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doc/go_mem.html
That execution must be consistent with the <i>sequenced before</i> relation, defined as the partial order requirements set out by the <a href="/ref/spec">Go language specification</a> for Go's control flow constructs as well as the <a href="/ref/spec#Order_of_evaluation">order of evaluation for expressions</a>. </p> <p> A Go <i>program execution</i> is modeled as a set of goroutine executions,
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doc/go1.22.html
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doc/go1.17_spec.html
and an exponent part (<code>p</code> or <code>P</code> followed by an optional sign and decimal digits). One of the integer part or the fractional part may be elided; the radix point may be elided as well, but the exponent part is required. (This syntax matches the one given in IEEE 754-2008 §5.12.3.) An exponent value exp scales the mantissa (integer and fractional part) by 2<sup>exp</sup>. </p> <p>
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doc/go_spec.html
and an exponent part (<code>p</code> or <code>P</code> followed by an optional sign and decimal digits). One of the integer part or the fractional part may be elided; the radix point may be elided as well, but the exponent part is required. (This syntax matches the one given in IEEE 754-2008 §5.12.3.) An exponent value exp scales the mantissa (integer and fractional part) by 2<sup>exp</sup> [<a href="#Go_1.13">Go 1.13</a>].
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doc/asm.html
memory move and subroutine call and return are more abstract. The details vary with architecture, and we apologize for the imprecision; the situation is not well-defined. </p> <p> The assembler program is a way to parse a description of that semi-abstract instruction set and turn it into instructions to be input to the linker.
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