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src/base/strings/string_split.cc
260 строк
9 KB
Nico Weber
Move source files into src/, and move tools/gn/misc to the toplevel.
07 ноя 2019, 20:39
07 ноя 2019, 20:39
3f6100c
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// Copyright (c) 2012 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "base/strings/string_split.h" #include <stddef.h> #include "base/logging.h" #include "base/strings/string_util.h" #include "base/third_party/icu/icu_utf.h" namespace base { namespace { // Returns either the ASCII or UTF-16 whitespace. template <typename char_type> std::basic_string_view<char_type> WhitespaceForType(); template <> std::u16string_view WhitespaceForType<char16_t>() { return kWhitespaceUTF16; } template <> std::string_view WhitespaceForType<char>() { return kWhitespaceASCII; } // Optimize the single-character case to call find() on the string instead, // since this is the common case and can be made faster. This could have been // done with template specialization too, but would have been less clear. // // There is no corresponding FindFirstNotOf because std::string_view already // implements these different versions that do the optimized searching. size_t FindFirstOf(std::string_view piece, char c, size_t pos) { return piece.find(c, pos); } size_t FindFirstOf(std::u16string_view piece, char16_t c, size_t pos) { return piece.find(c, pos); } size_t FindFirstOf(std::string_view piece, std::string_view one_of, size_t pos) { return piece.find_first_of(one_of, pos); } size_t FindFirstOf(std::u16string_view piece, std::u16string_view one_of, size_t pos) { return piece.find_first_of(one_of, pos); } // General string splitter template. Can take 8- or 16-bit input, can produce // the corresponding string or std::string_view output, and can take single- or // multiple-character delimiters. // // DelimiterType is either a character (Str::value_type) or a string piece of // multiple characters (std::basic_string_view<char>). std::string_view has a // version of find for both of these cases, and the single-character version is // the most common and can be implemented faster, which is why this is a // template. template <typename char_type, typename OutputStringType, typename DelimiterType> static std::vector<OutputStringType> SplitStringT( std::basic_string_view<char_type> str, DelimiterType delimiter, WhitespaceHandling whitespace, SplitResult result_type) { std::vector<OutputStringType> result; if (str.empty()) return result; using ViewType = std::basic_string_view<char_type>; size_t start = 0; while (start != ViewType::npos) { size_t end = FindFirstOf(str, delimiter, start); ViewType piece; if (end == ViewType::npos) { piece = str.substr(start); start = ViewType::npos; } else { piece = str.substr(start, end - start); start = end + 1; } if (whitespace == TRIM_WHITESPACE) piece = TrimString(piece, WhitespaceForType<char_type>(), TRIM_ALL); if (result_type == SPLIT_WANT_ALL || !piece.empty()) result.emplace_back(piece); } return result; } bool AppendStringKeyValue(std::string_view input, char delimiter, StringPairs* result) { // Always append a new item regardless of success (it might be empty). The // below code will copy the strings directly into the result pair. result->resize(result->size() + 1); auto& result_pair = result->back(); // Find the delimiter. size_t end_key_pos = input.find_first_of(delimiter); if (end_key_pos == std::string::npos) { return false; // No delimiter. } result_pair.first.assign(input.substr(0, end_key_pos)); // Find the value string. std::string_view remains = input.substr(end_key_pos, input.size() - end_key_pos); size_t begin_value_pos = remains.find_first_not_of(delimiter); if (begin_value_pos == std::string_view::npos) { return false; // No value. } result_pair.second.assign( remains.substr(begin_value_pos, remains.size() - begin_value_pos)); return true; } template <typename char_type, typename OutputStringType> void SplitStringUsingSubstrT(std::basic_string_view<char_type> input, std::basic_string_view<char_type> delimiter, WhitespaceHandling whitespace, SplitResult result_type, std::vector<OutputStringType>* result) { using Piece = std::basic_string_view<char_type>; using size_type = typename Piece::size_type; result->clear(); for (size_type begin_index = 0, end_index = 0; end_index != Piece::npos; begin_index = end_index + delimiter.size()) { end_index = input.find(delimiter, begin_index); Piece term = end_index == Piece::npos ? input.substr(begin_index) : input.substr(begin_index, end_index - begin_index); if (whitespace == TRIM_WHITESPACE) term = TrimString(term, WhitespaceForType<char_type>(), TRIM_ALL); if (result_type == SPLIT_WANT_ALL || !term.empty()) result->emplace_back(term); } } } // namespace std::vector<std::string> SplitString(std::string_view input, std::string_view separators, WhitespaceHandling whitespace, SplitResult result_type) { if (separators.size() == 1) { return SplitStringT<char, std::string, char>(input, separators[0], whitespace, result_type); } return SplitStringT<char, std::string, std::string_view>( input, separators, whitespace, result_type); } std::vector<std::u16string> SplitString(std::u16string_view input, std::u16string_view separators, WhitespaceHandling whitespace, SplitResult result_type) { if (separators.size() == 1) { return SplitStringT<char16_t, std::u16string, char16_t>( input, separators[0], whitespace, result_type); } return SplitStringT<char16_t, std::u16string, std::u16string_view>( input, separators, whitespace, result_type); } std::vector<std::string_view> SplitStringPiece(std::string_view input, std::string_view separators, WhitespaceHandling whitespace, SplitResult result_type) { if (separators.size() == 1) { return SplitStringT<char, std::string_view, char>(input, separators[0], whitespace, result_type); } return SplitStringT<char, std::string_view, std::string_view>( input, separators, whitespace, result_type); } std::vector<std::u16string_view> SplitStringPiece( std::u16string_view input, std::u16string_view separators, WhitespaceHandling whitespace, SplitResult result_type) { if (separators.size() == 1) { return SplitStringT<char16_t, std::u16string_view, char16_t>( input, separators[0], whitespace, result_type); } return SplitStringT<char16_t, std::u16string_view, std::u16string_view>( input, separators, whitespace, result_type); } bool SplitStringIntoKeyValuePairs(std::string_view input, char key_value_delimiter, char key_value_pair_delimiter, StringPairs* key_value_pairs) { key_value_pairs->clear(); std::vector<std::string_view> pairs = SplitStringPiece(input, std::string(1, key_value_pair_delimiter), TRIM_WHITESPACE, SPLIT_WANT_NONEMPTY); key_value_pairs->reserve(pairs.size()); bool success = true; for (const std::string_view& pair : pairs) { if (!AppendStringKeyValue(pair, key_value_delimiter, key_value_pairs)) { // Don't return here, to allow for pairs without associated // value or key; just record that the split failed. success = false; } } return success; } std::vector<std::u16string> SplitStringUsingSubstr( std::u16string_view input, std::u16string_view delimiter, WhitespaceHandling whitespace, SplitResult result_type) { std::vector<std::u16string> result; SplitStringUsingSubstrT(input, delimiter, whitespace, result_type, &result); return result; } std::vector<std::string> SplitStringUsingSubstr(std::string_view input, std::string_view delimiter, WhitespaceHandling whitespace, SplitResult result_type) { std::vector<std::string> result; SplitStringUsingSubstrT(input, delimiter, whitespace, result_type, &result); return result; } std::vector<std::u16string_view> SplitStringPieceUsingSubstr( std::u16string_view input, std::u16string_view delimiter, WhitespaceHandling whitespace, SplitResult result_type) { std::vector<std::u16string_view> result; SplitStringUsingSubstrT(input, delimiter, whitespace, result_type, &result); return result; } std::vector<std::string_view> SplitStringPieceUsingSubstr( std::string_view input, std::string_view delimiter, WhitespaceHandling whitespace, SplitResult result_type) { std::vector<std::string_view> result; SplitStringUsingSubstrT(input, delimiter, whitespace, result_type, &result); return result; } } // namespace base