On Thu Sep 10, 2026 at 9:46 AM PDT, Vineet Gupta wrote:
> coerce_reg_to_size_sx() decides whether a sign extension is lossless by
> comparing the bits above the field in smin and smax:
>
>       top_smax_value = ((u64)reg_smax(reg) >> num_bits) << num_bits;
>       top_smin_value = ((u64)reg_smin(reg) >> num_bits) << num_bits;
>       if (top_smax_value != top_smin_value)
>               goto out;
>
> Equal high bits do imply the truncation is lossless, but the converse does
> not hold. Whenever the range straddles zero the high bits necessarily
> differ -- smin sign-extends to all ones, smax to all zeroes -- even when
> every value in the range fits the field and (sN)v == v throughout. The
> second gate, "both of s64_max/s64_min positive or negative", rejects the
> same shape again for the same reason.
>
> So a register holding an errno-or-zero value, [-4095, 0], comes out of r0
> = (s32)r0 as the full [S32_MIN, S32_MAX] even though the instruction is a
> no-op on it. The no_sext test at the call site does not help: it is an
> unsigned check, so it only covers non-negative values that fit.
>
> Test the range against the field directly and return early when it fits.
> Sign extension is then the identity, so nothing needs updating -- which
> also preserves var_off, where the existing path would have replaced known
> bits with a coarse tnum_range().
>
> This only tightens: the early return fires exactly where the value is
> provably unchanged, and the cases the current tests do accept still take
> the same path and produce the same bounds.
>
> Signed-off-by: Vineet Gupta <[email protected]>
> ---
> v2: new. coerce_reg_to_size_sx() is fixed rather than special-cased,
> which is what was asked on RFC 5/6; it removes the RFC's
> call-then-overwrite at the mov site.
>
>  kernel/bpf/verifier.c | 22 ++++++++++++++++++++++
>  1 file changed, 22 insertions(+)
>
> diff --git a/kernel/bpf/verifier.c b/kernel/bpf/verifier.c
> index 58e788f53ae5..eb093194e2a3 100644
> --- a/kernel/bpf/verifier.c
> +++ b/kernel/bpf/verifier.c
> @@ -5754,6 +5754,7 @@ static void set_sext64_default_val(struct bpf_reg_state 
> *reg, int size)
>  static void coerce_reg_to_size_sx(struct bpf_reg_state *reg, int size)
>  {
>       s64 init_s64_max, init_s64_min, s64_max, s64_min, u64_cval;
> +     s64 field_smin, field_smax;
>       u64 top_smax_value, top_smin_value;
>       u64 num_bits = size * 8;
>  
> @@ -5773,6 +5774,27 @@ static void coerce_reg_to_size_sx(struct bpf_reg_state 
> *reg, int size)
>               return;
>       }
>  
> +     if (size == 1) {
> +             field_smin = S8_MIN;
> +             field_smax = S8_MAX;
> +     } else if (size == 2) {
> +             field_smin = S16_MIN;
> +             field_smax = S16_MAX;
> +     } else {
> +             /* size == 4 */
> +             field_smin = S32_MIN;
> +             field_smax = S32_MAX;
> +     }
> +
> +     /*
> +      * The range already fits the field, so (sN)v == v for every value the
> +      * register can hold and the sign extension changes nothing. The tests
> +      * below cannot reach this case once smin is negative: a negative smin
> +      * and a non-negative smax never share their high bits.
> +      */
> +     if (reg_smin(reg) >= field_smin && reg_smax(reg) <= field_smax)
> +             return;
> +

This patch can be a patch 1, since it looks unrelated to the rest?
Would be good to test it individually. veristat run before/after.


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