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https://github.com/huggingface/candle.git
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Optimize the cpu conv2d kernel (#396)
* Conv2d simd optimization. * Fix the contiguous copying. * Small tweak.
This commit is contained in:
@ -1031,8 +1031,10 @@ impl<'a> Map2 for Conv1D<'a> {
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let (k_s0, k_s1, k_s2) = crate::shape::dims3(k_l.stride())?;
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let l_out = p.l_out();
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let dst_elems = p.c_out * l_out * p.b_size;
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let mut dst = vec![T::zero(); dst_elems];
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// The output shape is [b_size, c_out, l_out]
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let mut dst = vec![T::zero(); dst_elems];
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// TODO: Avoid making this copy if `inp` already has the appropriate layout.
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let mut inp_cont = vec![T::zero(); p.b_size * p.c_in * p.l_in];
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for b_idx in 0..p.b_size {
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for src_l in 0..p.l_in {
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@ -1042,6 +1044,7 @@ impl<'a> Map2 for Conv1D<'a> {
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}
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}
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}
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for offset in 0..p.k_size {
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for dst_c_idx in 0..p.c_out {
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let dst_idx = dst_c_idx * l_out;
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@ -1073,13 +1076,7 @@ struct Conv2D<'a>(&'a crate::conv::ParamsConv2D);
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impl<'a> Map2 for Conv2D<'a> {
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const OP: &'static str = "conv2d";
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fn f<T: 'static + num_traits::NumAssign + Copy + std::fmt::Display>(
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&self,
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inp: &[T],
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inp_l: &Layout,
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k: &[T],
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k_l: &Layout,
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) -> Result<Vec<T>> {
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fn f<T: WithDType>(&self, inp: &[T], inp_l: &Layout, k: &[T], k_l: &Layout) -> Result<Vec<T>> {
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let p = self.0;
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let inp = &inp[inp_l.start_offset()..];
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let (inp_s0, inp_s1, inp_s2, inp_s3) = crate::shape::dims4(inp_l.stride())?;
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@ -1087,43 +1084,67 @@ impl<'a> Map2 for Conv2D<'a> {
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let (k_s0, k_s1, k_s2, k_s3) = crate::shape::dims4(k_l.stride())?;
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let (out_h, out_w) = (p.out_h(), p.out_w());
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// Output shape: [b_size, c_out, out_h, out_w].
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let mut dst = vec![T::zero(); p.b_size * p.c_out * out_h * out_w];
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// TODO: Avoid making this copy if `inp` already has the appropriate layout.
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let mut inp_cont = vec![T::zero(); p.b_size * p.c_in * p.i_h * p.i_w];
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let cont_s0 = p.i_h * p.i_w * p.c_in;
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let cont_s1 = p.i_w * p.c_in;
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let cont_s2 = p.c_in;
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for b_idx in 0..p.b_size {
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let inp_idx = b_idx * inp_s0;
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let dst_idx = b_idx * p.c_out * out_h * out_w;
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for h_idx in 0..p.i_h {
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for w_idx in 0..p.i_w {
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for c_idx in 0..p.c_in {
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let src_idx =
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b_idx * inp_s0 + c_idx * inp_s1 + h_idx * inp_s2 + w_idx * inp_s3;
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let dst_idx = b_idx * cont_s0 + h_idx * cont_s1 + w_idx * cont_s2 + c_idx;
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inp_cont[dst_idx] = inp[src_idx]
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}
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}
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}
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}
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for offset_h in 0..p.k_h {
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for offset_w in 0..p.k_w {
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for dst_c_idx in 0..p.c_out {
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let dst_idx = dst_idx + dst_c_idx * out_h * out_w;
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let dst_idx = dst_c_idx * out_w * out_h;
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let k_cont = (0..p.c_in)
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.map(|c_in_idx| {
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k[dst_c_idx * k_s0
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+ c_in_idx * k_s1
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+ offset_h * k_s2
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+ offset_w * k_s3]
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})
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.collect::<Vec<_>>();
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for b_idx in 0..p.b_size {
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let dst_idx = dst_idx + b_idx * p.c_out * out_h * out_w;
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for dst_h in 0..out_h {
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let dst_idx = dst_idx + dst_h * out_w;
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for dst_w in 0..out_w {
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let dst_idx = dst_idx + dst_w;
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let mut d = T::zero();
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for offset_h in 0..p.k_h {
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let src_h = (p.stride * dst_h + offset_h)
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.saturating_sub(p.padding)
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.min(p.i_h - 1);
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for offset_w in 0..p.k_w {
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for dst_w in 0..out_w {
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let dst_idx = dst_idx + dst_w;
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let src_w = (p.stride * dst_w + offset_w)
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.saturating_sub(p.padding)
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.min(p.i_w - 1);
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for src_c_idx in 0..p.c_in {
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let inp_idx = inp_idx
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+ src_c_idx * inp_s1
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+ src_h * inp_s2
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+ src_w * inp_s3;
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let k_idx = dst_c_idx * k_s0
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+ src_c_idx * k_s1
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+ offset_h * k_s2
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+ offset_w * k_s3;
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d += inp[inp_idx] * k[k_idx]
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let inp_cont = &inp_cont
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[b_idx * cont_s0 + src_h * cont_s1 + src_w * cont_s2..];
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assert!(inp_cont.len() >= p.c_in);
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assert!(k_cont.len() >= p.c_in);
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let mut d = T::zero();
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unsafe {
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T::vec_dot(inp_cont.as_ptr(), k_cont.as_ptr(), &mut d, p.c_in)
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}
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}
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}
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dst[dst_idx] = d
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dst[dst_idx] += d
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}
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}
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}
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}
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}
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}
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Ok(dst)
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}
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}
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