blob: 54e8195f991f7a9f2f00888467b7a4a3b4965bc7 [file] [log] [blame]
Austin Schuh1e69f942020-11-14 15:06:14 -08001/*----------------------------------------------------------------------------*/
2/* Copyright (c) 2019-2020 FIRST. All Rights Reserved. */
3/* Open Source Software - may be modified and shared by FRC teams. The code */
4/* must be accompanied by the FIRST BSD license file in the root directory of */
5/* the project. */
6/*----------------------------------------------------------------------------*/
7
8#include <array>
9#include <chrono>
10#include <string>
11#include <type_traits>
12
13#include "gtest/gtest.h"
14#include "units/acceleration.h"
15#include "units/angle.h"
16#include "units/angular_acceleration.h"
17#include "units/angular_velocity.h"
18#include "units/area.h"
19#include "units/capacitance.h"
20#include "units/charge.h"
21#include "units/concentration.h"
22#include "units/conductance.h"
23#include "units/constants.h"
24#include "units/current.h"
25#include "units/data.h"
26#include "units/data_transfer_rate.h"
27#include "units/density.h"
28#include "units/dimensionless.h"
29#include "units/energy.h"
30#include "units/force.h"
31#include "units/frequency.h"
32#include "units/illuminance.h"
33#include "units/impedance.h"
34#include "units/inductance.h"
35#include "units/length.h"
36#include "units/luminous_flux.h"
37#include "units/luminous_intensity.h"
38#include "units/magnetic_field_strength.h"
39#include "units/magnetic_flux.h"
40#include "units/mass.h"
41#include "units/math.h"
42#include "units/power.h"
43#include "units/pressure.h"
44#include "units/radiation.h"
45#include "units/solid_angle.h"
46#include "units/substance.h"
47#include "units/temperature.h"
48#include "units/time.h"
49#include "units/torque.h"
50#include "units/velocity.h"
51#include "units/voltage.h"
52#include "units/volume.h"
53
54using namespace units::acceleration;
55using namespace units::angle;
56using namespace units::angular_acceleration;
57using namespace units::angular_velocity;
58using namespace units::area;
59using namespace units::capacitance;
60using namespace units::charge;
61using namespace units::concentration;
62using namespace units::conductance;
63using namespace units::data;
64using namespace units::data_transfer_rate;
65using namespace units::density;
66using namespace units::dimensionless;
67using namespace units::energy;
68using namespace units::frequency;
69using namespace units::illuminance;
70using namespace units::impedance;
71using namespace units::inductance;
72using namespace units::length;
73using namespace units::luminous_flux;
74using namespace units::luminous_intensity;
75using namespace units::magnetic_field_strength;
76using namespace units::magnetic_flux;
77using namespace units::mass;
78using namespace units::math;
79using namespace units::power;
80using namespace units::pressure;
81using namespace units::radiation;
82using namespace units::solid_angle;
83using namespace units::temperature;
84using namespace units::time;
85using namespace units::torque;
86using namespace units::velocity;
87using namespace units::voltage;
88using namespace units::volume;
89using namespace units;
90
91#if !defined(_MSC_VER) || _MSC_VER > 1800
92using namespace units::literals;
93#endif
94
95namespace {
96
97class TypeTraits : public ::testing::Test {
98 protected:
99 TypeTraits() {}
100 virtual ~TypeTraits() {}
101 virtual void SetUp() {}
102 virtual void TearDown() {}
103};
104
105class UnitManipulators : public ::testing::Test {
106 protected:
107 UnitManipulators() {}
108 virtual ~UnitManipulators() {}
109 virtual void SetUp() {}
110 virtual void TearDown() {}
111};
112
113class UnitContainer : public ::testing::Test {
114 protected:
115 UnitContainer() {}
116 virtual ~UnitContainer() {}
117 virtual void SetUp() {}
118 virtual void TearDown() {}
119};
120
121class UnitConversion : public ::testing::Test {
122 protected:
123 UnitConversion() {}
124 virtual ~UnitConversion() {}
125 virtual void SetUp() {}
126 virtual void TearDown() {}
127};
128
129class UnitMath : public ::testing::Test {
130 protected:
131 UnitMath() {}
132 virtual ~UnitMath() {}
133 virtual void SetUp() {}
134 virtual void TearDown() {}
135};
136
137class CompileTimeArithmetic : public ::testing::Test {
138 protected:
139 CompileTimeArithmetic() {}
140 virtual ~CompileTimeArithmetic() {}
141 virtual void SetUp() {}
142 virtual void TearDown() {}
143};
144
145class Constexpr : public ::testing::Test {
146 protected:
147 Constexpr() {}
148 virtual ~Constexpr() {}
149 virtual void SetUp() {}
150 virtual void TearDown() {}
151};
152
153class CaseStudies : public ::testing::Test {
154 protected:
155 CaseStudies() {}
156 virtual ~CaseStudies() {}
157 virtual void SetUp() {}
158 virtual void TearDown() {}
159
160 struct RightTriangle {
161 using a = unit_value_t<meters, 3>;
162 using b = unit_value_t<meters, 4>;
163 using c = unit_value_sqrt<
164 unit_value_add<unit_value_power<a, 2>, unit_value_power<b, 2>>>;
165 };
166};
167} // namespace
168
169TEST_F(TypeTraits, isRatio) {
170 EXPECT_TRUE(traits::is_ratio<std::ratio<1>>::value);
171 EXPECT_FALSE(traits::is_ratio<double>::value);
172}
173
174TEST_F(TypeTraits, ratio_sqrt) {
175 using rt2 = ratio_sqrt<std::ratio<2>>;
176 EXPECT_LT(std::abs(std::sqrt(2 / static_cast<double>(1)) -
177 rt2::num / static_cast<double>(rt2::den)),
178 5e-9);
179
180 using rt4 = ratio_sqrt<std::ratio<4>>;
181 EXPECT_LT(std::abs(std::sqrt(4 / static_cast<double>(1)) -
182 rt4::num / static_cast<double>(rt4::den)),
183 5e-9);
184
185 using rt10 = ratio_sqrt<std::ratio<10>>;
186 EXPECT_LT(std::abs(std::sqrt(10 / static_cast<double>(1)) -
187 rt10::num / static_cast<double>(rt10::den)),
188 5e-9);
189
190 using rt30 = ratio_sqrt<std::ratio<30>>;
191 EXPECT_LT(std::abs(std::sqrt(30 / static_cast<double>(1)) -
192 rt30::num / static_cast<double>(rt30::den)),
193 5e-9);
194
195 using rt61 = ratio_sqrt<std::ratio<61>>;
196 EXPECT_LT(std::abs(std::sqrt(61 / static_cast<double>(1)) -
197 rt61::num / static_cast<double>(rt61::den)),
198 5e-9);
199
200 using rt100 = ratio_sqrt<std::ratio<100>>;
201 EXPECT_LT(std::abs(std::sqrt(100 / static_cast<double>(1)) -
202 rt100::num / static_cast<double>(rt100::den)),
203 5e-9);
204
205 using rt1000 = ratio_sqrt<std::ratio<1000>>;
206 EXPECT_LT(std::abs(std::sqrt(1000 / static_cast<double>(1)) -
207 rt1000::num / static_cast<double>(rt1000::den)),
208 5e-9);
209
210 using rt10000 = ratio_sqrt<std::ratio<10000>>;
211 EXPECT_LT(std::abs(std::sqrt(10000 / static_cast<double>(1)) -
212 rt10000::num / static_cast<double>(rt10000::den)),
213 5e-9);
214}
215
216TEST_F(TypeTraits, is_unit) {
217 EXPECT_FALSE(traits::is_unit<std::ratio<1>>::value);
218 EXPECT_FALSE(traits::is_unit<double>::value);
219 EXPECT_TRUE(traits::is_unit<meters>::value);
220 EXPECT_TRUE(traits::is_unit<feet>::value);
221 EXPECT_TRUE(traits::is_unit<degrees_squared>::value);
222 EXPECT_FALSE(traits::is_unit<meter_t>::value);
223}
224
225TEST_F(TypeTraits, is_unit_t) {
226 EXPECT_FALSE(traits::is_unit_t<std::ratio<1>>::value);
227 EXPECT_FALSE(traits::is_unit_t<double>::value);
228 EXPECT_FALSE(traits::is_unit_t<meters>::value);
229 EXPECT_FALSE(traits::is_unit_t<feet>::value);
230 EXPECT_FALSE(traits::is_unit_t<degrees_squared>::value);
231 EXPECT_TRUE(traits::is_unit_t<meter_t>::value);
232}
233
234TEST_F(TypeTraits, unit_traits) {
235 EXPECT_TRUE(
236 (std::is_same<void,
237 traits::unit_traits<double>::conversion_ratio>::value));
238 EXPECT_FALSE(
239 (std::is_same<void,
240 traits::unit_traits<meters>::conversion_ratio>::value));
241}
242
243TEST_F(TypeTraits, unit_t_traits) {
244 EXPECT_TRUE(
245 (std::is_same<void,
246 traits::unit_t_traits<double>::underlying_type>::value));
247 EXPECT_TRUE(
248 (std::is_same<UNIT_LIB_DEFAULT_TYPE,
249 traits::unit_t_traits<meter_t>::underlying_type>::value));
250 EXPECT_TRUE(
251 (std::is_same<void, traits::unit_t_traits<double>::value_type>::value));
252 EXPECT_TRUE(
253 (std::is_same<UNIT_LIB_DEFAULT_TYPE,
254 traits::unit_t_traits<meter_t>::value_type>::value));
255}
256
257TEST_F(TypeTraits, all_true) {
258 EXPECT_TRUE(all_true<true>::type::value);
259 EXPECT_TRUE((all_true<true, true>::type::value));
260 EXPECT_TRUE((all_true<true, true, true>::type::value));
261 EXPECT_FALSE(all_true<false>::type::value);
262 EXPECT_FALSE((all_true<true, false>::type::value));
263 EXPECT_FALSE((all_true<true, true, false>::type::value));
264 EXPECT_FALSE((all_true<false, false, false>::type::value));
265}
266
267TEST_F(TypeTraits, is_convertible_unit) {
268 EXPECT_TRUE((traits::is_convertible_unit<meters, meters>::value));
269 EXPECT_TRUE((traits::is_convertible_unit<meters, astronicalUnits>::value));
270 EXPECT_TRUE((traits::is_convertible_unit<meters, parsecs>::value));
271
272 EXPECT_TRUE((traits::is_convertible_unit<meters, meters>::value));
273 EXPECT_TRUE((traits::is_convertible_unit<astronicalUnits, meters>::value));
274 EXPECT_TRUE((traits::is_convertible_unit<parsecs, meters>::value));
275 EXPECT_TRUE((traits::is_convertible_unit<years, weeks>::value));
276
277 EXPECT_FALSE((traits::is_convertible_unit<meters, seconds>::value));
278 EXPECT_FALSE((traits::is_convertible_unit<seconds, meters>::value));
279 EXPECT_FALSE((traits::is_convertible_unit<years, meters>::value));
280}
281
282TEST_F(TypeTraits, inverse) {
283 double test;
284
285 using htz = inverse<seconds>;
286 bool shouldBeTrue = std::is_same<htz, hertz>::value;
287 EXPECT_TRUE(shouldBeTrue);
288
289 test = convert<inverse<celsius>, inverse<fahrenheit>>(1.0);
290 EXPECT_NEAR(5.0 / 9.0, test, 5.0e-5);
291
292 test = convert<inverse<kelvin>, inverse<fahrenheit>>(6.0);
293 EXPECT_NEAR(10.0 / 3.0, test, 5.0e-5);
294}
295
296TEST_F(TypeTraits, base_unit_of) {
297 using base = traits::base_unit_of<years>;
298 bool shouldBeTrue = std::is_same<base, category::time_unit>::value;
299
300 EXPECT_TRUE(shouldBeTrue);
301}
302
303TEST_F(TypeTraits, has_linear_scale) {
304 EXPECT_TRUE((traits::has_linear_scale<scalar_t>::value));
305 EXPECT_TRUE((traits::has_linear_scale<meter_t>::value));
306 EXPECT_TRUE((traits::has_linear_scale<foot_t>::value));
307 EXPECT_TRUE((traits::has_linear_scale<watt_t, scalar_t>::value));
308 EXPECT_TRUE((traits::has_linear_scale<scalar_t, meter_t>::value));
309 EXPECT_TRUE((traits::has_linear_scale<meters_per_second_t>::value));
310 EXPECT_FALSE((traits::has_linear_scale<dB_t>::value));
311 EXPECT_FALSE((traits::has_linear_scale<dB_t, meters_per_second_t>::value));
312}
313
314TEST_F(TypeTraits, has_decibel_scale) {
315 EXPECT_FALSE((traits::has_decibel_scale<scalar_t>::value));
316 EXPECT_FALSE((traits::has_decibel_scale<meter_t>::value));
317 EXPECT_FALSE((traits::has_decibel_scale<foot_t>::value));
318 EXPECT_TRUE((traits::has_decibel_scale<dB_t>::value));
319 EXPECT_TRUE((traits::has_decibel_scale<dBW_t>::value));
320
321 EXPECT_TRUE((traits::has_decibel_scale<dBW_t, dB_t>::value));
322 EXPECT_TRUE((traits::has_decibel_scale<dBW_t, dBm_t>::value));
323 EXPECT_TRUE((traits::has_decibel_scale<dB_t, dB_t>::value));
324 EXPECT_TRUE((traits::has_decibel_scale<dB_t, dB_t, dB_t>::value));
325 EXPECT_FALSE((traits::has_decibel_scale<dB_t, dB_t, meter_t>::value));
326 EXPECT_FALSE((traits::has_decibel_scale<meter_t, dB_t>::value));
327}
328
329TEST_F(TypeTraits, is_same_scale) {
330 EXPECT_TRUE((traits::is_same_scale<scalar_t, dimensionless_t>::value));
331 EXPECT_TRUE((traits::is_same_scale<dB_t, dBW_t>::value));
332 EXPECT_FALSE((traits::is_same_scale<dB_t, scalar_t>::value));
333}
334
335TEST_F(TypeTraits, is_dimensionless_unit) {
336 EXPECT_TRUE((traits::is_dimensionless_unit<scalar_t>::value));
337 EXPECT_TRUE((traits::is_dimensionless_unit<const scalar_t>::value));
338 EXPECT_TRUE((traits::is_dimensionless_unit<const scalar_t&>::value));
339 EXPECT_TRUE((traits::is_dimensionless_unit<dimensionless_t>::value));
340 EXPECT_TRUE((traits::is_dimensionless_unit<dB_t>::value));
341 EXPECT_TRUE((traits::is_dimensionless_unit<dB_t, scalar_t>::value));
342 EXPECT_TRUE((traits::is_dimensionless_unit<ppm_t>::value));
343 EXPECT_FALSE((traits::is_dimensionless_unit<meter_t>::value));
344 EXPECT_FALSE((traits::is_dimensionless_unit<dBW_t>::value));
345 EXPECT_FALSE((traits::is_dimensionless_unit<dBW_t, scalar_t>::value));
346}
347
348TEST_F(TypeTraits, is_length_unit) {
349 EXPECT_TRUE((traits::is_length_unit<meter>::value));
350 EXPECT_TRUE((traits::is_length_unit<cubit>::value));
351 EXPECT_FALSE((traits::is_length_unit<year>::value));
352 EXPECT_FALSE((traits::is_length_unit<double>::value));
353
354 EXPECT_TRUE((traits::is_length_unit<meter_t>::value));
355 EXPECT_TRUE((traits::is_length_unit<const meter_t>::value));
356 EXPECT_TRUE((traits::is_length_unit<const meter_t&>::value));
357 EXPECT_TRUE((traits::is_length_unit<cubit_t>::value));
358 EXPECT_FALSE((traits::is_length_unit<year_t>::value));
359 EXPECT_TRUE((traits::is_length_unit<meter_t, cubit_t>::value));
360 EXPECT_FALSE((traits::is_length_unit<meter_t, year_t>::value));
361}
362
363TEST_F(TypeTraits, is_mass_unit) {
364 EXPECT_TRUE((traits::is_mass_unit<kilogram>::value));
365 EXPECT_TRUE((traits::is_mass_unit<stone>::value));
366 EXPECT_FALSE((traits::is_mass_unit<meter>::value));
367 EXPECT_FALSE((traits::is_mass_unit<double>::value));
368
369 EXPECT_TRUE((traits::is_mass_unit<kilogram_t>::value));
370 EXPECT_TRUE((traits::is_mass_unit<const kilogram_t>::value));
371 EXPECT_TRUE((traits::is_mass_unit<const kilogram_t&>::value));
372 EXPECT_TRUE((traits::is_mass_unit<stone_t>::value));
373 EXPECT_FALSE((traits::is_mass_unit<meter_t>::value));
374 EXPECT_TRUE((traits::is_mass_unit<kilogram_t, stone_t>::value));
375 EXPECT_FALSE((traits::is_mass_unit<kilogram_t, meter_t>::value));
376}
377
378TEST_F(TypeTraits, is_time_unit) {
379 EXPECT_TRUE((traits::is_time_unit<second>::value));
380 EXPECT_TRUE((traits::is_time_unit<year>::value));
381 EXPECT_FALSE((traits::is_time_unit<meter>::value));
382 EXPECT_FALSE((traits::is_time_unit<double>::value));
383
384 EXPECT_TRUE((traits::is_time_unit<second_t>::value));
385 EXPECT_TRUE((traits::is_time_unit<const second_t>::value));
386 EXPECT_TRUE((traits::is_time_unit<const second_t&>::value));
387 EXPECT_TRUE((traits::is_time_unit<year_t>::value));
388 EXPECT_FALSE((traits::is_time_unit<meter_t>::value));
389 EXPECT_TRUE((traits::is_time_unit<second_t, year_t>::value));
390 EXPECT_FALSE((traits::is_time_unit<second_t, meter_t>::value));
391}
392
393TEST_F(TypeTraits, is_angle_unit) {
394 EXPECT_TRUE((traits::is_angle_unit<angle::radian>::value));
395 EXPECT_TRUE((traits::is_angle_unit<angle::degree>::value));
396 EXPECT_FALSE((traits::is_angle_unit<watt>::value));
397 EXPECT_FALSE((traits::is_angle_unit<double>::value));
398
399 EXPECT_TRUE((traits::is_angle_unit<angle::radian_t>::value));
400 EXPECT_TRUE((traits::is_angle_unit<const angle::radian_t>::value));
401 EXPECT_TRUE((traits::is_angle_unit<const angle::radian_t&>::value));
402 EXPECT_TRUE((traits::is_angle_unit<angle::degree_t>::value));
403 EXPECT_FALSE((traits::is_angle_unit<watt_t>::value));
404 EXPECT_TRUE((traits::is_angle_unit<angle::radian_t, angle::degree_t>::value));
405 EXPECT_FALSE((traits::is_angle_unit<angle::radian_t, watt_t>::value));
406}
407
408TEST_F(TypeTraits, is_current_unit) {
409 EXPECT_TRUE((traits::is_current_unit<current::ampere>::value));
410 EXPECT_FALSE((traits::is_current_unit<volt>::value));
411 EXPECT_FALSE((traits::is_current_unit<double>::value));
412
413 EXPECT_TRUE((traits::is_current_unit<current::ampere_t>::value));
414 EXPECT_TRUE((traits::is_current_unit<const current::ampere_t>::value));
415 EXPECT_TRUE((traits::is_current_unit<const current::ampere_t&>::value));
416 EXPECT_FALSE((traits::is_current_unit<volt_t>::value));
417 EXPECT_TRUE((traits::is_current_unit<current::ampere_t,
418 current::milliampere_t>::value));
419 EXPECT_FALSE((traits::is_current_unit<current::ampere_t, volt_t>::value));
420}
421
422TEST_F(TypeTraits, is_temperature_unit) {
423 EXPECT_TRUE((traits::is_temperature_unit<fahrenheit>::value));
424 EXPECT_TRUE((traits::is_temperature_unit<kelvin>::value));
425 EXPECT_FALSE((traits::is_temperature_unit<cubit>::value));
426 EXPECT_FALSE((traits::is_temperature_unit<double>::value));
427
428 EXPECT_TRUE((traits::is_temperature_unit<fahrenheit_t>::value));
429 EXPECT_TRUE((traits::is_temperature_unit<const fahrenheit_t>::value));
430 EXPECT_TRUE((traits::is_temperature_unit<const fahrenheit_t&>::value));
431 EXPECT_TRUE((traits::is_temperature_unit<kelvin_t>::value));
432 EXPECT_FALSE((traits::is_temperature_unit<cubit_t>::value));
433 EXPECT_TRUE((traits::is_temperature_unit<fahrenheit_t, kelvin_t>::value));
434 EXPECT_FALSE((traits::is_temperature_unit<cubit_t, fahrenheit_t>::value));
435}
436
437TEST_F(TypeTraits, is_substance_unit) {
438 EXPECT_TRUE((traits::is_substance_unit<substance::mol>::value));
439 EXPECT_FALSE((traits::is_substance_unit<year>::value));
440 EXPECT_FALSE((traits::is_substance_unit<double>::value));
441
442 EXPECT_TRUE((traits::is_substance_unit<substance::mole_t>::value));
443 EXPECT_TRUE((traits::is_substance_unit<const substance::mole_t>::value));
444 EXPECT_TRUE((traits::is_substance_unit<const substance::mole_t&>::value));
445 EXPECT_FALSE((traits::is_substance_unit<year_t>::value));
446 EXPECT_TRUE(
447 (traits::is_substance_unit<substance::mole_t, substance::mole_t>::value));
448 EXPECT_FALSE((traits::is_substance_unit<year_t, substance::mole_t>::value));
449}
450
451TEST_F(TypeTraits, is_luminous_intensity_unit) {
452 EXPECT_TRUE((traits::is_luminous_intensity_unit<candela>::value));
453 EXPECT_FALSE(
454 (traits::is_luminous_intensity_unit<units::radiation::rad>::value));
455 EXPECT_FALSE((traits::is_luminous_intensity_unit<double>::value));
456
457 EXPECT_TRUE((traits::is_luminous_intensity_unit<candela_t>::value));
458 EXPECT_TRUE((traits::is_luminous_intensity_unit<const candela_t>::value));
459 EXPECT_TRUE((traits::is_luminous_intensity_unit<const candela_t&>::value));
460 EXPECT_FALSE((traits::is_luminous_intensity_unit<rad_t>::value));
461 EXPECT_TRUE(
462 (traits::is_luminous_intensity_unit<candela_t, candela_t>::value));
463 EXPECT_FALSE((traits::is_luminous_intensity_unit<rad_t, candela_t>::value));
464}
465
466TEST_F(TypeTraits, is_solid_angle_unit) {
467 EXPECT_TRUE((traits::is_solid_angle_unit<steradian>::value));
468 EXPECT_TRUE((traits::is_solid_angle_unit<degree_squared>::value));
469 EXPECT_FALSE((traits::is_solid_angle_unit<angle::degree>::value));
470 EXPECT_FALSE((traits::is_solid_angle_unit<double>::value));
471
472 EXPECT_TRUE((traits::is_solid_angle_unit<steradian_t>::value));
473 EXPECT_TRUE((traits::is_solid_angle_unit<const steradian_t>::value));
474 EXPECT_TRUE((traits::is_solid_angle_unit<const degree_squared_t&>::value));
475 EXPECT_FALSE((traits::is_solid_angle_unit<angle::degree_t>::value));
476 EXPECT_TRUE(
477 (traits::is_solid_angle_unit<degree_squared_t, steradian_t>::value));
478 EXPECT_FALSE(
479 (traits::is_solid_angle_unit<angle::degree_t, steradian_t>::value));
480}
481
482TEST_F(TypeTraits, is_frequency_unit) {
483 EXPECT_TRUE((traits::is_frequency_unit<hertz>::value));
484 EXPECT_FALSE((traits::is_frequency_unit<second>::value));
485 EXPECT_FALSE((traits::is_frequency_unit<double>::value));
486
487 EXPECT_TRUE((traits::is_frequency_unit<hertz_t>::value));
488 EXPECT_TRUE((traits::is_frequency_unit<const hertz_t>::value));
489 EXPECT_TRUE((traits::is_frequency_unit<const hertz_t&>::value));
490 EXPECT_FALSE((traits::is_frequency_unit<second_t>::value));
491 EXPECT_TRUE((traits::is_frequency_unit<const hertz_t&, gigahertz_t>::value));
492 EXPECT_FALSE((traits::is_frequency_unit<second_t, hertz_t>::value));
493}
494
495TEST_F(TypeTraits, is_velocity_unit) {
496 EXPECT_TRUE((traits::is_velocity_unit<meters_per_second>::value));
497 EXPECT_TRUE((traits::is_velocity_unit<miles_per_hour>::value));
498 EXPECT_FALSE((traits::is_velocity_unit<meters_per_second_squared>::value));
499 EXPECT_FALSE((traits::is_velocity_unit<double>::value));
500
501 EXPECT_TRUE((traits::is_velocity_unit<meters_per_second_t>::value));
502 EXPECT_TRUE((traits::is_velocity_unit<const meters_per_second_t>::value));
503 EXPECT_TRUE((traits::is_velocity_unit<const meters_per_second_t&>::value));
504 EXPECT_TRUE((traits::is_velocity_unit<miles_per_hour_t>::value));
505 EXPECT_FALSE((traits::is_velocity_unit<meters_per_second_squared_t>::value));
506 EXPECT_TRUE(
507 (traits::is_velocity_unit<miles_per_hour_t, meters_per_second_t>::value));
508 EXPECT_FALSE((traits::is_velocity_unit<meters_per_second_squared_t,
509 meters_per_second_t>::value));
510}
511
512TEST_F(TypeTraits, is_acceleration_unit) {
513 EXPECT_TRUE((traits::is_acceleration_unit<meters_per_second_squared>::value));
514 EXPECT_TRUE(
515 (traits::is_acceleration_unit<acceleration::standard_gravity>::value));
516 EXPECT_FALSE((traits::is_acceleration_unit<inch>::value));
517 EXPECT_FALSE((traits::is_acceleration_unit<double>::value));
518
519 EXPECT_TRUE(
520 (traits::is_acceleration_unit<meters_per_second_squared_t>::value));
521 EXPECT_TRUE(
522 (traits::is_acceleration_unit<const meters_per_second_squared_t>::value));
523 EXPECT_TRUE((
524 traits::is_acceleration_unit<const meters_per_second_squared_t&>::value));
525 EXPECT_TRUE((traits::is_acceleration_unit<standard_gravity_t>::value));
526 EXPECT_FALSE((traits::is_acceleration_unit<inch_t>::value));
527 EXPECT_TRUE(
528 (traits::is_acceleration_unit<standard_gravity_t,
529 meters_per_second_squared_t>::value));
530 EXPECT_FALSE(
531 (traits::is_acceleration_unit<inch_t,
532 meters_per_second_squared_t>::value));
533}
534
535TEST_F(TypeTraits, is_force_unit) {
536 EXPECT_TRUE((traits::is_force_unit<units::force::newton>::value));
537 EXPECT_TRUE((traits::is_force_unit<units::force::dynes>::value));
538 EXPECT_FALSE((traits::is_force_unit<meter>::value));
539 EXPECT_FALSE((traits::is_force_unit<double>::value));
540
541 EXPECT_TRUE((traits::is_force_unit<units::force::newton_t>::value));
542 EXPECT_TRUE((traits::is_force_unit<const units::force::newton_t>::value));
543 EXPECT_TRUE((traits::is_force_unit<const units::force::newton_t&>::value));
544 EXPECT_TRUE((traits::is_force_unit<units::force::dyne_t>::value));
545 EXPECT_FALSE((traits::is_force_unit<watt_t>::value));
546 EXPECT_TRUE((traits::is_force_unit<units::force::dyne_t,
547 units::force::newton_t>::value));
548 EXPECT_FALSE((traits::is_force_unit<watt_t, units::force::newton_t>::value));
549}
550
551TEST_F(TypeTraits, is_pressure_unit) {
552 EXPECT_TRUE((traits::is_pressure_unit<pressure::pascals>::value));
553 EXPECT_TRUE((traits::is_pressure_unit<atmosphere>::value));
554 EXPECT_FALSE((traits::is_pressure_unit<year>::value));
555 EXPECT_FALSE((traits::is_pressure_unit<double>::value));
556
557 EXPECT_TRUE((traits::is_pressure_unit<pascal_t>::value));
558 EXPECT_TRUE((traits::is_pressure_unit<const pascal_t>::value));
559 EXPECT_TRUE((traits::is_pressure_unit<const pascal_t&>::value));
560 EXPECT_TRUE((traits::is_pressure_unit<atmosphere_t>::value));
561 EXPECT_FALSE((traits::is_pressure_unit<year_t>::value));
562 EXPECT_TRUE(
563 (traits::is_pressure_unit<atmosphere_t, pressure::pascal_t>::value));
564 EXPECT_FALSE((traits::is_pressure_unit<year_t, pressure::pascal_t>::value));
565}
566
567TEST_F(TypeTraits, is_charge_unit) {
568 EXPECT_TRUE((traits::is_charge_unit<coulomb>::value));
569 EXPECT_FALSE((traits::is_charge_unit<watt>::value));
570 EXPECT_FALSE((traits::is_charge_unit<double>::value));
571
572 EXPECT_TRUE((traits::is_charge_unit<coulomb_t>::value));
573 EXPECT_TRUE((traits::is_charge_unit<const coulomb_t>::value));
574 EXPECT_TRUE((traits::is_charge_unit<const coulomb_t&>::value));
575 EXPECT_FALSE((traits::is_charge_unit<watt_t>::value));
576 EXPECT_TRUE((traits::is_charge_unit<const coulomb_t&, coulomb_t>::value));
577 EXPECT_FALSE((traits::is_charge_unit<watt_t, coulomb_t>::value));
578}
579
580TEST_F(TypeTraits, is_energy_unit) {
581 EXPECT_TRUE((traits::is_energy_unit<joule>::value));
582 EXPECT_TRUE((traits::is_energy_unit<calorie>::value));
583 EXPECT_FALSE((traits::is_energy_unit<watt>::value));
584 EXPECT_FALSE((traits::is_energy_unit<double>::value));
585
586 EXPECT_TRUE((traits::is_energy_unit<joule_t>::value));
587 EXPECT_TRUE((traits::is_energy_unit<const joule_t>::value));
588 EXPECT_TRUE((traits::is_energy_unit<const joule_t&>::value));
589 EXPECT_TRUE((traits::is_energy_unit<calorie_t>::value));
590 EXPECT_FALSE((traits::is_energy_unit<watt_t>::value));
591 EXPECT_TRUE((traits::is_energy_unit<calorie_t, joule_t>::value));
592 EXPECT_FALSE((traits::is_energy_unit<watt_t, joule_t>::value));
593}
594
595TEST_F(TypeTraits, is_power_unit) {
596 EXPECT_TRUE((traits::is_power_unit<watt>::value));
597 EXPECT_FALSE((traits::is_power_unit<henry>::value));
598 EXPECT_FALSE((traits::is_power_unit<double>::value));
599
600 EXPECT_TRUE((traits::is_power_unit<watt_t>::value));
601 EXPECT_TRUE((traits::is_power_unit<const watt_t>::value));
602 EXPECT_TRUE((traits::is_power_unit<const watt_t&>::value));
603 EXPECT_FALSE((traits::is_power_unit<henry_t>::value));
604 EXPECT_TRUE((traits::is_power_unit<const watt_t&, watt_t>::value));
605 EXPECT_FALSE((traits::is_power_unit<henry_t, watt_t>::value));
606}
607
608TEST_F(TypeTraits, is_voltage_unit) {
609 EXPECT_TRUE((traits::is_voltage_unit<volt>::value));
610 EXPECT_FALSE((traits::is_voltage_unit<henry>::value));
611 EXPECT_FALSE((traits::is_voltage_unit<double>::value));
612
613 EXPECT_TRUE((traits::is_voltage_unit<volt_t>::value));
614 EXPECT_TRUE((traits::is_voltage_unit<const volt_t>::value));
615 EXPECT_TRUE((traits::is_voltage_unit<const volt_t&>::value));
616 EXPECT_FALSE((traits::is_voltage_unit<henry_t>::value));
617 EXPECT_TRUE((traits::is_voltage_unit<const volt_t&, volt_t>::value));
618 EXPECT_FALSE((traits::is_voltage_unit<henry_t, volt_t>::value));
619}
620
621TEST_F(TypeTraits, is_capacitance_unit) {
622 EXPECT_TRUE((traits::is_capacitance_unit<farad>::value));
623 EXPECT_FALSE((traits::is_capacitance_unit<ohm>::value));
624 EXPECT_FALSE((traits::is_capacitance_unit<double>::value));
625
626 EXPECT_TRUE((traits::is_capacitance_unit<farad_t>::value));
627 EXPECT_TRUE((traits::is_capacitance_unit<const farad_t>::value));
628 EXPECT_TRUE((traits::is_capacitance_unit<const farad_t&>::value));
629 EXPECT_FALSE((traits::is_capacitance_unit<ohm_t>::value));
630 EXPECT_TRUE(
631 (traits::is_capacitance_unit<const farad_t&, millifarad_t>::value));
632 EXPECT_FALSE((traits::is_capacitance_unit<ohm_t, farad_t>::value));
633}
634
635TEST_F(TypeTraits, is_impedance_unit) {
636 EXPECT_TRUE((traits::is_impedance_unit<ohm>::value));
637 EXPECT_FALSE((traits::is_impedance_unit<farad>::value));
638 EXPECT_FALSE((traits::is_impedance_unit<double>::value));
639
640 EXPECT_TRUE((traits::is_impedance_unit<ohm_t>::value));
641 EXPECT_TRUE((traits::is_impedance_unit<const ohm_t>::value));
642 EXPECT_TRUE((traits::is_impedance_unit<const ohm_t&>::value));
643 EXPECT_FALSE((traits::is_impedance_unit<farad_t>::value));
644 EXPECT_TRUE((traits::is_impedance_unit<const ohm_t&, milliohm_t>::value));
645 EXPECT_FALSE((traits::is_impedance_unit<farad_t, ohm_t>::value));
646}
647
648TEST_F(TypeTraits, is_conductance_unit) {
649 EXPECT_TRUE((traits::is_conductance_unit<siemens>::value));
650 EXPECT_FALSE((traits::is_conductance_unit<volt>::value));
651 EXPECT_FALSE((traits::is_conductance_unit<double>::value));
652
653 EXPECT_TRUE((traits::is_conductance_unit<siemens_t>::value));
654 EXPECT_TRUE((traits::is_conductance_unit<const siemens_t>::value));
655 EXPECT_TRUE((traits::is_conductance_unit<const siemens_t&>::value));
656 EXPECT_FALSE((traits::is_conductance_unit<volt_t>::value));
657 EXPECT_TRUE(
658 (traits::is_conductance_unit<const siemens_t&, millisiemens_t>::value));
659 EXPECT_FALSE((traits::is_conductance_unit<volt_t, siemens_t>::value));
660}
661
662TEST_F(TypeTraits, is_magnetic_flux_unit) {
663 EXPECT_TRUE((traits::is_magnetic_flux_unit<weber>::value));
664 EXPECT_TRUE((traits::is_magnetic_flux_unit<maxwell>::value));
665 EXPECT_FALSE((traits::is_magnetic_flux_unit<inch>::value));
666 EXPECT_FALSE((traits::is_magnetic_flux_unit<double>::value));
667
668 EXPECT_TRUE((traits::is_magnetic_flux_unit<weber_t>::value));
669 EXPECT_TRUE((traits::is_magnetic_flux_unit<const weber_t>::value));
670 EXPECT_TRUE((traits::is_magnetic_flux_unit<const weber_t&>::value));
671 EXPECT_TRUE((traits::is_magnetic_flux_unit<maxwell_t>::value));
672 EXPECT_FALSE((traits::is_magnetic_flux_unit<inch_t>::value));
673 EXPECT_TRUE((traits::is_magnetic_flux_unit<maxwell_t, weber_t>::value));
674 EXPECT_FALSE((traits::is_magnetic_flux_unit<inch_t, weber_t>::value));
675}
676
677TEST_F(TypeTraits, is_magnetic_field_strength_unit) {
678 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<
679 units::magnetic_field_strength::tesla>::value));
680 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<gauss>::value));
681 EXPECT_FALSE((traits::is_magnetic_field_strength_unit<volt>::value));
682 EXPECT_FALSE((traits::is_magnetic_field_strength_unit<double>::value));
683
684 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<tesla_t>::value));
685 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<const tesla_t>::value));
686 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<const tesla_t&>::value));
687 EXPECT_TRUE((traits::is_magnetic_field_strength_unit<gauss_t>::value));
688 EXPECT_FALSE((traits::is_magnetic_field_strength_unit<volt_t>::value));
689 EXPECT_TRUE(
690 (traits::is_magnetic_field_strength_unit<gauss_t, tesla_t>::value));
691 EXPECT_FALSE(
692 (traits::is_magnetic_field_strength_unit<volt_t, tesla_t>::value));
693}
694
695TEST_F(TypeTraits, is_inductance_unit) {
696 EXPECT_TRUE((traits::is_inductance_unit<henry>::value));
697 EXPECT_FALSE((traits::is_inductance_unit<farad>::value));
698 EXPECT_FALSE((traits::is_inductance_unit<double>::value));
699
700 EXPECT_TRUE((traits::is_inductance_unit<henry_t>::value));
701 EXPECT_TRUE((traits::is_inductance_unit<const henry_t>::value));
702 EXPECT_TRUE((traits::is_inductance_unit<const henry_t&>::value));
703 EXPECT_FALSE((traits::is_inductance_unit<farad_t>::value));
704 EXPECT_TRUE(
705 (traits::is_inductance_unit<const henry_t&, millihenry_t>::value));
706 EXPECT_FALSE((traits::is_inductance_unit<farad_t, henry_t>::value));
707}
708
709TEST_F(TypeTraits, is_luminous_flux_unit) {
710 EXPECT_TRUE((traits::is_luminous_flux_unit<lumen>::value));
711 EXPECT_FALSE((traits::is_luminous_flux_unit<pound>::value));
712 EXPECT_FALSE((traits::is_luminous_flux_unit<double>::value));
713
714 EXPECT_TRUE((traits::is_luminous_flux_unit<lumen_t>::value));
715 EXPECT_TRUE((traits::is_luminous_flux_unit<const lumen_t>::value));
716 EXPECT_TRUE((traits::is_luminous_flux_unit<const lumen_t&>::value));
717 EXPECT_FALSE((traits::is_luminous_flux_unit<pound_t>::value));
718 EXPECT_TRUE(
719 (traits::is_luminous_flux_unit<const lumen_t&, millilumen_t>::value));
720 EXPECT_FALSE((traits::is_luminous_flux_unit<pound_t, lumen_t>::value));
721}
722
723TEST_F(TypeTraits, is_illuminance_unit) {
724 EXPECT_TRUE((traits::is_illuminance_unit<illuminance::footcandle>::value));
725 EXPECT_TRUE((traits::is_illuminance_unit<illuminance::lux>::value));
726 EXPECT_FALSE((traits::is_illuminance_unit<meter>::value));
727 EXPECT_FALSE((traits::is_illuminance_unit<double>::value));
728
729 EXPECT_TRUE((traits::is_illuminance_unit<footcandle_t>::value));
730 EXPECT_TRUE((traits::is_illuminance_unit<const footcandle_t>::value));
731 EXPECT_TRUE((traits::is_illuminance_unit<const footcandle_t&>::value));
732 EXPECT_TRUE((traits::is_illuminance_unit<lux_t>::value));
733 EXPECT_FALSE((traits::is_illuminance_unit<meter_t>::value));
734 EXPECT_TRUE((traits::is_illuminance_unit<lux_t, footcandle_t>::value));
735 EXPECT_FALSE((traits::is_illuminance_unit<meter_t, footcandle_t>::value));
736}
737
738TEST_F(TypeTraits, is_radioactivity_unit) {
739 EXPECT_TRUE((traits::is_radioactivity_unit<becquerel>::value));
740 EXPECT_FALSE((traits::is_radioactivity_unit<year>::value));
741 EXPECT_FALSE((traits::is_radioactivity_unit<double>::value));
742
743 EXPECT_TRUE((traits::is_radioactivity_unit<becquerel_t>::value));
744 EXPECT_TRUE((traits::is_radioactivity_unit<const becquerel_t>::value));
745 EXPECT_TRUE((traits::is_radioactivity_unit<const becquerel_t&>::value));
746 EXPECT_FALSE((traits::is_radioactivity_unit<year_t>::value));
747 EXPECT_TRUE((traits::is_radioactivity_unit<const becquerel_t&,
748 millibecquerel_t>::value));
749 EXPECT_FALSE((traits::is_radioactivity_unit<year_t, becquerel_t>::value));
750}
751
752TEST_F(TypeTraits, is_torque_unit) {
753 EXPECT_TRUE((traits::is_torque_unit<torque::newton_meter>::value));
754 EXPECT_TRUE((traits::is_torque_unit<torque::foot_pound>::value));
755 EXPECT_FALSE((traits::is_torque_unit<volume::cubic_meter>::value));
756 EXPECT_FALSE((traits::is_torque_unit<double>::value));
757
758 EXPECT_TRUE((traits::is_torque_unit<torque::newton_meter_t>::value));
759 EXPECT_TRUE((traits::is_torque_unit<const torque::newton_meter_t>::value));
760 EXPECT_TRUE((traits::is_torque_unit<const torque::newton_meter_t&>::value));
761 EXPECT_TRUE((traits::is_torque_unit<torque::foot_pound_t>::value));
762 EXPECT_FALSE((traits::is_torque_unit<volume::cubic_meter_t>::value));
763 EXPECT_TRUE((traits::is_torque_unit<torque::foot_pound_t,
764 torque::newton_meter_t>::value));
765 EXPECT_FALSE((traits::is_torque_unit<volume::cubic_meter_t,
766 torque::newton_meter_t>::value));
767}
768
769TEST_F(TypeTraits, is_area_unit) {
770 EXPECT_TRUE((traits::is_area_unit<square_meter>::value));
771 EXPECT_TRUE((traits::is_area_unit<hectare>::value));
772 EXPECT_FALSE((traits::is_area_unit<astronicalUnit>::value));
773 EXPECT_FALSE((traits::is_area_unit<double>::value));
774
775 EXPECT_TRUE((traits::is_area_unit<square_meter_t>::value));
776 EXPECT_TRUE((traits::is_area_unit<const square_meter_t>::value));
777 EXPECT_TRUE((traits::is_area_unit<const square_meter_t&>::value));
778 EXPECT_TRUE((traits::is_area_unit<hectare_t>::value));
779 EXPECT_FALSE((traits::is_area_unit<astronicalUnit_t>::value));
780 EXPECT_TRUE((traits::is_area_unit<hectare_t, square_meter_t>::value));
781 EXPECT_FALSE((traits::is_area_unit<astronicalUnit_t, square_meter_t>::value));
782}
783
784TEST_F(TypeTraits, is_volume_unit) {
785 EXPECT_TRUE((traits::is_volume_unit<cubic_meter>::value));
786 EXPECT_TRUE((traits::is_volume_unit<cubic_foot>::value));
787 EXPECT_FALSE((traits::is_volume_unit<square_feet>::value));
788 EXPECT_FALSE((traits::is_volume_unit<double>::value));
789
790 EXPECT_TRUE((traits::is_volume_unit<cubic_meter_t>::value));
791 EXPECT_TRUE((traits::is_volume_unit<const cubic_meter_t>::value));
792 EXPECT_TRUE((traits::is_volume_unit<const cubic_meter_t&>::value));
793 EXPECT_TRUE((traits::is_volume_unit<cubic_inch_t>::value));
794 EXPECT_FALSE((traits::is_volume_unit<foot_t>::value));
795 EXPECT_TRUE((traits::is_volume_unit<cubic_inch_t, cubic_meter_t>::value));
796 EXPECT_FALSE((traits::is_volume_unit<foot_t, cubic_meter_t>::value));
797}
798
799TEST_F(TypeTraits, is_density_unit) {
800 EXPECT_TRUE((traits::is_density_unit<kilograms_per_cubic_meter>::value));
801 EXPECT_TRUE((traits::is_density_unit<ounces_per_cubic_foot>::value));
802 EXPECT_FALSE((traits::is_density_unit<year>::value));
803 EXPECT_FALSE((traits::is_density_unit<double>::value));
804
805 EXPECT_TRUE((traits::is_density_unit<kilograms_per_cubic_meter_t>::value));
806 EXPECT_TRUE(
807 (traits::is_density_unit<const kilograms_per_cubic_meter_t>::value));
808 EXPECT_TRUE(
809 (traits::is_density_unit<const kilograms_per_cubic_meter_t&>::value));
810 EXPECT_TRUE((traits::is_density_unit<ounces_per_cubic_foot_t>::value));
811 EXPECT_FALSE((traits::is_density_unit<year_t>::value));
812 EXPECT_TRUE((traits::is_density_unit<ounces_per_cubic_foot_t,
813 kilograms_per_cubic_meter_t>::value));
814 EXPECT_FALSE(
815 (traits::is_density_unit<year_t, kilograms_per_cubic_meter_t>::value));
816}
817
818TEST_F(TypeTraits, is_data_unit) {
819 EXPECT_TRUE((traits::is_data_unit<bit>::value));
820 EXPECT_TRUE((traits::is_data_unit<byte>::value));
821 EXPECT_TRUE((traits::is_data_unit<exabit>::value));
822 EXPECT_TRUE((traits::is_data_unit<exabyte>::value));
823 EXPECT_FALSE((traits::is_data_unit<year>::value));
824 EXPECT_FALSE((traits::is_data_unit<double>::value));
825
826 EXPECT_TRUE((traits::is_data_unit<bit_t>::value));
827 EXPECT_TRUE((traits::is_data_unit<const bit_t>::value));
828 EXPECT_TRUE((traits::is_data_unit<const bit_t&>::value));
829 EXPECT_TRUE((traits::is_data_unit<byte_t>::value));
830 EXPECT_FALSE((traits::is_data_unit<year_t>::value));
831 EXPECT_TRUE((traits::is_data_unit<bit_t, byte_t>::value));
832 EXPECT_FALSE((traits::is_data_unit<year_t, byte_t>::value));
833}
834
835TEST_F(TypeTraits, is_data_transfer_rate_unit) {
836 EXPECT_TRUE((traits::is_data_transfer_rate_unit<Gbps>::value));
837 EXPECT_TRUE((traits::is_data_transfer_rate_unit<GBps>::value));
838 EXPECT_FALSE((traits::is_data_transfer_rate_unit<year>::value));
839 EXPECT_FALSE((traits::is_data_transfer_rate_unit<double>::value));
840
841 EXPECT_TRUE(
842 (traits::is_data_transfer_rate_unit<gigabits_per_second_t>::value));
843 EXPECT_TRUE((
844 traits::is_data_transfer_rate_unit<const gigabytes_per_second_t>::value));
845 EXPECT_TRUE((traits::is_data_transfer_rate_unit<
846 const gigabytes_per_second_t&>::value));
847 EXPECT_TRUE(
848 (traits::is_data_transfer_rate_unit<gigabytes_per_second_t>::value));
849 EXPECT_FALSE((traits::is_data_transfer_rate_unit<year_t>::value));
850 EXPECT_TRUE(
851 (traits::is_data_transfer_rate_unit<gigabits_per_second_t,
852 gigabytes_per_second_t>::value));
853 EXPECT_FALSE(
854 (traits::is_data_transfer_rate_unit<year_t,
855 gigabytes_per_second_t>::value));
856}
857
858TEST_F(UnitManipulators, squared) {
859 double test;
860
861 test = convert<squared<meters>, square_feet>(0.092903);
862 EXPECT_NEAR(0.99999956944, test, 5.0e-12);
863
864 using scalar_2 = squared<scalar>; // this is actually nonsensical, and should
865 // also result in a scalar.
866 bool isSame =
867 std::is_same<typename std::decay<scalar_t>::type,
868 typename std::decay<unit_t<scalar_2>>::type>::value;
869 EXPECT_TRUE(isSame);
870}
871
872TEST_F(UnitManipulators, cubed) {
873 double test;
874
875 test = convert<cubed<meters>, cubic_feet>(0.0283168);
876 EXPECT_NEAR(0.999998354619, test, 5.0e-13);
877}
878
879TEST_F(UnitManipulators, square_root) {
880 double test;
881
882 test = convert<square_root<square_kilometer>, meter>(1.0);
883 EXPECT_TRUE((traits::is_convertible_unit<
884 typename std::decay<square_root<square_kilometer>>::type,
885 kilometer>::value));
886 EXPECT_NEAR(1000.0, test, 5.0e-13);
887}
888
889TEST_F(UnitManipulators, compound_unit) {
890 using acceleration1 = unit<std::ratio<1>, category::acceleration_unit>;
891 using acceleration2 =
892 compound_unit<meters, inverse<seconds>, inverse<seconds>>;
893 using acceleration3 =
894 unit<std::ratio<1>,
895 base_unit<std::ratio<1>, std::ratio<0>, std::ratio<-2>>>;
896 using acceleration4 = compound_unit<meters, inverse<squared<seconds>>>;
897 using acceleration5 = compound_unit<meters, squared<inverse<seconds>>>;
898
899 bool areSame12 = std::is_same<acceleration1, acceleration2>::value;
900 bool areSame23 = std::is_same<acceleration2, acceleration3>::value;
901 bool areSame34 = std::is_same<acceleration3, acceleration4>::value;
902 bool areSame45 = std::is_same<acceleration4, acceleration5>::value;
903
904 EXPECT_TRUE(areSame12);
905 EXPECT_TRUE(areSame23);
906 EXPECT_TRUE(areSame34);
907 EXPECT_TRUE(areSame45);
908
909 // test that thing with translations still compile
910 using arbitrary1 = compound_unit<meters, inverse<celsius>>;
911 using arbitrary2 = compound_unit<meters, celsius>;
912 using arbitrary3 = compound_unit<arbitrary1, arbitrary2>;
913 EXPECT_TRUE((std::is_same<square_meters, arbitrary3>::value));
914}
915
916TEST_F(UnitManipulators, dimensionalAnalysis) {
917 // these look like 'compound units', but the dimensional analysis can be
918 // REALLY handy if the unit types aren't know (i.e. they themselves are
919 // template parameters), as you can get the resulting unit of the operation.
920
921 using velocity = units::detail::unit_divide<meters, second>;
922 bool shouldBeTrue = std::is_same<meters_per_second, velocity>::value;
923 EXPECT_TRUE(shouldBeTrue);
924
925 using acceleration1 = unit<std::ratio<1>, category::acceleration_unit>;
926 using acceleration2 = units::detail::unit_divide<
927 meters, units::detail::unit_multiply<seconds, seconds>>;
928 shouldBeTrue = std::is_same<acceleration1, acceleration2>::value;
929 EXPECT_TRUE(shouldBeTrue);
930}
931
932#ifdef _MSC_VER
933#if (_MSC_VER >= 1900)
934TEST_F(UnitContainer, trivial) {
935 EXPECT_TRUE((std::is_trivial<meter_t>::value));
936 EXPECT_TRUE((std::is_trivially_assignable<meter_t, meter_t>::value));
937 EXPECT_TRUE((std::is_trivially_constructible<meter_t>::value));
938 EXPECT_TRUE((std::is_trivially_copy_assignable<meter_t>::value));
939 EXPECT_TRUE((std::is_trivially_copy_constructible<meter_t>::value));
940 EXPECT_TRUE((std::is_trivially_copyable<meter_t>::value));
941 EXPECT_TRUE((std::is_trivially_default_constructible<meter_t>::value));
942 EXPECT_TRUE((std::is_trivially_destructible<meter_t>::value));
943 EXPECT_TRUE((std::is_trivially_move_assignable<meter_t>::value));
944 EXPECT_TRUE((std::is_trivially_move_constructible<meter_t>::value));
945
946 EXPECT_TRUE((std::is_trivial<dB_t>::value));
947 EXPECT_TRUE((std::is_trivially_assignable<dB_t, dB_t>::value));
948 EXPECT_TRUE((std::is_trivially_constructible<dB_t>::value));
949 EXPECT_TRUE((std::is_trivially_copy_assignable<dB_t>::value));
950 EXPECT_TRUE((std::is_trivially_copy_constructible<dB_t>::value));
951 EXPECT_TRUE((std::is_trivially_copyable<dB_t>::value));
952 EXPECT_TRUE((std::is_trivially_default_constructible<dB_t>::value));
953 EXPECT_TRUE((std::is_trivially_destructible<dB_t>::value));
954 EXPECT_TRUE((std::is_trivially_move_assignable<dB_t>::value));
955 EXPECT_TRUE((std::is_trivially_move_constructible<dB_t>::value));
956}
957#endif
958#endif
959
960TEST_F(UnitContainer, has_value_member) {
961 EXPECT_TRUE((traits::has_value_member<linear_scale<double>, double>::value));
962 EXPECT_FALSE((traits::has_value_member<meter, double>::value));
963}
964
965TEST_F(UnitContainer, make_unit) {
966 auto dist = units::make_unit<meter_t>(5);
967 EXPECT_EQ(meter_t(5), dist);
968}
969
970TEST_F(UnitContainer, unitTypeAddition) {
971 // units
972 meter_t a_m(1.0), c_m;
973 foot_t b_ft(3.28084);
974
975 double d = convert<feet, meters>(b_ft());
976 EXPECT_NEAR(1.0, d, 5.0e-5);
977
978 c_m = a_m + b_ft;
979 EXPECT_NEAR(2.0, c_m(), 5.0e-5);
980
981 c_m = b_ft + meter_t(3);
982 EXPECT_NEAR(4.0, c_m(), 5.0e-5);
983
984 auto e_ft = b_ft + meter_t(3);
985 EXPECT_NEAR(13.12336, e_ft(), 5.0e-6);
986
987 // scalar
988 scalar_t sresult = scalar_t(1.0) + scalar_t(1.0);
989 EXPECT_NEAR(2.0, sresult, 5.0e-6);
990
991 sresult = scalar_t(1.0) + 1.0;
992 EXPECT_NEAR(2.0, sresult, 5.0e-6);
993
994 sresult = 1.0 + scalar_t(1.0);
995 EXPECT_NEAR(2.0, sresult, 5.0e-6);
996
997 d = scalar_t(1.0) + scalar_t(1.0);
998 EXPECT_NEAR(2.0, d, 5.0e-6);
999
1000 d = scalar_t(1.0) + 1.0;
1001 EXPECT_NEAR(2.0, d, 5.0e-6);
1002
1003 d = 1.0 + scalar_t(1.0);
1004 EXPECT_NEAR(2.0, d, 5.0e-6);
1005}
1006
1007TEST_F(UnitContainer, unitTypeUnaryAddition) {
1008 meter_t a_m(1.0);
1009
1010 EXPECT_EQ(++a_m, meter_t(2));
1011 EXPECT_EQ(a_m++, meter_t(2));
1012 EXPECT_EQ(a_m, meter_t(3));
1013 EXPECT_EQ(+a_m, meter_t(3));
1014 EXPECT_EQ(a_m, meter_t(3));
1015
1016 dBW_t b_dBW(1.0);
1017
1018 EXPECT_EQ(++b_dBW, dBW_t(2));
1019 EXPECT_EQ(b_dBW++, dBW_t(2));
1020 EXPECT_EQ(b_dBW, dBW_t(3));
1021 EXPECT_EQ(+b_dBW, dBW_t(3));
1022 EXPECT_EQ(b_dBW, dBW_t(3));
1023}
1024
1025TEST_F(UnitContainer, unitTypeSubtraction) {
1026 meter_t a_m(1.0), c_m;
1027 foot_t b_ft(3.28084);
1028
1029 c_m = a_m - b_ft;
1030 EXPECT_NEAR(0.0, c_m(), 5.0e-5);
1031
1032 c_m = b_ft - meter_t(1);
1033 EXPECT_NEAR(0.0, c_m(), 5.0e-5);
1034
1035 auto e_ft = b_ft - meter_t(1);
1036 EXPECT_NEAR(0.0, e_ft(), 5.0e-6);
1037
1038 scalar_t sresult = scalar_t(1.0) - scalar_t(1.0);
1039 EXPECT_NEAR(0.0, sresult, 5.0e-6);
1040
1041 sresult = scalar_t(1.0) - 1.0;
1042 EXPECT_NEAR(0.0, sresult, 5.0e-6);
1043
1044 sresult = 1.0 - scalar_t(1.0);
1045 EXPECT_NEAR(0.0, sresult, 5.0e-6);
1046
1047 double d = scalar_t(1.0) - scalar_t(1.0);
1048 EXPECT_NEAR(0.0, d, 5.0e-6);
1049
1050 d = scalar_t(1.0) - 1.0;
1051 EXPECT_NEAR(0.0, d, 5.0e-6);
1052
1053 d = 1.0 - scalar_t(1.0);
1054 EXPECT_NEAR(0.0, d, 5.0e-6);
1055}
1056
1057TEST_F(UnitContainer, unitTypeUnarySubtraction) {
1058 meter_t a_m(4.0);
1059
1060 EXPECT_EQ(--a_m, meter_t(3));
1061 EXPECT_EQ(a_m--, meter_t(3));
1062 EXPECT_EQ(a_m, meter_t(2));
1063 EXPECT_EQ(-a_m, meter_t(-2));
1064 EXPECT_EQ(a_m, meter_t(2));
1065
1066 dBW_t b_dBW(4.0);
1067
1068 EXPECT_EQ(--b_dBW, dBW_t(3));
1069 EXPECT_EQ(b_dBW--, dBW_t(3));
1070 EXPECT_EQ(b_dBW, dBW_t(2));
1071 EXPECT_EQ(-b_dBW, dBW_t(-2));
1072 EXPECT_EQ(b_dBW, dBW_t(2));
1073}
1074
1075TEST_F(UnitContainer, unitTypeMultiplication) {
1076 meter_t a_m(1.0), b_m(2.0);
1077 foot_t a_ft(3.28084);
1078
1079 auto c_m2 = a_m * b_m;
1080 EXPECT_NEAR(2.0, c_m2(), 5.0e-5);
1081
1082 c_m2 = b_m * meter_t(2);
1083 EXPECT_NEAR(4.0, c_m2(), 5.0e-5);
1084
1085 c_m2 = b_m * a_ft;
1086 EXPECT_NEAR(2.0, c_m2(), 5.0e-5);
1087
1088 auto c_m = b_m * 2.0;
1089 EXPECT_NEAR(4.0, c_m(), 5.0e-5);
1090
1091 c_m = 2.0 * b_m;
1092 EXPECT_NEAR(4.0, c_m(), 5.0e-5);
1093
1094 double convert = scalar_t(3.14);
1095 EXPECT_NEAR(3.14, convert, 5.0e-5);
1096
1097 scalar_t sresult = scalar_t(5.0) * scalar_t(4.0);
1098 EXPECT_NEAR(20.0, sresult(), 5.0e-5);
1099
1100 sresult = scalar_t(5.0) * 4.0;
1101 EXPECT_NEAR(20.0, sresult(), 5.0e-5);
1102
1103 sresult = 4.0 * scalar_t(5.0);
1104 EXPECT_NEAR(20.0, sresult(), 5.0e-5);
1105
1106 double result = scalar_t(5.0) * scalar_t(4.0);
1107 EXPECT_NEAR(20.0, result, 5.0e-5);
1108
1109 result = scalar_t(5.0) * 4.0;
1110 EXPECT_NEAR(20.0, result, 5.0e-5);
1111
1112 result = 4.0 * scalar_t(5.0);
1113 EXPECT_NEAR(20.0, result, 5.0e-5);
1114}
1115
1116TEST_F(UnitContainer, unitTypeMixedUnitMultiplication) {
1117 meter_t a_m(1.0);
1118 foot_t b_ft(3.28084);
1119 unit_t<inverse<meter>> i_m(2.0);
1120
1121 // resultant unit is square of leftmost unit
1122 auto c_m2 = a_m * b_ft;
1123 EXPECT_NEAR(1.0, c_m2(), 5.0e-5);
1124
1125 auto c_ft2 = b_ft * a_m;
1126 EXPECT_NEAR(10.7639111056, c_ft2(), 5.0e-7);
1127
1128 // you can get whatever (compatible) type you want if you ask explicitly
1129 square_meter_t d_m2 = b_ft * a_m;
1130 EXPECT_NEAR(1.0, d_m2(), 5.0e-5);
1131
1132 // a unit times a sclar ends up with the same units.
1133 meter_t e_m = a_m * scalar_t(3.0);
1134 EXPECT_NEAR(3.0, e_m(), 5.0e-5);
1135
1136 e_m = scalar_t(4.0) * a_m;
1137 EXPECT_NEAR(4.0, e_m(), 5.0e-5);
1138
1139 // unit times its inverse results in a scalar
1140 scalar_t s = a_m * i_m;
1141 EXPECT_NEAR(2.0, s, 5.0e-5);
1142
1143 c_m2 = b_ft * meter_t(2);
1144 EXPECT_NEAR(2.0, c_m2(), 5.0e-5);
1145
1146 auto e_ft2 = b_ft * meter_t(3);
1147 EXPECT_NEAR(32.2917333168, e_ft2(), 5.0e-6);
1148
1149 auto mps = meter_t(10.0) * unit_t<inverse<seconds>>(1.0);
1150 EXPECT_EQ(mps, meters_per_second_t(10));
1151}
1152
1153TEST_F(UnitContainer, unitTypeScalarMultiplication) {
1154 meter_t a_m(1.0);
1155
1156 auto result_m = scalar_t(3.0) * a_m;
1157 EXPECT_NEAR(3.0, result_m(), 5.0e-5);
1158
1159 result_m = a_m * scalar_t(4.0);
1160 EXPECT_NEAR(4.0, result_m(), 5.0e-5);
1161
1162 result_m = 3.0 * a_m;
1163 EXPECT_NEAR(3.0, result_m(), 5.0e-5);
1164
1165 result_m = a_m * 4.0;
1166 EXPECT_NEAR(4.0, result_m(), 5.0e-5);
1167
1168 bool isSame = std::is_same<decltype(result_m), meter_t>::value;
1169 EXPECT_TRUE(isSame);
1170}
1171
1172TEST_F(UnitContainer, unitTypeDivision) {
1173 meter_t a_m(1.0), b_m(2.0);
1174 foot_t a_ft(3.28084);
1175 second_t a_sec(10.0);
1176 bool isSame;
1177
1178 auto c = a_m / a_ft;
1179 EXPECT_NEAR(1.0, c, 5.0e-5);
1180 isSame = std::is_same<decltype(c), scalar_t>::value;
1181 EXPECT_TRUE(isSame);
1182
1183 c = a_m / b_m;
1184 EXPECT_NEAR(0.5, c, 5.0e-5);
1185 isSame = std::is_same<decltype(c), scalar_t>::value;
1186 EXPECT_TRUE(isSame);
1187
1188 c = a_ft / a_m;
1189 EXPECT_NEAR(1.0, c, 5.0e-5);
1190 isSame = std::is_same<decltype(c), scalar_t>::value;
1191 EXPECT_TRUE(isSame);
1192
1193 c = scalar_t(1.0) / 2.0;
1194 EXPECT_NEAR(0.5, c, 5.0e-5);
1195 isSame = std::is_same<decltype(c), scalar_t>::value;
1196 EXPECT_TRUE(isSame);
1197
1198 c = 1.0 / scalar_t(2.0);
1199 EXPECT_NEAR(0.5, c, 5.0e-5);
1200 isSame = std::is_same<decltype(c), scalar_t>::value;
1201 EXPECT_TRUE(isSame);
1202
1203 double d = scalar_t(1.0) / 2.0;
1204 EXPECT_NEAR(0.5, d, 5.0e-5);
1205
1206 auto e = a_m / a_sec;
1207 EXPECT_NEAR(0.1, e(), 5.0e-5);
1208 isSame = std::is_same<decltype(e), meters_per_second_t>::value;
1209 EXPECT_TRUE(isSame);
1210
1211 auto f = a_m / 8.0;
1212 EXPECT_NEAR(0.125, f(), 5.0e-5);
1213 isSame = std::is_same<decltype(f), meter_t>::value;
1214 EXPECT_TRUE(isSame);
1215
1216 auto g = 4.0 / b_m;
1217 EXPECT_NEAR(2.0, g(), 5.0e-5);
1218 isSame = std::is_same<decltype(g), unit_t<inverse<meters>>>::value;
1219 EXPECT_TRUE(isSame);
1220
1221 auto mph = mile_t(60.0) / hour_t(1.0);
1222 meters_per_second_t mps = mph;
1223 EXPECT_NEAR(26.8224, mps(), 5.0e-5);
1224}
1225
1226TEST_F(UnitContainer, compoundAssignmentAddition) {
1227 // units
1228 meter_t a(0.0);
1229 a += meter_t(1.0);
1230
1231 EXPECT_EQ(meter_t(1.0), a);
1232
1233 a += foot_t(meter_t(1));
1234
1235 EXPECT_EQ(meter_t(2.0), a);
1236
1237 // scalars
1238 scalar_t b(0);
1239 b += scalar_t(1.0);
1240
1241 EXPECT_EQ(scalar_t(1.0), b);
1242
1243 b += 1;
1244
1245 EXPECT_EQ(scalar_t(2.0), b);
1246}
1247
1248TEST_F(UnitContainer, compoundAssignmentSubtraction) {
1249 // units
1250 meter_t a(2.0);
1251 a -= meter_t(1.0);
1252
1253 EXPECT_EQ(meter_t(1.0), a);
1254
1255 a -= foot_t(meter_t(1));
1256
1257 EXPECT_EQ(meter_t(0.0), a);
1258
1259 // scalars
1260 scalar_t b(2);
1261 b -= scalar_t(1.0);
1262
1263 EXPECT_EQ(scalar_t(1.0), b);
1264
1265 b -= 1;
1266
1267 EXPECT_EQ(scalar_t(0), b);
1268}
1269
1270TEST_F(UnitContainer, compoundAssignmentMultiplication) {
1271 // units
1272 meter_t a(2.0);
1273 a *= scalar_t(2.0);
1274
1275 EXPECT_EQ(meter_t(4.0), a);
1276
1277 a *= 2.0;
1278
1279 EXPECT_EQ(meter_t(8.0), a);
1280
1281 // scalars
1282 scalar_t b(2);
1283 b *= scalar_t(2.0);
1284
1285 EXPECT_EQ(scalar_t(4.0), b);
1286
1287 b *= 2;
1288
1289 EXPECT_EQ(scalar_t(8.0), b);
1290}
1291
1292TEST_F(UnitContainer, compoundAssignmentDivision) {
1293 // units
1294 meter_t a(8.0);
1295 a /= scalar_t(2.0);
1296
1297 EXPECT_EQ(meter_t(4.0), a);
1298
1299 a /= 2.0;
1300
1301 EXPECT_EQ(meter_t(2.0), a);
1302
1303 // scalars
1304 scalar_t b(8);
1305 b /= scalar_t(2.0);
1306
1307 EXPECT_EQ(scalar_t(4.0), b);
1308
1309 b /= 2;
1310
1311 EXPECT_EQ(scalar_t(2.0), b);
1312}
1313
1314TEST_F(UnitContainer, scalarTypeImplicitConversion) {
1315 double test = scalar_t(3.0);
1316 EXPECT_DOUBLE_EQ(3.0, test);
1317
1318 scalar_t testS = 3.0;
1319 EXPECT_DOUBLE_EQ(3.0, testS);
1320
1321 scalar_t test3(ppm_t(10));
1322 EXPECT_DOUBLE_EQ(0.00001, test3);
1323
1324 scalar_t test4;
1325 test4 = ppm_t(1);
1326 EXPECT_DOUBLE_EQ(0.000001, test4);
1327}
1328
1329TEST_F(UnitContainer, valueMethod) {
1330 double test = meter_t(3.0).to<double>();
1331 EXPECT_DOUBLE_EQ(3.0, test);
1332
1333 auto test2 = meter_t(4.0).value();
1334 EXPECT_DOUBLE_EQ(4.0, test2);
1335 EXPECT_TRUE((std::is_same<decltype(test2), double>::value));
1336}
1337
1338TEST_F(UnitContainer, convertMethod) {
1339 double test = meter_t(3.0).convert<feet>().to<double>();
1340 EXPECT_NEAR(9.84252, test, 5.0e-6);
1341}
1342
1343#ifndef UNIT_LIB_DISABLE_IOSTREAM
1344TEST_F(UnitContainer, cout) {
1345 testing::internal::CaptureStdout();
1346 std::cout << degree_t(349.87);
1347 std::string output = testing::internal::GetCapturedStdout();
1348 EXPECT_STREQ("349.87 deg", output.c_str());
1349
1350 testing::internal::CaptureStdout();
1351 std::cout << meter_t(1.0);
1352 output = testing::internal::GetCapturedStdout();
1353 EXPECT_STREQ("1 m", output.c_str());
1354
1355 testing::internal::CaptureStdout();
1356 std::cout << dB_t(31.0);
1357 output = testing::internal::GetCapturedStdout();
1358 EXPECT_STREQ("31 dB", output.c_str());
1359
1360 testing::internal::CaptureStdout();
1361 std::cout << volt_t(21.79);
1362 output = testing::internal::GetCapturedStdout();
1363 EXPECT_STREQ("21.79 V", output.c_str());
1364
1365 testing::internal::CaptureStdout();
1366 std::cout << dBW_t(12.0);
1367 output = testing::internal::GetCapturedStdout();
1368 EXPECT_STREQ("12 dBW", output.c_str());
1369
1370 testing::internal::CaptureStdout();
1371 std::cout << dBm_t(120.0);
1372 output = testing::internal::GetCapturedStdout();
1373 EXPECT_STREQ("120 dBm", output.c_str());
1374
1375 testing::internal::CaptureStdout();
1376 std::cout << miles_per_hour_t(72.1);
1377 output = testing::internal::GetCapturedStdout();
1378 EXPECT_STREQ("72.1 mph", output.c_str());
1379
1380 // undefined unit
1381 testing::internal::CaptureStdout();
1382 std::cout << units::math::cpow<4>(meter_t(2));
1383 output = testing::internal::GetCapturedStdout();
1384 EXPECT_STREQ("16 m^4", output.c_str());
1385
1386 testing::internal::CaptureStdout();
1387 std::cout << units::math::cpow<3>(foot_t(2));
1388 output = testing::internal::GetCapturedStdout();
1389 EXPECT_STREQ("8 cu_ft", output.c_str());
1390
1391 testing::internal::CaptureStdout();
1392 std::cout << std::setprecision(9) << units::math::cpow<4>(foot_t(2));
1393 output = testing::internal::GetCapturedStdout();
1394 EXPECT_STREQ("0.138095597 m^4", output.c_str());
1395
1396 // constants
1397 testing::internal::CaptureStdout();
1398 std::cout << std::setprecision(8) << constants::k_B;
1399 output = testing::internal::GetCapturedStdout();
1400#if defined(_MSC_VER) && (_MSC_VER <= 1800)
1401 EXPECT_STREQ("1.3806485e-023 m^2 kg s^-2 K^-1", output.c_str());
1402#else
1403 EXPECT_STREQ("1.3806485e-23 m^2 kg s^-2 K^-1", output.c_str());
1404#endif
1405
1406 testing::internal::CaptureStdout();
1407 std::cout << std::setprecision(9) << constants::mu_B;
1408 output = testing::internal::GetCapturedStdout();
1409#if defined(_MSC_VER) && (_MSC_VER <= 1800)
1410 EXPECT_STREQ("9.27400999e-024 m^2 A", output.c_str());
1411#else
1412 EXPECT_STREQ("9.27400999e-24 m^2 A", output.c_str());
1413#endif
1414
1415 testing::internal::CaptureStdout();
1416 std::cout << std::setprecision(7) << constants::sigma;
1417 output = testing::internal::GetCapturedStdout();
1418#if defined(_MSC_VER) && (_MSC_VER <= 1800)
1419 EXPECT_STREQ("5.670367e-008 kg s^-3 K^-4", output.c_str());
1420#else
1421 EXPECT_STREQ("5.670367e-08 kg s^-3 K^-4", output.c_str());
1422#endif
1423}
1424
1425TEST_F(UnitContainer, to_string) {
1426 foot_t a(3.5);
1427 EXPECT_STREQ("3.5 ft", units::length::to_string(a).c_str());
1428
1429 meter_t b(8);
1430 EXPECT_STREQ("8 m", units::length::to_string(b).c_str());
1431}
1432
1433TEST_F(UnitContainer, DISABLED_to_string_locale) {
1434 struct lconv* lc;
1435
1436 // German locale
1437#if defined(_MSC_VER)
1438 setlocale(LC_ALL, "de-DE");
1439#else
1440 EXPECT_STREQ("de_DE.utf8", setlocale(LC_ALL, "de_DE.utf8"));
1441#endif
1442
1443 lc = localeconv();
1444 char point_de = *lc->decimal_point;
1445 EXPECT_EQ(point_de, ',');
1446
1447 kilometer_t de = 2_km;
1448 EXPECT_STREQ("2 km", units::length::to_string(de).c_str());
1449
1450 de = 2.5_km;
1451 EXPECT_STREQ("2,5 km", units::length::to_string(de).c_str());
1452
1453 // US locale
1454#if defined(_MSC_VER)
1455 setlocale(LC_ALL, "en-US");
1456#else
1457 EXPECT_STREQ("en_US.utf8", setlocale(LC_ALL, "en_US.utf8"));
1458#endif
1459
1460 lc = localeconv();
1461 char point_us = *lc->decimal_point;
1462 EXPECT_EQ(point_us, '.');
1463
1464 mile_t us = 2_mi;
1465 EXPECT_STREQ("2 mi", units::length::to_string(us).c_str());
1466
1467 us = 2.5_mi;
1468 EXPECT_STREQ("2.5 mi", units::length::to_string(us).c_str());
1469}
1470
1471TEST_F(UnitContainer, nameAndAbbreviation) {
1472 foot_t a(3.5);
1473 EXPECT_STREQ("ft", units::abbreviation(a));
1474 EXPECT_STREQ("ft", a.abbreviation());
1475 EXPECT_STREQ("foot", a.name());
1476
1477 meter_t b(8);
1478 EXPECT_STREQ("m", units::abbreviation(b));
1479 EXPECT_STREQ("m", b.abbreviation());
1480 EXPECT_STREQ("meter", b.name());
1481}
1482#endif
1483
1484TEST_F(UnitContainer, negative) {
1485 meter_t a(5.3);
1486 meter_t b(-5.3);
1487 EXPECT_NEAR(a.to<double>(), -b.to<double>(), 5.0e-320);
1488 EXPECT_NEAR(b.to<double>(), -a.to<double>(), 5.0e-320);
1489
1490 dB_t c(2.87);
1491 dB_t d(-2.87);
1492 EXPECT_NEAR(c.to<double>(), -d.to<double>(), 5.0e-320);
1493 EXPECT_NEAR(d.to<double>(), -c.to<double>(), 5.0e-320);
1494
1495 ppm_t e = -1 * ppm_t(10);
1496 EXPECT_EQ(e, -ppm_t(10));
1497 EXPECT_NEAR(-0.00001, e, 5.0e-10);
1498}
1499
1500TEST_F(UnitContainer, concentration) {
1501 ppb_t a(ppm_t(1));
1502 EXPECT_EQ(ppb_t(1000), a);
1503 EXPECT_EQ(0.000001, a);
1504 EXPECT_EQ(0.000001, a.to<double>());
1505
1506 scalar_t b(ppm_t(1));
1507 EXPECT_EQ(0.000001, b);
1508
1509 scalar_t c = ppb_t(1);
1510 EXPECT_EQ(0.000000001, c);
1511}
1512
1513TEST_F(UnitContainer, dBConversion) {
1514 dBW_t a_dbw(23.1);
1515 watt_t a_w = a_dbw;
1516 dBm_t a_dbm = a_dbw;
1517
1518 EXPECT_NEAR(204.173794, a_w(), 5.0e-7);
1519 EXPECT_NEAR(53.1, a_dbm(), 5.0e-7);
1520
1521 milliwatt_t b_mw(100000.0);
1522 watt_t b_w = b_mw;
1523 dBm_t b_dbm = b_mw;
1524 dBW_t b_dbw = b_mw;
1525
1526 EXPECT_NEAR(100.0, b_w(), 5.0e-7);
1527 EXPECT_NEAR(50.0, b_dbm(), 5.0e-7);
1528 EXPECT_NEAR(20.0, b_dbw(), 5.0e-7);
1529}
1530
1531TEST_F(UnitContainer, dBAddition) {
1532 bool isSame;
1533
1534 auto result_dbw = dBW_t(10.0) + dB_t(30.0);
1535 EXPECT_NEAR(40.0, result_dbw(), 5.0e-5);
1536 result_dbw = dB_t(12.0) + dBW_t(30.0);
1537 EXPECT_NEAR(42.0, result_dbw(), 5.0e-5);
1538 isSame = std::is_same<decltype(result_dbw), dBW_t>::value;
1539 EXPECT_TRUE(isSame);
1540
1541 auto result_dbm = dB_t(30.0) + dBm_t(20.0);
1542 EXPECT_NEAR(50.0, result_dbm(), 5.0e-5);
1543
1544 // adding dBW to dBW is something you probably shouldn't do, but let's see if
1545 // it works...
1546 auto result_dBW2 = dBW_t(10.0) + dBm_t(40.0);
1547 EXPECT_NEAR(20.0, result_dBW2(), 5.0e-5);
1548 isSame = std::is_same<decltype(result_dBW2),
1549 unit_t<squared<watts>, double, decibel_scale>>::value;
1550 EXPECT_TRUE(isSame);
1551}
1552
1553TEST_F(UnitContainer, dBSubtraction) {
1554 bool isSame;
1555
1556 auto result_dbw = dBW_t(10.0) - dB_t(30.0);
1557 EXPECT_NEAR(-20.0, result_dbw(), 5.0e-5);
1558 isSame = std::is_same<decltype(result_dbw), dBW_t>::value;
1559 EXPECT_TRUE(isSame);
1560
1561 auto result_dbm = dBm_t(100.0) - dB_t(30.0);
1562 EXPECT_NEAR(70.0, result_dbm(), 5.0e-5);
1563 isSame = std::is_same<decltype(result_dbm), dBm_t>::value;
1564 EXPECT_TRUE(isSame);
1565
1566 auto result_db = dBW_t(100.0) - dBW_t(80.0);
1567 EXPECT_NEAR(20.0, result_db(), 5.0e-5);
1568 isSame = std::is_same<decltype(result_db), dB_t>::value;
1569 EXPECT_TRUE(isSame);
1570
1571 result_db = dB_t(100.0) - dB_t(80.0);
1572 EXPECT_NEAR(20.0, result_db(), 5.0e-5);
1573 isSame = std::is_same<decltype(result_db), dB_t>::value;
1574 EXPECT_TRUE(isSame);
1575}
1576
1577TEST_F(UnitContainer, unit_cast) {
1578 meter_t test1(5.7);
1579 hectare_t test2(16);
1580
1581 double dResult1 = 5.7;
1582
1583 double dResult2 = 16;
1584 int iResult2 = 16;
1585
1586 EXPECT_EQ(dResult1, unit_cast<double>(test1));
1587 EXPECT_EQ(dResult2, unit_cast<double>(test2));
1588 EXPECT_EQ(iResult2, unit_cast<int>(test2));
1589
1590 EXPECT_TRUE(
1591 (std::is_same<double, decltype(unit_cast<double>(test1))>::value));
1592 EXPECT_TRUE((std::is_same<int, decltype(unit_cast<int>(test2))>::value));
1593}
1594
1595// literal syntax is only supported in GCC 4.7+ and MSVC2015+
1596#if !defined(_MSC_VER) || _MSC_VER > 1800
1597TEST_F(UnitContainer, literals) {
1598 // basic functionality testing
1599 EXPECT_TRUE((std::is_same<decltype(16.2_m), meter_t>::value));
1600 EXPECT_TRUE(meter_t(16.2) == 16.2_m);
1601 EXPECT_TRUE(meter_t(16) == 16_m);
1602
1603 EXPECT_TRUE((std::is_same<decltype(11.2_ft), foot_t>::value));
1604 EXPECT_TRUE(foot_t(11.2) == 11.2_ft);
1605 EXPECT_TRUE(foot_t(11) == 11_ft);
1606
1607 // auto using literal syntax
1608 auto x = 10.0_m;
1609 EXPECT_TRUE((std::is_same<decltype(x), meter_t>::value));
1610 EXPECT_TRUE(meter_t(10) == x);
1611
1612 // conversion using literal syntax
1613 foot_t y = 0.3048_m;
1614 EXPECT_TRUE(1_ft == y);
1615
1616 // Pythagorean theorem
1617 meter_t a = 3_m;
1618 meter_t b = 4_m;
1619 meter_t c = sqrt(pow<2>(a) + pow<2>(b));
1620 EXPECT_TRUE(c == 5_m);
1621}
1622#endif
1623
1624TEST_F(UnitConversion, length) {
1625 double test;
1626 test = convert<meters, nanometers>(0.000000001);
1627 EXPECT_NEAR(1.0, test, 5.0e-20);
1628 test = convert<meters, micrometers>(0.000001);
1629 EXPECT_NEAR(1.0, test, 5.0e-20);
1630 test = convert<meters, millimeters>(0.001);
1631 EXPECT_NEAR(1.0, test, 5.0e-20);
1632 test = convert<meters, centimeters>(0.01);
1633 EXPECT_NEAR(1.0, test, 5.0e-20);
1634 test = convert<meters, kilometers>(1000.0);
1635 EXPECT_NEAR(1.0, test, 5.0e-20);
1636 test = convert<meters, meters>(1.0);
1637 EXPECT_NEAR(1.0, test, 5.0e-20);
1638 test = convert<meters, feet>(0.3048);
1639 EXPECT_NEAR(1.0, test, 5.0e-20);
1640 test = convert<meters, miles>(1609.344);
1641 EXPECT_NEAR(1.0, test, 5.0e-20);
1642 test = convert<meters, inches>(0.0254);
1643 EXPECT_NEAR(1.0, test, 5.0e-20);
1644 test = convert<meters, nauticalMiles>(1852.0);
1645 EXPECT_NEAR(1.0, test, 5.0e-20);
1646 test = convert<meters, astronicalUnits>(149597870700.0);
1647 EXPECT_NEAR(1.0, test, 5.0e-20);
1648 test = convert<meters, lightyears>(9460730472580800.0);
1649 EXPECT_NEAR(1.0, test, 5.0e-20);
1650 test = convert<meters, parsec>(3.08567758e16);
1651 EXPECT_NEAR(1.0, test, 5.0e7);
1652
1653 test = convert<feet, feet>(6.3);
1654 EXPECT_NEAR(6.3, test, 5.0e-5);
1655 test = convert<feet, inches>(6.0);
1656 EXPECT_NEAR(72.0, test, 5.0e-5);
1657 test = convert<inches, feet>(6.0);
1658 EXPECT_NEAR(0.5, test, 5.0e-5);
1659 test = convert<meter, feet>(1.0);
1660 EXPECT_NEAR(3.28084, test, 5.0e-5);
1661 test = convert<miles, nauticalMiles>(6.3);
1662 EXPECT_NEAR(5.47455, test, 5.0e-6);
1663 test = convert<miles, meters>(11.0);
1664 EXPECT_NEAR(17702.8, test, 5.0e-2);
1665 test = convert<meters, chains>(1.0);
1666 EXPECT_NEAR(0.0497097, test, 5.0e-7);
1667}
1668
1669TEST_F(UnitConversion, mass) {
1670 double test;
1671
1672 test = convert<kilograms, grams>(1.0e-3);
1673 EXPECT_NEAR(1.0, test, 5.0e-6);
1674 test = convert<kilograms, micrograms>(1.0e-9);
1675 EXPECT_NEAR(1.0, test, 5.0e-6);
1676 test = convert<kilograms, milligrams>(1.0e-6);
1677 EXPECT_NEAR(1.0, test, 5.0e-6);
1678 test = convert<kilograms, kilograms>(1.0);
1679 EXPECT_NEAR(1.0, test, 5.0e-6);
1680 test = convert<kilograms, metric_tons>(1000.0);
1681 EXPECT_NEAR(1.0, test, 5.0e-6);
1682 test = convert<kilograms, pounds>(0.453592);
1683 EXPECT_NEAR(1.0, test, 5.0e-6);
1684 test = convert<kilograms, long_tons>(1016.05);
1685 EXPECT_NEAR(1.0, test, 5.0e-6);
1686 test = convert<kilograms, short_tons>(907.185);
1687 EXPECT_NEAR(1.0, test, 5.0e-6);
1688 test = convert<kilograms, mass::ounces>(0.0283495);
1689 EXPECT_NEAR(1.0, test, 5.0e-6);
1690 test = convert<kilograms, carats>(0.0002);
1691 EXPECT_NEAR(1.0, test, 5.0e-6);
1692 test = convert<slugs, kilograms>(1.0);
1693 EXPECT_NEAR(14.593903, test, 5.0e-7);
1694
1695 test = convert<pounds, carats>(6.3);
1696 EXPECT_NEAR(14288.2, test, 5.0e-2);
1697}
1698
1699TEST_F(UnitConversion, time) {
1700 double result = 0;
1701 double daysPerYear = 365;
1702 double hoursPerDay = 24;
1703 double minsPerHour = 60;
1704 double secsPerMin = 60;
1705 double daysPerWeek = 7;
1706
1707 result = 2 * daysPerYear * hoursPerDay * minsPerHour * secsPerMin *
1708 (1 / minsPerHour) * (1 / secsPerMin) * (1 / hoursPerDay) *
1709 (1 / daysPerWeek);
1710 EXPECT_NEAR(104.286, result, 5.0e-4);
1711
1712 year_t twoYears(2.0);
1713 week_t twoYearsInWeeks = twoYears;
1714 EXPECT_NEAR(week_t(104.286).to<double>(), twoYearsInWeeks.to<double>(),
1715 5.0e-4);
1716
1717 double test;
1718
1719 test = convert<seconds, seconds>(1.0);
1720 EXPECT_NEAR(1.0, test, 5.0e-20);
1721 test = convert<seconds, nanoseconds>(1.0e-9);
1722 EXPECT_NEAR(1.0, test, 5.0e-20);
1723 test = convert<seconds, microseconds>(1.0e-6);
1724 EXPECT_NEAR(1.0, test, 5.0e-20);
1725 test = convert<seconds, milliseconds>(1.0e-3);
1726 EXPECT_NEAR(1.0, test, 5.0e-20);
1727 test = convert<seconds, minutes>(60.0);
1728 EXPECT_NEAR(1.0, test, 5.0e-20);
1729 test = convert<seconds, hours>(3600.0);
1730 EXPECT_NEAR(1.0, test, 5.0e-20);
1731 test = convert<seconds, days>(86400.0);
1732 EXPECT_NEAR(1.0, test, 5.0e-20);
1733 test = convert<seconds, weeks>(604800.0);
1734 EXPECT_NEAR(1.0, test, 5.0e-20);
1735 test = convert<seconds, years>(3.154e7);
1736 EXPECT_NEAR(1.0, test, 5.0e3);
1737
1738 test = convert<years, weeks>(2.0);
1739 EXPECT_NEAR(104.2857142857143, test, 5.0e-14);
1740 test = convert<hours, minutes>(4.0);
1741 EXPECT_NEAR(240.0, test, 5.0e-14);
1742 test = convert<julian_years, days>(1.0);
1743 EXPECT_NEAR(365.25, test, 5.0e-14);
1744 test = convert<gregorian_years, days>(1.0);
1745 EXPECT_NEAR(365.2425, test, 5.0e-14);
1746}
1747
1748TEST_F(UnitConversion, angle) {
1749 angle::degree_t quarterCircleDeg(90.0);
1750 angle::radian_t quarterCircleRad = quarterCircleDeg;
1751 EXPECT_NEAR(angle::radian_t(constants::detail::PI_VAL / 2.0).to<double>(),
1752 quarterCircleRad.to<double>(), 5.0e-12);
1753
1754 double test;
1755
1756 test = convert<angle::radians, angle::radians>(1.0);
1757 EXPECT_NEAR(1.0, test, 5.0e-20);
1758 test = convert<angle::radians, angle::milliradians>(0.001);
1759 EXPECT_NEAR(1.0, test, 5.0e-4);
1760 test = convert<angle::radians, angle::degrees>(0.0174533);
1761 EXPECT_NEAR(1.0, test, 5.0e-7);
1762 test = convert<angle::radians, angle::arcminutes>(0.000290888);
1763 EXPECT_NEAR(0.99999928265913, test, 5.0e-8);
1764 test = convert<angle::radians, angle::arcseconds>(4.8481e-6);
1765 EXPECT_NEAR(0.999992407, test, 5.0e-10);
1766 test = convert<angle::radians, angle::turns>(6.28319);
1767 EXPECT_NEAR(1.0, test, 5.0e-6);
1768 test = convert<angle::radians, angle::gradians>(0.015708);
1769 EXPECT_NEAR(1.0, test, 5.0e-6);
1770
1771 test = convert<angle::radians, angle::radians>(2.1);
1772 EXPECT_NEAR(2.1, test, 5.0e-6);
1773 test = convert<angle::arcseconds, angle::gradians>(2.1);
1774 EXPECT_NEAR(0.000648148, test, 5.0e-6);
1775 test = convert<angle::radians, angle::degrees>(constants::detail::PI_VAL);
1776 EXPECT_NEAR(180.0, test, 5.0e-6);
1777 test = convert<angle::degrees, angle::radians>(90.0);
1778 EXPECT_NEAR(constants::detail::PI_VAL / 2, test, 5.0e-6);
1779}
1780
1781TEST_F(UnitConversion, current) {
1782 double test;
1783
1784 test = convert<current::A, current::mA>(2.1);
1785 EXPECT_NEAR(2100.0, test, 5.0e-6);
1786}
1787
1788TEST_F(UnitConversion, temperature) {
1789 // temp conversion are weird/hard since they involve translations AND scaling.
1790 double test;
1791
1792 test = convert<kelvin, kelvin>(72.0);
1793 EXPECT_NEAR(72.0, test, 5.0e-5);
1794 test = convert<fahrenheit, fahrenheit>(72.0);
1795 EXPECT_NEAR(72.0, test, 5.0e-5);
1796 test = convert<kelvin, fahrenheit>(300.0);
1797 EXPECT_NEAR(80.33, test, 5.0e-5);
1798 test = convert<fahrenheit, kelvin>(451.0);
1799 EXPECT_NEAR(505.928, test, 5.0e-4);
1800 test = convert<kelvin, celsius>(300.0);
1801 EXPECT_NEAR(26.85, test, 5.0e-3);
1802 test = convert<celsius, kelvin>(451.0);
1803 EXPECT_NEAR(724.15, test, 5.0e-3);
1804 test = convert<fahrenheit, celsius>(72.0);
1805 EXPECT_NEAR(22.2222, test, 5.0e-5);
1806 test = convert<celsius, fahrenheit>(100.0);
1807 EXPECT_NEAR(212.0, test, 5.0e-5);
1808 test = convert<fahrenheit, celsius>(32.0);
1809 EXPECT_NEAR(0.0, test, 5.0e-5);
1810 test = convert<celsius, fahrenheit>(0.0);
1811 EXPECT_NEAR(32.0, test, 5.0e-5);
1812 test = convert<rankine, kelvin>(100.0);
1813 EXPECT_NEAR(55.5556, test, 5.0e-5);
1814 test = convert<kelvin, rankine>(100.0);
1815 EXPECT_NEAR(180.0, test, 5.0e-5);
1816 test = convert<fahrenheit, rankine>(100.0);
1817 EXPECT_NEAR(559.67, test, 5.0e-5);
1818 test = convert<rankine, fahrenheit>(72.0);
1819 EXPECT_NEAR(-387.67, test, 5.0e-5);
1820 test = convert<reaumur, kelvin>(100.0);
1821 EXPECT_NEAR(398.0, test, 5.0e-1);
1822 test = convert<reaumur, celsius>(80.0);
1823 EXPECT_NEAR(100.0, test, 5.0e-5);
1824 test = convert<celsius, reaumur>(212.0);
1825 EXPECT_NEAR(169.6, test, 5.0e-2);
1826 test = convert<reaumur, fahrenheit>(80.0);
1827 EXPECT_NEAR(212.0, test, 5.0e-5);
1828 test = convert<fahrenheit, reaumur>(37.0);
1829 EXPECT_NEAR(2.222, test, 5.0e-3);
1830}
1831
1832TEST_F(UnitConversion, luminous_intensity) {
1833 double test;
1834
1835 test = convert<candela, millicandela>(72.0);
1836 EXPECT_NEAR(72000.0, test, 5.0e-5);
1837 test = convert<millicandela, candela>(376.0);
1838 EXPECT_NEAR(0.376, test, 5.0e-5);
1839}
1840
1841TEST_F(UnitConversion, solid_angle) {
1842 double test;
1843 bool same;
1844
1845 same = std::is_same<traits::base_unit_of<steradians>,
1846 traits::base_unit_of<degrees_squared>>::value;
1847 EXPECT_TRUE(same);
1848
1849 test = convert<steradians, steradians>(72.0);
1850 EXPECT_NEAR(72.0, test, 5.0e-5);
1851 test = convert<steradians, degrees_squared>(1.0);
1852 EXPECT_NEAR(3282.8, test, 5.0e-2);
1853 test = convert<steradians, spats>(8.0);
1854 EXPECT_NEAR(0.636619772367582, test, 5.0e-14);
1855 test = convert<degrees_squared, steradians>(3282.8);
1856 EXPECT_NEAR(1.0, test, 5.0e-5);
1857 test = convert<degrees_squared, degrees_squared>(72.0);
1858 EXPECT_NEAR(72.0, test, 5.0e-5);
1859 test = convert<degrees_squared, spats>(3282.8);
1860 EXPECT_NEAR(1.0 / (4 * constants::detail::PI_VAL), test, 5.0e-5);
1861 test = convert<spats, steradians>(1.0 / (4 * constants::detail::PI_VAL));
1862 EXPECT_NEAR(1.0, test, 5.0e-14);
1863 test = convert<spats, degrees_squared>(1.0 / (4 * constants::detail::PI_VAL));
1864 EXPECT_NEAR(3282.8, test, 5.0e-2);
1865 test = convert<spats, spats>(72.0);
1866 EXPECT_NEAR(72.0, test, 5.0e-5);
1867}
1868
1869TEST_F(UnitConversion, frequency) {
1870 double test;
1871
1872 test = convert<hertz, kilohertz>(63000.0);
1873 EXPECT_NEAR(63.0, test, 5.0e-5);
1874 test = convert<hertz, hertz>(6.3);
1875 EXPECT_NEAR(6.3, test, 5.0e-5);
1876 test = convert<kilohertz, hertz>(5.0);
1877 EXPECT_NEAR(5000.0, test, 5.0e-5);
1878 test = convert<megahertz, hertz>(1.0);
1879 EXPECT_NEAR(1.0e6, test, 5.0e-5);
1880}
1881
1882TEST_F(UnitConversion, velocity) {
1883 double test;
1884 bool same;
1885
1886 same = std::is_same<meters_per_second,
1887 unit<std::ratio<1>, category::velocity_unit>>::value;
1888 EXPECT_TRUE(same);
1889 same = traits::is_convertible_unit<miles_per_hour, meters_per_second>::value;
1890 EXPECT_TRUE(same);
1891
1892 test = convert<meters_per_second, miles_per_hour>(1250.0);
1893 EXPECT_NEAR(2796.17, test, 5.0e-3);
1894 test = convert<feet_per_second, kilometers_per_hour>(2796.17);
1895 EXPECT_NEAR(3068.181418, test, 5.0e-7);
1896 test = convert<knots, miles_per_hour>(600.0);
1897 EXPECT_NEAR(690.468, test, 5.0e-4);
1898 test = convert<miles_per_hour, feet_per_second>(120.0);
1899 EXPECT_NEAR(176.0, test, 5.0e-5);
1900 test = convert<feet_per_second, meters_per_second>(10.0);
1901 EXPECT_NEAR(3.048, test, 5.0e-5);
1902}
1903
1904TEST_F(UnitConversion, angular_velocity) {
1905 double test;
1906 bool same;
1907
1908 same =
1909 std::is_same<radians_per_second,
1910 unit<std::ratio<1>, category::angular_velocity_unit>>::value;
1911 EXPECT_TRUE(same);
1912 same = traits::is_convertible_unit<rpm, radians_per_second>::value;
1913 EXPECT_TRUE(same);
1914
1915 test = convert<radians_per_second, milliarcseconds_per_year>(1.0);
1916 EXPECT_NEAR(6.504e15, test, 1.0e12);
1917 test = convert<degrees_per_second, radians_per_second>(1.0);
1918 EXPECT_NEAR(0.0174533, test, 5.0e-8);
1919 test = convert<rpm, radians_per_second>(1.0);
1920 EXPECT_NEAR(0.10471975512, test, 5.0e-13);
1921 test = convert<milliarcseconds_per_year, radians_per_second>(1.0);
1922 EXPECT_NEAR(1.537e-16, test, 5.0e-20);
1923}
1924
1925TEST_F(UnitConversion, acceleration) {
1926 double test;
1927
1928 test = convert<standard_gravity, meters_per_second_squared>(1.0);
1929 EXPECT_NEAR(9.80665, test, 5.0e-10);
1930}
1931
1932TEST_F(UnitConversion, force) {
1933 double test;
1934
1935 test = convert<units::force::newton, units::force::newton>(1.0);
1936 EXPECT_NEAR(1.0, test, 5.0e-5);
1937 test = convert<units::force::newton, units::force::pounds>(6.3);
1938 EXPECT_NEAR(1.4163, test, 5.0e-5);
1939 test = convert<units::force::newton, units::force::dynes>(5.0);
1940 EXPECT_NEAR(500000.0, test, 5.0e-5);
1941 test = convert<units::force::newtons, units::force::poundals>(2.1);
1942 EXPECT_NEAR(15.1893, test, 5.0e-5);
1943 test = convert<units::force::newtons, units::force::kiloponds>(173.0);
1944 EXPECT_NEAR(17.6411, test, 5.0e-5);
1945 test = convert<units::force::poundals, units::force::kiloponds>(21.879);
1946 EXPECT_NEAR(0.308451933, test, 5.0e-10);
1947}
1948
1949TEST_F(UnitConversion, area) {
1950 double test;
1951
1952 test = convert<hectares, acres>(6.3);
1953 EXPECT_NEAR(15.5676, test, 5.0e-5);
1954 test = convert<square_miles, square_kilometers>(10.0);
1955 EXPECT_NEAR(25.8999, test, 5.0e-5);
1956 test = convert<square_inch, square_meter>(4.0);
1957 EXPECT_NEAR(0.00258064, test, 5.0e-9);
1958 test = convert<acre, square_foot>(5.0);
1959 EXPECT_NEAR(217800.0, test, 5.0e-5);
1960 test = convert<square_meter, square_foot>(1.0);
1961 EXPECT_NEAR(10.7639, test, 5.0e-5);
1962}
1963
1964TEST_F(UnitConversion, pressure) {
1965 double test;
1966
1967 test = convert<pascals, torr>(1.0);
1968 EXPECT_NEAR(0.00750062, test, 5.0e-5);
1969 test = convert<bar, psi>(2.2);
1970 EXPECT_NEAR(31.9083, test, 5.0e-5);
1971 test = convert<atmospheres, bar>(4.0);
1972 EXPECT_NEAR(4.053, test, 5.0e-5);
1973 test = convert<torr, pascals>(800.0);
1974 EXPECT_NEAR(106657.89474, test, 5.0e-5);
1975 test = convert<psi, atmospheres>(38.0);
1976 EXPECT_NEAR(2.58575, test, 5.0e-5);
1977 test = convert<psi, pascals>(1.0);
1978 EXPECT_NEAR(6894.76, test, 5.0e-3);
1979 test = convert<pascals, bar>(0.25);
1980 EXPECT_NEAR(2.5e-6, test, 5.0e-5);
1981 test = convert<torr, atmospheres>(9.0);
1982 EXPECT_NEAR(0.0118421, test, 5.0e-8);
1983 test = convert<bar, torr>(12.0);
1984 EXPECT_NEAR(9000.74, test, 5.0e-3);
1985 test = convert<atmospheres, psi>(1.0);
1986 EXPECT_NEAR(14.6959, test, 5.0e-5);
1987}
1988
1989TEST_F(UnitConversion, charge) {
1990 double test;
1991
1992 test = convert<coulombs, ampere_hours>(4.0);
1993 EXPECT_NEAR(0.00111111, test, 5.0e-9);
1994 test = convert<ampere_hours, coulombs>(1.0);
1995 EXPECT_NEAR(3600.0, test, 5.0e-6);
1996}
1997
1998TEST_F(UnitConversion, energy) {
1999 double test;
2000
2001 test = convert<joules, calories>(8000.000464);
2002 EXPECT_NEAR(1912.046, test, 5.0e-4);
2003 test = convert<therms, joules>(12.0);
2004 EXPECT_NEAR(1.266e+9, test, 5.0e5);
2005 test = convert<megajoules, watt_hours>(100.0);
2006 EXPECT_NEAR(27777.778, test, 5.0e-4);
2007 test = convert<kilocalories, megajoules>(56.0);
2008 EXPECT_NEAR(0.234304, test, 5.0e-7);
2009 test = convert<kilojoules, therms>(56.0);
2010 EXPECT_NEAR(0.000530904, test, 5.0e-5);
2011 test = convert<british_thermal_units, kilojoules>(18.56399995447);
2012 EXPECT_NEAR(19.5860568, test, 5.0e-5);
2013 test = convert<calories, energy::foot_pounds>(18.56399995447);
2014 EXPECT_NEAR(57.28776190423856, test, 5.0e-5);
2015 test = convert<megajoules, calories>(1.0);
2016 EXPECT_NEAR(239006.0, test, 5.0e-1);
2017 test = convert<kilocalories, kilowatt_hours>(2.0);
2018 EXPECT_NEAR(0.00232444, test, 5.0e-9);
2019 test = convert<therms, kilocalories>(0.1);
2020 EXPECT_NEAR(2521.04, test, 5.0e-3);
2021 test = convert<watt_hours, megajoules>(67.0);
2022 EXPECT_NEAR(0.2412, test, 5.0e-5);
2023 test = convert<british_thermal_units, watt_hours>(100.0);
2024 EXPECT_NEAR(29.3071, test, 5.0e-5);
2025 test = convert<calories, BTU>(100.0);
2026 EXPECT_NEAR(0.396567, test, 5.0e-5);
2027}
2028
2029TEST_F(UnitConversion, power) {
2030 double test;
2031
2032 test = convert<compound_unit<energy::foot_pounds, inverse<seconds>>, watts>(
2033 550.0);
2034 EXPECT_NEAR(745.7, test, 5.0e-2);
2035 test = convert<watts, gigawatts>(1000000000.0);
2036 EXPECT_NEAR(1.0, test, 5.0e-4);
2037 test = convert<microwatts, watts>(200000.0);
2038 EXPECT_NEAR(0.2, test, 5.0e-4);
2039 test = convert<horsepower, watts>(100.0);
2040 EXPECT_NEAR(74570.0, test, 5.0e-1);
2041 test = convert<horsepower, megawatts>(5.0);
2042 EXPECT_NEAR(0.0037284994, test, 5.0e-7);
2043 test = convert<kilowatts, horsepower>(232.0);
2044 EXPECT_NEAR(311.117, test, 5.0e-4);
2045 test = convert<milliwatts, horsepower>(1001.0);
2046 EXPECT_NEAR(0.001342363, test, 5.0e-9);
2047}
2048
2049TEST_F(UnitConversion, voltage) {
2050 double test;
2051
2052 test = convert<volts, millivolts>(10.0);
2053 EXPECT_NEAR(10000.0, test, 5.0e-5);
2054 test = convert<picovolts, volts>(1000000000000.0);
2055 EXPECT_NEAR(1.0, test, 5.0e-5);
2056 test = convert<nanovolts, volts>(1000000000.0);
2057 EXPECT_NEAR(1.0, test, 5.0e-5);
2058 test = convert<microvolts, volts>(1000000.0);
2059 EXPECT_NEAR(1.0, test, 5.0e-5);
2060 test = convert<millivolts, volts>(1000.0);
2061 EXPECT_NEAR(1.0, test, 5.0e-5);
2062 test = convert<kilovolts, volts>(0.001);
2063 EXPECT_NEAR(1.0, test, 5.0e-5);
2064 test = convert<megavolts, volts>(0.000001);
2065 EXPECT_NEAR(1.0, test, 5.0e-5);
2066 test = convert<gigavolts, volts>(0.000000001);
2067 EXPECT_NEAR(1.0, test, 5.0e-5);
2068 test = convert<statvolts, volts>(299.792458);
2069 EXPECT_NEAR(1.0, test, 5.0e-5);
2070 test = convert<millivolts, statvolts>(1000.0);
2071 EXPECT_NEAR(299.792458, test, 5.0e-5);
2072 test = convert<abvolts, nanovolts>(0.1);
2073 EXPECT_NEAR(1.0, test, 5.0e-5);
2074 test = convert<microvolts, abvolts>(0.01);
2075 EXPECT_NEAR(1.0, test, 5.0e-5);
2076}
2077
2078TEST_F(UnitConversion, capacitance) {
2079 double test;
2080
2081 test = convert<farads, millifarads>(10.0);
2082 EXPECT_NEAR(10000.0, test, 5.0e-5);
2083 test = convert<picofarads, farads>(1000000000000.0);
2084 EXPECT_NEAR(1.0, test, 5.0e-5);
2085 test = convert<nanofarads, farads>(1000000000.0);
2086 EXPECT_NEAR(1.0, test, 5.0e-5);
2087 test = convert<microfarads, farads>(1000000.0);
2088 EXPECT_NEAR(1.0, test, 5.0e-5);
2089 test = convert<millifarads, farads>(1000.0);
2090 EXPECT_NEAR(1.0, test, 5.0e-5);
2091 test = convert<kilofarads, farads>(0.001);
2092 EXPECT_NEAR(1.0, test, 5.0e-5);
2093 test = convert<megafarads, farads>(0.000001);
2094 EXPECT_NEAR(1.0, test, 5.0e-5);
2095 test = convert<gigafarads, farads>(0.000000001);
2096 EXPECT_NEAR(1.0, test, 5.0e-5);
2097}
2098
2099TEST_F(UnitConversion, impedance) {
2100 double test;
2101
2102 test = convert<ohms, milliohms>(10.0);
2103 EXPECT_NEAR(10000.0, test, 5.0e-5);
2104 test = convert<picoohms, ohms>(1000000000000.0);
2105 EXPECT_NEAR(1.0, test, 5.0e-5);
2106 test = convert<nanoohms, ohms>(1000000000.0);
2107 EXPECT_NEAR(1.0, test, 5.0e-5);
2108 test = convert<microohms, ohms>(1000000.0);
2109 EXPECT_NEAR(1.0, test, 5.0e-5);
2110 test = convert<milliohms, ohms>(1000.0);
2111 EXPECT_NEAR(1.0, test, 5.0e-5);
2112 test = convert<kiloohms, ohms>(0.001);
2113 EXPECT_NEAR(1.0, test, 5.0e-5);
2114 test = convert<megaohms, ohms>(0.000001);
2115 EXPECT_NEAR(1.0, test, 5.0e-5);
2116 test = convert<gigaohms, ohms>(0.000000001);
2117 EXPECT_NEAR(1.0, test, 5.0e-5);
2118}
2119
2120TEST_F(UnitConversion, conductance) {
2121 double test;
2122
2123 test = convert<siemens, millisiemens>(10.0);
2124 EXPECT_NEAR(10000.0, test, 5.0e-5);
2125 test = convert<picosiemens, siemens>(1000000000000.0);
2126 EXPECT_NEAR(1.0, test, 5.0e-5);
2127 test = convert<nanosiemens, siemens>(1000000000.0);
2128 EXPECT_NEAR(1.0, test, 5.0e-5);
2129 test = convert<microsiemens, siemens>(1000000.0);
2130 EXPECT_NEAR(1.0, test, 5.0e-5);
2131 test = convert<millisiemens, siemens>(1000.0);
2132 EXPECT_NEAR(1.0, test, 5.0e-5);
2133 test = convert<kilosiemens, siemens>(0.001);
2134 EXPECT_NEAR(1.0, test, 5.0e-5);
2135 test = convert<megasiemens, siemens>(0.000001);
2136 EXPECT_NEAR(1.0, test, 5.0e-5);
2137 test = convert<gigasiemens, siemens>(0.000000001);
2138 EXPECT_NEAR(1.0, test, 5.0e-5);
2139}
2140
2141TEST_F(UnitConversion, magnetic_flux) {
2142 double test;
2143
2144 test = convert<webers, milliwebers>(10.0);
2145 EXPECT_NEAR(10000.0, test, 5.0e-5);
2146 test = convert<picowebers, webers>(1000000000000.0);
2147 EXPECT_NEAR(1.0, test, 5.0e-5);
2148 test = convert<nanowebers, webers>(1000000000.0);
2149 EXPECT_NEAR(1.0, test, 5.0e-5);
2150 test = convert<microwebers, webers>(1000000.0);
2151 EXPECT_NEAR(1.0, test, 5.0e-5);
2152 test = convert<milliwebers, webers>(1000.0);
2153 EXPECT_NEAR(1.0, test, 5.0e-5);
2154 test = convert<kilowebers, webers>(0.001);
2155 EXPECT_NEAR(1.0, test, 5.0e-5);
2156 test = convert<megawebers, webers>(0.000001);
2157 EXPECT_NEAR(1.0, test, 5.0e-5);
2158 test = convert<gigawebers, webers>(0.000000001);
2159 EXPECT_NEAR(1.0, test, 5.0e-5);
2160 test = convert<maxwells, webers>(100000000.0);
2161 EXPECT_NEAR(1.0, test, 5.0e-5);
2162 test = convert<nanowebers, maxwells>(10.0);
2163 EXPECT_NEAR(1.0, test, 5.0e-5);
2164}
2165
2166TEST_F(UnitConversion, magnetic_field_strength) {
2167 double test;
2168
2169 test = convert<teslas, milliteslas>(10.0);
2170 EXPECT_NEAR(10000.0, test, 5.0e-5);
2171 test = convert<picoteslas, teslas>(1000000000000.0);
2172 EXPECT_NEAR(1.0, test, 5.0e-5);
2173 test = convert<nanoteslas, teslas>(1000000000.0);
2174 EXPECT_NEAR(1.0, test, 5.0e-5);
2175 test = convert<microteslas, teslas>(1000000.0);
2176 EXPECT_NEAR(1.0, test, 5.0e-5);
2177 test = convert<milliteslas, teslas>(1000.0);
2178 EXPECT_NEAR(1.0, test, 5.0e-5);
2179 test = convert<kiloteslas, teslas>(0.001);
2180 EXPECT_NEAR(1.0, test, 5.0e-5);
2181 test = convert<megateslas, teslas>(0.000001);
2182 EXPECT_NEAR(1.0, test, 5.0e-5);
2183 test = convert<gigateslas, teslas>(0.000000001);
2184 EXPECT_NEAR(1.0, test, 5.0e-5);
2185 test = convert<gauss, teslas>(10000.0);
2186 EXPECT_NEAR(1.0, test, 5.0e-5);
2187 test = convert<nanoteslas, gauss>(100000.0);
2188 EXPECT_NEAR(1.0, test, 5.0e-5);
2189}
2190
2191TEST_F(UnitConversion, inductance) {
2192 double test;
2193
2194 test = convert<henries, millihenries>(10.0);
2195 EXPECT_NEAR(10000.0, test, 5.0e-5);
2196 test = convert<picohenries, henries>(1000000000000.0);
2197 EXPECT_NEAR(1.0, test, 5.0e-5);
2198 test = convert<nanohenries, henries>(1000000000.0);
2199 EXPECT_NEAR(1.0, test, 5.0e-5);
2200 test = convert<microhenries, henries>(1000000.0);
2201 EXPECT_NEAR(1.0, test, 5.0e-5);
2202 test = convert<millihenries, henries>(1000.0);
2203 EXPECT_NEAR(1.0, test, 5.0e-5);
2204 test = convert<kilohenries, henries>(0.001);
2205 EXPECT_NEAR(1.0, test, 5.0e-5);
2206 test = convert<megahenries, henries>(0.000001);
2207 EXPECT_NEAR(1.0, test, 5.0e-5);
2208 test = convert<gigahenries, henries>(0.000000001);
2209 EXPECT_NEAR(1.0, test, 5.0e-5);
2210}
2211
2212TEST_F(UnitConversion, luminous_flux) {
2213 double test;
2214
2215 test = convert<lumens, millilumens>(10.0);
2216 EXPECT_NEAR(10000.0, test, 5.0e-5);
2217 test = convert<picolumens, lumens>(1000000000000.0);
2218 EXPECT_NEAR(1.0, test, 5.0e-5);
2219 test = convert<nanolumens, lumens>(1000000000.0);
2220 EXPECT_NEAR(1.0, test, 5.0e-5);
2221 test = convert<microlumens, lumens>(1000000.0);
2222 EXPECT_NEAR(1.0, test, 5.0e-5);
2223 test = convert<millilumens, lumens>(1000.0);
2224 EXPECT_NEAR(1.0, test, 5.0e-5);
2225 test = convert<kilolumens, lumens>(0.001);
2226 EXPECT_NEAR(1.0, test, 5.0e-5);
2227 test = convert<megalumens, lumens>(0.000001);
2228 EXPECT_NEAR(1.0, test, 5.0e-5);
2229 test = convert<gigalumens, lumens>(0.000000001);
2230 EXPECT_NEAR(1.0, test, 5.0e-5);
2231}
2232
2233TEST_F(UnitConversion, illuminance) {
2234 double test;
2235
2236 test = convert<luxes, milliluxes>(10.0);
2237 EXPECT_NEAR(10000.0, test, 5.0e-5);
2238 test = convert<picoluxes, luxes>(1000000000000.0);
2239 EXPECT_NEAR(1.0, test, 5.0e-5);
2240 test = convert<nanoluxes, luxes>(1000000000.0);
2241 EXPECT_NEAR(1.0, test, 5.0e-5);
2242 test = convert<microluxes, luxes>(1000000.0);
2243 EXPECT_NEAR(1.0, test, 5.0e-5);
2244 test = convert<milliluxes, luxes>(1000.0);
2245 EXPECT_NEAR(1.0, test, 5.0e-5);
2246 test = convert<kiloluxes, luxes>(0.001);
2247 EXPECT_NEAR(1.0, test, 5.0e-5);
2248 test = convert<megaluxes, luxes>(0.000001);
2249 EXPECT_NEAR(1.0, test, 5.0e-5);
2250 test = convert<gigaluxes, luxes>(0.000000001);
2251 EXPECT_NEAR(1.0, test, 5.0e-5);
2252
2253 test = convert<footcandles, luxes>(0.092903);
2254 EXPECT_NEAR(1.0, test, 5.0e-5);
2255 test = convert<lux, lumens_per_square_inch>(1550.0031000062);
2256 EXPECT_NEAR(1.0, test, 5.0e-13);
2257 test = convert<phots, luxes>(0.0001);
2258 EXPECT_NEAR(1.0, test, 5.0e-5);
2259}
2260
2261TEST_F(UnitConversion, radiation) {
2262 double test;
2263
2264 test = convert<becquerels, millibecquerels>(10.0);
2265 EXPECT_NEAR(10000.0, test, 5.0e-5);
2266 test = convert<picobecquerels, becquerels>(1000000000000.0);
2267 EXPECT_NEAR(1.0, test, 5.0e-5);
2268 test = convert<nanobecquerels, becquerels>(1000000000.0);
2269 EXPECT_NEAR(1.0, test, 5.0e-5);
2270 test = convert<microbecquerels, becquerels>(1000000.0);
2271 EXPECT_NEAR(1.0, test, 5.0e-5);
2272 test = convert<millibecquerels, becquerels>(1000.0);
2273 EXPECT_NEAR(1.0, test, 5.0e-5);
2274 test = convert<kilobecquerels, becquerels>(0.001);
2275 EXPECT_NEAR(1.0, test, 5.0e-5);
2276 test = convert<megabecquerels, becquerels>(0.000001);
2277 EXPECT_NEAR(1.0, test, 5.0e-5);
2278 test = convert<gigabecquerels, becquerels>(0.000000001);
2279 EXPECT_NEAR(1.0, test, 5.0e-5);
2280
2281 test = convert<grays, milligrays>(10.0);
2282 EXPECT_NEAR(10000.0, test, 5.0e-5);
2283 test = convert<picograys, grays>(1000000000000.0);
2284 EXPECT_NEAR(1.0, test, 5.0e-5);
2285 test = convert<nanograys, grays>(1000000000.0);
2286 EXPECT_NEAR(1.0, test, 5.0e-5);
2287 test = convert<micrograys, grays>(1000000.0);
2288 EXPECT_NEAR(1.0, test, 5.0e-5);
2289 test = convert<milligrays, grays>(1000.0);
2290 EXPECT_NEAR(1.0, test, 5.0e-5);
2291 test = convert<kilograys, grays>(0.001);
2292 EXPECT_NEAR(1.0, test, 5.0e-5);
2293 test = convert<megagrays, grays>(0.000001);
2294 EXPECT_NEAR(1.0, test, 5.0e-5);
2295 test = convert<gigagrays, grays>(0.000000001);
2296 EXPECT_NEAR(1.0, test, 5.0e-5);
2297
2298 test = convert<sieverts, millisieverts>(10.0);
2299 EXPECT_NEAR(10000.0, test, 5.0e-5);
2300 test = convert<picosieverts, sieverts>(1000000000000.0);
2301 EXPECT_NEAR(1.0, test, 5.0e-5);
2302 test = convert<nanosieverts, sieverts>(1000000000.0);
2303 EXPECT_NEAR(1.0, test, 5.0e-5);
2304 test = convert<microsieverts, sieverts>(1000000.0);
2305 EXPECT_NEAR(1.0, test, 5.0e-5);
2306 test = convert<millisieverts, sieverts>(1000.0);
2307 EXPECT_NEAR(1.0, test, 5.0e-5);
2308 test = convert<kilosieverts, sieverts>(0.001);
2309 EXPECT_NEAR(1.0, test, 5.0e-5);
2310 test = convert<megasieverts, sieverts>(0.000001);
2311 EXPECT_NEAR(1.0, test, 5.0e-5);
2312 test = convert<gigasieverts, sieverts>(0.000000001);
2313 EXPECT_NEAR(1.0, test, 5.0e-5);
2314
2315 test = convert<becquerels, curies>(37.0e9);
2316 EXPECT_NEAR(1.0, test, 5.0e-5);
2317 test = convert<becquerels, rutherfords>(1000000.0);
2318 EXPECT_NEAR(1.0, test, 5.0e-5);
2319 test = convert<rads, grays>(100.0);
2320 EXPECT_NEAR(1.0, test, 5.0e-5);
2321}
2322
2323TEST_F(UnitConversion, torque) {
2324 double test;
2325
2326 test = convert<torque::foot_pounds, newton_meter>(1.0);
2327 EXPECT_NEAR(1.355817948, test, 5.0e-5);
2328 test = convert<inch_pounds, newton_meter>(1.0);
2329 EXPECT_NEAR(0.112984829, test, 5.0e-5);
2330 test = convert<foot_poundals, newton_meter>(1.0);
2331 EXPECT_NEAR(4.214011009e-2, test, 5.0e-5);
2332 test = convert<meter_kilograms, newton_meter>(1.0);
2333 EXPECT_NEAR(9.80665, test, 5.0e-5);
2334 test = convert<inch_pound, meter_kilogram>(86.79616930855788);
2335 EXPECT_NEAR(1.0, test, 5.0e-5);
2336 test = convert<foot_poundals, inch_pound>(2.681170713);
2337 EXPECT_NEAR(1.0, test, 5.0e-5);
2338}
2339
2340TEST_F(UnitConversion, volume) {
2341 double test;
2342
2343 test = convert<cubic_meters, cubic_meter>(1.0);
2344 EXPECT_NEAR(1.0, test, 5.0e-5);
2345 test = convert<cubic_millimeters, cubic_meter>(1.0);
2346 EXPECT_NEAR(1.0e-9, test, 5.0e-5);
2347 test = convert<cubic_kilometers, cubic_meter>(1.0);
2348 EXPECT_NEAR(1.0e9, test, 5.0e-5);
2349 test = convert<liters, cubic_meter>(1.0);
2350 EXPECT_NEAR(0.001, test, 5.0e-5);
2351 test = convert<milliliters, cubic_meter>(1.0);
2352 EXPECT_NEAR(1.0e-6, test, 5.0e-5);
2353 test = convert<cubic_inches, cubic_meter>(1.0);
2354 EXPECT_NEAR(1.6387e-5, test, 5.0e-10);
2355 test = convert<cubic_feet, cubic_meter>(1.0);
2356 EXPECT_NEAR(0.0283168, test, 5.0e-8);
2357 test = convert<cubic_yards, cubic_meter>(1.0);
2358 EXPECT_NEAR(0.764555, test, 5.0e-7);
2359 test = convert<cubic_miles, cubic_meter>(1.0);
2360 EXPECT_NEAR(4.168e+9, test, 5.0e5);
2361 test = convert<gallons, cubic_meter>(1.0);
2362 EXPECT_NEAR(0.00378541, test, 5.0e-8);
2363 test = convert<quarts, cubic_meter>(1.0);
2364 EXPECT_NEAR(0.000946353, test, 5.0e-10);
2365 test = convert<pints, cubic_meter>(1.0);
2366 EXPECT_NEAR(0.000473176, test, 5.0e-10);
2367 test = convert<cups, cubic_meter>(1.0);
2368 EXPECT_NEAR(0.00024, test, 5.0e-6);
2369 test = convert<volume::fluid_ounces, cubic_meter>(1.0);
2370 EXPECT_NEAR(2.9574e-5, test, 5.0e-5);
2371 test = convert<barrels, cubic_meter>(1.0);
2372 EXPECT_NEAR(0.158987294928, test, 5.0e-13);
2373 test = convert<bushels, cubic_meter>(1.0);
2374 EXPECT_NEAR(0.0352391, test, 5.0e-8);
2375 test = convert<cords, cubic_meter>(1.0);
2376 EXPECT_NEAR(3.62456, test, 5.0e-6);
2377 test = convert<cubic_fathoms, cubic_meter>(1.0);
2378 EXPECT_NEAR(6.11644, test, 5.0e-6);
2379 test = convert<tablespoons, cubic_meter>(1.0);
2380 EXPECT_NEAR(1.4787e-5, test, 5.0e-10);
2381 test = convert<teaspoons, cubic_meter>(1.0);
2382 EXPECT_NEAR(4.9289e-6, test, 5.0e-11);
2383 test = convert<pinches, cubic_meter>(1.0);
2384 EXPECT_NEAR(616.11519921875e-9, test, 5.0e-20);
2385 test = convert<dashes, cubic_meter>(1.0);
2386 EXPECT_NEAR(308.057599609375e-9, test, 5.0e-20);
2387 test = convert<drops, cubic_meter>(1.0);
2388 EXPECT_NEAR(82.14869322916e-9, test, 5.0e-9);
2389 test = convert<fifths, cubic_meter>(1.0);
2390 EXPECT_NEAR(0.00075708236, test, 5.0e-12);
2391 test = convert<drams, cubic_meter>(1.0);
2392 EXPECT_NEAR(3.69669e-6, test, 5.0e-12);
2393 test = convert<gills, cubic_meter>(1.0);
2394 EXPECT_NEAR(0.000118294, test, 5.0e-10);
2395 test = convert<pecks, cubic_meter>(1.0);
2396 EXPECT_NEAR(0.00880977, test, 5.0e-9);
2397 test = convert<sacks, cubic_meter>(9.4591978);
2398 EXPECT_NEAR(1.0, test, 5.0e-5);
2399 test = convert<shots, cubic_meter>(1.0);
2400 EXPECT_NEAR(4.43603e-5, test, 5.0e-11);
2401 test = convert<strikes, cubic_meter>(1.0);
2402 EXPECT_NEAR(0.07047814033376, test, 5.0e-5);
2403 test = convert<volume::fluid_ounces, milliliters>(1.0);
2404 EXPECT_NEAR(29.5735, test, 5.0e-5);
2405}
2406
2407TEST_F(UnitConversion, density) {
2408 double test;
2409
2410 test = convert<kilograms_per_cubic_meter, kilograms_per_cubic_meter>(1.0);
2411 EXPECT_NEAR(1.0, test, 5.0e-5);
2412 test = convert<grams_per_milliliter, kilograms_per_cubic_meter>(1.0);
2413 EXPECT_NEAR(1000.0, test, 5.0e-5);
2414 test = convert<kilograms_per_liter, kilograms_per_cubic_meter>(1.0);
2415 EXPECT_NEAR(1000.0, test, 5.0e-5);
2416 test = convert<ounces_per_cubic_foot, kilograms_per_cubic_meter>(1.0);
2417 EXPECT_NEAR(1.001153961, test, 5.0e-10);
2418 test = convert<ounces_per_cubic_inch, kilograms_per_cubic_meter>(1.0);
2419 EXPECT_NEAR(1.729994044e3, test, 5.0e-7);
2420 test = convert<ounces_per_gallon, kilograms_per_cubic_meter>(1.0);
2421 EXPECT_NEAR(7.489151707, test, 5.0e-10);
2422 test = convert<pounds_per_cubic_foot, kilograms_per_cubic_meter>(1.0);
2423 EXPECT_NEAR(16.01846337, test, 5.0e-9);
2424 test = convert<pounds_per_cubic_inch, kilograms_per_cubic_meter>(1.0);
2425 EXPECT_NEAR(2.767990471e4, test, 5.0e-6);
2426 test = convert<pounds_per_gallon, kilograms_per_cubic_meter>(1.0);
2427 EXPECT_NEAR(119.8264273, test, 5.0e-8);
2428 test = convert<slugs_per_cubic_foot, kilograms_per_cubic_meter>(1.0);
2429 EXPECT_NEAR(515.3788184, test, 5.0e-6);
2430}
2431
2432TEST_F(UnitConversion, concentration) {
2433 double test;
2434
2435 test = ppm_t(1.0);
2436 EXPECT_NEAR(1.0e-6, test, 5.0e-12);
2437 test = ppb_t(1.0);
2438 EXPECT_NEAR(1.0e-9, test, 5.0e-12);
2439 test = ppt_t(1.0);
2440 EXPECT_NEAR(1.0e-12, test, 5.0e-12);
2441 test = percent_t(18.0);
2442 EXPECT_NEAR(0.18, test, 5.0e-12);
2443}
2444
2445TEST_F(UnitConversion, data) {
2446 EXPECT_EQ(8, (convert<byte, bit>(1)));
2447
2448 EXPECT_EQ(1000, (convert<kilobytes, bytes>(1)));
2449 EXPECT_EQ(1000, (convert<megabytes, kilobytes>(1)));
2450 EXPECT_EQ(1000, (convert<gigabytes, megabytes>(1)));
2451 EXPECT_EQ(1000, (convert<terabytes, gigabytes>(1)));
2452 EXPECT_EQ(1000, (convert<petabytes, terabytes>(1)));
2453 EXPECT_EQ(1000, (convert<exabytes, petabytes>(1)));
2454
2455 EXPECT_EQ(1024, (convert<kibibytes, bytes>(1)));
2456 EXPECT_EQ(1024, (convert<mebibytes, kibibytes>(1)));
2457 EXPECT_EQ(1024, (convert<gibibytes, mebibytes>(1)));
2458 EXPECT_EQ(1024, (convert<tebibytes, gibibytes>(1)));
2459 EXPECT_EQ(1024, (convert<pebibytes, tebibytes>(1)));
2460 EXPECT_EQ(1024, (convert<exbibytes, pebibytes>(1)));
2461
2462 EXPECT_EQ(93750000, (convert<gigabytes, kibibits>(12)));
2463
2464 EXPECT_EQ(1000, (convert<kilobits, bits>(1)));
2465 EXPECT_EQ(1000, (convert<megabits, kilobits>(1)));
2466 EXPECT_EQ(1000, (convert<gigabits, megabits>(1)));
2467 EXPECT_EQ(1000, (convert<terabits, gigabits>(1)));
2468 EXPECT_EQ(1000, (convert<petabits, terabits>(1)));
2469 EXPECT_EQ(1000, (convert<exabits, petabits>(1)));
2470
2471 EXPECT_EQ(1024, (convert<kibibits, bits>(1)));
2472 EXPECT_EQ(1024, (convert<mebibits, kibibits>(1)));
2473 EXPECT_EQ(1024, (convert<gibibits, mebibits>(1)));
2474 EXPECT_EQ(1024, (convert<tebibits, gibibits>(1)));
2475 EXPECT_EQ(1024, (convert<pebibits, tebibits>(1)));
2476 EXPECT_EQ(1024, (convert<exbibits, pebibits>(1)));
2477
2478 // Source: https://en.wikipedia.org/wiki/Binary_prefix
2479 EXPECT_NEAR(percent_t(2.4), kibibyte_t(1) / kilobyte_t(1) - 1, 0.005);
2480 EXPECT_NEAR(percent_t(4.9), mebibyte_t(1) / megabyte_t(1) - 1, 0.005);
2481 EXPECT_NEAR(percent_t(7.4), gibibyte_t(1) / gigabyte_t(1) - 1, 0.005);
2482 EXPECT_NEAR(percent_t(10.0), tebibyte_t(1) / terabyte_t(1) - 1, 0.005);
2483 EXPECT_NEAR(percent_t(12.6), pebibyte_t(1) / petabyte_t(1) - 1, 0.005);
2484 EXPECT_NEAR(percent_t(15.3), exbibyte_t(1) / exabyte_t(1) - 1, 0.005);
2485}
2486
2487TEST_F(UnitConversion, data_transfer_rate) {
2488 EXPECT_EQ(8, (convert<bytes_per_second, bits_per_second>(1)));
2489
2490 EXPECT_EQ(1000, (convert<kilobytes_per_second, bytes_per_second>(1)));
2491 EXPECT_EQ(1000, (convert<megabytes_per_second, kilobytes_per_second>(1)));
2492 EXPECT_EQ(1000, (convert<gigabytes_per_second, megabytes_per_second>(1)));
2493 EXPECT_EQ(1000, (convert<terabytes_per_second, gigabytes_per_second>(1)));
2494 EXPECT_EQ(1000, (convert<petabytes_per_second, terabytes_per_second>(1)));
2495 EXPECT_EQ(1000, (convert<exabytes_per_second, petabytes_per_second>(1)));
2496
2497 EXPECT_EQ(1024, (convert<kibibytes_per_second, bytes_per_second>(1)));
2498 EXPECT_EQ(1024, (convert<mebibytes_per_second, kibibytes_per_second>(1)));
2499 EXPECT_EQ(1024, (convert<gibibytes_per_second, mebibytes_per_second>(1)));
2500 EXPECT_EQ(1024, (convert<tebibytes_per_second, gibibytes_per_second>(1)));
2501 EXPECT_EQ(1024, (convert<pebibytes_per_second, tebibytes_per_second>(1)));
2502 EXPECT_EQ(1024, (convert<exbibytes_per_second, pebibytes_per_second>(1)));
2503
2504 EXPECT_EQ(93750000, (convert<gigabytes_per_second, kibibits_per_second>(12)));
2505
2506 EXPECT_EQ(1000, (convert<kilobits_per_second, bits_per_second>(1)));
2507 EXPECT_EQ(1000, (convert<megabits_per_second, kilobits_per_second>(1)));
2508 EXPECT_EQ(1000, (convert<gigabits_per_second, megabits_per_second>(1)));
2509 EXPECT_EQ(1000, (convert<terabits_per_second, gigabits_per_second>(1)));
2510 EXPECT_EQ(1000, (convert<petabits_per_second, terabits_per_second>(1)));
2511 EXPECT_EQ(1000, (convert<exabits_per_second, petabits_per_second>(1)));
2512
2513 EXPECT_EQ(1024, (convert<kibibits_per_second, bits_per_second>(1)));
2514 EXPECT_EQ(1024, (convert<mebibits_per_second, kibibits_per_second>(1)));
2515 EXPECT_EQ(1024, (convert<gibibits_per_second, mebibits_per_second>(1)));
2516 EXPECT_EQ(1024, (convert<tebibits_per_second, gibibits_per_second>(1)));
2517 EXPECT_EQ(1024, (convert<pebibits_per_second, tebibits_per_second>(1)));
2518 EXPECT_EQ(1024, (convert<exbibits_per_second, pebibits_per_second>(1)));
2519
2520 // Source: https://en.wikipedia.org/wiki/Binary_prefix
2521 EXPECT_NEAR(percent_t(2.4),
2522 kibibytes_per_second_t(1) / kilobytes_per_second_t(1) - 1, 0.005);
2523 EXPECT_NEAR(percent_t(4.9),
2524 mebibytes_per_second_t(1) / megabytes_per_second_t(1) - 1, 0.005);
2525 EXPECT_NEAR(percent_t(7.4),
2526 gibibytes_per_second_t(1) / gigabytes_per_second_t(1) - 1, 0.005);
2527 EXPECT_NEAR(percent_t(10.0),
2528 tebibytes_per_second_t(1) / terabytes_per_second_t(1) - 1, 0.005);
2529 EXPECT_NEAR(percent_t(12.6),
2530 pebibytes_per_second_t(1) / petabytes_per_second_t(1) - 1, 0.005);
2531 EXPECT_NEAR(percent_t(15.3),
2532 exbibytes_per_second_t(1) / exabytes_per_second_t(1) - 1, 0.005);
2533}
2534
2535TEST_F(UnitConversion, pi) {
2536 EXPECT_TRUE(
2537 units::traits::is_dimensionless_unit<decltype(constants::pi)>::value);
2538 EXPECT_TRUE(units::traits::is_dimensionless_unit<constants::PI>::value);
2539
2540 // implicit conversion/arithmetic
2541 EXPECT_NEAR(3.14159, constants::pi, 5.0e-6);
2542 EXPECT_NEAR(6.28318531, (2 * constants::pi), 5.0e-9);
2543 EXPECT_NEAR(6.28318531, (constants::pi + constants::pi), 5.0e-9);
2544 EXPECT_NEAR(0.0, (constants::pi - constants::pi), 5.0e-9);
2545 EXPECT_NEAR(31.00627668, units::math::cpow<3>(constants::pi), 5.0e-10);
2546 EXPECT_NEAR(0.0322515344, (1.0 / units::math::cpow<3>(constants::pi)),
2547 5.0e-11);
2548 EXPECT_TRUE(constants::detail::PI_VAL == constants::pi);
2549 EXPECT_TRUE(1.0 != constants::pi);
2550 EXPECT_TRUE(4.0 > constants::pi);
2551 EXPECT_TRUE(3.0 < constants::pi);
2552 EXPECT_TRUE(constants::pi > 3.0);
2553 EXPECT_TRUE(constants::pi < 4.0);
2554
2555 // explicit conversion
2556 EXPECT_NEAR(3.14159, constants::pi.to<double>(), 5.0e-6);
2557
2558 // auto multiplication
2559 EXPECT_TRUE(
2560 (std::is_same<meter_t, decltype(constants::pi * meter_t(1))>::value));
2561 EXPECT_TRUE(
2562 (std::is_same<meter_t, decltype(meter_t(1) * constants::pi)>::value));
2563
2564 EXPECT_NEAR(constants::detail::PI_VAL,
2565 (constants::pi * meter_t(1)).to<double>(), 5.0e-10);
2566 EXPECT_NEAR(constants::detail::PI_VAL,
2567 (meter_t(1) * constants::pi).to<double>(), 5.0e-10);
2568
2569 // explicit multiplication
2570 meter_t a = constants::pi * meter_t(1);
2571 meter_t b = meter_t(1) * constants::pi;
2572
2573 EXPECT_NEAR(constants::detail::PI_VAL, a.to<double>(), 5.0e-10);
2574 EXPECT_NEAR(constants::detail::PI_VAL, b.to<double>(), 5.0e-10);
2575
2576 // auto division
2577 EXPECT_TRUE(
2578 (std::is_same<hertz_t, decltype(constants::pi / second_t(1))>::value));
2579 EXPECT_TRUE(
2580 (std::is_same<second_t, decltype(second_t(1) / constants::pi)>::value));
2581
2582 EXPECT_NEAR(constants::detail::PI_VAL,
2583 (constants::pi / second_t(1)).to<double>(), 5.0e-10);
2584 EXPECT_NEAR(1.0 / constants::detail::PI_VAL,
2585 (second_t(1) / constants::pi).to<double>(), 5.0e-10);
2586
2587 // explicit
2588 hertz_t c = constants::pi / second_t(1);
2589 second_t d = second_t(1) / constants::pi;
2590
2591 EXPECT_NEAR(constants::detail::PI_VAL, c.to<double>(), 5.0e-10);
2592 EXPECT_NEAR(1.0 / constants::detail::PI_VAL, d.to<double>(), 5.0e-10);
2593}
2594
2595TEST_F(UnitConversion, constants) {
2596 // Source: NIST "2014 CODATA recommended values"
2597 EXPECT_NEAR(299792458, constants::c(), 5.0e-9);
2598 EXPECT_NEAR(6.67408e-11, constants::G(), 5.0e-17);
2599 EXPECT_NEAR(6.626070040e-34, constants::h(), 5.0e-44);
2600 EXPECT_NEAR(1.2566370614e-6, constants::mu0(), 5.0e-17);
2601 EXPECT_NEAR(8.854187817e-12, constants::epsilon0(), 5.0e-21);
2602 EXPECT_NEAR(376.73031346177, constants::Z0(), 5.0e-12);
2603 EXPECT_NEAR(8987551787.3681764, constants::k_e(), 5.0e-6);
2604 EXPECT_NEAR(1.6021766208e-19, constants::e(), 5.0e-29);
2605 EXPECT_NEAR(9.10938356e-31, constants::m_e(), 5.0e-40);
2606 EXPECT_NEAR(1.672621898e-27, constants::m_p(), 5.0e-37);
2607 EXPECT_NEAR(9.274009994e-24, constants::mu_B(), 5.0e-32);
2608 EXPECT_NEAR(6.022140857e23, constants::N_A(), 5.0e14);
2609 EXPECT_NEAR(8.3144598, constants::R(), 5.0e-8);
2610 EXPECT_NEAR(1.38064852e-23, constants::k_B(), 5.0e-31);
2611 EXPECT_NEAR(96485.33289, constants::F(), 5.0e-5);
2612 EXPECT_NEAR(5.670367e-8, constants::sigma(), 5.0e-14);
2613}
2614
2615TEST_F(UnitConversion, std_chrono) {
2616 nanosecond_t a = std::chrono::nanoseconds(10);
2617 EXPECT_EQ(nanosecond_t(10), a);
2618 microsecond_t b = std::chrono::microseconds(10);
2619 EXPECT_EQ(microsecond_t(10), b);
2620 millisecond_t c = std::chrono::milliseconds(10);
2621 EXPECT_EQ(millisecond_t(10), c);
2622 second_t d = std::chrono::seconds(1);
2623 EXPECT_EQ(second_t(1), d);
2624 minute_t e = std::chrono::minutes(120);
2625 EXPECT_EQ(minute_t(120), e);
2626 hour_t f = std::chrono::hours(2);
2627 EXPECT_EQ(hour_t(2), f);
2628
2629 std::chrono::nanoseconds g = nanosecond_t(100);
2630 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(g).count(),
2631 100);
2632 std::chrono::nanoseconds h = microsecond_t(2);
2633 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(h).count(),
2634 2000);
2635 std::chrono::nanoseconds i = millisecond_t(1);
2636 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(i).count(),
2637 1000000);
2638 std::chrono::nanoseconds j = second_t(1);
2639 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(j).count(),
2640 1000000000);
2641 std::chrono::nanoseconds k = minute_t(1);
2642 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(k).count(),
2643 60000000000);
2644 std::chrono::nanoseconds l = hour_t(1);
2645 EXPECT_EQ(std::chrono::duration_cast<std::chrono::nanoseconds>(l).count(),
2646 3600000000000);
2647}
2648
2649TEST_F(UnitConversion, squaredTemperature) {
2650 using squared_celsius = units::compound_unit<squared<celsius>>;
2651 using squared_celsius_t = units::unit_t<squared_celsius>;
2652 const squared_celsius_t right(100);
2653 const celsius_t rootRight = units::math::sqrt(right);
2654 EXPECT_EQ(celsius_t(10), rootRight);
2655}
2656
2657TEST_F(UnitMath, min) {
2658 meter_t a(1);
2659 foot_t c(1);
2660 EXPECT_EQ(c, math::min(a, c));
2661}
2662
2663TEST_F(UnitMath, max) {
2664 meter_t a(1);
2665 foot_t c(1);
2666 EXPECT_EQ(a, math::max(a, c));
2667}
2668
2669TEST_F(UnitMath, cos) {
2670 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2671 typename std::decay<decltype(
2672 cos(angle::radian_t(0)))>::type>::value));
2673 EXPECT_NEAR(scalar_t(-0.41614683654), cos(angle::radian_t(2)), 5.0e-11);
2674 EXPECT_NEAR(scalar_t(-0.70710678118), cos(angle::degree_t(135)),
2675 5.0e-11);
2676}
2677
2678TEST_F(UnitMath, sin) {
2679 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2680 typename std::decay<decltype(
2681 sin(angle::radian_t(0)))>::type>::value));
2682 EXPECT_NEAR(scalar_t(0.90929742682), sin(angle::radian_t(2)), 5.0e-11);
2683 EXPECT_NEAR(scalar_t(0.70710678118), sin(angle::degree_t(135)), 5.0e-11);
2684}
2685
2686TEST_F(UnitMath, tan) {
2687 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2688 typename std::decay<decltype(
2689 tan(angle::radian_t(0)))>::type>::value));
2690 EXPECT_NEAR(scalar_t(-2.18503986326), tan(angle::radian_t(2)), 5.0e-11);
2691 EXPECT_NEAR(scalar_t(-1.0), tan(angle::degree_t(135)), 5.0e-11);
2692}
2693
2694TEST_F(UnitMath, acos) {
2695 EXPECT_TRUE(
2696 (std::is_same<
2697 typename std::decay<angle::radian_t>::type,
2698 typename std::decay<decltype(acos(scalar_t(0)))>::type>::value));
2699 EXPECT_NEAR(angle::radian_t(2).to<double>(),
2700 acos(scalar_t(-0.41614683654)).to<double>(), 5.0e-11);
2701 EXPECT_NEAR(
2702 angle::degree_t(135).to<double>(),
2703 angle::degree_t(acos(scalar_t(-0.70710678118654752440084436210485)))
2704 .to<double>(),
2705 5.0e-12);
2706}
2707
2708TEST_F(UnitMath, asin) {
2709 EXPECT_TRUE(
2710 (std::is_same<
2711 typename std::decay<angle::radian_t>::type,
2712 typename std::decay<decltype(asin(scalar_t(0)))>::type>::value));
2713 EXPECT_NEAR(angle::radian_t(1.14159265).to<double>(),
2714 asin(scalar_t(0.90929742682)).to<double>(), 5.0e-9);
2715 EXPECT_NEAR(
2716 angle::degree_t(45).to<double>(),
2717 angle::degree_t(asin(scalar_t(0.70710678118654752440084436210485)))
2718 .to<double>(),
2719 5.0e-12);
2720}
2721
2722TEST_F(UnitMath, atan) {
2723 EXPECT_TRUE(
2724 (std::is_same<
2725 typename std::decay<angle::radian_t>::type,
2726 typename std::decay<decltype(atan(scalar_t(0)))>::type>::value));
2727 EXPECT_NEAR(angle::radian_t(-1.14159265).to<double>(),
2728 atan(scalar_t(-2.18503986326)).to<double>(), 5.0e-9);
2729 EXPECT_NEAR(angle::degree_t(-45).to<double>(),
2730 angle::degree_t(atan(scalar_t(-1.0))).to<double>(), 5.0e-12);
2731}
2732
2733TEST_F(UnitMath, atan2) {
2734 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2735 typename std::decay<decltype(atan2(
2736 scalar_t(1), scalar_t(1)))>::type>::value));
2737 EXPECT_NEAR(angle::radian_t(constants::detail::PI_VAL / 4).to<double>(),
2738 atan2(scalar_t(2), scalar_t(2)).to<double>(), 5.0e-12);
2739 EXPECT_NEAR(
2740 angle::degree_t(45).to<double>(),
2741 angle::degree_t(atan2(scalar_t(2), scalar_t(2))).to<double>(),
2742 5.0e-12);
2743
2744 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2745 typename std::decay<decltype(atan2(
2746 scalar_t(1), scalar_t(1)))>::type>::value));
2747 EXPECT_NEAR(angle::radian_t(constants::detail::PI_VAL / 6).to<double>(),
2748 atan2(scalar_t(1), scalar_t(std::sqrt(3))).to<double>(),
2749 5.0e-12);
2750 EXPECT_NEAR(angle::degree_t(30).to<double>(),
2751 angle::degree_t(atan2(scalar_t(1), scalar_t(std::sqrt(3))))
2752 .to<double>(),
2753 5.0e-12);
2754}
2755
2756TEST_F(UnitMath, cosh) {
2757 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2758 typename std::decay<decltype(
2759 cosh(angle::radian_t(0)))>::type>::value));
2760 EXPECT_NEAR(scalar_t(3.76219569108), cosh(angle::radian_t(2)), 5.0e-11);
2761 EXPECT_NEAR(scalar_t(5.32275215), cosh(angle::degree_t(135)), 5.0e-9);
2762}
2763
2764TEST_F(UnitMath, sinh) {
2765 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2766 typename std::decay<decltype(
2767 sinh(angle::radian_t(0)))>::type>::value));
2768 EXPECT_NEAR(scalar_t(3.62686040785), sinh(angle::radian_t(2)), 5.0e-11);
2769 EXPECT_NEAR(scalar_t(5.22797192), sinh(angle::degree_t(135)), 5.0e-9);
2770}
2771
2772TEST_F(UnitMath, tanh) {
2773 EXPECT_TRUE((std::is_same<typename std::decay<scalar_t>::type,
2774 typename std::decay<decltype(
2775 tanh(angle::radian_t(0)))>::type>::value));
2776 EXPECT_NEAR(scalar_t(0.96402758007), tanh(angle::radian_t(2)), 5.0e-11);
2777 EXPECT_NEAR(scalar_t(0.98219338), tanh(angle::degree_t(135)), 5.0e-11);
2778}
2779
2780TEST_F(UnitMath, acosh) {
2781 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2782 typename std::decay<decltype(
2783 acosh(scalar_t(0)))>::type>::value));
2784 EXPECT_NEAR(angle::radian_t(1.316957896924817).to<double>(),
2785 acosh(scalar_t(2.0)).to<double>(), 5.0e-11);
2786 EXPECT_NEAR(angle::degree_t(75.456129290216893).to<double>(),
2787 angle::degree_t(acosh(scalar_t(2.0))).to<double>(), 5.0e-12);
2788}
2789
2790TEST_F(UnitMath, asinh) {
2791 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2792 typename std::decay<decltype(
2793 asinh(scalar_t(0)))>::type>::value));
2794 EXPECT_NEAR(angle::radian_t(1.443635475178810).to<double>(),
2795 asinh(scalar_t(2)).to<double>(), 5.0e-9);
2796 EXPECT_NEAR(angle::degree_t(82.714219883108939).to<double>(),
2797 angle::degree_t(asinh(scalar_t(2))).to<double>(), 5.0e-12);
2798}
2799
2800TEST_F(UnitMath, atanh) {
2801 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2802 typename std::decay<decltype(
2803 atanh(scalar_t(0)))>::type>::value));
2804 EXPECT_NEAR(angle::radian_t(0.549306144334055).to<double>(),
2805 atanh(scalar_t(0.5)).to<double>(), 5.0e-9);
2806 EXPECT_NEAR(angle::degree_t(31.472923730945389).to<double>(),
2807 angle::degree_t(atanh(scalar_t(0.5))).to<double>(), 5.0e-12);
2808}
2809
2810TEST_F(UnitMath, exp) {
2811 double val = 10.0;
2812 EXPECT_EQ(std::exp(val), exp(scalar_t(val)));
2813}
2814
2815TEST_F(UnitMath, log) {
2816 double val = 100.0;
2817 EXPECT_EQ(std::log(val), log(scalar_t(val)));
2818}
2819
2820TEST_F(UnitMath, log10) {
2821 double val = 100.0;
2822 EXPECT_EQ(std::log10(val), log10(scalar_t(val)));
2823}
2824
2825TEST_F(UnitMath, modf) {
2826 double val = 100.0;
2827 double modfr1;
2828 scalar_t modfr2;
2829 EXPECT_EQ(std::modf(val, &modfr1), modf(scalar_t(val), &modfr2));
2830 EXPECT_EQ(modfr1, modfr2);
2831}
2832
2833TEST_F(UnitMath, exp2) {
2834 double val = 10.0;
2835 EXPECT_EQ(std::exp2(val), exp2(scalar_t(val)));
2836}
2837
2838TEST_F(UnitMath, expm1) {
2839 double val = 10.0;
2840 EXPECT_EQ(std::expm1(val), expm1(scalar_t(val)));
2841}
2842
2843TEST_F(UnitMath, log1p) {
2844 double val = 10.0;
2845 EXPECT_EQ(std::log1p(val), log1p(scalar_t(val)));
2846}
2847
2848TEST_F(UnitMath, log2) {
2849 double val = 10.0;
2850 EXPECT_EQ(std::log2(val), log2(scalar_t(val)));
2851}
2852
2853TEST_F(UnitMath, pow) {
2854 bool isSame;
2855 meter_t value(10.0);
2856
2857 auto sq = pow<2>(value);
2858 EXPECT_NEAR(100.0, sq(), 5.0e-2);
2859 isSame = std::is_same<decltype(sq), square_meter_t>::value;
2860 EXPECT_TRUE(isSame);
2861
2862 auto cube = pow<3>(value);
2863 EXPECT_NEAR(1000.0, cube(), 5.0e-2);
2864 isSame = std::is_same<decltype(cube), unit_t<cubed<meter>>>::value;
2865 EXPECT_TRUE(isSame);
2866
2867 auto fourth = pow<4>(value);
2868 EXPECT_NEAR(10000.0, fourth(), 5.0e-2);
2869 isSame = std::is_same<
2870 decltype(fourth),
2871 unit_t<compound_unit<squared<meter>, squared<meter>>>>::value;
2872 EXPECT_TRUE(isSame);
2873}
2874
2875TEST_F(UnitMath, sqrt) {
2876 EXPECT_TRUE((std::is_same<typename std::decay<meter_t>::type,
2877 typename std::decay<decltype(sqrt(
2878 square_meter_t(4.0)))>::type>::value));
2879 EXPECT_NEAR(meter_t(2.0).to<double>(),
2880 sqrt(square_meter_t(4.0)).to<double>(), 5.0e-9);
2881
2882 EXPECT_TRUE((std::is_same<typename std::decay<angle::radian_t>::type,
2883 typename std::decay<decltype(
2884 sqrt(steradian_t(16.0)))>::type>::value));
2885 EXPECT_NEAR(angle::radian_t(4.0).to<double>(),
2886 sqrt(steradian_t(16.0)).to<double>(), 5.0e-9);
2887
2888 EXPECT_TRUE((std::is_convertible<typename std::decay<foot_t>::type,
2889 typename std::decay<decltype(sqrt(
2890 square_foot_t(10.0)))>::type>::value));
2891
2892 // for rational conversion (i.e. no integral root) let's check a bunch of
2893 // different ways this could go wrong
2894 foot_t resultFt = sqrt(square_foot_t(10.0));
2895 EXPECT_NEAR(foot_t(3.16227766017).to<double>(),
2896 sqrt(square_foot_t(10.0)).to<double>(), 5.0e-9);
2897 EXPECT_NEAR(foot_t(3.16227766017).to<double>(), resultFt.to<double>(),
2898 5.0e-9);
2899 EXPECT_EQ(resultFt, sqrt(square_foot_t(10.0)));
2900}
2901
2902TEST_F(UnitMath, hypot) {
2903 EXPECT_TRUE((std::is_same<typename std::decay<meter_t>::type,
2904 typename std::decay<decltype(hypot(
2905 meter_t(3.0), meter_t(4.0)))>::type>::value));
2906 EXPECT_NEAR(meter_t(5.0).to<double>(),
2907 (hypot(meter_t(3.0), meter_t(4.0))).to<double>(), 5.0e-9);
2908
2909 EXPECT_TRUE((std::is_same<typename std::decay<foot_t>::type,
2910 typename std::decay<decltype(hypot(
2911 foot_t(3.0), meter_t(1.2192)))>::type>::value));
2912 EXPECT_NEAR(foot_t(5.0).to<double>(),
2913 (hypot(foot_t(3.0), meter_t(1.2192))).to<double>(), 5.0e-9);
2914}
2915
2916TEST_F(UnitMath, ceil) {
2917 double val = 101.1;
2918 EXPECT_EQ(std::ceil(val), ceil(meter_t(val)).to<double>());
2919 EXPECT_TRUE((std::is_same<typename std::decay<meter_t>::type,
2920 typename std::decay<decltype(
2921 ceil(meter_t(val)))>::type>::value));
2922}
2923
2924TEST_F(UnitMath, floor) {
2925 double val = 101.1;
2926 EXPECT_EQ(std::floor(val), floor(scalar_t(val)));
2927}
2928
2929TEST_F(UnitMath, fmod) {
2930 EXPECT_EQ(std::fmod(100.0, 101.2),
2931 fmod(meter_t(100.0), meter_t(101.2)).to<double>());
2932}
2933
2934TEST_F(UnitMath, trunc) {
2935 double val = 101.1;
2936 EXPECT_EQ(std::trunc(val), trunc(scalar_t(val)));
2937}
2938
2939TEST_F(UnitMath, round) {
2940 double val = 101.1;
2941 EXPECT_EQ(std::round(val), round(scalar_t(val)));
2942}
2943
2944TEST_F(UnitMath, copysign) {
2945 double sign = -1;
2946 meter_t val(5.0);
2947 EXPECT_EQ(meter_t(-5.0), copysign(val, sign));
2948 EXPECT_EQ(meter_t(-5.0), copysign(val, angle::radian_t(sign)));
2949}
2950
2951TEST_F(UnitMath, fdim) {
2952 EXPECT_EQ(meter_t(0.0), fdim(meter_t(8.0), meter_t(10.0)));
2953 EXPECT_EQ(meter_t(2.0), fdim(meter_t(10.0), meter_t(8.0)));
2954 EXPECT_NEAR(meter_t(9.3904).to<double>(),
2955 fdim(meter_t(10.0), foot_t(2.0)).to<double>(),
2956 5.0e-320); // not sure why they aren't comparing exactly equal,
2957 // but clearly they are.
2958}
2959
2960TEST_F(UnitMath, fmin) {
2961 EXPECT_EQ(meter_t(8.0), fmin(meter_t(8.0), meter_t(10.0)));
2962 EXPECT_EQ(meter_t(8.0), fmin(meter_t(10.0), meter_t(8.0)));
2963 EXPECT_EQ(foot_t(2.0), fmin(meter_t(10.0), foot_t(2.0)));
2964}
2965
2966TEST_F(UnitMath, fmax) {
2967 EXPECT_EQ(meter_t(10.0), fmax(meter_t(8.0), meter_t(10.0)));
2968 EXPECT_EQ(meter_t(10.0), fmax(meter_t(10.0), meter_t(8.0)));
2969 EXPECT_EQ(meter_t(10.0), fmax(meter_t(10.0), foot_t(2.0)));
2970}
2971
2972TEST_F(UnitMath, fabs) {
2973 EXPECT_EQ(meter_t(10.0), fabs(meter_t(-10.0)));
2974 EXPECT_EQ(meter_t(10.0), fabs(meter_t(10.0)));
2975}
2976
2977TEST_F(UnitMath, abs) {
2978 EXPECT_EQ(meter_t(10.0), abs(meter_t(-10.0)));
2979 EXPECT_EQ(meter_t(10.0), abs(meter_t(10.0)));
2980}
2981
2982TEST_F(UnitMath, normalize) {
2983 EXPECT_EQ(NormalizeAngle(radian_t(5 * wpi::math::pi)),
2984 radian_t(wpi::math::pi));
2985 EXPECT_EQ(NormalizeAngle(radian_t(-5 * wpi::math::pi)),
2986 radian_t(wpi::math::pi));
2987 EXPECT_EQ(NormalizeAngle(radian_t(wpi::math::pi / 2)),
2988 radian_t(wpi::math::pi / 2));
2989 EXPECT_EQ(NormalizeAngle(radian_t(-wpi::math::pi / 2)),
2990 radian_t(-wpi::math::pi / 2));
2991}
2992
2993// Constexpr
2994#if !defined(_MSC_VER) || _MSC_VER > 1800
2995TEST_F(Constexpr, construction) {
2996 constexpr meter_t result0(0);
2997 constexpr auto result1 = make_unit<meter_t>(1);
2998 constexpr auto result2 = meter_t(2);
2999
3000 EXPECT_EQ(meter_t(0), result0);
3001 EXPECT_EQ(meter_t(1), result1);
3002 EXPECT_EQ(meter_t(2), result2);
3003
3004 EXPECT_TRUE(noexcept(result0));
3005 EXPECT_TRUE(noexcept(result1));
3006 EXPECT_TRUE(noexcept(result2));
3007}
3008
3009TEST_F(Constexpr, constants) {
3010 EXPECT_TRUE(noexcept(constants::c()));
3011 EXPECT_TRUE(noexcept(constants::G()));
3012 EXPECT_TRUE(noexcept(constants::h()));
3013 EXPECT_TRUE(noexcept(constants::mu0()));
3014 EXPECT_TRUE(noexcept(constants::epsilon0()));
3015 EXPECT_TRUE(noexcept(constants::Z0()));
3016 EXPECT_TRUE(noexcept(constants::k_e()));
3017 EXPECT_TRUE(noexcept(constants::e()));
3018 EXPECT_TRUE(noexcept(constants::m_e()));
3019 EXPECT_TRUE(noexcept(constants::m_p()));
3020 EXPECT_TRUE(noexcept(constants::mu_B()));
3021 EXPECT_TRUE(noexcept(constants::N_A()));
3022 EXPECT_TRUE(noexcept(constants::R()));
3023 EXPECT_TRUE(noexcept(constants::k_B()));
3024 EXPECT_TRUE(noexcept(constants::F()));
3025 EXPECT_TRUE(noexcept(constants::sigma()));
3026}
3027
3028TEST_F(Constexpr, arithmetic) {
3029 constexpr auto result0(1_m + 1_m);
3030 constexpr auto result1(1_m - 1_m);
3031 constexpr auto result2(1_m * 1_m);
3032 constexpr auto result3(1_m / 1_m);
3033 constexpr auto result4(meter_t(1) + meter_t(1));
3034 constexpr auto result5(meter_t(1) - meter_t(1));
3035 constexpr auto result6(meter_t(1) * meter_t(1));
3036 constexpr auto result7(meter_t(1) / meter_t(1));
3037 constexpr auto result8(units::math::cpow<2>(meter_t(2)));
3038 constexpr auto result9 = units::math::cpow<3>(2_m);
3039 constexpr auto result10 = 2_m * 2_m;
3040
3041 EXPECT_TRUE(noexcept(result0));
3042 EXPECT_TRUE(noexcept(result1));
3043 EXPECT_TRUE(noexcept(result2));
3044 EXPECT_TRUE(noexcept(result3));
3045 EXPECT_TRUE(noexcept(result4));
3046 EXPECT_TRUE(noexcept(result5));
3047 EXPECT_TRUE(noexcept(result6));
3048 EXPECT_TRUE(noexcept(result7));
3049 EXPECT_TRUE(noexcept(result8));
3050 EXPECT_TRUE(noexcept(result9));
3051 EXPECT_TRUE(noexcept(result10));
3052
3053 EXPECT_EQ(8_cu_m, result9);
3054 EXPECT_EQ(4_sq_m, result10);
3055}
3056
3057TEST_F(Constexpr, realtional) {
3058 constexpr bool equalityTrue = (1_m == 1_m);
3059 constexpr bool equalityFalse = (1_m == 2_m);
3060 constexpr bool lessThanTrue = (1_m < 2_m);
3061 constexpr bool lessThanFalse = (1_m < 1_m);
3062 constexpr bool lessThanEqualTrue1 = (1_m <= 1_m);
3063 constexpr bool lessThanEqualTrue2 = (1_m <= 2_m);
3064 constexpr bool lessThanEqualFalse = (1_m < 0_m);
3065 constexpr bool greaterThanTrue = (2_m > 1_m);
3066 constexpr bool greaterThanFalse = (2_m > 2_m);
3067 constexpr bool greaterThanEqualTrue1 = (2_m >= 1_m);
3068 constexpr bool greaterThanEqualTrue2 = (2_m >= 2_m);
3069 constexpr bool greaterThanEqualFalse = (2_m > 3_m);
3070
3071 EXPECT_TRUE(equalityTrue);
3072 EXPECT_TRUE(lessThanTrue);
3073 EXPECT_TRUE(lessThanEqualTrue1);
3074 EXPECT_TRUE(lessThanEqualTrue2);
3075 EXPECT_TRUE(greaterThanTrue);
3076 EXPECT_TRUE(greaterThanEqualTrue1);
3077 EXPECT_TRUE(greaterThanEqualTrue2);
3078 EXPECT_FALSE(equalityFalse);
3079 EXPECT_FALSE(lessThanFalse);
3080 EXPECT_FALSE(lessThanEqualFalse);
3081 EXPECT_FALSE(greaterThanFalse);
3082 EXPECT_FALSE(greaterThanEqualFalse);
3083}
3084
3085TEST_F(Constexpr, stdArray) {
3086 constexpr std::array<meter_t, 5> arr = {0_m, 1_m, 2_m, 3_m, 4_m};
3087 constexpr bool equal = (arr[3] == 3_m);
3088 EXPECT_TRUE(equal);
3089}
3090
3091#endif
3092
3093TEST_F(CompileTimeArithmetic, unit_value_t) {
3094 typedef unit_value_t<meters, 3, 2> mRatio;
3095 EXPECT_EQ(meter_t(1.5), mRatio::value());
3096}
3097
3098TEST_F(CompileTimeArithmetic, is_unit_value_t) {
3099 typedef unit_value_t<meters, 3, 2> mRatio;
3100
3101 EXPECT_TRUE((traits::is_unit_value_t<mRatio>::value));
3102 EXPECT_FALSE((traits::is_unit_value_t<meter_t>::value));
3103 EXPECT_FALSE((traits::is_unit_value_t<double>::value));
3104
3105 EXPECT_TRUE((traits::is_unit_value_t<mRatio, meters>::value));
3106 EXPECT_FALSE((traits::is_unit_value_t<meter_t, meters>::value));
3107 EXPECT_FALSE((traits::is_unit_value_t<double, meters>::value));
3108}
3109
3110TEST_F(CompileTimeArithmetic, is_unit_value_t_category) {
3111 typedef unit_value_t<feet, 3, 2> mRatio;
3112 EXPECT_TRUE(
3113 (traits::is_unit_value_t_category<category::length_unit, mRatio>::value));
3114 EXPECT_FALSE(
3115 (traits::is_unit_value_t_category<category::angle_unit, mRatio>::value));
3116 EXPECT_FALSE((
3117 traits::is_unit_value_t_category<category::length_unit, meter_t>::value));
3118 EXPECT_FALSE(
3119 (traits::is_unit_value_t_category<category::length_unit, double>::value));
3120}
3121
3122TEST_F(CompileTimeArithmetic, unit_value_add) {
3123 typedef unit_value_t<meters, 3, 2> mRatio;
3124
3125 using sum = unit_value_add<mRatio, mRatio>;
3126 EXPECT_EQ(meter_t(3.0), sum::value());
3127 EXPECT_TRUE(
3128 (traits::is_unit_value_t_category<category::length_unit, sum>::value));
3129
3130 typedef unit_value_t<feet, 1> ftRatio;
3131
3132 using sumf = unit_value_add<ftRatio, mRatio>;
3133 EXPECT_TRUE((
3134 std::is_same<typename std::decay<foot_t>::type,
3135 typename std::decay<decltype(sumf::value())>::type>::value));
3136 EXPECT_NEAR(5.92125984, sumf::value().to<double>(), 5.0e-8);
3137 EXPECT_TRUE(
3138 (traits::is_unit_value_t_category<category::length_unit, sumf>::value));
3139
3140 typedef unit_value_t<celsius, 1> cRatio;
3141 typedef unit_value_t<fahrenheit, 2> fRatio;
3142
3143 using sumc = unit_value_add<cRatio, fRatio>;
3144 EXPECT_TRUE((
3145 std::is_same<typename std::decay<celsius_t>::type,
3146 typename std::decay<decltype(sumc::value())>::type>::value));
3147 EXPECT_NEAR(2.11111111111, sumc::value().to<double>(), 5.0e-8);
3148 EXPECT_TRUE((traits::is_unit_value_t_category<category::temperature_unit,
3149 sumc>::value));
3150
3151 typedef unit_value_t<angle::radian, 1> rRatio;
3152 typedef unit_value_t<angle::degree, 3> dRatio;
3153
3154 using sumr = unit_value_add<rRatio, dRatio>;
3155 EXPECT_TRUE((
3156 std::is_same<typename std::decay<angle::radian_t>::type,
3157 typename std::decay<decltype(sumr::value())>::type>::value));
3158 EXPECT_NEAR(1.05235988, sumr::value().to<double>(), 5.0e-8);
3159 EXPECT_TRUE(
3160 (traits::is_unit_value_t_category<category::angle_unit, sumr>::value));
3161}
3162
3163TEST_F(CompileTimeArithmetic, unit_value_subtract) {
3164 typedef unit_value_t<meters, 3, 2> mRatio;
3165
3166 using diff = unit_value_subtract<mRatio, mRatio>;
3167 EXPECT_EQ(meter_t(0), diff::value());
3168 EXPECT_TRUE(
3169 (traits::is_unit_value_t_category<category::length_unit, diff>::value));
3170
3171 typedef unit_value_t<feet, 1> ftRatio;
3172
3173 using difff = unit_value_subtract<ftRatio, mRatio>;
3174 EXPECT_TRUE((std::is_same<
3175 typename std::decay<foot_t>::type,
3176 typename std::decay<decltype(difff::value())>::type>::value));
3177 EXPECT_NEAR(-3.92125984, difff::value().to<double>(), 5.0e-8);
3178 EXPECT_TRUE(
3179 (traits::is_unit_value_t_category<category::length_unit, difff>::value));
3180
3181 typedef unit_value_t<celsius, 1> cRatio;
3182 typedef unit_value_t<fahrenheit, 2> fRatio;
3183
3184 using diffc = unit_value_subtract<cRatio, fRatio>;
3185 EXPECT_TRUE((std::is_same<
3186 typename std::decay<celsius_t>::type,
3187 typename std::decay<decltype(diffc::value())>::type>::value));
3188 EXPECT_NEAR(-0.11111111111, diffc::value().to<double>(), 5.0e-8);
3189 EXPECT_TRUE((traits::is_unit_value_t_category<category::temperature_unit,
3190 diffc>::value));
3191
3192 typedef unit_value_t<angle::radian, 1> rRatio;
3193 typedef unit_value_t<angle::degree, 3> dRatio;
3194
3195 using diffr = unit_value_subtract<rRatio, dRatio>;
3196 EXPECT_TRUE((std::is_same<
3197 typename std::decay<angle::radian_t>::type,
3198 typename std::decay<decltype(diffr::value())>::type>::value));
3199 EXPECT_NEAR(0.947640122, diffr::value().to<double>(), 5.0e-8);
3200 EXPECT_TRUE(
3201 (traits::is_unit_value_t_category<category::angle_unit, diffr>::value));
3202}
3203
3204TEST_F(CompileTimeArithmetic, unit_value_multiply) {
3205 typedef unit_value_t<meters, 2> mRatio;
3206 typedef unit_value_t<feet, 656168, 100000> ftRatio; // 2 meter
3207
3208 using product = unit_value_multiply<mRatio, mRatio>;
3209 EXPECT_EQ(square_meter_t(4), product::value());
3210 EXPECT_TRUE(
3211 (traits::is_unit_value_t_category<category::area_unit, product>::value));
3212
3213 using productM = unit_value_multiply<mRatio, ftRatio>;
3214
3215 EXPECT_TRUE((std::is_same<
3216 typename std::decay<square_meter_t>::type,
3217 typename std::decay<decltype(productM::value())>::type>::value));
3218 EXPECT_NEAR(4.0, productM::value().to<double>(), 5.0e-7);
3219 EXPECT_TRUE(
3220 (traits::is_unit_value_t_category<category::area_unit, productM>::value));
3221
3222 using productF = unit_value_multiply<ftRatio, mRatio>;
3223 EXPECT_TRUE((std::is_same<
3224 typename std::decay<square_foot_t>::type,
3225 typename std::decay<decltype(productF::value())>::type>::value));
3226 EXPECT_NEAR(43.0556444224, productF::value().to<double>(), 5.0e-6);
3227 EXPECT_TRUE(
3228 (traits::is_unit_value_t_category<category::area_unit, productF>::value));
3229
3230 using productF2 = unit_value_multiply<ftRatio, ftRatio>;
3231 EXPECT_TRUE(
3232 (std::is_same<
3233 typename std::decay<square_foot_t>::type,
3234 typename std::decay<decltype(productF2::value())>::type>::value));
3235 EXPECT_NEAR(43.0556444224, productF2::value().to<double>(), 5.0e-8);
3236 EXPECT_TRUE((
3237 traits::is_unit_value_t_category<category::area_unit, productF2>::value));
3238
3239 typedef unit_value_t<units::force::newton, 5> nRatio;
3240
3241 using productN = unit_value_multiply<nRatio, ftRatio>;
3242 EXPECT_FALSE(
3243 (std::is_same<
3244 typename std::decay<torque::newton_meter_t>::type,
3245 typename std::decay<decltype(productN::value())>::type>::value));
3246 EXPECT_TRUE((std::is_convertible<
3247 typename std::decay<torque::newton_meter_t>::type,
3248 typename std::decay<decltype(productN::value())>::type>::value));
3249 EXPECT_NEAR(32.8084, productN::value().to<double>(), 5.0e-8);
3250 EXPECT_NEAR(10.0, (productN::value().convert<newton_meter>().to<double>()),
3251 5.0e-7);
3252 EXPECT_TRUE((traits::is_unit_value_t_category<category::torque_unit,
3253 productN>::value));
3254
3255 typedef unit_value_t<angle::radian, 11, 10> r1Ratio;
3256 typedef unit_value_t<angle::radian, 22, 10> r2Ratio;
3257
3258 using productR = unit_value_multiply<r1Ratio, r2Ratio>;
3259 EXPECT_TRUE((std::is_same<
3260 typename std::decay<steradian_t>::type,
3261 typename std::decay<decltype(productR::value())>::type>::value));
3262 EXPECT_NEAR(2.42, productR::value().to<double>(), 5.0e-8);
3263 EXPECT_NEAR(7944.39137,
3264 (productR::value().convert<degrees_squared>().to<double>()),
3265 5.0e-6);
3266 EXPECT_TRUE((traits::is_unit_value_t_category<category::solid_angle_unit,
3267 productR>::value));
3268}
3269
3270TEST_F(CompileTimeArithmetic, unit_value_divide) {
3271 typedef unit_value_t<meters, 2> mRatio;
3272 typedef unit_value_t<feet, 656168, 100000> ftRatio; // 2 meter
3273
3274 using product = unit_value_divide<mRatio, mRatio>;
3275 EXPECT_EQ(scalar_t(1), product::value());
3276 EXPECT_TRUE((
3277 traits::is_unit_value_t_category<category::scalar_unit, product>::value));
3278
3279 using productM = unit_value_divide<mRatio, ftRatio>;
3280
3281 EXPECT_TRUE((std::is_same<
3282 typename std::decay<scalar_t>::type,
3283 typename std::decay<decltype(productM::value())>::type>::value));
3284 EXPECT_NEAR(1, productM::value().to<double>(), 5.0e-7);
3285 EXPECT_TRUE((traits::is_unit_value_t_category<category::scalar_unit,
3286 productM>::value));
3287
3288 using productF = unit_value_divide<ftRatio, mRatio>;
3289 EXPECT_TRUE((std::is_same<
3290 typename std::decay<scalar_t>::type,
3291 typename std::decay<decltype(productF::value())>::type>::value));
3292 EXPECT_NEAR(1.0, productF::value().to<double>(), 5.0e-6);
3293 EXPECT_TRUE((traits::is_unit_value_t_category<category::scalar_unit,
3294 productF>::value));
3295
3296 using productF2 = unit_value_divide<ftRatio, ftRatio>;
3297 EXPECT_TRUE(
3298 (std::is_same<
3299 typename std::decay<scalar_t>::type,
3300 typename std::decay<decltype(productF2::value())>::type>::value));
3301 EXPECT_NEAR(1.0, productF2::value().to<double>(), 5.0e-8);
3302 EXPECT_TRUE((traits::is_unit_value_t_category<category::scalar_unit,
3303 productF2>::value));
3304
3305 typedef unit_value_t<seconds, 10> sRatio;
3306
3307 using productMS = unit_value_divide<mRatio, sRatio>;
3308 EXPECT_TRUE(
3309 (std::is_same<
3310 typename std::decay<meters_per_second_t>::type,
3311 typename std::decay<decltype(productMS::value())>::type>::value));
3312 EXPECT_NEAR(0.2, productMS::value().to<double>(), 5.0e-8);
3313 EXPECT_TRUE((traits::is_unit_value_t_category<category::velocity_unit,
3314 productMS>::value));
3315
3316 typedef unit_value_t<angle::radian, 20> rRatio;
3317
3318 using productRS = unit_value_divide<rRatio, sRatio>;
3319 EXPECT_TRUE(
3320 (std::is_same<
3321 typename std::decay<radians_per_second_t>::type,
3322 typename std::decay<decltype(productRS::value())>::type>::value));
3323 EXPECT_NEAR(2, productRS::value().to<double>(), 5.0e-8);
3324 EXPECT_NEAR(114.592,
3325 (productRS::value().convert<degrees_per_second>().to<double>()),
3326 5.0e-4);
3327 EXPECT_TRUE((traits::is_unit_value_t_category<category::angular_velocity_unit,
3328 productRS>::value));
3329}
3330
3331TEST_F(CompileTimeArithmetic, unit_value_power) {
3332 typedef unit_value_t<meters, 2> mRatio;
3333
3334 using sq = unit_value_power<mRatio, 2>;
3335 EXPECT_TRUE((std::is_convertible<
3336 typename std::decay<square_meter_t>::type,
3337 typename std::decay<decltype(sq::value())>::type>::value));
3338 EXPECT_NEAR(4, sq::value().to<double>(), 5.0e-8);
3339 EXPECT_TRUE(
3340 (traits::is_unit_value_t_category<category::area_unit, sq>::value));
3341
3342 typedef unit_value_t<angle::radian, 18, 10> rRatio;
3343
3344 using sqr = unit_value_power<rRatio, 2>;
3345 EXPECT_TRUE((std::is_convertible<
3346 typename std::decay<steradian_t>::type,
3347 typename std::decay<decltype(sqr::value())>::type>::value));
3348 EXPECT_NEAR(3.24, sqr::value().to<double>(), 5.0e-8);
3349 EXPECT_NEAR(10636.292574038049895092690529904,
3350 (sqr::value().convert<degrees_squared>().to<double>()), 5.0e-10);
3351 EXPECT_TRUE((traits::is_unit_value_t_category<category::solid_angle_unit,
3352 sqr>::value));
3353}
3354
3355TEST_F(CompileTimeArithmetic, unit_value_sqrt) {
3356 typedef unit_value_t<square_meters, 10> mRatio;
3357
3358 using root = unit_value_sqrt<mRatio>;
3359 EXPECT_TRUE((std::is_convertible<
3360 typename std::decay<meter_t>::type,
3361 typename std::decay<decltype(root::value())>::type>::value));
3362 EXPECT_NEAR(3.16227766017, root::value().to<double>(), 5.0e-9);
3363 EXPECT_TRUE(
3364 (traits::is_unit_value_t_category<category::length_unit, root>::value));
3365
3366 typedef unit_value_t<hectare, 51, 7> hRatio;
3367
3368 using rooth = unit_value_sqrt<hRatio, 100000000>;
3369 EXPECT_TRUE((std::is_convertible<
3370 typename std::decay<mile_t>::type,
3371 typename std::decay<decltype(rooth::value())>::type>::value));
3372 EXPECT_NEAR(2.69920623253, rooth::value().to<double>(), 5.0e-8);
3373 EXPECT_NEAR(269.920623, rooth::value().convert<meters>().to<double>(),
3374 5.0e-6);
3375 EXPECT_TRUE(
3376 (traits::is_unit_value_t_category<category::length_unit, rooth>::value));
3377
3378 typedef unit_value_t<steradian, 18, 10> rRatio;
3379
3380 using rootr = unit_value_sqrt<rRatio>;
3381 EXPECT_TRUE((traits::is_angle_unit<decltype(rootr::value())>::value));
3382 EXPECT_NEAR(1.3416407865, rootr::value().to<double>(), 5.0e-8);
3383 EXPECT_NEAR(76.870352574,
3384 rootr::value().convert<angle::degrees>().to<double>(), 5.0e-6);
3385 EXPECT_TRUE(
3386 (traits::is_unit_value_t_category<category::angle_unit, rootr>::value));
3387}
3388
3389TEST_F(CaseStudies, radarRangeEquation) {
3390 watt_t P_t; // transmit power
3391 scalar_t G; // gain
3392 meter_t lambda; // wavelength
3393 square_meter_t sigma; // radar cross section
3394 meter_t R; // range
3395 kelvin_t T_s; // system noise temp
3396 hertz_t B_n; // bandwidth
3397 scalar_t L; // loss
3398
3399 P_t = megawatt_t(1.4);
3400 G = dB_t(33.0);
3401 lambda = constants::c / megahertz_t(2800);
3402 sigma = square_meter_t(1.0);
3403 R = meter_t(111000.0);
3404 T_s = kelvin_t(950.0);
3405 B_n = megahertz_t(1.67);
3406 L = dB_t(8.0);
3407
3408 scalar_t SNR = (P_t * math::pow<2>(G) * math::pow<2>(lambda) * sigma) /
3409 (math::pow<3>(4 * constants::pi) * math::pow<4>(R) *
3410 constants::k_B * T_s * B_n * L);
3411
3412 EXPECT_NEAR(1.535, SNR(), 5.0e-4);
3413}
3414
3415TEST_F(CaseStudies, pythagoreanTheorum) {
3416 EXPECT_EQ(meter_t(3), RightTriangle::a::value());
3417 EXPECT_EQ(meter_t(4), RightTriangle::b::value());
3418 EXPECT_EQ(meter_t(5), RightTriangle::c::value());
3419 EXPECT_TRUE(pow<2>(RightTriangle::a::value()) +
3420 pow<2>(RightTriangle::b::value()) ==
3421 pow<2>(RightTriangle::c::value()));
3422}