text
stringlengths
0
2.2M
}
inline void jit_avx512_core_amx_1x1_fwd_kernel_t::store_output_ymm_bf16(
const int idx, const Xbyak::Address &addr, const bool mask_flag) {
Ymm ymm_out = Ymm(idx);
vcvtneps2bf16(ymm_out, Zmm(idx));
vmovdqu16(addr, ymm_mask(ymm_out, mask_flag, true));
}
void jit_avx512_core_amx_1x1_fwd_kernel_t::store_output_vectors_int8(
int ocb, int osb) {
const bool mask_flag
= last_oc_block_flag_ && ocb == (jcp.nb_oc_blocking - 1);
const auto &p = attr_.post_ops_;
const int sum_idx = p.find(primitive_kind::sum);
const float *p_sum_scale = nullptr;
const int32_t *p_sum_zp = nullptr;
if (sum_idx != -1) {
const auto &p_entry = p.entry_[sum_idx];
p_sum_scale = &p_entry.sum.scale;
p_sum_zp = &p_entry.sum.zero_point;
}
if (p_sum_scale) {
if (*p_sum_scale != 1.f)
mov(reg_ptr_sum_scale, reinterpret_cast<size_t>(p_sum_scale));
if (*p_sum_zp != 0)
mov(reg_ptr_sum_zp, reinterpret_cast<size_t>(p_sum_zp));
}
if (jcp.src_zero_point) {
const int zp_offset = sizeof(int32_t) * ocb * jcp.oc_block;
const Zmm zmm_zp_m = zmm_mask(zmm_zp, mask_flag);
vpmulld(zmm_zp_m, zmm_src_zp,
EVEX_compress_addr(reg_zp_compensation, zp_offset));
for (int j = 0; j < jcp.tile_width; j++) {
const Zmm zmm_r = zmm_out(j);
vpaddd(zmm_r, zmm_r, zmm_zp_m);
}
}
for (int j = 0; j < jcp.tile_width; j++) {
const Zmm zmm_r = zmm_out(j);
vcvtdq2ps(zmm_r, zmm_r);
}
if (jcp.with_bias) {
mov(reg_bias, ptr[param1 + GET_OFF(bias)]);
int bias_offset = jcp.typesize_bia * ocb * jcp.oc_block;
auto bias_addr = EVEX_compress_addr(reg_bias, bias_offset);
cvt2ps(jcp.bia_dt, zmm_bias, bias_addr, mask_flag);
for (int j = 0; j < jcp.tile_width; j++) {
const Zmm zmm_r = zmm_out(j);
vaddps(zmm_r, zmm_r, zmm_bias);
}
}
mov(reg_ptr_scales, ptr[param1 + GET_OFF(scales)]);
for (int j = 0; j < jcp.tile_width; j++) {
const int scale_offset
= jcp.is_oc_scale * (sizeof(float) * ocb * jcp.oc_block);
const Zmm zmm_r = zmm_out(j);
const Zmm zmm_r_msk = zmm_mask(zmm_r, mask_flag);
vmulps(zmm_r_msk, zmm_r,
EVEX_compress_addr(reg_ptr_scales, scale_offset));
}
if (p_sum_zp && *p_sum_zp != 0)
vcvtdq2ps(zmm_sum_zp, ptr_b[reg_ptr_sum_zp]);
if (jcp.with_sum && p_sum_scale != nullptr) {
const auto p_sum_scale_val = *p_sum_scale;
const auto p_sum_zp_val = *p_sum_zp;
for (int j = 0; j < jcp.tile_width; j++) {
int h = ((osb * jcp.tile_width + j) / jcp.ow);
int w = ((osb * jcp.tile_width + j) % jcp.ow);
const auto off = out_row_offset(h, w, ocb);
const auto addr = EVEX_compress_addr(out_ptr, off);
const Zmm zmm_r = zmm_out(j);
cvt2ps(jcp.sum_dt, zmm_prev_dst, addr, mask_flag);
if (p_sum_zp_val != 0) vsubps(zmm_prev_dst, zmm_sum_zp);
if (p_sum_scale_val == 1.f)
vaddps(zmm_r, zmm_prev_dst);
else
vfmadd231ps(zmm_r, zmm_prev_dst, zword_b[reg_ptr_sum_scale]);
}
}
if (jcp.with_eltwise) {
vxorps(zmm_zero, zmm_zero, zmm_zero);
for (int j = 0; j < jcp.tile_width; j++) {
const Zmm zmm_r = zmm_out(j);
vmaxps(zmm_r, zmm_r, zmm_zero);
}
}
if (jcp.dst_zero_point) {
for (int j = 0; j < jcp.tile_width; j++) {
const Zmm zmm_r = zmm_out(j);
vaddps(zmm_r, zmm_r, zmm_dst_zp);
}