use crate::activation_simd_avx2;
use crate::activation_simd_avx512;
use core::arch::x86_64::*;
#[target_feature(enable = "avx2,fma")]
#[expect(
clippy::excessive_precision,
reason = "High-precision constants required for bit-exact numerical validation against reference"
)]
pub unsafe fn fast_tanh_slice_avx2(data: &mut [f32]) {
let ca = _mm256_set1_ps(2.45550750702956_f32);
let cb = _mm256_set1_ps(0.893229853513558_f32);
let cc = _mm256_set1_ps(0.821226666969744_f32);
let cd = _mm256_set1_ps(2.44506634652299_f32);
let ce = _mm256_set1_ps(0.814642734961073_f32);
let sign_mask = _mm256_set1_ps(-0.0_f32);
let mut i = 0;
let len = data.len();
unsafe {
activation_simd_avx2!(
i,
len,
{
let x1 = _mm256_loadu_ps(data.as_ptr().add(i));
let x2 = _mm256_loadu_ps(data.as_ptr().add(i + 8));
let ax1 = _mm256_andnot_ps(sign_mask, x1);
let ax2 = _mm256_andnot_ps(sign_mask, x2);
let x21 = _mm256_mul_ps(x1, x1);
let x22 = _mm256_mul_ps(x2, x2);
let num_inner1 = _mm256_fmadd_ps(cc, ax1, cb);
let num_inner2 = _mm256_fmadd_ps(cc, ax2, cb);
let num_poly1 = _mm256_fmadd_ps(num_inner1, x21, _mm256_fmadd_ps(ca, ax1, ca));
let num_poly2 = _mm256_fmadd_ps(num_inner2, x22, _mm256_fmadd_ps(ca, ax2, ca));
let num1 = _mm256_mul_ps(x1, num_poly1);
let num2 = _mm256_mul_ps(x2, num_poly2);
let xe1 = _mm256_mul_ps(ce, _mm256_mul_ps(x1, ax1));
let xe2 = _mm256_mul_ps(ce, _mm256_mul_ps(x2, ax2));
let xterm1 = _mm256_add_ps(x1, xe1);
let xterm2 = _mm256_add_ps(x2, xe2);
let abs_xterm1 = _mm256_andnot_ps(sign_mask, xterm1);
let abs_xterm2 = _mm256_andnot_ps(sign_mask, xterm2);
let den_inner1 = _mm256_add_ps(cd, x21);
let den_inner2 = _mm256_add_ps(cd, x22);
let den1 = _mm256_fmadd_ps(den_inner1, abs_xterm1, cd);
let den2 = _mm256_fmadd_ps(den_inner2, abs_xterm2, cd);
let y1 = _mm256_div_ps(num1, den1);
let y2 = _mm256_div_ps(num2, den2);
_mm256_storeu_ps(data.as_mut_ptr().add(i), y1);
_mm256_storeu_ps(data.as_mut_ptr().add(i + 8), y2);
},
{
let x = _mm256_loadu_ps(data.as_ptr().add(i));
let ax = _mm256_andnot_ps(sign_mask, x);
let x2 = _mm256_mul_ps(x, x);
let num_inner = _mm256_fmadd_ps(cc, ax, cb);
let num_poly = _mm256_fmadd_ps(num_inner, x2, _mm256_fmadd_ps(ca, ax, ca));
let num = _mm256_mul_ps(x, num_poly);
let xe = _mm256_mul_ps(ce, _mm256_mul_ps(x, ax));
let xterm = _mm256_add_ps(x, xe);
let abs_xterm = _mm256_andnot_ps(sign_mask, xterm);
let den_inner = _mm256_add_ps(cd, x2);
let den = _mm256_fmadd_ps(den_inner, abs_xterm, cd);
let y = _mm256_div_ps(num, den);
_mm256_storeu_ps(data.as_mut_ptr().add(i), y);
}
);
}
for x in data.iter_mut().skip(i) {
*x = fast_tanh(*x);
}
}
#[target_feature(enable = "avx512f,avx512vl,avx512dq,fma")]
#[expect(
clippy::excessive_precision,
reason = "High-precision constants required for bit-exact numerical validation against reference"
)]
pub unsafe fn fast_tanh_slice_avx512(data: &mut [f32]) {
let ca = _mm512_set1_ps(2.45550750702956_f32);
let cb = _mm512_set1_ps(0.893229853513558_f32);
let cc = _mm512_set1_ps(0.821226666969744_f32);
let cd = _mm512_set1_ps(2.44506634652299_f32);
let ce = _mm512_set1_ps(0.814642734961073_f32);
let sign_mask = _mm512_set1_ps(-0.0_f32);
let mut i = 0;
let len = data.len();
unsafe {
activation_simd_avx512!(i, len, {
let x = _mm512_loadu_ps(data.as_ptr().add(i));
let ax = _mm512_andnot_ps(sign_mask, x);
let x2 = _mm512_mul_ps(x, x);
let num_inner = _mm512_fmadd_ps(cc, ax, cb);
let num_poly = _mm512_fmadd_ps(num_inner, x2, _mm512_fmadd_ps(ca, ax, ca));
let num = _mm512_mul_ps(x, num_poly);
let xe = _mm512_mul_ps(ce, _mm512_mul_ps(x, ax));
let xterm = _mm512_add_ps(x, xe);
let abs_xterm = _mm512_andnot_ps(sign_mask, xterm);
let den_inner = _mm512_add_ps(cd, x2);
let den = _mm512_fmadd_ps(den_inner, abs_xterm, cd);
let y = _mm512_div_ps(num, den);
_mm512_storeu_ps(data.as_mut_ptr().add(i), y);
});
}
for x in data.iter_mut().skip(i) {
*x = fast_tanh(*x);
}
}
#[inline(always)]
#[expect(
clippy::excessive_precision,
reason = "High-precision constants required for bit-exact numerical validation against reference"
)]
pub fn fast_tanh(x: f32) -> f32 {
let ax = x.abs();
let x2 = x * x;
(x * (2.45550750702956
+ 2.45550750702956 * ax
+ (0.893229853513558 + 0.821226666969744 * ax) * x2))
/ (2.44506634652299 + (2.44506634652299 + x2) * (x + 0.814642734961073 * x * ax).abs())
}