#include #include static mrb_bool r_less(mrb_state *mrb, mrb_value a, mrb_value b, mrb_bool excl) { switch (mrb_cmp(mrb, a, b)) { case -2: /* failure */ case 1: return FALSE; case 0: return !excl; case -1: default: /* just in case */ return TRUE; } } /* * call-seq: * rng.cover?(obj) -> true or false * rng.cover?(range) -> true or false * * Returns +true+ if the given argument is within +self+, +false+ otherwise. * * With non-range argument +object+, evaluates with <= and <. * * For range +self+ with included end value (#exclude_end? == false), * evaluates thus: * * self.begin <= object <= self.end * * ("a".."z").cover?("c") #=> true * ("a".."z").cover?("5") #=> false * ("a".."z").cover?("cc") #=> true */ static mrb_value range_cover(mrb_state *mrb, mrb_value range) { struct RRange *r = mrb_range_ptr(mrb, range); mrb_value val = mrb_get_arg1(mrb); mrb_value beg, end; beg = RANGE_BEG(r); end = RANGE_END(r); if (mrb_nil_p(beg) && mrb_nil_p(end)) return mrb_true_value(); if (mrb_range_p(val)) { struct RRange *r2 = mrb_range_ptr(mrb, val); mrb_value beg2 = RANGE_BEG(r2); mrb_value end2 = RANGE_END(r2); /* range.cover?(nil..nil) => true */ if (mrb_nil_p(beg2) && mrb_nil_p(end2)) return mrb_true_value(); /* (a..b).cover?(c..d) */ if (mrb_nil_p(end)) { /* a.. */ /* (a..).cover?(c..) => true */ if (mrb_nil_p(end2)) return mrb_bool_value(mrb_cmp(mrb, beg, beg2) != -2); /* (a..).cover?(c..d) where d false */ if (r_less(mrb, end2, beg, RANGE_EXCL(r2))) return mrb_false_value(); return mrb_true_value(); } else if (mrb_nil_p(beg)) { /* ..b */ /* (..b).cover?(..d) => true */ if (mrb_nil_p(beg2)) return mrb_bool_value(mrb_cmp(mrb, end, end2) != -2); /* (..b).cover?(c..d) where b false */ if (r_less(mrb, end, beg2, RANGE_EXCL(r))) return mrb_false_value(); return mrb_true_value(); } else { /* a..b */ /* (a..b).cover?(c..) => (c (a false */ if (r_less(mrb, end, beg2, RANGE_EXCL(r))) return mrb_false_value(); /* (a..b).cover?(c..d) where (d false */ if (r_less(mrb, end2, beg, RANGE_EXCL(r2))) return mrb_false_value(); return mrb_true_value(); } } if (mrb_nil_p(beg) || r_less(mrb, beg, val, FALSE)) { if (mrb_nil_p(end)) { return mrb_true_value(); } if (r_less(mrb, val, end, RANGE_EXCL(r))) return mrb_true_value(); } return mrb_false_value(); } /* * call-seq: * rng.size -> num * * Returns the number of elements in the range. Both the begin and the end of * the Range must be Numeric, otherwise nil is returned. * * (10..20).size #=> 11 * ('a'..'z').size #=> nil */ #ifndef MRB_NO_FLOAT static mrb_value range_size(mrb_state *mrb, mrb_value range) { struct RRange *r = mrb_range_ptr(mrb, range); mrb_value beg, end; mrb_float beg_f, end_f; mrb_bool num_p = TRUE; mrb_bool excl; beg = RANGE_BEG(r); end = RANGE_END(r); if ((mrb_integer_p(beg) || mrb_float_p(beg)) && mrb_nil_p(end)) { return mrb_float_value(mrb, INFINITY); } excl = RANGE_EXCL(r); if (mrb_integer_p(beg)) { beg_f = (mrb_float)mrb_integer(beg); } else if (mrb_float_p(beg)) { beg_f = mrb_float(beg); } else { num_p = FALSE; } if (mrb_integer_p(end)) { end_f = (mrb_float)mrb_integer(end); } else if (mrb_float_p(end)) { end_f = mrb_float(end); } else { num_p = FALSE; } if (num_p) { mrb_float n = end_f - beg_f; mrb_float err = (fabs(beg_f) + fabs(end_f) + fabs(end_f-beg_f)) * MRB_FLOAT_EPSILON; if (err>0.5) err=0.5; if (excl) { if (n<=0) return mrb_fixnum_value(0); if (n<1) n = 0; else n = floor(n - err); } else { if (n<0) return mrb_fixnum_value(0); n = floor(n + err); } if (isinf(n+1)) return mrb_float_value(mrb, INFINITY); return mrb_fixnum_value((mrb_int)n+1); } return mrb_nil_value(); } #else static mrb_value range_size(mrb_state *mrb, mrb_value range) { struct RRange *r = mrb_range_ptr(mrb, range); mrb_value beg, end; mrb_int excl; beg = RANGE_BEG(r); end = RANGE_END(r); if (mrb_integer_p(beg) && mrb_nil_p(end)) { return mrb_nil_value(); } excl = RANGE_EXCL(r) ? 0 : 1; if (mrb_integer_p(beg) && mrb_integer_p(end)) { mrb_int a = mrb_integer(beg); mrb_int b = mrb_integer(end); mrb_int c = b - a + excl; return mrb_int_value(mrb, c); } return mrb_nil_value(); } #endif /* MRB_NO_FLOAT */ void mrb_mruby_range_ext_gem_init(mrb_state* mrb) { struct RClass * s = mrb->range_class; mrb_define_method(mrb, s, "cover?", range_cover, MRB_ARGS_REQ(1)); mrb_define_method(mrb, s, "size", range_size, MRB_ARGS_NONE()); } void mrb_mruby_range_ext_gem_final(mrb_state* mrb) { }