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  64. Next: <a href="Number-of-iterations.html#Number-of-iterations" accesskey="n" rel="next">Number of iterations</a>, Previous: <a href="Scalar-evolutions.html#Scalar-evolutions" accesskey="p" rel="prev">Scalar evolutions</a>, Up: <a href="Loop-Analysis-and-Representation.html#Loop-Analysis-and-Representation" accesskey="u" rel="up">Loop Analysis and Representation</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="IV-analysis-on-RTL"></a>
  68. <h3 class="section">16.6 IV analysis on RTL</h3>
  69. <a name="index-IV-analysis-on-RTL"></a>
  70. <p>The induction variable on RTL is simple and only allows analysis of
  71. affine induction variables, and only in one loop at once. The interface
  72. is declared in <samp>cfgloop.h</samp>. Before analyzing induction variables
  73. in a loop L, <code>iv_analysis_loop_init</code> function must be called on L.
  74. After the analysis (possibly calling <code>iv_analysis_loop_init</code> for
  75. several loops) is finished, <code>iv_analysis_done</code> should be called.
  76. The following functions can be used to access the results of the
  77. analysis:
  78. </p>
  79. <ul>
  80. <li> <code>iv_analyze</code>: Analyzes a single register used in the given
  81. insn. If no use of the register in this insn is found, the following
  82. insns are scanned, so that this function can be called on the insn
  83. returned by get_condition.
  84. </li><li> <code>iv_analyze_result</code>: Analyzes result of the assignment in the
  85. given insn.
  86. </li><li> <code>iv_analyze_expr</code>: Analyzes a more complicated expression.
  87. All its operands are analyzed by <code>iv_analyze</code>, and hence they must
  88. be used in the specified insn or one of the following insns.
  89. </li></ul>
  90. <p>The description of the induction variable is provided in <code>struct
  91. rtx_iv</code>. In order to handle subregs, the representation is a bit
  92. complicated; if the value of the <code>extend</code> field is not
  93. <code>UNKNOWN</code>, the value of the induction variable in the i-th
  94. iteration is
  95. </p>
  96. <div class="smallexample">
  97. <pre class="smallexample">delta + mult * extend_{extend_mode} (subreg_{mode} (base + i * step)),
  98. </pre></div>
  99. <p>with the following exception: if <code>first_special</code> is true, then the
  100. value in the first iteration (when <code>i</code> is zero) is <code>delta +
  101. mult * base</code>. However, if <code>extend</code> is equal to <code>UNKNOWN</code>,
  102. then <code>first_special</code> must be false, <code>delta</code> 0, <code>mult</code> 1
  103. and the value in the i-th iteration is
  104. </p>
  105. <div class="smallexample">
  106. <pre class="smallexample">subreg_{mode} (base + i * step)
  107. </pre></div>
  108. <p>The function <code>get_iv_value</code> can be used to perform these
  109. calculations.
  110. </p>
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