On Thu, Aug 13, 2026 at 10:37 AM Shreesh Adiga
<[email protected]> wrote:
>
> This avoids unnecessary moves when either the initial CRC
> value or the data operand is a constant zero. For example:
> __crc32w(0, x) previously generated "mov w1, 0; crc32w w0, w1, w0"
> whereas now it generates "crc32w w0, wzr, w0".
>
> gcc/ChangeLog:
>
> * config/aarch64/aarch64.md: allow usage of zero reg for CRC32
> instructions
>
> gcc/testsuite/ChangeLog:
>
> * gcc.target/aarch64/crc32-zero.c: New test.
>
> Signed-off-by: Shreesh Adiga <[email protected]>
> ---
> Changes in v2:
> Added new tests in crc32-zero.c which covers various crc32
> instructions with 0 value for one or both source operands.
>
> gcc/config/aarch64/aarch64.md | 4 +-
> gcc/testsuite/gcc.target/aarch64/crc32-zero.c | 180 ++++++++++++++++++
> 2 files changed, 182 insertions(+), 2 deletions(-)
> create mode 100644 gcc/testsuite/gcc.target/aarch64/crc32-zero.c
>
> diff --git a/gcc/config/aarch64/aarch64.md b/gcc/config/aarch64/aarch64.md
> index 9cb55602c36..9f26e558e48 100644
> --- a/gcc/config/aarch64/aarch64.md
> +++ b/gcc/config/aarch64/aarch64.md
> @@ -4959,8 +4959,8 @@ (define_expand "<neg_not_op><mode>cc"
> ;; CRC32 instructions.
> (define_insn "aarch64_<crc_variant>"
> [(set (match_operand:SI 0 "register_operand" "=r")
> - (unspec:SI [(match_operand:SI 1 "register_operand" "r")
> - (match_operand:<crc_mode> 2 "register_operand" "r")]
> + (unspec:SI [(match_operand:SI 1 "aarch64_reg_or_zero" "rZ")
> + (match_operand:<crc_mode> 2 "aarch64_reg_or_zero" "rZ")]
> CRC))]
> "TARGET_CRC32"
> {
> diff --git a/gcc/testsuite/gcc.target/aarch64/crc32-zero.c
> b/gcc/testsuite/gcc.target/aarch64/crc32-zero.c
> new file mode 100644
> index 00000000000..b256dd0858a
> --- /dev/null
> +++ b/gcc/testsuite/gcc.target/aarch64/crc32-zero.c
> @@ -0,0 +1,180 @@
> +/* { dg-do compile } */
> +/* { dg-options "-O2 -march=armv8-a+crc" } */
> +
> +typedef unsigned int uint32_t;
> +typedef unsigned long long uint64_t;
> +typedef unsigned short uint16_t;
> +typedef unsigned char uint8_t;
> +
> +uint32_t
> +crc32cb_init_zero(uint16_t x)
> +{
> + return __builtin_aarch64_crc32cb(0, x);
> +}
> +
> +uint32_t
> +crc32cb_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32cb(x, 0);
> +}
> +
> +uint32_t
> +crc32cb_both_zero(void)
> +{
> + return __builtin_aarch64_crc32cb(0, 0);
> +}
> +
> +uint32_t
> +crc32ch_init_zero(uint16_t x)
> +{
> + return __builtin_aarch64_crc32ch(0, x);
> +}
> +
> +uint32_t
> +crc32ch_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32ch(x, 0);
> +}
> +
> +uint32_t
> +crc32ch_both_zero(void)
> +{
> + return __builtin_aarch64_crc32ch(0, 0);
> +}
> +
> +uint32_t
> +crc32cw_init_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32cw(0, x);
> +}
> +
> +uint32_t
> +crc32cw_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32cw(x, 0);
> +}
> +
> +uint32_t
> +crc32cw_both_zero(void)
> +{
> + return __builtin_aarch64_crc32cw(0, 0);
> +}
> +
> +uint32_t
> +crc32cx_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32cx(x, 0);
> +}
> +
> +uint32_t
> +crc32cx_init_zero64(uint64_t x)
> +{
> + return __builtin_aarch64_crc32cx(0, x);
> +}
> +
> +uint32_t
> +crc32cx_both_zero64(void)
> +{
> + return __builtin_aarch64_crc32cx(0, 0);
> +}
> +
> +uint32_t
> +crc32b_init_zero(uint16_t x)
> +{
> + return __builtin_aarch64_crc32b(0, x);
> +}
> +
> +uint32_t
> +crc32b_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32b(x, 0);
> +}
> +
> +uint32_t
> +crc32b_both_zero(void)
> +{
> + return __builtin_aarch64_crc32b(0, 0);
> +}
> +
> +uint32_t
> +crc32h_init_zero(uint16_t x)
> +{
> + return __builtin_aarch64_crc32h(0, x);
> +}
> +
> +uint32_t
> +crc32h_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32h(x, 0);
> +}
> +
> +uint32_t
> +crc32h_both_zero(void)
> +{
> + return __builtin_aarch64_crc32h(0, 0);
> +}
> +
> +uint32_t
> +crc32w_init_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32w(0, x);
> +}
> +
> +uint32_t
> +crc32w_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32w(x, 0);
> +}
> +
> +uint32_t
> +crc32w_both_zero(void)
> +{
> + return __builtin_aarch64_crc32w(0, 0);
> +}
> +
> +uint32_t
> +crc32x_data_zero(uint32_t x)
> +{
> + return __builtin_aarch64_crc32x(x, 0);
> +}
> +
> +uint32_t
> +crc32x_init_zero64(uint64_t x)
> +{
> + return __builtin_aarch64_crc32x(0, x);
> +}
> +
> +uint32_t
> +crc32x_both_zero64(void)
> +{
> + return __builtin_aarch64_crc32x(0, 0);
> +}
> +
> +/* { dg-final { scan-assembler-times "crc32b\tw\[0-9\]+, wzr, w\[0-9\]+" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32h\tw\[0-9\]+, wzr, w\[0-9\]+" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32w\tw\[0-9\]+, wzr, w\[0-9\]+" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32x\tw\[0-9\]+, wzr, x\[0-9\]+" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32b\tw\[0-9\]+, w\[0-9\]+, wzr" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32h\tw\[0-9\]+, w\[0-9\]+, wzr" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32w\tw\[0-9\]+, w\[0-9\]+, wzr" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32x\tw\[0-9\]+, w\[0-9\]+, xzr" 1 }
> } */
> +/* { dg-final { scan-assembler-times "crc32b\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32h\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32w\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32x\tw\[0-9\]+, wzr, xzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32cb\tw\[0-9\]+, wzr, w\[0-9\]+" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32ch\tw\[0-9\]+, wzr, w\[0-9\]+" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cw\tw\[0-9\]+, wzr, w\[0-9\]+" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cx\tw\[0-9\]+, wzr, x\[0-9\]+" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cb\tw\[0-9\]+, w\[0-9\]+, wzr" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32ch\tw\[0-9\]+, w\[0-9\]+, wzr" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cw\tw\[0-9\]+, w\[0-9\]+, wzr" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cx\tw\[0-9\]+, w\[0-9\]+, xzr" 1
> } } */
> +/* { dg-final { scan-assembler-times "crc32cb\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32ch\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32cw\tw\[0-9\]+, wzr, wzr" 1 } } */
> +/* { dg-final { scan-assembler-times "crc32cx\tw\[0-9\]+, wzr, xzr" 1 } } */
> +/* { dg-final { scan-assembler-not "mov\tw\[0-9\]+, wzr" } } */
> +/* { dg-final { scan-assembler-not "mov\tx\[0-9\]+, xzr" } } */
> +/* { dg-final { scan-assembler-not "mov\tw\[0-9\]+, 0" } } */
> +/* { dg-final { scan-assembler-not "mov\tx\[0-9\]+, 0" } } */
The last 4 scan-assmbler-not could be written as 2 instead:
/* { dg-final { scan-assembler-not "mov\t\[xw\]\[0-9\]+, wzr" } } */
/* { dg-final { scan-assembler-not "mov\t\[xw\]\[0-9\]+, 0" } } */
And a comment right before these last ones would be good.
Something like:
There should be no moves to a register for zero as it is part of the crc now.
> --
> 2.54.0
>