On Thu, Aug 20, 2026 at 4:57 AM <[email protected]> wrote:
>
> From: Kyrylo Tkachov <[email protected]>
>
> A VECTOR_CST can encode a stepped series without storing every lane.  The
> fold-const negate_expr_p checks only the encoded elements.  It can therefore
> approve a signed vector whose implicit final lane is INT_MIN.
>
>   typedef int v4si __attribute__ ((vector_size (16)));
>
>   const v4si c = { 2147483645, 2147483646, 2147483647,
>                    (-2147483647 - 1) };
>
>   v4si f (v4si x) { return (-x) - c; }
>   v4si g (v4si x) { return -(x + c); }
>   v4si h () { return -c; }
>
> The old predicate lets f and g negate c.  It represents -INT_MIN as INT_MIN,
> which adds a false signed overflow for defined inputs.  fold_negate_expr_1
> can also negate the encoded elements of c directly.  This removes the
> required overflow diagnostic from h when overflow is instrumented.
>
> aarch64 -O2 -fsanitize=signed-integer-overflow
>         -fsanitize-trap=signed-integer-overflow before:
>
>   h:
>           adrp    x0, .LANCHOR0
>           ldr     q0, [x0, #:lo12:.LANCHOR0]
>           ret
>
> After:
>
>   h:
>           brk     #1000
>
> Reject a non-wrapping integral stepped vector in negate_expr_p.  Also keep a
> direct stepped integral negation when sanitizer instrumentation makes overflow
> observable.  Use vector-aware predicates directly.  Keep the integral type
> check before TYPE_OVERFLOW_WRAPS because fixed-point vectors can reach the
> predicate, but TYPE_OVERFLOW_WRAPS does not accept them.  The preceding patch
> makes TYPE_OVERFLOW_SANITIZED accept integral vectors.
>
> The two stepped checks have different conditions.  negate_expr_p is a proof
> for moving a negation.  Moving an implicit INT_MIN negation can introduce
> undefined overflow into f or g even when no overflow option is enabled, so
> that predicate rejects every non-wrapping integral stepped constant.
> fold_negate_expr_1 handles a direct source negation whose INT_MIN lane already
> overflows.  GCC normally folds that constant overflow, and -ftrapv does not
> trap vector constant negation.  Only sanitizer instrumentation makes the
> missing operation observable, so the direct-fold check is conditional on
> TYPE_OVERFLOW_SANITIZED.
>
> The test checks that f and g do not report overflow for defined inputs.  It
> also checks that h reports its real INT_MIN negation.
>
> Bootstrapped and tested on aarch64-none-linux-gnu and x86_64-pc-linux-gnu.
> Ok for trunk?
> Thanks,
> Kyrill
>
> gcc/ChangeLog:
>
>         * fold-const.cc (negate_expr_p): Reject non-wrapping stepped vector
>         constants.
>         (fold_negate_expr_1): Preserve sanitized stepped integral negations.
>
> gcc/testsuite/ChangeLog:
>
>         * g++.dg/ubsan/fold-negate-vector-1.C: New test.
>
> Signed-off-by: Kyrylo Tkachov <[email protected]>
> ---
>  gcc/fold-const.cc                             | 12 ++++-
>  .../g++.dg/ubsan/fold-negate-vector-1.C       | 46 +++++++++++++++++++
>  2 files changed, 56 insertions(+), 2 deletions(-)
>  create mode 100644 gcc/testsuite/g++.dg/ubsan/fold-negate-vector-1.C
>
> diff --git a/gcc/fold-const.cc b/gcc/fold-const.cc
> index 420e3185a2a..b2fc63ce5aa 100644
> --- a/gcc/fold-const.cc
> +++ b/gcc/fold-const.cc
> @@ -406,10 +406,14 @@ negate_expr_p (tree t)
>
>      case VECTOR_CST:
>        {
> -       if (FLOAT_TYPE_P (TREE_TYPE (type)) || TYPE_OVERFLOW_WRAPS (type))
> +       if (FLOAT_TYPE_P (type)
> +           || (ANY_INTEGRAL_TYPE_P (type) && TYPE_OVERFLOW_WRAPS (type)))
>           return true;

I think you don't need to change this part any more.  Otherwise ok.


>
> -       /* Steps don't prevent negation.  */
> +       /* An implicit element of a stepped vector can be the minimum
> +          value.  */
> +       if (VECTOR_CST_STEPPED_P (t))
> +         return false;
>         unsigned int count = vector_cst_encoded_nelts (t);
>         for (unsigned int i = 0; i < count; ++i)
>           if (!negate_expr_p (VECTOR_CST_ENCODED_ELT (t, i)))
> @@ -566,6 +570,10 @@ fold_negate_expr_1 (location_t loc, tree t)
>
>      case VECTOR_CST:
>        {
> +       if (VECTOR_CST_STEPPED_P (t)
> +           && TYPE_OVERFLOW_SANITIZED (type))
> +         return NULL_TREE;
> +
>         tree_vector_builder elts;
>         elts.new_unary_operation (type, t, true);
>         unsigned int count = elts.encoded_nelts ();
> diff --git a/gcc/testsuite/g++.dg/ubsan/fold-negate-vector-1.C 
> b/gcc/testsuite/g++.dg/ubsan/fold-negate-vector-1.C
> new file mode 100644
> index 00000000000..cda0fd9817f
> --- /dev/null
> +++ b/gcc/testsuite/g++.dg/ubsan/fold-negate-vector-1.C
> @@ -0,0 +1,46 @@
> +// { dg-do run { target int32 } }
> +// { dg-options "-O2 -Wno-psabi -fsanitize=signed-integer-overflow" }
> +
> +#define INT_MAX __INT_MAX__
> +#define INT_MIN (-INT_MAX - 1)
> +
> +typedef int v4si __attribute__ ((vector_size (16)));
> +
> +const v4si c = { INT_MAX - 2, INT_MAX - 1, INT_MAX, INT_MIN };
> +
> +v4si __attribute__ ((noipa))
> +f (v4si x)
> +{
> +  return (-x) - c;
> +}
> +
> +v4si __attribute__ ((noipa))
> +g (v4si x)
> +{
> +  return -(x + c);
> +}
> +
> +v4si __attribute__ ((noipa))
> +h ()
> +{
> +  return -c;
> +}
> +
> +int
> +main ()
> +{
> +  v4si x = { 0, 0, 0, 1 };
> +  v4si y = f (x);
> +  if (y[3] != INT_MAX)
> +    __builtin_abort ();
> +
> +  y = g (x);
> +  if (y[3] != INT_MAX)
> +    __builtin_abort ();
> +
> +  volatile v4si z = h ();
> +  if (z[3] != INT_MIN)
> +    __builtin_abort ();
> +}
> +
> +// { dg-output "negation of -2147483648 cannot be represented in type 'int'; 
> cast to an unsigned type to negate this value to itself" }
> --
> 2.50.1 (Apple Git-155)
>

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