xref: /aosp_15_r20/external/eigen/test/half_float.cpp (revision bf2c37156dfe67e5dfebd6d394bad8b2ab5804d4)
1*bf2c3715SXin Li // This file is part of Eigen, a lightweight C++ template library
2*bf2c3715SXin Li // for linear algebra.
3*bf2c3715SXin Li //
4*bf2c3715SXin Li // This Source Code Form is subject to the terms of the Mozilla
5*bf2c3715SXin Li // Public License v. 2.0. If a copy of the MPL was not distributed
6*bf2c3715SXin Li // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
7*bf2c3715SXin Li 
8*bf2c3715SXin Li #include <sstream>
9*bf2c3715SXin Li 
10*bf2c3715SXin Li #include "main.h"
11*bf2c3715SXin Li 
12*bf2c3715SXin Li #include <Eigen/src/Core/arch/Default/Half.h>
13*bf2c3715SXin Li 
14*bf2c3715SXin Li #define VERIFY_HALF_BITS_EQUAL(h, bits) \
15*bf2c3715SXin Li   VERIFY_IS_EQUAL((numext::bit_cast<numext::uint16_t>(h)), (static_cast<numext::uint16_t>(bits)))
16*bf2c3715SXin Li 
17*bf2c3715SXin Li // Make sure it's possible to forward declare Eigen::half
18*bf2c3715SXin Li namespace Eigen {
19*bf2c3715SXin Li struct half;
20*bf2c3715SXin Li }
21*bf2c3715SXin Li 
22*bf2c3715SXin Li using Eigen::half;
23*bf2c3715SXin Li 
test_conversion()24*bf2c3715SXin Li void test_conversion()
25*bf2c3715SXin Li {
26*bf2c3715SXin Li   using Eigen::half_impl::__half_raw;
27*bf2c3715SXin Li 
28*bf2c3715SXin Li   // Round-trip bit-cast with uint16.
29*bf2c3715SXin Li   VERIFY_IS_EQUAL(
30*bf2c3715SXin Li     numext::bit_cast<half>(numext::bit_cast<numext::uint16_t>(half(1.0f))),
31*bf2c3715SXin Li     half(1.0f));
32*bf2c3715SXin Li   VERIFY_IS_EQUAL(
33*bf2c3715SXin Li     numext::bit_cast<half>(numext::bit_cast<numext::uint16_t>(half(0.5f))),
34*bf2c3715SXin Li     half(0.5f));
35*bf2c3715SXin Li   VERIFY_IS_EQUAL(
36*bf2c3715SXin Li     numext::bit_cast<half>(numext::bit_cast<numext::uint16_t>(half(-0.33333f))),
37*bf2c3715SXin Li     half(-0.33333f));
38*bf2c3715SXin Li    VERIFY_IS_EQUAL(
39*bf2c3715SXin Li     numext::bit_cast<half>(numext::bit_cast<numext::uint16_t>(half(0.0f))),
40*bf2c3715SXin Li     half(0.0f));
41*bf2c3715SXin Li 
42*bf2c3715SXin Li   // Conversion from float.
43*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(1.0f), 0x3c00);
44*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0.5f), 0x3800);
45*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0.33333f), 0x3555);
46*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0.0f), 0x0000);
47*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(-0.0f), 0x8000);
48*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(65504.0f), 0x7bff);
49*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(65536.0f), 0x7c00);  // Becomes infinity.
50*bf2c3715SXin Li 
51*bf2c3715SXin Li   // Denormals.
52*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(-5.96046e-08f), 0x8001);
53*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(5.96046e-08f), 0x0001);
54*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(1.19209e-07f), 0x0002);
55*bf2c3715SXin Li 
56*bf2c3715SXin Li   // Verify round-to-nearest-even behavior.
57*bf2c3715SXin Li   float val1 = float(half(__half_raw(0x3c00)));
58*bf2c3715SXin Li   float val2 = float(half(__half_raw(0x3c01)));
59*bf2c3715SXin Li   float val3 = float(half(__half_raw(0x3c02)));
60*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0.5f * (val1 + val2)), 0x3c00);
61*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0.5f * (val2 + val3)), 0x3c02);
62*bf2c3715SXin Li 
63*bf2c3715SXin Li   // Conversion from int.
64*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(-1), 0xbc00);
65*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(0), 0x0000);
66*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(1), 0x3c00);
67*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(2), 0x4000);
68*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(3), 0x4200);
69*bf2c3715SXin Li 
70*bf2c3715SXin Li   // Conversion from bool.
71*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(false), 0x0000);
72*bf2c3715SXin Li   VERIFY_HALF_BITS_EQUAL(half(true), 0x3c00);
73*bf2c3715SXin Li 
74*bf2c3715SXin Li   // Conversion to float.
75*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(half(__half_raw(0x0000))), 0.0f);
76*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(half(__half_raw(0x3c00))), 1.0f);
77*bf2c3715SXin Li 
78*bf2c3715SXin Li   // Denormals.
79*bf2c3715SXin Li   VERIFY_IS_APPROX(float(half(__half_raw(0x8001))), -5.96046e-08f);
80*bf2c3715SXin Li   VERIFY_IS_APPROX(float(half(__half_raw(0x0001))), 5.96046e-08f);
81*bf2c3715SXin Li   VERIFY_IS_APPROX(float(half(__half_raw(0x0002))), 1.19209e-07f);
82*bf2c3715SXin Li 
83*bf2c3715SXin Li   // NaNs and infinities.
84*bf2c3715SXin Li   VERIFY(!(numext::isinf)(float(half(65504.0f))));  // Largest finite number.
85*bf2c3715SXin Li   VERIFY(!(numext::isnan)(float(half(0.0f))));
86*bf2c3715SXin Li   VERIFY((numext::isinf)(float(half(__half_raw(0xfc00)))));
87*bf2c3715SXin Li   VERIFY((numext::isnan)(float(half(__half_raw(0xfc01)))));
88*bf2c3715SXin Li   VERIFY((numext::isinf)(float(half(__half_raw(0x7c00)))));
89*bf2c3715SXin Li   VERIFY((numext::isnan)(float(half(__half_raw(0x7c01)))));
90*bf2c3715SXin Li 
91*bf2c3715SXin Li #if !EIGEN_COMP_MSVC
92*bf2c3715SXin Li   // Visual Studio errors out on divisions by 0
93*bf2c3715SXin Li   VERIFY((numext::isnan)(float(half(0.0 / 0.0))));
94*bf2c3715SXin Li   VERIFY((numext::isinf)(float(half(1.0 / 0.0))));
95*bf2c3715SXin Li   VERIFY((numext::isinf)(float(half(-1.0 / 0.0))));
96*bf2c3715SXin Li #endif
97*bf2c3715SXin Li 
98*bf2c3715SXin Li   // Exactly same checks as above, just directly on the half representation.
99*bf2c3715SXin Li   VERIFY(!(numext::isinf)(half(__half_raw(0x7bff))));
100*bf2c3715SXin Li   VERIFY(!(numext::isnan)(half(__half_raw(0x0000))));
101*bf2c3715SXin Li   VERIFY((numext::isinf)(half(__half_raw(0xfc00))));
102*bf2c3715SXin Li   VERIFY((numext::isnan)(half(__half_raw(0xfc01))));
103*bf2c3715SXin Li   VERIFY((numext::isinf)(half(__half_raw(0x7c00))));
104*bf2c3715SXin Li   VERIFY((numext::isnan)(half(__half_raw(0x7c01))));
105*bf2c3715SXin Li 
106*bf2c3715SXin Li #if !EIGEN_COMP_MSVC
107*bf2c3715SXin Li   // Visual Studio errors out on divisions by 0
108*bf2c3715SXin Li   VERIFY((numext::isnan)(half(0.0 / 0.0)));
109*bf2c3715SXin Li   VERIFY((numext::isinf)(half(1.0 / 0.0)));
110*bf2c3715SXin Li   VERIFY((numext::isinf)(half(-1.0 / 0.0)));
111*bf2c3715SXin Li #endif
112*bf2c3715SXin Li 
113*bf2c3715SXin Li   // Conversion to bool
114*bf2c3715SXin Li   VERIFY(!static_cast<bool>(half(0.0)));
115*bf2c3715SXin Li   VERIFY(!static_cast<bool>(half(-0.0)));
116*bf2c3715SXin Li   VERIFY(static_cast<bool>(half(__half_raw(0x7bff))));
117*bf2c3715SXin Li   VERIFY(static_cast<bool>(half(-0.33333)));
118*bf2c3715SXin Li   VERIFY(static_cast<bool>(half(1.0)));
119*bf2c3715SXin Li   VERIFY(static_cast<bool>(half(-1.0)));
120*bf2c3715SXin Li   VERIFY(static_cast<bool>(half(-5.96046e-08f)));
121*bf2c3715SXin Li }
122*bf2c3715SXin Li 
test_numtraits()123*bf2c3715SXin Li void test_numtraits()
124*bf2c3715SXin Li {
125*bf2c3715SXin Li   std::cout << "epsilon       = " << NumTraits<half>::epsilon() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(NumTraits<half>::epsilon()) << ")" << std::endl;
126*bf2c3715SXin Li   std::cout << "highest       = " << NumTraits<half>::highest() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(NumTraits<half>::highest()) << ")" << std::endl;
127*bf2c3715SXin Li   std::cout << "lowest        = " << NumTraits<half>::lowest() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(NumTraits<half>::lowest()) << ")" << std::endl;
128*bf2c3715SXin Li   std::cout << "min           = " << (std::numeric_limits<half>::min)() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(half((std::numeric_limits<half>::min)())) << ")" << std::endl;
129*bf2c3715SXin Li   std::cout << "denorm min    = " << (std::numeric_limits<half>::denorm_min)() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(half((std::numeric_limits<half>::denorm_min)())) << ")" << std::endl;
130*bf2c3715SXin Li   std::cout << "infinity      = " << NumTraits<half>::infinity() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(NumTraits<half>::infinity()) << ")" << std::endl;
131*bf2c3715SXin Li   std::cout << "quiet nan     = " << NumTraits<half>::quiet_NaN() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(NumTraits<half>::quiet_NaN()) << ")" << std::endl;
132*bf2c3715SXin Li   std::cout << "signaling nan = " << std::numeric_limits<half>::signaling_NaN() << "  (0x" << std::hex << numext::bit_cast<numext::uint16_t>(std::numeric_limits<half>::signaling_NaN()) << ")" << std::endl;
133*bf2c3715SXin Li 
134*bf2c3715SXin Li   VERIFY(NumTraits<half>::IsSigned);
135*bf2c3715SXin Li 
136*bf2c3715SXin Li   VERIFY_IS_EQUAL(
137*bf2c3715SXin Li     numext::bit_cast<numext::uint16_t>(std::numeric_limits<half>::infinity()),
138*bf2c3715SXin Li     numext::bit_cast<numext::uint16_t>(half(std::numeric_limits<float>::infinity())) );
139*bf2c3715SXin Li   // There is no guarantee that casting a 32-bit NaN to 16-bit has a precise
140*bf2c3715SXin Li   // bit pattern.  We test that it is in fact a NaN, then test the signaling
141*bf2c3715SXin Li   // bit (msb of significand is 1 for quiet, 0 for signaling).
142*bf2c3715SXin Li   const numext::uint16_t HALF_QUIET_BIT = 0x0200;
143*bf2c3715SXin Li   VERIFY(
144*bf2c3715SXin Li     (numext::isnan)(std::numeric_limits<half>::quiet_NaN())
145*bf2c3715SXin Li     && (numext::isnan)(half(std::numeric_limits<float>::quiet_NaN()))
146*bf2c3715SXin Li     && ((numext::bit_cast<numext::uint16_t>(std::numeric_limits<half>::quiet_NaN()) & HALF_QUIET_BIT) > 0)
147*bf2c3715SXin Li     && ((numext::bit_cast<numext::uint16_t>(half(std::numeric_limits<float>::quiet_NaN())) & HALF_QUIET_BIT) > 0) );
148*bf2c3715SXin Li   // After a cast to half, a signaling NaN may become non-signaling
149*bf2c3715SXin Li   // (e.g. in the case of casting float to native __fp16). Thus, we check that
150*bf2c3715SXin Li   // both are NaN, and that only the `numeric_limits` version is signaling.
151*bf2c3715SXin Li   VERIFY(
152*bf2c3715SXin Li     (numext::isnan)(std::numeric_limits<half>::signaling_NaN())
153*bf2c3715SXin Li     && (numext::isnan)(half(std::numeric_limits<float>::signaling_NaN()))
154*bf2c3715SXin Li     && ((numext::bit_cast<numext::uint16_t>(std::numeric_limits<half>::signaling_NaN()) & HALF_QUIET_BIT) == 0) );
155*bf2c3715SXin Li 
156*bf2c3715SXin Li   VERIFY( (std::numeric_limits<half>::min)() > half(0.f) );
157*bf2c3715SXin Li   VERIFY( (std::numeric_limits<half>::denorm_min)() > half(0.f) );
158*bf2c3715SXin Li   VERIFY( (std::numeric_limits<half>::min)()/half(2) > half(0.f) );
159*bf2c3715SXin Li   VERIFY_IS_EQUAL( (std::numeric_limits<half>::denorm_min)()/half(2), half(0.f) );
160*bf2c3715SXin Li }
161*bf2c3715SXin Li 
test_arithmetic()162*bf2c3715SXin Li void test_arithmetic()
163*bf2c3715SXin Li {
164*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(half(2) + half(2)), 4);
165*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(half(2) + half(-2)), 0);
166*bf2c3715SXin Li   VERIFY_IS_APPROX(float(half(0.33333f) + half(0.66667f)), 1.0f);
167*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(half(2.0f) * half(-5.5f)), -11.0f);
168*bf2c3715SXin Li   VERIFY_IS_APPROX(float(half(1.0f) / half(3.0f)), 0.33333f);
169*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(-half(4096.0f)), -4096.0f);
170*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(-half(-4096.0f)), 4096.0f);
171*bf2c3715SXin Li 
172*bf2c3715SXin Li   half x(3);
173*bf2c3715SXin Li   half y = ++x;
174*bf2c3715SXin Li   VERIFY_IS_EQUAL(x, half(4));
175*bf2c3715SXin Li   VERIFY_IS_EQUAL(y, half(4));
176*bf2c3715SXin Li   y = --x;
177*bf2c3715SXin Li   VERIFY_IS_EQUAL(x, half(3));
178*bf2c3715SXin Li   VERIFY_IS_EQUAL(y, half(3));
179*bf2c3715SXin Li   y = x++;
180*bf2c3715SXin Li   VERIFY_IS_EQUAL(x, half(4));
181*bf2c3715SXin Li   VERIFY_IS_EQUAL(y, half(3));
182*bf2c3715SXin Li   y = x--;
183*bf2c3715SXin Li   VERIFY_IS_EQUAL(x, half(3));
184*bf2c3715SXin Li   VERIFY_IS_EQUAL(y, half(4));
185*bf2c3715SXin Li }
186*bf2c3715SXin Li 
test_comparison()187*bf2c3715SXin Li void test_comparison()
188*bf2c3715SXin Li {
189*bf2c3715SXin Li   VERIFY(half(1.0f) > half(0.5f));
190*bf2c3715SXin Li   VERIFY(half(0.5f) < half(1.0f));
191*bf2c3715SXin Li   VERIFY(!(half(1.0f) < half(0.5f)));
192*bf2c3715SXin Li   VERIFY(!(half(0.5f) > half(1.0f)));
193*bf2c3715SXin Li 
194*bf2c3715SXin Li   VERIFY(!(half(4.0f) > half(4.0f)));
195*bf2c3715SXin Li   VERIFY(!(half(4.0f) < half(4.0f)));
196*bf2c3715SXin Li 
197*bf2c3715SXin Li   VERIFY(!(half(0.0f) < half(-0.0f)));
198*bf2c3715SXin Li   VERIFY(!(half(-0.0f) < half(0.0f)));
199*bf2c3715SXin Li   VERIFY(!(half(0.0f) > half(-0.0f)));
200*bf2c3715SXin Li   VERIFY(!(half(-0.0f) > half(0.0f)));
201*bf2c3715SXin Li 
202*bf2c3715SXin Li   VERIFY(half(0.2f) > half(-1.0f));
203*bf2c3715SXin Li   VERIFY(half(-1.0f) < half(0.2f));
204*bf2c3715SXin Li   VERIFY(half(-16.0f) < half(-15.0f));
205*bf2c3715SXin Li 
206*bf2c3715SXin Li   VERIFY(half(1.0f) == half(1.0f));
207*bf2c3715SXin Li   VERIFY(half(1.0f) != half(2.0f));
208*bf2c3715SXin Li 
209*bf2c3715SXin Li   // Comparisons with NaNs and infinities.
210*bf2c3715SXin Li #if !EIGEN_COMP_MSVC
211*bf2c3715SXin Li   // Visual Studio errors out on divisions by 0
212*bf2c3715SXin Li   VERIFY(!(half(0.0 / 0.0) == half(0.0 / 0.0)));
213*bf2c3715SXin Li   VERIFY(half(0.0 / 0.0) != half(0.0 / 0.0));
214*bf2c3715SXin Li 
215*bf2c3715SXin Li   VERIFY(!(half(1.0) == half(0.0 / 0.0)));
216*bf2c3715SXin Li   VERIFY(!(half(1.0) < half(0.0 / 0.0)));
217*bf2c3715SXin Li   VERIFY(!(half(1.0) > half(0.0 / 0.0)));
218*bf2c3715SXin Li   VERIFY(half(1.0) != half(0.0 / 0.0));
219*bf2c3715SXin Li 
220*bf2c3715SXin Li   VERIFY(half(1.0) < half(1.0 / 0.0));
221*bf2c3715SXin Li   VERIFY(half(1.0) > half(-1.0 / 0.0));
222*bf2c3715SXin Li #endif
223*bf2c3715SXin Li }
224*bf2c3715SXin Li 
test_basic_functions()225*bf2c3715SXin Li void test_basic_functions()
226*bf2c3715SXin Li {
227*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::abs(half(3.5f))), 3.5f);
228*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(abs(half(3.5f))), 3.5f);
229*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::abs(half(-3.5f))), 3.5f);
230*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(abs(half(-3.5f))), 3.5f);
231*bf2c3715SXin Li 
232*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::floor(half(3.5f))), 3.0f);
233*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(floor(half(3.5f))), 3.0f);
234*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::floor(half(-3.5f))), -4.0f);
235*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(floor(half(-3.5f))), -4.0f);
236*bf2c3715SXin Li 
237*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::ceil(half(3.5f))), 4.0f);
238*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(ceil(half(3.5f))), 4.0f);
239*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::ceil(half(-3.5f))), -3.0f);
240*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(ceil(half(-3.5f))), -3.0f);
241*bf2c3715SXin Li 
242*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::sqrt(half(0.0f))), 0.0f);
243*bf2c3715SXin Li   VERIFY_IS_APPROX(float(sqrt(half(0.0f))), 0.0f);
244*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::sqrt(half(4.0f))), 2.0f);
245*bf2c3715SXin Li   VERIFY_IS_APPROX(float(sqrt(half(4.0f))), 2.0f);
246*bf2c3715SXin Li 
247*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::pow(half(0.0f), half(1.0f))), 0.0f);
248*bf2c3715SXin Li   VERIFY_IS_APPROX(float(pow(half(0.0f), half(1.0f))), 0.0f);
249*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::pow(half(2.0f), half(2.0f))), 4.0f);
250*bf2c3715SXin Li   VERIFY_IS_APPROX(float(pow(half(2.0f), half(2.0f))), 4.0f);
251*bf2c3715SXin Li 
252*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::exp(half(0.0f))), 1.0f);
253*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(exp(half(0.0f))), 1.0f);
254*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::exp(half(EIGEN_PI))), 20.f + float(EIGEN_PI));
255*bf2c3715SXin Li   VERIFY_IS_APPROX(float(exp(half(EIGEN_PI))), 20.f + float(EIGEN_PI));
256*bf2c3715SXin Li 
257*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::expm1(half(0.0f))), 0.0f);
258*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(expm1(half(0.0f))), 0.0f);
259*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::expm1(half(2.0f))), 6.3890561f);
260*bf2c3715SXin Li   VERIFY_IS_APPROX(float(expm1(half(2.0f))), 6.3890561f);
261*bf2c3715SXin Li 
262*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::log(half(1.0f))), 0.0f);
263*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(log(half(1.0f))), 0.0f);
264*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::log(half(10.0f))), 2.30273f);
265*bf2c3715SXin Li   VERIFY_IS_APPROX(float(log(half(10.0f))), 2.30273f);
266*bf2c3715SXin Li 
267*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(numext::log1p(half(0.0f))), 0.0f);
268*bf2c3715SXin Li   VERIFY_IS_EQUAL(float(log1p(half(0.0f))), 0.0f);
269*bf2c3715SXin Li   VERIFY_IS_APPROX(float(numext::log1p(half(10.0f))), 2.3978953f);
270*bf2c3715SXin Li   VERIFY_IS_APPROX(float(log1p(half(10.0f))), 2.3978953f);
271*bf2c3715SXin Li 
272*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::fmod(half(5.3f), half(2.0f)), half(1.3f));
273*bf2c3715SXin Li   VERIFY_IS_APPROX(fmod(half(5.3f), half(2.0f)), half(1.3f));
274*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::fmod(half(-18.5f), half(-4.2f)), half(-1.7f));
275*bf2c3715SXin Li   VERIFY_IS_APPROX(fmod(half(-18.5f), half(-4.2f)), half(-1.7f));
276*bf2c3715SXin Li }
277*bf2c3715SXin Li 
test_trigonometric_functions()278*bf2c3715SXin Li void test_trigonometric_functions()
279*bf2c3715SXin Li {
280*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::cos(half(0.0f)), half(cosf(0.0f)));
281*bf2c3715SXin Li   VERIFY_IS_APPROX(cos(half(0.0f)), half(cosf(0.0f)));
282*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::cos(half(EIGEN_PI)), half(cosf(EIGEN_PI)));
283*bf2c3715SXin Li   // VERIFY_IS_APPROX(numext::cos(half(EIGEN_PI/2)), half(cosf(EIGEN_PI/2)));
284*bf2c3715SXin Li   // VERIFY_IS_APPROX(numext::cos(half(3*EIGEN_PI/2)), half(cosf(3*EIGEN_PI/2)));
285*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::cos(half(3.5f)), half(cosf(3.5f)));
286*bf2c3715SXin Li 
287*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::sin(half(0.0f)), half(sinf(0.0f)));
288*bf2c3715SXin Li   VERIFY_IS_APPROX(sin(half(0.0f)), half(sinf(0.0f)));
289*bf2c3715SXin Li   //  VERIFY_IS_APPROX(numext::sin(half(EIGEN_PI)), half(sinf(EIGEN_PI)));
290*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::sin(half(EIGEN_PI/2)), half(sinf(EIGEN_PI/2)));
291*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::sin(half(3*EIGEN_PI/2)), half(sinf(3*EIGEN_PI/2)));
292*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::sin(half(3.5f)), half(sinf(3.5f)));
293*bf2c3715SXin Li 
294*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::tan(half(0.0f)), half(tanf(0.0f)));
295*bf2c3715SXin Li   VERIFY_IS_APPROX(tan(half(0.0f)), half(tanf(0.0f)));
296*bf2c3715SXin Li   //  VERIFY_IS_APPROX(numext::tan(half(EIGEN_PI)), half(tanf(EIGEN_PI)));
297*bf2c3715SXin Li   //  VERIFY_IS_APPROX(numext::tan(half(EIGEN_PI/2)), half(tanf(EIGEN_PI/2)));
298*bf2c3715SXin Li   //VERIFY_IS_APPROX(numext::tan(half(3*EIGEN_PI/2)), half(tanf(3*EIGEN_PI/2)));
299*bf2c3715SXin Li   VERIFY_IS_APPROX(numext::tan(half(3.5f)), half(tanf(3.5f)));
300*bf2c3715SXin Li }
301*bf2c3715SXin Li 
test_array()302*bf2c3715SXin Li void test_array()
303*bf2c3715SXin Li {
304*bf2c3715SXin Li   typedef Array<half,1,Dynamic> ArrayXh;
305*bf2c3715SXin Li   Index size = internal::random<Index>(1,10);
306*bf2c3715SXin Li   Index i = internal::random<Index>(0,size-1);
307*bf2c3715SXin Li   ArrayXh a1 = ArrayXh::Random(size), a2 = ArrayXh::Random(size);
308*bf2c3715SXin Li   VERIFY_IS_APPROX( a1+a1, half(2)*a1 );
309*bf2c3715SXin Li   VERIFY( (a1.abs() >= half(0)).all() );
310*bf2c3715SXin Li   VERIFY_IS_APPROX( (a1*a1).sqrt(), a1.abs() );
311*bf2c3715SXin Li 
312*bf2c3715SXin Li   VERIFY( ((a1.min)(a2) <= (a1.max)(a2)).all() );
313*bf2c3715SXin Li   a1(i) = half(-10.);
314*bf2c3715SXin Li   VERIFY_IS_EQUAL( a1.minCoeff(), half(-10.) );
315*bf2c3715SXin Li   a1(i) = half(10.);
316*bf2c3715SXin Li   VERIFY_IS_EQUAL( a1.maxCoeff(), half(10.) );
317*bf2c3715SXin Li 
318*bf2c3715SXin Li   std::stringstream ss;
319*bf2c3715SXin Li   ss << a1;
320*bf2c3715SXin Li }
321*bf2c3715SXin Li 
test_product()322*bf2c3715SXin Li void test_product()
323*bf2c3715SXin Li {
324*bf2c3715SXin Li   typedef Matrix<half,Dynamic,Dynamic> MatrixXh;
325*bf2c3715SXin Li   Index rows  = internal::random<Index>(1,EIGEN_TEST_MAX_SIZE);
326*bf2c3715SXin Li   Index cols  = internal::random<Index>(1,EIGEN_TEST_MAX_SIZE);
327*bf2c3715SXin Li   Index depth = internal::random<Index>(1,EIGEN_TEST_MAX_SIZE);
328*bf2c3715SXin Li   MatrixXh Ah = MatrixXh::Random(rows,depth);
329*bf2c3715SXin Li   MatrixXh Bh = MatrixXh::Random(depth,cols);
330*bf2c3715SXin Li   MatrixXh Ch = MatrixXh::Random(rows,cols);
331*bf2c3715SXin Li   MatrixXf Af = Ah.cast<float>();
332*bf2c3715SXin Li   MatrixXf Bf = Bh.cast<float>();
333*bf2c3715SXin Li   MatrixXf Cf = Ch.cast<float>();
334*bf2c3715SXin Li   VERIFY_IS_APPROX(Ch.noalias()+=Ah*Bh, (Cf.noalias()+=Af*Bf).cast<half>());
335*bf2c3715SXin Li }
336*bf2c3715SXin Li 
EIGEN_DECLARE_TEST(half_float)337*bf2c3715SXin Li EIGEN_DECLARE_TEST(half_float)
338*bf2c3715SXin Li {
339*bf2c3715SXin Li   CALL_SUBTEST(test_numtraits());
340*bf2c3715SXin Li   for(int i = 0; i < g_repeat; i++) {
341*bf2c3715SXin Li     CALL_SUBTEST(test_conversion());
342*bf2c3715SXin Li     CALL_SUBTEST(test_arithmetic());
343*bf2c3715SXin Li     CALL_SUBTEST(test_comparison());
344*bf2c3715SXin Li     CALL_SUBTEST(test_basic_functions());
345*bf2c3715SXin Li     CALL_SUBTEST(test_trigonometric_functions());
346*bf2c3715SXin Li     CALL_SUBTEST(test_array());
347*bf2c3715SXin Li     CALL_SUBTEST(test_product());
348*bf2c3715SXin Li   }
349*bf2c3715SXin Li }
350