| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337 | ///////////////////////////////////////////////////////////////////////////////// dynamic.hpp////  Copyright 2008 Eric Niebler. Distributed under the Boost//  Software License, Version 1.0. (See accompanying file//  LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)#ifndef BOOST_XPRESSIVE_DETAIL_DYNAMIC_DYNAMIC_HPP_EAN_10_04_2005#define BOOST_XPRESSIVE_DETAIL_DYNAMIC_DYNAMIC_HPP_EAN_10_04_2005// MS compatible compilers support #pragma once#if defined(_MSC_VER)# pragma once#endif#include <vector>#include <utility>#include <algorithm>#include <boost/assert.hpp>#include <boost/mpl/int.hpp>#include <boost/mpl/assert.hpp>#include <boost/throw_exception.hpp>#include <boost/type_traits/is_same.hpp>#include <boost/xpressive/detail/detail_fwd.hpp>#include <boost/xpressive/detail/core/quant_style.hpp>#include <boost/xpressive/detail/dynamic/matchable.hpp>#include <boost/xpressive/detail/dynamic/sequence.hpp>#include <boost/xpressive/detail/core/icase.hpp>namespace boost { namespace xpressive { namespace detail{///////////////////////////////////////////////////////////////////////////////// invalid_xpressiontemplate<typename BidiIter>struct invalid_xpression  : matchable_ex<BidiIter>{    invalid_xpression()      : matchable_ex<BidiIter>()    {        intrusive_ptr_add_ref(this); // keep alive forever    }    bool match(match_state<BidiIter> &) const    {        BOOST_ASSERT(false);        return false;    }};///////////////////////////////////////////////////////////////////////////////// get_invalid_xpressiontemplate<typename BidiIter>inline shared_matchable<BidiIter> const &get_invalid_xpression(){    static invalid_xpression<BidiIter> const invalid_xpr;    static intrusive_ptr<matchable_ex<BidiIter> const> const invalid_ptr(&invalid_xpr);    static shared_matchable<BidiIter> const invalid_matchable(invalid_ptr);    return invalid_matchable;}///////////////////////////////////////////////////////////////////////////////// dynamic_xpressiontemplate<typename Matcher, typename BidiIter>struct dynamic_xpression  : Matcher  , matchable_ex<BidiIter>{    typedef typename iterator_value<BidiIter>::type char_type;    dynamic_xpression(Matcher const &matcher = Matcher())      : Matcher(matcher)      , next_(get_invalid_xpression<BidiIter>())    {    }    virtual bool match(match_state<BidiIter> &state) const    {        return this->Matcher::match(state, *this->next_.matchable());    }    virtual void link(xpression_linker<char_type> &linker) const    {        linker.accept(*static_cast<Matcher const *>(this), this->next_.matchable().get());        this->next_.link(linker);    }    virtual void peek(xpression_peeker<char_type> &peeker) const    {        this->peek_next_(peeker.accept(*static_cast<Matcher const *>(this)), peeker);    }    virtual void repeat(quant_spec const &spec, sequence<BidiIter> &seq) const    {        this->repeat_(spec, seq, quant_type<Matcher>(), is_same<Matcher, mark_begin_matcher>());    }private:    friend struct sequence<BidiIter>;    void peek_next_(mpl::true_, xpression_peeker<char_type> &peeker) const    {        this->next_.peek(peeker);    }    void peek_next_(mpl::false_, xpression_peeker<char_type> &) const    {        // no-op    }    void repeat_(quant_spec const &spec, sequence<BidiIter> &seq, mpl::int_<quant_none>, mpl::false_) const    {        if(quant_none == seq.quant())        {            BOOST_THROW_EXCEPTION(                regex_error(regex_constants::error_badrepeat, "expression cannot be quantified")            );        }        else        {            this->repeat_(spec, seq, mpl::int_<quant_variable_width>(), mpl::false_());        }    }    void repeat_(quant_spec const &spec, sequence<BidiIter> &seq, mpl::int_<quant_fixed_width>, mpl::false_) const    {        if(this->next_ == get_invalid_xpression<BidiIter>())        {            make_simple_repeat(spec, seq, matcher_wrapper<Matcher>(*this));        }        else        {            this->repeat_(spec, seq, mpl::int_<quant_variable_width>(), mpl::false_());        }    }    void repeat_(quant_spec const &spec, sequence<BidiIter> &seq, mpl::int_<quant_variable_width>, mpl::false_) const    {        if(!is_unknown(seq.width()) && seq.pure())        {            make_simple_repeat(spec, seq);        }        else        {            make_repeat(spec, seq);        }    }    void repeat_(quant_spec const &spec, sequence<BidiIter> &seq, mpl::int_<quant_fixed_width>, mpl::true_) const    {        make_repeat(spec, seq, this->mark_number_);    }    shared_matchable<BidiIter> next_;};///////////////////////////////////////////////////////////////////////////////// make_dynamictemplate<typename BidiIter, typename Matcher>inline sequence<BidiIter> make_dynamic(Matcher const &matcher){    typedef dynamic_xpression<Matcher, BidiIter> xpression_type;    intrusive_ptr<xpression_type> xpr(new xpression_type(matcher));    return sequence<BidiIter>(xpr);}///////////////////////////////////////////////////////////////////////////////// alternates_vectortemplate<typename BidiIter>struct alternates_vector  : std::vector<shared_matchable<BidiIter> >{    BOOST_STATIC_CONSTANT(std::size_t, width = unknown_width::value);    BOOST_STATIC_CONSTANT(bool, pure = false);};///////////////////////////////////////////////////////////////////////////////// matcher_wrappertemplate<typename Matcher>struct matcher_wrapper  : Matcher{    matcher_wrapper(Matcher const &matcher = Matcher())      : Matcher(matcher)    {    }    template<typename BidiIter>    bool match(match_state<BidiIter> &state) const    {        return this->Matcher::match(state, matcher_wrapper<true_matcher>());    }    template<typename Char>    void link(xpression_linker<Char> &linker) const    {        linker.accept(*static_cast<Matcher const *>(this), 0);    }    template<typename Char>    void peek(xpression_peeker<Char> &peeker) const    {        peeker.accept(*static_cast<Matcher const *>(this));    }};//////////////////////////////////////////////////////////////////////////// make_simple_repeattemplate<typename BidiIter, typename Xpr>inline voidmake_simple_repeat(quant_spec const &spec, sequence<BidiIter> &seq, Xpr const &xpr){    if(spec.greedy_)    {        simple_repeat_matcher<Xpr, mpl::true_> quant(xpr, spec.min_, spec.max_, seq.width().value());        seq = make_dynamic<BidiIter>(quant);    }    else    {        simple_repeat_matcher<Xpr, mpl::false_> quant(xpr, spec.min_, spec.max_, seq.width().value());        seq = make_dynamic<BidiIter>(quant);    }}//////////////////////////////////////////////////////////////////////////// make_simple_repeattemplate<typename BidiIter>inline voidmake_simple_repeat(quant_spec const &spec, sequence<BidiIter> &seq){    seq += make_dynamic<BidiIter>(true_matcher());    make_simple_repeat(spec, seq, seq.xpr());}//////////////////////////////////////////////////////////////////////////// make_optionaltemplate<typename BidiIter>inline voidmake_optional(quant_spec const &spec, sequence<BidiIter> &seq){    typedef shared_matchable<BidiIter> xpr_type;    seq += make_dynamic<BidiIter>(alternate_end_matcher());    if(spec.greedy_)    {        optional_matcher<xpr_type, mpl::true_> opt(seq.xpr());        seq = make_dynamic<BidiIter>(opt);    }    else    {        optional_matcher<xpr_type, mpl::false_> opt(seq.xpr());        seq = make_dynamic<BidiIter>(opt);    }}//////////////////////////////////////////////////////////////////////////// make_optionaltemplate<typename BidiIter>inline voidmake_optional(quant_spec const &spec, sequence<BidiIter> &seq, int mark_nbr){    typedef shared_matchable<BidiIter> xpr_type;    seq += make_dynamic<BidiIter>(alternate_end_matcher());    if(spec.greedy_)    {        optional_mark_matcher<xpr_type, mpl::true_> opt(seq.xpr(), mark_nbr);        seq = make_dynamic<BidiIter>(opt);    }    else    {        optional_mark_matcher<xpr_type, mpl::false_> opt(seq.xpr(), mark_nbr);        seq = make_dynamic<BidiIter>(opt);    }}//////////////////////////////////////////////////////////////////////////// make_repeattemplate<typename BidiIter>inline voidmake_repeat(quant_spec const &spec, sequence<BidiIter> &seq){    // only bother creating a repeater if max is greater than one    if(1 < spec.max_)    {        // create a hidden mark so this expression can be quantified        int mark_nbr = -static_cast<int>(++*spec.hidden_mark_count_);        seq = make_dynamic<BidiIter>(mark_begin_matcher(mark_nbr)) + seq            + make_dynamic<BidiIter>(mark_end_matcher(mark_nbr));        make_repeat(spec, seq, mark_nbr);        return;    }    // if min is 0, the repeat must be made optional    if(0 == spec.min_)    {        make_optional(spec, seq);    }}//////////////////////////////////////////////////////////////////////////// make_repeattemplate<typename BidiIter>inline voidmake_repeat(quant_spec const &spec, sequence<BidiIter> &seq, int mark_nbr){    BOOST_ASSERT(spec.max_); // we should never get here if max is 0    // only bother creating a repeater if max is greater than one    if(1 < spec.max_)    {        // TODO: statically bind the repeat matchers to the mark matchers for better perf        unsigned int min = spec.min_ ? spec.min_ : 1U;        repeat_begin_matcher repeat_begin(mark_nbr);        if(spec.greedy_)        {            repeat_end_matcher<mpl::true_> repeat_end(mark_nbr, min, spec.max_);            seq = make_dynamic<BidiIter>(repeat_begin) + seq                + make_dynamic<BidiIter>(repeat_end);        }        else        {            repeat_end_matcher<mpl::false_> repeat_end(mark_nbr, min, spec.max_);            seq = make_dynamic<BidiIter>(repeat_begin) + seq                + make_dynamic<BidiIter>(repeat_end);        }    }    // if min is 0, the repeat must be made optional    if(0 == spec.min_)    {        make_optional(spec, seq, mark_nbr);    }}}}} // namespace boost::xpressive::detail#endif
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