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| <HEAD> |
| <TITLE>search(), search_n()</TITLE> |
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| <A HREF="runtime-error.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="sequences.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> |
| <H2>search(), search_n()</H2> |
| <P><B>Library:</B> <A HREF="2-9.html">Algorithms</A></P> |
| |
| <PRE><HR><B><I>Function</I></B><HR></PRE> |
| |
| <UL> |
| <LI><A HREF="#sec1">Local Index</A></LI> |
| <LI><A HREF="#sec2">Summary</A></LI> |
| <LI><A HREF="#sec3">Synopsis</A></LI> |
| <LI><A HREF="#sec4">Description</A></LI> |
| <LI><A HREF="#sec5">Complexity</A></LI> |
| <LI><A HREF="#sec6">Example</A></LI> |
| <LI><A HREF="#sec7">Standards Conformance</A></LI> |
| </UL> |
| <A NAME="sec1"><H3>Local Index</H3></A> |
| No Entries |
| <A NAME="sec2"><H3>Summary</H3></A> |
| <P>An algorithm that finds a subsequence within a sequence of values</P> |
| <A NAME="sec3"><H3>Synopsis</H3></A> |
| |
| <PRE>#include <algorithm> |
| |
| namespace std { |
| template <class ForwardIterator1, class ForwardIterator2> |
| ForwardIterator1 search(ForwardIterator1 start1, |
| ForwardIterator1 finish1, |
| ForwardIterator2 start2, |
| ForwardIterator2 finish2); |
| |
| template <class ForwardIterator1, |
| class ForwardIterator2, |
| class BinaryPredicate> |
| ForwardIterator1 search(ForwardIterator1 start1, |
| ForwardIterator1 finish1, |
| ForwardIterator2 start2, |
| ForwardIterator2 finish2, |
| BinaryPredicate binary_pred); |
| |
| template <class ForwardIterator, class Size, class T> |
| ForwardIterator search_n(ForwardIterator start, |
| ForwardIterator finish, |
| Size count, const T& value); |
| |
| template <class ForwardIterator, class Size, |
| class T, class BinaryPredicate> |
| ForwardIterator search_n(ForwardIterator start |
| ForwardIterator finish, |
| Size count, const T& value, |
| BinaryPredicate pred) |
| } |
| </PRE> |
| <A NAME="sec4"><H3>Description</H3></A> |
| <P>The <SAMP>search()</SAMP> and <SAMP><A HREF="search.html">search_n()</A></SAMP> algorithms search for a subsequence within a sequence. The <SAMP>search()</SAMP> algorithm searches for a subsequence <SAMP>[start2, finish2) </SAMP>within a sequence <SAMP>[start1, finish1)</SAMP>, and returns the beginning location of the subsequence. If it does not find the subsequence, <SAMP>search()</SAMP> returns <SAMP>finish1</SAMP>. The first version of <SAMP>search()</SAMP> uses <SAMP>operator==()</SAMP> as a default, and the second version allows you to specify a binary predicate to perform the comparison.</P> |
| <P>The <SAMP><A HREF="search.html">search_n()</A></SAMP> algorithm searches for the subsequence composed of <SAMP>count</SAMP> occurrences of <SAMP>value</SAMP> within a sequence <SAMP>[start, finish)</SAMP>, and returns <SAMP>start</SAMP> if this subsequence is found. If it does not find the subsequence, <SAMP>search_n()</SAMP> returns <SAMP>finish</SAMP>. The first version of <SAMP>search_n()</SAMP> uses <SAMP>operator==()</SAMP> as a default, and the second version allows you to specify a binary predicate to perform the comparison.</P> |
| <A NAME="sec5"><H3>Complexity</H3></A> |
| <P><SAMP>search()</SAMP> performs at most <SAMP>(finish1 - start1)*(finish2-start2) </SAMP>applications of the corresponding predicate.</P> |
| <P><SAMP><A HREF="search.html">search_n()</A></SAMP> performs at most<SAMP> (finish - start)* count</SAMP> applications of the corresponding predicate.</P> |
| <A NAME="sec6"><H3>Example</H3></A> |
| |
| <UL><PRE>// |
| // search.cpp |
| // |
| |
| #include <algorithm> |
| #include <list> |
| #include <iostream> |
| |
| |
| int main () |
| { |
| #ifndef _RWSTD_NO_NAMESPACE |
| using namespace std; |
| #endif |
| |
| // Initialize a list sequence and subsequence with |
| // characters. |
| |
| char seq[40] = "Here's a string with a substring in it"; |
| char subseq[10] = "substring"; |
| list<char,allocator<char> > sequence(seq, seq+38); |
| list<char,allocator<char> > subseqnc(subseq, subseq+9); |
| |
| // Print out the original sequence. |
| |
| cout << endl << "The subsequence, " << subseq |
| << ", was found at the "; |
| cout << endl << "location identified by a '*'" |
| << endl << " "; |
| |
| // Create an iterator to identify the location of |
| // subsequence within sequence. |
| |
| list<char,allocator<char> >::iterator place; |
| |
| // Do search. |
| |
| place = search(sequence.begin(), sequence.end(), |
| subseqnc.begin(), subseqnc.end()); |
| |
| // Identify result by marking first character with a '*'. |
| |
| *place = '*'; |
| |
| // Output sequence to display result. |
| |
| for (list<char,allocator<char> >::iterator i = |
| sequence.begin(); i != sequence.end(); i++) |
| cout << *i; |
| cout << endl; |
| |
| return 0; |
| } |
| |
| |
| Program Output: |
| </PRE></UL> |
| <UL><PRE> |
| The subsequence, substring, was found at the |
| location identified by a '*' |
| Here's a string with a *ubstring in it |
| |
| </PRE></UL> |
| <A NAME="sec7"><H3>Standards Conformance</H3></A> |
| <P><I>ISO/IEC 14882:1998 -- International Standard for Information Systems -- Programming Language C++, Section 25.1.9</I></P> |
| |
| <UL><PRE> |
| </PRE></UL> |
| |
| |
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