GE
#define LE(x, y) GE(y, x)
x = (GE(c, 'A') & LE(c, 'Z') & (c - 'A')) |
(GE(c, 'a') & LE(c, 'z') & (c - ('a' - 26))) |
(GE(c, '0') & LE(c, '9') & (c - ('0' - 52))) | (EQ(c, '+') & 62) |
case GE: return(",>=");
case GE: return(",>=");
{ return(GE); }
%left '<' LE '>' GE
| expr GE expr { $$ = $1 >= $3; }
case GE:
return par->p += 2, *out_op = GE, true;
case GE:
} else if (op == LT || op == GE)
case GE:
case GE:
case GE:
case GE: