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doc/go1.17_spec.html
PrimaryExpr Slice | PrimaryExpr TypeAssertion | PrimaryExpr Arguments . Selector = "." identifier . Index = "[" Expression "]" . Slice = "[" [ Expression ] ":" [ Expression ] "]" | "[" [ Expression ] ":" Expression ":" Expression "]" . TypeAssertion = "." "(" Type ")" . Arguments = "(" [ ( ExpressionList | Type [ "," ExpressionList ] ) [ "..." ] [ "," ] ] ")" . </pre>
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doc/go_mem.html
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, together with a mapping <i>W</i> that specifies the write-like operation that each read-like operation reads from.
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doc/go_spec.html
PrimaryExpr Slice | PrimaryExpr TypeAssertion | PrimaryExpr Arguments . Selector = "." identifier . Index = "[" Expression [ "," ] "]" . Slice = "[" [ Expression ] ":" [ Expression ] "]" | "[" [ Expression ] ":" Expression ":" Expression "]" . TypeAssertion = "." "(" Type ")" . Arguments = "(" [ ( ExpressionList | Type [ "," ExpressionList ] ) [ "..." ] [ "," ] ] ")" . </pre>
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doc/asm.html
<h3 id="constants">Constants</h3> <p> Although the assembler takes its guidance from the Plan 9 assemblers, it is a distinct program, so there are some differences. 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>
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