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  61. <a name="Blocks"></a>
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  64. Next: <a href="Statement-Sequences.html#Statement-Sequences" accesskey="n" rel="next">Statement Sequences</a>, Previous: <a href="Basic-Statements.html#Basic-Statements" accesskey="p" rel="prev">Basic Statements</a>, Up: <a href="Statements.html#Statements" accesskey="u" rel="up">Statements</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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  67. <a name="Blocks-1"></a>
  68. <h4 class="subsection">11.7.2 Blocks</h4>
  69. <a name="index-Blocks"></a>
  70. <p>Block scopes and the variables they declare in GENERIC are
  71. expressed using the <code>BIND_EXPR</code> code, which in previous
  72. versions of GCC was primarily used for the C statement-expression
  73. extension.
  74. </p>
  75. <p>Variables in a block are collected into <code>BIND_EXPR_VARS</code> in
  76. declaration order through their <code>TREE_CHAIN</code> field. Any runtime
  77. initialization is moved out of <code>DECL_INITIAL</code> and into a
  78. statement in the controlled block. When gimplifying from C or C++,
  79. this initialization replaces the <code>DECL_STMT</code>. These variables
  80. will never require cleanups. The scope of these variables is just the
  81. body
  82. </p>
  83. <p>Variable-length arrays (VLAs) complicate this process, as their size
  84. often refers to variables initialized earlier in the block and their
  85. initialization involves an explicit stack allocation. To handle this,
  86. we add an indirection and replace them with a pointer to stack space
  87. allocated by means of <code>alloca</code>. In most cases, we also arrange
  88. for this space to be reclaimed when the enclosing <code>BIND_EXPR</code> is
  89. exited, the exception to this being when there is an explicit call to
  90. <code>alloca</code> in the source code, in which case the stack is left
  91. depressed on exit of the <code>BIND_EXPR</code>.
  92. </p>
  93. <p>A C++ program will usually contain more <code>BIND_EXPR</code>s than
  94. there are syntactic blocks in the source code, since several C++
  95. constructs have implicit scopes associated with them. On the
  96. other hand, although the C++ front end uses pseudo-scopes to
  97. handle cleanups for objects with destructors, these don&rsquo;t
  98. translate into the GIMPLE form; multiple declarations at the same
  99. level use the same <code>BIND_EXPR</code>.
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