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Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001//===- llvm/unittest/ADT/APFloat.cpp - APFloat unit tests ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Erick Tryzelaar19f63b22009-08-16 23:36:19 +000010#include "llvm/ADT/APFloat.h"
Jeffrey Yasskin03b81a22011-07-15 07:04:56 +000011#include "llvm/ADT/APSInt.h"
John McCall29b5c282009-12-24 08:56:26 +000012#include "llvm/ADT/SmallVector.h"
Chandler Carruth130cec22012-12-04 10:23:08 +000013#include "llvm/Support/raw_ostream.h"
14#include "gtest/gtest.h"
Benjamin Kramer37dce442015-03-09 18:35:18 +000015#include <cmath>
Chandler Carruth130cec22012-12-04 10:23:08 +000016#include <ostream>
17#include <string>
Erick Tryzelaar19f63b22009-08-16 23:36:19 +000018
19using namespace llvm;
20
Daniel Dunbarbc52e4f2009-09-03 22:57:02 +000021static double convertToDoubleFromString(const char *Str) {
22 llvm::APFloat F(0.0);
23 F.convertFromString(Str, llvm::APFloat::rmNearestTiesToEven);
24 return F.convertToDouble();
25}
26
John McCall29b5c282009-12-24 08:56:26 +000027static std::string convertToString(double d, unsigned Prec, unsigned Pad) {
28 llvm::SmallVector<char, 100> Buffer;
29 llvm::APFloat F(d);
30 F.toString(Buffer, Prec, Pad);
31 return std::string(Buffer.data(), Buffer.size());
32}
33
Erick Tryzelaar19f63b22009-08-16 23:36:19 +000034namespace {
35
Michael Gottesman0c622ea2013-05-30 18:07:13 +000036TEST(APFloatTest, isSignaling) {
37 // We test qNaN, -qNaN, +sNaN, -sNaN with and without payloads. *NOTE* The
38 // positive/negative distinction is included only since the getQNaN/getSNaN
39 // API provides the option.
40 APInt payload = APInt::getOneBitSet(4, 2);
41 EXPECT_FALSE(APFloat::getQNaN(APFloat::IEEEsingle, false).isSignaling());
42 EXPECT_FALSE(APFloat::getQNaN(APFloat::IEEEsingle, true).isSignaling());
43 EXPECT_FALSE(APFloat::getQNaN(APFloat::IEEEsingle, false, &payload).isSignaling());
44 EXPECT_FALSE(APFloat::getQNaN(APFloat::IEEEsingle, true, &payload).isSignaling());
45 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, false).isSignaling());
46 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, true).isSignaling());
47 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, false, &payload).isSignaling());
48 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, true, &payload).isSignaling());
49}
50
51TEST(APFloatTest, next) {
52
53 APFloat test(APFloat::IEEEquad, APFloat::uninitialized);
54 APFloat expected(APFloat::IEEEquad, APFloat::uninitialized);
55
56 // 1. Test Special Cases Values.
57 //
58 // Test all special values for nextUp and nextDown perscribed by IEEE-754R
59 // 2008. These are:
60 // 1. +inf
61 // 2. -inf
62 // 3. getLargest()
63 // 4. -getLargest()
64 // 5. getSmallest()
65 // 6. -getSmallest()
66 // 7. qNaN
67 // 8. sNaN
68 // 9. +0
69 // 10. -0
70
71 // nextUp(+inf) = +inf.
72 test = APFloat::getInf(APFloat::IEEEquad, false);
73 expected = APFloat::getInf(APFloat::IEEEquad, false);
74 EXPECT_EQ(test.next(false), APFloat::opOK);
75 EXPECT_TRUE(test.isInfinity());
76 EXPECT_TRUE(!test.isNegative());
77 EXPECT_TRUE(test.bitwiseIsEqual(expected));
78
79 // nextDown(+inf) = -nextUp(-inf) = -(-getLargest()) = getLargest()
80 test = APFloat::getInf(APFloat::IEEEquad, false);
81 expected = APFloat::getLargest(APFloat::IEEEquad, false);
82 EXPECT_EQ(test.next(true), APFloat::opOK);
83 EXPECT_TRUE(!test.isNegative());
84 EXPECT_TRUE(test.bitwiseIsEqual(expected));
85
86 // nextUp(-inf) = -getLargest()
87 test = APFloat::getInf(APFloat::IEEEquad, true);
88 expected = APFloat::getLargest(APFloat::IEEEquad, true);
89 EXPECT_EQ(test.next(false), APFloat::opOK);
90 EXPECT_TRUE(test.isNegative());
91 EXPECT_TRUE(test.bitwiseIsEqual(expected));
92
93 // nextDown(-inf) = -nextUp(+inf) = -(+inf) = -inf.
94 test = APFloat::getInf(APFloat::IEEEquad, true);
95 expected = APFloat::getInf(APFloat::IEEEquad, true);
96 EXPECT_EQ(test.next(true), APFloat::opOK);
97 EXPECT_TRUE(test.isInfinity() && test.isNegative());
98 EXPECT_TRUE(test.bitwiseIsEqual(expected));
99
100 // nextUp(getLargest()) = +inf
101 test = APFloat::getLargest(APFloat::IEEEquad, false);
102 expected = APFloat::getInf(APFloat::IEEEquad, false);
103 EXPECT_EQ(test.next(false), APFloat::opOK);
104 EXPECT_TRUE(test.isInfinity() && !test.isNegative());
105 EXPECT_TRUE(test.bitwiseIsEqual(expected));
106
107 // nextDown(getLargest()) = -nextUp(-getLargest())
108 // = -(-getLargest() + inc)
109 // = getLargest() - inc.
110 test = APFloat::getLargest(APFloat::IEEEquad, false);
111 expected = APFloat(APFloat::IEEEquad,
112 "0x1.fffffffffffffffffffffffffffep+16383");
113 EXPECT_EQ(test.next(true), APFloat::opOK);
114 EXPECT_TRUE(!test.isInfinity() && !test.isNegative());
115 EXPECT_TRUE(test.bitwiseIsEqual(expected));
116
117 // nextUp(-getLargest()) = -getLargest() + inc.
118 test = APFloat::getLargest(APFloat::IEEEquad, true);
119 expected = APFloat(APFloat::IEEEquad,
120 "-0x1.fffffffffffffffffffffffffffep+16383");
121 EXPECT_EQ(test.next(false), APFloat::opOK);
122 EXPECT_TRUE(test.bitwiseIsEqual(expected));
123
124 // nextDown(-getLargest()) = -nextUp(getLargest()) = -(inf) = -inf.
125 test = APFloat::getLargest(APFloat::IEEEquad, true);
126 expected = APFloat::getInf(APFloat::IEEEquad, true);
127 EXPECT_EQ(test.next(true), APFloat::opOK);
128 EXPECT_TRUE(test.isInfinity() && test.isNegative());
129 EXPECT_TRUE(test.bitwiseIsEqual(expected));
130
131 // nextUp(getSmallest()) = getSmallest() + inc.
132 test = APFloat(APFloat::IEEEquad, "0x0.0000000000000000000000000001p-16382");
133 expected = APFloat(APFloat::IEEEquad,
134 "0x0.0000000000000000000000000002p-16382");
135 EXPECT_EQ(test.next(false), APFloat::opOK);
136 EXPECT_TRUE(test.bitwiseIsEqual(expected));
137
138 // nextDown(getSmallest()) = -nextUp(-getSmallest()) = -(-0) = +0.
139 test = APFloat(APFloat::IEEEquad, "0x0.0000000000000000000000000001p-16382");
140 expected = APFloat::getZero(APFloat::IEEEquad, false);
141 EXPECT_EQ(test.next(true), APFloat::opOK);
Matt Arsenaultafa31cf2016-03-13 05:11:51 +0000142 EXPECT_TRUE(test.isPosZero());
Michael Gottesman0c622ea2013-05-30 18:07:13 +0000143 EXPECT_TRUE(test.bitwiseIsEqual(expected));
144
145 // nextUp(-getSmallest()) = -0.
146 test = APFloat(APFloat::IEEEquad, "-0x0.0000000000000000000000000001p-16382");
147 expected = APFloat::getZero(APFloat::IEEEquad, true);
148 EXPECT_EQ(test.next(false), APFloat::opOK);
Matt Arsenaultafa31cf2016-03-13 05:11:51 +0000149 EXPECT_TRUE(test.isNegZero());
Michael Gottesman0c622ea2013-05-30 18:07:13 +0000150 EXPECT_TRUE(test.bitwiseIsEqual(expected));
151
152 // nextDown(-getSmallest()) = -nextUp(getSmallest()) = -getSmallest() - inc.
153 test = APFloat(APFloat::IEEEquad, "-0x0.0000000000000000000000000001p-16382");
154 expected = APFloat(APFloat::IEEEquad,
155 "-0x0.0000000000000000000000000002p-16382");
156 EXPECT_EQ(test.next(true), APFloat::opOK);
157 EXPECT_TRUE(test.bitwiseIsEqual(expected));
158
159 // nextUp(qNaN) = qNaN
160 test = APFloat::getQNaN(APFloat::IEEEquad, false);
161 expected = APFloat::getQNaN(APFloat::IEEEquad, false);
162 EXPECT_EQ(test.next(false), APFloat::opOK);
163 EXPECT_TRUE(test.bitwiseIsEqual(expected));
164
165 // nextDown(qNaN) = qNaN
166 test = APFloat::getQNaN(APFloat::IEEEquad, false);
167 expected = APFloat::getQNaN(APFloat::IEEEquad, false);
168 EXPECT_EQ(test.next(true), APFloat::opOK);
169 EXPECT_TRUE(test.bitwiseIsEqual(expected));
170
171 // nextUp(sNaN) = qNaN
172 test = APFloat::getSNaN(APFloat::IEEEquad, false);
173 expected = APFloat::getQNaN(APFloat::IEEEquad, false);
174 EXPECT_EQ(test.next(false), APFloat::opInvalidOp);
175 EXPECT_TRUE(test.bitwiseIsEqual(expected));
176
177 // nextDown(sNaN) = qNaN
178 test = APFloat::getSNaN(APFloat::IEEEquad, false);
179 expected = APFloat::getQNaN(APFloat::IEEEquad, false);
180 EXPECT_EQ(test.next(true), APFloat::opInvalidOp);
181 EXPECT_TRUE(test.bitwiseIsEqual(expected));
182
183 // nextUp(+0) = +getSmallest()
184 test = APFloat::getZero(APFloat::IEEEquad, false);
185 expected = APFloat::getSmallest(APFloat::IEEEquad, false);
186 EXPECT_EQ(test.next(false), APFloat::opOK);
187 EXPECT_TRUE(test.bitwiseIsEqual(expected));
188
189 // nextDown(+0) = -nextUp(-0) = -getSmallest()
190 test = APFloat::getZero(APFloat::IEEEquad, false);
191 expected = APFloat::getSmallest(APFloat::IEEEquad, true);
192 EXPECT_EQ(test.next(true), APFloat::opOK);
193 EXPECT_TRUE(test.bitwiseIsEqual(expected));
194
195 // nextUp(-0) = +getSmallest()
196 test = APFloat::getZero(APFloat::IEEEquad, true);
197 expected = APFloat::getSmallest(APFloat::IEEEquad, false);
198 EXPECT_EQ(test.next(false), APFloat::opOK);
199 EXPECT_TRUE(test.bitwiseIsEqual(expected));
200
201 // nextDown(-0) = -nextUp(0) = -getSmallest()
202 test = APFloat::getZero(APFloat::IEEEquad, true);
203 expected = APFloat::getSmallest(APFloat::IEEEquad, true);
204 EXPECT_EQ(test.next(true), APFloat::opOK);
205 EXPECT_TRUE(test.bitwiseIsEqual(expected));
206
207 // 2. Binade Boundary Tests.
208
209 // 2a. Test denormal <-> normal binade boundaries.
210 // * nextUp(+Largest Denormal) -> +Smallest Normal.
211 // * nextDown(-Largest Denormal) -> -Smallest Normal.
212 // * nextUp(-Smallest Normal) -> -Largest Denormal.
213 // * nextDown(+Smallest Normal) -> +Largest Denormal.
214
215 // nextUp(+Largest Denormal) -> +Smallest Normal.
216 test = APFloat(APFloat::IEEEquad, "0x0.ffffffffffffffffffffffffffffp-16382");
217 expected = APFloat(APFloat::IEEEquad,
218 "0x1.0000000000000000000000000000p-16382");
219 EXPECT_EQ(test.next(false), APFloat::opOK);
220 EXPECT_FALSE(test.isDenormal());
221 EXPECT_TRUE(test.bitwiseIsEqual(expected));
222
223 // nextDown(-Largest Denormal) -> -Smallest Normal.
224 test = APFloat(APFloat::IEEEquad,
225 "-0x0.ffffffffffffffffffffffffffffp-16382");
226 expected = APFloat(APFloat::IEEEquad,
227 "-0x1.0000000000000000000000000000p-16382");
228 EXPECT_EQ(test.next(true), APFloat::opOK);
229 EXPECT_FALSE(test.isDenormal());
230 EXPECT_TRUE(test.bitwiseIsEqual(expected));
231
232 // nextUp(-Smallest Normal) -> -LargestDenormal.
233 test = APFloat(APFloat::IEEEquad,
234 "-0x1.0000000000000000000000000000p-16382");
235 expected = APFloat(APFloat::IEEEquad,
236 "-0x0.ffffffffffffffffffffffffffffp-16382");
237 EXPECT_EQ(test.next(false), APFloat::opOK);
238 EXPECT_TRUE(test.isDenormal());
239 EXPECT_TRUE(test.bitwiseIsEqual(expected));
240
241 // nextDown(+Smallest Normal) -> +Largest Denormal.
242 test = APFloat(APFloat::IEEEquad,
243 "+0x1.0000000000000000000000000000p-16382");
244 expected = APFloat(APFloat::IEEEquad,
245 "+0x0.ffffffffffffffffffffffffffffp-16382");
246 EXPECT_EQ(test.next(true), APFloat::opOK);
247 EXPECT_TRUE(test.isDenormal());
248 EXPECT_TRUE(test.bitwiseIsEqual(expected));
249
250 // 2b. Test normal <-> normal binade boundaries.
251 // * nextUp(-Normal Binade Boundary) -> -Normal Binade Boundary + 1.
252 // * nextDown(+Normal Binade Boundary) -> +Normal Binade Boundary - 1.
253 // * nextUp(+Normal Binade Boundary - 1) -> +Normal Binade Boundary.
254 // * nextDown(-Normal Binade Boundary + 1) -> -Normal Binade Boundary.
255
256 // nextUp(-Normal Binade Boundary) -> -Normal Binade Boundary + 1.
257 test = APFloat(APFloat::IEEEquad, "-0x1p+1");
258 expected = APFloat(APFloat::IEEEquad,
259 "-0x1.ffffffffffffffffffffffffffffp+0");
260 EXPECT_EQ(test.next(false), APFloat::opOK);
261 EXPECT_TRUE(test.bitwiseIsEqual(expected));
262
263 // nextDown(+Normal Binade Boundary) -> +Normal Binade Boundary - 1.
264 test = APFloat(APFloat::IEEEquad, "0x1p+1");
265 expected = APFloat(APFloat::IEEEquad, "0x1.ffffffffffffffffffffffffffffp+0");
266 EXPECT_EQ(test.next(true), APFloat::opOK);
267 EXPECT_TRUE(test.bitwiseIsEqual(expected));
268
269 // nextUp(+Normal Binade Boundary - 1) -> +Normal Binade Boundary.
270 test = APFloat(APFloat::IEEEquad, "0x1.ffffffffffffffffffffffffffffp+0");
271 expected = APFloat(APFloat::IEEEquad, "0x1p+1");
272 EXPECT_EQ(test.next(false), APFloat::opOK);
273 EXPECT_TRUE(test.bitwiseIsEqual(expected));
274
275 // nextDown(-Normal Binade Boundary + 1) -> -Normal Binade Boundary.
276 test = APFloat(APFloat::IEEEquad, "-0x1.ffffffffffffffffffffffffffffp+0");
277 expected = APFloat(APFloat::IEEEquad, "-0x1p+1");
278 EXPECT_EQ(test.next(true), APFloat::opOK);
279 EXPECT_TRUE(test.bitwiseIsEqual(expected));
280
281 // 2c. Test using next at binade boundaries with a direction away from the
282 // binade boundary. Away from denormal <-> normal boundaries.
283 //
284 // This is to make sure that even though we are at a binade boundary, since
285 // we are rounding away, we do not trigger the binade boundary code. Thus we
286 // test:
287 // * nextUp(-Largest Denormal) -> -Largest Denormal + inc.
288 // * nextDown(+Largest Denormal) -> +Largest Denormal - inc.
289 // * nextUp(+Smallest Normal) -> +Smallest Normal + inc.
290 // * nextDown(-Smallest Normal) -> -Smallest Normal - inc.
291
292 // nextUp(-Largest Denormal) -> -Largest Denormal + inc.
293 test = APFloat(APFloat::IEEEquad, "-0x0.ffffffffffffffffffffffffffffp-16382");
294 expected = APFloat(APFloat::IEEEquad,
295 "-0x0.fffffffffffffffffffffffffffep-16382");
296 EXPECT_EQ(test.next(false), APFloat::opOK);
297 EXPECT_TRUE(test.isDenormal());
298 EXPECT_TRUE(test.isNegative());
299 EXPECT_TRUE(test.bitwiseIsEqual(expected));
300
301 // nextDown(+Largest Denormal) -> +Largest Denormal - inc.
302 test = APFloat(APFloat::IEEEquad, "0x0.ffffffffffffffffffffffffffffp-16382");
303 expected = APFloat(APFloat::IEEEquad,
304 "0x0.fffffffffffffffffffffffffffep-16382");
305 EXPECT_EQ(test.next(true), APFloat::opOK);
306 EXPECT_TRUE(test.isDenormal());
307 EXPECT_TRUE(!test.isNegative());
308 EXPECT_TRUE(test.bitwiseIsEqual(expected));
309
310 // nextUp(+Smallest Normal) -> +Smallest Normal + inc.
311 test = APFloat(APFloat::IEEEquad, "0x1.0000000000000000000000000000p-16382");
312 expected = APFloat(APFloat::IEEEquad,
313 "0x1.0000000000000000000000000001p-16382");
314 EXPECT_EQ(test.next(false), APFloat::opOK);
315 EXPECT_TRUE(!test.isDenormal());
316 EXPECT_TRUE(!test.isNegative());
317 EXPECT_TRUE(test.bitwiseIsEqual(expected));
318
319 // nextDown(-Smallest Normal) -> -Smallest Normal - inc.
320 test = APFloat(APFloat::IEEEquad, "-0x1.0000000000000000000000000000p-16382");
321 expected = APFloat(APFloat::IEEEquad,
322 "-0x1.0000000000000000000000000001p-16382");
323 EXPECT_EQ(test.next(true), APFloat::opOK);
324 EXPECT_TRUE(!test.isDenormal());
325 EXPECT_TRUE(test.isNegative());
326 EXPECT_TRUE(test.bitwiseIsEqual(expected));
327
328 // 2d. Test values which cause our exponent to go to min exponent. This
329 // is to ensure that guards in the code to check for min exponent
330 // trigger properly.
331 // * nextUp(-0x1p-16381) -> -0x1.ffffffffffffffffffffffffffffp-16382
332 // * nextDown(-0x1.ffffffffffffffffffffffffffffp-16382) ->
333 // -0x1p-16381
334 // * nextUp(0x1.ffffffffffffffffffffffffffffp-16382) -> 0x1p-16382
335 // * nextDown(0x1p-16382) -> 0x1.ffffffffffffffffffffffffffffp-16382
336
337 // nextUp(-0x1p-16381) -> -0x1.ffffffffffffffffffffffffffffp-16382
338 test = APFloat(APFloat::IEEEquad, "-0x1p-16381");
339 expected = APFloat(APFloat::IEEEquad,
340 "-0x1.ffffffffffffffffffffffffffffp-16382");
341 EXPECT_EQ(test.next(false), APFloat::opOK);
342 EXPECT_TRUE(test.bitwiseIsEqual(expected));
343
344 // nextDown(-0x1.ffffffffffffffffffffffffffffp-16382) ->
345 // -0x1p-16381
346 test = APFloat(APFloat::IEEEquad, "-0x1.ffffffffffffffffffffffffffffp-16382");
347 expected = APFloat(APFloat::IEEEquad, "-0x1p-16381");
348 EXPECT_EQ(test.next(true), APFloat::opOK);
349 EXPECT_TRUE(test.bitwiseIsEqual(expected));
350
351 // nextUp(0x1.ffffffffffffffffffffffffffffp-16382) -> 0x1p-16381
352 test = APFloat(APFloat::IEEEquad, "0x1.ffffffffffffffffffffffffffffp-16382");
353 expected = APFloat(APFloat::IEEEquad, "0x1p-16381");
354 EXPECT_EQ(test.next(false), APFloat::opOK);
355 EXPECT_TRUE(test.bitwiseIsEqual(expected));
356
357 // nextDown(0x1p-16381) -> 0x1.ffffffffffffffffffffffffffffp-16382
358 test = APFloat(APFloat::IEEEquad, "0x1p-16381");
359 expected = APFloat(APFloat::IEEEquad,
360 "0x1.ffffffffffffffffffffffffffffp-16382");
361 EXPECT_EQ(test.next(true), APFloat::opOK);
362 EXPECT_TRUE(test.bitwiseIsEqual(expected));
363
364 // 3. Now we test both denormal/normal computation which will not cause us
365 // to go across binade boundaries. Specifically we test:
366 // * nextUp(+Denormal) -> +Denormal.
367 // * nextDown(+Denormal) -> +Denormal.
368 // * nextUp(-Denormal) -> -Denormal.
369 // * nextDown(-Denormal) -> -Denormal.
370 // * nextUp(+Normal) -> +Normal.
371 // * nextDown(+Normal) -> +Normal.
372 // * nextUp(-Normal) -> -Normal.
373 // * nextDown(-Normal) -> -Normal.
374
375 // nextUp(+Denormal) -> +Denormal.
376 test = APFloat(APFloat::IEEEquad,
377 "0x0.ffffffffffffffffffffffff000cp-16382");
378 expected = APFloat(APFloat::IEEEquad,
379 "0x0.ffffffffffffffffffffffff000dp-16382");
380 EXPECT_EQ(test.next(false), APFloat::opOK);
381 EXPECT_TRUE(test.isDenormal());
382 EXPECT_TRUE(!test.isNegative());
383 EXPECT_TRUE(test.bitwiseIsEqual(expected));
384
385 // nextDown(+Denormal) -> +Denormal.
386 test = APFloat(APFloat::IEEEquad,
387 "0x0.ffffffffffffffffffffffff000cp-16382");
388 expected = APFloat(APFloat::IEEEquad,
389 "0x0.ffffffffffffffffffffffff000bp-16382");
390 EXPECT_EQ(test.next(true), APFloat::opOK);
391 EXPECT_TRUE(test.isDenormal());
392 EXPECT_TRUE(!test.isNegative());
393 EXPECT_TRUE(test.bitwiseIsEqual(expected));
394
395 // nextUp(-Denormal) -> -Denormal.
396 test = APFloat(APFloat::IEEEquad,
397 "-0x0.ffffffffffffffffffffffff000cp-16382");
398 expected = APFloat(APFloat::IEEEquad,
399 "-0x0.ffffffffffffffffffffffff000bp-16382");
400 EXPECT_EQ(test.next(false), APFloat::opOK);
401 EXPECT_TRUE(test.isDenormal());
402 EXPECT_TRUE(test.isNegative());
403 EXPECT_TRUE(test.bitwiseIsEqual(expected));
404
405 // nextDown(-Denormal) -> -Denormal
406 test = APFloat(APFloat::IEEEquad,
407 "-0x0.ffffffffffffffffffffffff000cp-16382");
408 expected = APFloat(APFloat::IEEEquad,
409 "-0x0.ffffffffffffffffffffffff000dp-16382");
410 EXPECT_EQ(test.next(true), APFloat::opOK);
411 EXPECT_TRUE(test.isDenormal());
412 EXPECT_TRUE(test.isNegative());
413 EXPECT_TRUE(test.bitwiseIsEqual(expected));
414
415 // nextUp(+Normal) -> +Normal.
416 test = APFloat(APFloat::IEEEquad,
417 "0x1.ffffffffffffffffffffffff000cp-16000");
418 expected = APFloat(APFloat::IEEEquad,
419 "0x1.ffffffffffffffffffffffff000dp-16000");
420 EXPECT_EQ(test.next(false), APFloat::opOK);
421 EXPECT_TRUE(!test.isDenormal());
422 EXPECT_TRUE(!test.isNegative());
423 EXPECT_TRUE(test.bitwiseIsEqual(expected));
424
425 // nextDown(+Normal) -> +Normal.
426 test = APFloat(APFloat::IEEEquad,
427 "0x1.ffffffffffffffffffffffff000cp-16000");
428 expected = APFloat(APFloat::IEEEquad,
429 "0x1.ffffffffffffffffffffffff000bp-16000");
430 EXPECT_EQ(test.next(true), APFloat::opOK);
431 EXPECT_TRUE(!test.isDenormal());
432 EXPECT_TRUE(!test.isNegative());
433 EXPECT_TRUE(test.bitwiseIsEqual(expected));
434
435 // nextUp(-Normal) -> -Normal.
436 test = APFloat(APFloat::IEEEquad,
437 "-0x1.ffffffffffffffffffffffff000cp-16000");
438 expected = APFloat(APFloat::IEEEquad,
439 "-0x1.ffffffffffffffffffffffff000bp-16000");
440 EXPECT_EQ(test.next(false), APFloat::opOK);
441 EXPECT_TRUE(!test.isDenormal());
442 EXPECT_TRUE(test.isNegative());
443 EXPECT_TRUE(test.bitwiseIsEqual(expected));
444
445 // nextDown(-Normal) -> -Normal.
446 test = APFloat(APFloat::IEEEquad,
447 "-0x1.ffffffffffffffffffffffff000cp-16000");
448 expected = APFloat(APFloat::IEEEquad,
449 "-0x1.ffffffffffffffffffffffff000dp-16000");
450 EXPECT_EQ(test.next(true), APFloat::opOK);
451 EXPECT_TRUE(!test.isDenormal());
452 EXPECT_TRUE(test.isNegative());
453 EXPECT_TRUE(test.bitwiseIsEqual(expected));
454}
455
Shuxin Yangbbddbac2013-05-13 18:03:12 +0000456TEST(APFloatTest, FMA) {
457 APFloat::roundingMode rdmd = APFloat::rmNearestTiesToEven;
458
459 {
460 APFloat f1(14.5f);
461 APFloat f2(-14.5f);
462 APFloat f3(225.0f);
463 f1.fusedMultiplyAdd(f2, f3, APFloat::rmNearestTiesToEven);
464 EXPECT_EQ(14.75f, f1.convertToFloat());
465 }
466
467 {
468 APFloat Val2(2.0f);
469 APFloat f1((float)1.17549435e-38F);
470 APFloat f2((float)1.17549435e-38F);
471 f1.divide(Val2, rdmd);
472 f2.divide(Val2, rdmd);
473 APFloat f3(12.0f);
474 f1.fusedMultiplyAdd(f2, f3, APFloat::rmNearestTiesToEven);
475 EXPECT_EQ(12.0f, f1.convertToFloat());
476 }
Lang Hames56c0eb22014-11-19 19:15:41 +0000477
Lang Hames12b12e82015-01-04 01:20:55 +0000478 // Test for correct zero sign when answer is exactly zero.
479 // fma(1.0, -1.0, 1.0) -> +ve 0.
480 {
481 APFloat f1(1.0);
482 APFloat f2(-1.0);
483 APFloat f3(1.0);
484 f1.fusedMultiplyAdd(f2, f3, APFloat::rmNearestTiesToEven);
485 EXPECT_TRUE(!f1.isNegative() && f1.isZero());
486 }
487
488 // Test for correct zero sign when answer is exactly zero and rounding towards
489 // negative.
490 // fma(1.0, -1.0, 1.0) -> +ve 0.
491 {
492 APFloat f1(1.0);
493 APFloat f2(-1.0);
494 APFloat f3(1.0);
495 f1.fusedMultiplyAdd(f2, f3, APFloat::rmTowardNegative);
496 EXPECT_TRUE(f1.isNegative() && f1.isZero());
497 }
498
499 // Test for correct (in this case -ve) sign when adding like signed zeros.
500 // Test fma(0.0, -0.0, -0.0) -> -ve 0.
501 {
502 APFloat f1(0.0);
503 APFloat f2(-0.0);
504 APFloat f3(-0.0);
505 f1.fusedMultiplyAdd(f2, f3, APFloat::rmNearestTiesToEven);
506 EXPECT_TRUE(f1.isNegative() && f1.isZero());
507 }
508
509 // Test -ve sign preservation when small negative results underflow.
510 {
511 APFloat f1(APFloat::IEEEdouble, "-0x1p-1074");
512 APFloat f2(APFloat::IEEEdouble, "+0x1p-1074");
513 APFloat f3(0.0);
514 f1.fusedMultiplyAdd(f2, f3, APFloat::rmNearestTiesToEven);
515 EXPECT_TRUE(f1.isNegative() && f1.isZero());
516 }
517
518 // Test x87 extended precision case from http://llvm.org/PR20728.
Lang Hames56c0eb22014-11-19 19:15:41 +0000519 {
520 APFloat M1(APFloat::x87DoubleExtended, 1.0);
521 APFloat M2(APFloat::x87DoubleExtended, 1.0);
522 APFloat A(APFloat::x87DoubleExtended, 3.0);
523
524 bool losesInfo = false;
525 M1.fusedMultiplyAdd(M1, A, APFloat::rmNearestTiesToEven);
526 M1.convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven, &losesInfo);
527 EXPECT_FALSE(losesInfo);
528 EXPECT_EQ(4.0f, M1.convertToFloat());
529 }
Shuxin Yangbbddbac2013-05-13 18:03:12 +0000530}
531
Matt Arsenault5ccdb982014-10-10 05:21:32 +0000532TEST(APFloatTest, MinNum) {
533 APFloat f1(1.0);
534 APFloat f2(2.0);
535 APFloat nan = APFloat::getNaN(APFloat::IEEEdouble);
536
537 EXPECT_EQ(1.0, minnum(f1, f2).convertToDouble());
538 EXPECT_EQ(1.0, minnum(f2, f1).convertToDouble());
539 EXPECT_EQ(1.0, minnum(f1, nan).convertToDouble());
540 EXPECT_EQ(1.0, minnum(nan, f1).convertToDouble());
541}
542
543TEST(APFloatTest, MaxNum) {
544 APFloat f1(1.0);
545 APFloat f2(2.0);
546 APFloat nan = APFloat::getNaN(APFloat::IEEEdouble);
547
548 EXPECT_EQ(2.0, maxnum(f1, f2).convertToDouble());
549 EXPECT_EQ(2.0, maxnum(f2, f1).convertToDouble());
550 EXPECT_EQ(1.0, maxnum(f1, nan).convertToDouble());
551 EXPECT_EQ(1.0, minnum(nan, f1).convertToDouble());
552}
553
Shuxin Yang4fb504f2013-01-07 18:59:35 +0000554TEST(APFloatTest, Denormal) {
555 APFloat::roundingMode rdmd = APFloat::rmNearestTiesToEven;
556
557 // Test single precision
558 {
559 const char *MinNormalStr = "1.17549435082228750797e-38";
560 EXPECT_FALSE(APFloat(APFloat::IEEEsingle, MinNormalStr).isDenormal());
561 EXPECT_FALSE(APFloat(APFloat::IEEEsingle, 0.0).isDenormal());
562
563 APFloat Val2(APFloat::IEEEsingle, 2.0e0);
564 APFloat T(APFloat::IEEEsingle, MinNormalStr);
565 T.divide(Val2, rdmd);
566 EXPECT_TRUE(T.isDenormal());
567 }
568
569 // Test double precision
570 {
571 const char *MinNormalStr = "2.22507385850720138309e-308";
572 EXPECT_FALSE(APFloat(APFloat::IEEEdouble, MinNormalStr).isDenormal());
573 EXPECT_FALSE(APFloat(APFloat::IEEEdouble, 0.0).isDenormal());
574
575 APFloat Val2(APFloat::IEEEdouble, 2.0e0);
576 APFloat T(APFloat::IEEEdouble, MinNormalStr);
577 T.divide(Val2, rdmd);
578 EXPECT_TRUE(T.isDenormal());
579 }
580
581 // Test Intel double-ext
582 {
583 const char *MinNormalStr = "3.36210314311209350626e-4932";
584 EXPECT_FALSE(APFloat(APFloat::x87DoubleExtended, MinNormalStr).isDenormal());
585 EXPECT_FALSE(APFloat(APFloat::x87DoubleExtended, 0.0).isDenormal());
586
587 APFloat Val2(APFloat::x87DoubleExtended, 2.0e0);
588 APFloat T(APFloat::x87DoubleExtended, MinNormalStr);
589 T.divide(Val2, rdmd);
590 EXPECT_TRUE(T.isDenormal());
591 }
592
593 // Test quadruple precision
594 {
595 const char *MinNormalStr = "3.36210314311209350626267781732175260e-4932";
596 EXPECT_FALSE(APFloat(APFloat::IEEEquad, MinNormalStr).isDenormal());
597 EXPECT_FALSE(APFloat(APFloat::IEEEquad, 0.0).isDenormal());
598
599 APFloat Val2(APFloat::IEEEquad, 2.0e0);
600 APFloat T(APFloat::IEEEquad, MinNormalStr);
601 T.divide(Val2, rdmd);
602 EXPECT_TRUE(T.isDenormal());
603 }
604}
605
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000606TEST(APFloatTest, Zero) {
Matt Beaumont-Gaya421ee12011-08-29 17:54:20 +0000607 EXPECT_EQ(0.0f, APFloat(0.0f).convertToFloat());
608 EXPECT_EQ(-0.0f, APFloat(-0.0f).convertToFloat());
609 EXPECT_TRUE(APFloat(-0.0f).isNegative());
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000610
Matt Beaumont-Gaya421ee12011-08-29 17:54:20 +0000611 EXPECT_EQ(0.0, APFloat(0.0).convertToDouble());
612 EXPECT_EQ(-0.0, APFloat(-0.0).convertToDouble());
613 EXPECT_TRUE(APFloat(-0.0).isNegative());
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000614}
615
Michael Gottesman228156c2013-07-01 23:54:08 +0000616TEST(APFloatTest, DecimalStringsWithoutNullTerminators) {
617 // Make sure that we can parse strings without null terminators.
618 // rdar://14323230.
619 APFloat Val(APFloat::IEEEdouble);
620 Val.convertFromString(StringRef("0.00", 3),
621 llvm::APFloat::rmNearestTiesToEven);
622 EXPECT_EQ(Val.convertToDouble(), 0.0);
623 Val.convertFromString(StringRef("0.01", 3),
624 llvm::APFloat::rmNearestTiesToEven);
625 EXPECT_EQ(Val.convertToDouble(), 0.0);
626 Val.convertFromString(StringRef("0.09", 3),
627 llvm::APFloat::rmNearestTiesToEven);
628 EXPECT_EQ(Val.convertToDouble(), 0.0);
629 Val.convertFromString(StringRef("0.095", 4),
630 llvm::APFloat::rmNearestTiesToEven);
631 EXPECT_EQ(Val.convertToDouble(), 0.09);
632 Val.convertFromString(StringRef("0.00e+3", 7),
633 llvm::APFloat::rmNearestTiesToEven);
634 EXPECT_EQ(Val.convertToDouble(), 0.00);
635 Val.convertFromString(StringRef("0e+3", 4),
636 llvm::APFloat::rmNearestTiesToEven);
637 EXPECT_EQ(Val.convertToDouble(), 0.00);
638
639}
640
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000641TEST(APFloatTest, fromZeroDecimalString) {
642 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0").convertToDouble());
643 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0").convertToDouble());
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000644 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0").convertToDouble());
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000645
646 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.").convertToDouble());
647 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.").convertToDouble());
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000648 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.").convertToDouble());
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000649
650 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, ".0").convertToDouble());
651 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+.0").convertToDouble());
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000652 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-.0").convertToDouble());
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000653
654 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.0").convertToDouble());
655 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.0").convertToDouble());
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000656 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.0").convertToDouble());
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000657
658 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "00000.").convertToDouble());
659 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+00000.").convertToDouble());
660 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-00000.").convertToDouble());
661
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000662 EXPECT_EQ(0.0, APFloat(APFloat::IEEEdouble, ".00000").convertToDouble());
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000663 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+.00000").convertToDouble());
664 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-.00000").convertToDouble());
665
666 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0000.00000").convertToDouble());
667 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0000.00000").convertToDouble());
668 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0000.00000").convertToDouble());
669}
670
671TEST(APFloatTest, fromZeroDecimalSingleExponentString) {
672 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e1").convertToDouble());
673 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e1").convertToDouble());
674 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e1").convertToDouble());
675
676 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e+1").convertToDouble());
677 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e+1").convertToDouble());
678 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e+1").convertToDouble());
679
680 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e-1").convertToDouble());
681 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e-1").convertToDouble());
682 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e-1").convertToDouble());
683
684
685 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.e1").convertToDouble());
686 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.e1").convertToDouble());
687 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.e1").convertToDouble());
688
689 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.e+1").convertToDouble());
690 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.e+1").convertToDouble());
691 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.e+1").convertToDouble());
692
693 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.e-1").convertToDouble());
694 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.e-1").convertToDouble());
695 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.e-1").convertToDouble());
696
697 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, ".0e1").convertToDouble());
698 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+.0e1").convertToDouble());
699 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-.0e1").convertToDouble());
700
701 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, ".0e+1").convertToDouble());
702 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+.0e+1").convertToDouble());
703 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-.0e+1").convertToDouble());
704
705 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, ".0e-1").convertToDouble());
706 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+.0e-1").convertToDouble());
707 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-.0e-1").convertToDouble());
708
709
710 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.0e1").convertToDouble());
711 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.0e1").convertToDouble());
712 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.0e1").convertToDouble());
713
714 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.0e+1").convertToDouble());
715 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.0e+1").convertToDouble());
716 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.0e+1").convertToDouble());
717
718 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0.0e-1").convertToDouble());
719 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0.0e-1").convertToDouble());
720 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0.0e-1").convertToDouble());
721
722
723 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "000.0000e1").convertToDouble());
724 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+000.0000e+1").convertToDouble());
725 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-000.0000e+1").convertToDouble());
726}
727
728TEST(APFloatTest, fromZeroDecimalLargeExponentString) {
729 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e1234").convertToDouble());
730 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e1234").convertToDouble());
731 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e1234").convertToDouble());
732
733 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e+1234").convertToDouble());
734 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e+1234").convertToDouble());
735 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e+1234").convertToDouble());
736
737 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0e-1234").convertToDouble());
738 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0e-1234").convertToDouble());
739 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0e-1234").convertToDouble());
740
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +0000741 EXPECT_EQ(0.0, APFloat(APFloat::IEEEdouble, "000.0000e1234").convertToDouble());
742 EXPECT_EQ(0.0, APFloat(APFloat::IEEEdouble, "000.0000e-1234").convertToDouble());
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000743
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000744 EXPECT_EQ(0.0, APFloat(APFloat::IEEEdouble, StringRef("0e1234\02", 6)).convertToDouble());
745}
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000746
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000747TEST(APFloatTest, fromZeroHexadecimalString) {
748 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0p1").convertToDouble());
749 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0p1").convertToDouble());
750 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0p1").convertToDouble());
751
752 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0p+1").convertToDouble());
753 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0p+1").convertToDouble());
754 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0p+1").convertToDouble());
755
756 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0p-1").convertToDouble());
757 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0p-1").convertToDouble());
758 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0p-1").convertToDouble());
759
760
761 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.p1").convertToDouble());
762 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.p1").convertToDouble());
763 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.p1").convertToDouble());
764
765 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.p+1").convertToDouble());
766 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.p+1").convertToDouble());
767 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.p+1").convertToDouble());
768
769 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.p-1").convertToDouble());
770 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.p-1").convertToDouble());
771 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.p-1").convertToDouble());
772
773
774 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x.0p1").convertToDouble());
775 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x.0p1").convertToDouble());
776 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x.0p1").convertToDouble());
777
778 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x.0p+1").convertToDouble());
779 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x.0p+1").convertToDouble());
780 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x.0p+1").convertToDouble());
781
782 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x.0p-1").convertToDouble());
783 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x.0p-1").convertToDouble());
784 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x.0p-1").convertToDouble());
785
786
787 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.0p1").convertToDouble());
788 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.0p1").convertToDouble());
789 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.0p1").convertToDouble());
790
791 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.0p+1").convertToDouble());
792 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.0p+1").convertToDouble());
793 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.0p+1").convertToDouble());
794
795 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.0p-1").convertToDouble());
796 EXPECT_EQ(+0.0, APFloat(APFloat::IEEEdouble, "+0x0.0p-1").convertToDouble());
797 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0.0p-1").convertToDouble());
798
799
800 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x00000.p1").convertToDouble());
801 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0000.00000p1").convertToDouble());
802 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x.00000p1").convertToDouble());
803 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.p1").convertToDouble());
804 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0p1234").convertToDouble());
805 EXPECT_EQ(-0.0, APFloat(APFloat::IEEEdouble, "-0x0p1234").convertToDouble());
806 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x00000.p1234").convertToDouble());
807 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0000.00000p1234").convertToDouble());
808 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x.00000p1234").convertToDouble());
809 EXPECT_EQ( 0.0, APFloat(APFloat::IEEEdouble, "0x0.p1234").convertToDouble());
810}
811
812TEST(APFloatTest, fromDecimalString) {
813 EXPECT_EQ(1.0, APFloat(APFloat::IEEEdouble, "1").convertToDouble());
814 EXPECT_EQ(2.0, APFloat(APFloat::IEEEdouble, "2.").convertToDouble());
815 EXPECT_EQ(0.5, APFloat(APFloat::IEEEdouble, ".5").convertToDouble());
816 EXPECT_EQ(1.0, APFloat(APFloat::IEEEdouble, "1.0").convertToDouble());
817 EXPECT_EQ(-2.0, APFloat(APFloat::IEEEdouble, "-2").convertToDouble());
818 EXPECT_EQ(-4.0, APFloat(APFloat::IEEEdouble, "-4.").convertToDouble());
819 EXPECT_EQ(-0.5, APFloat(APFloat::IEEEdouble, "-.5").convertToDouble());
820 EXPECT_EQ(-1.5, APFloat(APFloat::IEEEdouble, "-1.5").convertToDouble());
821 EXPECT_EQ(1.25e12, APFloat(APFloat::IEEEdouble, "1.25e12").convertToDouble());
822 EXPECT_EQ(1.25e+12, APFloat(APFloat::IEEEdouble, "1.25e+12").convertToDouble());
823 EXPECT_EQ(1.25e-12, APFloat(APFloat::IEEEdouble, "1.25e-12").convertToDouble());
824 EXPECT_EQ(1024.0, APFloat(APFloat::IEEEdouble, "1024.").convertToDouble());
825 EXPECT_EQ(1024.05, APFloat(APFloat::IEEEdouble, "1024.05000").convertToDouble());
826 EXPECT_EQ(0.05, APFloat(APFloat::IEEEdouble, ".05000").convertToDouble());
827 EXPECT_EQ(2.0, APFloat(APFloat::IEEEdouble, "2.").convertToDouble());
828 EXPECT_EQ(2.0e2, APFloat(APFloat::IEEEdouble, "2.e2").convertToDouble());
829 EXPECT_EQ(2.0e+2, APFloat(APFloat::IEEEdouble, "2.e+2").convertToDouble());
830 EXPECT_EQ(2.0e-2, APFloat(APFloat::IEEEdouble, "2.e-2").convertToDouble());
831 EXPECT_EQ(2.05e2, APFloat(APFloat::IEEEdouble, "002.05000e2").convertToDouble());
832 EXPECT_EQ(2.05e+2, APFloat(APFloat::IEEEdouble, "002.05000e+2").convertToDouble());
833 EXPECT_EQ(2.05e-2, APFloat(APFloat::IEEEdouble, "002.05000e-2").convertToDouble());
834 EXPECT_EQ(2.05e12, APFloat(APFloat::IEEEdouble, "002.05000e12").convertToDouble());
835 EXPECT_EQ(2.05e+12, APFloat(APFloat::IEEEdouble, "002.05000e+12").convertToDouble());
836 EXPECT_EQ(2.05e-12, APFloat(APFloat::IEEEdouble, "002.05000e-12").convertToDouble());
John McCallb42cc682010-02-26 22:20:41 +0000837
838 // These are "carefully selected" to overflow the fast log-base
839 // calculations in APFloat.cpp
840 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "99e99999").isInfinity());
841 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-99e99999").isInfinity());
842 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "1e-99999").isPosZero());
843 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-1e-99999").isNegZero());
Eli Friedmand2eb07a2013-07-17 22:17:29 +0000844
845 EXPECT_EQ(2.71828, convertToDoubleFromString("2.71828"));
Erick Tryzelaarda666c82009-08-20 23:30:43 +0000846}
847
848TEST(APFloatTest, fromHexadecimalString) {
849 EXPECT_EQ( 1.0, APFloat(APFloat::IEEEdouble, "0x1p0").convertToDouble());
850 EXPECT_EQ(+1.0, APFloat(APFloat::IEEEdouble, "+0x1p0").convertToDouble());
851 EXPECT_EQ(-1.0, APFloat(APFloat::IEEEdouble, "-0x1p0").convertToDouble());
852
853 EXPECT_EQ( 1.0, APFloat(APFloat::IEEEdouble, "0x1p+0").convertToDouble());
854 EXPECT_EQ(+1.0, APFloat(APFloat::IEEEdouble, "+0x1p+0").convertToDouble());
855 EXPECT_EQ(-1.0, APFloat(APFloat::IEEEdouble, "-0x1p+0").convertToDouble());
856
857 EXPECT_EQ( 1.0, APFloat(APFloat::IEEEdouble, "0x1p-0").convertToDouble());
858 EXPECT_EQ(+1.0, APFloat(APFloat::IEEEdouble, "+0x1p-0").convertToDouble());
859 EXPECT_EQ(-1.0, APFloat(APFloat::IEEEdouble, "-0x1p-0").convertToDouble());
860
861
862 EXPECT_EQ( 2.0, APFloat(APFloat::IEEEdouble, "0x1p1").convertToDouble());
863 EXPECT_EQ(+2.0, APFloat(APFloat::IEEEdouble, "+0x1p1").convertToDouble());
864 EXPECT_EQ(-2.0, APFloat(APFloat::IEEEdouble, "-0x1p1").convertToDouble());
865
866 EXPECT_EQ( 2.0, APFloat(APFloat::IEEEdouble, "0x1p+1").convertToDouble());
867 EXPECT_EQ(+2.0, APFloat(APFloat::IEEEdouble, "+0x1p+1").convertToDouble());
868 EXPECT_EQ(-2.0, APFloat(APFloat::IEEEdouble, "-0x1p+1").convertToDouble());
869
870 EXPECT_EQ( 0.5, APFloat(APFloat::IEEEdouble, "0x1p-1").convertToDouble());
871 EXPECT_EQ(+0.5, APFloat(APFloat::IEEEdouble, "+0x1p-1").convertToDouble());
872 EXPECT_EQ(-0.5, APFloat(APFloat::IEEEdouble, "-0x1p-1").convertToDouble());
873
874
875 EXPECT_EQ( 3.0, APFloat(APFloat::IEEEdouble, "0x1.8p1").convertToDouble());
876 EXPECT_EQ(+3.0, APFloat(APFloat::IEEEdouble, "+0x1.8p1").convertToDouble());
877 EXPECT_EQ(-3.0, APFloat(APFloat::IEEEdouble, "-0x1.8p1").convertToDouble());
878
879 EXPECT_EQ( 3.0, APFloat(APFloat::IEEEdouble, "0x1.8p+1").convertToDouble());
880 EXPECT_EQ(+3.0, APFloat(APFloat::IEEEdouble, "+0x1.8p+1").convertToDouble());
881 EXPECT_EQ(-3.0, APFloat(APFloat::IEEEdouble, "-0x1.8p+1").convertToDouble());
882
883 EXPECT_EQ( 0.75, APFloat(APFloat::IEEEdouble, "0x1.8p-1").convertToDouble());
884 EXPECT_EQ(+0.75, APFloat(APFloat::IEEEdouble, "+0x1.8p-1").convertToDouble());
885 EXPECT_EQ(-0.75, APFloat(APFloat::IEEEdouble, "-0x1.8p-1").convertToDouble());
886
887
888 EXPECT_EQ( 8192.0, APFloat(APFloat::IEEEdouble, "0x1000.000p1").convertToDouble());
889 EXPECT_EQ(+8192.0, APFloat(APFloat::IEEEdouble, "+0x1000.000p1").convertToDouble());
890 EXPECT_EQ(-8192.0, APFloat(APFloat::IEEEdouble, "-0x1000.000p1").convertToDouble());
891
892 EXPECT_EQ( 8192.0, APFloat(APFloat::IEEEdouble, "0x1000.000p+1").convertToDouble());
893 EXPECT_EQ(+8192.0, APFloat(APFloat::IEEEdouble, "+0x1000.000p+1").convertToDouble());
894 EXPECT_EQ(-8192.0, APFloat(APFloat::IEEEdouble, "-0x1000.000p+1").convertToDouble());
895
896 EXPECT_EQ( 2048.0, APFloat(APFloat::IEEEdouble, "0x1000.000p-1").convertToDouble());
897 EXPECT_EQ(+2048.0, APFloat(APFloat::IEEEdouble, "+0x1000.000p-1").convertToDouble());
898 EXPECT_EQ(-2048.0, APFloat(APFloat::IEEEdouble, "-0x1000.000p-1").convertToDouble());
899
900
901 EXPECT_EQ( 8192.0, APFloat(APFloat::IEEEdouble, "0x1000p1").convertToDouble());
902 EXPECT_EQ(+8192.0, APFloat(APFloat::IEEEdouble, "+0x1000p1").convertToDouble());
903 EXPECT_EQ(-8192.0, APFloat(APFloat::IEEEdouble, "-0x1000p1").convertToDouble());
904
905 EXPECT_EQ( 8192.0, APFloat(APFloat::IEEEdouble, "0x1000p+1").convertToDouble());
906 EXPECT_EQ(+8192.0, APFloat(APFloat::IEEEdouble, "+0x1000p+1").convertToDouble());
907 EXPECT_EQ(-8192.0, APFloat(APFloat::IEEEdouble, "-0x1000p+1").convertToDouble());
908
909 EXPECT_EQ( 2048.0, APFloat(APFloat::IEEEdouble, "0x1000p-1").convertToDouble());
910 EXPECT_EQ(+2048.0, APFloat(APFloat::IEEEdouble, "+0x1000p-1").convertToDouble());
911 EXPECT_EQ(-2048.0, APFloat(APFloat::IEEEdouble, "-0x1000p-1").convertToDouble());
912
913
914 EXPECT_EQ( 16384.0, APFloat(APFloat::IEEEdouble, "0x10p10").convertToDouble());
915 EXPECT_EQ(+16384.0, APFloat(APFloat::IEEEdouble, "+0x10p10").convertToDouble());
916 EXPECT_EQ(-16384.0, APFloat(APFloat::IEEEdouble, "-0x10p10").convertToDouble());
917
918 EXPECT_EQ( 16384.0, APFloat(APFloat::IEEEdouble, "0x10p+10").convertToDouble());
919 EXPECT_EQ(+16384.0, APFloat(APFloat::IEEEdouble, "+0x10p+10").convertToDouble());
920 EXPECT_EQ(-16384.0, APFloat(APFloat::IEEEdouble, "-0x10p+10").convertToDouble());
921
922 EXPECT_EQ( 0.015625, APFloat(APFloat::IEEEdouble, "0x10p-10").convertToDouble());
923 EXPECT_EQ(+0.015625, APFloat(APFloat::IEEEdouble, "+0x10p-10").convertToDouble());
924 EXPECT_EQ(-0.015625, APFloat(APFloat::IEEEdouble, "-0x10p-10").convertToDouble());
925
926 EXPECT_EQ(1.0625, APFloat(APFloat::IEEEdouble, "0x1.1p0").convertToDouble());
927 EXPECT_EQ(1.0, APFloat(APFloat::IEEEdouble, "0x1p0").convertToDouble());
Daniel Dunbarbc52e4f2009-09-03 22:57:02 +0000928
Eli Friedmand2eb07a2013-07-17 22:17:29 +0000929 EXPECT_EQ(convertToDoubleFromString("0x1p-150"),
930 convertToDoubleFromString("+0x800000000000000001.p-221"));
931 EXPECT_EQ(2251799813685248.5,
932 convertToDoubleFromString("0x80000000000004000000.010p-28"));
Erick Tryzelaar19f63b22009-08-16 23:36:19 +0000933}
934
John McCall29b5c282009-12-24 08:56:26 +0000935TEST(APFloatTest, toString) {
936 ASSERT_EQ("10", convertToString(10.0, 6, 3));
937 ASSERT_EQ("1.0E+1", convertToString(10.0, 6, 0));
938 ASSERT_EQ("10100", convertToString(1.01E+4, 5, 2));
939 ASSERT_EQ("1.01E+4", convertToString(1.01E+4, 4, 2));
940 ASSERT_EQ("1.01E+4", convertToString(1.01E+4, 5, 1));
941 ASSERT_EQ("0.0101", convertToString(1.01E-2, 5, 2));
John McCalldd5044a2009-12-24 23:18:09 +0000942 ASSERT_EQ("0.0101", convertToString(1.01E-2, 4, 2));
John McCall29b5c282009-12-24 08:56:26 +0000943 ASSERT_EQ("1.01E-2", convertToString(1.01E-2, 5, 1));
Eli Friedmane72f1322013-08-29 23:44:34 +0000944 ASSERT_EQ("0.78539816339744828", convertToString(0.78539816339744830961, 0, 3));
945 ASSERT_EQ("4.9406564584124654E-324", convertToString(4.9406564584124654e-324, 0, 3));
946 ASSERT_EQ("873.18340000000001", convertToString(873.1834, 0, 1));
947 ASSERT_EQ("8.7318340000000001E+2", convertToString(873.1834, 0, 0));
948 ASSERT_EQ("1.7976931348623157E+308", convertToString(1.7976931348623157E+308, 0, 0));
John McCall29b5c282009-12-24 08:56:26 +0000949}
950
Jeffrey Yasskin03b81a22011-07-15 07:04:56 +0000951TEST(APFloatTest, toInteger) {
952 bool isExact = false;
953 APSInt result(5, /*isUnsigned=*/true);
954
955 EXPECT_EQ(APFloat::opOK,
956 APFloat(APFloat::IEEEdouble, "10")
957 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
958 EXPECT_TRUE(isExact);
959 EXPECT_EQ(APSInt(APInt(5, 10), true), result);
960
961 EXPECT_EQ(APFloat::opInvalidOp,
962 APFloat(APFloat::IEEEdouble, "-10")
963 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
964 EXPECT_FALSE(isExact);
965 EXPECT_EQ(APSInt::getMinValue(5, true), result);
966
967 EXPECT_EQ(APFloat::opInvalidOp,
968 APFloat(APFloat::IEEEdouble, "32")
969 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
970 EXPECT_FALSE(isExact);
971 EXPECT_EQ(APSInt::getMaxValue(5, true), result);
972
973 EXPECT_EQ(APFloat::opInexact,
974 APFloat(APFloat::IEEEdouble, "7.9")
975 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
976 EXPECT_FALSE(isExact);
977 EXPECT_EQ(APSInt(APInt(5, 7), true), result);
978
979 result.setIsUnsigned(false);
980 EXPECT_EQ(APFloat::opOK,
981 APFloat(APFloat::IEEEdouble, "-10")
982 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
983 EXPECT_TRUE(isExact);
984 EXPECT_EQ(APSInt(APInt(5, -10, true), false), result);
985
986 EXPECT_EQ(APFloat::opInvalidOp,
987 APFloat(APFloat::IEEEdouble, "-17")
988 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
989 EXPECT_FALSE(isExact);
990 EXPECT_EQ(APSInt::getMinValue(5, false), result);
991
992 EXPECT_EQ(APFloat::opInvalidOp,
993 APFloat(APFloat::IEEEdouble, "16")
994 .convertToInteger(result, APFloat::rmTowardZero, &isExact));
995 EXPECT_FALSE(isExact);
996 EXPECT_EQ(APSInt::getMaxValue(5, false), result);
997}
998
John McCalldcb9a7a2010-02-28 02:51:25 +0000999static APInt nanbits(const fltSemantics &Sem,
1000 bool SNaN, bool Negative, uint64_t fill) {
1001 APInt apfill(64, fill);
1002 if (SNaN)
1003 return APFloat::getSNaN(Sem, Negative, &apfill).bitcastToAPInt();
1004 else
1005 return APFloat::getQNaN(Sem, Negative, &apfill).bitcastToAPInt();
1006}
1007
1008TEST(APFloatTest, makeNaN) {
1009 ASSERT_EQ(0x7fc00000, nanbits(APFloat::IEEEsingle, false, false, 0));
1010 ASSERT_EQ(0xffc00000, nanbits(APFloat::IEEEsingle, false, true, 0));
1011 ASSERT_EQ(0x7fc0ae72, nanbits(APFloat::IEEEsingle, false, false, 0xae72));
1012 ASSERT_EQ(0x7fffae72, nanbits(APFloat::IEEEsingle, false, false, 0xffffae72));
1013 ASSERT_EQ(0x7fa00000, nanbits(APFloat::IEEEsingle, true, false, 0));
1014 ASSERT_EQ(0xffa00000, nanbits(APFloat::IEEEsingle, true, true, 0));
1015 ASSERT_EQ(0x7f80ae72, nanbits(APFloat::IEEEsingle, true, false, 0xae72));
1016 ASSERT_EQ(0x7fbfae72, nanbits(APFloat::IEEEsingle, true, false, 0xffffae72));
1017
1018 ASSERT_EQ(0x7ff8000000000000ULL, nanbits(APFloat::IEEEdouble, false, false, 0));
1019 ASSERT_EQ(0xfff8000000000000ULL, nanbits(APFloat::IEEEdouble, false, true, 0));
1020 ASSERT_EQ(0x7ff800000000ae72ULL, nanbits(APFloat::IEEEdouble, false, false, 0xae72));
1021 ASSERT_EQ(0x7fffffffffffae72ULL, nanbits(APFloat::IEEEdouble, false, false, 0xffffffffffffae72ULL));
1022 ASSERT_EQ(0x7ff4000000000000ULL, nanbits(APFloat::IEEEdouble, true, false, 0));
1023 ASSERT_EQ(0xfff4000000000000ULL, nanbits(APFloat::IEEEdouble, true, true, 0));
1024 ASSERT_EQ(0x7ff000000000ae72ULL, nanbits(APFloat::IEEEdouble, true, false, 0xae72));
1025 ASSERT_EQ(0x7ff7ffffffffae72ULL, nanbits(APFloat::IEEEdouble, true, false, 0xffffffffffffae72ULL));
1026}
1027
Erick Tryzelaar927191f2009-08-17 00:55:33 +00001028#ifdef GTEST_HAS_DEATH_TEST
Jeffrey Yasskinb5cd0132010-03-17 01:18:45 +00001029#ifndef NDEBUG
Erick Tryzelaar927191f2009-08-17 00:55:33 +00001030TEST(APFloatTest, SemanticsDeath) {
1031 EXPECT_DEATH(APFloat(APFloat::IEEEsingle, 0.0f).convertToDouble(), "Float semantics are not IEEEdouble");
1032 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, 0.0 ).convertToFloat(), "Float semantics are not IEEEsingle");
1033}
1034
Erick Tryzelaarda666c82009-08-20 23:30:43 +00001035TEST(APFloatTest, StringDecimalDeath) {
1036 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ""), "Invalid string length");
1037 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+"), "String has no digits");
1038 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-"), "String has no digits");
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001039
Erick Tryzelaarda666c82009-08-20 23:30:43 +00001040 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("\0", 1)), "Invalid character in significand");
1041 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1\0", 2)), "Invalid character in significand");
1042 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1\02", 3)), "Invalid character in significand");
1043 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1\02e1", 5)), "Invalid character in significand");
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +00001044 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1e\0", 3)), "Invalid character in exponent");
1045 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1e1\0", 4)), "Invalid character in exponent");
1046 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("1e1\02", 5)), "Invalid character in exponent");
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001047
Erick Tryzelaarda666c82009-08-20 23:30:43 +00001048 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.0f"), "Invalid character in significand");
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001049
Erick Tryzelaarda666c82009-08-20 23:30:43 +00001050 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".."), "String contains multiple dots");
1051 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "..0"), "String contains multiple dots");
1052 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.0.0"), "String contains multiple dots");
1053}
1054
1055TEST(APFloatTest, StringDecimalSignificandDeath) {
1056 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "."), "Significand has no digits");
1057 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+."), "Significand has no digits");
1058 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-."), "Significand has no digits");
1059
1060
1061 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "e"), "Significand has no digits");
1062 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+e"), "Significand has no digits");
1063 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-e"), "Significand has no digits");
1064
1065 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "e1"), "Significand has no digits");
1066 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+e1"), "Significand has no digits");
1067 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-e1"), "Significand has no digits");
1068
1069 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".e1"), "Significand has no digits");
1070 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+.e1"), "Significand has no digits");
1071 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-.e1"), "Significand has no digits");
1072
1073
1074 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".e"), "Significand has no digits");
1075 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+.e"), "Significand has no digits");
1076 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-.e"), "Significand has no digits");
1077}
1078
1079TEST(APFloatTest, StringDecimalExponentDeath) {
1080 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1e"), "Exponent has no digits");
1081 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+1e"), "Exponent has no digits");
1082 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-1e"), "Exponent has no digits");
1083
1084 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.e"), "Exponent has no digits");
1085 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+1.e"), "Exponent has no digits");
1086 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-1.e"), "Exponent has no digits");
1087
1088 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".1e"), "Exponent has no digits");
1089 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+.1e"), "Exponent has no digits");
1090 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-.1e"), "Exponent has no digits");
1091
1092 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.1e"), "Exponent has no digits");
1093 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+1.1e"), "Exponent has no digits");
1094 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-1.1e"), "Exponent has no digits");
1095
1096
1097 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1e+"), "Exponent has no digits");
1098 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1e-"), "Exponent has no digits");
1099
1100 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".1e"), "Exponent has no digits");
1101 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".1e+"), "Exponent has no digits");
1102 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, ".1e-"), "Exponent has no digits");
1103
1104 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.0e"), "Exponent has no digits");
1105 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.0e+"), "Exponent has no digits");
1106 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "1.0e-"), "Exponent has no digits");
1107}
1108
1109TEST(APFloatTest, StringHexadecimalDeath) {
1110 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x"), "Invalid string");
1111 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x"), "Invalid string");
1112 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x"), "Invalid string");
1113
1114 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x0"), "Hex strings require an exponent");
1115 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x0"), "Hex strings require an exponent");
1116 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x0"), "Hex strings require an exponent");
1117
1118 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x0."), "Hex strings require an exponent");
1119 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x0."), "Hex strings require an exponent");
1120 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x0."), "Hex strings require an exponent");
1121
1122 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.0"), "Hex strings require an exponent");
1123 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.0"), "Hex strings require an exponent");
1124 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.0"), "Hex strings require an exponent");
1125
1126 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x0.0"), "Hex strings require an exponent");
1127 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x0.0"), "Hex strings require an exponent");
1128 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x0.0"), "Hex strings require an exponent");
1129
1130 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x\0", 3)), "Invalid character in significand");
1131 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1\0", 4)), "Invalid character in significand");
1132 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1\02", 5)), "Invalid character in significand");
1133 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1\02p1", 7)), "Invalid character in significand");
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +00001134 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1p\0", 5)), "Invalid character in exponent");
1135 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1p1\0", 6)), "Invalid character in exponent");
1136 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, StringRef("0x1p1\02", 7)), "Invalid character in exponent");
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001137
Erick Tryzelaarbc0d7492009-08-17 00:14:11 +00001138 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1p0f"), "Invalid character in exponent");
Erick Tryzelaarda666c82009-08-20 23:30:43 +00001139
1140 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x..p1"), "String contains multiple dots");
1141 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x..0p1"), "String contains multiple dots");
1142 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.0.0p1"), "String contains multiple dots");
1143}
1144
1145TEST(APFloatTest, StringHexadecimalSignificandDeath) {
1146 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x."), "Significand has no digits");
1147 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x."), "Significand has no digits");
1148 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x."), "Significand has no digits");
1149
1150 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0xp"), "Significand has no digits");
1151 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0xp"), "Significand has no digits");
1152 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0xp"), "Significand has no digits");
1153
1154 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0xp+"), "Significand has no digits");
1155 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0xp+"), "Significand has no digits");
1156 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0xp+"), "Significand has no digits");
1157
1158 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0xp-"), "Significand has no digits");
1159 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0xp-"), "Significand has no digits");
1160 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0xp-"), "Significand has no digits");
1161
1162
1163 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.p"), "Significand has no digits");
1164 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.p"), "Significand has no digits");
1165 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.p"), "Significand has no digits");
1166
1167 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.p+"), "Significand has no digits");
1168 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.p+"), "Significand has no digits");
1169 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.p+"), "Significand has no digits");
1170
1171 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.p-"), "Significand has no digits");
1172 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.p-"), "Significand has no digits");
1173 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.p-"), "Significand has no digits");
1174}
1175
1176TEST(APFloatTest, StringHexadecimalExponentDeath) {
1177 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1p"), "Exponent has no digits");
1178 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1p"), "Exponent has no digits");
1179 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1p"), "Exponent has no digits");
1180
1181 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1p+"), "Exponent has no digits");
1182 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1p+"), "Exponent has no digits");
1183 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1p+"), "Exponent has no digits");
1184
1185 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1p-"), "Exponent has no digits");
1186 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1p-"), "Exponent has no digits");
1187 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1p-"), "Exponent has no digits");
1188
1189
1190 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.p"), "Exponent has no digits");
1191 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.p"), "Exponent has no digits");
1192 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.p"), "Exponent has no digits");
1193
1194 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.p+"), "Exponent has no digits");
1195 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.p+"), "Exponent has no digits");
1196 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.p+"), "Exponent has no digits");
1197
1198 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.p-"), "Exponent has no digits");
1199 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.p-"), "Exponent has no digits");
1200 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.p-"), "Exponent has no digits");
1201
1202
1203 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.1p"), "Exponent has no digits");
1204 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.1p"), "Exponent has no digits");
1205 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.1p"), "Exponent has no digits");
1206
1207 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.1p+"), "Exponent has no digits");
1208 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.1p+"), "Exponent has no digits");
1209 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.1p+"), "Exponent has no digits");
1210
1211 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x.1p-"), "Exponent has no digits");
1212 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x.1p-"), "Exponent has no digits");
1213 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x.1p-"), "Exponent has no digits");
1214
1215
1216 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.1p"), "Exponent has no digits");
1217 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.1p"), "Exponent has no digits");
1218 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.1p"), "Exponent has no digits");
1219
1220 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.1p+"), "Exponent has no digits");
1221 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.1p+"), "Exponent has no digits");
1222 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.1p+"), "Exponent has no digits");
1223
1224 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "0x1.1p-"), "Exponent has no digits");
1225 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "+0x1.1p-"), "Exponent has no digits");
1226 EXPECT_DEATH(APFloat(APFloat::IEEEdouble, "-0x1.1p-"), "Exponent has no digits");
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001227}
Erick Tryzelaar927191f2009-08-17 00:55:33 +00001228#endif
Jeffrey Yasskinb5cd0132010-03-17 01:18:45 +00001229#endif
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00001230
Benjamin Kramer03fd6722011-03-30 15:42:27 +00001231TEST(APFloatTest, exactInverse) {
1232 APFloat inv(0.0f);
1233
1234 // Trivial operation.
1235 EXPECT_TRUE(APFloat(2.0).getExactInverse(&inv));
1236 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(0.5)));
1237 EXPECT_TRUE(APFloat(2.0f).getExactInverse(&inv));
1238 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(0.5f)));
Benjamin Kramer08be41a2012-11-08 13:58:10 +00001239 EXPECT_TRUE(APFloat(APFloat::IEEEquad, "2.0").getExactInverse(&inv));
1240 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(APFloat::IEEEquad, "0.5")));
1241 EXPECT_TRUE(APFloat(APFloat::PPCDoubleDouble, "2.0").getExactInverse(&inv));
1242 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(APFloat::PPCDoubleDouble, "0.5")));
1243 EXPECT_TRUE(APFloat(APFloat::x87DoubleExtended, "2.0").getExactInverse(&inv));
1244 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(APFloat::x87DoubleExtended, "0.5")));
Benjamin Kramer03fd6722011-03-30 15:42:27 +00001245
1246 // FLT_MIN
1247 EXPECT_TRUE(APFloat(1.17549435e-38f).getExactInverse(&inv));
1248 EXPECT_TRUE(inv.bitwiseIsEqual(APFloat(8.5070592e+37f)));
1249
Benjamin Krameraf0ed952011-03-30 17:02:54 +00001250 // Large float, inverse is a denormal.
Craig Topper66f09ad2014-06-08 22:29:17 +00001251 EXPECT_FALSE(APFloat(1.7014118e38f).getExactInverse(nullptr));
Benjamin Kramer03fd6722011-03-30 15:42:27 +00001252 // Zero
Craig Topper66f09ad2014-06-08 22:29:17 +00001253 EXPECT_FALSE(APFloat(0.0).getExactInverse(nullptr));
Benjamin Kramer03fd6722011-03-30 15:42:27 +00001254 // Denormalized float
Craig Topper66f09ad2014-06-08 22:29:17 +00001255 EXPECT_FALSE(APFloat(1.40129846e-45f).getExactInverse(nullptr));
Benjamin Kramer03fd6722011-03-30 15:42:27 +00001256}
1257
Owen Anderson1ff74b02012-08-15 05:39:46 +00001258TEST(APFloatTest, roundToIntegral) {
Owen Anderson352dfff2012-08-15 18:28:45 +00001259 APFloat T(-0.5), S(3.14), R(APFloat::getLargest(APFloat::IEEEdouble)), P(0.0);
Owen Anderson1ff74b02012-08-15 05:39:46 +00001260
1261 P = T;
1262 P.roundToIntegral(APFloat::rmTowardZero);
1263 EXPECT_EQ(-0.0, P.convertToDouble());
1264 P = T;
1265 P.roundToIntegral(APFloat::rmTowardNegative);
1266 EXPECT_EQ(-1.0, P.convertToDouble());
1267 P = T;
1268 P.roundToIntegral(APFloat::rmTowardPositive);
1269 EXPECT_EQ(-0.0, P.convertToDouble());
1270 P = T;
1271 P.roundToIntegral(APFloat::rmNearestTiesToEven);
1272 EXPECT_EQ(-0.0, P.convertToDouble());
1273
1274 P = S;
1275 P.roundToIntegral(APFloat::rmTowardZero);
1276 EXPECT_EQ(3.0, P.convertToDouble());
1277 P = S;
1278 P.roundToIntegral(APFloat::rmTowardNegative);
1279 EXPECT_EQ(3.0, P.convertToDouble());
1280 P = S;
1281 P.roundToIntegral(APFloat::rmTowardPositive);
1282 EXPECT_EQ(4.0, P.convertToDouble());
1283 P = S;
1284 P.roundToIntegral(APFloat::rmNearestTiesToEven);
1285 EXPECT_EQ(3.0, P.convertToDouble());
Owen Anderson352dfff2012-08-15 18:28:45 +00001286
1287 P = R;
1288 P.roundToIntegral(APFloat::rmTowardZero);
1289 EXPECT_EQ(R.convertToDouble(), P.convertToDouble());
1290 P = R;
1291 P.roundToIntegral(APFloat::rmTowardNegative);
1292 EXPECT_EQ(R.convertToDouble(), P.convertToDouble());
1293 P = R;
1294 P.roundToIntegral(APFloat::rmTowardPositive);
1295 EXPECT_EQ(R.convertToDouble(), P.convertToDouble());
1296 P = R;
1297 P.roundToIntegral(APFloat::rmNearestTiesToEven);
1298 EXPECT_EQ(R.convertToDouble(), P.convertToDouble());
Benjamin Kramerc38fab22012-09-26 14:06:58 +00001299
1300 P = APFloat::getZero(APFloat::IEEEdouble);
1301 P.roundToIntegral(APFloat::rmTowardZero);
1302 EXPECT_EQ(0.0, P.convertToDouble());
1303 P = APFloat::getZero(APFloat::IEEEdouble, true);
1304 P.roundToIntegral(APFloat::rmTowardZero);
1305 EXPECT_EQ(-0.0, P.convertToDouble());
1306 P = APFloat::getNaN(APFloat::IEEEdouble);
1307 P.roundToIntegral(APFloat::rmTowardZero);
Benjamin Kramer37dce442015-03-09 18:35:18 +00001308 EXPECT_TRUE(std::isnan(P.convertToDouble()));
Benjamin Kramerc38fab22012-09-26 14:06:58 +00001309 P = APFloat::getInf(APFloat::IEEEdouble);
1310 P.roundToIntegral(APFloat::rmTowardZero);
Benjamin Kramer37dce442015-03-09 18:35:18 +00001311 EXPECT_TRUE(std::isinf(P.convertToDouble()) && P.convertToDouble() > 0.0);
Benjamin Kramerc38fab22012-09-26 14:06:58 +00001312 P = APFloat::getInf(APFloat::IEEEdouble, true);
1313 P.roundToIntegral(APFloat::rmTowardZero);
Benjamin Kramer37dce442015-03-09 18:35:18 +00001314 EXPECT_TRUE(std::isinf(P.convertToDouble()) && P.convertToDouble() < 0.0);
Stephen Canon1bfc89b2015-11-16 21:52:48 +00001315}
Matt Arsenaultc25a7112016-03-21 16:49:16 +00001316
Stephen Canon1bfc89b2015-11-16 21:52:48 +00001317TEST(APFloatTest, isInteger) {
1318 APFloat T(-0.0);
1319 EXPECT_TRUE(T.isInteger());
1320 T = APFloat(3.14159);
1321 EXPECT_FALSE(T.isInteger());
1322 T = APFloat::getNaN(APFloat::IEEEdouble);
1323 EXPECT_FALSE(T.isInteger());
1324 T = APFloat::getInf(APFloat::IEEEdouble);
1325 EXPECT_FALSE(T.isInteger());
1326 T = APFloat::getInf(APFloat::IEEEdouble, true);
1327 EXPECT_FALSE(T.isInteger());
1328 T = APFloat::getLargest(APFloat::IEEEdouble);
1329 EXPECT_TRUE(T.isInteger());
Owen Anderson1ff74b02012-08-15 05:39:46 +00001330}
1331
Eli Friedmanc5322012011-10-12 21:51:36 +00001332TEST(APFloatTest, getLargest) {
Eli Friedman212e4472011-10-12 23:14:41 +00001333 EXPECT_EQ(3.402823466e+38f, APFloat::getLargest(APFloat::IEEEsingle).convertToFloat());
1334 EXPECT_EQ(1.7976931348623158e+308, APFloat::getLargest(APFloat::IEEEdouble).convertToDouble());
Eli Friedmanc5322012011-10-12 21:51:36 +00001335}
1336
Michael Gottesman63e6d212013-05-29 23:58:29 +00001337TEST(APFloatTest, getSmallest) {
1338 APFloat test = APFloat::getSmallest(APFloat::IEEEsingle, false);
1339 APFloat expected = APFloat(APFloat::IEEEsingle, "0x0.000002p-126");
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001340 EXPECT_FALSE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001341 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001342 EXPECT_TRUE(test.isDenormal());
Michael Gottesman63e6d212013-05-29 23:58:29 +00001343 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1344
1345 test = APFloat::getSmallest(APFloat::IEEEsingle, true);
1346 expected = APFloat(APFloat::IEEEsingle, "-0x0.000002p-126");
1347 EXPECT_TRUE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001348 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001349 EXPECT_TRUE(test.isDenormal());
Michael Gottesman63e6d212013-05-29 23:58:29 +00001350 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1351
1352 test = APFloat::getSmallest(APFloat::IEEEquad, false);
1353 expected = APFloat(APFloat::IEEEquad, "0x0.0000000000000000000000000001p-16382");
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001354 EXPECT_FALSE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001355 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001356 EXPECT_TRUE(test.isDenormal());
Michael Gottesman63e6d212013-05-29 23:58:29 +00001357 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1358
1359 test = APFloat::getSmallest(APFloat::IEEEquad, true);
1360 expected = APFloat(APFloat::IEEEquad, "-0x0.0000000000000000000000000001p-16382");
1361 EXPECT_TRUE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001362 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman5455d5b2013-05-30 00:18:44 +00001363 EXPECT_TRUE(test.isDenormal());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001364 EXPECT_TRUE(test.bitwiseIsEqual(expected));
Michael Gottesman63e6d212013-05-29 23:58:29 +00001365}
1366
Michael Gottesman0db7c272013-05-30 00:18:47 +00001367TEST(APFloatTest, getSmallestNormalized) {
1368 APFloat test = APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
1369 APFloat expected = APFloat(APFloat::IEEEsingle, "0x1p-126");
1370 EXPECT_FALSE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001371 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman0db7c272013-05-30 00:18:47 +00001372 EXPECT_FALSE(test.isDenormal());
1373 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1374
1375 test = APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
1376 expected = APFloat(APFloat::IEEEsingle, "-0x1p-126");
1377 EXPECT_TRUE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001378 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman0db7c272013-05-30 00:18:47 +00001379 EXPECT_FALSE(test.isDenormal());
1380 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1381
1382 test = APFloat::getSmallestNormalized(APFloat::IEEEquad, false);
1383 expected = APFloat(APFloat::IEEEquad, "0x1p-16382");
1384 EXPECT_FALSE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001385 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman0db7c272013-05-30 00:18:47 +00001386 EXPECT_FALSE(test.isDenormal());
1387 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1388
1389 test = APFloat::getSmallestNormalized(APFloat::IEEEquad, true);
1390 expected = APFloat(APFloat::IEEEquad, "-0x1p-16382");
1391 EXPECT_TRUE(test.isNegative());
Michael Gottesmanb5101ab2013-06-19 21:53:45 +00001392 EXPECT_TRUE(test.isFiniteNonZero());
Michael Gottesman0db7c272013-05-30 00:18:47 +00001393 EXPECT_FALSE(test.isDenormal());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001394 EXPECT_TRUE(test.bitwiseIsEqual(expected));
Michael Gottesman0db7c272013-05-30 00:18:47 +00001395}
1396
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001397TEST(APFloatTest, getZero) {
1398 struct {
1399 const fltSemantics *semantics;
1400 const bool sign;
1401 const unsigned long long bitPattern[2];
1402 const unsigned bitPatternLength;
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001403 } const GetZeroTest[] = {
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001404 { &APFloat::IEEEhalf, false, {0, 0}, 1},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001405 { &APFloat::IEEEhalf, true, {0x8000ULL, 0}, 1},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001406 { &APFloat::IEEEsingle, false, {0, 0}, 1},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001407 { &APFloat::IEEEsingle, true, {0x80000000ULL, 0}, 1},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001408 { &APFloat::IEEEdouble, false, {0, 0}, 1},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001409 { &APFloat::IEEEdouble, true, {0x8000000000000000ULL, 0}, 1},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001410 { &APFloat::IEEEquad, false, {0, 0}, 2},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001411 { &APFloat::IEEEquad, true, {0, 0x8000000000000000ULL}, 2},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001412 { &APFloat::PPCDoubleDouble, false, {0, 0}, 2},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001413 { &APFloat::PPCDoubleDouble, true, {0x8000000000000000ULL, 0}, 2},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001414 { &APFloat::x87DoubleExtended, false, {0, 0}, 2},
Benjamin Kramer0bb474f2013-06-01 22:29:41 +00001415 { &APFloat::x87DoubleExtended, true, {0, 0x8000ULL}, 2},
Michael Gottesmanfc718c92013-05-31 18:43:34 +00001416 };
1417 const unsigned NumGetZeroTests = 12;
1418 for (unsigned i = 0; i < NumGetZeroTests; ++i) {
1419 APFloat test = APFloat::getZero(*GetZeroTest[i].semantics,
1420 GetZeroTest[i].sign);
1421 const char *pattern = GetZeroTest[i].sign? "-0x0p+0" : "0x0p+0";
1422 APFloat expected = APFloat(*GetZeroTest[i].semantics,
1423 pattern);
1424 EXPECT_TRUE(test.isZero());
1425 EXPECT_TRUE(GetZeroTest[i].sign? test.isNegative() : !test.isNegative());
1426 EXPECT_TRUE(test.bitwiseIsEqual(expected));
1427 for (unsigned j = 0, je = GetZeroTest[i].bitPatternLength; j < je; ++j) {
1428 EXPECT_EQ(GetZeroTest[i].bitPattern[j],
1429 test.bitcastToAPInt().getRawData()[j]);
1430 }
1431 }
1432}
1433
Chandler Carruthdf782e42014-10-09 23:26:15 +00001434TEST(APFloatTest, copySign) {
1435 EXPECT_TRUE(APFloat(-42.0).bitwiseIsEqual(
1436 APFloat::copySign(APFloat(42.0), APFloat(-1.0))));
1437 EXPECT_TRUE(APFloat(42.0).bitwiseIsEqual(
1438 APFloat::copySign(APFloat(-42.0), APFloat(1.0))));
1439 EXPECT_TRUE(APFloat(-42.0).bitwiseIsEqual(
1440 APFloat::copySign(APFloat(-42.0), APFloat(-1.0))));
1441 EXPECT_TRUE(APFloat(42.0).bitwiseIsEqual(
1442 APFloat::copySign(APFloat(42.0), APFloat(1.0))));
1443}
1444
Eli Friedmana84ad7d2011-11-26 03:38:02 +00001445TEST(APFloatTest, convert) {
1446 bool losesInfo;
1447 APFloat test(APFloat::IEEEdouble, "1.0");
1448 test.convert(APFloat::IEEEsingle, APFloat::rmNearestTiesToEven, &losesInfo);
1449 EXPECT_EQ(1.0f, test.convertToFloat());
1450 EXPECT_FALSE(losesInfo);
1451
1452 test = APFloat(APFloat::x87DoubleExtended, "0x1p-53");
1453 test.add(APFloat(APFloat::x87DoubleExtended, "1.0"), APFloat::rmNearestTiesToEven);
1454 test.convert(APFloat::IEEEdouble, APFloat::rmNearestTiesToEven, &losesInfo);
1455 EXPECT_EQ(1.0, test.convertToDouble());
1456 EXPECT_TRUE(losesInfo);
1457
1458 test = APFloat(APFloat::IEEEquad, "0x1p-53");
1459 test.add(APFloat(APFloat::IEEEquad, "1.0"), APFloat::rmNearestTiesToEven);
1460 test.convert(APFloat::IEEEdouble, APFloat::rmNearestTiesToEven, &losesInfo);
1461 EXPECT_EQ(1.0, test.convertToDouble());
1462 EXPECT_TRUE(losesInfo);
1463
1464 test = APFloat(APFloat::x87DoubleExtended, "0xf.fffffffp+28");
1465 test.convert(APFloat::IEEEdouble, APFloat::rmNearestTiesToEven, &losesInfo);
1466 EXPECT_EQ(4294967295.0, test.convertToDouble());
1467 EXPECT_FALSE(losesInfo);
Benjamin Kramerb361adb2013-01-25 17:01:00 +00001468
1469 test = APFloat::getSNaN(APFloat::IEEEsingle);
1470 APFloat X87SNaN = APFloat::getSNaN(APFloat::x87DoubleExtended);
1471 test.convert(APFloat::x87DoubleExtended, APFloat::rmNearestTiesToEven,
1472 &losesInfo);
1473 EXPECT_TRUE(test.bitwiseIsEqual(X87SNaN));
1474 EXPECT_FALSE(losesInfo);
1475
1476 test = APFloat::getQNaN(APFloat::IEEEsingle);
1477 APFloat X87QNaN = APFloat::getQNaN(APFloat::x87DoubleExtended);
1478 test.convert(APFloat::x87DoubleExtended, APFloat::rmNearestTiesToEven,
1479 &losesInfo);
1480 EXPECT_TRUE(test.bitwiseIsEqual(X87QNaN));
1481 EXPECT_FALSE(losesInfo);
1482
1483 test = APFloat::getSNaN(APFloat::x87DoubleExtended);
1484 test.convert(APFloat::x87DoubleExtended, APFloat::rmNearestTiesToEven,
1485 &losesInfo);
1486 EXPECT_TRUE(test.bitwiseIsEqual(X87SNaN));
1487 EXPECT_FALSE(losesInfo);
1488
1489 test = APFloat::getQNaN(APFloat::x87DoubleExtended);
1490 test.convert(APFloat::x87DoubleExtended, APFloat::rmNearestTiesToEven,
1491 &losesInfo);
1492 EXPECT_TRUE(test.bitwiseIsEqual(X87QNaN));
1493 EXPECT_FALSE(losesInfo);
Eli Friedmana84ad7d2011-11-26 03:38:02 +00001494}
Ulrich Weigandd9f7e252012-10-29 18:09:01 +00001495
1496TEST(APFloatTest, PPCDoubleDouble) {
1497 APFloat test(APFloat::PPCDoubleDouble, "1.0");
1498 EXPECT_EQ(0x3ff0000000000000ull, test.bitcastToAPInt().getRawData()[0]);
1499 EXPECT_EQ(0x0000000000000000ull, test.bitcastToAPInt().getRawData()[1]);
1500
1501 test.divide(APFloat(APFloat::PPCDoubleDouble, "3.0"), APFloat::rmNearestTiesToEven);
1502 EXPECT_EQ(0x3fd5555555555555ull, test.bitcastToAPInt().getRawData()[0]);
1503 EXPECT_EQ(0x3c75555555555556ull, test.bitcastToAPInt().getRawData()[1]);
1504
1505 // LDBL_MAX
1506 test = APFloat(APFloat::PPCDoubleDouble, "1.79769313486231580793728971405301e+308");
1507 EXPECT_EQ(0x7fefffffffffffffull, test.bitcastToAPInt().getRawData()[0]);
1508 EXPECT_EQ(0x7c8ffffffffffffeull, test.bitcastToAPInt().getRawData()[1]);
1509
1510 // LDBL_MIN
1511 test = APFloat(APFloat::PPCDoubleDouble, "2.00416836000897277799610805135016e-292");
1512 EXPECT_EQ(0x0360000000000000ull, test.bitcastToAPInt().getRawData()[0]);
1513 EXPECT_EQ(0x0000000000000000ull, test.bitcastToAPInt().getRawData()[1]);
1514
1515 test = APFloat(APFloat::PPCDoubleDouble, "1.0");
1516 test.add(APFloat(APFloat::PPCDoubleDouble, "0x1p-105"), APFloat::rmNearestTiesToEven);
1517 EXPECT_EQ(0x3ff0000000000000ull, test.bitcastToAPInt().getRawData()[0]);
1518 EXPECT_EQ(0x3960000000000000ull, test.bitcastToAPInt().getRawData()[1]);
1519
1520 test = APFloat(APFloat::PPCDoubleDouble, "1.0");
1521 test.add(APFloat(APFloat::PPCDoubleDouble, "0x1p-106"), APFloat::rmNearestTiesToEven);
1522 EXPECT_EQ(0x3ff0000000000000ull, test.bitcastToAPInt().getRawData()[0]);
1523#if 0 // XFAIL
1524 // This is what we would expect with a true double-double implementation
1525 EXPECT_EQ(0x3950000000000000ull, test.bitcastToAPInt().getRawData()[1]);
1526#else
1527 // This is what we get with our 106-bit mantissa approximation
1528 EXPECT_EQ(0x0000000000000000ull, test.bitcastToAPInt().getRawData()[1]);
1529#endif
Tim Shen398f90f2016-11-06 07:38:37 +00001530
1531 // PR30869
1532 {
1533 auto Result = APFloat(APFloat::PPCDoubleDouble, "1.0") +
1534 APFloat(APFloat::PPCDoubleDouble, "1.0");
1535 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1536
1537 Result = APFloat(APFloat::PPCDoubleDouble, "1.0") -
1538 APFloat(APFloat::PPCDoubleDouble, "1.0");
1539 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1540
1541 Result = APFloat(APFloat::PPCDoubleDouble, "1.0") *
1542 APFloat(APFloat::PPCDoubleDouble, "1.0");
1543 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1544
1545 Result = APFloat(APFloat::PPCDoubleDouble, "1.0") /
1546 APFloat(APFloat::PPCDoubleDouble, "1.0");
1547 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1548
1549 int Exp;
1550 Result = frexp(APFloat(APFloat::PPCDoubleDouble, "1.0"), Exp,
1551 APFloat::rmNearestTiesToEven);
1552 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1553
1554 Result = scalbn(APFloat(APFloat::PPCDoubleDouble, "1.0"), 1,
1555 APFloat::rmNearestTiesToEven);
1556 EXPECT_EQ(&APFloat::PPCDoubleDouble, &Result.getSemantics());
1557 }
Ulrich Weigandd9f7e252012-10-29 18:09:01 +00001558}
Michael Gottesman3acedb62013-06-04 03:46:25 +00001559
1560TEST(APFloatTest, isNegative) {
1561 APFloat t(APFloat::IEEEsingle, "0x1p+0");
1562 EXPECT_FALSE(t.isNegative());
1563 t = APFloat(APFloat::IEEEsingle, "-0x1p+0");
1564 EXPECT_TRUE(t.isNegative());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001565
Michael Gottesman3acedb62013-06-04 03:46:25 +00001566 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, false).isNegative());
1567 EXPECT_TRUE(APFloat::getInf(APFloat::IEEEsingle, true).isNegative());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001568
Michael Gottesman3acedb62013-06-04 03:46:25 +00001569 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, false).isNegative());
1570 EXPECT_TRUE(APFloat::getZero(APFloat::IEEEsingle, true).isNegative());
1571
1572 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, false).isNegative());
1573 EXPECT_TRUE(APFloat::getNaN(APFloat::IEEEsingle, true).isNegative());
1574
1575 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, false).isNegative());
1576 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, true).isNegative());
1577}
1578
Michael Gottesman120c92882013-06-20 18:34:38 +00001579TEST(APFloatTest, isNormal) {
Michael Gottesman3acedb62013-06-04 03:46:25 +00001580 APFloat t(APFloat::IEEEsingle, "0x1p+0");
Michael Gottesman120c92882013-06-20 18:34:38 +00001581 EXPECT_TRUE(t.isNormal());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001582
Michael Gottesman120c92882013-06-20 18:34:38 +00001583 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, false).isNormal());
1584 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, false).isNormal());
1585 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, false).isNormal());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001586 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, false).isNormal());
Michael Gottesman120c92882013-06-20 18:34:38 +00001587 EXPECT_FALSE(APFloat(APFloat::IEEEsingle, "0x1p-149").isNormal());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001588}
1589
1590TEST(APFloatTest, isFinite) {
1591 APFloat t(APFloat::IEEEsingle, "0x1p+0");
Michael Gottesmanf9899292013-06-24 09:58:09 +00001592 EXPECT_TRUE(t.isFinite());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001593 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, false).isFinite());
1594 EXPECT_TRUE(APFloat::getZero(APFloat::IEEEsingle, false).isFinite());
1595 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, false).isFinite());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001596 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, false).isFinite());
1597 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "0x1p-149").isFinite());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001598}
1599
1600TEST(APFloatTest, isInfinity) {
1601 APFloat t(APFloat::IEEEsingle, "0x1p+0");
1602 EXPECT_FALSE(t.isInfinity());
1603 EXPECT_TRUE(APFloat::getInf(APFloat::IEEEsingle, false).isInfinity());
1604 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, false).isInfinity());
1605 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, false).isInfinity());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001606 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, false).isInfinity());
Michael Gottesmand7c05612013-06-20 18:25:16 +00001607 EXPECT_FALSE(APFloat(APFloat::IEEEsingle, "0x1p-149").isInfinity());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001608}
1609
1610TEST(APFloatTest, isNaN) {
1611 APFloat t(APFloat::IEEEsingle, "0x1p+0");
Michael Gottesmanf9899292013-06-24 09:58:09 +00001612 EXPECT_FALSE(t.isNaN());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001613 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, false).isNaN());
1614 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, false).isNaN());
1615 EXPECT_TRUE(APFloat::getNaN(APFloat::IEEEsingle, false).isNaN());
Michael Gottesmanf9899292013-06-24 09:58:09 +00001616 EXPECT_TRUE(APFloat::getSNaN(APFloat::IEEEsingle, false).isNaN());
Michael Gottesmand7c05612013-06-20 18:25:16 +00001617 EXPECT_FALSE(APFloat(APFloat::IEEEsingle, "0x1p-149").isNaN());
Michael Gottesman3acedb62013-06-04 03:46:25 +00001618}
1619
Michael Gottesmand95d4472013-06-19 21:00:17 +00001620TEST(APFloatTest, isFiniteNonZero) {
1621 // Test positive/negative normal value.
1622 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "0x1p+0").isFiniteNonZero());
1623 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "-0x1p+0").isFiniteNonZero());
1624
1625 // Test positive/negative denormal value.
1626 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "0x1p-149").isFiniteNonZero());
1627 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "-0x1p-149").isFiniteNonZero());
1628
1629 // Test +/- Infinity.
1630 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, false).isFiniteNonZero());
1631 EXPECT_FALSE(APFloat::getInf(APFloat::IEEEsingle, true).isFiniteNonZero());
1632
1633 // Test +/- Zero.
1634 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, false).isFiniteNonZero());
1635 EXPECT_FALSE(APFloat::getZero(APFloat::IEEEsingle, true).isFiniteNonZero());
1636
1637 // Test +/- qNaN. +/- dont mean anything with qNaN but paranoia can't hurt in
1638 // this instance.
1639 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, false).isFiniteNonZero());
1640 EXPECT_FALSE(APFloat::getNaN(APFloat::IEEEsingle, true).isFiniteNonZero());
1641
1642 // Test +/- sNaN. +/- dont mean anything with sNaN but paranoia can't hurt in
1643 // this instance.
Michael Gottesmanf9899292013-06-24 09:58:09 +00001644 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, false).isFiniteNonZero());
1645 EXPECT_FALSE(APFloat::getSNaN(APFloat::IEEEsingle, true).isFiniteNonZero());
Michael Gottesmand95d4472013-06-19 21:00:17 +00001646}
1647
Michael Gottesmane45b1082013-06-24 09:58:07 +00001648TEST(APFloatTest, add) {
1649 // Test Special Cases against each other and normal values.
1650
1651 // TODOS/NOTES:
1652 // 1. Since we perform only default exception handling all operations with
1653 // signaling NaNs should have a result that is a quiet NaN. Currently they
1654 // return sNaN.
Michael Gottesmane45b1082013-06-24 09:58:07 +00001655
1656 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
1657 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
1658 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
1659 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
1660 APFloat QNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
1661 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
1662 APFloat PNormalValue = APFloat(APFloat::IEEEsingle, "0x1p+0");
1663 APFloat MNormalValue = APFloat(APFloat::IEEEsingle, "-0x1p+0");
1664 APFloat PLargestValue = APFloat::getLargest(APFloat::IEEEsingle, false);
1665 APFloat MLargestValue = APFloat::getLargest(APFloat::IEEEsingle, true);
1666 APFloat PSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, false);
1667 APFloat MSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, true);
1668 APFloat PSmallestNormalized =
1669 APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
1670 APFloat MSmallestNormalized =
1671 APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
1672
1673 const int OverflowStatus = APFloat::opOverflow | APFloat::opInexact;
1674
1675 const unsigned NumTests = 169;
1676 struct {
1677 APFloat x;
1678 APFloat y;
1679 const char *result;
1680 int status;
1681 int category;
1682 } SpecialCaseTests[NumTests] = {
1683 { PInf, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1684 { PInf, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1685 { PInf, PZero, "inf", APFloat::opOK, APFloat::fcInfinity },
1686 { PInf, MZero, "inf", APFloat::opOK, APFloat::fcInfinity },
1687 { PInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1688#if 0
1689 // See Note 1.
1690 { PInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1691#endif
1692 { PInf, PNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1693 { PInf, MNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1694 { PInf, PLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1695 { PInf, MLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1696 { PInf, PSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1697 { PInf, MSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1698 { PInf, PSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
1699 { PInf, MSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
1700 { MInf, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1701 { MInf, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1702 { MInf, PZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
1703 { MInf, MZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001704 { MInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001705#if 0
1706 // See Note 1.
1707 { MInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1708#endif
1709 { MInf, PNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1710 { MInf, MNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1711 { MInf, PLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1712 { MInf, MLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1713 { MInf, PSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1714 { MInf, MSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1715 { MInf, PSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
1716 { MInf, MSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
1717 { PZero, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1718 { PZero, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1719 { PZero, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1720 { PZero, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1721 { PZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1722#if 0
1723 // See Note 1.
1724 { PZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1725#endif
1726 { PZero, PNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
1727 { PZero, MNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
1728 { PZero, PLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1729 { PZero, MLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1730 { PZero, PSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
1731 { PZero, MSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
1732 { PZero, PSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
1733 { PZero, MSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
1734 { MZero, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1735 { MZero, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1736 { MZero, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1737 { MZero, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001738 { MZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001739#if 0
1740 // See Note 1.
1741 { MZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1742#endif
1743 { MZero, PNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
1744 { MZero, MNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
1745 { MZero, PLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1746 { MZero, MLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1747 { MZero, PSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
1748 { MZero, MSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
1749 { MZero, PSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
1750 { MZero, MSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
1751 { QNaN, PInf, "nan", APFloat::opOK, APFloat::fcNaN },
1752 { QNaN, MInf, "nan", APFloat::opOK, APFloat::fcNaN },
1753 { QNaN, PZero, "nan", APFloat::opOK, APFloat::fcNaN },
1754 { QNaN, MZero, "nan", APFloat::opOK, APFloat::fcNaN },
1755 { QNaN, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1756#if 0
1757 // See Note 1.
1758 { QNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1759#endif
1760 { QNaN, PNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
1761 { QNaN, MNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
1762 { QNaN, PLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
1763 { QNaN, MLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
1764 { QNaN, PSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
1765 { QNaN, MSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
1766 { QNaN, PSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
1767 { QNaN, MSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
1768#if 0
1769 // See Note 1.
1770 { SNaN, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1771 { SNaN, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1772 { SNaN, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1773 { SNaN, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1774 { SNaN, QNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1775 { SNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1776 { SNaN, PNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1777 { SNaN, MNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1778 { SNaN, PLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1779 { SNaN, MLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1780 { SNaN, PSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1781 { SNaN, MSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1782 { SNaN, PSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1783 { SNaN, MSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1784#endif
1785 { PNormalValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1786 { PNormalValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1787 { PNormalValue, PZero, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
1788 { PNormalValue, MZero, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
1789 { PNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1790#if 0
1791 // See Note 1.
1792 { PNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1793#endif
1794 { PNormalValue, PNormalValue, "0x1p+1", APFloat::opOK, APFloat::fcNormal },
1795 { PNormalValue, MNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1796 { PNormalValue, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1797 { PNormalValue, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1798 { PNormalValue, PSmallestValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1799 { PNormalValue, MSmallestValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1800 { PNormalValue, PSmallestNormalized, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1801 { PNormalValue, MSmallestNormalized, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1802 { MNormalValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1803 { MNormalValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1804 { MNormalValue, PZero, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
1805 { MNormalValue, MZero, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001806 { MNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001807#if 0
1808 // See Note 1.
1809 { MNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1810#endif
1811 { MNormalValue, PNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1812 { MNormalValue, MNormalValue, "-0x1p+1", APFloat::opOK, APFloat::fcNormal },
1813 { MNormalValue, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1814 { MNormalValue, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1815 { MNormalValue, PSmallestValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1816 { MNormalValue, MSmallestValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1817 { MNormalValue, PSmallestNormalized, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1818 { MNormalValue, MSmallestNormalized, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1819 { PLargestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1820 { PLargestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1821 { PLargestValue, PZero, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1822 { PLargestValue, MZero, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1823 { PLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1824#if 0
1825 // See Note 1.
1826 { PLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1827#endif
1828 { PLargestValue, PNormalValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1829 { PLargestValue, MNormalValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1830 { PLargestValue, PLargestValue, "inf", OverflowStatus, APFloat::fcInfinity },
1831 { PLargestValue, MLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1832 { PLargestValue, PSmallestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1833 { PLargestValue, MSmallestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1834 { PLargestValue, PSmallestNormalized, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1835 { PLargestValue, MSmallestNormalized, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1836 { MLargestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1837 { MLargestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1838 { MLargestValue, PZero, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
1839 { MLargestValue, MZero, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001840 { MLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001841#if 0
1842 // See Note 1.
1843 { MLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1844#endif
1845 { MLargestValue, PNormalValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1846 { MLargestValue, MNormalValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1847 { MLargestValue, PLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1848 { MLargestValue, MLargestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
1849 { MLargestValue, PSmallestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1850 { MLargestValue, MSmallestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1851 { MLargestValue, PSmallestNormalized, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1852 { MLargestValue, MSmallestNormalized, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1853 { PSmallestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1854 { PSmallestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1855 { PSmallestValue, PZero, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
1856 { PSmallestValue, MZero, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
1857 { PSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1858#if 0
1859 // See Note 1.
1860 { PSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1861#endif
1862 { PSmallestValue, PNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1863 { PSmallestValue, MNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1864 { PSmallestValue, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1865 { PSmallestValue, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1866 { PSmallestValue, PSmallestValue, "0x1p-148", APFloat::opOK, APFloat::fcNormal },
1867 { PSmallestValue, MSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1868 { PSmallestValue, PSmallestNormalized, "0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
1869 { PSmallestValue, MSmallestNormalized, "-0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
1870 { MSmallestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1871 { MSmallestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1872 { MSmallestValue, PZero, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
1873 { MSmallestValue, MZero, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001874 { MSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001875#if 0
1876 // See Note 1.
1877 { MSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1878#endif
1879 { MSmallestValue, PNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1880 { MSmallestValue, MNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1881 { MSmallestValue, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1882 { MSmallestValue, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1883 { MSmallestValue, PSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1884 { MSmallestValue, MSmallestValue, "-0x1p-148", APFloat::opOK, APFloat::fcNormal },
1885 { MSmallestValue, PSmallestNormalized, "0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
1886 { MSmallestValue, MSmallestNormalized, "-0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
1887 { PSmallestNormalized, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1888 { PSmallestNormalized, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1889 { PSmallestNormalized, PZero, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
1890 { PSmallestNormalized, MZero, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
1891 { PSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
1892#if 0
1893// See Note 1.
1894 { PSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1895#endif
1896 { PSmallestNormalized, PNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1897 { PSmallestNormalized, MNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1898 { PSmallestNormalized, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1899 { PSmallestNormalized, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1900 { PSmallestNormalized, PSmallestValue, "0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
1901 { PSmallestNormalized, MSmallestValue, "0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
1902 { PSmallestNormalized, PSmallestNormalized, "0x1p-125", APFloat::opOK, APFloat::fcNormal },
1903 { PSmallestNormalized, MSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1904 { MSmallestNormalized, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1905 { MSmallestNormalized, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1906 { MSmallestNormalized, PZero, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
1907 { MSmallestNormalized, MZero, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00001908 { MSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmane45b1082013-06-24 09:58:07 +00001909#if 0
1910 // See Note 1.
1911 { MSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1912#endif
1913 { MSmallestNormalized, PNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1914 { MSmallestNormalized, MNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
1915 { MSmallestNormalized, PLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1916 { MSmallestNormalized, MLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
1917 { MSmallestNormalized, PSmallestValue, "-0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
1918 { MSmallestNormalized, MSmallestValue, "-0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
1919 { MSmallestNormalized, PSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
1920 { MSmallestNormalized, MSmallestNormalized, "-0x1p-125", APFloat::opOK, APFloat::fcNormal }
1921 };
1922
1923 for (size_t i = 0; i < NumTests; ++i) {
1924 APFloat x(SpecialCaseTests[i].x);
1925 APFloat y(SpecialCaseTests[i].y);
1926 APFloat::opStatus status = x.add(y, APFloat::rmNearestTiesToEven);
1927
1928 APFloat result(APFloat::IEEEsingle, SpecialCaseTests[i].result);
1929
Michael Gottesmane45b1082013-06-24 09:58:07 +00001930 EXPECT_TRUE(result.bitwiseIsEqual(x));
1931 EXPECT_TRUE((int)status == SpecialCaseTests[i].status);
1932 EXPECT_TRUE((int)x.getCategory() == SpecialCaseTests[i].category);
1933 }
1934}
1935
Michael Gottesman9368a532013-06-26 23:55:23 +00001936TEST(APFloatTest, subtract) {
1937 // Test Special Cases against each other and normal values.
1938
1939 // TODOS/NOTES:
1940 // 1. Since we perform only default exception handling all operations with
1941 // signaling NaNs should have a result that is a quiet NaN. Currently they
1942 // return sNaN.
Michael Gottesman9368a532013-06-26 23:55:23 +00001943
1944 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
1945 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
1946 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
1947 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
1948 APFloat QNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
1949 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
1950 APFloat PNormalValue = APFloat(APFloat::IEEEsingle, "0x1p+0");
1951 APFloat MNormalValue = APFloat(APFloat::IEEEsingle, "-0x1p+0");
1952 APFloat PLargestValue = APFloat::getLargest(APFloat::IEEEsingle, false);
1953 APFloat MLargestValue = APFloat::getLargest(APFloat::IEEEsingle, true);
1954 APFloat PSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, false);
1955 APFloat MSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, true);
1956 APFloat PSmallestNormalized =
1957 APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
1958 APFloat MSmallestNormalized =
1959 APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
1960
1961 const int OverflowStatus = APFloat::opOverflow | APFloat::opInexact;
1962
1963 const unsigned NumTests = 169;
1964 struct {
1965 APFloat x;
1966 APFloat y;
1967 const char *result;
1968 int status;
1969 int category;
1970 } SpecialCaseTests[NumTests] = {
1971 { PInf, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1972 { PInf, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
1973 { PInf, PZero, "inf", APFloat::opOK, APFloat::fcInfinity },
1974 { PInf, MZero, "inf", APFloat::opOK, APFloat::fcInfinity },
Stephen Canond3278282014-06-08 16:53:31 +00001975 { PInf, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00001976#if 0
1977// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00001978 { PInf, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00001979#endif
1980 { PInf, PNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1981 { PInf, MNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1982 { PInf, PLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1983 { PInf, MLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1984 { PInf, PSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1985 { PInf, MSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
1986 { PInf, PSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
1987 { PInf, MSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
1988 { MInf, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
1989 { MInf, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
1990 { MInf, PZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
1991 { MInf, MZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
Stephen Canond3278282014-06-08 16:53:31 +00001992 { MInf, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00001993#if 0
1994// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00001995 { MInf, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00001996#endif
1997 { MInf, PNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1998 { MInf, MNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
1999 { MInf, PLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2000 { MInf, MLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2001 { MInf, PSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2002 { MInf, MSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2003 { MInf, PSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2004 { MInf, MSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2005 { PZero, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2006 { PZero, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2007 { PZero, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2008 { PZero, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Stephen Canond3278282014-06-08 16:53:31 +00002009 { PZero, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002010#if 0
2011// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002012 { PZero, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002013#endif
2014 { PZero, PNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2015 { PZero, MNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2016 { PZero, PLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2017 { PZero, MLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2018 { PZero, PSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2019 { PZero, MSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2020 { PZero, PSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2021 { PZero, MSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2022 { MZero, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2023 { MZero, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2024 { MZero, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2025 { MZero, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Stephen Canond3278282014-06-08 16:53:31 +00002026 { MZero, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002027#if 0
2028// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002029 { MZero, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002030#endif
2031 { MZero, PNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2032 { MZero, MNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2033 { MZero, PLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2034 { MZero, MLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2035 { MZero, PSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2036 { MZero, MSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2037 { MZero, PSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2038 { MZero, MSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2039 { QNaN, PInf, "nan", APFloat::opOK, APFloat::fcNaN },
2040 { QNaN, MInf, "nan", APFloat::opOK, APFloat::fcNaN },
2041 { QNaN, PZero, "nan", APFloat::opOK, APFloat::fcNaN },
2042 { QNaN, MZero, "nan", APFloat::opOK, APFloat::fcNaN },
2043 { QNaN, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2044#if 0
2045// See Note 1.
2046 { QNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2047#endif
2048 { QNaN, PNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
2049 { QNaN, MNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
2050 { QNaN, PLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
2051 { QNaN, MLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
2052 { QNaN, PSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
2053 { QNaN, MSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
2054 { QNaN, PSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
2055 { QNaN, MSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
2056#if 0
2057// See Note 1.
2058 { SNaN, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2059 { SNaN, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2060 { SNaN, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2061 { SNaN, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2062 { SNaN, QNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2063 { SNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2064 { SNaN, PNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2065 { SNaN, MNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2066 { SNaN, PLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2067 { SNaN, MLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2068 { SNaN, PSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2069 { SNaN, MSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2070 { SNaN, PSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2071 { SNaN, MSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2072#endif
2073 { PNormalValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2074 { PNormalValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2075 { PNormalValue, PZero, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2076 { PNormalValue, MZero, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002077 { PNormalValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002078#if 0
2079// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002080 { PNormalValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002081#endif
2082 { PNormalValue, PNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2083 { PNormalValue, MNormalValue, "0x1p+1", APFloat::opOK, APFloat::fcNormal },
2084 { PNormalValue, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2085 { PNormalValue, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2086 { PNormalValue, PSmallestValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2087 { PNormalValue, MSmallestValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2088 { PNormalValue, PSmallestNormalized, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2089 { PNormalValue, MSmallestNormalized, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2090 { MNormalValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2091 { MNormalValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2092 { MNormalValue, PZero, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2093 { MNormalValue, MZero, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002094 { MNormalValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002095#if 0
2096// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002097 { MNormalValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002098#endif
2099 { MNormalValue, PNormalValue, "-0x1p+1", APFloat::opOK, APFloat::fcNormal },
2100 { MNormalValue, MNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2101 { MNormalValue, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2102 { MNormalValue, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2103 { MNormalValue, PSmallestValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2104 { MNormalValue, MSmallestValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2105 { MNormalValue, PSmallestNormalized, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2106 { MNormalValue, MSmallestNormalized, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2107 { PLargestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2108 { PLargestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2109 { PLargestValue, PZero, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2110 { PLargestValue, MZero, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002111 { PLargestValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002112#if 0
2113// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002114 { PLargestValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002115#endif
2116 { PLargestValue, PNormalValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2117 { PLargestValue, MNormalValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2118 { PLargestValue, PLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2119 { PLargestValue, MLargestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2120 { PLargestValue, PSmallestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2121 { PLargestValue, MSmallestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2122 { PLargestValue, PSmallestNormalized, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2123 { PLargestValue, MSmallestNormalized, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2124 { MLargestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2125 { MLargestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2126 { MLargestValue, PZero, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2127 { MLargestValue, MZero, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002128 { MLargestValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002129#if 0
2130// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002131 { MLargestValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002132#endif
2133 { MLargestValue, PNormalValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2134 { MLargestValue, MNormalValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2135 { MLargestValue, PLargestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2136 { MLargestValue, MLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2137 { MLargestValue, PSmallestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2138 { MLargestValue, MSmallestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2139 { MLargestValue, PSmallestNormalized, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2140 { MLargestValue, MSmallestNormalized, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2141 { PSmallestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2142 { PSmallestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2143 { PSmallestValue, PZero, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2144 { PSmallestValue, MZero, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002145 { PSmallestValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002146#if 0
2147// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002148 { PSmallestValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002149#endif
2150 { PSmallestValue, PNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2151 { PSmallestValue, MNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2152 { PSmallestValue, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2153 { PSmallestValue, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2154 { PSmallestValue, PSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2155 { PSmallestValue, MSmallestValue, "0x1p-148", APFloat::opOK, APFloat::fcNormal },
2156 { PSmallestValue, PSmallestNormalized, "-0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
2157 { PSmallestValue, MSmallestNormalized, "0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
2158 { MSmallestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2159 { MSmallestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2160 { MSmallestValue, PZero, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2161 { MSmallestValue, MZero, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002162 { MSmallestValue, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002163#if 0
2164// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002165 { MSmallestValue, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002166#endif
2167 { MSmallestValue, PNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2168 { MSmallestValue, MNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2169 { MSmallestValue, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2170 { MSmallestValue, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2171 { MSmallestValue, PSmallestValue, "-0x1p-148", APFloat::opOK, APFloat::fcNormal },
2172 { MSmallestValue, MSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2173 { MSmallestValue, PSmallestNormalized, "-0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
2174 { MSmallestValue, MSmallestNormalized, "0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
2175 { PSmallestNormalized, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2176 { PSmallestNormalized, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2177 { PSmallestNormalized, PZero, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2178 { PSmallestNormalized, MZero, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002179 { PSmallestNormalized, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002180#if 0
2181// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002182 { PSmallestNormalized, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002183#endif
2184 { PSmallestNormalized, PNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2185 { PSmallestNormalized, MNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2186 { PSmallestNormalized, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2187 { PSmallestNormalized, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2188 { PSmallestNormalized, PSmallestValue, "0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
2189 { PSmallestNormalized, MSmallestValue, "0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
2190 { PSmallestNormalized, PSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2191 { PSmallestNormalized, MSmallestNormalized, "0x1p-125", APFloat::opOK, APFloat::fcNormal },
2192 { MSmallestNormalized, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2193 { MSmallestNormalized, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2194 { MSmallestNormalized, PZero, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2195 { MSmallestNormalized, MZero, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
Stephen Canond3278282014-06-08 16:53:31 +00002196 { MSmallestNormalized, QNaN, "-nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002197#if 0
2198// See Note 1.
Stephen Canond3278282014-06-08 16:53:31 +00002199 { MSmallestNormalized, SNaN, "-nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesman9368a532013-06-26 23:55:23 +00002200#endif
2201 { MSmallestNormalized, PNormalValue, "-0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2202 { MSmallestNormalized, MNormalValue, "0x1p+0", APFloat::opInexact, APFloat::fcNormal },
2203 { MSmallestNormalized, PLargestValue, "-0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2204 { MSmallestNormalized, MLargestValue, "0x1.fffffep+127", APFloat::opInexact, APFloat::fcNormal },
2205 { MSmallestNormalized, PSmallestValue, "-0x1.000002p-126", APFloat::opOK, APFloat::fcNormal },
2206 { MSmallestNormalized, MSmallestValue, "-0x1.fffffcp-127", APFloat::opOK, APFloat::fcNormal },
2207 { MSmallestNormalized, PSmallestNormalized, "-0x1p-125", APFloat::opOK, APFloat::fcNormal },
2208 { MSmallestNormalized, MSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero }
2209 };
2210
2211 for (size_t i = 0; i < NumTests; ++i) {
2212 APFloat x(SpecialCaseTests[i].x);
2213 APFloat y(SpecialCaseTests[i].y);
2214 APFloat::opStatus status = x.subtract(y, APFloat::rmNearestTiesToEven);
2215
2216 APFloat result(APFloat::IEEEsingle, SpecialCaseTests[i].result);
2217
Michael Gottesman9368a532013-06-26 23:55:23 +00002218 EXPECT_TRUE(result.bitwiseIsEqual(x));
2219 EXPECT_TRUE((int)status == SpecialCaseTests[i].status);
2220 EXPECT_TRUE((int)x.getCategory() == SpecialCaseTests[i].category);
2221 }
2222}
2223
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002224TEST(APFloatTest, multiply) {
2225 // Test Special Cases against each other and normal values.
2226
2227 // TODOS/NOTES:
2228 // 1. Since we perform only default exception handling all operations with
2229 // signaling NaNs should have a result that is a quiet NaN. Currently they
2230 // return sNaN.
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002231
2232 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
2233 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
2234 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
2235 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
2236 APFloat QNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
2237 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
2238 APFloat PNormalValue = APFloat(APFloat::IEEEsingle, "0x1p+0");
2239 APFloat MNormalValue = APFloat(APFloat::IEEEsingle, "-0x1p+0");
2240 APFloat PLargestValue = APFloat::getLargest(APFloat::IEEEsingle, false);
2241 APFloat MLargestValue = APFloat::getLargest(APFloat::IEEEsingle, true);
2242 APFloat PSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, false);
2243 APFloat MSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, true);
2244 APFloat PSmallestNormalized =
2245 APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
2246 APFloat MSmallestNormalized =
2247 APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
2248
2249 const int OverflowStatus = APFloat::opOverflow | APFloat::opInexact;
2250 const int UnderflowStatus = APFloat::opUnderflow | APFloat::opInexact;
2251
2252 const unsigned NumTests = 169;
2253 struct {
2254 APFloat x;
2255 APFloat y;
2256 const char *result;
2257 int status;
2258 int category;
2259 } SpecialCaseTests[NumTests] = {
2260 { PInf, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2261 { PInf, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2262 { PInf, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2263 { PInf, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2264 { PInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2265#if 0
2266// See Note 1.
2267 { PInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2268#endif
2269 { PInf, PNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2270 { PInf, MNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2271 { PInf, PLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2272 { PInf, MLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2273 { PInf, PSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2274 { PInf, MSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2275 { PInf, PSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
2276 { PInf, MSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2277 { MInf, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2278 { MInf, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2279 { MInf, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2280 { MInf, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002281 { MInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002282#if 0
2283// See Note 1.
2284 { MInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2285#endif
2286 { MInf, PNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2287 { MInf, MNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2288 { MInf, PLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2289 { MInf, MLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2290 { MInf, PSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2291 { MInf, MSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2292 { MInf, PSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2293 { MInf, MSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
2294 { PZero, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2295 { PZero, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2296 { PZero, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2297 { PZero, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2298 { PZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2299#if 0
2300// See Note 1.
2301 { PZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2302#endif
2303 { PZero, PNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2304 { PZero, MNormalValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2305 { PZero, PLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2306 { PZero, MLargestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2307 { PZero, PSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2308 { PZero, MSmallestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2309 { PZero, PSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2310 { PZero, MSmallestNormalized, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2311 { MZero, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2312 { MZero, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2313 { MZero, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2314 { MZero, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002315 { MZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002316#if 0
2317// See Note 1.
2318 { MZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2319#endif
2320 { MZero, PNormalValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2321 { MZero, MNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2322 { MZero, PLargestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2323 { MZero, MLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2324 { MZero, PSmallestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2325 { MZero, MSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2326 { MZero, PSmallestNormalized, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2327 { MZero, MSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2328 { QNaN, PInf, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002329 { QNaN, MInf, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002330 { QNaN, PZero, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002331 { QNaN, MZero, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002332 { QNaN, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2333#if 0
2334// See Note 1.
2335 { QNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2336#endif
2337 { QNaN, PNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002338 { QNaN, MNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002339 { QNaN, PLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002340 { QNaN, MLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002341 { QNaN, PSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002342 { QNaN, MSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002343 { QNaN, PSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002344 { QNaN, MSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002345#if 0
2346// See Note 1.
2347 { SNaN, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2348 { SNaN, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2349 { SNaN, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2350 { SNaN, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2351 { SNaN, QNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2352 { SNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2353 { SNaN, PNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2354 { SNaN, MNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2355 { SNaN, PLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2356 { SNaN, MLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2357 { SNaN, PSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2358 { SNaN, MSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2359 { SNaN, PSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2360 { SNaN, MSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2361#endif
2362 { PNormalValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2363 { PNormalValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2364 { PNormalValue, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2365 { PNormalValue, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2366 { PNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2367#if 0
2368// See Note 1.
2369 { PNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2370#endif
2371 { PNormalValue, PNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2372 { PNormalValue, MNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2373 { PNormalValue, PLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2374 { PNormalValue, MLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2375 { PNormalValue, PSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2376 { PNormalValue, MSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2377 { PNormalValue, PSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2378 { PNormalValue, MSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2379 { MNormalValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2380 { MNormalValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2381 { MNormalValue, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2382 { MNormalValue, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002383 { MNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002384#if 0
2385// See Note 1.
2386 { MNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2387#endif
2388 { MNormalValue, PNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2389 { MNormalValue, MNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2390 { MNormalValue, PLargestValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2391 { MNormalValue, MLargestValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2392 { MNormalValue, PSmallestValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2393 { MNormalValue, MSmallestValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2394 { MNormalValue, PSmallestNormalized, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2395 { MNormalValue, MSmallestNormalized, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2396 { PLargestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2397 { PLargestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2398 { PLargestValue, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2399 { PLargestValue, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2400 { PLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2401#if 0
2402// See Note 1.
2403 { PLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2404#endif
2405 { PLargestValue, PNormalValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2406 { PLargestValue, MNormalValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2407 { PLargestValue, PLargestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2408 { PLargestValue, MLargestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2409 { PLargestValue, PSmallestValue, "0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2410 { PLargestValue, MSmallestValue, "-0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2411 { PLargestValue, PSmallestNormalized, "0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2412 { PLargestValue, MSmallestNormalized, "-0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2413 { MLargestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2414 { MLargestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2415 { MLargestValue, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2416 { MLargestValue, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002417 { MLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002418#if 0
2419// See Note 1.
2420 { MLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2421#endif
2422 { MLargestValue, PNormalValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2423 { MLargestValue, MNormalValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2424 { MLargestValue, PLargestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2425 { MLargestValue, MLargestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2426 { MLargestValue, PSmallestValue, "-0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2427 { MLargestValue, MSmallestValue, "0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2428 { MLargestValue, PSmallestNormalized, "-0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2429 { MLargestValue, MSmallestNormalized, "0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2430 { PSmallestValue, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2431 { PSmallestValue, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2432 { PSmallestValue, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2433 { PSmallestValue, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2434 { PSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2435#if 0
2436// See Note 1.
2437 { PSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2438#endif
2439 { PSmallestValue, PNormalValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2440 { PSmallestValue, MNormalValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2441 { PSmallestValue, PLargestValue, "0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2442 { PSmallestValue, MLargestValue, "-0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2443 { PSmallestValue, PSmallestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2444 { PSmallestValue, MSmallestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2445 { PSmallestValue, PSmallestNormalized, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2446 { PSmallestValue, MSmallestNormalized, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2447 { MSmallestValue, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2448 { MSmallestValue, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2449 { MSmallestValue, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2450 { MSmallestValue, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002451 { MSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002452#if 0
2453// See Note 1.
2454 { MSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2455#endif
2456 { MSmallestValue, PNormalValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2457 { MSmallestValue, MNormalValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2458 { MSmallestValue, PLargestValue, "-0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2459 { MSmallestValue, MLargestValue, "0x1.fffffep-22", APFloat::opOK, APFloat::fcNormal },
2460 { MSmallestValue, PSmallestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2461 { MSmallestValue, MSmallestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2462 { MSmallestValue, PSmallestNormalized, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2463 { MSmallestValue, MSmallestNormalized, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2464 { PSmallestNormalized, PInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2465 { PSmallestNormalized, MInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2466 { PSmallestNormalized, PZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2467 { PSmallestNormalized, MZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2468 { PSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2469#if 0
2470// See Note 1.
2471 { PSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2472#endif
2473 { PSmallestNormalized, PNormalValue, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2474 { PSmallestNormalized, MNormalValue, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2475 { PSmallestNormalized, PLargestValue, "0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2476 { PSmallestNormalized, MLargestValue, "-0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2477 { PSmallestNormalized, PSmallestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2478 { PSmallestNormalized, MSmallestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2479 { PSmallestNormalized, PSmallestNormalized, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2480 { PSmallestNormalized, MSmallestNormalized, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2481 { MSmallestNormalized, PInf, "-inf", APFloat::opOK, APFloat::fcInfinity },
2482 { MSmallestNormalized, MInf, "inf", APFloat::opOK, APFloat::fcInfinity },
2483 { MSmallestNormalized, PZero, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2484 { MSmallestNormalized, MZero, "0x0p+0", APFloat::opOK, APFloat::fcZero },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002485 { MSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002486#if 0
2487// See Note 1.
2488 { MSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2489#endif
2490 { MSmallestNormalized, PNormalValue, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2491 { MSmallestNormalized, MNormalValue, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2492 { MSmallestNormalized, PLargestValue, "-0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2493 { MSmallestNormalized, MLargestValue, "0x1.fffffep+1", APFloat::opOK, APFloat::fcNormal },
2494 { MSmallestNormalized, PSmallestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2495 { MSmallestNormalized, MSmallestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2496 { MSmallestNormalized, PSmallestNormalized, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2497 { MSmallestNormalized, MSmallestNormalized, "0x0p+0", UnderflowStatus, APFloat::fcZero }
2498 };
2499
2500 for (size_t i = 0; i < NumTests; ++i) {
2501 APFloat x(SpecialCaseTests[i].x);
2502 APFloat y(SpecialCaseTests[i].y);
2503 APFloat::opStatus status = x.multiply(y, APFloat::rmNearestTiesToEven);
2504
2505 APFloat result(APFloat::IEEEsingle, SpecialCaseTests[i].result);
2506
Michael Gottesman9debdfd2013-06-26 23:55:26 +00002507 EXPECT_TRUE(result.bitwiseIsEqual(x));
2508 EXPECT_TRUE((int)status == SpecialCaseTests[i].status);
2509 EXPECT_TRUE((int)x.getCategory() == SpecialCaseTests[i].category);
2510 }
2511}
Michael Gottesman9368a532013-06-26 23:55:23 +00002512
Michael Gottesman3eacb582013-06-27 00:42:00 +00002513TEST(APFloatTest, divide) {
2514 // Test Special Cases against each other and normal values.
2515
2516 // TODOS/NOTES:
2517 // 1. Since we perform only default exception handling all operations with
2518 // signaling NaNs should have a result that is a quiet NaN. Currently they
2519 // return sNaN.
Michael Gottesman3eacb582013-06-27 00:42:00 +00002520
2521 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
2522 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
2523 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
2524 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
2525 APFloat QNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
2526 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
2527 APFloat PNormalValue = APFloat(APFloat::IEEEsingle, "0x1p+0");
2528 APFloat MNormalValue = APFloat(APFloat::IEEEsingle, "-0x1p+0");
2529 APFloat PLargestValue = APFloat::getLargest(APFloat::IEEEsingle, false);
2530 APFloat MLargestValue = APFloat::getLargest(APFloat::IEEEsingle, true);
2531 APFloat PSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, false);
2532 APFloat MSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, true);
2533 APFloat PSmallestNormalized =
2534 APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
2535 APFloat MSmallestNormalized =
2536 APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
2537
2538 const int OverflowStatus = APFloat::opOverflow | APFloat::opInexact;
2539 const int UnderflowStatus = APFloat::opUnderflow | APFloat::opInexact;
2540
2541 const unsigned NumTests = 169;
2542 struct {
2543 APFloat x;
2544 APFloat y;
2545 const char *result;
2546 int status;
2547 int category;
2548 } SpecialCaseTests[NumTests] = {
2549 { PInf, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2550 { PInf, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2551 { PInf, PZero, "inf", APFloat::opOK, APFloat::fcInfinity },
2552 { PInf, MZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
2553 { PInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2554#if 0
2555// See Note 1.
2556 { PInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2557#endif
2558 { PInf, PNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2559 { PInf, MNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2560 { PInf, PLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2561 { PInf, MLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2562 { PInf, PSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2563 { PInf, MSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2564 { PInf, PSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
2565 { PInf, MSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2566 { MInf, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2567 { MInf, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2568 { MInf, PZero, "-inf", APFloat::opOK, APFloat::fcInfinity },
2569 { MInf, MZero, "inf", APFloat::opOK, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002570 { MInf, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002571#if 0
2572// See Note 1.
2573 { MInf, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2574#endif
2575 { MInf, PNormalValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2576 { MInf, MNormalValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2577 { MInf, PLargestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2578 { MInf, MLargestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2579 { MInf, PSmallestValue, "-inf", APFloat::opOK, APFloat::fcInfinity },
2580 { MInf, MSmallestValue, "inf", APFloat::opOK, APFloat::fcInfinity },
2581 { MInf, PSmallestNormalized, "-inf", APFloat::opOK, APFloat::fcInfinity },
2582 { MInf, MSmallestNormalized, "inf", APFloat::opOK, APFloat::fcInfinity },
2583 { PZero, PInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2584 { PZero, MInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2585 { PZero, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2586 { PZero, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2587 { PZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2588#if 0
2589// See Note 1.
2590 { PZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2591#endif
2592 { PZero, PNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2593 { PZero, MNormalValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2594 { PZero, PLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2595 { PZero, MLargestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2596 { PZero, PSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2597 { PZero, MSmallestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2598 { PZero, PSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2599 { PZero, MSmallestNormalized, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2600 { MZero, PInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2601 { MZero, MInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2602 { MZero, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2603 { MZero, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002604 { MZero, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002605#if 0
2606// See Note 1.
2607 { MZero, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2608#endif
2609 { MZero, PNormalValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2610 { MZero, MNormalValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2611 { MZero, PLargestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2612 { MZero, MLargestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2613 { MZero, PSmallestValue, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2614 { MZero, MSmallestValue, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2615 { MZero, PSmallestNormalized, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2616 { MZero, MSmallestNormalized, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2617 { QNaN, PInf, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002618 { QNaN, MInf, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002619 { QNaN, PZero, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002620 { QNaN, MZero, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002621 { QNaN, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2622#if 0
2623// See Note 1.
2624 { QNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2625#endif
2626 { QNaN, PNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002627 { QNaN, MNormalValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002628 { QNaN, PLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002629 { QNaN, MLargestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002630 { QNaN, PSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002631 { QNaN, MSmallestValue, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002632 { QNaN, PSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002633 { QNaN, MSmallestNormalized, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002634#if 0
2635// See Note 1.
2636 { SNaN, PInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2637 { SNaN, MInf, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2638 { SNaN, PZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2639 { SNaN, MZero, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2640 { SNaN, QNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2641 { SNaN, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2642 { SNaN, PNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2643 { SNaN, MNormalValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2644 { SNaN, PLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2645 { SNaN, MLargestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2646 { SNaN, PSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2647 { SNaN, MSmallestValue, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2648 { SNaN, PSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2649 { SNaN, MSmallestNormalized, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2650#endif
2651 { PNormalValue, PInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2652 { PNormalValue, MInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2653 { PNormalValue, PZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
2654 { PNormalValue, MZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2655 { PNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2656#if 0
2657// See Note 1.
2658 { PNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2659#endif
2660 { PNormalValue, PNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2661 { PNormalValue, MNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2662 { PNormalValue, PLargestValue, "0x1p-128", UnderflowStatus, APFloat::fcNormal },
2663 { PNormalValue, MLargestValue, "-0x1p-128", UnderflowStatus, APFloat::fcNormal },
2664 { PNormalValue, PSmallestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2665 { PNormalValue, MSmallestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2666 { PNormalValue, PSmallestNormalized, "0x1p+126", APFloat::opOK, APFloat::fcNormal },
2667 { PNormalValue, MSmallestNormalized, "-0x1p+126", APFloat::opOK, APFloat::fcNormal },
2668 { MNormalValue, PInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2669 { MNormalValue, MInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2670 { MNormalValue, PZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2671 { MNormalValue, MZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002672 { MNormalValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002673#if 0
2674// See Note 1.
2675 { MNormalValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2676#endif
2677 { MNormalValue, PNormalValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2678 { MNormalValue, MNormalValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2679 { MNormalValue, PLargestValue, "-0x1p-128", UnderflowStatus, APFloat::fcNormal },
2680 { MNormalValue, MLargestValue, "0x1p-128", UnderflowStatus, APFloat::fcNormal },
2681 { MNormalValue, PSmallestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2682 { MNormalValue, MSmallestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2683 { MNormalValue, PSmallestNormalized, "-0x1p+126", APFloat::opOK, APFloat::fcNormal },
2684 { MNormalValue, MSmallestNormalized, "0x1p+126", APFloat::opOK, APFloat::fcNormal },
2685 { PLargestValue, PInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2686 { PLargestValue, MInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2687 { PLargestValue, PZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
2688 { PLargestValue, MZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2689 { PLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2690#if 0
2691// See Note 1.
2692 { PLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2693#endif
2694 { PLargestValue, PNormalValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2695 { PLargestValue, MNormalValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2696 { PLargestValue, PLargestValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2697 { PLargestValue, MLargestValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2698 { PLargestValue, PSmallestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2699 { PLargestValue, MSmallestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2700 { PLargestValue, PSmallestNormalized, "inf", OverflowStatus, APFloat::fcInfinity },
2701 { PLargestValue, MSmallestNormalized, "-inf", OverflowStatus, APFloat::fcInfinity },
2702 { MLargestValue, PInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2703 { MLargestValue, MInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2704 { MLargestValue, PZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2705 { MLargestValue, MZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002706 { MLargestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002707#if 0
2708// See Note 1.
2709 { MLargestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2710#endif
2711 { MLargestValue, PNormalValue, "-0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2712 { MLargestValue, MNormalValue, "0x1.fffffep+127", APFloat::opOK, APFloat::fcNormal },
2713 { MLargestValue, PLargestValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2714 { MLargestValue, MLargestValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2715 { MLargestValue, PSmallestValue, "-inf", OverflowStatus, APFloat::fcInfinity },
2716 { MLargestValue, MSmallestValue, "inf", OverflowStatus, APFloat::fcInfinity },
2717 { MLargestValue, PSmallestNormalized, "-inf", OverflowStatus, APFloat::fcInfinity },
2718 { MLargestValue, MSmallestNormalized, "inf", OverflowStatus, APFloat::fcInfinity },
2719 { PSmallestValue, PInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2720 { PSmallestValue, MInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2721 { PSmallestValue, PZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
2722 { PSmallestValue, MZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2723 { PSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2724#if 0
2725// See Note 1.
2726 { PSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2727#endif
2728 { PSmallestValue, PNormalValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2729 { PSmallestValue, MNormalValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2730 { PSmallestValue, PLargestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2731 { PSmallestValue, MLargestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2732 { PSmallestValue, PSmallestValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2733 { PSmallestValue, MSmallestValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2734 { PSmallestValue, PSmallestNormalized, "0x1p-23", APFloat::opOK, APFloat::fcNormal },
2735 { PSmallestValue, MSmallestNormalized, "-0x1p-23", APFloat::opOK, APFloat::fcNormal },
2736 { MSmallestValue, PInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2737 { MSmallestValue, MInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2738 { MSmallestValue, PZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2739 { MSmallestValue, MZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002740 { MSmallestValue, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002741#if 0
2742// See Note 1.
2743 { MSmallestValue, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2744#endif
2745 { MSmallestValue, PNormalValue, "-0x1p-149", APFloat::opOK, APFloat::fcNormal },
2746 { MSmallestValue, MNormalValue, "0x1p-149", APFloat::opOK, APFloat::fcNormal },
2747 { MSmallestValue, PLargestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2748 { MSmallestValue, MLargestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2749 { MSmallestValue, PSmallestValue, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2750 { MSmallestValue, MSmallestValue, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2751 { MSmallestValue, PSmallestNormalized, "-0x1p-23", APFloat::opOK, APFloat::fcNormal },
2752 { MSmallestValue, MSmallestNormalized, "0x1p-23", APFloat::opOK, APFloat::fcNormal },
2753 { PSmallestNormalized, PInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2754 { PSmallestNormalized, MInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2755 { PSmallestNormalized, PZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
2756 { PSmallestNormalized, MZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2757 { PSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
2758#if 0
2759// See Note 1.
2760 { PSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2761#endif
2762 { PSmallestNormalized, PNormalValue, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2763 { PSmallestNormalized, MNormalValue, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2764 { PSmallestNormalized, PLargestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2765 { PSmallestNormalized, MLargestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2766 { PSmallestNormalized, PSmallestValue, "0x1p+23", APFloat::opOK, APFloat::fcNormal },
2767 { PSmallestNormalized, MSmallestValue, "-0x1p+23", APFloat::opOK, APFloat::fcNormal },
2768 { PSmallestNormalized, PSmallestNormalized, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2769 { PSmallestNormalized, MSmallestNormalized, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2770 { MSmallestNormalized, PInf, "-0x0p+0", APFloat::opOK, APFloat::fcZero },
2771 { MSmallestNormalized, MInf, "0x0p+0", APFloat::opOK, APFloat::fcZero },
2772 { MSmallestNormalized, PZero, "-inf", APFloat::opDivByZero, APFloat::fcInfinity },
2773 { MSmallestNormalized, MZero, "inf", APFloat::opDivByZero, APFloat::fcInfinity },
Michael Gottesmanb0e688e2013-07-27 21:49:25 +00002774 { MSmallestNormalized, QNaN, "nan", APFloat::opOK, APFloat::fcNaN },
Michael Gottesman3eacb582013-06-27 00:42:00 +00002775#if 0
2776// See Note 1.
2777 { MSmallestNormalized, SNaN, "nan", APFloat::opInvalidOp, APFloat::fcNaN },
2778#endif
2779 { MSmallestNormalized, PNormalValue, "-0x1p-126", APFloat::opOK, APFloat::fcNormal },
2780 { MSmallestNormalized, MNormalValue, "0x1p-126", APFloat::opOK, APFloat::fcNormal },
2781 { MSmallestNormalized, PLargestValue, "-0x0p+0", UnderflowStatus, APFloat::fcZero },
2782 { MSmallestNormalized, MLargestValue, "0x0p+0", UnderflowStatus, APFloat::fcZero },
2783 { MSmallestNormalized, PSmallestValue, "-0x1p+23", APFloat::opOK, APFloat::fcNormal },
2784 { MSmallestNormalized, MSmallestValue, "0x1p+23", APFloat::opOK, APFloat::fcNormal },
2785 { MSmallestNormalized, PSmallestNormalized, "-0x1p+0", APFloat::opOK, APFloat::fcNormal },
2786 { MSmallestNormalized, MSmallestNormalized, "0x1p+0", APFloat::opOK, APFloat::fcNormal },
2787 };
2788
2789 for (size_t i = 0; i < NumTests; ++i) {
2790 APFloat x(SpecialCaseTests[i].x);
2791 APFloat y(SpecialCaseTests[i].y);
2792 APFloat::opStatus status = x.divide(y, APFloat::rmNearestTiesToEven);
2793
2794 APFloat result(APFloat::IEEEsingle, SpecialCaseTests[i].result);
2795
2796 EXPECT_TRUE(result.bitwiseIsEqual(x));
2797 EXPECT_TRUE((int)status == SpecialCaseTests[i].status);
2798 EXPECT_TRUE((int)x.getCategory() == SpecialCaseTests[i].category);
2799 }
2800}
2801
Chandler Carruthdf782e42014-10-09 23:26:15 +00002802TEST(APFloatTest, operatorOverloads) {
2803 // This is mostly testing that these operator overloads compile.
2804 APFloat One = APFloat(APFloat::IEEEsingle, "0x1p+0");
2805 APFloat Two = APFloat(APFloat::IEEEsingle, "0x2p+0");
2806 EXPECT_TRUE(Two.bitwiseIsEqual(One + One));
2807 EXPECT_TRUE(One.bitwiseIsEqual(Two - One));
2808 EXPECT_TRUE(Two.bitwiseIsEqual(One * Two));
2809 EXPECT_TRUE(One.bitwiseIsEqual(Two / Two));
2810}
Chandler Carruth7468b062014-10-10 04:17:04 +00002811
Chandler Carruthafe56ae2014-10-10 08:27:22 +00002812TEST(APFloatTest, abs) {
2813 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
2814 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
2815 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
2816 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
2817 APFloat PQNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
2818 APFloat MQNaN = APFloat::getNaN(APFloat::IEEEsingle, true);
2819 APFloat PSNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
2820 APFloat MSNaN = APFloat::getSNaN(APFloat::IEEEsingle, true);
2821 APFloat PNormalValue = APFloat(APFloat::IEEEsingle, "0x1p+0");
2822 APFloat MNormalValue = APFloat(APFloat::IEEEsingle, "-0x1p+0");
2823 APFloat PLargestValue = APFloat::getLargest(APFloat::IEEEsingle, false);
2824 APFloat MLargestValue = APFloat::getLargest(APFloat::IEEEsingle, true);
2825 APFloat PSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, false);
2826 APFloat MSmallestValue = APFloat::getSmallest(APFloat::IEEEsingle, true);
2827 APFloat PSmallestNormalized =
2828 APFloat::getSmallestNormalized(APFloat::IEEEsingle, false);
2829 APFloat MSmallestNormalized =
2830 APFloat::getSmallestNormalized(APFloat::IEEEsingle, true);
2831
2832 EXPECT_TRUE(PInf.bitwiseIsEqual(abs(PInf)));
2833 EXPECT_TRUE(PInf.bitwiseIsEqual(abs(MInf)));
2834 EXPECT_TRUE(PZero.bitwiseIsEqual(abs(PZero)));
2835 EXPECT_TRUE(PZero.bitwiseIsEqual(abs(MZero)));
2836 EXPECT_TRUE(PQNaN.bitwiseIsEqual(abs(PQNaN)));
2837 EXPECT_TRUE(PQNaN.bitwiseIsEqual(abs(MQNaN)));
2838 EXPECT_TRUE(PSNaN.bitwiseIsEqual(abs(PSNaN)));
2839 EXPECT_TRUE(PSNaN.bitwiseIsEqual(abs(MSNaN)));
2840 EXPECT_TRUE(PNormalValue.bitwiseIsEqual(abs(PNormalValue)));
2841 EXPECT_TRUE(PNormalValue.bitwiseIsEqual(abs(MNormalValue)));
2842 EXPECT_TRUE(PLargestValue.bitwiseIsEqual(abs(PLargestValue)));
2843 EXPECT_TRUE(PLargestValue.bitwiseIsEqual(abs(MLargestValue)));
2844 EXPECT_TRUE(PSmallestValue.bitwiseIsEqual(abs(PSmallestValue)));
2845 EXPECT_TRUE(PSmallestValue.bitwiseIsEqual(abs(MSmallestValue)));
2846 EXPECT_TRUE(PSmallestNormalized.bitwiseIsEqual(abs(PSmallestNormalized)));
2847 EXPECT_TRUE(PSmallestNormalized.bitwiseIsEqual(abs(MSmallestNormalized)));
2848}
2849
Chandler Carruthca067142014-10-10 05:14:12 +00002850TEST(APFloatTest, ilogb) {
Matt Arsenault69fdf9b2016-03-13 05:12:32 +00002851 EXPECT_EQ(-1074, ilogb(APFloat::getSmallest(APFloat::IEEEdouble, false)));
2852 EXPECT_EQ(-1074, ilogb(APFloat::getSmallest(APFloat::IEEEdouble, true)));
2853 EXPECT_EQ(-1023, ilogb(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-1024")));
2854 EXPECT_EQ(-1023, ilogb(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-1023")));
2855 EXPECT_EQ(-1023, ilogb(APFloat(APFloat::IEEEdouble, "-0x1.ffffffffffffep-1023")));
2856 EXPECT_EQ(-51, ilogb(APFloat(APFloat::IEEEdouble, "0x1p-51")));
2857 EXPECT_EQ(-1023, ilogb(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp-1023")));
2858 EXPECT_EQ(-2, ilogb(APFloat(APFloat::IEEEdouble, "0x0.ffffp-1")));
2859 EXPECT_EQ(-1023, ilogb(APFloat(APFloat::IEEEdouble, "0x1.fffep-1023")));
2860 EXPECT_EQ(1023, ilogb(APFloat::getLargest(APFloat::IEEEdouble, false)));
2861 EXPECT_EQ(1023, ilogb(APFloat::getLargest(APFloat::IEEEdouble, true)));
2862
2863
Chandler Carruthca067142014-10-10 05:14:12 +00002864 EXPECT_EQ(0, ilogb(APFloat(APFloat::IEEEsingle, "0x1p+0")));
2865 EXPECT_EQ(0, ilogb(APFloat(APFloat::IEEEsingle, "-0x1p+0")));
2866 EXPECT_EQ(42, ilogb(APFloat(APFloat::IEEEsingle, "0x1p+42")));
2867 EXPECT_EQ(-42, ilogb(APFloat(APFloat::IEEEsingle, "0x1p-42")));
Chandler Carruth7468b062014-10-10 04:17:04 +00002868
Chandler Carruthca067142014-10-10 05:14:12 +00002869 EXPECT_EQ(APFloat::IEK_Inf,
2870 ilogb(APFloat::getInf(APFloat::IEEEsingle, false)));
2871 EXPECT_EQ(APFloat::IEK_Inf,
2872 ilogb(APFloat::getInf(APFloat::IEEEsingle, true)));
2873 EXPECT_EQ(APFloat::IEK_Zero,
2874 ilogb(APFloat::getZero(APFloat::IEEEsingle, false)));
2875 EXPECT_EQ(APFloat::IEK_Zero,
2876 ilogb(APFloat::getZero(APFloat::IEEEsingle, true)));
2877 EXPECT_EQ(APFloat::IEK_NaN,
2878 ilogb(APFloat::getNaN(APFloat::IEEEsingle, false)));
2879 EXPECT_EQ(APFloat::IEK_NaN,
2880 ilogb(APFloat::getSNaN(APFloat::IEEEsingle, false)));
Chandler Carruth7468b062014-10-10 04:17:04 +00002881
Chandler Carruthca067142014-10-10 05:14:12 +00002882 EXPECT_EQ(127, ilogb(APFloat::getLargest(APFloat::IEEEsingle, false)));
2883 EXPECT_EQ(127, ilogb(APFloat::getLargest(APFloat::IEEEsingle, true)));
Matt Arsenault69fdf9b2016-03-13 05:12:32 +00002884
2885 EXPECT_EQ(-149, ilogb(APFloat::getSmallest(APFloat::IEEEsingle, false)));
2886 EXPECT_EQ(-149, ilogb(APFloat::getSmallest(APFloat::IEEEsingle, true)));
Chandler Carruthca067142014-10-10 05:14:12 +00002887 EXPECT_EQ(-126,
2888 ilogb(APFloat::getSmallestNormalized(APFloat::IEEEsingle, false)));
2889 EXPECT_EQ(-126,
2890 ilogb(APFloat::getSmallestNormalized(APFloat::IEEEsingle, true)));
Chandler Carruth7468b062014-10-10 04:17:04 +00002891}
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00002892
2893TEST(APFloatTest, scalbn) {
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002894
2895 const APFloat::roundingMode RM = APFloat::rmNearestTiesToEven;
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00002896 EXPECT_TRUE(
2897 APFloat(APFloat::IEEEsingle, "0x1p+0")
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002898 .bitwiseIsEqual(scalbn(APFloat(APFloat::IEEEsingle, "0x1p+0"), 0, RM)));
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00002899 EXPECT_TRUE(
2900 APFloat(APFloat::IEEEsingle, "0x1p+42")
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002901 .bitwiseIsEqual(scalbn(APFloat(APFloat::IEEEsingle, "0x1p+0"), 42, RM)));
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00002902 EXPECT_TRUE(
2903 APFloat(APFloat::IEEEsingle, "0x1p-42")
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002904 .bitwiseIsEqual(scalbn(APFloat(APFloat::IEEEsingle, "0x1p+0"), -42, RM)));
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00002905
2906 APFloat PInf = APFloat::getInf(APFloat::IEEEsingle, false);
2907 APFloat MInf = APFloat::getInf(APFloat::IEEEsingle, true);
2908 APFloat PZero = APFloat::getZero(APFloat::IEEEsingle, false);
2909 APFloat MZero = APFloat::getZero(APFloat::IEEEsingle, true);
2910 APFloat QPNaN = APFloat::getNaN(APFloat::IEEEsingle, false);
2911 APFloat QMNaN = APFloat::getNaN(APFloat::IEEEsingle, true);
2912 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEsingle, false);
2913
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002914 EXPECT_TRUE(PInf.bitwiseIsEqual(scalbn(PInf, 0, RM)));
2915 EXPECT_TRUE(MInf.bitwiseIsEqual(scalbn(MInf, 0, RM)));
2916 EXPECT_TRUE(PZero.bitwiseIsEqual(scalbn(PZero, 0, RM)));
2917 EXPECT_TRUE(MZero.bitwiseIsEqual(scalbn(MZero, 0, RM)));
2918 EXPECT_TRUE(QPNaN.bitwiseIsEqual(scalbn(QPNaN, 0, RM)));
2919 EXPECT_TRUE(QMNaN.bitwiseIsEqual(scalbn(QMNaN, 0, RM)));
Matt Arsenaultea00b492016-03-23 23:51:45 +00002920 EXPECT_FALSE(scalbn(SNaN, 0, RM).isSignaling());
2921
2922 APFloat ScalbnSNaN = scalbn(SNaN, 1, RM);
2923 EXPECT_TRUE(ScalbnSNaN.isNaN() && !ScalbnSNaN.isSignaling());
2924
2925 // Make sure highest bit of payload is preserved.
2926 const APInt Payload(64, (UINT64_C(1) << 50) |
2927 (UINT64_C(1) << 49) |
2928 (UINT64_C(1234) << 32) |
2929 1);
2930
2931 APFloat SNaNWithPayload = APFloat::getSNaN(APFloat::IEEEdouble, false,
2932 &Payload);
2933 APFloat QuietPayload = scalbn(SNaNWithPayload, 1, RM);
2934 EXPECT_TRUE(QuietPayload.isNaN() && !QuietPayload.isSignaling());
2935 EXPECT_EQ(Payload, QuietPayload.bitcastToAPInt().getLoBits(51));
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00002936
2937 EXPECT_TRUE(PInf.bitwiseIsEqual(
2938 scalbn(APFloat(APFloat::IEEEsingle, "0x1p+0"), 128, RM)));
2939 EXPECT_TRUE(MInf.bitwiseIsEqual(
2940 scalbn(APFloat(APFloat::IEEEsingle, "-0x1p+0"), 128, RM)));
2941 EXPECT_TRUE(PInf.bitwiseIsEqual(
2942 scalbn(APFloat(APFloat::IEEEsingle, "0x1p+127"), 1, RM)));
2943 EXPECT_TRUE(PZero.bitwiseIsEqual(
2944 scalbn(APFloat(APFloat::IEEEsingle, "0x1p-127"), -127, RM)));
2945 EXPECT_TRUE(MZero.bitwiseIsEqual(
2946 scalbn(APFloat(APFloat::IEEEsingle, "-0x1p-127"), -127, RM)));
2947 EXPECT_TRUE(APFloat(APFloat::IEEEsingle, "-0x1p-149").bitwiseIsEqual(
2948 scalbn(APFloat(APFloat::IEEEsingle, "-0x1p-127"), -22, RM)));
2949 EXPECT_TRUE(PZero.bitwiseIsEqual(
2950 scalbn(APFloat(APFloat::IEEEsingle, "0x1p-126"), -24, RM)));
2951
2952
2953 APFloat SmallestF64 = APFloat::getSmallest(APFloat::IEEEdouble, false);
2954 APFloat NegSmallestF64 = APFloat::getSmallest(APFloat::IEEEdouble, true);
2955
2956 APFloat LargestF64 = APFloat::getLargest(APFloat::IEEEdouble, false);
2957 APFloat NegLargestF64 = APFloat::getLargest(APFloat::IEEEdouble, true);
2958
2959 APFloat SmallestNormalizedF64
2960 = APFloat::getSmallestNormalized(APFloat::IEEEdouble, false);
2961 APFloat NegSmallestNormalizedF64
2962 = APFloat::getSmallestNormalized(APFloat::IEEEdouble, true);
2963
2964 APFloat LargestDenormalF64(APFloat::IEEEdouble, "0x1.ffffffffffffep-1023");
2965 APFloat NegLargestDenormalF64(APFloat::IEEEdouble, "-0x1.ffffffffffffep-1023");
2966
2967
2968 EXPECT_TRUE(SmallestF64.bitwiseIsEqual(
2969 scalbn(APFloat(APFloat::IEEEdouble, "0x1p-1074"), 0, RM)));
2970 EXPECT_TRUE(NegSmallestF64.bitwiseIsEqual(
2971 scalbn(APFloat(APFloat::IEEEdouble, "-0x1p-1074"), 0, RM)));
2972
2973 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p+1023")
2974 .bitwiseIsEqual(scalbn(SmallestF64, 2097, RM)));
2975
2976 EXPECT_TRUE(scalbn(SmallestF64, -2097, RM).isPosZero());
2977 EXPECT_TRUE(scalbn(SmallestF64, -2098, RM).isPosZero());
2978 EXPECT_TRUE(scalbn(SmallestF64, -2099, RM).isPosZero());
2979 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p+1022")
2980 .bitwiseIsEqual(scalbn(SmallestF64, 2096, RM)));
2981 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p+1023")
2982 .bitwiseIsEqual(scalbn(SmallestF64, 2097, RM)));
2983 EXPECT_TRUE(scalbn(SmallestF64, 2098, RM).isInfinity());
2984 EXPECT_TRUE(scalbn(SmallestF64, 2099, RM).isInfinity());
2985
2986 // Test for integer overflows when adding to exponent.
2987 EXPECT_TRUE(scalbn(SmallestF64, -INT_MAX, RM).isPosZero());
2988 EXPECT_TRUE(scalbn(LargestF64, INT_MAX, RM).isInfinity());
2989
2990 EXPECT_TRUE(LargestDenormalF64
2991 .bitwiseIsEqual(scalbn(LargestDenormalF64, 0, RM)));
2992 EXPECT_TRUE(NegLargestDenormalF64
2993 .bitwiseIsEqual(scalbn(NegLargestDenormalF64, 0, RM)));
2994
2995 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-1022")
2996 .bitwiseIsEqual(scalbn(LargestDenormalF64, 1, RM)));
2997 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1.ffffffffffffep-1021")
2998 .bitwiseIsEqual(scalbn(NegLargestDenormalF64, 2, RM)));
2999
3000 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep+1")
3001 .bitwiseIsEqual(scalbn(LargestDenormalF64, 1024, RM)));
3002 EXPECT_TRUE(scalbn(LargestDenormalF64, -1023, RM).isPosZero());
3003 EXPECT_TRUE(scalbn(LargestDenormalF64, -1024, RM).isPosZero());
3004 EXPECT_TRUE(scalbn(LargestDenormalF64, -2048, RM).isPosZero());
3005 EXPECT_TRUE(scalbn(LargestDenormalF64, 2047, RM).isInfinity());
3006 EXPECT_TRUE(scalbn(LargestDenormalF64, 2098, RM).isInfinity());
3007 EXPECT_TRUE(scalbn(LargestDenormalF64, 2099, RM).isInfinity());
3008
3009 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-2")
3010 .bitwiseIsEqual(scalbn(LargestDenormalF64, 1021, RM)));
3011 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-1")
3012 .bitwiseIsEqual(scalbn(LargestDenormalF64, 1022, RM)));
3013 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep+0")
3014 .bitwiseIsEqual(scalbn(LargestDenormalF64, 1023, RM)));
3015 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep+1023")
3016 .bitwiseIsEqual(scalbn(LargestDenormalF64, 2046, RM)));
3017 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p+974")
3018 .bitwiseIsEqual(scalbn(SmallestF64, 2048, RM)));
3019
3020 APFloat RandomDenormalF64(APFloat::IEEEdouble, "0x1.c60f120d9f87cp+51");
3021 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp-972")
3022 .bitwiseIsEqual(scalbn(RandomDenormalF64, -1023, RM)));
3023 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp-1")
3024 .bitwiseIsEqual(scalbn(RandomDenormalF64, -52, RM)));
3025 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp-2")
3026 .bitwiseIsEqual(scalbn(RandomDenormalF64, -53, RM)));
3027 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp+0")
3028 .bitwiseIsEqual(scalbn(RandomDenormalF64, -51, RM)));
3029
3030 EXPECT_TRUE(scalbn(RandomDenormalF64, -2097, RM).isPosZero());
3031 EXPECT_TRUE(scalbn(RandomDenormalF64, -2090, RM).isPosZero());
3032
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00003033
3034 EXPECT_TRUE(
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00003035 APFloat(APFloat::IEEEdouble, "-0x1p-1073")
3036 .bitwiseIsEqual(scalbn(NegLargestF64, -2097, RM)));
3037
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00003038 EXPECT_TRUE(
Matt Arsenaultafa31cf2016-03-13 05:11:51 +00003039 APFloat(APFloat::IEEEdouble, "-0x1p-1024")
3040 .bitwiseIsEqual(scalbn(NegLargestF64, -2048, RM)));
3041
3042 EXPECT_TRUE(
3043 APFloat(APFloat::IEEEdouble, "0x1p-1073")
3044 .bitwiseIsEqual(scalbn(LargestF64, -2097, RM)));
3045
3046 EXPECT_TRUE(
3047 APFloat(APFloat::IEEEdouble, "0x1p-1074")
3048 .bitwiseIsEqual(scalbn(LargestF64, -2098, RM)));
3049 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1p-1074")
3050 .bitwiseIsEqual(scalbn(NegLargestF64, -2098, RM)));
3051 EXPECT_TRUE(scalbn(NegLargestF64, -2099, RM).isNegZero());
3052 EXPECT_TRUE(scalbn(LargestF64, 1, RM).isInfinity());
3053
3054
3055 EXPECT_TRUE(
3056 APFloat(APFloat::IEEEdouble, "0x1p+0")
3057 .bitwiseIsEqual(scalbn(APFloat(APFloat::IEEEdouble, "0x1p+52"), -52, RM)));
3058
3059 EXPECT_TRUE(
3060 APFloat(APFloat::IEEEdouble, "0x1p-103")
3061 .bitwiseIsEqual(scalbn(APFloat(APFloat::IEEEdouble, "0x1p-51"), -52, RM)));
Chandler Carruthd9edd1e2014-10-10 04:54:30 +00003062}
Matt Arsenaultc25a7112016-03-21 16:49:16 +00003063
3064TEST(APFloatTest, frexp) {
3065 const APFloat::roundingMode RM = APFloat::rmNearestTiesToEven;
3066
3067 APFloat PZero = APFloat::getZero(APFloat::IEEEdouble, false);
3068 APFloat MZero = APFloat::getZero(APFloat::IEEEdouble, true);
3069 APFloat One(1.0);
3070 APFloat MOne(-1.0);
3071 APFloat Two(2.0);
3072 APFloat MTwo(-2.0);
3073
3074 APFloat LargestDenormal(APFloat::IEEEdouble, "0x1.ffffffffffffep-1023");
3075 APFloat NegLargestDenormal(APFloat::IEEEdouble, "-0x1.ffffffffffffep-1023");
3076
3077 APFloat Smallest = APFloat::getSmallest(APFloat::IEEEdouble, false);
3078 APFloat NegSmallest = APFloat::getSmallest(APFloat::IEEEdouble, true);
3079
3080 APFloat Largest = APFloat::getLargest(APFloat::IEEEdouble, false);
3081 APFloat NegLargest = APFloat::getLargest(APFloat::IEEEdouble, true);
3082
3083 APFloat PInf = APFloat::getInf(APFloat::IEEEdouble, false);
3084 APFloat MInf = APFloat::getInf(APFloat::IEEEdouble, true);
3085
3086 APFloat QPNaN = APFloat::getNaN(APFloat::IEEEdouble, false);
3087 APFloat QMNaN = APFloat::getNaN(APFloat::IEEEdouble, true);
3088 APFloat SNaN = APFloat::getSNaN(APFloat::IEEEdouble, false);
3089
3090 // Make sure highest bit of payload is preserved.
3091 const APInt Payload(64, (UINT64_C(1) << 50) |
3092 (UINT64_C(1) << 49) |
3093 (UINT64_C(1234) << 32) |
3094 1);
3095
3096 APFloat SNaNWithPayload = APFloat::getSNaN(APFloat::IEEEdouble, false,
3097 &Payload);
3098
3099 APFloat SmallestNormalized
3100 = APFloat::getSmallestNormalized(APFloat::IEEEdouble, false);
3101 APFloat NegSmallestNormalized
3102 = APFloat::getSmallestNormalized(APFloat::IEEEdouble, true);
3103
3104 int Exp;
3105 APFloat Frac(APFloat::IEEEdouble);
3106
3107
3108 Frac = frexp(PZero, Exp, RM);
3109 EXPECT_EQ(0, Exp);
3110 EXPECT_TRUE(Frac.isPosZero());
3111
3112 Frac = frexp(MZero, Exp, RM);
3113 EXPECT_EQ(0, Exp);
3114 EXPECT_TRUE(Frac.isNegZero());
3115
3116
3117 Frac = frexp(One, Exp, RM);
3118 EXPECT_EQ(1, Exp);
3119 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p-1").bitwiseIsEqual(Frac));
3120
3121 Frac = frexp(MOne, Exp, RM);
3122 EXPECT_EQ(1, Exp);
3123 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1p-1").bitwiseIsEqual(Frac));
3124
3125 Frac = frexp(LargestDenormal, Exp, RM);
3126 EXPECT_EQ(-1022, Exp);
3127 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.ffffffffffffep-1").bitwiseIsEqual(Frac));
3128
3129 Frac = frexp(NegLargestDenormal, Exp, RM);
3130 EXPECT_EQ(-1022, Exp);
3131 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1.ffffffffffffep-1").bitwiseIsEqual(Frac));
3132
3133
3134 Frac = frexp(Smallest, Exp, RM);
3135 EXPECT_EQ(-1073, Exp);
3136 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p-1").bitwiseIsEqual(Frac));
3137
3138 Frac = frexp(NegSmallest, Exp, RM);
3139 EXPECT_EQ(-1073, Exp);
3140 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1p-1").bitwiseIsEqual(Frac));
3141
3142
3143 Frac = frexp(Largest, Exp, RM);
3144 EXPECT_EQ(1024, Exp);
3145 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.fffffffffffffp-1").bitwiseIsEqual(Frac));
3146
3147 Frac = frexp(NegLargest, Exp, RM);
3148 EXPECT_EQ(1024, Exp);
3149 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "-0x1.fffffffffffffp-1").bitwiseIsEqual(Frac));
3150
3151
3152 Frac = frexp(PInf, Exp, RM);
3153 EXPECT_EQ(INT_MAX, Exp);
3154 EXPECT_TRUE(Frac.isInfinity() && !Frac.isNegative());
3155
3156 Frac = frexp(MInf, Exp, RM);
3157 EXPECT_EQ(INT_MAX, Exp);
3158 EXPECT_TRUE(Frac.isInfinity() && Frac.isNegative());
3159
3160 Frac = frexp(QPNaN, Exp, RM);
3161 EXPECT_EQ(INT_MIN, Exp);
3162 EXPECT_TRUE(Frac.isNaN());
3163
3164 Frac = frexp(QMNaN, Exp, RM);
3165 EXPECT_EQ(INT_MIN, Exp);
3166 EXPECT_TRUE(Frac.isNaN());
3167
3168 Frac = frexp(SNaN, Exp, RM);
3169 EXPECT_EQ(INT_MIN, Exp);
3170 EXPECT_TRUE(Frac.isNaN() && !Frac.isSignaling());
3171
3172 Frac = frexp(SNaNWithPayload, Exp, RM);
3173 EXPECT_EQ(INT_MIN, Exp);
3174 EXPECT_TRUE(Frac.isNaN() && !Frac.isSignaling());
3175 EXPECT_EQ(Payload, Frac.bitcastToAPInt().getLoBits(51));
3176
3177 Frac = frexp(APFloat(APFloat::IEEEdouble, "0x0.ffffp-1"), Exp, RM);
3178 EXPECT_EQ(-1, Exp);
3179 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.fffep-1").bitwiseIsEqual(Frac));
3180
3181 Frac = frexp(APFloat(APFloat::IEEEdouble, "0x1p-51"), Exp, RM);
3182 EXPECT_EQ(-50, Exp);
3183 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1p-1").bitwiseIsEqual(Frac));
3184
3185 Frac = frexp(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp+51"), Exp, RM);
3186 EXPECT_EQ(52, Exp);
3187 EXPECT_TRUE(APFloat(APFloat::IEEEdouble, "0x1.c60f120d9f87cp-1").bitwiseIsEqual(Frac));
3188}
Erick Tryzelaar19f63b22009-08-16 23:36:19 +00003189}