180 lines
7.7 KiB
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180 lines
7.7 KiB
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<HTML>
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<HEAD>
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<TITLE>find_end()</TITLE>
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<LINK REL=StyleSheet HREF="../rw.css" TYPE="text/css" TITLE="Apache stdcxx Stylesheet"></HEAD>
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<BODY BGCOLOR=#FFFFFF>
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<A HREF="find.html"><IMG SRC="images/bprev.gif" WIDTH=20 HEIGHT=21 ALT="Previous file" BORDER=O></A><A HREF="noframes.html"><IMG SRC="images/btop.gif" WIDTH=56 HEIGHT=21 ALT="Top of Document" BORDER=O></A><A HREF="booktoc.html"><IMG SRC="images/btoc.gif" WIDTH=56 HEIGHT=21 ALT="Contents" BORDER=O></A><A HREF="tindex.html"><IMG SRC="images/bindex.gif" WIDTH=56 HEIGHT=21 ALT="Index page" BORDER=O></A><A HREF="find-first-of.html"><IMG SRC="images/bnext.gif" WIDTH=25 HEIGHT=21 ALT="Next file" BORDER=O></A><DIV CLASS="DOCUMENTNAME"><B>Apache C++ Standard Library Reference Guide</B></DIV>
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<H2>find_end()</H2>
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<P><B>Library:</B> <A HREF="2-9.html">Algorithms</A></P>
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<PRE><HR><B><I>Function</I></B><HR></PRE>
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<UL>
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<LI><A HREF="#sec1">Local Index</A></LI>
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<LI><A HREF="#sec2">Summary</A></LI>
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<LI><A HREF="#sec3">Synopsis</A></LI>
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<LI><A HREF="#sec4">Description</A></LI>
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<LI><A HREF="#sec5">Complexity</A></LI>
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<LI><A HREF="#sec6">Example</A></LI>
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<LI><A HREF="#sec7">See Also</A></LI>
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<LI><A HREF="#sec8">Standards Conformance</A></LI>
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</UL>
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<A NAME="sec1"><H3>Local Index</H3></A>
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No Entries
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<A NAME="sec2"><H3>Summary</H3></A>
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<P>Algorithm that finds the last occurrence of a sub-sequence in a sequence</P>
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<A NAME="sec3"><H3>Synopsis</H3></A>
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<PRE>#include <algorithm>
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namespace std {
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template <class ForwardIterator1, class ForwardIterator2>
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ForwardIterator1 find_end(ForwardIterator1 start1,
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ForwardIterator1 finish1,
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ForwardIterator2 start2,
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ForwardIterator2 finish2);
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template <class Forward Iterator1, class ForwardIterator2,
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class BinaryPredicate>
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ForwardIterator1 find_end(ForwardIterator1 start1,
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ForwardIterator1 finish1,
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ForwardIterator2 start2,
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ForwardIterator2 finish2,
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BinaryPredicate binary_pred);
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}
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</PRE>
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<A NAME="sec4"><H3>Description</H3></A>
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<P>The <SAMP>find_end()</SAMP> algorithm finds the last occurrence of a sub-sequence, indicated by <SAMP>[start2, finish2)</SAMP>, in a sequence, <SAMP>[start1,finish1)</SAMP>. The algorithm returns an iterator pointing to the first element of the found sub-sequence, or <SAMP>finish1</SAMP> if no match is found.</P>
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<P>More precisely, the <SAMP>find_end()</SAMP> algorithm returns the last iterator <SAMP>i</SAMP> in the range <SAMP>[start1, finish1 - (finish2-start2))</SAMP> such that for any non-negative integer <SAMP>n < (finish2-start2)</SAMP>, the following corresponding conditions hold: </P>
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<UL><PRE>*(i+n) == *(start2+n),
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binary_pred(*(i+n),*(start2+n)) == true.
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</PRE></UL>
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<P>Or returns <SAMP>finish1</SAMP> if no such iterator is found.</P>
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<P>Two versions of the algorithm exist. The first uses the equality operator as the default binary predicate, and the second allows you to specify a binary predicate.</P>
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<A NAME="sec5"><H3>Complexity</H3></A>
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<P>At most <SAMP>(finish2-start2)*(finish1-start1-(finish2-start2)+1)</SAMP> applications of the corresponding predicate are done.</P>
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<A NAME="sec6"><H3>Example</H3></A>
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<UL><PRE>//
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// find_end.cpp
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//
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#include <algorithm> // for find_first_of, find_end
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#include <functional> // for equal_to
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#include <iostream> // for cout, endl
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#include <list> // for list
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int main ()
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{
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typedef std::list<int, std::allocator<int> > list;
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const list::value_type a1[] = {
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0, 1, 6, 5, 3, 2, 2, 6, 5, 7
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};
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const list::value_type a2[] = {
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6, 5, 0, 0
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};
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// Set up two sequences.
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const list l1 (a1, a1 + sizeof a1 / sizeof *a1);
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const list l2 (a2, a2 + 2);
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// Try both find_first_of variants.
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list::const_iterator it1 =
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std::find_first_of(l1.begin(), l1.end(),
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l2.begin(), l2.end());
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list::const_iterator it2 =
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std::find_first_of(l1.begin(), l1.end(),
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l2.begin(), l2.end(),
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std::equal_to<list::value_type>());
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// Try both find_end variants.
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list::const_iterator it3 =
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std::find_end(l1.begin(), l1.end(),
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l2.begin(), l2.end());
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list::const_iterator it4 =
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std::find_end(l1.begin(), l1.end(),
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l2.begin(), l2.end(),
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std::equal_to<list::value_type>());
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// Output results of find_first_of.
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// Iterator now points to the first element that matches
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// one of a set of values.
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std::ostream_iterator<list::value_type, char,
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std::char_traits<char> > out(std::cout, " " );
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if(it3 == it4 && it1 == it2) {
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std::cout << "For the sequences { ";
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std::copy(l1.begin(), l1.end(), out);
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std::cout << "} and { ";
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std::copy(l2.begin(), l2.end(), out);
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std::cout << "} \nboth versions of "
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<< "find_first_of point to: "
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<< *it1 << std::endl;
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// Output results of find_end.
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// Iterator now points to the first element of the last
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// find subsequence.
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std::cout << "both versions of find_end point to: "
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<< *it3 << std::endl;
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}
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return 0;
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}
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Program Output:
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</PRE></UL>
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<UL><PRE>For the sequences { 0 1 6 5 3 2 2 6 5 7 } and { 6 5 }
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both versions of find_first_of point to: 6
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both versions of find_end point to: 6
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</PRE></UL>
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<A NAME="sec7"><H3>See Also</H3></A>
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<P><A HREF="algorithms.html">Algorithms</A>, <SAMP><A HREF="find.html">find()</A></SAMP>, <SAMP><A HREF="find-if.html">find_if()</A></SAMP>, <SAMP><A HREF="adjacent-find.html">adjacent_find()</A></SAMP></P>
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<A NAME="sec8"><H3>Standards Conformance</H3></A>
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<P><I>ISO/IEC 14882:1998 -- International Standard for Information Systems -- Programming Language C++, Section 25.1.3</I></P>
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<BR>
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<HR>
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