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<a name="Local-Register-Variables"></a>
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<p>
Previous: <a href="Global-Register-Variables.html#Global-Register-Variables" accesskey="p" rel="prev">Global Register Variables</a>, Up: <a href="Explicit-Register-Variables.html#Explicit-Register-Variables" accesskey="u" rel="up">Explicit Register Variables</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Option-Index.html#Option-Index" title="Index" rel="index">Index</a>]</p>
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<hr>
<a name="Specifying-Registers-for-Local-Variables"></a>
<h4 class="subsubsection">6.45.5.2 Specifying Registers for Local Variables</h4>
<a name="Local-Reg-Vars"></a><a name="index-local-variables_002c-specifying-registers"></a>
<a name="index-specifying-registers-for-local-variables"></a>
<a name="index-registers-for-local-variables"></a>
<p>You can define a local register variable and associate it with a specified
register like this:
</p>
<div class="smallexample">
<pre class="smallexample">register int *foo asm (&quot;r12&quot;);
</pre></div>
<p>Here <code>r12</code> is the name of the register that should be used. Note
that this is the same syntax used for defining global register variables,
but for a local variable the declaration appears within a function. The
<code>register</code> keyword is required, and cannot be combined with
<code>static</code>. The register name must be a valid register name for the
target platform.
</p>
<p>As with global register variables, it is recommended that you choose
a register that is normally saved and restored by function calls on your
machine, so that calls to library routines will not clobber it.
</p>
<p>The only supported use for this feature is to specify registers
for input and output operands when calling Extended <code>asm</code>
(see <a href="Extended-Asm.html#Extended-Asm">Extended Asm</a>). This may be necessary if the constraints for a
particular machine don&rsquo;t provide sufficient control to select the desired
register. To force an operand into a register, create a local variable
and specify the register name after the variable&rsquo;s declaration. Then use
the local variable for the <code>asm</code> operand and specify any constraint
letter that matches the register:
</p>
<div class="smallexample">
<pre class="smallexample">register int *p1 asm (&quot;r0&quot;) = &hellip;;
register int *p2 asm (&quot;r1&quot;) = &hellip;;
register int *result asm (&quot;r0&quot;);
asm (&quot;sysint&quot; : &quot;=r&quot; (result) : &quot;0&quot; (p1), &quot;r&quot; (p2));
</pre></div>
<p><em>Warning:</em> In the above example, be aware that a register (for example
<code>r0</code>) can be call-clobbered by subsequent code, including function
calls and library calls for arithmetic operators on other variables (for
example the initialization of <code>p2</code>). In this case, use temporary
variables for expressions between the register assignments:
</p>
<div class="smallexample">
<pre class="smallexample">int t1 = &hellip;;
register int *p1 asm (&quot;r0&quot;) = &hellip;;
register int *p2 asm (&quot;r1&quot;) = t1;
register int *result asm (&quot;r0&quot;);
asm (&quot;sysint&quot; : &quot;=r&quot; (result) : &quot;0&quot; (p1), &quot;r&quot; (p2));
</pre></div>
<p>Defining a register variable does not reserve the register. Other than
when invoking the Extended <code>asm</code>, the contents of the specified
register are not guaranteed. For this reason, the following uses
are explicitly <em>not</em> supported. If they appear to work, it is only
happenstance, and may stop working as intended due to (seemingly)
unrelated changes in surrounding code, or even minor changes in the
optimization of a future version of gcc:
</p>
<ul>
<li> Passing parameters to or from Basic <code>asm</code>
</li><li> Passing parameters to or from Extended <code>asm</code> without using input
or output operands.
</li><li> Passing parameters to or from routines written in assembler (or
other languages) using non-standard calling conventions.
</li></ul>
<p>Some developers use Local Register Variables in an attempt to improve
gcc&rsquo;s allocation of registers, especially in large functions. In this
case the register name is essentially a hint to the register allocator.
While in some instances this can generate better code, improvements are
subject to the whims of the allocator/optimizers. Since there are no
guarantees that your improvements won&rsquo;t be lost, this usage of Local
Register Variables is discouraged.
</p>
<p>On the MIPS platform, there is related use for local register variables
with slightly different characteristics (see <a href="http://gcc.gnu.org/onlinedocs/gccint/MIPS-Coprocessors.html#MIPS-Coprocessors">Defining coprocessor specifics for MIPS targets</a> in <cite>GNU Compiler Collection (GCC) Internals</cite>).
</p>
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Previous: <a href="Global-Register-Variables.html#Global-Register-Variables" accesskey="p" rel="prev">Global Register Variables</a>, Up: <a href="Explicit-Register-Variables.html#Explicit-Register-Variables" accesskey="u" rel="up">Explicit Register Variables</a> &nbsp; [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Option-Index.html#Option-Index" title="Index" rel="index">Index</a>]</p>
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