#ifndef CAFFE2_OPERATORS_CHANNEL_STATS_OP_H_ #define CAFFE2_OPERATORS_CHANNEL_STATS_OP_H_ #include #include "caffe2/core/context.h" #include "caffe2/core/operator.h" #include "caffe2/utils/math.h" namespace caffe2 { template class ChannelStatsOp final : public Operator { public: USE_OPERATOR_CONTEXT_FUNCTIONS; template explicit ChannelStatsOp(Args&&... args) : Operator(std::forward(args)...), order_(StringToStorageOrder( this->template GetSingleArgument("order", "NCHW"))) { CAFFE_ENFORCE_NE(order_, StorageOrder::UNKNOWN); } bool RunOnDevice() override { return DispatchHelper>::call(this, Input(0)); } template bool DoRunWithType() { const auto& X = Input(0); const int ndim = X.dim(); const int N = X.dim32(0); const int C = order_ == StorageOrder::NCHW ? X.dim32(1) : X.dim32(ndim - 1); const int HxW = X.numel() / (N * C); auto* sum = Output(0, {C}, at::dtype()); auto* sumsq = Output(1, {C}, at::dtype()); const T* X_data = X.template data(); T* sum_data = sum->template mutable_data(); T* sumsq_data = sumsq->template mutable_data(); return order_ == StorageOrder::NCHW ? ComputeChannelStatsNCHW(N, C, HxW, X_data, sum_data, sumsq_data) : ComputeChannelStatsNHWC(N, C, HxW, X_data, sum_data, sumsq_data); } private: template bool ComputeChannelStatsNCHW(int N, int C, int HxW, const T* X, T* sum, T* sumsq); template bool ComputeChannelStatsNHWC(int N, int C, int HxW, const T* X, T* sum, T* sumsq); const StorageOrder order_; }; } // namespace caffe2 #endif // CAFFE2_OPERATORS_CHANNEL_STATS_OP_H_