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- <a name="Expression-trees"></a>
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- Next: <a href="Statements.html#Statements" accesskey="n" rel="next">Statements</a>, Previous: <a href="Attributes.html#Attributes" accesskey="p" rel="prev">Attributes</a>, Up: <a href="GENERIC.html#GENERIC" accesskey="u" rel="up">GENERIC</a> [<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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- <a name="Expressions-1"></a>
- <h3 class="section">11.6 Expressions</h3>
- <a name="index-expression"></a>
- <a name="index-TREE_005fTYPE-3"></a>
- <a name="index-TREE_005fOPERAND"></a>
-
- <p>The internal representation for expressions is for the most part quite
- straightforward. However, there are a few facts that one must bear in
- mind. In particular, the expression “tree” is actually a directed
- acyclic graph. (For example there may be many references to the integer
- constant zero throughout the source program; many of these will be
- represented by the same expression node.) You should not rely on
- certain kinds of node being shared, nor should you rely on certain kinds of
- nodes being unshared.
- </p>
- <p>The following macros can be used with all expression nodes:
- </p>
- <dl compact="compact">
- <dt><code>TREE_TYPE</code>
- <a name="index-TREE_005fTYPE-4"></a>
- </dt>
- <dd><p>Returns the type of the expression. This value may not be precisely the
- same type that would be given the expression in the original program.
- </p></dd>
- </dl>
-
- <p>In what follows, some nodes that one might expect to always have type
- <code>bool</code> are documented to have either integral or boolean type. At
- some point in the future, the C front end may also make use of this same
- intermediate representation, and at this point these nodes will
- certainly have integral type. The previous sentence is not meant to
- imply that the C++ front end does not or will not give these nodes
- integral type.
- </p>
- <p>Below, we list the various kinds of expression nodes. Except where
- noted otherwise, the operands to an expression are accessed using the
- <code>TREE_OPERAND</code> macro. For example, to access the first operand to
- a binary plus expression <code>expr</code>, use:
- </p>
- <div class="smallexample">
- <pre class="smallexample">TREE_OPERAND (expr, 0)
- </pre></div>
-
- <p>As this example indicates, the operands are zero-indexed.
- </p>
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