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go spec: specify len/cap for nil slices, maps, and channels
Fixes #891. R=r, rsc CC=golang-dev https://golang.org/cl/1760043
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<!-- title The Go Programming Language Specification -->
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<!-- title The Go Programming Language Specification -->
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<!-- subtitle Version of June 7, 2010 -->
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<!-- subtitle Version of July 12, 2010 -->
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<!--
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<!--
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TODO
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TODO
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@ -17,6 +17,7 @@ TODO
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[ ] specify iteration direction for range clause
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[ ] specify iteration direction for range clause
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[ ] review language on implicit dereferencing
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[ ] review language on implicit dereferencing
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[ ] clarify what it means for two functions to be "the same" when comparing them
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[ ] clarify what it means for two functions to be "the same" when comparing them
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[ ] need to specify what happends when sending/receiving from a nil channel
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-->
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-->
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@ -755,7 +756,8 @@ ElementType = Type .
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The length is part of the array's type and must be a
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The length is part of the array's type and must be a
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<a href="#Constant_expressions">constant expression</a> that evaluates to a non-negative
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<a href="#Constant_expressions">constant expression</a> that evaluates to a non-negative
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integer value. The length of array <code>a</code> can be discovered
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integer value. The length of array <code>a</code> can be discovered
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using the built-in function <code>len(a)</code>. The elements can be indexed by integer
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using the built-in function <a href="#Length_and_capacity"><code>len(a)</code></a>.
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The elements can be indexed by integer
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indices 0 through the <code>len(a)-1</code> (§<a href="#Indexes">Indexes</a>).
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indices 0 through the <code>len(a)-1</code> (§<a href="#Indexes">Indexes</a>).
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Array types are always one-dimensional but may be composed to form
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Array types are always one-dimensional but may be composed to form
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multi-dimensional types.
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multi-dimensional types.
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@ -785,7 +787,7 @@ SliceType = "[" "]" ElementType .
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<p>
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<p>
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Like arrays, slices are indexable and have a length. The length of a
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Like arrays, slices are indexable and have a length. The length of a
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slice <code>s</code> can be discovered by the built-in function
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slice <code>s</code> can be discovered by the built-in function
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<code>len(s)</code>; unlike with arrays it may change during
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<a href="#Length_and_capacity"><code>len(s)</code></a>; unlike with arrays it may change during
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execution. The elements can be addressed by integer indices 0
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execution. The elements can be addressed by integer indices 0
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through <code>len(s)-1</code> (§<a href="#Indexes">Indexes</a>). The slice index of a
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through <code>len(s)-1</code> (§<a href="#Indexes">Indexes</a>). The slice index of a
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given element may be less than the index of the same element in the
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given element may be less than the index of the same element in the
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@ -804,18 +806,14 @@ the length of the slice and the length of the array beyond the slice;
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a slice of length up to that capacity can be created by `slicing' a new
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a slice of length up to that capacity can be created by `slicing' a new
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one from the original slice (§<a href="#Slices">Slices</a>).
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one from the original slice (§<a href="#Slices">Slices</a>).
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The capacity of a slice <code>a</code> can be discovered using the
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The capacity of a slice <code>a</code> can be discovered using the
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built-in function <code>cap(a)</code> and the relationship between
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built-in function <a href="#Length_and_capacity"><code>cap(a)</code></a>.
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<code>len(a)</code> and <code>cap(a)</code> is:
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</p>
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</p>
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<pre>
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0 <= len(a) <= cap(a)
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</pre>
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<p>
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<p>
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The length and capacity of a <code>nil</code> slice
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A new, initialized slice value for a given element type <code>T</code> is
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are 0. A new, initialized slice value for a given element type <code>T</code> is
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made using the built-in function
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made using the built-in function <code>make</code>, which takes a slice type
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<a href="#Making_slices_maps_and_channels"><code>make</code></a>,
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which takes a slice type
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and parameters specifying the length and optionally the capacity:
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and parameters specifying the length and optionally the capacity:
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</p>
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</p>
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@ -1155,16 +1153,16 @@ map [string] interface {}
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</pre>
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</pre>
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<p>
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<p>
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The number of elements is called the length and is never negative.
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The number of map elements is called its length.
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The length of a map <code>m</code> can be discovered using the
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For a map <code>m</code>, it can be discovered using the
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built-in function <code>len(m)</code> and may change during execution.
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built-in function <a href="#Length_and_capacity"><code>len(m)</code></a>
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Values may be added and removed
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and may change during execution. Values may be added and removed
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during execution using special forms of <a href="#Assignments">assignment</a>.
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during execution using special forms of <a href="#Assignments">assignment</a>.
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</p>
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</p>
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<p>
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<p>
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A new, empty map value is made using the built-in
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A new, empty map value is made using the built-in
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function <code>make</code>, which takes the map type and an optional
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function <a href="#Making_slices_maps_and_channels"><code>make</code></a>,
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capacity hint as arguments:
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which takes the map type and an optional capacity hint as arguments:
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</p>
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</p>
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<pre>
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<pre>
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@ -4378,6 +4376,10 @@ At any time the following relationship holds:
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0 <= len(s) <= cap(s)
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0 <= len(s) <= cap(s)
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</pre>
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</pre>
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<p>
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The length and capacity of a <code>nil</code> slice, map, or channel are 0.
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</p>
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<p>
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<p>
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The expression
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The expression
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<code>len(s)</code> is a
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<code>len(s)</code> is a
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