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- <a name="Floating-point-implementation"></a>
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- Next: <a href="Arrays-and-pointers-implementation.html#Arrays-and-pointers-implementation" accesskey="n" rel="next">Arrays and pointers implementation</a>, Previous: <a href="Integers-implementation.html#Integers-implementation" accesskey="p" rel="prev">Integers implementation</a>, Up: <a href="C-Implementation.html#C-Implementation" accesskey="u" rel="up">C Implementation</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="Floating-Point"></a>
- <h3 class="section">4.6 Floating Point</h3>
-
- <ul>
- <li> <cite>The accuracy of the floating-point operations and of the library
- functions in <code><math.h></code> and <code><complex.h></code> that return floating-point
- results (C90, C99 and C11 5.2.4.2.2).</cite>
-
- <p>The accuracy is unknown.
- </p>
- </li><li> <cite>The rounding behaviors characterized by non-standard values
- of <code>FLT_ROUNDS</code>
- (C90, C99 and C11 5.2.4.2.2).</cite>
-
- <p>GCC does not use such values.
- </p>
- </li><li> <cite>The evaluation methods characterized by non-standard negative
- values of <code>FLT_EVAL_METHOD</code> (C99 and C11 5.2.4.2.2).</cite>
-
- <p>GCC does not use such values.
- </p>
- </li><li> <cite>The direction of rounding when an integer is converted to a
- floating-point number that cannot exactly represent the original
- value (C90 6.2.1.3, C99 and C11 6.3.1.4).</cite>
-
- <p>C99 Annex F is followed.
- </p>
- </li><li> <cite>The direction of rounding when a floating-point number is
- converted to a narrower floating-point number (C90 6.2.1.4, C99 and C11
- 6.3.1.5).</cite>
-
- <p>C99 Annex F is followed.
- </p>
- </li><li> <cite>How the nearest representable value or the larger or smaller
- representable value immediately adjacent to the nearest representable
- value is chosen for certain floating constants (C90 6.1.3.1, C99 and C11
- 6.4.4.2).</cite>
-
- <p>C99 Annex F is followed.
- </p>
- </li><li> <cite>Whether and how floating expressions are contracted when not
- disallowed by the <code>FP_CONTRACT</code> pragma (C99 and C11 6.5).</cite>
-
- <p>Expressions are currently only contracted if <samp>-ffp-contract=fast</samp>,
- <samp>-funsafe-math-optimizations</samp> or <samp>-ffast-math</samp> are used.
- This is subject to change.
- </p>
- </li><li> <cite>The default state for the <code>FENV_ACCESS</code> pragma (C99 and C11
- 7.6.1).</cite>
-
- <p>This pragma is not implemented, but the default is to “off” unless
- <samp>-frounding-math</samp> is used in which case it is “on”.
- </p>
- </li><li> <cite>Additional floating-point exceptions, rounding modes, environments,
- and classifications, and their macro names (C99 and C11 7.6, C99 and
- C11 7.12).</cite>
-
- <p>This is dependent on the implementation of the C library, and is not
- defined by GCC itself.
- </p>
- </li><li> <cite>The default state for the <code>FP_CONTRACT</code> pragma (C99 and C11
- 7.12.2).</cite>
-
- <p>This pragma is not implemented. Expressions are currently only
- contracted if <samp>-ffp-contract=fast</samp>,
- <samp>-funsafe-math-optimizations</samp> or <samp>-ffast-math</samp> are used.
- This is subject to change.
- </p>
- </li><li> <cite>Whether the “inexact” floating-point exception can be raised
- when the rounded result actually does equal the mathematical result
- in an IEC 60559 conformant implementation (C99 F.9).</cite>
-
- <p>This is dependent on the implementation of the C library, and is not
- defined by GCC itself.
- </p>
- </li><li> <cite>Whether the “underflow” (and “inexact”) floating-point
- exception can be raised when a result is tiny but not inexact in an
- IEC 60559 conformant implementation (C99 F.9).</cite>
-
- <p>This is dependent on the implementation of the C library, and is not
- defined by GCC itself.
- </p>
- </li></ul>
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