| //===----------------------------------------------------------------------===// |
| // |
| // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
| // See https://llvm.org/LICENSE.txt for license information. |
| // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception |
| // |
| //===----------------------------------------------------------------------===// |
| /// |
| /// \file |
| /// Float-only implementation of expf. |
| /// |
| //===----------------------------------------------------------------------===// |
| |
| #ifndef LLVM_LIBC_SRC___SUPPORT_MATH_EXPF_FLOAT_EVAL_H |
| #define LLVM_LIBC_SRC___SUPPORT_MATH_EXPF_FLOAT_EVAL_H |
| |
| #include "src/__support/FPUtil/FEnvImpl.h" |
| #include "src/__support/FPUtil/FPBits.h" |
| #include "src/__support/FPUtil/double_double.h" |
| #include "src/__support/FPUtil/multiply_add.h" |
| #include "src/__support/FPUtil/nearest_integer.h" |
| #include "src/__support/FPUtil/rounding_mode.h" |
| #include "src/__support/common.h" |
| #include "src/__support/macros/config.h" |
| #include "src/__support/macros/optimization.h" |
| #include "src/__support/macros/properties/cpu_features.h" |
| #include "src/__support/math/exp2f_float_utils.h" |
| |
| namespace LIBC_NAMESPACE_DECL { |
| namespace math { |
| namespace float_eval { |
| |
| LIBC_INLINE float expf(float x) { |
| using FPBits = fputil::FPBits<float>; |
| FPBits xbits(x); |
| |
| uint32_t x_u = xbits.uintval(); |
| uint32_t x_abs = x_u & 0x7fff'ffffU; |
| |
| // When |x| >= 89, |x| < 2^-25, or x is nan |
| if (LIBC_UNLIKELY(x_abs >= 0x42b2'0000U || x_abs <= 0x3280'0000U)) { |
| // |x| < 2^-25 |
| if (xbits.get_biased_exponent() <= 101) { |
| return 1.0f + x; |
| } |
| |
| // When x < log(2^-150) or nan |
| if (xbits.uintval() >= 0xc2cf'f1b5U) { |
| // exp(-Inf) = 0 |
| if (xbits.is_inf()) |
| return 0.0f; |
| // exp(nan) = nan |
| if (xbits.is_nan()) |
| return x; |
| #ifndef LIBC_MATH_HAS_ASSUME_ROUND_NEAREST_ONLY |
| if (fputil::fenv_is_round_up()) |
| return FPBits::min_subnormal().get_val(); |
| #endif // LIBC_MATH_HAS_ASSUME_ROUND_NEAREST_ONLY |
| fputil::set_errno_if_required(ERANGE); |
| fputil::raise_except_if_required(FE_UNDERFLOW); |
| return 0.0f; |
| } |
| // x >= 89 or nan |
| if (xbits.is_pos() && (xbits.uintval() >= 0x42b2'0000)) { |
| // x is finite |
| if (xbits.uintval() < 0x7f80'0000U) { |
| #ifndef LIBC_MATH_HAS_ASSUME_ROUND_NEAREST_ONLY |
| int rounding = fputil::quick_get_round(); |
| if (rounding == FE_DOWNWARD || rounding == FE_TOWARDZERO) |
| return FPBits::max_normal().get_val(); |
| #endif // LIBC_MATH_HAS_ASSUME_ROUND_NEAREST_ONLY |
| |
| fputil::set_errno_if_required(ERANGE); |
| fputil::raise_except_if_required(FE_OVERFLOW); |
| } |
| // x is +inf or nan |
| return x + FPBits::inf().get_val(); |
| } |
| } |
| |
| // Range reduction: |
| // k = round(x * log2(e)) |
| // x * log2(e) = k + u, with |u| <= 0.5 |
| // e^x = 2^(k + u) = 2^k * 2^u |
| #if defined(LIBC_TARGET_CPU_HAS_FMA_FLOAT) |
| // Constants generated by Sollya with: |
| // > display = hexadecimal; |
| // > hi = round(log2(exp(1)), SG, RN); |
| // > lo = round(log2(exp(1)) - hi, SG, RN); |
| constexpr fputil::FloatFloat LOG2_E = {/*lo=*/0x1.4ae0cp-26f, |
| /*hi=*/0x1.715476p+0f}; |
| |
| float kf = fputil::nearest_integer(x * LOG2_E.hi); |
| int k = static_cast<int>(kf); |
| |
| float u_hi = fputil::multiply_add(x, LOG2_E.hi, -kf); |
| float u = fputil::multiply_add(x, LOG2_E.lo, u_hi); |
| #else // !LIBC_TARGET_CPU_HAS_FMA_FLOAT |
| // Cody-Waite reduction for non-FMA targets: |
| // Constants generated by Sollya with: |
| // > display = hexadecimal; |
| // > LOG2_E = round(log2(exp(1)), SG, RN); |
| // > LOG_2_HI = round(log(2), 12, RN); |
| // > LOG_2_LO = round(log(2) - LOG_2_HI, SG, RN); |
| constexpr float LOG2_E = 0x1.715476p+0f; |
| constexpr float LOG_2_HI = 0x1.62ep-1f; |
| constexpr float LOG_2_LO = 0x1.0bfbe8p-15f; |
| |
| float kf = fputil::nearest_integer(x * LOG2_E); |
| int k = static_cast<int>(kf); |
| |
| float v_hi = fputil::multiply_add(-kf, LOG_2_HI, x); |
| float v = fputil::multiply_add(-kf, LOG_2_LO, v_hi); |
| |
| // Convert reduced argument to base-2: u = v * log2(e) |
| float u = v * LOG2_E; |
| #endif // LIBC_TARGET_CPU_HAS_FMA_FLOAT |
| |
| return exp2f_eval(u, k); |
| } |
| |
| } // namespace float_eval |
| } // namespace math |
| } // namespace LIBC_NAMESPACE_DECL |
| |
| #endif // LLVM_LIBC_SRC___SUPPORT_MATH_EXPF_FLOAT_EVAL_H |