. assert_equal(Complex(0,1), 'J'.to_c)
  554. assert_equal(Complex(5.0), '5.0'.to_c)
  555. assert_equal(Complex(-5.0), '-5.0'.to_c)
  556. assert_equal(Complex(5.0,3.0), '5.0+3.0i'.to_c)
  557. assert_equal(Complex(-5.0,3.0), '-5.0+3.0i'.to_c)
  558. assert_equal(Complex(5.0,-3.0), '5.0-3.0i'.to_c)
  559. assert_equal(Complex(-5.0,-3.0), '-5.0-3.0i'.to_c)
  560. assert_equal(Complex(0.0,3.0), '3.0i'.to_c)
  561. assert_equal(Complex(0.0,-3.0), '-3.0i'.to_c)
  562. assert_equal(Complex(5.1), '5.1'.to_c)
  563. assert_equal(Complex(-5.2), '-5.2'.to_c)
  564. assert_equal(Complex(5.3,3.4), '5.3+3.4i'.to_c)
  565. assert_equal(Complex(-5.5,3.6), '-5.5+3.6i'.to_c)
  566. assert_equal(Complex(5.3,-3.4), '5.3-3.4i'.to_c)
  567. assert_equal(Complex(-5.5,-3.6), '-5.5-3.6i'.to_c)
  568. assert_equal(Complex(0.0,3.1), '3.1i'.to_c)
  569. assert_equal(Complex(0.0,-3.2), '-3.2i'.to_c)
  570. assert_equal(Complex(5.0), '5e0'.to_c)
  571. assert_equal(Complex(-5.0), '-5e0'.to_c)
  572. assert_equal(Complex(5.0,3.0), '5e0+3e0i'.to_c)
  573. assert_equal(Complex(-5.0,3.0), '-5e0+3e0i'.to_c)
  574. assert_equal(Complex(5.0,-3.0), '5e0-3e0i'.to_c)
  575. assert_equal(Complex(-5.0,-3.0), '-5e0-3e0i'.to_c)
  576. assert_equal(Complex(0.0,3.0), '3e0i'.to_c)
  577. assert_equal(Complex(0.0,-3.0), '-3e0i'.to_c)
  578. assert_equal(Complex(5e1), '5e1'.to_c)
  579. assert_equal(Complex(-5e2), '-5e2'.to_c)
  580. assert_equal(Complex(5e3,3e4), '5e003+3e4i'.to_c)
  581. assert_equal(Complex(-5e5,3e6), '-5e5+3e006i'.to_c)
  582. assert_equal(Complex(5e3,-3e4), '5e003-3e4i'.to_c)
  583. assert_equal(Complex(-5e5,-3e6), '-5e5-3e006i'.to_c)
  584. assert_equal(Complex(0.0,3e1), '3e1i'.to_c)
  585. assert_equal(Complex(0.0,-3e2), '-3e2i'.to_c)
  586. assert_equal(Complex(0.33), '.33'.to_c)
  587. assert_equal(Complex(0.33), '0.33'.to_c)
  588. assert_equal(Complex(-0.33), '-.33'.to_c)
  589. assert_equal(Complex(-0.33), '-0.33'.to_c)
  590. assert_equal(Complex(-0.33), '-0.3_3'.to_c)
  591. assert_equal(Complex.polar(10,10), '10@10'.to_c)
  592. assert_equal(Complex.polar(-10,-10), '-10@-10'.to_c)
  593. assert_equal(Complex.polar(10.5,10.5), '10.5@10.5'.to_c)
  594. assert_equal(Complex.polar(-10.5,-10.5), '-10.5@-10.5'.to_c)
  595. assert_equal(Complex(5), Complex('5'))
  596. assert_equal(Complex(-5), Complex('-5'))
  597. assert_equal(Complex(5,3), Complex('5+3i'))
  598. assert_equal(Complex(-5,3), Complex('-5+3i'))
  599. assert_equal(Complex(5,-3), Complex('5-3i'))
  600. assert_equal(Complex(-5,-3), Complex('-5-3i'))
  601. assert_equal(Complex(0,3), Complex('3i'))
  602. assert_equal(Complex(0,-3), Complex('-3i'))
  603. assert_equal(Complex(5,1), Complex('5+i'))
  604. assert_equal(Complex(0,1), Complex('i'))
  605. assert_equal(Complex(0,1), Complex('+i'))
  606. assert_equal(Complex(0,-1), Complex('-i'))
  607. assert_equal(Complex(5,3), Complex('5+3I'))
  608. assert_equal(Complex(5,3), Complex('5+3j'))
  609. assert_equal(Complex(5,3), Complex('5+3J'))
  610. assert_equal(Complex(0,3), Complex('3I'))
  611. assert_equal(Complex(0,3), Complex('3j'))
  612. assert_equal(Complex(0,3), Complex('3J'))
  613. assert_equal(Complex(0,1), Complex('I'))
  614. assert_equal(Complex(0,1), Complex('J'))
  615. assert_equal(Complex(5.0), Complex('5.0'))
  616. assert_equal(Complex(-5.0), Complex('-5.0'))
  617. assert_equal(Complex(5.0,3.0), Complex('5.0+3.0i'))
  618. assert_equal(Complex(-5.0,3.0), Complex('-5.0+3.0i'))
  619. assert_equal(Complex(5.0,-3.0), Complex('5.0-3.0i'))
  620. assert_equal(Complex(-5.0,-3.0), Complex('-5.0-3.0i'))
  621. assert_equal(Complex(0.0,3.0), Complex('3.0i'))
  622. assert_equal(Complex(0.0,-3.0), Complex('-3.0i'))
  623. assert_equal(Complex(5.1), Complex('5.1'))
  624. assert_equal(Complex(-5.2), Complex('-5.2'))
  625. assert_equal(Complex(5.3,3.4), Complex('5.3+3.4i'))
  626. assert_equal(Complex(-5.5,3.6), Complex('-5.5+3.6i'))
  627. assert_equal(Complex(5.3,-3.4), Complex('5.3-3.4i'))
  628. assert_equal(Complex(-5.5,-3.6), Complex('-5.5-3.6i'))
  629. assert_equal(Complex(0.0,3.1), Complex('3.1i'))
  630. assert_equal(Complex(0.0,-3.2), Complex('-3.2i'))
  631. assert_equal(Complex(5.0), Complex('5e0'))
  632. assert_equal(Complex(-5.0), Complex('-5e0'))
  633. assert_equal(Complex(5.0,3.0), Complex('5e0+3e0i'))
  634. assert_equal(Complex(-5.0,3.0), Complex('-5e0+3e0i'))
  635. assert_equal(Complex(5.0,-3.0), Complex('5e0-3e0i'))
  636. assert_equal(Complex(-5.0,-3.0), Complex('-5e0-3e0i'))
  637. assert_equal(Complex(0.0,3.0), Complex('3e0i'))
  638. assert_equal(Complex(0.0,-3.0), Complex('-3e0i'))
  639. assert_equal(Complex(5e1), Complex('5e1'))
  640. assert_equal(Complex(-5e2), Complex('-5e2'))
  641. assert_equal(Complex(5e3,3e4), Complex('5e003+3e4i'))
  642. assert_equal(Complex(-5e5,3e6), Complex('-5e5+3e006i'))
  643. assert_equal(Complex(5e3,-3e4), Complex('5e003-3e4i'))
  644. assert_equal(Complex(-5e5,-3e6), Complex('-5e5-3e006i'))
  645. assert_equal(Complex(0.0,3e1), Complex('3e1i'))
  646. assert_equal(Complex(0.0,-3e2), Complex('-3e2i'))
  647. assert_equal(Complex(0.33), Complex('.33'))
  648. assert_equal(Complex(0.33), Complex('0.33'))
  649. assert_equal(Complex(-0.33), Complex('-.33'))
  650. assert_equal(Complex(-0.33), Complex('-0.33'))
  651. assert_equal(Complex(-0.33), Complex('-0.3_3'))
  652. assert_equal(Complex.polar(10,10), Complex('10@10'))
  653. assert_equal(Complex.polar(-10,-10), Complex('-10@-10'))
  654. assert_equal(Complex.polar(10.5,10.5), Complex('10.5@10.5'))
  655. assert_equal(Complex.polar(-10.5,-10.5), Complex('-10.5@-10.5'))
  656. assert_equal(Complex(0), ''.to_c)
  657. assert_equal(Complex(0), ' '.to_c)
  658. assert_equal(Complex(5), "\f\n\r\t\v5\0".to_c)
  659. assert_equal(Complex(0), '_'.to_c)
  660. assert_equal(Complex(0), '_5'.to_c)
  661. assert_equal(Complex(5), '5_'.to_c)
  662. assert_equal(Complex(5), '5x'.to_c)
  663. assert_equal(Complex(5), '5+_3i'.to_c)
  664. assert_equal(Complex(5), '5+3_i'.to_c)
  665. assert_equal(Complex(5,3), '5+3i_'.to_c)
  666. assert_equal(Complex(5,3), '5+3ix'.to_c)
  667. assert_raise(ArgumentError){ Complex('')}
  668. assert_raise(ArgumentError){ Complex('_')}
  669. assert_raise(ArgumentError){ Complex("\f\n\r\t\v5\0")}
  670. assert_raise(ArgumentError){ Complex('_5')}
  671. assert_raise(ArgumentError){ Complex('5_')}
  672. assert_raise(ArgumentError){ Complex('5x')}
  673. assert_raise(ArgumentError){ Complex('5+_3i')}
  674. assert_raise(ArgumentError){ Complex('5+3_i')}
  675. assert_raise(ArgumentError){ Complex('5+3i_')}
  676. assert_raise(ArgumentError){ Complex('5+3ix')}
  677. if @rational && defined?(''.to_r)
  678. assert_equal(Complex(Rational(1,5)), '1/5'.to_c)
  679. assert_equal(Complex(Rational(-1,5)), '-1/5'.to_c)
  680. assert_equal(Complex(Rational(1,5),3), '1/5+3i'.to_c)
  681. assert_equal(Complex(Rational(1,5),-3), '1/5-3i'.to_c)
  682. assert_equal(Complex(Rational(-1,5),3), '-1/5+3i'.to_c)
  683. assert_equal(Complex(Rational(-1,5),-3), '-1/5-3i'.to_c)
  684. assert_equal(Complex(Rational(1,5),Rational(3,2)), '1/5+3/2i'.to_c)
  685. assert_equal(Complex(Rational(1,5),Rational(-3,2)), '1/5-3/2i'.to_c)
  686. assert_equal(Complex(Rational(-1,5),Rational(3,2)), '-1/5+3/2i'.to_c)
  687. assert_equal(Complex(Rational(-1,5),Rational(-3,2)), '-1/5-3/2i'.to_c)
  688. assert_equal(Complex(Rational(1,5),Rational(3,2)), '1/5+3/2i'.to_c)
  689. assert_equal(Complex(Rational(1,5),Rational(-3,2)), '1/5-3/2i'.to_c)
  690. assert_equal(Complex(Rational(-1,5),Rational(3,2)), '-1/5+3/2i'.to_c)
  691. assert_equal(Complex(Rational(-1,5),Rational(-3,2)), '-1/5-3/2i'.to_c)
  692. assert_equal(Complex.polar(Rational(1,5),Rational(3,2)), Complex('1/5@3/2'))
  693. assert_equal(Complex.polar(Rational(-1,5),Rational(-3,2)), Complex('-1/5@-3/2'))
  694. end
  695. end
  696. def test_respond
  697. c = Complex(1,1)
  698. assert_equal(false, c.respond_to?(:%))
  699. assert_equal(false, c.respond_to?(:<))
  700. assert_equal(false, c.respond_to?(:<=))
  701. assert_equal(false, c.respond_to?(:<=>))
  702. assert_equal(false, c.respond_to?(:>))
  703. assert_equal(false, c.respond_to?(:>=))
  704. assert_equal(false, c.respond_to?(:between?))
  705. assert_equal(false, c.respond_to?(:div))
  706. assert_equal(false, c.respond_to?(:divmod))
  707. assert_equal(false, c.respond_to?(:floor))
  708. assert_equal(false, c.respond_to?(:ceil))
  709. assert_equal(false, c.respond_to?(:modulo))
  710. assert_equal(false, c.respond_to?(:remainder))
  711. assert_equal(false, c.respond_to?(:round))
  712. assert_equal(false, c.respond_to?(:step))
  713. assert_equal(false, c.respond_to?(:tunrcate))
  714. assert_equal(false, c.respond_to?(:positive?))
  715. assert_equal(false, c.respond_to?(:negative?))
  716. # assert_equal(false, c.respond_to?(:sign))
  717. assert_equal(false, c.respond_to?(:quotient))
  718. assert_equal(false, c.respond_to?(:quot))
  719. assert_equal(false, c.respond_to?(:quotrem))
  720. assert_equal(false, c.respond_to?(:gcd))
  721. assert_equal(false, c.respond_to?(:lcm))
  722. assert_equal(false, c.respond_to?(:gcdlcm))
  723. end
  724. def test_to_i
  725. assert_equal(3, Complex(3).to_i)
  726. assert_equal(3, Integer(Complex(3)))
  727. assert_raise(RangeError){Complex(3,2).to_i}
  728. assert_raise(RangeError){Integer(Complex(3,2))}
  729. end
  730. def test_to_f
  731. assert_equal(3.0, Complex(3).to_f)
  732. assert_equal(3.0, Float(Complex(3)))
  733. assert_raise(RangeError){Complex(3,2).to_f}
  734. assert_raise(RangeError){Float(Complex(3,2))}
  735. end
  736. def test_to_r
  737. if @rational && !@keiju
  738. assert_equal(Rational(3), Complex(3).to_r)
  739. assert_equal(Rational(3), Rational(Complex(3)))
  740. assert_raise(RangeError){Complex(3,2).to_r}
  741. # assert_raise(RangeError){Rational(Complex(3,2))}
  742. end
  743. end
  744. def test_to_c
  745. c = nil.to_c
  746. assert_equal([0,0], [c.real, c.imag])
  747. c = 0.to_c
  748. assert_equal([0,0], [c.real, c.imag])
  749. c = 1.to_c
  750. assert_equal([1,0], [c.real, c.imag])
  751. c = 1.1.to_c
  752. assert_equal([1.1, 0], [c.real, c.imag])
  753. if @rational
  754. c = Rational(1,2).to_c
  755. assert_equal([Rational(1,2), 0], [c.real, c.imag])
  756. end
  757. c = Complex(1,2).to_c
  758. assert_equal([1, 2], [c.real, c.imag])
  759. if (0.0/0).nan?
  760. assert_nothing_raised{(0.0/0).to_c}
  761. end
  762. if (1.0/0).infinite?
  763. assert_nothing_raised{(1.0/0).to_c}
  764. end
  765. end
  766. def test_supp
  767. assert_equal(true, 1.real?)
  768. assert_equal(true, 1.1.real?)
  769. assert_equal(1, 1.real)
  770. assert_equal(0, 1.imag)
  771. assert_equal(0, 1.imaginary)
  772. assert_equal(1.1, 1.1.real)
  773. assert_equal(0, 1.1.imag)
  774. assert_equal(0, 1.1.imaginary)
  775. assert_equal(1, 1.magnitude)
  776. assert_equal(1, -1.magnitude)
  777. assert_equal(1, 1.0.magnitude)
  778. assert_equal(1, -1.0.magnitude)
  779. assert_equal(4, 2.abs2)
  780. assert_equal(4, -2.abs2)
  781. assert_equal(4.0, 2.0.abs2)
  782. assert_equal(4.0, -2.0.abs2)
  783. assert_equal(0, 1.arg)
  784. assert_equal(0, 1.angle)
  785. assert_equal(0, 1.phase)
  786. assert_equal(0, 1.0.arg)
  787. assert_equal(0, 1.0.angle)
  788. assert_equal(0, 1.0.phase)
  789. if (0.0/0).nan?
  790. nan = 0.0/0
  791. assert(nan.arg.equal?(nan))
  792. assert(nan.angle.equal?(nan))
  793. assert(nan.phase.equal?(nan))
  794. end
  795. assert_equal(Math::PI, -1.arg)
  796. assert_equal(Math::PI, -1.angle)
  797. assert_equal(Math::PI, -1.phase)
  798. assert_equal(Math::PI, -1.0.arg)
  799. assert_equal(Math::PI, -1.0.angle)
  800. assert_equal(Math::PI, -1.0.phase)
  801. assert_equal([1,0], 1.rect)
  802. assert_equal([-1,0], -1.rect)
  803. assert_equal([1,0], 1.rectangular)
  804. assert_equal([-1,0], -1.rectangular)
  805. assert_equal([1.0,0], 1.0.rect)
  806. assert_equal([-1.0,0], -1.0.rect)
  807. assert_equal([1.0,0], 1.0.rectangular)
  808. assert_equal([-1.0,0], -1.0.rectangular)
  809. assert_equal([1,0], 1.polar)
  810. assert_equal([1, Math::PI], -1.polar)
  811. assert_equal([1.0,0], 1.0.polar)
  812. assert_equal([1.0, Math::PI], -1.0.polar)
  813. assert_equal(1, 1.conjugate)
  814. assert_equal(-1, -1.conjugate)
  815. assert_equal(1, 1.conj)
  816. assert_equal(-1, -1.conj)
  817. assert_equal(1.1, 1.1.conjugate)
  818. assert_equal(-1.1, -1.1.conjugate)
  819. assert_equal(1.1, 1.1.conj)
  820. assert_equal(-1.1, -1.1.conj)
  821. if @rational
  822. assert_equal(Complex(Rational(1,2),Rational(1)), Complex(1,2).quo(2))
  823. else
  824. assert_equal(Complex(0.5,1.0), Complex(1,2).quo(2))
  825. end
  826. =begin
  827. if @rational && !@keiju
  828. assert_equal(Complex(Rational(1,2),Rational(1)), Complex(1,2).quo(2))
  829. end
  830. =end
  831. assert_equal(0.5, 1.fdiv(2))
  832. assert_equal(5000000000.0, 10000000000.fdiv(2))
  833. assert_equal(0.5, 1.0.fdiv(2))
  834. if @rational
  835. assert_equal(0.25, Rational(1,2).fdiv(2))
  836. end
  837. assert_equal(Complex(0.5,1.0), Complex(1,2).quo(2))
  838. unless $".grep(/(\A|\/)complex/).empty?
  839. assert_equal(Complex(0,2), Math.sqrt(-4.0))
  840. # assert_equal(true, Math.sqrt(-4.0).inexact?)
  841. assert_equal(Complex(0,2), Math.sqrt(-4))
  842. # assert_equal(true, Math.sqrt(-4).exact?)
  843. if @rational
  844. assert_equal(Complex(0,2), Math.sqrt(Rational(-4)))
  845. # assert_equal(true, Math.sqrt(Rational(-4)).exact?)
  846. end
  847. assert_equal(Complex(0,3), Math.sqrt(-9.0))
  848. # assert_equal(true, Math.sqrt(-9.0).inexact?)
  849. assert_equal(Complex(0,3), Math.sqrt(-9))
  850. # assert_equal(true, Math.sqrt(-9).exact?)
  851. if @rational
  852. assert_equal(Complex(0,3), Math.sqrt(Rational(-9)))
  853. # assert_equal(true, Math.sqrt(Rational(-9)).exact?)
  854. end
  855. c = Math.sqrt(Complex(1, 2))
  856. assert_in_delta(1.272, c.real, 0.001)
  857. assert_in_delta(0.786, c.imag, 0.001)
  858. c = Math.sqrt(-9)
  859. assert_in_delta(0.0, c.real, 0.001)
  860. assert_in_delta(3.0, c.imag, 0.001)
  861. c = Math.exp(Complex(1, 2))
  862. assert_in_delta(-1.131, c.real, 0.001)
  863. assert_in_delta(2.471, c.imag, 0.001)
  864. c = Math.sin(Complex(1, 2))
  865. assert_in_delta(3.165, c.real, 0.001)
  866. assert_in_delta(1.959, c.imag, 0.001)
  867. c = Math.cos(Complex(1, 2))
  868. assert_in_delta(2.032, c.real, 0.001)
  869. assert_in_delta(-3.051, c.imag, 0.001)
  870. c = Math.tan(Complex(1, 2))
  871. assert_in_delta(0.033, c.real, 0.001)
  872. assert_in_delta(1.014, c.imag, 0.001)
  873. c = Math.sinh(Complex(1, 2))
  874. assert_in_delta(-0.489, c.real, 0.001)
  875. assert_in_delta(1.403, c.imag, 0.001)
  876. c = Math.cosh(Complex(1, 2))
  877. assert_in_delta(-0.642, c.real, 0.001)
  878. assert_in_delta(1.068, c.imag, 0.001)
  879. c = Math.tanh(Complex(1, 2))
  880. assert_in_delta(1.166, c.real, 0.001)
  881. assert_in_delta(-0.243, c.imag, 0.001)
  882. c = Math.log(Complex(1, 2))
  883. assert_in_delta(0.804, c.real, 0.001)
  884. assert_in_delta(1.107, c.imag, 0.001)
  885. c = Math.log(Complex(1, 2), Math::E)
  886. assert_in_delta(0.804, c.real, 0.001)
  887. assert_in_delta(1.107, c.imag, 0.001)
  888. c = Math.log(-1)
  889. assert_in_delta(0.0, c.real, 0.001)
  890. assert_in_delta(Math::PI, c.imag, 0.001)
  891. c = Math.log(8, 2)
  892. assert_in_delta(3.0, c.real, 0.001)
  893. assert_in_delta(0.0, c.imag, 0.001)
  894. c = Math.log(-8, -2)
  895. assert_in_delta(1.092, c.real, 0.001)
  896. assert_in_delta(-0.420, c.imag, 0.001)
  897. c = Math.log10(Complex(1, 2))
  898. assert_in_delta(0.349, c.real, 0.001)
  899. assert_in_delta(0.480, c.imag, 0.001)
  900. c = Math.asin(Complex(1, 2))
  901. assert_in_delta(0.427, c.real, 0.001)
  902. assert_in_delta(1.528, c.imag, 0.001)
  903. c = Math.acos(Complex(1, 2))
  904. assert_in_delta(1.143, c.real, 0.001)
  905. assert_in_delta(-1.528, c.imag, 0.001)
  906. c = Math.atan(Complex(1, 2))
  907. assert_in_delta(1.338, c.real, 0.001)
  908. assert_in_delta(0.402, c.imag, 0.001)
  909. c = Math.atan2(Complex(1, 2), 1)
  910. assert_in_delta(1.338, c.real, 0.001)
  911. assert_in_delta(0.402, c.imag, 0.001)
  912. c = Math.asinh(Complex(1, 2))
  913. assert_in_delta(1.469, c.real, 0.001)
  914. assert_in_delta(1.063, c.imag, 0.001)
  915. c = Math.acosh(Complex(1, 2))
  916. assert_in_delta(1.528, c.real, 0.001)
  917. assert_in_delta(1.143, c.imag, 0.001)
  918. c = Math.atanh(Complex(1, 2))
  919. assert_in_delta(0.173, c.real, 0.001)
  920. assert_in_delta(1.178, c.imag, 0.001)
  921. end
  922. end
  923. def test_ruby19
  924. assert_raise(NoMethodError){ Complex.new(1) }
  925. assert_raise(NoMethodError){ Complex.new!(1) }
  926. assert_raise(NoMethodError){ Complex.reduce(1) }
  927. end
  928. def test_fixed_bug
  929. if @rational && !@keiju
  930. assert_equal(Complex(1), 1 ** Complex(1))
  931. end
  932. assert_equal('-1.0-0.0i', Complex(-1.0, -0.0).to_s)
  933. assert_in_delta(Math::PI, Complex(-0.0).arg, 0.001)
  934. assert_equal(Complex(2e3, 2e4), '2e3+2e4i'.to_c)
  935. end
  936. def test_known_bug
  937. end
  938. end