nir/vtn: Add type constant to image intrinsics

Since OpenCL supports untyped images, backends might need type info
to be able to support the load/store ops.

Reviewed-by: Jason Ekstrand <jason@jlekstrand.net>
Part-of: <https://gitlab.freedesktop.org/mesa/mesa/-/merge_requests/5242>
This commit is contained in:
Jesse Natalie
2020-04-13 07:50:37 -07:00
committed by Marge Bot
parent 865a2ad086
commit ce6f66242a
4 changed files with 21 additions and 8 deletions

View File

@@ -1334,6 +1334,8 @@ nir_visitor::visit(ir_call *ir)
} else if (op == nir_intrinsic_image_deref_load || } else if (op == nir_intrinsic_image_deref_load ||
op == nir_intrinsic_image_deref_store) { op == nir_intrinsic_image_deref_store) {
instr->num_components = 4; instr->num_components = 4;
nir_intrinsic_set_type(instr,
nir_get_nir_type_for_glsl_base_type(type->sampled_type));
} }
if (op == nir_intrinsic_image_deref_size || if (op == nir_intrinsic_image_deref_size ||

View File

@@ -2291,6 +2291,9 @@ nir_rewrite_image_intrinsic(nir_intrinsic_instr *intrin, nir_ssa_def *src,
bool bindless) bool bindless)
{ {
enum gl_access_qualifier access = nir_intrinsic_access(intrin); enum gl_access_qualifier access = nir_intrinsic_access(intrin);
nir_alu_type type = nir_type_invalid;
if (nir_intrinsic_infos[intrin->intrinsic].index_map[NIR_INTRINSIC_TYPE])
type = nir_intrinsic_type(intrin);
switch (intrin->intrinsic) { switch (intrin->intrinsic) {
#define CASE(op) \ #define CASE(op) \
@@ -2329,6 +2332,8 @@ nir_rewrite_image_intrinsic(nir_intrinsic_instr *intrin, nir_ssa_def *src,
nir_intrinsic_set_image_array(intrin, glsl_sampler_type_is_array(deref->type)); nir_intrinsic_set_image_array(intrin, glsl_sampler_type_is_array(deref->type));
nir_intrinsic_set_access(intrin, access | var->data.access); nir_intrinsic_set_access(intrin, access | var->data.access);
nir_intrinsic_set_format(intrin, var->data.image.format); nir_intrinsic_set_format(intrin, var->data.image.format);
if (nir_intrinsic_infos[intrin->intrinsic].index_map[NIR_INTRINSIC_TYPE])
nir_intrinsic_set_type(intrin, type);
nir_instr_rewrite_src(&intrin->instr, &intrin->src[0], nir_instr_rewrite_src(&intrin->instr, &intrin->src[0],
nir_src_for_ssa(src)); nir_src_for_ssa(src));

View File

@@ -386,16 +386,16 @@ atomic3("atomic_counter_comp_swap")
# argument with the value to be written, and image atomic operations take # argument with the value to be written, and image atomic operations take
# either one or two additional scalar arguments with the same meaning as in # either one or two additional scalar arguments with the same meaning as in
# the ARB_shader_image_load_store specification. # the ARB_shader_image_load_store specification.
def image(name, src_comp=[], **kwargs): def image(name, src_comp=[], extra_indices=[], **kwargs):
intrinsic("image_deref_" + name, src_comp=[1] + src_comp, intrinsic("image_deref_" + name, src_comp=[1] + src_comp,
indices=[ACCESS], **kwargs) indices=[ACCESS] + extra_indices, **kwargs)
intrinsic("image_" + name, src_comp=[1] + src_comp, intrinsic("image_" + name, src_comp=[1] + src_comp,
indices=[IMAGE_DIM, IMAGE_ARRAY, FORMAT, ACCESS], **kwargs) indices=[IMAGE_DIM, IMAGE_ARRAY, FORMAT, ACCESS] + extra_indices, **kwargs)
intrinsic("bindless_image_" + name, src_comp=[1] + src_comp, intrinsic("bindless_image_" + name, src_comp=[1] + src_comp,
indices=[IMAGE_DIM, IMAGE_ARRAY, FORMAT, ACCESS], **kwargs) indices=[IMAGE_DIM, IMAGE_ARRAY, FORMAT, ACCESS] + extra_indices, **kwargs)
image("load", src_comp=[4, 1, 1], dest_comp=0, flags=[CAN_ELIMINATE]) image("load", src_comp=[4, 1, 1], extra_indices=[TYPE], dest_comp=0, flags=[CAN_ELIMINATE])
image("store", src_comp=[4, 1, 0, 1]) image("store", src_comp=[4, 1, 0, 1], extra_indices=[TYPE])
image("atomic_add", src_comp=[4, 1, 1], dest_comp=1) image("atomic_add", src_comp=[4, 1, 1], dest_comp=1)
image("atomic_imin", src_comp=[4, 1, 1], dest_comp=1) image("atomic_imin", src_comp=[4, 1, 1], dest_comp=1)
image("atomic_umin", src_comp=[4, 1, 1], dest_comp=1) image("atomic_umin", src_comp=[4, 1, 1], dest_comp=1)

View File

@@ -3133,17 +3133,20 @@ vtn_handle_image(struct vtn_builder *b, SpvOp opcode,
case SpvOpAtomicStore: case SpvOpAtomicStore:
case SpvOpImageWrite: { case SpvOpImageWrite: {
const uint32_t value_id = opcode == SpvOpAtomicStore ? w[4] : w[3]; const uint32_t value_id = opcode == SpvOpAtomicStore ? w[4] : w[3];
nir_ssa_def *value = vtn_get_nir_ssa(b, value_id); struct vtn_ssa_value *value = vtn_ssa_value(b, value_id);
/* nir_intrinsic_image_deref_store always takes a vec4 value */ /* nir_intrinsic_image_deref_store always takes a vec4 value */
assert(op == nir_intrinsic_image_deref_store); assert(op == nir_intrinsic_image_deref_store);
intrin->num_components = 4; intrin->num_components = 4;
intrin->src[3] = nir_src_for_ssa(expand_to_vec4(&b->nb, value)); intrin->src[3] = nir_src_for_ssa(expand_to_vec4(&b->nb, value->def));
/* Only OpImageWrite can support a lod parameter if /* Only OpImageWrite can support a lod parameter if
* SPV_AMD_shader_image_load_store_lod is used but the current NIR * SPV_AMD_shader_image_load_store_lod is used but the current NIR
* intrinsics definition for atomics requires us to set it for * intrinsics definition for atomics requires us to set it for
* OpAtomicStore. * OpAtomicStore.
*/ */
intrin->src[4] = nir_src_for_ssa(image.lod); intrin->src[4] = nir_src_for_ssa(image.lod);
if (opcode == SpvOpImageWrite)
nir_intrinsic_set_type(intrin, nir_get_nir_type_for_glsl_type(value->type));
break; break;
} }
@@ -3196,6 +3199,9 @@ vtn_handle_image(struct vtn_builder *b, SpvOp opcode,
result = nir_channels(&b->nb, result, (1 << dest_components) - 1); result = nir_channels(&b->nb, result, (1 << dest_components) - 1);
vtn_push_nir_ssa(b, w[2], result); vtn_push_nir_ssa(b, w[2], result);
if (opcode == SpvOpImageRead)
nir_intrinsic_set_type(intrin, nir_get_nir_type_for_glsl_type(type->type));
} else { } else {
nir_builder_instr_insert(&b->nb, &intrin->instr); nir_builder_instr_insert(&b->nb, &intrin->instr);
} }