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26<div class="titlepage"><div><div><h3 class="title">
27<a name="boost_asio.tutorial.tuttimer3"></a><a class="link" href="tuttimer3.html" title="Timer.3 - Binding arguments to a handler">Timer.3 - Binding arguments
28      to a handler</a>
29</h3></div></div></div>
30<p>
31        In this tutorial we will modify the program from tutorial Timer.2 so that
32        the timer fires once a second. This will show how to pass additional parameters
33        to your handler function.
34      </p>
35<pre class="programlisting">#include &lt;iostream&gt;
36#include &lt;boost/asio.hpp&gt;
37#include &lt;boost/bind/bind.hpp&gt;
38</pre>
39<p>
40        To implement a repeating timer using asio you need to change the timer's
41        expiry time in your callback function, and to then start a new asynchronous
42        wait. Obviously this means that the callback function will need to be able
43        to access the timer object. To this end we add two new parameters to the
44        <code class="computeroutput">print</code> function:
45      </p>
46<div class="itemizedlist"><ul class="itemizedlist" style="list-style-type: disc; ">
47<li class="listitem">
48            A pointer to a timer object.
49          </li>
50<li class="listitem">
51            A counter so that we can stop the program when the timer fires for the
52            sixth time.
53          </li>
54</ul></div>
55<pre class="programlisting">void print(const boost::system::error_code&amp; /*e*/,
56    boost::asio::steady_timer* t, int* count)
57{
58</pre>
59<p>
60        As mentioned above, this tutorial program uses a counter to stop running
61        when the timer fires for the sixth time. However you will observe that there
62        is no explicit call to ask the io_context to stop. Recall that in tutorial
63        Timer.2 we learnt that the <a class="link" href="../reference/io_context/run.html" title="io_context::run">io_context::run()</a>
64        function completes when there is no more "work" to do. By not starting
65        a new asynchronous wait on the timer when <code class="computeroutput">count</code> reaches 5, the
66        io_context will run out of work and stop running.
67      </p>
68<pre class="programlisting">  if (*count &lt; 5)
69  {
70    std::cout &lt;&lt; *count &lt;&lt; std::endl;
71    ++(*count);
72</pre>
73<p>
74        Next we move the expiry time for the timer along by one second from the previous
75        expiry time. By calculating the new expiry time relative to the old, we can
76        ensure that the timer does not drift away from the whole-second mark due
77        to any delays in processing the handler.
78      </p>
79<pre class="programlisting">    t-&gt;expires_at(t-&gt;expiry() + boost::asio::chrono::seconds(1));
80</pre>
81<p>
82        Then we start a new asynchronous wait on the timer. As you can see, the boost::bind()
83        function is used to associate the extra parameters with your callback handler.
84        The <a class="link" href="../reference/basic_waitable_timer/async_wait.html" title="basic_waitable_timer::async_wait">steady_timer::async_wait()</a>
85        function expects a handler function (or function object) with the signature
86        <code class="computeroutput">void(const boost::system::error_code&amp;)</code>. Binding the additional
87        parameters converts your <code class="computeroutput">print</code> function into a function object
88        that matches the signature correctly.
89      </p>
90<p>
91        See the <a href="http://www.boost.org/libs/bind/bind.html" target="_top">Boost.Bind
92        documentation</a> for more information on how to use boost::bind().
93      </p>
94<p>
95        In this example, the boost::asio::placeholders::error argument to boost::bind()
96        is a named placeholder for the error object passed to the handler. When initiating
97        the asynchronous operation, and if using boost::bind(), you must specify
98        only the arguments that match the handler's parameter list. In tutorial Timer.4
99        you will see that this placeholder may be elided if the parameter is not
100        needed by the callback handler.
101      </p>
102<pre class="programlisting">    t-&gt;async_wait(boost::bind(print,
103          boost::asio::placeholders::error, t, count));
104  }
105}
106
107int main()
108{
109  boost::asio::io_context io;
110</pre>
111<p>
112        A new <code class="computeroutput">count</code> variable is added so that we can stop the program
113        when the timer fires for the sixth time.
114      </p>
115<pre class="programlisting">  int count = 0;
116  boost::asio::steady_timer t(io, boost::asio::chrono::seconds(1));
117</pre>
118<p>
119        As in Step 4, when making the call to <a class="link" href="../reference/basic_waitable_timer/async_wait.html" title="basic_waitable_timer::async_wait">steady_timer::async_wait()</a>
120        from <code class="computeroutput">main</code> we bind the additional parameters needed for the
121        <code class="computeroutput">print</code> function.
122      </p>
123<pre class="programlisting">  t.async_wait(boost::bind(print,
124        boost::asio::placeholders::error, &amp;t, &amp;count));
125
126  io.run();
127</pre>
128<p>
129        Finally, just to prove that the <code class="computeroutput">count</code> variable was being used
130        in the <code class="computeroutput">print</code> handler function, we will print out its new value.
131      </p>
132<pre class="programlisting">  std::cout &lt;&lt; "Final count is " &lt;&lt; count &lt;&lt; std::endl;
133
134  return 0;
135}
136</pre>
137<p>
138        See the <a class="link" href="tuttimer3/src.html" title="Source listing for Timer.3">full source listing</a>
139      </p>
140<p>
141        Return to the <a class="link" href="../tutorial.html" title="Tutorial">tutorial index</a>
142      </p>
143<p>
144        Previous: <a class="link" href="tuttimer2.html" title="Timer.2 - Using a timer asynchronously">Timer.2 - Using a
145        timer asynchronously</a>
146      </p>
147<p>
148        Next: <a class="link" href="tuttimer4.html" title="Timer.4 - Using a member function as a handler">Timer.4 - Using a member
149        function as a handler</a>
150      </p>
151</div>
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154<td align="right"><div class="copyright-footer">Copyright © 2003-2020 Christopher M.
155      Kohlhoff<p>
156        Distributed under the Boost Software License, Version 1.0. (See accompanying
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