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  1. doc/go_mem.html

    the corresponding receive on <code>c</code> completes, which is sequenced before
    the <code>print</code>.
    </p>
    
    <p class="rule">
    The closing of a channel is synchronized before a receive that returns a zero value
    because the channel is closed.
    </p>
    
    <p>
    In the previous example, replacing
    <code>c &lt;- 0</code> with <code>close(c)</code>
    yields a program with the same guaranteed behavior.
    </p>
    
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  2. doc/go1.17_spec.html

    <code>T</code> is a floating-point type and <code>x</code> can be rounded to <code>T</code>'s
    precision without overflow. Rounding uses IEEE 754 round-to-even rules but with an IEEE
    negative zero further simplified to an unsigned zero. Note that constant values never result
    in an IEEE negative zero, NaN, or infinity.
    </li>
    
    <li>
    <code>T</code> is a complex type, and <code>x</code>'s
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  3. doc/asm.html

    </p>
    
    <p>
    The <code>GLOBL</code> directive declares a symbol to be global.
    The arguments are optional flags and the size of the data being declared as a global,
    which will have initial value all zeros unless a <code>DATA</code> directive
    has initialized it.
    The <code>GLOBL</code> directive must follow any corresponding <code>DATA</code> directives.
    </p>
    
    <p>
    For example,
    </p>
    
    <pre>
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  4. doc/go_spec.html

    precision without overflow. Rounding uses IEEE 754 round-to-even rules but with an IEEE
    negative zero further simplified to an unsigned zero. Note that constant values never result
    in an IEEE negative zero, NaN, or infinity.
    </li>
    
    <li>
    <code>T</code> is a complex type, and <code>x</code>'s
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