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[libc] Add sinpif16 function #110994
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1dd121c
add sinpif16 function implementation and unittests
wldfngrs d7bbbc2
clang format changes
wldfngrs 3255302
Merge branch 'llvm:main' into add_sinpif16_function
wldfngrs 663fbd5
add implementation of sinpif16 function
wldfngrs 0f038fe
clang format
wldfngrs c54defc
clang format
wldfngrs a8f7484
nit changes and review suggestions
wldfngrs 3f2282c
fix dependency misspell
wldfngrs 6617bf9
updated function implementation to better handle extremely small non-…
wldfngrs 348eea1
added mpfr exhaustive test
wldfngrs 0ad7d39
minor fixes
wldfngrs 0f4af07
changed 0.0 to 0x0.0p0, fixed MPFRUtils computation of mpfr_sinpi(x) …
wldfngrs 24f1173
update mpfr_sinpi implementation
wldfngrs cacbf19
minor fix
wldfngrs a543283
minor fixes, documentation update
wldfngrs 743625d
update pr, test branch against bot
wldfngrs 9f85a85
formatting
wldfngrs ffcbd23
clang-format fix
wldfngrs d6fad4c
clang-format
wldfngrs 06c9b4b
fixed float16 cast, nit formatting
wldfngrs 87faa10
sort dependencies
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Original file line number | Diff line number | Diff line change |
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//===-- Half-precision sinpif function ------------------------------------===// | ||
// | ||
// 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 | ||
// | ||
//===----------------------------------------------------------------------===// | ||
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#include "src/math/sinpif16.h" | ||
#include "src/__support/FPUtil/FEnvImpl.h" | ||
#include "src/__support/FPUtil/FPBits.h" | ||
#include "src/__support/FPUtil/PolyEval.h" | ||
#include "src/__support/FPUtil/cast.h" | ||
#include "src/__support/FPUtil/multiply_add.h" | ||
#include "src/__support/FPUtil/nearest_integer.h" | ||
#include "src/__support/common.h" | ||
#include "src/__support/macros/config.h" | ||
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namespace LIBC_NAMESPACE_DECL { | ||
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// Lookup table for sin(k * pi / 32) with k = 0, ..., 63. | ||
// Table is generated with Sollya as follows: | ||
// > display = hexadecimmal; | ||
// > for k from 0 to 63 do { round(sin(k * pi/32), SG, RN); }; | ||
static constexpr float SIN_K_PI_OVER_32[64] = { | ||
0x0.0p0, 0x1.917a6cp-4, 0x1.8f8b84p-3, 0x1.294062p-2, | ||
0x1.87de2ap-2, 0x1.e2b5d4p-2, 0x1.1c73b4p-1, 0x1.44cf32p-1, | ||
0x1.6a09e6p-1, 0x1.8bc806p-1, 0x1.a9b662p-1, 0x1.c38b3p-1, | ||
0x1.d906bcp-1, 0x1.e9f416p-1, 0x1.f6297cp-1, 0x1.fd88dap-1, | ||
0x1p0, 0x1.fd88dap-1, 0x1.f6297cp-1, 0x1.e9f416p-1, | ||
0x1.d906bcp-1, 0x1.c38b3p-1, 0x1.a9b662p-1, 0x1.8bc806p-1, | ||
0x1.6a09e6p-1, 0x1.44cf32p-1, 0x1.1c73b4p-1, 0x1.e2b5d4p-2, | ||
0x1.87de2ap-2, 0x1.294062p-2, 0x1.8f8b84p-3, 0x1.917a6cp-4, | ||
0x0.0p0, -0x1.917a6cp-4, -0x1.8f8b84p-3, -0x1.294062p-2, | ||
-0x1.87de2ap-2, -0x1.e2b5d4p-2, -0x1.1c73b4p-1, -0x1.44cf32p-1, | ||
-0x1.6a09e6p-1, -0x1.8bc806p-1, -0x1.a9b662p-1, -0x1.c38b3p-1, | ||
-0x1.d906bcp-1, -0x1.e9f416p-1, -0x1.f6297ep-1, -0x1.fd88dap-1, | ||
-0x1p0, -0x1.fd88dap-1, -0x1.f6297cp-1, -0x1.e9f416p-1, | ||
-0x1.d906bcp-1, -0x1.c38b3p-1, -0x1.a9b662p-1, -0x1.8bc806p-1, | ||
-0x1.6a09e6p-1, -0x1.44cf32p-1, -0x1.1c73b4p-1, -0x1.e2b5d4p-2, | ||
-0x1.87de2ap-2, -0x1.294062p-2, -0x1.8f8b84p-3, -0x1.917a6cp-4}; | ||
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static LIBC_INLINE int32_t range_reduction(float x, float &y) { | ||
float kf = fputil::nearest_integer(x * 32); | ||
y = fputil::multiply_add<float>(x, 32.0, -kf); | ||
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return static_cast<int32_t>(kf); | ||
} | ||
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LLVM_LIBC_FUNCTION(float16, sinpif16, (float16 x)) { | ||
using FPBits = typename fputil::FPBits<float16>; | ||
FPBits xbits(x); | ||
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uint16_t x_u = xbits.uintval(); | ||
uint16_t x_abs = x_u & 0x7fff; | ||
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// Range reduction: | ||
// For |x| > 1/32, we perform range reduction as follows: | ||
// Find k and y such that: | ||
// x = (k + y) * 1/32 | ||
// k is an integer | ||
// |y| < 0.5 | ||
// | ||
// This is done by performing: | ||
// k = round(x * 32) | ||
// y = x * 32 - k | ||
// | ||
// Once k and y are computed, we then deduce the answer by the sine of sum | ||
// formula: | ||
// sin(x * pi) = sin((k + y) * pi/32) | ||
// = sin(k * pi/32) * cos(y * pi/32) + sin (y * pi/32) * cos (k * | ||
// pi/32) | ||
// The values of sin(k * pi/32) and cos (k * pi/32) for k = 0...63 are | ||
// precomputed and stored using a vector of 64 single precision floats. sin(y | ||
// * pi/32) and cos(y * pi/32) are computed using degree-9 chebyshev | ||
// polynomials generated by Sollya. | ||
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// For signed zeros | ||
if (LIBC_UNLIKELY(x_abs == 0U)) | ||
return x; | ||
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// Numbers greater or equal to 2^10 are integers, or infinity, or NaN | ||
if (LIBC_UNLIKELY(x_abs >= 0x6400)) { | ||
// Check for NaN or infinity values | ||
if (LIBC_UNLIKELY(x_abs >= 0x7c00)) { | ||
// If value is equal to infinity | ||
if (x_abs == 0x7c00) { | ||
fputil::set_errno_if_required(EDOM); | ||
fputil::raise_except_if_required(FE_INVALID); | ||
} | ||
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return x + FPBits::quiet_nan().get_val(); | ||
} | ||
return FPBits::zero(xbits.sign()).get_val(); | ||
} | ||
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float f32 = x; | ||
float y; | ||
int32_t k = range_reduction(f32, y); | ||
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float sin_k = SIN_K_PI_OVER_32[k & 63]; | ||
float cos_k = SIN_K_PI_OVER_32[(k + 16) & 63]; | ||
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// Recall; | ||
// sin(x * pi/32) = sin((k + y) * pi/32) | ||
// = sin(y * pi/32) * cos(k * pi/32) + cos(y * pi/32) * sin(k * | ||
// pi/32) Recall, after range reduction, -0.5 <= y <= 0.5. For very small | ||
// values of y, calculating sin(y * p/32) can be inaccurate. Generating a | ||
// polynomial for sin(y * p/32)/y instead significantly reduces the relative | ||
// errors. | ||
float ysq = y * y; | ||
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// Degree-6 minimax even polynomial for sin(y*pi/32)/y generated by Sollya | ||
// with: > Q = fpminimax(sin(y*pi/32)/y, [|0, 2, 4, 6|], [|SG...|], [0, 0.5]); | ||
float sin_y = y * fputil::polyeval(ysq, 0x1.921fb6p-4f, -0x1.4aeabcp-13f, | ||
0x1.a03354p-21f, -0x1.ad02d2p-20f); | ||
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// Note that cosm1_y = cos(y*pi/32) - 1 = cos_y - 1 | ||
// Derivation: | ||
// sin(x * pi) = sin((k + y) * pi/32) | ||
// = sin_y * cos_k + cos_y * sin_k | ||
// = cos_k * sin_y + sin_k * (1 + cos_y - 1) | ||
// Degree-6 minimax even polynomial for cos(y*pi/32) generated by Sollya with: | ||
// > P = fpminimax(cos(y*pi/32), [|0, 2, 4, 6|],[|1, SG...|], [0, 0.5]); | ||
float cosm1_y = ysq * fputil::polyeval(ysq, -0x1.3bd3ccp-8f, 0x1.03a61ap-18f, | ||
0x1.a6f7a2p-29f); | ||
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if (LIBC_UNLIKELY(sin_y == 0 && sin_k == 0)) | ||
return FPBits::zero(xbits.sign()).get_val(); | ||
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// Since, cosm1_y = cos_y - 1, therefore: | ||
// sin(x * pi) = cos_k * sin_y + sin_k + (cosm1_y * sin_k) | ||
return fputil::cast<float16>(fputil::multiply_add( | ||
sin_y, cos_k, fputil::multiply_add(cosm1_y, sin_k, sin_k))); | ||
} | ||
} // namespace LIBC_NAMESPACE_DECL |
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Original file line number | Diff line number | Diff line change |
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@@ -0,0 +1,21 @@ | ||
//===-- Implementation header for sinpif16 ---------------------*- C++ -*-===// | ||
// | ||
// Part of the LLVM Project, under the Apache Licese v2.0 with LLVM Exceptions. | ||
// See https://llvm.org/LICENSE.txt for license information. | ||
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception | ||
// | ||
//===---------------------------------------------------------------------===// | ||
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#ifndef LLVM_LIBC_SRC_MATH_SINPIF16_H | ||
#define LLVM_LIBC_SRC_MATH_SINPIF16_H | ||
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#include "src/__support/macros/config.h" | ||
#include "src/__support/macros/properties/types.h" | ||
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namespace LIBC_NAMESPACE_DECL { | ||
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float16 sinpif16(float16 x); | ||
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} // namespace LIBC_NAMESPACE_DECL | ||
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#endif // LLVM_LIBC_SRC_MATH_SINPIF16_H |
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Original file line number | Diff line number | Diff line change |
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//===-- Exhaustive test for sinpif16 --------------------------------------===// | ||
// | ||
// 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 | ||
// | ||
//===---------------------------------------------------------------------===// | ||
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#include "src/math/sinpif16.h" | ||
#include "test/UnitTest/FPMatcher.h" | ||
#include "test/UnitTest/Test.h" | ||
#include "utils/MPFRWrapper/MPFRUtils.h" | ||
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using LlvmLibcSinpif16Test = LIBC_NAMESPACE::testing::FPTest<float16>; | ||
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namespace mpfr = LIBC_NAMESPACE::testing::mpfr; | ||
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// Range: [0, Inf] | ||
static constexpr uint16_t POS_START = 0x0000U; | ||
static constexpr uint16_t POS_STOP = 0x7c00U; | ||
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// Range: [-Inf, 0] | ||
static constexpr uint16_t NEG_START = 0x8000U; | ||
static constexpr uint16_t NEG_STOP = 0xfc00U; | ||
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TEST_F(LlvmLibcSinpif16Test, PositiveRange) { | ||
for (uint16_t v = POS_START; v <= POS_STOP; ++v) { | ||
float16 x = FPBits(v).get_val(); | ||
EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Sinpi, x, | ||
LIBC_NAMESPACE::sinpif16(x), 0.5); | ||
} | ||
} | ||
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TEST_F(LlvmLibcSinpif16Test, NegativeRange) { | ||
for (uint16_t v = NEG_START; v <= NEG_STOP; ++v) { | ||
float16 x = FPBits(v).get_val(); | ||
EXPECT_MPFR_MATCH_ALL_ROUNDING(mpfr::Operation::Sinpi, x, | ||
LIBC_NAMESPACE::sinpif16(x), 0.5); | ||
} | ||
} |
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Original file line number | Diff line number | Diff line change |
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@@ -0,0 +1,42 @@ | ||
//===-- Unittests for sinpif16 --------------------------------------------===// | ||
// | ||
// 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 | ||
// | ||
//===----------------------------------------------------------------------===// | ||
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#include "src/errno/libc_errno.h" | ||
#include "src/math/sinpif16.h" | ||
#include "test/UnitTest/FPMatcher.h" | ||
#include "test/UnitTest/Test.h" | ||
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using LlvmLibcSinpif16Test = LIBC_NAMESPACE::testing::FPTest<float16>; | ||
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TEST_F(LlvmLibcSinpif16Test, SpecialNumbers) { | ||
LIBC_NAMESPACE::libc_errno = 0; | ||
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EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinpif16(aNaN)); | ||
EXPECT_MATH_ERRNO(0); | ||
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EXPECT_FP_EQ(zero, LIBC_NAMESPACE::sinpif16(zero)); | ||
EXPECT_MATH_ERRNO(0); | ||
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EXPECT_FP_EQ(neg_zero, LIBC_NAMESPACE::sinpif16(neg_zero)); | ||
EXPECT_MATH_ERRNO(0); | ||
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EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinpif16(inf)); | ||
EXPECT_MATH_ERRNO(EDOM); | ||
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EXPECT_FP_EQ(aNaN, LIBC_NAMESPACE::sinpif16(neg_inf)); | ||
EXPECT_MATH_ERRNO(EDOM); | ||
} | ||
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TEST_F(LlvmLibcSinpif16Test, Integers) { | ||
EXPECT_FP_EQ(neg_zero, LIBC_NAMESPACE::sinpif16(-0x420)); | ||
EXPECT_FP_EQ(neg_zero, LIBC_NAMESPACE::sinpif16(-0x1p+10)); | ||
EXPECT_FP_EQ(neg_zero, LIBC_NAMESPACE::sinpif16(-0x1.4p+14)); | ||
EXPECT_FP_EQ(zero, LIBC_NAMESPACE::sinpif16(0x420)); | ||
EXPECT_FP_EQ(zero, LIBC_NAMESPACE::sinpif16(0x1.cp+15)); | ||
EXPECT_FP_EQ(zero, LIBC_NAMESPACE::sinpif16(0x1.cp+7)); | ||
} |
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