1 //
2 // Copyright 2017 The Abseil Authors.
3 //
4 // Licensed under the Apache License, Version 2.0 (the "License");
5 // you may not use this file except in compliance with the License.
6 // You may obtain a copy of the License at
7 //
8 // https://www.apache.org/licenses/LICENSE-2.0
9 //
10 // Unless required by applicable law or agreed to in writing, software
11 // distributed under the License is distributed on an "AS IS" BASIS,
12 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 // See the License for the specific language governing permissions and
14 // limitations under the License.
15 //
16 // -----------------------------------------------------------------------------
17 // File: int128.h
18 // -----------------------------------------------------------------------------
19 //
20 // This header file defines 128-bit integer types, `uint128` and `int128`.
21 //
22 // TODO(absl-team): This module is inconsistent as many inline `uint128` methods
23 // are defined in this file, while many inline `int128` methods are defined in
24 // the `int128_*_intrinsic.inc` files.
25
26 #ifndef ABSL_NUMERIC_INT128_H_
27 #define ABSL_NUMERIC_INT128_H_
28
29 #include <cassert>
30 #include <cmath>
31 #include <cstdint>
32 #include <cstring>
33 #include <iosfwd>
34 #include <limits>
35 #include <string>
36 #include <utility>
37
38 #include "absl/base/config.h"
39 #include "absl/base/macros.h"
40 #include "absl/base/port.h"
41 #include "absl/types/compare.h"
42
43 #if defined(_MSC_VER)
44 // In very old versions of MSVC and when the /Zc:wchar_t flag is off, wchar_t is
45 // a typedef for unsigned short. Otherwise wchar_t is mapped to the __wchar_t
46 // builtin type. We need to make sure not to define operator wchar_t()
47 // alongside operator unsigned short() in these instances.
48 #define ABSL_INTERNAL_WCHAR_T __wchar_t
49 #if defined(_M_X64) && !defined(_M_ARM64EC)
50 #include <intrin.h>
51 #pragma intrinsic(_umul128)
52 #endif // defined(_M_X64)
53 #else // defined(_MSC_VER)
54 #define ABSL_INTERNAL_WCHAR_T wchar_t
55 #endif // defined(_MSC_VER)
56
57 namespace absl {
58 ABSL_NAMESPACE_BEGIN
59
60 class int128;
61
62 // uint128
63 //
64 // An unsigned 128-bit integer type. The API is meant to mimic an intrinsic type
65 // as closely as is practical, including exhibiting undefined behavior in
66 // analogous cases (e.g. division by zero). This type is intended to be a
67 // drop-in replacement once C++ supports an intrinsic `uint128_t` type; when
68 // that occurs, existing well-behaved uses of `uint128` will continue to work
69 // using that new type.
70 //
71 // Note: code written with this type will continue to compile once `uint128_t`
72 // is introduced, provided the replacement helper functions
73 // `Uint128(Low|High)64()` and `MakeUint128()` are made.
74 //
75 // A `uint128` supports the following:
76 //
77 // * Implicit construction from integral types
78 // * Explicit conversion to integral types
79 //
80 // Additionally, if your compiler supports `__int128`, `uint128` is
81 // interoperable with that type. (Abseil checks for this compatibility through
82 // the `ABSL_HAVE_INTRINSIC_INT128` macro.)
83 //
84 // However, a `uint128` differs from intrinsic integral types in the following
85 // ways:
86 //
87 // * Errors on implicit conversions that do not preserve value (such as
88 // loss of precision when converting to float values).
89 // * Requires explicit construction from and conversion to floating point
90 // types.
91 // * Conversion to integral types requires an explicit static_cast() to
92 // mimic use of the `-Wnarrowing` compiler flag.
93 // * The alignment requirement of `uint128` may differ from that of an
94 // intrinsic 128-bit integer type depending on platform and build
95 // configuration.
96 //
97 // Example:
98 //
99 // float y = absl::Uint128Max(); // Error. uint128 cannot be implicitly
100 // // converted to float.
101 //
102 // absl::uint128 v;
103 // uint64_t i = v; // Error
104 // uint64_t i = static_cast<uint64_t>(v); // OK
105 //
106 class
107 #if defined(ABSL_HAVE_INTRINSIC_INT128)
108 alignas(unsigned __int128)
109 #endif // ABSL_HAVE_INTRINSIC_INT128
110 uint128 {
111 public:
112 uint128() = default;
113
114 // Constructors from arithmetic types
115 constexpr uint128(int v); // NOLINT(runtime/explicit)
116 constexpr uint128(unsigned int v); // NOLINT(runtime/explicit)
117 constexpr uint128(long v); // NOLINT(runtime/int)
118 constexpr uint128(unsigned long v); // NOLINT(runtime/int)
119 constexpr uint128(long long v); // NOLINT(runtime/int)
120 constexpr uint128(unsigned long long v); // NOLINT(runtime/int)
121 #ifdef ABSL_HAVE_INTRINSIC_INT128
122 constexpr uint128(__int128 v); // NOLINT(runtime/explicit)
123 constexpr uint128(unsigned __int128 v); // NOLINT(runtime/explicit)
124 #endif // ABSL_HAVE_INTRINSIC_INT128
125 constexpr uint128(int128 v); // NOLINT(runtime/explicit)
126 explicit uint128(float v);
127 explicit uint128(double v);
128 explicit uint128(long double v);
129
130 // Assignment operators from arithmetic types
131 uint128& operator=(int v);
132 uint128& operator=(unsigned int v);
133 uint128& operator=(long v); // NOLINT(runtime/int)
134 uint128& operator=(unsigned long v); // NOLINT(runtime/int)
135 uint128& operator=(long long v); // NOLINT(runtime/int)
136 uint128& operator=(unsigned long long v); // NOLINT(runtime/int)
137 #ifdef ABSL_HAVE_INTRINSIC_INT128
138 uint128& operator=(__int128 v);
139 uint128& operator=(unsigned __int128 v);
140 #endif // ABSL_HAVE_INTRINSIC_INT128
141 uint128& operator=(int128 v);
142
143 // Conversion operators to other arithmetic types
144 constexpr explicit operator bool() const;
145 constexpr explicit operator char() const;
146 constexpr explicit operator signed char() const;
147 constexpr explicit operator unsigned char() const;
148 constexpr explicit operator char16_t() const;
149 constexpr explicit operator char32_t() const;
150 constexpr explicit operator ABSL_INTERNAL_WCHAR_T() const;
151 constexpr explicit operator short() const; // NOLINT(runtime/int)
152 // NOLINTNEXTLINE(runtime/int)
153 constexpr explicit operator unsigned short() const;
154 constexpr explicit operator int() const;
155 constexpr explicit operator unsigned int() const;
156 constexpr explicit operator long() const; // NOLINT(runtime/int)
157 // NOLINTNEXTLINE(runtime/int)
158 constexpr explicit operator unsigned long() const;
159 // NOLINTNEXTLINE(runtime/int)
160 constexpr explicit operator long long() const;
161 // NOLINTNEXTLINE(runtime/int)
162 constexpr explicit operator unsigned long long() const;
163 #ifdef ABSL_HAVE_INTRINSIC_INT128
164 constexpr explicit operator __int128() const;
165 constexpr explicit operator unsigned __int128() const;
166 #endif // ABSL_HAVE_INTRINSIC_INT128
167 explicit operator float() const;
168 explicit operator double() const;
169 explicit operator long double() const;
170
171 // Trivial copy constructor, assignment operator and destructor.
172
173 // Arithmetic operators.
174 uint128& operator+=(uint128 other);
175 uint128& operator-=(uint128 other);
176 uint128& operator*=(uint128 other);
177 // Long division/modulo for uint128.
178 uint128& operator/=(uint128 other);
179 uint128& operator%=(uint128 other);
180 uint128 operator++(int);
181 uint128 operator--(int);
182 uint128& operator<<=(int);
183 uint128& operator>>=(int);
184 uint128& operator&=(uint128 other);
185 uint128& operator|=(uint128 other);
186 uint128& operator^=(uint128 other);
187 uint128& operator++();
188 uint128& operator--();
189
190 // Uint128Low64()
191 //
192 // Returns the lower 64-bit value of a `uint128` value.
193 friend constexpr uint64_t Uint128Low64(uint128 v);
194
195 // Uint128High64()
196 //
197 // Returns the higher 64-bit value of a `uint128` value.
198 friend constexpr uint64_t Uint128High64(uint128 v);
199
200 // MakeUInt128()
201 //
202 // Constructs a `uint128` numeric value from two 64-bit unsigned integers.
203 // Note that this factory function is the only way to construct a `uint128`
204 // from integer values greater than 2^64.
205 //
206 // Example:
207 //
208 // absl::uint128 big = absl::MakeUint128(1, 0);
209 friend constexpr uint128 MakeUint128(uint64_t high, uint64_t low);
210
211 // Uint128Max()
212 //
213 // Returns the highest value for a 128-bit unsigned integer.
214 friend constexpr uint128 Uint128Max();
215
216 // Support for absl::Hash.
217 template <typename H>
AbslHashValue(H h,uint128 v)218 friend H AbslHashValue(H h, uint128 v) {
219 return H::combine(std::move(h), Uint128High64(v), Uint128Low64(v));
220 }
221
222 // Support for absl::StrCat() etc.
223 template <typename Sink>
AbslStringify(Sink & sink,uint128 v)224 friend void AbslStringify(Sink& sink, uint128 v) {
225 sink.Append(v.ToString());
226 }
227
228 private:
229 constexpr uint128(uint64_t high, uint64_t low);
230
231 std::string ToString() const;
232
233 // TODO(strel) Update implementation to use __int128 once all users of
234 // uint128 are fixed to not depend on alignof(uint128) == 8. Also add
235 // alignas(16) to class definition to keep alignment consistent across
236 // platforms.
237 #if defined(ABSL_IS_LITTLE_ENDIAN)
238 uint64_t lo_;
239 uint64_t hi_;
240 #elif defined(ABSL_IS_BIG_ENDIAN)
241 uint64_t hi_;
242 uint64_t lo_;
243 #else // byte order
244 #error "Unsupported byte order: must be little-endian or big-endian."
245 #endif // byte order
246 };
247
248 // allow uint128 to be logged
249 std::ostream& operator<<(std::ostream& os, uint128 v);
250
251 // TODO(strel) add operator>>(std::istream&, uint128)
252
Uint128Max()253 constexpr uint128 Uint128Max() {
254 return uint128((std::numeric_limits<uint64_t>::max)(),
255 (std::numeric_limits<uint64_t>::max)());
256 }
257
258 ABSL_NAMESPACE_END
259 } // namespace absl
260
261 // Specialized numeric_limits for uint128.
262 namespace std {
263 template <>
264 class numeric_limits<absl::uint128> {
265 public:
266 static constexpr bool is_specialized = true;
267 static constexpr bool is_signed = false;
268 static constexpr bool is_integer = true;
269 static constexpr bool is_exact = true;
270 static constexpr bool has_infinity = false;
271 static constexpr bool has_quiet_NaN = false;
272 static constexpr bool has_signaling_NaN = false;
273 ABSL_INTERNAL_DISABLE_DEPRECATED_DECLARATION_WARNING
274 static constexpr float_denorm_style has_denorm = denorm_absent;
275 ABSL_INTERNAL_RESTORE_DEPRECATED_DECLARATION_WARNING
276 static constexpr bool has_denorm_loss = false;
277 static constexpr float_round_style round_style = round_toward_zero;
278 static constexpr bool is_iec559 = false;
279 static constexpr bool is_bounded = true;
280 static constexpr bool is_modulo = true;
281 static constexpr int digits = 128;
282 static constexpr int digits10 = 38;
283 static constexpr int max_digits10 = 0;
284 static constexpr int radix = 2;
285 static constexpr int min_exponent = 0;
286 static constexpr int min_exponent10 = 0;
287 static constexpr int max_exponent = 0;
288 static constexpr int max_exponent10 = 0;
289 #ifdef ABSL_HAVE_INTRINSIC_INT128
290 static constexpr bool traps = numeric_limits<unsigned __int128>::traps;
291 #else // ABSL_HAVE_INTRINSIC_INT128
292 static constexpr bool traps = numeric_limits<uint64_t>::traps;
293 #endif // ABSL_HAVE_INTRINSIC_INT128
294 static constexpr bool tinyness_before = false;
295
uint128(min)296 static constexpr absl::uint128(min)() { return 0; }
lowest()297 static constexpr absl::uint128 lowest() { return 0; }
uint128(max)298 static constexpr absl::uint128(max)() { return absl::Uint128Max(); }
epsilon()299 static constexpr absl::uint128 epsilon() { return 0; }
round_error()300 static constexpr absl::uint128 round_error() { return 0; }
infinity()301 static constexpr absl::uint128 infinity() { return 0; }
quiet_NaN()302 static constexpr absl::uint128 quiet_NaN() { return 0; }
signaling_NaN()303 static constexpr absl::uint128 signaling_NaN() { return 0; }
denorm_min()304 static constexpr absl::uint128 denorm_min() { return 0; }
305 };
306 } // namespace std
307
308 namespace absl {
309 ABSL_NAMESPACE_BEGIN
310
311 // int128
312 //
313 // A signed 128-bit integer type. The API is meant to mimic an intrinsic
314 // integral type as closely as is practical, including exhibiting undefined
315 // behavior in analogous cases (e.g. division by zero).
316 //
317 // An `int128` supports the following:
318 //
319 // * Implicit construction from integral types
320 // * Explicit conversion to integral types
321 //
322 // However, an `int128` differs from intrinsic integral types in the following
323 // ways:
324 //
325 // * It is not implicitly convertible to other integral types.
326 // * Requires explicit construction from and conversion to floating point
327 // types.
328
329 // Additionally, if your compiler supports `__int128`, `int128` is
330 // interoperable with that type. (Abseil checks for this compatibility through
331 // the `ABSL_HAVE_INTRINSIC_INT128` macro.)
332 //
333 // The design goal for `int128` is that it will be compatible with a future
334 // `int128_t`, if that type becomes a part of the standard.
335 //
336 // Example:
337 //
338 // float y = absl::int128(17); // Error. int128 cannot be implicitly
339 // // converted to float.
340 //
341 // absl::int128 v;
342 // int64_t i = v; // Error
343 // int64_t i = static_cast<int64_t>(v); // OK
344 //
345 class int128 {
346 public:
347 int128() = default;
348
349 // Constructors from arithmetic types
350 constexpr int128(int v); // NOLINT(runtime/explicit)
351 constexpr int128(unsigned int v); // NOLINT(runtime/explicit)
352 constexpr int128(long v); // NOLINT(runtime/int)
353 constexpr int128(unsigned long v); // NOLINT(runtime/int)
354 constexpr int128(long long v); // NOLINT(runtime/int)
355 constexpr int128(unsigned long long v); // NOLINT(runtime/int)
356 #ifdef ABSL_HAVE_INTRINSIC_INT128
357 constexpr int128(__int128 v); // NOLINT(runtime/explicit)
358 constexpr explicit int128(unsigned __int128 v);
359 #endif // ABSL_HAVE_INTRINSIC_INT128
360 constexpr explicit int128(uint128 v);
361 explicit int128(float v);
362 explicit int128(double v);
363 explicit int128(long double v);
364
365 // Assignment operators from arithmetic types
366 int128& operator=(int v);
367 int128& operator=(unsigned int v);
368 int128& operator=(long v); // NOLINT(runtime/int)
369 int128& operator=(unsigned long v); // NOLINT(runtime/int)
370 int128& operator=(long long v); // NOLINT(runtime/int)
371 int128& operator=(unsigned long long v); // NOLINT(runtime/int)
372 #ifdef ABSL_HAVE_INTRINSIC_INT128
373 int128& operator=(__int128 v);
374 #endif // ABSL_HAVE_INTRINSIC_INT128
375
376 // Conversion operators to other arithmetic types
377 constexpr explicit operator bool() const;
378 constexpr explicit operator char() const;
379 constexpr explicit operator signed char() const;
380 constexpr explicit operator unsigned char() const;
381 constexpr explicit operator char16_t() const;
382 constexpr explicit operator char32_t() const;
383 constexpr explicit operator ABSL_INTERNAL_WCHAR_T() const;
384 constexpr explicit operator short() const; // NOLINT(runtime/int)
385 // NOLINTNEXTLINE(runtime/int)
386 constexpr explicit operator unsigned short() const;
387 constexpr explicit operator int() const;
388 constexpr explicit operator unsigned int() const;
389 constexpr explicit operator long() const; // NOLINT(runtime/int)
390 // NOLINTNEXTLINE(runtime/int)
391 constexpr explicit operator unsigned long() const;
392 // NOLINTNEXTLINE(runtime/int)
393 constexpr explicit operator long long() const;
394 // NOLINTNEXTLINE(runtime/int)
395 constexpr explicit operator unsigned long long() const;
396 #ifdef ABSL_HAVE_INTRINSIC_INT128
397 constexpr explicit operator __int128() const;
398 constexpr explicit operator unsigned __int128() const;
399 #endif // ABSL_HAVE_INTRINSIC_INT128
400 explicit operator float() const;
401 explicit operator double() const;
402 explicit operator long double() const;
403
404 // Trivial copy constructor, assignment operator and destructor.
405
406 // Arithmetic operators
407 int128& operator+=(int128 other);
408 int128& operator-=(int128 other);
409 int128& operator*=(int128 other);
410 int128& operator/=(int128 other);
411 int128& operator%=(int128 other);
412 int128 operator++(int); // postfix increment: i++
413 int128 operator--(int); // postfix decrement: i--
414 int128& operator++(); // prefix increment: ++i
415 int128& operator--(); // prefix decrement: --i
416 int128& operator&=(int128 other);
417 int128& operator|=(int128 other);
418 int128& operator^=(int128 other);
419 int128& operator<<=(int amount);
420 int128& operator>>=(int amount);
421
422 // Int128Low64()
423 //
424 // Returns the lower 64-bit value of a `int128` value.
425 friend constexpr uint64_t Int128Low64(int128 v);
426
427 // Int128High64()
428 //
429 // Returns the higher 64-bit value of a `int128` value.
430 friend constexpr int64_t Int128High64(int128 v);
431
432 // MakeInt128()
433 //
434 // Constructs a `int128` numeric value from two 64-bit integers. Note that
435 // signedness is conveyed in the upper `high` value.
436 //
437 // (absl::int128(1) << 64) * high + low
438 //
439 // Note that this factory function is the only way to construct a `int128`
440 // from integer values greater than 2^64 or less than -2^64.
441 //
442 // Example:
443 //
444 // absl::int128 big = absl::MakeInt128(1, 0);
445 // absl::int128 big_n = absl::MakeInt128(-1, 0);
446 friend constexpr int128 MakeInt128(int64_t high, uint64_t low);
447
448 // Int128Max()
449 //
450 // Returns the maximum value for a 128-bit signed integer.
451 friend constexpr int128 Int128Max();
452
453 // Int128Min()
454 //
455 // Returns the minimum value for a 128-bit signed integer.
456 friend constexpr int128 Int128Min();
457
458 // Support for absl::Hash.
459 template <typename H>
AbslHashValue(H h,int128 v)460 friend H AbslHashValue(H h, int128 v) {
461 return H::combine(std::move(h), Int128High64(v), Int128Low64(v));
462 }
463
464 // Support for absl::StrCat() etc.
465 template <typename Sink>
AbslStringify(Sink & sink,int128 v)466 friend void AbslStringify(Sink& sink, int128 v) {
467 sink.Append(v.ToString());
468 }
469
470 private:
471 constexpr int128(int64_t high, uint64_t low);
472
473 std::string ToString() const;
474
475 #if defined(ABSL_HAVE_INTRINSIC_INT128)
476 __int128 v_;
477 #else // ABSL_HAVE_INTRINSIC_INT128
478 #if defined(ABSL_IS_LITTLE_ENDIAN)
479 uint64_t lo_;
480 int64_t hi_;
481 #elif defined(ABSL_IS_BIG_ENDIAN)
482 int64_t hi_;
483 uint64_t lo_;
484 #else // byte order
485 #error "Unsupported byte order: must be little-endian or big-endian."
486 #endif // byte order
487 #endif // ABSL_HAVE_INTRINSIC_INT128
488 };
489
490 std::ostream& operator<<(std::ostream& os, int128 v);
491
492 // TODO(absl-team) add operator>>(std::istream&, int128)
493
Int128Max()494 constexpr int128 Int128Max() {
495 return int128((std::numeric_limits<int64_t>::max)(),
496 (std::numeric_limits<uint64_t>::max)());
497 }
498
Int128Min()499 constexpr int128 Int128Min() {
500 return int128((std::numeric_limits<int64_t>::min)(), 0);
501 }
502
503 ABSL_NAMESPACE_END
504 } // namespace absl
505
506 // Specialized numeric_limits for int128.
507 namespace std {
508 template <>
509 class numeric_limits<absl::int128> {
510 public:
511 static constexpr bool is_specialized = true;
512 static constexpr bool is_signed = true;
513 static constexpr bool is_integer = true;
514 static constexpr bool is_exact = true;
515 static constexpr bool has_infinity = false;
516 static constexpr bool has_quiet_NaN = false;
517 static constexpr bool has_signaling_NaN = false;
518 ABSL_INTERNAL_DISABLE_DEPRECATED_DECLARATION_WARNING
519 static constexpr float_denorm_style has_denorm = denorm_absent;
520 ABSL_INTERNAL_RESTORE_DEPRECATED_DECLARATION_WARNING
521 static constexpr bool has_denorm_loss = false;
522 static constexpr float_round_style round_style = round_toward_zero;
523 static constexpr bool is_iec559 = false;
524 static constexpr bool is_bounded = true;
525 static constexpr bool is_modulo = false;
526 static constexpr int digits = 127;
527 static constexpr int digits10 = 38;
528 static constexpr int max_digits10 = 0;
529 static constexpr int radix = 2;
530 static constexpr int min_exponent = 0;
531 static constexpr int min_exponent10 = 0;
532 static constexpr int max_exponent = 0;
533 static constexpr int max_exponent10 = 0;
534 #ifdef ABSL_HAVE_INTRINSIC_INT128
535 static constexpr bool traps = numeric_limits<__int128>::traps;
536 #else // ABSL_HAVE_INTRINSIC_INT128
537 static constexpr bool traps = numeric_limits<uint64_t>::traps;
538 #endif // ABSL_HAVE_INTRINSIC_INT128
539 static constexpr bool tinyness_before = false;
540
int128(min)541 static constexpr absl::int128(min)() { return absl::Int128Min(); }
lowest()542 static constexpr absl::int128 lowest() { return absl::Int128Min(); }
int128(max)543 static constexpr absl::int128(max)() { return absl::Int128Max(); }
epsilon()544 static constexpr absl::int128 epsilon() { return 0; }
round_error()545 static constexpr absl::int128 round_error() { return 0; }
infinity()546 static constexpr absl::int128 infinity() { return 0; }
quiet_NaN()547 static constexpr absl::int128 quiet_NaN() { return 0; }
signaling_NaN()548 static constexpr absl::int128 signaling_NaN() { return 0; }
denorm_min()549 static constexpr absl::int128 denorm_min() { return 0; }
550 };
551 } // namespace std
552
553 // --------------------------------------------------------------------------
554 // Implementation details follow
555 // --------------------------------------------------------------------------
556 namespace absl {
557 ABSL_NAMESPACE_BEGIN
558
MakeUint128(uint64_t high,uint64_t low)559 constexpr uint128 MakeUint128(uint64_t high, uint64_t low) {
560 return uint128(high, low);
561 }
562
563 // Assignment from integer types.
564
565 inline uint128& uint128::operator=(int v) { return *this = uint128(v); }
566
567 inline uint128& uint128::operator=(unsigned int v) {
568 return *this = uint128(v);
569 }
570
571 inline uint128& uint128::operator=(long v) { // NOLINT(runtime/int)
572 return *this = uint128(v);
573 }
574
575 // NOLINTNEXTLINE(runtime/int)
576 inline uint128& uint128::operator=(unsigned long v) {
577 return *this = uint128(v);
578 }
579
580 // NOLINTNEXTLINE(runtime/int)
581 inline uint128& uint128::operator=(long long v) { return *this = uint128(v); }
582
583 // NOLINTNEXTLINE(runtime/int)
584 inline uint128& uint128::operator=(unsigned long long v) {
585 return *this = uint128(v);
586 }
587
588 #ifdef ABSL_HAVE_INTRINSIC_INT128
589 inline uint128& uint128::operator=(__int128 v) { return *this = uint128(v); }
590
591 inline uint128& uint128::operator=(unsigned __int128 v) {
592 return *this = uint128(v);
593 }
594 #endif // ABSL_HAVE_INTRINSIC_INT128
595
596 inline uint128& uint128::operator=(int128 v) { return *this = uint128(v); }
597
598 // Arithmetic operators.
599
600 constexpr uint128 operator<<(uint128 lhs, int amount);
601 constexpr uint128 operator>>(uint128 lhs, int amount);
602 constexpr uint128 operator+(uint128 lhs, uint128 rhs);
603 constexpr uint128 operator-(uint128 lhs, uint128 rhs);
604 uint128 operator*(uint128 lhs, uint128 rhs);
605 uint128 operator/(uint128 lhs, uint128 rhs);
606 uint128 operator%(uint128 lhs, uint128 rhs);
607
608 inline uint128& uint128::operator<<=(int amount) {
609 *this = *this << amount;
610 return *this;
611 }
612
613 inline uint128& uint128::operator>>=(int amount) {
614 *this = *this >> amount;
615 return *this;
616 }
617
618 inline uint128& uint128::operator+=(uint128 other) {
619 *this = *this + other;
620 return *this;
621 }
622
623 inline uint128& uint128::operator-=(uint128 other) {
624 *this = *this - other;
625 return *this;
626 }
627
628 inline uint128& uint128::operator*=(uint128 other) {
629 *this = *this * other;
630 return *this;
631 }
632
633 inline uint128& uint128::operator/=(uint128 other) {
634 *this = *this / other;
635 return *this;
636 }
637
638 inline uint128& uint128::operator%=(uint128 other) {
639 *this = *this % other;
640 return *this;
641 }
642
Uint128Low64(uint128 v)643 constexpr uint64_t Uint128Low64(uint128 v) { return v.lo_; }
644
Uint128High64(uint128 v)645 constexpr uint64_t Uint128High64(uint128 v) { return v.hi_; }
646
647 // Constructors from integer types.
648
649 #if defined(ABSL_IS_LITTLE_ENDIAN)
650
uint128(uint64_t high,uint64_t low)651 constexpr uint128::uint128(uint64_t high, uint64_t low) : lo_{low}, hi_{high} {}
652
uint128(int v)653 constexpr uint128::uint128(int v)
654 : lo_{static_cast<uint64_t>(v)},
655 hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0} {}
uint128(long v)656 constexpr uint128::uint128(long v) // NOLINT(runtime/int)
657 : lo_{static_cast<uint64_t>(v)},
658 hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0} {}
uint128(long long v)659 constexpr uint128::uint128(long long v) // NOLINT(runtime/int)
660 : lo_{static_cast<uint64_t>(v)},
661 hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0} {}
662
uint128(unsigned int v)663 constexpr uint128::uint128(unsigned int v) : lo_{v}, hi_{0} {}
664 // NOLINTNEXTLINE(runtime/int)
uint128(unsigned long v)665 constexpr uint128::uint128(unsigned long v) : lo_{v}, hi_{0} {}
666 // NOLINTNEXTLINE(runtime/int)
uint128(unsigned long long v)667 constexpr uint128::uint128(unsigned long long v) : lo_{v}, hi_{0} {}
668
669 #ifdef ABSL_HAVE_INTRINSIC_INT128
uint128(__int128 v)670 constexpr uint128::uint128(__int128 v)
671 : lo_{static_cast<uint64_t>(v & ~uint64_t{0})},
672 hi_{static_cast<uint64_t>(static_cast<unsigned __int128>(v) >> 64)} {}
uint128(unsigned __int128 v)673 constexpr uint128::uint128(unsigned __int128 v)
674 : lo_{static_cast<uint64_t>(v & ~uint64_t{0})},
675 hi_{static_cast<uint64_t>(v >> 64)} {}
676 #endif // ABSL_HAVE_INTRINSIC_INT128
677
uint128(int128 v)678 constexpr uint128::uint128(int128 v)
679 : lo_{Int128Low64(v)}, hi_{static_cast<uint64_t>(Int128High64(v))} {}
680
681 #elif defined(ABSL_IS_BIG_ENDIAN)
682
uint128(uint64_t high,uint64_t low)683 constexpr uint128::uint128(uint64_t high, uint64_t low) : hi_{high}, lo_{low} {}
684
uint128(int v)685 constexpr uint128::uint128(int v)
686 : hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0},
687 lo_{static_cast<uint64_t>(v)} {}
uint128(long v)688 constexpr uint128::uint128(long v) // NOLINT(runtime/int)
689 : hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0},
690 lo_{static_cast<uint64_t>(v)} {}
uint128(long long v)691 constexpr uint128::uint128(long long v) // NOLINT(runtime/int)
692 : hi_{v < 0 ? (std::numeric_limits<uint64_t>::max)() : 0},
693 lo_{static_cast<uint64_t>(v)} {}
694
uint128(unsigned int v)695 constexpr uint128::uint128(unsigned int v) : hi_{0}, lo_{v} {}
696 // NOLINTNEXTLINE(runtime/int)
uint128(unsigned long v)697 constexpr uint128::uint128(unsigned long v) : hi_{0}, lo_{v} {}
698 // NOLINTNEXTLINE(runtime/int)
uint128(unsigned long long v)699 constexpr uint128::uint128(unsigned long long v) : hi_{0}, lo_{v} {}
700
701 #ifdef ABSL_HAVE_INTRINSIC_INT128
uint128(__int128 v)702 constexpr uint128::uint128(__int128 v)
703 : hi_{static_cast<uint64_t>(static_cast<unsigned __int128>(v) >> 64)},
704 lo_{static_cast<uint64_t>(v & ~uint64_t{0})} {}
uint128(unsigned __int128 v)705 constexpr uint128::uint128(unsigned __int128 v)
706 : hi_{static_cast<uint64_t>(v >> 64)},
707 lo_{static_cast<uint64_t>(v & ~uint64_t{0})} {}
708 #endif // ABSL_HAVE_INTRINSIC_INT128
709
uint128(int128 v)710 constexpr uint128::uint128(int128 v)
711 : hi_{static_cast<uint64_t>(Int128High64(v))}, lo_{Int128Low64(v)} {}
712
713 #else // byte order
714 #error "Unsupported byte order: must be little-endian or big-endian."
715 #endif // byte order
716
717 // Conversion operators to integer types.
718
719 constexpr uint128::operator bool() const { return lo_ || hi_; }
720
721 constexpr uint128::operator char() const { return static_cast<char>(lo_); }
722
723 constexpr uint128::operator signed char() const {
724 return static_cast<signed char>(lo_);
725 }
726
727 constexpr uint128::operator unsigned char() const {
728 return static_cast<unsigned char>(lo_);
729 }
730
char16_t()731 constexpr uint128::operator char16_t() const {
732 return static_cast<char16_t>(lo_);
733 }
734
char32_t()735 constexpr uint128::operator char32_t() const {
736 return static_cast<char32_t>(lo_);
737 }
738
ABSL_INTERNAL_WCHAR_T()739 constexpr uint128::operator ABSL_INTERNAL_WCHAR_T() const {
740 return static_cast<ABSL_INTERNAL_WCHAR_T>(lo_);
741 }
742
743 // NOLINTNEXTLINE(runtime/int)
744 constexpr uint128::operator short() const { return static_cast<short>(lo_); }
745
746 constexpr uint128::operator unsigned short() const { // NOLINT(runtime/int)
747 return static_cast<unsigned short>(lo_); // NOLINT(runtime/int)
748 }
749
750 constexpr uint128::operator int() const { return static_cast<int>(lo_); }
751
752 constexpr uint128::operator unsigned int() const {
753 return static_cast<unsigned int>(lo_);
754 }
755
756 // NOLINTNEXTLINE(runtime/int)
757 constexpr uint128::operator long() const { return static_cast<long>(lo_); }
758
759 constexpr uint128::operator unsigned long() const { // NOLINT(runtime/int)
760 return static_cast<unsigned long>(lo_); // NOLINT(runtime/int)
761 }
762
763 constexpr uint128::operator long long() const { // NOLINT(runtime/int)
764 return static_cast<long long>(lo_); // NOLINT(runtime/int)
765 }
766
767 constexpr uint128::operator unsigned long long() const { // NOLINT(runtime/int)
768 return static_cast<unsigned long long>(lo_); // NOLINT(runtime/int)
769 }
770
771 #ifdef ABSL_HAVE_INTRINSIC_INT128
__int128()772 constexpr uint128::operator __int128() const {
773 return (static_cast<__int128>(hi_) << 64) + lo_;
774 }
775
__int128()776 constexpr uint128::operator unsigned __int128() const {
777 return (static_cast<unsigned __int128>(hi_) << 64) + lo_;
778 }
779 #endif // ABSL_HAVE_INTRINSIC_INT128
780
781 // Conversion operators to floating point types.
782
783 inline uint128::operator float() const {
784 return static_cast<float>(lo_) + std::ldexp(static_cast<float>(hi_), 64);
785 }
786
787 inline uint128::operator double() const {
788 return static_cast<double>(lo_) + std::ldexp(static_cast<double>(hi_), 64);
789 }
790
791 inline uint128::operator long double() const {
792 return static_cast<long double>(lo_) +
793 std::ldexp(static_cast<long double>(hi_), 64);
794 }
795
796 // Comparison operators.
797
798 constexpr bool operator==(uint128 lhs, uint128 rhs) {
799 #if defined(ABSL_HAVE_INTRINSIC_INT128)
800 return static_cast<unsigned __int128>(lhs) ==
801 static_cast<unsigned __int128>(rhs);
802 #else
803 return (Uint128Low64(lhs) == Uint128Low64(rhs) &&
804 Uint128High64(lhs) == Uint128High64(rhs));
805 #endif
806 }
807
808 constexpr bool operator!=(uint128 lhs, uint128 rhs) { return !(lhs == rhs); }
809
810 constexpr bool operator<(uint128 lhs, uint128 rhs) {
811 #ifdef ABSL_HAVE_INTRINSIC_INT128
812 return static_cast<unsigned __int128>(lhs) <
813 static_cast<unsigned __int128>(rhs);
814 #else
815 return (Uint128High64(lhs) == Uint128High64(rhs))
816 ? (Uint128Low64(lhs) < Uint128Low64(rhs))
817 : (Uint128High64(lhs) < Uint128High64(rhs));
818 #endif
819 }
820
821 constexpr bool operator>(uint128 lhs, uint128 rhs) { return rhs < lhs; }
822
823 constexpr bool operator<=(uint128 lhs, uint128 rhs) { return !(rhs < lhs); }
824
825 constexpr bool operator>=(uint128 lhs, uint128 rhs) { return !(lhs < rhs); }
826
827 #ifdef __cpp_impl_three_way_comparison
828 constexpr absl::strong_ordering operator<=>(uint128 lhs, uint128 rhs) {
829 #if defined(ABSL_HAVE_INTRINSIC_INT128)
830 if (auto lhs_128 = static_cast<unsigned __int128>(lhs),
831 rhs_128 = static_cast<unsigned __int128>(rhs);
832 lhs_128 < rhs_128) {
833 return absl::strong_ordering::less;
834 } else if (lhs_128 > rhs_128) {
835 return absl::strong_ordering::greater;
836 } else {
837 return absl::strong_ordering::equal;
838 }
839 #else
840 if (uint64_t lhs_high = Uint128High64(lhs), rhs_high = Uint128High64(rhs);
841 lhs_high < rhs_high) {
842 return absl::strong_ordering::less;
843 } else if (lhs_high > rhs_high) {
844 return absl::strong_ordering::greater;
845 } else if (uint64_t lhs_low = Uint128Low64(lhs), rhs_low = Uint128Low64(rhs);
846 lhs_low < rhs_low) {
847 return absl::strong_ordering::less;
848 } else if (lhs_low > rhs_low) {
849 return absl::strong_ordering::greater;
850 } else {
851 return absl::strong_ordering::equal;
852 }
853 #endif
854 }
855 #endif
856
857 // Unary operators.
858
859 constexpr inline uint128 operator+(uint128 val) { return val; }
860
861 constexpr inline int128 operator+(int128 val) { return val; }
862
863 constexpr uint128 operator-(uint128 val) {
864 #if defined(ABSL_HAVE_INTRINSIC_INT128)
865 return -static_cast<unsigned __int128>(val);
866 #else
867 return MakeUint128(
868 ~Uint128High64(val) + static_cast<unsigned long>(Uint128Low64(val) == 0),
869 ~Uint128Low64(val) + 1);
870 #endif
871 }
872
873 constexpr inline bool operator!(uint128 val) {
874 #if defined(ABSL_HAVE_INTRINSIC_INT128)
875 return !static_cast<unsigned __int128>(val);
876 #else
877 return !Uint128High64(val) && !Uint128Low64(val);
878 #endif
879 }
880
881 // Logical operators.
882
883 constexpr inline uint128 operator~(uint128 val) {
884 #if defined(ABSL_HAVE_INTRINSIC_INT128)
885 return ~static_cast<unsigned __int128>(val);
886 #else
887 return MakeUint128(~Uint128High64(val), ~Uint128Low64(val));
888 #endif
889 }
890
891 constexpr inline uint128 operator|(uint128 lhs, uint128 rhs) {
892 #if defined(ABSL_HAVE_INTRINSIC_INT128)
893 return static_cast<unsigned __int128>(lhs) |
894 static_cast<unsigned __int128>(rhs);
895 #else
896 return MakeUint128(Uint128High64(lhs) | Uint128High64(rhs),
897 Uint128Low64(lhs) | Uint128Low64(rhs));
898 #endif
899 }
900
901 constexpr inline uint128 operator&(uint128 lhs, uint128 rhs) {
902 #if defined(ABSL_HAVE_INTRINSIC_INT128)
903 return static_cast<unsigned __int128>(lhs) &
904 static_cast<unsigned __int128>(rhs);
905 #else
906 return MakeUint128(Uint128High64(lhs) & Uint128High64(rhs),
907 Uint128Low64(lhs) & Uint128Low64(rhs));
908 #endif
909 }
910
911 constexpr inline uint128 operator^(uint128 lhs, uint128 rhs) {
912 #if defined(ABSL_HAVE_INTRINSIC_INT128)
913 return static_cast<unsigned __int128>(lhs) ^
914 static_cast<unsigned __int128>(rhs);
915 #else
916 return MakeUint128(Uint128High64(lhs) ^ Uint128High64(rhs),
917 Uint128Low64(lhs) ^ Uint128Low64(rhs));
918 #endif
919 }
920
921 inline uint128& uint128::operator|=(uint128 other) {
922 *this = *this | other;
923 return *this;
924 }
925
926 inline uint128& uint128::operator&=(uint128 other) {
927 *this = *this & other;
928 return *this;
929 }
930
931 inline uint128& uint128::operator^=(uint128 other) {
932 *this = *this ^ other;
933 return *this;
934 }
935
936 // Arithmetic operators.
937
938 constexpr uint128 operator<<(uint128 lhs, int amount) {
939 #ifdef ABSL_HAVE_INTRINSIC_INT128
940 return static_cast<unsigned __int128>(lhs) << amount;
941 #else
942 // uint64_t shifts of >= 64 are undefined, so we will need some
943 // special-casing.
944 return amount >= 64 ? MakeUint128(Uint128Low64(lhs) << (amount - 64), 0)
945 : amount == 0 ? lhs
946 : MakeUint128((Uint128High64(lhs) << amount) |
947 (Uint128Low64(lhs) >> (64 - amount)),
948 Uint128Low64(lhs) << amount);
949 #endif
950 }
951
952 constexpr uint128 operator>>(uint128 lhs, int amount) {
953 #ifdef ABSL_HAVE_INTRINSIC_INT128
954 return static_cast<unsigned __int128>(lhs) >> amount;
955 #else
956 // uint64_t shifts of >= 64 are undefined, so we will need some
957 // special-casing.
958 return amount >= 64 ? MakeUint128(0, Uint128High64(lhs) >> (amount - 64))
959 : amount == 0 ? lhs
960 : MakeUint128(Uint128High64(lhs) >> amount,
961 (Uint128Low64(lhs) >> amount) |
962 (Uint128High64(lhs) << (64 - amount)));
963 #endif
964 }
965
966 #if !defined(ABSL_HAVE_INTRINSIC_INT128)
967 namespace int128_internal {
AddResult(uint128 result,uint128 lhs)968 constexpr uint128 AddResult(uint128 result, uint128 lhs) {
969 // check for carry
970 return (Uint128Low64(result) < Uint128Low64(lhs))
971 ? MakeUint128(Uint128High64(result) + 1, Uint128Low64(result))
972 : result;
973 }
974 } // namespace int128_internal
975 #endif
976
977 constexpr uint128 operator+(uint128 lhs, uint128 rhs) {
978 #if defined(ABSL_HAVE_INTRINSIC_INT128)
979 return static_cast<unsigned __int128>(lhs) +
980 static_cast<unsigned __int128>(rhs);
981 #else
982 return int128_internal::AddResult(
983 MakeUint128(Uint128High64(lhs) + Uint128High64(rhs),
984 Uint128Low64(lhs) + Uint128Low64(rhs)),
985 lhs);
986 #endif
987 }
988
989 #if !defined(ABSL_HAVE_INTRINSIC_INT128)
990 namespace int128_internal {
SubstructResult(uint128 result,uint128 lhs,uint128 rhs)991 constexpr uint128 SubstructResult(uint128 result, uint128 lhs, uint128 rhs) {
992 // check for carry
993 return (Uint128Low64(lhs) < Uint128Low64(rhs))
994 ? MakeUint128(Uint128High64(result) - 1, Uint128Low64(result))
995 : result;
996 }
997 } // namespace int128_internal
998 #endif
999
1000 constexpr uint128 operator-(uint128 lhs, uint128 rhs) {
1001 #if defined(ABSL_HAVE_INTRINSIC_INT128)
1002 return static_cast<unsigned __int128>(lhs) -
1003 static_cast<unsigned __int128>(rhs);
1004 #else
1005 return int128_internal::SubstructResult(
1006 MakeUint128(Uint128High64(lhs) - Uint128High64(rhs),
1007 Uint128Low64(lhs) - Uint128Low64(rhs)),
1008 lhs, rhs);
1009 #endif
1010 }
1011
1012 inline uint128 operator*(uint128 lhs, uint128 rhs) {
1013 #if defined(ABSL_HAVE_INTRINSIC_INT128)
1014 // TODO(strel) Remove once alignment issues are resolved and unsigned __int128
1015 // can be used for uint128 storage.
1016 return static_cast<unsigned __int128>(lhs) *
1017 static_cast<unsigned __int128>(rhs);
1018 #elif defined(_MSC_VER) && defined(_M_X64) && !defined(_M_ARM64EC)
1019 uint64_t carry;
1020 uint64_t low = _umul128(Uint128Low64(lhs), Uint128Low64(rhs), &carry);
1021 return MakeUint128(Uint128Low64(lhs) * Uint128High64(rhs) +
1022 Uint128High64(lhs) * Uint128Low64(rhs) + carry,
1023 low);
1024 #else // ABSL_HAVE_INTRINSIC128
1025 uint64_t a32 = Uint128Low64(lhs) >> 32;
1026 uint64_t a00 = Uint128Low64(lhs) & 0xffffffff;
1027 uint64_t b32 = Uint128Low64(rhs) >> 32;
1028 uint64_t b00 = Uint128Low64(rhs) & 0xffffffff;
1029 uint128 result =
1030 MakeUint128(Uint128High64(lhs) * Uint128Low64(rhs) +
1031 Uint128Low64(lhs) * Uint128High64(rhs) + a32 * b32,
1032 a00 * b00);
1033 result += uint128(a32 * b00) << 32;
1034 result += uint128(a00 * b32) << 32;
1035 return result;
1036 #endif // ABSL_HAVE_INTRINSIC128
1037 }
1038
1039 #if defined(ABSL_HAVE_INTRINSIC_INT128)
1040 inline uint128 operator/(uint128 lhs, uint128 rhs) {
1041 return static_cast<unsigned __int128>(lhs) /
1042 static_cast<unsigned __int128>(rhs);
1043 }
1044
1045 inline uint128 operator%(uint128 lhs, uint128 rhs) {
1046 return static_cast<unsigned __int128>(lhs) %
1047 static_cast<unsigned __int128>(rhs);
1048 }
1049 #endif
1050
1051 // Increment/decrement operators.
1052
1053 inline uint128 uint128::operator++(int) {
1054 uint128 tmp(*this);
1055 *this += 1;
1056 return tmp;
1057 }
1058
1059 inline uint128 uint128::operator--(int) {
1060 uint128 tmp(*this);
1061 *this -= 1;
1062 return tmp;
1063 }
1064
1065 inline uint128& uint128::operator++() {
1066 *this += 1;
1067 return *this;
1068 }
1069
1070 inline uint128& uint128::operator--() {
1071 *this -= 1;
1072 return *this;
1073 }
1074
MakeInt128(int64_t high,uint64_t low)1075 constexpr int128 MakeInt128(int64_t high, uint64_t low) {
1076 return int128(high, low);
1077 }
1078
1079 // Assignment from integer types.
1080 inline int128& int128::operator=(int v) { return *this = int128(v); }
1081
1082 inline int128& int128::operator=(unsigned int v) { return *this = int128(v); }
1083
1084 inline int128& int128::operator=(long v) { // NOLINT(runtime/int)
1085 return *this = int128(v);
1086 }
1087
1088 // NOLINTNEXTLINE(runtime/int)
1089 inline int128& int128::operator=(unsigned long v) { return *this = int128(v); }
1090
1091 // NOLINTNEXTLINE(runtime/int)
1092 inline int128& int128::operator=(long long v) { return *this = int128(v); }
1093
1094 // NOLINTNEXTLINE(runtime/int)
1095 inline int128& int128::operator=(unsigned long long v) {
1096 return *this = int128(v);
1097 }
1098
1099 // Arithmetic operators.
1100 constexpr int128 operator-(int128 v);
1101 constexpr int128 operator+(int128 lhs, int128 rhs);
1102 constexpr int128 operator-(int128 lhs, int128 rhs);
1103 int128 operator*(int128 lhs, int128 rhs);
1104 int128 operator/(int128 lhs, int128 rhs);
1105 int128 operator%(int128 lhs, int128 rhs);
1106 constexpr int128 operator|(int128 lhs, int128 rhs);
1107 constexpr int128 operator&(int128 lhs, int128 rhs);
1108 constexpr int128 operator^(int128 lhs, int128 rhs);
1109 constexpr int128 operator<<(int128 lhs, int amount);
1110 constexpr int128 operator>>(int128 lhs, int amount);
1111
1112 inline int128& int128::operator+=(int128 other) {
1113 *this = *this + other;
1114 return *this;
1115 }
1116
1117 inline int128& int128::operator-=(int128 other) {
1118 *this = *this - other;
1119 return *this;
1120 }
1121
1122 inline int128& int128::operator*=(int128 other) {
1123 *this = *this * other;
1124 return *this;
1125 }
1126
1127 inline int128& int128::operator/=(int128 other) {
1128 *this = *this / other;
1129 return *this;
1130 }
1131
1132 inline int128& int128::operator%=(int128 other) {
1133 *this = *this % other;
1134 return *this;
1135 }
1136
1137 inline int128& int128::operator|=(int128 other) {
1138 *this = *this | other;
1139 return *this;
1140 }
1141
1142 inline int128& int128::operator&=(int128 other) {
1143 *this = *this & other;
1144 return *this;
1145 }
1146
1147 inline int128& int128::operator^=(int128 other) {
1148 *this = *this ^ other;
1149 return *this;
1150 }
1151
1152 inline int128& int128::operator<<=(int amount) {
1153 *this = *this << amount;
1154 return *this;
1155 }
1156
1157 inline int128& int128::operator>>=(int amount) {
1158 *this = *this >> amount;
1159 return *this;
1160 }
1161
1162 // Forward declaration for comparison operators.
1163 constexpr bool operator!=(int128 lhs, int128 rhs);
1164
1165 namespace int128_internal {
1166
1167 // Casts from unsigned to signed while preserving the underlying binary
1168 // representation.
BitCastToSigned(uint64_t v)1169 constexpr int64_t BitCastToSigned(uint64_t v) {
1170 // Casting an unsigned integer to a signed integer of the same
1171 // width is implementation defined behavior if the source value would not fit
1172 // in the destination type. We step around it with a roundtrip bitwise not
1173 // operation to make sure this function remains constexpr. Clang, GCC, and
1174 // MSVC optimize this to a no-op on x86-64.
1175 return v & (uint64_t{1} << 63) ? ~static_cast<int64_t>(~v)
1176 : static_cast<int64_t>(v);
1177 }
1178
1179 } // namespace int128_internal
1180
1181 #if defined(ABSL_HAVE_INTRINSIC_INT128)
1182 #include "absl/numeric/int128_have_intrinsic.inc" // IWYU pragma: export
1183 #else // ABSL_HAVE_INTRINSIC_INT128
1184 #include "absl/numeric/int128_no_intrinsic.inc" // IWYU pragma: export
1185 #endif // ABSL_HAVE_INTRINSIC_INT128
1186
1187 ABSL_NAMESPACE_END
1188 } // namespace absl
1189
1190 #undef ABSL_INTERNAL_WCHAR_T
1191
1192 #endif // ABSL_NUMERIC_INT128_H_
1193