Add explicit cast to `DROP_PRECISION` macro in `rational.c`.

parent 0d755e58
......@@ -91,9 +91,9 @@ rational_s_new(mrb_state *mrb, mrb_value self)
mrb_get_args(mrb, "ii", &numerator, &denominator);
#else
#define DROP_PRECISION(cond, num, denom) \
#define DROP_PRECISION(f, num, denom) \
do { \
while (cond) { \
while (f < (mrb_float)MRB_INT_MIN || f > (mrb_float)MRB_INT_MAX) { \
num /= 2; \
denom /= 2; \
} \
......@@ -111,8 +111,8 @@ rational_s_new(mrb_state *mrb, mrb_value self)
else {
mrb_float denomf = mrb_to_flo(mrb, denomv);
DROP_PRECISION(denomf < MRB_INT_MIN || denomf > MRB_INT_MAX, numerator, denomf);
denominator = denomf;
DROP_PRECISION(denomf, numerator, denomf);
denominator = (mrb_int)denomf;
}
}
else {
......@@ -124,12 +124,12 @@ rational_s_new(mrb_state *mrb, mrb_value self)
else {
mrb_float denomf = mrb_to_flo(mrb, denomv);
DROP_PRECISION(denomf < MRB_INT_MIN || denomf > MRB_INT_MAX, numf, denomf);
denominator = denomf;
DROP_PRECISION(denomf, numf, denomf);
denominator = (mrb_int)denomf;
}
DROP_PRECISION(numf < MRB_INT_MIN || numf > MRB_INT_MAX, numf, denominator);
numerator = numf;
DROP_PRECISION(numf, numf, denominator);
numerator = (mrb_int)numf;
}
#endif
......@@ -152,7 +152,7 @@ rational_to_i(mrb_state *mrb, mrb_value self)
{
struct mrb_rational *p = rational_ptr(mrb, self);
if (p->denominator == 0) {
mrb_raise(mrb, mrb->eStandardError, "divided by 0");
mrb_raise(mrb, mrb->eStandardError_class, "divided by 0");
}
return mrb_fixnum_value(p->numerator / p->denominator);
}
......
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