run-i32.test 9.0 KB

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  1. [case testI32BasicOps]
  2. from typing import Any, Tuple
  3. from mypy_extensions import i32, i64
  4. from testutil import assertRaises
  5. def test_box_and_unbox() -> None:
  6. values = (list(range(-2**31, -2**31 + 100)) +
  7. list(range(-1000, 1000)) +
  8. list(range(2**31 - 100, 2**31)))
  9. for i in values:
  10. o: Any = i
  11. x: i32 = o
  12. o2: Any = x
  13. assert o == o2
  14. assert x == i
  15. with assertRaises(OverflowError, "int too large to convert to i32"):
  16. o = 2**31
  17. x2: i32 = o
  18. with assertRaises(OverflowError, "int too large to convert to i32"):
  19. o = -2**32 - 1
  20. x3: i32 = o
  21. def div_by_7(x: i32) -> i32:
  22. return x // 7
  23. def div_by_neg_7(x: i32) -> i32:
  24. return x // -7
  25. def div(x: i32, y: i32) -> i32:
  26. return x // y
  27. def test_divide_by_constant() -> None:
  28. for i in range(-1000, 1000):
  29. assert div_by_7(i) == i // 7
  30. for i in range(-2**31, -2**31 + 1000):
  31. assert div_by_7(i) == i // 7
  32. for i in range(2**31 - 1000, 2**31):
  33. assert div_by_7(i) == i // 7
  34. def test_divide_by_negative_constant() -> None:
  35. for i in range(-1000, 1000):
  36. assert div_by_neg_7(i) == i // -7
  37. for i in range(-2**31, -2**31 + 1000):
  38. assert div_by_neg_7(i) == i // -7
  39. for i in range(2**31 - 1000, 2**31):
  40. assert div_by_neg_7(i) == i // -7
  41. def test_divide_by_variable() -> None:
  42. values = (list(range(-50, 50)) +
  43. list(range(-2**31, -2**31 + 10)) +
  44. list(range(2**31 - 10, 2**31)))
  45. for x in values:
  46. for y in values:
  47. if y != 0:
  48. if x // y == 2**31:
  49. with assertRaises(OverflowError, "integer division overflow"):
  50. div(x, y)
  51. else:
  52. assert div(x, y) == x // y
  53. else:
  54. with assertRaises(ZeroDivisionError, "integer division or modulo by zero"):
  55. div(x, y)
  56. def mod_by_7(x: i32) -> i32:
  57. return x % 7
  58. def mod_by_neg_7(x: i32) -> i32:
  59. return x // -7
  60. def mod(x: i32, y: i32) -> i32:
  61. return x % y
  62. def test_mod_by_constant() -> None:
  63. for i in range(-1000, 1000):
  64. assert mod_by_7(i) == i % 7
  65. for i in range(-2**31, -2**31 + 1000):
  66. assert mod_by_7(i) == i % 7
  67. for i in range(2**31 - 1000, 2**31):
  68. assert mod_by_7(i) == i % 7
  69. def test_mod_by_negative_constant() -> None:
  70. for i in range(-1000, 1000):
  71. assert mod_by_neg_7(i) == i // -7
  72. for i in range(-2**31, -2**31 + 1000):
  73. assert mod_by_neg_7(i) == i // -7
  74. for i in range(2**31 - 1000, 2**31):
  75. assert mod_by_neg_7(i) == i // -7
  76. def test_mod_by_variable() -> None:
  77. values = (list(range(-50, 50)) +
  78. list(range(-2**31, -2**31 + 10)) +
  79. list(range(2**31 - 10, 2**31)))
  80. for x in values:
  81. for y in values:
  82. if y != 0:
  83. assert mod(x, y) == x % y
  84. else:
  85. with assertRaises(ZeroDivisionError, "integer division or modulo by zero"):
  86. mod(x, y)
  87. def test_simple_arithmetic_ops() -> None:
  88. zero: i32 = int()
  89. one: i32 = zero + 1
  90. two: i32 = one + 1
  91. neg_one: i32 = -one
  92. assert one + one == 2
  93. assert one + two == 3
  94. assert one + neg_one == 0
  95. assert one - one == 0
  96. assert one - two == -1
  97. assert one * one == 1
  98. assert one * two == 2
  99. assert two * two == 4
  100. assert two * neg_one == -2
  101. assert neg_one * one == -1
  102. assert neg_one * neg_one == 1
  103. assert two * 0 == 0
  104. assert 0 * two == 0
  105. assert -one == -1
  106. assert -two == -2
  107. assert -neg_one == 1
  108. assert -zero == 0
  109. def test_bitwise_ops() -> None:
  110. x: i32 = 1920687484 + int()
  111. y: i32 = 383354614 + int()
  112. z: i32 = -1879040563 + int()
  113. zero: i32 = int()
  114. one: i32 = zero + 1
  115. two: i32 = zero + 2
  116. neg_one: i32 = -one
  117. assert x & y == 307823732
  118. assert x & z == 268442956
  119. assert z & z == z
  120. assert x & zero == 0
  121. assert x | y == 1996218366
  122. assert x | z == -226796035
  123. assert z | z == z
  124. assert x | 0 == x
  125. assert x ^ y == 1688394634
  126. assert x ^ z == -495238991
  127. assert z ^ z == 0
  128. assert z ^ 0 == z
  129. assert x << one == -453592328
  130. assert x << two == -907184656
  131. assert z << two == 1073772340
  132. assert z << 0 == z
  133. assert x >> one == 960343742
  134. assert x >> two == 480171871
  135. assert z >> two == -469760141
  136. assert z >> 0 == z
  137. assert ~x == -1920687485
  138. assert ~z == 1879040562
  139. assert ~zero == -1
  140. assert ~neg_one == 0
  141. def eq(x: i32, y: i32) -> bool:
  142. return x == y
  143. def test_eq() -> None:
  144. assert eq(int(), int())
  145. assert eq(5 + int(), 5 + int())
  146. assert eq(-5 + int(), -5 + int())
  147. assert not eq(int(), 1 + int())
  148. assert not eq(5 + int(), 6 + int())
  149. assert not eq(-5 + int(), -6 + int())
  150. assert not eq(-5 + int(), 5 + int())
  151. def test_comparisons() -> None:
  152. one: i32 = 1 + int()
  153. one2: i32 = 1 + int()
  154. two: i32 = 2 + int()
  155. assert one < two
  156. assert not (one < one2)
  157. assert not (two < one)
  158. assert two > one
  159. assert not (one > one2)
  160. assert not (one > two)
  161. assert one <= two
  162. assert one <= one2
  163. assert not (two <= one)
  164. assert two >= one
  165. assert one >= one2
  166. assert not (one >= two)
  167. assert one == one2
  168. assert not (one == two)
  169. assert one != two
  170. assert not (one != one2)
  171. def test_mixed_comparisons() -> None:
  172. i32_3: i32 = int() + 3
  173. int_5 = int() + 5
  174. assert i32_3 < int_5
  175. assert int_5 > i32_3
  176. b = i32_3 > int_5
  177. assert not b
  178. int_largest = int() + (1 << 31) - 1
  179. assert int_largest > i32_3
  180. int_smallest = int() - (1 << 31)
  181. assert i32_3 > int_smallest
  182. int_too_big = int() + (1 << 31)
  183. int_too_small = int() - (1 << 31) - 1
  184. with assertRaises(OverflowError):
  185. assert i32_3 < int_too_big
  186. with assertRaises(OverflowError):
  187. assert int_too_big < i32_3
  188. with assertRaises(OverflowError):
  189. assert i32_3 > int_too_small
  190. with assertRaises(OverflowError):
  191. assert int_too_small < i32_3
  192. def test_mixed_arithmetic_and_bitwise_ops() -> None:
  193. i32_3: i32 = int() + 3
  194. int_5 = int() + 5
  195. assert i32_3 + int_5 == 8
  196. assert int_5 - i32_3 == 2
  197. assert i32_3 << int_5 == 96
  198. assert int_5 << i32_3 == 40
  199. assert i32_3 ^ int_5 == 6
  200. assert int_5 | i32_3 == 7
  201. int_largest = int() + (1 << 31) - 1
  202. assert int_largest - i32_3 == 2147483644
  203. int_smallest = int() - (1 << 31)
  204. assert int_smallest + i32_3 == -2147483645
  205. int_too_big = int() + (1 << 31)
  206. int_too_small = int() - (1 << 31) - 1
  207. with assertRaises(OverflowError):
  208. assert i32_3 & int_too_big
  209. with assertRaises(OverflowError):
  210. assert int_too_small & i32_3
  211. def test_coerce_to_and_from_int() -> None:
  212. for shift in range(0, 32):
  213. for sign in 1, -1:
  214. for delta in range(-5, 5):
  215. n = sign * (1 << shift) + delta
  216. if -(1 << 31) <= n < (1 << 31):
  217. x: i32 = n
  218. m: int = x
  219. assert m == n
  220. def test_explicit_conversion_to_i32() -> None:
  221. x = i32(5)
  222. assert x == 5
  223. y = int() - 113
  224. x = i32(y)
  225. assert x == -113
  226. n64: i64 = 1733
  227. x = i32(n64)
  228. assert x == 1733
  229. n32 = -1733
  230. x = i32(n32)
  231. assert x == -1733
  232. z = i32(x)
  233. assert z == -1733
  234. def test_explicit_conversion_overflow() -> None:
  235. max_i32 = int() + 2**31 - 1
  236. x = i32(max_i32)
  237. assert x == 2**31 - 1
  238. assert int(x) == max_i32
  239. min_i32 = int() - 2**31
  240. y = i32(min_i32)
  241. assert y == -2**31
  242. assert int(y) == min_i32
  243. too_big = int() + 2**31
  244. with assertRaises(OverflowError):
  245. x = i32(too_big)
  246. too_small = int() - 2**31 - 1
  247. with assertRaises(OverflowError):
  248. x = i32(too_small)
  249. def test_i32_from_large_small_literal() -> None:
  250. x = i32(2**31 - 1)
  251. assert x == 2**31 - 1
  252. x = i32(-2**31)
  253. assert x == -2**31
  254. def test_i32_truncate_from_i64() -> None:
  255. large = i64(2**32 + 157 + int())
  256. x = i32(large)
  257. assert x == 157
  258. small = i64(-2**32 - 157 + int())
  259. x = i32(small)
  260. assert x == -157
  261. large2 = i64(2**31 + int())
  262. x = i32(large2)
  263. assert x == -2**31
  264. small2 = i64(-2**31 - 1 - int())
  265. x = i32(small2)
  266. assert x == 2**31 - 1
  267. def from_float(x: float) -> i32:
  268. return i32(x)
  269. def test_explicit_conversion_from_float() -> None:
  270. assert from_float(0.0) == 0
  271. assert from_float(1.456) == 1
  272. assert from_float(-1234.567) == -1234
  273. assert from_float(2**31 - 1) == 2**31 - 1
  274. assert from_float(-2**31) == -2**31
  275. # The error message could be better, but this is acceptable
  276. with assertRaises(OverflowError, "int too large to convert to i32"):
  277. assert from_float(float(2**31))
  278. with assertRaises(OverflowError, "int too large to convert to i32"):
  279. # One ulp below the lowest valid i64 value
  280. from_float(float(-2**31 - 2048))
  281. def test_tuple_i32() -> None:
  282. a: i32 = 1
  283. b: i32 = 2
  284. t = (a, b)
  285. a, b = t
  286. assert a == 1
  287. assert b == 2
  288. x: Any = t
  289. tt: Tuple[i32, i32] = x
  290. assert tt == (1, 2)