}
}
+static void
+anv_device_init_hiz_clear_batch(struct anv_device *device)
+{
+ anv_bo_init_new(&device->hiz_clear_bo, device, 4096);
+ uint32_t *map = anv_gem_mmap(device, device->hiz_clear_bo.gem_handle,
+ 0, 4096, 0);
+
+ union isl_color_value hiz_clear = { .u32 = { 0, } };
+ hiz_clear.f32[0] = ANV_HZ_FC_VAL;
+
+ memcpy(map, hiz_clear.u32, sizeof(hiz_clear.u32));
+ anv_gem_munmap(map, device->hiz_clear_bo.size);
+}
+
VkResult anv_CreateDevice(
VkPhysicalDevice physicalDevice,
const VkDeviceCreateInfo* pCreateInfo,
anv_device_init_trivial_batch(device);
+ if (device->info.gen >= 10)
+ anv_device_init_hiz_clear_batch(device);
+
anv_scratch_pool_init(device, &device->scratch_pool);
anv_queue_init(device, &device->queue);
anv_gem_close(device, device->workaround_bo.gem_handle);
anv_gem_close(device, device->trivial_batch_bo.gem_handle);
+ if (device->info.gen >= 10)
+ anv_gem_close(device, device->hiz_clear_bo.gem_handle);
anv_state_pool_finish(&device->surface_state_pool);
anv_state_pool_finish(&device->instruction_state_pool);
struct anv_address clear_address = { .bo = NULL };
state_inout->clear_address = 0;
- if (device->info.gen >= 10 && aux_usage != ISL_AUX_USAGE_NONE &&
- aux_usage != ISL_AUX_USAGE_HIZ) {
- clear_address = anv_image_get_clear_color_addr(device, image, aspect);
+
+ if (device->info.gen >= 10 && aux_usage != ISL_AUX_USAGE_NONE) {
+ if (aux_usage == ISL_AUX_USAGE_HIZ) {
+ clear_address = (struct anv_address) { .bo = &device->hiz_clear_bo };
+ } else {
+ clear_address = anv_image_get_clear_color_addr(device, image, aspect);
+ }
}
if (view_usage == ISL_SURF_USAGE_STORAGE_BIT &&