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[NPU] add npu kernel for mean Op (#31562)
* update mean op * update mean op * give a better test activation Co-authored-by: oyjxer <1728722986@qq.com>
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/* Copyright (c) 2021 PaddlePaddle Authors. All Rights Reserved. | ||
Licensed under the Apache License, Version 2.0 (the "License"); | ||
you may not use this file except in compliance with the License. | ||
You may obtain a copy of the License at | ||
http://www.apache.org/licenses/LICENSE-2.0 | ||
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. */ | ||
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#include "paddle/fluid/operators/mean_op.h" | ||
#include "paddle/fluid/platform/float16.h" | ||
#include "paddle/fluid/operators/npu_op_runner.h" | ||
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namespace paddle { | ||
namespace operators { | ||
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template <typename DeviceContext, typename T> | ||
class MeanNPUKernel : public framework::OpKernel<T> { | ||
public: | ||
void Compute(const framework::ExecutionContext& ctx) const override { | ||
auto* x = ctx.Input<framework::LoDTensor>("X"); | ||
auto* out = ctx.Output<framework::LoDTensor>("Out"); | ||
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auto reduce_ndim = x->dims().size(); | ||
std::vector<int> axes; | ||
for (auto i = 0; i < reduce_ndim; ++i) { | ||
axes.push_back(i); | ||
} | ||
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framework::NPUAttributeMap attr_input = { | ||
{"keep_dims", false}, | ||
{"axes", axes}}; | ||
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std::vector<int64_t> out_dims; | ||
out_dims.push_back(1); | ||
out->Resize(framework::make_ddim(out_dims)); | ||
out->mutable_data<T>(ctx.GetPlace()); | ||
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Tensor reduced_out(x->type()); | ||
std::vector<int64_t> reduced_dout_dims; | ||
reduced_dout_dims.push_back(1); | ||
reduced_out.Resize(framework::make_ddim(reduced_dout_dims)); | ||
reduced_out.mutable_data<T>(ctx.GetPlace()); | ||
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auto runner = NpuOpRunner("ReduceMeanD", | ||
{*x}, | ||
{*out}, | ||
attr_input); | ||
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auto stream = | ||
ctx.template device_context< | ||
paddle::platform::NPUDeviceContext>() | ||
.stream(); | ||
runner.Run(stream); | ||
} | ||
}; | ||
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template <typename DeviceContext, typename T> | ||
class MeanGradNPUKernel : public framework::OpKernel<T> { | ||
public: | ||
void Compute(const framework::ExecutionContext& context) const override { | ||
auto stream = | ||
context.template device_context< | ||
paddle::platform::NPUDeviceContext>() | ||
.stream(); | ||
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auto grad = context.Input<Tensor>(framework::GradVarName("Out")); | ||
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PADDLE_ENFORCE_EQ(grad->numel(), 1, | ||
platform::errors::InvalidArgument( | ||
"Mean Gradient Input Tensor len should be 1. But " | ||
"received Out@Grad's elements num is %d.", | ||
grad->numel())); | ||
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auto IG = context.Output<Tensor>(framework::GradVarName("X")); | ||
IG->mutable_data<T>(context.GetPlace()); | ||
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// ones | ||
Tensor ones(grad->type()); | ||
std::vector<int64_t> dout_dims; | ||
for (auto i = 0; i < IG->dims().size(); ++i) { | ||
dout_dims.push_back(IG->dims()[i]); | ||
} | ||
ones.Resize(framework::make_ddim(dout_dims)); | ||
ones.mutable_data<T>(context.GetPlace()); | ||
auto runner_ones = NpuOpRunner("OnesLike", {*IG}, {ones}, {}); | ||
runner_ones.Run(stream); | ||
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// means | ||
Tensor mean_tensor(grad->type()); | ||
mean_tensor.Resize({1}); | ||
mean_tensor.mutable_data<T>(context.GetPlace()); | ||
std::vector<float> mean_vec; | ||
mean_vec.push_back(1.0/static_cast<float>(IG->numel())); | ||
framework::TensorFromVector(mean_vec, | ||
context.device_context(), | ||
&mean_tensor); | ||
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// means mul ones | ||
Tensor mean_ma(grad->type()); | ||
mean_ma.Resize(framework::make_ddim(dout_dims)); | ||
mean_ma.mutable_data<T>(context.GetPlace()); | ||
auto runner_mul_1 = NpuOpRunner("Mul", {mean_tensor, ones}, {mean_ma}, {}); | ||
runner_mul_1.Run(stream); | ||
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// and mul grad | ||
auto runner_mul_2 = NpuOpRunner("Mul", {mean_ma, *grad}, {*IG}, {}); | ||
runner_mul_2.Run(stream); | ||
} | ||
}; | ||
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} // namespace operators | ||
} // namespace paddle | ||
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namespace ops = paddle::operators; | ||
namespace plat = paddle::platform; | ||
REGISTER_OP_NPU_KERNEL( | ||
mean, | ||
ops::MeanNPUKernel<paddle::platform::NPUDeviceContext, int>, | ||
ops::MeanNPUKernel<paddle::platform::NPUDeviceContext, float>, | ||
ops::MeanNPUKernel<paddle::platform::NPUDeviceContext, double>, | ||
ops::MeanNPUKernel<paddle::platform::NPUDeviceContext, plat::float16>) | ||
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REGISTER_OP_NPU_KERNEL( | ||
mean_grad, | ||
ops::MeanGradNPUKernel<paddle::platform::NPUDeviceContext, int>, | ||
ops::MeanGradNPUKernel<paddle::platform::NPUDeviceContext, float>, | ||
ops::MeanGradNPUKernel<paddle::platform::NPUDeviceContext, double>, | ||
ops::MeanGradNPUKernel<paddle::platform::NPUDeviceContext, plat::float16>) |
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/* Copyright (c) 2021 PaddlePaddle Authors. All Rights Reserved. | ||
Licensed under the Apache License, Version 2.0 (the "License"); | ||
you may not use this file except in compliance with the License. | ||
You may obtain a copy of the License at | ||
http://www.apache.org/licenses/LICENSE-2.0 | ||
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. */ | ||
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#ifndef _WIN32 | ||
#include <unistd.h> | ||
#endif | ||
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#include <string> | ||
#include <thread> // NOLINT | ||
#include <vector> | ||
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#include "gtest/gtest.h" | ||
#include "paddle/fluid/framework/op_registry.h" | ||
#include "paddle/fluid/framework/operator.h" | ||
#include "paddle/fluid/framework/program_desc.h" | ||
#include "paddle/fluid/operators/dropout_op.h" | ||
#include "paddle/fluid/operators/math/math_function.h" | ||
#include "paddle/fluid/string/printf.h" | ||
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namespace f = paddle::framework; | ||
namespace p = paddle::platform; | ||
namespace m = paddle::operators::math; | ||
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USE_OP(mean); | ||
USE_OP_DEVICE_KERNEL(mean, NPU); | ||
USE_OP(mean_grad); | ||
USE_OP_DEVICE_KERNEL(mean_grad, NPU); | ||
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template <typename T> | ||
void Compare(f::Scope* scope, const p::DeviceContext& ctx, | ||
std::string op_type) { | ||
// init | ||
auto x = scope->Var("X"); | ||
auto tensor_x = x->GetMutable<f::LoDTensor>(); | ||
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std::vector<T> init; | ||
init.push_back(static_cast<T>(1.0)); | ||
init.push_back(static_cast<T>(2.0)); | ||
init.push_back(static_cast<T>(3.0)); | ||
init.push_back(static_cast<T>(4.0)); | ||
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TensorFromVector(init, ctx, tensor_x); | ||
tensor_x->Resize({4}); | ||
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ctx.Wait(); | ||
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auto place = ctx.GetPlace(); | ||
auto out = scope->Var("Out"); | ||
auto tensor_out = out->GetMutable<f::LoDTensor>(); | ||
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auto op = f::OpRegistry::CreateOp(op_type, | ||
{{"X", {"X"}}}, | ||
{{"Out", {"Out"}}}, | ||
{}); | ||
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op->Run(*scope, place); | ||
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std::vector<float> out_vec; | ||
TensorToVector(*tensor_out, ctx, &out_vec); | ||
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ctx.Wait(); | ||
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EXPECT_EQ((uint32_t)out_vec.size(), (uint32_t)1); | ||
EXPECT_EQ((float)out_vec[0], (float)2.5); | ||
} | ||
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template <typename T> | ||
void CompareGrad(f::Scope* scope, const p::DeviceContext& ctx, | ||
std::string op_type) { | ||
// init | ||
auto dout = scope->Var("DOut"); | ||
auto tensor_dout = dout->GetMutable<f::LoDTensor>(); | ||
float dvalue = 2.0; | ||
tensor_dout->Resize({1}); | ||
std::vector<T> init_dout; | ||
init_dout.push_back(static_cast<T>(dvalue)); | ||
TensorFromVector(init_dout, ctx, tensor_dout); | ||
ctx.Wait(); | ||
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auto x = scope->Var("X"); | ||
auto tensor_x = x->GetMutable<f::LoDTensor>(); | ||
tensor_x->Resize({4}); | ||
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auto dx = scope->Var("DX"); | ||
auto tensor_dx = dx->GetMutable<f::LoDTensor>(); | ||
tensor_dx->Resize({4}); | ||
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ctx.Wait(); | ||
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auto op = f::OpRegistry::CreateOp(op_type, | ||
{{"Out@GRAD", {"DOut"}}, | ||
{"X", {"X"}}}, | ||
{{"X@GRAD", {"DX"}}}, | ||
{}); | ||
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auto place = ctx.GetPlace(); | ||
op->Run(*scope, place); | ||
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std::vector<float> out_vec; | ||
TensorToVector(*tensor_dx, ctx, &out_vec); | ||
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ctx.Wait(); | ||
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EXPECT_EQ((uint32_t)out_vec.size(), (uint32_t)4); | ||
EXPECT_EQ((float)out_vec[0], (float)1.0/dvalue); | ||
EXPECT_EQ((float)out_vec[1], (float)1.0/dvalue); | ||
EXPECT_EQ((float)out_vec[2], (float)1.0/dvalue); | ||
EXPECT_EQ((float)out_vec[3], (float)1.0/dvalue); | ||
} | ||
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TEST(mean, NPU_fp32) { | ||
f::Scope scope; | ||
p::NPUDeviceContext ctx(p::NPUPlace(0)); | ||
Compare<float>(&scope, ctx, "mean"); | ||
} | ||
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TEST(mean_grad, NPU_fp32) { | ||
f::Scope scope; | ||
p::NPUDeviceContext ctx(p::NPUPlace(0)); | ||
CompareGrad<float>(&scope, ctx, "mean_grad"); | ||
} |
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