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doc/go1.17_spec.html
to by <code>x</code>. If <code>x</code> is <code>nil</code>, an attempt to evaluate <code>*x</code> will cause a <a href="#Run_time_panics">run-time panic</a>. </p> <pre> &x &a[f(2)] &Point{2, 3} *p *pf(x) var x *int = nil *x // causes a run-time panic &*x // causes a run-time panic </pre> <h3 id="Receive_operator">Receive operator</h3> <p>
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doc/asm.html
One is in constant evaluation. Constant expressions in the assembler are parsed using Go's operator precedence, not the C-like precedence of the original. Thus <code>3&1<<2</code> is 4, not 0—it parses as <code>(3&1)<<2</code> not <code>3&(1<<2)</code>. Also, constants are always evaluated as 64-bit unsigned integers. Thus <code>-2</code> is not the integer value minus two,
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doc/go_spec.html
to by <code>x</code>. If <code>x</code> is <code>nil</code>, an attempt to evaluate <code>*x</code> will cause a <a href="#Run_time_panics">run-time panic</a>. </p> <pre> &x &a[f(2)] &Point{2, 3} *p *pf(x) var x *int = nil *x // causes a run-time panic &*x // causes a run-time panic </pre> <h3 id="Receive_operator">Receive operator</h3> <p>
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