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@ -48,29 +48,63 @@ class Im2ColFunctor<paddle::operators::math::ColFormat::kCFO,
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const T* im_data = im.data<T>();
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T* col_data = col->data<T>();
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// TODO(TJ): change me to template
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// further optimaze:
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// 1. padding != 1
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// 2. could also support stride_h != 1
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// further optimize: padding == 1 need special
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if (stride[0] == 1 && stride[1] == 1 && dilation[0] == 1 &&
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dilation[1] == 1 && padding[0] == 0 && padding[1] == 0) {
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dilation[1] == 1) {
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int col_matrix_width = output_width * output_height;
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int im_size = im_height * im_width;
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size_t copy_size = sizeof(T) * output_width;
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for (int oh = 0; oh < output_height; ++oh) {
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const T* im_data_start = im_data + oh * im_width;
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T* dst_data = col_data + oh * output_width;
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for (int ic = 0; ic < im_channels; ++ic) {
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const T* src_data = im_data_start + ic * im_size;
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for (int kh = 0; kh < filter_height; ++kh) {
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if (padding[0] == 0 && padding[1] == 0) {
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size_t copy_size = sizeof(T) * output_width;
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for (int oh = 0; oh < output_height; ++oh) {
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const T* im_data_start = im_data + oh * im_width;
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T* dst_data = col_data + oh * output_width;
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for (int ic = 0; ic < im_channels; ++ic) {
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const T* src_data = im_data_start + ic * im_size;
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for (int kh = 0; kh < filter_height; ++kh) {
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for (int kw = 0; kw < filter_width; ++kw) {
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std::memcpy(dst_data, src_data + kw, copy_size);
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dst_data = dst_data + col_matrix_width;
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}
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src_data = src_data + im_width;
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}
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}
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}
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return;
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} else {
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int plh = padding[0];
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// int plw = padding[1];
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int prh =
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(output_height - 1) * stride[0] + filter_height - im_height - plh;
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// int prw = (output_width - 1) * stride[1] + filter_width - im_width -
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// plw;
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// fill height padding : 0 ~ plh-1, (oh-prh) ~ (oh-1)
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// TODO(TJ): reuse sizes
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assert(plh == prh); // because stride_h == 1
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for (int ph = 0; ph < plh; ++ph) {
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size_t sz = sizeof(T) * output_width * (plh - ph);
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T* col_start_l = col_data + ph * filter_width * col_matrix_width;
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T* col_start_r =
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col_data +
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(filter_width - ph - 1) * filter_width * col_matrix_width +
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col_matrix_width - output_width * (plh - ph);
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for (int ic = 0; ic < im_channels; ++ic) {
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T* dst_data_l =
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col_start_l +
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ic * filter_width * filter_height * col_matrix_width;
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T* dst_data_r =
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col_start_r +
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ic * filter_width * filter_height * col_matrix_width;
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for (int kw = 0; kw < filter_width; ++kw) {
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std::memcpy(dst_data, src_data + kw, copy_size);
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dst_data = dst_data + col_matrix_width;
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std::memset(dst_data_l, 0, sz);
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std::memset(dst_data_r, 0, sz);
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dst_data_l = dst_data_l + col_matrix_width;
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dst_data_r = dst_data_r + col_matrix_width;
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}
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src_data = src_data + im_width;
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}
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}
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return;
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}
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return;
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}
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for (int c = 0; c < channels_col; ++c) {
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