ncnn / src /layer /vulkan /absval_vulkan.cpp
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// Tencent is pleased to support the open source community by making ncnn available.
//
// Copyright (C) 2019 THL A29 Limited, a Tencent company. All rights reserved.
//
// Licensed under the BSD 3-Clause License (the "License"); you may not use this file except
// in compliance with the License. You may obtain a copy of the License at
//
// https://opensource.org/licenses/BSD-3-Clause
//
// Unless required by applicable law or agreed to in writing, software distributed
// under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
// CONDITIONS OF ANY KIND, either express or implied. See the License for the
// specific language governing permissions and limitations under the License.
#include "absval_vulkan.h"
#include "layer_shader_type.h"
namespace ncnn {
AbsVal_vulkan::AbsVal_vulkan()
{
support_vulkan = true;
support_image_storage = true;
pipeline_absval = 0;
pipeline_absval_pack4 = 0;
pipeline_absval_pack8 = 0;
}
int AbsVal_vulkan::create_pipeline(const Option& opt)
{
const Mat& shape = top_shapes.empty() ? Mat() : top_shapes[0];
int elempack = 1;
if (shape.dims == 1) elempack = opt.use_shader_pack8 && shape.w % 8 == 0 ? 8 : shape.w % 4 == 0 ? 4 : 1;
if (shape.dims == 2) elempack = opt.use_shader_pack8 && shape.h % 8 == 0 ? 8 : shape.h % 4 == 0 ? 4 : 1;
if (shape.dims == 3) elempack = opt.use_shader_pack8 && shape.c % 8 == 0 ? 8 : shape.c % 4 == 0 ? 4 : 1;
size_t elemsize;
if (opt.use_fp16_storage)
{
elemsize = elempack * 2u;
}
else if (opt.use_fp16_packed)
{
elemsize = elempack == 1 ? 4u : elempack * 2u;
}
else
{
elemsize = elempack * 4u;
}
Mat shape_packed;
if (shape.dims == 1) shape_packed = Mat(shape.w / elempack, (void*)0, elemsize, elempack);
if (shape.dims == 2) shape_packed = Mat(shape.w, shape.h / elempack, (void*)0, elemsize, elempack);
if (shape.dims == 3) shape_packed = Mat(shape.w, shape.h, shape.c / elempack, (void*)0, elemsize, elempack);
std::vector<vk_specialization_type> specializations(0 + 5);
specializations[0 + 0].i = shape_packed.dims;
specializations[0 + 1].i = shape_packed.w;
specializations[0 + 2].i = shape_packed.h;
specializations[0 + 3].i = shape_packed.c;
specializations[0 + 4].i = shape_packed.cstep;
Mat local_size_xyz;
if (shape_packed.dims == 1)
{
local_size_xyz.w = std::min(64, shape_packed.w);
local_size_xyz.h = 1;
local_size_xyz.c = 1;
}
if (shape_packed.dims == 2)
{
local_size_xyz.w = std::min(8, shape_packed.w);
local_size_xyz.h = std::min(8, shape_packed.h);
local_size_xyz.c = 1;
}
if (shape_packed.dims == 3)
{
local_size_xyz.w = std::min(4, shape_packed.w);
local_size_xyz.h = std::min(4, shape_packed.h);
local_size_xyz.c = std::min(4, shape_packed.c);
}
// pack1
if (shape.dims == 0 || elempack == 1)
{
pipeline_absval = new Pipeline(vkdev);
pipeline_absval->set_optimal_local_size_xyz(local_size_xyz);
pipeline_absval->create(LayerShaderType::absval, opt, specializations);
}
// pack4
if (shape.dims == 0 || elempack == 4)
{
pipeline_absval_pack4 = new Pipeline(vkdev);
pipeline_absval_pack4->set_optimal_local_size_xyz(local_size_xyz);
pipeline_absval_pack4->create(LayerShaderType::absval_pack4, opt, specializations);
}
// pack8
if ((opt.use_shader_pack8 && shape.dims == 0) || elempack == 8)
{
pipeline_absval_pack8 = new Pipeline(vkdev);
pipeline_absval_pack8->set_optimal_local_size_xyz(local_size_xyz);
pipeline_absval_pack8->create(LayerShaderType::absval_pack8, opt, specializations);
}
return 0;
}
int AbsVal_vulkan::destroy_pipeline(const Option& /*opt*/)
{
delete pipeline_absval;
pipeline_absval = 0;
delete pipeline_absval_pack4;
pipeline_absval_pack4 = 0;
delete pipeline_absval_pack8;
pipeline_absval_pack8 = 0;
return 0;
}
int AbsVal_vulkan::forward_inplace(VkMat& bottom_top_blob, VkCompute& cmd, const Option& /*opt*/) const
{
int elempack = bottom_top_blob.elempack;
std::vector<VkMat> bindings(1);
bindings[0] = bottom_top_blob;
std::vector<vk_constant_type> constants(5);
constants[0].i = bottom_top_blob.dims;
constants[1].i = bottom_top_blob.w;
constants[2].i = bottom_top_blob.h;
constants[3].i = bottom_top_blob.c;
constants[4].i = bottom_top_blob.cstep;
const Pipeline* pipeline = elempack == 8 ? pipeline_absval_pack8
: elempack == 4 ? pipeline_absval_pack4
: pipeline_absval;
cmd.record_pipeline(pipeline, bindings, constants, bottom_top_blob);
return 0;
}
int AbsVal_vulkan::forward_inplace(VkImageMat& bottom_top_blob, VkCompute& cmd, const Option& /*opt*/) const
{
int elempack = bottom_top_blob.elempack;
std::vector<VkImageMat> bindings(2);
bindings[0] = bottom_top_blob;
bindings[1] = bottom_top_blob;
std::vector<vk_constant_type> constants(5);
constants[0].i = bottom_top_blob.dims;
constants[1].i = bottom_top_blob.w;
constants[2].i = bottom_top_blob.h;
constants[3].i = bottom_top_blob.c;
constants[4].i = 0; //bottom_top_blob.cstep;
const Pipeline* pipeline = elempack == 8 ? pipeline_absval_pack8
: elempack == 4 ? pipeline_absval_pack4
: pipeline_absval;
cmd.record_pipeline(pipeline, bindings, constants, bottom_top_blob);
return 0;
}
} // namespace ncnn