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  61. <a name="Output-Template"></a>
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  63. <p>
  64. Next: <a href="Output-Statement.html#Output-Statement" accesskey="n" rel="next">Output Statement</a>, Previous: <a href="RTL-Template.html#RTL-Template" accesskey="p" rel="prev">RTL Template</a>, Up: <a href="Machine-Desc.html#Machine-Desc" accesskey="u" rel="up">Machine Desc</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>
  65. </div>
  66. <hr>
  67. <a name="Output-Templates-and-Operand-Substitution"></a>
  68. <h3 class="section">17.5 Output Templates and Operand Substitution</h3>
  69. <a name="index-output-templates"></a>
  70. <a name="index-operand-substitution"></a>
  71. <a name="index-_0025-in-template"></a>
  72. <a name="index-percent-sign"></a>
  73. <p>The <em>output template</em> is a string which specifies how to output the
  74. assembler code for an instruction pattern. Most of the template is a
  75. fixed string which is output literally. The character &lsquo;<samp>%</samp>&rsquo; is used
  76. to specify where to substitute an operand; it can also be used to
  77. identify places where different variants of the assembler require
  78. different syntax.
  79. </p>
  80. <p>In the simplest case, a &lsquo;<samp>%</samp>&rsquo; followed by a digit <var>n</var> says to output
  81. operand <var>n</var> at that point in the string.
  82. </p>
  83. <p>&lsquo;<samp>%</samp>&rsquo; followed by a letter and a digit says to output an operand in an
  84. alternate fashion. Four letters have standard, built-in meanings described
  85. below. The machine description macro <code>PRINT_OPERAND</code> can define
  86. additional letters with nonstandard meanings.
  87. </p>
  88. <p>&lsquo;<samp>%c<var>digit</var></samp>&rsquo; can be used to substitute an operand that is a
  89. constant value without the syntax that normally indicates an immediate
  90. operand.
  91. </p>
  92. <p>&lsquo;<samp>%n<var>digit</var></samp>&rsquo; is like &lsquo;<samp>%c<var>digit</var></samp>&rsquo; except that the value of
  93. the constant is negated before printing.
  94. </p>
  95. <p>&lsquo;<samp>%a<var>digit</var></samp>&rsquo; can be used to substitute an operand as if it were a
  96. memory reference, with the actual operand treated as the address. This may
  97. be useful when outputting a &ldquo;load address&rdquo; instruction, because often the
  98. assembler syntax for such an instruction requires you to write the operand
  99. as if it were a memory reference.
  100. </p>
  101. <p>&lsquo;<samp>%l<var>digit</var></samp>&rsquo; is used to substitute a <code>label_ref</code> into a jump
  102. instruction.
  103. </p>
  104. <p>&lsquo;<samp>%=</samp>&rsquo; outputs a number which is unique to each instruction in the
  105. entire compilation. This is useful for making local labels to be
  106. referred to more than once in a single template that generates multiple
  107. assembler instructions.
  108. </p>
  109. <p>&lsquo;<samp>%</samp>&rsquo; followed by a punctuation character specifies a substitution that
  110. does not use an operand. Only one case is standard: &lsquo;<samp>%%</samp>&rsquo; outputs a
  111. &lsquo;<samp>%</samp>&rsquo; into the assembler code. Other nonstandard cases can be
  112. defined in the <code>PRINT_OPERAND</code> macro. You must also define
  113. which punctuation characters are valid with the
  114. <code>PRINT_OPERAND_PUNCT_VALID_P</code> macro.
  115. </p>
  116. <a name="index-_005c"></a>
  117. <a name="index-backslash"></a>
  118. <p>The template may generate multiple assembler instructions. Write the text
  119. for the instructions, with &lsquo;<samp>\;</samp>&rsquo; between them.
  120. </p>
  121. <a name="index-matching-operands"></a>
  122. <p>When the RTL contains two operands which are required by constraint to match
  123. each other, the output template must refer only to the lower-numbered operand.
  124. Matching operands are not always identical, and the rest of the compiler
  125. arranges to put the proper RTL expression for printing into the lower-numbered
  126. operand.
  127. </p>
  128. <p>One use of nonstandard letters or punctuation following &lsquo;<samp>%</samp>&rsquo; is to
  129. distinguish between different assembler languages for the same machine; for
  130. example, Motorola syntax versus MIT syntax for the 68000. Motorola syntax
  131. requires periods in most opcode names, while MIT syntax does not. For
  132. example, the opcode &lsquo;<samp>movel</samp>&rsquo; in MIT syntax is &lsquo;<samp>move.l</samp>&rsquo; in Motorola
  133. syntax. The same file of patterns is used for both kinds of output syntax,
  134. but the character sequence &lsquo;<samp>%.</samp>&rsquo; is used in each place where Motorola
  135. syntax wants a period. The <code>PRINT_OPERAND</code> macro for Motorola syntax
  136. defines the sequence to output a period; the macro for MIT syntax defines
  137. it to do nothing.
  138. </p>
  139. <a name="index-_0023-in-template"></a>
  140. <p>As a special case, a template consisting of the single character <code>#</code>
  141. instructs the compiler to first split the insn, and then output the
  142. resulting instructions separately. This helps eliminate redundancy in the
  143. output templates. If you have a <code>define_insn</code> that needs to emit
  144. multiple assembler instructions, and there is a matching <code>define_split</code>
  145. already defined, then you can simply use <code>#</code> as the output template
  146. instead of writing an output template that emits the multiple assembler
  147. instructions.
  148. </p>
  149. <p>Note that <code>#</code> only has an effect while generating assembly code;
  150. it does not affect whether a split occurs earlier. An associated
  151. <code>define_split</code> must exist and it must be suitable for use after
  152. register allocation.
  153. </p>
  154. <p>If the macro <code>ASSEMBLER_DIALECT</code> is defined, you can use construct
  155. of the form &lsquo;<samp>{option0|option1|option2}</samp>&rsquo; in the templates. These
  156. describe multiple variants of assembler language syntax.
  157. See <a href="Instruction-Output.html#Instruction-Output">Instruction Output</a>.
  158. </p>
  159. <hr>
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  162. Next: <a href="Output-Statement.html#Output-Statement" accesskey="n" rel="next">Output Statement</a>, Previous: <a href="RTL-Template.html#RTL-Template" accesskey="p" rel="prev">RTL Template</a>, Up: <a href="Machine-Desc.html#Machine-Desc" accesskey="u" rel="up">Machine Desc</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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