bitwise.lua 9.0 KB

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  1. -- $Id: bitwise.lua,v 1.26 2016/11/07 13:11:28 roberto Exp $
  2. -- See Copyright Notice in file all.lua
  3. print("testing bitwise operations")
  4. local numbits = string.packsize('j') * 8
  5. assert(~0 == -1)
  6. assert((1 << (numbits - 1)) == math.mininteger)
  7. -- basic tests for bitwise operators;
  8. -- use variables to avoid constant folding
  9. local a, b, c, d
  10. a = 0xFFFFFFFFFFFFFFFF
  11. assert(a == -1 and a & -1 == a and a & 35 == 35)
  12. a = 0xF0F0F0F0F0F0F0F0
  13. assert(a | -1 == -1)
  14. assert(a ~ a == 0 and a ~ 0 == a and a ~ ~a == -1)
  15. assert(a >> 4 == ~a)
  16. a = 0xF0; b = 0xCC; c = 0xAA; d = 0xFD
  17. assert(a | b ~ c & d == 0xF4)
  18. a = 0xF0.0; b = 0xCC.0; c = "0xAA.0"; d = "0xFD.0"
  19. assert(a | b ~ c & d == 0xF4)
  20. a = 0xF0000000; b = 0xCC000000;
  21. c = 0xAA000000; d = 0xFD000000
  22. assert(a | b ~ c & d == 0xF4000000)
  23. assert(~~a == a and ~a == -1 ~ a and -d == ~d + 1)
  24. a = a << 32
  25. b = b << 32
  26. c = c << 32
  27. d = d << 32
  28. assert(a | b ~ c & d == 0xF4000000 << 32)
  29. assert(~~a == a and ~a == -1 ~ a and -d == ~d + 1)
  30. assert(-1 >> 1 == (1 << (numbits - 1)) - 1 and 1 << 31 == 0x80000000)
  31. assert(-1 >> (numbits - 1) == 1)
  32. assert(-1 >> numbits == 0 and
  33. -1 >> -numbits == 0 and
  34. -1 << numbits == 0 and
  35. -1 << -numbits == 0)
  36. assert((2^30 - 1) << 2^30 == 0)
  37. assert((2^30 - 1) >> 2^30 == 0)
  38. assert(1 >> -3 == 1 << 3 and 1000 >> 5 == 1000 << -5)
  39. -- coercion from strings to integers
  40. assert("0xffffffffffffffff" | 0 == -1)
  41. assert("0xfffffffffffffffe" & "-1" == -2)
  42. assert(" \t-0xfffffffffffffffe\n\t" & "-1" == 2)
  43. assert(" \n -45 \t " >> " -2 " == -45 * 4)
  44. -- out of range number
  45. assert(not pcall(function () return "0xffffffffffffffff.0" | 0 end))
  46. -- embedded zeros
  47. assert(not pcall(function () return "0xffffffffffffffff\0" | 0 end))
  48. print'+'
  49. package.preload.bit32 = function () --{
  50. -- no built-in 'bit32' library: implement it using bitwise operators
  51. local bit = {}
  52. function bit.bnot (a)
  53. return ~a & 0xFFFFFFFF
  54. end
  55. --
  56. -- in all vararg functions, avoid creating 'arg' table when there are
  57. -- only 2 (or less) parameters, as 2 parameters is the common case
  58. --
  59. function bit.band (x, y, z, ...)
  60. if not z then
  61. return ((x or -1) & (y or -1)) & 0xFFFFFFFF
  62. else
  63. local arg = {...}
  64. local res = x & y & z
  65. for i = 1, #arg do res = res & arg[i] end
  66. return res & 0xFFFFFFFF
  67. end
  68. end
  69. function bit.bor (x, y, z, ...)
  70. if not z then
  71. return ((x or 0) | (y or 0)) & 0xFFFFFFFF
  72. else
  73. local arg = {...}
  74. local res = x | y | z
  75. for i = 1, #arg do res = res | arg[i] end
  76. return res & 0xFFFFFFFF
  77. end
  78. end
  79. function bit.bxor (x, y, z, ...)
  80. if not z then
  81. return ((x or 0) ~ (y or 0)) & 0xFFFFFFFF
  82. else
  83. local arg = {...}
  84. local res = x ~ y ~ z
  85. for i = 1, #arg do res = res ~ arg[i] end
  86. return res & 0xFFFFFFFF
  87. end
  88. end
  89. function bit.btest (...)
  90. return bit.band(...) ~= 0
  91. end
  92. function bit.lshift (a, b)
  93. return ((a & 0xFFFFFFFF) << b) & 0xFFFFFFFF
  94. end
  95. function bit.rshift (a, b)
  96. return ((a & 0xFFFFFFFF) >> b) & 0xFFFFFFFF
  97. end
  98. function bit.arshift (a, b)
  99. a = a & 0xFFFFFFFF
  100. if b <= 0 or (a & 0x80000000) == 0 then
  101. return (a >> b) & 0xFFFFFFFF
  102. else
  103. return ((a >> b) | ~(0xFFFFFFFF >> b)) & 0xFFFFFFFF
  104. end
  105. end
  106. function bit.lrotate (a ,b)
  107. b = b & 31
  108. a = a & 0xFFFFFFFF
  109. a = (a << b) | (a >> (32 - b))
  110. return a & 0xFFFFFFFF
  111. end
  112. function bit.rrotate (a, b)
  113. return bit.lrotate(a, -b)
  114. end
  115. local function checkfield (f, w)
  116. w = w or 1
  117. assert(f >= 0, "field cannot be negative")
  118. assert(w > 0, "width must be positive")
  119. assert(f + w <= 32, "trying to access non-existent bits")
  120. return f, ~(-1 << w)
  121. end
  122. function bit.extract (a, f, w)
  123. local f, mask = checkfield(f, w)
  124. return (a >> f) & mask
  125. end
  126. function bit.replace (a, v, f, w)
  127. local f, mask = checkfield(f, w)
  128. v = v & mask
  129. a = (a & ~(mask << f)) | (v << f)
  130. return a & 0xFFFFFFFF
  131. end
  132. return bit
  133. end --}
  134. print("testing bitwise library")
  135. local bit32 = require'bit32'
  136. assert(bit32.band() == bit32.bnot(0))
  137. assert(bit32.btest() == true)
  138. assert(bit32.bor() == 0)
  139. assert(bit32.bxor() == 0)
  140. assert(bit32.band() == bit32.band(0xffffffff))
  141. assert(bit32.band(1,2) == 0)
  142. -- out-of-range numbers
  143. assert(bit32.band(-1) == 0xffffffff)
  144. assert(bit32.band((1 << 33) - 1) == 0xffffffff)
  145. assert(bit32.band(-(1 << 33) - 1) == 0xffffffff)
  146. assert(bit32.band((1 << 33) + 1) == 1)
  147. assert(bit32.band(-(1 << 33) + 1) == 1)
  148. assert(bit32.band(-(1 << 40)) == 0)
  149. assert(bit32.band(1 << 40) == 0)
  150. assert(bit32.band(-(1 << 40) - 2) == 0xfffffffe)
  151. assert(bit32.band((1 << 40) - 4) == 0xfffffffc)
  152. assert(bit32.lrotate(0, -1) == 0)
  153. assert(bit32.lrotate(0, 7) == 0)
  154. assert(bit32.lrotate(0x12345678, 0) == 0x12345678)
  155. assert(bit32.lrotate(0x12345678, 32) == 0x12345678)
  156. assert(bit32.lrotate(0x12345678, 4) == 0x23456781)
  157. assert(bit32.rrotate(0x12345678, -4) == 0x23456781)
  158. assert(bit32.lrotate(0x12345678, -8) == 0x78123456)
  159. assert(bit32.rrotate(0x12345678, 8) == 0x78123456)
  160. assert(bit32.lrotate(0xaaaaaaaa, 2) == 0xaaaaaaaa)
  161. assert(bit32.lrotate(0xaaaaaaaa, -2) == 0xaaaaaaaa)
  162. for i = -50, 50 do
  163. assert(bit32.lrotate(0x89abcdef, i) == bit32.lrotate(0x89abcdef, i%32))
  164. end
  165. assert(bit32.lshift(0x12345678, 4) == 0x23456780)
  166. assert(bit32.lshift(0x12345678, 8) == 0x34567800)
  167. assert(bit32.lshift(0x12345678, -4) == 0x01234567)
  168. assert(bit32.lshift(0x12345678, -8) == 0x00123456)
  169. assert(bit32.lshift(0x12345678, 32) == 0)
  170. assert(bit32.lshift(0x12345678, -32) == 0)
  171. assert(bit32.rshift(0x12345678, 4) == 0x01234567)
  172. assert(bit32.rshift(0x12345678, 8) == 0x00123456)
  173. assert(bit32.rshift(0x12345678, 32) == 0)
  174. assert(bit32.rshift(0x12345678, -32) == 0)
  175. assert(bit32.arshift(0x12345678, 0) == 0x12345678)
  176. assert(bit32.arshift(0x12345678, 1) == 0x12345678 // 2)
  177. assert(bit32.arshift(0x12345678, -1) == 0x12345678 * 2)
  178. assert(bit32.arshift(-1, 1) == 0xffffffff)
  179. assert(bit32.arshift(-1, 24) == 0xffffffff)
  180. assert(bit32.arshift(-1, 32) == 0xffffffff)
  181. assert(bit32.arshift(-1, -1) == bit32.band(-1 * 2, 0xffffffff))
  182. assert(0x12345678 << 4 == 0x123456780)
  183. assert(0x12345678 << 8 == 0x1234567800)
  184. assert(0x12345678 << -4 == 0x01234567)
  185. assert(0x12345678 << -8 == 0x00123456)
  186. assert(0x12345678 << 32 == 0x1234567800000000)
  187. assert(0x12345678 << -32 == 0)
  188. assert(0x12345678 >> 4 == 0x01234567)
  189. assert(0x12345678 >> 8 == 0x00123456)
  190. assert(0x12345678 >> 32 == 0)
  191. assert(0x12345678 >> -32 == 0x1234567800000000)
  192. print("+")
  193. -- some special cases
  194. local c = {0, 1, 2, 3, 10, 0x80000000, 0xaaaaaaaa, 0x55555555,
  195. 0xffffffff, 0x7fffffff}
  196. for _, b in pairs(c) do
  197. assert(bit32.band(b) == b)
  198. assert(bit32.band(b, b) == b)
  199. assert(bit32.band(b, b, b, b) == b)
  200. assert(bit32.btest(b, b) == (b ~= 0))
  201. assert(bit32.band(b, b, b) == b)
  202. assert(bit32.band(b, b, b, ~b) == 0)
  203. assert(bit32.btest(b, b, b) == (b ~= 0))
  204. assert(bit32.band(b, bit32.bnot(b)) == 0)
  205. assert(bit32.bor(b, bit32.bnot(b)) == bit32.bnot(0))
  206. assert(bit32.bor(b) == b)
  207. assert(bit32.bor(b, b) == b)
  208. assert(bit32.bor(b, b, b) == b)
  209. assert(bit32.bor(b, b, 0, ~b) == 0xffffffff)
  210. assert(bit32.bxor(b) == b)
  211. assert(bit32.bxor(b, b) == 0)
  212. assert(bit32.bxor(b, b, b) == b)
  213. assert(bit32.bxor(b, b, b, b) == 0)
  214. assert(bit32.bxor(b, 0) == b)
  215. assert(bit32.bnot(b) ~= b)
  216. assert(bit32.bnot(bit32.bnot(b)) == b)
  217. assert(bit32.bnot(b) == (1 << 32) - 1 - b)
  218. assert(bit32.lrotate(b, 32) == b)
  219. assert(bit32.rrotate(b, 32) == b)
  220. assert(bit32.lshift(bit32.lshift(b, -4), 4) == bit32.band(b, bit32.bnot(0xf)))
  221. assert(bit32.rshift(bit32.rshift(b, 4), -4) == bit32.band(b, bit32.bnot(0xf)))
  222. end
  223. -- for this test, use at most 24 bits (mantissa of a single float)
  224. c = {0, 1, 2, 3, 10, 0x800000, 0xaaaaaa, 0x555555, 0xffffff, 0x7fffff}
  225. for _, b in pairs(c) do
  226. for i = -40, 40 do
  227. local x = bit32.lshift(b, i)
  228. local y = math.floor(math.fmod(b * 2.0^i, 2.0^32))
  229. assert(math.fmod(x - y, 2.0^32) == 0)
  230. end
  231. end
  232. assert(not pcall(bit32.band, {}))
  233. assert(not pcall(bit32.bnot, "a"))
  234. assert(not pcall(bit32.lshift, 45))
  235. assert(not pcall(bit32.lshift, 45, print))
  236. assert(not pcall(bit32.rshift, 45, print))
  237. print("+")
  238. -- testing extract/replace
  239. assert(bit32.extract(0x12345678, 0, 4) == 8)
  240. assert(bit32.extract(0x12345678, 4, 4) == 7)
  241. assert(bit32.extract(0xa0001111, 28, 4) == 0xa)
  242. assert(bit32.extract(0xa0001111, 31, 1) == 1)
  243. assert(bit32.extract(0x50000111, 31, 1) == 0)
  244. assert(bit32.extract(0xf2345679, 0, 32) == 0xf2345679)
  245. assert(not pcall(bit32.extract, 0, -1))
  246. assert(not pcall(bit32.extract, 0, 32))
  247. assert(not pcall(bit32.extract, 0, 0, 33))
  248. assert(not pcall(bit32.extract, 0, 31, 2))
  249. assert(bit32.replace(0x12345678, 5, 28, 4) == 0x52345678)
  250. assert(bit32.replace(0x12345678, 0x87654321, 0, 32) == 0x87654321)
  251. assert(bit32.replace(0, 1, 2) == 2^2)
  252. assert(bit32.replace(0, -1, 4) == 2^4)
  253. assert(bit32.replace(-1, 0, 31) == (1 << 31) - 1)
  254. assert(bit32.replace(-1, 0, 1, 2) == (1 << 32) - 7)
  255. -- testing conversion of floats
  256. assert(bit32.bor(3.0) == 3)
  257. assert(bit32.bor(-4.0) == 0xfffffffc)
  258. -- large floats and large-enough integers?
  259. if 2.0^50 < 2.0^50 + 1.0 and 2.0^50 < (-1 >> 1) then
  260. assert(bit32.bor(2.0^32 - 5.0) == 0xfffffffb)
  261. assert(bit32.bor(-2.0^32 - 6.0) == 0xfffffffa)
  262. assert(bit32.bor(2.0^48 - 5.0) == 0xfffffffb)
  263. assert(bit32.bor(-2.0^48 - 6.0) == 0xfffffffa)
  264. end
  265. print'OK'