blob: b8405d14bd7bdd2858012b02f518a48e5a5b98ff [file] [log] [blame]
// Copyright 2020 Google LLC
//
// This source code is licensed under the BSD-style license found in the
// LICENSE file in the root directory of this source tree.
$assert BATCH_TILE % 4 == 0
$assert BATCH_TILE >= 4
$ABC = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ"
#include <assert.h>
#include <wasm_simd128.h>
#include <xnnpack/common.h>
#include <xnnpack/hswish.h>
void xnn_f32_hswish_ukernel__wasmsimd_${"x86" if X86 else "arm"}_x${BATCH_TILE}(
size_t n,
const float* x,
float* y,
const union xnn_f32_hswish_params params[restrict XNN_MIN_ELEMENTS(1)]) XNN_DISABLE_TSAN
{
assert(n != 0);
assert(n % sizeof(float) == 0);
const v128_t vsixth = wasm_v32x4_load_splat(&params->scalar.sixth);
const v128_t vhalf = wasm_v32x4_load_splat(&params->scalar.half);
const v128_t vone = wasm_v32x4_load_splat(&params->scalar.one);
const v128_t vzero = wasm_f32x4_splat(0.0f);
$if BATCH_TILE > 4:
for (; n >= ${BATCH_TILE} * sizeof(float); n -= ${BATCH_TILE} * sizeof(float)) {
const v128_t vx${ABC[0:4]} = wasm_v128_load(x);
$for N in range(4, BATCH_TILE, 4):
const v128_t vx${ABC[N:N+4]} = wasm_v128_load(x + ${N});
x += ${BATCH_TILE};
$for N in range(0, BATCH_TILE, 4):
v128_t vacc${ABC[N:N+4]} = wasm_f32x4_add(vhalf, wasm_f32x4_mul(vx${ABC[N:N+4]}, vsixth));
$if X86:
$for N in range(0, BATCH_TILE, 4):
const v128_t vmasklt${ABC[N:N+4]} = wasm_f32x4_lt(vacc${ABC[N:N+4]}, vzero);
vacc${ABC[N:N+4]} = wasm_v128_andnot(vacc${ABC[N:N+4]}, vmasklt${ABC[N:N+4]});
$for N in range(0, BATCH_TILE, 4):
const v128_t vmaskge${ABC[N:N+4]} = wasm_f32x4_ge(vacc${ABC[N:N+4]}, vone);
vacc${ABC[N:N+4]} = wasm_f32x4_mul(vacc${ABC[N:N+4]}, vx${ABC[N:N+4]});
$for N in range(0, BATCH_TILE, 4):
vacc${ABC[N:N+4]} = wasm_v128_bitselect(vx${ABC[N:N+4]}, vacc${ABC[N:N+4]}, vmaskge${ABC[N:N+4]});
$else:
$for N in range(0, BATCH_TILE, 4):
vacc${ABC[N:N+4]} = wasm_f32x4_max(vacc${ABC[N:N+4]}, vzero);
$for N in range(0, BATCH_TILE, 4):
vacc${ABC[N:N+4]} = wasm_f32x4_min(vacc${ABC[N:N+4]}, vone);
$for N in range(0, BATCH_TILE, 4):
vacc${ABC[N:N+4]} = wasm_f32x4_mul(vacc${ABC[N:N+4]}, vx${ABC[N:N+4]});
wasm_v128_store(y, vacc${ABC[0:4]});
$for N in range(4, BATCH_TILE, 4):
wasm_v128_store(y + ${N}, vacc${ABC[N:N+4]});
y += ${BATCH_TILE};
}
for (; n >= 4 * sizeof(float); n -= 4 * sizeof(float)) {
const v128_t vx = wasm_v128_load(x);
x += 4;
v128_t vacc = wasm_f32x4_add(vhalf, wasm_f32x4_mul(vx, vsixth));
$if X86:
const v128_t vmasklt = wasm_f32x4_lt(vacc, vzero);
vacc = wasm_v128_andnot(vacc, vmasklt);
const v128_t vmaskge = wasm_f32x4_ge(vacc, vone);
vacc = wasm_f32x4_mul(vacc, vx);
vacc = wasm_v128_bitselect(vx, vacc, vmaskge);
$else:
vacc = wasm_f32x4_max(vacc, vzero);
vacc = wasm_f32x4_min(vacc, vone);
vacc = wasm_f32x4_mul(vacc, vx);
wasm_v128_store(y, vacc);
y += 4;
}
if XNN_UNLIKELY(n != 0) {
const v128_t vx = wasm_v128_load(x);
v128_t vacc = wasm_f32x4_add(vhalf, wasm_f32x4_mul(vx, vsixth));
$if X86:
const v128_t vmasklt = wasm_f32x4_lt(vacc, vzero);
vacc = wasm_v128_andnot(vacc, vmasklt);
const v128_t vmaskge = wasm_f32x4_ge(vacc, vone);
vacc = wasm_f32x4_mul(vacc, vx);
vacc = wasm_v128_bitselect(vx, vacc, vmaskge);
$else:
vacc = wasm_f32x4_max(vacc, vzero);
vacc = wasm_f32x4_min(vacc, vone);
vacc = wasm_f32x4_mul(vacc, vx);
if (n & (2 * sizeof(float))) {
*((double*) y) = wasm_f64x2_extract_lane(vacc, 0);
vacc = wasm_v32x4_shuffle(vacc, vacc, 2, 3, 2, 3);
y += 2;
}
if (n & (1 * sizeof(float))) {
*y = wasm_f32x4_extract_lane(vacc, 0);
}
}
}