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Austin Schuh36244a12019-09-21 17:52:38 -07001//
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: string_view.h
18// -----------------------------------------------------------------------------
19//
20// This file contains the definition of the `absl::string_view` class. A
21// `string_view` points to a contiguous span of characters, often part or all of
22// another `std::string`, double-quoted string literal, character array, or even
23// another `string_view`.
24//
25// This `absl::string_view` abstraction is designed to be a drop-in
26// replacement for the C++17 `std::string_view` abstraction.
27#ifndef ABSL_STRINGS_STRING_VIEW_H_
28#define ABSL_STRINGS_STRING_VIEW_H_
29
30#include <algorithm>
Austin Schuh36244a12019-09-21 17:52:38 -070031#include <cassert>
32#include <cstddef>
33#include <cstring>
34#include <iosfwd>
35#include <iterator>
36#include <limits>
37#include <string>
38
Austin Schuhb4691e92020-12-31 12:37:18 -080039#include "absl/base/config.h"
Austin Schuh36244a12019-09-21 17:52:38 -070040#include "absl/base/internal/throw_delegate.h"
41#include "absl/base/macros.h"
42#include "absl/base/optimization.h"
43#include "absl/base/port.h"
44
Austin Schuhb4691e92020-12-31 12:37:18 -080045#ifdef ABSL_USES_STD_STRING_VIEW
46
47#include <string_view> // IWYU pragma: export
48
Austin Schuh36244a12019-09-21 17:52:38 -070049namespace absl {
Austin Schuhb4691e92020-12-31 12:37:18 -080050ABSL_NAMESPACE_BEGIN
51using string_view = std::string_view;
52ABSL_NAMESPACE_END
53} // namespace absl
54
55#else // ABSL_USES_STD_STRING_VIEW
56
57#if ABSL_HAVE_BUILTIN(__builtin_memcmp) || \
58 (defined(__GNUC__) && !defined(__clang__))
59#define ABSL_INTERNAL_STRING_VIEW_MEMCMP __builtin_memcmp
60#else // ABSL_HAVE_BUILTIN(__builtin_memcmp)
61#define ABSL_INTERNAL_STRING_VIEW_MEMCMP memcmp
62#endif // ABSL_HAVE_BUILTIN(__builtin_memcmp)
63
64namespace absl {
65ABSL_NAMESPACE_BEGIN
Austin Schuh36244a12019-09-21 17:52:38 -070066
67// absl::string_view
68//
69// A `string_view` provides a lightweight view into the string data provided by
70// a `std::string`, double-quoted string literal, character array, or even
71// another `string_view`. A `string_view` does *not* own the string to which it
72// points, and that data cannot be modified through the view.
73//
74// You can use `string_view` as a function or method parameter anywhere a
75// parameter can receive a double-quoted string literal, `const char*`,
76// `std::string`, or another `absl::string_view` argument with no need to copy
77// the string data. Systematic use of `string_view` within function arguments
78// reduces data copies and `strlen()` calls.
79//
80// Because of its small size, prefer passing `string_view` by value:
81//
82// void MyFunction(absl::string_view arg);
83//
84// If circumstances require, you may also pass one by const reference:
85//
86// void MyFunction(const absl::string_view& arg); // not preferred
87//
88// Passing by value generates slightly smaller code for many architectures.
89//
90// In either case, the source data of the `string_view` must outlive the
91// `string_view` itself.
92//
93// A `string_view` is also suitable for local variables if you know that the
94// lifetime of the underlying object is longer than the lifetime of your
95// `string_view` variable. However, beware of binding a `string_view` to a
96// temporary value:
97//
98// // BAD use of string_view: lifetime problem
99// absl::string_view sv = obj.ReturnAString();
100//
101// // GOOD use of string_view: str outlives sv
102// std::string str = obj.ReturnAString();
103// absl::string_view sv = str;
104//
105// Due to lifetime issues, a `string_view` is sometimes a poor choice for a
106// return value and usually a poor choice for a data member. If you do use a
107// `string_view` this way, it is your responsibility to ensure that the object
108// pointed to by the `string_view` outlives the `string_view`.
109//
110// A `string_view` may represent a whole string or just part of a string. For
111// example, when splitting a string, `std::vector<absl::string_view>` is a
112// natural data type for the output.
113//
Austin Schuhb4691e92020-12-31 12:37:18 -0800114// For another example, a Cord is a non-contiguous, potentially very
115// long string-like object. The Cord class has an interface that iteratively
116// provides string_view objects that point to the successive pieces of a Cord
117// object.
118//
119// When constructed from a source which is NUL-terminated, the `string_view`
120// itself will not include the NUL-terminator unless a specific size (including
121// the NUL) is passed to the constructor. As a result, common idioms that work
122// on NUL-terminated strings do not work on `string_view` objects. If you write
Austin Schuh36244a12019-09-21 17:52:38 -0700123// code that scans a `string_view`, you must check its length rather than test
124// for nul, for example. Note, however, that nuls may still be embedded within
125// a `string_view` explicitly.
126//
127// You may create a null `string_view` in two ways:
128//
Austin Schuhb4691e92020-12-31 12:37:18 -0800129// absl::string_view sv;
Austin Schuh36244a12019-09-21 17:52:38 -0700130// absl::string_view sv(nullptr, 0);
131//
132// For the above, `sv.data() == nullptr`, `sv.length() == 0`, and
133// `sv.empty() == true`. Also, if you create a `string_view` with a non-null
134// pointer then `sv.data() != nullptr`. Thus, you can use `string_view()` to
135// signal an undefined value that is different from other `string_view` values
136// in a similar fashion to how `const char* p1 = nullptr;` is different from
137// `const char* p2 = "";`. However, in practice, it is not recommended to rely
138// on this behavior.
139//
140// Be careful not to confuse a null `string_view` with an empty one. A null
141// `string_view` is an empty `string_view`, but some empty `string_view`s are
142// not null. Prefer checking for emptiness over checking for null.
143//
144// There are many ways to create an empty string_view:
145//
146// const char* nullcp = nullptr;
147// // string_view.size() will return 0 in all cases.
148// absl::string_view();
149// absl::string_view(nullcp, 0);
150// absl::string_view("");
151// absl::string_view("", 0);
152// absl::string_view("abcdef", 0);
153// absl::string_view("abcdef" + 6, 0);
154//
155// All empty `string_view` objects whether null or not, are equal:
156//
157// absl::string_view() == absl::string_view("", 0)
158// absl::string_view(nullptr, 0) == absl::string_view("abcdef"+6, 0)
159class string_view {
160 public:
161 using traits_type = std::char_traits<char>;
162 using value_type = char;
163 using pointer = char*;
164 using const_pointer = const char*;
165 using reference = char&;
166 using const_reference = const char&;
167 using const_iterator = const char*;
168 using iterator = const_iterator;
169 using const_reverse_iterator = std::reverse_iterator<const_iterator>;
170 using reverse_iterator = const_reverse_iterator;
171 using size_type = size_t;
172 using difference_type = std::ptrdiff_t;
173
174 static constexpr size_type npos = static_cast<size_type>(-1);
175
176 // Null `string_view` constructor
177 constexpr string_view() noexcept : ptr_(nullptr), length_(0) {}
178
179 // Implicit constructors
180
181 template <typename Allocator>
182 string_view( // NOLINT(runtime/explicit)
183 const std::basic_string<char, std::char_traits<char>, Allocator>&
184 str) noexcept
Austin Schuhb4691e92020-12-31 12:37:18 -0800185 // This is implemented in terms of `string_view(p, n)` so `str.size()`
186 // doesn't need to be reevaluated after `ptr_` is set.
187 : string_view(str.data(), str.size()) {}
Austin Schuh36244a12019-09-21 17:52:38 -0700188
Austin Schuhb4691e92020-12-31 12:37:18 -0800189 // Implicit constructor of a `string_view` from NUL-terminated `str`. When
Austin Schuh36244a12019-09-21 17:52:38 -0700190 // accepting possibly null strings, use `absl::NullSafeStringView(str)`
191 // instead (see below).
192 constexpr string_view(const char* str) // NOLINT(runtime/explicit)
193 : ptr_(str),
194 length_(str ? CheckLengthInternal(StrlenInternal(str)) : 0) {}
195
196 // Implicit constructor of a `string_view` from a `const char*` and length.
197 constexpr string_view(const char* data, size_type len)
198 : ptr_(data), length_(CheckLengthInternal(len)) {}
199
200 // NOTE: Harmlessly omitted to work around gdb bug.
201 // constexpr string_view(const string_view&) noexcept = default;
202 // string_view& operator=(const string_view&) noexcept = default;
203
204 // Iterators
205
206 // string_view::begin()
207 //
208 // Returns an iterator pointing to the first character at the beginning of the
209 // `string_view`, or `end()` if the `string_view` is empty.
210 constexpr const_iterator begin() const noexcept { return ptr_; }
211
212 // string_view::end()
213 //
214 // Returns an iterator pointing just beyond the last character at the end of
215 // the `string_view`. This iterator acts as a placeholder; attempting to
216 // access it results in undefined behavior.
217 constexpr const_iterator end() const noexcept { return ptr_ + length_; }
218
219 // string_view::cbegin()
220 //
221 // Returns a const iterator pointing to the first character at the beginning
222 // of the `string_view`, or `end()` if the `string_view` is empty.
223 constexpr const_iterator cbegin() const noexcept { return begin(); }
224
225 // string_view::cend()
226 //
227 // Returns a const iterator pointing just beyond the last character at the end
228 // of the `string_view`. This pointer acts as a placeholder; attempting to
229 // access its element results in undefined behavior.
230 constexpr const_iterator cend() const noexcept { return end(); }
231
232 // string_view::rbegin()
233 //
234 // Returns a reverse iterator pointing to the last character at the end of the
235 // `string_view`, or `rend()` if the `string_view` is empty.
236 const_reverse_iterator rbegin() const noexcept {
237 return const_reverse_iterator(end());
238 }
239
240 // string_view::rend()
241 //
242 // Returns a reverse iterator pointing just before the first character at the
243 // beginning of the `string_view`. This pointer acts as a placeholder;
244 // attempting to access its element results in undefined behavior.
245 const_reverse_iterator rend() const noexcept {
246 return const_reverse_iterator(begin());
247 }
248
249 // string_view::crbegin()
250 //
251 // Returns a const reverse iterator pointing to the last character at the end
252 // of the `string_view`, or `crend()` if the `string_view` is empty.
253 const_reverse_iterator crbegin() const noexcept { return rbegin(); }
254
255 // string_view::crend()
256 //
257 // Returns a const reverse iterator pointing just before the first character
258 // at the beginning of the `string_view`. This pointer acts as a placeholder;
259 // attempting to access its element results in undefined behavior.
260 const_reverse_iterator crend() const noexcept { return rend(); }
261
262 // Capacity Utilities
263
264 // string_view::size()
265 //
266 // Returns the number of characters in the `string_view`.
267 constexpr size_type size() const noexcept {
268 return length_;
269 }
270
271 // string_view::length()
272 //
273 // Returns the number of characters in the `string_view`. Alias for `size()`.
274 constexpr size_type length() const noexcept { return size(); }
275
276 // string_view::max_size()
277 //
278 // Returns the maximum number of characters the `string_view` can hold.
279 constexpr size_type max_size() const noexcept { return kMaxSize; }
280
281 // string_view::empty()
282 //
283 // Checks if the `string_view` is empty (refers to no characters).
284 constexpr bool empty() const noexcept { return length_ == 0; }
285
286 // string_view::operator[]
287 //
288 // Returns the ith element of the `string_view` using the array operator.
289 // Note that this operator does not perform any bounds checking.
Austin Schuhb4691e92020-12-31 12:37:18 -0800290 constexpr const_reference operator[](size_type i) const {
291 return ABSL_HARDENING_ASSERT(i < size()), ptr_[i];
292 }
Austin Schuh36244a12019-09-21 17:52:38 -0700293
294 // string_view::at()
295 //
296 // Returns the ith element of the `string_view`. Bounds checking is performed,
297 // and an exception of type `std::out_of_range` will be thrown on invalid
298 // access.
299 constexpr const_reference at(size_type i) const {
300 return ABSL_PREDICT_TRUE(i < size())
301 ? ptr_[i]
Austin Schuhb4691e92020-12-31 12:37:18 -0800302 : ((void)base_internal::ThrowStdOutOfRange(
303 "absl::string_view::at"),
Austin Schuh36244a12019-09-21 17:52:38 -0700304 ptr_[i]);
305 }
306
307 // string_view::front()
308 //
309 // Returns the first element of a `string_view`.
Austin Schuhb4691e92020-12-31 12:37:18 -0800310 constexpr const_reference front() const {
311 return ABSL_HARDENING_ASSERT(!empty()), ptr_[0];
312 }
Austin Schuh36244a12019-09-21 17:52:38 -0700313
314 // string_view::back()
315 //
316 // Returns the last element of a `string_view`.
Austin Schuhb4691e92020-12-31 12:37:18 -0800317 constexpr const_reference back() const {
318 return ABSL_HARDENING_ASSERT(!empty()), ptr_[size() - 1];
319 }
Austin Schuh36244a12019-09-21 17:52:38 -0700320
321 // string_view::data()
322 //
323 // Returns a pointer to the underlying character array (which is of course
324 // stored elsewhere). Note that `string_view::data()` may contain embedded nul
Austin Schuhb4691e92020-12-31 12:37:18 -0800325 // characters, but the returned buffer may or may not be NUL-terminated;
326 // therefore, do not pass `data()` to a routine that expects a NUL-terminated
327 // string.
Austin Schuh36244a12019-09-21 17:52:38 -0700328 constexpr const_pointer data() const noexcept { return ptr_; }
329
330 // Modifiers
331
332 // string_view::remove_prefix()
333 //
334 // Removes the first `n` characters from the `string_view`. Note that the
Austin Schuhb4691e92020-12-31 12:37:18 -0800335 // underlying string is not changed, only the view.
Austin Schuh36244a12019-09-21 17:52:38 -0700336 void remove_prefix(size_type n) {
Austin Schuhb4691e92020-12-31 12:37:18 -0800337 ABSL_HARDENING_ASSERT(n <= length_);
Austin Schuh36244a12019-09-21 17:52:38 -0700338 ptr_ += n;
339 length_ -= n;
340 }
341
342 // string_view::remove_suffix()
343 //
344 // Removes the last `n` characters from the `string_view`. Note that the
Austin Schuhb4691e92020-12-31 12:37:18 -0800345 // underlying string is not changed, only the view.
Austin Schuh36244a12019-09-21 17:52:38 -0700346 void remove_suffix(size_type n) {
Austin Schuhb4691e92020-12-31 12:37:18 -0800347 ABSL_HARDENING_ASSERT(n <= length_);
Austin Schuh36244a12019-09-21 17:52:38 -0700348 length_ -= n;
349 }
350
351 // string_view::swap()
352 //
353 // Swaps this `string_view` with another `string_view`.
354 void swap(string_view& s) noexcept {
355 auto t = *this;
356 *this = s;
357 s = t;
358 }
359
360 // Explicit conversion operators
361
362 // Converts to `std::basic_string`.
363 template <typename A>
364 explicit operator std::basic_string<char, traits_type, A>() const {
365 if (!data()) return {};
366 return std::basic_string<char, traits_type, A>(data(), size());
367 }
368
369 // string_view::copy()
370 //
371 // Copies the contents of the `string_view` at offset `pos` and length `n`
372 // into `buf`.
373 size_type copy(char* buf, size_type n, size_type pos = 0) const {
374 if (ABSL_PREDICT_FALSE(pos > length_)) {
375 base_internal::ThrowStdOutOfRange("absl::string_view::copy");
376 }
377 size_type rlen = (std::min)(length_ - pos, n);
378 if (rlen > 0) {
379 const char* start = ptr_ + pos;
380 traits_type::copy(buf, start, rlen);
381 }
382 return rlen;
383 }
384
385 // string_view::substr()
386 //
387 // Returns a "substring" of the `string_view` (at offset `pos` and length
388 // `n`) as another string_view. This function throws `std::out_of_bounds` if
389 // `pos > size`.
Austin Schuhb4691e92020-12-31 12:37:18 -0800390 // Use absl::ClippedSubstr if you need a truncating substr operation.
391 constexpr string_view substr(size_type pos, size_type n = npos) const {
392 return ABSL_PREDICT_FALSE(pos > length_)
393 ? (base_internal::ThrowStdOutOfRange(
394 "absl::string_view::substr"),
395 string_view())
396 : string_view(ptr_ + pos, Min(n, length_ - pos));
Austin Schuh36244a12019-09-21 17:52:38 -0700397 }
398
399 // string_view::compare()
400 //
401 // Performs a lexicographical comparison between the `string_view` and
402 // another `absl::string_view`, returning -1 if `this` is less than, 0 if
Austin Schuhb4691e92020-12-31 12:37:18 -0800403 // `this` is equal to, and 1 if `this` is greater than the passed string
Austin Schuh36244a12019-09-21 17:52:38 -0700404 // view. Note that in the case of data equality, a further comparison is made
405 // on the respective sizes of the two `string_view`s to determine which is
406 // smaller, equal, or greater.
Austin Schuhb4691e92020-12-31 12:37:18 -0800407 constexpr int compare(string_view x) const noexcept {
408 return CompareImpl(length_, x.length_,
409 Min(length_, x.length_) == 0
410 ? 0
411 : ABSL_INTERNAL_STRING_VIEW_MEMCMP(
412 ptr_, x.ptr_, Min(length_, x.length_)));
Austin Schuh36244a12019-09-21 17:52:38 -0700413 }
414
415 // Overload of `string_view::compare()` for comparing a substring of the
416 // 'string_view` and another `absl::string_view`.
417 int compare(size_type pos1, size_type count1, string_view v) const {
418 return substr(pos1, count1).compare(v);
419 }
420
421 // Overload of `string_view::compare()` for comparing a substring of the
422 // `string_view` and a substring of another `absl::string_view`.
423 int compare(size_type pos1, size_type count1, string_view v, size_type pos2,
424 size_type count2) const {
425 return substr(pos1, count1).compare(v.substr(pos2, count2));
426 }
427
428 // Overload of `string_view::compare()` for comparing a `string_view` and a
Austin Schuhb4691e92020-12-31 12:37:18 -0800429 // a different C-style string `s`.
Austin Schuh36244a12019-09-21 17:52:38 -0700430 int compare(const char* s) const { return compare(string_view(s)); }
431
432 // Overload of `string_view::compare()` for comparing a substring of the
Austin Schuhb4691e92020-12-31 12:37:18 -0800433 // `string_view` and a different string C-style string `s`.
Austin Schuh36244a12019-09-21 17:52:38 -0700434 int compare(size_type pos1, size_type count1, const char* s) const {
435 return substr(pos1, count1).compare(string_view(s));
436 }
437
438 // Overload of `string_view::compare()` for comparing a substring of the
Austin Schuhb4691e92020-12-31 12:37:18 -0800439 // `string_view` and a substring of a different C-style string `s`.
Austin Schuh36244a12019-09-21 17:52:38 -0700440 int compare(size_type pos1, size_type count1, const char* s,
441 size_type count2) const {
442 return substr(pos1, count1).compare(string_view(s, count2));
443 }
444
445 // Find Utilities
446
447 // string_view::find()
448 //
449 // Finds the first occurrence of the substring `s` within the `string_view`,
450 // returning the position of the first character's match, or `npos` if no
451 // match was found.
452 size_type find(string_view s, size_type pos = 0) const noexcept;
453
454 // Overload of `string_view::find()` for finding the given character `c`
455 // within the `string_view`.
456 size_type find(char c, size_type pos = 0) const noexcept;
457
458 // string_view::rfind()
459 //
460 // Finds the last occurrence of a substring `s` within the `string_view`,
461 // returning the position of the first character's match, or `npos` if no
462 // match was found.
463 size_type rfind(string_view s, size_type pos = npos) const
464 noexcept;
465
466 // Overload of `string_view::rfind()` for finding the last given character `c`
467 // within the `string_view`.
468 size_type rfind(char c, size_type pos = npos) const noexcept;
469
470 // string_view::find_first_of()
471 //
472 // Finds the first occurrence of any of the characters in `s` within the
473 // `string_view`, returning the start position of the match, or `npos` if no
474 // match was found.
475 size_type find_first_of(string_view s, size_type pos = 0) const
476 noexcept;
477
478 // Overload of `string_view::find_first_of()` for finding a character `c`
479 // within the `string_view`.
480 size_type find_first_of(char c, size_type pos = 0) const
481 noexcept {
482 return find(c, pos);
483 }
484
485 // string_view::find_last_of()
486 //
487 // Finds the last occurrence of any of the characters in `s` within the
488 // `string_view`, returning the start position of the match, or `npos` if no
489 // match was found.
490 size_type find_last_of(string_view s, size_type pos = npos) const
491 noexcept;
492
493 // Overload of `string_view::find_last_of()` for finding a character `c`
494 // within the `string_view`.
495 size_type find_last_of(char c, size_type pos = npos) const
496 noexcept {
497 return rfind(c, pos);
498 }
499
500 // string_view::find_first_not_of()
501 //
502 // Finds the first occurrence of any of the characters not in `s` within the
503 // `string_view`, returning the start position of the first non-match, or
504 // `npos` if no non-match was found.
505 size_type find_first_not_of(string_view s, size_type pos = 0) const noexcept;
506
507 // Overload of `string_view::find_first_not_of()` for finding a character
508 // that is not `c` within the `string_view`.
509 size_type find_first_not_of(char c, size_type pos = 0) const noexcept;
510
511 // string_view::find_last_not_of()
512 //
513 // Finds the last occurrence of any of the characters not in `s` within the
514 // `string_view`, returning the start position of the last non-match, or
515 // `npos` if no non-match was found.
516 size_type find_last_not_of(string_view s,
517 size_type pos = npos) const noexcept;
518
519 // Overload of `string_view::find_last_not_of()` for finding a character
520 // that is not `c` within the `string_view`.
521 size_type find_last_not_of(char c, size_type pos = npos) const
522 noexcept;
523
524 private:
525 static constexpr size_type kMaxSize =
526 (std::numeric_limits<difference_type>::max)();
527
528 static constexpr size_type CheckLengthInternal(size_type len) {
Austin Schuhb4691e92020-12-31 12:37:18 -0800529 return ABSL_HARDENING_ASSERT(len <= kMaxSize), len;
Austin Schuh36244a12019-09-21 17:52:38 -0700530 }
531
532 static constexpr size_type StrlenInternal(const char* str) {
533#if defined(_MSC_VER) && _MSC_VER >= 1910 && !defined(__clang__)
534 // MSVC 2017+ can evaluate this at compile-time.
535 const char* begin = str;
536 while (*str != '\0') ++str;
537 return str - begin;
538#elif ABSL_HAVE_BUILTIN(__builtin_strlen) || \
539 (defined(__GNUC__) && !defined(__clang__))
540 // GCC has __builtin_strlen according to
541 // https://gcc.gnu.org/onlinedocs/gcc-4.7.0/gcc/Other-Builtins.html, but
542 // ABSL_HAVE_BUILTIN doesn't detect that, so we use the extra checks above.
543 // __builtin_strlen is constexpr.
544 return __builtin_strlen(str);
545#else
546 return str ? strlen(str) : 0;
547#endif
548 }
549
Austin Schuhb4691e92020-12-31 12:37:18 -0800550 static constexpr size_t Min(size_type length_a, size_type length_b) {
551 return length_a < length_b ? length_a : length_b;
552 }
553
554 static constexpr int CompareImpl(size_type length_a, size_type length_b,
555 int compare_result) {
556 return compare_result == 0 ? static_cast<int>(length_a > length_b) -
557 static_cast<int>(length_a < length_b)
558 : (compare_result < 0 ? -1 : 1);
559 }
560
Austin Schuh36244a12019-09-21 17:52:38 -0700561 const char* ptr_;
562 size_type length_;
563};
564
565// This large function is defined inline so that in a fairly common case where
566// one of the arguments is a literal, the compiler can elide a lot of the
567// following comparisons.
Austin Schuhb4691e92020-12-31 12:37:18 -0800568constexpr bool operator==(string_view x, string_view y) noexcept {
569 return x.size() == y.size() &&
570 (x.empty() ||
571 ABSL_INTERNAL_STRING_VIEW_MEMCMP(x.data(), y.data(), x.size()) == 0);
Austin Schuh36244a12019-09-21 17:52:38 -0700572}
573
Austin Schuhb4691e92020-12-31 12:37:18 -0800574constexpr bool operator!=(string_view x, string_view y) noexcept {
Austin Schuh36244a12019-09-21 17:52:38 -0700575 return !(x == y);
576}
577
Austin Schuhb4691e92020-12-31 12:37:18 -0800578constexpr bool operator<(string_view x, string_view y) noexcept {
579 return x.compare(y) < 0;
Austin Schuh36244a12019-09-21 17:52:38 -0700580}
581
Austin Schuhb4691e92020-12-31 12:37:18 -0800582constexpr bool operator>(string_view x, string_view y) noexcept {
583 return y < x;
584}
Austin Schuh36244a12019-09-21 17:52:38 -0700585
Austin Schuhb4691e92020-12-31 12:37:18 -0800586constexpr bool operator<=(string_view x, string_view y) noexcept {
Austin Schuh36244a12019-09-21 17:52:38 -0700587 return !(y < x);
588}
589
Austin Schuhb4691e92020-12-31 12:37:18 -0800590constexpr bool operator>=(string_view x, string_view y) noexcept {
Austin Schuh36244a12019-09-21 17:52:38 -0700591 return !(x < y);
592}
593
594// IO Insertion Operator
595std::ostream& operator<<(std::ostream& o, string_view piece);
596
Austin Schuhb4691e92020-12-31 12:37:18 -0800597ABSL_NAMESPACE_END
Austin Schuh36244a12019-09-21 17:52:38 -0700598} // namespace absl
599
Austin Schuhb4691e92020-12-31 12:37:18 -0800600#undef ABSL_INTERNAL_STRING_VIEW_MEMCMP
601
602#endif // ABSL_USES_STD_STRING_VIEW
Austin Schuh36244a12019-09-21 17:52:38 -0700603
604namespace absl {
Austin Schuhb4691e92020-12-31 12:37:18 -0800605ABSL_NAMESPACE_BEGIN
Austin Schuh36244a12019-09-21 17:52:38 -0700606
607// ClippedSubstr()
608//
609// Like `s.substr(pos, n)`, but clips `pos` to an upper bound of `s.size()`.
610// Provided because std::string_view::substr throws if `pos > size()`
611inline string_view ClippedSubstr(string_view s, size_t pos,
612 size_t n = string_view::npos) {
613 pos = (std::min)(pos, static_cast<size_t>(s.size()));
614 return s.substr(pos, n);
615}
616
617// NullSafeStringView()
618//
619// Creates an `absl::string_view` from a pointer `p` even if it's null-valued.
620// This function should be used where an `absl::string_view` can be created from
621// a possibly-null pointer.
Austin Schuhb4691e92020-12-31 12:37:18 -0800622constexpr string_view NullSafeStringView(const char* p) {
Austin Schuh36244a12019-09-21 17:52:38 -0700623 return p ? string_view(p) : string_view();
624}
625
Austin Schuhb4691e92020-12-31 12:37:18 -0800626ABSL_NAMESPACE_END
Austin Schuh36244a12019-09-21 17:52:38 -0700627} // namespace absl
628
629#endif // ABSL_STRINGS_STRING_VIEW_H_