зеркало из https://github.com/github/ruby.git
enumerator.c: Fix ArithmeticSequence for complex step
Make sure Enumerator::ArithmeticSequence#each to work well for a complex step value. git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@64692 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
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@ -2661,7 +2661,8 @@ arith_seq_each(VALUE self)
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s = arith_seq_step(self);
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x = arith_seq_exclude_end_p(self);
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if (ruby_float_step(c, e, s, x, TRUE)) {
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if (RB_TYPE_P(c, T_FLOAT) && RB_TYPE_P(s, T_FLOAT) &&
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ruby_float_step(c, e, s, x, TRUE)) {
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return self;
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}
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@ -396,4 +396,24 @@ class TestArithmeticSequence < Test::Unit::TestCase
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assert_equal(4, (10...2).step(-2).size)
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assert_equal(Float::INFINITY, (1..).step(-1).size)
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end
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def assert_num_equal_type(ary1, ary2, message=nil)
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assert_equal(ary1.length, ary2.length, message)
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ary1.zip(ary2) do |e1, e2|
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assert_equal(e1.class, e2.class, message)
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if e1.is_a? Complex
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assert_equal(e1.real, e2.real, message)
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assert_equal(e1.imag, e2.imag, message)
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else
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assert_equal(e1, e2, message)
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end
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end
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end
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def test_complex
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assert_num_equal_type([1, 1+1i, 1+2i], (1..).step(1i).take(3))
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assert_num_equal_type([1, 1+1.0i, 1+2.0i], (1..).step(1.0i).take(3))
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assert_num_equal_type([0.0, 0.0+1.0i, 0.0+2.0i], (0.0..).step(1.0i).take(3))
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assert_num_equal_type([0.0+0.0i, 0.0+1.0i, 0.0+2.0i], (0.0i..).step(1.0i).take(3))
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end
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end
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