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- <h4 class="subsubsection">15.4.10.10 Ada Settings</h4>
- <a name="index-Ada-settings"></a>
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- <dl compact="compact">
- <dd><a name="index-set-varsize_002dlimit"></a>
- </dd>
- <dt><code>set varsize-limit <var>size</var></code></dt>
- <dd><p>Prevent <small>GDB</small> from attempting to evaluate objects whose size
- is above the given limit (<var>size</var>) when those sizes are computed
- from run-time quantities. This is typically the case when the object
- has a variable size, such as an array whose bounds are not known at
- compile time for example. Setting <var>size</var> to <code>unlimited</code>
- removes the size limitation. By default, the limit is about 65KB.
- </p>
- <p>The purpose of having such a limit is to prevent <small>GDB</small> from
- trying to grab enormous chunks of virtual memory when asked to evaluate
- a quantity whose bounds have been corrupted or have not yet been fully
- initialized. The limit applies to the results of some subexpressions
- as well as to complete expressions. For example, an expression denoting
- a simple integer component, such as <code>x.y.z</code>, may fail if the size of
- <code>x.y</code> is variable and exceeds <code>size</code>. On the other hand,
- <small>GDB</small> is sometimes clever; the expression <code>A(i)</code>, where
- <code>A</code> is an array variable with non-constant size, will generally
- succeed regardless of the bounds on <code>A</code>, as long as the component
- size is less than <var>size</var>.
- </p>
- <a name="index-show-varsize_002dlimit"></a>
- </dd>
- <dt><code>show varsize-limit</code></dt>
- <dd><p>Show the limit on types whose size is determined by run-time quantities.
- </p></dd>
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