xref: /aosp_15_r20/external/llvm-libc/src/math/generic/exp.cpp (revision 71db0c75aadcf003ffe3238005f61d7618a3fead)
1*71db0c75SAndroid Build Coastguard Worker //===-- Double-precision e^x function -------------------------------------===//
2*71db0c75SAndroid Build Coastguard Worker //
3*71db0c75SAndroid Build Coastguard Worker // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4*71db0c75SAndroid Build Coastguard Worker // See https://llvm.org/LICENSE.txt for license information.
5*71db0c75SAndroid Build Coastguard Worker // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6*71db0c75SAndroid Build Coastguard Worker //
7*71db0c75SAndroid Build Coastguard Worker //===----------------------------------------------------------------------===//
8*71db0c75SAndroid Build Coastguard Worker 
9*71db0c75SAndroid Build Coastguard Worker #include "src/math/exp.h"
10*71db0c75SAndroid Build Coastguard Worker #include "common_constants.h" // Lookup tables EXP_M1 and EXP_M2.
11*71db0c75SAndroid Build Coastguard Worker #include "explogxf.h"         // ziv_test_denorm.
12*71db0c75SAndroid Build Coastguard Worker #include "src/__support/CPP/bit.h"
13*71db0c75SAndroid Build Coastguard Worker #include "src/__support/CPP/optional.h"
14*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/FEnvImpl.h"
15*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/FPBits.h"
16*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/PolyEval.h"
17*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/double_double.h"
18*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/dyadic_float.h"
19*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/multiply_add.h"
20*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/nearest_integer.h"
21*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/rounding_mode.h"
22*71db0c75SAndroid Build Coastguard Worker #include "src/__support/FPUtil/triple_double.h"
23*71db0c75SAndroid Build Coastguard Worker #include "src/__support/common.h"
24*71db0c75SAndroid Build Coastguard Worker #include "src/__support/integer_literals.h"
25*71db0c75SAndroid Build Coastguard Worker #include "src/__support/macros/config.h"
26*71db0c75SAndroid Build Coastguard Worker #include "src/__support/macros/optimization.h" // LIBC_UNLIKELY
27*71db0c75SAndroid Build Coastguard Worker 
28*71db0c75SAndroid Build Coastguard Worker namespace LIBC_NAMESPACE_DECL {
29*71db0c75SAndroid Build Coastguard Worker 
30*71db0c75SAndroid Build Coastguard Worker using fputil::DoubleDouble;
31*71db0c75SAndroid Build Coastguard Worker using fputil::TripleDouble;
32*71db0c75SAndroid Build Coastguard Worker using Float128 = typename fputil::DyadicFloat<128>;
33*71db0c75SAndroid Build Coastguard Worker 
34*71db0c75SAndroid Build Coastguard Worker using LIBC_NAMESPACE::operator""_u128;
35*71db0c75SAndroid Build Coastguard Worker 
36*71db0c75SAndroid Build Coastguard Worker // log2(e)
37*71db0c75SAndroid Build Coastguard Worker constexpr double LOG2_E = 0x1.71547652b82fep+0;
38*71db0c75SAndroid Build Coastguard Worker 
39*71db0c75SAndroid Build Coastguard Worker // Error bounds:
40*71db0c75SAndroid Build Coastguard Worker // Errors when using double precision.
41*71db0c75SAndroid Build Coastguard Worker constexpr double ERR_D = 0x1.8p-63;
42*71db0c75SAndroid Build Coastguard Worker // Errors when using double-double precision.
43*71db0c75SAndroid Build Coastguard Worker constexpr double ERR_DD = 0x1.0p-99;
44*71db0c75SAndroid Build Coastguard Worker 
45*71db0c75SAndroid Build Coastguard Worker // -2^-12 * log(2)
46*71db0c75SAndroid Build Coastguard Worker // > a = -2^-12 * log(2);
47*71db0c75SAndroid Build Coastguard Worker // > b = round(a, 30, RN);
48*71db0c75SAndroid Build Coastguard Worker // > c = round(a - b, 30, RN);
49*71db0c75SAndroid Build Coastguard Worker // > d = round(a - b - c, D, RN);
50*71db0c75SAndroid Build Coastguard Worker // Errors < 1.5 * 2^-133
51*71db0c75SAndroid Build Coastguard Worker constexpr double MLOG_2_EXP2_M12_HI = -0x1.62e42ffp-13;
52*71db0c75SAndroid Build Coastguard Worker constexpr double MLOG_2_EXP2_M12_MID = 0x1.718432a1b0e26p-47;
53*71db0c75SAndroid Build Coastguard Worker constexpr double MLOG_2_EXP2_M12_MID_30 = 0x1.718432ap-47;
54*71db0c75SAndroid Build Coastguard Worker constexpr double MLOG_2_EXP2_M12_LO = 0x1.b0e2633fe0685p-79;
55*71db0c75SAndroid Build Coastguard Worker 
56*71db0c75SAndroid Build Coastguard Worker namespace {
57*71db0c75SAndroid Build Coastguard Worker 
58*71db0c75SAndroid Build Coastguard Worker // Polynomial approximations with double precision:
59*71db0c75SAndroid Build Coastguard Worker // Return expm1(dx) / x ~ 1 + dx / 2 + dx^2 / 6 + dx^3 / 24.
60*71db0c75SAndroid Build Coastguard Worker // For |dx| < 2^-13 + 2^-30:
61*71db0c75SAndroid Build Coastguard Worker //   | output - expm1(dx) / dx | < 2^-51.
poly_approx_d(double dx)62*71db0c75SAndroid Build Coastguard Worker LIBC_INLINE double poly_approx_d(double dx) {
63*71db0c75SAndroid Build Coastguard Worker   // dx^2
64*71db0c75SAndroid Build Coastguard Worker   double dx2 = dx * dx;
65*71db0c75SAndroid Build Coastguard Worker   // c0 = 1 + dx / 2
66*71db0c75SAndroid Build Coastguard Worker   double c0 = fputil::multiply_add(dx, 0.5, 1.0);
67*71db0c75SAndroid Build Coastguard Worker   // c1 = 1/6 + dx / 24
68*71db0c75SAndroid Build Coastguard Worker   double c1 =
69*71db0c75SAndroid Build Coastguard Worker       fputil::multiply_add(dx, 0x1.5555555555555p-5, 0x1.5555555555555p-3);
70*71db0c75SAndroid Build Coastguard Worker   // p = dx^2 * c1 + c0 = 1 + dx / 2 + dx^2 / 6 + dx^3 / 24
71*71db0c75SAndroid Build Coastguard Worker   double p = fputil::multiply_add(dx2, c1, c0);
72*71db0c75SAndroid Build Coastguard Worker   return p;
73*71db0c75SAndroid Build Coastguard Worker }
74*71db0c75SAndroid Build Coastguard Worker 
75*71db0c75SAndroid Build Coastguard Worker // Polynomial approximation with double-double precision:
76*71db0c75SAndroid Build Coastguard Worker // Return exp(dx) ~ 1 + dx + dx^2 / 2 + ... + dx^6 / 720
77*71db0c75SAndroid Build Coastguard Worker // For |dx| < 2^-13 + 2^-30:
78*71db0c75SAndroid Build Coastguard Worker //   | output - exp(dx) | < 2^-101
poly_approx_dd(const DoubleDouble & dx)79*71db0c75SAndroid Build Coastguard Worker DoubleDouble poly_approx_dd(const DoubleDouble &dx) {
80*71db0c75SAndroid Build Coastguard Worker   // Taylor polynomial.
81*71db0c75SAndroid Build Coastguard Worker   constexpr DoubleDouble COEFFS[] = {
82*71db0c75SAndroid Build Coastguard Worker       {0, 0x1p0},                                      // 1
83*71db0c75SAndroid Build Coastguard Worker       {0, 0x1p0},                                      // 1
84*71db0c75SAndroid Build Coastguard Worker       {0, 0x1p-1},                                     // 1/2
85*71db0c75SAndroid Build Coastguard Worker       {0x1.5555555555555p-57, 0x1.5555555555555p-3},   // 1/6
86*71db0c75SAndroid Build Coastguard Worker       {0x1.5555555555555p-59, 0x1.5555555555555p-5},   // 1/24
87*71db0c75SAndroid Build Coastguard Worker       {0x1.1111111111111p-63, 0x1.1111111111111p-7},   // 1/120
88*71db0c75SAndroid Build Coastguard Worker       {-0x1.f49f49f49f49fp-65, 0x1.6c16c16c16c17p-10}, // 1/720
89*71db0c75SAndroid Build Coastguard Worker   };
90*71db0c75SAndroid Build Coastguard Worker 
91*71db0c75SAndroid Build Coastguard Worker   DoubleDouble p = fputil::polyeval(dx, COEFFS[0], COEFFS[1], COEFFS[2],
92*71db0c75SAndroid Build Coastguard Worker                                     COEFFS[3], COEFFS[4], COEFFS[5], COEFFS[6]);
93*71db0c75SAndroid Build Coastguard Worker   return p;
94*71db0c75SAndroid Build Coastguard Worker }
95*71db0c75SAndroid Build Coastguard Worker 
96*71db0c75SAndroid Build Coastguard Worker // Polynomial approximation with 128-bit precision:
97*71db0c75SAndroid Build Coastguard Worker // Return exp(dx) ~ 1 + dx + dx^2 / 2 + ... + dx^7 / 5040
98*71db0c75SAndroid Build Coastguard Worker // For |dx| < 2^-13 + 2^-30:
99*71db0c75SAndroid Build Coastguard Worker //   | output - exp(dx) | < 2^-126.
poly_approx_f128(const Float128 & dx)100*71db0c75SAndroid Build Coastguard Worker Float128 poly_approx_f128(const Float128 &dx) {
101*71db0c75SAndroid Build Coastguard Worker   constexpr Float128 COEFFS_128[]{
102*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -127, 0x80000000'00000000'00000000'00000000_u128}, // 1.0
103*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -127, 0x80000000'00000000'00000000'00000000_u128}, // 1.0
104*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -128, 0x80000000'00000000'00000000'00000000_u128}, // 0.5
105*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -130, 0xaaaaaaaa'aaaaaaaa'aaaaaaaa'aaaaaaab_u128}, // 1/6
106*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -132, 0xaaaaaaaa'aaaaaaaa'aaaaaaaa'aaaaaaab_u128}, // 1/24
107*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -134, 0x88888888'88888888'88888888'88888889_u128}, // 1/120
108*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -137, 0xb60b60b6'0b60b60b'60b60b60'b60b60b6_u128}, // 1/720
109*71db0c75SAndroid Build Coastguard Worker       {Sign::POS, -140, 0xd00d00d0'0d00d00d'00d00d00'd00d00d0_u128}, // 1/5040
110*71db0c75SAndroid Build Coastguard Worker   };
111*71db0c75SAndroid Build Coastguard Worker 
112*71db0c75SAndroid Build Coastguard Worker   Float128 p = fputil::polyeval(dx, COEFFS_128[0], COEFFS_128[1], COEFFS_128[2],
113*71db0c75SAndroid Build Coastguard Worker                                 COEFFS_128[3], COEFFS_128[4], COEFFS_128[5],
114*71db0c75SAndroid Build Coastguard Worker                                 COEFFS_128[6], COEFFS_128[7]);
115*71db0c75SAndroid Build Coastguard Worker   return p;
116*71db0c75SAndroid Build Coastguard Worker }
117*71db0c75SAndroid Build Coastguard Worker 
118*71db0c75SAndroid Build Coastguard Worker // Compute exp(x) using 128-bit precision.
119*71db0c75SAndroid Build Coastguard Worker // TODO(lntue): investigate triple-double precision implementation for this
120*71db0c75SAndroid Build Coastguard Worker // step.
exp_f128(double x,double kd,int idx1,int idx2)121*71db0c75SAndroid Build Coastguard Worker Float128 exp_f128(double x, double kd, int idx1, int idx2) {
122*71db0c75SAndroid Build Coastguard Worker   // Recalculate dx:
123*71db0c75SAndroid Build Coastguard Worker 
124*71db0c75SAndroid Build Coastguard Worker   double t1 = fputil::multiply_add(kd, MLOG_2_EXP2_M12_HI, x); // exact
125*71db0c75SAndroid Build Coastguard Worker   double t2 = kd * MLOG_2_EXP2_M12_MID_30;                     // exact
126*71db0c75SAndroid Build Coastguard Worker   double t3 = kd * MLOG_2_EXP2_M12_LO;                         // Error < 2^-133
127*71db0c75SAndroid Build Coastguard Worker 
128*71db0c75SAndroid Build Coastguard Worker   Float128 dx = fputil::quick_add(
129*71db0c75SAndroid Build Coastguard Worker       Float128(t1), fputil::quick_add(Float128(t2), Float128(t3)));
130*71db0c75SAndroid Build Coastguard Worker 
131*71db0c75SAndroid Build Coastguard Worker   // TODO: Skip recalculating exp_mid1 and exp_mid2.
132*71db0c75SAndroid Build Coastguard Worker   Float128 exp_mid1 =
133*71db0c75SAndroid Build Coastguard Worker       fputil::quick_add(Float128(EXP2_MID1[idx1].hi),
134*71db0c75SAndroid Build Coastguard Worker                         fputil::quick_add(Float128(EXP2_MID1[idx1].mid),
135*71db0c75SAndroid Build Coastguard Worker                                           Float128(EXP2_MID1[idx1].lo)));
136*71db0c75SAndroid Build Coastguard Worker 
137*71db0c75SAndroid Build Coastguard Worker   Float128 exp_mid2 =
138*71db0c75SAndroid Build Coastguard Worker       fputil::quick_add(Float128(EXP2_MID2[idx2].hi),
139*71db0c75SAndroid Build Coastguard Worker                         fputil::quick_add(Float128(EXP2_MID2[idx2].mid),
140*71db0c75SAndroid Build Coastguard Worker                                           Float128(EXP2_MID2[idx2].lo)));
141*71db0c75SAndroid Build Coastguard Worker 
142*71db0c75SAndroid Build Coastguard Worker   Float128 exp_mid = fputil::quick_mul(exp_mid1, exp_mid2);
143*71db0c75SAndroid Build Coastguard Worker 
144*71db0c75SAndroid Build Coastguard Worker   Float128 p = poly_approx_f128(dx);
145*71db0c75SAndroid Build Coastguard Worker 
146*71db0c75SAndroid Build Coastguard Worker   Float128 r = fputil::quick_mul(exp_mid, p);
147*71db0c75SAndroid Build Coastguard Worker 
148*71db0c75SAndroid Build Coastguard Worker   r.exponent += static_cast<int>(kd) >> 12;
149*71db0c75SAndroid Build Coastguard Worker 
150*71db0c75SAndroid Build Coastguard Worker   return r;
151*71db0c75SAndroid Build Coastguard Worker }
152*71db0c75SAndroid Build Coastguard Worker 
153*71db0c75SAndroid Build Coastguard Worker // Compute exp(x) with double-double precision.
exp_double_double(double x,double kd,const DoubleDouble & exp_mid)154*71db0c75SAndroid Build Coastguard Worker DoubleDouble exp_double_double(double x, double kd,
155*71db0c75SAndroid Build Coastguard Worker                                const DoubleDouble &exp_mid) {
156*71db0c75SAndroid Build Coastguard Worker   // Recalculate dx:
157*71db0c75SAndroid Build Coastguard Worker   //   dx = x - k * 2^-12 * log(2)
158*71db0c75SAndroid Build Coastguard Worker   double t1 = fputil::multiply_add(kd, MLOG_2_EXP2_M12_HI, x); // exact
159*71db0c75SAndroid Build Coastguard Worker   double t2 = kd * MLOG_2_EXP2_M12_MID_30;                     // exact
160*71db0c75SAndroid Build Coastguard Worker   double t3 = kd * MLOG_2_EXP2_M12_LO;                         // Error < 2^-130
161*71db0c75SAndroid Build Coastguard Worker 
162*71db0c75SAndroid Build Coastguard Worker   DoubleDouble dx = fputil::exact_add(t1, t2);
163*71db0c75SAndroid Build Coastguard Worker   dx.lo += t3;
164*71db0c75SAndroid Build Coastguard Worker 
165*71db0c75SAndroid Build Coastguard Worker   // Degree-6 Taylor polynomial approximation in double-double precision.
166*71db0c75SAndroid Build Coastguard Worker   // | p - exp(x) | < 2^-100.
167*71db0c75SAndroid Build Coastguard Worker   DoubleDouble p = poly_approx_dd(dx);
168*71db0c75SAndroid Build Coastguard Worker 
169*71db0c75SAndroid Build Coastguard Worker   // Error bounds: 2^-99.
170*71db0c75SAndroid Build Coastguard Worker   DoubleDouble r = fputil::quick_mult(exp_mid, p);
171*71db0c75SAndroid Build Coastguard Worker 
172*71db0c75SAndroid Build Coastguard Worker   return r;
173*71db0c75SAndroid Build Coastguard Worker }
174*71db0c75SAndroid Build Coastguard Worker 
175*71db0c75SAndroid Build Coastguard Worker // Check for exceptional cases when
176*71db0c75SAndroid Build Coastguard Worker // |x| <= 2^-53 or x < log(2^-1075) or x >= 0x1.6232bdd7abcd3p+9
set_exceptional(double x)177*71db0c75SAndroid Build Coastguard Worker double set_exceptional(double x) {
178*71db0c75SAndroid Build Coastguard Worker   using FPBits = typename fputil::FPBits<double>;
179*71db0c75SAndroid Build Coastguard Worker   FPBits xbits(x);
180*71db0c75SAndroid Build Coastguard Worker 
181*71db0c75SAndroid Build Coastguard Worker   uint64_t x_u = xbits.uintval();
182*71db0c75SAndroid Build Coastguard Worker   uint64_t x_abs = xbits.abs().uintval();
183*71db0c75SAndroid Build Coastguard Worker 
184*71db0c75SAndroid Build Coastguard Worker   // |x| <= 2^-53
185*71db0c75SAndroid Build Coastguard Worker   if (x_abs <= 0x3ca0'0000'0000'0000ULL) {
186*71db0c75SAndroid Build Coastguard Worker     // exp(x) ~ 1 + x
187*71db0c75SAndroid Build Coastguard Worker     return 1 + x;
188*71db0c75SAndroid Build Coastguard Worker   }
189*71db0c75SAndroid Build Coastguard Worker 
190*71db0c75SAndroid Build Coastguard Worker   // x <= log(2^-1075) || x >= 0x1.6232bdd7abcd3p+9 or inf/nan.
191*71db0c75SAndroid Build Coastguard Worker 
192*71db0c75SAndroid Build Coastguard Worker   // x <= log(2^-1075) or -inf/nan
193*71db0c75SAndroid Build Coastguard Worker   if (x_u >= 0xc087'4910'd52d'3052ULL) {
194*71db0c75SAndroid Build Coastguard Worker     // exp(-Inf) = 0
195*71db0c75SAndroid Build Coastguard Worker     if (xbits.is_inf())
196*71db0c75SAndroid Build Coastguard Worker       return 0.0;
197*71db0c75SAndroid Build Coastguard Worker 
198*71db0c75SAndroid Build Coastguard Worker     // exp(nan) = nan
199*71db0c75SAndroid Build Coastguard Worker     if (xbits.is_nan())
200*71db0c75SAndroid Build Coastguard Worker       return x;
201*71db0c75SAndroid Build Coastguard Worker 
202*71db0c75SAndroid Build Coastguard Worker     if (fputil::quick_get_round() == FE_UPWARD)
203*71db0c75SAndroid Build Coastguard Worker       return FPBits::min_subnormal().get_val();
204*71db0c75SAndroid Build Coastguard Worker     fputil::set_errno_if_required(ERANGE);
205*71db0c75SAndroid Build Coastguard Worker     fputil::raise_except_if_required(FE_UNDERFLOW);
206*71db0c75SAndroid Build Coastguard Worker     return 0.0;
207*71db0c75SAndroid Build Coastguard Worker   }
208*71db0c75SAndroid Build Coastguard Worker 
209*71db0c75SAndroid Build Coastguard Worker   // x >= round(log(MAX_NORMAL), D, RU) = 0x1.62e42fefa39fp+9 or +inf/nan
210*71db0c75SAndroid Build Coastguard Worker   // x is finite
211*71db0c75SAndroid Build Coastguard Worker   if (x_u < 0x7ff0'0000'0000'0000ULL) {
212*71db0c75SAndroid Build Coastguard Worker     int rounding = fputil::quick_get_round();
213*71db0c75SAndroid Build Coastguard Worker     if (rounding == FE_DOWNWARD || rounding == FE_TOWARDZERO)
214*71db0c75SAndroid Build Coastguard Worker       return FPBits::max_normal().get_val();
215*71db0c75SAndroid Build Coastguard Worker 
216*71db0c75SAndroid Build Coastguard Worker     fputil::set_errno_if_required(ERANGE);
217*71db0c75SAndroid Build Coastguard Worker     fputil::raise_except_if_required(FE_OVERFLOW);
218*71db0c75SAndroid Build Coastguard Worker   }
219*71db0c75SAndroid Build Coastguard Worker   // x is +inf or nan
220*71db0c75SAndroid Build Coastguard Worker   return x + FPBits::inf().get_val();
221*71db0c75SAndroid Build Coastguard Worker }
222*71db0c75SAndroid Build Coastguard Worker 
223*71db0c75SAndroid Build Coastguard Worker } // namespace
224*71db0c75SAndroid Build Coastguard Worker 
225*71db0c75SAndroid Build Coastguard Worker LLVM_LIBC_FUNCTION(double, exp, (double x)) {
226*71db0c75SAndroid Build Coastguard Worker   using FPBits = typename fputil::FPBits<double>;
227*71db0c75SAndroid Build Coastguard Worker   FPBits xbits(x);
228*71db0c75SAndroid Build Coastguard Worker 
229*71db0c75SAndroid Build Coastguard Worker   uint64_t x_u = xbits.uintval();
230*71db0c75SAndroid Build Coastguard Worker 
231*71db0c75SAndroid Build Coastguard Worker   // Upper bound: max normal number = 2^1023 * (2 - 2^-52)
232*71db0c75SAndroid Build Coastguard Worker   // > round(log (2^1023 ( 2 - 2^-52 )), D, RU) = 0x1.62e42fefa39fp+9
233*71db0c75SAndroid Build Coastguard Worker   // > round(log (2^1023 ( 2 - 2^-52 )), D, RD) = 0x1.62e42fefa39efp+9
234*71db0c75SAndroid Build Coastguard Worker   // > round(log (2^1023 ( 2 - 2^-52 )), D, RN) = 0x1.62e42fefa39efp+9
235*71db0c75SAndroid Build Coastguard Worker   // > round(exp(0x1.62e42fefa39fp+9), D, RN) = infty
236*71db0c75SAndroid Build Coastguard Worker 
237*71db0c75SAndroid Build Coastguard Worker   // Lower bound: min denormal number / 2 = 2^-1075
238*71db0c75SAndroid Build Coastguard Worker   // > round(log(2^-1075), D, RN) = -0x1.74910d52d3052p9
239*71db0c75SAndroid Build Coastguard Worker 
240*71db0c75SAndroid Build Coastguard Worker   // Another lower bound: min normal number = 2^-1022
241*71db0c75SAndroid Build Coastguard Worker   // > round(log(2^-1022), D, RN) = -0x1.6232bdd7abcd2p9
242*71db0c75SAndroid Build Coastguard Worker 
243*71db0c75SAndroid Build Coastguard Worker   // x < log(2^-1075) or x >= 0x1.6232bdd7abcd3p+9 or |x| < 2^-53.
244*71db0c75SAndroid Build Coastguard Worker   if (LIBC_UNLIKELY(x_u >= 0xc0874910d52d3052 ||
245*71db0c75SAndroid Build Coastguard Worker                     (x_u < 0xbca0000000000000 && x_u >= 0x40862e42fefa39f0) ||
246*71db0c75SAndroid Build Coastguard Worker                     x_u < 0x3ca0000000000000)) {
247*71db0c75SAndroid Build Coastguard Worker     return set_exceptional(x);
248*71db0c75SAndroid Build Coastguard Worker   }
249*71db0c75SAndroid Build Coastguard Worker 
250*71db0c75SAndroid Build Coastguard Worker   // Now log(2^-1075) <= x <= -2^-53 or 2^-53 <= x < log(2^1023 * (2 - 2^-52))
251*71db0c75SAndroid Build Coastguard Worker 
252*71db0c75SAndroid Build Coastguard Worker   // Range reduction:
253*71db0c75SAndroid Build Coastguard Worker   // Let x = log(2) * (hi + mid1 + mid2) + lo
254*71db0c75SAndroid Build Coastguard Worker   // in which:
255*71db0c75SAndroid Build Coastguard Worker   //   hi is an integer
256*71db0c75SAndroid Build Coastguard Worker   //   mid1 * 2^6 is an integer
257*71db0c75SAndroid Build Coastguard Worker   //   mid2 * 2^12 is an integer
258*71db0c75SAndroid Build Coastguard Worker   // then:
259*71db0c75SAndroid Build Coastguard Worker   //   exp(x) = 2^hi * 2^(mid1) * 2^(mid2) * exp(lo).
260*71db0c75SAndroid Build Coastguard Worker   // With this formula:
261*71db0c75SAndroid Build Coastguard Worker   //   - multiplying by 2^hi is exact and cheap, simply by adding the exponent
262*71db0c75SAndroid Build Coastguard Worker   //     field.
263*71db0c75SAndroid Build Coastguard Worker   //   - 2^(mid1) and 2^(mid2) are stored in 2 x 64-element tables.
264*71db0c75SAndroid Build Coastguard Worker   //   - exp(lo) ~ 1 + lo + a0 * lo^2 + ...
265*71db0c75SAndroid Build Coastguard Worker   //
266*71db0c75SAndroid Build Coastguard Worker   // They can be defined by:
267*71db0c75SAndroid Build Coastguard Worker   //   hi + mid1 + mid2 = 2^(-12) * round(2^12 * log_2(e) * x)
268*71db0c75SAndroid Build Coastguard Worker   // If we store L2E = round(log2(e), D, RN), then:
269*71db0c75SAndroid Build Coastguard Worker   //   log2(e) - L2E ~ 1.5 * 2^(-56)
270*71db0c75SAndroid Build Coastguard Worker   // So the errors when computing in double precision is:
271*71db0c75SAndroid Build Coastguard Worker   //   | x * 2^12 * log_2(e) - D(x * 2^12 * L2E) | <=
272*71db0c75SAndroid Build Coastguard Worker   //  <= | x * 2^12 * log_2(e) - x * 2^12 * L2E | +
273*71db0c75SAndroid Build Coastguard Worker   //     + | x * 2^12 * L2E - D(x * 2^12 * L2E) |
274*71db0c75SAndroid Build Coastguard Worker   //  <= 2^12 * ( |x| * 1.5 * 2^-56 + eps(x))  for RN
275*71db0c75SAndroid Build Coastguard Worker   //     2^12 * ( |x| * 1.5 * 2^-56 + 2*eps(x)) for other rounding modes.
276*71db0c75SAndroid Build Coastguard Worker   // So if:
277*71db0c75SAndroid Build Coastguard Worker   //   hi + mid1 + mid2 = 2^(-12) * round(x * 2^12 * L2E) is computed entirely
278*71db0c75SAndroid Build Coastguard Worker   // in double precision, the reduced argument:
279*71db0c75SAndroid Build Coastguard Worker   //   lo = x - log(2) * (hi + mid1 + mid2) is bounded by:
280*71db0c75SAndroid Build Coastguard Worker   //   |lo| <= 2^-13 + (|x| * 1.5 * 2^-56 + 2*eps(x))
281*71db0c75SAndroid Build Coastguard Worker   //         < 2^-13 + (1.5 * 2^9 * 1.5 * 2^-56 + 2*2^(9 - 52))
282*71db0c75SAndroid Build Coastguard Worker   //         < 2^-13 + 2^-41
283*71db0c75SAndroid Build Coastguard Worker   //
284*71db0c75SAndroid Build Coastguard Worker 
285*71db0c75SAndroid Build Coastguard Worker   // The following trick computes the round(x * L2E) more efficiently
286*71db0c75SAndroid Build Coastguard Worker   // than using the rounding instructions, with the tradeoff for less accuracy,
287*71db0c75SAndroid Build Coastguard Worker   // and hence a slightly larger range for the reduced argument `lo`.
288*71db0c75SAndroid Build Coastguard Worker   //
289*71db0c75SAndroid Build Coastguard Worker   // To be precise, since |x| < |log(2^-1075)| < 1.5 * 2^9,
290*71db0c75SAndroid Build Coastguard Worker   //   |x * 2^12 * L2E| < 1.5 * 2^9 * 1.5 < 2^23,
291*71db0c75SAndroid Build Coastguard Worker   // So we can fit the rounded result round(x * 2^12 * L2E) in int32_t.
292*71db0c75SAndroid Build Coastguard Worker   // Thus, the goal is to be able to use an additional addition and fixed width
293*71db0c75SAndroid Build Coastguard Worker   // shift to get an int32_t representing round(x * 2^12 * L2E).
294*71db0c75SAndroid Build Coastguard Worker   //
295*71db0c75SAndroid Build Coastguard Worker   // Assuming int32_t using 2-complement representation, since the mantissa part
296*71db0c75SAndroid Build Coastguard Worker   // of a double precision is unsigned with the leading bit hidden, if we add an
297*71db0c75SAndroid Build Coastguard Worker   // extra constant C = 2^e1 + 2^e2 with e1 > e2 >= 2^25 to the product, the
298*71db0c75SAndroid Build Coastguard Worker   // part that are < 2^e2 in resulted mantissa of (x*2^12*L2E + C) can be
299*71db0c75SAndroid Build Coastguard Worker   // considered as a proper 2-complement representations of x*2^12*L2E.
300*71db0c75SAndroid Build Coastguard Worker   //
301*71db0c75SAndroid Build Coastguard Worker   // One small problem with this approach is that the sum (x*2^12*L2E + C) in
302*71db0c75SAndroid Build Coastguard Worker   // double precision is rounded to the least significant bit of the dorminant
303*71db0c75SAndroid Build Coastguard Worker   // factor C.  In order to minimize the rounding errors from this addition, we
304*71db0c75SAndroid Build Coastguard Worker   // want to minimize e1.  Another constraint that we want is that after
305*71db0c75SAndroid Build Coastguard Worker   // shifting the mantissa so that the least significant bit of int32_t
306*71db0c75SAndroid Build Coastguard Worker   // corresponds to the unit bit of (x*2^12*L2E), the sign is correct without
307*71db0c75SAndroid Build Coastguard Worker   // any adjustment.  So combining these 2 requirements, we can choose
308*71db0c75SAndroid Build Coastguard Worker   //   C = 2^33 + 2^32, so that the sign bit corresponds to 2^31 bit, and hence
309*71db0c75SAndroid Build Coastguard Worker   // after right shifting the mantissa, the resulting int32_t has correct sign.
310*71db0c75SAndroid Build Coastguard Worker   // With this choice of C, the number of mantissa bits we need to shift to the
311*71db0c75SAndroid Build Coastguard Worker   // right is: 52 - 33 = 19.
312*71db0c75SAndroid Build Coastguard Worker   //
313*71db0c75SAndroid Build Coastguard Worker   // Moreover, since the integer right shifts are equivalent to rounding down,
314*71db0c75SAndroid Build Coastguard Worker   // we can add an extra 0.5 so that it will become round-to-nearest, tie-to-
315*71db0c75SAndroid Build Coastguard Worker   // +infinity.  So in particular, we can compute:
316*71db0c75SAndroid Build Coastguard Worker   //   hmm = x * 2^12 * L2E + C,
317*71db0c75SAndroid Build Coastguard Worker   // where C = 2^33 + 2^32 + 2^-1, then if
318*71db0c75SAndroid Build Coastguard Worker   //   k = int32_t(lower 51 bits of double(x * 2^12 * L2E + C) >> 19),
319*71db0c75SAndroid Build Coastguard Worker   // the reduced argument:
320*71db0c75SAndroid Build Coastguard Worker   //   lo = x - log(2) * 2^-12 * k is bounded by:
321*71db0c75SAndroid Build Coastguard Worker   //   |lo| <= 2^-13 + 2^-41 + 2^-12*2^-19
322*71db0c75SAndroid Build Coastguard Worker   //         = 2^-13 + 2^-31 + 2^-41.
323*71db0c75SAndroid Build Coastguard Worker   //
324*71db0c75SAndroid Build Coastguard Worker   // Finally, notice that k only uses the mantissa of x * 2^12 * L2E, so the
325*71db0c75SAndroid Build Coastguard Worker   // exponent 2^12 is not needed.  So we can simply define
326*71db0c75SAndroid Build Coastguard Worker   //   C = 2^(33 - 12) + 2^(32 - 12) + 2^(-13 - 12), and
327*71db0c75SAndroid Build Coastguard Worker   //   k = int32_t(lower 51 bits of double(x * L2E + C) >> 19).
328*71db0c75SAndroid Build Coastguard Worker 
329*71db0c75SAndroid Build Coastguard Worker   // Rounding errors <= 2^-31 + 2^-41.
330*71db0c75SAndroid Build Coastguard Worker   double tmp = fputil::multiply_add(x, LOG2_E, 0x1.8000'0000'4p21);
331*71db0c75SAndroid Build Coastguard Worker   int k = static_cast<int>(cpp::bit_cast<uint64_t>(tmp) >> 19);
332*71db0c75SAndroid Build Coastguard Worker   double kd = static_cast<double>(k);
333*71db0c75SAndroid Build Coastguard Worker 
334*71db0c75SAndroid Build Coastguard Worker   uint32_t idx1 = (k >> 6) & 0x3f;
335*71db0c75SAndroid Build Coastguard Worker   uint32_t idx2 = k & 0x3f;
336*71db0c75SAndroid Build Coastguard Worker   int hi = k >> 12;
337*71db0c75SAndroid Build Coastguard Worker 
338*71db0c75SAndroid Build Coastguard Worker   bool denorm = (hi <= -1022);
339*71db0c75SAndroid Build Coastguard Worker 
340*71db0c75SAndroid Build Coastguard Worker   DoubleDouble exp_mid1{EXP2_MID1[idx1].mid, EXP2_MID1[idx1].hi};
341*71db0c75SAndroid Build Coastguard Worker   DoubleDouble exp_mid2{EXP2_MID2[idx2].mid, EXP2_MID2[idx2].hi};
342*71db0c75SAndroid Build Coastguard Worker 
343*71db0c75SAndroid Build Coastguard Worker   DoubleDouble exp_mid = fputil::quick_mult(exp_mid1, exp_mid2);
344*71db0c75SAndroid Build Coastguard Worker 
345*71db0c75SAndroid Build Coastguard Worker   // |x - (hi + mid1 + mid2) * log(2) - dx| < 2^11 * eps(M_LOG_2_EXP2_M12.lo)
346*71db0c75SAndroid Build Coastguard Worker   //                                        = 2^11 * 2^-13 * 2^-52
347*71db0c75SAndroid Build Coastguard Worker   //                                        = 2^-54.
348*71db0c75SAndroid Build Coastguard Worker   // |dx| < 2^-13 + 2^-30.
349*71db0c75SAndroid Build Coastguard Worker   double lo_h = fputil::multiply_add(kd, MLOG_2_EXP2_M12_HI, x); // exact
350*71db0c75SAndroid Build Coastguard Worker   double dx = fputil::multiply_add(kd, MLOG_2_EXP2_M12_MID, lo_h);
351*71db0c75SAndroid Build Coastguard Worker 
352*71db0c75SAndroid Build Coastguard Worker   // We use the degree-4 Taylor polynomial to approximate exp(lo):
353*71db0c75SAndroid Build Coastguard Worker   //   exp(lo) ~ 1 + lo + lo^2 / 2 + lo^3 / 6 + lo^4 / 24 = 1 + lo * P(lo)
354*71db0c75SAndroid Build Coastguard Worker   // So that the errors are bounded by:
355*71db0c75SAndroid Build Coastguard Worker   //   |P(lo) - expm1(lo)/lo| < |lo|^4 / 64 < 2^(-13 * 4) / 64 = 2^-58
356*71db0c75SAndroid Build Coastguard Worker   // Let P_ be an evaluation of P where all intermediate computations are in
357*71db0c75SAndroid Build Coastguard Worker   // double precision.  Using either Horner's or Estrin's schemes, the evaluated
358*71db0c75SAndroid Build Coastguard Worker   // errors can be bounded by:
359*71db0c75SAndroid Build Coastguard Worker   //      |P_(dx) - P(dx)| < 2^-51
360*71db0c75SAndroid Build Coastguard Worker   //   => |dx * P_(dx) - expm1(lo) | < 1.5 * 2^-64
361*71db0c75SAndroid Build Coastguard Worker   //   => 2^(mid1 + mid2) * |dx * P_(dx) - expm1(lo)| < 1.5 * 2^-63.
362*71db0c75SAndroid Build Coastguard Worker   // Since we approximate
363*71db0c75SAndroid Build Coastguard Worker   //   2^(mid1 + mid2) ~ exp_mid.hi + exp_mid.lo,
364*71db0c75SAndroid Build Coastguard Worker   // We use the expression:
365*71db0c75SAndroid Build Coastguard Worker   //    (exp_mid.hi + exp_mid.lo) * (1 + dx * P_(dx)) ~
366*71db0c75SAndroid Build Coastguard Worker   //  ~ exp_mid.hi + (exp_mid.hi * dx * P_(dx) + exp_mid.lo)
367*71db0c75SAndroid Build Coastguard Worker   // with errors bounded by 1.5 * 2^-63.
368*71db0c75SAndroid Build Coastguard Worker 
369*71db0c75SAndroid Build Coastguard Worker   double mid_lo = dx * exp_mid.hi;
370*71db0c75SAndroid Build Coastguard Worker 
371*71db0c75SAndroid Build Coastguard Worker   // Approximate expm1(dx)/dx ~ 1 + dx / 2 + dx^2 / 6 + dx^3 / 24.
372*71db0c75SAndroid Build Coastguard Worker   double p = poly_approx_d(dx);
373*71db0c75SAndroid Build Coastguard Worker 
374*71db0c75SAndroid Build Coastguard Worker   double lo = fputil::multiply_add(p, mid_lo, exp_mid.lo);
375*71db0c75SAndroid Build Coastguard Worker 
376*71db0c75SAndroid Build Coastguard Worker   if (LIBC_UNLIKELY(denorm)) {
377*71db0c75SAndroid Build Coastguard Worker     if (auto r = ziv_test_denorm(hi, exp_mid.hi, lo, ERR_D);
378*71db0c75SAndroid Build Coastguard Worker         LIBC_LIKELY(r.has_value()))
379*71db0c75SAndroid Build Coastguard Worker       return r.value();
380*71db0c75SAndroid Build Coastguard Worker   } else {
381*71db0c75SAndroid Build Coastguard Worker     double upper = exp_mid.hi + (lo + ERR_D);
382*71db0c75SAndroid Build Coastguard Worker     double lower = exp_mid.hi + (lo - ERR_D);
383*71db0c75SAndroid Build Coastguard Worker 
384*71db0c75SAndroid Build Coastguard Worker     if (LIBC_LIKELY(upper == lower)) {
385*71db0c75SAndroid Build Coastguard Worker       // to multiply by 2^hi, a fast way is to simply add hi to the exponent
386*71db0c75SAndroid Build Coastguard Worker       // field.
387*71db0c75SAndroid Build Coastguard Worker       int64_t exp_hi = static_cast<int64_t>(hi) << FPBits::FRACTION_LEN;
388*71db0c75SAndroid Build Coastguard Worker       double r = cpp::bit_cast<double>(exp_hi + cpp::bit_cast<int64_t>(upper));
389*71db0c75SAndroid Build Coastguard Worker       return r;
390*71db0c75SAndroid Build Coastguard Worker     }
391*71db0c75SAndroid Build Coastguard Worker   }
392*71db0c75SAndroid Build Coastguard Worker 
393*71db0c75SAndroid Build Coastguard Worker   // Use double-double
394*71db0c75SAndroid Build Coastguard Worker   DoubleDouble r_dd = exp_double_double(x, kd, exp_mid);
395*71db0c75SAndroid Build Coastguard Worker 
396*71db0c75SAndroid Build Coastguard Worker   if (LIBC_UNLIKELY(denorm)) {
397*71db0c75SAndroid Build Coastguard Worker     if (auto r = ziv_test_denorm(hi, r_dd.hi, r_dd.lo, ERR_DD);
398*71db0c75SAndroid Build Coastguard Worker         LIBC_LIKELY(r.has_value()))
399*71db0c75SAndroid Build Coastguard Worker       return r.value();
400*71db0c75SAndroid Build Coastguard Worker   } else {
401*71db0c75SAndroid Build Coastguard Worker     double upper_dd = r_dd.hi + (r_dd.lo + ERR_DD);
402*71db0c75SAndroid Build Coastguard Worker     double lower_dd = r_dd.hi + (r_dd.lo - ERR_DD);
403*71db0c75SAndroid Build Coastguard Worker 
404*71db0c75SAndroid Build Coastguard Worker     if (LIBC_LIKELY(upper_dd == lower_dd)) {
405*71db0c75SAndroid Build Coastguard Worker       int64_t exp_hi = static_cast<int64_t>(hi) << FPBits::FRACTION_LEN;
406*71db0c75SAndroid Build Coastguard Worker       double r =
407*71db0c75SAndroid Build Coastguard Worker           cpp::bit_cast<double>(exp_hi + cpp::bit_cast<int64_t>(upper_dd));
408*71db0c75SAndroid Build Coastguard Worker       return r;
409*71db0c75SAndroid Build Coastguard Worker     }
410*71db0c75SAndroid Build Coastguard Worker   }
411*71db0c75SAndroid Build Coastguard Worker 
412*71db0c75SAndroid Build Coastguard Worker   // Use 128-bit precision
413*71db0c75SAndroid Build Coastguard Worker   Float128 r_f128 = exp_f128(x, kd, idx1, idx2);
414*71db0c75SAndroid Build Coastguard Worker 
415*71db0c75SAndroid Build Coastguard Worker   return static_cast<double>(r_f128);
416*71db0c75SAndroid Build Coastguard Worker }
417*71db0c75SAndroid Build Coastguard Worker 
418*71db0c75SAndroid Build Coastguard Worker } // namespace LIBC_NAMESPACE_DECL
419