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doc/go_mem.html
do exactly this. </p> <p> A read of an array, struct, or complex number may by implemented as a read of each individual sub-value (array element, struct field, or real/imaginary component), in any order. Similarly, a write of an array, struct, or complex number may be implemented as a write of each individual sub-value, in any order. </p> <p> A read <i>r</i> of a memory location <i>x</i>
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doc/go1.17_spec.html
in an IEEE negative zero, NaN, or infinity. </li> <li> <code>T</code> is a complex type, and <code>x</code>'s <a href="#Complex_numbers">components</a> <code>real(x)</code> and <code>imag(x)</code> are representable by values of <code>T</code>'s component type (<code>float32</code> or <code>float64</code>). </li> </ul> <pre> x T x is representable by a value of T because
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doc/asm.html
For assembly functions with Go prototypes, <code>go</code> <code>vet</code> will check that the argument size is correct. </p> <p> Note that the symbol name uses a middle dot to separate the components and is specified as an offset from the static base pseudo-register <code>SB</code>. This function would be called from Go source for package <code>runtime</code> using the simple name <code>profileloop</code>. </p>
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doc/go_spec.html
) // valid array types type ( T5 [10]*T5 // T5 contains T5 as component of a pointer T6 [10]func() T6 // T6 contains T6 as component of a function type T7 [10]struct{ f []T7 } // T7 contains T7 as component of a slice in a struct ) </pre> <h3 id="Slice_types">Slice types</h3> <p>
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