mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-11-18 13:42:02 +00:00
432 lines
11 KiB
C++
432 lines
11 KiB
C++
#include <iostream>
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#include <Poco/Exception.h>
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#include <DB/Common/OptimizedRegularExpression.h>
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#define MIN_LENGTH_FOR_STRSTR 3
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#define MAX_SUBPATTERNS 5
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template <bool b>
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void OptimizedRegularExpressionImpl<b>::analyze(
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const std::string & regexp,
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std::string & required_substring,
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bool & is_trivial,
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bool & required_substring_is_prefix)
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{
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/** Выражение тривиально, если в нём все метасимволы эскейплены.
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* Безальтернативная строка - это
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* строка вне скобок,
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* в которой все метасимволы эскейплены,
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* а также если вне скобок нет '|',
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* а также избегаются подстроки вида http:// или www.
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*/
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const char * begin = regexp.data();
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const char * pos = begin;
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const char * end = regexp.data() + regexp.size();
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int depth = 0;
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is_trivial = true;
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required_substring_is_prefix = false;
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required_substring.clear();
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bool has_alternative_on_depth_0 = false;
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/// Подстрока с позицией.
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typedef std::pair<std::string, size_t> Substring;
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typedef std::vector<Substring> Substrings;
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Substrings trivial_substrings(1);
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Substring * last_substring = &trivial_substrings.back();
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bool in_curly_braces = false;
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bool in_square_braces = false;
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while (pos != end)
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{
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switch (*pos)
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{
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case '\0':
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pos = end;
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break;
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case '\\':
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{
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++pos;
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if (pos == end)
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break;
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switch (*pos)
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{
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case '|': case '(': case ')': case '^': case '$': case '.': case '[': case '?': case '*': case '+': case '{':
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if (depth == 0 && !in_curly_braces && !in_square_braces)
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{
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if (last_substring->first.empty())
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last_substring->second = pos - begin;
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last_substring->first.push_back(*pos);
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}
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break;
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default:
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/// все остальные escape-последовательности не поддерживаем
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is_trivial = false;
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if (!last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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break;
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}
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++pos;
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break;
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}
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case '|':
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if (depth == 0)
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has_alternative_on_depth_0 = true;
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is_trivial = false;
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if (!in_square_braces && !last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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++pos;
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break;
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case '(':
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if (!in_square_braces)
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{
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++depth;
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is_trivial = false;
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if (!last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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}
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++pos;
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break;
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case '[':
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in_square_braces = true;
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++depth;
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is_trivial = false;
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if (!last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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++pos;
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break;
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case ']':
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if (!in_square_braces)
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goto ordinary;
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in_square_braces = false;
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--depth;
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is_trivial = false;
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if (!last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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++pos;
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break;
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case ')':
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if (!in_square_braces)
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{
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--depth;
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is_trivial = false;
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if (!last_substring->first.empty())
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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}
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++pos;
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break;
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case '^': case '$': case '.': case '+':
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is_trivial = false;
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if (!last_substring->first.empty() && !in_square_braces)
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{
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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++pos;
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break;
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/// Квантификаторы, допускающие нулевое количество.
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case '{':
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in_curly_braces = true;
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case '?': case '*':
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is_trivial = false;
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if (!last_substring->first.empty() && !in_square_braces)
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{
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last_substring->first.resize(last_substring->first.size() - 1);
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trivial_substrings.resize(trivial_substrings.size() + 1);
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last_substring = &trivial_substrings.back();
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}
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++pos;
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break;
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case '}':
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if (!in_curly_braces)
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goto ordinary;
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in_curly_braces = false;
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++pos;
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break;
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ordinary: /// Обычный, не заэскейпленный символ.
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default:
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if (depth == 0 && !in_curly_braces && !in_square_braces)
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{
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if (last_substring->first.empty())
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last_substring->second = pos - begin;
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last_substring->first.push_back(*pos);
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}
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++pos;
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break;
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}
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}
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if (last_substring && last_substring->first.empty())
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trivial_substrings.pop_back();
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if (!is_trivial)
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{
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if (!has_alternative_on_depth_0)
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{
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/** Выберем безальтернативную подстроку максимальной длины, среди префиксов,
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* или безальтернативную подстроку максимальной длины.
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*/
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size_t max_length = 0;
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Substrings::const_iterator candidate_it = trivial_substrings.begin();
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for (Substrings::const_iterator it = trivial_substrings.begin(); it != trivial_substrings.end(); ++it)
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{
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if (((it->second == 0 && candidate_it->second != 0)
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|| ((it->second == 0) == (candidate_it->second == 0) && it->first.size() > max_length))
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/// Тюнинг для предметной области
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&& (it->first.size() > strlen("://") || strncmp(it->first.data(), "://", strlen("://")))
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&& (it->first.size() > strlen("http://") || strncmp(it->first.data(), "http", strlen("http")))
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&& (it->first.size() > strlen("www.") || strncmp(it->first.data(), "www", strlen("www")))
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&& (it->first.size() > strlen("Windows ") || strncmp(it->first.data(), "Windows ", strlen("Windows "))))
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{
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max_length = it->first.size();
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candidate_it = it;
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}
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}
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if (max_length >= MIN_LENGTH_FOR_STRSTR)
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{
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required_substring = candidate_it->first;
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required_substring_is_prefix = candidate_it->second == 0;
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}
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}
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}
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else
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{
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required_substring = trivial_substrings.front().first;
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required_substring_is_prefix = trivial_substrings.front().second == 0;
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}
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/* std::cerr
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<< "regexp: " << regexp
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<< ", is_trivial: " << is_trivial
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<< ", required_substring: " << required_substring
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<< ", required_substring_is_prefix: " << required_substring_is_prefix
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<< std::endl;*/
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}
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template <bool b>
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OptimizedRegularExpressionImpl<b>::OptimizedRegularExpressionImpl(const std::string & regexp_, int options)
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{
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analyze(regexp_, required_substring, is_trivial, required_substring_is_prefix);
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/// Поддерживаются 3 опции
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if (options & (~(RE_CASELESS | RE_NO_CAPTURE | RE_DOT_NL)))
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throw Poco::Exception("OptimizedRegularExpression: Unsupported option.");
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is_case_insensitive = options & RE_CASELESS;
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bool is_no_capture = options & RE_NO_CAPTURE;
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bool is_dot_nl = options & RE_DOT_NL;
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number_of_subpatterns = 0;
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if (!is_trivial)
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{
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/// Скомпилируем регулярное выражение re2.
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typename RegexType::Options options;
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if (is_case_insensitive)
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options.set_case_sensitive(false);
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if (is_dot_nl)
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options.set_dot_nl(true);
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re2.reset(new RegexType(regexp_, options));
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if (!re2->ok())
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throw Poco::Exception("OptimizedRegularExpression: cannot compile re2: " + regexp_ + ", error: " + re2->error());
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if (!is_no_capture)
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{
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number_of_subpatterns = re2->NumberOfCapturingGroups();
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if (number_of_subpatterns > MAX_SUBPATTERNS)
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throw Poco::Exception("OptimizedRegularExpression: too many subpatterns in regexp: " + regexp_);
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}
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}
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}
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template <bool b>
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bool OptimizedRegularExpressionImpl<b>::match(const char * subject, size_t subject_size) const
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{
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if (is_trivial)
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{
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if (is_case_insensitive)
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return nullptr != strcasestr(subject, required_substring.data());
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else
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return nullptr != strstr(subject, required_substring.data());
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}
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else
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{
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if (!required_substring.empty())
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{
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const char * pos;
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if (is_case_insensitive)
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pos = strcasestr(subject, required_substring.data());
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else
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pos = strstr(subject, required_substring.data());
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if (nullptr == pos)
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return 0;
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}
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return re2->Match(StringPieceType(subject, subject_size), 0, subject_size, RegexType::UNANCHORED, nullptr, 0);
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}
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}
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template <bool b>
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bool OptimizedRegularExpressionImpl<b>::match(const char * subject, size_t subject_size, Match & match) const
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{
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if (is_trivial)
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{
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const char * pos;
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if (is_case_insensitive)
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pos = strcasestr(subject, required_substring.data());
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else
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pos = strstr(subject, required_substring.data());
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if (pos == nullptr)
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return 0;
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else
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{
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match.offset = pos - subject;
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match.length = required_substring.size();
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return 1;
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}
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}
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else
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{
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if (!required_substring.empty())
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{
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const char * pos;
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if (is_case_insensitive)
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pos = strcasestr(subject, required_substring.data());
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else
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pos = strstr(subject, required_substring.data());
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if (nullptr == pos)
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return 0;
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}
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StringPieceType piece;
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if (!RegexType::PartialMatch(StringPieceType(subject, subject_size), *re2, &piece))
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return 0;
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else
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{
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match.offset = piece.data() - subject;
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match.length = piece.length();
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return 1;
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}
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}
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}
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template <bool b>
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unsigned OptimizedRegularExpressionImpl<b>::match(const char * subject, size_t subject_size, MatchVec & matches, unsigned limit) const
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{
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matches.clear();
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if (limit == 0)
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return 0;
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if (limit > number_of_subpatterns + 1)
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limit = number_of_subpatterns + 1;
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if (is_trivial)
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{
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const char * pos;
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if (is_case_insensitive)
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pos = strcasestr(subject, required_substring.data());
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else
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pos = strstr(subject, required_substring.data());
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if (pos == nullptr)
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return 0;
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else
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{
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Match match;
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match.offset = pos - subject;
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match.length = required_substring.size();
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matches.push_back(match);
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return 1;
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}
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}
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else
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{
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if (!required_substring.empty())
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{
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const char * pos;
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if (is_case_insensitive)
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pos = strcasestr(subject, required_substring.data());
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else
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pos = strstr(subject, required_substring.data());
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if (nullptr == pos)
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return 0;
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}
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StringPieceType pieces[MAX_SUBPATTERNS];
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if (!re2->Match(StringPieceType(subject, subject_size), 0, subject_size, RegexType::UNANCHORED, pieces, limit))
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return 0;
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else
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{
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matches.resize(limit);
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for (size_t i = 0; i < limit; ++i)
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{
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if (pieces[i] != nullptr)
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{
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matches[i].offset = pieces[i].data() - subject;
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matches[i].length = pieces[i].length();
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}
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else
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{
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matches[i].offset = std::string::npos;
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matches[i].length = 0;
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}
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}
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return limit;
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}
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}
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}
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#undef MIN_LENGTH_FOR_STRSTR
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#undef MAX_SUBPATTERNS
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