/* X > Y - 1 equals to X >= Y. */
if (cmp == GT_EXPR)
code = GE_EXPR;
+ /* a != MIN_RANGE<a> ? a : MIN_RANGE<a>+1 -> MAX_EXPR<MIN_RANGE<a>+1, a> */
+ if (cmp == NE_EXPR && TREE_CODE (exp0) == SSA_NAME)
+ {
+ value_range r;
+ get_range_query (cfun)->range_of_expr (r, exp0);
+ if (r.undefined_p ())
+ r.set_varying (TREE_TYPE (exp0));
+
+ widest_int min = widest_int::from (r.lower_bound (),
+ TYPE_SIGN (TREE_TYPE (exp0)));
+ if (min == wi::to_widest (exp1))
+ code = MAX_EXPR;
+ }
}
if (wi::to_widest (exp1) == (wi::to_widest (exp3) + 1))
{
/* X >= Y + 1 equals to X > Y. */
if (cmp == GE_EXPR)
code = GT_EXPR;
+ /* a != MAX_RANGE<a> ? a : MAX_RANGE<a>-1 -> MIN_EXPR<MIN_RANGE<a>-1, a> */
+ if (cmp == NE_EXPR && TREE_CODE (exp0) == SSA_NAME)
+ {
+ value_range r;
+ get_range_query (cfun)->range_of_expr (r, exp0);
+ if (r.undefined_p ())
+ r.set_varying (TREE_TYPE (exp0));
+
+ widest_int max = widest_int::from (r.upper_bound (),
+ TYPE_SIGN (TREE_TYPE (exp0)));
+ if (max == wi::to_widest (exp1))
+ code = MIN_EXPR;
+ }
}
}
if (code != ERROR_MARK
Case 2)
(cond (eq (convert1? x) c1) (convert2? x) c2) -> (cond (eq x c1) c1 c2). */
-(for cmp (lt le gt ge eq)
+(for cmp (lt le gt ge eq ne)
(simplify
(cond (cmp (convert1? @1) INTEGER_CST@3) (convert2? @1) INTEGER_CST@2)
(with
/* Optimize (a CMP b) ? minmax<a, c> : minmax<b, c>
to minmax<min/max<a, b>, c> */
(for minmax (min max)
- (for cmp (lt le gt ge)
+ (for cmp (lt le gt ge ne)
(simplify
(cond (cmp @1 @3) (minmax:c @1 @4) (minmax:c @2 @4))
(with
--- /dev/null
+/* { dg-do compile } */
+/* { dg-options "-O2 -fdump-tree-phiopt2" } */
+
+int f(int num)
+{
+ if (num < 3) __builtin_unreachable();
+ return num != 3 ? num : 4;
+}
+
+/* In phiopt2 with the range information, this should be turned into
+ a MAX_EXPR. */
+/* { dg-final { scan-tree-dump-times "MAX_EXPR" 1 "phiopt2" } } */