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640420f704
bitwise arithmetic with a Fixnum. #1792 * test/ruby/test_fixnum.rb: add tests for the above change. * bignum.c (bit_coerce): A Fixnum and a Bignum are only permitted for bitwise arithmetic with a Bignum. #1792 * test/ruby/test_bignum.rb: add tests for the above change. git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@33108 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
274 lines
7.1 KiB
Ruby
274 lines
7.1 KiB
Ruby
require 'test/unit'
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class TestFixnum < Test::Unit::TestCase
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def setup
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@verbose = $VERBOSE
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$VERBOSE = nil
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end
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def teardown
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$VERBOSE = @verbose
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end
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def test_pow
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[1, 2, 2**64, 2**63*3, 2**64*3].each do |y|
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[-1, 0, 1].each do |x|
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z1 = x**y
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z2 = (-x)**y
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if y % 2 == 1
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assert_equal(z2, -z1)
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else
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assert_equal(z2, z1)
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end
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end
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end
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end
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def test_succ
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assert_equal(0x40000000, 0x3fffffff.succ, "[ruby-dev:31189]")
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assert_equal(0x4000000000000000, 0x3fffffffffffffff.succ, "[ruby-dev:31190]")
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end
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def test_pred
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assert_equal(-0x40000001, (-0x40000000).pred)
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assert_equal(-0x4000000000000001, (-0x4000000000000000).pred)
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end
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def test_plus
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assert_equal(0x40000000, 0x3fffffff+1)
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assert_equal(0x4000000000000000, 0x3fffffffffffffff+1)
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assert_equal(-0x40000001, (-0x40000000)+(-1))
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assert_equal(-0x4000000000000001, (-0x4000000000000000)+(-1))
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assert_equal(-0x80000000, (-0x40000000)+(-0x40000000))
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end
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def test_sub
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assert_equal(0x40000000, 0x3fffffff-(-1))
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assert_equal(0x4000000000000000, 0x3fffffffffffffff-(-1))
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assert_equal(-0x40000001, (-0x40000000)-1)
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assert_equal(-0x4000000000000001, (-0x4000000000000000)-1)
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assert_equal(-0x80000000, (-0x40000000)-0x40000000)
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end
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def test_mult
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assert_equal(0x40000000, 0x20000000*2)
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assert_equal(0x4000000000000000, 0x2000000000000000*2)
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assert_equal(-0x40000001, 33025*(-32513))
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assert_equal(-0x4000000000000001, 1380655685*(-3340214413))
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assert_equal(0x40000000, (-0x40000000)*(-1))
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end
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def test_div
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assert_equal(2, 5/2)
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assert_equal(0, 1/2)
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assert_equal(-1, -1/2)
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assert_equal(0, -(1/2))
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assert_equal(-1, (-1)/2)
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assert_equal(0, (-1)/(-2))
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assert_equal(-1, 1/(-2))
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assert_equal(1, -(1/(-2)))
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assert_equal(0x3fffffff, 0xbffffffd/3)
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assert_equal(0x40000000, 0xc0000000/3)
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assert_equal(0x4000000000000000, 0xc000000000000000/3)
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assert_equal(-0x40000001, 0xc0000003/(-3))
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assert_equal(-0x4000000000000001, 0xc000000000000003/(-3))
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assert_equal(0x40000000, (-0x40000000)/(-1), "[ruby-dev:31210]")
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assert_equal(0x4000000000000000, (-0x4000000000000000)/(-1))
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end
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def test_mod
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assert_equal(2, (-0x40000000) % 3)
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assert_equal(0, (-0x40000000) % (-1))
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end
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def test_divmod
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(-5).upto(5) {|a|
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(-5).upto(5) {|b|
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next if b == 0
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q, r = a.divmod(b)
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assert_equal(a, b*q+r)
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assert(r.abs < b.abs)
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assert(0 < b ? (0 <= r && r < b) : (b < r && r <= 0))
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assert_equal(q, a/b)
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assert_equal(q, a.div(b))
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assert_equal(r, a%b)
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assert_equal(r, a.modulo(b))
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}
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}
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end
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def test_not
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assert_equal(-0x40000000, ~0x3fffffff)
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assert_equal(0x3fffffff, ~-0x40000000)
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end
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def test_lshift
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assert_equal(0x40000000, 0x20000000 << 1)
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assert_equal(-0x40000000, (-0x20000000) << 1)
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assert_equal(-0x80000000, (-0x40000000) << 1)
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end
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def test_rshift
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assert_equal(0x20000000, 0x40000000 >> 1)
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assert_equal(-0x20000000, (-0x40000000) >> 1)
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assert_equal(-0x40000000, (-0x80000000) >> 1)
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end
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def test_abs
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assert_equal(0x40000000, (-0x40000000).abs)
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assert_equal(0x4000000000000000, (-0x4000000000000000).abs)
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end
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def test_to_s
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assert_equal("1010", 10.to_s(2))
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assert_equal("a", 10.to_s(36))
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assert_raise(ArgumentError) { 10.to_s(1) }
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end
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def test_plus2
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assert_equal(2, 1 + 1)
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assert_equal(4294967297, 1 + 2**32)
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assert_equal(2.0, 1 + 1.0)
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assert_raise(TypeError) { 1 + nil }
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end
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def test_minus
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assert_equal(0, 1 - 1)
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assert_equal(-4294967295, 1 - 2**32)
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assert_equal(0.0, 1 - 1.0)
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assert_raise(TypeError) { 1 - nil }
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end
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def test_mul
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assert_equal(6, 2.send(:*, 3))
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a = 2**30-1
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assert_equal(1152921502459363329, a.send(:*, a))
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assert_equal(6.0, 2 * 3.0)
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assert_raise(TypeError) { 2 * nil }
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end
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def test_divide
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assert_equal(2.0, 4.quo(2))
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assert_equal(2.0, 4 / 2)
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assert_equal(2.0, 4.div(2))
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assert_equal(0.5**32, 1.quo(2**32))
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assert_equal(0, 1 / (2**32))
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assert_equal(0, 1.div(2**32))
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assert_equal(0.5, 1.quo(2.0))
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assert_equal(0.5, 1 / 2.0)
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assert_equal(0, 1.div(2.0))
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### rational changes the behavior of Fixnum#quo
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#assert_raise(TypeError) { 2.quo(nil) }
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assert_raise(TypeError, NoMethodError) { 2.quo(nil) }
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assert_raise(TypeError) { 2 / nil }
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assert_raise(TypeError) { 2.div(nil) }
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assert_equal(0, 4.modulo(2))
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assert_equal(1, 1.modulo(2**32))
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assert_equal(1, 1.modulo(2.0))
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assert_raise(TypeError) { 2.modulo(nil) }
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assert_equal([2, 0], 4.divmod(2))
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assert_equal([0, 1], 1.divmod(2**32))
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assert_equal([0, 1], 1.divmod(2.0))
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assert_raise(TypeError) { 2.divmod(nil) }
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end
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def test_pow2
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assert_equal(65536, 2**16)
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assert_equal(4294967296, 2**32)
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assert_equal(0.5**16, 2**-16)
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assert_equal(1, (-1)**4294967296)
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assert_equal(-1, (-1)**4294967295)
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assert_equal(4, 2**((2**32).coerce(2).first))
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assert_equal(2, 4**0.5)
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assert_equal(0, 0**0.5)
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assert_equal(1, (0**-1.0).infinite?)
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### rational changes the behavior of Fixnum#**
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#assert_raise(TypeError) { 1 ** nil }
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assert_raise(TypeError, NoMethodError) { 1 ** nil }
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end
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def test_cmp
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assert(1 != nil)
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assert_equal(0, 1 <=> 1)
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assert_equal(-1, 1 <=> 4294967296)
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assert_equal(0, 1 <=> 1.0)
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assert_nil(1 <=> nil)
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assert(1.send(:>, 0))
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assert(!(1.send(:>, 1)))
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assert(!(1.send(:>, 2)))
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assert(!(1.send(:>, 4294967296)))
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assert(1.send(:>, 0.0))
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assert_raise(ArgumentError) { 1.send(:>, nil) }
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assert(1.send(:>=, 0))
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assert(1.send(:>=, 1))
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assert(!(1.send(:>=, 2)))
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assert(!(1.send(:>=, 4294967296)))
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assert(1.send(:>=, 0.0))
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assert_raise(ArgumentError) { 1.send(:>=, nil) }
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assert(!(1.send(:<, 0)))
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assert(!(1.send(:<, 1)))
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assert(1.send(:<, 2))
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assert(1.send(:<, 4294967296))
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assert(!(1.send(:<, 0.0)))
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assert_raise(ArgumentError) { 1.send(:<, nil) }
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assert(!(1.send(:<=, 0)))
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assert(1.send(:<=, 1))
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assert(1.send(:<=, 2))
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assert(1.send(:<=, 4294967296))
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assert(!(1.send(:<=, 0.0)))
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assert_raise(ArgumentError) { 1.send(:<=, nil) }
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end
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class DummyNumeric < Numeric
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def to_int
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1
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end
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end
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def test_and_with_float
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assert_raise(TypeError) { 1 & 1.5 }
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end
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def test_and_with_rational
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assert_raise(TypeError, "#1792") { 1 & Rational(3, 2) }
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end
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def test_and_with_nonintegral_numeric
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assert_raise(TypeError, "#1792") { 1 & DummyNumeric.new }
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end
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def test_or_with_float
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assert_raise(TypeError) { 1 | 1.5 }
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end
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def test_or_with_rational
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assert_raise(TypeError, "#1792") { 1 | Rational(3, 2) }
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end
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def test_or_with_nonintegral_numeric
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assert_raise(TypeError, "#1792") { 1 | DummyNumeric.new }
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end
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def test_xor_with_float
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assert_raise(TypeError) { 1 ^ 1.5 }
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end
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def test_xor_with_rational
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assert_raise(TypeError, "#1792") { 1 ^ Rational(3, 2) }
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end
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def test_xor_with_nonintegral_numeric
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assert_raise(TypeError, "#1792") { 1 ^ DummyNumeric.new }
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end
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end
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