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@ -2,13 +2,13 @@
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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you may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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WITHOUT WARRANTIES OR CONDITIONS OF ANy KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License. */
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@ -31,24 +31,24 @@ template <typename Place, typename T>
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class MulKernel : public framework::OpKernel {
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public:
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void Compute(const framework::ExecutionContext& context) const override {
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const Tensor* X = context.Input<Tensor>("X");
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const Tensor* Y = context.Input<Tensor>("Y");
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const Tensor* x = context.Input<Tensor>("X");
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const Tensor* y = context.Input<Tensor>("Y");
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Tensor* Z = context.Output<Tensor>("Out");
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const Tensor X_matrix =
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X->dims().size() > 2
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const Tensor x_matrix =
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x->dims().size() > 2
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? framework::FlattenToMatrix<T>(
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*X, context.template GetAttr<int>("x_num_row_dims"))
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: *X;
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const Tensor Y_matrix =
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Y->dims().size() > 2
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*x, context.template GetAttr<int>("x_num_row_dims"))
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: *x;
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const Tensor y_matrix =
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y->dims().size() > 2
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? framework::FlattenToMatrix<T>(
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*Y, context.template GetAttr<int>("y_num_row_dims"))
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: *Y;
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*y, context.template GetAttr<int>("y_num_row_dims"))
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: *y;
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Z->mutable_data<T>(context.GetPlace());
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auto* device_context =
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const_cast<platform::DeviceContext*>(context.device_context_);
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math::matmul<Place, T>(X_matrix, false, Y_matrix, false, 1, Z, 0,
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math::matmul<Place, T>(x_matrix, false, y_matrix, false, 1, Z, 0,
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device_context);
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}
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};
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@ -59,34 +59,38 @@ class MulGradKernel : public framework::OpKernel {
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void Compute(const framework::ExecutionContext& ctx) const override {
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int x_num_row_dims = ctx.template GetAttr<int>("x_num_row_dims");
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int y_num_row_dims = ctx.template GetAttr<int>("y_num_row_dims");
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const Tensor* X = ctx.Input<Tensor>("X");
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const Tensor* Y = ctx.Input<Tensor>("Y");
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const Tensor X_matrix =
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X->dims().size() > 2 ? framework::FlattenToMatrix<T>(*X, x_num_row_dims)
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: *X;
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const Tensor Y_matrix =
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Y->dims().size() > 2 ? framework::FlattenToMatrix<T>(*Y, y_num_row_dims)
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: *Y;
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const Tensor* dOut = ctx.Input<Tensor>(framework::GradVarName("Out"));
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const Tensor* x = ctx.Input<Tensor>("X");
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const Tensor* y = ctx.Input<Tensor>("Y");
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const Tensor x_matrix =
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x->dims().size() > 2 ? framework::FlattenToMatrix<T>(*x, x_num_row_dims)
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: *x;
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const Tensor y_matrix =
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y->dims().size() > 2 ? framework::FlattenToMatrix<T>(*y, y_num_row_dims)
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: *y;
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const Tensor* dout = ctx.Input<Tensor>(framework::GradVarName("Out"));
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Tensor* dX = ctx.Output<Tensor>(framework::GradVarName("X"));
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Tensor* dY = ctx.Output<Tensor>(framework::GradVarName("Y"));
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dX->mutable_data<T>(ctx.GetPlace());
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dY->mutable_data<T>(ctx.GetPlace());
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Tensor dX_matrix = dX->dims().size() > 2
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? framework::FlattenToMatrix<T>(*dX, x_num_row_dims)
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: *dX;
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Tensor dY_matrix = dY->dims().size() > 2
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? framework::FlattenToMatrix<T>(*dY, y_num_row_dims)
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: *dY;
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Tensor* dx = ctx.Output<Tensor>(framework::GradVarName("X"));
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Tensor* dy = ctx.Output<Tensor>(framework::GradVarName("Y"));
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auto* device_context =
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const_cast<platform::DeviceContext*>(ctx.device_context_);
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// dX = dOut * Y'. dX: M x K, dOut : M x N, Y : K x N
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math::matmul<Place, T>(*dOut, false, Y_matrix, true, 1, &dX_matrix, 0,
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device_context);
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// dY = X' * dOut. dY: K x N, dOut : M x N, X : M x K
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math::matmul<Place, T>(X_matrix, true, *dOut, false, 1, &dY_matrix, 0,
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device_context);
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if (dx) {
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dx->mutable_data<T>(ctx.GetPlace());
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Tensor dx_matrix = dx->dims().size() > 2 ? framework::FlattenToMatrix<T>(
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*dx, x_num_row_dims)
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: *dx;
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// dx = dout * y'. dx: M x K, dout : M x N, y : K x N
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math::matmul<Place, T>(*dout, false, y_matrix, true, 1, &dx_matrix, 0,
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device_context);
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}
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if (dy) {
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dy->mutable_data<T>(ctx.GetPlace());
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Tensor dy_matrix = dy->dims().size() > 2 ? framework::FlattenToMatrix<T>(
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*dy, y_num_row_dims)
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: *dy;
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// dy = x' * dout. dy K x N, dout : M x N, x : M x K
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math::matmul<Place, T>(x_matrix, true, *dout, false, 1, &dy_matrix, 0,
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device_context);
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}
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}
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};
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