batch->blorp->exec(batch, ¶ms);
}
-static void
-prepare_ccs_resolve(struct blorp_batch * const batch,
- struct blorp_params * const params,
- const struct blorp_surf * const surf,
- const uint32_t level, const uint32_t layer,
- const enum isl_format format,
- const enum blorp_fast_clear_op resolve_op)
+void
+blorp_ccs_resolve(struct blorp_batch *batch,
+ struct blorp_surf *surf, uint32_t level,
+ uint32_t start_layer, uint32_t num_layers,
+ enum isl_format format,
+ enum blorp_fast_clear_op resolve_op)
{
- blorp_params_init(params);
- brw_blorp_surface_info_init(batch->blorp, ¶ms->dst, surf,
- level, layer, format, true);
+ struct blorp_params params;
+
+ blorp_params_init(¶ms);
+ brw_blorp_surface_info_init(batch->blorp, ¶ms.dst, surf,
+ level, start_layer, format, true);
/* From the Ivy Bridge PRM, Vol2 Part1 11.9 "Render Target Resolve":
*
* multiply by 8 and 16. On Sky Lake, we multiply by 8.
*/
const struct isl_format_layout *aux_fmtl =
- isl_format_get_layout(params->dst.aux_surf.format);
+ isl_format_get_layout(params.dst.aux_surf.format);
assert(aux_fmtl->txc == ISL_TXC_CCS);
unsigned x_scaledown, y_scaledown;
x_scaledown = aux_fmtl->bw / 2;
y_scaledown = aux_fmtl->bh / 2;
}
- params->x0 = params->y0 = 0;
- params->x1 = minify(params->dst.aux_surf.logical_level0_px.width, level);
- params->y1 = minify(params->dst.aux_surf.logical_level0_px.height, level);
- params->x1 = ALIGN(params->x1, x_scaledown) / x_scaledown;
- params->y1 = ALIGN(params->y1, y_scaledown) / y_scaledown;
+ params.x0 = params.y0 = 0;
+ params.x1 = minify(params.dst.aux_surf.logical_level0_px.width, level);
+ params.y1 = minify(params.dst.aux_surf.logical_level0_px.height, level);
+ params.x1 = ALIGN(params.x1, x_scaledown) / x_scaledown;
+ params.y1 = ALIGN(params.y1, y_scaledown) / y_scaledown;
if (batch->blorp->isl_dev->info->gen >= 9) {
assert(resolve_op == BLORP_FAST_CLEAR_OP_RESOLVE_FULL ||
/* Broadwell and earlier do not have a partial resolve */
assert(resolve_op == BLORP_FAST_CLEAR_OP_RESOLVE_FULL);
}
- params->fast_clear_op = resolve_op;
+ params.fast_clear_op = resolve_op;
+ params.num_layers = num_layers;
/* Note: there is no need to initialize push constants because it doesn't
* matter what data gets dispatched to the render target. However, we must
* color" message.
*/
- if (!blorp_params_get_clear_kernel(batch->blorp, params, true))
+ if (!blorp_params_get_clear_kernel(batch->blorp, ¶ms, true))
return;
-}
-
-void
-blorp_ccs_resolve(struct blorp_batch *batch,
- struct blorp_surf *surf, uint32_t level,
- uint32_t start_layer, uint32_t num_layers,
- enum isl_format format,
- enum blorp_fast_clear_op resolve_op)
-{
- struct blorp_params params;
-
- prepare_ccs_resolve(batch, ¶ms, surf, level, start_layer,
- format, resolve_op);
- params.num_layers = num_layers;
-
- batch->blorp->exec(batch, ¶ms);
-}
-
-void
-blorp_ccs_resolve_attachment(struct blorp_batch *batch,
- const uint32_t binding_table_offset,
- struct blorp_surf * const surf,
- const uint32_t level, const uint32_t num_layers,
- const enum isl_format format,
- const enum blorp_fast_clear_op resolve_op)
-{
- struct blorp_params params;
-
- prepare_ccs_resolve(batch, ¶ms, surf, level, 0, format, resolve_op);
- params.use_pre_baked_binding_table = true;
- params.pre_baked_binding_table_offset = binding_table_offset;
- params.num_layers = num_layers;
batch->blorp->exec(batch, ¶ms);
}