1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4
5 #include "base/strings/string_number_conversions.h"
6
7 #include <ctype.h>
8 #include <errno.h>
9 #include <stdlib.h>
10 #include <wctype.h>
11
12 #include <limits>
13
14 #include "base/logging.h"
15 #include "base/numerics/safe_math.h"
16 #include "base/scoped_clear_errno.h"
17 #include "base/scoped_clear_errno.h"
18
19 namespace base {
20
21 namespace {
22
23 template <typename STR, typename INT>
24 struct IntToStringT {
IntToStringbase::__anonc700ce430111::IntToStringT25 static STR IntToString(INT value) {
26 // log10(2) ~= 0.3 bytes needed per bit or per byte log10(2**8) ~= 2.4.
27 // So round up to allocate 3 output characters per byte, plus 1 for '-'.
28 const size_t kOutputBufSize =
29 3 * sizeof(INT) + std::numeric_limits<INT>::is_signed;
30
31 // Create the string in a temporary buffer, write it back to front, and
32 // then return the substr of what we ended up using.
33 using CHR = typename STR::value_type;
34 CHR outbuf[kOutputBufSize];
35
36 // The ValueOrDie call below can never fail, because UnsignedAbs is valid
37 // for all valid inputs.
38 auto res = CheckedNumeric<INT>(value).UnsignedAbs().ValueOrDie();
39
40 CHR* end = outbuf + kOutputBufSize;
41 CHR* i = end;
42 do {
43 --i;
44 DCHECK(i != outbuf);
45 *i = static_cast<CHR>((res % 10) + '0');
46 res /= 10;
47 } while (res != 0);
48 if (IsValueNegative(value)) {
49 --i;
50 DCHECK(i != outbuf);
51 *i = static_cast<CHR>('-');
52 }
53 return STR(i, end);
54 }
55 };
56
57 // Utility to convert a character to a digit in a given base
58 template<typename CHAR, int BASE, bool BASE_LTE_10> class BaseCharToDigit {
59 };
60
61 // Faster specialization for bases <= 10
62 template<typename CHAR, int BASE> class BaseCharToDigit<CHAR, BASE, true> {
63 public:
Convert(CHAR c,uint8_t * digit)64 static bool Convert(CHAR c, uint8_t* digit) {
65 if (c >= '0' && c < '0' + BASE) {
66 *digit = static_cast<uint8_t>(c - '0');
67 return true;
68 }
69 return false;
70 }
71 };
72
73 // Specialization for bases where 10 < base <= 36
74 template<typename CHAR, int BASE> class BaseCharToDigit<CHAR, BASE, false> {
75 public:
Convert(CHAR c,uint8_t * digit)76 static bool Convert(CHAR c, uint8_t* digit) {
77 if (c >= '0' && c <= '9') {
78 *digit = c - '0';
79 } else if (c >= 'a' && c < 'a' + BASE - 10) {
80 *digit = c - 'a' + 10;
81 } else if (c >= 'A' && c < 'A' + BASE - 10) {
82 *digit = c - 'A' + 10;
83 } else {
84 return false;
85 }
86 return true;
87 }
88 };
89
90 template <int BASE, typename CHAR>
CharToDigit(CHAR c,uint8_t * digit)91 bool CharToDigit(CHAR c, uint8_t* digit) {
92 return BaseCharToDigit<CHAR, BASE, BASE <= 10>::Convert(c, digit);
93 }
94
95 // There is an IsUnicodeWhitespace for wchars defined in string_util.h, but it
96 // is locale independent, whereas the functions we are replacing were
97 // locale-dependent. TBD what is desired, but for the moment let's not
98 // introduce a change in behaviour.
99 template<typename CHAR> class WhitespaceHelper {
100 };
101
102 template<> class WhitespaceHelper<char> {
103 public:
Invoke(char c)104 static bool Invoke(char c) {
105 return 0 != isspace(static_cast<unsigned char>(c));
106 }
107 };
108
109 template<> class WhitespaceHelper<char16> {
110 public:
Invoke(char16 c)111 static bool Invoke(char16 c) {
112 return 0 != iswspace(c);
113 }
114 };
115
LocalIsWhitespace(CHAR c)116 template<typename CHAR> bool LocalIsWhitespace(CHAR c) {
117 return WhitespaceHelper<CHAR>::Invoke(c);
118 }
119
120 // IteratorRangeToNumberTraits should provide:
121 // - a typedef for iterator_type, the iterator type used as input.
122 // - a typedef for value_type, the target numeric type.
123 // - static functions min, max (returning the minimum and maximum permitted
124 // values)
125 // - constant kBase, the base in which to interpret the input
126 template<typename IteratorRangeToNumberTraits>
127 class IteratorRangeToNumber {
128 public:
129 typedef IteratorRangeToNumberTraits traits;
130 typedef typename traits::iterator_type const_iterator;
131 typedef typename traits::value_type value_type;
132
133 // Generalized iterator-range-to-number conversion.
134 //
Invoke(const_iterator begin,const_iterator end,value_type * output)135 static bool Invoke(const_iterator begin,
136 const_iterator end,
137 value_type* output) {
138 bool valid = true;
139
140 while (begin != end && LocalIsWhitespace(*begin)) {
141 valid = false;
142 ++begin;
143 }
144
145 if (begin != end && *begin == '-') {
146 if (!std::numeric_limits<value_type>::is_signed) {
147 *output = 0;
148 valid = false;
149 } else if (!Negative::Invoke(begin + 1, end, output)) {
150 valid = false;
151 }
152 } else {
153 if (begin != end && *begin == '+') {
154 ++begin;
155 }
156 if (!Positive::Invoke(begin, end, output)) {
157 valid = false;
158 }
159 }
160
161 return valid;
162 }
163
164 private:
165 // Sign provides:
166 // - a static function, CheckBounds, that determines whether the next digit
167 // causes an overflow/underflow
168 // - a static function, Increment, that appends the next digit appropriately
169 // according to the sign of the number being parsed.
170 template<typename Sign>
171 class Base {
172 public:
Invoke(const_iterator begin,const_iterator end,typename traits::value_type * output)173 static bool Invoke(const_iterator begin, const_iterator end,
174 typename traits::value_type* output) {
175 *output = 0;
176
177 if (begin == end) {
178 return false;
179 }
180
181 // Note: no performance difference was found when using template
182 // specialization to remove this check in bases other than 16
183 if (traits::kBase == 16 && end - begin > 2 && *begin == '0' &&
184 (*(begin + 1) == 'x' || *(begin + 1) == 'X')) {
185 begin += 2;
186 }
187
188 for (const_iterator current = begin; current != end; ++current) {
189 uint8_t new_digit = 0;
190
191 if (!CharToDigit<traits::kBase>(*current, &new_digit)) {
192 return false;
193 }
194
195 if (current != begin) {
196 if (!Sign::CheckBounds(output, new_digit)) {
197 return false;
198 }
199 *output *= traits::kBase;
200 }
201
202 Sign::Increment(new_digit, output);
203 }
204 return true;
205 }
206 };
207
208 class Positive : public Base<Positive> {
209 public:
CheckBounds(value_type * output,uint8_t new_digit)210 static bool CheckBounds(value_type* output, uint8_t new_digit) {
211 if (*output > static_cast<value_type>(traits::max() / traits::kBase) ||
212 (*output == static_cast<value_type>(traits::max() / traits::kBase) &&
213 new_digit > traits::max() % traits::kBase)) {
214 *output = traits::max();
215 return false;
216 }
217 return true;
218 }
Increment(uint8_t increment,value_type * output)219 static void Increment(uint8_t increment, value_type* output) {
220 *output += increment;
221 }
222 };
223
224 class Negative : public Base<Negative> {
225 public:
CheckBounds(value_type * output,uint8_t new_digit)226 static bool CheckBounds(value_type* output, uint8_t new_digit) {
227 if (*output < traits::min() / traits::kBase ||
228 (*output == traits::min() / traits::kBase &&
229 new_digit > 0 - traits::min() % traits::kBase)) {
230 *output = traits::min();
231 return false;
232 }
233 return true;
234 }
Increment(uint8_t increment,value_type * output)235 static void Increment(uint8_t increment, value_type* output) {
236 *output -= increment;
237 }
238 };
239 };
240
241 template<typename ITERATOR, typename VALUE, int BASE>
242 class BaseIteratorRangeToNumberTraits {
243 public:
244 typedef ITERATOR iterator_type;
245 typedef VALUE value_type;
min()246 static value_type min() {
247 return std::numeric_limits<value_type>::min();
248 }
max()249 static value_type max() {
250 return std::numeric_limits<value_type>::max();
251 }
252 static const int kBase = BASE;
253 };
254
255 template<typename ITERATOR>
256 class BaseHexIteratorRangeToIntTraits
257 : public BaseIteratorRangeToNumberTraits<ITERATOR, int, 16> {
258 };
259
260 template <typename ITERATOR>
261 class BaseHexIteratorRangeToUIntTraits
262 : public BaseIteratorRangeToNumberTraits<ITERATOR, uint32_t, 16> {};
263
264 template <typename ITERATOR>
265 class BaseHexIteratorRangeToInt64Traits
266 : public BaseIteratorRangeToNumberTraits<ITERATOR, int64_t, 16> {};
267
268 template <typename ITERATOR>
269 class BaseHexIteratorRangeToUInt64Traits
270 : public BaseIteratorRangeToNumberTraits<ITERATOR, uint64_t, 16> {};
271
272 typedef BaseHexIteratorRangeToIntTraits<StringPiece::const_iterator>
273 HexIteratorRangeToIntTraits;
274
275 typedef BaseHexIteratorRangeToUIntTraits<StringPiece::const_iterator>
276 HexIteratorRangeToUIntTraits;
277
278 typedef BaseHexIteratorRangeToInt64Traits<StringPiece::const_iterator>
279 HexIteratorRangeToInt64Traits;
280
281 typedef BaseHexIteratorRangeToUInt64Traits<StringPiece::const_iterator>
282 HexIteratorRangeToUInt64Traits;
283
284 template <typename STR>
HexStringToBytesT(const STR & input,std::vector<uint8_t> * output)285 bool HexStringToBytesT(const STR& input, std::vector<uint8_t>* output) {
286 DCHECK_EQ(output->size(), 0u);
287 size_t count = input.size();
288 if (count == 0 || (count % 2) != 0)
289 return false;
290 for (uintptr_t i = 0; i < count / 2; ++i) {
291 uint8_t msb = 0; // most significant 4 bits
292 uint8_t lsb = 0; // least significant 4 bits
293 if (!CharToDigit<16>(input[i * 2], &msb) ||
294 !CharToDigit<16>(input[i * 2 + 1], &lsb))
295 return false;
296 output->push_back((msb << 4) | lsb);
297 }
298 return true;
299 }
300
301 template <typename VALUE, int BASE>
302 class StringPieceToNumberTraits
303 : public BaseIteratorRangeToNumberTraits<StringPiece::const_iterator,
304 VALUE,
305 BASE> {
306 };
307
308 template <typename VALUE>
StringToIntImpl(const StringPiece & input,VALUE * output)309 bool StringToIntImpl(const StringPiece& input, VALUE* output) {
310 return IteratorRangeToNumber<StringPieceToNumberTraits<VALUE, 10> >::Invoke(
311 input.begin(), input.end(), output);
312 }
313
314 template <typename VALUE, int BASE>
315 class StringPiece16ToNumberTraits
316 : public BaseIteratorRangeToNumberTraits<StringPiece16::const_iterator,
317 VALUE,
318 BASE> {
319 };
320
321 template <typename VALUE>
String16ToIntImpl(const StringPiece16 & input,VALUE * output)322 bool String16ToIntImpl(const StringPiece16& input, VALUE* output) {
323 return IteratorRangeToNumber<StringPiece16ToNumberTraits<VALUE, 10> >::Invoke(
324 input.begin(), input.end(), output);
325 }
326
327 } // namespace
328
IntToString(int value)329 std::string IntToString(int value) {
330 return IntToStringT<std::string, int>::IntToString(value);
331 }
332
IntToString16(int value)333 string16 IntToString16(int value) {
334 return IntToStringT<string16, int>::IntToString(value);
335 }
336
UintToString(unsigned int value)337 std::string UintToString(unsigned int value) {
338 return IntToStringT<std::string, unsigned int>::IntToString(value);
339 }
340
UintToString16(unsigned int value)341 string16 UintToString16(unsigned int value) {
342 return IntToStringT<string16, unsigned int>::IntToString(value);
343 }
344
Int64ToString(int64_t value)345 std::string Int64ToString(int64_t value) {
346 return IntToStringT<std::string, int64_t>::IntToString(value);
347 }
348
Int64ToString16(int64_t value)349 string16 Int64ToString16(int64_t value) {
350 return IntToStringT<string16, int64_t>::IntToString(value);
351 }
352
Uint64ToString(uint64_t value)353 std::string Uint64ToString(uint64_t value) {
354 return IntToStringT<std::string, uint64_t>::IntToString(value);
355 }
356
Uint64ToString16(uint64_t value)357 string16 Uint64ToString16(uint64_t value) {
358 return IntToStringT<string16, uint64_t>::IntToString(value);
359 }
360
SizeTToString(size_t value)361 std::string SizeTToString(size_t value) {
362 return IntToStringT<std::string, size_t>::IntToString(value);
363 }
364
SizeTToString16(size_t value)365 string16 SizeTToString16(size_t value) {
366 return IntToStringT<string16, size_t>::IntToString(value);
367 }
368
DoubleToString(double value)369 std::string DoubleToString(double value) {
370 auto ret = std::to_string(value);
371 // If this returned an integer, don't do anything.
372 if (ret.find('.') == std::string::npos) {
373 return ret;
374 }
375 // Otherwise, it has an annoying tendency to leave trailing zeros.
376 size_t len = ret.size();
377 while (len >= 2 && ret[len - 1] == '0' && ret[len - 2] != '.') {
378 --len;
379 }
380 ret.erase(len);
381 return ret;
382 }
383
StringToInt(const StringPiece & input,int * output)384 bool StringToInt(const StringPiece& input, int* output) {
385 return StringToIntImpl(input, output);
386 }
387
StringToInt(const StringPiece16 & input,int * output)388 bool StringToInt(const StringPiece16& input, int* output) {
389 return String16ToIntImpl(input, output);
390 }
391
StringToUint(const StringPiece & input,unsigned * output)392 bool StringToUint(const StringPiece& input, unsigned* output) {
393 return StringToIntImpl(input, output);
394 }
395
StringToUint(const StringPiece16 & input,unsigned * output)396 bool StringToUint(const StringPiece16& input, unsigned* output) {
397 return String16ToIntImpl(input, output);
398 }
399
StringToInt64(const StringPiece & input,int64_t * output)400 bool StringToInt64(const StringPiece& input, int64_t* output) {
401 return StringToIntImpl(input, output);
402 }
403
StringToInt64(const StringPiece16 & input,int64_t * output)404 bool StringToInt64(const StringPiece16& input, int64_t* output) {
405 return String16ToIntImpl(input, output);
406 }
407
StringToUint64(const StringPiece & input,uint64_t * output)408 bool StringToUint64(const StringPiece& input, uint64_t* output) {
409 return StringToIntImpl(input, output);
410 }
411
StringToUint64(const StringPiece16 & input,uint64_t * output)412 bool StringToUint64(const StringPiece16& input, uint64_t* output) {
413 return String16ToIntImpl(input, output);
414 }
415
StringToSizeT(const StringPiece & input,size_t * output)416 bool StringToSizeT(const StringPiece& input, size_t* output) {
417 return StringToIntImpl(input, output);
418 }
419
StringToSizeT(const StringPiece16 & input,size_t * output)420 bool StringToSizeT(const StringPiece16& input, size_t* output) {
421 return String16ToIntImpl(input, output);
422 }
423
StringToDouble(const std::string & input,double * output)424 bool StringToDouble(const std::string& input, double* output) {
425 char* endptr = nullptr;
426 *output = strtod(input.c_str(), &endptr);
427
428 // Cases to return false:
429 // - If the input string is empty, there was nothing to parse.
430 // - If endptr does not point to the end of the string, there are either
431 // characters remaining in the string after a parsed number, or the string
432 // does not begin with a parseable number. endptr is compared to the
433 // expected end given the string's stated length to correctly catch cases
434 // where the string contains embedded NUL characters.
435 // - If the first character is a space, there was leading whitespace
436 return !input.empty() &&
437 input.c_str() + input.length() == endptr &&
438 !isspace(input[0]) &&
439 *output != std::numeric_limits<double>::infinity() &&
440 *output != -std::numeric_limits<double>::infinity();
441 }
442
443 // Note: if you need to add String16ToDouble, first ask yourself if it's
444 // really necessary. If it is, probably the best implementation here is to
445 // convert to 8-bit and then use the 8-bit version.
446
447 // Note: if you need to add an iterator range version of StringToDouble, first
448 // ask yourself if it's really necessary. If it is, probably the best
449 // implementation here is to instantiate a string and use the string version.
450
HexEncode(const void * bytes,size_t size)451 std::string HexEncode(const void* bytes, size_t size) {
452 static const char kHexChars[] = "0123456789ABCDEF";
453
454 // Each input byte creates two output hex characters.
455 std::string ret(size * 2, '\0');
456
457 for (size_t i = 0; i < size; ++i) {
458 char b = reinterpret_cast<const char*>(bytes)[i];
459 ret[(i * 2)] = kHexChars[(b >> 4) & 0xf];
460 ret[(i * 2) + 1] = kHexChars[b & 0xf];
461 }
462 return ret;
463 }
464
HexStringToInt(const StringPiece & input,int * output)465 bool HexStringToInt(const StringPiece& input, int* output) {
466 return IteratorRangeToNumber<HexIteratorRangeToIntTraits>::Invoke(
467 input.begin(), input.end(), output);
468 }
469
HexStringToUInt(const StringPiece & input,uint32_t * output)470 bool HexStringToUInt(const StringPiece& input, uint32_t* output) {
471 return IteratorRangeToNumber<HexIteratorRangeToUIntTraits>::Invoke(
472 input.begin(), input.end(), output);
473 }
474
HexStringToInt64(const StringPiece & input,int64_t * output)475 bool HexStringToInt64(const StringPiece& input, int64_t* output) {
476 return IteratorRangeToNumber<HexIteratorRangeToInt64Traits>::Invoke(
477 input.begin(), input.end(), output);
478 }
479
HexStringToUInt64(const StringPiece & input,uint64_t * output)480 bool HexStringToUInt64(const StringPiece& input, uint64_t* output) {
481 return IteratorRangeToNumber<HexIteratorRangeToUInt64Traits>::Invoke(
482 input.begin(), input.end(), output);
483 }
484
HexStringToBytes(const std::string & input,std::vector<uint8_t> * output)485 bool HexStringToBytes(const std::string& input, std::vector<uint8_t>* output) {
486 return HexStringToBytesT(input, output);
487 }
488
489 } // namespace base
490