1*4bdc9457SAndroid Build Coastguard Worker // Copyright 2019 Google LLC
2*4bdc9457SAndroid Build Coastguard Worker //
3*4bdc9457SAndroid Build Coastguard Worker // This source code is licensed under the BSD-style license found in the
4*4bdc9457SAndroid Build Coastguard Worker // LICENSE file in the root directory of this source tree.
5*4bdc9457SAndroid Build Coastguard Worker
6*4bdc9457SAndroid Build Coastguard Worker #include <assert.h>
7*4bdc9457SAndroid Build Coastguard Worker #include <stddef.h>
8*4bdc9457SAndroid Build Coastguard Worker
9*4bdc9457SAndroid Build Coastguard Worker #include <arm_neon.h>
10*4bdc9457SAndroid Build Coastguard Worker
11*4bdc9457SAndroid Build Coastguard Worker #include <xnnpack/common.h>
12*4bdc9457SAndroid Build Coastguard Worker #include <xnnpack/math-stubs.h>
13*4bdc9457SAndroid Build Coastguard Worker
14*4bdc9457SAndroid Build Coastguard Worker
15*4bdc9457SAndroid Build Coastguard Worker // Table of exp2(k / 64) values decremented (as integer) by (k << 17), k = 0..63
16*4bdc9457SAndroid Build Coastguard Worker extern XNN_INTERNAL const float xnn_table_exp2minus_k_over_64[64];
17*4bdc9457SAndroid Build Coastguard Worker
xnn_math_f32_sigmoid__neonfma_rr2_lut64_p2_div(size_t n,const float * input,float * output)18*4bdc9457SAndroid Build Coastguard Worker void xnn_math_f32_sigmoid__neonfma_rr2_lut64_p2_div(
19*4bdc9457SAndroid Build Coastguard Worker size_t n,
20*4bdc9457SAndroid Build Coastguard Worker const float* input,
21*4bdc9457SAndroid Build Coastguard Worker float* output)
22*4bdc9457SAndroid Build Coastguard Worker {
23*4bdc9457SAndroid Build Coastguard Worker assert(n % (4 * sizeof(float)) == 0);
24*4bdc9457SAndroid Build Coastguard Worker
25*4bdc9457SAndroid Build Coastguard Worker // Large number such that ulp(magic bias) == exp2(-6)
26*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vmagic_bias = vmovq_n_f32(0x1.800000p17f);
27*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vminus_log2e = vmovq_n_f32(-0x1.715476p0f);
28*4bdc9457SAndroid Build Coastguard Worker // Mask for the lowest 6 bits
29*4bdc9457SAndroid Build Coastguard Worker const int32x4_t vindex_mask = vmovq_n_s32(INT32_C(0x3F));
30*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vln2_hi = vmovq_n_f32(0x1.62E43p-1f);
31*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vln2_lo = vmovq_n_f32(-0x1.05C61p-29f);
32*4bdc9457SAndroid Build Coastguard Worker // Coefficient of polynomial approximation of exp(-t) ~ 1 + t * (1 + t * c2) on [-log(2)/128, log(2)/128]
33*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vc2 = vmovq_n_f32(0x1.FFFF0Ap-2f);
34*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vone = vmovq_n_f32(1.0f);
35*4bdc9457SAndroid Build Coastguard Worker // The largest z for which sigmoidf(-z) is normalized.
36*4bdc9457SAndroid Build Coastguard Worker // This number is also the largest z for which expf(-z) is normalized.
37*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vdenorm_cutoff = vmovq_n_f32(-0x1.5D589Ep+6f);
38*4bdc9457SAndroid Build Coastguard Worker
39*4bdc9457SAndroid Build Coastguard Worker for (; n != 0; n -= 4 * sizeof(float)) {
40*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vx = vld1q_f32(input); input += 4;
41*4bdc9457SAndroid Build Coastguard Worker
42*4bdc9457SAndroid Build Coastguard Worker // General structure of the algorithm:
43*4bdc9457SAndroid Build Coastguard Worker //
44*4bdc9457SAndroid Build Coastguard Worker // / exp(x) / (1 + exp(x)) if x <= 0
45*4bdc9457SAndroid Build Coastguard Worker // f[x] :=
46*4bdc9457SAndroid Build Coastguard Worker // \ 1 - f[-x] if x >= 0
47*4bdc9457SAndroid Build Coastguard Worker //
48*4bdc9457SAndroid Build Coastguard Worker // First we compute f[-z] := exp(-z) / (1 + exp(-z)) where z = abs(x),
49*4bdc9457SAndroid Build Coastguard Worker // then replace result with 1 - f[-z] if x >= 0.
50*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vz = vabsq_f32(vx);
51*4bdc9457SAndroid Build Coastguard Worker
52*4bdc9457SAndroid Build Coastguard Worker // Compute reduced argument n := round(-z / log(2), 6).
53*4bdc9457SAndroid Build Coastguard Worker // We do it by adding a large number (magic bias), which cause rounding of the result to integer, then subtracing
54*4bdc9457SAndroid Build Coastguard Worker // the large number back. The trick with adding large number is valid only within certain bounds
55*4bdc9457SAndroid Build Coastguard Worker // (|-z / log(2)| <= 2**16, i.e. |z| <= 0x1.62E43p+15 = 5814540.0), but that is acceptable, because inputs x
56*4bdc9457SAndroid Build Coastguard Worker // outside of [-87.336544, 17.328678] (i.e. z outsize [0, 87.336544]) underflow or saturate sigmoidf(x). We fixup
57*4bdc9457SAndroid Build Coastguard Worker // the result for such inputs at the very end of the algorithm.
58*4bdc9457SAndroid Build Coastguard Worker float32x4_t vn = vfmaq_f32(vmagic_bias, vz, vminus_log2e);
59*4bdc9457SAndroid Build Coastguard Worker
60*4bdc9457SAndroid Build Coastguard Worker // Create a floating-point number s (scale) such that s := 2**n for such inputs that sigmoidf(-z) is normalized,
61*4bdc9457SAndroid Build Coastguard Worker // i.e. 0 <= z <= 87.33642. As n has 6 fractional bits, we split s == 2**n = 2**int(n) * 2**frac(n). We create s
62*4bdc9457SAndroid Build Coastguard Worker // in two steps:
63*4bdc9457SAndroid Build Coastguard Worker // 1. Fetch 2**frac(n) from the table using the 6 low bits of n, as integer. Note that the fetched values are in
64*4bdc9457SAndroid Build Coastguard Worker // the [1.0, 2.0) range, i.e. their floating-point exponent is 0.
65*4bdc9457SAndroid Build Coastguard Worker // 2. Adjust fecthed value by addition of int(n) to its floating-point exponent. The result is always a normalized
66*4bdc9457SAndroid Build Coastguard Worker // number, because for 0 <= z <= 87.33642 (inputs for which sigmoidf(z) is normalized) we have
67*4bdc9457SAndroid Build Coastguard Worker // -126 <= int(n) <= 0, and thus the adjusted exponent is not lower than -126.
68*4bdc9457SAndroid Build Coastguard Worker //
69*4bdc9457SAndroid Build Coastguard Worker // Shift bits 6:14 into 23:31 (position of floating-point exponent).
70*4bdc9457SAndroid Build Coastguard Worker const int32x4_t ve = vshlq_n_s32(vreinterpretq_s32_f32(vn), 17);
71*4bdc9457SAndroid Build Coastguard Worker
72*4bdc9457SAndroid Build Coastguard Worker // Use bits 0:6 of n, as integer, as an index for table lookup of l := 2**frac(n).
73*4bdc9457SAndroid Build Coastguard Worker const uint64x2_t vidx = vreinterpretq_u64_s32(vshlq_n_s32(vandq_s32(vreinterpretq_s32_f32(vn), vindex_mask), 2));
74*4bdc9457SAndroid Build Coastguard Worker const uint64_t vidx_lo = vgetq_lane_u64(vidx, 0);
75*4bdc9457SAndroid Build Coastguard Worker const uint64_t vidx_hi = vgetq_lane_u64(vidx, 1);
76*4bdc9457SAndroid Build Coastguard Worker float32x2_t vl_lo = vld1_dup_f32((const float*) ((uintptr_t) xnn_table_exp2minus_k_over_64 + (uint32_t) vidx_lo));
77*4bdc9457SAndroid Build Coastguard Worker float32x2_t vl_hi = vld1_dup_f32((const float*) ((uintptr_t) xnn_table_exp2minus_k_over_64 + (uint32_t) vidx_hi));
78*4bdc9457SAndroid Build Coastguard Worker vl_lo = vld1_lane_f32((const float*) ((uintptr_t) xnn_table_exp2minus_k_over_64 + (uint32_t) (vidx_lo >> 32)), vl_lo, 1);
79*4bdc9457SAndroid Build Coastguard Worker vl_hi = vld1_lane_f32((const float*) ((uintptr_t) xnn_table_exp2minus_k_over_64 + (uint32_t) (vidx_hi >> 32)), vl_hi, 1);
80*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vl = vcombine_f32(vl_lo, vl_hi);
81*4bdc9457SAndroid Build Coastguard Worker // Adjust exponent of the value l fetched from the table to get the final s value.
82*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vs = vreinterpretq_f32_s32(vaddq_s32(vreinterpretq_s32_f32(vl), ve));
83*4bdc9457SAndroid Build Coastguard Worker
84*4bdc9457SAndroid Build Coastguard Worker // Subtract the large number back to get the final n := round(-z / log(2), 6) as a floating-point number.
85*4bdc9457SAndroid Build Coastguard Worker vn = vsubq_f32(vn, vmagic_bias);
86*4bdc9457SAndroid Build Coastguard Worker
87*4bdc9457SAndroid Build Coastguard Worker // Compute reduced argument t := (z + n * log(2)). Note that -t = -z - n * log(2).
88*4bdc9457SAndroid Build Coastguard Worker // Use Cody-Waite range reduction method (note two constants to represent log(2)) to improve accuracy.
89*4bdc9457SAndroid Build Coastguard Worker float32x4_t vt = vfmaq_f32(vz, vn, vln2_hi);
90*4bdc9457SAndroid Build Coastguard Worker vt = vfmaq_f32(vt, vn, vln2_lo);
91*4bdc9457SAndroid Build Coastguard Worker
92*4bdc9457SAndroid Build Coastguard Worker // Compute degree-2 polynomial approximation for exp(-t) on [-log(2)/128, log(2)/128].
93*4bdc9457SAndroid Build Coastguard Worker // P(t) = 1 + t * (-1 + t * c2) = 1 - (t - t * (t * c2)) = 1 - p
94*4bdc9457SAndroid Build Coastguard Worker float32x4_t vp = vmulq_f32(vt, vc2);
95*4bdc9457SAndroid Build Coastguard Worker vp = vfmsq_f32(vt, vp, vt);
96*4bdc9457SAndroid Build Coastguard Worker
97*4bdc9457SAndroid Build Coastguard Worker // Reconstruct the exp(-z) value:
98*4bdc9457SAndroid Build Coastguard Worker // e = s * (1 + t * (-1 + t * c2))
99*4bdc9457SAndroid Build Coastguard Worker // = s * (1 - p)
100*4bdc9457SAndroid Build Coastguard Worker // = s - s * p
101*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vy = vfmsq_f32(vs, vs, vp);
102*4bdc9457SAndroid Build Coastguard Worker
103*4bdc9457SAndroid Build Coastguard Worker // Denominator of the sigmoid fraction: 1.0 + exp(-z)
104*4bdc9457SAndroid Build Coastguard Worker const float32x4_t vd = vaddq_f32(vy, vone);
105*4bdc9457SAndroid Build Coastguard Worker
106*4bdc9457SAndroid Build Coastguard Worker // Reconstruct sigmoid(-z) = exp(-z) / (1.0 + exp(-z))
107*4bdc9457SAndroid Build Coastguard Worker float32x4_t vf = vdivq_f32(vy, vd);
108*4bdc9457SAndroid Build Coastguard Worker
109*4bdc9457SAndroid Build Coastguard Worker // For inputs below denormal cutoff, replace output with +0.0f.
110*4bdc9457SAndroid Build Coastguard Worker // Note that for NaN inputs, comparison result is false, and outputs are left unchanged.
111*4bdc9457SAndroid Build Coastguard Worker vf = vreinterpretq_f32_u32(vbicq_u32(vreinterpretq_u32_f32(vf), vcagtq_f32(vx, vdenorm_cutoff)));
112*4bdc9457SAndroid Build Coastguard Worker
113*4bdc9457SAndroid Build Coastguard Worker // Reconstruct sigmoid(x) = x < 0 ? sigmoid(-z) : 1.0 - sigmoid(-z)
114*4bdc9457SAndroid Build Coastguard Worker const uint32x4_t vm = vcltq_f32(vx, vmovq_n_f32(0.0f));
115*4bdc9457SAndroid Build Coastguard Worker vf = vbslq_f32(vm, vf, vsubq_f32(vone, vf));
116*4bdc9457SAndroid Build Coastguard Worker
117*4bdc9457SAndroid Build Coastguard Worker vst1q_f32(output, vf); output += 4;
118*4bdc9457SAndroid Build Coastguard Worker }
119*4bdc9457SAndroid Build Coastguard Worker }
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