зеркало из https://github.com/github/ruby.git
* complex.c (nucomp_equal_p): removed.
git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@23948 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
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@ -1,3 +1,7 @@
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Fri Jul 3 21:30:14 2009 Tadayoshi Funaba <tadf@dotrb.org>
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* complex.c (nucomp_equal_p): removed.
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Fri Jul 3 21:07:29 2009 Tadayoshi Funaba <tadf@dotrb.org>
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* rational.c: renamed equal_p to eqeq_p.
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34
complex.c
34
complex.c
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@ -18,9 +18,9 @@
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VALUE rb_cComplex;
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static ID id_abs, id_abs2, id_arg, id_cmp, id_conj, id_convert,
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id_denominator, id_divmod, id_eqeq_p, id_equal_p, id_expt, id_fdiv,
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id_floor, id_idiv, id_imag, id_inspect, id_negate, id_numerator,
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id_quo, id_real, id_real_p, id_to_f, id_to_i, id_to_r, id_to_s;
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id_denominator, id_divmod, id_eqeq_p, id_expt, id_fdiv, id_floor,
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id_idiv, id_imag, id_inspect, id_negate, id_numerator, id_quo,
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id_real, id_real_p, id_to_f, id_to_i, id_to_r, id_to_s;
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#define f_boolcast(x) ((x) ? Qtrue : Qfalse)
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@ -169,14 +169,6 @@ fun1(to_s)
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fun2(divmod)
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inline static VALUE
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f_equal_p(VALUE x, VALUE y)
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{
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if (FIXNUM_P(x) && FIXNUM_P(y))
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return f_boolcast(FIX2LONG(x) == FIX2LONG(y));
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return rb_funcall(x, id_equal_p, 1, y);
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}
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inline static VALUE
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f_eqeq_p(VALUE x, VALUE y)
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{
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@ -890,24 +882,6 @@ nucomp_expt(VALUE self, VALUE other)
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return rb_num_coerce_bin(self, other, id_expt);
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}
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/*
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* call-seq:
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* cmp == object -> true or false
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*
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* Returns true if cmp is same as object.
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*/
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static VALUE
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nucomp_equal_p(VALUE self, VALUE other)
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{
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if (k_complex_p(other)) {
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get_dat2(self, other);
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return f_boolcast(f_equal_p(adat->real, bdat->real) &&
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f_equal_p(adat->imag, bdat->imag));
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}
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return Qfalse;
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}
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/*
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* call-seq:
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* cmp == object -> true or false
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@ -1831,7 +1805,6 @@ Init_Complex(void)
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id_convert = rb_intern("convert");
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id_denominator = rb_intern("denominator");
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id_divmod = rb_intern("divmod");
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id_equal_p = rb_intern("equal?");
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id_eqeq_p = rb_intern("==");
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id_expt = rb_intern("**");
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id_fdiv = rb_intern("fdiv");
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@ -1901,7 +1874,6 @@ Init_Complex(void)
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rb_define_method(rb_cComplex, "fdiv", nucomp_fdiv, 1);
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rb_define_method(rb_cComplex, "**", nucomp_expt, 1);
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rb_define_method(rb_cComplex, "equal?", nucomp_equal_p, 1);
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rb_define_method(rb_cComplex, "==", nucomp_eqeq_p, 1);
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rb_define_method(rb_cComplex, "coerce", nucomp_coerce, 1);
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@ -488,18 +488,6 @@ class Complex_Test < Test::Unit::TestCase
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assert_raise(NoMethodError){Complex(1,1) <=> Complex(1,1)}
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end
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def test_equal
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unless @unify
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assert_equal(true, Complex(1,0).equal?(Complex(1)))
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assert_equal(false, Complex(1,0).equal?(Complex(1.0)))
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if (0.0/0).nan?
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nan = 0.0/0
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assert_equal(true, Complex(nan).equal?(Complex(nan)))
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assert_equal(false, Complex(nan).equal?(nan))
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end
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end
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end
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def test_eqeq
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assert(Complex(1,0) == Complex(1))
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assert(Complex(-1,0) == Complex(-1))
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