radv: only use specialised 3D meta paths on GFX9.
GFX10 appears to act like GFX8 here. Reviewed-by: Bas Nieuwenhuizen <bas@basnieuwenhuizen.nl>
This commit is contained in:
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0349bc3ce2
commit
6422fa75b4
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@ -408,7 +408,7 @@ radv_meta_blit2d(struct radv_cmd_buffer *cmd_buffer,
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unsigned num_rects,
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unsigned num_rects,
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struct radv_meta_blit2d_rect *rects)
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struct radv_meta_blit2d_rect *rects)
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{
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{
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bool use_3d = cmd_buffer->device->physical_device->rad_info.chip_class >= GFX9 &&
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bool use_3d = cmd_buffer->device->physical_device->rad_info.chip_class == GFX9 &&
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(src_img && src_img->image->type == VK_IMAGE_TYPE_3D);
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(src_img && src_img->image->type == VK_IMAGE_TYPE_3D);
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enum blit2d_src_type src_type = src_buf ? BLIT2D_SRC_TYPE_BUFFER :
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enum blit2d_src_type src_type = src_buf ? BLIT2D_SRC_TYPE_BUFFER :
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use_3d ? BLIT2D_SRC_TYPE_IMAGE_3D : BLIT2D_SRC_TYPE_IMAGE;
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use_3d ? BLIT2D_SRC_TYPE_IMAGE_3D : BLIT2D_SRC_TYPE_IMAGE;
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@ -1308,7 +1308,7 @@ VkResult
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radv_device_init_meta_blit2d_state(struct radv_device *device, bool on_demand)
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radv_device_init_meta_blit2d_state(struct radv_device *device, bool on_demand)
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{
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{
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VkResult result;
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VkResult result;
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bool create_3d = device->physical_device->rad_info.chip_class >= GFX9;
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bool create_3d = device->physical_device->rad_info.chip_class == GFX9;
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for (unsigned log2_samples = 0; log2_samples < 1 + MAX_SAMPLES_LOG2; log2_samples++) {
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for (unsigned log2_samples = 0; log2_samples < 1 + MAX_SAMPLES_LOG2; log2_samples++) {
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for (unsigned src = 0; src < BLIT2D_NUM_SRC_TYPES; src++) {
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for (unsigned src = 0; src < BLIT2D_NUM_SRC_TYPES; src++) {
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@ -135,7 +135,7 @@ radv_device_init_meta_itob_state(struct radv_device *device)
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struct radv_shader_module cs_3d = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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cs.nir = build_nir_itob_compute_shader(device, false);
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cs.nir = build_nir_itob_compute_shader(device, false);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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cs_3d.nir = build_nir_itob_compute_shader(device, true);
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cs_3d.nir = build_nir_itob_compute_shader(device, true);
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/*
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/*
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@ -211,7 +211,7 @@ radv_device_init_meta_itob_state(struct radv_device *device)
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if (result != VK_SUCCESS)
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if (result != VK_SUCCESS)
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goto fail;
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goto fail;
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if (device->physical_device->rad_info.chip_class >= GFX9) {
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if (device->physical_device->rad_info.chip_class == GFX9) {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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@ -256,7 +256,7 @@ radv_device_finish_meta_itob_state(struct radv_device *device)
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&state->alloc);
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&state->alloc);
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radv_DestroyPipeline(radv_device_to_handle(device),
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radv_DestroyPipeline(radv_device_to_handle(device),
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state->itob.pipeline, &state->alloc);
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state->itob.pipeline, &state->alloc);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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radv_DestroyPipeline(radv_device_to_handle(device),
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radv_DestroyPipeline(radv_device_to_handle(device),
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state->itob.pipeline_3d, &state->alloc);
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state->itob.pipeline_3d, &state->alloc);
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}
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}
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@ -361,7 +361,7 @@ radv_device_init_meta_btoi_state(struct radv_device *device)
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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cs.nir = build_nir_btoi_compute_shader(device, false);
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cs.nir = build_nir_btoi_compute_shader(device, false);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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cs_3d.nir = build_nir_btoi_compute_shader(device, true);
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cs_3d.nir = build_nir_btoi_compute_shader(device, true);
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/*
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/*
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* two descriptors one for the image being sampled
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* two descriptors one for the image being sampled
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@ -436,7 +436,7 @@ radv_device_init_meta_btoi_state(struct radv_device *device)
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if (result != VK_SUCCESS)
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if (result != VK_SUCCESS)
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goto fail;
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goto fail;
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if (device->physical_device->rad_info.chip_class >= GFX9) {
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if (device->physical_device->rad_info.chip_class == GFX9) {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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@ -785,7 +785,7 @@ radv_device_init_meta_itoi_state(struct radv_device *device)
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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cs.nir = build_nir_itoi_compute_shader(device, false);
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cs.nir = build_nir_itoi_compute_shader(device, false);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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cs_3d.nir = build_nir_itoi_compute_shader(device, true);
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cs_3d.nir = build_nir_itoi_compute_shader(device, true);
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/*
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/*
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* two descriptors one for the image being sampled
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* two descriptors one for the image being sampled
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@ -860,7 +860,7 @@ radv_device_init_meta_itoi_state(struct radv_device *device)
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if (result != VK_SUCCESS)
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if (result != VK_SUCCESS)
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goto fail;
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goto fail;
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if (device->physical_device->rad_info.chip_class >= GFX9) {
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if (device->physical_device->rad_info.chip_class == GFX9) {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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.stage = VK_SHADER_STAGE_COMPUTE_BIT,
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@ -904,7 +904,7 @@ radv_device_finish_meta_itoi_state(struct radv_device *device)
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&state->alloc);
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&state->alloc);
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radv_DestroyPipeline(radv_device_to_handle(device),
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radv_DestroyPipeline(radv_device_to_handle(device),
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state->itoi.pipeline, &state->alloc);
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state->itoi.pipeline, &state->alloc);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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radv_DestroyPipeline(radv_device_to_handle(device),
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radv_DestroyPipeline(radv_device_to_handle(device),
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state->itoi.pipeline_3d, &state->alloc);
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state->itoi.pipeline_3d, &state->alloc);
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}
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}
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@ -1191,7 +1191,7 @@ radv_device_init_meta_cleari_state(struct radv_device *device)
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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struct radv_shader_module cs_3d = { .nir = NULL };
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cs.nir = build_nir_cleari_compute_shader(device, false);
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cs.nir = build_nir_cleari_compute_shader(device, false);
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if (device->physical_device->rad_info.chip_class >= GFX9)
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if (device->physical_device->rad_info.chip_class == GFX9)
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cs_3d.nir = build_nir_cleari_compute_shader(device, true);
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cs_3d.nir = build_nir_cleari_compute_shader(device, true);
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/*
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/*
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@ -1261,7 +1261,7 @@ radv_device_init_meta_cleari_state(struct radv_device *device)
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goto fail;
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goto fail;
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if (device->physical_device->rad_info.chip_class >= GFX9) {
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if (device->physical_device->rad_info.chip_class == GFX9) {
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/* compute shader */
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/* compute shader */
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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VkPipelineShaderStageCreateInfo pipeline_shader_stage_3d = {
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
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@ -1706,7 +1706,7 @@ radv_meta_image_to_buffer(struct radv_cmd_buffer *cmd_buffer,
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create_bview(cmd_buffer, dst->buffer, dst->offset, dst->format, &dst_view);
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create_bview(cmd_buffer, dst->buffer, dst->offset, dst->format, &dst_view);
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itob_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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itob_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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if (device->physical_device->rad_info.chip_class >= GFX9 &&
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if (device->physical_device->rad_info.chip_class == GFX9 &&
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src->image->type == VK_IMAGE_TYPE_3D)
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src->image->type == VK_IMAGE_TYPE_3D)
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pipeline = cmd_buffer->device->meta_state.itob.pipeline_3d;
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pipeline = cmd_buffer->device->meta_state.itob.pipeline_3d;
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@ -1875,7 +1875,7 @@ radv_meta_buffer_to_image_cs(struct radv_cmd_buffer *cmd_buffer,
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create_iview(cmd_buffer, dst, &dst_view);
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create_iview(cmd_buffer, dst, &dst_view);
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btoi_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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btoi_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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if (device->physical_device->rad_info.chip_class >= GFX9 &&
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if (device->physical_device->rad_info.chip_class == GFX9 &&
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dst->image->type == VK_IMAGE_TYPE_3D)
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dst->image->type == VK_IMAGE_TYPE_3D)
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pipeline = cmd_buffer->device->meta_state.btoi.pipeline_3d;
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pipeline = cmd_buffer->device->meta_state.btoi.pipeline_3d;
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radv_CmdBindPipeline(radv_cmd_buffer_to_handle(cmd_buffer),
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radv_CmdBindPipeline(radv_cmd_buffer_to_handle(cmd_buffer),
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@ -2060,7 +2060,7 @@ radv_meta_image_to_image_cs(struct radv_cmd_buffer *cmd_buffer,
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itoi_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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itoi_bind_descriptors(cmd_buffer, &src_view, &dst_view);
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if (device->physical_device->rad_info.chip_class >= GFX9 &&
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if (device->physical_device->rad_info.chip_class == GFX9 &&
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(src->image->type == VK_IMAGE_TYPE_3D || dst->image->type == VK_IMAGE_TYPE_3D))
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(src->image->type == VK_IMAGE_TYPE_3D || dst->image->type == VK_IMAGE_TYPE_3D))
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pipeline = cmd_buffer->device->meta_state.itoi.pipeline_3d;
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pipeline = cmd_buffer->device->meta_state.itoi.pipeline_3d;
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radv_CmdBindPipeline(radv_cmd_buffer_to_handle(cmd_buffer),
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radv_CmdBindPipeline(radv_cmd_buffer_to_handle(cmd_buffer),
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@ -2201,7 +2201,7 @@ radv_meta_clear_image_cs(struct radv_cmd_buffer *cmd_buffer,
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create_iview(cmd_buffer, dst, &dst_iview);
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create_iview(cmd_buffer, dst, &dst_iview);
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cleari_bind_descriptors(cmd_buffer, &dst_iview);
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cleari_bind_descriptors(cmd_buffer, &dst_iview);
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if (device->physical_device->rad_info.chip_class >= GFX9 &&
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if (device->physical_device->rad_info.chip_class == GFX9 &&
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dst->image->type == VK_IMAGE_TYPE_3D)
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dst->image->type == VK_IMAGE_TYPE_3D)
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pipeline = cmd_buffer->device->meta_state.cleari.pipeline_3d;
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pipeline = cmd_buffer->device->meta_state.cleari.pipeline_3d;
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