diff options
author | Jason Ekstrand <[email protected]> | 2017-08-22 18:57:56 -0700 |
---|---|---|
committer | Jason Ekstrand <[email protected]> | 2017-11-07 10:37:52 -0800 |
commit | ab9220edd69fcb7016e15d4d96186eac524b45a4 (patch) | |
tree | 9814f05cb0ebd2154752d48ea72b48c6ad1a21c0 /src/compiler/nir/nir_lower_subgroups.c | |
parent | a026458020e947cc5d864cfb5b19660836b2d613 (diff) |
nir,intel/compiler: Use a fixed subgroup size
The GL_ARB_shader_ballot spec says that gl_SubGroupSizeARB is declared
as a uniform. This means that it cannot change across an invocation
such as a draw call or a compute dispatch. For compute shaders, we're
ok because we only ever use one dispatch size. For fragment, however,
the hardware dynamically chooses between SIMD8 and SIMD16 which violates
the spec. Instead, let's just pick a subgroup size based on the shader
stage. The fixed size we choose for compute shaders is a bit higher
than strictly needed but there's no real harm in that. The advantage is
that, if they do anything interesting with the value, NIR will see it as
an immediate and can optimize better.
Acked-by: Lionel Landwerlin <[email protected]>
Reviewed-by: Iago Toral Quiroga <[email protected]>
Diffstat (limited to 'src/compiler/nir/nir_lower_subgroups.c')
-rw-r--r-- | src/compiler/nir/nir_lower_subgroups.c | 36 |
1 files changed, 12 insertions, 24 deletions
diff --git a/src/compiler/nir/nir_lower_subgroups.c b/src/compiler/nir/nir_lower_subgroups.c index 76e831691ee..a99ffe2ea99 100644 --- a/src/compiler/nir/nir_lower_subgroups.c +++ b/src/compiler/nir/nir_lower_subgroups.c @@ -96,28 +96,6 @@ lower_read_invocation_to_scalar(nir_builder *b, nir_intrinsic_instr *intrin) } static nir_ssa_def * -high_subgroup_mask(nir_builder *b, - nir_ssa_def *count, - uint64_t base_mask, - unsigned bit_size) -{ - /* group_mask could probably be calculated more efficiently but we want to - * be sure not to shift by 64 if the subgroup size is 64 because the GLSL - * shift operator is undefined in that case. In any case if we were worried - * about efficency this should probably be done further down because the - * subgroup size is likely to be known at compile time. - */ - nir_ssa_def *subgroup_size = nir_load_subgroup_size(b); - nir_ssa_def *all_bits = nir_imm_intN_t(b, ~0ull, bit_size); - nir_ssa_def *shift = nir_isub(b, nir_imm_int(b, 64), subgroup_size); - nir_ssa_def *group_mask = nir_ushr(b, all_bits, shift); - nir_ssa_def *higher_bits = - nir_ishl(b, nir_imm_intN_t(b, base_mask, bit_size), count); - - return nir_iand(b, higher_bits, group_mask); -} - -static nir_ssa_def * lower_subgroups_intrin(nir_builder *b, nir_intrinsic_instr *intrin, const nir_lower_subgroups_options *options) { @@ -133,6 +111,11 @@ lower_subgroups_intrin(nir_builder *b, nir_intrinsic_instr *intrin, return nir_imm_int(b, NIR_TRUE); break; + case nir_intrinsic_load_subgroup_size: + if (options->subgroup_size) + return nir_imm_int(b, options->subgroup_size); + break; + case nir_intrinsic_read_invocation: case nir_intrinsic_read_first_invocation: if (options->lower_to_scalar && intrin->num_components > 1) @@ -154,6 +137,9 @@ lower_subgroups_intrin(nir_builder *b, nir_intrinsic_instr *intrin, const unsigned bit_size = MAX2(options->ballot_bit_size, intrin->dest.ssa.bit_size); + assert(options->subgroup_size <= 64); + uint64_t group_mask = ~0ull >> (64 - options->subgroup_size); + nir_ssa_def *count = nir_load_subgroup_invocation(b); nir_ssa_def *val; switch (intrin->intrinsic) { @@ -161,10 +147,12 @@ lower_subgroups_intrin(nir_builder *b, nir_intrinsic_instr *intrin, val = nir_ishl(b, nir_imm_intN_t(b, 1ull, bit_size), count); break; case nir_intrinsic_load_subgroup_ge_mask: - val = high_subgroup_mask(b, count, ~0ull, bit_size); + val = nir_iand(b, nir_ishl(b, nir_imm_intN_t(b, ~0ull, bit_size), count), + nir_imm_intN_t(b, group_mask, bit_size)); break; case nir_intrinsic_load_subgroup_gt_mask: - val = high_subgroup_mask(b, count, ~1ull, bit_size); + val = nir_iand(b, nir_ishl(b, nir_imm_intN_t(b, ~1ull, bit_size), count), + nir_imm_intN_t(b, group_mask, bit_size)); break; case nir_intrinsic_load_subgroup_le_mask: val = nir_inot(b, nir_ishl(b, nir_imm_intN_t(b, ~1ull, bit_size), count)); |