const uint batch = gl_GlobalInvocationID.z / p.IC;
const uint ic = gl_GlobalInvocationID.z % p.IC;
+ const uint src_base = ic * p.offset_delta + batch * p.batch_offset;
+ const uint dst_base = ((batch * p.OH + oh) * p.OW) * p.CHW + ic * (p.KW * p.KH);
+ const int oh_s1 = int(oh) * p.s1;
+ const uint ksize = p.OW * (p.KH > 1 ? p.KW : 1);
+
+ const uint base_linear_idx = gidx * NUM_ITER;
+
+ const uint max_ky = ksize / p.OW;
+
+ uint current_kx = base_linear_idx / ksize;
+ const uint rem = base_linear_idx - (current_kx * ksize);
+ uint current_ky = rem / p.OW;
+ uint current_ix = rem % p.OW;
+
A_TYPE values[NUM_ITER];
uint offset_dst[NUM_ITER];
[[unroll]] for (uint idx = 0; idx < NUM_ITER; ++idx) {
[[unroll]] for (uint idx = 0; idx < NUM_ITER; ++idx) {
- const uint i = gidx * NUM_ITER + idx;
+ const uint linear_idx = base_linear_idx + idx;
- const uint ksize = p.OW * (p.KH > 1 ? p.KW : 1);
- const uint kx = i / ksize;
- const uint kd = kx * ksize;
- const uint ky = (i - kd) / p.OW;
- const uint ix = i % p.OW;
+ if (linear_idx >= p.pelements) {
+ continue;
+ }
- const uint iiw = ix * p.s0 + kx * p.d0 - p.p0;
- const uint iih = oh * p.s1 + ky * p.d1 - p.p1;
+ const uint iiw = current_ix * p.s0 + current_kx * p.d0 - p.p0;
+ const uint iih = oh_s1 + current_ky * p.d1 - p.p1;
- offset_dst[idx] =
- ((batch * p.OH + oh) * p.OW + ix) * p.CHW +
- (ic * (p.KW * p.KH) + ky * p.KW + kx);
+ offset_dst[idx] = dst_base + current_ix * p.CHW + current_ky * p.KW + current_kx;
- if (i >= p.pelements) {
- continue;
+ if ((iih < p.IH) && (iiw < p.IW)) {
+ values[idx] = data_a[src_base + iih * p.IW + iiw];
}
- if (iih < p.IH && iiw < p.IW) {
- const uint offset_src = ic * p.offset_delta + batch * p.batch_offset;
- values[idx] = data_a[offset_src + iih * p.IW + iiw];
+ if (++current_ix == p.OW) {
+ current_ix = 0;
+ if (++current_ky == max_ky) {
+ current_ky = 0;
+ current_kx++;
+ }
}
}
[[unroll]] for (uint idx = 0; idx < NUM_ITER; ++idx) {
- const uint i = gidx * NUM_ITER + idx;
+ const uint linear_idx = base_linear_idx + idx;
- if (i >= p.pelements) {
+ if (linear_idx >= p.pelements) {
continue;
}